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GeoCoder: Solving Geometry Problems by Generating Modular Code through Vision-Language Models

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arxiv 2410.13510 v1 pith:FCDJIKPU submitted 2024-10-17 cs.CL cs.CV

classification cs.CLcs.CV
keywords geometrycodegeocoderlibrarymodularmultimodalcode-finetuningfunction
verification ladder T0 review T1 audit T2 compute T3 formal
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Geometry problem-solving demands advanced reasoning abilities to process multimodal inputs and employ mathematical knowledge effectively. Vision-language models (VLMs) have made significant progress in various multimodal tasks. Yet, they still struggle with geometry problems and are significantly limited by their inability to perform mathematical operations not seen during pre-training, such as calculating the cosine of an arbitrary angle, and by difficulties in correctly applying relevant geometry formulas. To overcome these challenges, we present GeoCoder, which leverages modular code-finetuning to generate and execute code using a predefined geometry function library. By executing the code, we achieve accurate and deterministic calculations, contrasting the stochastic nature of autoregressive token prediction, while the function library minimizes errors in formula usage. We also propose a multimodal retrieval-augmented variant of GeoCoder, named RAG-GeoCoder, which incorporates a non-parametric memory module for retrieving functions from the geometry library, thereby reducing reliance on parametric memory. Our modular code-finetuning approach enhances the geometric reasoning capabilities of VLMs, yielding an average improvement of over 16% across various question complexities on the GeomVerse dataset compared to other finetuning methods.

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  1. Towards Geometry Problem Solving in the Large Model Era: A Survey

    cs.CV 2025-06 conditional novelty 4.0 of 10

    A survey that organizes geometry problem-solving research into benchmark construction, parsing, and reasoning, and proposes a unified parse-then-reason paradigm for the large-model era.

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