10#ifndef EIGEN_CXX11_TENSOR_TENSOR_ASSIGN_H
11#define EIGEN_CXX11_TENSOR_TENSOR_ASSIGN_H
16template<
typename LhsXprType,
typename RhsXprType>
17struct traits<TensorAssignOp<LhsXprType, RhsXprType> >
19 typedef typename LhsXprType::Scalar Scalar;
20 typedef typename traits<LhsXprType>::StorageKind StorageKind;
21 typedef typename promote_index_type<typename traits<LhsXprType>::Index,
22 typename traits<RhsXprType>::Index>::type
Index;
23 typedef typename LhsXprType::Nested LhsNested;
24 typedef typename RhsXprType::Nested RhsNested;
25 typedef typename remove_reference<LhsNested>::type _LhsNested;
26 typedef typename remove_reference<RhsNested>::type _RhsNested;
27 static const std::size_t NumDimensions = internal::traits<LhsXprType>::NumDimensions;
28 static const int Layout = internal::traits<LhsXprType>::Layout;
29 typedef typename traits<LhsXprType>::PointerType PointerType;
36template<
typename LhsXprType,
typename RhsXprType>
37struct eval<TensorAssignOp<LhsXprType, RhsXprType>, Eigen::Dense>
39 typedef const TensorAssignOp<LhsXprType, RhsXprType>& type;
42template<
typename LhsXprType,
typename RhsXprType>
43struct nested<TensorAssignOp<LhsXprType, RhsXprType>, 1, typename eval<TensorAssignOp<LhsXprType, RhsXprType> >::type>
45 typedef TensorAssignOp<LhsXprType, RhsXprType> type;
56template <
typename LhsXprType,
typename RhsXprType>
57class TensorAssignOp :
public TensorBase<TensorAssignOp<LhsXprType, RhsXprType> > {
59 typedef typename Eigen::internal::traits<TensorAssignOp>::Scalar Scalar;
61 typedef typename LhsXprType::CoeffReturnType CoeffReturnType;
62 typedef typename Eigen::internal::nested<TensorAssignOp>::type Nested;
63 typedef typename Eigen::internal::traits<TensorAssignOp>::StorageKind StorageKind;
64 typedef typename Eigen::internal::traits<TensorAssignOp>::Index Index;
66 static const int NumDims = Eigen::internal::traits<TensorAssignOp>::NumDimensions;
68 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE TensorAssignOp(LhsXprType& lhs,
const RhsXprType& rhs)
69 : m_lhs_xpr(lhs), m_rhs_xpr(rhs) {}
73 typename internal::remove_all<typename LhsXprType::Nested>::type&
74 lhsExpression()
const {
return *((
typename internal::remove_all<typename LhsXprType::Nested>::type*)&m_lhs_xpr); }
77 const typename internal::remove_all<typename RhsXprType::Nested>::type&
78 rhsExpression()
const {
return m_rhs_xpr; }
81 typename internal::remove_all<typename LhsXprType::Nested>::type& m_lhs_xpr;
82 const typename internal::remove_all<typename RhsXprType::Nested>::type& m_rhs_xpr;
86template<
typename LeftArgType,
typename RightArgType,
typename Device>
89 typedef TensorAssignOp<LeftArgType, RightArgType> XprType;
90 typedef typename XprType::Index Index;
91 typedef typename XprType::Scalar Scalar;
92 typedef typename XprType::CoeffReturnType CoeffReturnType;
93 typedef typename PacketType<CoeffReturnType, Device>::type PacketReturnType;
94 typedef typename TensorEvaluator<RightArgType, Device>::Dimensions Dimensions;
95 typedef StorageMemory<CoeffReturnType, Device> Storage;
96 typedef typename Storage::Type EvaluatorPointerType;
98 static const int PacketSize = PacketType<CoeffReturnType, Device>::size;
99 static const int NumDims = XprType::NumDims;
102 IsAligned = int(TensorEvaluator<LeftArgType, Device>::IsAligned) &
103 int(TensorEvaluator<RightArgType, Device>::IsAligned),
104 PacketAccess = int(TensorEvaluator<LeftArgType, Device>::PacketAccess) &
105 int(TensorEvaluator<RightArgType, Device>::PacketAccess),
106 BlockAccess = int(TensorEvaluator<LeftArgType, Device>::BlockAccess) &
107 int(TensorEvaluator<RightArgType, Device>::BlockAccess),
108 PreferBlockAccess = int(TensorEvaluator<LeftArgType, Device>::PreferBlockAccess) |
109 int(TensorEvaluator<RightArgType, Device>::PreferBlockAccess),
110 Layout = TensorEvaluator<LeftArgType, Device>::Layout,
111 RawAccess = TensorEvaluator<LeftArgType, Device>::RawAccess
115 typedef internal::TensorBlockDescriptor<NumDims, Index> TensorBlockDesc;
