xref: /aosp_15_r20/external/eigen/test/diagonalmatrices.cpp (revision bf2c37156dfe67e5dfebd6d394bad8b2ab5804d4)
1*bf2c3715SXin Li // This file is part of Eigen, a lightweight C++ template library
2*bf2c3715SXin Li // for linear algebra.
3*bf2c3715SXin Li //
4*bf2c3715SXin Li // Copyright (C) 2009 Benoit Jacob <[email protected]>
5*bf2c3715SXin Li //
6*bf2c3715SXin Li // This Source Code Form is subject to the terms of the Mozilla
7*bf2c3715SXin Li // Public License v. 2.0. If a copy of the MPL was not distributed
8*bf2c3715SXin Li // with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
9*bf2c3715SXin Li 
10*bf2c3715SXin Li #include "main.h"
11*bf2c3715SXin Li using namespace std;
diagonalmatrices(const MatrixType & m)12*bf2c3715SXin Li template<typename MatrixType> void diagonalmatrices(const MatrixType& m)
13*bf2c3715SXin Li {
14*bf2c3715SXin Li   typedef typename MatrixType::Scalar Scalar;
15*bf2c3715SXin Li   enum { Rows = MatrixType::RowsAtCompileTime, Cols = MatrixType::ColsAtCompileTime };
16*bf2c3715SXin Li   typedef Matrix<Scalar, Rows, 1> VectorType;
17*bf2c3715SXin Li   typedef Matrix<Scalar, 1, Cols> RowVectorType;
18*bf2c3715SXin Li   typedef Matrix<Scalar, Rows, Rows> SquareMatrixType;
19*bf2c3715SXin Li   typedef Matrix<Scalar, Dynamic, Dynamic> DynMatrixType;
20*bf2c3715SXin Li   typedef DiagonalMatrix<Scalar, Rows> LeftDiagonalMatrix;
21*bf2c3715SXin Li   typedef DiagonalMatrix<Scalar, Cols> RightDiagonalMatrix;
22*bf2c3715SXin Li   typedef Matrix<Scalar, Rows==Dynamic?Dynamic:2*Rows, Cols==Dynamic?Dynamic:2*Cols> BigMatrix;
23*bf2c3715SXin Li   Index rows = m.rows();
24*bf2c3715SXin Li   Index cols = m.cols();
25*bf2c3715SXin Li 
26*bf2c3715SXin Li   MatrixType m1 = MatrixType::Random(rows, cols),
27*bf2c3715SXin Li              m2 = MatrixType::Random(rows, cols);
28*bf2c3715SXin Li   VectorType v1 = VectorType::Random(rows),
29*bf2c3715SXin Li              v2 = VectorType::Random(rows);
30*bf2c3715SXin Li   RowVectorType rv1 = RowVectorType::Random(cols),
31*bf2c3715SXin Li              rv2 = RowVectorType::Random(cols);
32*bf2c3715SXin Li 
33*bf2c3715SXin Li   LeftDiagonalMatrix ldm1(v1), ldm2(v2);
34*bf2c3715SXin Li   RightDiagonalMatrix rdm1(rv1), rdm2(rv2);
35*bf2c3715SXin Li 
36*bf2c3715SXin Li   Scalar s1 = internal::random<Scalar>();
37*bf2c3715SXin Li 
38*bf2c3715SXin Li   SquareMatrixType sq_m1 (v1.asDiagonal());
39*bf2c3715SXin Li   VERIFY_IS_APPROX(sq_m1, v1.asDiagonal().toDenseMatrix());
40*bf2c3715SXin Li   sq_m1 = v1.asDiagonal();
41*bf2c3715SXin Li   VERIFY_IS_APPROX(sq_m1, v1.asDiagonal().toDenseMatrix());
42*bf2c3715SXin Li   SquareMatrixType sq_m2 = v1.asDiagonal();
43*bf2c3715SXin Li   VERIFY_IS_APPROX(sq_m1, sq_m2);
44*bf2c3715SXin Li 
