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Gael Guennebaud86ccd992008-11-05 13:47:55 +00001// This file is part of Eigen, a lightweight C++ template library
Benoit Jacob6347b1d2009-05-22 20:25:33 +02002// for linear algebra.
Gael Guennebaud86ccd992008-11-05 13:47:55 +00003//
Gael Guennebaud22c76092011-03-22 11:58:22 +01004// Copyright (C) 2008-2011 Gael Guennebaud <gael.guennebaud@inria.fr>
Gael Guennebaud86ccd992008-11-05 13:47:55 +00005// Copyright (C) 2008 Daniel Gomez Ferro <dgomezferro@gmail.com>
6//
Benoit Jacob69124cf2012-07-13 14:42:47 -04007// This Source Code Form is subject to the terms of the Mozilla
8// Public License v. 2.0. If a copy of the MPL was not distributed
9// with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
Gael Guennebaud86ccd992008-11-05 13:47:55 +000010
11#include "sparse.h"
12
Gael Guennebaud178858f2009-01-19 15:20:45 +000013template<typename SparseMatrixType> void sparse_basic(const SparseMatrixType& ref)
14{
Hauke Heibelf1679c72010-06-20 17:37:56 +020015 typedef typename SparseMatrixType::Index Index;
16
17 const Index rows = ref.rows();
18 const Index cols = ref.cols();
Gael Guennebaud178858f2009-01-19 15:20:45 +000019 typedef typename SparseMatrixType::Scalar Scalar;
20 enum { Flags = SparseMatrixType::Flags };
Gael Guennebaud9f795582009-12-16 19:18:40 +010021
Gael Guennebaud42e25782011-08-19 14:18:05 +020022 double density = (std::max)(8./(rows*cols), 0.01);
Gael Guennebaud86ccd992008-11-05 13:47:55 +000023 typedef Matrix<Scalar,Dynamic,Dynamic> DenseMatrix;
24 typedef Matrix<Scalar,Dynamic,1> DenseVector;
25 Scalar eps = 1e-6;
26
Gael Guennebaud178858f2009-01-19 15:20:45 +000027 SparseMatrixType m(rows, cols);
Gael Guennebaud86ccd992008-11-05 13:47:55 +000028 DenseMatrix refMat = DenseMatrix::Zero(rows, cols);
29 DenseVector vec1 = DenseVector::Random(rows);
Benoit Jacob47160402010-10-25 10:15:22 -040030 Scalar s1 = internal::random<Scalar>();
Gael Guennebaud86ccd992008-11-05 13:47:55 +000031
32 std::vector<Vector2i> zeroCoords;
33 std::vector<Vector2i> nonzeroCoords;
34 initSparse<Scalar>(density, refMat, m, 0, &zeroCoords, &nonzeroCoords);
Gael Guennebaud9f795582009-12-16 19:18:40 +010035
Gael Guennebaud86ccd992008-11-05 13:47:55 +000036 if (zeroCoords.size()==0 || nonzeroCoords.size()==0)
37 return;
38
39 // test coeff and coeffRef
40 for (int i=0; i<(int)zeroCoords.size(); ++i)
41 {
42 VERIFY_IS_MUCH_SMALLER_THAN( m.coeff(zeroCoords[i].x(),zeroCoords[i].y()), eps );
Hauke Heibel7bc8e3a2010-10-25 22:13:49 +020043 if(internal::is_same<SparseMatrixType,SparseMatrix<Scalar,Flags> >::value)
Gael Guennebaud178858f2009-01-19 15:20:45 +000044 VERIFY_RAISES_ASSERT( m.coeffRef(zeroCoords[0].x(),zeroCoords[0].y()) = 5 );
Gael Guennebaud86ccd992008-11-05 13:47:55 +000045 }
46 VERIFY_IS_APPROX(m, refMat);
47
48 m.coeffRef(nonzeroCoords[0].x(), nonzeroCoords[0].y()) = Scalar(5);
