Registered Attribute-Based Encryption
Susan Hohenberger, George Lu, Brent Waters, David J. Wu
Abstract
Attribute-based encryption (ABE) generalizes public-key encryption and enables fine-grained control to encrypted data. However, ABE upends the traditional trust model of public-key encryption by requiring a single trusted authority to issue decryption keys. If an adversary compromises the central authority and exfiltrates its secret key, then the adversary can decrypt every ciphertext in the system.
This work introduces registered ABE, a primitive that allows users to generate secret keys on their own and then register the associated public key with a "key curator" along with their attributes. The key curator aggregates the public keys from the different users into a single compact master public key. To decrypt, users occasionally need to obtain helper decryption keys from the key curator which they combine with their own secret keys. We require that the size of the aggregated public key, the helper decryption keys, the ciphertexts, as well as the encryption/decryption times to be polylogarithmic in the number of registered users. Moreover, the key curator is entirely transparent and maintains no secrets. Registered ABE generalizes the notion of registration-based encryption (RBE) introduced by Garg et al. (TCC 2018), who focused on the simpler setting of identity-based encryption.
We construct a registered ABE scheme that supports an a priori bounded number of users and policies that can be described by a linear secret sharing scheme (e.g., monotone Boolean formulas) from assumptions on composite-order pairing groups. Our approach deviates sharply from previous techniques for constructing RBE and only makes black-box use of cryptography. All existing RBE constructions (a weaker notion than registered ABE) rely on heavy non-black-box techniques. The encryption and decryption costs of our construction are comparable to those of vanilla pairing-based ABE. Two limitations of our scheme are that it requires a structured reference string whose size scales quadratically with the number of users (and linearly with the size of the attribute universe) and the running time of registration scales linearly with the number of users.
Finally, as a feasibility result, we construct a registered ABE scheme that supports general policies and an arbitrary number of users from indistinguishability obfuscation and somewhere statistically binding hash functions.
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Cited by top-tier papers8
- Reducing the CRS Size in Registered ABE SystemsRachit Garg, George Lu, Brent Waters, David J. WuCRYPTO 2024 · 27 citations
- Registered ABE and Adaptively-Secure Broadcast Encryption from Succinct LWEJeffrey Champion, Yao-Ching Hsieh, David J. WuCRYPTO 2025 · 21 citations
- Multi-authority Registered Attribute-Based EncryptionGeorge Lu, Brent Waters, David J. WuEUROCRYPT 2025 · 14 citations
- Unbounded Distributed Broadcast Encryption and Registered ABE from Succinct LWEHoeteck Wee, David J. WuCRYPTO 2025 · 12 citations
- Threshold Batched Identity-Based Encryption from Pairings in the Plain ModelJunqing Gong, Brent Waters, Hoeteck Wee, David J. WuEUROCRYPT 2026 · 9 citations
Builds on4
- Indistinguishability obfuscation from well-founded assumptionsAayush Jain, Huijia Lin, Amit SahaiSTOC 2021 · 223 citations
- Indistinguishability Obfuscation from LPN over , DLIN, and PRGs in NC0Aayush Jain, Huijia Lin, Amit SahaiEUROCRYPT 2022 · 102 citations
- Decentralized Multi-authority ABE for DNFs from LWEPratish Datta, Ilan Komargodski, Brent WatersEUROCRYPT 2021 · 62 citations
- Verifiable Registration-Based EncryptionRishab Goyal, Satyanarayana VusirikalaCRYPTO 2020 · 45 citations
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