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Order Matters: Investigate the Position Bias in Multi-constraint Instruction Following

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arxiv 2502.17204 v2 pith:7XW3VTMC submitted 2025-02-24 cs.CL cs.AI

classification cs.CLcs.AI
keywords constraintsllmsorderbiasdifferentdifficultydistributionexisting
verification ladder T0 review T1 audit T2 compute T3 formal
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Real-world instructions with multiple constraints pose a significant challenge to existing large language models (LLMs). An observation is that the LLMs exhibit dramatic performance fluctuation when disturbing the order of the incorporated constraints. Yet, none of the existing works has systematically investigated this position bias problem in the field of multi-constraint instruction following. To bridge this gap, we design a probing task where we quantitatively measure the difficulty distribution of the constraints by a novel Difficulty Distribution Index (CDDI). Through the experimental results, we find that LLMs are more performant when presented with the constraints in a ``hard-to-easy'' order. This preference can be generalized to LLMs with different architecture or different sizes of parameters. Additionally, we conduct an explanation study, providing an intuitive insight into the correlation between the LLM's attention and constraint orders. Our code and dataset are publicly available at https://github.com/meowpass/PBIF.

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  1. How Many Instructions Can LLMs Follow at Once?

    cs.AI 2025-07 conditional novelty 6.0 of 10

    IFScale measures instruction-following at densities from 10 to 500 constraints and finds that even top frontier models satisfy only about two-thirds of 500 simultaneous keyword instructions.

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