Modular verification of programs with effectsand effects handlers

Author:

Letan Thomas1,Régis-Gianas Yann2ORCID,Chifflier Pierre1,Hiet Guillaume3

Affiliation:

1. Agence Nationale de la Sécurité des Systèmes d’Information (ANSSI), Paris, France

2. INRIA, Université de Paris, CNRS, IRIF, F-75006, Paris, France

3. CentraleSupélec, Inria, CNRS, IRISA, Rennes, France

Abstract

Abstract Modern computing systems have grown in complexity, and even though system components are generally carefully designed and even verified by different groups of people, the composition of these components is often regarded with less attention. Inconsistencies between components’ assumptions on the rest of the system can have significant repercussions on this system, and may ultimately lead to safety or security issues. In this article, we introduce FreeSpec, a formalismbuilt upon the key idea that components can bemodeled as programs with algebraic effects to be realized by other components. FreeSpec allows for the modular modeling of a complex system, by defining idealized components connected together, and the modular verification of the properties of their composition. In addition, we have implemented a framework for the Coq proof assistant based on FreeSpec.

Publisher

Association for Computing Machinery (ACM)

Subject

Theoretical Computer Science,Software

Reference41 articles.

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1. Securing Verified IO Programs Against Unverified Code in F*;Proceedings of the ACM on Programming Languages;2024-01-05

2. Verifying an Effect-Handler-Based Define-By-Run Reverse-Mode AD Library;Logical Methods in Computer Science;2023-10-23

3. Program adverbs and Tlön embeddings;Proceedings of the ACM on Programming Languages;2022-08-29

4. Introducing ⦇ λ ⦈, a λ-calculus for effectful computation;Theoretical Computer Science;2021-05

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