xref: /aosp_15_r20/external/eigen/test/qr_fullpivoting.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) 2008 Gael Guennebaud <[email protected]>
5*bf2c3715SXin Li // Copyright (C) 2009 Benoit Jacob <[email protected]>
6*bf2c3715SXin Li //
7*bf2c3715SXin Li // This Source Code Form is subject to the terms of the Mozilla
8*bf2c3715SXin Li // Public License v. 2.0. If a copy of the MPL was not distributed
9*bf2c3715SXin Li // with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
10*bf2c3715SXin Li 
11*bf2c3715SXin Li #include "main.h"
12*bf2c3715SXin Li #include <Eigen/QR>
13*bf2c3715SXin Li #include "solverbase.h"
14*bf2c3715SXin Li 
qr()15*bf2c3715SXin Li template<typename MatrixType> void qr()
16*bf2c3715SXin Li {
17*bf2c3715SXin Li   STATIC_CHECK(( internal::is_same<typename FullPivHouseholderQR<MatrixType>::StorageIndex,int>::value ));
18*bf2c3715SXin Li 
19*bf2c3715SXin Li   static const int Rows = MatrixType::RowsAtCompileTime, Cols = MatrixType::ColsAtCompileTime;
20*bf2c3715SXin Li   Index max_size = EIGEN_TEST_MAX_SIZE;
21*bf2c3715SXin Li   Index min_size = numext::maxi(1,EIGEN_TEST_MAX_SIZE/10);
22*bf2c3715SXin Li   Index rows  = Rows == Dynamic ? internal::random<Index>(min_size,max_size) : Rows,
23*bf2c3715SXin Li         cols  = Cols == Dynamic ? internal::random<Index>(min_size,max_size) : Cols,
24*bf2c3715SXin Li         cols2 = Cols == Dynamic ? internal::random<Index>(min_size,max_size) : Cols,
25*bf2c3715SXin Li         rank  = internal::random<Index>(1, (std::min)(rows, cols)-1);
26*bf2c3715SXin Li 
27*bf2c3715SXin Li   typedef typename MatrixType::Scalar Scalar;
28*bf2c3715SXin Li   typedef Matrix<Scalar, MatrixType::RowsAtCompileTime, MatrixType::RowsAtCompileTime> MatrixQType;
29*bf2c3715SXin Li   MatrixType m1;
30*bf2c3715SXin Li   createRandomPIMatrixOfRank(rank,rows,cols,m1);
31*bf2c3715SXin Li   FullPivHouseholderQR<MatrixType> qr(m1);
32*bf2c3715SXin Li   VERIFY_IS_EQUAL(rank, qr.rank());
33*bf2c3715SXin Li   VERIFY_IS_EQUAL(cols - qr.rank(), qr.dimensionOfKernel());
34*bf2c3715SXin Li   VERIFY(!qr.isInjective());
35*bf2c3715SXin Li   VERIFY(!qr.isInvertible());
36*bf2c3715SXin Li   VERIFY(!qr.isSurjective());
37*bf2c3715SXin Li 
38*bf2c3715SXin Li   MatrixType r = qr.matrixQR();
39*bf2c3715SXin Li 
40*bf2c3715SXin Li   MatrixQType q = qr.matrixQ();
41*bf2c3715SXin Li   VERIFY_IS_UNITARY(q);
42*bf2c3715SXin Li 
43*bf2c3715SXin Li   // FIXME need better way to construct trapezoid
44*bf2c3715SXin Li   for(int i = 0; i < rows; i++) for(int j = 0; j < cols; j++) if(i>j) r(i,j) = Scalar(0);
45*bf2c3715SXin Li 
46*bf2c3715SXin Li   MatrixType c = qr.matrixQ() * r * qr.colsPermutation().inverse();
47*bf2c3715SXin Li 
48*bf2c3715SXin Li   VERIFY_IS_APPROX(m1, c);
49*bf2c3715SXin Li 
50*bf2c3715SXin Li   // stress the ReturnByValue mechanism
51*bf2c3715SXin Li   MatrixType tmp;
