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Linus Nilsson0da327a2020-01-31 16:22:18 -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// #define LOG_NDEBUG 0
18#define LOG_TAG "VideoTrackTranscoder"
19
20#include <android-base/logging.h>
Linus Nilsson93591892020-08-03 18:56:55 -070021#include <media/NdkCommon.h>
Linus Nilsson0da327a2020-01-31 16:22:18 -080022#include <media/VideoTrackTranscoder.h>
Linus Nilssonb09aac22020-07-29 11:56:53 -070023#include <utils/AndroidThreads.h>
Linus Nilsson0da327a2020-01-31 16:22:18 -080024
Linus Nilsson7a127b22020-10-15 16:23:54 -070025using namespace AMediaFormatUtils;
26
Linus Nilsson0da327a2020-01-31 16:22:18 -080027namespace android {
28
29// Check that the codec sample flags have the expected NDK meaning.
30static_assert(SAMPLE_FLAG_CODEC_CONFIG == AMEDIACODEC_BUFFER_FLAG_CODEC_CONFIG,
31 "Sample flag mismatch: CODEC_CONFIG");
32static_assert(SAMPLE_FLAG_END_OF_STREAM == AMEDIACODEC_BUFFER_FLAG_END_OF_STREAM,
33 "Sample flag mismatch: END_OF_STREAM");
34static_assert(SAMPLE_FLAG_PARTIAL_FRAME == AMEDIACODEC_BUFFER_FLAG_PARTIAL_FRAME,
35 "Sample flag mismatch: PARTIAL_FRAME");
36
Linus Nilssoncab39d82020-05-14 16:32:21 -070037// Color format defined by surface. (See MediaCodecInfo.CodecCapabilities#COLOR_FormatSurface.)
38static constexpr int32_t kColorFormatSurface = 0x7f000789;
39// Default key frame interval in seconds.
40static constexpr float kDefaultKeyFrameIntervalSeconds = 1.0f;
Linus Nilsson7a127b22020-10-15 16:23:54 -070041// Default codec operating rate.
42static constexpr int32_t kDefaultCodecOperatingRate = 240;
43// Default codec priority.
44static constexpr int32_t kDefaultCodecPriority = 1;
45// Default bitrate, in case source estimation fails.
46static constexpr int32_t kDefaultBitrateMbps = 10 * 1000 * 1000;
Linus Nilssoncab39d82020-05-14 16:32:21 -070047
Linus Nilsson0da327a2020-01-31 16:22:18 -080048template <typename T>
49void VideoTrackTranscoder::BlockingQueue<T>::push(T const& value, bool front) {
50 {
Linus Nilsson93cf9132020-09-24 12:12:48 -070051 std::scoped_lock lock(mMutex);
52 if (mAborted) {
53 return;
54 }
55
Linus Nilsson0da327a2020-01-31 16:22:18 -080056 if (front) {
57 mQueue.push_front(value);
58 } else {
59 mQueue.push_back(value);
60 }
61 }
62 mCondition.notify_one();
63}
64
65template <typename T>
66T VideoTrackTranscoder::BlockingQueue<T>::pop() {
Linus Nilsson93cf9132020-09-24 12:12:48 -070067 std::unique_lock lock(mMutex);
Linus Nilsson0da327a2020-01-31 16:22:18 -080068 while (mQueue.empty()) {
69 mCondition.wait(lock);
70 }
71 T value = mQueue.front();
72 mQueue.pop_front();
73 return value;
74}
75
Linus Nilsson93cf9132020-09-24 12:12:48 -070076// Note: Do not call if another thread might waiting in pop.
77template <typename T>
78void VideoTrackTranscoder::BlockingQueue<T>::abort() {
79 std::scoped_lock lock(mMutex);
80 mAborted = true;
81 mQueue.clear();
82}
83
Linus Nilssone4716f22020-07-10 16:07:57 -070084// The CodecWrapper class is used to let AMediaCodec instances outlive the transcoder object itself
85// by giving the codec a weak pointer to the transcoder. Codecs wrapped in this object are kept
86// alive by the transcoder and the codec's outstanding buffers. Once the transcoder stops and all
87// output buffers have been released by downstream components the codec will also be released.
