Vero: An Open RL Recipe for General Visual Reasoning

Fuente: arXiv
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Main Authors: Sarch, Gabriel, Cai, Linrong, Wang, Qunzhong, Wu, Haoyang, Chen, Danqi, Liu, Zhuang
Format: Preprint
Published: 2026
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author Sarch, Gabriel
Cai, Linrong
Wang, Qunzhong
Wu, Haoyang
Chen, Danqi
Liu, Zhuang
author_facet Sarch, Gabriel
Cai, Linrong
Wang, Qunzhong
Wu, Haoyang
Chen, Danqi
Liu, Zhuang
contents What does it take to build a visual reasoner that works across charts, science, spatial understanding, and open-ended tasks? The strongest vision-language models (VLMs) show such broad visual reasoning is within reach, but the recipe behind them remains unclear, locked behind proprietary reinforcement learning (RL) pipelines with non-public data. We introduce Vero, a family of fully open VLMs that matches or exceeds existing open-weight models across diverse visual reasoning tasks. We scale RL data and rewards across six broad task categories, constructing Vero-600K, a 600K-sample dataset from 59 datasets, and designing task-routed rewards that handle heterogeneous answer formats. Vero achieves state-of-the-art performance, improving over four base models by 3.6-5.3 points on average across VeroEval, our suite of 30 challenging benchmarks. Starting from Qwen3-VL-8B-Instruct, Vero outperforms Qwen3-VL-8B-Thinking on 23 of 30 benchmarks without additional proprietary thinking data. When trained from the same base model, Vero-600K exceeds existing RL datasets across task categories. Systematic ablations reveal that different task categories elicit qualitatively distinct reasoning patterns that transfer poorly in isolation, suggesting that broad data coverage is the primary driver of strong RL scaling. All data, code, and models are released.
format Preprint
id arxiv_https___arxiv_org_abs_2604_04917
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Vero: An Open RL Recipe for General Visual Reasoning
Sarch, Gabriel
Cai, Linrong
Wang, Qunzhong
Wu, Haoyang
Chen, Danqi
Liu, Zhuang
Computer Vision and Pattern Recognition
Artificial Intelligence
Computation and Language
What does it take to build a visual reasoner that works across charts, science, spatial understanding, and open-ended tasks? The strongest vision-language models (VLMs) show such broad visual reasoning is within reach, but the recipe behind them remains unclear, locked behind proprietary reinforcement learning (RL) pipelines with non-public data. We introduce Vero, a family of fully open VLMs that matches or exceeds existing open-weight models across diverse visual reasoning tasks. We scale RL data and rewards across six broad task categories, constructing Vero-600K, a 600K-sample dataset from 59 datasets, and designing task-routed rewards that handle heterogeneous answer formats. Vero achieves state-of-the-art performance, improving over four base models by 3.6-5.3 points on average across VeroEval, our suite of 30 challenging benchmarks. Starting from Qwen3-VL-8B-Instruct, Vero outperforms Qwen3-VL-8B-Thinking on 23 of 30 benchmarks without additional proprietary thinking data. When trained from the same base model, Vero-600K exceeds existing RL datasets across task categories. Systematic ablations reveal that different task categories elicit qualitatively distinct reasoning patterns that transfer poorly in isolation, suggesting that broad data coverage is the primary driver of strong RL scaling. All data, code, and models are released.
title Vero: An Open RL Recipe for General Visual Reasoning
topic Computer Vision and Pattern Recognition
Artificial Intelligence
Computation and Language
url https://arxiv.org/abs/2604.04917