xref: /aosp_15_r20/external/eigen/test/ref.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) 20013 Gael Guennebaud <[email protected]>
5*bf2c3715SXin Li //
6*bf2c3715SXin Li // This Source Code Form is subject to the terms of the Mozilla
7*bf2c3715SXin Li // Public License v. 2.0. If a copy of the MPL was not distributed
8*bf2c3715SXin Li // with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
9*bf2c3715SXin Li 
10*bf2c3715SXin Li // This unit test cannot be easily written to work with EIGEN_DEFAULT_TO_ROW_MAJOR
11*bf2c3715SXin Li #ifdef EIGEN_DEFAULT_TO_ROW_MAJOR
12*bf2c3715SXin Li #undef EIGEN_DEFAULT_TO_ROW_MAJOR
13*bf2c3715SXin Li #endif
14*bf2c3715SXin Li 
15*bf2c3715SXin Li #define TEST_ENABLE_TEMPORARY_TRACKING
16*bf2c3715SXin Li #define TEST_CHECK_STATIC_ASSERTIONS
17*bf2c3715SXin Li #include "main.h"
18*bf2c3715SXin Li 
19*bf2c3715SXin Li // test Ref.h
20*bf2c3715SXin Li 
21*bf2c3715SXin Li // Deal with i387 extended precision
22*bf2c3715SXin Li #if EIGEN_ARCH_i386 && !(EIGEN_ARCH_x86_64)
23*bf2c3715SXin Li 
24*bf2c3715SXin Li #if EIGEN_COMP_GNUC_STRICT && EIGEN_GNUC_AT_LEAST(4,4)
25*bf2c3715SXin Li #pragma GCC optimize ("-ffloat-store")
26*bf2c3715SXin Li #else
27*bf2c3715SXin Li #undef VERIFY_IS_EQUAL
28*bf2c3715SXin Li #define VERIFY_IS_EQUAL(X,Y) VERIFY_IS_APPROX(X,Y)
29*bf2c3715SXin Li #endif
30*bf2c3715SXin Li 
31*bf2c3715SXin Li #endif
32*bf2c3715SXin Li 
ref_matrix(const MatrixType & m)33*bf2c3715SXin Li template<typename MatrixType> void ref_matrix(const MatrixType& m)
34*bf2c3715SXin Li {
35*bf2c3715SXin Li   typedef typename MatrixType::Scalar Scalar;
36*bf2c3715SXin Li   typedef typename MatrixType::RealScalar RealScalar;
37*bf2c3715SXin Li   typedef Matrix<Scalar,Dynamic,Dynamic,MatrixType::Options> DynMatrixType;
38*bf2c3715SXin Li   typedef Matrix<RealScalar,Dynamic,Dynamic,MatrixType::Options> RealDynMatrixType;
39*bf2c3715SXin Li 
40*bf2c3715SXin Li   typedef Ref<MatrixType> RefMat;
41*bf2c3715SXin Li   typedef Ref<DynMatrixType> RefDynMat;
42*bf2c3715SXin Li   typedef Ref<const DynMatrixType> ConstRefDynMat;
43*bf2c3715SXin Li   typedef Ref<RealDynMatrixType , 0, Stride<Dynamic,Dynamic> > RefRealMatWithStride;
44*bf2c3715SXin Li 
45*bf2c3715SXin Li   Index rows = m.rows(), cols = m.cols();
46*bf2c3715SXin Li 
47*bf2c3715SXin Li   MatrixType  m1 = MatrixType::Random(rows, cols),
48*bf2c3715SXin Li               m2 = m1;
49*bf2c3715SXin Li 
50*bf2c3715SXin Li   Index i = internal::random<Index>(0,rows-1);
51*bf2c3715SXin Li   Index j = internal::random<Index>(0,cols-1);
