10#ifndef EIGEN_GENERAL_MATRIX_MATRIX_H
11#define EIGEN_GENERAL_MATRIX_MATRIX_H
17template<
typename _LhsScalar,
typename _RhsScalar>
class level3_blocking;
22 typename LhsScalar,
int LhsStorageOrder,
bool ConjugateLhs,
23 typename RhsScalar,
int RhsStorageOrder,
bool ConjugateRhs,
25struct general_matrix_matrix_product<
Index,LhsScalar,LhsStorageOrder,ConjugateLhs,RhsScalar,RhsStorageOrder,ConjugateRhs,
RowMajor,ResInnerStride>
27 typedef gebp_traits<RhsScalar,LhsScalar> Traits;
29 typedef typename ScalarBinaryOpTraits<LhsScalar, RhsScalar>::ReturnType ResScalar;
30 static EIGEN_STRONG_INLINE
void run(
32 const LhsScalar* lhs,
Index lhsStride,
33 const RhsScalar* rhs,
Index rhsStride,
34 ResScalar* res,
Index resIncr,
Index resStride,
36 level3_blocking<RhsScalar,LhsScalar>& blocking,
37 GemmParallelInfo<Index>* info = 0)
40 general_matrix_matrix_product<
Index,
44 ::run(cols,rows,depth,rhs,rhsStride,lhs,lhsStride,res,resIncr,resStride,alpha,blocking,info);
52 typename LhsScalar,
int LhsStorageOrder,
bool ConjugateLhs,
53 typename RhsScalar,
int RhsStorageOrder,
bool ConjugateRhs,
55struct general_matrix_matrix_product<
Index,LhsScalar,LhsStorageOrder,ConjugateLhs,RhsScalar,RhsStorageOrder,ConjugateRhs,
ColMajor,ResInnerStride>
58typedef gebp_traits<LhsScalar,RhsScalar> Traits;
60typedef typename ScalarBinaryOpTraits<LhsScalar, RhsScalar>::ReturnType ResScalar;
62 const LhsScalar* lhs_,
Index lhsStride,
63 const RhsScalar* rhs_,
Index rhsStride,
64 ResScalar* res_,
Index resIncr,
Index resStride,
66 level3_blocking<LhsScalar,RhsScalar>& blocking,
67 GemmParallelInfo<Index>* info = 0)
69 typedef const_blas_data_mapper<LhsScalar, Index, LhsStorageOrder> LhsMapper;
70 typedef const_blas_data_mapper<RhsScalar, Index, RhsStorageOrder> RhsMapper;
71 typedef blas_data_mapper<typename Traits::ResScalar, Index, ColMajor,Unaligned,ResInnerStride> ResMapper;
72 LhsMapper lhs(lhs_, lhsStride);
73 RhsMapper rhs(rhs_, rhsStride);
74 ResMapper res(res_, resStride, resIncr);
76 Index kc = blocking.kc();
77 Index mc = (std::min)(rows,blocking.mc());
78 Index nc = (std::min)(cols,blocking.nc());
80 gemm_pack_lhs<LhsScalar, Index, LhsMapper, Traits::mr, Traits::LhsProgress, typename Traits::LhsPacket4Packing, LhsStorageOrder> pack_lhs;
81 gemm_pack_rhs<RhsScalar, Index, RhsMapper, Traits::nr, RhsStorageOrder> pack_rhs;
82 gebp_kernel<LhsScalar, RhsScalar, Index, ResMapper, Traits::mr, Traits::nr, ConjugateLhs, ConjugateRhs> gebp;
84#ifdef EIGEN_HAS_OPENMP
88 int tid = omp_get_thread_num();
89 int threads = omp_get_num_threads();
91 LhsScalar* blockA = blocking.blockA();
92 eigen_internal_assert(blockA!=0);
94 std::size_t sizeB = kc*nc;
