blob: b7438a13a6915380531c8ea7047dad2c4129f055 [file]
/*
* Licensed to the Apache Software Foundation (ASF) under one
* or more contributor license agreements. See the NOTICE file
* distributed with this work for additional information
* regarding copyright ownership. The ASF licenses this file
* to you 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.
*/
#include "../framework/test_framework.hpp"
#include <thread>
#include <atomic>
namespace opendal::test {
class WriteBehaviorTest : public OpenDALTest {
protected:
void SetUp() override {
OpenDALTest::SetUp();
}
};
// Test writing empty content
OPENDAL_TEST_F(WriteBehaviorTest, WriteEmptyContent) {
OPENDAL_SKIP_IF_UNSUPPORTED_WRITE();
// Check if the service supports writing empty content
if (!op_.Info().write_can_empty) {
GTEST_SKIP() << "Service doesn't support writing empty content";
return;
}
auto path = random_path();
std::string empty_content = "";
op_.Write(path, empty_content);
// Verify the file exists and is empty
EXPECT_TRUE(op_.Exists(path));
auto result = op_.Read(path);
EXPECT_EQ(result, empty_content);
}
// Test writing small content
OPENDAL_TEST_F(WriteBehaviorTest, WriteSmallContent) {
OPENDAL_SKIP_IF_UNSUPPORTED_WRITE();
auto path = random_path();
auto content = random_string(100);
op_.Write(path, content);
// Verify content
EXPECT_TRUE(op_.Exists(path));
auto result = op_.Read(path);
EXPECT_EQ(result, content);
}
// Test writing large content
OPENDAL_TEST_F(WriteBehaviorTest, WriteLargeContent) {
OPENDAL_SKIP_IF_UNSUPPORTED_WRITE();
auto path = random_path();
auto content = random_string(1024 * 1024); // 1MB
op_.Write(path, content);
// Verify content
EXPECT_TRUE(op_.Exists(path));
auto result = op_.Read(path);
EXPECT_EQ(result, content);
}
// Test writing binary data
OPENDAL_TEST_F(WriteBehaviorTest, WriteBinaryData) {
OPENDAL_SKIP_IF_UNSUPPORTED_WRITE();
auto path = random_path();
auto content = random_bytes(1000);
// Convert to string for writing
std::string content_str(content.begin(), content.end());
op_.Write(path, content_str);
// Verify content
EXPECT_TRUE(op_.Exists(path));
auto result = op_.Read(path);
std::vector<uint8_t> result_bytes(result.begin(), result.end());
EXPECT_EQ(result_bytes, content);
}
// Test overwriting existing file
OPENDAL_TEST_F(WriteBehaviorTest, OverwriteExistingFile) {
OPENDAL_SKIP_IF_UNSUPPORTED_WRITE();
auto path = random_path();
auto original_content = random_string(100);
auto new_content = random_string(200);
// Write original content
op_.Write(path, original_content);
auto result1 = op_.Read(path);
EXPECT_EQ(result1, original_content);
// Try to overwrite with new content
try {
op_.Write(path, new_content);
auto result2 = op_.Read(path);
EXPECT_EQ(result2, new_content);
EXPECT_NE(result2, original_content);
} catch (const std::exception& e) {
// Check if error message indicates AlreadyExists
std::string error_msg = e.what();
if (error_msg.find("AlreadyExists") != std::string::npos) {
GTEST_SKIP() << "Service doesn't support file overwrite: " << error_msg;
} else {
throw; // Re-throw other errors
}
}
}
// Test writing to nested path (should create intermediate directories)
OPENDAL_TEST_F(WriteBehaviorTest, WriteToNestedPath) {
OPENDAL_SKIP_IF_UNSUPPORTED_WRITE();
auto path = "nested/deep/directory/file.txt";
auto content = random_string(100);
op_.Write(path, content);
// Verify content
EXPECT_TRUE(op_.Exists(path));
auto result = op_.Read(path);
EXPECT_EQ(result, content);
}
// Test writing with special characters in filename
