Hop-constrained oblivious routing
Mohsen Ghaffari, Bernhard Haeupler, Goran Zuzic
Abstract
We prove the existence of an oblivious routing scheme that is poly(log n)-competitive in terms of (congestion + dilation), thus resolving a well-known question in oblivious routing. Concretely, consider an undirected network and a set of packets each with its own source and destination. The objective is to choose a path for each packet, from its source to its destination, so as to minimize (congestion + dilation), defined as follows: The dilation is the maximum path hop-length, and the congestion is the maximum number of paths that include any single edge. The routing scheme obliviously and randomly selects a path for each packet independent of (the existence of) the other packets. Despite this obliviousness, the selected paths have (congestion + dilation) within a poly(log n) factor of the best possible value. More precisely, for any integer hop-constraint h, this oblivious routing scheme selects paths of length at most h • poly(log n) and is poly(log n)-competitive in terms of congestion in comparison to the best possible congestion achievable via paths of length at most h hops. These paths can be sampled in polynomial time. This result can be viewed as an analogue of the celebrated oblivious routing results of Räcke [FOCS 2002, STOC 2008], which are O(log n)-competitive in terms of congestion, but are not competitive in terms of dilation.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 1bd8f90a-b740-491e-b908-52bbd9bd4363Cited by top-tier papers11
- Achieving Resilient and Performance-Guaranteed Routing in Space-Terrestrial Integrated NetworksZeqi Lai, Hewu Li, Yikun Wang, Qian Wu et al.INFOCOM 2023 · 49 citations
- Deterministic Decremental SSSP and Approximate Min-Cost Flow in Almost-Linear TimeAaron Bernstein, Maximilian Probst Gutenberg, Thatchaphol SaranurakFOCS 2021 · 27 citations
- Hop-Constrained Metric Embeddings and their ApplicationsArnold FiltserFOCS 2021 · 9 citations
- Universally-Optimal Distributed Shortest Paths and Transshipment via Graph-Based ℓ1-Oblivious RoutingGoran Zuzic, Gramoz Goranci, Mingquan Ye, Bernhard Haeupler et al.SODA 2022 · 7 citations
- Deterministic Low-Diameter Decompositions for Weighted Graphs and Distributed and Parallel ApplicationsVáclav Rozhon, Michael Elkin, Christoph Grunau, Bernhard HaeuplerFOCS 2022 · 5 citations
Builds on2
Related papers
- Polylog-Competitive Deterministic Local Routing and SchedulingBernhard Haeupler, Shyamal Patel, Antti Roeyskoe, Cliff Stein et al.STOC 2024
- Breaking the VLB Barrier for Oblivious Reconfigurable NetworksTegan Wilson, Daniel Amir, Nitika Saran, Robert Kleinberg et al.STOC 2024 · 3 citations
- Congestion-Approximators from the Bottom UpJason Li, Satish Rao, Di WangSODA 2025 · 3 citations
- Parallel approximate undirected shortest paths via low hop emulatorsAlexandr Andoni, Clifford Stein, Peilin ZhongSTOC 2020 · 50 citations
- Maximum Length-Constrained Flows and Disjoint Paths: Distributed, Deterministic, and FastBernhard Haeupler, D. Ellis Hershkowitz, Thatchaphol SaranurakSTOC 2023 · 6 citations
