The distributed complexity of locally checkable problems on paths is decidable
November 05, 2018 Β· Declared Dead Β· π ACM SIGACT-SIGOPS Symposium on Principles of Distributed Computing
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Authors
Alkida Balliu, Sebastian Brandt, Yi-Jun Chang, Dennis Olivetti, MikaΓ«l Rabie, Jukka Suomela
arXiv ID
1811.01672
Category
cs.DC: Distributed Computing
Cross-listed
cs.DS
Citations
35
Venue
ACM SIGACT-SIGOPS Symposium on Principles of Distributed Computing
Last Checked
6 months ago
Abstract
Consider a computer network that consists of a path with $n$ nodes. The nodes are labeled with inputs from a constant-sized set, and the task is to find output labels from a constant-sized set subject to some local constraints---more formally, we have an LCL (locally checkable labeling) problem. How many communication rounds are needed (in the standard LOCAL model of computing) to solve this problem? It is well known that the answer is always either $O(1)$ rounds, or $Ξ(\log^* n)$ rounds, or $Ξ(n)$ rounds. In this work we show that this question is decidable (albeit PSPACE-hard): we present an algorithm that, given any LCL problem defined on a path, outputs the distributed computational complexity of this problem and the corresponding asymptotically optimal algorithm.
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