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Routing by Reasoning Need: Trajectory-Aware Decoding Control for Diffusion Vision-Language Models

arxiv.org/abs/2609.11315

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Updated 56 min ago · first seen 12 Sept 2026

paper_01M29X34KFMAX8SRZBPX5GFMSK

Published
12 Sept 2026
T1 · 56 min ago
arXiv
2609.11315
T1 · 56 min ago
Category
cs.AI
T1 · 56 min ago

Abstract

Diffusion vision-language models generate answers through iterative refinement, exposing intermediate answer trajectories that can be inspected and controlled at inference time. However, this controllability creates a reasoning-need mismatch, where a universal generation length is applied to questions with different reasoning demands. Visually closed questions may be harmed by continued refinement after a stable answer has formed, whereas reasoning-sensitive questions may be harmed by premature commitment. We formulate this problem as reasoning-budget mismatch and study it in LLaDA-V. Rather than choosing a universal generation length, our training-free controller routes each example to early commitment, baseline preservation, or reasoning-supportive decoding using trajectory signals from answer closure, commitment evidence, and representation revision pressure, without using ground-truth answers. Across answer-focused, mixed-reasoning, and CoT-sensitive benchmarks, routed control improves robustness over fixed long decoding, pure short decoding, and single-rule interventions. The gains are not explained by shorter outputs alone. Answer-closed examples often benefit from commitment, whereas CoT-sensitive examples require preserving or supporting intermediate reasoning. Taken together, these results suggest diffusion VLM decoding should route inference-time control by the state suggested by the observed trajectory instead of relying on a universal decoding length.

Authors 4

Xiaoying Tang, Yixiang Liu, Zhonghua Wang, Zhongxing Xu

Specification

Official page

Source:arXiv (Atom API + RSS)T1observed 56 min agohigh

Arxiv announce type
new

Source:arXiv (Atom API + RSS)T1observed 56 min agohigh

arXiv id
2609.11315

Source:arXiv (Atom API + RSS)T1observed 56 min agohigh

Categories
cs.AI

Source:arXiv (Atom API + RSS)T1observed 56 min agohigh

PDF

Source:arXiv (Atom API + RSS)T1observed 56 min agohigh

Primary category
cs.AI

Source:arXiv (Atom API + RSS)T1observed 56 min agohigh

Published
12 Sept 2026

Source:arXiv (Atom API + RSS)T1observed 56 min agohigh

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Provenance

Attributed facts

9

Source tiers

T19

Freshest observation

56 min ago

Conflicts

None