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Paddle/python/paddle/fluid/tests/unittests/test_compare_reduce_op.py

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# Copyright (c) 2018 PaddlePaddle Authors. All Rights Reserved.
#
# 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.
from __future__ import print_function
import op_test
import unittest
import numpy as np
import paddle
import paddle.fluid as fluid
from paddle.fluid import Program, program_guard
def create_test_broadcast_class(op_type, args, callback):
class Cls(op_test.OpTest):
def setUp(self):
x = np.random.random(size=args['x_size']).astype('int32')
y = np.random.random(size=args['y_size']).astype('int32')
z = callback(x, y)
self.inputs = {'X': x, 'Y': y}
self.outputs = {'Out': z}
self.op_type = op_type
self.axis = args['axis']
def test_output(self):
self.check_output()
cls_name = "{0}_{1}".format(op_type, 'broadcast')
Cls.__name__ = cls_name
globals()[cls_name] = Cls
def create_test_not_equal_class(op_type, typename, callback):
class Cls(op_test.OpTest):
def setUp(self):
x = np.random.random(size=(10, 7)).astype(typename)
y = np.random.random(size=(10, 7)).astype(typename)
z = callback(x, y)
self.inputs = {'X': x, 'Y': y}
self.outputs = {'Out': z}
self.op_type = op_type
def test_output(self):
self.check_output()
cls_name = "{0}_{1}_{2}".format(op_type, typename, 'not_equal')
Cls.__name__ = cls_name
globals()[cls_name] = Cls
def create_test_equal_class(op_type, typename, callback):
class Cls(op_test.OpTest):
def setUp(self):
x = y = np.random.random(size=(10, 7)).astype(typename)
z = callback(x, y)
self.inputs = {'X': x, 'Y': y}
self.outputs = {'Out': z}
self.op_type = op_type
def test_output(self):
self.check_output()
cls_name = "{0}_{1}_{2}".format(op_type, typename, 'equal')
Cls.__name__ = cls_name
globals()[cls_name] = Cls
def create_test_dim1_class(op_type, typename, callback):
class Cls(op_test.OpTest):
def setUp(self):
x = y = np.random.random(size=(1)).astype(typename)
z = callback(x, y)
self.inputs = {'X': x, 'Y': y}
self.outputs = {'Out': z}
self.op_type = op_type
def test_output(self):
self.check_output()
cls_name = "{0}_{1}_{2}".format(op_type, typename, 'equal')
Cls.__name__ = cls_name
globals()[cls_name] = Cls
np_equal = lambda _x, _y: np.array(np.array_equal(_x, _y))
for _type_name in {'float32', 'float64', 'int32', 'int64'}:
create_test_not_equal_class('equal_reduce', _type_name, np_equal)
create_test_equal_class('equal_reduce', _type_name, np_equal)
create_test_dim1_class('equal_reduce', _type_name, np_equal)
broadcast_args = [{
'x_size': (100, 2, 3),
'y_size': (100),
'axis': 0
}, {
'x_size': (2, 100, 3),
'y_size': (100),
'axis': 1
}, {
'x_size': (2, 3, 100),
'y_size': (1, 1),
'axis': -1
}, {
'x_size': (2, 10, 12, 3),
'y_size': (10, 12),
'axis': 1
}, {
'x_size': (100, 2, 3, 4),
'y_size': (100, 1),
'axis': 0
}, {
'x_size': (10, 3, 12),
'y_size': (10, 1, 12),
'axis': -1
}, {
'x_size': (2, 12, 3, 5),
'y_size': (2, 12, 1, 5),
'axis': -1
}, {
'x_size': (2, 12, 3, 5),
'y_size': (3, 5),
'axis': 2
}]
def np_broadcast_equal(_x, _y):
res = np.all(np.equal(_x, _y))
return np.array(res)
for args in broadcast_args:
create_test_broadcast_class('equal_reduce', args, np_broadcast_equal)
class TestEqualReduceAPI(unittest.TestCase):
def test_name(self):
x = fluid.layers.assign(np.array([3, 4], dtype="int32"))
y = fluid.layers.assign(np.array([3, 4], dtype="int32"))
out = paddle.equal(x, y, name='equal_res')
assert 'equal_res' in out.name
if __name__ == '__main__':
unittest.main()