VLDB 2026 Research / reviewers in the wild / expert
Yu Sasaki 0001
dblp:46/2899
· DBLP profile ↗
98ranked-venue papers
28as first author
19since 2021 · last 2026
0000-0002-1273-2394ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 96 · 27 first-author · 19 since 2021Systems, architecture and hardware · 1 · 1 first-authorTheory of computation · 1
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Related-Key Cryptanalysis of FUTURE - The Full Round Distinguishing Attack
Amit Jana, Smita Das, Ayantika Chatterjee, Debdeep Mukhopadhyay, Yu Sasaki 0001 |
ACNS (3) | 5 |
| 2026 | Tight Multi-user Security of CCM and Enhancement by Tag-Based Key Derivation
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001 |
ACNS (1) | 2 |
| 2026 | Key Committing Security of HCTR2, Revisited
Donghoon Chang, Yu Long Chen, Yukihito Hiraga, Kazuhiko Minematsu, Nicky Mouha, Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001 |
CRYPTO (6) | 7 |
| 2026 | Generic Committing Attacks - Zero-Padded Ascon is Less Secure than Expected
Nilanjan Datta, Hrithik Nandi, Soumit Pal, Yu Sasaki 0001, Patrick Struck, Maximiliane Weishäupl |
CRYPTO (6) | 4 |
| 2026 | AESpoly: Symmetric-Key Cryptographic Designs Using Instruction-Level Parallelism Between AES and Polynomial Hash
Yukihito Hiraga, Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001 |
SP | 3 |
| 2025 | Beyond-Birthday-Bound Security with HCTR2: Cascaded Construction and Tweak-Based Key Derivation
Yu Long Chen, Yukihito Hiraga, Nicky Mouha, Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001 |
ASIACRYPT (1) | 5 |
| 2025 | Cryptographic Treatment of Key Control Security - In Light of NIST SP 800-108
Ritam Bhaumik, Avijit Dutta, Akiko Inoue, Tetsu Iwata, Ashwin Jha 0001, Kazuhiko Minematsu, Mridul Nandi, Yu Sasaki 0001, Meltem Sönmez Turan, Stefano Tessaro |
CRYPTO (5) | 8 |
| 2025 | The Exact Multi-User Security of Key-Alternating Feistel Ciphers with a Single Permutation
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001 |
CRYPTO (5) | 2 |
| 2025 | The Multi-user Security of GCM-SST and Further Enhancements
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001 |
ISC | 2 |
| 2025 | Breaking the Twinkle Authenticated Encryption Scheme and Analyzing Its Underlying Permutation
Debasmita Chakraborty, Hosein Hadipour, Anup Kumar Kundu, Mostafizar Rahman, Prathamesh Ram, Yu Sasaki 0001, Dilip Sau |
SAC | 6 |
| 2024 | KIVR: Committing Authenticated Encryption Using Redundancy and Application to GCM, CCM, and More
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001 |
ACNS (1) | 2 |
| 2024 | The Exact Multi-user Security of 2-Key Triple DES
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001 |
CT-RSA | 2 |
| 2024 | The Exact Multi-user Security of (Tweakable) Key Alternating Ciphers with a Single Permutation
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001 |
EUROCRYPT (1) | 2 |
| 2023 | Permutation-Based Deterministic Authenticated Encryption with Minimum Memory Size
Yukihito Hiraga, Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001 |
ISC | 3 |
