Crate rustsat

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§rustsat - A Comprehensive SAT Library for Rust

rustsat is a collection of interfaces and utilities for working with the boolean satisfiability problem in Rust. This library aims to provide implementations of elements commonly used in the development of software in the area of satisfiability solving. The focus of the library is to provide as much ease of use without giving up on performance.

§Example

let mut instance: SatInstance = SatInstance::new();
let l1 = instance.new_lit();
let l2 = instance.new_lit();
instance.add_binary(l1, l2);
instance.add_binary(!l1, l2);
instance.add_unit(l1);
let mut solver = rustsat_minisat::core::Minisat::default();
solver.add_cnf(instance.as_cnf().0).unwrap();
let res = solver.solve().unwrap();
assert_eq!(res, SolverResult::Sat);
let sol = solver.full_solution().unwrap();
assert_eq!(sol[l1.var()], TernaryVal::True);
assert_eq!(sol[l2.var()], TernaryVal::True);

§Crates

The RustSAT project is split up into multiple crates that are all contained in this repository. These are the crates the project consists of:

CrateDescription
rustsatThe main library, containing basic types, traits, encodings, parsers, and more.
rustsat-toolsA collection of small helpful tools based on RustSAT that can be installed as binaries. For a list of available tools, see this directory with short descriptions of the tools in the headers of the files.
rustsat-<satsolver>Interfaces to SAT solvers that can be used alongside rustsat. Currently interfaces are available for cadical, kissat, glucose, and minisat.

§Installation

To use the RustSAT library as a dependency in your project, simply run cargo add rustsat. To use an SAT solver interface in your project, run cargo add rustsat-<satsolver>. Typically, the version of the SAT solver can be selected via crate features, refer to the documentation of the respective SAT solver crate for details.

To install the binary tools in rustsat-tools run cargo install rustsat-tools.

§Features

Feature nameDescription
internalsMake some internal data structures for e.g. encodings public. This is useful when basing a more complex encoding on the rustsat implementation of another encoding. Note that the internal API might change between releases.
fxhashUse the faster firefox hash function from rustc-hash in rustsat.
ipasirInclude and link the IPASIR solver interface.
optimizationInclude optimization (MaxSAT) data structures etc.
multioptInclude data structures etc. for multi-objective optimization.
compressionEnable parsing and writing compressed input.
benchEnable benchmark tests. Behind feature flag since it requires unstable Rust.
randEnable randomization features. (Shuffling clauses etc.)

§Examples

For example usage refer to the small example tools in the rustsat-tools crate at tools/src/bin. For a bigger example you can look at this multi-objective optimization solver.

For an example of how to use the C-API, see rustsat/examples/capi*.cpp. Similarly, for an example of using the Python API, see rustsat/examples/pyapi*.py.

Modules§

  • Encodings for Common Constraint Types to CNF
  • Satisfiability and Optimization Instance Representations
  • Interfaces to SAT Solvers
  • Common Types for SAT Solving
  • Library-Internal Utilities

Macros§

  • More easily creates literals with IPASIR indexing (starts from 1) and negation (negative value is negation). Mainly used in tests.
  • More easily creates literals. Mainly used in tests.
  • More easily creates variables. Mainly used in tests.