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Beyond Token-level Supervision: Unlocking the Potential of Decoding-based Regression via Reinforcement Learning

Machine Learning 2025-12-09 v1 Artificial Intelligence

Abstract

Decoding-based regression, which reformulates regression as a sequence generation task, has emerged as a promising paradigm of applying large language models for numerical prediction. However, its progress is hindered by the misalignment between discrete token-level objectives (e.g., cross-entropy) and continuous numerical values. Existing approaches relying on token-level constraints often fail to capture the global magnitude of the target value, limiting their precision and generalization. In this paper, we propose to unlock the potential of decoding-based regression via Reinforcement Learning (RL). We formulate the generation process as a Markov Decision Process, utilizing sequence-level rewards to enforce global numerical coherence. Extensive experiments on tabular regression and code metric regression demonstrate that our method (specifically with ReMax and GRPO) consistently outperforms both state-of-the-art token-level baselines and traditional regression heads, showing the superiority of introducing sequence-level signals. Our analysis further reveals that RL significantly enhances sampling efficiency and predictive precision, establishing decoding-based regression as a robust and accurate paradigm for general-purpose numerical prediction.

Keywords

Cite

@article{arxiv.2512.06533,
  title  = {Beyond Token-level Supervision: Unlocking the Potential of Decoding-based Regression via Reinforcement Learning},
  author = {Ming Chen and Sheng Tang and Rong-Xi Tan and Ziniu Li and Jiacheng Chen and Ke Xue and Chao Qian},
  journal= {arXiv preprint arXiv:2512.06533},
  year   = {2025}
}
R2 v1 2026-07-01T08:13:09.913Z