88class VideoTrackTranscoder::CodecWrapper {
89public:
90 CodecWrapper(AMediaCodec* codec, const std::weak_ptr<VideoTrackTranscoder>& transcoder)
91 : mCodec(codec), mTranscoder(transcoder), mCodecStarted(false) {}
92 ~CodecWrapper() {
93 if (mCodecStarted) {
94 AMediaCodec_stop(mCodec);
95 }
96 AMediaCodec_delete(mCodec);
97 }
98
99 AMediaCodec* getCodec() { return mCodec; }
100 std::shared_ptr<VideoTrackTranscoder> getTranscoder() const { return mTranscoder.lock(); };
101 void setStarted() { mCodecStarted = true; }
102
103private:
104 AMediaCodec* mCodec;
105 std::weak_ptr<VideoTrackTranscoder> mTranscoder;
106 bool mCodecStarted;
107};
108
Linus Nilsson0da327a2020-01-31 16:22:18 -0800109// Dispatch responses to codec callbacks onto the message queue.
110struct AsyncCodecCallbackDispatch {
111 static void onAsyncInputAvailable(AMediaCodec* codec, void* userdata, int32_t index) {
Linus Nilssone4716f22020-07-10 16:07:57 -0700112 VideoTrackTranscoder::CodecWrapper* wrapper =
113 static_cast<VideoTrackTranscoder::CodecWrapper*>(userdata);
114 if (auto transcoder = wrapper->getTranscoder()) {
115 if (codec == transcoder->mDecoder) {
116 transcoder->mCodecMessageQueue.push(
117 [transcoder, index] { transcoder->enqueueInputSample(index); });
118 }
Linus Nilsson0da327a2020-01-31 16:22:18 -0800119 }
120 }
121
122 static void onAsyncOutputAvailable(AMediaCodec* codec, void* userdata, int32_t index,
123 AMediaCodecBufferInfo* bufferInfoPtr) {
Linus Nilssone4716f22020-07-10 16:07:57 -0700124 VideoTrackTranscoder::CodecWrapper* wrapper =
125 static_cast<VideoTrackTranscoder::CodecWrapper*>(userdata);
Linus Nilsson0da327a2020-01-31 16:22:18 -0800126 AMediaCodecBufferInfo bufferInfo = *bufferInfoPtr;
Linus Nilssone4716f22020-07-10 16:07:57 -0700127 if (auto transcoder = wrapper->getTranscoder()) {
128 transcoder->mCodecMessageQueue.push([transcoder, index, codec, bufferInfo] {
129 if (codec == transcoder->mDecoder) {
130 transcoder->transferBuffer(index, bufferInfo);
131 } else if (codec == transcoder->mEncoder->getCodec()) {
132 transcoder->dequeueOutputSample(index, bufferInfo);
133 }
134 });
135 }
Linus Nilsson0da327a2020-01-31 16:22:18 -0800136 }
137
138 static void onAsyncFormatChanged(AMediaCodec* codec, void* userdata, AMediaFormat* format) {
Linus Nilssone4716f22020-07-10 16:07:57 -0700139 VideoTrackTranscoder::CodecWrapper* wrapper =
140 static_cast<VideoTrackTranscoder::CodecWrapper*>(userdata);
141 if (auto transcoder = wrapper->getTranscoder()) {
142 const char* kCodecName = (codec == transcoder->mDecoder ? "Decoder" : "Encoder");
143 LOG(DEBUG) << kCodecName << " format changed: " << AMediaFormat_toString(format);
144 if (codec == transcoder->mEncoder->getCodec()) {
145 transcoder->mCodecMessageQueue.push(
146 [transcoder, format] { transcoder->updateTrackFormat(format); });
147 }
Chong Zhanga2cc86b2020-06-17 16:56:49 -0700148 }
Linus Nilsson0da327a2020-01-31 16:22:18 -0800149 }
150
151 static void onAsyncError(AMediaCodec* codec, void* userdata, media_status_t error,
152 int32_t actionCode, const char* detail) {
153 LOG(ERROR) << "Error from codec " << codec << ", userdata " << userdata << ", error "
154 << error << ", action " << actionCode << ", detail " << detail;
Linus Nilssone4716f22020-07-10 16:07:57 -0700155 VideoTrackTranscoder::CodecWrapper* wrapper =
156 static_cast<VideoTrackTranscoder::CodecWrapper*>(userdata);
157 if (auto transcoder = wrapper->getTranscoder()) {
158 transcoder->mCodecMessageQueue.push(
Linus Nilssonfdb3e332020-09-18 17:11:41 -0700159 [transcoder, error] { transcoder->mStatus = error; }, true);
Linus Nilssone4716f22020-07-10 16:07:57 -0700160 }
Linus Nilsson0da327a2020-01-31 16:22:18 -0800161 }
162};
163
Linus Nilssone4716f22020-07-10 16:07:57 -0700164// static
165std::shared_ptr<VideoTrackTranscoder> VideoTrackTranscoder::create(
166 const std::weak_ptr<MediaTrackTranscoderCallback>& transcoderCallback) {
167 return std::shared_ptr<VideoTrackTranscoder>(new VideoTrackTranscoder(transcoderCallback));
168}
169
Linus Nilsson0da327a2020-01-31 16:22:18 -0800170VideoTrackTranscoder::~VideoTrackTranscoder() {
171 if (mDecoder != nullptr) {
172 AMediaCodec_delete(mDecoder);
173 }
174
Linus Nilsson0da327a2020-01-31 16:22:18 -0800175 if (mSurface != nullptr) {
176 ANativeWindow_release(mSurface);
177 }
178}
179
180// Creates and configures the codecs.
