On Regularity Lemma and Barriers in Streaming and Dynamic Matching
Sepehr Assadi, Soheil Behnezhad, Sanjeev Khanna, Huan Li
Abstract
We present a new approach for finding matchings in dense graphs by building on Szemerédi's celebrated Regularity Lemma. This allows us to obtain non-trivial albeit slight improvements over longstanding bounds for matchings in streaming and dynamic graphs. In particular, we establish the following results for n-vertex graphs: • A deterministic single-pass streaming algorithm that finds a (1-o( 1 ))-approximate matching in o(n 2 ) bits of space. This constitutes the first single-pass algorithm for this problem in sublinear space that improves over the 1 /2-approximation of the greedy algorithm. • A randomized fully dynamic algorithm that with high probability maintains a (1o(1))approximate matching in o(n) worst-case update time per each edge insertion or deletion. The algorithm works even against an adaptive adversary. This is the first o(n) update-time dynamic algorithm with approximation guarantee arbitrarily close to one. Given the use of regularity lemma, the improvement obtained by our algorithms over trivial bounds is only by some (log * n) Θ(1) factor. Nevertheless, in each case, they show that the "right" answer to the problem is not what is dictated by the previous bounds. Finally, in the streaming model, we also present a randomized (1o(1))-approximation algorithm whose space can be upper bounded by the density of certain Ruzsa-Szemerédi (RS) graphs. While RS graphs by now have been used extensively to prove streaming lower bounds, ours is the first to use them as an upper bound tool for designing improved streaming algorithms.
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 214d8a18-2530-46b0-9613-6066f9c14520Cited by top-tier papers17
- Dynamic Algorithms for Maximum Matching SizeSoheil BehnezhadSODA 2023 · 14 citations
- Dynamic Maxflow via Dynamic Interior Point MethodsJan van den Brand, Yang P. Liu, Aaron SidfordSTOC 2023 · 5 citations
- Approximability of all finite CSPs with linear sketchesChi-Ning Chou, Alexander Golovnev, Madhu Sudan, Santhoshini VelusamyFOCS 2021 · 5 citations
- Semi-streaming Matching in a Single Pass: A New Framework for Lower Bounds via BlueprintsSepehr Assadi, Max Jiang, Mars XiangSTOC 2026 · 4 citations
- Hidden Permutations to the Rescue: Multi-Pass Streaming Lower Bounds for Approximate MatchingsSepehr Assadi, Janani SundaresanFOCS 2023 · 3 citations
Builds on13
- A Refined Laser Method and Faster Matrix MultiplicationJosh Alman, Virginia Vassilevska WilliamsSODA 2021 · 275 citations
- Towards tight bounds for spectral sparsification of hypergraphsMichael Kapralov, Robert Krauthgamer, Jakab Tardos, Yuichi YoshidaSTOC 2021 · 18 citations
- A framework for dynamic matching in weighted graphsAaron Bernstein, Aditi Dudeja, Zachary LangleySTOC 2021 · 18 citations
- Almost optimal super-constant-pass streaming lower bounds for reachabilityLijie Chen, Gillat Kol, Dmitry Paramonov, Raghuvansh R. Saxena et al.STOC 2021 · 15 citations
- Space Lower Bounds for Approximating Maximum Matching in the Edge Arrival ModelMichael KapralovSODA 2021 · 15 citations
Related papers
- A Two-Pass (Conditional) Lower Bound for Semi-Streaming Maximum MatchingSepehr AssadiSODA 2022 · 7 citations
- Settling the Pass Complexity of Approximate Matchings in Dynamic Graph StreamsSepehr Assadi, Soheil Behnezhad, Christian Konrad, Kheeran K. Naidu et al.SODA 2025 · 2 citations
- Fully Dynamic Matching and Ordered Ruzsa-Szemerédi GraphsSoheil Behnezhad, Alma GhafariFOCS 2024 · 1 citation
- Dynamic Matching with Better-than-2 Approximation in Polylogarithmic Update TimeSayan Bhattacharya, Peter Kiss, Thatchaphol Saranurak, David WajcSODA 2023 · 11 citations
- Dynamic (1+ϵ)-Approximate Matching Size in Truly Sublinear Update TimeSayan Bhattacharya, Peter Kiss, Thatchaphol SaranurakFOCS 2023 · 9 citations
