arXiv · 2607.16266
Composable Verification Pipelines for Multi-Agent Systems
Abstract
Existing approaches for reasoning about action and change provide expressive semantics for modeling dynamic systems, in most cases built on top of logic programming systems. We introduce a modular framework for transition and trajectory verification based on Tiles and implemented in Soda, which is an efficient functional programming language. The framework operationalizes action language semantics through executable verification pipelines that process states, actions, transitions, and rules as compositional functional components. Verification procedures are represented as typed functional pipelines, enabling modular specifications, reusable reasoning components, and transparent execution workflows with guaranteed pipeline termination. The framework includes an executable specification layer that allows users to define domain descriptions in YAML, which are operationalized into the underlying verification model and executable pipeline structure. We provide an open-source implementation and illustrate the framework through examples that involve misinformation and emotional reasoning.
Explore related subjects
Keep this discovery
Julian Alfredo Mendez, Andreas Brännström. 2026-07-03. Composable Verification Pipelines for Multi-Agent Systems. https://arxiv.org/abs/2607.16266
Cite the original work for its findings. Save a collection to share your selection of sources.