Further Algebraic Algorithms in the Congested Clique Model and Applications to Graph-Theoretic Problems
August 09, 2016 Β· Declared Dead Β· π International Symposium on Distributed Computing
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Authors
FranΓ§ois Le Gall
arXiv ID
1608.02674
Category
cs.DC: Distributed Computing
Cross-listed
cs.DS
Citations
49
Venue
International Symposium on Distributed Computing
Last Checked
5 months ago
Abstract
Censor-Hillel et al. [PODC'15] recently showed how to efficiently implement centralized algebraic algorithms for matrix multiplication in the congested clique model, a model of distributed computing that has received increasing attention in the past few years. This paper develops further algebraic techniques for designing algorithms in this model. We present deterministic and randomized algorithms, in the congested clique model, for efficiently computing multiple independent instances of matrix products, computing the determinant, the rank and the inverse of a matrix, and solving systems of linear equations. As applications of these techniques, we obtain more efficient algorithms for the computation, again in the congested clique model, of the all-pairs shortest paths and the diameter in directed and undirected graphs with small weights, improving over Censor-Hillel et al.'s work. We also obtain algorithms for several other graph-theoretic problems such as computing the number of edges in a maximum matching and the Gallai-Edmonds decomposition of a simple graph, and computing a minimum vertex cover of a bipartite graph.
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