116 typedef internal::TensorBlockScratchAllocator<Device> TensorBlockScratch;
118 typedef typename TensorEvaluator<const RightArgType, Device>::TensorBlock
122 TensorEvaluator(
const XprType& op,
const Device& device) :
123 m_leftImpl(op.lhsExpression(), device),
124 m_rightImpl(op.rhsExpression(), device)
127 (
static_cast<int>(TensorEvaluator<LeftArgType, Device>::Layout) ==
128 static_cast<int>(TensorEvaluator<RightArgType, Device>::Layout)),
129 YOU_MADE_A_PROGRAMMING_MISTAKE);
132 EIGEN_DEVICE_FUNC
const Dimensions& dimensions()
const
137 return m_rightImpl.dimensions();
140 EIGEN_STRONG_INLINE
bool evalSubExprsIfNeeded(EvaluatorPointerType) {
141 eigen_assert(dimensions_match(m_leftImpl.dimensions(), m_rightImpl.dimensions()));
142 m_leftImpl.evalSubExprsIfNeeded(NULL);
147 return m_rightImpl.evalSubExprsIfNeeded(m_leftImpl.data());
150#ifdef EIGEN_USE_THREADS
151 template <
typename EvalSubExprsCallback>
152 EIGEN_STRONG_INLINE
void evalSubExprsIfNeededAsync(
153 EvaluatorPointerType, EvalSubExprsCallback done) {
154 m_leftImpl.evalSubExprsIfNeededAsync(
nullptr, [
this, done](
bool) {
155 m_rightImpl.evalSubExprsIfNeededAsync(
156 m_leftImpl.data(), [done](
bool need_assign) { done(need_assign); });
161 EIGEN_STRONG_INLINE
void cleanup() {
162 m_leftImpl.cleanup();
163 m_rightImpl.cleanup();
166 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
void evalScalar(Index i) {
167 m_leftImpl.coeffRef(i) = m_rightImpl.coeff(i);
169 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
void evalPacket(Index i) {
171 const int LhsStoreMode = TensorEvaluator<LeftArgType, Device>::IsAligned ?
Aligned :
Unaligned;
172 const int RhsLoadMode = TensorEvaluator<RightArgType, Device>::IsAligned ?
Aligned :
Unaligned;
173 m_leftImpl.template writePacket<LhsStoreMode>(i, m_rightImpl.template packet<RhsLoadMode>(i));
175 EIGEN_DEVICE_FUNC CoeffReturnType coeff(Index index)
const
177 return m_leftImpl.coeff(index);
179 template<
int LoadMode>
180 EIGEN_DEVICE_FUNC PacketReturnType packet(Index index)
const
182 return m_leftImpl.template packet<LoadMode>(index);
185 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE TensorOpCost
186 costPerCoeff(
bool vectorized)
const {
190 TensorOpCost left = m_leftImpl.costPerCoeff(vectorized);
191 return m_rightImpl.costPerCoeff(vectorized) +
193 numext::maxi(0.0, left.bytes_loaded() -
sizeof(CoeffReturnType)),
194 left.bytes_stored(), left.compute_cycles()) +
195 TensorOpCost(0,
sizeof(CoeffReturnType), 0, vectorized, PacketSize);
198 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
199 internal::TensorBlockResourceRequirements getResourceRequirements()
const {
200 return internal::TensorBlockResourceRequirements::merge(
201 m_leftImpl.getResourceRequirements(),
202 m_rightImpl.getResourceRequirements());
205 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
void evalBlock(
206 TensorBlockDesc& desc, TensorBlockScratch& scratch) {
207 if (TensorEvaluator<LeftArgType, Device>::RawAccess &&
208 m_leftImpl.data() != NULL) {
211 desc.template AddDestinationBuffer<Layout>(
212 m_leftImpl.data() + desc.offset(),
213 internal::strides<Layout>(m_leftImpl.dimensions()));
216 RightTensorBlock block = m_rightImpl.block(desc, scratch,
true);
218 if (block.kind() != internal::TensorBlockKind::kMaterializedInOutput) {
219 m_leftImpl.writeBlock(desc, block);
226 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
void bind(cl::sycl::handler &cgh)
const {
227 m_leftImpl.bind(cgh);
228 m_rightImpl.bind(cgh);
232 EIGEN_DEVICE_FUNC EvaluatorPointerType data()
const {
return m_leftImpl.data(); }
235 TensorEvaluator<LeftArgType, Device> m_leftImpl;
236 TensorEvaluator<RightArgType, Device> m_rightImpl;
Definition TensorAssign.h:57
internal::remove_all< typenameLhsXprType::Nested >::type & lhsExpression() const
Definition TensorAssign.h:74
The tensor base class.
Definition TensorForwardDeclarations.h:56
Namespace containing all symbols from the Eigen library.
EIGEN_DEFAULT_DENSE_INDEX_TYPE Index
The tensor evaluator class.
Definition TensorEvaluator.h:27