English

Agentic coding without the cloud: evaluating open-weight large language models on longitudinal data preparation tasks

Artificial Intelligence 2026-07-23 v1 Computation and Language

Abstract

Large language models (LLMs) and agents are now widely used tools in code development, with data typically sent to third-party cloud-based models. Their adoption in research using personal data is constrained by governance requirements that typically prohibit data transmission to external services. Locally deployable open-weight models offer an alternative since sensitive data never leave the local environment. We introduce an open-source framework for evaluating the efficacy of AI agents powered by open-weight LLMs on one of the most persistent bottlenecks in research on longitudinal population studies: data preparation. The framework comprises: a curated ground-truth dataset (cleaning scripts preparing six sweeps of data from a British cohort study), task definitions encompassing tasks such as category harmonization and multi-wave merging, and automated routines for evaluating the LLM-produced R code and outputted data. We benchmark LLMs across the (consumer grade) deployment spectrum to assess their efficacy in 20 data preparation tasks (creation of 102 variables). Current state-of-the-art, 31-35B parameter models almost saturated our benchmark ("average task completion" up to 87.9%). The performance of open-weight LLMs running on consumer-grade hardware shows promise of a viable path toward AI-assisted data preparation in governance-restricted research settings. Our framework is publicly available at: https://github.com/UCL-ARC/RRBench.

Cite

@article{arxiv.2607.21482,
  title  = {Agentic coding without the cloud: evaluating open-weight large language models on longitudinal data preparation tasks},
  author = {Mack Nixon and Liam Wright and Yevgeniya Kovalchuk and Alison Fang-Wei Wu and Martin Danka and Andy Boyd and David Bann},
  journal= {arXiv preprint arXiv:2607.21482},
  year   = {2026}
}