Consistent Query Answering for Primary Keys and Conjunctive Queries with Counting

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Main Authors: Khalfioui, Aziz Amezian El, Wijsen, Jef
Format: Preprint
Published: 2022
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author Khalfioui, Aziz Amezian El
Wijsen, Jef
author_facet Khalfioui, Aziz Amezian El
Wijsen, Jef
contents The problem of consistent query answering for primary keys and self-join-free conjunctive queries has been intensively studied in recent years and is by now well understood. In this paper, we study an extension of this problem with counting. The queries we consider count how many times each value occurs in a designated (possibly composite) column of an answer to a full conjunctive query. In a setting of database repairs, we adopt the semantics of [Arenas et al., ICDT 2001] which computes tight lower and upper bounds on these counts, where the bounds are taken over all repairs. Ariel Fuxman defined in his PhD thesis a syntactic class of queries, called C_forest, for which this computation can be done by executing two first-order queries (one for lower bounds, and one for upper bounds) followed by simple counting steps. We use the term "parsimonious counting" for this computation. A natural question is whether C_forest contains all self-join-free conjunctive queries that admit parsimonious counting. We answer this question negatively. We define a new syntactic class of queries, called C_parsimony, and prove that it contains all (and only) self-join-free conjunctive queries that admit parsimonious counting.
format Preprint
id arxiv_https___arxiv_org_abs_2211_04134
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Consistent Query Answering for Primary Keys and Conjunctive Queries with Counting
Khalfioui, Aziz Amezian El
Wijsen, Jef
Databases
The problem of consistent query answering for primary keys and self-join-free conjunctive queries has been intensively studied in recent years and is by now well understood. In this paper, we study an extension of this problem with counting. The queries we consider count how many times each value occurs in a designated (possibly composite) column of an answer to a full conjunctive query. In a setting of database repairs, we adopt the semantics of [Arenas et al., ICDT 2001] which computes tight lower and upper bounds on these counts, where the bounds are taken over all repairs. Ariel Fuxman defined in his PhD thesis a syntactic class of queries, called C_forest, for which this computation can be done by executing two first-order queries (one for lower bounds, and one for upper bounds) followed by simple counting steps. We use the term "parsimonious counting" for this computation. A natural question is whether C_forest contains all self-join-free conjunctive queries that admit parsimonious counting. We answer this question negatively. We define a new syntactic class of queries, called C_parsimony, and prove that it contains all (and only) self-join-free conjunctive queries that admit parsimonious counting.
title Consistent Query Answering for Primary Keys and Conjunctive Queries with Counting
topic Databases
url https://arxiv.org/abs/2211.04134