| 2022 | The Multi-User Security of Triple Encryption, Revisited: Exact Security, Strengthening, and Application to TDESabstractWe study the security of triple encryption in the multi-user setting with its application to Triple DES (TDES) in mind. Although depreciation of TDES is a global trend, the migration will take the next decade, considering the billions of TDES hardware the industry has invested so far. The multi-user security captures the reality of practical systems with multiple users, substantially impacts security, and is already considered in practical protocols such as TLS 1.3. The best multi-user lower bound of TDES is 43-(3/2) \cdot łog_2 u bits with u users, which is tractable with a standard PC and is unacceptably low. We devise a new proof to improve the multi-user security and show its tightness by giving a concrete attack. The new bound with the TDES parameters is 79-(1/2) \cdot łog_2 u bits. We also propose TEFX that strengthens triple encryption with the FX construction while preserving the compatibility with legacy hardware. TDES with TEFX achieves the multi-user security of 114-(1/2) \cdot łog_2 q bits with q TEFX calls: it achieves 84.5 bits with 2^40 users and 2^21 TEFX calls for each user, which is comparable to that of AES (128-40=88 bits). Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001, Kan Yasuda |
CCS | 2 |
| 2022 | Secret Can Be Public: Low-Memory AEAD Mode for High-Order Masking
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001 |
CRYPTO (3) | 2 |
| 2021 | Double-Block-Length Hash Function for Minimum Memory Size
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001 |
ASIACRYPT (3) | 2 |
| 2021 | Quantum Collision Attacks on Reduced SHA-256 and SHA-512
Akinori Hosoyamada, Yu Sasaki 0001 |
CRYPTO (1) | 2 |
| 2021 | Designing S-Boxes Providing Stronger Security Against Differential Cryptanalysis for Ciphers Using Byte-Wise XOR
Yosuke Todo, Yu Sasaki 0001 |
SAC | 2 |
| 2020 | Lesamnta-LW Revisited: Improved Security Analysis of Primitive and New PRF Mode
Shoichi Hirose, Yu Sasaki 0001, Hirotaka Yoshida |
ACNS (1) | 2 |
| 2020 | Out of Oddity - New Cryptanalytic Techniques Against Symmetric Primitives Optimized for Integrity Proof Systems
Tim Beyne, Anne Canteaut, Itai Dinur, Maria Eichlseder, Gregor Leander, Gaëtan Leurent, María Naya-Plasencia, Léo Perrin, Yu Sasaki 0001, Yosuke Todo, Friedrich Wiemer |
CRYPTO (3) | 9 |
| 2020 | Lightweight Authenticated Encryption Mode Suitable for Threshold Implementation
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001 |
EUROCRYPT (2) | 2 |
| 2020 | Finding Hash Collisions with Quantum Computers by Using Differential Trails with Smaller Probability than Birthday Bound
Akinori Hosoyamada, Yu Sasaki 0001 |
EUROCRYPT (2) | 2 |
| 2020 | A Practical Forgery Attack on Lilliput-AE
Orr Dunkelman, Nathan Keller, Eran Lambooij, Yu Sasaki 0001 |
J. Cryptol. | 4 |
| 2020 | Quantum algorithm for the multicollision problem
Akinori Hosoyamada, Yu Sasaki 0001, Seiichiro Tani, Keita Xagawa |
Theor. Comput. Sci. | 2 |
| 2019 | Related-Key Boomerang Attacks on GIFT with Automated Trail Search Including BCT Effect
Yunwen Liu, Yu Sasaki 0001 |
ACISP | 2 |
| 2019 | Cryptanalysis of ForkAES
Subhadeep Banik, Jannis Bossert, Amit Jana, Eik List, Stefan Lucks, Willi Meier, Mostafizar Rahman, Dhiman Saha, Yu Sasaki 0001 |
ACNS | 9 |
| 2019 | Quantum Attacks Without Superposition Queries: The Offline Simon's Algorithm
Xavier Bonnetain, Akinori Hosoyamada, María Naya-Plasencia, Yu Sasaki 0001, André Schrottenloher |
ASIACRYPT (1) | 4 |
| 2019 | Correlation of Quadratic Boolean Functions: Cryptanalysis of All Versions of Full \mathsf MORUS
Danping Shi, Siwei Sun, Yu Sasaki 0001, Chaoyun Li, Lei Hu 0003 |
CRYPTO (2) | 3 |
