00001
00002
00003
00004
00005
00006
00007
00008
00009
00010
00011
00012
00013
00014
00015
00016
00017
00018
00019
00020
00021
00022
00023
00024
00025
00026 #ifndef EIGEN_TRIANGULARMATRIX_H
00027 #define EIGEN_TRIANGULARMATRIX_H
00028
00029 namespace internal {
00030
00031 template<int Side, typename TriangularType, typename Rhs> struct triangular_solve_retval;
00032
00033 }
00034
00042 template<typename Derived> class TriangularBase : public EigenBase<Derived>
00043 {
00044 public:
00045
00046 enum {
00047 Mode = internal::traits<Derived>::Mode,
00048 CoeffReadCost = internal::traits<Derived>::CoeffReadCost,
00049 RowsAtCompileTime = internal::traits<Derived>::RowsAtCompileTime,
00050 ColsAtCompileTime = internal::traits<Derived>::ColsAtCompileTime,
00051 MaxRowsAtCompileTime = internal::traits<Derived>::MaxRowsAtCompileTime,
00052 MaxColsAtCompileTime = internal::traits<Derived>::MaxColsAtCompileTime
00053 };
00054 typedef typename internal::traits<Derived>::Scalar Scalar;
00055 typedef typename internal::traits<Derived>::StorageKind StorageKind;
00056 typedef typename internal::traits<Derived>::Index Index;
00057 typedef typename internal::traits<Derived>::DenseMatrixType DenseMatrixType;
00058 typedef DenseMatrixType DenseType;
00059
00060 inline TriangularBase() { eigen_assert(!((Mode&UnitDiag) && (Mode&ZeroDiag))); }
00061
00062 inline Index rows() const { return derived().rows(); }
00063 inline Index cols() const { return derived().cols(); }
00064 inline Index outerStride() const { return derived().outerStride(); }
00065 inline Index innerStride() const { return derived().innerStride(); }
00066
00067 inline Scalar coeff(Index row, Index col) const { return derived().coeff(row,col); }
00068 inline Scalar& coeffRef(Index row, Index col) { return derived().coeffRef(row,col); }
00069
00072 template<typename Other>
00073 EIGEN_STRONG_INLINE void copyCoeff(Index row, Index col, Other& other)
00074 {
00075 derived().coeffRef(row, col) = other.coeff(row, col);
00076 }
00077
00078 inline Scalar operator()(Index row, Index col) const
00079 {
00080 check_coordinates(row, col);
00081 return coeff(row,col);
00082 }
00083 inline Scalar& operator()(Index row, Index col)
00084 {
00085 check_coordinates(row, col);
00086 return coeffRef(row,col);
00087 }
00088
00089 #ifndef EIGEN_PARSED_BY_DOXYGEN
00090 inline const Derived& derived() const { return *static_cast<const Derived*>(this); }
00091 inline Derived& derived() { return *static_cast<Derived*>(this); }
00092 #endif // not EIGEN_PARSED_BY_DOXYGEN
00093
00094 template<typename DenseDerived>
00095 void evalTo(MatrixBase<DenseDerived> &other) const;
00096 template<typename DenseDerived>
00097 void evalToLazy(MatrixBase<DenseDerived> &other) const;
00098
00099 DenseMatrixType toDenseMatrix() const
00100 {
00101 DenseMatrixType res(rows(), cols());
00102 evalToLazy(res);
00103 return res;
00104 }
00105
00106 protected:
00107
00108 void check_coordinates(Index row, Index col) const
00109 {
00110 EIGEN_ONLY_USED_FOR_DEBUG(row);
00111 EIGEN_ONLY_USED_FOR_DEBUG(col);
00112 eigen_assert(col>=0 && col<cols() && row>=0 && row<rows());
00113 const int mode = int(Mode) & ~SelfAdjoint;
00114 EIGEN_ONLY_USED_FOR_DEBUG(mode);
00115 eigen_assert((mode==Upper && col>=row)
00116 || (mode==Lower && col<=row)
00117 || ((mode==StrictlyUpper || mode==UnitUpper) && col>row)
00118 || ((mode==StrictlyLower || mode==UnitLower) && col<row));
