Paper 2026/1454

Batched Attribute-Based Encryption from Bilinear Pairings

Ramprasad Sarkar, Indian Statistical Institute
Shayeef Murshid, Indian Statistical Institute
Mriganka Mandal, Indian Statistical Institute
Abstract

Batched identity-based encryption (batched IBE), introduced by Agarwal, Fernando, and Pinkas (CRYPTO 2025), enables a key authority to issue a single succinct key that decrypts an entire batch of ciphertexts. However, existing batched encryption protocols support only identity-based access control and do not accommodate expressive attribute-based policies. We are the first to introduce Batched Attribute-Based Encryption (B-ABE), a generalization of batched encryption to the attribute-based setting. In B-ABE, ciphertexts are associated with attribute sets and batch labels, while a single batch key is bound to an access policy and a public digest of the batch. The key decrypts exactly those ciphertexts in the batch whose attributes satisfy the policy, and its size is independent of the batch size. We construct B-ABE in asymmetric bilinear groups and prove security under the standard Decisional Bilinear Diffie-Hellman (DBDH) assumption in the random oracle model. We further introduce the first Threshold Batched Attribute-Based Encryption (TB-ABE), in which the master secret is distributed among L authorities via Shamir secret sharing. Any subset of at least T authorities can non-interactively generate publicly verifiable key shares that aggregate into a succinct batch key of the same asymptotic size as in the single-authority setting. We formalize security against static corruptions of up to (T-1) authorities and adaptive key-share queries and prove security under the DBDH assumption in the random oracle model.

Metadata
Available format(s)
PDF
Category
Cryptographic protocols
Publication info
Published elsewhere. Major revision. PROVSEC 2026
Keywords
Attribute-based encryptionBatched key issuanceThreshold cryptographyEncrypted mempoolsBilinear pairings
Contact author(s)
rpsarkar_p @ isical ac in
shayeef_r @ isical ac in
mriganka @ isical ac in
History
2026-07-20: approved
2026-07-16: received
See all versions
Short URL
https://ia.cr/2026/1454
License
Creative Commons Attribution
CC BY

BibTeX

@misc{cryptoeprint:2026/1454,
      author = {Ramprasad Sarkar and Shayeef Murshid and Mriganka Mandal},
      title = {Batched Attribute-Based Encryption from Bilinear Pairings},
      howpublished = {Cryptology {ePrint} Archive, Paper 2026/1454},
      year = {2026},
      url = {https://eprint.iacr.org/2026/1454}
}
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