Flawfinder version 2.0.10, (C) 2001-2019 David A. Wheeler. Number of rules (primarily dangerous function names) in C/C++ ruleset: 223 Examining data/openturns-1.11/cmake/gcc_sync_builtins.cxx Examining data/openturns-1.11/cmake/unsignedlong_same_as_uint64_t.cxx Examining data/openturns-1.11/lib/include/openturns/OTdebug.h Examining data/openturns-1.11/lib/include/openturns/OTwindows.h Examining data/openturns-1.11/lib/include/pthread_win32/pthread.h Examining data/openturns-1.11/lib/include/pthread_win32/semaphore.h Examining data/openturns-1.11/lib/include/pthread_win32/unistd.h Examining data/openturns-1.11/lib/src/Base/Algo/ApproximationAlgorithm.cxx Examining data/openturns-1.11/lib/src/Base/Algo/ApproximationAlgorithmImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Algo/ApproximationAlgorithmImplementationFactory.cxx Examining data/openturns-1.11/lib/src/Base/Algo/BoundingVolumeHierarchy.cxx Examining data/openturns-1.11/lib/src/Base/Algo/CholeskyMethod.cxx Examining data/openturns-1.11/lib/src/Base/Algo/Classifier.cxx Examining data/openturns-1.11/lib/src/Base/Algo/ClassifierImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Algo/CorrectedLeaveOneOut.cxx Examining data/openturns-1.11/lib/src/Base/Algo/DesignProxy.cxx Examining data/openturns-1.11/lib/src/Base/Algo/EnclosingSimplexAlgorithm.cxx Examining data/openturns-1.11/lib/src/Base/Algo/EnclosingSimplexAlgorithmImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Algo/EnclosingSimplexMonotonic1D.cxx Examining data/openturns-1.11/lib/src/Base/Algo/FFT.cxx Examining data/openturns-1.11/lib/src/Base/Algo/FFTImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Algo/FilonQuadrature.cxx Examining data/openturns-1.11/lib/src/Base/Algo/FittingAlgorithm.cxx Examining data/openturns-1.11/lib/src/Base/Algo/FittingAlgorithmImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Algo/GaussKronrod.cxx Examining data/openturns-1.11/lib/src/Base/Algo/GaussKronrodRule.cxx Examining data/openturns-1.11/lib/src/Base/Algo/GaussLegendre.cxx Examining data/openturns-1.11/lib/src/Base/Algo/IntegrationAlgorithm.cxx Examining data/openturns-1.11/lib/src/Base/Algo/IntegrationAlgorithmImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Algo/IteratedQuadrature.cxx Examining data/openturns-1.11/lib/src/Base/Algo/KDTree.cxx Examining data/openturns-1.11/lib/src/Base/Algo/KFold.cxx Examining data/openturns-1.11/lib/src/Base/Algo/KarhunenLoeveAlgorithm.cxx Examining data/openturns-1.11/lib/src/Base/Algo/KarhunenLoeveAlgorithmImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Algo/KarhunenLoeveLifting.cxx Examining data/openturns-1.11/lib/src/Base/Algo/KarhunenLoeveP1Algorithm.cxx Examining data/openturns-1.11/lib/src/Base/Algo/KarhunenLoeveProjection.cxx Examining data/openturns-1.11/lib/src/Base/Algo/KarhunenLoeveResult.cxx Examining data/openturns-1.11/lib/src/Base/Algo/KarhunenLoeveResultImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Algo/KarhunenLoeveSVDAlgorithm.cxx Examining data/openturns-1.11/lib/src/Base/Algo/KissFFT.cxx Examining data/openturns-1.11/lib/src/Base/Algo/LeastSquaresMetaModelSelection.cxx Examining data/openturns-1.11/lib/src/Base/Algo/LeastSquaresMetaModelSelectionFactory.cxx Examining data/openturns-1.11/lib/src/Base/Algo/LeastSquaresMethod.cxx Examining data/openturns-1.11/lib/src/Base/Algo/LeastSquaresMethodImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Algo/NaiveEnclosingSimplex.cxx Examining data/openturns-1.11/lib/src/Base/Algo/NaiveNearestNeighbour.cxx Examining data/openturns-1.11/lib/src/Base/Algo/NearestNeighbour1D.cxx Examining data/openturns-1.11/lib/src/Base/Algo/NearestNeighbourAlgorithm.cxx Examining data/openturns-1.11/lib/src/Base/Algo/NearestNeighbourAlgorithmImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Algo/PenalizedLeastSquaresAlgorithm.cxx Examining data/openturns-1.11/lib/src/Base/Algo/PenalizedLeastSquaresAlgorithmFactory.cxx Examining data/openturns-1.11/lib/src/Base/Algo/QRMethod.cxx Examining data/openturns-1.11/lib/src/Base/Algo/RegularGridEnclosingSimplex.cxx Examining data/openturns-1.11/lib/src/Base/Algo/RegularGridNearestNeighbour.cxx Examining data/openturns-1.11/lib/src/Base/Algo/SVDMethod.cxx Examining data/openturns-1.11/lib/src/Base/Algo/SparseMethod.cxx Examining data/openturns-1.11/lib/src/Base/Common/AtomicFunctions.cxx Examining data/openturns-1.11/lib/src/Base/Common/BinaryStorageManager.cxx Examining data/openturns-1.11/lib/src/Base/Common/Catalog.cxx Examining data/openturns-1.11/lib/src/Base/Common/ComparisonOperator.cxx Examining data/openturns-1.11/lib/src/Base/Common/ComparisonOperatorImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Common/Equal.cxx Examining data/openturns-1.11/lib/src/Base/Common/Exception.cxx Examining data/openturns-1.11/lib/src/Base/Common/Greater.cxx Examining data/openturns-1.11/lib/src/Base/Common/GreaterOrEqual.cxx Examining data/openturns-1.11/lib/src/Base/Common/IdFactory.cxx Examining data/openturns-1.11/lib/src/Base/Common/InterfaceObject.cxx Examining data/openturns-1.11/lib/src/Base/Common/Less.cxx Examining data/openturns-1.11/lib/src/Base/Common/LessOrEqual.cxx Examining data/openturns-1.11/lib/src/Base/Common/Lockable.cxx Examining data/openturns-1.11/lib/src/Base/Common/Log.cxx Examining data/openturns-1.11/lib/src/Base/Common/Memory.cxx Examining data/openturns-1.11/lib/src/Base/Common/OSS.cxx Examining data/openturns-1.11/lib/src/Base/Common/OStream.cxx Examining data/openturns-1.11/lib/src/Base/Common/Object.cxx Examining data/openturns-1.11/lib/src/Base/Common/Os.cxx Examining data/openturns-1.11/lib/src/Base/Common/Path.cxx Examining data/openturns-1.11/lib/src/Base/Common/PersistentObject.cxx Examining data/openturns-1.11/lib/src/Base/Common/PersistentObjectFactory.cxx Examining data/openturns-1.11/lib/src/Base/Common/PlatformInfo.cxx Examining data/openturns-1.11/lib/src/Base/Common/ResourceMap.cxx Examining data/openturns-1.11/lib/src/Base/Common/StorageManager.cxx Examining data/openturns-1.11/lib/src/Base/Common/Study.cxx Examining data/openturns-1.11/lib/src/Base/Common/TBB.cxx Examining data/openturns-1.11/lib/src/Base/Common/TTY.cxx Examining data/openturns-1.11/lib/src/Base/Common/XMLStorageManager.cxx Examining data/openturns-1.11/lib/src/Base/Common/XMLToolbox.cxx Examining