Hwigyeom Kim

dblp:283/2456 · DBLP profile ↗
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4ranked-venue papers
0as first author
4since 2021 · last 2025
0000-0002-3010-5116ORCID · corroborated

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Security and privacy · 4 · 4 since 2021
YearPublicationVenuePosition
2025 Enhancing Provable Security and Efficiency of Permutation-Based DRBGs
Woohyuk Chung, Seongha Hwang, Hwigyeom Kim, Jooyoung Lee 0001
CRYPTO (5)3
2024 Provable Security of Linux-DRBG in the Seedless Robustness Model
Woohyuk Chung, Hwigyeom Kim, Jooyoung Lee 0001, Yeongmin Lee
ASIACRYPT (6)2
2024 Security analysis of the ISO standard sfOFB-sfDRBG
abstract
Abstract Deterministic random bit generators (DRBGs) are essential tools in modern cryptography for generating secure and unpredictable random numbers. The ISO DRBG standards provide guidelines for designing and implementing DRBGs, including four algorithms: $$\textsf{HASH}\text {-}\textsf{DRBG}$$ HASH - DRBG , $$\textsf{HMAC}\text {-}\textsf{DRBG}$$ HMAC - DRBG , $$\textsf{CTR}\text {-}\textsf{DRBG}$$ CTR - DRBG , and $$\textsf{OFB}\text {-}\textsf{DRBG}$$ OFB - DRBG . While security analyses have been conducted for the former three algorithms, there is a lack of specific security analysis for the $$\textsf{OFB}$$ OFB - $$\textsf{DRBG}$$ DRBG algorithm. We prove its security in the robustness security framework that has been used to analyze $$\mathsf {CTR\text {-}DRBG}$$ CTR - DRBG by Hoang and Shen at Crypto 2020. More precisely, we prove that $$\textsf{OFB}$$ OFB - $$\textsf{DRBG}$$ DRBG provides $$O(\min \left\{ \frac{\lambda }{3}, \frac{n}{2} \right\} )$$ O ( min λ 3 , n 2 ) -bit security, including ideal cipher queries, where $$\lambda $$ λ and n denote the lower bound of min-entropy and the size of the underlying block cipher, respectively. The proof strategy is to transform the robustness game of $$\textsf{OFB}$$ OFB - $$\textsf{DRBG}$$ DRBG into an indistinguishability game and then apply the H-coefficient technique to upper bound the distinguishing advantage.
Woohyuk Chung, Hwigyeom Kim, Jooyoung Lee 0001, Yeongmin Lee
Des. Codes Cryptogr.2
2022 Multi-user Security of the Sum of Truncated Random Permutations
Wonseok Choi 0002, Hwigyeom Kim, Jooyoung Lee 0001, Yeongmin Lee
ASIACRYPT (2)2