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PromptFix: You Prompt and We Fix the Photo

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arxiv 2405.16785 v2 pith:ASNAF3BN submitted 2024-05-27 cs.CV

classification cs.CV
keywords tasksmodelsimagediffusionimage-processinginstructionspromptfixcomprehensive
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Diffusion models equipped with language models demonstrate excellent controllability in image generation tasks, allowing image processing to adhere to human instructions. However, the lack of diverse instruction-following data hampers the development of models that effectively recognize and execute user-customized instructions, particularly in low-level tasks. Moreover, the stochastic nature of the diffusion process leads to deficiencies in image generation or editing tasks that require the detailed preservation of the generated images. To address these limitations, we propose PromptFix, a comprehensive framework that enables diffusion models to follow human instructions to perform a wide variety of image-processing tasks. First, we construct a large-scale instruction-following dataset that covers comprehensive image-processing tasks, including low-level tasks, image editing, and object creation. Next, we propose a high-frequency guidance sampling method to explicitly control the denoising process and preserve high-frequency details in unprocessed areas. Finally, we design an auxiliary prompting adapter, utilizing Vision-Language Models (VLMs) to enhance text prompts and improve the model's task generalization. Experimental results show that PromptFix outperforms previous methods in various image-processing tasks. Our proposed model also achieves comparable inference efficiency with these baseline models and exhibits superior zero-shot capabilities in blind restoration and combination tasks. The dataset and code are available at https://www.yongshengyu.com/PromptFix-Page.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. DiffDecompose: Layer-Wise Decomposition of Alpha-Composited Images via Diffusion Transformers

    cs.CV 2025-05 conditional novelty 6.0 of 10

    DiffDecompose recovers foreground and background layers from alpha-composited images using in-context diffusion with position encoding cloning, trained and evaluated on a new six-task synthetic dataset.

  2. SeedEdit 3.0: Fast and High-Quality Generative Image Editing

    cs.CV 2025-06 conditional novelty 4.0 of 10

    SeedEdit 3.0 reports a 56.1% usability rate on internal real-image editing tests, beating SeedEdit 1.6, GPT-4o, and Gemini 2.0, with 8x faster inference after distillation and quantization.

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