52*bf2c3715SXin Li   VERIFY_IS_APPROX(tmp.noalias() = qr.matrixQ() * r, (qr.matrixQ() * r).eval());
53*bf2c3715SXin Li 
54*bf2c3715SXin Li   check_solverbase<MatrixType, MatrixType>(m1, qr, rows, cols, cols2);
55*bf2c3715SXin Li 
56*bf2c3715SXin Li   {
57*bf2c3715SXin Li     MatrixType m2, m3;
58*bf2c3715SXin Li     Index size = rows;
59*bf2c3715SXin Li     do {
60*bf2c3715SXin Li       m1 = MatrixType::Random(size,size);
61*bf2c3715SXin Li       qr.compute(m1);
62*bf2c3715SXin Li     } while(!qr.isInvertible());
63*bf2c3715SXin Li     MatrixType m1_inv = qr.inverse();
64*bf2c3715SXin Li     m3 = m1 * MatrixType::Random(size,cols2);
65*bf2c3715SXin Li     m2 = qr.solve(m3);
66*bf2c3715SXin Li     VERIFY_IS_APPROX(m2, m1_inv*m3);
67*bf2c3715SXin Li   }
68*bf2c3715SXin Li }
69*bf2c3715SXin Li 
qr_invertible()70*bf2c3715SXin Li template<typename MatrixType> void qr_invertible()
71*bf2c3715SXin Li {
72*bf2c3715SXin Li   using std::log;
73*bf2c3715SXin Li   using std::abs;
74*bf2c3715SXin Li   typedef typename NumTraits<typename MatrixType::Scalar>::Real RealScalar;
75*bf2c3715SXin Li   typedef typename MatrixType::Scalar Scalar;
76*bf2c3715SXin Li 
77*bf2c3715SXin Li   Index max_size = numext::mini(50,EIGEN_TEST_MAX_SIZE);
78*bf2c3715SXin Li   Index min_size = numext::maxi(1,EIGEN_TEST_MAX_SIZE/10);
79*bf2c3715SXin Li   Index size = internal::random<Index>(min_size,max_size);
80*bf2c3715SXin Li 
81*bf2c3715SXin Li   MatrixType m1(size, size), m2(size, size), m3(size, size);
82*bf2c3715SXin Li   m1 = MatrixType::Random(size,size);
83*bf2c3715SXin Li 
84*bf2c3715SXin Li   if (internal::is_same<RealScalar,float>::value)
85*bf2c3715SXin Li   {
86*bf2c3715SXin Li     // let's build a matrix more stable to inverse
87*bf2c3715SXin Li     MatrixType a = MatrixType::Random(size,size*2);
88*bf2c3715SXin Li     m1 += a * a.adjoint();
89*bf2c3715SXin Li   }
90*bf2c3715SXin Li 
91*bf2c3715SXin Li   FullPivHouseholderQR<MatrixType> qr(m1);
92*bf2c3715SXin Li   VERIFY(qr.isInjective());
93*bf2c3715SXin Li   VERIFY(qr.isInvertible());
94*bf2c3715SXin Li   VERIFY(qr.isSurjective());
95*bf2c3715SXin Li 
96*bf2c3715SXin Li   check_solverbase<MatrixType, MatrixType>(m1, qr, size, size, size);
97*bf2c3715SXin Li 
98*bf2c3715SXin Li   // now construct a matrix with prescribed determinant
99*bf2c3715SXin Li   m1.setZero();
100*bf2c3715SXin Li   for(int i = 0; i < size; i++) m1(i,i) = internal::random<Scalar>();
101*bf2c3715SXin Li   RealScalar absdet = abs(m1.diagonal().prod());
102*bf2c3715SXin Li   m3 = qr.matrixQ(); // get a unitary
103*bf2c3715SXin Li   m1 = m3 * m1 * m3;
104*bf2c3715SXin Li   qr.compute(m1);
105*bf2c3715SXin Li   VERIFY_IS_APPROX(absdet, qr.absDeterminant());
106*bf2c3715SXin Li   VERIFY_IS_APPROX(log(absdet), qr.logAbsDeterminant());
107*bf2c3715SXin Li }
108*bf2c3715SXin Li 
qr_verify_assert()109*bf2c3715SXin Li template<typename MatrixType> void qr_verify_assert()
