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Gael Guennebaud86ccd992008-11-05 13:47:55 +00001// This file is part of Eigen, a lightweight C++ template library
2// for linear algebra. Eigen itself is part of the KDE project.
3//
4// Copyright (C) 2008 Daniel Gomez Ferro <dgomezferro@gmail.com>
5//
6// Eigen is free software; you can redistribute it and/or
7// modify it under the terms of the GNU Lesser General Public
8// License as published by the Free Software Foundation; either
9// 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
13// published by the Free Software Foundation; either version 2 of
14// the License, or (at your option) any later version.
15//
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
18// FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License or the
19// GNU General Public License for more details.
20//
21// You should have received a copy of the GNU Lesser General Public
22// License and a copy of the GNU General Public License along with
23// Eigen. If not, see <http://www.gnu.org/licenses/>.
24
25#include "sparse.h"
26
Gael Guennebaudd3dcb042009-01-23 09:50:16 +000027template<typename SetterType,typename DenseType, typename Scalar, int Options>
28bool test_random_setter(SparseMatrix<Scalar,Options>& sm, const DenseType& ref, const std::vector<Vector2i>& nonzeroCoords)
Gael Guennebaud86ccd992008-11-05 13:47:55 +000029{
Gael Guennebaudd3dcb042009-01-23 09:50:16 +000030 typedef SparseMatrix<Scalar,Options> SparseType;
Gael Guennebaud86ccd992008-11-05 13:47:55 +000031 {
32 sm.setZero();
33 SetterType w(sm);
34 std::vector<Vector2i> remaining = nonzeroCoords;
35 while(!remaining.empty())
36 {
37 int i = ei_random<int>(0,remaining.size()-1);
38 w(remaining[i].x(),remaining[i].y()) = ref.coeff(remaining[i].x(),remaining[i].y());
39 remaining[i] = remaining.back();
40 remaining.pop_back();
41 }
42 }
43 return sm.isApprox(ref);
44}
45
Gael Guennebaud178858f2009-01-19 15:20:45 +000046template<typename SetterType,typename DenseType, typename T>
47bool test_random_setter(DynamicSparseMatrix<T>& sm, const DenseType& ref, const std::vector<Vector2i>& nonzeroCoords)
Gael Guennebaud86ccd992008-11-05 13:47:55 +000048{
Gael Guennebaud178858f2009-01-19 15:20:45 +000049 sm.setZero();
50 std::vector<Vector2i> remaining = nonzeroCoords;
51 while(!remaining.empty())
52 {
53 int i = ei_random<int>(0,remaining.size()-1);
54 sm.coeffRef(remaining[i].x(),remaining[i].y()) = ref.coeff(remaining[i].x(),remaining[i].y());
55 remaining[i] = remaining.back();
56 remaining.pop_back();
57 }
58 return sm.isApprox(ref);
59}
60
61template<typename SparseMatrixType> void sparse_basic(const SparseMatrixType& ref)
62{
63 const int rows = ref.rows();
64 const int cols = ref.cols();
65 typedef typename SparseMatrixType::Scalar Scalar;
66 enum { Flags = SparseMatrixType::Flags };
67
Gael Guennebaud86ccd992008-11-05 13:47:55 +000068 double density = std::max(8./(rows*cols), 0.01);
