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Linus Nilsson478df7e2020-01-29 15:34:24 -08001/*
2 * Copyright (C) 2020 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17// Unit Test for MediaSampleReaderNDK
18
19// #define LOG_NDEBUG 0
20#define LOG_TAG "MediaSampleReaderNDKTests"
21
22#include <android-base/logging.h>
23#include <android/binder_manager.h>
24#include <android/binder_process.h>
25#include <fcntl.h>
26#include <gtest/gtest.h>
27#include <media/MediaSampleReaderNDK.h>
28#include <utils/Timers.h>
29
Linus Nilsson800793f2020-07-31 16:16:38 -070030#include <cmath>
31
Linus Nilsson478df7e2020-01-29 15:34:24 -080032// TODO(b/153453392): Test more asset types and validate sample data from readSampleDataForTrack.
33
34namespace android {
35
36#define SEC_TO_USEC(s) ((s)*1000 * 1000)
37
38class MediaSampleReaderNDKTests : public ::testing::Test {
39public:
40 MediaSampleReaderNDKTests() { LOG(DEBUG) << "MediaSampleReaderNDKTests created"; }
41
42 void SetUp() override {
43 LOG(DEBUG) << "MediaSampleReaderNDKTests set up";
44 const char* sourcePath =
hkuang2ef2b432020-06-15 18:33:11 -070045 "/data/local/tmp/TranscodingTestAssets/cubicle_avc_480x240_aac_24KHz.mp4";
Linus Nilsson478df7e2020-01-29 15:34:24 -080046
47 mExtractor = AMediaExtractor_new();
48 ASSERT_NE(mExtractor, nullptr);
49
50 mSourceFd = open(sourcePath, O_RDONLY);
51 ASSERT_GT(mSourceFd, 0);
52
53 mFileSize = lseek(mSourceFd, 0, SEEK_END);
54 lseek(mSourceFd, 0, SEEK_SET);
55
56 media_status_t status =
57 AMediaExtractor_setDataSourceFd(mExtractor, mSourceFd, 0, mFileSize);
58 ASSERT_EQ(status, AMEDIA_OK);
59
60 mTrackCount = AMediaExtractor_getTrackCount(mExtractor);
61 for (size_t trackIndex = 0; trackIndex < mTrackCount; trackIndex++) {
62 AMediaExtractor_selectTrack(mExtractor, trackIndex);
63 }
64 }
65
66 void initExtractorTimestamps() {
67 // Save all sample timestamps, per track, as reported by the extractor.
68 mExtractorTimestamps.resize(mTrackCount);
69 do {
70 const int trackIndex = AMediaExtractor_getSampleTrackIndex(mExtractor);
71 const int64_t sampleTime = AMediaExtractor_getSampleTime(mExtractor);
72
73 mExtractorTimestamps[trackIndex].push_back(sampleTime);
74 } while (AMediaExtractor_advance(mExtractor));
Linus Nilsson800793f2020-07-31 16:16:38 -070075
76 AMediaExtractor_seekTo(mExtractor, 0, AMEDIAEXTRACTOR_SEEK_PREVIOUS_SYNC);
77 }
78
79 std::vector<int32_t> getTrackBitrates() {
80 size_t totalSize[mTrackCount];
81 memset(totalSize, 0, sizeof(totalSize));
82
83 do {
84 const int trackIndex = AMediaExtractor_getSampleTrackIndex(mExtractor);
85 totalSize[trackIndex] += AMediaExtractor_getSampleSize(mExtractor);
86 } while (AMediaExtractor_advance(mExtractor));
87
88 AMediaExtractor_seekTo(mExtractor, 0, AMEDIAEXTRACTOR_SEEK_PREVIOUS_SYNC);
89
90 std::vector<int32_t> bitrates;
91 for (int trackIndex = 0; trackIndex < mTrackCount; trackIndex++) {
92 int64_t durationUs;
93 AMediaFormat* trackFormat = AMediaExtractor_getTrackFormat(mExtractor, trackIndex);
94 EXPECT_NE(trackFormat, nullptr);
95 EXPECT_TRUE(AMediaFormat_getInt64(trackFormat, AMEDIAFORMAT_KEY_DURATION, &durationUs));
96 bitrates.push_back(roundf((float)totalSize[trackIndex] * 8 * 1000000 / durationUs));
97 }
98
99 return bitrates;
Linus Nilsson478df7e2020-01-29 15:34:24 -0800100 }
101
102 void TearDown() override {
103 LOG(DEBUG) << "MediaSampleReaderNDKTests tear down";
104 AMediaExtractor_delete(mExtractor);
105 close(mSourceFd);
106 }
107
108 ~MediaSampleReaderNDKTests() { LOG(DEBUG) << "MediaSampleReaderNDKTests destroyed"; }
109
110 AMediaExtractor* mExtractor = nullptr;
111 size_t mTrackCount;
112 int mSourceFd;
113 size_t mFileSize;
114 std::vector<std::vector<int64_t>> mExtractorTimestamps;
115};
116
117TEST_F(MediaSampleReaderNDKTests, TestSampleTimes) {
118 LOG(DEBUG) << "TestSampleTimes Starts";
119
120 std::shared_ptr<MediaSampleReader> sampleReader =
121 MediaSampleReaderNDK::createFromFd(mSourceFd, 0, mFileSize);
122 ASSERT_TRUE(sampleReader);
123
124 MediaSampleInfo info;
125 int trackEosCount = 0;
126 std::vector<bool> trackReachedEos(mTrackCount, false);
127 std::vector<std::vector<int64_t>> readerTimestamps(mTrackCount);
128
129 // Initialize the extractor timestamps.
