11#ifndef EIGEN_GENERAL_MATRIX_MATRIX_TRIANGULAR_H
12#define EIGEN_GENERAL_MATRIX_MATRIX_TRIANGULAR_H
15#include "../InternalHeaderCheck.h"
19template <
typename Scalar,
typename Index,
int StorageOrder,
int UpLo,
bool ConjLhs,
bool ConjRhs>
20struct selfadjoint_rank1_update;
32template <
typename LhsScalar,
typename RhsScalar,
typename Index,
int mr,
int nr,
bool ConjLhs,
bool ConjRhs,
33 int ResInnerStride,
int UpLo>
37template <
typename Index,
typename LhsScalar,
int LhsStorageOrder,
bool ConjugateLhs,
typename RhsScalar,
38 int RhsStorageOrder,
bool ConjugateRhs,
int ResStorageOrder,
int ResInnerStride,
int UpLo,
39 int Version = Specialized>
40struct general_matrix_matrix_triangular_product;
43template <
typename Index,
typename LhsScalar,
int LhsStorageOrder,
bool ConjugateLhs,
typename RhsScalar,
44 int RhsStorageOrder,
bool ConjugateRhs,
int ResInnerStride,
int UpLo,
int Version>
45struct general_matrix_matrix_triangular_product<Index, LhsScalar, LhsStorageOrder, ConjugateLhs, RhsScalar,
46 RhsStorageOrder, ConjugateRhs,
RowMajor, ResInnerStride, UpLo,
48 using ResScalar =
typename ScalarBinaryOpTraits<LhsScalar, RhsScalar>::ReturnType;
49 static EIGEN_STRONG_INLINE
void run(Index size, Index depth,
const LhsScalar* lhs, Index lhsStride,
50 const RhsScalar* rhs, Index rhsStride, ResScalar* res, Index resIncr,
51 Index resStride,
const ResScalar& alpha,
52 level3_blocking<RhsScalar, LhsScalar>& blocking) {
55 ConjugateLhs,
ColMajor, ResInnerStride,
57 lhsStride, res, resIncr, resStride,
62template <
typename Index,
typename LhsScalar,
int LhsStorageOrder,
bool ConjugateLhs,
typename RhsScalar,
63 int RhsStorageOrder,
bool ConjugateRhs,
int ResInnerStride,
int UpLo,
int Version>
64struct general_matrix_matrix_triangular_product<Index, LhsScalar, LhsStorageOrder, ConjugateLhs, RhsScalar,
65 RhsStorageOrder, ConjugateRhs,
ColMajor, ResInnerStride, UpLo,
67 using ResScalar =
typename ScalarBinaryOpTraits<LhsScalar, RhsScalar>::ReturnType;
68 static EIGEN_STRONG_INLINE
void run(Index size, Index depth,
const LhsScalar* lhs_, Index lhsStride,
69 const RhsScalar* rhs_, Index rhsStride, ResScalar* res_, Index resIncr,
70 Index resStride,
const ResScalar& alpha,
71 level3_blocking<LhsScalar, RhsScalar>& blocking) {
76 using Traits = gebp_traits<LhsScalar, RhsScalar>;
78 using LhsMapper = const_blas_data_mapper<LhsScalar, Index, LhsStorageOrder>;
79 using RhsMapper = const_blas_data_mapper<RhsScalar, Index, RhsStorageOrder>;
80 using ResMapper = blas_data_mapper<typename Traits::ResScalar, Index, ColMajor, Unaligned, ResInnerStride>;
81 LhsMapper lhs(lhs_, lhsStride);
82 RhsMapper rhs(rhs_, rhsStride);
83 ResMapper res(res_, resStride, resIncr);
85 Index kc = blocking.kc();
87 Index mc = (std::min)(size, (std::max)(
static_cast<decltype(blocking.mc())
>(Traits::nr), blocking.mc()));
90 if (mc > Traits::nr) {