data/openturns-1.11/lib/src/Base/Diff/BlendedStep.cxx Examining data/openturns-1.11/lib/src/Base/Diff/CenteredFiniteDifferenceGradient.cxx Examining data/openturns-1.11/lib/src/Base/Diff/CenteredFiniteDifferenceHessian.cxx Examining data/openturns-1.11/lib/src/Base/Diff/ConstantStep.cxx Examining data/openturns-1.11/lib/src/Base/Diff/Ev3/auxiliary.h Examining data/openturns-1.11/lib/src/Base/Diff/Ev3/common.h Examining data/openturns-1.11/lib/src/Base/Diff/Ev3/exceptions.h Examining data/openturns-1.11/lib/src/Base/Diff/Ev3/expression.cxx Examining data/openturns-1.11/lib/src/Base/Diff/Ev3/expression.h Examining data/openturns-1.11/lib/src/Base/Diff/Ev3/operand.cxx Examining data/openturns-1.11/lib/src/Base/Diff/Ev3/operand.h Examining data/openturns-1.11/lib/src/Base/Diff/Ev3/parser.cxx Examining data/openturns-1.11/lib/src/Base/Diff/Ev3/parser.h Examining data/openturns-1.11/lib/src/Base/Diff/Ev3/tree.h Examining data/openturns-1.11/lib/src/Base/Diff/FiniteDifferenceGradient.cxx Examining data/openturns-1.11/lib/src/Base/Diff/FiniteDifferenceHessian.cxx Examining data/openturns-1.11/lib/src/Base/Diff/FiniteDifferenceStep.cxx Examining data/openturns-1.11/lib/src/Base/Diff/FiniteDifferenceStepImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Diff/NonCenteredFiniteDifferenceGradient.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/Axial.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/Box.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/Combinations.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/CombinatorialGenerator.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/CombinatorialGeneratorImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/Composite.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/Experiment.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/ExperimentImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/Factorial.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/KPermutations.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/SphereUniformNorm.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/SphereUniformNormImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/StratifiedExperiment.cxx Examining data/openturns-1.11/lib/src/Base/Experiments/Tuples.cxx Examining data/openturns-1.11/lib/src/Base/Func/AggregatedEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/AggregatedFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/AggregatedGradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/AggregatedHessian.cxx Examining data/openturns-1.11/lib/src/Base/Func/Basis.cxx Examining data/openturns-1.11/lib/src/Base/Func/BasisFactory.cxx Examining data/openturns-1.11/lib/src/Base/Func/BasisImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Func/BasisSequence.cxx Examining data/openturns-1.11/lib/src/Base/Func/BasisSequenceFactory.cxx Examining data/openturns-1.11/lib/src/Base/Func/BasisSequenceFactoryImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Func/BasisSequenceImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Func/BoxCoxEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/BoxCoxGradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/BoxCoxHessian.cxx Examining data/openturns-1.11/lib/src/Base/Func/BoxCoxTransform.cxx Examining data/openturns-1.11/lib/src/Base/Func/ComposedEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/ComposedFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/ComposedGradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/ComposedHessian.cxx Examining data/openturns-1.11/lib/src/Base/Func/ConstantBasisFactory.cxx Examining data/openturns-1.11/lib/src/Base/Func/ConstantGradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/ConstantHessian.cxx Examining data/openturns-1.11/lib/src/Base/Func/DatabaseEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/DatabaseFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/DualLinearCombinationEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/DualLinearCombinationFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/DualLinearCombinationGradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/DualLinearCombinationHessian.cxx Examining data/openturns-1.11/lib/src/Base/Func/EnumerateFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/EnumerateFunctionImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Func/Evaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/EvaluationImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Func/EvaluationProxy.cxx Examining data/openturns-1.11/lib/src/Base/Func/ExpertMixture.cxx Examining data/openturns-1.11/lib/src/Base/Func/FieldFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/FieldFunctionImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Func/FieldToFieldConnection.cxx Examining data/openturns-1.11/lib/src/Base/Func/FieldToPointConnection.cxx Examining data/openturns-1.11/lib/src/Base/Func/FieldToPointFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/FieldToPointFunctionImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Func/FiniteBasis.cxx Examining data/openturns-1.11/lib/src/Base/Func/FourierSeries.cxx Examining data/openturns-1.11/lib/src/Base/Func/Function.cxx Examining data/openturns-1.11/lib/src/Base/Func/FunctionImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Func/Gradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/GradientImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Func/HaarWavelet.cxx Examining data/openturns-1.11/lib/src/Base/Func/Hessian.cxx Examining data/openturns-1.11/lib/src/Base/Func/HessianImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Func/HyperbolicAnisotropicEnumerateFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/IdentityEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/IdentityFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/IndicatorEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/IndicatorFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/InverseBoxCoxEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/InverseBoxCoxGradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/InverseBoxCoxHessian.cxx Examining data/openturns-1.11/lib/src/Base/Func/InverseBoxCoxTransform.cxx Examining