Papers › Learning logic programs by discovering higher-order abstractions

Learning logic programs by discovering higher-order abstractions

16 Aug 2023arXiv:2308.08334archive 2025-07-28

Céline Hocquette, Sebastijan Dumančić, Andrew Cropper

We introduce the higher-order refactoring problem, where the goal is to compress a logic program by discovering higher-order abstractions, such as map, filter, and fold. We implement our approach in Stevie, which formulates the refactoring problem as a constraint optimisation problem. Our experiments on multiple domains, including program synthesis and visual reasoning, show that refactoring can improve the learning performance of an inductive logic programming system, specifically improving predictive accuracies by 27% and reducing learning times by 47%. We also show that Stevie can discover abstractions that transfer to multiple domains.

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Inductive logic programmingProgram SynthesisVisual Reasoning

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