52*bf2c3715SXin Li   Index brows = internal::random<Index>(1,rows-i);
53*bf2c3715SXin Li   Index bcols = internal::random<Index>(1,cols-j);
54*bf2c3715SXin Li 
55*bf2c3715SXin Li   RefMat rm0 = m1;
56*bf2c3715SXin Li   VERIFY_IS_EQUAL(rm0, m1);
57*bf2c3715SXin Li   RefDynMat rm1 = m1;
58*bf2c3715SXin Li   VERIFY_IS_EQUAL(rm1, m1);
59*bf2c3715SXin Li   RefDynMat rm2 = m1.block(i,j,brows,bcols);
60*bf2c3715SXin Li   VERIFY_IS_EQUAL(rm2, m1.block(i,j,brows,bcols));
61*bf2c3715SXin Li   rm2.setOnes();
62*bf2c3715SXin Li   m2.block(i,j,brows,bcols).setOnes();
63*bf2c3715SXin Li   VERIFY_IS_EQUAL(m1, m2);
64*bf2c3715SXin Li 
65*bf2c3715SXin Li   m2.block(i,j,brows,bcols).setRandom();
66*bf2c3715SXin Li   rm2 = m2.block(i,j,brows,bcols);
67*bf2c3715SXin Li   VERIFY_IS_EQUAL(m1, m2);
68*bf2c3715SXin Li 
69*bf2c3715SXin Li   ConstRefDynMat rm3 = m1.block(i,j,brows,bcols);
70*bf2c3715SXin Li   m1.block(i,j,brows,bcols) *= 2;
71*bf2c3715SXin Li   m2.block(i,j,brows,bcols) *= 2;
72*bf2c3715SXin Li   VERIFY_IS_EQUAL(rm3, m2.block(i,j,brows,bcols));
73*bf2c3715SXin Li   RefRealMatWithStride rm4 = m1.real();
74*bf2c3715SXin Li   VERIFY_IS_EQUAL(rm4, m2.real());
75*bf2c3715SXin Li   rm4.array() += 1;
76*bf2c3715SXin Li   m2.real().array() += 1;
77*bf2c3715SXin Li   VERIFY_IS_EQUAL(m1, m2);
78*bf2c3715SXin Li }
79*bf2c3715SXin Li 
ref_vector(const VectorType & m)80*bf2c3715SXin Li template<typename VectorType> void ref_vector(const VectorType& m)
81*bf2c3715SXin Li {
82*bf2c3715SXin Li   typedef typename VectorType::Scalar Scalar;
83*bf2c3715SXin Li   typedef typename VectorType::RealScalar RealScalar;
84*bf2c3715SXin Li   typedef Matrix<Scalar,Dynamic,1,VectorType::Options> DynMatrixType;
85*bf2c3715SXin Li   typedef Matrix<Scalar,Dynamic,Dynamic,ColMajor> MatrixType;
86*bf2c3715SXin Li   typedef Matrix<RealScalar,Dynamic,1,VectorType::Options> RealDynMatrixType;
87*bf2c3715SXin Li 
88*bf2c3715SXin Li   typedef Ref<VectorType> RefMat;
89*bf2c3715SXin Li   typedef Ref<DynMatrixType> RefDynMat;
90*bf2c3715SXin Li   typedef Ref<const DynMatrixType> ConstRefDynMat;
91*bf2c3715SXin Li   typedef Ref<RealDynMatrixType , 0, InnerStride<> > RefRealMatWithStride;
92*bf2c3715SXin Li   typedef Ref<DynMatrixType , 0, InnerStride<> > RefMatWithStride;
93*bf2c3715SXin Li 
94*bf2c3715SXin Li   Index size = m.size();
95*bf2c3715SXin Li 
96*bf2c3715SXin Li   VectorType  v1 = VectorType::Random(size),
97*bf2c3715SXin Li               v2 = v1;