181media_status_t VideoTrackTranscoder::configureDestinationFormat(
182 const std::shared_ptr<AMediaFormat>& destinationFormat) {
183 media_status_t status = AMEDIA_OK;
184
185 if (destinationFormat == nullptr) {
Linus Nilssoncab39d82020-05-14 16:32:21 -0700186 LOG(ERROR) << "Destination format is null, use passthrough transcoder";
Linus Nilsson0da327a2020-01-31 16:22:18 -0800187 return AMEDIA_ERROR_INVALID_PARAMETER;
188 }
189
Linus Nilssoncab39d82020-05-14 16:32:21 -0700190 AMediaFormat* encoderFormat = AMediaFormat_new();
191 if (!encoderFormat || AMediaFormat_copy(encoderFormat, destinationFormat.get()) != AMEDIA_OK) {
192 LOG(ERROR) << "Unable to copy destination format";
193 return AMEDIA_ERROR_INVALID_PARAMETER;
194 }
195
Linus Nilsson800793f2020-07-31 16:16:38 -0700196 int32_t bitrate;
197 if (!AMediaFormat_getInt32(encoderFormat, AMEDIAFORMAT_KEY_BIT_RATE, &bitrate)) {
198 status = mMediaSampleReader->getEstimatedBitrateForTrack(mTrackIndex, &bitrate);
199 if (status != AMEDIA_OK) {
200 LOG(ERROR) << "Unable to estimate bitrate. Using default " << kDefaultBitrateMbps;
201 bitrate = kDefaultBitrateMbps;
202 }
203
204 LOG(INFO) << "Configuring bitrate " << bitrate;
205 AMediaFormat_setInt32(encoderFormat, AMEDIAFORMAT_KEY_BIT_RATE, bitrate);
206 }
207
Linus Nilsson7a127b22020-10-15 16:23:54 -0700208 SetDefaultFormatValueFloat(AMEDIAFORMAT_KEY_I_FRAME_INTERVAL, encoderFormat,
209 kDefaultKeyFrameIntervalSeconds);
210 SetDefaultFormatValueInt32(AMEDIAFORMAT_KEY_OPERATING_RATE, encoderFormat,
211 kDefaultCodecOperatingRate);
212 SetDefaultFormatValueInt32(AMEDIAFORMAT_KEY_PRIORITY, encoderFormat, kDefaultCodecPriority);
213
Linus Nilssoncab39d82020-05-14 16:32:21 -0700214 AMediaFormat_setInt32(encoderFormat, AMEDIAFORMAT_KEY_COLOR_FORMAT, kColorFormatSurface);
215
Chong Zhangd6e4aec2020-06-22 14:13:07 -0700216 // Always encode without rotation. The rotation degree will be transferred directly to
217 // MediaSampleWriter track format, and MediaSampleWriter will call AMediaMuxer_setOrientationHint.
218 AMediaFormat_setInt32(encoderFormat, AMEDIAFORMAT_KEY_ROTATION, 0);
219
Linus Nilssoncab39d82020-05-14 16:32:21 -0700220 mDestinationFormat = std::shared_ptr<AMediaFormat>(encoderFormat, &AMediaFormat_delete);
Linus Nilsson0da327a2020-01-31 16:22:18 -0800221
222 // Create and configure the encoder.