| 2019 | Quantum Chosen-Ciphertext Attacks Against Feistel Ciphers
Gembu Ito, Akinori Hosoyamada, Ryutaroh Matsumoto, Yu Sasaki 0001, Tetsu Iwata |
CT-RSA | 4 |
| 2019 | Universal Forgery and Multiple Forgeries of MergeMAC and Generalized Constructions
Tetsu Iwata, Virginie Lallemand, Gregor Leander, Yu Sasaki 0001 |
CT-RSA | 4 |
| 2019 | Improved Quantum Multicollision-Finding Algorithm
Akinori Hosoyamada, Yu Sasaki 0001, Seiichiro Tani, Keita Xagawa |
PQCrypto | 2 |
| 2019 | Beyond Conventional Security in Sponge-Based Authenticated Encryption ModesabstractThe Sponge function is known to achieve $$2^{c/2}$$ security, where c is its capacity. This bound was carried over to its keyed variants, such as SpongeWrap, to achieve a $$\min \{2^{c/2},2^\kappa \}$$ security bound, with $$\kappa $$ the key length. Similarly, many CAESAR competition submissions were designed to comply with the classical $$2^{c/2}$$ security bound. We show that Sponge-based constructions for authenticated encryption can achieve the significantly higher bound of $$\min \{2^{b/2},2^c,2^\kappa \}$$ , with $$b>c$$ the permutation size, by proving that the CAESAR submission NORX achieves this bound. The proof relies on rigorous computation of multi-collision probabilities, which may be of independent interest. We additionally derive a generic attack based on multi-collisions that matches the bound. We show how to apply the proof to five other Sponge-based CAESAR submissions: Ascon, CBEAM/STRIBOB, ICEPOLE, Keyak, and two out of the three PRIMATEs. A direct application of the result shows that the parameter choices of some of these submissions are overly conservative. Simple tweaks render the schemes considerably more efficient without sacrificing security. We finally consider the remaining one of the three PRIMATEs, APE, and derive a blockwise adaptive attack in the nonce-respecting setting with complexity $$2^{c/2}$$ , therewith demonstrating that the techniques cannot be applied to APE. Philipp Jovanovic, Atul Luykx, Bart Mennink, Yu Sasaki 0001, Kan Yasuda |
J. Cryptol. | 4 |
| 2019 | Nonlinear Invariant Attack: Practical Attack on Full SCREAM, iSCREAM, and Midori64
Yosuke Todo, Gregor Leander, Yu Sasaki 0001 |
J. Cryptol. | 3 |
| 2018 | Related-Key Boomerang Attacks on Full ANU Lightweight Block Cipher
Yu Sasaki 0001 |
ACNS | 1 |
| 2018 | Cryptanalysis of MORUS
Tomer Ashur, Maria Eichlseder, Martin M. Lauridsen, Gaëtan Leurent, Brice Minaud, Yann Rotella, Yu Sasaki 0001, Benoît Viguier |
ASIACRYPT (2) | 7 |
| 2018 | Cryptanalysis Against Symmetric-Key Schemes with Online Classical Queries and Offline Quantum Computations
Akinori Hosoyamada, Yu Sasaki 0001 |
CT-RSA | 2 |
| 2018 | Boomerang Connectivity Table: A New Cryptanalysis Tool
Carlos Cid, Tao Huang 0015, Thomas Peyrin, Yu Sasaki 0001, Ling Song 0001 |
EUROCRYPT (2) | 4 |
| 2018 | Cryptanalysis of Reduced sLiSCP Permutation in Sponge-Hash and Duplex-AE Modes
Yunwen Liu, Yu Sasaki 0001, Ling Song 0001, Gaoli Wang |
SAC | 2 |