91 using UnsignedIndex = std::make_unsigned_t<Index>;
92 mc = (UnsignedIndex(mc) / Traits::nr) * Traits::nr;
95 std::size_t sizeA = kc * mc;
96 std::size_t sizeB = kc * size;
98 ei_declare_aligned_stack_constructed_variable(LhsScalar, blockA, sizeA, blocking.blockA());
99 ei_declare_aligned_stack_constructed_variable(RhsScalar, blockB, sizeB, blocking.blockB());
101 gemm_pack_lhs<LhsScalar, Index, LhsMapper, Traits::mr, Traits::LhsProgress,
typename Traits::LhsPacket4Packing,
104 gemm_pack_rhs<RhsScalar, Index, RhsMapper, Traits::nr, RhsStorageOrder> pack_rhs;
105 gebp_kernel<LhsScalar, RhsScalar, Index, ResMapper, Traits::mr, Traits::nr, ConjugateLhs, ConjugateRhs> gebp;
106 tribb_kernel<LhsScalar, RhsScalar, Index, Traits::mr, Traits::nr, ConjugateLhs, ConjugateRhs, ResInnerStride, UpLo>
109 for (Index k2 = 0; k2 < depth; k2 += kc) {
110 const Index actual_kc = (std::min)(k2 + kc, depth) - k2;
113 pack_rhs(blockB, rhs.getSubMapper(k2, 0), actual_kc, size);
115 for (Index i2 = 0; i2 < size; i2 += mc) {
116 const Index actual_mc = (std::min)(i2 + mc, size) - i2;
118 pack_lhs(blockA, lhs.getSubMapper(i2, k2), actual_kc, actual_mc);
124 EIGEN_IF_CONSTEXPR (UpLo ==
Lower) {
125 gebp(res.getSubMapper(i2, 0), blockA, blockB, actual_mc, actual_kc, (std::min)(size, i2), alpha, -1, -1, 0,
129 sybb(res_ + resStride * i2 + resIncr * i2, resIncr, resStride, blockA, blockB + actual_kc * i2, actual_mc,
132 EIGEN_IF_CONSTEXPR (UpLo ==
Upper) {
133 Index j2 = i2 + actual_mc;
134 gebp(res.getSubMapper(i2, j2), blockA, blockB + actual_kc * j2, actual_mc, actual_kc,
135 (std::max)(Index(0), size - j2), alpha, -1, -1, 0, 0);
151template <
typename LhsScalar,
typename RhsScalar,
typename Index,
int mr,
int nr,
bool ConjLhs,
bool ConjRhs,
152 int ResInnerStride,
int UpLo>
154 using Traits = gebp_traits<LhsScalar, RhsScalar, ConjLhs, ConjRhs>;
155 using ResScalar =
typename Traits::ResScalar;
157 enum { BlockSize = meta_least_common_multiple<plain_enum_max(mr, nr), plain_enum_min(mr, nr)>::value };
158 void operator()(ResScalar* res_, Index resIncr, Index resStride,
const LhsScalar* blockA,
const RhsScalar* blockB,
159 Index size, Index depth,
const ResScalar& alpha)
const {
160 using ResMapper = blas_data_mapper<ResScalar, Index, ColMajor, Unaligned, ResInnerStride>;
161 using BufferMapper = blas_data_mapper<ResScalar, Index, ColMajor, Unaligned>;
162 ResMapper res(res_, resStride, resIncr);
163 gebp_kernel<LhsScalar, RhsScalar, Index, ResMapper, mr, nr, ConjLhs, ConjRhs> gebp_kernel1;
164 gebp_kernel<LhsScalar, RhsScalar, Index, BufferMapper, mr, nr, ConjLhs, ConjRhs> gebp_kernel2;
166 Matrix<ResScalar, BlockSize, BlockSize, ColMajor> buffer;
170 for (Index j = 0; j < size; j += BlockSize) {
171 Index actualBlockSize = std::min<Index>(BlockSize, size - j);
172 const RhsScalar* actual_b = blockB + j * depth;
174 EIGEN_IF_CONSTEXPR (UpLo ==
Upper) {