130 initExtractorTimestamps();
131
132 // Read 5s of each track at a time.
133 const int64_t chunkDurationUs = SEC_TO_USEC(5);
134 int64_t chunkEndTimeUs = chunkDurationUs;
135
136 // Loop until all tracks have reached End Of Stream.
137 while (trackEosCount < mTrackCount) {
138 for (int trackIndex = 0; trackIndex < mTrackCount; trackIndex++) {
139 if (trackReachedEos[trackIndex]) continue;
140
141 // Advance current track to next chunk end time.
142 do {
143 media_status_t status = sampleReader->getSampleInfoForTrack(trackIndex, &info);
144 if (status != AMEDIA_OK) {
145 ASSERT_EQ(status, AMEDIA_ERROR_END_OF_STREAM);
146 ASSERT_TRUE((info.flags & SAMPLE_FLAG_END_OF_STREAM) != 0);
147 trackReachedEos[trackIndex] = true;
148 trackEosCount++;
149 break;
150 }
151 ASSERT_TRUE((info.flags & SAMPLE_FLAG_END_OF_STREAM) == 0);
152 readerTimestamps[trackIndex].push_back(info.presentationTimeUs);
153 sampleReader->advanceTrack(trackIndex);
154 } while (info.presentationTimeUs < chunkEndTimeUs);
155 }
156 chunkEndTimeUs += chunkDurationUs;
157 }
158
159 for (int trackIndex = 0; trackIndex < mTrackCount; trackIndex++) {
160 LOG(DEBUG) << "Track " << trackIndex << ", comparing "
161 << readerTimestamps[trackIndex].size() << " samples.";
162 ASSERT_EQ(readerTimestamps[trackIndex].size(), mExtractorTimestamps[trackIndex].size());
163 for (size_t sampleIndex = 0; sampleIndex < readerTimestamps[trackIndex].size();
164 sampleIndex++) {
165 ASSERT_EQ(readerTimestamps[trackIndex][sampleIndex],
166 mExtractorTimestamps[trackIndex][sampleIndex]);
167 }
168 }
169}
170
Linus Nilsson800793f2020-07-31 16:16:38 -0700171TEST_F(MediaSampleReaderNDKTests, TestEstimatedBitrateAccuracy) {
172 // Just put a somewhat reasonable upper bound on the estimated bitrate expected in our test
173 // assets. This is mostly to make sure the estimation is not way off.
174 static constexpr int32_t kMaxEstimatedBitrate = 100 * 1000 * 1000; // 100 Mbps
175
176 auto sampleReader = MediaSampleReaderNDK::createFromFd(mSourceFd, 0, mFileSize);
177 ASSERT_TRUE(sampleReader);
178
179 std::vector<int32_t> actualTrackBitrates = getTrackBitrates();
180 for (int trackIndex = 0; trackIndex < mTrackCount; ++trackIndex) {
181 int32_t bitrate;
182 EXPECT_EQ(sampleReader->getEstimatedBitrateForTrack(trackIndex, &bitrate), AMEDIA_OK);
183 EXPECT_GT(bitrate, 0);
184 EXPECT_LT(bitrate, kMaxEstimatedBitrate);
185
186 // Note: The test asset currently used in this test is shorter than the sampling duration
187 // used to estimate the bitrate in the sample reader. So for now the estimation should be
188 // exact but if/when a longer asset is used a reasonable delta needs to be defined.
189 EXPECT_EQ(bitrate, actualTrackBitrates[trackIndex]);
190 }
191}
192
Linus Nilsson478df7e2020-01-29 15:34:24 -0800193TEST_F(MediaSampleReaderNDKTests, TestInvalidFd) {
194 std::shared_ptr<MediaSampleReader> sampleReader =
195 MediaSampleReaderNDK::createFromFd(0, 0, mFileSize);
196 ASSERT_TRUE(sampleReader == nullptr);
197
198 sampleReader = MediaSampleReaderNDK::createFromFd(-1, 0, mFileSize);
199 ASSERT_TRUE(sampleReader == nullptr);
200}
201
202TEST_F(MediaSampleReaderNDKTests, TestZeroSize) {
203 std::shared_ptr<MediaSampleReader> sampleReader =
204 MediaSampleReaderNDK::createFromFd(mSourceFd, 0, 0);
205 ASSERT_TRUE(sampleReader == nullptr);
206}
207
208TEST_F(MediaSampleReaderNDKTests, TestInvalidOffset) {
209 std::shared_ptr<MediaSampleReader> sampleReader =
210 MediaSampleReaderNDK::createFromFd(mSourceFd, mFileSize, mFileSize);
211 ASSERT_TRUE(sampleReader == nullptr);
212}
213
214} // namespace android
215
216int main(int argc, char** argv) {
217 ::testing::InitGoogleTest(&argc, argv);
218 return RUN_ALL_TESTS();
219}