Paper 2026/2251
Adaptively UC-Secure Oblivious Transfer from Group Actions
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)
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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
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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}
}