223 const char* destinationMime = nullptr;
224 bool ok = AMediaFormat_getString(mDestinationFormat.get(), AMEDIAFORMAT_KEY_MIME,
225 &destinationMime);
226 if (!ok) {
227 LOG(ERROR) << "Destination MIME type is required for transcoding.";
228 return AMEDIA_ERROR_INVALID_PARAMETER;
229 }
230
Linus Nilssonc6221db2020-03-18 14:46:22 -0700231 AMediaCodec* encoder = AMediaCodec_createEncoderByType(destinationMime);
232 if (encoder == nullptr) {
Linus Nilsson0da327a2020-01-31 16:22:18 -0800233 LOG(ERROR) << "Unable to create encoder for type " << destinationMime;
234 return AMEDIA_ERROR_UNSUPPORTED;
235 }
Linus Nilssone4716f22020-07-10 16:07:57 -0700236 mEncoder = std::make_shared<CodecWrapper>(encoder, shared_from_this());
Linus Nilsson0da327a2020-01-31 16:22:18 -0800237
Linus Nilssone4716f22020-07-10 16:07:57 -0700238 status = AMediaCodec_configure(mEncoder->getCodec(), mDestinationFormat.get(),
239 NULL /* surface */, NULL /* crypto */,
240 AMEDIACODEC_CONFIGURE_FLAG_ENCODE);
Linus Nilsson0da327a2020-01-31 16:22:18 -0800241 if (status != AMEDIA_OK) {
242 LOG(ERROR) << "Unable to configure video encoder: " << status;
243 return status;
244 }
245
Linus Nilssone4716f22020-07-10 16:07:57 -0700246 status = AMediaCodec_createInputSurface(mEncoder->getCodec(), &mSurface);
Linus Nilsson0da327a2020-01-31 16:22:18 -0800247 if (status != AMEDIA_OK) {
248 LOG(ERROR) << "Unable to create an encoder input surface: %d" << status;
249 return status;
250 }
251
252 // Create and configure the decoder.
253 const char* sourceMime = nullptr;
254 ok = AMediaFormat_getString(mSourceFormat.get(), AMEDIAFORMAT_KEY_MIME, &sourceMime);
255 if (!ok) {
256 LOG(ERROR) << "Source MIME type is required for transcoding.";
257 return AMEDIA_ERROR_INVALID_PARAMETER;
258 }
259
260 mDecoder = AMediaCodec_createDecoderByType(sourceMime);
261 if (mDecoder == nullptr) {
262 LOG(ERROR) << "Unable to create decoder for type " << sourceMime;
263 return AMEDIA_ERROR_UNSUPPORTED;
264 }
265
Linus Nilsson93591892020-08-03 18:56:55 -0700266 auto decoderFormat = std::shared_ptr<AMediaFormat>(AMediaFormat_new(), &AMediaFormat_delete);
267 if (!decoderFormat ||
268 AMediaFormat_copy(decoderFormat.get(), mSourceFormat.get()) != AMEDIA_OK) {
269 LOG(ERROR) << "Unable to copy source format";
270 return AMEDIA_ERROR_INVALID_PARAMETER;
271 }
272
273 // Prevent decoder from overwriting frames that the encoder has not yet consumed.
274 AMediaFormat_setInt32(decoderFormat.get(), TBD_AMEDIACODEC_PARAMETER_KEY_ALLOW_FRAME_DROP, 0);
275
Linus Nilsson16d772b2020-09-29 19:21:11 -0700276 // Copy over configurations that apply to both encoder and decoder.
Linus Nilsson7a127b22020-10-15 16:23:54 -0700277 static const EntryCopier kEncoderEntriesToCopy[] = {
Linus Nilsson16d772b2020-09-29 19:21:11 -0700278 ENTRY_COPIER2(AMEDIAFORMAT_KEY_OPERATING_RATE, Float, Int32),
279 ENTRY_COPIER(AMEDIAFORMAT_KEY_PRIORITY, Int32),
280 };
281 const size_t entryCount = sizeof(kEncoderEntriesToCopy) / sizeof(kEncoderEntriesToCopy[0]);
Linus Nilsson7a127b22020-10-15 16:23:54 -0700282 CopyFormatEntries(mDestinationFormat.get(), decoderFormat.get(), kEncoderEntriesToCopy,
283 entryCount);
Linus Nilsson16d772b2020-09-29 19:21:11 -0700284
Linus Nilsson93591892020-08-03 18:56:55 -0700285 status = AMediaCodec_configure(mDecoder, decoderFormat.get(), mSurface, NULL /* crypto */,
Linus Nilsson0da327a2020-01-31 16:22:18 -0800286 0 /* flags */);
287 if (status != AMEDIA_OK) {
288 LOG(ERROR) << "Unable to configure video decoder: " << status;
289 return status;
290 }
291
292 // Configure codecs to run in async mode.
