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Brian Silverman72890c22015-09-19 14:37:37 -04001// This file is part of Eigen, a lightweight C++ template library
2// for linear algebra.
3//
4// Copyright (C) 2006-2010 Benoit Jacob <jacob.benoit.1@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#define EIGEN_NO_STATIC_ASSERT // otherwise we fail at compile time on unused paths
11#include "main.h"
12
13template<typename MatrixType, typename Index, typename Scalar>
14typename Eigen::internal::enable_if<!NumTraits<typename MatrixType::Scalar>::IsComplex,typename MatrixType::Scalar>::type
15block_real_only(const MatrixType &m1, Index r1, Index r2, Index c1, Index c2, const Scalar& s1) {
16 // check cwise-Functions:
17 VERIFY_IS_APPROX(m1.row(r1).cwiseMax(s1), m1.cwiseMax(s1).row(r1));
18 VERIFY_IS_APPROX(m1.col(c1).cwiseMin(s1), m1.cwiseMin(s1).col(c1));
19
20 VERIFY_IS_APPROX(m1.block(r1,c1,r2-r1+1,c2-c1+1).cwiseMin(s1), m1.cwiseMin(s1).block(r1,c1,r2-r1+1,c2-c1+1));
21 VERIFY_IS_APPROX(m1.block(r1,c1,r2-r1+1,c2-c1+1).cwiseMax(s1), m1.cwiseMax(s1).block(r1,c1,r2-r1+1,c2-c1+1));
22
23 return Scalar(0);
24}
25
26template<typename MatrixType, typename Index, typename Scalar>
27typename Eigen::internal::enable_if<NumTraits<typename MatrixType::Scalar>::IsComplex,typename MatrixType::Scalar>::type
28block_real_only(const MatrixType &, Index, Index, Index, Index, const Scalar&) {
29 return Scalar(0);
30}
31
32
33template<typename MatrixType> void block(const MatrixType& m)
34{
Brian Silverman72890c22015-09-19 14:37:37 -040035 typedef typename MatrixType::Scalar Scalar;
36 typedef typename MatrixType::RealScalar RealScalar;
37 typedef Matrix<Scalar, MatrixType::RowsAtCompileTime, 1> VectorType;
38 typedef Matrix<Scalar, 1, MatrixType::ColsAtCompileTime> RowVectorType;
Austin Schuh189376f2018-12-20 22:11:15 +110039 typedef Matrix<Scalar, Dynamic, Dynamic, MatrixType::IsRowMajor?RowMajor:ColMajor> DynamicMatrixType;
Brian Silverman72890c22015-09-19 14:37:37 -040040 typedef Matrix<Scalar, Dynamic, 1> DynamicVectorType;
41
42 Index rows = m.rows();
43 Index cols = m.cols();
44
45 MatrixType m1 = MatrixType::Random(rows, cols),
46 m1_copy = m1,
47 m2 = MatrixType::Random(rows, cols),
48 m3(rows, cols),
49 ones = MatrixType::Ones(rows, cols);
50 VectorType v1 = VectorType::Random(rows);
51
52 Scalar s1 = internal::random<Scalar>();
53
54 Index r1 = internal::random<Index>(0,rows-1);
55 Index r2 = internal::random<Index>(r1,rows-1);
56 Index c1 = internal::random<Index>(0,cols-1);
57 Index c2 = internal::random<Index>(c1,cols-1);
58
59 block_real_only(m1, r1, r2, c1, c1, s1);
60
61 //check row() and col()
62 VERIFY_IS_EQUAL(m1.col(c1).transpose(), m1.transpose().row(c1));
63 //check operator(), both constant and non-constant, on row() and col()
64 m1 = m1_copy;
65 m1.row(r1) += s1 * m1_copy.row(r2);
66 VERIFY_IS_APPROX(m1.row(r1), m1_copy.row(r1) + s1 * m1_copy.row(r2));
67 // check nested block xpr on lhs
68 m1.row(r1).row(0) += s1 * m1_copy.row(r2);
69 VERIFY_IS_APPROX(m1.row(r1), m1_copy.row(r1) + Scalar(2) * s1 * m1_copy.row(r2));
70 m1 = m1_copy;
