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Waterfall: Framework for Robust and Scalable Text Watermarking and Provenance for LLMs
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Protecting intellectual property (IP) of text such as articles and code is increasingly important, especially as sophisticated attacks become possible, such as paraphrasing by large language models (LLMs) or even unauthorized training of LLMs on copyrighted text to infringe such IP. However, existing text watermarking methods are not robust enough against such attacks nor scalable to millions of users for practical implementation. In this paper, we propose Waterfall, the first training-free framework for robust and scalable text watermarking applicable across multiple text types (e.g., articles, code) and languages supportable by LLMs, for general text and LLM data provenance. Waterfall comprises several key innovations, such as being the first to use LLM as paraphrasers for watermarking along with a novel combination of techniques that are surprisingly effective in achieving robust verifiability and scalability. We empirically demonstrate that Waterfall achieves significantly better scalability, robust verifiability, and computational efficiency compared to SOTA article-text watermarking methods, and showed how it could be directly applied to the watermarking of code. We also demonstrated that Waterfall can be used for LLM data provenance, where the watermarks of LLM training data can be detected in LLM output, allowing for detection of unauthorized use of data for LLM training and potentially enabling model-centric watermarking of open-sourced LLMs which has been a limitation of existing LLM watermarking works. Our code is available at https://github.com/aoi3142/Waterfall.
Forward citations
Cited by 4 Pith papers
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Paladin: Defending LLM-enabled Phishing Emails with a New Trigger-Tag Paradigm
A trigger-tag watermark embedded by fine-tuning lets modified LLMs mark their own phishing outputs for cheap detection.
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Can Watermarking Techniques Help Prevent LLM Model Stealing?
Softplus-then-perturb with embedding-seeded Gaussian noise defeats PCA/averaging/RPCA dimension-extraction attacks on Mistral-7B and GPT-2 with only modest quality loss.
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Robust Multi-bit Text Watermark with LLM-based Paraphrasers
A multi-bit text watermark is encoded by alternating two LLM paraphrasers per sentence, decoded by a trained classifier, and shown robust to word substitution and paraphrasing attacks.
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When Only the Final Text Survives: Implicit Execution Tracing for Multi-Agent Auditing
Per-agent watermark-style signals embedded during generation allow segment-level attribution and transition recovery from final text alone.
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