98*bf2c3715SXin Li   MatrixType mat1 = MatrixType::Random(size,size),
99*bf2c3715SXin Li              mat2 = mat1,
100*bf2c3715SXin Li              mat3 = MatrixType::Random(size,size);
101*bf2c3715SXin Li 
102*bf2c3715SXin Li   Index i = internal::random<Index>(0,size-1);
103*bf2c3715SXin Li   Index bsize = internal::random<Index>(1,size-i);
104*bf2c3715SXin Li 
105*bf2c3715SXin Li   { RefMat    rm0 = v1;                   VERIFY_IS_EQUAL(rm0, v1); }
106*bf2c3715SXin Li   { RefMat    rm0 = v1.block(0,0,size,1); VERIFY_IS_EQUAL(rm0, v1); }
107*bf2c3715SXin Li   { RefDynMat rv1 = v1;                   VERIFY_IS_EQUAL(rv1, v1); }
108*bf2c3715SXin Li   { RefDynMat rv1 = v1.block(0,0,size,1); VERIFY_IS_EQUAL(rv1, v1); }
109*bf2c3715SXin Li   { VERIFY_RAISES_ASSERT( RefMat    rm0 = v1.block(0, 0, size, 0); EIGEN_UNUSED_VARIABLE(rm0); ); }
110*bf2c3715SXin Li   if(VectorType::SizeAtCompileTime!=1)
111*bf2c3715SXin Li   { VERIFY_RAISES_ASSERT( RefDynMat rv1 = v1.block(0, 0, size, 0); EIGEN_UNUSED_VARIABLE(rv1); ); }
112*bf2c3715SXin Li 
113*bf2c3715SXin Li   RefDynMat rv2 = v1.segment(i,bsize);
114*bf2c3715SXin Li   VERIFY_IS_EQUAL(rv2, v1.segment(i,bsize));
115*bf2c3715SXin Li   rv2.setOnes();
116*bf2c3715SXin Li   v2.segment(i,bsize).setOnes();
117*bf2c3715SXin Li   VERIFY_IS_EQUAL(v1, v2);
118*bf2c3715SXin Li 
119*bf2c3715SXin Li   v2.segment(i,bsize).setRandom();
120*bf2c3715SXin Li   rv2 = v2.segment(i,bsize);
121*bf2c3715SXin Li   VERIFY_IS_EQUAL(v1, v2);
122*bf2c3715SXin Li 
123*bf2c3715SXin Li   ConstRefDynMat rm3 = v1.segment(i,bsize);
124*bf2c3715SXin Li   v1.segment(i,bsize) *= 2;
125*bf2c3715SXin Li   v2.segment(i,bsize) *= 2;
126*bf2c3715SXin Li   VERIFY_IS_EQUAL(rm3, v2.segment(i,bsize));
127*bf2c3715SXin Li 
128*bf2c3715SXin Li   RefRealMatWithStride rm4 = v1.real();
129*bf2c3715SXin Li   VERIFY_IS_EQUAL(rm4, v2.real());
130*bf2c3715SXin Li   rm4.array() += 1;
131*bf2c3715SXin Li   v2.real().array() += 1;
132*bf2c3715SXin Li   VERIFY_IS_EQUAL(v1, v2);
133*bf2c3715SXin Li 
134*bf2c3715SXin Li   RefMatWithStride rm5 = mat1.row(i).transpose();
135*bf2c3715SXin Li   VERIFY_IS_EQUAL(rm5, mat1.row(i).transpose());
136*bf2c3715SXin Li   rm5.array() += 1;
137*bf2c3715SXin Li   mat2.row(i).array() += 1;
138*bf2c3715SXin Li   VERIFY_IS_EQUAL(mat1, mat2);
139*bf2c3715SXin Li   rm5.noalias() = rm4.transpose() * mat3;
140*bf2c3715SXin Li   mat2.row(i) = v2.real().transpose() * mat3;
141*bf2c3715SXin Li   VERIFY_IS_APPROX(mat1, mat2);
142*bf2c3715SXin Li }
143*bf2c3715SXin Li 
144*bf2c3715SXin Li template<typename Scalar, int Rows, int Cols>
