English

\~Optimal Fault-Tolerant Labeling for Reachability and Approximate Distances in Directed Planar Graphs

Data Structures and Algorithms 2025-03-25 v1 Distributed, Parallel, and Cluster Computing

Abstract

We present a labeling scheme that assigns labels of size O~(1)\tilde O(1) to the vertices of a directed weighted planar graph GG, such that for any fixed ε>0\varepsilon>0 from the labels of any three vertices ss, tt and ff one can determine in O~(1)\tilde O(1) time a (1+ε)(1+\varepsilon)-approximation of the ss-to-tt distance in the graph G{f}G\setminus\{f\}. For approximate distance queries, prior to our work, no efficient solution existed, not even in the centralized oracle setting. Even for the easier case of reachability, O~(1)\tilde O(1) queries were known only with a centralized oracle of size O~(n)\tilde O(n) [SODA 21].

Keywords

Cite

@article{arxiv.2503.18474,
  title  = {\~Optimal Fault-Tolerant Labeling for Reachability and Approximate Distances in Directed Planar Graphs},
  author = {Itai Boneh and Shiri Chechik and Shay Golan and Shay Mozes and Oren Weimann},
  journal= {arXiv preprint arXiv:2503.18474},
  year   = {2025}
}

Comments

To appear in STOC 2025