71 m1.col(c1) += s1 * m1_copy.col(c2);
72 VERIFY_IS_APPROX(m1.col(c1), m1_copy.col(c1) + s1 * m1_copy.col(c2));
73 m1.col(c1).col(0) += s1 * m1_copy.col(c2);
74 VERIFY_IS_APPROX(m1.col(c1), m1_copy.col(c1) + Scalar(2) * s1 * m1_copy.col(c2));
75
76
77 //check block()
78 Matrix<Scalar,Dynamic,Dynamic> b1(1,1); b1(0,0) = m1(r1,c1);
79
80 RowVectorType br1(m1.block(r1,0,1,cols));
81 VectorType bc1(m1.block(0,c1,rows,1));
82 VERIFY_IS_EQUAL(b1, m1.block(r1,c1,1,1));
83 VERIFY_IS_EQUAL(m1.row(r1), br1);
84 VERIFY_IS_EQUAL(m1.col(c1), bc1);
85 //check operator(), both constant and non-constant, on block()
86 m1.block(r1,c1,r2-r1+1,c2-c1+1) = s1 * m2.block(0, 0, r2-r1+1,c2-c1+1);
87 m1.block(r1,c1,r2-r1+1,c2-c1+1)(r2-r1,c2-c1) = m2.block(0, 0, r2-r1+1,c2-c1+1)(0,0);
88
89 enum {
90 BlockRows = 2,
91 BlockCols = 5
92 };
93 if (rows>=5 && cols>=8)
94 {
95 // test fixed block() as lvalue
96 m1.template block<BlockRows,BlockCols>(1,1) *= s1;
97 // test operator() on fixed block() both as constant and non-constant
98 m1.template block<BlockRows,BlockCols>(1,1)(0, 3) = m1.template block<2,5>(1,1)(1,2);
99 // check that fixed block() and block() agree
100 Matrix<Scalar,Dynamic,Dynamic> b = m1.template block<BlockRows,BlockCols>(3,3);
101 VERIFY_IS_EQUAL(b, m1.block(3,3,BlockRows,BlockCols));
102
103 // same tests with mixed fixed/dynamic size
104 m1.template block<BlockRows,Dynamic>(1,1,BlockRows,BlockCols) *= s1;
105 m1.template block<BlockRows,Dynamic>(1,1,BlockRows,BlockCols)(0,3) = m1.template block<2,5>(1,1)(1,2);
106 Matrix<Scalar,Dynamic,Dynamic> b2 = m1.template block<Dynamic,BlockCols>(3,3,2,5);
107 VERIFY_IS_EQUAL(b2, m1.block(3,3,BlockRows,BlockCols));
108 }
109
110 if (rows>2)
111 {
112 // test sub vectors
113 VERIFY_IS_EQUAL(v1.template head<2>(), v1.block(0,0,2,1));
114 VERIFY_IS_EQUAL(v1.template head<2>(), v1.head(2));
115 VERIFY_IS_EQUAL(v1.template head<2>(), v1.segment(0,2));
116 VERIFY_IS_EQUAL(v1.template head<2>(), v1.template segment<2>(0));
117 Index i = rows-2;
118 VERIFY_IS_EQUAL(v1.template tail<2>(), v1.block(i,0,2,1));
119 VERIFY_IS_EQUAL(v1.template tail<2>(), v1.tail(2));
120 VERIFY_IS_EQUAL(v1.template tail<2>(), v1.segment(i,2));
121 VERIFY_IS_EQUAL(v1.template tail<2>(), v1.template segment<2>(i));
122 i = internal::random<Index>(0,rows-2);
123 VERIFY_IS_EQUAL(v1.segment(i,2), v1.template segment<2>(i));
124 }
125
126 // stress some basic stuffs with block matrices
127 VERIFY(numext::real(ones.col(c1).sum()) == RealScalar(rows));
128 VERIFY(numext::real(ones.row(r1).sum()) == RealScalar(cols));
129
130 VERIFY(numext::real(ones.col(c1).dot(ones.col(c2))) == RealScalar(rows));
131 VERIFY(numext::real(ones.row(r1).dot(ones.row(r2))) == RealScalar(cols));
Austin Schuh189376f2018-12-20 22:11:15 +1100132
133 // check that linear acccessors works on blocks
134 m1 = m1_copy;
135 if((MatrixType::Flags&RowMajorBit)==0)
136 VERIFY_IS_EQUAL(m1.leftCols(c1).coeff(r1+c1*rows), m1(r1,c1));
137 else
138 VERIFY_IS_EQUAL(m1.topRows(r1).coeff(c1+r1*cols), m1(r1,c1));
139
Brian Silverman72890c22015-09-19 14:37:37 -0400140
141 // now test some block-inside-of-block.
