English

DatBench: Discriminative, Faithful, and Efficient VLM Evaluations

Machine Learning 2026-01-15 v2 Artificial Intelligence

Abstract

Empirical evaluation serves as the primary compass guiding research progress in foundation models. Despite a large body of work focused on training frontier vision-language models (VLMs), approaches to their evaluation remain nascent. To guide their maturation, we propose three desiderata that evaluations should satisfy: (1) faithfulness to the modality and application, (2) discriminability between models of varying quality, and (3) efficiency in compute. Through this lens, we identify critical failure modes that violate faithfulness and discriminability, misrepresenting model capabilities: (i) multiple-choice formats reward guessing, poorly reflect downstream use cases, and saturate early as models improve; (ii) blindly solvable questions, which can be answered without images, constitute up to 70% of some evaluations; and (iii) mislabeled or ambiguous samples compromise up to 42% of examples in certain datasets. Regarding efficiency, the computational burden of evaluating frontier models has become prohibitive: by some accounts, nearly 20% of development compute is devoted to evaluation alone. Rather than discarding existing benchmarks, we curate them via transformation and filtering to maximize fidelity and discriminability. We find that converting multiple-choice questions to generative tasks reveals sharp capability drops of up to 35%. In addition, filtering blindly solvable and mislabeled samples improves discriminative power while simultaneously reducing computational cost. We release DatBench-Full, a cleaned evaluation suite of 33 datasets spanning nine VLM capabilities, and DatBench, a discriminative subset that achieves 13x average speedup (up to 50x) while closely matching the discriminative power of the original datasets. Our work outlines a path toward evaluation practices that are both rigorous and sustainable as VLMs continue to scale.

Keywords

Cite

@article{arxiv.2601.02316,
  title  = {DatBench: Discriminative, Faithful, and Efficient VLM Evaluations},
  author = {DatologyAI and : and Siddharth Joshi and Haoli Yin and Rishabh Adiga and Ricardo Monti and Aldo Carranza and Alex Fang and Alvin Deng and Amro Abbas and Brett Larsen and Cody Blakeney and Darren Teh and David Schwab and Fan Pan and Haakon Mongstad and Jack Urbanek and Jason Lee and Jason Telanoff and Josh Wills and Kaleigh Mentzer and Luke Merrick and Parth Doshi and Paul Burstein and Pratyush Maini and Scott Loftin and Spandan Das and Tony Jiang and Vineeth Dorna and Zhengping Wang and Bogdan Gaza and Ari Morcos and Matthew Leavitt},
  journal= {arXiv preprint arXiv:2601.02316},
  year   = {2026}
}
R2 v1 2026-07-01T08:51:17.384Z