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328 lines
12 KiB
328 lines
12 KiB
/**
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* Copyright 2020-2021 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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#include "common/common.h"
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#include "minddata/dataset/include/datasets.h"
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#include "minddata/dataset/core/tensor.h"
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using namespace mindspore::dataset;
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using mindspore::dataset::Tensor;
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using mindspore::dataset::TensorShape;
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class MindDataTestPipeline : public UT::DatasetOpTesting {
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protected:
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};
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// Tests for datasets (in alphabetical order)
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TEST_F(MindDataTestPipeline, TestCelebADataset) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestCelebADataset.";
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// Create a CelebA Dataset
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std::string folder_path = datasets_root_path_ + "/testCelebAData/";
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std::shared_ptr<Dataset> ds = CelebA(folder_path, "all", std::make_shared<SequentialSampler>(0, 2), false, {});
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EXPECT_NE(ds, nullptr);
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// Create an iterator over the result of the above dataset
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// This will trigger the creation of the Execution Tree and launch it.
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std::shared_ptr<Iterator> iter = ds->CreateIterator();
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EXPECT_NE(iter, nullptr);
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// Iterate the dataset and get each row
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std::unordered_map<std::string, mindspore::MSTensor> row;
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iter->GetNextRow(&row);
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// Check if CelebA() read correct images/attr
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std::string expect_file[] = {"1.JPEG", "2.jpg"};
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std::vector<std::vector<uint32_t>> expect_attr_vector = {
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{0, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, 0, 0, 0, 1, 1,
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0, 1, 0, 0, 1, 0, 0, 1, 0, 0, 0, 1, 1, 0, 1, 0, 1, 0, 0, 1},
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{0, 0, 0, 1, 0, 0, 0, 1, 0, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 1,
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0, 1, 0, 0, 1, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 1}};
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uint64_t i = 0;
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while (row.size() != 0) {
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auto image = row["image"];
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auto attr = row["attr"];
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mindspore::MSTensor expect_image = ReadFileToTensor(folder_path + expect_file[i]);
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EXPECT_MSTENSOR_EQ(image, expect_image);
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std::shared_ptr<Tensor> de_expect_attr;
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ASSERT_OK(Tensor::CreateFromVector(expect_attr_vector[i], TensorShape({40}), &de_expect_attr));
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mindspore::MSTensor expect_attr =
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mindspore::MSTensor(std::make_shared<mindspore::dataset::DETensor>(de_expect_attr));
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EXPECT_MSTENSOR_EQ(attr, expect_attr);
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iter->GetNextRow(&row);
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i++;
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}
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EXPECT_EQ(i, 2);
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// Manually terminate the pipeline
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iter->Stop();
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}
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TEST_F(MindDataTestPipeline, TestCelebADefault) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestCelebADefault.";
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// Create a CelebA Dataset
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std::string folder_path = datasets_root_path_ + "/testCelebAData/";
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std::shared_ptr<Dataset> ds = CelebA(folder_path);
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EXPECT_NE(ds, nullptr);
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// Create an iterator over the result of the above dataset
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// This will trigger the creation of the Execution Tree and launch it.
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std::shared_ptr<Iterator> iter = ds->CreateIterator();
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EXPECT_NE(iter, nullptr);
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// Iterate the dataset and get each row
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std::unordered_map<std::string, mindspore::MSTensor> row;
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iter->GetNextRow(&row);
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// Check if CelebA() read correct images/attr
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uint64_t i = 0;
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while (row.size() != 0) {
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auto image = row["image"];
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auto attr = row["attr"];
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MS_LOG(INFO) << "Tensor image shape: " << image.Shape();
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MS_LOG(INFO) << "Tensor attr shape: " << attr.Shape();
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iter->GetNextRow(&row);
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i++;
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}
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EXPECT_EQ(i, 4);
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// Manually terminate the pipeline
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iter->Stop();
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}
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TEST_F(MindDataTestPipeline, TestGetRepeatCount) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestGetRepeatCount.";
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// Create an ImageFolder Dataset
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std::string folder_path = datasets_root_path_ + "/testPK/data/";
