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A Principled Approach to Secure Multi-core Processor Design with ReWire.

, , , , and . ACM Trans. Embed. Comput. Syst., 16 (2): 33:1-33:25 (2017)

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A core calculus for secure hardware: its formal semantics and proof system., , , and . MEMOCODE, page 122-131. ACM, (2017)Hardware Synthesis from Functional Embedded Domain-Specific Languages: A Case Study in Regular Expression Compilation., , , , and . ARC, volume 9040 of Lecture Notes in Computer Science, page 41-52. Springer, (2015)The Design of a Practical Proof Checker for a Lazy Functional Language., , and . Trends in Functional Programming, volume 7829 of Lecture Notes in Computer Science, page 117-132. Springer, (2012)A Principled Approach to Secure Multi-core Processor Design with ReWire., , , , and . ACM Trans. Embed. Comput. Syst., 16 (2): 33:1-33:25 (2017)Making monads first-class with template haskell., , and . Haskell, page 99-110. ACM, (2008)Model-driven design & synthesis of the SHA-256 cryptographic hash function in rewire., , and . RSP, page 114-120. IEEE, (2016)The Mechanized Marriage of Effects and Monads with Applications to High-assurance Hardware., , , and . ACM Trans. Embed. Comput. Syst., 18 (1): 6:1-6:26 (2019)The Confinement Problem in the Presence of Faults., , and . ICFEM, volume 7635 of Lecture Notes in Computer Science, page 182-197. Springer, (2012)Semantics-directed machine architecture in ReWire., , , , and . FPT, page 446-449. IEEE, (2013)Formal Semantics of Heterogeneous CUDA-C: A Modular Approach with Applications, , , and . SSV, volume 102 of EPTCS, page 115-124. (2012)