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Amyb4b68012019-10-15 17:38:19 -07001/*
2 * Copyright (C) 2019 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_TAG "android.hardware.tv.tuner@1.0-Dvr"
18
19#include "Dvr.h"
20#include <utils/Log.h>
21
22namespace android {
23namespace hardware {
24namespace tv {
25namespace tuner {
26namespace V1_0 {
27namespace implementation {
28
29#define WAIT_TIMEOUT 3000000000
30
31Dvr::Dvr() {}
32
33Dvr::Dvr(DvrType type, uint32_t bufferSize, const sp<IDvrCallback>& cb, sp<Demux> demux) {
34 mType = type;
35 mBufferSize = bufferSize;
36 mCallback = cb;
37 mDemux = demux;
38}
39
40Dvr::~Dvr() {}
41
42Return<void> Dvr::getQueueDesc(getQueueDesc_cb _hidl_cb) {
43 ALOGV("%s", __FUNCTION__);
44
45 _hidl_cb(Result::SUCCESS, *mDvrMQ->getDesc());
46 return Void();
47}
48
49Return<Result> Dvr::configure(const DvrSettings& settings) {
50 ALOGV("%s", __FUNCTION__);
51
52 mDvrSettings = settings;
53 mDvrConfigured = true;
54
55 return Result::SUCCESS;
56}
57
58Return<Result> Dvr::attachFilter(const sp<IFilter>& filter) {
59 ALOGV("%s", __FUNCTION__);
60
61 uint32_t filterId;
62 Result status;
63
64 filter->getId([&](Result result, uint32_t id) {
65 filterId = id;
66 status = result;
67 });
68
69 if (status != Result::SUCCESS) {
70 return status;
71 }
72
Amy Zhang6bda6392020-05-26 19:00:46 -070073 // TODO check if the attached filter is a record filter
Amy5ed13572019-12-11 15:33:51 -080074 if (!mDemux->attachRecordFilter(filterId)) {
75 return Result::INVALID_ARGUMENT;
76 }
Amyb4b68012019-10-15 17:38:19 -070077
78 return Result::SUCCESS;
79}
80
81Return<Result> Dvr::detachFilter(const sp<IFilter>& filter) {
82 ALOGV("%s", __FUNCTION__);
83
84 uint32_t filterId;
85 Result status;
86
87 filter->getId([&](Result result, uint32_t id) {
88 filterId = id;
89 status = result;
90 });
91
92 if (status != Result::SUCCESS) {
93 return status;
94 }
95
Amy Zhang6bda6392020-05-26 19:00:46 -070096 if (!mDemux->detachRecordFilter(filterId)) {
97 return Result::INVALID_ARGUMENT;
Amyb4b68012019-10-15 17:38:19 -070098 }
99
100 return Result::SUCCESS;
101}
102
103Return<Result> Dvr::start() {
104 ALOGV("%s", __FUNCTION__);
105
106 if (!mCallback) {
107 return Result::NOT_INITIALIZED;
108 }
109
110 if (!mDvrConfigured) {
111 return Result::INVALID_STATE;
112 }
113
114 if (mType == DvrType::PLAYBACK) {
115 pthread_create(&mDvrThread, NULL, __threadLoopPlayback, this);
116 pthread_setname_np(mDvrThread, "playback_waiting_loop");
117 } else if (mType == DvrType::RECORD) {
Amy5ed13572019-12-11 15:33:51 -0800118 mRecordStatus = RecordStatus::DATA_READY;
Amy Zhang6e8163a2020-04-24 15:41:21 -0700119 mDemux->setIsRecording(mType == DvrType::RECORD);
Amyb4b68012019-10-15 17:38:19 -0700120 }
121
122 // TODO start another thread to send filter status callback to the framework
123
124 return Result::SUCCESS;
125}
126
127Return<Result> Dvr::stop() {