49 refMat.coeffRef(nonzeroCoords[0].x(), nonzeroCoords[0].y()) = Scalar(5);
50
51 VERIFY_IS_APPROX(m, refMat);
Gael Guennebaudc4c70662009-01-14 14:24:10 +000052 /*
Gael Guennebaud86ccd992008-11-05 13:47:55 +000053 // test InnerIterators and Block expressions
54 for (int t=0; t<10; ++t)
55 {
Benoit Jacob47160402010-10-25 10:15:22 -040056 int j = internal::random<int>(0,cols-1);
57 int i = internal::random<int>(0,rows-1);
58 int w = internal::random<int>(1,cols-j-1);
59 int h = internal::random<int>(1,rows-i-1);
Gael Guennebaud86ccd992008-11-05 13:47:55 +000060
Gael Guennebaudc4c70662009-01-14 14:24:10 +000061// VERIFY_IS_APPROX(m.block(i,j,h,w), refMat.block(i,j,h,w));
Gael Guennebaud86ccd992008-11-05 13:47:55 +000062 for(int c=0; c<w; c++)
63 {
64 VERIFY_IS_APPROX(m.block(i,j,h,w).col(c), refMat.block(i,j,h,w).col(c));
65 for(int r=0; r<h; r++)
66 {
Gael Guennebaudc4c70662009-01-14 14:24:10 +000067// 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 +000068 }
69 }
Gael Guennebaudc4c70662009-01-14 14:24:10 +000070// for(int r=0; r<h; r++)
71// {
72// VERIFY_IS_APPROX(m.block(i,j,h,w).row(r), refMat.block(i,j,h,w).row(r));
73// for(int c=0; c<w; c++)
74// {
75// VERIFY_IS_APPROX(m.block(i,j,h,w).row(r).coeff(c), refMat.block(i,j,h,w).row(r).coeff(c));
76// }
77// }
Gael Guennebaud86ccd992008-11-05 13:47:55 +000078 }
79
80 for(int c=0; c<cols; c++)
81 {
82 VERIFY_IS_APPROX(m.col(c) + m.col(c), (m + m).col(c));
83 VERIFY_IS_APPROX(m.col(c) + m.col(c), refMat.col(c) + refMat.col(c));
84 }
85
86 for(int r=0; r<rows; r++)
87 {
88 VERIFY_IS_APPROX(m.row(r) + m.row(r), (m + m).row(r));
89 VERIFY_IS_APPROX(m.row(r) + m.row(r), refMat.row(r) + refMat.row(r));
90 }
91 */
92
Gael Guennebaud28293142009-05-04 14:25:12 +000093 // test insert (inner random)
Gael Guennebaud5015e482008-12-11 18:26:24 +000094 {
95 DenseMatrix m1(rows,cols);
96 m1.setZero();
Gael Guennebaud178858f2009-01-19 15:20:45 +000097 SparseMatrixType m2(rows,cols);
Gael Guennebaud4ca89f32011-12-02 19:00:16 +010098 if(internal::random<int>()%2)
99 m2.reserve(VectorXi::Constant(m2.outerSize(), 2));
Gael Guennebaud5015e482008-12-11 18:26:24 +0000100 for (int j=0; j<cols; ++j)
101 {
102 for (int k=0; k<rows/2; ++k)
103 {
Benoit Jacob47160402010-10-25 10:15:22 -0400104 int i = internal::random<int>(0,rows-1);
Gael Guennebaud5015e482008-12-11 18:26:24 +0000105 if (m1.coeff(i,j)==Scalar(0))
Benoit Jacob47160402010-10-25 10:15:22 -0400106 m2.insert(i,j) = m1(i,j) = internal::random<Scalar>();
Gael Guennebaud5015e482008-12-11 18:26:24 +0000107 }
108 }
Gael Guennebaud28293142009-05-04 14:25:12 +0000109 m2.finalize();
110 VERIFY_IS_APPROX(m2,m1);
111 }
Gael Guennebaud9f795582009-12-16 19:18:40 +0100112
Gael Guennebaud28293142009-05-04 14:25:12 +0000113 // test insert (fully random)
114 {
115 DenseMatrix m1(rows,cols);
116 m1.setZero();
117 SparseMatrixType m2(rows,cols);
