10#ifndef EIGEN_TRIANGULARMATRIXVECTOR_H
11#define EIGEN_TRIANGULARMATRIXVECTOR_H
17template<
typename Index,
int Mode,
typename LhsScalar,
bool ConjLhs,
typename RhsScalar,
bool ConjRhs,
int StorageOrder,
int Version=Specialized>
20template<
typename Index,
int Mode,
typename LhsScalar,
bool ConjLhs,
typename RhsScalar,
bool ConjRhs,
int Version>
29 static EIGEN_DONT_INLINE
void run(
Index _rows,
Index _cols,
const LhsScalar* _lhs,
Index lhsStride,
30 const RhsScalar* _rhs,
Index rhsIncr, ResScalar* _res,
Index resIncr,
const RhsScalar& alpha);
33template<
typename Index,
int Mode,
typename LhsScalar,
bool ConjLhs,
typename RhsScalar,
bool ConjRhs,
int Version>
36 const RhsScalar* _rhs,
Index rhsIncr, ResScalar* _res,
Index resIncr,
const RhsScalar& alpha)
38 static const Index PanelWidth = EIGEN_TUNE_TRIANGULAR_PANEL_WIDTH;
39 Index size = (std::min)(_rows,_cols);
40 Index rows = IsLower ? _rows : (std::min)(_rows,_cols);
41 Index cols = IsLower ? (std::min)(_rows,_cols) : _cols;
45 typename conj_expr_if<ConjLhs,LhsMap>::type cjLhs(lhs);
49 typename conj_expr_if<ConjRhs,RhsMap>::type cjRhs(rhs);
52 ResMap res(_res,rows);
57 for (
Index pi=0; pi<size; pi+=PanelWidth)
59 Index actualPanelWidth = (std::min)(PanelWidth, size-pi);
60 for (
Index k=0; k<actualPanelWidth; ++k)
63 Index s = IsLower ? ((HasUnitDiag||HasZeroDiag) ? i+1 : i ) : pi;
64 Index r = IsLower ? actualPanelWidth-k : k+1;
65 if ((!(HasUnitDiag||HasZeroDiag)) || (--r)>0)
66 res.segment(s,r) += (alpha * cjRhs.coeff(i)) * cjLhs.col(i).segment(s,r);
68 res.coeffRef(i) += alpha * cjRhs.coeff(i);
70 Index r = IsLower ? rows - pi - actualPanelWidth : pi;
73 Index s = IsLower ? pi+actualPanelWidth : 0;
74 general_matrix_vector_product<Index,LhsScalar,LhsMapper,ColMajor,ConjLhs,RhsScalar,RhsMapper,ConjRhs,BuiltIn>::run(
76 LhsMapper(&lhs.coeffRef(s,pi), lhsStride),
77 RhsMapper(&rhs.coeffRef(pi), rhsIncr),
78 &res.coeffRef(s), resIncr, alpha);
81 if((!IsLower) && cols>size)
83 general_matrix_vector_product<Index,LhsScalar,LhsMapper,ColMajor,ConjLhs,RhsScalar,RhsMapper,ConjRhs>::run(
85 LhsMapper(&lhs.coeffRef(0,size), lhsStride),
86 RhsMapper(&rhs.coeffRef(size), rhsIncr),
87 _res, resIncr, alpha);
91template<
typename Index,
int Mode,
typename LhsScalar,
bool ConjLhs,
typename RhsScalar,
bool ConjRhs,
int Version>
100 static EIGEN_DONT_INLINE
void run(
Index _rows,
Index _cols,
const LhsScalar* _lhs,
Index lhsStride,
101 const RhsScalar* _rhs,
Index rhsIncr, ResScalar* _res,
Index resIncr,
const ResScalar& alpha);
104template<
typename Index,
int Mode,
typename LhsScalar,
bool ConjLhs,
typename RhsScalar,
bool ConjRhs,
int Version>
107 const RhsScalar* _rhs,
Index rhsIncr, ResScalar* _res,
Index resIncr,
const ResScalar& alpha)
109 static const Index PanelWidth = EIGEN_TUNE_TRIANGULAR_PANEL_WIDTH;
110 Index diagSize = (std::min)(_rows,_cols);
111 Index rows = IsLower ? _rows : diagSize;
112 Index cols = IsLower ? diagSize : _cols;
116 typename conj_expr_if<ConjLhs,LhsMap>::type cjLhs(lhs);
119 const RhsMap rhs(_rhs,cols);
120 typename conj_expr_if<ConjRhs,RhsMap>::type cjRhs(rhs);
128 for (
Index pi=0; pi<diagSize; pi+=PanelWidth)
130 Index actualPanelWidth = (std::min)(PanelWidth, diagSize-pi);
131 for (
Index k=0; k<actualPanelWidth; ++k)
