OpenUnlearning: Accelerating LLM Unlearning via Unified Benchmarking of Methods and Metrics
Abstract
Robust unlearning is crucial for safely deploying large language models (LLMs) in environments where data privacy, model safety, and regulatory compliance must be ensured. Yet the task is inherently challenging, partly due to difficulties in reliably measuring whether unlearning has truly occurred. Moreover, fragmentation in current methodologies and inconsistent evaluation metrics hinder comparative analysis and reproducibility. To unify and accelerate research efforts, we introduce OpenUnlearning, a standardized and extensible framework designed explicitly for benchmarking both LLM unlearning methods and metrics. OpenUnlearning integrates 13 state-of-the-art unlearning algorithms and 16 diverse evaluations across 3 leading benchmarks (TOFU, MUSE, and WMDP) and also enables analyses of forgetting behaviors across 450+ publicly released checkpoints. Leveraging OpenUnlearning, we propose a novel meta-evaluation benchmark focused specifically on assessing the faithfulness and robustness of evaluation metrics themselves. We also benchmark diverse unlearning methods and provide a comparative analysis against an extensive evaluation suite. Overall, we establish a clear, community-driven pathway toward rigorous development in LLM unlearning research.
Cite
Text
Dorna et al. "OpenUnlearning: Accelerating LLM Unlearning via Unified Benchmarking of Methods and Metrics." Advances in Neural Information Processing Systems, 2025.Markdown
[Dorna et al. "OpenUnlearning: Accelerating LLM Unlearning via Unified Benchmarking of Methods and Metrics." Advances in Neural Information Processing Systems, 2025.](https://mlanthology.org/neurips/2025/dorna2025neurips-openunlearning/)BibTeX
@inproceedings{dorna2025neurips-openunlearning,
title = {{OpenUnlearning: Accelerating LLM Unlearning via Unified Benchmarking of Methods and Metrics}},
author = {Dorna, Vineeth and Mekala, Anmol Reddy and Zhao, Wenlong and McCallum, Andrew and Kolter, J Zico and Lipton, Zachary Chase and Maini, Pratyush},
booktitle = {Advances in Neural Information Processing Systems},
year = {2025},
url = {https://mlanthology.org/neurips/2025/dorna2025neurips-openunlearning/}
}