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tensor_row_test.cc 8.0 kB

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  1. /**
  2. * Copyright 2020 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/core/client.h"
  17. #include "common/common.h"
  18. #include "gtest/gtest.h"
  19. #include "minddata/dataset/core/tensor.h"
  20. #include "minddata/dataset/core/tensor_row.h"
  21. using namespace mindspore::dataset;
  22. namespace py = pybind11;
  23. class MindDataTestTensorRowDE : public UT::Common {
  24. public:
  25. MindDataTestTensorRowDE() {}
  26. void SetUp() { GlobalInit(); }
  27. };
  28. TEST_F(MindDataTestTensorRowDE, ConvertToTensorRowBoolTest) {
  29. Status s;
  30. TensorRow bool_output;
  31. bool bool_value = true;
  32. s = TensorRow::ConvertToTensorRow(bool_value, &bool_output);
  33. ASSERT_EQ(s, Status::OK());
  34. TensorRow expected_bool;
  35. std::shared_ptr<Tensor> expected_tensor;
  36. Tensor::CreateScalar(bool_value, &expected_tensor);
  37. expected_bool.push_back(expected_tensor);
  38. ASSERT_EQ(*(bool_output.at(0)) == *(expected_bool.at(0)), true);
  39. }
  40. TEST_F(MindDataTestTensorRowDE, ConvertToTensorRowIntTest) {
  41. Status s;
  42. TensorRow int_output;
  43. int32_t int_value = 12;
  44. TensorRow expected_int;
  45. s = TensorRow::ConvertToTensorRow(int_value, &int_output);
  46. ASSERT_EQ(s, Status::OK());
  47. std::shared_ptr<Tensor> expected_tensor;
  48. Tensor::CreateScalar(int_value, &expected_tensor);
  49. expected_int.push_back(expected_tensor);
  50. ASSERT_EQ(*(int_output.at(0)) == *(expected_int.at(0)), true);
  51. }
  52. TEST_F(MindDataTestTensorRowDE, ConvertToTensorRowFloatTest) {
  53. Status s;
  54. TensorRow expected_bool;
  55. TensorRow float_output;
  56. float float_value = 12.57;
  57. TensorRow expected_float;
  58. s = TensorRow::ConvertToTensorRow(float_value, &float_output);
  59. ASSERT_EQ(s, Status::OK());
  60. std::shared_ptr<Tensor> expected_tensor;
  61. Tensor::CreateScalar(float_value, &expected_tensor);
  62. expected_float.push_back(expected_tensor);
  63. ASSERT_EQ(*(float_output.at(0)) == *(expected_float.at(0)), true);
  64. }
  65. TEST_F(MindDataTestTensorRowDE, ConvertToTensorRowBoolVectorTest) {
  66. Status s;
  67. TensorRow bool_output;
  68. std::vector<bool> bool_value = {true, false};
  69. s = TensorRow::ConvertToTensorRow(bool_value, &bool_output);
  70. ASSERT_EQ(s, Status::OK());
  71. TensorRow expected_bool;
  72. std::shared_ptr<Tensor> expected_tensor;
  73. Tensor::CreateFromVector<bool>(bool_value, &expected_tensor);
  74. expected_bool.push_back(expected_tensor);
  75. ASSERT_EQ(*(bool_output.at(0)) == *(expected_bool.at(0)), true);
  76. }
  77. TEST_F(MindDataTestTensorRowDE, ConvertToTensorRowIntVectorTest) {
  78. Status s;
  79. TensorRow int_output;
  80. std::vector<uint64_t> int_value = {12, 16};
  81. TensorRow expected_int;
  82. s = TensorRow::ConvertToTensorRow(int_value, &int_output);
  83. ASSERT_EQ(s, Status::OK());
  84. std::shared_ptr<Tensor> expected_tensor;
  85. Tensor::CreateFromVector(int_value, &expected_tensor);
  86. expected_int.push_back(expected_tensor);
  87. ASSERT_EQ(*(int_output.at(0)) == *(expected_int.at(0)), true);
  88. }
  89. TEST_F(MindDataTestTensorRowDE, ConvertToTensorRowFloatVectorTest) {
  90. Status s;
  91. TensorRow float_output;
  92. std::vector<double> float_value = {12.57, 0.264};
  93. TensorRow expected_float;
  94. s = TensorRow::ConvertToTensorRow(float_value, &float_output);
  95. ASSERT_EQ(s, Status::OK());
  96. std::shared_ptr<Tensor> expected_tensor;
  97. Tensor::CreateFromVector(float_value, &expected_tensor);
  98. expected_float.push_back(expected_tensor);
  99. ASSERT_EQ(*(float_output.at(0)) == *(expected_float.at(0)), true);
  100. }
  101. TEST_F(MindDataTestTensorRowDE, ConvertFromTensorRowBoolTest) {
  102. Status s;
  103. bool bool_value = true;
  104. bool result;
  105. TensorRow input_tensor_row;
  106. std::shared_ptr<Tensor> input_tensor;
  107. Tensor::CreateScalar(bool_value, &input_tensor);
  108. input_tensor_row.push_back(input_tensor);
  109. s = TensorRow::ConvertFromTensorRow(input_tensor_row, &result);
  110. ASSERT_EQ(s, Status::OK());
  111. ASSERT_EQ(bool_value, result);
