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transforms.cc 10 kB

5 years ago
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  1. /**
  2. * Copyright 2020-2021 Huawei Technologies Co., Ltd
  3. *
  4. * Licensed under the Apache License, Version 2.0 (the "License");
  5. * you may not use this file except in compliance with the License.
  6. * You may obtain a copy of the License at
  7. *
  8. * http://www.apache.org/licenses/LICENSE-2.0
  9. *
  10. * Unless required by applicable law or agreed to in writing, software
  11. * distributed under the License is distributed on an "AS IS" BASIS,
  12. * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  13. * See the License for the specific language governing permissions and
  14. * limitations under the License.
  15. */
  16. #include "minddata/dataset/include/dataset/transforms.h"
  17. #include <algorithm>
  18. #include "mindspore/ccsrc/minddata/dataset/core/type_id.h"
  19. #include "mindspore/core/ir/dtype/type_id.h"
  20. #include "minddata/dataset/core/type_id.h"
  21. #include "minddata/dataset/kernels/ir/data/transforms_ir.h"
  22. namespace mindspore {
  23. namespace dataset {
  24. // Transform operations for data.
  25. namespace transforms {
  26. // API CLASS FOR DATA TRANSFORM OPERATIONS
  27. // (In alphabetical order)
  28. // Constructor to Compose.
  29. struct Compose::Data {
  30. std::vector<std::shared_ptr<TensorOperation>> transforms_;
  31. };
  32. Compose::Compose(const std::vector<TensorTransform *> &transforms) : data_(std::make_shared<Data>()) {
  33. (void)std::transform(transforms.begin(), transforms.end(), std::back_inserter(data_->transforms_),
  34. [](TensorTransform *const op) -> std::shared_ptr<TensorOperation> {
  35. return op != nullptr ? op->Parse() : nullptr;
  36. });
  37. }
  38. Compose::Compose(const std::vector<std::shared_ptr<TensorTransform>> &transforms) : data_(std::make_shared<Data>()) {
  39. (void)std::transform(transforms.begin(), transforms.end(), std::back_inserter(data_->transforms_),
  40. [](std::shared_ptr<TensorTransform> op) -> std::shared_ptr<TensorOperation> {
  41. return op != nullptr ? op->Parse() : nullptr;
  42. });
  43. }
  44. Compose::Compose(const std::vector<std::reference_wrapper<TensorTransform>> &transforms)
  45. : data_(std::make_shared<Data>()) {
  46. (void)std::transform(transforms.begin(), transforms.end(), std::back_inserter(data_->transforms_),
  47. [](TensorTransform &op) -> std::shared_ptr<TensorOperation> { return op.Parse(); });
  48. }
  49. std::shared_ptr<TensorOperation> Compose::Parse() { return std::make_shared<ComposeOperation>(data_->transforms_); }
  50. #ifndef ENABLE_ANDROID
  51. // Constructor to Concatenate
  52. struct Concatenate::Data {
  53. explicit Data(int8_t axis, MSTensor prepend, MSTensor append) : axis_(axis), prepend_(prepend), append_(append) {}
  54. int8_t axis_;
  55. MSTensor prepend_;
  56. MSTensor append_;
  57. };
  58. Concatenate::Concatenate(int8_t axis, MSTensor prepend, MSTensor append)
  59. : data_(std::make_shared<Data>(axis, prepend, append)) {}
  60. std::shared_ptr<TensorOperation> Concatenate::Parse() {
  61. std::shared_ptr<Tensor> out_prepend, out_append;
  62. Status rc = Tensor::CreateFromMSTensor(data_->prepend_, &out_prepend);
  63. if (rc.IsError()) {
  64. MS_LOG(ERROR) << "Error creating prepend constant tensor. " << rc;
  65. return nullptr;
  66. }