134 Index s = IsLower ? pi : ((HasUnitDiag||HasZeroDiag) ? i+1 : i);
135 Index r = IsLower ? k+1 : actualPanelWidth-k;
136 if ((!(HasUnitDiag||HasZeroDiag)) || (--r)>0)
137 res.coeffRef(i) += alpha * (cjLhs.row(i).segment(s,r).cwiseProduct(cjRhs.segment(s,r).transpose())).sum();
139 res.coeffRef(i) += alpha * cjRhs.coeff(i);
141 Index r = IsLower ? pi : cols - pi - actualPanelWidth;
144 Index s = IsLower ? 0 : pi + actualPanelWidth;
145 general_matrix_vector_product<Index,LhsScalar,LhsMapper,RowMajor,ConjLhs,RhsScalar,RhsMapper,ConjRhs,BuiltIn>::run(
147 LhsMapper(&lhs.coeffRef(pi,s), lhsStride),
148 RhsMapper(&rhs.coeffRef(s), rhsIncr),
149 &res.coeffRef(pi), resIncr, alpha);
152 if(IsLower && rows>diagSize)
154 general_matrix_vector_product<Index,LhsScalar,LhsMapper,RowMajor,ConjLhs,RhsScalar,RhsMapper,ConjRhs>::run(
156 LhsMapper(&lhs.coeffRef(diagSize,0), lhsStride),
157 RhsMapper(&rhs.coeffRef(0), rhsIncr),
158 &res.coeffRef(diagSize), resIncr, alpha);
166template<
int Mode,
int StorageOrder>
173template<
int Mode,
typename Lhs,
typename Rhs>
176 template<
typename Dest>
static void run(Dest& dst,
const Lhs &lhs,
const Rhs &rhs,
const typename Dest::Scalar& alpha)
178 eigen_assert(dst.rows()==lhs.rows() && dst.cols()==rhs.cols());
184template<
int Mode,
typename Lhs,
typename Rhs>
187 template<
typename Dest>
static void run(Dest& dst,
const Lhs &lhs,
const Rhs &rhs,
const typename Dest::Scalar& alpha)
189 eigen_assert(dst.rows()==lhs.rows() && dst.cols()==rhs.cols());
194 ::run(rhs.transpose(),lhs.transpose(), dstT, alpha);
206 template<
typename Lhs,
typename Rhs,
typename Dest>
207 static void run(
const Lhs &lhs,
const Rhs &rhs, Dest& dest,
const typename Dest::Scalar& alpha)
209 typedef typename Lhs::Scalar LhsScalar;
210 typedef typename Rhs::Scalar RhsScalar;
211 typedef typename Dest::Scalar ResScalar;
212 typedef typename Dest::RealScalar RealScalar;
215 typedef typename LhsBlasTraits::DirectLinearAccessType ActualLhsType;
217 typedef typename RhsBlasTraits::DirectLinearAccessType ActualRhsType;
221 typename internal::add_const_on_value_type<ActualLhsType>::type actualLhs = LhsBlasTraits::extract(lhs);
222 typename internal::add_const_on_value_type<ActualRhsType>::type actualRhs = RhsBlasTraits::extract(rhs);
224 LhsScalar lhs_alpha = LhsBlasTraits::extractScalarFactor(lhs);
225 RhsScalar rhs_alpha = RhsBlasTraits::extractScalarFactor(rhs);
226 ResScalar actualAlpha = alpha * lhs_alpha * rhs_alpha;
231 EvalToDestAtCompileTime = Dest::InnerStrideAtCompileTime==1,
233 MightCannotUseDest = (Dest::InnerStrideAtCompileTime!=1) || ComplexByReal
238 bool alphaIsCompatible = (!ComplexByReal) || (numext::imag(actualAlpha)==RealScalar(0));
239 bool evalToDest = EvalToDestAtCompileTime && alphaIsCompatible;
243 ei_declare_aligned_stack_constructed_variable(ResScalar,actualDestPtr,dest.size(),
244 evalToDest ? dest.data() : static_dest.data());
248 #ifdef EIGEN_DENSE_STORAGE_CTOR_PLUGIN
249 Index size = dest.size();
250 EIGEN_DENSE_STORAGE_CTOR_PLUGIN
252 if(!alphaIsCompatible)
254 MappedDest(actualDestPtr, dest.size()).setZero();
255 compatibleAlpha = RhsScalar(1);
258 MappedDest(actualDestPtr, dest.size()) = dest;
263 LhsScalar, LhsBlasTraits::NeedToConjugate,