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std::shared_ptr<Dataset> ds = ImageFolder(folder_path, true);
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EXPECT_NE(ds, nullptr);
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EXPECT_EQ(ds->GetRepeatCount(), 1);
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ds = ds->Repeat(4);
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EXPECT_NE(ds, nullptr);
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EXPECT_EQ(ds->GetRepeatCount(), 4);
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ds = ds->Repeat(3);
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EXPECT_NE(ds, nullptr);
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EXPECT_EQ(ds->GetRepeatCount(), 3);
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}
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TEST_F(MindDataTestPipeline, TestGetBatchSize) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestGetRepeatCount.";
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// Create an ImageFolder Dataset
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std::string folder_path = datasets_root_path_ + "/testPK/data/";
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std::shared_ptr<Dataset> ds = ImageFolder(folder_path, true)->Project({"label"});
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EXPECT_NE(ds, nullptr);
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EXPECT_EQ(ds->GetBatchSize(), 1);
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ds = ds->Batch(2);
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EXPECT_NE(ds, nullptr);
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EXPECT_EQ(ds->GetBatchSize(), 2);
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ds = ds->Batch(3);
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EXPECT_NE(ds, nullptr);
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EXPECT_EQ(ds->GetBatchSize(), 3);
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}
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TEST_F(MindDataTestPipeline, TestCelebAGetDatasetSize) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestCelebAGetDatasetSize.";
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// Create a CelebA Dataset
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std::string folder_path = datasets_root_path_ + "/testCelebAData/";
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std::shared_ptr<Dataset> ds = CelebA(folder_path, "valid");
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EXPECT_NE(ds, nullptr);
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EXPECT_EQ(ds->GetDatasetSize(), 1);
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}
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TEST_F(MindDataTestPipeline, TestCelebAError) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestCelebAError.";
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std::string folder_path = datasets_root_path_ + "/testCelebAData/";
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std::string invalid_folder_path = "./testNotExist";
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std::string invalid_dataset_type = "invalid_type";
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// Create a CelebA Dataset
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std::shared_ptr<Dataset> ds1 = CelebA(invalid_folder_path);
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EXPECT_NE(ds1, nullptr);
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// Create an iterator over the result of the above dataset
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std::shared_ptr<Iterator> iter1 = ds1->CreateIterator();
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// Expect failure: invalid CelebA input, invalid dataset path
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EXPECT_EQ(iter1, nullptr);
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// Create a CelebA Dataset
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std::shared_ptr<Dataset> ds2 = CelebA(folder_path, invalid_dataset_type);
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EXPECT_NE(ds2, nullptr);
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// Create an iterator over the result of the above dataset
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std::shared_ptr<Iterator> iter2 = ds2->CreateIterator();
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// Expect failure: invalid CelebA input, invalid dataset type
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EXPECT_EQ(iter2, nullptr);
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}
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TEST_F(MindDataTestPipeline, TestCelebADatasetWithNullSamplerError) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestCelebADataset.";
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// Create a CelebA Dataset
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std::string folder_path = datasets_root_path_ + "/testCelebAData/";
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std::shared_ptr<Dataset> ds = CelebA(folder_path, "all", nullptr, false, {});
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EXPECT_NE(ds, nullptr);
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// Create an iterator over the result of the above dataset
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std::shared_ptr<Iterator> iter = ds->CreateIterator();
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// Expect failure: invalid CelebA input, sampler cannot be nullptr
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EXPECT_EQ(iter, nullptr);
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}
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TEST_F(MindDataTestPipeline, TestImageFolderWithWrongDatasetDirFail) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestImageFolderWithWrongDatasetDirFail.";
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// Create an ImageFolder Dataset
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std::shared_ptr<Dataset> ds = ImageFolder("", true, nullptr);
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EXPECT_NE(ds, nullptr);
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// Create an iterator over the result of the above dataset
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std::shared_ptr<Iterator> iter = ds->CreateIterator();
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// Expect failure: invalid ImageFolder input
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EXPECT_EQ(iter, nullptr);
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}
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TEST_F(MindDataTestPipeline, TestImageFolderFailWithWrongExtensionFail) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestImageFolderFailWithWrongExtensionFail.";
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// Create an ImageFolder Dataset
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std::string folder_path = datasets_root_path_ + "/testPK/data/";
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std::shared_ptr<Dataset> ds = ImageFolder(folder_path, true, std::make_shared<RandomSampler>(false, 2), {".JGP"});
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EXPECT_NE(ds, nullptr);
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// Create an iterator over the result of the above dataset
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// This will trigger the creation of the Execution Tree and launch it.