OPENDAL_TEST_F(WriteBehaviorTest, WriteSpecialCharFilename) {
OPENDAL_SKIP_IF_UNSUPPORTED_WRITE();
auto path = "test_with-special.chars_123/file-name_with.special.txt";
auto content = random_string(100);
op_.Write(path, content);
// Verify content
EXPECT_TRUE(op_.Exists(path));
auto result = op_.Read(path);
EXPECT_EQ(result, content);
}
// Test writing multiple files
OPENDAL_TEST_F(WriteBehaviorTest, WriteMultipleFiles) {
OPENDAL_SKIP_IF_UNSUPPORTED_WRITE();
std::vector<std::string> paths;
std::vector<std::string> contents;
for (int i = 0; i < 10; ++i) {
auto path = random_path();
auto content = random_string(100 + i * 10);
paths.push_back(path);
contents.push_back(content);
op_.Write(path, content);
}
// Verify all files
for (size_t i = 0; i < paths.size(); ++i) {
EXPECT_TRUE(op_.Exists(paths[i]));
auto result = op_.Read(paths[i]);
EXPECT_EQ(result, contents[i]);
}
}
// Test writing with unicode content
OPENDAL_TEST_F(WriteBehaviorTest, WriteUnicodeContent) {
OPENDAL_SKIP_IF_UNSUPPORTED_WRITE();
auto path = random_path();
std::string unicode_content = "Hello 世界 🌍 Здравствуй мир";
op_.Write(path, unicode_content);
// Verify content
EXPECT_TRUE(op_.Exists(path));
auto result = op_.Read(path);
EXPECT_EQ(result, unicode_content);
}
// Test concurrent writes to different files
OPENDAL_TEST_F(WriteBehaviorTest, ConcurrentWritesDifferentFiles) {
OPENDAL_SKIP_IF_UNSUPPORTED_WRITE();
const int num_threads = 10;
std::vector<std::thread> threads;
std::vector<std::string> paths(num_threads);
std::vector<std::string> contents(num_threads);
std::atomic<int> error_count{0};
for (int i = 0; i < num_threads; ++i) {
paths[i] = random_path();
contents[i] = random_string(100 + i);
}
for (int i = 0; i < num_threads; ++i) {
threads.emplace_back([&, i]() {
try {
op_.Write(paths[i], contents[i]);
} catch (const std::exception& e) {
error_count++;
}
});
}
for (auto& thread : threads) {
thread.join();
}
EXPECT_EQ(error_count, 0);
// Verify all files were written correctly
for (int i = 0; i < num_threads; ++i) {
EXPECT_TRUE(op_.Exists(paths[i]));
auto result = op_.Read(paths[i]);
EXPECT_EQ(result, contents[i]);
}
}
// Test writing with different content sizes
OPENDAL_TEST_F(WriteBehaviorTest, WriteDifferentSizes) {
OPENDAL_SKIP_IF_UNSUPPORTED_WRITE();
std::vector<size_t> sizes = {1, 10, 100, 1024, 10240, 102400};
for (auto size : sizes) {
auto path = random_path();
auto content = random_string(size);
op_.Write(path, content);
// Verify content
EXPECT_TRUE(op_.Exists(path));
auto result = op_.Read(path);
EXPECT_EQ(result.size(), size);
EXPECT_EQ(result, content);
}
}
// Test appending behavior (if supported)
OPENDAL_TEST_F(WriteBehaviorTest, WriteAppendBehavior) {
OPENDAL_SKIP_IF_UNSUPPORTED_WRITE();
auto path = random_path();
auto content1 = random_string(100);
auto content2 = random_string(100);
// Write first content
op_.Write(path, content1);
auto result1 = op_.Read(path);
EXPECT_EQ(result1, content1);
// Try to write second content (should overwrite, not append for normal write)
try {
op_.Write(path, content2);
auto result2 = op_.Read(path);
EXPECT_EQ(result2, content2);
EXPECT_NE(result2, content1 + content2); // Should not be appended
} catch (const std::exception& e) {
// Check if error message indicates AlreadyExists
std::string error_msg = e.what();
if (error_msg.find("AlreadyExists") != std::string::npos) {
GTEST_SKIP() << "Service doesn't support file overwrite: " << error_msg;
} else {
throw; // Re-throw other errors
}
}
}
} // namespace opendal::test