142
143 // expressions with direct access
144 VERIFY_IS_EQUAL( (m1.block(r1,c1,rows-r1,cols-c1).block(r2-r1,c2-c1,rows-r2,cols-c2)) , (m1.block(r2,c2,rows-r2,cols-c2)) );
145 VERIFY_IS_EQUAL( (m1.block(r1,c1,r2-r1+1,c2-c1+1).row(0)) , (m1.row(r1).segment(c1,c2-c1+1)) );
146 VERIFY_IS_EQUAL( (m1.block(r1,c1,r2-r1+1,c2-c1+1).col(0)) , (m1.col(c1).segment(r1,r2-r1+1)) );
147 VERIFY_IS_EQUAL( (m1.block(r1,c1,r2-r1+1,c2-c1+1).transpose().col(0)) , (m1.row(r1).segment(c1,c2-c1+1)).transpose() );
148 VERIFY_IS_EQUAL( (m1.transpose().block(c1,r1,c2-c1+1,r2-r1+1).col(0)) , (m1.row(r1).segment(c1,c2-c1+1)).transpose() );
149
150 // expressions without direct access
Austin Schuh189376f2018-12-20 22:11:15 +1100151 VERIFY_IS_APPROX( ((m1+m2).block(r1,c1,rows-r1,cols-c1).block(r2-r1,c2-c1,rows-r2,cols-c2)) , ((m1+m2).block(r2,c2,rows-r2,cols-c2)) );
152 VERIFY_IS_APPROX( ((m1+m2).block(r1,c1,r2-r1+1,c2-c1+1).row(0)) , ((m1+m2).row(r1).segment(c1,c2-c1+1)) );
153 VERIFY_IS_APPROX( ((m1+m2).block(r1,c1,r2-r1+1,c2-c1+1).col(0)) , ((m1+m2).col(c1).segment(r1,r2-r1+1)) );
154 VERIFY_IS_APPROX( ((m1+m2).block(r1,c1,r2-r1+1,c2-c1+1).transpose().col(0)) , ((m1+m2).row(r1).segment(c1,c2-c1+1)).transpose() );
155 VERIFY_IS_APPROX( ((m1+m2).transpose().block(c1,r1,c2-c1+1,r2-r1+1).col(0)) , ((m1+m2).row(r1).segment(c1,c2-c1+1)).transpose() );
156
157 VERIFY_IS_APPROX( (m1*1).topRows(r1), m1.topRows(r1) );
158 VERIFY_IS_APPROX( (m1*1).leftCols(c1), m1.leftCols(c1) );
159 VERIFY_IS_APPROX( (m1*1).transpose().topRows(c1), m1.transpose().topRows(c1) );
160 VERIFY_IS_APPROX( (m1*1).transpose().leftCols(r1), m1.transpose().leftCols(r1) );
161 VERIFY_IS_APPROX( (m1*1).transpose().middleRows(c1,c2-c1+1), m1.transpose().middleRows(c1,c2-c1+1) );
162 VERIFY_IS_APPROX( (m1*1).transpose().middleCols(r1,r2-r1+1), m1.transpose().middleCols(r1,r2-r1+1) );
Brian Silverman72890c22015-09-19 14:37:37 -0400163
164 // evaluation into plain matrices from expressions with direct access (stress MapBase)
165 DynamicMatrixType dm;
166 DynamicVectorType dv;
167 dm.setZero();
168 dm = m1.block(r1,c1,rows-r1,cols-c1).block(r2-r1,c2-c1,rows-r2,cols-c2);
169 VERIFY_IS_EQUAL(dm, (m1.block(r2,c2,rows-r2,cols-c2)));
170 dm.setZero();
171 dv.setZero();
172 dm = m1.block(r1,c1,r2-r1+1,c2-c1+1).row(0).transpose();
173 dv = m1.row(r1).segment(c1,c2-c1+1);
174 VERIFY_IS_EQUAL(dv, dm);
175 dm.setZero();
176 dv.setZero();
177 dm = m1.col(c1).segment(r1,r2-r1+1);
178 dv = m1.block(r1,c1,r2-r1+1,c2-c1+1).col(0);
179 VERIFY_IS_EQUAL(dv, dm);
180 dm.setZero();
181 dv.setZero();
182 dm = m1.block(r1,c1,r2-r1+1,c2-c1+1).transpose().col(0);
183 dv = m1.row(r1).segment(c1,c2-c1+1);
184 VERIFY_IS_EQUAL(dv, dm);
185 dm.setZero();
186 dv.setZero();
187 dm = m1.row(r1).segment(c1,c2-c1+1).transpose();
188 dv = m1.transpose().block(c1,r1,c2-c1+1,r2-r1+1).col(0);
189 VERIFY_IS_EQUAL(dv, dm);
Austin Schuh189376f2018-12-20 22:11:15 +1100190
191 VERIFY_IS_EQUAL( (m1.template block<Dynamic,1>(1,0,0,1)), m1.block(1,0,0,1));
192 VERIFY_IS_EQUAL( (m1.template block<1,Dynamic>(0,1,1,0)), m1.block(0,1,1,0));
