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Machine-Checked Proofs for Cryptographic Standards: Indifferentiability of Sponge and Secure High-Assurance Implementations of SHA-3.

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EasyUC: Using EasyCrypt to Mechanize Proofs of Universally Composable Security., , and . CSF, page 167-183. IEEE, (2019)Formalizing Algorithmic Bounds in the Query Model in EasyCrypt., , , and . ITP, volume 237 of LIPIcs, page 30:1-30:21. Schloss Dagstuhl - Leibniz-Zentrum für Informatik, (2022)You Sank My Battleship!: A Case Study in Secure Programming., , , , , , and . PLAS@ECOOP, page 2. ACM, (2014)Building Resource Adaptive Software Systems (BRASS): Objectives and System Evaluation., , , , , and . CoRR, (2015)Machine-Checked Proofs for Cryptographic Standards., , , , , , , , , and . IACR Cryptol. ePrint Arch., (2019)Experimenting with formal languages using forlan.. FDPE@ICFP, page 41-50. ACM, (2008)Building Resource Adaptive Software Systems (BRASS): Objectives and System Evaluation., , , , , and . ACM SIGSOFT Softw. Eng. Notes, 41 (1): 1-2 (2016)PLAS'20: 15th Workshop on Programming Languages and Analysis for Security., and . ACM Conference on Computer and Communications Security, page 2151-2152. ACM, (2020)A functional model-view-controller software architecture for command-oriented programs.. ICFP-WGP, page 1-12. ACM, (2008)Machine-Checked Proofs for Cryptographic Standards: Indifferentiability of Sponge and Secure High-Assurance Implementations of SHA-3., , , , , , , , , and . CCS, page 1607-1622. ACM, (2019)