45*bf2c3715SXin Li   ldm1 = v1.asDiagonal();
46*bf2c3715SXin Li   LeftDiagonalMatrix ldm3(v1);
47*bf2c3715SXin Li   VERIFY_IS_APPROX(ldm1.diagonal(), ldm3.diagonal());
48*bf2c3715SXin Li   LeftDiagonalMatrix ldm4 = v1.asDiagonal();
49*bf2c3715SXin Li   VERIFY_IS_APPROX(ldm1.diagonal(), ldm4.diagonal());
50*bf2c3715SXin Li 
51*bf2c3715SXin Li   sq_m1.block(0,0,rows,rows) = ldm1;
52*bf2c3715SXin Li   VERIFY_IS_APPROX(sq_m1, ldm1.toDenseMatrix());
53*bf2c3715SXin Li   sq_m1.transpose() = ldm1;
54*bf2c3715SXin Li   VERIFY_IS_APPROX(sq_m1, ldm1.toDenseMatrix());
55*bf2c3715SXin Li 
56*bf2c3715SXin Li   Index i = internal::random<Index>(0, rows-1);
57*bf2c3715SXin Li   Index j = internal::random<Index>(0, cols-1);
58*bf2c3715SXin Li 
59*bf2c3715SXin Li   VERIFY_IS_APPROX( ((ldm1 * m1)(i,j))  , ldm1.diagonal()(i) * m1(i,j) );
60*bf2c3715SXin Li   VERIFY_IS_APPROX( ((ldm1 * (m1+m2))(i,j))  , ldm1.diagonal()(i) * (m1+m2)(i,j) );
61*bf2c3715SXin Li   VERIFY_IS_APPROX( ((m1 * rdm1)(i,j))  , rdm1.diagonal()(j) * m1(i,j) );
62*bf2c3715SXin Li   VERIFY_IS_APPROX( ((v1.asDiagonal() * m1)(i,j))  , v1(i) * m1(i,j) );
63*bf2c3715SXin Li   VERIFY_IS_APPROX( ((m1 * rv1.asDiagonal())(i,j))  , rv1(j) * m1(i,j) );
64*bf2c3715SXin Li   VERIFY_IS_APPROX( (((v1+v2).asDiagonal() * m1)(i,j))  , (v1+v2)(i) * m1(i,j) );
65*bf2c3715SXin Li   VERIFY_IS_APPROX( (((v1+v2).asDiagonal() * (m1+m2))(i,j))  , (v1+v2)(i) * (m1+m2)(i,j) );
66*bf2c3715SXin Li   VERIFY_IS_APPROX( ((m1 * (rv1+rv2).asDiagonal())(i,j))  , (rv1+rv2)(j) * m1(i,j) );
67*bf2c3715SXin Li   VERIFY_IS_APPROX( (((m1+m2) * (rv1+rv2).asDiagonal())(i,j))  , (rv1+rv2)(j) * (m1+m2)(i,j) );
68*bf2c3715SXin Li 
69*bf2c3715SXin Li   if(rows>1)
70*bf2c3715SXin Li   {
71*bf2c3715SXin Li     DynMatrixType tmp = m1.topRows(rows/2), res;
72*bf2c3715SXin Li     VERIFY_IS_APPROX( (res = m1.topRows(rows/2) * rv1.asDiagonal()), tmp * rv1.asDiagonal() );
73*bf2c3715SXin Li     VERIFY_IS_APPROX( (res = v1.head(rows/2).asDiagonal()*m1.topRows(rows/2)), v1.head(rows/2).asDiagonal()*tmp );
74*bf2c3715SXin Li   }
75*bf2c3715SXin Li 
76*bf2c3715SXin Li   BigMatrix big;
77*bf2c3715SXin Li   big.setZero(2*rows, 2*cols);
78*bf2c3715SXin Li 
79*bf2c3715SXin Li   big.block(i,j,rows,cols) = m1;
80*bf2c3715SXin Li   big.block(i,j,rows,cols) = v1.asDiagonal() * big.block(i,j,rows,cols);
81*bf2c3715SXin Li 
82*bf2c3715SXin Li   VERIFY_IS_APPROX((big.block(i,j,rows,cols)) , v1.asDiagonal() * m1 );
83*bf2c3715SXin Li 
84*bf2c3715SXin Li   big.block(i,j,rows,cols) = m1;
85*bf2c3715SXin Li   big.block(i,j,rows,cols) = big.block(i,j,rows,cols) * rv1.asDiagonal();
86*bf2c3715SXin Li   VERIFY_IS_APPROX((big.block(i,j,rows,cols)) , m1 * rv1.asDiagonal() );
87*bf2c3715SXin Li 
88*bf2c3715SXin Li 