69 typedef Matrix<Scalar,Dynamic,Dynamic> DenseMatrix;
70 typedef Matrix<Scalar,Dynamic,1> DenseVector;
71 Scalar eps = 1e-6;
72
Gael Guennebaud178858f2009-01-19 15:20:45 +000073 SparseMatrixType m(rows, cols);
Gael Guennebaud86ccd992008-11-05 13:47:55 +000074 DenseMatrix refMat = DenseMatrix::Zero(rows, cols);
75 DenseVector vec1 = DenseVector::Random(rows);
Gael Guennebaud2d534662009-01-14 21:27:54 +000076 Scalar s1 = ei_random<Scalar>();
Gael Guennebaud86ccd992008-11-05 13:47:55 +000077
78 std::vector<Vector2i> zeroCoords;
79 std::vector<Vector2i> nonzeroCoords;
80 initSparse<Scalar>(density, refMat, m, 0, &zeroCoords, &nonzeroCoords);
Gael Guennebaud178858f2009-01-19 15:20:45 +000081
Gael Guennebaud86ccd992008-11-05 13:47:55 +000082 if (zeroCoords.size()==0 || nonzeroCoords.size()==0)
83 return;
84
85 // test coeff and coeffRef
86 for (int i=0; i<(int)zeroCoords.size(); ++i)
87 {
88 VERIFY_IS_MUCH_SMALLER_THAN( m.coeff(zeroCoords[i].x(),zeroCoords[i].y()), eps );
Gael Guennebaud178858f2009-01-19 15:20:45 +000089 if(ei_is_same_type<SparseMatrixType,SparseMatrix<Scalar,Flags> >::ret)
90 VERIFY_RAISES_ASSERT( m.coeffRef(zeroCoords[0].x(),zeroCoords[0].y()) = 5 );
Gael Guennebaud86ccd992008-11-05 13:47:55 +000091 }
92 VERIFY_IS_APPROX(m, refMat);
93
94 m.coeffRef(nonzeroCoords[0].x(), nonzeroCoords[0].y()) = Scalar(5);
95 refMat.coeffRef(nonzeroCoords[0].x(), nonzeroCoords[0].y()) = Scalar(5);
96
97 VERIFY_IS_APPROX(m, refMat);
Gael Guennebaudc4c70662009-01-14 14:24:10 +000098 /*
Gael Guennebaud86ccd992008-11-05 13:47:55 +000099 // test InnerIterators and Block expressions
100 for (int t=0; t<10; ++t)
101 {
102 int j = ei_random<int>(0,cols-1);
103 int i = ei_random<int>(0,rows-1);
104 int w = ei_random<int>(1,cols-j-1);
105 int h = ei_random<int>(1,rows-i-1);
106
Gael Guennebaudc4c70662009-01-14 14:24:10 +0000107// VERIFY_IS_APPROX(m.block(i,j,h,w), refMat.block(i,j,h,w));
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000108 for(int c=0; c<w; c++)
109 {
110 VERIFY_IS_APPROX(m.block(i,j,h,w).col(c), refMat.block(i,j,h,w).col(c));
111 for(int r=0; r<h; r++)
112 {
Gael Guennebaudc4c70662009-01-14 14:24:10 +0000113// VERIFY_IS_APPROX(m.block(i,j,h,w).col(c).coeff(r), refMat.block(i,j,h,w).col(c).coeff(r));
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000114 }
115 }
Gael Guennebaudc4c70662009-01-14 14:24:10 +0000116// for(int r=0; r<h; r++)
117// {
118// VERIFY_IS_APPROX(m.block(i,j,h,w).row(r), refMat.block(i,j,h,w).row(r));
119// for(int c=0; c<w; c++)
120// {
121// VERIFY_IS_APPROX(m.block(i,j,h,w).row(r).coeff(c), refMat.block(i,j,h,w).row(r).coeff(c));
122// }
123// }
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000124 }
125
126 for(int c=0; c<cols; c++)
127 {
128 VERIFY_IS_APPROX(m.col(c) + m.col(c), (m + m).col(c));
129 VERIFY_IS_APPROX(m.col(c) + m.col(c), refMat.col(c) + refMat.col(c));
130 }
131
132 for(int r=0; r<rows; r++)
133 {