| 2018 | Tight Bounds of Differentially and Linearly Active S-Boxes and Division Property of LilliputabstractThis paper provides security analysis of a lightweight block cipher called LILLIPUT, which was proposed in IEEE Transactions on Computers in 2015. LILLIPUT adopts an extended generalized Feistel network (EGFN). EGFN consists of non-linear, linear, and permutation layers, and the linear layer updates a part of the state only linearly, which causes several security concerns. Our first discovery is that the lower bounds of the number of differentially active S-boxes provided by the designers are incorrect. Thus the new bounds are derived by using mixed integer linear programming (MILP). We apply a two-stage search procedure introduced by Sun et al. that leads to tight bounds even for a large number of rounds. The search tool is then converted for linear cryptanalysis. With those updates, the challenging problem of evaluating LILLIPUT's security against differential and linear cryptanalysis is closed. Another contribution is the best third-party cryptanalysis. The designers expected EGFN to efficiently enhance security against integral cryptanalysis. However, security is not as enhanced as the designers expected. In fact, division property finds a 13-round distinguisher that improves on the previous distinguisher by 4 rounds. The distinguisher is further extended to a 17-round key recovery that improves on the previous best attack by 3 rounds. Yu Sasaki 0001, Yosuke Todo |
IEEE Trans. Computers | 1 |
| 2017 | Quantum Multicollision-Finding Algorithm
Akinori Hosoyamada, Yu Sasaki 0001, Keita Xagawa |
ASIACRYPT (2) | 2 |
| 2017 | GIFT: A Small Present - Towards Reaching the Limit of Lightweight Encryption
Subhadeep Banik, Sumit Kumar Pandey, Thomas Peyrin, Yu Sasaki 0001, Siang Meng Sim, Yosuke Todo |
CHES | 4 |
| 2017 | New Impossible Differential Search Tool from Design and Cryptanalysis Aspects - Revealing Structural Properties of Several Ciphers
Yu Sasaki 0001, Yosuke Todo |
EUROCRYPT (3) | 1 |
| 2017 | Optimizing Online Permutation-Based AE Schemes for Lightweight Applications
Yu Sasaki 0001, Kan Yasuda |
ISPEC | 1 |
| 2017 | Rate-One AE with Security Under RUP
Shoichi Hirose, Yu Sasaki 0001, Kan Yasuda |
ISC | 2 |
| 2016 | Improved Rebound Attacks on AESQ: Core Permutation of CAESAR Candidate PAEQ
Nasour Bagheri, Florian Mendel, Yu Sasaki 0001 |
ACISP (2) | 3 |
| 2016 | On the Design Rationale of Simon Block Cipher: Integral Attacks and Impossible Differential Attacks against Simon Variants
Kota Kondo, Yu Sasaki 0001, Tetsu Iwata |
ACNS | 2 |
| 2016 | A New Algorithm for the Unbalanced Meet-in-the-Middle Problem
Ivica Nikolic, Yu Sasaki 0001 |
ASIACRYPT (1) | 2 |
| 2016 | Nonlinear Invariant Attack - Practical Attack on Full SCREAM, iSCREAM, and Midori64
Yosuke Todo, Gregor Leander, Yu Sasaki 0001 |
ASIACRYPT (2) | 3 |
| 2016 | The SKINNY Family of Block Ciphers and Its Low-Latency Variant MANTIS
Christof Beierle, Jérémy Jean, Stefan Kölbl, Gregor Leander, Amir Moradi 0001, Thomas Peyrin, Yu Sasaki 0001, Pascal Sasdrich, Siang Meng Sim |
CRYPTO (2) | 7 |
| 2016 | Cryptanalysis of Reduced NORX
Nasour Bagheri, Tao Huang 0015, Keting Jia, Florian Mendel, Yu Sasaki 0001 |
FSE | 5 |
| 2016 | New Differential Bounds and Division Property of Lilliput: Block Cipher with Extended Generalized Feistel Network
Yu Sasaki 0001, Yosuke Todo |
SAC | 1 |
| 2016 | Extended meet-in-the-middle attacks on some Feistel constructions
Jian Guo 0001, Jérémy Jean, Ivica Nikolic, Yu Sasaki 0001 |
Des. Codes Cryptogr. | 4 |
| 2015 | Refinements of the k-tree Algorithm for the Generalized Birthday Problem
Ivica Nikolic, Yu Sasaki 0001 |
ASIACRYPT (2) | 2 |
| 2015 | How to Incorporate Associated Data in Sponge-Based Authenticated Encryption
Yu Sasaki 0001, Kan Yasuda |