264 RhsScalar, RhsBlasTraits::NeedToConjugate,
266 ::run(actualLhs.rows(),actualLhs.cols(),
267 actualLhs.data(),actualLhs.outerStride(),
268 actualRhs.data(),actualRhs.innerStride(),
269 actualDestPtr,1,compatibleAlpha);
273 if(!alphaIsCompatible)
274 dest += actualAlpha * MappedDest(actualDestPtr, dest.size());
276 dest = MappedDest(actualDestPtr, dest.size());
281 Index diagSize = (std::min)(lhs.rows(),lhs.cols());
282 dest.head(diagSize) -= (lhs_alpha-LhsScalar(1))*rhs.head(diagSize);
289 template<
typename Lhs,
typename Rhs,
typename Dest>
290 static void run(
const Lhs &lhs,
const Rhs &rhs, Dest& dest,
const typename Dest::Scalar& alpha)
292 typedef typename Lhs::Scalar LhsScalar;
293 typedef typename Rhs::Scalar RhsScalar;
294 typedef typename Dest::Scalar ResScalar;
297 typedef typename LhsBlasTraits::DirectLinearAccessType ActualLhsType;
299 typedef typename RhsBlasTraits::DirectLinearAccessType ActualRhsType;
300 typedef typename internal::remove_all<ActualRhsType>::type ActualRhsTypeCleaned;
305 LhsScalar lhs_alpha = LhsBlasTraits::extractScalarFactor(lhs);
306 RhsScalar rhs_alpha = RhsBlasTraits::extractScalarFactor(rhs);
307 ResScalar actualAlpha = alpha * lhs_alpha * rhs_alpha;
310 DirectlyUseRhs = ActualRhsTypeCleaned::InnerStrideAtCompileTime==1
315 ei_declare_aligned_stack_constructed_variable(RhsScalar,actualRhsPtr,actualRhs.size(),
316 DirectlyUseRhs ?
const_cast<RhsScalar*
>(actualRhs.data()) : static_rhs.data());
320 #ifdef EIGEN_DENSE_STORAGE_CTOR_PLUGIN
321 Index size = actualRhs.size();
322 EIGEN_DENSE_STORAGE_CTOR_PLUGIN
329 LhsScalar, LhsBlasTraits::NeedToConjugate,
330 RhsScalar, RhsBlasTraits::NeedToConjugate,
332 ::run(actualLhs.rows(),actualLhs.cols(),
333 actualLhs.data(),actualLhs.outerStride(),
335 dest.data(),dest.innerStride(),
340 Index diagSize = (std::min)(lhs.rows(),lhs.cols());
341 dest.head(diagSize) -= (lhs_alpha-LhsScalar(1))*rhs.head(diagSize);
Expression of a diagonal/subdiagonal/superdiagonal in a matrix.
Definition Diagonal.h:65
Convenience specialization of Stride to specify only an inner stride See class Map for some examples.
Definition Stride.h:100
A matrix or vector expression mapping an existing array of data.
Definition Map.h:96
Expression of the transpose of a matrix.
Definition Transpose.h:54
Definition BlasUtil.h:389
@ UnitDiag
Definition Constants.h:213
@ ZeroDiag
Definition Constants.h:215
@ Lower
Definition Constants.h:209
@ Upper
Definition Constants.h:211
@ ColMajor
Definition Constants.h:319
@ RowMajor
Definition Constants.h:321
const unsigned int RowMajorBit
Definition Constants.h:66
Namespace containing all symbols from the Eigen library.
Definition common.h:81
EIGEN_DEFAULT_DENSE_INDEX_TYPE Index
The Index type as used for the API.
Definition Meta.h:74
Holds information about the various numeric (i.e. scalar) types allowed by Eigen.
Definition NumTraits.h:233
Determines whether the given binary operation of two numeric types is allowed and what the scalar ret...
Definition XprHelper.h:806
Definition BlasUtil.h:403
Definition GeneralProduct.h:161
Definition GenericPacketMath.h:107
Definition ForwardDeclarations.h:17
Definition TriangularMatrixVector.h:18
Definition ProductEvaluators.h:758
Definition TriangularMatrixVector.h:167