175 gebp_kernel1(res.getSubMapper(0, j), blockA, actual_b, j, depth, actualBlockSize, alpha, -1, -1, 0, 0);
183 gebp_kernel2(BufferMapper(buffer.data(), BlockSize), blockA + depth * i, actual_b, actualBlockSize, depth,
184 actualBlockSize, alpha, -1, -1, 0, 0);
187 for (Index j1 = 0; j1 < actualBlockSize; ++j1) {
188 typename ResMapper::LinearMapper r = res.getLinearMapper(i, j + j1);
189 for (Index i1 = UpLo ==
Lower ? j1 : 0; UpLo ==
Lower ? i1 < actualBlockSize : i1 <= j1; ++i1)
190 r(i1) += buffer(i1, j1);
194 EIGEN_IF_CONSTEXPR (UpLo ==
Lower) {
195 Index i = j + actualBlockSize;
196 gebp_kernel1(res.getSubMapper(i, j), blockA + depth * i, actual_b, size - i, depth, actualBlockSize, alpha, -1,
207template <
typename MatrixType,
typename ProductType,
int UpLo,
bool IsOuterProduct>
208struct general_product_to_triangular_selector;
210template <
typename MatrixType,
typename ProductType,
int UpLo>
211struct general_product_to_triangular_selector<MatrixType, ProductType, UpLo, true> {
212 static void run(MatrixType& mat,
const ProductType& prod,
const typename MatrixType::Scalar& alpha,
bool beta) {
213 using Scalar =
typename MatrixType::Scalar;
215 using Lhs = internal::remove_all_t<typename ProductType::LhsNested>;
216 using LhsBlasTraits = internal::blas_traits<Lhs>;
217 using ActualLhs =
typename LhsBlasTraits::DirectLinearAccessType;
218 using ActualLhs_ = internal::remove_all_t<ActualLhs>;
219 internal::add_const_on_value_type_t<ActualLhs> actualLhs = LhsBlasTraits::extract(prod.lhs());
221 using Rhs = internal::remove_all_t<typename ProductType::RhsNested>;
222 using RhsBlasTraits = internal::blas_traits<Rhs>;
223 using ActualRhs =
typename RhsBlasTraits::DirectLinearAccessType;
224 using ActualRhs_ = internal::remove_all_t<ActualRhs>;
225 internal::add_const_on_value_type_t<ActualRhs> actualRhs = RhsBlasTraits::extract(prod.rhs());
227 Scalar actualAlpha = alpha * LhsBlasTraits::extractScalarFactor(prod.lhs().derived()) *
228 RhsBlasTraits::extractScalarFactor(prod.rhs().derived());
230 if (!beta) mat.template triangularView<UpLo>().setZero();
234 UseLhsDirectly = ActualLhs_::InnerStrideAtCompileTime == 1,
235 UseRhsDirectly = ActualRhs_::InnerStrideAtCompileTime == 1
238 internal::gemv_static_vector_if<Scalar, Lhs::SizeAtCompileTime, Lhs::MaxSizeAtCompileTime, !UseLhsDirectly>
240 ei_declare_aligned_stack_constructed_variable(
241 Scalar, actualLhsPtr, actualLhs.size(),
242 (UseLhsDirectly ?
const_cast<Scalar*
>(actualLhs.data()) : static_lhs.data()));
243 EIGEN_IF_CONSTEXPR (!UseLhsDirectly) {
244 Map<typename ActualLhs_::PlainObject>(actualLhsPtr, actualLhs.size()) = actualLhs;
247 internal::gemv_static_vector_if<Scalar, Rhs::SizeAtCompileTime, Rhs::MaxSizeAtCompileTime, !UseRhsDirectly>
249 ei_declare_aligned_stack_constructed_variable(
250 Scalar, actualRhsPtr, actualRhs.size(),
251 (UseRhsDirectly ?
