Equivariance Everywhere All At Once: A Recipe for Graph Foundation Models
Ben Finkelshtein, Ismail Ilkan Ceylan, Michael M. Bronstein, Ron Levie
Abstract
Graph machine learning architectures are typically tailored to specific tasks on specific datasets, which hinders their broader applicability. This has led to a new quest in graph machine learning: how to build graph foundation models (GFMs) capable of generalizing across arbitrary graphs and features? In this work, we present a recipe for designing GFMs for node-level tasks from first principles. The key ingredient underpinning our study is a systematic investigation of the symmetries that a graph foundation model must respect. In a nutshell, we argue that label permutation-equivariance alongside feature permutation-invariance are necessary in addition to the common node permutation-equivariance on each local neighborhood of the graph. To this end, we first characterize the space of linear transformations that are equivariant to permutations of nodes and labels, and invariant to permutations of features. We then prove that the resulting network is a universal approximator on multisets that respect the aforementioned symmetries. Our recipe uses such layers on the multiset of features induced by the local neighborhood of the graph to obtain a class of graph foundation models for node property prediction. We validate our approach through extensive experiments on 29 real-world node classification datasets, demonstrating both strong zero-shot empirical performance and consistent improvement as the number of training graphs increases. +C) . That is, σ F permutes the first F columns (features), σ C permutes the last C columns (labels), and σ N permutes the rows.
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Cited by top-tier papers5
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- Actions Speak Louder than Prompts: A Large-Scale Study of LLMs for Graph InferenceBen Finkelshtein, Silviu Cucerzan, Sujay Kumar Jauhar, Ryen W WhiteICLR 2026 · 5 citations
- Node4All: Learning Node Representation Beyond DatasetsDooho Lee, Jaemin YooKDD 2026 · 2 citations
- On the Expressive Power of Permutation-Equivariant Weight-Space NetworksAdir Dayan, Yam Eitan, Haggai MaronICML 2026
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