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Perfectly Secure Multiparty Computation and the Computational Overhead of Cryptography.

, , and . IACR Cryptology ePrint Archive, (2010)

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Cryptography in NC0., , and . SIAM J. Comput., 36 (4): 845-888 (2006)On the Power of Nonlinear Secret-Sharing., and . IACR Cryptology ePrint Archive, (2001)Outsourcing Private Machine Learning via Lightweight Secure Arithmetic Computation., , , , , and . CoRR, (2018)Correlation Extractors and Their Applications - (Invited Talk).. ICITS, volume 6673 of Lecture Notes in Computer Science, page 1-5. Springer, (2011)Basing Weak Public-Key Cryptography on Strong One-Way Functions., , and . TCC, volume 4948 of Lecture Notes in Computer Science, page 55-72. Springer, (2008)OT-Combiners via Secure Computation., , , and . TCC, volume 4948 of Lecture Notes in Computer Science, page 393-411. Springer, (2008)How to Construct a Leakage-Resilient (Stateless) Trusted Party., , and . TCC (2), volume 10678 of Lecture Notes in Computer Science, page 209-244. Springer, (2017)Perfectly Secure Multiparty Computation and the Computational Overhead of Cryptography., , and . EUROCRYPT, volume 6110 of Lecture Notes in Computer Science, page 445-465. Springer, (2010)Bounded Indistinguishability and the Complexity of Recovering Secrets., , , and . CRYPTO (3), volume 9816 of Lecture Notes in Computer Science, page 593-618. Springer, (2016)How Many Oblivious Transfers Are Needed for Secure Multiparty Computation?, , and . CRYPTO, volume 4622 of Lecture Notes in Computer Science, page 284-302. Springer, (2007)