arXiv · 1411.7747
A Characterization of hard-to-cover CSPs
Abstract
We continue the study of the covering complexity of constraint satisfaction problems (CSPs) initiated by Guruswami, Håstad and Sudan [SIAM J. Comp. 2002] and Dinur and Kol [CCC'13]. The covering number of a CSP instance $Φ$ is the smallest number of assignments to the variables of $Φ$, such that each constraint of $Φ$ is satisfied by at least one of the assignments. We show the following results: 1. Assuming a covering variant of the Unique Games Conjecture, introduced by Dinur and Kol, we show that for every non-odd predicate $P$ over any constant-size alphabet and every integer $K$, it is NP-hard to approximate the covering number within a factor of $K$. This yields a complete characterization of CSPs over constant-size alphabets that are hard to cover. 2. For a large class of predicates that are contained in the 2k-LIN predicate, we show that it is quasi-NP-hard to distinguish between instances with covering number at most $2$ and those with covering number at least $Ω(\log\log n)$. This generalizes and improves the 4-LIN covering hardness result of Dinur and Kol.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Amey Bhangale, Prahladh Harsha, Girish Varma. 2021-01-03. A Characterization of hard-to-cover CSPs. https://doi.org/10.4086/toc.2020.v016a016%2C%2010.4230%2Flipics.ccc.2015.280
Cite the original work for its findings. Save a collection to share your selection of sources.