Gael Guennebaud4ca89f32011-12-02 19:00:16 +0100118 if(internal::random<int>()%2)
119 m2.reserve(VectorXi::Constant(m2.outerSize(), 2));
Gael Guennebaud28293142009-05-04 14:25:12 +0000120 for (int k=0; k<rows*cols; ++k)
121 {
Benoit Jacob47160402010-10-25 10:15:22 -0400122 int i = internal::random<int>(0,rows-1);
123 int j = internal::random<int>(0,cols-1);
Gael Guennebaud4ca89f32011-12-02 19:00:16 +0100124 if ((m1.coeff(i,j)==Scalar(0)) && (internal::random<int>()%2))
Benoit Jacob47160402010-10-25 10:15:22 -0400125 m2.insert(i,j) = m1(i,j) = internal::random<Scalar>();
Gael Guennebaud4ca89f32011-12-02 19:00:16 +0100126 else
127 {
128 Scalar v = internal::random<Scalar>();
129 m2.coeffRef(i,j) += v;
130 m1(i,j) += v;
131 }
Gael Guennebaud28293142009-05-04 14:25:12 +0000132 }
Gael Guennebaudc4c70662009-01-14 14:24:10 +0000133 VERIFY_IS_APPROX(m2,m1);
Gael Guennebaud5015e482008-12-11 18:26:24 +0000134 }
Gael Guennebaud7706baf2011-09-08 13:42:54 +0200135
136 // test insert (un-compressed)
137 for(int mode=0;mode<4;++mode)
138 {
139 DenseMatrix m1(rows,cols);
140 m1.setZero();
141 SparseMatrixType m2(rows,cols);
142 VectorXi r(VectorXi::Constant(m2.outerSize(), ((mode%2)==0) ? m2.innerSize() : std::max<int>(1,m2.innerSize()/8)));
143 m2.reserve(r);
144 for (int k=0; k<rows*cols; ++k)
145 {
146 int i = internal::random<int>(0,rows-1);
147 int j = internal::random<int>(0,cols-1);
148 if (m1.coeff(i,j)==Scalar(0))
149 m2.insert(i,j) = m1(i,j) = internal::random<Scalar>();
150 if(mode==3)
151 m2.reserve(r);
152 }
Gael Guennebaud4ca89f32011-12-02 19:00:16 +0100153 if(internal::random<int>()%2)
154 m2.makeCompressed();
Gael Guennebaud7706baf2011-09-08 13:42:54 +0200155 VERIFY_IS_APPROX(m2,m1);
156 }
Gael Guennebaud9f795582009-12-16 19:18:40 +0100157
Gael Guennebaud2d534662009-01-14 21:27:54 +0000158 // test basic computations
159 {
160 DenseMatrix refM1 = DenseMatrix::Zero(rows, rows);
161 DenseMatrix refM2 = DenseMatrix::Zero(rows, rows);
162 DenseMatrix refM3 = DenseMatrix::Zero(rows, rows);
163 DenseMatrix refM4 = DenseMatrix::Zero(rows, rows);
Gael Guennebaud178858f2009-01-19 15:20:45 +0000164 SparseMatrixType m1(rows, rows);
165 SparseMatrixType m2(rows, rows);
166 SparseMatrixType m3(rows, rows);
167 SparseMatrixType m4(rows, rows);
Gael Guennebaud2d534662009-01-14 21:27:54 +0000168 initSparse<Scalar>(density, refM1, m1);
169 initSparse<Scalar>(density, refM2, m2);
170 initSparse<Scalar>(density, refM3, m3);
171 initSparse<Scalar>(density, refM4, m4);
172
173 VERIFY_IS_APPROX(m1+m2, refM1+refM2);
174 VERIFY_IS_APPROX(m1+m2+m3, refM1+refM2+refM3);
Gael Guennebaud9f795582009-12-16 19:18:40 +0100175 VERIFY_IS_APPROX(m3.cwiseProduct(m1+m2), refM3.cwiseProduct(refM1+refM2));
Gael Guennebaud2d534662009-01-14 21:27:54 +0000176 VERIFY_IS_APPROX(m1*s1-m2, refM1*s1-refM2);
177
178 VERIFY_IS_APPROX(m1*=s1, refM1*=s1);
