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Symmetric Weighted First-Order Model Counting

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arxiv 1412.1505 v3 pith:QXGX6KV5 submitted 2014-12-03 cs.DB cs.AIcs.CCcs.LO

classification cs.DBcs.AIcs.CCcs.LO
keywords complexitywfomcfomccombineddatamodelproblemprove
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The FO Model Counting problem (FOMC) is the following: given a sentence $\Phi$ in FO and a number $n$, compute the number of models of $\Phi$ over a domain of size $n$; the Weighted variant (WFOMC) generalizes the problem by associating a weight to each tuple and defining the weight of a model to be the product of weights of its tuples. In this paper we study the complexity of the symmetric WFOMC, where all tuples of a given relation have the same weight. Our motivation comes from an important application, inference in Knowledge Bases with soft constraints, like Markov Logic Networks, but the problem is also of independent theoretical interest. We study both the data complexity, and the combined complexity of FOMC and WFOMC. For the data complexity we prove the existence of an FO$^{3}$ formula for which FOMC is #P$_1$-complete, and the existence of a Conjunctive Query for which WFOMC is #P$_1$-complete. We also prove that all $\gamma$-acyclic queries have polynomial time data complexity. For the combined complexity, we prove that, for every fragment FO$^{k}$, $k\geq 2$, the combined complexity of FOMC (or WFOMC) is #P-complete.

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Cited by 1 Pith paper

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  1. Uniform Reliability of Self-Join-Free Conjunctive Queries

    cs.DB 2019-08 conditional novelty 7.0 of 10

    Uniform reliability (counting satisfying subsets) for self-join-free conjunctive queries is #P-complete for every non-hierarchical query and polynomial-time for every hierarchical query.

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