English

Undirected $(1+\varepsilon)$-Shortest Paths via Minor-Aggregates: Near-Optimal Deterministic Parallel & Distributed Algorithms

Data Structures and Algorithms 2022-09-26 v2 Distributed, Parallel, and Cluster Computing

Abstract

This paper presents near-optimal deterministic parallel and distributed algorithms for computing (1+ε)(1+\varepsilon)-approximate single-source shortest paths in any undirected weighted graph. On a high level, we deterministically reduce this and other shortest-path problems to O~(1)\tilde{O}(1) Minor-Aggregations. A Minor-Aggregation computes an aggregate (e.g., max or sum) of node-values for every connected component of some subgraph. Our reduction immediately implies: Optimal deterministic parallel (PRAM) algorithms with O~(1)\tilde{O}(1) depth and near-linear work. Universally-optimal deterministic distributed (CONGEST) algorithms, whenever deterministic Minor-Aggregate algorithms exist. For example, an optimal O~(HopDiameter(G))\tilde{O}(HopDiameter(G))-round deterministic CONGEST algorithm for excluded-minor networks. Several novel tools developed for the above results are interesting in their own right: A local iterative approach for reducing shortest path computations "up to distance DD" to computing low-diameter decompositions "up to distance D2\frac{D}{2}". Compared to the recursive vertex-reduction approach of [Li20], our approach is simpler, suitable for distributed algorithms, and eliminates many derandomization barriers. A simple graph-based O~(1)\tilde{O}(1)-competitive 1\ell_1-oblivious routing based on low-diameter decompositions that can be evaluated in near-linear work. The previous such routing [ZGY+20] was no(1)n^{o(1)}-competitive and required no(1)n^{o(1)} more work. A deterministic algorithm to round any fractional single-source transshipment flow into an integral tree solution. The first distributed algorithms for computing Eulerian orientations.

Keywords

Cite

@article{arxiv.2204.05874,
  title  = {Undirected $(1+\varepsilon)$-Shortest Paths via Minor-Aggregates: Near-Optimal Deterministic Parallel & Distributed Algorithms},
  author = {Václav Rozhoň and Christoph Grunau and Bernhard Haeupler and Goran Zuzic and Jason Li},
  journal= {arXiv preprint arXiv:2204.05874},
  year   = {2022}
}
R2 v1 2026-06-24T10:45:59.892Z