179 VERIFY_IS_APPROX(m1/=s1, refM1/=s1);
Gael Guennebaud9f795582009-12-16 19:18:40 +0100180
Gael Guennebaude7c48fa2009-01-23 13:59:32 +0000181 VERIFY_IS_APPROX(m1+=m2, refM1+=refM2);
182 VERIFY_IS_APPROX(m1-=m2, refM1-=refM2);
Gael Guennebaud9f795582009-12-16 19:18:40 +0100183
Gael Guennebaud9353bba2011-12-04 14:39:24 +0100184 if(SparseMatrixType::IsRowMajor)
185 VERIFY_IS_APPROX(m1.innerVector(0).dot(refM2.row(0)), refM1.row(0).dot(refM2.row(0)));
186 else
187 VERIFY_IS_APPROX(m1.innerVector(0).dot(refM2.row(0)), refM1.col(0).dot(refM2.row(0)));
Gael Guennebaud9f795582009-12-16 19:18:40 +0100188
Gael Guennebaud91e392a2011-12-03 23:49:37 +0100189 VERIFY_IS_APPROX(m1.conjugate(), refM1.conjugate());
190 VERIFY_IS_APPROX(m1.real(), refM1.real());
191
Gael Guennebaud2d534662009-01-14 21:27:54 +0000192 refM4.setRandom();
193 // sparse cwise* dense
Gael Guennebaud9f795582009-12-16 19:18:40 +0100194 VERIFY_IS_APPROX(m3.cwiseProduct(refM4), refM3.cwiseProduct(refM4));
Gael Guennebaud2d534662009-01-14 21:27:54 +0000195// VERIFY_IS_APPROX(m3.cwise()/refM4, refM3.cwise()/refM4);
196 }
197
Gael Guennebaudece48a62010-06-18 11:28:30 +0200198 // test transpose
199 {
200 DenseMatrix refMat2 = DenseMatrix::Zero(rows, rows);
201 SparseMatrixType m2(rows, rows);
202 initSparse<Scalar>(density, refMat2, m2);
203 VERIFY_IS_APPROX(m2.transpose().eval(), refMat2.transpose().eval());
204 VERIFY_IS_APPROX(m2.transpose(), refMat2.transpose());
205
206 VERIFY_IS_APPROX(SparseMatrixType(m2.adjoint()), refMat2.adjoint());
207 }
208
Gael Guennebaudc4c70662009-01-14 14:24:10 +0000209 // test innerVector()
210 {
211 DenseMatrix refMat2 = DenseMatrix::Zero(rows, rows);
Gael Guennebaud178858f2009-01-19 15:20:45 +0000212 SparseMatrixType m2(rows, rows);
Gael Guennebaudc4c70662009-01-14 14:24:10 +0000213 initSparse<Scalar>(density, refMat2, m2);
Gael Guennebaud91fe1502011-06-07 11:28:16 +0200214 int j0 = internal::random<int>(0,rows-1);
215 int j1 = internal::random<int>(0,rows-1);
Gael Guennebaud9353bba2011-12-04 14:39:24 +0100216 if(SparseMatrixType::IsRowMajor)
217 VERIFY_IS_APPROX(m2.innerVector(j0), refMat2.row(j0));
218 else
219 VERIFY_IS_APPROX(m2.innerVector(j0), refMat2.col(j0));
220
221 if(SparseMatrixType::IsRowMajor)
222 VERIFY_IS_APPROX(m2.innerVector(j0)+m2.innerVector(j1), refMat2.row(j0)+refMat2.row(j1));
223 else
224 VERIFY_IS_APPROX(m2.innerVector(j0)+m2.innerVector(j1), refMat2.col(j0)+refMat2.col(j1));
Gael Guennebaud50d756b2011-12-20 18:10:02 +0100225
226 SparseMatrixType m3(rows,rows);
227 m3.reserve(VectorXi::Constant(rows,rows/2));
228 for(int j=0; j<rows; ++j)
229 for(int k=0; k<j; ++k)
230 m3.insertByOuterInner(j,k) = k+1;
231 for(int j=0; j<rows; ++j)
232 {
Gael Guennebaud67ae94f2011-12-23 09:41:14 +0100233 VERIFY(j==internal::real(m3.innerVector(j).nonZeros()));
Gael Guennebaud50d756b2011-12-20 18:10:02 +0100234 if(j>0)