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std::shared_ptr<Iterator> iter = ds->CreateIterator();
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EXPECT_NE(iter, nullptr);
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// Iterate the dataset and get each row
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std::unordered_map<std::string, mindspore::MSTensor> row;
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iter->GetNextRow(&row);
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// Expect no data: cannot find files with specified extension
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EXPECT_EQ(row.size(), 0);
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// Manually terminate the pipeline
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iter->Stop();
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}
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TEST_F(MindDataTestPipeline, TestImageFolderGetters) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestImageFolderGetDatasetSize.";
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// Create an ImageFolder Dataset
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std::string folder_path = datasets_root_path_ + "/testPK/data/";
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std::shared_ptr<Dataset> ds = ImageFolder(folder_path, true);
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EXPECT_NE(ds, nullptr);
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EXPECT_EQ(ds->GetDatasetSize(), 44);
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EXPECT_EQ(ds->GetNumClasses(), 4);
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EXPECT_EQ(ds->GetNumClasses(), 4);
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EXPECT_EQ(ds->GetDatasetSize(), 44);
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EXPECT_EQ(ds->GetDatasetSize(), 44);
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}
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TEST_F(MindDataTestPipeline, TestImageFolderFailWithNullSamplerFail) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestImageFolderFailWithNullSamplerFail.";
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// Create an ImageFolder Dataset
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std::string folder_path = datasets_root_path_ + "/testPK/data/";
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std::shared_ptr<Dataset> ds = ImageFolder(folder_path, true, nullptr);
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EXPECT_NE(ds, nullptr);
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// Create an iterator over the result of the above dataset
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std::shared_ptr<Iterator> iter = ds->CreateIterator();
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// Expect failure: invalid ImageFolder input, sampler cannot be nullptr
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EXPECT_EQ(iter, nullptr);
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}
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TEST_F(MindDataTestPipeline, TestImageFolderFailWithWrongSamplerFail) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestImageFolderFailWithWrongSamplerFail.";
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// Create an ImageFolder Dataset
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std::string folder_path = datasets_root_path_ + "/testPK/data/";
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std::shared_ptr<Dataset> ds = ImageFolder(folder_path, true, std::make_shared<SequentialSampler>(-2, 5));
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EXPECT_NE(ds, nullptr);
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// Create an iterator over the result of the above dataset
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std::shared_ptr<Iterator> iter = ds->CreateIterator();
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// Expect failure: invalid ImageFolder input, sampler is not constructed correctly
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EXPECT_EQ(iter, nullptr);
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}
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TEST_F(MindDataTestPipeline, TestMnistGetDatasetSize) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestMnistGetDatasetSize.";
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// Create a Mnist Dataset
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std::string folder_path = datasets_root_path_ + "/testMnistData/";
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std::shared_ptr<Dataset> ds = Mnist(folder_path, "all", std::make_shared<RandomSampler>(false, 20));
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EXPECT_NE(ds, nullptr);
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EXPECT_EQ(ds->GetDatasetSize(), 20);
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}
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TEST_F(MindDataTestPipeline, TestMnistFailWithWrongDatasetDirFail) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestMnistFailWithWrongDatasetDirFail.";
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// Create a Mnist Dataset
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std::shared_ptr<Dataset> ds = Mnist("", "all", std::make_shared<RandomSampler>(false, 10));
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EXPECT_NE(ds, nullptr);
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// Create an iterator over the result of the above dataset
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std::shared_ptr<Iterator> iter = ds->CreateIterator();
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// Expect failure: invalid Mnist input, incorrect dataset directory input
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EXPECT_EQ(iter, nullptr);
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}
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TEST_F(MindDataTestPipeline, TestMnistFailWithNullSamplerFail) {
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MS_LOG(INFO) << "Doing MindDataTestPipeline-TestMnistFailWithNullSamplerFail.";
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// Create a Mnist Dataset
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std::string folder_path = datasets_root_path_ + "/testMnistData/";
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std::shared_ptr<Dataset> ds = Mnist(folder_path, "all", nullptr);
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EXPECT_NE(ds, nullptr);
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// Create an iterator over the result of the above dataset
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std::shared_ptr<Iterator> iter = ds->CreateIterator();
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// Expect failure: invalid Mnist input, sampler cannot be nullptr
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EXPECT_EQ(iter, nullptr);
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}
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TEST_F(MindDataTestPipeline, TestImageFolderClassIndexDatasetSize) {
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std::string folder_path = datasets_root_path_ + "/testPK/data";
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std::map<std::string, int32_t> class_index;
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class_index["class1"] = 111;
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class_index["class2"] = 333;
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auto ds = ImageFolder(folder_path, false, std::make_shared<RandomSampler>(), {}, class_index);
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EXPECT_EQ(ds->GetNumClasses(), 2);
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}
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TEST_F(MindDataTestPipeline, TestImageFolderClassIndexDatasetSizeFail) {
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std::string folder_path = datasets_root_path_ + "/testPK/data";
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std::map<std::string, int32_t> class_index;
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class_index["class1"] = 111;
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class_index["wrong class"] = 333;
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auto ds = ImageFolder(folder_path, false, std::make_shared<RandomSampler>(), {}, class_index);
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EXPECT_EQ(ds->GetNumClasses(), -1);
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}
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