128 ALOGV("%s", __FUNCTION__);
129
130 mDvrThreadRunning = false;
131
Amy Zhang85a9ab32020-06-19 16:44:52 -0700132 lock_guard<mutex> lock(mDvrThreadLock);
Amyb4b68012019-10-15 17:38:19 -0700133
Amy5ed13572019-12-11 15:33:51 -0800134 mIsRecordStarted = false;
Amy Zhang6e8163a2020-04-24 15:41:21 -0700135 mDemux->setIsRecording(false);
Amy5ed13572019-12-11 15:33:51 -0800136
Amyb4b68012019-10-15 17:38:19 -0700137 return Result::SUCCESS;
138}
139
140Return<Result> Dvr::flush() {
141 ALOGV("%s", __FUNCTION__);
142
Amy5ed13572019-12-11 15:33:51 -0800143 mRecordStatus = RecordStatus::DATA_READY;
144
Amyb4b68012019-10-15 17:38:19 -0700145 return Result::SUCCESS;
146}
147
148Return<Result> Dvr::close() {
149 ALOGV("%s", __FUNCTION__);
150
151 return Result::SUCCESS;
152}
153
154bool Dvr::createDvrMQ() {
155 ALOGV("%s", __FUNCTION__);
156
157 // Create a synchronized FMQ that supports blocking read/write
Amy Zhang85a9ab32020-06-19 16:44:52 -0700158 unique_ptr<DvrMQ> tmpDvrMQ = unique_ptr<DvrMQ>(new (nothrow) DvrMQ(mBufferSize, true));
Amyb4b68012019-10-15 17:38:19 -0700159 if (!tmpDvrMQ->isValid()) {
Amy Zhang6e8163a2020-04-24 15:41:21 -0700160 ALOGW("[Dvr] Failed to create FMQ of DVR");
Amyb4b68012019-10-15 17:38:19 -0700161 return false;
162 }
163
Amy Zhang85a9ab32020-06-19 16:44:52 -0700164 mDvrMQ = move(tmpDvrMQ);
Amyb4b68012019-10-15 17:38:19 -0700165
166 if (EventFlag::createEventFlag(mDvrMQ->getEventFlagWord(), &mDvrEventFlag) != OK) {
167 return false;
168 }
169
170 return true;
171}
172
Amy Zhang6bda6392020-05-26 19:00:46 -0700173EventFlag* Dvr::getDvrEventFlag() {
174 return mDvrEventFlag;
175}
176
Amyb4b68012019-10-15 17:38:19 -0700177void* Dvr::__threadLoopPlayback(void* user) {
178 Dvr* const self = static_cast<Dvr*>(user);
179 self->playbackThreadLoop();
180 return 0;
181}
182
183void Dvr::playbackThreadLoop() {
184 ALOGD("[Dvr] playback threadLoop start.");
Amy Zhang85a9ab32020-06-19 16:44:52 -0700185 lock_guard<mutex> lock(mDvrThreadLock);
Amyb4b68012019-10-15 17:38:19 -0700186 mDvrThreadRunning = true;
187
188 while (mDvrThreadRunning) {
189 uint32_t efState = 0;
190 status_t status =
191 mDvrEventFlag->wait(static_cast<uint32_t>(DemuxQueueNotifyBits::DATA_READY),
192 &efState, WAIT_TIMEOUT, true /* retry on spurious wake */);
193 if (status != OK) {
194 ALOGD("[Dvr] wait for data ready on the playback FMQ");
195 continue;
196 }
Amy Zhang85a9ab32020-06-19 16:44:52 -0700197
198 if (mDvrSettings.playback().dataFormat == DataFormat::ES) {
199 if (!processEsDataOnPlayback(false /*isVirtualFrontend*/, false /*isRecording*/)) {
200 ALOGE("[Dvr] playback es data failed to be filtered. Ending thread");
201 break;
202 }
203 maySendPlaybackStatusCallback();
204 }
Amyb4b68012019-10-15 17:38:19 -0700205 // Our current implementation filter the data and write it into the filter FMQ immediately
206 // after the DATA_READY from the VTS/framework