Gael Guennebaud67ae94f2011-12-23 09:41:14 +0100235 VERIFY(j==internal::real(m3.innerVector(j).lastCoeff()));
Gael Guennebaud50d756b2011-12-20 18:10:02 +0100236 }
237 m3.makeCompressed();
238 for(int j=0; j<rows; ++j)
239 {
Gael Guennebaud67ae94f2011-12-23 09:41:14 +0100240 VERIFY(j==internal::real(m3.innerVector(j).nonZeros()));
Gael Guennebaud50d756b2011-12-20 18:10:02 +0100241 if(j>0)
Gael Guennebaud67ae94f2011-12-23 09:41:14 +0100242 VERIFY(j==internal::real(m3.innerVector(j).lastCoeff()));
Gael Guennebaud50d756b2011-12-20 18:10:02 +0100243 }
244
Gael Guennebaud8ce45032009-01-27 22:48:17 +0000245 //m2.innerVector(j0) = 2*m2.innerVector(j1);
246 //refMat2.col(j0) = 2*refMat2.col(j1);
247 //VERIFY_IS_APPROX(m2, refMat2);
248 }
Gael Guennebaud9f795582009-12-16 19:18:40 +0100249
Gael Guennebaud8ce45032009-01-27 22:48:17 +0000250 // test innerVectors()
251 {
252 DenseMatrix refMat2 = DenseMatrix::Zero(rows, rows);
253 SparseMatrixType m2(rows, rows);
254 initSparse<Scalar>(density, refMat2, m2);
Gael Guennebaud91fe1502011-06-07 11:28:16 +0200255 int j0 = internal::random<int>(0,rows-2);
256 int j1 = internal::random<int>(0,rows-2);
Gael Guennebaud42e25782011-08-19 14:18:05 +0200257 int n0 = internal::random<int>(1,rows-(std::max)(j0,j1));
Gael Guennebaud9353bba2011-12-04 14:39:24 +0100258 if(SparseMatrixType::IsRowMajor)
259 VERIFY_IS_APPROX(m2.innerVectors(j0,n0), refMat2.block(j0,0,n0,cols));
260 else
261 VERIFY_IS_APPROX(m2.innerVectors(j0,n0), refMat2.block(0,j0,rows,n0));
262 if(SparseMatrixType::IsRowMajor)
263 VERIFY_IS_APPROX(m2.innerVectors(j0,n0)+m2.innerVectors(j1,n0),
264 refMat2.block(j0,0,n0,cols)+refMat2.block(j1,0,n0,cols));
265 else
266 VERIFY_IS_APPROX(m2.innerVectors(j0,n0)+m2.innerVectors(j1,n0),
267 refMat2.block(0,j0,rows,n0)+refMat2.block(0,j1,rows,n0));
Gael Guennebaud8ce45032009-01-27 22:48:17 +0000268 //m2.innerVectors(j0,n0) = m2.innerVectors(j0,n0) + m2.innerVectors(j1,n0);
269 //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 +0000270 }
271
Gael Guennebaud52cf07d2009-01-21 18:46:04 +0000272 // test prune
273 {
274 SparseMatrixType m2(rows, rows);
275 DenseMatrix refM2(rows, rows);
276 refM2.setZero();
277 int countFalseNonZero = 0;
278 int countTrueNonZero = 0;
Gael Guennebaud52cf07d2009-01-21 18:46:04 +0000279 for (int j=0; j<m2.outerSize(); ++j)
Gael Guennebaud28293142009-05-04 14:25:12 +0000280 {
281 m2.startVec(j);
Gael Guennebaud52cf07d2009-01-21 18:46:04 +0000282 for (int i=0; i<m2.innerSize(); ++i)
283 {
Benoit Jacob47160402010-10-25 10:15:22 -0400284 float x = internal::random<float>(0,1);
Gael Guennebaud52cf07d2009-01-21 18:46:04 +0000285 if (x<0.1)
286 {
287 // do nothing
288 }
289 else if (x<0.5)
290 {
291 countFalseNonZero++;
Gael Guennebaud8710bd22010-06-02 13:32:13 +0200292 m2.insertBackByOuterInner(j,i) = Scalar(0);
Gael Guennebaud52cf07d2009-01-21 18:46:04 +0000293 }
294 else