const_cast<Scalar*
>(actualRhs.data()) : static_rhs.data()));
252 EIGEN_IF_CONSTEXPR (!UseRhsDirectly) {
253 Map<typename ActualRhs_::PlainObject>(actualRhsPtr, actualRhs.size()) = actualRhs;
256 selfadjoint_rank1_update<
257 Scalar, Index, StorageOrder, UpLo, LhsBlasTraits::NeedToConjugate && NumTraits<Scalar>::IsComplex,
258 RhsBlasTraits::NeedToConjugate && NumTraits<Scalar>::IsComplex>::run(actualLhs.size(), mat.data(),
259 mat.outerStride(), actualLhsPtr,
260 actualRhsPtr, actualAlpha);
264template <
typename MatrixType,
typename ProductType,
int UpLo>
265struct general_product_to_triangular_selector<MatrixType, ProductType, UpLo, false> {
266 static void run(MatrixType& mat,
const ProductType& prod,
const typename MatrixType::Scalar& alpha,
bool beta) {
267 using Lhs = internal::remove_all_t<typename ProductType::LhsNested>;
268 using LhsBlasTraits = internal::blas_traits<Lhs>;
269 using ActualLhs =
typename LhsBlasTraits::DirectLinearAccessType;
270 using ActualLhs_ = internal::remove_all_t<ActualLhs>;
271 internal::add_const_on_value_type_t<ActualLhs> actualLhs = LhsBlasTraits::extract(prod.lhs());
273 using Rhs = internal::remove_all_t<typename ProductType::RhsNested>;
274 using RhsBlasTraits = internal::blas_traits<Rhs>;
275 using ActualRhs =
typename RhsBlasTraits::DirectLinearAccessType;
276 using ActualRhs_ = internal::remove_all_t<ActualRhs>;
277 internal::add_const_on_value_type_t<ActualRhs> actualRhs = RhsBlasTraits::extract(prod.rhs());
279 typename ProductType::Scalar actualAlpha = alpha * LhsBlasTraits::extractScalarFactor(prod.lhs().derived()) *
280 RhsBlasTraits::extractScalarFactor(prod.rhs().derived());
282 if (!beta) mat.template triangularView<UpLo>().setZero();
285 IsRowMajor = (internal::traits<MatrixType>::Flags &
RowMajorBit) ? 1 : 0,
286 LhsIsRowMajor = ActualLhs_::Flags &
RowMajorBit ? 1 : 0,
287 RhsIsRowMajor = ActualRhs_::Flags &
RowMajorBit ? 1 : 0,
291 Index size = mat.cols();
292 EIGEN_IF_CONSTEXPR (SkipDiag) size--;
293 Index depth = actualLhs.cols();
294 eigen_assert(actualLhs.rows() == mat.rows() && actualRhs.cols() == mat.cols() &&
295 actualLhs.cols() == actualRhs.rows());
296 if (size <= 0 || depth == 0)
return;
299 internal::gemm_blocking_space<IsRowMajor ?
RowMajor :
ColMajor,
typename Lhs::Scalar,
typename Rhs::Scalar,
300 MatrixType::MaxColsAtCompileTime, MatrixType::MaxColsAtCompileTime,
301 ActualRhs_::MaxColsAtCompileTime>;
303 BlockingType blocking(size, size, depth, 1,
false);
305 internal::general_matrix_matrix_triangular_product<
306 Index,
typename Lhs::Scalar, LhsIsRowMajor ?
RowMajor :
ColMajor, LhsBlasTraits::NeedToConjugate,
307 typename Rhs::Scalar, RhsIsRowMajor ?
RowMajor :
ColMajor, RhsBlasTraits::NeedToConjugate,
309 UpLo&(
Lower |
Upper)>::run(size, depth, &actualLhs.coeffRef(SkipDiag && (UpLo & Lower) == Lower ? 1 : 0, 0),
310 actualLhs.outerStride(),
311 &actualRhs.coeffRef(0, SkipDiag && (UpLo & Upper) == Upper ? 1 : 0),
312 actualRhs.outerStride(),
314 (SkipDiag ? (
bool(IsRowMajor) != ((UpLo & Lower) == Lower) ? mat.innerStride()
317 mat.innerStride(), mat.outerStride(), actualAlpha, blocking);
321template <
typename MatrixType_,
unsigned int Mode_>
322template <
typename ProductType>
323EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
typename TriangularViewImpl<MatrixType_, Mode_, Dense>::TriangularViewType&
324TriangularViewImpl<MatrixType_, Mode_, Dense>::_assignProduct(
325 const ProductType& prod,
const typename TriangularViewImpl<MatrixType_, Mode_, Dense>::Scalar& alpha,
bool beta) {
326 EIGEN_STATIC_ASSERT((Mode_ & UnitDiag) == 0, WRITING_TO_TRIANGULAR_PART_WITH_UNIT_DIAGONAL_IS_NOT_SUPPORTED);
327 eigen_assert(derived().nestedExpression().rows() == prod.rows() && derived().cols() == prod.cols());
329 general_product_to_triangular_selector<MatrixType_, ProductType, Mode_,
330 internal::traits<ProductType>::InnerSize == 1>::run(derived()
332 .const_cast_derived(),
@ UnitDiag
Definition Constants.h:216
@ ZeroDiag
Definition Constants.h:218
@ Lower
Definition Constants.h:212
@ Upper
Definition Constants.h:214
@ ColMajor
Definition Constants.h:319
@ RowMajor
Definition Constants.h:321
constexpr unsigned int RowMajorBit
Definition Constants.h:71