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MASCOT: Faster Malicious Arithmetic Secure Computation with Oblivious Transfer.

, , and . ACM Conference on Computer and Communications Security, page 830-842. ACM, (2016)

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Secure Quantized Training for Deep Learning., and . ICML, volume 162 of Proceedings of Machine Learning Research, page 10912-10938. PMLR, (2022)Use Your Brain! Arithmetic 3PC for Any Modulus with Active Security., , , , , and . ITC, volume 163 of LIPIcs, page 5:1-5:24. Schloss Dagstuhl - Leibniz-Zentrum für Informatik, (2020)Faster Secure Multi-party Computation of AES and DES Using Lookup Tables., , , , , and . ACNS, volume 10355 of Lecture Notes in Computer Science, page 229-249. Springer, (2017)MASCOT: Faster Malicious Arithmetic Secure Computation with Oblivious Transfer., , and . ACM Conference on Computer and Communications Security, page 830-842. ACM, (2016)Reducing Communication Channels in MPC., , , and . SCN, volume 11035 of Lecture Notes in Computer Science, page 181-199. Springer, (2018)Securing DNSSEC Keys via Threshold ECDSA from Generic MPC., , , , and . ESORICS (2), volume 12309 of Lecture Notes in Computer Science, page 654-673. Springer, (2020)MP-SPDZ: A Versatile Framework for Multi-Party Computation.. CCS, page 1575-1590. ACM, (2020)Securing DNSSEC Keys via Threshold ECDSA From Generic MPC., , , , and . Krypto-Tag, Gesellschaft für Informatik e.V. / FG KRYPTO, (2019)Fantastic Four: Honest-Majority Four-Party Secure Computation With Malicious Security., , and . USENIX Security Symposium, page 2183-2200. USENIX Association, (2021)Actively Secure OT Extension with Optimal Overhead., , and . CRYPTO (1), volume 9215 of Lecture Notes in Computer Science, page 724-741. Springer, (2015)