00119 }
00120
00121 #ifdef EIGEN_INTERNAL_DEBUGGING
00122 void check_coordinates_internal(Index row, Index col) const
00123 {
00124 check_coordinates(row, col);
00125 }
00126 #else
00127 void check_coordinates_internal(Index , Index ) const {}
00128 #endif
00129
00130 };
00131
00149 namespace internal {
00150 template<typename MatrixType, unsigned int _Mode>
00151 struct traits<TriangularView<MatrixType, _Mode> > : traits<MatrixType>
00152 {
00153 typedef typename nested<MatrixType>::type MatrixTypeNested;
00154 typedef typename remove_reference<MatrixTypeNested>::type MatrixTypeNestedNonRef;
00155 typedef typename remove_all<MatrixTypeNested>::type MatrixTypeNestedCleaned;
00156 typedef MatrixType ExpressionType;
00157 typedef typename MatrixType::PlainObject DenseMatrixType;
00158 enum {
00159 Mode = _Mode,
00160 Flags = (MatrixTypeNestedCleaned::Flags & (HereditaryBits) & (~(PacketAccessBit | DirectAccessBit | LinearAccessBit))) | Mode,
00161 CoeffReadCost = MatrixTypeNestedCleaned::CoeffReadCost
00162 };
00163 };
00164 }
00165
00166 template<int Mode, bool LhsIsTriangular,
00167 typename Lhs, bool LhsIsVector,
00168 typename Rhs, bool RhsIsVector>
00169 struct TriangularProduct;
00170
00171 template<typename _MatrixType, unsigned int _Mode> class TriangularView
00172 : public TriangularBase<TriangularView<_MatrixType, _Mode> >
00173 {
00174 public:
00175
00176 typedef TriangularBase<TriangularView> Base;
00177 typedef typename internal::traits<TriangularView>::Scalar Scalar;
00178
00179 typedef _MatrixType MatrixType;
00180 typedef typename internal::traits<TriangularView>::DenseMatrixType DenseMatrixType;
00181 typedef DenseMatrixType PlainObject;
00182
00183 protected:
00184 typedef typename internal::traits<TriangularView>::MatrixTypeNested MatrixTypeNested;
00185 typedef typename internal::traits<TriangularView>::MatrixTypeNestedNonRef MatrixTypeNestedNonRef;
00186 typedef typename internal::traits<TriangularView>::MatrixTypeNestedCleaned MatrixTypeNestedCleaned;
00187
00188 typedef typename internal::remove_all<typename MatrixType::ConjugateReturnType>::type MatrixConjugateReturnType;
00189
00190 public:
00191 using Base::evalToLazy;
00192
00193
00194 typedef typename internal::traits<TriangularView>::StorageKind StorageKind;
00195 typedef typename internal::traits<TriangularView>::Index Index;
00196
00197 enum {
00198 Mode = _Mode,
00199 TransposeMode = (Mode & Upper ? Lower : 0)
00200 | (Mode & Lower ? Upper : 0)
00201 | (Mode & (UnitDiag))
00202 | (Mode & (ZeroDiag))
00203 };
00204
00205 inline TriangularView(const MatrixType& matrix) : m_matrix(matrix)
00206 {}
00207
00208 inline Index rows() const { return m_matrix.rows(); }
00209 inline Index cols() const { return m_matrix.cols(); }
00210 inline Index outerStride() const { return m_matrix.outerStride(); }
00211 inline Index innerStride() const { return m_matrix.innerStride(); }
00212
00214 template<typename Other> TriangularView& operator+=(const DenseBase<Other>& other) { return *this = m_matrix + other.derived(); }
00216 template<typename Other> TriangularView& operator-=(const DenseBase<Other>& other) { return *this = m_matrix - other.derived(); }
00218 TriangularView& operator*=(const typename internal::traits<MatrixType>::Scalar& other) { return *this = m_matrix * other; }
00220 TriangularView& operator/=(const typename internal::traits<MatrixType>::Scalar& other) { return *this = m_matrix / other; }