95 ei_declare_aligned_stack_constructed_variable(RhsScalar, blockB, sizeB, 0);
98 for(
Index k=0; k<depth; k+=kc)
100 const Index actual_kc = (std::min)(k+kc,depth)-k;
104 pack_rhs(blockB, rhs.getSubMapper(k,0), actual_kc, nc);
112 while(info[tid].users!=0) {}
113 info[tid].users = threads;
115 pack_lhs(blockA+info[tid].lhs_start*actual_kc, lhs.getSubMapper(info[tid].lhs_start,k), actual_kc, info[tid].lhs_length);
121 for(
int shift=0; shift<threads; ++shift)
123 int i = (tid+shift)%threads;
129 while(info[i].sync!=k) {
133 gebp(res.getSubMapper(info[i].lhs_start, 0), blockA+info[i].lhs_start*actual_kc, blockB, info[i].lhs_length, actual_kc, nc, alpha);
137 for(
Index j=nc; j<cols; j+=nc)
139 const Index actual_nc = (std::min)(j+nc,cols)-j;
142 pack_rhs(blockB, rhs.getSubMapper(k,j), actual_kc, actual_nc);
145 gebp(res.getSubMapper(0, j), blockA, blockB, rows, actual_kc, actual_nc, alpha);
150 for(
Index i=0; i<threads; ++i)
151#
if !EIGEN_HAS_CXX11_ATOMIC
160 EIGEN_UNUSED_VARIABLE(info);
163 std::size_t sizeA = kc*mc;
164 std::size_t sizeB = kc*nc;
166 ei_declare_aligned_stack_constructed_variable(LhsScalar, blockA, sizeA, blocking.blockA());
167 ei_declare_aligned_stack_constructed_variable(RhsScalar, blockB, sizeB, blocking.blockB());
169 const bool pack_rhs_once = mc!=rows && kc==depth && nc==cols;
172 for(
Index i2=0; i2<rows; i2+=mc)
174 const Index actual_mc = (std::min)(i2+mc,rows)-i2;
176 for(
Index k2=0; k2<depth; k2+=kc)
178 const Index actual_kc = (std::min)(k2+kc,depth)-k2;
184 pack_lhs(blockA, lhs.getSubMapper(i2,k2), actual_kc, actual_mc);
187 for(
Index j2=0; j2<cols; j2+=nc)
189 const Index actual_nc = (std::min)(j2+nc,cols)-j2;
194 if((!pack_rhs_once) || i2==0)
195 pack_rhs(blockB, rhs.getSubMapper(k2,j2), actual_kc, actual_nc);
198 gebp(res.getSubMapper(i2, j2), blockA, blockB, actual_mc, actual_kc, actual_nc, alpha);
212template<
typename Scalar,
typename Index,
typename Gemm,
typename Lhs,
typename Rhs,
typename Dest,
typename BlockingType>
215 gemm_functor(
const Lhs& lhs,
const Rhs& rhs, Dest& dest,
const Scalar& actualAlpha, BlockingType& blocking)
216 : m_lhs(lhs), m_rhs(rhs), m_dest(dest), m_actualAlpha(actualAlpha), m_blocking(blocking)
219 void initParallelSession(
Index num_threads)
const
221 m_blocking.initParallel(m_lhs.rows(), m_rhs.cols(), m_lhs.cols(), num_threads);
222 m_blocking.allocateA();
225 void operator() (
Index row,
Index rows,
Index col=0,
Index cols=-1, GemmParallelInfo<Index>* info=0)
const
230 Gemm::run(rows, cols, m_lhs.cols(),
231 &m_lhs.coeffRef(row,0), m_lhs.outerStride(),
232 &m_rhs.coeffRef(0,col), m_rhs.outerStride(),
233 (Scalar*)&(m_dest.coeffRef(row,col)), m_dest.innerStride(), m_dest.outerStride(),
234 m_actualAlpha, m_blocking, info);
