嵌入式图数据库的数据路径查询

Diego Figueira, Artur Jeż, A. Lin
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引用次数: 3

摘要

本文在嵌入式有限模型理论的经典背景下,开始研究数据路径查询语言(特别是正则数据路径查询(RDPQ)和合取RDPQ (CRDPQ)),其中每个图都被“嵌入”到一个背景无限结构中(具有可确定的FO理论或其片段)。我们的目标是解决现有数据路径查询语言目前缺乏对类型化属性数据(例如整数运算)的支持的问题,这在实践中是至关重要的。我们提出了对寄存器自动机的扩展,允许对理论和数据库的强大约束作为保护,并具有两种类型的寄存器:可以存储来自活动域的值的寄存器和可以存储任意值的只读寄存器。我们证明了(C)RDPQ在Presburger算法、实闭域、自动结构存在论和正则约束词方程上的NL数据复杂性。所有这些结果都严格扩展了RDPQ已知的NL数据复杂度,仅使用相等比较,并提供了Libkin等人最近提出的一个开放问题的答案。其中,我们介绍了一种关键的证明技术,用于获得嵌入式图数据库上数据路径查询的NL数据复杂性,称为“受限寄存器崩溃(RRC)”,灵感来自嵌入式有限模型理论中的受限量词崩溃(RQC)概念。
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Data Path Queries over Embedded Graph Databases
This paper initiates the study of data-path query languages (in particular, regular data path queries (RDPQ) and conjunctive RDPQ (CRDPQ)) in the classic setting of embedded finite model theory, wherein each graph is "embedded" into a background infinite structure (with a decidable FO theory or fragments thereof). Our goal is to address the current lack of support for typed attribute data (e.g. integer arithmetics) in existing data-path query languages, which are crucial in practice. We propose an extension of register automata by allowing powerful constraints over the theory and the database as guards, and having two types of registers: registers that can store values from the active domain, and read-only registers that can store arbitrary values. We prove NL data complexity for (C)RDPQ over the Presburger arithmetic, the real-closed field, the existential theory of automatic structures and word equations with regular constraints. All these results strictly extend the known NL data complexity of RDPQ with only equality comparisons, and provides an answer to a recent open problem posed by Libkin et al. Among others, we introduce one crucial proof technique for obtaining NL data complexity for data path queries over embedded graph databases called "Restricted Register Collapse (RRC)", inspired by the notion of Restricted Quantifier Collapse (RQC) in embedded finite model theory.
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