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Verified Abstract Interpretation Techniques for Disassembling Low-level Self-modifying Code., , and . ITP, volume 8558 of Lecture Notes in Computer Science, page 128-143. Springer, (2014)The Last Mile: High-Assurance and High-Speed Cryptographic Implementations., , , , , , , and . CoRR, (2019)High-assurance zeroization., , , , , , , and . IACR Trans. Cryptogr. Hardw. Embed. Syst., 2024 (1): 375-397 (2024)Protecting cryptographic code against Spectre-RSB., , , , , , , , and . IACR Cryptol. ePrint Arch., (2024)Typing High-Speed Cryptography against Spectre v1., , , , , , , and . SP, page 1094-1111. IEEE, (2023)Machine-Checked Proofs for Cryptographic Standards: Indifferentiability of Sponge and Secure High-Assurance Implementations of SHA-3., , , , , , , , , and . CCS, page 1607-1622. ACM, (2019)Secure Compilation of Side-Channel Countermeasures: The Case of Cryptographic "Constant-Time"., , and . CSF, page 328-343. IEEE Computer Society, (2018)Certified Compilation for Cryptography: Extended x86 Instructions and Constant-Time Verification., , , , and . INDOCRYPT, volume 12578 of Lecture Notes in Computer Science, page 107-127. Springer, (2020)The Last Mile: High-Assurance and High-Speed Cryptographic Implementations., , , , , , , and . SP, page 965-982. IEEE, (2020)Enforcing Fine-grained Constant-time Policies., , , , and . CCS, page 83-96. ACM, (2022)