00221
00223 void fill(const Scalar& value) { setConstant(value); }
00225 TriangularView& setConstant(const Scalar& value)
00226 { return *this = MatrixType::Constant(rows(), cols(), value); }
00228 TriangularView& setZero() { return setConstant(Scalar(0)); }
00230 TriangularView& setOnes() { return setConstant(Scalar(1)); }
00231
00235 inline Scalar coeff(Index row, Index col) const
00236 {
00237 Base::check_coordinates_internal(row, col);
00238 return m_matrix.coeff(row, col);
00239 }
00240
00244 inline Scalar& coeffRef(Index row, Index col)
00245 {
00246 Base::check_coordinates_internal(row, col);
00247 return m_matrix.const_cast_derived().coeffRef(row, col);
00248 }
00249
00250 const MatrixTypeNestedCleaned& nestedExpression() const { return m_matrix; }
00251 MatrixTypeNestedCleaned& nestedExpression() { return *const_cast<MatrixTypeNestedCleaned*>(&m_matrix); }
00252
00254 template<typename OtherDerived>
00255 TriangularView& operator=(const TriangularBase<OtherDerived>& other);
00256
00257 template<typename OtherDerived>
00258 TriangularView& operator=(const MatrixBase<OtherDerived>& other);
00259
00260 TriangularView& operator=(const TriangularView& other)
00261 { return *this = other.nestedExpression(); }
00262
00263 template<typename OtherDerived>
00264 void lazyAssign(const TriangularBase<OtherDerived>& other);
00265
00266 template<typename OtherDerived>
00267 void lazyAssign(const MatrixBase<OtherDerived>& other);
00268
00270 inline TriangularView<MatrixConjugateReturnType,Mode> conjugate()
00271 { return m_matrix.conjugate(); }
00273 inline const TriangularView<MatrixConjugateReturnType,Mode> conjugate() const
00274 { return m_matrix.conjugate(); }
00275
00277 inline TriangularView<typename MatrixType::AdjointReturnType,TransposeMode> adjoint()
00278 { return m_matrix.adjoint(); }
00280 inline const TriangularView<typename MatrixType::AdjointReturnType,TransposeMode> adjoint() const
00281 { return m_matrix.adjoint(); }
00282
00284 inline TriangularView<Transpose<MatrixType>,TransposeMode> transpose()
00285 {
00286 EIGEN_STATIC_ASSERT_LVALUE(MatrixType)
00287 return m_matrix.const_cast_derived().transpose();
00288 }
00290 inline const TriangularView<Transpose<MatrixType>,TransposeMode> transpose() const
00291 { return m_matrix.transpose(); }
00292
00294 template<typename OtherDerived>
00295 TriangularProduct<Mode,true,MatrixType,false,OtherDerived,OtherDerived::IsVectorAtCompileTime>
00296 operator*(const MatrixBase<OtherDerived>& rhs) const
00297 {
00298 return TriangularProduct
00299 <Mode,true,MatrixType,false,OtherDerived,OtherDerived::IsVectorAtCompileTime>
00300 (m_matrix, rhs.derived());
00301 }
00302
00304 template<typename OtherDerived> friend
00305 TriangularProduct<Mode,false,OtherDerived,OtherDerived::IsVectorAtCompileTime,MatrixType,false>
00306 operator*(const MatrixBase<OtherDerived>& lhs, const TriangularView& rhs)
00307 {
00308 return TriangularProduct
00309 <Mode,false,OtherDerived,OtherDerived::IsVectorAtCompileTime,MatrixType,false>
00310 (lhs.derived(),rhs.m_matrix);
00311 }
00312
00313 #ifdef EIGEN2_SUPPORT
00314 template<typename OtherDerived>
00315 struct eigen2_product_return_type
00316 {
00317 typedef typename TriangularView<MatrixType,Mode>::DenseMatrixType DenseMatrixType;
00318 typedef typename OtherDerived::PlainObject::DenseType OtherPlainObject;