89*bf2c3715SXin Li   // scalar multiple
90*bf2c3715SXin Li   VERIFY_IS_APPROX(LeftDiagonalMatrix(ldm1*s1).diagonal(), ldm1.diagonal() * s1);
91*bf2c3715SXin Li   VERIFY_IS_APPROX(LeftDiagonalMatrix(s1*ldm1).diagonal(), s1 * ldm1.diagonal());
92*bf2c3715SXin Li 
93*bf2c3715SXin Li   VERIFY_IS_APPROX(m1 * (rdm1 * s1), (m1 * rdm1) * s1);
94*bf2c3715SXin Li   VERIFY_IS_APPROX(m1 * (s1 * rdm1), (m1 * rdm1) * s1);
95*bf2c3715SXin Li 
96*bf2c3715SXin Li   // Diagonal to dense
97*bf2c3715SXin Li   sq_m1.setRandom();
98*bf2c3715SXin Li   sq_m2 = sq_m1;
99*bf2c3715SXin Li   VERIFY_IS_APPROX( (sq_m1 += (s1*v1).asDiagonal()), sq_m2 += (s1*v1).asDiagonal().toDenseMatrix() );
100*bf2c3715SXin Li   VERIFY_IS_APPROX( (sq_m1 -= (s1*v1).asDiagonal()), sq_m2 -= (s1*v1).asDiagonal().toDenseMatrix() );
101*bf2c3715SXin Li   VERIFY_IS_APPROX( (sq_m1 = (s1*v1).asDiagonal()), (s1*v1).asDiagonal().toDenseMatrix() );
102*bf2c3715SXin Li 
103*bf2c3715SXin Li   sq_m1.setRandom();
104*bf2c3715SXin Li   sq_m2 = v1.asDiagonal();
105*bf2c3715SXin Li   sq_m2 = sq_m1 * sq_m2;
106*bf2c3715SXin Li   VERIFY_IS_APPROX( (sq_m1*v1.asDiagonal()).col(i), sq_m2.col(i) );
107*bf2c3715SXin Li   VERIFY_IS_APPROX( (sq_m1*v1.asDiagonal()).row(i), sq_m2.row(i) );
108*bf2c3715SXin Li 
109*bf2c3715SXin Li   sq_m1 = v1.asDiagonal();
110*bf2c3715SXin Li   sq_m2 = v2.asDiagonal();
111*bf2c3715SXin Li   SquareMatrixType sq_m3 = v1.asDiagonal();
112*bf2c3715SXin Li   VERIFY_IS_APPROX( sq_m3 = v1.asDiagonal() + v2.asDiagonal(), sq_m1 + sq_m2);
113*bf2c3715SXin Li   VERIFY_IS_APPROX( sq_m3 = v1.asDiagonal() - v2.asDiagonal(), sq_m1 - sq_m2);
114*bf2c3715SXin Li   VERIFY_IS_APPROX( sq_m3 = v1.asDiagonal() - 2*v2.asDiagonal() + v1.asDiagonal(), sq_m1 - 2*sq_m2 + sq_m1);
115*bf2c3715SXin Li }
116*bf2c3715SXin Li 
as_scalar_product(const MatrixType & m)117*bf2c3715SXin Li template<typename MatrixType> void as_scalar_product(const MatrixType& m)
118*bf2c3715SXin Li {
119*bf2c3715SXin Li   typedef typename MatrixType::Scalar Scalar;
120*bf2c3715SXin Li   typedef Matrix<Scalar, MatrixType::RowsAtCompileTime, 1> VectorType;
121*bf2c3715SXin Li   typedef Matrix<Scalar, Dynamic, Dynamic> DynMatrixType;
122*bf2c3715SXin Li   typedef Matrix<Scalar, Dynamic, 1> DynVectorType;
123*bf2c3715SXin Li   typedef Matrix<Scalar, 1, Dynamic> DynRowVectorType;
124*bf2c3715SXin Li 
125*bf2c3715SXin Li   Index rows = m.rows();
126*bf2c3715SXin Li   Index depth = internal::random<Index>(1,EIGEN_TEST_MAX_SIZE);
127*bf2c3715SXin Li 
128*bf2c3715SXin Li   VectorType v1 = VectorType::Random(rows);
129*bf2c3715SXin Li   DynVectorType     dv1  = DynVectorType::Random(depth);
130*bf2c3715SXin Li   DynRowVectorType  drv1 = DynRowVectorType::Random(depth);
131*bf2c3715SXin Li   DynMatrixType     dm1  = dv1;