ref_vector_fixed_sizes()145*bf2c3715SXin Li void ref_vector_fixed_sizes()
146*bf2c3715SXin Li {
147*bf2c3715SXin Li   typedef Matrix<Scalar,Rows,Cols,RowMajor> RowMajorMatrixType;
148*bf2c3715SXin Li   typedef Matrix<Scalar,Rows,Cols,ColMajor> ColMajorMatrixType;
149*bf2c3715SXin Li   typedef Matrix<Scalar,1,Cols> RowVectorType;
150*bf2c3715SXin Li   typedef Matrix<Scalar,Rows,1> ColVectorType;
151*bf2c3715SXin Li   typedef Matrix<Scalar,Cols,1> RowVectorTransposeType;
152*bf2c3715SXin Li   typedef Matrix<Scalar,1,Rows> ColVectorTransposeType;
153*bf2c3715SXin Li   typedef Stride<Dynamic, Dynamic> DynamicStride;
154*bf2c3715SXin Li 
155*bf2c3715SXin Li   RowMajorMatrixType mr = RowMajorMatrixType::Random();
156*bf2c3715SXin Li   ColMajorMatrixType mc = ColMajorMatrixType::Random();
157*bf2c3715SXin Li 
158*bf2c3715SXin Li   Index i = internal::random<Index>(0,Rows-1);
159*bf2c3715SXin Li   Index j = internal::random<Index>(0,Cols-1);
160*bf2c3715SXin Li 
161*bf2c3715SXin Li   // Reference ith row.
162*bf2c3715SXin Li   Ref<RowVectorType, 0, DynamicStride> mr_ri = mr.row(i);
163*bf2c3715SXin Li   VERIFY_IS_EQUAL(mr_ri, mr.row(i));
164*bf2c3715SXin Li   Ref<RowVectorType, 0, DynamicStride> mc_ri = mc.row(i);
165*bf2c3715SXin Li   VERIFY_IS_EQUAL(mc_ri, mc.row(i));
166*bf2c3715SXin Li 
167*bf2c3715SXin Li   // Reference jth col.
168*bf2c3715SXin Li   Ref<ColVectorType, 0, DynamicStride> mr_cj = mr.col(j);
169*bf2c3715SXin Li   VERIFY_IS_EQUAL(mr_cj, mr.col(j));
170*bf2c3715SXin Li   Ref<ColVectorType, 0, DynamicStride> mc_cj = mc.col(j);
171*bf2c3715SXin Li   VERIFY_IS_EQUAL(mc_cj, mc.col(j));
172*bf2c3715SXin Li 
173*bf2c3715SXin Li   // Reference the transpose of row i.
174*bf2c3715SXin Li   Ref<RowVectorTransposeType, 0, DynamicStride> mr_rit = mr.row(i);
175*bf2c3715SXin Li   VERIFY_IS_EQUAL(mr_rit, mr.row(i).transpose());
176*bf2c3715SXin Li   Ref<RowVectorTransposeType, 0, DynamicStride> mc_rit = mc.row(i);
177*bf2c3715SXin Li   VERIFY_IS_EQUAL(mc_rit, mc.row(i).transpose());
178*bf2c3715SXin Li 
179*bf2c3715SXin Li   // Reference the transpose of col j.
180*bf2c3715SXin Li   Ref<ColVectorTransposeType, 0, DynamicStride> mr_cjt = mr.col(j);
181*bf2c3715SXin Li   VERIFY_IS_EQUAL(mr_cjt, mr.col(j).transpose());
182*bf2c3715SXin Li   Ref<ColVectorTransposeType, 0, DynamicStride> mc_cjt = mc.col(j);
183*bf2c3715SXin Li   VERIFY_IS_EQUAL(mc_cjt, mc.col(j).transpose());
184*bf2c3715SXin Li 
185*bf2c3715SXin Li   // Const references without strides.
