arXiv:2609.13520v1 Announce Type: new Abstract: While Large Language Models have improved rapidly, many fundamental questions remain about how to evaluate the knowledge and reasoning abilities they acquire, and how such evaluations relate to the learning signals used in pre-training. In this paper, we propose ModelLog, a declarative probabilistic framework for pre-training evaluation that makes the semantic structure of model behavior explicit and provides new formal tools for relating evaluation to learning. ModelLog specifies evaluation targets as symbolic constraints over token-level predictions and measures how strongly a model's distribution satisfies those constraints. We explore the framework through a new suite of tasks targeting negation, mutual exclusivity, and consistency, finding systematic failures that are difficult to characterize through token likelihood or answer accuracy alone. We further show that these evaluation scores can also be interpreted as losses, whose gradients reflect logical strength, informativeness, and variable-level sensitivity. This links evaluation and learning through a shared semantics, suggesting evaluation methods that diagnose model behavior while also helping to clarify the semantic structure of learning.
From Token Probabilities to Semantic Constraints: Towards Declarative Probabilistic Evaluation of Language Models
Researchers proposed ModelLog, a declarative probabilistic framework for pre-training evaluation of large language models that specifies evaluation targets as symbolic constraints over token-level predictions, according to a paper published on arXiv as 2609.13520v1. Testing the framework on a new suite of tasks targeting negation, mutual exclusivity, and consistency, the researchers found systematic failures that token likelihood or answer accuracy alone struggle to characterize. The paper further shows the evaluation scores can be interpreted as losses whose gradients reflect logical strength, informativeness, and variable-level sensitivity, linking evaluation and learning through a shared semantics.
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