00319 typedef typename ProductReturnType<DenseMatrixType, OtherPlainObject>::Type ProdRetType;
00320 typedef typename ProdRetType::PlainObject type;
00321 };
00322 template<typename OtherDerived>
00323 const typename eigen2_product_return_type<OtherDerived>::type
00324 operator*(const EigenBase<OtherDerived>& rhs) const
00325 {
00326 typename OtherDerived::PlainObject::DenseType rhsPlainObject;
00327 rhs.evalTo(rhsPlainObject);
00328 return this->toDenseMatrix() * rhsPlainObject;
00329 }
00330 template<typename OtherMatrixType>
00331 bool isApprox(const TriangularView<OtherMatrixType, Mode>& other, typename NumTraits<Scalar>::Real precision = NumTraits<Scalar>::dummy_precision()) const
00332 {
00333 return this->toDenseMatrix().isApprox(other.toDenseMatrix(), precision);
00334 }
00335 template<typename OtherDerived>
00336 bool isApprox(const MatrixBase<OtherDerived>& other, typename NumTraits<Scalar>::Real precision = NumTraits<Scalar>::dummy_precision()) const
00337 {
00338 return this->toDenseMatrix().isApprox(other, precision);
00339 }
00340 #endif // EIGEN2_SUPPORT
00341
00342 template<int Side, typename Other>
00343 inline const internal::triangular_solve_retval<Side,TriangularView, Other>
00344 solve(const MatrixBase<Other>& other) const;
00345
00346 template<int Side, typename OtherDerived>
00347 void solveInPlace(const MatrixBase<OtherDerived>& other) const;
00348
00349 template<typename Other>
00350 inline const internal::triangular_solve_retval<OnTheLeft,TriangularView, Other>
00351 solve(const MatrixBase<Other>& other) const
00352 { return solve<OnTheLeft>(other); }
00353
00354 template<typename OtherDerived>
00355 void solveInPlace(const MatrixBase<OtherDerived>& other) const
00356 { return solveInPlace<OnTheLeft>(other); }
00357
00358 const SelfAdjointView<MatrixTypeNestedNonRef,Mode> selfadjointView() const
00359 {
00360 EIGEN_STATIC_ASSERT((Mode&UnitDiag)==0,PROGRAMMING_ERROR);
00361 return SelfAdjointView<MatrixTypeNestedNonRef,Mode>(m_matrix);
00362 }
00363 SelfAdjointView<MatrixTypeNestedNonRef,Mode> selfadjointView()
00364 {
00365 EIGEN_STATIC_ASSERT((Mode&UnitDiag)==0,PROGRAMMING_ERROR);
00366 return SelfAdjointView<MatrixTypeNestedNonRef,Mode>(m_matrix);
00367 }
00368
00369 template<typename OtherDerived>
00370 void swap(TriangularBase<OtherDerived> const & other)
00371 {
00372 TriangularView<SwapWrapper<MatrixType>,Mode>(const_cast<MatrixType&>(m_matrix)).lazyAssign(other.derived());
00373 }
00374
00375 template<typename OtherDerived>
00376 void swap(MatrixBase<OtherDerived> const & other)
00377 {
00378 TriangularView<SwapWrapper<MatrixType>,Mode>(const_cast<MatrixType&>(m_matrix)).lazyAssign(other.derived());
00379 }
00380
00381 Scalar determinant() const
00382 {
00383 if (Mode & UnitDiag)
00384 return 1;
00385 else if (Mode & ZeroDiag)
00386 return 0;
00387 else
00388 return m_matrix.diagonal().prod();
00389 }
00390
00391
00392 template<typename ProductDerived, typename Lhs, typename Rhs>
00393 EIGEN_STRONG_INLINE TriangularView& operator=(const ProductBase<ProductDerived, Lhs,Rhs>& other)
00394 {
00395 setZero();
00396 return assignProduct(other,1);
00397 }
00398
00399 template<typename ProductDerived, typename Lhs, typename Rhs>
00400 EIGEN_STRONG_INLINE TriangularView& operator+=(const ProductBase<ProductDerived, Lhs,Rhs>& other)
00401 {
00402 return assignProduct(other,1);
00403 }
00404
