Mechanizing the metatheory of LF

Author:

Urban Christian1,Cheney James2,Berghofer Stefan1

Affiliation:

1. TU Munich

2. University of Edinburgh, Edinburgh, Scotland

Abstract

LF is a dependent type theory in which many other formal systems can be conveniently embedded. However, correct use of LF relies on nontrivial metatheoretic developments such as proofs of correctness of decision procedures for LF's judgments. Although detailed informal proofs of these properties have been published, they have not been formally verified in a theorem prover. We have formalized these properties within Isabelle/HOL using the Nominal Datatype Package, closely following a recent article by Harper and Pfenning. In the process, we identified and resolved a gap in one of the proofs and a small number of minor lacunae in others. We also formally derive a version of the type checking algorithm from which Isabelle/HOL can generate executable code. Besides its intrinsic interest, our formalization provides a foundation for studying the adequacy of LF encodings, the correctness of Twelf-style metatheoretic reasoning, and the metatheory of extensions to LF.

Funder

Engineering and Physical Sciences Research Council

Publisher

Association for Computing Machinery (ACM)

Subject

Computational Mathematics,Logic,General Computer Science,Theoretical Computer Science

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1. slepice: Towards a Verified Implementation of Type Theory in Type Theory;Logic-Based Program Synthesis and Transformation;2021

2. POPLMark reloaded: Mechanizing proofs by logical relations;Journal of Functional Programming;2019

3. Mechanized Metatheory Revisited;Journal of Automated Reasoning;2018-10-04

4. Mechanizing proofs with logical relations – Kripke-style;Mathematical Structures in Computer Science;2018-08-02

5. αCheck: A mechanized metatheory model checker;Theory and Practice of Logic Programming;2017-05

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