test_unsqueeze_op.py 7.1 KB
Newer Older
1
# Copyright (c) 2018 PaddlePaddle Authors. All Rights Reserved.
2 3 4 5 6 7 8 9 10 11 12 13 14
#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
#     http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.

15 16
from __future__ import print_function

17 18
import unittest
import numpy as np
19 20
import paddle
import paddle.fluid as fluid
21
from op_test import OpTest
22 23 24


# Correct: General.
25
class TestUnsqueezeOp(OpTest):
26
    def setUp(self):
27
        self.init_test_case()
28
        self.op_type = "unsqueeze"
29
        self.inputs = {"X": np.random.random(self.ori_shape).astype("float64")}
C
chenweihang 已提交
30
        self.init_attrs()
31
        self.outputs = {"Out": self.inputs["X"].reshape(self.new_shape)}
32 33

    def test_check_output(self):
34
        self.check_output()
35 36 37 38

    def test_check_grad(self):
        self.check_grad(["X"], "Out")

39
    def init_test_case(self):
Z
zhupengyang 已提交
40
        self.ori_shape = (3, 40)
41
        self.axes = (1, 2)
Z
zhupengyang 已提交
42
        self.new_shape = (3, 1, 1, 40)
43

C
chenweihang 已提交
44
    def init_attrs(self):
45
        self.attrs = {"axes": self.axes}
C
chenweihang 已提交
46

47

48 49 50
# Correct: Single input index.
class TestUnsqueezeOp1(TestUnsqueezeOp):
    def init_test_case(self):
Z
zhupengyang 已提交
51
        self.ori_shape = (20, 5)
52
        self.axes = (-1, )
Z
zhupengyang 已提交
53
        self.new_shape = (20, 5, 1)
54 55 56


# Correct: Mixed input axis.
57 58
class TestUnsqueezeOp2(TestUnsqueezeOp):
    def init_test_case(self):
Z
zhupengyang 已提交
59
        self.ori_shape = (20, 5)
60
        self.axes = (0, -1)
Z
zhupengyang 已提交
61
        self.new_shape = (1, 20, 5, 1)
62 63


64
# Correct: There is duplicated axis.
65 66
class TestUnsqueezeOp3(TestUnsqueezeOp):
    def init_test_case(self):
Z
zhupengyang 已提交
67
        self.ori_shape = (10, 2, 5)
68
        self.axes = (0, 3, 3)
Z
zhupengyang 已提交
69
        self.new_shape = (1, 10, 2, 1, 1, 5)
70 71


72 73 74
# Correct: Reversed axes.
class TestUnsqueezeOp4(TestUnsqueezeOp):
    def init_test_case(self):
Z
zhupengyang 已提交
75
        self.ori_shape = (10, 2, 5)
76
        self.axes = (3, 1, 1)
Z
zhupengyang 已提交
77
        self.new_shape = (10, 1, 1, 2, 5, 1)
78 79


80 81 82 83
class API_TestUnsqueeze(unittest.TestCase):
    def test_out(self):
        with fluid.program_guard(fluid.Program(), fluid.Program()):
            data1 = fluid.layers.data('data1', shape=[-1, 10], dtype='float64')
84
            result_squeeze = paddle.unsqueeze(data1, axis=[1])
85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100
            place = fluid.CPUPlace()
            exe = fluid.Executor(place)
            input1 = np.random.random([5, 1, 10]).astype('float64')
            input = np.squeeze(input1, axis=1)
            result, = exe.run(feed={"data1": input},
                              fetch_list=[result_squeeze])
            self.assertTrue(np.allclose(input1, result))


class TestUnsqueezeOpError(unittest.TestCase):
    def test_errors(self):
        with fluid.program_guard(fluid.Program(), fluid.Program()):
            # The type of axis in split_op should be int or Variable.
            def test_axes_type():
                x6 = fluid.layers.data(
                    shape=[-1, 10], dtype='float16', name='x3')
101
                paddle.unsqueeze(x6, axis=3.2)
102 103 104 105 106 107 108 109 110

            self.assertRaises(TypeError, test_axes_type)


