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Exequiel Rivas
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2020 – today
- 2024
- [j7]Cezar-Constantin Andrici
, Stefan Ciobaca
, Catalin Hritcu
, Guido Martínez
, Exequiel Rivas
, Éric Tanter
, Théo Winterhalter
:
Securing Verified IO Programs Against Unverified Code in F. Proc. ACM Program. Lang. 8(POPL): 2226-2259 (2024) - [c11]Exequiel Rivas
, Tarmo Uustalu
:
Concurrent monads for shared state. PPDP 2024: 19:1-19:13 - 2023
- [j6]Philipp G. Haselwarter
, Exequiel Rivas
, Antoine Van Muylder
, Théo Winterhalter
, Carmine Abate
, Nikolaj Sidorenco
, Catalin Hritcu
, Kenji Maillard
, Bas Spitters
:
SSProve: A Foundational Framework for Modular Cryptographic Proofs in Coq. ACM Trans. Program. Lang. Syst. 45(3): 15:1-15:61 (2023) - [i6]Cezar-Constantin Andrici, Catalin Hritcu, Guido Martínez, Exequiel Rivas, Théo Winterhalter:
Securely Compiling Verified F* Programs With IO. CoRR abs/2303.01350 (2023) - 2022
- [c10]Dylan McDermott
, Exequiel Rivas
, Tarmo Uustalu
:
Sweedler Theory of Monads. FoSSaCS 2022: 428-448 - 2021
- [c9]Carmine Abate, Philipp G. Haselwarter
, Exequiel Rivas
, Antoine Van Muylder
, Théo Winterhalter, Catalin Hritcu, Kenji Maillard, Bas Spitters
:
SSProve: A Foundational Framework for Modular Cryptographic Proofs in Coq. CSF 2021: 1-15 - [i5]Carmine Abate, Philipp G. Haselwarter, Exequiel Rivas, Antoine Van Muylder, Théo Winterhalter, Catalin Hritcu, Kenji Maillard, Bas Spitters:
SSProve: A Foundational Framework for Modular Cryptographic Proofs in Coq. IACR Cryptol. ePrint Arch. 2021: 397 (2021) - 2020
- [j5]Ruben P. Pieters, Exequiel Rivas
, Tom Schrijvers
:
Generalized monoidal effects and handlers. J. Funct. Program. 30: e23 (2020) - [j4]Kenji Maillard
, Catalin Hritcu, Exequiel Rivas
, Antoine Van Muylder
:
The next 700 relational program logics. Proc. ACM Program. Lang. 4(POPL): 4:1-4:33 (2020) - [c8]Shin-ya Katsumata
, Exequiel Rivas
, Tarmo Uustalu
:
Interaction Laws of Monads and Comonads. LICS 2020: 604-618
2010 – 2019
- 2019
- [j3]Kenji Maillard
, Danel Ahman
, Robert Atkey, Guido Martínez, Catalin Hritcu, Exequiel Rivas
, Éric Tanter:
Dijkstra monads for all. Proc. ACM Program. Lang. 3(ICFP): 104:1-104:29 (2019) - [i4]Kenji Maillard, Danel Ahman, Robert Atkey, Guido Martínez, Catalin Hritcu, Exequiel Rivas, Éric Tanter:
Dijkstra Monads for All. CoRR abs/1903.01237 (2019) - [i3]Kenji Maillard, Catalin Hritcu, Exequiel Rivas, Antoine Van Muylder:
The Next 700 Relational Program Logics. CoRR abs/1907.05244 (2019) - [i2]Shin-ya Katsumata, Exequiel Rivas, Tarmo Uustalu
:
Interaction laws of monads and comonads. CoRR abs/1912.13477 (2019) - 2018
- [j2]Exequiel Rivas
, Mauro Jaskelioff
, Tom Schrijvers
:
A unified view of monadic and applicative non-determinism. Sci. Comput. Program. 152: 70-98 (2018) - [c7]Exequiel Rivas
:
Relating Idioms, Arrows and Monads from Monoidal Adjunctions. MSFP@FSCD 2018: 18-33 - 2017
- [j1]Exequiel Rivas
, Mauro Jaskelioff:
Notions of computation as monoids. J. Funct. Program. 27: e21 (2017) - [c6]Ruben P. Pieters, Tom Schrijvers
, Exequiel Rivas
:
Handlers for Non-Monadic Computations. IFL 2017: 4:1-4:11 - [c5]Ezequiel Postan, Exequiel Rivas
, Mauro Jaskelioff:
Dioids for Computational Effects. CLEI Selected Papers 2017: 111-134 - 2015
- [c4]Mauro Jaskelioff, Exequiel Rivas
:
Functional pearl: a smart view on datatypes. ICFP 2015: 355-361 - [c3]Exequiel Rivas
, Mauro Jaskelioff, Tom Schrijvers
:
From monoids to near-semirings: the essence of MonadPlus and alternative. PPDP 2015: 196-207 - 2014
- [i1]Exequiel Rivas, Mauro Jaskelioff:
Notions of Computation as Monoids. CoRR abs/1406.4823 (2014) - 2012
- [c2]Gilles Barthe, Juan Manuel Crespo, Dominique Devriese
, Frank Piessens, Exequiel Rivas
:
Secure Multi-Execution through Static Program Transformation. FMOODS/FORTE 2012: 186-202 - 2011
- [c1]Gilles Barthe, Exequiel Rivas
:
Static Enforcement of Information Flow Policies for a Concurrent JVM-like Language. TGC 2011: 73-88
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