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Executable First-order Queries in the Logic of Information Flows

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Titel
Executable First-order Queries in the Logic of Information Flows
Serientitel
Anzahl der Teile
25
Autor
Lizenz
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Identifikatoren
Herausgeber
Erscheinungsjahr2020
SpracheEnglisch

Inhaltliche Metadaten

Fachgebiet
Genre
Abstract
The logic of information flows (LIF) has recently been proposed as a general framework in the field of knowledge representation. In this framework, tasks of a procedural nature can still be modeled in a declarative, logic-based fashion. In this paper, we focus on the task of query processing under limited access patterns, a well-studied problem in the database literature. We show that LIF is well-suited for modeling this task. Toward this goal, we introduce a variant of LIF called "forward" LIF, in a first-order setting. We define FLIF^io, a syntactical fragment of forward LIF, and show that it corresponds exactly to the "executable" fragment of first-order logic defined by Nash and Ludäscher. The definition of FLIF^io involves a classification of the free variables of an expression into "input" and "output" variables. Our result hinges on inertia and determinacy laws for forward LIF expressions, which are interesting in their own right. These laws are formulated in terms of the input and output variables.