forked from huawei/mindspore2022
218 lines
7.0 KiB
Python
218 lines
7.0 KiB
Python
# Copyright 2019 Huawei Technologies Co., Ltd
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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# ==============================================================================
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"""
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Testing the OneHot Op
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"""
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import numpy as np
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import mindspore.dataset as ds
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import mindspore.dataset.transforms.c_transforms as data_trans
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import mindspore.dataset.transforms.py_transforms as py_trans
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import mindspore.dataset.vision.c_transforms as c_vision
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from mindspore import log as logger
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from util import dataset_equal_with_function
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DATA_DIR = ["../data/dataset/test_tf_file_3_images/train-0000-of-0001.data"]
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SCHEMA_DIR = "../data/dataset/test_tf_file_3_images/datasetSchema.json"
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def one_hot(index, depth):
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"""
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Apply the one_hot
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"""
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arr = np.zeros([1, depth], dtype=np.int32)
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arr[0, index] = 1
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return arr
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def test_one_hot():
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"""
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Test OneHot Tensor Operator
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"""
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logger.info("test_one_hot")
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depth = 10
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# First dataset
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data1 = ds.TFRecordDataset(DATA_DIR, SCHEMA_DIR, shuffle=False)
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one_hot_op = data_trans.OneHot(num_classes=depth)
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data1 = data1.map(operations=one_hot_op, input_columns=["label"], column_order=["label"])
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# Second dataset
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data2 = ds.TFRecordDataset(DATA_DIR, SCHEMA_DIR, columns_list=["label"], shuffle=False)
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assert dataset_equal_with_function(data1, data2, 0, one_hot, depth)
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def test_one_hot_post_aug():
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"""
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Test One Hot Encoding after Multiple Data Augmentation Operators
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"""
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logger.info("test_one_hot_post_aug")
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data1 = ds.TFRecordDataset(DATA_DIR, SCHEMA_DIR, shuffle=False)
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# Define data augmentation parameters
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rescale = 1.0 / 255.0
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shift = 0.0
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resize_height, resize_width = 224, 224
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# Define map operations
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decode_op = c_vision.Decode()
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rescale_op = c_vision.Rescale(rescale, shift)
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resize_op = c_vision.Resize((resize_height, resize_width))
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# Apply map operations on images
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data1 = data1.map(operations=decode_op, input_columns=["image"])
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data1 = data1.map(operations=rescale_op, input_columns=["image"])
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data1 = data1.map(operations=resize_op, input_columns=["image"])
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# Apply one-hot encoding on labels
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depth = 4
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one_hot_encode = data_trans.OneHot(depth)
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data1 = data1.map(operations=one_hot_encode, input_columns=["label"])
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# Apply datasets ops
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buffer_size = 100
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seed = 10
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batch_size = 2
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ds.config.set_seed(seed)
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data1 = data1.shuffle(buffer_size=buffer_size)
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data1 = data1.batch(batch_size, drop_remainder=True)
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num_iter = 0
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for item in data1.create_dict_iterator(num_epochs=1):
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logger.info("image is: {}".format(item["image"]))
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logger.info("label is: {}".format(item["label"]))
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num_iter += 1
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assert num_iter == 1
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def test_one_hot_success():
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# success
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class GetDatasetGenerator:
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def __init__(self):
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np.random.seed(58)
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self.__data = np.random.sample((5, 2))
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self.__label = []
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for index in range(5):
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self.__label.append(np.array(index))
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def __getitem__(self, index):
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return (self.__data[index], self.__label[index])
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def __len__(self):
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return len(self.__data)
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dataset = ds.GeneratorDataset(GetDatasetGenerator(), ["data", "label"], shuffle=False)
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one_hot_encode = py_trans.OneHotOp(10)
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trans = py_trans.Compose([one_hot_encode])
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dataset = dataset.map(operations=trans, input_columns=["label"])
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for index, item in enumerate(dataset.create_dict_iterator(num_epochs=1, output_numpy=True)):
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assert item["label"][index] == 1.0
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def test_one_hot_success2():
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# success
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class GetDatasetGenerator:
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def __init__(self):
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np.random.seed(58)
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self.__data = np.random.sample((5, 2))
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self.__label = []
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for index in range(5):
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self.__label.append(np.array([index]))
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def __getitem__(self, index):
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return (self.__data[index], self.__label[index])
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def __len__(self):
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return len(self.__data)
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dataset = ds.GeneratorDataset(GetDatasetGenerator(), ["data", "label"], shuffle=False)
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one_hot_encode = py_trans.OneHotOp(10)
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trans = py_trans.Compose([one_hot_encode])
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dataset = dataset.map(operations=trans, input_columns=["label"])
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for index, item in enumerate(dataset.create_dict_iterator(num_epochs=1, output_numpy=True)):
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logger.info(item)
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assert item["label"][0][index] == 1.0
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def test_one_hot_success3():
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# success
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class GetDatasetGenerator:
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def __init__(self):
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np.random.seed(58)
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self.__data = np.random.sample((5, 2))
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self.__label = []
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for _ in range(5):
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value = np.ones([10, 1], dtype=np.int32)
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for i in range(10):
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value[i][0] = i
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self.__label.append(value)
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def __getitem__(self, index):
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return (self.__data[index], self.__label[index])
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def __len__(self):
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return len(self.__data)
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dataset = ds.GeneratorDataset(GetDatasetGenerator(), ["data", "label"], shuffle=False)
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one_hot_encode = py_trans.OneHotOp(10)
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trans = py_trans.Compose([one_hot_encode])
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dataset = dataset.map(operations=trans, input_columns=["label"])
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for item in dataset.create_dict_iterator(num_epochs=1, output_numpy=True):
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logger.info(item)
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for i in range(10):
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assert item["label"][i][0][i] == 1.0
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def test_one_hot_type_error():
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# type error
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class GetDatasetGenerator:
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def __init__(self):
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np.random.seed(58)
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self.__data = np.random.sample((5, 2))
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self.__label = []
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for index in range(5):
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self.__label.append(np.array(float(index)))
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def __getitem__(self, index):
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return (self.__data[index], self.__label[index])
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def __len__(self):
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return len(self.__data)
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dataset = ds.GeneratorDataset(GetDatasetGenerator(), ["data", "label"], shuffle=False)
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one_hot_encode = py_trans.OneHotOp(10)
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trans = py_trans.Compose([one_hot_encode])
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dataset = dataset.map(operations=trans, input_columns=["label"])
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try:
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for index, item in enumerate(dataset.create_dict_iterator(num_epochs=1, output_numpy=True)):
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assert item["label"][index] == 1.0
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except RuntimeError as e:
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assert "the input numpy type should be int" in str(e)
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if __name__ == "__main__":
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test_one_hot()
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test_one_hot_post_aug()
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test_one_hot_success()
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test_one_hot_success2()
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test_one_hot_success3()
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test_one_hot_type_error()
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