Result Details

Compositional Shape Analysis with Shared Abduction and Biabductive Loop Acceleration

FLORIAN, S.; ROGALEWICZ, A.; VOJNAR, T.; ZULEGER, F. Compositional Shape Analysis with Shared Abduction and Biabductive Loop Acceleration. In Programming Languages and Systems - 34th European Symposium on Programming, ESOP 2025. Lecture Notes in Computer Science. Springer, 2025. p. 230-257. ISBN: 978-3-031-91121-7.
Type
conference paper
Language
English
Authors
Sextl Florian
Rogalewicz Adam, doc. Mgr., Ph.D., DITS (FIT)
Vojnar Tomáš, prof. Ing., Ph.D., DITS (FIT)
Zuleger Florian, Dr., FIT (FIT)
Abstract

Biabduction-based shape analysis is a compositional verification and analysis technique that can prove memory safety in the presence of complex, linked data structures.
Despite its usefulness, several open problems persist for this kind of analysis; two of which we address in this paper.
On the one hand, the original analysis is path-sensitive but cannot combine safety requirements for related branches.
This causes the analysis to require additional soundness checks and increases the space for the analysis to become incomplete.
We extend the underlying symbolic execution and propose a framework for shared abduction where a common pre-condition is maintained for related computation branches.On the other hand, prior proposals lift loop acceleration methods from forward analysis to biabduction analysis by applying them separately on the pre- and post-condition, which can lead to imprecise or even unsound acceleration results that do not form a loop invariant.
In contrast, we propose biabductive loop acceleration, which explicitly constructs and checks candidate loop invariants.
For this, we also introduce a novel heuristic called shape extrapolation. This heuristic takes advantage of locality in the handling of list-like data structures (which are the most common data structures found in low-level code) and jointly accelerates pre- and post-conditions by extrapolating the related shapes.In addition to making the analysis more precise, our techniques also make biabductive analysis more efficient since they are sound in just one analysis phase. In contrast, prior techniques always require two phases (as the first phase can produce contracts that are unsound and must hence be verified). We experimentally confirm that our techniques improve on prior techniques; both in terms of precision and runtime of the analysis.

Keywords

shape analysis, biabduction

URL
Published
2025
Pages
230–257
Journal
Lecture Notes in Computer Science, ISSN
Proceedings
Programming Languages and Systems - 34th European Symposium on Programming, ESOP 2025
Conference
European Joint Conferences on Theory and Practice of Software -- ETAPS'25 (ESOP'25)
ISBN
978-3-031-91121-7
Publisher
Springer
DOI
EID Scopus
BibTeX
@inproceedings{BUT194217,
  author="{} and Adam {Rogalewicz} and Tomáš {Vojnar} and Florian {Zuleger}",
  title="Compositional Shape Analysis with Shared Abduction and Biabductive Loop Acceleration",
  booktitle="Programming Languages and Systems - 34th European Symposium on Programming, ESOP 2025",
  year="2025",
  journal="Lecture Notes in Computer Science",
  pages="230--257",
  publisher="Springer",
  doi="10.1007/978-3-031-91121-7\{_}10",
  isbn="978-3-031-91121-7",
  issn="0302-9743",
  url="https://link.springer.com/chapter/10.1007/978-3-031-91121-7_10"
}
Files
Projects
Advanced Analysis and Verification for Advanced Software, GACR, Standardní projekty, GA23-06506S, start: 2023-01-01, end: 2025-12-31, running
Reliable, Secure, and Intelligent Computer Systems, BUT, Vnitřní projekty VUT, FIT-S-23-8151, start: 2023-03-01, end: 2026-02-28, running
Verification and Analysis for Safety and Security of Applications in Life, EU, HORIZON EUROPE, SEP-210979090, start: 2024-06-01, end: 2027-05-31, running
Research groups
Departments
Back to top