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      1 // This file is part of Eigen, a lightweight C++ template library
      2 // for linear algebra.
      3 //
      4 // Copyright (C) 2009 Benoit Jacob <jacob.benoit.1 (at) gmail.com>
      5 //
      6 // This Source Code Form is subject to the terms of the Mozilla
      7 // Public License v. 2.0. If a copy of the MPL was not distributed
      8 // with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
      9 
     10 #include "main.h"
     11 using namespace std;
     12 template<typename MatrixType> void diagonalmatrices(const MatrixType& m)
     13 {
     14   typedef typename MatrixType::Index Index;
     15   typedef typename MatrixType::Scalar Scalar;
     16   typedef typename MatrixType::RealScalar RealScalar;
     17   enum { Rows = MatrixType::RowsAtCompileTime, Cols = MatrixType::ColsAtCompileTime };
     18   typedef Matrix<Scalar, Rows, 1> VectorType;
     19   typedef Matrix<Scalar, 1, Cols> RowVectorType;
     20   typedef Matrix<Scalar, Rows, Rows> SquareMatrixType;
     21   typedef DiagonalMatrix<Scalar, Rows> LeftDiagonalMatrix;
     22   typedef DiagonalMatrix<Scalar, Cols> RightDiagonalMatrix;
     23   typedef Matrix<Scalar, Rows==Dynamic?Dynamic:2*Rows, Cols==Dynamic?Dynamic:2*Cols> BigMatrix;
     24   Index rows = m.rows();
     25   Index cols = m.cols();
     26 
     27   MatrixType m1 = MatrixType::Random(rows, cols),
     28              m2 = MatrixType::Random(rows, cols);
     29   VectorType v1 = VectorType::Random(rows),
     30              v2 = VectorType::Random(rows);
     31   RowVectorType rv1 = RowVectorType::Random(cols),
     32              rv2 = RowVectorType::Random(cols);
     33   LeftDiagonalMatrix ldm1(v1), ldm2(v2);
     34   RightDiagonalMatrix rdm1(rv1), rdm2(rv2);
     35 
     36   SquareMatrixType sq_m1 (v1.asDiagonal());
     37   VERIFY_IS_APPROX(sq_m1, v1.asDiagonal().toDenseMatrix());
     38   sq_m1 = v1.asDiagonal();
     39   VERIFY_IS_APPROX(sq_m1, v1.asDiagonal().toDenseMatrix());
     40   SquareMatrixType sq_m2 = v1.asDiagonal();
     41   VERIFY_IS_APPROX(sq_m1, sq_m2);
     42 
     43   ldm1 = v1.asDiagonal();
     44   LeftDiagonalMatrix ldm3(v1);
     45   VERIFY_IS_APPROX(ldm1.diagonal(), ldm3.diagonal());
     46   LeftDiagonalMatrix ldm4 = v1.asDiagonal();
     47   VERIFY_IS_APPROX(ldm1.diagonal(), ldm4.diagonal());
     48 
     49   sq_m1.block(0,0,rows,rows) = ldm1;
     50   VERIFY_IS_APPROX(sq_m1, ldm1.toDenseMatrix());
     51   sq_m1.transpose() = ldm1;
     52   VERIFY_IS_APPROX(sq_m1, ldm1.toDenseMatrix());
     53 
     54   Index i = internal::random<Index>(0, rows-1);
     55   Index j = internal::random<Index>(0, cols-1);
     56 
     57   VERIFY_IS_APPROX( ((ldm1 * m1)(i,j))  , ldm1.diagonal()(i) * m1(i,j) );
     58   VERIFY_IS_APPROX( ((ldm1 * (m1+m2))(i,j))  , ldm1.diagonal()(i) * (m1+m2)(i,j) );
     59   VERIFY_IS_APPROX( ((m1 * rdm1)(i,j))  , rdm1.diagonal()(j) * m1(i,j) );
     60   VERIFY_IS_APPROX( ((v1.asDiagonal() * m1)(i,j))  , v1(i) * m1(i,j) );
     61   VERIFY_IS_APPROX( ((m1 * rv1.asDiagonal())(i,j))  , rv1(j) * m1(i,j) );
     62   VERIFY_IS_APPROX( (((v1+v2).asDiagonal() * m1)(i,j))  , (v1+v2)(i) * m1(i,j) );
     63   VERIFY_IS_APPROX( (((v1+v2).asDiagonal() * (m1+m2))(i,j))  , (v1+v2)(i) * (m1+m2)(i,j) );
     64   VERIFY_IS_APPROX( ((m1 * (rv1+rv2).asDiagonal())(i,j))  , (rv1+rv2)(j) * m1(i,j) );
     65   VERIFY_IS_APPROX( (((m1+m2) * (rv1+rv2).asDiagonal())(i,j))  , (rv1+rv2)(j) * (m1+m2)(i,j) );
     66 
     67   BigMatrix big;
     68   big.setZero(2*rows, 2*cols);
     69 
     70   big.block(i,j,rows,cols) = m1;
     71   big.block(i,j,rows,cols) = v1.asDiagonal() * big.block(i,j,rows,cols);
     72 
     73   VERIFY_IS_APPROX((big.block(i,j,rows,cols)) , v1.asDiagonal() * m1 );
     74 
     75   big.block(i,j,rows,cols) = m1;
     76   big.block(i,j,rows,cols) = big.block(i,j,rows,cols) * rv1.asDiagonal();
     77   VERIFY_IS_APPROX((big.block(i,j,rows,cols)) , m1 * rv1.asDiagonal() );
     78 
     79 }
     80 
     81 void test_diagonalmatrices()
     82 {
     83   for(int i = 0; i < g_repeat; i++) {
     84     CALL_SUBTEST_1( diagonalmatrices(Matrix<float, 1, 1>()) );
     85     CALL_SUBTEST_2( diagonalmatrices(Matrix3f()) );
     86     CALL_SUBTEST_3( diagonalmatrices(Matrix<double,3,3,RowMajor>()) );
     87     CALL_SUBTEST_4( diagonalmatrices(Matrix4d()) );
     88     CALL_SUBTEST_5( diagonalmatrices(Matrix<float,4,4,RowMajor>()) );
     89     CALL_SUBTEST_6( diagonalmatrices(MatrixXcf(internal::random<int>(1,EIGEN_TEST_MAX_SIZE), internal::random<int>(1,EIGEN_TEST_MAX_SIZE))) );
     90     CALL_SUBTEST_7( diagonalmatrices(MatrixXi(internal::random<int>(1,EIGEN_TEST_MAX_SIZE), internal::random<int>(1,EIGEN_TEST_MAX_SIZE))) );
     91     CALL_SUBTEST_8( diagonalmatrices(Matrix<double,Dynamic,Dynamic,RowMajor>(internal::random<int>(1,EIGEN_TEST_MAX_SIZE), internal::random<int>(1,EIGEN_TEST_MAX_SIZE))) );
     92     CALL_SUBTEST_9( diagonalmatrices(MatrixXf(internal::random<int>(1,EIGEN_TEST_MAX_SIZE), internal::random<int>(1,EIGEN_TEST_MAX_SIZE))) );
     93   }
     94 }
     95