Optimizing RPQs over a compact graph representation

Loading...
Thumbnail Image

Identifiers

Publication date

Authors

Arroyuelo, Diego
Hogan, Aidan
Navarro, Gonzalo
Rojas-Ledesma, Javiel

Advisors

Other responsabilities

Journal Title

Bibliographic citation

Arroyuelo, D., Gómez-Brandón, A., Hogan, A. et al. Optimizing RPQs over a compact graph representation. The VLDB Journal 33, 349–374 (2024). https://doi.org/10.1007/s00778-023-00811-2

Type of academic work

Academic degree

Abstract

[Absctract]: We propose techniques to evaluate regular path queries (RPQs) over labeled graphs (e.g., RDF). We apply a bit-parallel simulation of a Glushkov automaton representing the query over a ring: a compact wavelet-tree-based index of the graph. To the best of our knowledge, our approach is the first to evaluate RPQs over a compact representation of such graphs, where we show the key advantages of using Glushkov automata in this setting. Our scheme obtains optimal time, in terms of alternation complexity, for traversing the product graph. We further introduce various optimizations, such as the ability to process several automaton states and graph nodes/labels simultaneously, and to estimate relevant selectivities. Experiments show that our approach uses 3–5X less space, and is over 5 X faster, on average, than the next best state-of-the-art system for evaluating RPQs.

Description

©2023 This version of the article has been accepted for publication, after peer review and is subject to Springer Nature’s AM terms of use, but is not the Version of Record and does not reflect post-acceptance improvements, or any corrections. The Version of Record is available online at: https://doi.org/10.1007/s00778-023-00811-2

Rights