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Statistical Symbolic Execution with Informed SamplingSymbolic execution techniques have been proposed recently for the probabilistic analysis of programs. These techniques seek to quantify the likelihood of reaching program events of interest, e.g., assert violations. They have many promising applications but have scalability issues due to high computational demand. To address this challenge, we propose a statistical symbolic execution technique that performs Monte Carlo sampling of the symbolic program paths and uses the obtained information for Bayesian estimation and hypothesis testing with respect to the probability of reaching the target events. To speed up the convergence of the statistical analysis, we propose Informed Sampling, an iterative symbolic execution that first explores the paths that have high statistical significance, prunes them from the state space and guides the execution towards less likely paths. The technique combines Bayesian estimation with a partial exact analysis for the pruned paths leading to provably improved convergence of the statistical analysis. We have implemented statistical symbolic execution with in- formed sampling in the Symbolic PathFinder tool. We show experimentally that the informed sampling obtains more precise results and converges faster than a purely statistical analysis and may also be more efficient than an exact symbolic analysis. When the latter does not terminate symbolic execution with informed sampling can give meaningful results under the same time and memory limits.
Document ID
20150007884
Acquisition Source
Ames Research Center
Document Type
Conference Paper
Authors
Filieri, Antonio
(Technische Hochschule Stuttgart, Germany)
Pasareanu, Corina S.
(Stinger Ghaffarian Technologies, Inc. (SGT, Inc.) Moffett Field, CA, United States)
Visser, Willem
(Stellenbosch Univ. South Africa)
Geldenhuys, Jaco
(Stellenbosch Univ. South Africa)
Date Acquired
May 12, 2015
Publication Date
November 16, 2014
Subject Category
Computer Programming And Software
Statistics And Probability
Report/Patent Number
ARC-E-DAA-TN15697
Report Number: ARC-E-DAA-TN15697
Meeting Information
Meeting: Foundations of Software Engineering (FSE 2014) Conference
Location: Hong Kong
Country: China
Start Date: November 16, 2014
End Date: November 22, 2014
Sponsors: Association for Computing Machinery
Funding Number(s)
CONTRACT_GRANT: NNA08CG83C
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
Reliability
Statistical Methods
Model Checking
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