Asynchronous Remote Key Generation: An Analysis of Yubico's Proposal for W3C WebAuthn
Nick Frymann, Daniel Gardham, Franziskus Kiefer, Emil Lundberg, Mark Manulis, Dain Nilsson
Abstract
WebAuthn, forming part of FIDO2, is a W3C standard for strong authentication, which employs digital signatures to authenticate web users whilst preserving their privacy. Owned by users, WebAuthn authenticators generate attested and unlinkable public-key credentials for each web service to authenticate users. Since the loss of authenticators prevents users from accessing web services, usable recovery solutions preserving the original WebAuthn design choices and security objectives are urgently needed. We examine Yubico's recent proposal for recovering from the loss of a WebAuthn authenticator by using a secondary backup authenticator. We analyse the cryptographic core of their proposal by modelling a new primitive, called Asynchronous Remote Key Generation (ARKG), which allows some primary authenticator to generate unlinkable public keys for which the backup authenticator may later recover corresponding private keys. Both processes occur asynchronously without the need for authenticators to export or share secrets, adhering to WebAuthn's attestation requirements. We prove that Yubico's proposal achieves our ARKG security properties under the discrete logarithm and PRF-ODH assumptions in the random oracle model. To prove that recovered private keys can be used securely by other cryptographic schemes, such as digital signatures or encryption schemes, we model compositional security of ARKG using composable games by Brzuska et al. (ACM CCS 2011), extended to the case of arbitrary public-key protocols. As well as being more general, our results show that private keys generated by ARKG may be used securely to produce unforgeable signatures for challenge-response protocols, as used in WebAuthn. We conclude our analysis by discussing concrete instantiations behind Yubico's ARKG protocol, its integration with the WebAuthn standard, performance, and usability aspects.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 9e767eda-47d9-42da-8af4-a29e595b40a5Cited by top-tier papers2
- FIDO2 the Rescue? Platform vs. Roaming Authentication on SmartphonesLeon Würsching, Florentin Putz, Steffen Haesler, Matthias HollickCHI 2023 · 15 citations
- Token meets Wallet: Formalizing Privacy and Revocation for FIDO2Lucjan Hanzlik, Julian Loss, Benedikt WagnerS&P 2023
Builds on1
Related papers
- FIDO2, CTAP 2.1, and WebAuthn 2: Provable Security and Post-Quantum InstantiationNina Bindel, Cas Cremers, Mang ZhaoS&P 2023
- Provable Security Analysis of FIDO2Manuel Barbosa, Alexandra Boldyreva, Shan Chen, Bogdan WarinschiCRYPTO 2021 · 42 citations
- Accountable authentication with privacy protection: The Larch system for universal loginEmma Dauterman, Danny Lin, Henry Corrigan-Gibbs, David MazièresOSDI 2023 · 2 citations
- FeIDo: Recoverable FIDO2 Tokens Using Electronic IDsFabian Schwarz, Khue Do, Gunnar Heide, Lucjan Hanzlik et al.CCS 2022 · 9 citations
- "It's Stored, Hopefully, on an Encrypted Server": Mitigating Users' Misconceptions About FIDO2 Biometric WebAuthnLeona Lassak, Annika Hildebrandt, Maximilian Golla, Blase UrUSENIX Security 2021 · 48 citations