193 VERIFY_IS_EQUAL( ((m1*1).template block<Dynamic,1>(1,0,0,1)), m1.block(1,0,0,1));
194 VERIFY_IS_EQUAL( ((m1*1).template block<1,Dynamic>(0,1,1,0)), m1.block(0,1,1,0));
195
196 if (rows>=2 && cols>=2)
197 {
198 VERIFY_RAISES_ASSERT( m1 += m1.col(0) );
199 VERIFY_RAISES_ASSERT( m1 -= m1.col(0) );
200 VERIFY_RAISES_ASSERT( m1.array() *= m1.col(0).array() );
201 VERIFY_RAISES_ASSERT( m1.array() /= m1.col(0).array() );
202 }
Brian Silverman72890c22015-09-19 14:37:37 -0400203}
204
205
206template<typename MatrixType>
207void compare_using_data_and_stride(const MatrixType& m)
208{
Brian Silverman72890c22015-09-19 14:37:37 -0400209 Index rows = m.rows();
210 Index cols = m.cols();
211 Index size = m.size();
212 Index innerStride = m.innerStride();
213 Index outerStride = m.outerStride();
214 Index rowStride = m.rowStride();
215 Index colStride = m.colStride();
216 const typename MatrixType::Scalar* data = m.data();
217
218 for(int j=0;j<cols;++j)
219 for(int i=0;i<rows;++i)
220 VERIFY(m.coeff(i,j) == data[i*rowStride + j*colStride]);
221
222 if(!MatrixType::IsVectorAtCompileTime)
223 {
224 for(int j=0;j<cols;++j)
225 for(int i=0;i<rows;++i)
226 VERIFY(m.coeff(i,j) == data[(MatrixType::Flags&RowMajorBit)
227 ? i*outerStride + j*innerStride
228 : j*outerStride + i*innerStride]);
229 }
230
231 if(MatrixType::IsVectorAtCompileTime)
232 {
233 VERIFY(innerStride == int((&m.coeff(1))-(&m.coeff(0))));
234 for (int i=0;i<size;++i)
235 VERIFY(m.coeff(i) == data[i*innerStride]);
236 }
237}
238
239template<typename MatrixType>
240void data_and_stride(const MatrixType& m)
241{
Brian Silverman72890c22015-09-19 14:37:37 -0400242 Index rows = m.rows();
243 Index cols = m.cols();
244
245 Index r1 = internal::random<Index>(0,rows-1);
246 Index r2 = internal::random<Index>(r1,rows-1);
247 Index c1 = internal::random<Index>(0,cols-1);
248 Index c2 = internal::random<Index>(c1,cols-1);
249
250 MatrixType m1 = MatrixType::Random(rows, cols);
251 compare_using_data_and_stride(m1.block(r1, c1, r2-r1+1, c2-c1+1));
252 compare_using_data_and_stride(m1.transpose().block(c1, r1, c2-c1+1, r2-r1+1));
253 compare_using_data_and_stride(m1.row(r1));
254 compare_using_data_and_stride(m1.col(c1));
255 compare_using_data_and_stride(m1.row(r1).transpose());
256 compare_using_data_and_stride(m1.col(c1).transpose());
257}
258
259void test_block()
260{
261 for(int i = 0; i < g_repeat; i++) {
262 CALL_SUBTEST_1( block(Matrix<float, 1, 1>()) );
263 CALL_SUBTEST_2( block(Matrix4d()) );
264 CALL_SUBTEST_3( block(MatrixXcf(3, 3)) );
265 CALL_SUBTEST_4( block(MatrixXi(8, 12)) );
266 CALL_SUBTEST_5( block(MatrixXcd(20, 20)) );
267 CALL_SUBTEST_6( block(MatrixXf(20, 20)) );
268
269 CALL_SUBTEST_8( block(Matrix<float,Dynamic,4>(3, 4)) );
270
271#ifndef EIGEN_DEFAULT_TO_ROW_MAJOR
272 CALL_SUBTEST_6( data_and_stride(MatrixXf(internal::random(5,50), internal::random(5,50))) );
273 CALL_SUBTEST_7( data_and_stride(Matrix<int,Dynamic,Dynamic,RowMajor>(internal::random(5,50), internal::random(5,50))) );
274#endif
275 }
276}