11#ifndef EIGEN_TENSOR_TENSOR_FORCED_EVAL_H
12#define EIGEN_TENSOR_TENSOR_FORCED_EVAL_H
15#include "./InternalHeaderCheck.h"
22template <
typename XprType>
23struct traits<TensorForcedEvalOp<XprType>> {
24 typedef typename XprType::Scalar Scalar;
25 typedef traits<XprType> XprTraits;
26 typedef typename traits<XprType>::StorageKind StorageKind;
27 typedef typename traits<XprType>::Index Index;
28 static constexpr int NumDimensions = XprTraits::NumDimensions;
29 static constexpr int Layout = XprTraits::Layout;
30 typedef typename XprTraits::PointerType PointerType;
35template <
typename XprType>
36struct eval<TensorForcedEvalOp<XprType>, Eigen::Dense> {
37 typedef const TensorForcedEvalOp<XprType>& type;
47template <
typename XprType>
48class TensorForcedEvalOp :
public TensorBase<TensorForcedEvalOp<XprType>, ReadOnlyAccessors> {
50 typedef typename Eigen::internal::traits<TensorForcedEvalOp>::Scalar Scalar;
52 typedef std::remove_const_t<typename XprType::CoeffReturnType> CoeffReturnType;
53 typedef typename Eigen::internal::ref_selector<TensorForcedEvalOp>::type Nested;
54 typedef typename Eigen::internal::traits<TensorForcedEvalOp>::StorageKind StorageKind;
55 typedef typename Eigen::internal::traits<TensorForcedEvalOp>::Index Index;
57 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE TensorForcedEvalOp(
const XprType& expr) : m_xpr(expr) {}
59 EIGEN_DEVICE_FUNC
const internal::remove_all_t<typename XprType::Nested>& expression()
const {
return m_xpr; }
62 typename XprType::Nested m_xpr;
68template <
typename Device,
typename CoeffReturnType>
69struct non_integral_type_placement_new {
70 template <
typename StorageType>
71 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
bool operator()(Index numValues, StorageType m_buffer)
const {
73 default_construct_elements_of_array(m_buffer, numValues);
83template <
typename CoeffReturnType>
84struct non_integral_type_placement_new<Eigen::SyclDevice, CoeffReturnType> {
85 template <
typename StorageType>
86 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
bool operator()(Index, StorageType)
const {
92template <
typename Device>
93class DeviceTempPointerHolder {
95 DeviceTempPointerHolder(
const Device& device,
size_t size)
96 : device_(device), size_(size), ptr_(device.allocate_temp(size)) {}
98 ~DeviceTempPointerHolder() {
99 device_.deallocate_temp(ptr_);
104 void* ptr() {
return ptr_; }
112template <
typename ArgType_,
typename Device>
114 typedef const internal::remove_all_t<ArgType_> ArgType;
115 typedef TensorForcedEvalOp<ArgType> XprType;
116 typedef typename ArgType::Scalar Scalar;
117 typedef typename TensorEvaluator<ArgType, Device>::Dimensions Dimensions;
118 typedef typename XprType::Index Index;
119 typedef typename XprType::CoeffReturnType CoeffReturnType;
120 typedef typename PacketType<CoeffReturnType, Device>::type PacketReturnType;
121 static constexpr int PacketSize = PacketType<CoeffReturnType, Device>::size;
122 typedef typename Eigen::internal::traits<XprType>::PointerType TensorPointerType;
123 typedef StorageMemory<CoeffReturnType, Device> Storage;
124 typedef typename Storage::Type EvaluatorPointerType;
128 PacketAccess = (PacketType<CoeffReturnType, Device>::size > 1),
129 BlockAccess = internal::is_arithmetic<CoeffReturnType>::value,
130 PreferBlockAccess =
false,
134 static constexpr int Layout = TensorEvaluator<ArgType, Device>::Layout;
135 static constexpr int NumDims = internal::traits<ArgType>::NumDimensions;
138 typedef internal::TensorBlockDescriptor<NumDims, Index> TensorBlockDesc;
139 typedef internal::TensorBlockScratchAllocator<Device> TensorBlockScratch;
141 typedef typename internal::TensorMaterializedBlock<CoeffReturnType, NumDims, Layout, Index> TensorBlock;
144 TensorEvaluator(
const XprType& op,
const Device& device)