293 AMediaCodecOnAsyncNotifyCallback asyncCodecCallbacks = {
294 .onAsyncInputAvailable = AsyncCodecCallbackDispatch::onAsyncInputAvailable,
295 .onAsyncOutputAvailable = AsyncCodecCallbackDispatch::onAsyncOutputAvailable,
296 .onAsyncFormatChanged = AsyncCodecCallbackDispatch::onAsyncFormatChanged,
297 .onAsyncError = AsyncCodecCallbackDispatch::onAsyncError};
298
Linus Nilssone4716f22020-07-10 16:07:57 -0700299 // Note: The decoder does not need its own wrapper because its lifetime is tied to the
300 // transcoder. But the same callbacks are reused for decoder and encoder so we pass the encoder
301 // wrapper as userdata here but never read the codec from it in the callback.
302 status = AMediaCodec_setAsyncNotifyCallback(mDecoder, asyncCodecCallbacks, mEncoder.get());
Linus Nilsson0da327a2020-01-31 16:22:18 -0800303 if (status != AMEDIA_OK) {
304 LOG(ERROR) << "Unable to set decoder to async mode: " << status;
305 return status;
306 }
307
Linus Nilssone4716f22020-07-10 16:07:57 -0700308 status = AMediaCodec_setAsyncNotifyCallback(mEncoder->getCodec(), asyncCodecCallbacks,
309 mEncoder.get());
Linus Nilsson0da327a2020-01-31 16:22:18 -0800310 if (status != AMEDIA_OK) {
311 LOG(ERROR) << "Unable to set encoder to async mode: " << status;
312 return status;
313 }
314
315 return AMEDIA_OK;
316}
317
318void VideoTrackTranscoder::enqueueInputSample(int32_t bufferIndex) {
319 media_status_t status = AMEDIA_OK;
320
Linus Nilssonc6221db2020-03-18 14:46:22 -0700321 if (mEosFromSource) {
Linus Nilsson0da327a2020-01-31 16:22:18 -0800322 return;
323 }
324
325 status = mMediaSampleReader->getSampleInfoForTrack(mTrackIndex, &mSampleInfo);
326 if (status != AMEDIA_OK && status != AMEDIA_ERROR_END_OF_STREAM) {
327 LOG(ERROR) << "Error getting next sample info: " << status;
328 mStatus = status;
329 return;
330 }
331 const bool endOfStream = (status == AMEDIA_ERROR_END_OF_STREAM);
332
333 if (!endOfStream) {
334 size_t bufferSize = 0;
335 uint8_t* sourceBuffer = AMediaCodec_getInputBuffer(mDecoder, bufferIndex, &bufferSize);
336 if (sourceBuffer == nullptr) {
337 LOG(ERROR) << "Decoder returned a NULL input buffer.";
338 mStatus = AMEDIA_ERROR_UNKNOWN;
339 return;
340 } else if (bufferSize < mSampleInfo.size) {
341 LOG(ERROR) << "Decoder returned an input buffer that is smaller than the sample.";
342 mStatus = AMEDIA_ERROR_UNKNOWN;
343 return;
344 }
345
346 status = mMediaSampleReader->readSampleDataForTrack(mTrackIndex, sourceBuffer,
347 mSampleInfo.size);
348 if (status != AMEDIA_OK) {
349 LOG(ERROR) << "Unable to read next sample data. Aborting transcode.";
350 mStatus = status;
351 return;
352 }
Linus Nilsson0da327a2020-01-31 16:22:18 -0800353 } else {
354 LOG(DEBUG) << "EOS from source.";
Linus Nilssonc6221db2020-03-18 14:46:22 -0700355 mEosFromSource = true;
Linus Nilsson0da327a2020-01-31 16:22:18 -0800356 }
357
358 status = AMediaCodec_queueInputBuffer(mDecoder, bufferIndex, 0, mSampleInfo.size,
359 mSampleInfo.presentationTimeUs, mSampleInfo.flags);
360 if (status != AMEDIA_OK) {
361 LOG(ERROR) << "Unable to queue input buffer for decode: " << status;
362 mStatus = status;
363 return;
364 }
365}
366
367void VideoTrackTranscoder::transferBuffer(int32_t bufferIndex, AMediaCodecBufferInfo bufferInfo) {
