Paper 2026/566

Secret-Shared Shuffle from Authenticated Correlations

Xiangfu Song, Nanyang Technological University
Xiaojian Liang, Ant International, Ant Group
Ye Dong, National University of Singapore
Jianli Bai, Singapore Management University
Pu Duan, Ant International, Ant Group
Changyu Dong, Guangzhou University
Tianwei Zhang, Nanyang Technological University
Ee-Chien Chang, National University of Singapore
Abstract

Shuffle is a basic primitive for secure computation. Secret-shared shuffle refers to oblivious permutation over secret-shared data, which has broad applications in secret-sharing-based secure computation. Since shuffle is typically used in highly sensitive applications, malicious security is often necessary to provide realistic security guarantees. This paper proposes a new family of two-party maliciously secure secret-shared shuffle protocols with linear communication/computation cost and constant-round communication. Achieving this goal has been proven non-trivial by several recent attempts. We answer this question by proposing a new and simple shuffle paradigm based on authenticated correlations. We start by proposing a simple and efficient protocol template based on authenticated correlations with linear cost and constant-round communication. The protocol can be enhanced to be fully authenticated against a malicious sender, which avoids selective-failure attacks that incur the main overhead in existing solutions. However, our roadmap introduces a consistency issue from a malicious receiver, and the challenge is how to resolve the issue while preserving the expected efficiency property. To this end, we propose new efficiency-preserving consistency checks, enabled by a set of new techniques, optimizations, and analyses. Combining the consistency checks with our framework based on authenticated correlations, we propose two maliciously secure secret-shared shuffle protocols with linear cost and constant-round communication. We have implemented our protocols. Performance evaluation shows that our protocols are faster with lower communication than the state-of-the-art.

Metadata
Available format(s)
PDF
Category
Cryptographic protocols
Publication info
A major revision of an IACR publication in PKC 2026
Keywords
Secret-sharingShuffleCorrelationMalicious security
Contact author(s)
bintasong @ gmail com
im liangxj @ gmail com
dongye @ nus edu sg
baijianli0812 @ gmail com
p duan @ antgroup com
changyu dong @ gzhu edu cn
tianwei zhang @ ntu edu sg
changec @ comp nus edu sg
History
2026-03-22: approved
2026-03-21: received
See all versions
Short URL
https://ia.cr/2026/566
License
Creative Commons Attribution-NonCommercial-ShareAlike
CC BY-NC-SA

BibTeX

@misc{cryptoeprint:2026/566,
      author = {Xiangfu Song and Xiaojian Liang and Ye Dong and Jianli Bai and Pu Duan and Changyu Dong and Tianwei Zhang and Ee-Chien Chang},
      title = {Secret-Shared Shuffle from Authenticated Correlations},
      howpublished = {Cryptology {ePrint} Archive, Paper 2026/566},
      year = {2026},
      url = {https://eprint.iacr.org/2026/566}
}
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