186*bf2c3715SXin Li   Ref<const RowVectorType> cmr_ri = mr.row(i);
187*bf2c3715SXin Li   VERIFY_IS_EQUAL(cmr_ri, mr.row(i));
188*bf2c3715SXin Li   Ref<const RowVectorType> cmc_ri = mc.row(i);
189*bf2c3715SXin Li   VERIFY_IS_EQUAL(cmc_ri, mc.row(i));
190*bf2c3715SXin Li 
191*bf2c3715SXin Li   Ref<const ColVectorType> cmr_cj = mr.col(j);
192*bf2c3715SXin Li   VERIFY_IS_EQUAL(cmr_cj, mr.col(j));
193*bf2c3715SXin Li   Ref<const ColVectorType> cmc_cj = mc.col(j);
194*bf2c3715SXin Li   VERIFY_IS_EQUAL(cmc_cj, mc.col(j));
195*bf2c3715SXin Li 
196*bf2c3715SXin Li   Ref<const RowVectorTransposeType> cmr_rit = mr.row(i);
197*bf2c3715SXin Li   VERIFY_IS_EQUAL(cmr_rit, mr.row(i).transpose());
198*bf2c3715SXin Li   Ref<const RowVectorTransposeType> cmc_rit = mc.row(i);
199*bf2c3715SXin Li   VERIFY_IS_EQUAL(cmc_rit, mc.row(i).transpose());
200*bf2c3715SXin Li 
201*bf2c3715SXin Li   Ref<const ColVectorTransposeType> cmr_cjt = mr.col(j);
202*bf2c3715SXin Li   VERIFY_IS_EQUAL(cmr_cjt, mr.col(j).transpose());
203*bf2c3715SXin Li   Ref<const ColVectorTransposeType> cmc_cjt = mc.col(j);
204*bf2c3715SXin Li   VERIFY_IS_EQUAL(cmc_cjt, mc.col(j).transpose());
205*bf2c3715SXin Li }
206*bf2c3715SXin Li 
check_const_correctness(const PlainObjectType &)207*bf2c3715SXin Li template<typename PlainObjectType> void check_const_correctness(const PlainObjectType&)
208*bf2c3715SXin Li {
209*bf2c3715SXin Li   // verify that ref-to-const don't have LvalueBit
210*bf2c3715SXin Li   typedef typename internal::add_const<PlainObjectType>::type ConstPlainObjectType;
211*bf2c3715SXin Li   VERIFY( !(internal::traits<Ref<ConstPlainObjectType> >::Flags & LvalueBit) );
212*bf2c3715SXin Li   VERIFY( !(internal::traits<Ref<ConstPlainObjectType, Aligned> >::Flags & LvalueBit) );
213*bf2c3715SXin Li   VERIFY( !(Ref<ConstPlainObjectType>::Flags & LvalueBit) );
214*bf2c3715SXin Li   VERIFY( !(Ref<ConstPlainObjectType, Aligned>::Flags & LvalueBit) );
215*bf2c3715SXin Li }
216*bf2c3715SXin Li 
217*bf2c3715SXin Li template<typename B>
call_ref_1(Ref<VectorXf> a,const B & b)218*bf2c3715SXin Li EIGEN_DONT_INLINE void call_ref_1(Ref<VectorXf> a, const B &b) { VERIFY_IS_EQUAL(a,b); }
219*bf2c3715SXin Li template<typename B>
call_ref_2(const Ref<const VectorXf> & a,const B & b)220*bf2c3715SXin Li EIGEN_DONT_INLINE void call_ref_2(const Ref<const VectorXf>& a, const B &b) { VERIFY_IS_EQUAL(a,b); }
221*bf2c3715SXin Li template<typename B>
call_ref_3(Ref<VectorXf,0,InnerStride<>> a,const B & b)222*bf2c3715SXin Li EIGEN_DONT_INLINE void call_ref_3(Ref<VectorXf,0,InnerStride<> > a, const B &b) { VERIFY_IS_EQUAL(a,b); }
223*bf2c3715SXin Li template<typename B>
call_ref_4(const Ref<const VectorXf,0,InnerStride<>> & a,const B & b)224*bf2c3715SXin Li EIGEN_DONT_INLINE void call_ref_4(const Ref<const VectorXf,0,InnerStride<> >& a, const B &b) { VERIFY_IS_EQUAL(a,b); }
225*bf2c3715SXin Li template<typename B>
call_ref_5(Ref<MatrixXf,0,OuterStride<>> a,const B & b)226*bf2c3715SXin Li EIGEN_DONT_INLINE void call_ref_5(Ref<MatrixXf,0,OuterStride<> > a, const B &b) { VERIFY_IS_EQUAL(a,b); }