Amy Zhang6bda6392020-05-26 19:00:46 -0700207 if (!readPlaybackFMQ(false /*isVirtualFrontend*/, false /*isRecording*/) ||
208 !startFilterDispatcher(false /*isVirtualFrontend*/, false /*isRecording*/)) {
209 ALOGE("[Dvr] playback data failed to be filtered. Ending thread");
Amyb4b68012019-10-15 17:38:19 -0700210 break;
211 }
212
213 maySendPlaybackStatusCallback();
214 }
215
216 mDvrThreadRunning = false;
217 ALOGD("[Dvr] playback thread ended.");
218}
219
220void Dvr::maySendPlaybackStatusCallback() {
Amy Zhang85a9ab32020-06-19 16:44:52 -0700221 lock_guard<mutex> lock(mPlaybackStatusLock);
Amyb4b68012019-10-15 17:38:19 -0700222 int availableToRead = mDvrMQ->availableToRead();
223 int availableToWrite = mDvrMQ->availableToWrite();
224
225 PlaybackStatus newStatus = checkPlaybackStatusChange(availableToWrite, availableToRead,
226 mDvrSettings.playback().highThreshold,
227 mDvrSettings.playback().lowThreshold);
228 if (mPlaybackStatus != newStatus) {
229 mCallback->onPlaybackStatus(newStatus);
230 mPlaybackStatus = newStatus;
231 }
232}
233
234PlaybackStatus Dvr::checkPlaybackStatusChange(uint32_t availableToWrite, uint32_t availableToRead,
235 uint32_t highThreshold, uint32_t lowThreshold) {
236 if (availableToWrite == 0) {
237 return PlaybackStatus::SPACE_FULL;
238 } else if (availableToRead > highThreshold) {
239 return PlaybackStatus::SPACE_ALMOST_FULL;
240 } else if (availableToRead < lowThreshold) {
241 return PlaybackStatus::SPACE_ALMOST_EMPTY;
242 } else if (availableToRead == 0) {
243 return PlaybackStatus::SPACE_EMPTY;
244 }
245 return mPlaybackStatus;
246}
247
Amy Zhang6bda6392020-05-26 19:00:46 -0700248bool Dvr::readPlaybackFMQ(bool isVirtualFrontend, bool isRecording) {
Amyb4b68012019-10-15 17:38:19 -0700249 // Read playback data from the input FMQ
250 int size = mDvrMQ->availableToRead();
251 int playbackPacketSize = mDvrSettings.playback().packetSize;
252 vector<uint8_t> dataOutputBuffer;
253 dataOutputBuffer.resize(playbackPacketSize);
Amyb4b68012019-10-15 17:38:19 -0700254 // Dispatch the packet to the PID matching filter output buffer
255 for (int i = 0; i < size / playbackPacketSize; i++) {
256 if (!mDvrMQ->read(dataOutputBuffer.data(), playbackPacketSize)) {
257 return false;
258 }
Amy Zhang6bda6392020-05-26 19:00:46 -0700259 if (isVirtualFrontend) {
260 if (isRecording) {
261 mDemux->sendFrontendInputToRecord(dataOutputBuffer);
262 } else {
263 mDemux->startBroadcastTsFilter(dataOutputBuffer);
264 }
265 } else {
266 startTpidFilter(dataOutputBuffer);
267 }
Amyb4b68012019-10-15 17:38:19 -0700268 }
269
270 return true;
271}
272
Amy Zhang85a9ab32020-06-19 16:44:52 -0700273bool Dvr::processEsDataOnPlayback(bool isVirtualFrontend, bool isRecording) {
274 // Read ES from the DVR FMQ
275 // Note that currently we only provides ES with metaData in a specific format to be parsed.
276 // The ES size should be smaller than the Playback FMQ size to avoid reading truncated data.
