Affiliation:
1. Microsoft Research
2. University of Pennsylvania
Abstract
This article describes recent progress in realizing verifiable state machines, a primitive that enables untrusted services to provide cryptographic proofs that they operate correctly. Applications of this primitive range from proving the correct operation of distributed and concurrent cloud services to reducing blockchain transaction costs by leveraging inexpensive off-chain computation without trust.
Publisher
Association for Computing Machinery (ACM)
Cited by
3 articles.
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1. Cuproof: Range Proof with Constant Size;Entropy;2022-02-25
2. Ferproof: A Constant Cost Range Proof Suitable for Floating-Point Numbers;Algorithms and Architectures for Parallel Processing;2022
3. FastVer: Making Data Integrity a Commodity;Proceedings of the 2021 International Conference on Management of Data;2021-06-09