10#ifndef EIGEN_TRIANGULAR_MATRIX_MATRIX_H
11#define EIGEN_TRIANGULAR_MATRIX_MATRIX_H
44template <
typename Scalar,
typename Index,
45 int Mode,
bool LhsIsTriangular,
46 int LhsStorageOrder,
bool ConjugateLhs,
47 int RhsStorageOrder,
bool ConjugateRhs,
48 int ResStorageOrder,
int ResInnerStride,
49 int Version = Specialized>
50struct product_triangular_matrix_matrix;
52template <
typename Scalar,
typename Index,
53 int Mode,
bool LhsIsTriangular,
54 int LhsStorageOrder,
bool ConjugateLhs,
55 int RhsStorageOrder,
bool ConjugateRhs,
56 int ResInnerStride,
int Version>
57struct product_triangular_matrix_matrix<Scalar,
Index,Mode,LhsIsTriangular,
58 LhsStorageOrder,ConjugateLhs,
59 RhsStorageOrder,ConjugateRhs,
RowMajor,ResInnerStride,Version>
61 static EIGEN_STRONG_INLINE
void run(
63 const Scalar* lhs,
Index lhsStride,
64 const Scalar* rhs,
Index rhsStride,
66 const Scalar& alpha, level3_blocking<Scalar,Scalar>& blocking)
68 product_triangular_matrix_matrix<Scalar,
Index,
76 ::run(cols, rows, depth, rhs, rhsStride, lhs, lhsStride, res, resIncr, resStride, alpha, blocking);
81template <
typename Scalar,
typename Index,
int Mode,
82 int LhsStorageOrder,
bool ConjugateLhs,
83 int RhsStorageOrder,
bool ConjugateRhs,
84 int ResInnerStride,
int Version>
85struct product_triangular_matrix_matrix<Scalar,
Index,Mode,true,
86 LhsStorageOrder,ConjugateLhs,
87 RhsStorageOrder,ConjugateRhs,
ColMajor,ResInnerStride,Version>
90 typedef gebp_traits<Scalar,Scalar> Traits;
92 SmallPanelWidth = 2 * EIGEN_PLAIN_ENUM_MAX(Traits::mr,Traits::nr),
97 static EIGEN_DONT_INLINE
void run(
99 const Scalar* _lhs,
Index lhsStride,
100 const Scalar* _rhs,
Index rhsStride,
102 const Scalar& alpha, level3_blocking<Scalar,Scalar>& blocking);
105template <
typename Scalar,
typename Index,
int Mode,
106 int LhsStorageOrder,
bool ConjugateLhs,
107 int RhsStorageOrder,
bool ConjugateRhs,
108 int ResInnerStride,
int Version>
109EIGEN_DONT_INLINE
void product_triangular_matrix_matrix<Scalar,
Index,Mode,
true,
110 LhsStorageOrder,ConjugateLhs,
111 RhsStorageOrder,ConjugateRhs,
ColMajor,ResInnerStride,Version>::run(
113 const Scalar* _lhs,
Index lhsStride,
114 const Scalar* _rhs,
Index rhsStride,
116 const Scalar& alpha, level3_blocking<Scalar,Scalar>& blocking)
119 Index diagSize = (std::min)(_rows,_depth);
120 Index rows = IsLower ? _rows : diagSize;
121 Index depth = IsLower ? diagSize : _depth;
124 typedef const_blas_data_mapper<Scalar, Index, LhsStorageOrder> LhsMapper;
125 typedef const_blas_data_mapper<Scalar, Index, RhsStorageOrder> RhsMapper;
126 typedef blas_data_mapper<typename Traits::ResScalar, Index, ColMajor, Unaligned, ResInnerStride> ResMapper;
127 LhsMapper lhs(_lhs,lhsStride);
128 RhsMapper rhs(_rhs,rhsStride);