data/openturns-1.11/lib/src/Base/Func/InverseTrendEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/InverseTrendTransform.cxx Examining data/openturns-1.11/lib/src/Base/Func/LARS.cxx Examining data/openturns-1.11/lib/src/Base/Func/LinearBasisFactory.cxx Examining data/openturns-1.11/lib/src/Base/Func/LinearCombinationEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/LinearCombinationFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/LinearCombinationGradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/LinearCombinationHessian.cxx Examining data/openturns-1.11/lib/src/Base/Func/LinearEnumerateFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/LinearEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/LinearFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/LinearGradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/MemoizeEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/MemoizeFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/MonomialFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/MonomialFunctionFactory.cxx Examining data/openturns-1.11/lib/src/Base/Func/NoEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/NoGradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/NoHessian.cxx Examining data/openturns-1.11/lib/src/Base/Func/NormInfEnumerateFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/P1LagrangeEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/P1LagrangeInterpolation.cxx Examining data/openturns-1.11/lib/src/Base/Func/ParametricEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/ParametricFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/ParametricGradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/ParametricHessian.cxx Examining data/openturns-1.11/lib/src/Base/Func/PiecewiseHermiteEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/PiecewiseLinearEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/PointToFieldConnection.cxx Examining data/openturns-1.11/lib/src/Base/Func/PointToFieldFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/PointToFieldFunctionImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Func/PointToPointConnection.cxx Examining data/openturns-1.11/lib/src/Base/Func/PointToPointEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/ProductEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/ProductFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/ProductGradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/ProductHessian.cxx Examining data/openturns-1.11/lib/src/Base/Func/ProductPolynomialEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/ProductPolynomialGradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/ProductPolynomialHessian.cxx Examining data/openturns-1.11/lib/src/Base/Func/ProductUniVariateFunctionEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/ProductUniVariateFunctionGradient.cxx Examining data/openturns-1.11/lib/src/Base/Func/ProductUniVariateFunctionHessian.cxx Examining data/openturns-1.11/lib/src/Base/Func/QuadraticBasisFactory.cxx Examining data/openturns-1.11/lib/src/Base/Func/QuadraticEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/QuadraticFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/SpecFunc/BetaFunctions.cxx Examining data/openturns-1.11/lib/src/Base/Func/SpecFunc/Debye.cxx Examining data/openturns-1.11/lib/src/Base/Func/SpecFunc/ExponentialIntegralFunctions.cxx Examining data/openturns-1.11/lib/src/Base/Func/SpecFunc/Faddeeva.cc 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data/openturns-1.11/lib/src/Base/Func/TranslationFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/TrendEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/TrendTransform.cxx Examining data/openturns-1.11/lib/src/Base/Func/UniVariateFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/UniVariateFunctionEvaluation.cxx Examining data/openturns-1.11/lib/src/Base/Func/UniVariateFunctionFactory.cxx Examining data/openturns-1.11/lib/src/Base/Func/UniVariateFunctionFamily.cxx Examining data/openturns-1.11/lib/src/Base/Func/UniVariateFunctionImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Func/UniVariatePolynomial.cxx Examining data/openturns-1.11/lib/src/Base/Func/UniVariatePolynomialImplementation.cxx Examining data/openturns-1.11/lib/src/Base/Func/ValueFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/VertexFunction.cxx Examining data/openturns-1.11/lib/src/Base/Func/VertexValueFunction.cxx Examining 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Examining data/openturns-1.11/lib/test/t_VonMises_std.cxx Examining data/openturns-1.11/lib/test/t_Waarts_25_quadratic_terms.cxx Examining data/openturns-1.11/lib/test/t_Waarts_RS2.cxx Examining data/openturns-1.11/lib/test/t_Waarts_concave.cxx Examining data/openturns-1.11/lib/test/t_Waarts_convex.cxx Examining data/openturns-1.11/lib/test/t_Waarts_discontinuous_lsf.cxx Examining data/openturns-1.11/lib/test/t_Waarts_noisy_lsf.cxx Examining data/openturns-1.11/lib/test/t_Waarts_oblate.cxx Examining data/openturns-1.11/lib/test/t_Waarts_saddle.cxx Examining data/openturns-1.11/lib/test/t_Waarts_system_series.cxx Examining data/openturns-1.11/lib/test/t_WeibullFactory_std.cxx Examining data/openturns-1.11/lib/test/t_Weibull_std.cxx Examining data/openturns-1.11/lib/test/t_WelchFactory_std.cxx Examining data/openturns-1.11/lib/test/t_WhiteNoise_std.cxx Examining data/openturns-1.11/lib/test/t_WhittleFactory_std.cxx Examining data/openturns-1.11/lib/test/t_Wilks_std.cxx Examining data/openturns-1.11/lib/test/t_Wishart_std.cxx Examining data/openturns-1.11/lib/test/t_ZipfMandelbrot_std.cxx Examining data/openturns-1.11/python/src/PythonDistribution.cxx Examining data/openturns-1.11/python/src/PythonEvaluation.cxx Examining data/openturns-1.11/python/src/PythonExperiment.cxx Examining data/openturns-1.11/python/src/PythonFieldFunction.cxx Examining data/openturns-1.11/python/src/PythonFieldToPointFunction.cxx Examining data/openturns-1.11/python/src/PythonGradient.cxx Examining data/openturns-1.11/python/src/PythonHessian.cxx Examining data/openturns-1.11/python/src/PythonPointToFieldFunction.cxx Examining data/openturns-1.11/python/src/PythonRandomVectorImplementation.cxx Examining data/openturns-1.11/python/src/PythonReadOnlyBuffer.c FINAL RESULTS: data/openturns-1.11/lib/src/Base/Common/Os.cxx:157:10: [4] (shell) system: This causes a new program to execute and is difficult to use safely (CWE-78). try using a library call that implements the same functionality if available. rc = system(command.c_str()); data/openturns-1.11/lib/src/Base/Common/Os.cxx:291:10: [4] (shell) system: This causes a new program to execute and is difficult to use safely (CWE-78). try using a library call that implements the same functionality if available. rc = system((rmdirCmd + " > NUL 2>&1").c_str()); data/openturns-1.11/lib/src/Base/Common/XMLToolbox.cxx:243:9: [4] (format) vsnprintf: If format strings can be influenced by an attacker, they can be exploited, and note that sprintf variations do not always \0-terminate (CWE-134). Use a constant for the format specification. n = vsnprintf (p, size, fmt, args_copy); data/openturns-1.11/lib/src/Base/Func/SpecFunc/Faddeeva.cc:2230:7: [4] (format) printf: If format strings can be influenced by an attacker, they can be exploited (CWE-134). Use a constant for the format specification. printf(#f "(%g%+gi) = %g%+gi (vs. %g%+gi), re/im rel. err. = %0.2g/%0.2g)\n", \ data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:62:35: [4] (format) printf: If format strings can be influenced by an attacker, they can be exploited (CWE-134). Use a constant for the format specification. #define exprtk_debug(params) printf params data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36479:10: [4] (format) printf: If format strings can be influenced by an attacker, they can be exploited (CWE-134). Use a constant for the format specification. printf(fmt.c_str(),v); data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36629:71: [4] (race) access: This usually indicates a security flaw. If an attacker can change anything along the path between the call to access() and the file's actual use (e.g., by moving files), the attacker can exploit the race condition (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid()) and try to open the file directly. file_descriptor(const std::string& fname, const std::string& access) data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36631:31: [4] (race) access: This usually indicates a security flaw. If an attacker can change anything along the path between the call to access() and the file's actual use (e.g., by moving files), the attacker can exploit the race condition (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid()) and try to open the file directly. mode(get_file_mode(access)), data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36780:53: [4] (race) access: This usually indicates a security flaw. If an attacker can change anything along the path between the call to access() and the file's actual use (e.g., by moving files), the attacker can exploit the race condition (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid()) and try to open the file directly. file_mode get_file_mode(const std::string& access) data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36782:17: [4] (race) access: This usually indicates a security flaw. If an attacker can change anything along the path between the call to access() and the file's actual use (e.g., by moving files), the attacker can exploit the race condition (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid()) and try to open the file directly. if (access.empty() || access.size() > 2) data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36782:35: [4] (race) access: This usually indicates a security flaw. If an attacker can change anything along the path between the call to access() and the file's actual use (e.g., by moving files), the attacker can exploit the race condition (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid()) and try to open the file directly. if (access.empty() || access.size() > 2) data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36788:41: [4] (race) access: This usually indicates a security flaw. If an attacker can change anything along the path between the call to access() and the file's actual use (e.g., by moving files), the attacker can exploit the race condition (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid()) and try to open the file directly. for (std::size_t i = 0; i < access.size(); ++i) data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36790:37: [4] (race) access: This usually indicates a security flaw. If an attacker can change anything along the path between the call to access() and the file's actual use (e.g., by moving files), the attacker can exploit the race condition (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid()) and try to open the file directly. switch (std::tolower(access[i])) data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36859:22: [4] (race) access: This usually indicates a security flaw. If an attacker can change anything along the path between the call to access() and the file's actual use (e.g., by moving files), the attacker can exploit the race condition (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid()) and try to open the file directly. std::string access; data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36873:80: [4] (race) access: This usually indicates a security flaw. If an attacker can change anything along the path between the call to access() and the file's actual use (e.g., by moving files), the attacker can exploit the race condition (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid()) and try to open the file directly. details::file_descriptor* fd = new details::file_descriptor(file_name,access); data/openturns-1.11/python/src/PythonReadOnlyBuffer.c:153:3: [4] (buffer) sprintf: Does not check for buffer overflows (CWE-120). Use sprintf_s, snprintf, or vsnprintf. sprintf(s, "<read-only buffer at %p shape=(%s)>", self->bufferview.data, r); data/openturns-1.11/lib/src/Base/Common/Log.cxx:129:45: [3] (buffer) getenv: Environment variables are untrustable input if they can be set by an attacker. They can have any content and length, and the same variable can be set more than once (CWE-807, CWE-20). Check environment variables carefully before using them. const char * logSeverityVariableContent = getenv(openturnsLogSeverityVariableName_); data/openturns-1.11/lib/src/Base/Common/Os.cxx:125:28: [3] (shell) CreateProcess: This