Paper 2026/2251

Adaptively UC-Secure Oblivious Transfer from Group Actions

Olivier Blazy, LIX, École Polytechnique, Institut Polytechnique de Paris, Inria, France
Céline Chevalier, CRED, Université Panthéon-Assas, DIENS, École normale supérieure, PSL University, CNRS, Inria, France
Saqib Kakvi, Royal Holloway University of London
Lola-Baie Mallordy, LIX, \'Ecole Polytechnique, Institut Polytechnique de Paris, Inria, France
Abstract

Oblivious Transfer (OT) is a fundamental building block for secure computation, in which a sender holds two messages and a receiver learns exactly one of them, without revealing which one was chosen and without learning the other. While generic constructions for Universally Composable (UC) OT exist, instantiating them from post-quantum assumptions remains challenging, particularly under adaptive corruption. In this work, we present the first adaptively UC-secure OT protocol based on Group Actions, specifically assuming weakly pseudorandom Effective Group Actions (EGA) like CSIDH. We adhere to the framework of [BC15], which derives an adaptively UC-secure OT protocol from SPHF-friendly extractable and equivocable (E²) commitment schemes. The central challenge in instantiating this construction from group actions is the lack of SPHF-friendly IND-CCA encryption. Classical CCA transformations such as Fujisaki-Okamoto destroy the algebraic structure required for building SPHFs over ciphertexts, while known group action-based schemes offer no native mechanism to prove ciphertext validity. To overcome this obstacle, we construct from group actions an IND-CCA encryption scheme with enough algebraic structure to efficiently recognize valid ciphertexts. Our contributions are threefold: (1) a verifiable chameleon hash function with perfect soundness in the standard model, (2) an SPHF-friendly, publicly verifiable IND-CCA encryption scheme in the random oracle model, and (3) we combine these to build an SPHF-friendly E² commitment scheme and derive a fully adaptively secure OT protocol in the UC framework. This is the first construction of its kind under group action assumptions, enabling post-quantum secure OT with adaptive security guarantees. These building blocks may also be of independent interest e.g., to obtain digital signatures, non-malleable commitment schemes, or verifiable encryption.

Metadata
Available format(s)
PDF
Category
Cryptographic protocols
Publication info
Published by the IACR in CIC 2026
Keywords
Oblivious TransferGroup actionsUC model
Contact author(s)
olivier blazy @ polytechnique edu
celine chevalier @ ens fr
Saqib Kakvi @ rhul ac uk
lola mallordy @ polytechnique edu
History
2026-09-30: approved
2026-09-28: received
See all versions
Short URL
https://ia.cr/2026/2251
License
Creative Commons Attribution
CC BY

BibTeX

@misc{cryptoeprint:2026/2251,
      author = {Olivier Blazy and Céline Chevalier and Saqib Kakvi and Lola-Baie Mallordy},
      title = {Adaptively {UC}-Secure Oblivious Transfer from Group Actions},
      howpublished = {Cryptology {ePrint} Archive, Paper 2026/2251},
      year = {2026},
      url = {https://eprint.iacr.org/2026/2251}
}
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