295 {
296 countTrueNonZero++;
Gael Guennebaud9353bba2011-12-04 14:39:24 +0100297 m2.insertBackByOuterInner(j,i) = Scalar(1);
298 if(SparseMatrixType::IsRowMajor)
299 refM2(j,i) = Scalar(1);
300 else
301 refM2(i,j) = Scalar(1);
Gael Guennebaud52cf07d2009-01-21 18:46:04 +0000302 }
303 }
Gael Guennebaud28293142009-05-04 14:25:12 +0000304 }
305 m2.finalize();
Gael Guennebaud52cf07d2009-01-21 18:46:04 +0000306 VERIFY(countFalseNonZero+countTrueNonZero == m2.nonZeros());
307 VERIFY_IS_APPROX(m2, refM2);
Hauke Heibeld204ec42010-11-02 14:33:33 +0100308 m2.prune(Scalar(1));
Gael Guennebaud52cf07d2009-01-21 18:46:04 +0000309 VERIFY(countTrueNonZero==m2.nonZeros());
310 VERIFY_IS_APPROX(m2, refM2);
311 }
Gael Guennebaud9353bba2011-12-04 14:39:24 +0100312
Gael Guennebaud87138072012-01-28 11:13:59 +0100313 // test setFromTriplets
314 {
315 typedef Triplet<Scalar,Index> TripletType;
316 std::vector<TripletType> triplets;
317 int ntriplets = rows*cols;
318 triplets.reserve(ntriplets);
319 DenseMatrix refMat(rows,cols);
320 refMat.setZero();
321 for(int i=0;i<ntriplets;++i)
322 {
Gael Guennebaud18e3ac02012-01-31 09:14:01 +0100323 int r = internal::random<int>(0,rows-1);
324 int c = internal::random<int>(0,cols-1);
Gael Guennebaud87138072012-01-28 11:13:59 +0100325 Scalar v = internal::random<Scalar>();
Gael Guennebaud18e3ac02012-01-31 09:14:01 +0100326 triplets.push_back(TripletType(r,c,v));
327 refMat(r,c) += v;
Gael Guennebaud87138072012-01-28 11:13:59 +0100328 }
329 SparseMatrixType m(rows,cols);
330 m.setFromTriplets(triplets.begin(), triplets.end());
331 VERIFY_IS_APPROX(m, refMat);
332 }
333
Gael Guennebaud9353bba2011-12-04 14:39:24 +0100334 // test triangularView
335 {
336 DenseMatrix refMat2(rows, rows), refMat3(rows, rows);
337 SparseMatrixType m2(rows, rows), m3(rows, rows);
338 initSparse<Scalar>(density, refMat2, m2);
339 refMat3 = refMat2.template triangularView<Lower>();
340 m3 = m2.template triangularView<Lower>();
341 VERIFY_IS_APPROX(m3, refMat3);
342
343 refMat3 = refMat2.template triangularView<Upper>();
344 m3 = m2.template triangularView<Upper>();
345 VERIFY_IS_APPROX(m3, refMat3);
346
347 refMat3 = refMat2.template triangularView<UnitUpper>();
348 m3 = m2.template triangularView<UnitUpper>();
349 VERIFY_IS_APPROX(m3, refMat3);
350
351 refMat3 = refMat2.template triangularView<UnitLower>();
352 m3 = m2.template triangularView<UnitLower>();
353 VERIFY_IS_APPROX(m3, refMat3);
354 }
Gael Guennebaudfa6d36e2010-07-22 15:57:01 +0200355
Gael Guennebaud9a3ec632010-11-15 14:14:05 +0100356 // test selfadjointView
Gael Guennebaud9353bba2011-12-04 14:39:24 +0100357 if(!SparseMatrixType::IsRowMajor)
Gael Guennebaud9a3ec632010-11-15 14:14:05 +0100358 {
359 DenseMatrix refMat2(rows, rows), refMat3(rows, rows);
360 SparseMatrixType m2(rows, rows), m3(rows, rows);
361 initSparse<Scalar>(density, refMat2, m2);