00405 template<typename ProductDerived, typename Lhs, typename Rhs>
00406 EIGEN_STRONG_INLINE TriangularView& operator-=(const ProductBase<ProductDerived, Lhs,Rhs>& other)
00407 {
00408 return assignProduct(other,-1);
00409 }
00410
00411
00412 template<typename ProductDerived>
00413 EIGEN_STRONG_INLINE TriangularView& operator=(const ScaledProduct<ProductDerived>& other)
00414 {
00415 setZero();
00416 return assignProduct(other,other.alpha());
00417 }
00418
00419 template<typename ProductDerived>
00420 EIGEN_STRONG_INLINE TriangularView& operator+=(const ScaledProduct<ProductDerived>& other)
00421 {
00422 return assignProduct(other,other.alpha());
00423 }
00424
00425 template<typename ProductDerived>
00426 EIGEN_STRONG_INLINE TriangularView& operator-=(const ScaledProduct<ProductDerived>& other)
00427 {
00428 return assignProduct(other,-other.alpha());
00429 }
00430
00431 protected:
00432
00433 template<typename ProductDerived, typename Lhs, typename Rhs>
00434 EIGEN_STRONG_INLINE TriangularView& assignProduct(const ProductBase<ProductDerived, Lhs,Rhs>& prod, const Scalar& alpha);
00435
00436 const MatrixTypeNested m_matrix;
00437 };
00438
00439
00440
00441
00442
00443 namespace internal {
00444
00445 template<typename Derived1, typename Derived2, unsigned int Mode, int UnrollCount, bool ClearOpposite>
00446 struct triangular_assignment_selector
00447 {
00448 enum {
00449 col = (UnrollCount-1) / Derived1::RowsAtCompileTime,
00450 row = (UnrollCount-1) % Derived1::RowsAtCompileTime
00451 };
00452
00453 typedef typename Derived1::Scalar Scalar;
00454
00455 inline static void run(Derived1 &dst, const Derived2 &src)
00456 {
00457 triangular_assignment_selector<Derived1, Derived2, Mode, UnrollCount-1, ClearOpposite>::run(dst, src);
00458
00459 eigen_assert( Mode == Upper || Mode == Lower
00460 || Mode == StrictlyUpper || Mode == StrictlyLower
00461 || Mode == UnitUpper || Mode == UnitLower);
00462 if((Mode == Upper && row <= col)
00463 || (Mode == Lower && row >= col)
00464 || (Mode == StrictlyUpper && row < col)
00465 || (Mode == StrictlyLower && row > col)
00466 || (Mode == UnitUpper && row < col)
00467 || (Mode == UnitLower && row > col))
00468 dst.copyCoeff(row, col, src);
00469 else if(ClearOpposite)
00470 {
00471 if (Mode&UnitDiag && row==col)
00472 dst.coeffRef(row, col) = Scalar(1);
00473 else
00474 dst.coeffRef(row, col) = Scalar(0);
00475 }
00476 }
00477 };
00478
00479
00480 template<typename Derived1, typename Derived2, unsigned int Mode, bool ClearOpposite>
00481 struct triangular_assignment_selector<Derived1, Derived2, Mode, 0, ClearOpposite>
00482 {
00483 inline static void run(Derived1 &, const Derived2 &) {}
00484 };
00485
00486 template<typename Derived1, typename Derived2, bool ClearOpposite>
00487 struct triangular_assignment_selector<Derived1, Derived2, Upper, Dynamic, ClearOpposite>
00488 {
00489 typedef typename Derived1::Index Index;
00490 typedef typename Derived1::Scalar Scalar;
00491 inline static void run(Derived1 &dst, const Derived2 &src)
00492 {
00493 for(Index j = 0; j < dst.cols(); ++j)
00494 {
00495 Index maxi = (std::min)(j, dst.rows()-1);
00496 for(Index i = 0; i <= maxi; ++i)
00497 dst.copyCoeff(i, j, src);
00498 if (ClearOpposite)
00499 for(Index i = maxi+1; i < dst.rows(); ++i)
00500 dst.coeffRef(i, j) = Scalar(0);
00501 }
00502 }
00503 };
00504
00505 template<typename Derived1, typename Derived2, bool ClearOpposite>