CT-RSA | 1 |
| 2015 | Analysis of the CAESAR Candidate Silver
Jérémy Jean, Yu Sasaki 0001, Lei Wang 0031 |
SAC | 2 |
| 2015 | A New Mode of Operation for Incremental Authenticated Encryption with Associated Data
Yu Sasaki 0001, Kan Yasuda |
SAC | 1 |
| 2014 | Memoryless Unbalanced Meet-in-the-Middle Attacks: Impossible Results and Applications
Yu Sasaki 0001 |
ACNS | 1 |
| 2014 | Meet-in-the-Middle Attacks on Generic Feistel Constructions
Jian Guo 0001, Jérémy Jean, Ivica Nikolic, Yu Sasaki 0001 |
ASIACRYPT (1) | 4 |
| 2014 | Message Extension Attack against Authenticated Encryptions: Application to PANDA
Yu Sasaki 0001, Lei Wang 0031 |
CANS | 1 |
| 2014 | Updates on Generic Attacks against HMAC and NMAC
Jian Guo 0001, Thomas Peyrin, Yu Sasaki 0001, Lei Wang 0031 |
CRYPTO (1) | 3 |
| 2014 | An Automated Evaluation Tool for Improved Rebound Attack: New Distinguishers and Proposals of ShiftBytes Parameters for Grøstl
Yu Sasaki 0001, Yuuki Tokushige, Lei Wang 0031, Mitsugu Iwamoto, Kazuo Ohta |
CT-RSA | 1 |
| 2014 | Equivalent Key Recovery Attacks Against HMAC and NMAC with Whirlpool Reduced to 7 Rounds
Jian Guo 0001, Yu Sasaki 0001, Lei Wang 0031, Long Wen 0002 |
FSE | 2 |
| 2014 | Practical Cryptanalysis of PAES
Jérémy Jean, Ivica Nikolic, Yu Sasaki 0001, Lei Wang 0031 |
Selected Areas in Cryptography | 3 |
| 2013 | Related-Key Boomerang Attacks on KATAN32/48/64
Takanori Isobe 0001, Yu Sasaki 0001, Jiageng Chen |
ACISP | 2 |
| 2013 | Preimage Attacks on Feistel-SP Functions: Impact of Omitting the Last Network Twist
Yu Sasaki 0001 |
ACNS | 1 |
| 2013 | Cryptanalysis of HMAC/NMAC-Whirlpool
Jian Guo 0001, Yu Sasaki 0001, Lei Wang 0031, Shuang Wu 0004 |
ASIACRYPT (2) | 2 |
| 2013 | Limited-Birthday Distinguishers for Hash Functions - Collisions beyond the Birthday Bound Can Be Meaningful
Mitsugu Iwamoto, Thomas Peyrin, Yu Sasaki 0001 |
ASIACRYPT (2) | 3 |
| 2013 | Improved Single-Key Distinguisher on HMAC-MD5 and Key Recovery Attacks on Sandwich-MAC-MD5
Yu Sasaki 0001, Lei Wang 0031 |
Selected Areas in Cryptography | 1 |
| 2013 | Meet-in-the-Middle Preimage Attacks Revisited - New Results on MD5 and HAVAL
Yu Sasaki 0001, Wataru Komatsubara, Yasuhide Sakai, Lei Wang 0031, Mitsugu Iwamoto, Kazuo Sakiyama, Kazuo Ohta |
SECRYPT | 1 |
| 2012 | Improved Known-Key Distinguishers on Feistel-SP Ciphers and Application to Camellia
Yu Sasaki 0001, Sareh Emami, Deukjo Hong |
ACISP | 1 |
| 2012 | Distinguishers beyond Three Rounds of the RIPEMD-128/-160 Compression Functions
Yu Sasaki 0001, Lei Wang 0031 |
ACNS | 1 |
| 2012 | Generic Related-Key Attacks for HMAC
Thomas Peyrin, Yu Sasaki 0001, Lei Wang 0031 |
ASIACRYPT | 2 |
| 2012 | Investigating Fundamental Security Requirements on Whirlpool: Improved Preimage and Collision Attacks
Yu Sasaki 0001, Lei Wang 0031, Shuang Wu 0004, Wenling Wu |
ASIACRYPT | 1 |
| 2012 | Cryptanalyses on a Merkle-Damgård Based MAC - Almost Universal Forgery and Distinguishing-H Attacks
Yu Sasaki 0001 |
EUROCRYPT | 1 |
| 2012 | New Truncated Differential Cryptanalysis on 3D Block Cipher
Takuma Koyama, Lei Wang 0031, Yu Sasaki 0001, Kazuo Sakiyama, Kazuo Ohta |
ISPEC | 3 |
| 2012 | Meet-in-the-Middle Technique for Integral Attacks against Feistel Ciphers
Yu Sasaki 0001, Lei Wang 0031 |
Selected Areas in Cryptography | 1 |
| 2011 | Preimage Attacks on Full-ARIRANG (Poster)
Chiaki Ohtahara, Keita Okada, Yu Sasaki 0001, Takeshi Shimoyama |
ACISP | 3 |