134 VERIFY_IS_APPROX(m.row(r) + m.row(r), (m + m).row(r));
135 VERIFY_IS_APPROX(m.row(r) + m.row(r), refMat.row(r) + refMat.row(r));
136 }
137 */
138
139 // test SparseSetters
140 // coherent setter
141 // TODO extend the MatrixSetter
142// {
143// m.setZero();
144// VERIFY_IS_NOT_APPROX(m, refMat);
Gael Guennebaud178858f2009-01-19 15:20:45 +0000145// SparseSetter<SparseMatrixType, FullyCoherentAccessPattern> w(m);
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000146// for (int i=0; i<nonzeroCoords.size(); ++i)
147// {
148// w->coeffRef(nonzeroCoords[i].x(),nonzeroCoords[i].y()) = refMat.coeff(nonzeroCoords[i].x(),nonzeroCoords[i].y());
149// }
150// }
151// VERIFY_IS_APPROX(m, refMat);
152
153 // random setter
154// {
155// m.setZero();
156// VERIFY_IS_NOT_APPROX(m, refMat);
Gael Guennebaud178858f2009-01-19 15:20:45 +0000157// SparseSetter<SparseMatrixType, RandomAccessPattern> w(m);
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000158// std::vector<Vector2i> remaining = nonzeroCoords;
159// while(!remaining.empty())
160// {
161// int i = ei_random<int>(0,remaining.size()-1);
162// w->coeffRef(remaining[i].x(),remaining[i].y()) = refMat.coeff(remaining[i].x(),remaining[i].y());
163// remaining[i] = remaining.back();
164// remaining.pop_back();
165// }
166// }
167// VERIFY_IS_APPROX(m, refMat);
168
Gael Guennebaud178858f2009-01-19 15:20:45 +0000169 VERIFY(( test_random_setter<RandomSetter<SparseMatrixType, StdMapTraits> >(m,refMat,nonzeroCoords) ));
Gael Guennebaud6a722602009-01-23 12:26:32 +0000170 #ifdef EIGEN_UNORDERED_MAP_SUPPORT
171 VERIFY(( test_random_setter<RandomSetter<SparseMatrixType, StdUnorderedMapTraits> >(m,refMat,nonzeroCoords) ));
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000172 #endif
173 #ifdef _DENSE_HASH_MAP_H_
Gael Guennebaud178858f2009-01-19 15:20:45 +0000174 VERIFY(( test_random_setter<RandomSetter<SparseMatrixType, GoogleDenseHashMapTraits> >(m,refMat,nonzeroCoords) ));
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000175 #endif
176 #ifdef _SPARSE_HASH_MAP_H_
Gael Guennebaud178858f2009-01-19 15:20:45 +0000177 VERIFY(( test_random_setter<RandomSetter<SparseMatrixType, GoogleSparseHashMapTraits> >(m,refMat,nonzeroCoords) ));
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000178 #endif
Gael Guennebaud5015e482008-12-11 18:26:24 +0000179
180 // test fillrand
181 {
182 DenseMatrix m1(rows,cols);
183 m1.setZero();
Gael Guennebaud178858f2009-01-19 15:20:45 +0000184 SparseMatrixType m2(rows,cols);
Gael Guennebaud5015e482008-12-11 18:26:24 +0000185 m2.startFill();
186 for (int j=0; j<cols; ++j)
187 {
188 for (int k=0; k<rows/2; ++k)
189 {
190 int i = ei_random<int>(0,rows-1);
191 if (m1.coeff(i,j)==Scalar(0))
192 m2.fillrand(i,j) = m1(i,j) = ei_random<Scalar>();
193 }
194 }
195 m2.endFill();
Gael Guennebaudc4c70662009-01-14 14:24:10 +0000196 VERIFY_IS_APPROX(m2,m1);
Gael Guennebaud5015e482008-12-11 18:26:24 +0000197 }
Gael Guennebaud9a4b7992009-01-15 14:16:41 +0000198