00506 struct triangular_assignment_selector<Derived1, Derived2, Lower, Dynamic, ClearOpposite>
00507 {
00508 typedef typename Derived1::Index Index;
00509 inline static void run(Derived1 &dst, const Derived2 &src)
00510 {
00511 for(Index j = 0; j < dst.cols(); ++j)
00512 {
00513 for(Index i = j; i < dst.rows(); ++i)
00514 dst.copyCoeff(i, j, src);
00515 Index maxi = (std::min)(j, dst.rows());
00516 if (ClearOpposite)
00517 for(Index i = 0; i < maxi; ++i)
00518 dst.coeffRef(i, j) = static_cast<typename Derived1::Scalar>(0);
00519 }
00520 }
00521 };
00522
00523 template<typename Derived1, typename Derived2, bool ClearOpposite>
00524 struct triangular_assignment_selector<Derived1, Derived2, StrictlyUpper, Dynamic, ClearOpposite>
00525 {
00526 typedef typename Derived1::Index Index;
00527 inline static void run(Derived1 &dst, const Derived2 &src)
00528 {
00529 for(Index j = 0; j < dst.cols(); ++j)
00530 {
00531 Index maxi = (std::min)(j, dst.rows());
00532 for(Index i = 0; i < maxi; ++i)
00533 dst.copyCoeff(i, j, src);
00534 if (ClearOpposite)
00535 for(Index i = maxi; i < dst.rows(); ++i)
00536 dst.coeffRef(i, j) = 0;
00537 }
00538 }
00539 };
00540
00541 template<typename Derived1, typename Derived2, bool ClearOpposite>
00542 struct triangular_assignment_selector<Derived1, Derived2, StrictlyLower, Dynamic, ClearOpposite>
00543 {
00544 typedef typename Derived1::Index Index;
00545 inline static void run(Derived1 &dst, const Derived2 &src)
00546 {
00547 for(Index j = 0; j < dst.cols(); ++j)
00548 {
00549 for(Index i = j+1; i < dst.rows(); ++i)
00550 dst.copyCoeff(i, j, src);
00551 Index maxi = (std::min)(j, dst.rows()-1);
00552 if (ClearOpposite)
00553 for(Index i = 0; i <= maxi; ++i)
00554 dst.coeffRef(i, j) = static_cast<typename Derived1::Scalar>(0);
00555 }
00556 }
00557 };
00558
00559 template<typename Derived1, typename Derived2, bool ClearOpposite>
00560 struct triangular_assignment_selector<Derived1, Derived2, UnitUpper, Dynamic, ClearOpposite>
00561 {
00562 typedef typename Derived1::Index Index;
00563 inline static void run(Derived1 &dst, const Derived2 &src)
00564 {
00565 for(Index j = 0; j < dst.cols(); ++j)
00566 {
00567 Index maxi = (std::min)(j, dst.rows());
00568 for(Index i = 0; i < maxi; ++i)
00569 dst.copyCoeff(i, j, src);
00570 if (ClearOpposite)
00571 {
00572 for(Index i = maxi+1; i < dst.rows(); ++i)
00573 dst.coeffRef(i, j) = 0;
00574 }
00575 }
00576 dst.diagonal().setOnes();
00577 }
00578 };
00579 template<typename Derived1, typename Derived2, bool ClearOpposite>
00580 struct triangular_assignment_selector<Derived1, Derived2, UnitLower, Dynamic, ClearOpposite>
00581 {
00582 typedef typename Derived1::Index Index;
00583 inline static void run(Derived1 &dst, const Derived2 &src)
00584 {
00585 for(Index j = 0; j < dst.cols(); ++j)
00586 {
00587 Index maxi = (std::min)(j, dst.rows());
00588 for(Index i = maxi+1; i < dst.rows(); ++i)
00589 dst.copyCoeff(i, j, src);
00590 if (ClearOpposite)
00591 {
00592 for(Index i = 0; i < maxi; ++i)
00593 dst.coeffRef(i, j) = 0;
00594 }
00595 }
00596 dst.diagonal().setOnes();
00597 }
00598 };
00599
00600 }
00601
00602
00603 template<typename MatrixType, unsigned int Mode>
00604 template<typename OtherDerived>
00605 inline TriangularView<MatrixType, Mode>&
00606 TriangularView<MatrixType, Mode>::operator=(const MatrixBase<OtherDerived>& other)
00607 {
00608 if(OtherDerived::Flags & EvalBeforeAssigningBit)