368 if (bufferIndex >= 0) {
369 bool needsRender = bufferInfo.size > 0;
370 AMediaCodec_releaseOutputBuffer(mDecoder, bufferIndex, needsRender);
371 }
372
373 if (bufferInfo.flags & AMEDIACODEC_BUFFER_FLAG_END_OF_STREAM) {
374 LOG(DEBUG) << "EOS from decoder.";
Linus Nilssone4716f22020-07-10 16:07:57 -0700375 media_status_t status = AMediaCodec_signalEndOfInputStream(mEncoder->getCodec());
Linus Nilsson0da327a2020-01-31 16:22:18 -0800376 if (status != AMEDIA_OK) {
377 LOG(ERROR) << "SignalEOS on encoder returned error: " << status;
378 mStatus = status;
379 }
380 }
381}
382
383void VideoTrackTranscoder::dequeueOutputSample(int32_t bufferIndex,
384 AMediaCodecBufferInfo bufferInfo) {
385 if (bufferIndex >= 0) {
386 size_t sampleSize = 0;
Linus Nilssone4716f22020-07-10 16:07:57 -0700387 uint8_t* buffer =
388 AMediaCodec_getOutputBuffer(mEncoder->getCodec(), bufferIndex, &sampleSize);
Linus Nilssonc6221db2020-03-18 14:46:22 -0700389
Linus Nilssone4716f22020-07-10 16:07:57 -0700390 MediaSample::OnSampleReleasedCallback bufferReleaseCallback =
391 [encoder = mEncoder](MediaSample* sample) {
392 AMediaCodec_releaseOutputBuffer(encoder->getCodec(), sample->bufferId,
393 false /* render */);
394 };
Linus Nilsson0da327a2020-01-31 16:22:18 -0800395
396 std::shared_ptr<MediaSample> sample = MediaSample::createWithReleaseCallback(
Linus Nilssonc6221db2020-03-18 14:46:22 -0700397 buffer, bufferInfo.offset, bufferIndex, bufferReleaseCallback);
Linus Nilsson0da327a2020-01-31 16:22:18 -0800398 sample->info.size = bufferInfo.size;
399 sample->info.flags = bufferInfo.flags;
400 sample->info.presentationTimeUs = bufferInfo.presentationTimeUs;
401
Linus Nilssonc31d2492020-09-23 12:30:00 -0700402 onOutputSampleAvailable(sample);
Linus Nilssonfdb3e332020-09-18 17:11:41 -0700403
404 mLastSampleWasSync = sample->info.flags & SAMPLE_FLAG_SYNC_SAMPLE;
Linus Nilsson0da327a2020-01-31 16:22:18 -0800405 } else if (bufferIndex == AMEDIACODEC_INFO_OUTPUT_FORMAT_CHANGED) {
Linus Nilssone4716f22020-07-10 16:07:57 -0700406 AMediaFormat* newFormat = AMediaCodec_getOutputFormat(mEncoder->getCodec());
Linus Nilsson0da327a2020-01-31 16:22:18 -0800407 LOG(DEBUG) << "Encoder output format changed: " << AMediaFormat_toString(newFormat);
408 }
409
410 if (bufferInfo.flags & AMEDIACODEC_BUFFER_FLAG_END_OF_STREAM) {
411 LOG(DEBUG) << "EOS from encoder.";
Linus Nilssonc6221db2020-03-18 14:46:22 -0700412 mEosFromEncoder = true;
Linus Nilsson0da327a2020-01-31 16:22:18 -0800413 }
414}
415
Chong Zhanga2cc86b2020-06-17 16:56:49 -0700416void VideoTrackTranscoder::updateTrackFormat(AMediaFormat* outputFormat) {
417 if (mActualOutputFormat != nullptr) {
418 LOG(WARNING) << "Ignoring duplicate format change.";
419 return;
420 }
421
422 AMediaFormat* formatCopy = AMediaFormat_new();
423 if (!formatCopy || AMediaFormat_copy(formatCopy, outputFormat) != AMEDIA_OK) {
424 LOG(ERROR) << "Unable to copy outputFormat";
425 AMediaFormat_delete(formatCopy);
426 mStatus = AMEDIA_ERROR_INVALID_PARAMETER;
427 return;
428 }
429
430 // Generate the actual track format for muxer based on the encoder output format,
431 // since many vital information comes in the encoder format (eg. CSD).
