English

PolarStar: Expanding the Scalability Horizon of Diameter-3 Networks

Networking and Internet Architecture 2024-08-07 v2 Distributed, Parallel, and Cluster Computing Combinatorics

Abstract

We present PolarStar, a novel family of diameter-3 network topologies derived from the star product of low-diameter factor graphs. PolarStar gives the largest known diameter-3 network topologies for almost all radixes, thus providing the best known scalable diameter-33 network. Compared to current state-of-the-art diameter-33 networks, PolarStar achieves 1.3×1.3\times geometric mean increase in scale over Bundlefly, 1.9×1.9\times over Dragonfly, and 6.7×6.7\times over {3-D} HyperX. PolarStar has many other desirable properties, including a modular layout, large bisection, high resilience to link failures and a large number of feasible configurations for every radix. We give a detailed evaluation with simulations of synthetic and real-world traffic patterns and show that PolarStar exhibits comparable or better performance than current diameter-3 networks.

Keywords

Cite

@article{arxiv.2302.07217,
  title  = {PolarStar: Expanding the Scalability Horizon of Diameter-3 Networks},
  author = {Kartik Lakhotia and Laura Monroe and Kelly Isham and Maciej Besta and Nils Blach and Torsten Hoefler and Fabrizio Petrini},
  journal= {arXiv preprint arXiv:2302.07217},
  year   = {2024}
}

Comments

13 pages, published in SPAA 2024