class API_TestUnsqueeze2(unittest.TestCase):
    def test_out(self):
        with fluid.program_guard(fluid.Program(), fluid.Program()):
            data1 = fluid.data('data1', shape=[-1, 10], dtype='float64')
            data2 = fluid.data('data2', shape=[1], dtype='int32')
111
            result_squeeze = paddle.unsqueeze(data1, axis=data2)
112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127
            place = fluid.CPUPlace()
            exe = fluid.Executor(place)
            input1 = np.random.random([5, 1, 10]).astype('float64')
            input2 = np.array([1]).astype('int32')
            input = np.squeeze(input1, axis=1)
            result1, = exe.run(feed={"data1": input,
                                     "data2": input2},
                               fetch_list=[result_squeeze])
            self.assertTrue(np.allclose(input1, result1))


class API_TestUnsqueeze3(unittest.TestCase):
    def test_out(self):
        with fluid.program_guard(fluid.Program(), fluid.Program()):
            data1 = fluid.data('data1', shape=[-1, 10], dtype='float64')
            data2 = fluid.data('data2', shape=[1], dtype='int32')
128
            result_squeeze = paddle.unsqueeze(data1, axis=[data2, 3])
129 130 131 132 133 134 135 136
            place = fluid.CPUPlace()
            exe = fluid.Executor(place)
            input1 = np.random.random([5, 1, 10, 1]).astype('float64')
            input2 = np.array([1]).astype('int32')
            input = np.squeeze(input1)
            result1, = exe.run(feed={"data1": input,
                                     "data2": input2},
                               fetch_list=[result_squeeze])
L
Leo Chen 已提交
137 138
            self.assertTrue(np.array_equal(input1, result1))
            self.assertEqual(input1.shape, result1.shape)
139 140 141 142 143 144


class API_TestDyUnsqueeze(unittest.TestCase):
    def test_out(self):
        with fluid.dygraph.guard():
            input_1 = np.random.random([5, 1, 10]).astype("int32")
L
Leo Chen 已提交
145
            input1 = np.expand_dims(input_1, axis=1)
146
            input = fluid.dygraph.to_variable(input_1)
147
            output = paddle.unsqueeze(input, axis=[1])
148
            out_np = output.numpy()
L
Leo Chen 已提交
149 150
            self.assertTrue(np.array_equal(input1, out_np))
            self.assertEqual(input1.shape, out_np.shape)
151 152 153 154 155


class API_TestDyUnsqueeze2(unittest.TestCase):
    def test_out(self):
        with fluid.dygraph.guard():
L
Leo Chen 已提交
156 157 158
            input1 = np.random.random([5, 10]).astype("int32")
            out1 = np.expand_dims(input1, axis=1)
            input = fluid.dygraph.to_variable(input1)
159
            output = paddle.unsqueeze(input, axis=1)
160
            out_np = output.numpy()
L
Leo Chen 已提交
161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190
            self.assertTrue(np.array_equal(out1, out_np))
            self.assertEqual(out1.shape, out_np.shape)


class API_TestDyUnsqueezeAxisTensor(unittest.TestCase):
    def test_out(self):
        with fluid.dygraph.guard():
            input1 = np.random.random([5, 10]).astype("int32")
            out1 = np.expand_dims(input1, axis=1)
            input = fluid.dygraph.to_variable(input1)
            output = paddle.unsqueeze(input, axis=paddle.to_tensor([1]))
            out_np = output.numpy()
            self.assertTrue(np.array_equal(out1, out_np))
            self.assertEqual(out1.shape, out_np.shape)


class API_TestDyUnsqueezeAxisTensorList(unittest.TestCase):
    def test_out(self):
        with fluid.dygraph.guard():
            input1 = np.random.random([5, 10]).astype("int32")
            # Actually, expand_dims supports tuple since version 1.18.0
            out1 = np.expand_dims(input1, axis=1)
            out1 = np.expand_dims(out1, axis=2)
            input = fluid.dygraph.to_variable(input1)
            output = paddle.unsqueeze(
                fluid.dygraph.to_variable(input1),
                axis=[paddle.to_tensor([1]), paddle.to_tensor([2])])
            out_np = output.numpy()
            self.assertTrue(np.array_equal(out1, out_np))
            self.assertEqual(out1.shape, out_np.shape)
191 192


193 194
if __name__ == "__main__":
    unittest.main()