00609 {
00610 typename internal::plain_matrix_type<OtherDerived>::type other_evaluated(other.rows(), other.cols());
00611 other_evaluated.template triangularView<Mode>().lazyAssign(other.derived());
00612 lazyAssign(other_evaluated);
00613 }
00614 else
00615 lazyAssign(other.derived());
00616 return *this;
00617 }
00618
00619
00620 template<typename MatrixType, unsigned int Mode>
00621 template<typename OtherDerived>
00622 void TriangularView<MatrixType, Mode>::lazyAssign(const MatrixBase<OtherDerived>& other)
00623 {
00624 enum {
00625 unroll = MatrixType::SizeAtCompileTime != Dynamic
00626 && internal::traits<OtherDerived>::CoeffReadCost != Dynamic
00627 && MatrixType::SizeAtCompileTime*internal::traits<OtherDerived>::CoeffReadCost/2 <= EIGEN_UNROLLING_LIMIT
00628 };
00629 eigen_assert(m_matrix.rows() == other.rows() && m_matrix.cols() == other.cols());
00630
00631 internal::triangular_assignment_selector
00632 <MatrixType, OtherDerived, int(Mode),
00633 unroll ? int(MatrixType::SizeAtCompileTime) : Dynamic,
00634 false
00635 >::run(m_matrix.const_cast_derived(), other.derived());
00636 }
00637
00638
00639
00640 template<typename MatrixType, unsigned int Mode>
00641 template<typename OtherDerived>
00642 inline TriangularView<MatrixType, Mode>&
00643 TriangularView<MatrixType, Mode>::operator=(const TriangularBase<OtherDerived>& other)
00644 {
00645 eigen_assert(Mode == int(OtherDerived::Mode));
00646 if(internal::traits<OtherDerived>::Flags & EvalBeforeAssigningBit)
00647 {
00648 typename OtherDerived::DenseMatrixType other_evaluated(other.rows(), other.cols());
00649 other_evaluated.template triangularView<Mode>().lazyAssign(other.derived().nestedExpression());
00650 lazyAssign(other_evaluated);
00651 }
00652 else
00653 lazyAssign(other.derived().nestedExpression());
00654 return *this;
00655 }
00656
00657 template<typename MatrixType, unsigned int Mode>
00658 template<typename OtherDerived>
00659 void TriangularView<MatrixType, Mode>::lazyAssign(const TriangularBase<OtherDerived>& other)
00660 {
00661 enum {
00662 unroll = MatrixType::SizeAtCompileTime != Dynamic
00663 && internal::traits<OtherDerived>::CoeffReadCost != Dynamic
00664 && MatrixType::SizeAtCompileTime * internal::traits<OtherDerived>::CoeffReadCost / 2
00665 <= EIGEN_UNROLLING_LIMIT
00666 };
00667 eigen_assert(m_matrix.rows() == other.rows() && m_matrix.cols() == other.cols());
00668
00669 internal::triangular_assignment_selector
00670 <MatrixType, OtherDerived, int(Mode),
00671 unroll ? int(MatrixType::SizeAtCompileTime) : Dynamic,
00672 false
00673 >::run(m_matrix.const_cast_derived(), other.derived().nestedExpression());
00674 }
00675
00676
00677
00678
00679
00682 template<typename Derived>
00683 template<typename DenseDerived>
00684 void TriangularBase<Derived>::evalTo(MatrixBase<DenseDerived> &other) const
00685 {
00686 if(internal::traits<Derived>::Flags & EvalBeforeAssigningBit)
00687 {
00688 typename internal::plain_matrix_type<Derived>::type other_evaluated(rows(), cols());
00689 evalToLazy(other_evaluated);
00690 other.derived().swap(other_evaluated);
00691 }
00692 else
00693 evalToLazy(other.derived());
00694 }
00695
00698 template<typename Derived>
00699 template<typename DenseDerived>
00700 void TriangularBase<Derived>::evalToLazy(MatrixBase<DenseDerived> &other) const
00701 {
00702 enum {
00703 unroll = DenseDerived::SizeAtCompileTime != Dynamic