227*bf2c3715SXin Li template<typename B>
call_ref_6(const Ref<const MatrixXf,0,OuterStride<>> & a,const B & b)228*bf2c3715SXin Li EIGEN_DONT_INLINE void call_ref_6(const Ref<const MatrixXf,0,OuterStride<> >& a, const B &b) { VERIFY_IS_EQUAL(a,b); }
229*bf2c3715SXin Li template<typename B>
call_ref_7(Ref<Matrix<float,Dynamic,3>> a,const B & b)230*bf2c3715SXin Li EIGEN_DONT_INLINE void call_ref_7(Ref<Matrix<float,Dynamic,3> > a, const B &b) { VERIFY_IS_EQUAL(a,b); }
231*bf2c3715SXin Li 
call_ref()232*bf2c3715SXin Li void call_ref()
233*bf2c3715SXin Li {
234*bf2c3715SXin Li   VectorXcf ca  = VectorXcf::Random(10);
235*bf2c3715SXin Li   VectorXf a    = VectorXf::Random(10);
236*bf2c3715SXin Li   RowVectorXf b = RowVectorXf::Random(10);
237*bf2c3715SXin Li   MatrixXf A    = MatrixXf::Random(10,10);
238*bf2c3715SXin Li   RowVector3f c = RowVector3f::Random();
239*bf2c3715SXin Li   const VectorXf& ac(a);
240*bf2c3715SXin Li   VectorBlock<VectorXf> ab(a,0,3);
241*bf2c3715SXin Li   const VectorBlock<VectorXf> abc(a,0,3);
242*bf2c3715SXin Li 
243*bf2c3715SXin Li 
244*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_1(a,a), 0);
245*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_1(b,b.transpose()), 0);
246*bf2c3715SXin Li //   call_ref_1(ac,a<c);           // does not compile because ac is const
247*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_1(ab,ab), 0);
248*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_1(a.head(4),a.head(4)), 0);
249*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_1(abc,abc), 0);
250*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_1(A.col(3),A.col(3)), 0);
251*bf2c3715SXin Li //   call_ref_1(A.row(3),A.row(3));    // does not compile because innerstride!=1
252*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_3(A.row(3),A.row(3).transpose()), 0);
253*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_4(A.row(3),A.row(3).transpose()), 0);
254*bf2c3715SXin Li //   call_ref_1(a+a, a+a);          // does not compile for obvious reason
255*bf2c3715SXin Li 
256*bf2c3715SXin Li   MatrixXf tmp = A*A.col(1);
257*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_2(A*A.col(1), tmp), 1);     // evaluated into a temp
258*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_2(ac.head(5),ac.head(5)), 0);
259*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_2(ac,ac), 0);
260*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_2(a,a), 0);
261*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_2(ab,ab), 0);
262*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_2(a.head(4),a.head(4)), 0);
263*bf2c3715SXin Li   tmp = a+a;
264*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_2(a+a,tmp), 1);            // evaluated into a temp
265*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_2(ca.imag(),ca.imag()), 1);      // evaluated into a temp
266*bf2c3715SXin Li 
267*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_4(ac.head(5),ac.head(5)), 0);
268*bf2c3715SXin Li   tmp = a+a;
