A Resilient and Accessible Distribution-Preserving Watermark for Large Language Models
- URL: http://arxiv.org/abs/2310.07710v2
- Date: Tue, 25 Jun 2024 07:08:17 GMT
- Title: A Resilient and Accessible Distribution-Preserving Watermark for Large Language Models
- Authors: Yihan Wu, Zhengmian Hu, Junfeng Guo, Hongyang Zhang, Heng Huang,
- Abstract summary: Our research focuses on the importance of a textbfDistribution-textbfPreserving (DiP) watermark.
Contrary to the current strategies, our proposed DiPmark simultaneously preserves the original token distribution during watermarking.
It is detectable without access to the language model API and prompts (accessible), and is provably robust to moderate changes of tokens.
- Score: 65.40460716619772
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: Watermarking techniques offer a promising way to identify machine-generated content via embedding covert information into the contents generated from language models. A challenge in the domain lies in preserving the distribution of original generated content after watermarking. Our research extends and improves upon existing watermarking framework, placing emphasis on the importance of a \textbf{Di}stribution-\textbf{P}reserving (DiP) watermark. Contrary to the current strategies, our proposed DiPmark simultaneously preserves the original token distribution during watermarking (distribution-preserving), is detectable without access to the language model API and prompts (accessible), and is provably robust to moderate changes of tokens (resilient). DiPmark operates by selecting a random set of tokens prior to the generation of a word, then modifying the token distribution through a distribution-preserving reweight function to enhance the probability of these selected tokens during the sampling process. Extensive empirical evaluation on various language models and tasks demonstrates our approach's distribution-preserving property, accessibility, and resilience, making it a effective solution for watermarking tasks that demand impeccable quality preservation.
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