277 int size = mDvrMQ->availableToRead();
278 vector<uint8_t> dataOutputBuffer;
279 dataOutputBuffer.resize(size);
280 if (!mDvrMQ->read(dataOutputBuffer.data(), size)) {
281 return false;
282 }
283
284 int metaDataSize = size;
285 int totalFrames = 0;
286 int videoEsDataSize = 0;
287 int audioEsDataSize = 0;
288 int audioPid = 0;
289 int videoPid = 0;
290
291 vector<MediaEsMetaData> esMeta;
292 int videoReadPointer = 0;
293 int audioReadPointer = 0;
294 int frameCount = 0;
295 // Get meta data from the es
296 for (int i = 0; i < metaDataSize; i++) {
297 switch (dataOutputBuffer[i]) {
298 case 'm':
299 metaDataSize = 0;
300 getMetaDataValue(i, dataOutputBuffer.data(), metaDataSize);
301 videoReadPointer = metaDataSize;
302 continue;
303 case 'l':
304 getMetaDataValue(i, dataOutputBuffer.data(), totalFrames);
305 esMeta.resize(totalFrames);
306 continue;
307 case 'V':
308 getMetaDataValue(i, dataOutputBuffer.data(), videoEsDataSize);
309 audioReadPointer = metaDataSize + videoEsDataSize;
310 continue;
311 case 'A':
312 getMetaDataValue(i, dataOutputBuffer.data(), audioEsDataSize);
313 continue;
314 case 'p':
315 if (dataOutputBuffer[++i] == 'a') {
316 getMetaDataValue(i, dataOutputBuffer.data(), audioPid);
317 } else if (dataOutputBuffer[i] == 'v') {
318 getMetaDataValue(i, dataOutputBuffer.data(), videoPid);
319 }
320 continue;
321 case 'v':
322 case 'a':
323 if (dataOutputBuffer[i + 1] != ',') {
324 ALOGE("[Dvr] Invalid format meta data.");
325 return false;
326 }
327 esMeta[frameCount] = {
328 .isAudio = dataOutputBuffer[i] == 'a' ? true : false,
329 };
330 i += 5; // Move to Len
331 getMetaDataValue(i, dataOutputBuffer.data(), esMeta[frameCount].len);
332 if (esMeta[frameCount].isAudio) {
333 esMeta[frameCount].startIndex = audioReadPointer;
334 audioReadPointer += esMeta[frameCount].len;
335 } else {
336 esMeta[frameCount].startIndex = videoReadPointer;
337 videoReadPointer += esMeta[frameCount].len;
338 }
339 i += 4; // move to PTS
340 getMetaDataValue(i, dataOutputBuffer.data(), esMeta[frameCount].pts);
341 frameCount++;
342 continue;
343 default:
344 continue;
345 }
346 }
347
348 if (frameCount != totalFrames) {
349 ALOGE("[Dvr] Invalid meta data, frameCount=%d, totalFrames reported=%d", frameCount,
350 totalFrames);
351 return false;
352 }
353
354 if (metaDataSize + audioEsDataSize + videoEsDataSize != size) {
355 ALOGE("[Dvr] Invalid meta data, metaSize=%d, videoSize=%d, audioSize=%d, totolSize=%d",
356 metaDataSize, videoEsDataSize, audioEsDataSize, size);
357 return false;
358 }
359
360 // Read es raw data from the FMQ per meta data built previously
361 vector<uint8_t> frameData;
362 map<uint32_t, sp<IFilter>>::iterator it;
363 int pid = 0;
364 for (int i = 0; i < totalFrames; i++) {
365 frameData.resize(esMeta[i].len);
366 pid = esMeta[i].isAudio ? audioPid : videoPid;
367 memcpy(dataOutputBuffer.data() + esMeta[i].startIndex, frameData.data(), esMeta[i].len);
368 // Send to the media filter
369 if (isVirtualFrontend && isRecording) {
370 // TODO validate record
371 mDemux->sendFrontendInputToRecord(frameData);
372 } else {
373 for (it = mFilters.begin(); it != mFilters.end(); it++) {
374 if (pid == mDemux->getFilterTpid(it->first)) {
375 mDemux->updateMediaFilterOutput(it->first, frameData,
376 static_cast<uint64_t>(esMeta[i].pts));
377 startFilterDispatcher(isVirtualFrontend, isRecording);
378 }
379 }
380 }
381 }
382
383 return true;
384}
385
386void Dvr::getMetaDataValue(int& index, uint8_t* dataOutputBuffer, int& value) {