129 ResMapper res(_res, resStride, resIncr);
131 Index kc = blocking.kc();
132 Index mc = (std::min)(rows,blocking.mc());
136 Index panelWidth = (std::min)(
Index(SmallPanelWidth),(std::min)(kc,mc));
138 std::size_t sizeA = kc*mc;
139 std::size_t sizeB = kc*cols;
141 ei_declare_aligned_stack_constructed_variable(Scalar, blockA, sizeA, blocking.blockA());
142 ei_declare_aligned_stack_constructed_variable(Scalar, blockB, sizeB, blocking.blockB());
149 internal::constructor_without_unaligned_array_assert a;
150 Matrix<Scalar,SmallPanelWidth,SmallPanelWidth,LhsStorageOrder> triangularBuffer(a);
151 triangularBuffer.setZero();
153 triangularBuffer.diagonal().setZero();
155 triangularBuffer.diagonal().setOnes();
157 gebp_kernel<Scalar, Scalar, Index, ResMapper, Traits::mr, Traits::nr, ConjugateLhs, ConjugateRhs> gebp_kernel;
158 gemm_pack_lhs<Scalar, Index, LhsMapper, Traits::mr, Traits::LhsProgress, LhsStorageOrder> pack_lhs;
159 gemm_pack_rhs<Scalar, Index, RhsMapper, Traits::nr,RhsStorageOrder> pack_rhs;
161 for(
Index k2=IsLower ? depth : 0;
162 IsLower ? k2>0 : k2<depth;
163 IsLower ? k2-=kc : k2+=kc)
165 Index actual_kc = (std::min)(IsLower ? k2 : depth-k2, kc);
166 Index actual_k2 = IsLower ? k2-actual_kc : k2;
169 if((!IsLower)&&(k2<rows)&&(k2+actual_kc>rows))
172 k2 = k2+actual_kc-kc;
175 pack_rhs(blockB, rhs.getSubMapper(actual_k2,0), actual_kc, cols);
183 if(IsLower || actual_k2<rows)
186 for (
Index k1=0; k1<actual_kc; k1+=panelWidth)
188 Index actualPanelWidth = std::min<Index>(actual_kc-k1, panelWidth);
189 Index lengthTarget = IsLower ? actual_kc-k1-actualPanelWidth : k1;
190 Index startBlock = actual_k2+k1;
191 Index blockBOffset = k1;
196 for (
Index k=0;k<actualPanelWidth;++k)
199 triangularBuffer.coeffRef(k,k) = lhs(startBlock+k,startBlock+k);
200 for (
Index i=IsLower ? k+1 : 0; IsLower ? i<actualPanelWidth : i<k; ++i)
201 triangularBuffer.coeffRef(i,k) = lhs(startBlock+i,startBlock+k);
203 pack_lhs(blockA, LhsMapper(triangularBuffer.data(), triangularBuffer.outerStride()), actualPanelWidth, actualPanelWidth);
205 gebp_kernel(res.getSubMapper(startBlock, 0), blockA, blockB,
206 actualPanelWidth, actualPanelWidth, cols, alpha,
207 actualPanelWidth, actual_kc, 0, blockBOffset);
212 Index startTarget = IsLower ? actual_k2+k1+actualPanelWidth : actual_k2;
214 pack_lhs(blockA, lhs.getSubMapper(startTarget,startBlock), actualPanelWidth, lengthTarget);
216 gebp_kernel(res.getSubMapper(startTarget, 0), blockA, blockB,
217 lengthTarget, actualPanelWidth, cols, alpha,
218 actualPanelWidth, actual_kc, 0, blockBOffset);
224 Index start = IsLower ? k2 : 0;
225 Index end = IsLower ? rows : (std::min)(actual_k2,rows);
226 for(
Index i2=start; i2<end; i2+=mc)
228 const Index actual_mc = (std::min)(i2+mc,end)-i2;