  67. rc = Tensor::CreateFromMSTensor(data_->append_, &out_append);
  68. if (rc.IsError()) {
  69. MS_LOG(ERROR) << "Error creating append constant tensor. " << rc;
  70. return nullptr;
  71. }
  72. return std::make_shared<ConcatenateOperation>(data_->axis_, out_prepend, out_append);
  73. }
  74. #endif // not ENABLE_ANDROID
  75. // Constructor to Duplicate
  76. Duplicate::Duplicate() {}
  77. std::shared_ptr<TensorOperation> Duplicate::Parse() { return std::make_shared<DuplicateOperation>(); }
  78. #ifndef ENABLE_ANDROID
  79. // Constructor to Fill
  80. struct Fill::Data {
  81. explicit Data(MSTensor fill_value) : fill_value_(fill_value) {}
  82. MSTensor fill_value_;
  83. };
  84. Fill::Fill(MSTensor fill_value) : data_(std::make_shared<Data>(fill_value)) {}
  85. std::shared_ptr<TensorOperation> Fill::Parse() {
  86. std::shared_ptr<Tensor> out_fill_value;
  87. Status rc = Tensor::CreateFromMSTensor(data_->fill_value_, &out_fill_value);
  88. if (rc.IsError()) {
  89. MS_LOG(ERROR) << "Error creating fill value tensor. " << rc;
  90. return nullptr;
  91. }
  92. return std::make_shared<FillOperation>(out_fill_value);
  93. }
  94. // Constructor to Mask
  95. struct Mask::Data {
  96. explicit Data(RelationalOp op, MSTensor constant, mindspore::DataType ms_type)
  97. : op_(op), constant_(constant), ms_type_(ms_type) {}
  98. RelationalOp op_;
  99. MSTensor constant_;
  100. mindspore::DataType ms_type_;
  101. };
  102. Mask::Mask(RelationalOp op, MSTensor constant, mindspore::DataType ms_type)
  103. : data_(std::make_shared<Data>(op, constant, ms_type)) {}
  104. std::shared_ptr<TensorOperation> Mask::Parse() {
  105. std::shared_ptr<Tensor> out_constant;
  106. Status rc = Tensor::CreateFromMSTensor(data_->constant_, &out_constant);
  107. if (rc.IsError()) {
  108. MS_LOG(ERROR) << "Error creating constant tensor. " << rc;
  109. return nullptr;
  110. }
  111. DataType de_type = dataset::MSTypeToDEType(static_cast<TypeId>(data_->ms_type_));
  112. return std::make_shared<MaskOperation>(data_->op_, out_constant, de_type);
  113. }
  114. #endif // not ENABLE_ANDROID
  115. // Constructor to OneHot
  116. struct OneHot::Data {
  117. explicit Data(int32_t num_classes) : num_classes_(num_classes) {}
  118. int32_t num_classes_;
  119. };
  120. OneHot::OneHot(int32_t num_classes) : data_(std::make_shared<Data>(num_classes)) {}
  121. std::shared_ptr<TensorOperation> OneHot::Parse() { return std::make_shared<OneHotOperation>(data_->num_classes_); }
  122. #ifndef ENABLE_ANDROID
  123. // Constructor to PadEnd
  124. struct PadEnd::Data {
  125. explicit Data(const std::vector<dsize_t> &pad_shape, MSTensor pad_value)
  126. : pad_shape_(pad_shape), pad_value_(pad_value) {}
  127. std::vector<dsize_t> pad_shape_;
  128. MSTensor pad_value_;
  129. };
  130. PadEnd::PadEnd(const std::vector<dsize_t> &pad_shape, MSTensor pad_value)
  131. : data_(std::make_shared<Data>(pad_shape, pad_value)) {}
  132. std::shared_ptr<TensorOperation> PadEnd::Parse() {
  133. std::shared_ptr<Tensor> pad_value;
  134. Status rc = Tensor::CreateFromMSTensor(data_->pad_value_, &pad_value);
  135. if (rc.IsError()) {
  136. MS_LOG(ERROR) << "Error creating value constant tensor. " << rc;
  137. return nullptr;
  138. }
  139. return std::make_shared<PadEndOperation>(TensorShape(data_->pad_shape_), pad_value);
  140. }
  141. #endif // not ENABLE_ANDROID
  142. // Constructor to RandomApply.
