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Journal ArticleDOI

Model checking programs

TLDR
A verification and testing environment for Java, called Java PathFinder (JPF), which integrates model checking, program analysis and testing, and uses state compression to handle big states and partial order and symmetry reduction, slicing, abstraction, and runtime analysis techniques to reduce the state space.
Abstract
The majority of the work carried out in the formal methods community throughout the last three decades has (for good reasons) been devoted to special languages designed to make it easier to experiment with mechanized formal methods such as theorem provers and model checkers. In this paper, we give arguments for why we believe it is time for the formal methods community to shift some of its attention towards the analysis of programs written in modern programming languages. In keeping with this philosophy, we have developed a verification and testing environment for Java, called Java PathFinder (JPF), which integrates model checking, program analysis and testing. Part of this work has consisted of building a new Java Virtual Machine that interprets Java bytecode. JPF uses state compression to handle large states, and partial order reduction, slicing, abstraction and run-time analysis techniques to reduce the state space. JPF has been applied to a real-time avionics operating system developed at Honeywell, illustrating an intricate error, and to a model of a spacecraft controller, illustrating the combination of abstraction, run-time analysis and slicing with model checking.

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Proceedings ArticleDOI

Change-aware preemption prioritization

TL;DR: A novel technique, called Change-Aware Preemption Prioritization (CAPP), that uses information about the changes in software evolution to prioritize the exploration of schedules in a multithreaded regression test, showing that CAPP can substantially reduce the exploration required to detect multith readed regression faults.

Finding faults in multi-threaded programs

Cyrille Artho
TL;DR: The decision was made to extend Jlint, a simple, fast static Java program checker, which can now also check for deadlocks in synchronized blocks in Java, which results in improved fault-finding capabilities.
Journal ArticleDOI

Permission-Based Separation Logic for Multithreaded Java Programs

TL;DR: In this article, a program logic for reasoning about multithreaded Java-like programs with concurrency primitives such as dynamic thread creation, thread joining and reentrant object monitors is presented.
Proceedings ArticleDOI

Slicing abstractions

TL;DR: A new model checking procedure for infinite-state concurrent systems that interleaves automatic abstraction refinement, which splits states according to new predicates obtained by Craig interpolation, with slicing, which removes irrelevant states and transitions from the abstraction.
Proceedings ArticleDOI

Exception safety for C

TL;DR: The treatment of exceptions in Spec#, an experimental superset of C# that includes code contracts, is described, which describes ways to tame the exception usage in C#.
References
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Journal ArticleDOI

Statecharts: A visual formalism for complex systems

TL;DR: It is intended to demonstrate here that statecharts counter many of the objections raised against conventional state diagrams, and thus appear to render specification by diagrams an attractive and plausible approach.
Book

The Unified Modeling Language User Guide

TL;DR: In The Unified Modeling Language User Guide, the original developers of the UML provide a tutorial to the core aspects of the language in a two-color format designed to facilitate learning.
Journal Article

An Axiomatic Basis for Computer Programming

Journal ArticleDOI

The model checker SPIN

TL;DR: An overview of the design and structure of the verifier, its theoretical foundation, and an overview of significant practical applications are given.
Book

The Z notation: a reference manual

TL;DR: Tutorial introduction background the Z language the mathematical tool-kit sequential systems syntax summary and how to use it to solve sequential systems problems.