110*bf2c3715SXin Li {
111*bf2c3715SXin Li   MatrixType tmp;
112*bf2c3715SXin Li 
113*bf2c3715SXin Li   FullPivHouseholderQR<MatrixType> qr;
114*bf2c3715SXin Li   VERIFY_RAISES_ASSERT(qr.matrixQR())
115*bf2c3715SXin Li   VERIFY_RAISES_ASSERT(qr.solve(tmp))
116*bf2c3715SXin Li   VERIFY_RAISES_ASSERT(qr.transpose().solve(tmp))
117*bf2c3715SXin Li   VERIFY_RAISES_ASSERT(qr.adjoint().solve(tmp))
118*bf2c3715SXin Li   VERIFY_RAISES_ASSERT(qr.matrixQ())
119*bf2c3715SXin Li   VERIFY_RAISES_ASSERT(qr.dimensionOfKernel())
120*bf2c3715SXin Li   VERIFY_RAISES_ASSERT(qr.isInjective())
121*bf2c3715SXin Li   VERIFY_RAISES_ASSERT(qr.isSurjective())
122*bf2c3715SXin Li   VERIFY_RAISES_ASSERT(qr.isInvertible())
123*bf2c3715SXin Li   VERIFY_RAISES_ASSERT(qr.inverse())
124*bf2c3715SXin Li   VERIFY_RAISES_ASSERT(qr.absDeterminant())
125*bf2c3715SXin Li   VERIFY_RAISES_ASSERT(qr.logAbsDeterminant())
126*bf2c3715SXin Li }
127*bf2c3715SXin Li 
EIGEN_DECLARE_TEST(qr_fullpivoting)128*bf2c3715SXin Li EIGEN_DECLARE_TEST(qr_fullpivoting)
129*bf2c3715SXin Li {
130*bf2c3715SXin Li   for(int i = 0; i < 1; i++) {
131*bf2c3715SXin Li     CALL_SUBTEST_5( qr<Matrix3f>() );
132*bf2c3715SXin Li     CALL_SUBTEST_6( qr<Matrix3d>() );
133*bf2c3715SXin Li     CALL_SUBTEST_8( qr<Matrix2f>() );
134*bf2c3715SXin Li     CALL_SUBTEST_1( qr<MatrixXf>() );
135*bf2c3715SXin Li     CALL_SUBTEST_2( qr<MatrixXd>() );
136*bf2c3715SXin Li     CALL_SUBTEST_3( qr<MatrixXcd>() );
137*bf2c3715SXin Li   }
138*bf2c3715SXin Li 
139*bf2c3715SXin Li   for(int i = 0; i < g_repeat; i++) {
140*bf2c3715SXin Li     CALL_SUBTEST_1( qr_invertible<MatrixXf>() );
141*bf2c3715SXin Li     CALL_SUBTEST_2( qr_invertible<MatrixXd>() );
142*bf2c3715SXin Li     CALL_SUBTEST_4( qr_invertible<MatrixXcf>() );
143*bf2c3715SXin Li     CALL_SUBTEST_3( qr_invertible<MatrixXcd>() );
144*bf2c3715SXin Li   }
145*bf2c3715SXin Li 
146*bf2c3715SXin Li   CALL_SUBTEST_5(qr_verify_assert<Matrix3f>());
147*bf2c3715SXin Li   CALL_SUBTEST_6(qr_verify_assert<Matrix3d>());
148*bf2c3715SXin Li   CALL_SUBTEST_1(qr_verify_assert<MatrixXf>());
149*bf2c3715SXin Li   CALL_SUBTEST_2(qr_verify_assert<MatrixXd>());
150*bf2c3715SXin Li   CALL_SUBTEST_4(qr_verify_assert<MatrixXcf>());
151*bf2c3715SXin Li   CALL_SUBTEST_3(qr_verify_assert<MatrixXcd>());
152*bf2c3715SXin Li 
153*bf2c3715SXin Li   // Test problem size constructors
154*bf2c3715SXin Li   CALL_SUBTEST_7(FullPivHouseholderQR<MatrixXf>(10, 20));
155*bf2c3715SXin Li   CALL_SUBTEST_7((FullPivHouseholderQR<Matrix<float,10,20> >(10,20)));
156*bf2c3715SXin Li   CALL_SUBTEST_7((FullPivHouseholderQR<Matrix<float,10,20> >(Matrix<float,10,20>::Random())));
157*bf2c3715SXin Li   CALL_SUBTEST_7((FullPivHouseholderQR<Matrix<float,20,10> >(20,10)));
158*bf2c3715SXin Li   CALL_SUBTEST_7((FullPivHouseholderQR<Matrix<float,20,10> >(Matrix<float,20,10>::Random())));
159*bf2c3715SXin Li }
160