Yusuke Naito 0001

dblp:80/504 · DBLP profile ↗
← Back
33ranked-venue papers
26as first author
14since 2021 · last 2026
0000-0001-8737-1602ORCID · conflict

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

Security and privacy · 33 · 26 first-author · 14 since 2021
YearPublicationVenuePosition
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)1
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)6
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
SP2
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)4
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)1
2025 The Multi-user Security of GCM-SST and Further Enhancements
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001
ISC1
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)1
2024 The Multi-user Security of MACs via Universal Hashing in the Ideal Cipher Model
Yusuke Naito 0001
CT-RSA1
2024 The Exact Multi-user Security of 2-Key Triple DES
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001
CT-RSA1
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)1
2023 Permutation-Based Deterministic Authenticated Encryption with Minimum Memory Size
Yukihito Hiraga, Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001
ISC2
2022 The Multi-User Security of Triple Encryption, Revisited: Exact Security, Strengthening, and Application to TDES
abstract
We 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
CCS1
2022 Secret Can Be Public: Low-Memory AEAD Mode for High-Order Masking
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001
CRYPTO (3)1
2021 Double-Block-Length Hash Function for Minimum Memory Size
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001
ASIACRYPT (3)1
2020 Lightweight Authenticated Encryption Mode Suitable for Threshold Implementation
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Sugawara 0001
EUROCRYPT (2)1
2019 A Highly Secure MAC from Tweakable Blockciphers with Support for Short Tweaks
Yusuke Naito 0001
ACISP1
2018 Keyed Sponge with Prefix-Free Padding: Independence Between Capacity and Online Queries Without the Suffix Key
Yusuke Naito 0001
ACISP1
2018 On the Efficiency of ZMAC-Type Modes
Yusuke Naito 0001
CANS1
2018 Improved Security Bound of LightMAC_Plus and Its Single-Key Variant
Yusuke Naito 0001
CT-RSA1
2018 Sandwich construction for keyed sponges: independence between capacity and construction queries
abstract
In this study, the authors study the pseudo‐random function (PRF) security of keyed sponges. ‘Capacity’ is a parameter of a keyed sponge that usually defines a dominant term in the PRF‐security bound. The previous works have improved the capacity term in the PRF‐security bound of the ‘prefix’ keyed sponge, where a secret key is prepended to an input message, and then the resultant value is inputted into the sponge function. A tight bound for the capacity term was given by Naito and Yasuda (FSE 2016): for the capacity c , the number of construction queries q and the number of primitive queries Q . Thus, the following question naturally arises: Can they construct a keyed sponge with beyond the ‐bound security? In this study, they consider the ‘sandwich’ keyed sponge, where a secret key is both prepended and appended to an input message, and then the resultant value is inputted into the sponge function. They prove that the capacity term becomes for the rate r , which is usually and . That is, the dependence between the capacity and construction queries can be removed by the sandwich construction.
Yusuke Naito 0001
IET Inf. Secur.1
2017 Indifferentiability of Double-Block-Length Hash Function Without Feed-Forward Operations
Yusuke Naito 0001
ACISP (2)1
2017 Blockcipher-Based MACs: Beyond the Birthday Bound Without Message Length
Yusuke Naito 0001
ASIACRYPT (3)1
2016 Sandwich Construction for Keyed Sponges: Independence Between Capacity and Online Queries
Yusuke Naito 0001
CANS1
2016 Replacing SHA-2 with SHA-3 Enhances Generic Security of HMAC
Yusuke Naito 0001, Lei Wang 0031
CT-RSA1
2016 New Bounds for Keyed Sponges with Extendable Output: Independence Between Capacity and Message Length
Yusuke Naito 0001, Kan Yasuda
FSE1
2016 Output Masking of Tweakable Even-Mansour Can Be Eliminated for Message Authentication Code
Shoichi Hirose, Yusuke Naito 0001, Takeshi Sugawara 0001
SAC2
2015 Full PRF-Secure Message Authentication Code Based on Tweakable Block Cipher
Yusuke Naito 0001
ProvSec1
2014 Reset Indifferentiability from Weakened Random Oracle Salvages One-Pass Hash Functions
Yusuke Naito 0001, Kazuki Yoneyama, Kazuo Ohta
ACNS1
2011 Security of Practical Cryptosystems Using Merkle-Damgård Hash Function in the Ideal Cipher Model
Yusuke Naito 0001, Kazuki Yoneyama, Lei Wang 0031, Kazuo Ohta
ProvSec1
2009 How to Confirm Cryptosystems Security: The Original Merkle-Damgård Is Still Alive!
Yusuke Naito 0001, Kazuki Yoneyama, Lei Wang 0031, Kazuo Ohta
ASIACRYPT1
2008 A strict evaluation method on the number of conditions for the SHA-1 collision search
abstract
This 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
AsiaCCS3
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
ACISP3
2006 Improved Collision Search for SHA-0
Yusuke Naito 0001, Yu Sasaki 0001, Takeshi Shimoyama, Jun Yajima, Noboru Kunihiro, Kazuo Ohta
ASIACRYPT1