blob: 34c5fa77cb35dab3dcf94cc444466a1227506f5a [file] [log] [blame]
/*
* Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
*
* Use of this source code is governed by a BSD-style license
* that can be found in the LICENSE file in the root of the source
* tree. An additional intellectual property rights grant can be found
* in the file PATENTS. All contributing project authors may
* be found in the AUTHORS file in the root of the source tree.
*/
// This test doesn't actually verify the output since it's just printed
// to stdout by void functions, but it's still useful as it executes the code.
#include <stdio.h>
#include <fstream>
#include <string>
#include "webrtc/test/gtest.h"
#include "webrtc/test/testsupport/fileutils.h"
#include "webrtc/tools/frame_analyzer/video_quality_analysis.h"
namespace webrtc {
namespace test {
// Setup a log file to write the output to instead of stdout because we don't
// want those numbers to be picked up as perf numbers.
class VideoQualityAnalysisTest : public ::testing::Test {
protected:
static void SetUpTestCase() {
std::string log_filename = webrtc::test::OutputPath() +
"VideoQualityAnalysisTest.log";
logfile_ = fopen(log_filename.c_str(), "w");
ASSERT_TRUE(logfile_ != NULL);
}
static void TearDownTestCase() {
ASSERT_EQ(0, fclose(logfile_));
}
static FILE* logfile_;
};
FILE* VideoQualityAnalysisTest::logfile_ = NULL;
TEST_F(VideoQualityAnalysisTest, MatchExtractedY4mFrame) {
std::string video_file =
webrtc::test::ResourcePath("reference_less_video_test_file", "y4m");
std::string extracted_frame_from_video_file =
webrtc::test::ResourcePath("video_quality_analysis_frame", "txt");
int frame_height = 720, frame_width = 1280;
int frame_number = 2;
int size = GetI420FrameSize(frame_width, frame_height);
uint8_t* result_frame = new uint8_t[size];
uint8_t* expected_frame = new uint8_t[size];
FILE* input_file = fopen(extracted_frame_from_video_file.c_str(), "rb");
fread(expected_frame, 1, size, input_file);
ExtractFrameFromY4mFile(video_file.c_str(),
frame_width, frame_height,
frame_number, result_frame);
EXPECT_EQ(*expected_frame, *result_frame);
fclose(input_file);
delete[] result_frame;
delete[] expected_frame;
}
TEST_F(VideoQualityAnalysisTest, PrintAnalysisResultsEmpty) {
ResultsContainer result;
PrintAnalysisResults(logfile_, "Empty", &result);
}
TEST_F(VideoQualityAnalysisTest, PrintAnalysisResultsOneFrame) {
ResultsContainer result;
result.frames.push_back(AnalysisResult(0, 35.0, 0.9));
PrintAnalysisResults(logfile_, "OneFrame", &result);
}
TEST_F(VideoQualityAnalysisTest, PrintAnalysisResultsThreeFrames) {
ResultsContainer result;
result.frames.push_back(AnalysisResult(0, 35.0, 0.9));
result.frames.push_back(AnalysisResult(1, 34.0, 0.8));
result.frames.push_back(AnalysisResult(2, 33.0, 0.7));
PrintAnalysisResults(logfile_, "ThreeFrames", &result);
}
TEST_F(VideoQualityAnalysisTest, PrintMaxRepeatedAndSkippedFramesInvalidFile) {
std::string stats_filename = OutputPath() + "non-existing-stats-file.txt";
remove(stats_filename.c_str());
PrintMaxRepeatedAndSkippedFrames(logfile_, "NonExistingStatsFile",
stats_filename);
}
TEST_F(VideoQualityAnalysisTest,
PrintMaxRepeatedAndSkippedFramesEmptyStatsFile) {
std::string stats_filename = OutputPath() + "empty-stats.txt";
std::ofstream stats_file;
stats_file.open(stats_filename.c_str());
stats_file.close();
PrintMaxRepeatedAndSkippedFrames(logfile_, "EmptyStatsFile", stats_filename);
}
TEST_F(VideoQualityAnalysisTest, PrintMaxRepeatedAndSkippedFramesNormalFile) {
std::string stats_filename = OutputPath() + "stats.txt";
std::ofstream stats_file;
stats_file.open(stats_filename.c_str());
stats_file << "frame_0001 0100\n";
stats_file << "frame_0002 0101\n";
stats_file << "frame_0003 0101\n";
stats_file << "frame_0004 0106\n";
stats_file.close();
PrintMaxRepeatedAndSkippedFrames(logfile_, "NormalStatsFile", stats_filename);
}
} // namespace test
} // namespace webrtc