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arXiv AI

Agent RL with Spontaneous Code Execution for Mathematical Problem Solving

By Advanced AI EditorMay 15, 2025No Comments2 Mins Read
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[Submitted on 12 May 2025 (v1), last revised 14 May 2025 (this version, v2)]

View a PDF of the paper titled Agent RL Scaling Law: Agent RL with Spontaneous Code Execution for Mathematical Problem Solving, by Xinji Mai and 5 other authors

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Abstract:Large Language Models (LLMs) often struggle with mathematical reasoning tasks requiring precise, verifiable computation. While Reinforcement Learning (RL) from outcome-based rewards enhances text-based reasoning, understanding how agents autonomously learn to leverage external tools like code execution remains crucial. We investigate RL from outcome-based rewards for Tool-Integrated Reasoning, ZeroTIR, training base LLMs to spontaneously generate and execute Python code for mathematical problems without supervised tool-use examples. Our central contribution is we demonstrate that as RL training progresses, key metrics scale predictably. Specifically, we observe strong positive correlations where increased training steps lead to increases in the spontaneous code execution frequency, the average response length, and, critically, the final task accuracy. This suggests a quantifiable relationship between computational effort invested in training and the emergence of effective, tool-augmented reasoning strategies. We implement a robust framework featuring a decoupled code execution environment and validate our findings across standard RL algorithms and frameworks. Experiments show ZeroTIR significantly surpasses non-tool ZeroRL baselines on challenging math benchmarks. Our findings provide a foundational understanding of how autonomous tool use is acquired and scales within Agent RL, offering a reproducible benchmark for future studies. Code is released at \href{this https URL}{this https URL\_async\_pipline}.

Submission history

From: Xinji Mai [view email]
[v1]
Mon, 12 May 2025 17:23:34 UTC (425 KB)
[v2]
Wed, 14 May 2025 04:15:06 UTC (425 KB)



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