The Configurable SAT Solver Challenge (CSSC)
نویسندگان
چکیده
It is well known that different solution strategies work well for different types of instances of hard combinatorial problems. As a consequence, most solvers for the propositional satisfiability problem (SAT) expose parameters that allow them to be customized to a particular family of instances. In the international SAT competition series, these parameters are ignored: solvers are run using a single default parameter setting (supplied by the authors) for all benchmark instances in a given track. While this competition format rewards solvers with robust default settings, it does not reflect the situation faced by a practitioner who only cares about performance on one particular application and can invest some time into tuning solver parameters for this application. The new Configurable SAT Solver Competition (CSSC) compares solvers in this latter setting, scoring each solver by the performance it achieved after a fully automated configuration step. This article describes the CSSC in more detail, and reports the results obtained in its two instantiations so far, CSSC 2013 and 2014.
منابع مشابه
Lingeling, Plingeling and Treengeling Entering the SAT Competition 2013
This paper serves as solver description for our SAT solver Lingeling and its two parallel variants Treengeling and Plingeling entering the SAT Competition 2013. We only list important differences to the version of these solvers used in the SAT Challenge 2012. For further information we refer to the solver description [1] of the SAT Challenge 2012 or source code.
متن کاملOverview and analysis of the SAT Challenge 2012 solver competition
Programs for the Boolean satisfiability problem (SAT), i.e., SAT solvers, are nowadays used as core decision procedures for a wide range of combinatorial problems. Advances in SAT solving during the last 10–15 years have been spurred by yearly solver competitions. In this article, we report on the main SAT solver competition held in 2012, SAT Challenge 2012. Besides providing an overview of how...
متن کاملHyParSAT : A Hybrid Parallel Complete SAT Solver Using Parallel
In this project, I have proposed and thoroughly discussed HyParSAT which is a new hybrid approach of a parallel complete SAT solver for shared memory multiprocessor (SMP) parallel computers. It is highly configurable and scalable with respect to the number of available processors. Almost all of the existing parallel SAT solvers designed for SMP computers, uses either a portfolio approach or a d...
متن کاملAutomatic construction of parallel portfolios via algorithm configuration
Since 2004, increases in computational power described by Moore’s law have substantially been realized in the form of additional cores rather than through faster clock speeds. To make effective use of modern hardware when solving hard computational problems, it is therefore necessary to employ parallel solution strategies. In this work, we demonstrate how effective parallel solvers for proposit...
متن کاملTightly coupled verification of pervasive systems
We consider the problem of verifying context-aware, pervasive, interactive systems when the interaction involves both system configuration and system use. Verification of configurable systems is more tightly coupled to design when the verification process involves reasoning about configurable formal models. The approach is illustrated with a case study: using the model checker SPIN [Hol03] and ...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Artif. Intell.
دوره 243 شماره
صفحات -
تاریخ انتشار 2017