229 gemm_pack_lhs<Scalar, Index, LhsMapper, Traits::mr,Traits::LhsProgress, LhsStorageOrder,false>()
230 (blockA, lhs.getSubMapper(i2, actual_k2), actual_kc, actual_mc);
232 gebp_kernel(res.getSubMapper(i2, 0), blockA, blockB, actual_mc,
233 actual_kc, cols, alpha, -1, -1, 0, 0);
240template <
typename Scalar,
typename Index,
int Mode,
241 int LhsStorageOrder,
bool ConjugateLhs,
242 int RhsStorageOrder,
bool ConjugateRhs,
243 int ResInnerStride,
int Version>
244struct product_triangular_matrix_matrix<Scalar,
Index,Mode,false,
245 LhsStorageOrder,ConjugateLhs,
246 RhsStorageOrder,ConjugateRhs,
ColMajor,ResInnerStride,Version>
248 typedef gebp_traits<Scalar,Scalar> Traits;
250 SmallPanelWidth = EIGEN_PLAIN_ENUM_MAX(Traits::mr,Traits::nr),
255 static EIGEN_DONT_INLINE
void run(
257 const Scalar* _lhs,
Index lhsStride,
258 const Scalar* _rhs,
Index rhsStride,
260 const Scalar& alpha, level3_blocking<Scalar,Scalar>& blocking);
263template <
typename Scalar,
typename Index,
int Mode,
264 int LhsStorageOrder,
bool ConjugateLhs,
265 int RhsStorageOrder,
bool ConjugateRhs,
266 int ResInnerStride,
int Version>
267EIGEN_DONT_INLINE
void product_triangular_matrix_matrix<Scalar,
Index,Mode,
false,
268 LhsStorageOrder,ConjugateLhs,
269 RhsStorageOrder,ConjugateRhs,
ColMajor,ResInnerStride,Version>::run(
271 const Scalar* _lhs,
Index lhsStride,
272 const Scalar* _rhs,
Index rhsStride,
274 const Scalar& alpha, level3_blocking<Scalar,Scalar>& blocking)
276 const Index PacketBytes = packet_traits<Scalar>::size*
sizeof(Scalar);
278 Index diagSize = (std::min)(_cols,_depth);
280 Index depth = IsLower ? _depth : diagSize;
281 Index cols = IsLower ? diagSize : _cols;
283 typedef const_blas_data_mapper<Scalar, Index, LhsStorageOrder> LhsMapper;
284 typedef const_blas_data_mapper<Scalar, Index, RhsStorageOrder> RhsMapper;
285 typedef blas_data_mapper<typename Traits::ResScalar, Index, ColMajor, Unaligned, ResInnerStride> ResMapper;
286 LhsMapper lhs(_lhs,lhsStride);
287 RhsMapper rhs(_rhs,rhsStride);
288 ResMapper res(_res, resStride, resIncr);
290 Index kc = blocking.kc();
291 Index mc = (std::min)(rows,blocking.mc());
293 std::size_t sizeA = kc*mc;
294 std::size_t sizeB = kc*cols+EIGEN_MAX_ALIGN_BYTES/
sizeof(Scalar);
296 ei_declare_aligned_stack_constructed_variable(Scalar, blockA, sizeA, blocking.blockA());
297 ei_declare_aligned_stack_constructed_variable(Scalar, blockB, sizeB, blocking.blockB());
299 internal::constructor_without_unaligned_array_assert a;
300 Matrix<Scalar,SmallPanelWidth,SmallPanelWidth,RhsStorageOrder> triangularBuffer(a);
301 triangularBuffer.setZero();
303 triangularBuffer.diagonal().setZero();
305 triangularBuffer.diagonal().setOnes();
307 gebp_kernel<Scalar, Scalar, Index, ResMapper, Traits::mr, Traits::nr, ConjugateLhs, ConjugateRhs> gebp_kernel;
