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Benoit Jacob2fdd0672007-11-28 15:34:40 +00001// This file is part of Eigen, a lightweight C++ template library
Benoit Jacob6347b1d2009-05-22 20:25:33 +02002// for linear algebra.
Benoit Jacob2fdd0672007-11-28 15:34:40 +00003//
Benoit Jacob00f89a82008-11-24 13:40:43 +00004// Copyright (C) 2006-2008 Benoit Jacob <jacob.benoit.1@gmail.com>
Benoit Jacob2fdd0672007-11-28 15:34:40 +00005//
Benoit Jacob3698d8c2008-02-28 15:44:45 +00006// Eigen is free software; you can redistribute it and/or
7// modify it under the terms of the GNU Lesser General Public
Gael Guennebaud8e0d5482008-03-05 13:18:19 +00008// License as published by the Free Software Foundation; either
Benoit Jacob3698d8c2008-02-28 15:44:45 +00009// version 3 of the License, or (at your option) any later version.
10//
11// Alternatively, you can redistribute it and/or
12// modify it under the terms of the GNU General Public License as
Gael Guennebaud8e0d5482008-03-05 13:18:19 +000013// published by the Free Software Foundation; either version 2 of
Benoit Jacob3698d8c2008-02-28 15:44:45 +000014// the License, or (at your option) any later version.
Benoit Jacob2fdd0672007-11-28 15:34:40 +000015//
16// Eigen is distributed in the hope that it will be useful, but WITHOUT ANY
17// WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
Benoit Jacob3698d8c2008-02-28 15:44:45 +000018// FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License or the
19// GNU General Public License for more details.
Benoit Jacob2fdd0672007-11-28 15:34:40 +000020//
Gael Guennebaud8e0d5482008-03-05 13:18:19 +000021// You should have received a copy of the GNU Lesser General Public
Benoit Jacob3698d8c2008-02-28 15:44:45 +000022// License and a copy of the GNU General Public License along with
23// Eigen. If not, see <http://www.gnu.org/licenses/>.
Gael Guennebaud239ada92009-08-15 22:19:29 +020024
Benoit Jacobe2775862010-04-28 18:51:38 -040025#define EIGEN_NO_STATIC_ASSERT
26
Benoit Jacob2fdd0672007-11-28 15:34:40 +000027#include "main.h"
28
29template<typename MatrixType> void adjoint(const MatrixType& m)
30{
31 /* this test covers the following files:
32 Transpose.h Conjugate.h Dot.h
33 */
Hauke Heibelf1679c72010-06-20 17:37:56 +020034 typedef typename MatrixType::Index Index;
Benoit Jacob2fdd0672007-11-28 15:34:40 +000035 typedef typename MatrixType::Scalar Scalar;
Gael Guennebaud2120fed2008-08-23 15:14:20 +000036 typedef typename NumTraits<Scalar>::Real RealScalar;
Benoit Jacob2ee68a02008-03-12 17:17:36 +000037 typedef Matrix<Scalar, MatrixType::RowsAtCompileTime, 1> VectorType;
Gael Guennebaud2120fed2008-08-23 15:14:20 +000038 typedef Matrix<Scalar, MatrixType::RowsAtCompileTime, MatrixType::RowsAtCompileTime> SquareMatrixType;
Hauke Heibelf1679c72010-06-20 17:37:56 +020039
40 Index rows = m.rows();
41 Index cols = m.cols();
Gael Guennebaud8e0d5482008-03-05 13:18:19 +000042
Benoit Jacob46fe7a32008-09-01 17:31:21 +000043 MatrixType m1 = MatrixType::Random(rows, cols),
44 m2 = MatrixType::Random(rows, cols),
Benoit Jacob2fdd0672007-11-28 15:34:40 +000045 m3(rows, cols),
Benoit Jacob46fe7a32008-09-01 17:31:21 +000046 square = SquareMatrixType::Random(rows, rows);
47 VectorType v1 = VectorType::Random(rows),
48 v2 = VectorType::Random(rows),
49 v3 = VectorType::Random(rows),
Gael Guennebaudc10f0692008-07-21 00:34:46 +000050 vzero = VectorType::Zero(rows);
Benoit Jacob2fdd0672007-11-28 15:34:40 +000051
Benoit Jacob47160402010-10-25 10:15:22 -040052 Scalar s1 = internal::random<Scalar>(),
53 s2 = internal::random<Scalar>();
Gael Guennebaud8e0d5482008-03-05 13:18:19 +000054