  143. struct RandomApply::Data {
  144. std::vector<std::shared_ptr<TensorOperation>> transforms_;
  145. double prob_;
  146. };
  147. RandomApply::RandomApply(const std::vector<TensorTransform *> &transforms, double prob)
  148. : data_(std::make_shared<Data>()) {
  149. (void)std::transform(transforms.begin(), transforms.end(), std::back_inserter(data_->transforms_),
  150. [](TensorTransform *const op) -> std::shared_ptr<TensorOperation> {
  151. return op != nullptr ? op->Parse() : nullptr;
  152. });
  153. data_->prob_ = prob;
  154. }
  155. RandomApply::RandomApply(const std::vector<std::shared_ptr<TensorTransform>> &transforms, double prob)
  156. : data_(std::make_shared<Data>()) {
  157. (void)std::transform(transforms.begin(), transforms.end(), std::back_inserter(data_->transforms_),
  158. [](std::shared_ptr<TensorTransform> op) -> std::shared_ptr<TensorOperation> {
  159. return op != nullptr ? op->Parse() : nullptr;
  160. });
  161. data_->prob_ = prob;
  162. }
  163. RandomApply::RandomApply(const std::vector<std::reference_wrapper<TensorTransform>> &transforms, double prob)
  164. : data_(std::make_shared<Data>()) {
  165. (void)std::transform(transforms.begin(), transforms.end(), std::back_inserter(data_->transforms_),
  166. [](TensorTransform &op) -> std::shared_ptr<TensorOperation> { return op.Parse(); });
  167. data_->prob_ = prob;
  168. }
  169. std::shared_ptr<TensorOperation> RandomApply::Parse() {
  170. return std::make_shared<RandomApplyOperation>(data_->transforms_, data_->prob_);
  171. }
  172. // Constructor to RandomChoice.
  173. struct RandomChoice::Data {
  174. std::vector<std::shared_ptr<TensorOperation>> transforms_;
  175. };
  176. RandomChoice::RandomChoice(const std::vector<TensorTransform *> &transforms) : data_(std::make_shared<Data>()) {
  177. (void)std::transform(transforms.begin(), transforms.end(), std::back_inserter(data_->transforms_),
  178. [](TensorTransform *const op) -> std::shared_ptr<TensorOperation> {
  179. return op != nullptr ? op->Parse() : nullptr;
  180. });
  181. }
  182. RandomChoice::RandomChoice(const std::vector<std::shared_ptr<TensorTransform>> &transforms)
  183. : data_(std::make_shared<Data>()) {
  184. (void)std::transform(transforms.begin(), transforms.end(), std::back_inserter(data_->transforms_),
  185. [](std::shared_ptr<TensorTransform> op) -> std::shared_ptr<TensorOperation> {
  186. return op != nullptr ? op->Parse() : nullptr;
  187. });
  188. }
  189. RandomChoice::RandomChoice(const std::vector<std::reference_wrapper<TensorTransform>> &transforms)
  190. : data_(std::make_shared<Data>()) {
  191. (void)std::transform(transforms.begin(), transforms.end(), std::back_inserter(data_->transforms_),
  192. [](TensorTransform &op) -> std::shared_ptr<TensorOperation> { return op.Parse(); });
  193. }
  194. std::shared_ptr<TensorOperation> RandomChoice::Parse() {
  195. return std::make_shared<RandomChoiceOperation>(data_->transforms_);
  196. }
  197. #ifndef ENABLE_ANDROID
  198. // Constructor to Slice
  199. struct Slice::Data {
  200. explicit Data(const std::vector<SliceOption> &slice_input) : slice_input_(slice_input) {}
  201. std::vector<SliceOption> slice_input_;
  202. };
  203. Slice::Slice(const std::vector<SliceOption> &slice_input) : data_(std::make_shared<Data>(slice_input)) {}
  204. std::shared_ptr<TensorOperation> Slice::Parse() { return std::make_shared<SliceOperation>(data_->slice_input_); }
  205. #endif // not ENABLE_ANDROID
  206. // Constructor to TypeCast
  207. struct TypeCast::Data {
  208. dataset::DataType data_type_;
  209. };
  210. TypeCast::TypeCast(mindspore::DataType data_type) : data_(std::make_shared<Data>()) {
  211. data_->data_type_ = dataset::MSTypeToDEType(static_cast<TypeId>(data_type));
  212. }
  213. std::shared_ptr<TensorOperation> TypeCast::Parse() { return std::make_shared<TypeCastOperation>(data_->data_type_); }
  214. // Constructor to Unique
  215. Unique::Unique() {}
  216. #ifndef ENABLE_ANDROID
  217. std::shared_ptr<TensorOperation> Unique::Parse() { return std::make_shared<UniqueOperation>(); }
  218. #else
  219. std::shared_ptr<TensorOperation> Unique::Parse() {
  220. MS_LOG(ERROR) << "Unique op is not supported for Android.";
  221. return nullptr;
  222. }
  223. #endif
  224. } // namespace transforms
  225. } // namespace dataset
  226. } // namespace mindspore