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test_container.py 4.9 kB

5 years ago
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  1. # Copyright 2020 Huawei Technologies Co., Ltd
  2. #
  3. # Licensed under the Apache License, Version 2.0 (the "License");
  4. # you may not use this file except in compliance with the License.
  5. # You may obtain a copy of the License at
  6. #
  7. # http://www.apache.org/licenses/LICENSE-2.0
  8. #
  9. # Unless required by applicable law or agreed to in writing, software
  10. # distributed under the License is distributed on an "AS IS" BASIS,
  11. # WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  12. # See the License for the specific language governing permissions and
  13. # limitations under the License.
  14. # ============================================================================
  15. """ test container """
  16. from collections import OrderedDict
  17. import numpy as np
  18. import pytest
  19. import mindspore.nn as nn
  20. from mindspore import context, Tensor
  21. context.set_context(mode=context.PYNATIVE_MODE)
  22. weight = Tensor(np.ones([2, 2]))
  23. conv2 = nn.Conv2d(3, 64, (3, 3), stride=2, padding=0)
  24. kernel_size = 3
  25. stride = 2
  26. padding = 1
  27. avg_pool = nn.AvgPool2d(kernel_size, stride)
  28. class TestSequentialCell():
  29. """ TestSequentialCell """
  30. def test_SequentialCell_init(self):
  31. m = nn.SequentialCell()
  32. assert type(m).__name__ == 'SequentialCell'
  33. def test_SequentialCell_init2(self):
  34. m = nn.SequentialCell([conv2])
  35. assert len(m) == 1
  36. def test_SequentialCell_init3(self):
  37. m = nn.SequentialCell([conv2, avg_pool])
  38. assert len(m) == 2
  39. def test_SequentialCell_init4(self):
  40. m = nn.SequentialCell(OrderedDict(
  41. [('cov2d', conv2), ('avg_pool', avg_pool)]))
  42. assert len(m) == 2
  43. def test_getitem1(self):
  44. m = nn.SequentialCell(OrderedDict(
  45. [('cov2d', conv2), ('avg_pool', avg_pool)]))
  46. assert m[0] == conv2
  47. def test_getitem2(self):
  48. m = nn.SequentialCell(OrderedDict(
  49. [('cov2d', conv2), ('avg_pool', avg_pool)]))
  50. assert len(m[0:2]) == 2
  51. assert m[:2][1] == avg_pool
  52. def test_setitem1(self):
  53. m = nn.SequentialCell(OrderedDict(
  54. [('cov2d', conv2), ('avg_pool', avg_pool)]))
  55. m[1] = conv2
  56. assert m[1] == m[0]
  57. def test_setitem2(self):
  58. m = nn.SequentialCell(OrderedDict(
  59. [('cov2d', conv2), ('avg_pool', avg_pool)]))
  60. with pytest.raises(TypeError):
  61. m[1.0] = conv2
  62. def test_delitem1(self):
  63. m = nn.SequentialCell(OrderedDict(
  64. [('cov2d', conv2), ('avg_pool', avg_pool)]))
  65. del m[0]
  66. assert len(m) == 1
  67. def test_delitem2(self):
  68. m = nn.SequentialCell(OrderedDict(
  69. [('cov2d', conv2), ('avg_pool', avg_pool)]))
  70. del m[:]
  71. assert type(m).__name__ == 'SequentialCell'
  72. def test_sequentialcell_append(self):
  73. input_np = np.ones((1, 3)).astype(np.float32)
  74. input_me = Tensor(input_np)
  75. relu = nn.ReLU()
  76. tanh = nn.Tanh()
  77. seq = nn.SequentialCell([relu])
  78. seq.append(tanh)
  79. out_me = seq(input_me)
  80. seq1 = nn.SequentialCell([relu, tanh])
  81. out = seq1(input_me)
  82. assert out[0][0] == out_me[0][0]
  83. class TestCellList():
  84. """ TestCellList """
  85. def test_init1(self):
  86. cell_list = nn.CellList([conv2, avg_pool])
  87. assert len(cell_list) == 2
  88. def test_init2(self):
  89. with pytest.raises(TypeError):
  90. nn.CellList(["test"])
  91. def test_getitem(self):
  92. cell_list = nn.CellList([conv2, avg_pool])
  93. assert cell_list[0] == conv2
  94. temp_cells = cell_list[:]
  95. assert temp_cells[1] == avg_pool
  96. def test_setitem(self):
  97. cell_list = nn.CellList([conv2, avg_pool])
  98. cell_list[0] = avg_pool
  99. assert cell_list[0] == cell_list[1]
  100. def test_delitem(self):
  101. cell_list = nn.CellList([conv2, avg_pool])
  102. del cell_list[0]
  103. assert len(cell_list) == 1
  104. del cell_list[:]
  105. assert type(cell_list).__name__ == 'CellList'
  106. def test_iter(self):
  107. cell_list = nn.CellList([conv2, avg_pool])
  108. for item in cell_list:
  109. cell = item
  110. assert type(cell).__name__ == 'AvgPool2d'
  111. def test_add(self):
  112. cell_list = nn.CellList([conv2, avg_pool])
  113. cell_list += [conv2]
  114. assert len(cell_list) == 3
  115. assert cell_list[0] == cell_list[2]
  116. def test_insert(self):
  117. cell_list = nn.CellList([conv2, avg_pool])
  118. cell_list.insert(0, avg_pool)
  119. assert len(cell_list) == 3
  120. assert cell_list[0] == cell_list[2]
  121. def test_append(self):
  122. cell_list = nn.CellList([conv2, avg_pool])
  123. cell_list.append(conv2)
  124. assert len(cell_list) == 3
  125. assert cell_list[0] == cell_list[2]
  126. def test_extend(self):
  127. cell_list = nn.CellList()
  128. cell_list.extend([conv2, avg_pool])
  129. assert len(cell_list) == 2
  130. assert cell_list[0] == conv2