K-Waay: Fast and Deniable Post-Quantum X3DH without Ring Signatures
Daniel Collins, Loïs Huguenin-Dumittan, Ngoc Khanh Nguyen, Nicolas Rolin, Serge Vaudenay
摘要
The Signal protocol and its X3DH key exchange core are regularly used by billions of people in applications like WhatsApp but are unfortunately not quantum-secure. Thus, designing an efficient and post-quantum secure X3DH alternative is paramount. Notably, X3DH supports asynchronicity, as parties can immediately derive keys after uploading them to a central server, and deniability, allowing parties to plausibly deny having completed key exchange. To satisfy these constraints, existing post-quantum X3DH proposals use ring signatures (or equivalently a form of designated-verifier signatures) to provide authentication without compromising deniability as regular signatures would. Existing ring signature schemes, however, have some drawbacks. Notably, they are not generally proven secure in the quantum random oracle model (QROM) and so the quantum security of parameters that are proposed is unclear and likely weaker than claimed. In addition, they are generally slower than standard primitives like KEMs. In this work, we propose an efficient, deniable and postquantum X3DH-like protocol that we call K-Waay, that does not rely on ring signatures. At its core, K-Waay uses a split-KEM, a primitive introduced by Brendel et al. [SAC 2020], to provide Diffie-Hellman-like implicit authentication and secrecy guarantees. Along the way, we revisit the formalism of Brendel et al. and identify that additional security properties are required to prove a split-KEM-based protocol secure. We instantiate split-KEM by building a protocol based on the Frodo key exchange protocol relying on the plain LWE assumption: our proofs might be of independent interest as we show it satisfies our novel unforgeability and deniability security notions. Finally, we complement our theoretical results by thoroughly benchmarking both K-Waay and existing X3DH protocols. Our results show even when using plain LWE and a conservative choice of parameters that K-Waay is significantly faster than previous work. * The full version of this paper can be found on ePrint [25] .
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引用它的顶会 Paper4
- Triple Ratchet: A Bandwidth Efficient Hybrid-Secure Signal ProtocolYevgeniy Dodis, Daniel Jost, Shuichi Katsumata, Thomas Prest 等EUROCRYPT 2025 · 被引用 10 次
- Shadowfax: Hybrid Security and Deniability for AKEMsPhillip Gajland, Vincent Hwang, Jonas JanneckUSENIX Security 2026
- Comprehensive Deniability Analysis of Signal Handshake Protocols: X3DH, PQXDH to Fully Post-Quantum with Deniable Ring SignaturesShuichi Katsumata, Guilhem Niot, Ida Tucker, Thom WiggersUSENIX Security 2025
- Bundled Authenticated Key Exchange: A Concrete Treatment of Signal's Handshake Protocol and Post-Quantum SecurityKeitaro Hashimoto, Shuichi Katsumata, Thom WiggersUSENIX Security 2025
它引用的顶会 Paper13
- Frodo: Take off the Ring! Practical, Quantum-Secure Key Exchange from LWEJoppe W. Bos, Craig Costello, Léo Ducas, Ilya Mironov 等CCS 2016 · 被引用 431 次
- An Efficient Key Recovery Attack on SIDHWouter Castryck, Thomas DecruEUROCRYPT 2023 · 被引用 284 次
- Post-Quantum TLS Without Handshake SignaturesPeter Schwabe, Douglas Stebila, Thom WiggersCCS 2020 · 被引用 162 次
- LWE with Side Information: Attacks and Concrete Security EstimationDana Dachman-Soled, Léo Ducas, Huijing Gong, Mélissa RossiCRYPTO 2020 · 被引用 162 次
- DualRing: Generic Construction of Ring Signatures with Efficient InstantiationsTsz Hon Yuen, Muhammed F. Esgin, Joseph K. Liu, Man Ho Au 等CRYPTO 2021 · 被引用 83 次
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