  112. }
  113. TEST_F(MindDataTestTensorRowDE, ConvertFromTensorRowIntTest) {
  114. Status s;
  115. int32_t int_value = 12;
  116. int32_t result;
  117. TensorRow input_tensor_row;
  118. std::shared_ptr<Tensor> input_tensor;
  119. Tensor::CreateScalar(int_value, &input_tensor);
  120. input_tensor_row.push_back(input_tensor);
  121. s = TensorRow::ConvertFromTensorRow(input_tensor_row, &result);
  122. ASSERT_EQ(s, Status::OK());
  123. ASSERT_EQ(int_value, result);
  124. }
  125. TEST_F(MindDataTestTensorRowDE, ConvertFromTensorRowFloatTest) {
  126. Status s;
  127. float float_value = 12.57;
  128. float result;
  129. TensorRow input_tensor_row;
  130. std::shared_ptr<Tensor> input_tensor;
  131. Tensor::CreateScalar(float_value, &input_tensor);
  132. input_tensor_row.push_back(input_tensor);
  133. s = TensorRow::ConvertFromTensorRow(input_tensor_row, &result);
  134. ASSERT_EQ(s, Status::OK());
  135. ASSERT_EQ(float_value, result);
  136. }
  137. TEST_F(MindDataTestTensorRowDE, ConvertFromTensorRowBoolVectorTest) {
  138. Status s;
  139. std::vector<bool> bool_value = {true, false};
  140. std::vector<bool> result;
  141. TensorRow input_tensor_row;
  142. std::shared_ptr<Tensor> input_tensor;
  143. Tensor::CreateFromVector<bool>(bool_value, &input_tensor);
  144. input_tensor_row.push_back(input_tensor);
  145. s = TensorRow::ConvertFromTensorRow(input_tensor_row, &result);
  146. ASSERT_EQ(s, Status::OK());
  147. ASSERT_EQ(result, bool_value);
  148. }
  149. TEST_F(MindDataTestTensorRowDE, ConvertFromTensorRowIntVectorTest) {
  150. Status s;
  151. std::vector<uint64_t> int_value = {12, 16};
  152. std::vector<uint64_t> result;
  153. TensorRow input_tensor_row;
  154. std::shared_ptr<Tensor> input_tensor;
  155. Tensor::CreateFromVector(int_value, &input_tensor);
  156. input_tensor_row.push_back(input_tensor);
  157. s = TensorRow::ConvertFromTensorRow(input_tensor_row, &result);
  158. ASSERT_EQ(s, Status::OK());
  159. ASSERT_EQ(result, int_value);
  160. }
  161. TEST_F(MindDataTestTensorRowDE, ConvertFromTensorRowFloatVectorTest) {
  162. Status s;
  163. std::vector<double> float_value = {12.57, 0.264};
  164. std::vector<double> result;
  165. TensorRow input_tensor_row;
  166. std::shared_ptr<Tensor> input_tensor;
  167. Tensor::CreateFromVector(float_value, &input_tensor);
  168. input_tensor_row.push_back(input_tensor);
  169. s = TensorRow::ConvertFromTensorRow(input_tensor_row, &result);
  170. ASSERT_EQ(s, Status::OK());
  171. ASSERT_EQ(result, float_value);
  172. }
  173. TEST_F(MindDataTestTensorRowDE, ConvertToTensorRowInvalidDataTest) {
  174. TensorRow output;
  175. std::string string_input = "Bye";
  176. ASSERT_FALSE(TensorRow::ConvertToTensorRow(string_input, &output).IsOk());
  177. std::vector<std::string> string_vector_input = {"Hello"};
  178. ASSERT_FALSE(TensorRow::ConvertToTensorRow(string_vector_input, &output).IsOk());
  179. }
  180. TEST_F(MindDataTestTensorRowDE, ConvertFromTensorRowTypeMismatchTest) {
  181. TensorRow input_tensor_row;
  182. std::shared_ptr<Tensor> input_tensor1;
  183. Tensor::CreateScalar(false, &input_tensor1);
  184. input_tensor_row.push_back(input_tensor1);
  185. double output;
  186. ASSERT_FALSE(TensorRow::ConvertFromTensorRow(input_tensor_row, &output).IsOk());
  187. std::vector<double> output_vector;
  188. ASSERT_FALSE(TensorRow::ConvertFromTensorRow(input_tensor_row, &output_vector).IsOk());
  189. }
  190. TEST_F(MindDataTestTensorRowDE, ConvertFromTensorRowInvalidShapeTest) {
  191. TensorRow input_tensor_row;
  192. std::shared_ptr<Tensor> input_tensor1;
  193. Tensor::CreateEmpty(TensorShape({2, 2}), DataType(DataType::DE_FLOAT64), &input_tensor1);
  194. input_tensor_row.push_back(input_tensor1);
  195. std::vector<double> output;
  196. ASSERT_FALSE(TensorRow::ConvertFromTensorRow(input_tensor_row, &output).IsOk());
  197. std::vector<double> output_vector;
  198. ASSERT_FALSE(TensorRow::ConvertFromTensorRow(input_tensor_row, &output_vector).IsOk());
  199. }
  200. TEST_F(MindDataTestTensorRowDE, ConvertFromTensorRowEmptyInputTest) {
  201. TensorRow input_tensor_row;
  202. double output;
  203. ASSERT_FALSE(TensorRow::ConvertFromTensorRow(input_tensor_row, &output).IsOk());
  204. }