362 refMat3 = refMat2.template selfadjointView<Lower>();
363 m3 = m2.template selfadjointView<Lower>();
364 VERIFY_IS_APPROX(m3, refMat3);
365 }
366
Gael Guennebaudfa6d36e2010-07-22 15:57:01 +0200367 // test sparseView
368 {
369 DenseMatrix refMat2 = DenseMatrix::Zero(rows, rows);
370 SparseMatrixType m2(rows, rows);
Gael Guennebaud9a3ec632010-11-15 14:14:05 +0100371 initSparse<Scalar>(density, refMat2, m2);
Gael Guennebaudfa6d36e2010-07-22 15:57:01 +0200372 VERIFY_IS_APPROX(m2.eval(), refMat2.sparseView().eval());
373 }
Gael Guennebaud82f9aa12011-12-04 21:49:21 +0100374
375 // test diagonal
376 {
377 DenseMatrix refMat2 = DenseMatrix::Zero(rows, rows);
378 SparseMatrixType m2(rows, rows);
379 initSparse<Scalar>(density, refMat2, m2);
380 VERIFY_IS_APPROX(m2.diagonal(), refMat2.diagonal().eval());
381 }
Benjamin Piwowarski6bf49ce2012-07-19 00:07:06 +0200382
383 // test conservative resize
384 {
385 std::vector< std::pair<int,int> > inc;
386 inc.push_back(std::pair<int,int>(-3,-2));
387 inc.push_back(std::pair<int,int>(0,0));
388 inc.push_back(std::pair<int,int>(3,2));
389 inc.push_back(std::pair<int,int>(3,0));
390 inc.push_back(std::pair<int,int>(0,3));
391
392 for(size_t i = 0; i< inc.size(); i++) {
393 int incRows = inc[i].first;
394 int incCols = inc[i].second;
395 SparseMatrixType m1(rows, cols);
396 DenseMatrix refMat1 = DenseMatrix::Zero(rows, cols);
397 initSparse<Scalar>(density, refMat1, m1);
398
399 m1.conservativeResize(rows+incRows, cols+incCols);
400 refMat1.conservativeResize(rows+incRows, cols+incCols);
401 if (incRows > 0) refMat1.bottomRows(incRows).setZero();
402 if (incCols > 0) refMat1.rightCols(incCols).setZero();
403
404 VERIFY_IS_APPROX(m1, refMat1);
405
406 // Insert new values
407 if (incRows > 0)
408 m1.insert(refMat1.rows()-1, 0) = refMat1(refMat1.rows()-1, 0) = 1;
409 if (incCols > 0)
410 m1.insert(0, refMat1.cols()-1) = refMat1(0, refMat1.cols()-1) = 1;
411
412 VERIFY_IS_APPROX(m1, refMat1);
413
414
415 }
416 }
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000417}
418
419void test_sparse_basic()
420{
421 for(int i = 0; i < g_repeat; i++) {
Gael Guennebaud91fe1502011-06-07 11:28:16 +0200422 int s = Eigen::internal::random<int>(1,50);
423 CALL_SUBTEST_1(( sparse_basic(SparseMatrix<double>(8, 8)) ));
Gael Guennebaud9353bba2011-12-04 14:39:24 +0100424 CALL_SUBTEST_2(( sparse_basic(SparseMatrix<std::complex<double>, ColMajor>(s, s)) ));
425 CALL_SUBTEST_2(( sparse_basic(SparseMatrix<std::complex<double>, RowMajor>(s, s)) ));
Gael Guennebaud91fe1502011-06-07 11:28:16 +0200426 CALL_SUBTEST_1(( sparse_basic(SparseMatrix<double>(s, s)) ));
427 CALL_SUBTEST_1(( sparse_basic(SparseMatrix<double,ColMajor,long int>(s, s)) ));
Gael Guennebaud9353bba2011-12-04 14:39:24 +0100428 CALL_SUBTEST_1(( sparse_basic(SparseMatrix<double,RowMajor,long int>(s, s)) ));
Gael Guennebaud86ccd992008-11-05 13:47:55 +0000429 }
430}