activity
20172026
most citedShapeAssembly: Learning to Generate Programs for 3D Shape Structure Synthesis

79 citations · 278 across the 21 of their papers we have counts for

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15 papers · 1 filter

cs.GR2023★ 4 cited

ShapeCoder: Discovering Abstractions for Visual Programs from Unstructured Primitives

R. Kenny Jones, Paul Guerrero, Niloy J. Mitra +1

Programs are an increasingly popular representation for visual data, exposing compact, interpretable structure that supports manipulation. Visual programs are usually written in do…

cs.GR2023★ 26 cited

Generating Procedural Materials from Text or Image Prompts

Yiwei Hu, Paul Guerrero, Miloš Hašan +2

Node graph systems are used ubiquitously for material design in computer graphics. They allow the use of visual programming to achieve desired effects without writing code. As high…

cs.GR2023

Neurosymbolic Models for Computer Graphics

Daniel Ritchie, Paul Guerrero, R. Kenny Jones +4

Procedural models (i.e. symbolic programs that output visual data) are a historically-popular method for representing graphics content: vegetation, buildings, textures, etc. They o…

cs.GR2022★ 44 cited

MatFormer: A Generative Model for Procedural Materials

Paul Guerrero, Miloš Hašan, Kalyan Sunkavalli +3

Procedural material graphs are a compact, parameteric, and resolution-independent representation that are a popular choice for material authoring. However, designing procedural mat…

cs.GR2022★ 21 cited

Node Graph Optimization Using Differentiable Proxies

Yiwei Hu, Paul Guerrero, Miloš Hašan +2

Graph-based procedural materials are ubiquitous in content production industries. Procedural models allow the creation of photorealistic materials with parametric control for flexi…

cs.GR2022

Controlling Material Appearance by Examples

Yiwei Hu, Miloš Hašan, Paul Guerrero +2

Despite the ubiquitousness of materials maps in modern rendering pipelines, their editing and control remains a challenge. In this paper, we present an example-based material contr…