237 typedef typename Gemm::Traits Traits;
243 Scalar m_actualAlpha;
244 BlockingType& m_blocking;
247template<
int StorageOrder,
typename LhsScalar,
typename RhsScalar,
int MaxRows,
int MaxCols,
int MaxDepth,
int KcFactor=1,
248bool FiniteAtCompileTime = MaxRows!=
Dynamic && MaxCols!=
Dynamic && MaxDepth !=
Dynamic>
class gemm_blocking_space;
250template<
typename _LhsScalar,
typename _RhsScalar>
253 typedef _LhsScalar LhsScalar;
254 typedef _RhsScalar RhsScalar;
267 : m_blockA(0), m_blockB(0), m_mc(0), m_nc(0), m_kc(0)
270 inline Index mc()
const {
return m_mc; }
271 inline Index nc()
const {
return m_nc; }
272 inline Index kc()
const {
return m_kc; }
274 inline LhsScalar* blockA() {
return m_blockA; }
275 inline RhsScalar* blockB() {
return m_blockB; }
278template<
int StorageOrder,
typename _LhsScalar,
typename _RhsScalar,
int MaxRows,
int MaxCols,
int MaxDepth,
int KcFactor>
279class gemm_blocking_space<StorageOrder,_LhsScalar,_RhsScalar,MaxRows, MaxCols, MaxDepth, KcFactor, true >
280 :
public level3_blocking<
281 typename conditional<StorageOrder==RowMajor,_RhsScalar,_LhsScalar>::type,
282 typename conditional<StorageOrder==RowMajor,_LhsScalar,_RhsScalar>::type>
286 ActualRows = Transpose ? MaxCols : MaxRows,
287 ActualCols = Transpose ? MaxRows : MaxCols
289 typedef typename conditional<Transpose,_RhsScalar,_LhsScalar>::type LhsScalar;
290 typedef typename conditional<Transpose,_LhsScalar,_RhsScalar>::type RhsScalar;
291 typedef gebp_traits<LhsScalar,RhsScalar> Traits;
293 SizeA = ActualRows * MaxDepth,
294 SizeB = ActualCols * MaxDepth
297#if EIGEN_MAX_STATIC_ALIGN_BYTES >= EIGEN_DEFAULT_ALIGN_BYTES
298 EIGEN_ALIGN_MAX LhsScalar m_staticA[SizeA];
299 EIGEN_ALIGN_MAX RhsScalar m_staticB[SizeB];
301 EIGEN_ALIGN_MAX
char m_staticA[SizeA *
sizeof(LhsScalar) + EIGEN_DEFAULT_ALIGN_BYTES-1];
302 EIGEN_ALIGN_MAX
char m_staticB[SizeB *
sizeof(RhsScalar) + EIGEN_DEFAULT_ALIGN_BYTES-1];
309 this->m_mc = ActualRows;
310 this->m_nc = ActualCols;
311 this->m_kc = MaxDepth;
312#if EIGEN_MAX_STATIC_ALIGN_BYTES >= EIGEN_DEFAULT_ALIGN_BYTES
313 this->m_blockA = m_staticA;
314 this->m_blockB = m_staticB;
316 this->m_blockA =
reinterpret_cast<LhsScalar*
>((internal::UIntPtr(m_staticA) + (EIGEN_DEFAULT_ALIGN_BYTES-1)) & ~std::size_t(EIGEN_DEFAULT_ALIGN_BYTES-1));
317 this->m_blockB =
reinterpret_cast<RhsScalar*
>((internal::UIntPtr(m_staticB) + (EIGEN_DEFAULT_ALIGN_BYTES-1)) & ~std::size_t(EIGEN_DEFAULT_ALIGN_BYTES-1));
324 inline void allocateA() {}
325 inline void allocateB() {}
326 inline void allocateAll() {}
329template<
int StorageOrder,
typename _LhsScalar,
typename _RhsScalar,
int MaxRows,
int MaxCols,
int MaxDepth,
int KcFactor>
