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IGD: Instructional Graphic Design with Multimodal Layer Generation

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arxiv 2507.09910 v1 pith:YDSQ5DHV submitted 2025-07-14 cs.CV

IGD: Instructional Graphic Design with Multimodal Layer Generation

classification cs.CV
keywords designgraphicgenerategenerationimagemultimodaldatafiles
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Graphic design visually conveys information and data by creating and combining text, images and graphics. Two-stage methods that rely primarily on layout generation lack creativity and intelligence, making graphic design still labor-intensive. Existing diffusion-based methods generate non-editable graphic design files at image level with poor legibility in visual text rendering, which prevents them from achieving satisfactory and practical automated graphic design. In this paper, we propose Instructional Graphic Designer (IGD) to swiftly generate multimodal layers with editable flexibility with only natural language instructions. IGD adopts a new paradigm that leverages parametric rendering and image asset generation. First, we develop a design platform and establish a standardized format for multi-scenario design files, thus laying the foundation for scaling up data. Second, IGD utilizes the multimodal understanding and reasoning capabilities of MLLM to accomplish attribute prediction, sequencing and layout of layers. It also employs a diffusion model to generate image content for assets. By enabling end-to-end training, IGD architecturally supports scalability and extensibility in complex graphic design tasks. The superior experimental results demonstrate that IGD offers a new solution for graphic design.

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  1. Graphic-Design-Bench: A Comprehensive Benchmark for Evaluating AI on Graphic Design Tasks

    cs.CV 2026-04 conditional novelty 7.0

    A 49-task layered-design benchmark shows frontier AI models leave most precision-heavy graphic design tasks unsolved, with only two tasks mostly solved.