00704 && internal::traits<Derived>::CoeffReadCost != Dynamic
00705 && DenseDerived::SizeAtCompileTime * internal::traits<Derived>::CoeffReadCost / 2
00706 <= EIGEN_UNROLLING_LIMIT
00707 };
00708 other.derived().resize(this->rows(), this->cols());
00709
00710 internal::triangular_assignment_selector
00711 <DenseDerived, typename internal::traits<Derived>::MatrixTypeNestedCleaned, Derived::Mode,
00712 unroll ? int(DenseDerived::SizeAtCompileTime) : Dynamic,
00713 true
00714 >::run(other.derived(), derived().nestedExpression());
00715 }
00716
00717
00718
00719
00720
00721
00722
00723
00724
00725 #ifdef EIGEN2_SUPPORT
00726
00727
00728
00729 namespace internal {
00730 template<typename MatrixType, unsigned int Mode>
00731 struct eigen2_part_return_type
00732 {
00733 typedef TriangularView<MatrixType, Mode> type;
00734 };
00735
00736 template<typename MatrixType>
00737 struct eigen2_part_return_type<MatrixType, SelfAdjoint>
00738 {
00739 typedef SelfAdjointView<MatrixType, Upper> type;
00740 };
00741 }
00742
00744 template<typename Derived>
00745 template<unsigned int Mode>
00746 const typename internal::eigen2_part_return_type<Derived, Mode>::type MatrixBase<Derived>::part() const
00747 {
00748 return derived();
00749 }
00750
00752 template<typename Derived>
00753 template<unsigned int Mode>
00754 typename internal::eigen2_part_return_type<Derived, Mode>::type MatrixBase<Derived>::part()
00755 {
00756 return derived();
00757 }
00758 #endif
00759
00771 template<typename Derived>
00772 template<unsigned int Mode>
00773 typename MatrixBase<Derived>::template TriangularViewReturnType<Mode>::Type
00774 MatrixBase<Derived>::triangularView()
00775 {
00776 return derived();
00777 }
00778
00780 template<typename Derived>
00781 template<unsigned int Mode>
00782 typename MatrixBase<Derived>::template ConstTriangularViewReturnType<Mode>::Type
00783 MatrixBase<Derived>::triangularView() const
00784 {
00785 return derived();
00786 }
00787
00793 template<typename Derived>
00794 bool MatrixBase<Derived>::isUpperTriangular(RealScalar prec) const
00795 {
00796 RealScalar maxAbsOnUpperPart = static_cast<RealScalar>(-1);
00797 for(Index j = 0; j < cols(); ++j)
00798 {
00799 Index maxi = (std::min)(j, rows()-1);
00800 for(Index i = 0; i <= maxi; ++i)
00801 {
00802 RealScalar absValue = internal::abs(coeff(i,j));
00803 if(absValue > maxAbsOnUpperPart) maxAbsOnUpperPart = absValue;
00804 }
00805 }
00806 RealScalar threshold = maxAbsOnUpperPart * prec;
00807 for(Index j = 0; j < cols(); ++j)
00808 for(Index i = j+1; i < rows(); ++i)
00809 if(internal::abs(coeff(i, j)) > threshold) return false;
00810 return true;
00811 }
00812
00818 template<typename Derived>
00819 bool MatrixBase<Derived>::isLowerTriangular(RealScalar prec) const
00820 {
00821 RealScalar maxAbsOnLowerPart = static_cast<RealScalar>(-1);
00822 for(Index j = 0; j < cols(); ++j)
00823 for(Index i = j; i < rows(); ++i)
00824 {
00825 RealScalar absValue = internal::abs(coeff(i,j));
00826 if(absValue > maxAbsOnLowerPart) maxAbsOnLowerPart = absValue;
00827 }
00828 RealScalar threshold = maxAbsOnLowerPart * prec;
00829 for(Index j = 1; j < cols(); ++j)
00830 {
00831 Index maxi = (std::min)(j, rows()-1);
00832 for(Index i = 0; i < maxi; ++i)
00833 if(internal::abs(coeff(i, j)) > threshold) return false;
00834 }
00835 return true;
00836 }
00837
00838 #endif // EIGEN_TRIANGULARMATRIX_H