330class gemm_blocking_space<StorageOrder,_LhsScalar,_RhsScalar,MaxRows, MaxCols, MaxDepth, KcFactor, false>
331 :
public level3_blocking<
332 typename conditional<StorageOrder==RowMajor,_RhsScalar,_LhsScalar>::type,
333 typename conditional<StorageOrder==RowMajor,_LhsScalar,_RhsScalar>::type>
338 typedef typename conditional<Transpose,_RhsScalar,_LhsScalar>::type LhsScalar;
339 typedef typename conditional<Transpose,_LhsScalar,_RhsScalar>::type RhsScalar;
340 typedef gebp_traits<LhsScalar,RhsScalar> Traits;
349 this->m_mc = Transpose ? cols : rows;
350 this->m_nc = Transpose ? rows : cols;
355 computeProductBlockingSizes<LhsScalar,RhsScalar,KcFactor>(this->m_kc, this->m_mc, this->m_nc, num_threads);
359 Index n = this->m_nc;
360 computeProductBlockingSizes<LhsScalar,RhsScalar,KcFactor>(this->m_kc, this->m_mc, n, num_threads);
363 m_sizeA = this->m_mc * this->m_kc;
364 m_sizeB = this->m_kc * this->m_nc;
369 this->m_mc = Transpose ? cols : rows;
370 this->m_nc = Transpose ? rows : cols;
373 eigen_internal_assert(this->m_blockA==0 && this->m_blockB==0);
374 Index m = this->m_mc;
375 computeProductBlockingSizes<LhsScalar,RhsScalar,KcFactor>(this->m_kc, m, this->m_nc, num_threads);
376 m_sizeA = this->m_mc * this->m_kc;
377 m_sizeB = this->m_kc * this->m_nc;
382 if(this->m_blockA==0)
383 this->m_blockA = aligned_new<LhsScalar>(m_sizeA);
388 if(this->m_blockB==0)
389 this->m_blockB = aligned_new<RhsScalar>(m_sizeB);
398 ~gemm_blocking_space()
400 aligned_delete(this->m_blockA, m_sizeA);
401 aligned_delete(this->m_blockB, m_sizeB);
409template<
typename Lhs,
typename Rhs>
410struct generic_product_impl<Lhs,Rhs,DenseShape,DenseShape,GemmProduct>
411 : generic_product_impl_base<Lhs,Rhs,generic_product_impl<Lhs,Rhs,DenseShape,DenseShape,GemmProduct> >
413 typedef typename Product<Lhs,Rhs>::Scalar Scalar;
414 typedef typename Lhs::Scalar LhsScalar;
415 typedef typename Rhs::Scalar RhsScalar;
417 typedef internal::blas_traits<Lhs> LhsBlasTraits;
418 typedef typename LhsBlasTraits::DirectLinearAccessType ActualLhsType;
419 typedef typename internal::remove_all<ActualLhsType>::type ActualLhsTypeCleaned;
421 typedef internal::blas_traits<Rhs> RhsBlasTraits;
422 typedef typename RhsBlasTraits::DirectLinearAccessType ActualRhsType;
423 typedef typename internal::remove_all<ActualRhsType>::type ActualRhsTypeCleaned;
426 MaxDepthAtCompileTime = EIGEN_SIZE_MIN_PREFER_FIXED(Lhs::MaxColsAtCompileTime,Rhs::MaxRowsAtCompileTime)
429 typedef generic_product_impl<Lhs,Rhs,DenseShape,DenseShape,CoeffBasedProductMode> lazyproduct;
431 template<
typename Dst>
432 static void evalTo(Dst& dst,
const Lhs& lhs,
const Rhs& rhs)
440 if((rhs.rows()+dst.rows()+dst.cols())<EIGEN_GEMM_TO_COEFFBASED_THRESHOLD && rhs.rows()>0)