145 : m_impl(op.expression(), device),
146 m_op(op.expression()),
148 m_buffer_holder(nullptr),
150 m_placement_constructed(false) {}
152 ~TensorEvaluator() { cleanup(); }
154 EIGEN_DEVICE_FUNC
const Dimensions& dimensions()
const {
return m_impl.dimensions(); }
156 EIGEN_STRONG_INLINE
bool evalSubExprsIfNeeded(EvaluatorPointerType) {
157 const Index numValues = internal::array_prod(m_impl.dimensions());
158 m_buffer_holder = std::make_shared<DeviceTempPointerHolder<Device>>(m_device, numValues *
sizeof(CoeffReturnType));
159 m_buffer =
static_cast<EvaluatorPointerType
>(m_buffer_holder->ptr());
161 m_placement_constructed = internal::non_integral_type_placement_new<Device, CoeffReturnType>()(numValues, m_buffer);
163 typedef TensorEvalToOp<const std::remove_const_t<ArgType>> EvalTo;
164 EvalTo evalToTmp(m_device.get(m_buffer), m_op);
166 internal::TensorExecutor<const EvalTo, std::remove_const_t<Device>,
167 internal::IsVectorizable<Device, const ArgType>::value,
168 internal::IsTileable<Device, const ArgType>::value>::run(evalToTmp, m_device);
173#ifdef EIGEN_USE_THREADS
174 template <
typename EvalSubExprsCallback>
175 EIGEN_STRONG_INLINE
void evalSubExprsIfNeededAsync(EvaluatorPointerType, EvalSubExprsCallback done) {
176 const Index numValues = internal::array_prod(m_impl.dimensions());
177 m_buffer_holder = std::make_shared<DeviceTempPointerHolder<Device>>(m_device, numValues *
sizeof(CoeffReturnType));
178 m_buffer =
static_cast<EvaluatorPointerType
>(m_buffer_holder->ptr());
180 typedef TensorEvalToOp<const std::remove_const_t<ArgType>> EvalTo;
181 EvalTo evalToTmp(m_device.get(m_buffer), m_op);
183 auto on_done = std::bind([](EvalSubExprsCallback done_) { done_(
true); }, std::move(done));
184 internal::TensorAsyncExecutor<
185 const EvalTo, std::remove_const_t<Device>,
decltype(on_done),
186 internal::IsVectorizable<Device, const ArgType>::value,
187 internal::IsTileable<Device, const ArgType>::value>::runAsync(evalToTmp, m_device,
192 EIGEN_STRONG_INLINE
void cleanup() {
193 if (m_placement_constructed) {
194 internal::destruct_elements_of_array(m_buffer, internal::array_prod(m_impl.dimensions()));
195 m_placement_constructed =
false;
197 m_buffer_holder =
nullptr;
201 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE CoeffReturnType coeff(Index index)
const {
return m_buffer[index]; }
203 template <
int LoadMode>
204 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE PacketReturnType packet(Index index)
const {
205 return internal::ploadt<PacketReturnType, LoadMode>(m_buffer + index);
208 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE internal::TensorBlockResourceRequirements getResourceRequirements()
const {
209 return internal::TensorBlockResourceRequirements::any();
212 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE TensorBlock block(TensorBlockDesc& desc, TensorBlockScratch& scratch,
213 bool =
false)
const {
214 eigen_assert(m_buffer !=
nullptr);
215 return TensorBlock::materialize(m_buffer, m_impl.dimensions(), desc, scratch);
218 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE TensorOpCost costPerCoeff(
bool vectorized)
const {
219 return TensorOpCost(
sizeof(CoeffReturnType), 0, 0, vectorized, PacketSize);
222 EIGEN_DEVICE_FUNC EIGEN_ALWAYS_INLINE EvaluatorPointerType data()
const {
return m_buffer; }
225 TensorEvaluator<ArgType, Device> m_impl;
227 const Device EIGEN_DEVICE_REF m_device;
228 std::shared_ptr<DeviceTempPointerHolder<Device>> m_buffer_holder;
229 EvaluatorPointerType m_buffer;
230 bool m_placement_constructed;
The tensor base class.
Definition TensorForwardDeclarations.h:69
Tensor forced evaluation class.
Definition TensorForcedEval.h:48
Namespace containing all symbols from the Eigen library.
The tensor evaluator class.
Definition TensorEvaluator.h:47