HdfFileTest.cpp 6.9 KB

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  1. /// \copyright Copyright (c) Catalysts GmbH
  2. /// \author Patrik Kovacs, Catalysts GmbH
  3. #include <gtest/gtest.h>
  4. #include <hdf4cpp/HdfFile.h>
  5. #include <hdf4cpp/HdfItem.h>
  6. using namespace hdf4cpp;
  7. class HdfFileTest : public ::testing::Test {
  8. protected:
  9. HdfFileTest()
  10. : file(std::string(TEST_DATA_PATH) + "small_test.hdf") {
  11. }
  12. HdfFile file;
  13. };
  14. TEST_F(HdfFileTest, DatasetValidity) {
  15. ASSERT_NO_THROW(file.get("Data"));
  16. }
  17. TEST_F(HdfFileTest, GroupValidity) {
  18. ASSERT_NO_THROW(file.get("Group"));
  19. }
  20. TEST_F(HdfFileTest, InvalidItem) {
  21. ASSERT_THROW(file.get("InvalidKey"), HdfException);
  22. }
  23. TEST_F(HdfFileTest, ReadData1) {
  24. HdfItem item = file.get("Data");
  25. std::vector<int32> vec;
  26. item.read(vec);
  27. ASSERT_EQ(vec, std::vector<int32>({1, 2, 3, 4, 5, 6, 7, 8, 9}));
  28. }
  29. TEST_F(HdfFileTest, ReadData2) {
  30. HdfItem item = file.get("DataWithAttributes");
  31. std::vector<float32> vec;
  32. item.read(vec);
  33. ASSERT_EQ(vec, std::vector<float32>({0.0, 0.1, 0.2, 1.0, 1.1, 1.2, 2.0, 2.1, 2.2}));
  34. }
  35. TEST_F(HdfFileTest, ReadDatasetAttributes) {
  36. HdfItem item = file.get("DataWithAttributes");
  37. HdfAttribute attribute1 = item.getAttribute("Integer");
  38. std::vector<int32> integer;
  39. attribute1.get(integer);
  40. ASSERT_EQ(integer, std::vector<int32>({12345}));
  41. HdfAttribute attribute2 = item.getAttribute("Integers");
  42. std::vector<int32> integers;
  43. attribute2.get(integers);
  44. ASSERT_EQ(integers, std::vector<int32>({1, 12, 123, 1234, 12345}));
  45. }
  46. TEST_F(HdfFileTest, ReadGroupAttributes) {
  47. HdfItem item = file.get("GroupWithOnlyAttribute");
  48. {
  49. HdfAttribute attribute = item.getAttribute("Egy");
  50. std::vector<int8> egy;
  51. attribute.get(egy);
  52. ASSERT_EQ(egy, std::vector<int8>({1}));
  53. }
  54. {
  55. HdfAttribute attribute = item.getAttribute("One");
  56. std::vector<int16> one;
  57. attribute.get(one);
  58. ASSERT_EQ(one, std::vector<int16>({1}));
  59. }
  60. {
  61. HdfAttribute attribute = item.getAttribute("Ein");
  62. std::vector<int32> ein;
  63. attribute.get(ein);
  64. ASSERT_EQ(ein, std::vector<int32>({1}));
  65. }
  66. }
  67. TEST_F(HdfFileTest, ReadInvalidData) {
  68. ASSERT_THROW(file.get("InvalidKey"), HdfException);
  69. }
  70. TEST_F(HdfFileTest, ReadDataInRange) {
  71. {
  72. HdfItem item = file.get("Data");
  73. std::vector<int32> vec;
  74. item.read(vec, std::vector<Range>({Range(0, 2), Range(1, 2)}));
  75. ASSERT_EQ(vec, std::vector<int32>({2, 3, 5, 6}));
  76. }
  77. {
  78. HdfItem item = file.get("DataWithAttributes");
  79. std::vector<float32> vec;
  80. item.read(vec, std::vector<Range>({Range(2, 1), Range(0, 2)}));
  81. ASSERT_EQ(vec, std::vector<float32>({2.0, 2.1}));
  82. }
  83. }
  84. TEST_F(HdfFileTest, ReadInvalidDatasetAttribute) {
  85. HdfItem item = file.get("Data");
  86. ASSERT_THROW(HdfAttribute attribute = item.getAttribute("Attribute"), HdfException);
  87. }
  88. TEST_F(HdfFileTest, ReadInvalidGroupAttribute) {
  89. HdfItem item = file.get("Group");
  90. ASSERT_THROW(HdfAttribute attribute = item.getAttribute("Attribute"), HdfException);
  91. }
  92. TEST_F(HdfFileTest, GetAllDatsetsWithTheSameName) {
  93. std::vector<HdfItem> items = file.getAll("DoubleDataset");
  94. ASSERT_EQ(items.size(), 4);
  95. std::vector<int32> vec;
  96. items[0].read(vec);
  97. ASSERT_EQ(vec, std::vector<int32>({0}));
  98. items[1].read(vec);
  99. ASSERT_EQ(vec, std::vector<int32>({0, 1}));
  100. }
  101. TEST_F(HdfFileTest, DatasetTypeIncompatibility) {
  102. std::vector<std::string> vec;
  103. HdfItem item = file.get("Data");
