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PerSeVerE: persistency semantics for verification under ext4

Published: 04 January 2021 Publication History

Abstract

Although ubiquitous, modern filesystems have rather complex behaviours that are hardly understood by programmers and lead to severe software bugs such as data corruption. As a first step to ensure correctness of software performing file I/O, we formalize the semantics of the Linux ext4 filesystem, which we integrate with the weak memory consistency semantics of C/C++. We further develop an effective model checking approach for verifying programs that use the filesystem. In doing so, we discover and report bugs in commonly-used text editors such as vim, emacs and nano.

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Published In

cover image Proceedings of the ACM on Programming Languages
Proceedings of the ACM on Programming Languages  Volume 5, Issue POPL
January 2021
1789 pages
EISSN:2475-1421
DOI:10.1145/3445980
Issue’s Table of Contents
This work is licensed under a Creative Commons Attribution International 4.0 License.

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Association for Computing Machinery

New York, NY, United States

Publication History

Published: 04 January 2021
Published in PACMPL Volume 5, Issue POPL

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  1. File Systems
  2. Model Checking
  3. Persistency
  4. Weak Consistency

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  • (2024)Shadow Filesystems: Recovering from Filesystem Runtime Errors via Robust Alternative ExecutionProceedings of the 16th ACM Workshop on Hot Topics in Storage and File Systems10.1145/3655038.3665942(15-22)Online publication date: 8-Jul-2024
  • (2024)Constraint Based Program Repair for Persistent Memory BugsProceedings of the IEEE/ACM 46th International Conference on Software Engineering10.1145/3597503.3639204(1-12)Online publication date: 20-May-2024
  • (2024)Efficiently Adapting Stateless Model Checking for C11/C++11 to Mixed-Size AccessesProgramming Languages and Systems10.1007/978-981-97-8943-6_17(346-364)Online publication date: 23-Oct-2024
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