432 // Transfer necessary fields from the user-configured track format (derived from
433 // source track format and user transcoding request) where needed.
434
435 // Transfer SAR settings:
436 // If mDestinationFormat has SAR set, it means the original source has SAR specified
437 // at container level. This is supposed to override any SAR settings in the bitstream,
438 // thus should always be transferred to the container of the transcoded file.
439 int32_t sarWidth, sarHeight;
Chong Zhangd6e4aec2020-06-22 14:13:07 -0700440 if (AMediaFormat_getInt32(mSourceFormat.get(), AMEDIAFORMAT_KEY_SAR_WIDTH, &sarWidth) &&
Chong Zhanga2cc86b2020-06-17 16:56:49 -0700441 (sarWidth > 0) &&
Chong Zhangd6e4aec2020-06-22 14:13:07 -0700442 AMediaFormat_getInt32(mSourceFormat.get(), AMEDIAFORMAT_KEY_SAR_HEIGHT, &sarHeight) &&
Chong Zhanga2cc86b2020-06-17 16:56:49 -0700443 (sarHeight > 0)) {
444 AMediaFormat_setInt32(formatCopy, AMEDIAFORMAT_KEY_SAR_WIDTH, sarWidth);
445 AMediaFormat_setInt32(formatCopy, AMEDIAFORMAT_KEY_SAR_HEIGHT, sarHeight);
446 }
447 // Transfer DAR settings.
448 int32_t displayWidth, displayHeight;
Chong Zhangd6e4aec2020-06-22 14:13:07 -0700449 if (AMediaFormat_getInt32(mSourceFormat.get(), AMEDIAFORMAT_KEY_DISPLAY_WIDTH, &displayWidth) &&
Chong Zhanga2cc86b2020-06-17 16:56:49 -0700450 (displayWidth > 0) &&
Chong Zhangd6e4aec2020-06-22 14:13:07 -0700451 AMediaFormat_getInt32(mSourceFormat.get(), AMEDIAFORMAT_KEY_DISPLAY_HEIGHT,
Chong Zhanga2cc86b2020-06-17 16:56:49 -0700452 &displayHeight) &&
453 (displayHeight > 0)) {
454 AMediaFormat_setInt32(formatCopy, AMEDIAFORMAT_KEY_DISPLAY_WIDTH, displayWidth);
455 AMediaFormat_setInt32(formatCopy, AMEDIAFORMAT_KEY_DISPLAY_HEIGHT, displayHeight);
456 }
457
Chong Zhangd6e4aec2020-06-22 14:13:07 -0700458 // Transfer rotation settings.
459 // Note that muxer itself doesn't take rotation from the track format. It requires
460 // AMediaMuxer_setOrientationHint to set the rotation. Here we pass the rotation to
461 // MediaSampleWriter using the track format. MediaSampleWriter will then call
462 // AMediaMuxer_setOrientationHint as needed.
463 int32_t rotation;
464 if (AMediaFormat_getInt32(mSourceFormat.get(), AMEDIAFORMAT_KEY_ROTATION, &rotation) &&
465 (rotation != 0)) {
466 AMediaFormat_setInt32(formatCopy, AMEDIAFORMAT_KEY_ROTATION, rotation);
467 }
468
Linus Nilsson42a971b2020-07-01 16:41:11 -0700469 // Transfer track duration.
470 // Preserve the source track duration by sending it to MediaSampleWriter.
471 int64_t durationUs;
472 if (AMediaFormat_getInt64(mSourceFormat.get(), AMEDIAFORMAT_KEY_DURATION, &durationUs) &&
473 durationUs > 0) {
474 AMediaFormat_setInt64(formatCopy, AMEDIAFORMAT_KEY_DURATION, durationUs);
475 }
476
Chong Zhanga2cc86b2020-06-17 16:56:49 -0700477 // TODO: transfer other fields as required.