269*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_4(a+a,tmp), 1);           // evaluated into a temp
270*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_4(ca.imag(),ca.imag()), 0);
271*bf2c3715SXin Li 
272*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_5(a,a), 0);
273*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_5(a.head(3),a.head(3)), 0);
274*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_5(A,A), 0);
275*bf2c3715SXin Li //   call_ref_5(A.transpose(),A.transpose());   // does not compile because storage order does not match
276*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_5(A.block(1,1,2,2),A.block(1,1,2,2)), 0);
277*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_5(b,b), 0);             // storage order do not match, but this is a degenerate case that should work
278*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_5(a.row(3),a.row(3)), 0);
279*bf2c3715SXin Li 
280*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_6(a,a), 0);
281*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_6(a.head(3),a.head(3)), 0);
282*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_6(A.row(3),A.row(3)), 1);           // evaluated into a temp thouth it could be avoided by viewing it as a 1xn matrix
283*bf2c3715SXin Li   tmp = A+A;
284*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_6(A+A,tmp), 1);                // evaluated into a temp
285*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_6(A,A), 0);
286*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_6(A.transpose(),A.transpose()), 1);      // evaluated into a temp because the storage orders do not match
287*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_6(A.block(1,1,2,2),A.block(1,1,2,2)), 0);
288*bf2c3715SXin Li 
289*bf2c3715SXin Li   VERIFY_EVALUATION_COUNT( call_ref_7(c,c), 0);
290*bf2c3715SXin Li }
291*bf2c3715SXin Li 
292*bf2c3715SXin Li typedef Matrix<double,Dynamic,Dynamic,RowMajor> RowMatrixXd;
test_ref_overload_fun1(Ref<MatrixXd>)293*bf2c3715SXin Li int test_ref_overload_fun1(Ref<MatrixXd> )       { return 1; }
test_ref_overload_fun1(Ref<RowMatrixXd>)294*bf2c3715SXin Li int test_ref_overload_fun1(Ref<RowMatrixXd> )    { return 2; }
test_ref_overload_fun1(Ref<MatrixXf>)295*bf2c3715SXin Li int test_ref_overload_fun1(Ref<MatrixXf> )       { return 3; }
296*bf2c3715SXin Li 
test_ref_overload_fun2(Ref<const MatrixXd>)297*bf2c3715SXin Li int test_ref_overload_fun2(Ref<const MatrixXd> ) { return 4; }
test_ref_overload_fun2(Ref<const MatrixXf>)298*bf2c3715SXin Li int test_ref_overload_fun2(Ref<const MatrixXf> ) { return 5; }
299*bf2c3715SXin Li 
test_ref_ambiguous(const Ref<const ArrayXd> & A,Ref<ArrayXd> B)300*bf2c3715SXin Li void test_ref_ambiguous(const Ref<const ArrayXd> &A, Ref<ArrayXd> B)
301*bf2c3715SXin Li {
302*bf2c3715SXin Li   B = A;
303*bf2c3715SXin Li   B = A - A;
304*bf2c3715SXin Li }
305*bf2c3715SXin Li 
306*bf2c3715SXin Li // See also bug 969
test_ref_overloads()307*bf2c3715SXin Li void test_ref_overloads()
308*bf2c3715SXin Li {
309*bf2c3715SXin Li   MatrixXd Ad, Bd;
