VLDB 2026 Research / reviewers in the wild / expert
Wonseok Choi 0002
dblp:79/8377-2
· DBLP profile ↗
10ranked-venue papers
7as first author
8since 2021 · last 2025
0000-0001-7230-2057ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 10 · 7 first-author · 8 since 2021Applied, interdisciplinary, general and emerging computing · 1 · 1 first-author · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2025 | Blockchain Governance via Sharp Anonymous MultisignaturesabstractElectronic voting has occupied a large part of the cryptographic protocols literature. The recent reality of blockchains - in particular, their need for online governance mechanisms - has brought new parameters and requirements to the problem. We identify the key requirements of a blockchain governance mechanism, namely correctness (including eliminative double votes), voter anonymity, and traceability, and investigate mechanisms that can achieve them with minimal interaction and under assumptions that fit the blockchain setting. First, we define a signature-like primitive, which we term sharp anonymous multisignatures (in short, ♯AMS) that tightly meets the needs of blockchain governance. In a nutshell, ♯AMSs allow any set of parties to generate a signature, e.g., on a proposal to be voted upon, which, if posted on the blockchain, hides the identities of the signers/voters but reveals their number. This can be seen as a (strict) generalization of threshold ring signatures (TRS). We next turn to constructing such ♯AMSs and using them in various governance scenarios - e.g., single vote vs. multiple votes per voter. In this direction, although the definition of TRS does not imply ♯AMS, one can compile some existing TRS constructions into ♯AMS. This raises the question: What is the TRS structure that allows such a compilation? To answer the above, we devise templates for TRSs. Our templates encapsulate and abstract the structure that allows for the above compilation - most of the TRS schemes that can be compiled into ♯AMS are, in fact, instantiations of our template. This abstraction makes our template generic for instantiating TRSs and ♯AMSs from different cryptographic assumptions (e.g., DDH, LWE, etc.). One of our templates is based on chameleon hashes, and we explore a framework of lossy chameleon hashes to understand their nature fully. Finally, we turn to how ♯AMS schemes can be used in our applications. We provide fast (in some cases non-interactive) ♯AMS-based blockchain governance mechanisms for a wide spectrum of assumptions on the honesty (semi-honest vs malicious) and availability of voters and proposers. Wonseok Choi 0002, Vassilis Zikas |
AFT | 1 |
| 2024 | Toward Full n-bit Security and Nonce Misuse Resistance of Block Cipher-Based MACs
Wonseok Choi 0002, Jooyoung Lee 0001, Yeongmin Lee |
ASIACRYPT (9) | 1 |
| 2024 | The Committing Security of MACs with Applications to Generic Composition
Ritam Bhaumik, Bishwajit Chakraborty 0002, Wonseok Choi 0002, Avijit Dutta, Jérôme Govinden, Yaobin Shen |
CRYPTO (4) | 3 |
| 2024 | Efficient Variants of TNT with BBB Security
Ritam Bhaumik, Wonseok Choi 0002, Avijit Dutta, Cuauhtemoc Mancillas-López, Hrithik Nandi, Yaobin Shen |
ProvSec (2) | 2 |
| 2024 | ZLR: a fast online authenticated encryption scheme achieving full securityabstractAbstract Online authenticated encryption has been considered of practical relevance in light-weight environments due to low latency and constant memory usage. In this paper, we propose a new tweakable block cipher-based online authenticated encryption scheme, dubbed , and its domain separation variant, dubbed . and follow the Encrypt-Mix-Encrypt paradigm. However, in contrast to existing schemes using the same paradigm such as and , and enjoy n-bit security by using larger internal states with an efficient -like hashing algorithm. In this way, 2n-bit blocks are processed with only a single primitive call for hashing and two primitive calls for encryption and decryption, when they are based on an n-bit tweakable block cipher using n-bit (resp. 2n-bit) tweaks for (resp. ). Furthermore, they support pipelined computation as well as online nonce-misuse resistance. To the best of our knowledge, and are the first pipelineable tweakable block cipher-based online authenticated encryption schemes of rate-2/3 that provide n-bit security with online nonce-misuse resistance. Wonseok Choi 0002, Seongha Hwang, ByeongHak Lee, Jooyoung Lee 0001 |
Des. Codes Cryptogr. | 1 |
| 2023 | Improved Multi-user Security Using the Squared-Ratio Method
Yu Long Chen, Wonseok Choi 0002, Changmin Lee 0001 |
CRYPTO (2) | 2 |
| 2022 | Multi-user Security of the Sum of Truncated Random Permutations
Wonseok Choi 0002, Hwigyeom Kim, Jooyoung Lee 0001, Yeongmin Lee |
ASIACRYPT (2) | 1 |
| 2021 | Toward a Fully Secure Authenticated Encryption Scheme from a Pseudorandom Permutation
Wonseok Choi 0002, ByeongHak Lee, Jooyoung Lee 0001, Yeongmin Lee |
ASIACRYPT (3) | 1 |
| 2020 | Improved Security Analysis for Nonce-Based Enhanced Hash-then-Mask MACs
Wonseok Choi 0002, ByeongHak Lee, Yeongmin Lee, Jooyoung Lee 0001 |
ASIACRYPT (1) | 1 |
| 2019 | Indifferentiability of Truncated Random Permutations
Wonseok Choi 0002, ByeongHak Lee, Jooyoung Lee 0001 |
ASIACRYPT (1) | 1 |