441 lazyproduct::eval_dynamic(dst, lhs, rhs, internal::assign_op<typename Dst::Scalar,Scalar>());
445 scaleAndAddTo(dst, lhs, rhs, Scalar(1));
449 template<
typename Dst>
450 static void addTo(Dst& dst,
const Lhs& lhs,
const Rhs& rhs)
452 if((rhs.rows()+dst.rows()+dst.cols())<EIGEN_GEMM_TO_COEFFBASED_THRESHOLD && rhs.rows()>0)
453 lazyproduct::eval_dynamic(dst, lhs, rhs, internal::add_assign_op<typename Dst::Scalar,Scalar>());
455 scaleAndAddTo(dst,lhs, rhs, Scalar(1));
458 template<
typename Dst>
459 static void subTo(Dst& dst,
const Lhs& lhs,
const Rhs& rhs)
461 if((rhs.rows()+dst.rows()+dst.cols())<EIGEN_GEMM_TO_COEFFBASED_THRESHOLD && rhs.rows()>0)
462 lazyproduct::eval_dynamic(dst, lhs, rhs, internal::sub_assign_op<typename Dst::Scalar,Scalar>());
464 scaleAndAddTo(dst, lhs, rhs, Scalar(-1));
467 template<
typename Dest>
468 static void scaleAndAddTo(Dest& dst,
const Lhs& a_lhs,
const Rhs& a_rhs,
const Scalar& alpha)
470 eigen_assert(dst.rows()==a_lhs.rows() && dst.cols()==a_rhs.cols());
471 if(a_lhs.cols()==0 || a_lhs.rows()==0 || a_rhs.cols()==0)
477 typename Dest::ColXpr dst_vec(dst.col(0));
478 return internal::generic_product_impl<Lhs,typename Rhs::ConstColXpr,DenseShape,DenseShape,GemvProduct>
479 ::scaleAndAddTo(dst_vec, a_lhs, a_rhs.col(0), alpha);
481 else if (dst.rows() == 1)
484 typename Dest::RowXpr dst_vec(dst.row(0));
485 return internal::generic_product_impl<typename Lhs::ConstRowXpr,Rhs,DenseShape,DenseShape,GemvProduct>
486 ::scaleAndAddTo(dst_vec, a_lhs.row(0), a_rhs, alpha);
489 typename internal::add_const_on_value_type<ActualLhsType>::type lhs = LhsBlasTraits::extract(a_lhs);
490 typename internal::add_const_on_value_type<ActualRhsType>::type rhs = RhsBlasTraits::extract(a_rhs);
492 Scalar actualAlpha = combine_scalar_factors(alpha, a_lhs, a_rhs);
495 Dest::MaxRowsAtCompileTime,Dest::MaxColsAtCompileTime,MaxDepthAtCompileTime> BlockingType;
497 typedef internal::gemm_functor<
499 internal::general_matrix_matrix_product<
504 Dest::InnerStrideAtCompileTime>,
505 ActualLhsTypeCleaned, ActualRhsTypeCleaned, Dest, BlockingType> GemmFunctor;
507 BlockingType blocking(dst.rows(), dst.cols(), lhs.cols(), 1,
true);
508 internal::parallelize_gemm<(Dest::MaxRowsAtCompileTime>32 || Dest::MaxRowsAtCompileTime==
Dynamic)>
509 (GemmFunctor(lhs, rhs, dst, actualAlpha, blocking), a_lhs.rows(), a_rhs.cols(), a_lhs.cols(), Dest::Flags&
RowMajorBit);
@ 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 B01_Experimental.dox:1
EIGEN_DEFAULT_DENSE_INDEX_TYPE Index
The Index type as used for the API.
Definition Meta.h:74
void initParallel()
Definition Parallelizer.h:53
const int Dynamic
Definition Constants.h:22