Gael Guennebaud87241082009-01-15 13:30:50 +0000199 // test RandomSetter
Gael Guennebaud178858f2009-01-19 15:20:45 +0000200 /*{
201 SparseMatrixType m1(rows,cols), m2(rows,cols);
Gael Guennebaud87241082009-01-15 13:30:50 +0000202 DenseMatrix refM1 = DenseMatrix::Zero(rows, rows);
203 initSparse<Scalar>(density, refM1, m1);
204 {
Gael Guennebaud178858f2009-01-19 15:20:45 +0000205 Eigen::RandomSetter<SparseMatrixType > setter(m2);
Gael Guennebaud87241082009-01-15 13:30:50 +0000206 for (int j=0; j<m1.outerSize(); ++j)
Gael Guennebaud178858f2009-01-19 15:20:45 +0000207 for (typename SparseMatrixType::InnerIterator i(m1,j); i; ++i)
Gael Guennebaud87241082009-01-15 13:30:50 +0000208 setter(i.index(), j) = i.value();
209 }
210 VERIFY_IS_APPROX(m1, m2);
Gael Guennebaud178858f2009-01-19 15:20:45 +0000211 }*/
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000212// std::cerr << m.transpose() << "\n\n" << refMat.transpose() << "\n\n";
213// VERIFY_IS_APPROX(m, refMat);
214
Gael Guennebaud2d534662009-01-14 21:27:54 +0000215 // test basic computations
216 {
217 DenseMatrix refM1 = DenseMatrix::Zero(rows, rows);
218 DenseMatrix refM2 = DenseMatrix::Zero(rows, rows);
219 DenseMatrix refM3 = DenseMatrix::Zero(rows, rows);
220 DenseMatrix refM4 = DenseMatrix::Zero(rows, rows);
Gael Guennebaud178858f2009-01-19 15:20:45 +0000221 SparseMatrixType m1(rows, rows);
222 SparseMatrixType m2(rows, rows);
223 SparseMatrixType m3(rows, rows);
224 SparseMatrixType m4(rows, rows);
Gael Guennebaud2d534662009-01-14 21:27:54 +0000225 initSparse<Scalar>(density, refM1, m1);
226 initSparse<Scalar>(density, refM2, m2);
227 initSparse<Scalar>(density, refM3, m3);
228 initSparse<Scalar>(density, refM4, m4);
229
230 VERIFY_IS_APPROX(m1+m2, refM1+refM2);
231 VERIFY_IS_APPROX(m1+m2+m3, refM1+refM2+refM3);
232 VERIFY_IS_APPROX(m3.cwise()*(m1+m2), refM3.cwise()*(refM1+refM2));
233 VERIFY_IS_APPROX(m1*s1-m2, refM1*s1-refM2);
234
235 VERIFY_IS_APPROX(m1*=s1, refM1*=s1);
236 VERIFY_IS_APPROX(m1/=s1, refM1/=s1);
Gael Guennebaude7c48fa2009-01-23 13:59:32 +0000237
238 VERIFY_IS_APPROX(m1+=m2, refM1+=refM2);
239 VERIFY_IS_APPROX(m1-=m2, refM1-=refM2);
240
Gael Guennebauda9688f02009-02-09 09:59:30 +0000241 VERIFY_IS_APPROX(m1.col(0).dot(refM2.row(0)), refM1.col(0).dot(refM2.row(0)));
242
Gael Guennebaud2d534662009-01-14 21:27:54 +0000243 refM4.setRandom();
244 // sparse cwise* dense
245 VERIFY_IS_APPROX(m3.cwise()*refM4, refM3.cwise()*refM4);
246// VERIFY_IS_APPROX(m3.cwise()/refM4, refM3.cwise()/refM4);
247 }
248
Gael Guennebaudc4c70662009-01-14 14:24:10 +0000249 // test innerVector()
250 {
251 DenseMatrix refMat2 = DenseMatrix::Zero(rows, rows);
Gael Guennebaud178858f2009-01-19 15:20:45 +0000252 SparseMatrixType m2(rows, rows);
Gael Guennebaudc4c70662009-01-14 14:24:10 +0000253 initSparse<Scalar>(density, refMat2, m2);
254 int j0 = ei_random(0,rows-1);
255 int j1 = ei_random(0,rows-1);