478
479 mActualOutputFormat = std::shared_ptr<AMediaFormat>(formatCopy, &AMediaFormat_delete);
480
481 notifyTrackFormatAvailable();
482}
483
Linus Nilssonfdb3e332020-09-18 17:11:41 -0700484media_status_t VideoTrackTranscoder::runTranscodeLoop(bool* stopped) {
Linus Nilssonb09aac22020-07-29 11:56:53 -0700485 androidSetThreadPriority(0 /* tid (0 = current) */, ANDROID_PRIORITY_VIDEO);
486
Chong Zhangb55c5452020-06-26 14:32:12 -0700487 // Push start decoder and encoder as two messages, so that these are subject to the
Chong Zhangbc062482020-10-14 16:43:53 -0700488 // stop request as well. If the session is cancelled (or paused) immediately after start,
Chong Zhangb55c5452020-06-26 14:32:12 -0700489 // we don't need to waste time start then stop the codecs.
490 mCodecMessageQueue.push([this] {
491 media_status_t status = AMediaCodec_start(mDecoder);
492 if (status != AMEDIA_OK) {
493 LOG(ERROR) << "Unable to start video decoder: " << status;
494 mStatus = status;
495 }
496 });
Linus Nilsson0da327a2020-01-31 16:22:18 -0800497
Chong Zhangb55c5452020-06-26 14:32:12 -0700498 mCodecMessageQueue.push([this] {
Linus Nilssone4716f22020-07-10 16:07:57 -0700499 media_status_t status = AMediaCodec_start(mEncoder->getCodec());
Chong Zhangb55c5452020-06-26 14:32:12 -0700500 if (status != AMEDIA_OK) {
501 LOG(ERROR) << "Unable to start video encoder: " << status;
502 mStatus = status;
503 }
Linus Nilssone4716f22020-07-10 16:07:57 -0700504 mEncoder->setStarted();
Chong Zhangb55c5452020-06-26 14:32:12 -0700505 });
Linus Nilsson0da327a2020-01-31 16:22:18 -0800506
507 // Process codec events until EOS is reached, transcoding is stopped or an error occurs.
Linus Nilssonfdb3e332020-09-18 17:11:41 -0700508 while (mStopRequest != STOP_NOW && !mEosFromEncoder && mStatus == AMEDIA_OK) {
Linus Nilsson0da327a2020-01-31 16:22:18 -0800509 std::function<void()> message = mCodecMessageQueue.pop();
510 message();
Linus Nilssonfdb3e332020-09-18 17:11:41 -0700511
512 if (mStopRequest == STOP_ON_SYNC && mLastSampleWasSync) {
513 break;
514 }
Linus Nilsson0da327a2020-01-31 16:22:18 -0800515 }
516
Linus Nilsson93cf9132020-09-24 12:12:48 -0700517 mCodecMessageQueue.abort();
518 AMediaCodec_stop(mDecoder);
519
Linus Nilssonfdb3e332020-09-18 17:11:41 -0700520 // Signal if transcoding was stopped before it finished.
521 if (mStopRequest != NONE && !mEosFromEncoder && mStatus == AMEDIA_OK) {
522 *stopped = true;
Linus Nilsson0da327a2020-01-31 16:22:18 -0800523 }
524
Linus Nilsson0da327a2020-01-31 16:22:18 -0800525 return mStatus;
526}
527
528void VideoTrackTranscoder::abortTranscodeLoop() {
Linus Nilssonfdb3e332020-09-18 17:11:41 -0700529 if (mStopRequest == STOP_NOW) {
530 // Wake up transcoder thread.
531 mCodecMessageQueue.push([] {}, true /* front */);
532 }
Linus Nilsson0da327a2020-01-31 16:22:18 -0800533}
534
Linus Nilssoncab39d82020-05-14 16:32:21 -0700535std::shared_ptr<AMediaFormat> VideoTrackTranscoder::getOutputFormat() const {
Chong Zhanga2cc86b2020-06-17 16:56:49 -0700536 return mActualOutputFormat;
Linus Nilssoncab39d82020-05-14 16:32:21 -0700537}
538
Linus Nilsson0da327a2020-01-31 16:22:18 -0800539} // namespace android