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Exact Bayesian Inference for Loopy Probabilistic Programs using Generating Functions

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arxiv 2307.07314 v4 pith:BKPTZIPL submitted 2023-07-14 cs.PL cs.LO

classification cs.PLcs.LO
keywords inferenceprobabilisticprogramsexactfunctionsgeneratingmethodbayesian
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We present an exact Bayesian inference method for inferring posterior distributions encoded by probabilistic programs featuring possibly unbounded loops. Our method is built on a denotational semantics represented by probability generating functions, which resolves semantic intricacies induced by intertwining discrete probabilistic loops with conditioning (for encoding posterior observations). We implement our method in a tool called Prodigy; it augments existing computer algebra systems with the theory of generating functions for the (semi-)automatic inference and quantitative verification of conditioned probabilistic programs. Experimental results show that Prodigy can handle various infinite-state loopy programs and exhibits comparable performance to state-of-the-art exact inference tools over loop-free benchmarks.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. One Polynomial Strategy for Computing Local Projections on Square-Lattice Cluster States

    quant-ph 2025-06 reject novelty 4.0 of 10

    The note conjectures a polynomial-time recursive method for computing arbitrary local projections on 2D square-lattice cluster states, but the core 2D recursion is not proved and the numerical evidence is too small to...

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