The reviewed record of science sign in
Pith

arxiv: 2208.05046 · v2 · pith:GOEXWYZF · submitted 2022-08-09 · cs.SE · cs.PL

Interpolation and SAT-Based Model Checking Revisited: Adoption to Software Verification

Reviewed by Pith T0 review T1 audit T2 compute T3 formal T4 kernel pith:GOEXWYZFrecord.jsonopen to challenge →

classification cs.SE cs.PL
keywords algorithmverificationcheckingmcmillanmodelothersoftwarealgorithms
0
0 comments X
read the original abstract

The article "Interpolation and SAT-Based Model Checking" (McMillan, 2003) describes a formal-verification algorithm, which was originally devised to verify safety properties of finite-state transition systems. It derives interpolants from unsatisfiable BMC queries and collects them to construct an overapproximation of the set of reachable states. Although 20 years old, the algorithm is still state-of-the-art in hardware model checking. Unlike other formal-verification algorithms, such as k-induction or PDR, which have been extended to handle infinite-state systems and investigated for program analysis, McMillan's interpolation-based model-checking algorithm from 2003 has not been used to verify programs so far. Our contribution is to close this significant, two decades old gap in knowledge by adopting the algorithm to software verification. We implemented it in the verification framework CPAchecker and evaluated the implementation against other state-of-the-art software-verification techniques on the largest publicly available benchmark suite of C safety-verification tasks. The evaluation demonstrates that McMillan's interpolation-based model-checking algorithm from 2003 is competitive among other algorithms in terms of both the number of solved verification tasks and the run-time efficiency. Our results are important for the area of software verification, because researchers and developers now have one more approach to choose from.

This paper has not been read by Pith yet.

discussion (0)

Sign in with ORCID, Apple, or X to comment. Anyone can read and Pith papers without signing in.