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Ligero++: A New Optimized Sublinear IOP.

, , , , , and . ACM Conference on Computer and Communications Security, page 2025-2038. ACM, (2020)

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Complete Fairness in Secure Two-Party Computation., , , and . J. ACM, 58 (6): 24:1-24:37 (2011)Efficient Oblivious Polynomial Evaluation with Simulation-Based Security., and . IACR Cryptology ePrint Archive, (2009)Round-Optimal Token-Based Secure Computation., , and . IACR Cryptology ePrint Archive, (2015)One-Sided Adaptively Secure Two-Party Computation., and . TCC, volume 8349 of Lecture Notes in Computer Science, page 368-393. Springer, (2014)Efficient RSA Key Generation and Threshold Paillier in the Two-Party Setting., , , and . CT-RSA, volume 7178 of Lecture Notes in Computer Science, page 313-331. Springer, (2012)Oblivious Polynomial Evaluation and Secure Set-Intersection from Algebraic PRFs.. J. Cryptol., 31 (2): 537-586 (2018)Toward a Game Theoretic View of Secure Computation., , and . J. Cryptol., 29 (4): 879-926 (2016)Ligero++: A New Optimized Sublinear IOP., , , , , and . ACM Conference on Computer and Communications Security, page 2025-2038. ACM, (2020)Round-Optimal Secure Multi-party Computation., , , and . J. Cryptol., 34 (3): 19 (2021)TinyKeys: A New Approach to Efficient Multi-Party Computation., , , and . J. Cryptol., 35 (2): 13 (2022)