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2024 Rukhovich CAD Recode Point Clouds to CAD (1)

Danila Rukhovich, Elona Dupont

2026enCAD modelsreverse engineeringpoint cloudsPython codelarge language modelsprocedural generation

Abstract

Language:

Computer-Aided Design (CAD) models are typically constructed by sequentially drawing parametric sketches and applying CAD operations to obtain a 3D model. The problem of 3D CAD reverse engineering consists of reconstructing the sketch and CAD operation sequences from 3D representations such as point clouds. In this paper, we address this challenge through novel contributions across three levels: CAD sequence representation, network design, and training dataset. In particular, we represent CAD sketch-extrude sequences as Python code. The proposed CAD-Recode translates a point cloud into Python code that, when executed, reconstructs the CAD model. Taking advantage of the exposure of pre-trained Large Language Models (LLMs) to Python code, we leverage a relatively small LLM as a decoder for CAD-Recode and combine it with a lightweight point cloud projector. CAD-Recode is trained on a procedurally generated dataset of one million CAD sequences. CAD-Recode significantly outperforms existing methods across the DeepCAD, Fusion360 and real-world CC3D datasets. Furthermore, we show that our CAD Python code output is interpretable by off-the-shelf LLMs, enabling CAD editing and CAD-specific question answering from point clouds.

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Cite This Work

@article{a88453e5-87a7-4454-bdf3-0d5353a934e8,
  title={2024 Rukhovich CAD Recode Point Clouds to CAD (1)},
  author={Danila Rukhovich and Elona Dupont},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - 2024 Rukhovich CAD Recode Point Clouds to CAD (1)
AU  - Danila Rukhovich
AU  - Elona Dupont
PY  - 2026
LA  - en
ER  -

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