Benoit Jacob2fdd0672007-11-28 15:34:40 +000055 // check basic compatibility of adjoint, transpose, conjugate
Benoit Jacob346c00f2007-12-03 10:23:08 +000056 VERIFY_IS_APPROX(m1.transpose().conjugate().adjoint(), m1);
57 VERIFY_IS_APPROX(m1.adjoint().conjugate().transpose(), m1);
Gael Guennebaud8e0d5482008-03-05 13:18:19 +000058
Benoit Jacob2fdd0672007-11-28 15:34:40 +000059 // check multiplicative behavior
Benoit Jacob346c00f2007-12-03 10:23:08 +000060 VERIFY_IS_APPROX((m1.adjoint() * m2).adjoint(), m2.adjoint() * m1);
Benoit Jacob47160402010-10-25 10:15:22 -040061 VERIFY_IS_APPROX((s1 * m1).adjoint(), internal::conj(s1) * m1.adjoint());
Gael Guennebaud8e0d5482008-03-05 13:18:19 +000062
Benoit Jacob2fdd0672007-11-28 15:34:40 +000063 // check basic properties of dot, norm, norm2
64 typedef typename NumTraits<Scalar>::Real RealScalar;
Gael Guennebaud86ca05b2011-02-18 17:39:04 +010065
Gael Guennebaud22bff942011-07-21 11:19:36 +020066 RealScalar ref = NumTraits<Scalar>::IsInteger ? RealScalar(0) : (std::max)((s1 * v1 + s2 * v2).norm(),v3.norm());
Gael Guennebaud86ca05b2011-02-18 17:39:04 +010067 VERIFY(test_isApproxWithRef((s1 * v1 + s2 * v2).dot(v3), internal::conj(s1) * v1.dot(v3) + internal::conj(s2) * v2.dot(v3), ref));
68 VERIFY(test_isApproxWithRef(v3.dot(s1 * v1 + s2 * v2), s1*v3.dot(v1)+s2*v3.dot(v2), ref));
Benoit Jacob47160402010-10-25 10:15:22 -040069 VERIFY_IS_APPROX(internal::conj(v1.dot(v2)), v2.dot(v1));
Benoit Jacob3386a942011-02-07 10:54:50 -050070 VERIFY_IS_APPROX(internal::real(v1.dot(v1)), v1.squaredNorm());
Benoit Jacobd2673d82011-06-15 00:30:46 -040071 if(!NumTraits<Scalar>::IsInteger) {
Gael Guennebaud36c8a642009-01-28 22:11:56 +000072 VERIFY_IS_APPROX(v1.squaredNorm(), v1.norm() * v1.norm());
Benoit Jacobd2673d82011-06-15 00:30:46 -040073 // check normalized() and normalize()
74 VERIFY_IS_APPROX(v1, v1.norm() * v1.normalized());
Benoit Jacobd2673d82011-06-15 00:30:46 -040075 v3 = v1;
Benoit Jacoba871f3c2011-06-15 10:00:43 -040076 v3.normalize();
77 VERIFY_IS_APPROX(v1, v1.norm() * v3);
Benoit Jacobd2673d82011-06-15 00:30:46 -040078 VERIFY_IS_APPROX(v3, v1.normalized());
79 VERIFY_IS_APPROX(v3.norm(), RealScalar(1));
80 }
Benoit Jacob47160402010-10-25 10:15:22 -040081 VERIFY_IS_MUCH_SMALLER_THAN(internal::abs(vzero.dot(v1)), static_cast<RealScalar>(1));
Benoit Jacobd2673d82011-06-15 00:30:46 -040082
Benoit Jacob2fdd0672007-11-28 15:34:40 +000083 // check compatibility of dot and adjoint
Gael Guennebaud86ca05b2011-02-18 17:39:04 +010084
Gael Guennebaud22bff942011-07-21 11:19:36 +020085 ref = NumTraits<Scalar>::IsInteger ? 0 : (std::max)((std::max)(v1.norm(),v2.norm()),(std::max)((square * v2).norm(),(square.adjoint() * v1).norm()));
Gael Guennebaud86ca05b2011-02-18 17:39:04 +010086 VERIFY(test_isApproxWithRef(v1.dot(square * v2), (square.adjoint() * v1).dot(v2), ref));
Gael Guennebaud8e0d5482008-03-05 13:18:19 +000087
Benoit Jacobfc7b2b52007-12-12 17:48:20 +000088 // like in testBasicStuff, test operator() to check const-qualification
Benoit Jacob47160402010-10-25 10:15:22 -040089 Index r = internal::random<Index>(0, rows-1),
90 c = internal::random<Index>(0, cols-1);
91 VERIFY_IS_APPROX(m1.conjugate()(r,c), internal::conj(m1(r,c)));
92 VERIFY_IS_APPROX(m1.adjoint()(c,r), internal::conj(m1(r,c)));
Gael Guennebaud8e0d5482008-03-05 13:18:19 +000093
Benoit Jacobe2775862010-04-28 18:51:38 -040094 if(!NumTraits<Scalar>::IsInteger)
Benoit Jacob13ad8872008-08-12 02:14:02 +000095 {
96 // check that Random().normalized() works: tricky as the random xpr must be evaluated by
97 // normalized() in order to produce a consistent result.