310*bf2c3715SXin Li   RowMatrixXd rAd, rBd;
311*bf2c3715SXin Li   VERIFY( test_ref_overload_fun1(Ad)==1 );
312*bf2c3715SXin Li   VERIFY( test_ref_overload_fun1(rAd)==2 );
313*bf2c3715SXin Li 
314*bf2c3715SXin Li   MatrixXf Af, Bf;
315*bf2c3715SXin Li   VERIFY( test_ref_overload_fun2(Ad)==4 );
316*bf2c3715SXin Li   VERIFY( test_ref_overload_fun2(Ad+Bd)==4 );
317*bf2c3715SXin Li   VERIFY( test_ref_overload_fun2(Af+Bf)==5 );
318*bf2c3715SXin Li 
319*bf2c3715SXin Li   ArrayXd A, B;
320*bf2c3715SXin Li   test_ref_ambiguous(A, B);
321*bf2c3715SXin Li }
322*bf2c3715SXin Li 
test_ref_fixed_size_assert()323*bf2c3715SXin Li void test_ref_fixed_size_assert()
324*bf2c3715SXin Li {
325*bf2c3715SXin Li   Vector4f v4 = Vector4f::Random();
326*bf2c3715SXin Li   VectorXf vx = VectorXf::Random(10);
327*bf2c3715SXin Li   VERIFY_RAISES_STATIC_ASSERT( Ref<Vector3f> y = v4; (void)y; );
328*bf2c3715SXin Li   VERIFY_RAISES_STATIC_ASSERT( Ref<Vector3f> y = vx.head<4>(); (void)y; );
329*bf2c3715SXin Li   VERIFY_RAISES_STATIC_ASSERT( Ref<const Vector3f> y = v4; (void)y; );
330*bf2c3715SXin Li   VERIFY_RAISES_STATIC_ASSERT( Ref<const Vector3f> y = vx.head<4>(); (void)y; );
331*bf2c3715SXin Li   VERIFY_RAISES_STATIC_ASSERT( Ref<const Vector3f> y = 2*v4; (void)y; );
332*bf2c3715SXin Li }
333*bf2c3715SXin Li 
EIGEN_DECLARE_TEST(ref)334*bf2c3715SXin Li EIGEN_DECLARE_TEST(ref)
335*bf2c3715SXin Li {
336*bf2c3715SXin Li   for(int i = 0; i < g_repeat; i++) {
337*bf2c3715SXin Li     CALL_SUBTEST_1( ref_vector(Matrix<float, 1, 1>()) );
338*bf2c3715SXin Li     CALL_SUBTEST_1( check_const_correctness(Matrix<float, 1, 1>()) );
339*bf2c3715SXin Li     CALL_SUBTEST_2( ref_vector(Vector4d()) );
340*bf2c3715SXin Li     CALL_SUBTEST_2( check_const_correctness(Matrix4d()) );
341*bf2c3715SXin Li     CALL_SUBTEST_3( ref_vector(Vector4cf()) );
342*bf2c3715SXin Li     CALL_SUBTEST_4( ref_vector(VectorXcf(8)) );
343*bf2c3715SXin Li     CALL_SUBTEST_5( ref_vector(VectorXi(12)) );
344*bf2c3715SXin Li     CALL_SUBTEST_5( check_const_correctness(VectorXi(12)) );
345*bf2c3715SXin Li 
346*bf2c3715SXin Li     CALL_SUBTEST_1( ref_matrix(Matrix<float, 1, 1>()) );
347*bf2c3715SXin Li     CALL_SUBTEST_2( ref_matrix(Matrix4d()) );
348*bf2c3715SXin Li     CALL_SUBTEST_1( ref_matrix(Matrix<float,3,5>()) );
349*bf2c3715SXin Li     CALL_SUBTEST_4( ref_matrix(MatrixXcf(internal::random<int>(1,10),internal::random<int>(1,10))) );
350*bf2c3715SXin Li     CALL_SUBTEST_4( ref_matrix(Matrix<std::complex<double>,10,15>()) );
351*bf2c3715SXin Li     CALL_SUBTEST_5( ref_matrix(MatrixXi(internal::random<int>(1,10),internal::random<int>(1,10))) );
352*bf2c3715SXin Li     CALL_SUBTEST_6( call_ref() );
353*bf2c3715SXin Li 
354*bf2c3715SXin Li     CALL_SUBTEST_8( (ref_vector_fixed_sizes<float,3,5>()) );
355*bf2c3715SXin Li     CALL_SUBTEST_8( (ref_vector_fixed_sizes<float,15,10>()) );
356*bf2c3715SXin Li   }
357*bf2c3715SXin Li 
358*bf2c3715SXin Li   CALL_SUBTEST_7( test_ref_overloads() );
359*bf2c3715SXin Li   CALL_SUBTEST_7( test_ref_fixed_size_assert() );
360*bf2c3715SXin Li }
361