  104. ASSERT_THROW(item.read(vec), HdfException);
  105. }
  106. TEST_F(HdfFileTest, DatasetAttributeTypeIncompatibility) {
  107. std::vector<std::string> vec;
  108. HdfItem item = file.get("DataWithAttributes");
  109. HdfAttribute attribute = item.getAttribute("Integer");
  110. ASSERT_THROW(attribute.get(vec), HdfException);
  111. }
  112. TEST_F(HdfFileTest, GroupAttributeTypeIncompatibility) {
  113. std::vector<std::string> vec;
  114. HdfItem item = file.get("GroupWithOnlyAttribute");
  115. HdfAttribute attribute = item.getAttribute("Egy");
  116. ASSERT_THROW(attribute.get(vec), HdfException);
  117. }
  118. TEST_F(HdfFileTest, GlobalAttribute) {
  119. std::vector<int8> vec;
  120. HdfAttribute attribute = file.getAttribute("GlobalAttribute");
  121. attribute.get(vec);
  122. ASSERT_EQ(vec, std::vector<int8>({11, 22}));
  123. }
  124. TEST_F(HdfFileTest, FileIterator) {
  125. std::ostringstream out;
  126. for (auto it : file) {
  127. out << it.getName() << '*';
  128. }
  129. ASSERT_EQ(out.str(), std::string("Group*GroupWithOnlyAttribute*RIG0.0*/home/patrik/HDF4CPP/tests/test_data/"
  130. "small_test.hdf*Egy*One*Ein*Vdata*attribute*"));
  131. }
  132. TEST_F(HdfFileTest, GroupIterator) {
  133. HdfItem item = file.get("Group");
  134. std::ostringstream out;
  135. for (auto it : item) {
  136. out << it.getName() << '*';
  137. }
  138. ASSERT_EQ(out.str(), "Data*DataWithAttributes*");
  139. }
  140. TEST_F(HdfFileTest, IteratingOverNonGroupItems) {
  141. std::ostringstream out;
  142. HdfItem sdata = file.get("DoubleDataset");
  143. for (const auto &item : sdata) {
  144. out << item.getName();
  145. }
  146. HdfItem vdata = file.get("Vdata");
  147. for (const auto &item : vdata) {
  148. out << item.getName();
  149. }
  150. ASSERT_TRUE(out.str().empty());
  151. }
  152. TEST_F(HdfFileTest, ItemIterator3) {
  153. auto it = file.begin();
  154. HdfItem item = *it;
  155. ASSERT_EQ(item.getName(), "Group");
  156. }
  157. TEST_F(HdfFileTest, HiddenGroup) {
  158. ASSERT_NO_THROW(file.get("RIG0.0"));
  159. }
  160. TEST_F(HdfFileTest, VDataRead1) {
  161. HdfItem item = file.get("Vdata");
  162. ASSERT_EQ(item.getName(), "Vdata");
  163. std::vector<int32> vec;
  164. item.read(vec, "age");
  165. ASSERT_EQ(vec, std::vector<int32>({39, 19, 55}));
  166. }
  167. TEST_F(HdfFileTest, VDataRead2) {
  168. HdfItem item = file.get("Vdata");
  169. ASSERT_EQ(item.getName(), "Vdata");
  170. std::vector<std::vector<char>> vec;
  171. item.read(vec, "name");
  172. std::vector<std::string> exp = {"Patrick Jane", "Barry Allen", "Angus MacGyver"};
  173. ASSERT_EQ(vec.size(), 3);
  174. for (int i = 0; i < 3; ++i) {
  175. ASSERT_EQ(std::string(vec[i].data()), exp[i]);
  176. }
  177. }
  178. TEST_F(HdfFileTest, VDataAttributes) {
  179. HdfItem item = file.get("Vdata");
  180. ASSERT_EQ(item.getName(), "Vdata");
  181. HdfAttribute attribute = item.getAttribute("attribute");
  182. std::vector<int32> vec;
  183. attribute.get(vec);
  184. ASSERT_EQ(vec, std::vector<int32>({1, 2, 3, 3, 2, 1}));
  185. }
  186. TEST_F(HdfFileTest, SdataDestroyer) {
  187. HdfAttribute attribute = file.get("DataWithAttributes").getAttribute("Integer");
  188. std::vector<int32> vec;
  189. attribute.get(vec);
  190. ASSERT_EQ(vec, std::vector<int32>({12345}));
  191. }
  192. TEST_F(HdfFileTest, VgroupDestroyer) {
  193. HdfAttribute attribute = file.get("GroupWithOnlyAttribute").getAttribute("Egy");
  194. std::vector<int8> vec;
  195. attribute.get(vec);
  196. ASSERT_EQ(vec, std::vector<int8>({1}));
  197. }
  198. TEST_F(HdfFileTest, VdataDestroyer) {
  199. HdfAttribute attribute = file.get("Vdata").getAttribute("attribute");
  200. std::vector<int32> vec;
  201. attribute.get(vec);
  202. ASSERT_EQ(vec, std::vector<int32>({1, 2, 3, 3, 2, 1}));
  203. }