132*bf2c3715SXin Li   DynMatrixType     drm1 = drv1;
133*bf2c3715SXin Li 
134*bf2c3715SXin Li   Scalar s = v1(0);
135*bf2c3715SXin Li 
136*bf2c3715SXin Li   VERIFY_IS_APPROX( v1.asDiagonal() * drv1, s*drv1 );
137*bf2c3715SXin Li   VERIFY_IS_APPROX( dv1 * v1.asDiagonal(), dv1*s );
138*bf2c3715SXin Li 
139*bf2c3715SXin Li   VERIFY_IS_APPROX( v1.asDiagonal() * drm1, s*drm1 );
140*bf2c3715SXin Li   VERIFY_IS_APPROX( dm1 * v1.asDiagonal(), dm1*s );
141*bf2c3715SXin Li }
142*bf2c3715SXin Li 
143*bf2c3715SXin Li template<int>
bug987()144*bf2c3715SXin Li void bug987()
145*bf2c3715SXin Li {
146*bf2c3715SXin Li   Matrix3Xd points = Matrix3Xd::Random(3, 3);
147*bf2c3715SXin Li   Vector2d diag = Vector2d::Random();
148*bf2c3715SXin Li   Matrix2Xd tmp1 = points.topRows<2>(), res1, res2;
149*bf2c3715SXin Li   VERIFY_IS_APPROX( res1 = diag.asDiagonal() * points.topRows<2>(), res2 = diag.asDiagonal() * tmp1 );
150*bf2c3715SXin Li   Matrix2d tmp2 = points.topLeftCorner<2,2>();
151*bf2c3715SXin Li   VERIFY_IS_APPROX(( res1 = points.topLeftCorner<2,2>()*diag.asDiagonal()) , res2 = tmp2*diag.asDiagonal() );
152*bf2c3715SXin Li }
153*bf2c3715SXin Li 
EIGEN_DECLARE_TEST(diagonalmatrices)154*bf2c3715SXin Li EIGEN_DECLARE_TEST(diagonalmatrices)
155*bf2c3715SXin Li {
156*bf2c3715SXin Li   for(int i = 0; i < g_repeat; i++) {
157*bf2c3715SXin Li     CALL_SUBTEST_1( diagonalmatrices(Matrix<float, 1, 1>()) );
158*bf2c3715SXin Li     CALL_SUBTEST_1( as_scalar_product(Matrix<float, 1, 1>()) );
159*bf2c3715SXin Li 
160*bf2c3715SXin Li     CALL_SUBTEST_2( diagonalmatrices(Matrix3f()) );
161*bf2c3715SXin Li     CALL_SUBTEST_3( diagonalmatrices(Matrix<double,3,3,RowMajor>()) );
162*bf2c3715SXin Li     CALL_SUBTEST_4( diagonalmatrices(Matrix4d()) );
163*bf2c3715SXin Li     CALL_SUBTEST_5( diagonalmatrices(Matrix<float,4,4,RowMajor>()) );
164*bf2c3715SXin Li     CALL_SUBTEST_6( diagonalmatrices(MatrixXcf(internal::random<int>(1,EIGEN_TEST_MAX_SIZE), internal::random<int>(1,EIGEN_TEST_MAX_SIZE))) );
165*bf2c3715SXin Li     CALL_SUBTEST_6( as_scalar_product(MatrixXcf(1,1)) );
166*bf2c3715SXin Li     CALL_SUBTEST_7( diagonalmatrices(MatrixXi(internal::random<int>(1,EIGEN_TEST_MAX_SIZE), internal::random<int>(1,EIGEN_TEST_MAX_SIZE))) );
167*bf2c3715SXin Li     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))) );
168*bf2c3715SXin Li     CALL_SUBTEST_9( diagonalmatrices(MatrixXf(internal::random<int>(1,EIGEN_TEST_MAX_SIZE), internal::random<int>(1,EIGEN_TEST_MAX_SIZE))) );
169*bf2c3715SXin Li     CALL_SUBTEST_9( diagonalmatrices(MatrixXf(1,1)) );
170*bf2c3715SXin Li     CALL_SUBTEST_9( as_scalar_product(MatrixXf(1,1)) );
171*bf2c3715SXin Li   }
172*bf2c3715SXin Li   CALL_SUBTEST_10( bug987<0>() );
173*bf2c3715SXin Li }
174