causes a new process to execute and is difficult to use safely (CWE-78). Specify the application path in the first argument, NOT as part of the second, or embedded spaces could allow an attacker to force a different program to run. const Bool processOk = CreateProcess(NULL, cmd, NULL, NULL, true, dwProcessFlags, NULL, NULL, &si, &pi) != 0; data/openturns-1.11/lib/src/Base/Common/Os.cxx:125:28: [3] (shell) CreateProcess: This causes a new process to execute and is difficult to use safely (CWE-78). Specify the application path in the first argument, NOT as part of the second, or embedded spaces could allow an attacker to force a different program to run. const Bool processOk = CreateProcess(NULL, cmd, NULL, NULL, true, dwProcessFlags, NULL, NULL, &si, &pi) != 0; data/openturns-1.11/lib/src/Base/Common/Path.cxx:110:25: [3] (buffer) getenv: Environment variables are untrustable input if they can be set by an attacker. They can have any content and length, and the same variable can be set more than once (CWE-807, CWE-20). Check environment variables carefully before using them. const char * otHome = getenv(OPENTURNS_HOME_ENV_VAR); data/openturns-1.11/lib/src/Base/Common/Path.cxx:193:37: [3] (buffer) getenv: Environment variables are untrustable input if they can be set by an attacker. They can have any content and length, and the same variable can be set more than once (CWE-807, CWE-20). Check environment variables carefully before using them. char * openturnsConfigDirectory = getenv(Path::OpenturnsConfigPathVariableName_); data/openturns-1.11/lib/src/Base/Common/Path.cxx:213:26: [3] (buffer) getenv: Environment variables are untrustable input if they can be set by an attacker. They can have any content and length, and the same variable can be set more than once (CWE-807, CWE-20). Check environment variables carefully before using them. char * homeDirectory = getenv("HOME"); data/openturns-1.11/lib/src/Base/Common/Path.cxx:225:25: [3] (buffer) getenv: Environment variables are untrustable input if they can be set by an attacker. They can have any content and length, and the same variable can be set more than once (CWE-807, CWE-20). Check environment variables carefully before using them. const char * otHome = getenv(OPENTURNS_HOME_ENV_VAR); data/openturns-1.11/lib/src/Base/Common/Path.cxx:353:26: [3] (buffer) getenv: Environment variables are untrustable input if they can be set by an attacker. They can have any content and length, and the same variable can be set more than once (CWE-807, CWE-20). Check environment variables carefully before using them. const char * tempEnv = getenv(tempStr.c_str()); data/openturns-1.11/lib/src/Base/Common/Path.cxx:384:3: [3] (tmpfile) GetTempFileName: Temporary file race condition in certain cases (e.g., if run as SYSTEM in many versions of Windows) (CWE-377). GetTempFileName(GetTemporaryDirectory().c_str(), // directory for tmp files data/openturns-1.11/lib/src/Base/Common/Path.cxx:421:11: [3] (tmpfile) GetTempFileName: Temporary file race condition in certain cases (e.g., if run as SYSTEM in many versions of Windows) (CWE-377). ret = GetTempFileName(GetTemporaryDirectory().c_str(), // directory for tmp files data/openturns-1.11/lib/src/Base/Common/ResourceMap.cxx:283:28: [3] (buffer) getenv: Environment variables are untrustable input if they can be set by an attacker. They can have any content and length, and the same variable can be set more than once (CWE-807, CWE-20). Check environment variables carefully before using them. set( "parallel-threads", getenv("NUMBER_OF_PROCESSORS") ); data/openturns-1.11/lib/src/Base/Optim/NLopt.cxx:116:10: [3] (random) srand: This function is not sufficiently random for security-related functions such as key and nonce creation (CWE-327). Use a more secure technique for acquiring random values. nlopt::srand(seed); data/openturns-1.11/lib/test/t_AtomicFunctions_std.cxx:65:34: [3] (buffer) getenv: Environment variables are untrustable input if they can be set by an attacker. They can have any content and length, and the same variable can be set more than once (CWE-807, CWE-20). Check environment variables carefully before using them. std::istringstream converter(getenv("NUMBER_OF_PROCESSORS")); data/openturns-1.11/lib/test/t_NearestPointChecker_std.cxx:53:45: [3] (random) random: This function is not sufficiently random for security-related functions such as key and nonce creation (CWE-327). Use a more secure technique for acquiring random values. point[coordinate] = sqrt(-2.0 * log(random)); data/openturns-1.11/lib/test/t_NearestPointChecker_std.cxx:55:52: [3] (random) random: This function is not sufficiently random for security-related functions such as key and nonce creation (CWE-327). Use a more secure technique for acquiring random values. point[coordinate] *= cos(2.0 * atan(1.0) * random); data/openturns-1.11/lib/src/Base/Common/BinaryStorageManager.cxx:165:5: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy( buf_ + size_, &val, sizeof(T) ); data/openturns-1.11/lib/src/Base/Common/BinaryStorageManager.cxx:251:13: [2] (misc) open: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). filefd_ = open( fileName_.c_str(), O_WRONLY | O_CREAT | O_TRUNC, mode); data/openturns-1.11/lib/src/Base/Common/BinaryStorageManager.cxx:262:13: [2] (misc) open: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). filefd_ = open( fileName_.c_str(), O_RDONLY ); data/openturns-1.11/lib/src/Base/Common/Path.cxx:165:3: [2] (buffer) char: Statically-sized arrays can be improperly restricted, leading to potential overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use functions that limit length, or ensure that the size is larger than the maximum possible length. char pathBuf[16384]; data/openturns-1.11/lib/src/Base/Common/Path.cxx:376:22: [2] (tmpfile) mkstemp: Potential for temporary file vulnerability in some circumstances. Some older Unix-like systems create temp files with permission to write by all by default, so be sure to set the umask to override this. Also, some older Unix systems might fail to use O_EXCL when opening the file, so make sure that O_EXCL is used by the library (CWE-377). int fileDescriptor(mkstemp(temporaryFileName)); data/openturns-1.11/lib/src/Base/Common/Path.cxx:383:3: [2] (buffer) char: Statically-sized arrays can be improperly restricted, leading to potential overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use functions that limit length, or ensure that the size is larger than the maximum possible length. char temporaryFileName[MAX_PATH]; data/openturns-1.11/lib/src/Base/Common/Path.cxx:417:3: [2] (buffer) char: Statically-sized arrays can be improperly restricted, leading to potential overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use functions that limit length, or ensure that the size is larger than the maximum possible length. char temporaryDirName[MAX_PATH]; data/openturns-1.11/lib/src/Base/Diff/Ev3/parser.h:56:3: [2] (buffer) char: Statically-sized arrays can be improperly restricted, leading to potential overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use functions that limit length, or ensure that the size is larger than the maximum possible length. char string_value_[1024]; data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36639:15: [2] (misc) open: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). bool open() data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36816:15: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. std::memcpy(reinterpret_cast<char*>(&fd), data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36841:10: [2] (misc) open: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). class open : public exprtk::igeneric_function<T> data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36852:7: [2] (misc) open: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). open() data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36875:18: [2] (misc) open: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). if (fd->open()) data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36879:18: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. std::memcpy(reinterpret_cast<char*>(&t ), data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:37073:7: [2] (misc) open: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). open <T> o; data/openturns-1.11/lib/src/Base/Graph/DrawableImplementation.cxx:1077:11: [2] (buffer) char: Statically-sized arrays can be improperly restricted, leading to potential overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use functions that limit length, or ensure that the size is larger than the maximum possible length. const char c(key[i + 1]); data/openturns-1.11/lib/src/Base/Optim/Cobyla.cxx:222:3: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(&inPoint[0], x, n * sizeof(Scalar)); data/openturns-1.11/lib/src/Base/Optim/Cobyla.cxx:272:5: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(con, &constraintValue[0], constraintValue.getDimension() * sizeof(Scalar)); data/openturns-1.11/lib/src/Base/Optim/TNC.cxx:410:3: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(&inPoint[0], &x[0], dimension * sizeof(Scalar)); data/openturns-1.11/lib/src/Base/Optim/TNC.cxx:435:3: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(&g[0], &objectiveGradient[0], dimension * sizeof(Scalar)); data/openturns-1.11/lib/src/Base/Optim/algocobyla.c:51:1: [2] (buffer) char: Statically-sized arrays can be improperly restricted, leading to potential overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use functions that limit length, or ensure that the size is larger than the maximum possible length. char *cobyla_rc_string[6] = data/openturns-1.11/lib/src/Base/Optim/algocobyla.h:73:8: [2] (buffer) char: Statically-sized arrays can be improperly restricted, leading to potential overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use functions that limit length, or ensure that the size is larger than the maximum possible length. extern char *cobyla_rc_string[6]; data/openturns-1.11/lib/src/Base/Optim/algotnc.c:70:1: [2] (buffer) char: Statically-sized arrays can be improperly restricted, leading to potential overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use functions that limit length, or ensure that the size is larger than the maximum possible length. char *tnc_rc_string[11] = data/openturns-1.11/lib/src/Base/Optim/algotnc.h:92:8: [2] (buffer) char: Statically-sized arrays can be improperly restricted, leading to potential overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use functions that limit length, or ensure that the size is larger than the maximum possible length. extern char *tnc_rc_string[11]; data/openturns-1.11/lib/src/Base/Stat/DiracCovarianceModel.cxx:51:7: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy( &localValues->getImplementation()->operator[](0), &covarianceMatrix_.getImplementation()->operator[](0), dimension_ * dimension_ * sizeof(Scalar) ); data/openturns-1.11/lib/src/Base/Stat/HMatrixFactory.cxx:106:7: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(points + i * spatialDimension * outputDimension + j * spatialDimension, &sample(i, 0), spatialDimension * sizeof(double)); data/openturns-1.11/lib/src/Base/Stat/SampleImplementation.cxx:320:25: [2] (misc) fopen: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). FILE * theFile = std::fopen(fileName.c_str(), "r"); data/openturns-1.11/lib/src/Base/Stat/dsfmt.h:81:15: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(&words[0], &u_[i], 16); data/openturns-1.11/lib/src/Base/Stat/dsfmt.h:113:15: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(&u_[i], &words[0], 16); data/openturns-1.11/lib/src/Base/Stat/kendall.c:162:5: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(to + bufIndex, left, leftLen * sizeof(double)); data/openturns-1.11/lib/src/Base/Stat/kendall.c:164:5: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(to + bufIndex, right, rightLen * sizeof(double)); data/openturns-1.11/lib/src/Base/Stat/kendall.c:192:3: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(x, buf, len * sizeof(double)); data/openturns-1.11/lib/src/Uncertainty/Algorithm/Sensitivity/SobolIndicesAlgorithmImplementation.cxx:252:7: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(&slice[0], &indices_[k * size_], size_ * sizeof(UnsignedInteger)); data/openturns-1.11/lib/src/Uncertainty/Algorithm/Sensitivity/SobolIndicesAlgorithmImplementation.cxx:744:7: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(yPermData, &yData[indices[k] * outputDimension], outputDimension * sizeof(Scalar)); data/openturns-1.11/lib/test/t_HMatrix_block_LLt.cxx:44:5: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy( &result->getImplementation()->operator[](0), &localResult.getImplementation()->operator[](0), dimension_ * dimension_ * sizeof(Scalar) ); data/openturns-1.11/lib/test/t_HMatrix_block_LU.cxx:44:5: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy( &result->getImplementation()->operator[](0), &localResult.getImplementation()->operator[](0), dimension_ * dimension_ * sizeof(Scalar) ); data/openturns-1.11/lib/test/t_Sample_csv.cxx:39:15: [2] (misc) open: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). aTempFile.open("sample.csv", std::ofstream::out); data/openturns-1.11/lib/test/t_Sample_csv.cxx:56:15: [2] (misc) open: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). aTempFile.open("sample.csv", std::ofstream::out); data/openturns-1.11/lib/test/t_Sample_csv.cxx:73:15: [2] (misc) open: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). aTempFile.open("sample.csv", std::ofstream::out); data/openturns-1.11/lib/test/t_Sample_csv.cxx:85:15: [2] (misc) open: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). aTempFile.open("sample.csv", std::ofstream::out); data/openturns-1.11/lib/test/t_Sample_csv.cxx:102:15: [2] (misc) open: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). aTempFile.open("sample.csv", std::ofstream::out); data/openturns-1.11/lib/test/t_Sample_csv.cxx:128:15: [2] (misc) open: Check when opening files - can an attacker redirect it (via symlinks), force the opening of special file type (e.g., device files), move things around to create a race condition, control its ancestors, or change its contents? (CWE-362). aTempFile.open("sample.csv", std::ofstream::out); data/openturns-1.11/python/src/PythonReadOnlyBuffer.c:118:5: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(self->bufferview.data, data, self->bufferview.length * self->bufferview.itemsize); data/openturns-1.11/python/src/PythonReadOnlyBuffer.c:140:10: [2] (buffer) sprintf: Does not check for buffer overflows (CWE-120). Use sprintf_s, snprintf, or vsnprintf. Risk is low because the source has a constant maximum length. ptr += sprintf(s, "%ld", dims[0]); data/openturns-1.11/python/src/PythonReadOnlyBuffer.c:142:12: [2] (buffer) sprintf: Does not check for buffer overflows (CWE-120). Use sprintf_s, snprintf, or vsnprintf. Risk is low because the source has a constant maximum length. ptr += sprintf(ptr, ",%ld", dims[i]); data/openturns-1.11/python/src/PythonReadOnlyBuffer.c:346:3: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(self->bufferview.data, rawData, length); data/openturns-1.11/python/src/PythonReadOnlyBuffer.c:453:3: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(&newSelf->bufferview, &self->bufferview, sizeof(BufferView)); data/openturns-1.11/python/src/PythonReadOnlyBuffer.c:492:3: [2] (buffer) memcpy: Does not check for buffer overflows when copying to destination (CWE-120). Make sure destination can always hold the source data. memcpy(&newSelf->bufferview, &self->bufferview, sizeof(BufferView)); data/openturns-1.11/lib/src/Base/Common/BinaryStorageManager.cxx:83:20: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). while ( (bytes = read( fd, buf, count )) > -1 ) data/openturns-1.11/lib/src/Base/Common/BinaryStorageManager.cxx:255:55: [1] (buffer) strlen: Does not handle strings that are not \0-terminated; if given one it may perform an over-read (it could cause a crash if unprotected) (CWE-126). doWrite( filefd_, static_cast<const void *>(MAGIC), strlen(MAGIC) ); data/openturns-1.11/lib/src/Base/Common/BinaryStorageManager.cxx:266:25: [1] (buffer) strlen: Does not handle strings that are not \0-terminated; if given one it may perform an over-read (it could cause a crash if unprotected) (CWE-126). char * buf = new char[strlen(MAGIC)]; data/openturns-1.11/lib/src/Base/Common/BinaryStorageManager.cxx:269:48: [1] (buffer) strlen: Does not handle strings that are not \0-terminated; if given one it may perform an over-read (it could cause a crash if unprotected) (CWE-126). doRead( filefd_, static_cast<void *>(buf), strlen(MAGIC) ); data/openturns-1.11/lib/src/Base/Common/BinaryStorageManager.cxx:270:29: [1] (buffer) strlen: Does not handle strings that are not \0-terminated; if given one it may perform an over-read (it could cause a crash if unprotected) (CWE-126). if (strncmp(buf, MAGIC, strlen(MAGIC))) throw InternalException(HERE) << "Error in reading binary file header"; data/openturns-1.11/lib/src/Base/Common/BinaryStorageManager.cxx:326:28: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). void BinaryStorageManager::read() data/openturns-1.11/lib/src/Base/Common/Os.cxx:269:10: [1] (buffer) strlen: Does not handle strings that are not \0-terminated; if given one it may perform an over-read (it could cause a crash if unprotected) (CWE-126). if ( ((strlen( directory ) == 3) && (directory[1] == ':') && (directory[2] == '\\' || directory[2] == '/')) || data/openturns-1.11/lib/src/Base/Common/Os.cxx:270:10: [1] (buffer) strlen: Does not handle strings that are not \0-terminated; if given one it may perform an over-read (it could cause a crash if unprotected) (CWE-126). ((strlen( directory ) == 2) && (directory[1] == ':')) ) data/openturns-1.11/lib/src/Base/Common/Path.cxx:411:3: [1] (buffer) strncpy: Easily used incorrectly; doesn't always \0-terminate or check for invalid pointers [MS-banned] (CWE-120). strncpy(tempDirName, tempDir.c_str(), tempDir.size() + 1); data/openturns-1.11/lib/src/Base/Common/StorageManager.cxx:108:22: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). void StorageManager::read() data/openturns-1.11/lib/src/Base/Common/Study.cxx:158:7: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). mgr.read(); data/openturns-1.11/lib/src/Base/Common/XMLStorageManager.cxx:250:25: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). void XMLStorageManager::read() data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:1413:19: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. inline T equal(const T v0, const T v1) data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:4871:42: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. case e_equal : return equal (arg0,arg1); data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:9178:50: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. define_sfop4(98,(details::is_true(numeric::equal(x,y)) ? z : w),"") data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:12145:70: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. static inline T process(Type t1, Type t2) { return numeric::equal(t1,t2); } data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36741:15: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). bool read(View& view, const std::size_t amount, const std::size_t offset = 0) data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36746:34: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). read(reinterpret_cast<char*>(view.begin() + offset), amount * sizeof(typename View::value_t)); data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36750:34: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). read(reinterpret_cast<char*>(view.begin() + offset) , amount * sizeof(typename View::value_t)); data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36972:10: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). class read : public exprtk::igeneric_function<T> data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:36985:7: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). read() data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:37000:39: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). return T(fd->read(buffer,amount) ? 1 : 0); data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:37007:39: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). return T(fd->read(buffer,amount) ? 1 : 0); data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:37013:39: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). return T(fd->read(vec,amount) ? 1 : 0); data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:37020:39: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). return T(fd->read(vec,amount) ? 1 : 0); data/openturns-1.11/lib/src/Base/Func/openturns/exprtk.hpp:37076:7: [1] (buffer) read: Check buffer boundaries if used in a loop including recursive loops (CWE-120, CWE-20). read <T> r; data/openturns-1.11/lib/src/Base/Stat/SampleImplementation.cxx:193:15: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. std::equal(lhs.begin(), lhs.end(), rhs.begin()); data/openturns-1.11/lib/src/Base/Stat/SampleImplementation.cxx:248:15: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. std::equal(lhs.begin(), lhs.end(), rhs.begin()); data/openturns-1.11/lib/src/Base/Stat/SampleImplementation.cxx:765:15: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. std::equal( lhs.begin(), lhs.end(), rhs.begin() ); data/openturns-1.11/lib/test/t_ComparisonOperator_std.cxx:74:39: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. fullprint << "Equal(10,20) = " << equal(10, 20) << std::endl; data/openturns-1.11/lib/test/t_ComparisonOperator_std.cxx:75:39: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. fullprint << "Equal(20,20) = " << equal(20, 20) << std::endl; data/openturns-1.11/lib/test/t_ComparisonOperator_std.cxx:76:39: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. fullprint << "Equal(30,20) = " << equal(30, 20) << std::endl; data/openturns-1.11/lib/test/t_Normal_std.cxx:260:85: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. fullprint << "Comparison with a Student distribution " << std::boolalpha << equal << std::endl; data/openturns-1.11/lib/test/t_Normal_std.cxx:265:90: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. fullprint << "Comparison with an Exponential distribution " << std::boolalpha << equal << std::endl; data/openturns-1.11/lib/test/t_Normal_std.cxx:270:69: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. fullprint << "Comparison with itself " << std::boolalpha << equal << std::endl; data/openturns-1.11/lib/test/t_Normal_std.cxx:282:70: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. fullprint << "Comparison with a clone " << std::boolalpha << equal << std::endl; data/openturns-1.11/lib/test/t_Normal_std.cxx:289:77: [1] (buffer) equal: Function does not check the second iterator for over-read conditions (CWE-126). This function is often discouraged by most C++ coding standards in favor of its safer alternatives provided since C++14. Consider using a form of this function that checks the second iterator before potentially overflowing it. fullprint << "Comparison with another member " << std::boolalpha << equal << std::endl; data/openturns-1.11/python/src/PythonReadOnlyBuffer.c:150:27: [1] (buffer) strlen: Does not handle strings that are not \0-terminated; if given one it may perform an over-read (it could cause a crash if unprotected) (CWE-126). char * s = malloc(100 + strlen(r)); data/openturns-1.11/python/src/PythonReadOnlyBuffer.c:157:49: [1] (buffer) strlen: Does not handle strings that are not \0-terminated; if given one it may perform an over-read (it could cause a crash if unprotected) (CWE-126). result = PyUnicode_DecodeUTF8(s, (Py_ssize_t) strlen(s), "surrogateescape"); data/openturns-1.11/python/src/PythonReadOnlyBuffer.c:159:56: [1] (buffer) strlen: Does not handle strings that are not \0-terminated; if given one it may perform an over-read (it could cause a crash if unprotected) (CWE-126). result = PyUnicode_FromStringAndSize(s, (Py_ssize_t) strlen(s)); data/openturns-1.11/python/src/PythonReadOnlyBuffer.c:161:55: [1] (buffer) strlen: Does not handle strings that are not \0-terminated; if given one it may perform an over-read (it could cause a crash if unprotected) (CWE-126). result = PyString_FromStringAndSize(s, (Py_ssize_t) strlen(s)); ANALYSIS SUMMARY: Hits = 120 Lines analyzed = 299715 in approximately 9.72 seconds (30846 lines/second) Physical Source Lines of Code (SLOC) = 210247 Hits@level = [0] 82 [1] 41 [2] 48 [3] 15 [4] 16 [5] 0 Hits@level+ = [0+] 202 [1+] 120 [2+] 79 [3+] 31 [4+] 16 [5+] 0 Hits/KSLOC@level+ = [0+] 0.960775 [1+] 0.570757 [2+] 0.375749 [3+] 0.147446 [4+] 0.076101 [5+] 0 Dot directories skipped = 1 (--followdotdir overrides) Minimum risk level = 1 Not every hit is necessarily a security vulnerability. There may be other security vulnerabilities; review your code! See 'Secure Programming HOWTO' (https://dwheeler.com/secure-programs) for more information.