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Fix warning typedef XXX locally defined but not used
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@ -11,7 +11,6 @@
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template<typename Scalar> void special_numbers()
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{
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typedef typename NumTraits<Scalar>::Real RealScalar;
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typedef Matrix<Scalar, Dynamic,Dynamic> MatType;
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int rows = internal::random<int>(1,300);
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int cols = internal::random<int>(1,300);
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@ -295,11 +295,7 @@ namespace Eigen
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enum { Order = SplineTraits<SplineType>::OrderAtCompileTime };
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enum { DerivativeOrder = DerivativeType::ColsAtCompileTime };
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typedef typename SplineTraits<SplineType>::Scalar Scalar;
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typedef typename SplineTraits<SplineType>::BasisVectorType BasisVectorType;
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typedef typename SplineTraits<SplineType>::ControlPointVectorType ControlPointVectorType;
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typedef typename SplineTraits<SplineType,DerivativeOrder>::BasisDerivativeType BasisDerivativeType;
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typedef typename BasisDerivativeType::ConstRowXpr BasisDerivativeRowXpr;
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@ -358,7 +354,6 @@ namespace Eigen
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typedef typename SplineTraits<SplineType>::Scalar Scalar;
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typedef typename SplineTraits<SplineType>::BasisVectorType BasisVectorType;
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typedef typename SplineTraits<SplineType>::KnotVectorType KnotVectorType;
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typedef typename SplineTraits<SplineType>::ControlPointVectorType ControlPointVectorType;
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const KnotVectorType& U = spline.knots();
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@ -40,8 +40,6 @@ namespace Eigen
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template <typename KnotVectorType>
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void KnotAveraging(const KnotVectorType& parameters, DenseIndex degree, KnotVectorType& knots)
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{
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typedef typename KnotVectorType::Scalar Scalar;
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knots.resize(parameters.size()+degree+1);
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for (DenseIndex j=1; j<parameters.size()-degree; ++j)
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@ -118,7 +116,6 @@ namespace Eigen
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SplineType SplineFitting<SplineType>::Interpolate(const PointArrayType& pts, DenseIndex degree, const KnotVectorType& knot_parameters)
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{
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typedef typename SplineType::KnotVectorType::Scalar Scalar;
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typedef typename SplineType::BasisVectorType BasisVectorType;
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typedef typename SplineType::ControlPointVectorType ControlPointVectorType;
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typedef Matrix<Scalar,Dynamic,Dynamic> MatrixType;
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@ -161,12 +161,12 @@ void testMatrixVector(const MatrixType& m, const VectorType& v, double tol)
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testTriangularProduct(m,v,tol);
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}
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void test_matrix_power()
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{
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typedef Matrix<double,3,3,RowMajor> Matrix3dRowMajor;
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typedef Matrix<long double,Dynamic,Dynamic> MatrixXe;
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typedef Matrix<long double,Dynamic,1> VectorXe;
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void test_matrix_power()
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{
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CALL_SUBTEST_2(test2dRotation<double>(1e-13));
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CALL_SUBTEST_1(test2dRotation<float>(2e-5)); // was 1e-5, relaxed for clang 2.8 / linux / x86-64
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CALL_SUBTEST_9(test2dRotation<long double>(1e-13));
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@ -106,10 +106,7 @@ void evalSolverSugarFunction( const POLYNOMIAL& pols, const ROOTS& roots, const
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typedef typename POLYNOMIAL::Scalar Scalar;
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typedef typename REAL_ROOTS::Scalar Real;
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typedef PolynomialSolver<Scalar, Deg > PolynomialSolverType;
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typedef typename PolynomialSolverType::RootsType RootsType;
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typedef Matrix<Scalar,Deg,1> EvalRootsType;
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//Test realRoots
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std::vector< Real > calc_realRoots;
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@ -17,7 +17,6 @@
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template<typename SetterType,typename DenseType, typename Scalar, int Options>
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bool test_random_setter(SparseMatrix<Scalar,Options>& sm, const DenseType& ref, const std::vector<Vector2i>& nonzeroCoords)
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{
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typedef SparseMatrix<Scalar,Options> SparseType;
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{
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sm.setZero();
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SetterType w(sm);
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