| 2011 | (Second) Preimage Attacks on Step-Reduced RIPEMD/RIPEMD-128 with a New Local-Collision Approach
Lei Wang 0031, Yu Sasaki 0001, Wataru Komatsubara, Kazuo Ohta, Kazuo Sakiyama |
CT-RSA | 2 |
| 2011 | Meet-in-the-Middle Preimage Attacks on AES Hashing Modes and an Application to Whirlpool
Yu Sasaki 0001 |
FSE | 1 |
| 2011 | Known-Key Distinguishers on 11-Round Feistel and Collision Attacks on Its Hashing Modes
Yu Sasaki 0001, Kan Yasuda |
FSE | 1 |
| 2011 | Byte Slicing Grøstl - Optimized Intel AES-NI and 8-bit Implementations of the SHA-3 Finalist Grøstl
Kazumaro Aoki, Günther Roland, Yu Sasaki 0001, Martin Schläffer |
SECRYPT | 3 |
| 2010 | Non-full-active Super-Sbox Analysis: Applications to ECHO and Grøstl
Yu Sasaki 0001, Yang Li 0001, Lei Wang 0031, Kazuo Sakiyama, Kazuo Ohta |
ASIACRYPT | 1 |
| 2010 | Preimage Attacks on Step-Reduced RIPEMD-128 and RIPEMD-160
Chiaki Ohtahara, Yu Sasaki 0001, Takeshi Shimoyama |
Inscrypt | 2 |
| 2010 | Finding Preimages of Tiger Up to 23 Steps
Lei Wang 0031, Yu Sasaki 0001 |
FSE | 2 |
| 2009 | Meet-in-the-Middle Preimage Attacks on Double-Branch Hash Functions: Application to RIPEMD and Others
Yu Sasaki 0001, Kazumaro Aoki |
ACISP | 1 |
| 2009 | Preimages for Step-Reduced SHA-2
Kazumaro Aoki, Jian Guo 0001, Krystian Matusiewicz, Yu Sasaki 0001, Lei Wang 0031 |
ASIACRYPT | 4 |
| 2009 | Rebound Attack on the Full Lane Compression Function
Krystian Matusiewicz, María Naya-Plasencia, Ivica Nikolic, Yu Sasaki 0001, Martin Schläffer |
ASIACRYPT | 4 |
| 2009 | Meet-in-the-Middle Preimage Attacks Against Reduced SHA-0 and SHA-1
Kazumaro Aoki, Yu Sasaki 0001 |
CRYPTO | 2 |
| 2009 | Finding Preimages in Full MD5 Faster Than Exhaustive Search
Yu Sasaki 0001, Kazumaro Aoki |
EUROCRYPT | 1 |
| 2009 | Meet-in-the-Middle Attacks Using Output Truncation in 3-Pass HAVAL
Yu Sasaki 0001 |
ISC | 1 |
| 2008 | Preimage Attacks on Step-Reduced MD5
Yu Sasaki 0001, Kazumaro Aoki |
ACISP | 1 |
| 2008 | Preimage Attacks on 3, 4, and 5-Pass HAVAL
Yu Sasaki 0001, Kazumaro Aoki |
ASIACRYPT | 1 |
| 2008 | A strict evaluation method on the number of conditions for the SHA-1 collision searchabstractThis paper proposes a new algorithm for evaluating the number of chaining variable conditions(CVCs) in the selecting step of a distrubance vector (DV) for the analysis of SHA-1 collision attack. The algorithm is constructed by combining the following four strategies, Strict Bit Compression, DV expansion, Precise Counting Rules in Every Step and Differential Path Confirmation for Rounds 2 to 4, that can evaluate the number of CVCs morestrictly compared with the previous approach. Jun Yajima, Terutoshi Iwasaki, Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Shimoyama, Noboru Kunihiro, Kazuo Ohta |
AsiaCCS | 4 |
| 2008 | Security of MD5 Challenge and Response: Extension of APOP Password Recovery Attack
Yu Sasaki 0001, Lei Wang 0031, Kazuo Ohta, Noboru Kunihiro |
CT-RSA | 1 |
| 2007 | A New Strategy for Finding a Differential Path of SHA-1
Jun Yajima, Yu Sasaki 0001, Yusuke Naito 0001, Terutoshi Iwasaki, Takeshi Shimoyama, Noboru Kunihiro, Kazuo Ohta |
ACISP | 2 |
| 2007 | New Message Difference for MD4
Yu Sasaki 0001, Lei Wang 0031, Kazuo Ohta, Noboru Kunihiro |
FSE | 1 |
| 2006 | Improved Collision Search for SHA-0
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Shimoyama, Jun Yajima, Noboru Kunihiro, Kazuo Ohta |
ASIACRYPT | 2 |