Lift-and-Shift: Obtaining Simulation Extractable Subversion and Updatable SNARKs Generically
Behzad Abdolmaleki, Sebastian Ramacher, Daniel Slamanig
摘要
Zero-knowledge proofs and in particular succinct non-interactive zero-knowledge proofs (so called zk-SNARKs) are getting increasingly used in real-world applications, with cryptocurrencies being the prime example. Simulation extractability (SE) is a strong security notion for zk-SNARKs which informally ensures non-malleability of proofs. The high importance of this property is acknowledged by leading companies in this field such as Zcash and underpinned by various attacks against the malleability of cryptographic primitives in the past. Another problematic issue for the practical use of zk-SNARKs is the requirement of a fully trusted setup, as especially for large-scale decentralized applications finding a trusted party that runs the setup is practically impossible. Quite recently, the study of approaches to relax or even remove the trust in the setup procedure, and in particular subversion as well as updatable zk-SNARKs (with latter being the most promising approach), has been initiated and received considerable attention since then. Unfortunately, so far SE-SNARKs with the aforementioned properties are only constructed in an ad-hoc manner and no generic techniques are available. In this paper, we are interested in such generic techniques and therefore firstly revisit the only available lifting technique due to Kosba et al. (called COCO) to generically obtain SE-SNARKs. By exploring the design space of many recently proposed SNARK- and STARK-friendly symmetric-key primitives we thereby achieve significant improvements in the prover computation and proof size. Unfortunately, the COCO framework as well as our improved version (called OCOCO) is not compatible with updatable SNARKs. Consequently, we propose a novel generic lifting transformation called LAMASSU. It is built using different underlying ideas compared to COCO (and OCOCO). In contrast to COCO it only requires key-homomorphic signatures (which allow to shift keys) covering well studied schemes such as Schnorr or ECDSA. This makes LAMASSU highly interesting, as by using the novel concept of so called updatable signatures, which we introduce in this paper, we can prove that LAMASSU preserves the subversion and in particular updatable properties of the underlying zk-SNARK. This makes LAMASSU the first technique to also generically obtain SE subversion and updatable SNARKs. As its performance compares favorably to OCOCO, LAMASSU is an attractive alternative that in contrast to COCO is only based on well established cryptographic assumptions.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper2
- SoK: What don't we know? Understanding Security Vulnerabilities in SNARKsStefanos Chaliasos, Jens Ernstberger, David Theodore, David Wong 等USENIX Security 2024 · 被引用 32 次
- Strong Privacy-Preserving Universally Composable AKA Protocol with Seamless Handover Support for Mobile Virtual Network OperatorRabiah Alnashwan, Yang Yang, Yilu Dong, Prosanta Gope 等CCS 2024 · 被引用 4 次
它引用的顶会 Paper12
- Bulletproofs: Short Proofs for Confidential Transactions and MoreBenedikt Bünz, Jonathan Bootle, Dan Boneh, Andrew Poelstra 等S&P 2018 · 被引用 1,285 次
- Sonic: Zero-Knowledge SNARKs from Linear-Size Universal and Updatable Structured Reference StringsMary Maller, Sean Bowe, Markulf Kohlweiss, Sarah MeiklejohnCCS 2019 · 被引用 412 次
- Post-Quantum Zero-Knowledge and Signatures from Symmetric-Key PrimitivesMelissa Chase, David Derler, Steven Goldfeder, Claudio Orlandi 等CCS 2017 · 被引用 316 次
- The Ring of Gyges: Investigating the Future of Criminal Smart ContractsAri Juels, Ahmed E. Kosba, Elaine ShiCCS 2016 · 被引用 199 次
- Zero-Knowledge Contingent Payments Revisited: Attacks and Payments for ServicesMatteo Campanelli, Rosario Gennaro, Steven Goldfeder, Luca NizzardoCCS 2017 · 被引用 170 次
相关 Paper
- Witness-Succinct Universally-Composable SNARKsChaya Ganesh, Yashvanth Kondi, Claudio Orlandi, Mahak Pancholi 等EUROCRYPT 2023 · 被引用 24 次
- Spartan and Bulletproofs are Simulation-Extractable (for Free!)Quang Dao, Paul GrubbsEUROCRYPT 2023 · 被引用 26 次
- Real-World Universal zkSNARKs are Non-MalleableAntonio Faonio, Dario Fiore, Luigi RussoCCS 2024 · 被引用 5 次
- Sumcheck-Based zkSNARKs are Non-malleableAntonio Faonio, Luigi RussoCRYPTO 2026
- Single-Server Private Outsourcing of zk-SNARKsKasra Abbaszadeh, Hossein Hafezi, Jonathan Katz, Sarah MeiklejohnS&P 2026 · 被引用 3 次
