Paper 2025/2105

HRA-Secure Puncturable Attribute-Based Proxy Re-Encryption from Lattices for Secure Cloud Sharing

Tianqiao Zhang, Huaibei Normal University
Mingming Jiang, Huaibei Normal University
Fucai Luo, Zhejiang Gongshang University
Yuyan Guo, Huaibei Normal University
Jinqiu Hou, Anhui University of Finance and Economics
Abstract

With the rapid advancement of cloud computing technology, outsourcing massive datasets to cloud servers has become a prominent trend, making secure and efficient data sharing mechanisms a critical requirement. Attribute-based proxy re-encryption (ABPRE) has emerged as an ideal solution due to its support for fine-grained, one-to-many access control and robust ciphertext transformation capabilities. However, existing ABPRE schemes still exhibit shortcomings in addressing forward security issues caused by long-term private key leakage, threats from quantum computer attacks, and vulnerabilities to honest re-encryption attacks (HRA). To simultaneously resolve these challenges, this paper introduces a novel cryptographic primitive termed puncturable attribute-based proxy re-encryption with switchable tags (PABPRE-ST), constructing a secure cloud data sharing scheme that supports fine-grained revocation. By integrating puncturable encryption (PE) mechanisms into the ABPRE framework, the scheme achieves fine-grained ciphertext revocation based on tags. In PABPRE-ST, data owners embed tags into ciphertexts, enabling data users to puncture specific tags and thereby revoke access to corresponding ciphertexts at a granular level. Furthermore, the scheme allows delegators to switch ciphertext tags, enhancing sharing flexibility. We formalize the security definitions for the proposed puncturable attribute-based proxy re-encryption scheme and prove its security under the learning with errors (LWE) assumption, which is widely believed to be resistant to quantum computer attacks. Security analysis demonstrates that the proposed scheme achieves HRA security in the standard model.

Metadata
Available format(s)
PDF
Category
Applications
Publication info
Preprint.
Keywords
Attribute-based encryption (ABE)proxy re-encryption (PRE)puncturable encryptionlearning with errors (LWE)
Contact author(s)
zhangxiaoqiao0199 @ 163 com
jiangmm3806586 @ 126 com
History
2025-11-25: revised
2025-11-16: received
See all versions
Short URL
https://ia.cr/2025/2105
License
Creative Commons Attribution-NonCommercial-ShareAlike
CC BY-NC-SA

BibTeX

@misc{cryptoeprint:2025/2105,
      author = {Tianqiao Zhang and Mingming Jiang and Fucai Luo and Yuyan Guo and Jinqiu Hou},
      title = {{HRA}-Secure Puncturable Attribute-Based Proxy Re-Encryption from Lattices for Secure Cloud Sharing},
      howpublished = {Cryptology {ePrint} Archive, Paper 2025/2105},
      year = {2025},
      url = {https://eprint.iacr.org/2025/2105}
}
Note: In order to protect the privacy of readers, eprint.iacr.org does not use cookies or embedded third party content.