98 VERIFY_IS_APPROX(VectorType::Random(rows).normalized().norm(), RealScalar(1));
99 }
Gael Guennebaudebe14aa2008-10-29 15:24:08 +0000100
101 // check inplace transpose
102 m3 = m1;
103 m3.transposeInPlace();
104 VERIFY_IS_APPROX(m3,m1.transpose());
105 m3.transposeInPlace();
106 VERIFY_IS_APPROX(m3,m1);
Benoit Jacobbf596d02009-03-31 13:55:40 +0000107
108 // check inplace adjoint
109 m3 = m1;
110 m3.adjointInPlace();
111 VERIFY_IS_APPROX(m3,m1.adjoint());
112 m3.transposeInPlace();
113 VERIFY_IS_APPROX(m3,m1.conjugate());
114
Gael Guennebaud0bfb78c2011-01-27 09:59:19 +0100115 // check mixed dot product
116 typedef Matrix<RealScalar, MatrixType::RowsAtCompileTime, 1> RealVectorType;
117 RealVectorType rv1 = RealVectorType::Random(rows);
118 VERIFY_IS_APPROX(v1.dot(rv1.template cast<Scalar>()), v1.dot(rv1));
119 VERIFY_IS_APPROX(rv1.template cast<Scalar>().dot(v1), rv1.dot(v1));
Benoit Jacob2fdd0672007-11-28 15:34:40 +0000120}
121
Gael Guennebaud522e24f2008-05-22 12:18:55 +0000122void test_adjoint()
Benoit Jacob2fdd0672007-11-28 15:34:40 +0000123{
Gael Guennebaud7a9519a2009-07-14 23:00:53 +0200124 for(int i = 0; i < g_repeat; i++) {
Benoit Jacob2840ac72009-10-28 18:19:29 -0400125 CALL_SUBTEST_1( adjoint(Matrix<float, 1, 1>()) );
126 CALL_SUBTEST_2( adjoint(Matrix3d()) );
127 CALL_SUBTEST_3( adjoint(Matrix4f()) );
Gael Guennebauda8f66fe2011-07-12 14:41:00 +0200128 CALL_SUBTEST_4( adjoint(MatrixXcf(internal::random<int>(1,EIGEN_TEST_MAX_SIZE/2), internal::random<int>(1,EIGEN_TEST_MAX_SIZE/2))) );
129 CALL_SUBTEST_5( adjoint(MatrixXi(internal::random<int>(1,EIGEN_TEST_MAX_SIZE), internal::random<int>(1,EIGEN_TEST_MAX_SIZE))) );
130 CALL_SUBTEST_6( adjoint(MatrixXf(internal::random<int>(1,EIGEN_TEST_MAX_SIZE), internal::random<int>(1,EIGEN_TEST_MAX_SIZE))) );
Gael Guennebaudf5d23172009-07-13 21:14:47 +0200131 }
Gael Guennebauda8f66fe2011-07-12 14:41:00 +0200132 // test a large static matrix only once
Benoit Jacob2840ac72009-10-28 18:19:29 -0400133 CALL_SUBTEST_7( adjoint(Matrix<float, 100, 100>()) );
Gael Guennebaudb56bb442009-09-07 12:46:16 +0200134
Benoit Jacob2840ac72009-10-28 18:19:29 -0400135#ifdef EIGEN_TEST_PART_4
Gael Guennebaud239ada92009-08-15 22:19:29 +0200136 {
137 MatrixXcf a(10,10), b(10,10);
138 VERIFY_RAISES_ASSERT(a = a.transpose());
139 VERIFY_RAISES_ASSERT(a = a.transpose() + b);
140 VERIFY_RAISES_ASSERT(a = b + a.transpose());
141 VERIFY_RAISES_ASSERT(a = a.conjugate().transpose());
142 VERIFY_RAISES_ASSERT(a = a.adjoint());
143 VERIFY_RAISES_ASSERT(a = a.adjoint() + b);
144 VERIFY_RAISES_ASSERT(a = b + a.adjoint());
Gael Guennebaud6db67742009-12-16 11:41:16 +0100145
146 // no assertion should be triggered for these cases:
147 a.transpose() = a.transpose();
148 a.transpose() += a.transpose();
149 a.transpose() += a.transpose() + b;
150 a.transpose() = a.adjoint();
151 a.transpose() += a.adjoint();
152 a.transpose() += a.adjoint() + b;
Gael Guennebaud239ada92009-08-15 22:19:29 +0200153 }
Benoit Jacob2840ac72009-10-28 18:19:29 -0400154#endif
Benoit Jacob2fdd0672007-11-28 15:34:40 +0000155}
Benoit Jacobe05f2912007-12-02 18:32:59 +0000156