Gael Guennebaud2d534662009-01-14 21:27:54 +0000256 VERIFY_IS_APPROX(m2.innerVector(j0), refMat2.col(j0));
257 VERIFY_IS_APPROX(m2.innerVector(j0)+m2.innerVector(j1), refMat2.col(j0)+refMat2.col(j1));
Gael Guennebaud8ce45032009-01-27 22:48:17 +0000258 //m2.innerVector(j0) = 2*m2.innerVector(j1);
259 //refMat2.col(j0) = 2*refMat2.col(j1);
260 //VERIFY_IS_APPROX(m2, refMat2);
261 }
262
263 // test innerVectors()
264 {
265 DenseMatrix refMat2 = DenseMatrix::Zero(rows, rows);
266 SparseMatrixType m2(rows, rows);
267 initSparse<Scalar>(density, refMat2, m2);
268 int j0 = ei_random(0,rows-2);
269 int j1 = ei_random(0,rows-2);
270 int n0 = ei_random<int>(1,rows-std::max(j0,j1));
271 VERIFY_IS_APPROX(m2.innerVectors(j0,n0), refMat2.block(0,j0,rows,n0));
272 VERIFY_IS_APPROX(m2.innerVectors(j0,n0)+m2.innerVectors(j1,n0),
273 refMat2.block(0,j0,rows,n0)+refMat2.block(0,j1,rows,n0));
274 //m2.innerVectors(j0,n0) = m2.innerVectors(j0,n0) + m2.innerVectors(j1,n0);
275 //refMat2.block(0,j0,rows,n0) = refMat2.block(0,j0,rows,n0) + refMat2.block(0,j1,rows,n0);
Gael Guennebaudc4c70662009-01-14 14:24:10 +0000276 }
277
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000278 // test transpose
279 {
280 DenseMatrix refMat2 = DenseMatrix::Zero(rows, rows);
Gael Guennebaud178858f2009-01-19 15:20:45 +0000281 SparseMatrixType m2(rows, rows);
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000282 initSparse<Scalar>(density, refMat2, m2);
283 VERIFY_IS_APPROX(m2.transpose().eval(), refMat2.transpose().eval());
284 VERIFY_IS_APPROX(m2.transpose(), refMat2.transpose());
285 }
Gael Guennebaud52cf07d2009-01-21 18:46:04 +0000286
287 // test prune
288 {
289 SparseMatrixType m2(rows, rows);
290 DenseMatrix refM2(rows, rows);
291 refM2.setZero();
292 int countFalseNonZero = 0;
293 int countTrueNonZero = 0;
294 m2.startFill();
295 for (int j=0; j<m2.outerSize(); ++j)
296 for (int i=0; i<m2.innerSize(); ++i)
297 {
298 float x = ei_random<float>(0,1);
299 if (x<0.1)
300 {
301 // do nothing
302 }
303 else if (x<0.5)
304 {
305 countFalseNonZero++;
306 m2.fill(i,j) = Scalar(0);
307 }
308 else
309 {
310 countTrueNonZero++;
311 m2.fill(i,j) = refM2(i,j) = Scalar(1);
312 }
313 }
314 m2.endFill();
315 VERIFY(countFalseNonZero+countTrueNonZero == m2.nonZeros());
316 VERIFY_IS_APPROX(m2, refM2);
317 m2.prune(1);
318 VERIFY(countTrueNonZero==m2.nonZeros());
319 VERIFY_IS_APPROX(m2, refM2);
320 }
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000321}
322
323void test_sparse_basic()
324{
325 for(int i = 0; i < g_repeat; i++) {
Gael Guennebaud52cf07d2009-01-21 18:46:04 +0000326 CALL_SUBTEST( sparse_basic(SparseMatrix<double>(8, 8)) );
327 CALL_SUBTEST( sparse_basic(SparseMatrix<std::complex<double> >(16, 16)) );
328 CALL_SUBTEST( sparse_basic(SparseMatrix<double>(33, 33)) );
Gael Guennebaud178858f2009-01-19 15:20:45 +0000329
330 CALL_SUBTEST( sparse_basic(DynamicSparseMatrix<double>(8, 8)) );
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000331 }
332}