308 gemm_pack_lhs<Scalar, Index, LhsMapper, Traits::mr, Traits::LhsProgress, LhsStorageOrder> pack_lhs;
309 gemm_pack_rhs<Scalar, Index, RhsMapper, Traits::nr,RhsStorageOrder> pack_rhs;
310 gemm_pack_rhs<Scalar, Index, RhsMapper, Traits::nr,RhsStorageOrder,false,true> pack_rhs_panel;
312 for(
Index k2=IsLower ? 0 : depth;
313 IsLower ? k2<depth : k2>0;
314 IsLower ? k2+=kc : k2-=kc)
316 Index actual_kc = (std::min)(IsLower ? depth-k2 : k2, kc);
317 Index actual_k2 = IsLower ? k2 : k2-actual_kc;
320 if(IsLower && (k2<cols) && (actual_k2+actual_kc>cols))
323 k2 = actual_k2 + actual_kc - kc;
327 Index rs = IsLower ? (std::min)(cols,actual_k2) : cols - k2;
329 Index ts = (IsLower && actual_k2>=cols) ? 0 : actual_kc;
331 Scalar* geb = blockB+ts*ts;
332 geb = geb + internal::first_aligned<PacketBytes>(geb,PacketBytes/
sizeof(Scalar));
334 pack_rhs(geb, rhs.getSubMapper(actual_k2,IsLower ? 0 : k2), actual_kc, rs);
339 for (
Index j2=0; j2<actual_kc; j2+=SmallPanelWidth)
341 Index actualPanelWidth = std::min<Index>(actual_kc-j2, SmallPanelWidth);
342 Index actual_j2 = actual_k2 + j2;
343 Index panelOffset = IsLower ? j2+actualPanelWidth : 0;
344 Index panelLength = IsLower ? actual_kc-j2-actualPanelWidth : j2;
346 pack_rhs_panel(blockB+j2*actual_kc,
347 rhs.getSubMapper(actual_k2+panelOffset, actual_j2),
348 panelLength, actualPanelWidth,
349 actual_kc, panelOffset);
352 for (
Index j=0;j<actualPanelWidth;++j)
355 triangularBuffer.coeffRef(j,j) = rhs(actual_j2+j,actual_j2+j);
356 for (
Index k=IsLower ? j+1 : 0; IsLower ? k<actualPanelWidth : k<j; ++k)
357 triangularBuffer.coeffRef(k,j) = rhs(actual_j2+k,actual_j2+j);
360 pack_rhs_panel(blockB+j2*actual_kc,
361 RhsMapper(triangularBuffer.data(), triangularBuffer.outerStride()),
362 actualPanelWidth, actualPanelWidth,
367 for (
Index i2=0; i2<rows; i2+=mc)
369 const Index actual_mc = (std::min)(mc,rows-i2);
370 pack_lhs(blockA, lhs.getSubMapper(i2, actual_k2), actual_kc, actual_mc);
375 for (
Index j2=0; j2<actual_kc; j2+=SmallPanelWidth)
377 Index actualPanelWidth = std::min<Index>(actual_kc-j2, SmallPanelWidth);
378 Index panelLength = IsLower ? actual_kc-j2 : j2+actualPanelWidth;
379 Index blockOffset = IsLower ? j2 : 0;
381 gebp_kernel(res.getSubMapper(i2, actual_k2 + j2),
382 blockA, blockB+j2*actual_kc,
383 actual_mc, panelLength, actualPanelWidth,
385 actual_kc, actual_kc,
386 blockOffset, blockOffset);
389 gebp_kernel(res.getSubMapper(i2, IsLower ? 0 : k2),
390 blockA, geb, actual_mc, actual_kc, rs,
404template<
int Mode,
bool LhsIsTriangular,
typename Lhs,
typename Rhs>
405struct triangular_product_impl<Mode,LhsIsTriangular,Lhs,false,Rhs,false>
407 template<
typename Dest>
static void run(Dest& dst,
const Lhs &a_lhs,
const Rhs &a_rhs,
const typename Dest::Scalar& alpha)
409 typedef typename Lhs::Scalar LhsScalar;
410 typedef typename Rhs::Scalar RhsScalar;
411 typedef typename Dest::Scalar Scalar;
413 typedef internal::blas_traits<Lhs> LhsBlasTraits;
414 typedef typename LhsBlasTraits::DirectLinearAccessType ActualLhsType;
415 typedef typename internal::remove_all<ActualLhsType>::type ActualLhsTypeCleaned;
416 typedef internal::blas_traits<Rhs> RhsBlasTraits;
417 typedef typename RhsBlasTraits::DirectLinearAccessType ActualRhsType;
418 typedef typename internal::remove_all<ActualRhsType>::type ActualRhsTypeCleaned;
420 typename internal::add_const_on_value_type<ActualLhsType>::type lhs = LhsBlasTraits::extract(a_lhs);
421 typename internal::add_const_on_value_type<ActualRhsType>::type rhs = RhsBlasTraits::extract(a_rhs);
423 LhsScalar lhs_alpha = LhsBlasTraits::extractScalarFactor(a_lhs);
424 RhsScalar rhs_alpha = RhsBlasTraits::extractScalarFactor(a_rhs);
425 Scalar actualAlpha = alpha * lhs_alpha * rhs_alpha;
428 Lhs::MaxRowsAtCompileTime, Rhs::MaxColsAtCompileTime, Lhs::MaxColsAtCompileTime,4> BlockingType;
431 Index stripedRows = ((!LhsIsTriangular) || (IsLower)) ? lhs.rows() : (std::min)(lhs.rows(),lhs.cols());
432 Index stripedCols = ((LhsIsTriangular) || (!IsLower)) ? rhs.cols() : (std::min)(rhs.cols(),rhs.rows());
433 Index stripedDepth = LhsIsTriangular ? ((!IsLower) ? lhs.cols() : (std::min)(lhs.cols(),lhs.rows()))
434 : ((IsLower) ? rhs.rows() : (std::min)(rhs.rows(),rhs.cols()));
436 BlockingType blocking(stripedRows, stripedCols, stripedDepth, 1,
false);
438 internal::product_triangular_matrix_matrix<Scalar,
Index,
439 Mode, LhsIsTriangular,
444 stripedRows, stripedCols, stripedDepth,
445 &lhs.coeffRef(0,0), lhs.outerStride(),
446 &rhs.coeffRef(0,0), rhs.outerStride(),
447 &dst.coeffRef(0,0), dst.innerStride(), dst.outerStride(),
448 actualAlpha, blocking
454 if (LhsIsTriangular && lhs_alpha!=LhsScalar(1))
456 Index diagSize = (std::min)(lhs.rows(),lhs.cols());
457 dst.topRows(diagSize) -= ((lhs_alpha-LhsScalar(1))*a_rhs).topRows(diagSize);
459 else if ((!LhsIsTriangular) && rhs_alpha!=RhsScalar(1))
461 Index diagSize = (std::min)(rhs.rows(),rhs.cols());
462 dst.leftCols(diagSize) -= (rhs_alpha-RhsScalar(1))*a_lhs.leftCols(diagSize);
@ UnitDiag
Definition Constants.h:208
@ ZeroDiag
Definition Constants.h:210
@ Lower
Definition Constants.h:204
@ Upper
Definition Constants.h:206
@ ColMajor
Definition Constants.h:320
@ RowMajor
Definition Constants.h:322
const unsigned int RowMajorBit
Definition Constants.h:61
Namespace containing all symbols from the Eigen library.
Definition A05_PortingFrom2To3.dox:1
EIGEN_DEFAULT_DENSE_INDEX_TYPE Index
The Index type as used for the API.
Definition Meta.h:65