387 index += 2; // Move the pointer across the ":" to the value
388 while (dataOutputBuffer[index] != ',' && dataOutputBuffer[index] != '\n') {
389 value = ((dataOutputBuffer[index++] - 48) + value * 10);
390 }
391}
392
Amyb4b68012019-10-15 17:38:19 -0700393void Dvr::startTpidFilter(vector<uint8_t> data) {
Amy Zhang85a9ab32020-06-19 16:44:52 -0700394 map<uint32_t, sp<IFilter>>::iterator it;
Amyb4b68012019-10-15 17:38:19 -0700395 for (it = mFilters.begin(); it != mFilters.end(); it++) {
396 uint16_t pid = ((data[1] & 0x1f) << 8) | ((data[2] & 0xff));
397 if (DEBUG_DVR) {
398 ALOGW("[Dvr] start ts filter pid: %d", pid);
399 }
400 if (pid == mDemux->getFilterTpid(it->first)) {
401 mDemux->updateFilterOutput(it->first, data);
402 }
403 }
404}
405
Amy Zhang6bda6392020-05-26 19:00:46 -0700406bool Dvr::startFilterDispatcher(bool isVirtualFrontend, bool isRecording) {
407 if (isVirtualFrontend) {
408 if (isRecording) {
409 return mDemux->startRecordFilterDispatcher();
410 } else {
411 return mDemux->startBroadcastFilterDispatcher();
412 }
413 }
414
Amy Zhang85a9ab32020-06-19 16:44:52 -0700415 map<uint32_t, sp<IFilter>>::iterator it;
Amyb4b68012019-10-15 17:38:19 -0700416 // Handle the output data per filter type
417 for (it = mFilters.begin(); it != mFilters.end(); it++) {
418 if (mDemux->startFilterHandler(it->first) != Result::SUCCESS) {
419 return false;
420 }
421 }
422
423 return true;
424}
425
Amy Zhang85a9ab32020-06-19 16:44:52 -0700426bool Dvr::writeRecordFMQ(const vector<uint8_t>& data) {
427 lock_guard<mutex> lock(mWriteLock);
Amy Zhang6e8163a2020-04-24 15:41:21 -0700428 if (mRecordStatus == RecordStatus::OVERFLOW) {
429 ALOGW("[Dvr] stops writing and wait for the client side flushing.");
430 return true;
431 }
Amy5ed13572019-12-11 15:33:51 -0800432 if (mDvrMQ->write(data.data(), data.size())) {
433 mDvrEventFlag->wake(static_cast<uint32_t>(DemuxQueueNotifyBits::DATA_READY));
434 maySendRecordStatusCallback();
435 return true;
436 }
437
438 maySendRecordStatusCallback();
439 return false;
440}
441
442void Dvr::maySendRecordStatusCallback() {
Amy Zhang85a9ab32020-06-19 16:44:52 -0700443 lock_guard<mutex> lock(mRecordStatusLock);
Amy5ed13572019-12-11 15:33:51 -0800444 int availableToRead = mDvrMQ->availableToRead();
445 int availableToWrite = mDvrMQ->availableToWrite();
446
447 RecordStatus newStatus = checkRecordStatusChange(availableToWrite, availableToRead,
448 mDvrSettings.record().highThreshold,
449 mDvrSettings.record().lowThreshold);
450 if (mRecordStatus != newStatus) {
451 mCallback->onRecordStatus(newStatus);
452 mRecordStatus = newStatus;
453 }
454}
455
456RecordStatus Dvr::checkRecordStatusChange(uint32_t availableToWrite, uint32_t availableToRead,
457 uint32_t highThreshold, uint32_t lowThreshold) {
458 if (availableToWrite == 0) {
459 return DemuxFilterStatus::OVERFLOW;
460 } else if (availableToRead > highThreshold) {
461 return DemuxFilterStatus::HIGH_WATER;
462 } else if (availableToRead < lowThreshold) {
463 return DemuxFilterStatus::LOW_WATER;
464 }
465 return mRecordStatus;
466}
467
Amy Zhang6bda6392020-05-26 19:00:46 -0700468bool Dvr::addPlaybackFilter(uint32_t filterId, sp<IFilter> filter) {
Amy Zhang6e8163a2020-04-24 15:41:21 -0700469 mFilters[filterId] = filter;
470 return true;
471}
472
Amy Zhang6bda6392020-05-26 19:00:46 -0700473bool Dvr::removePlaybackFilter(uint32_t filterId) {
474 mFilters.erase(filterId);
475 return true;
Amy Zhang6e8163a2020-04-24 15:41:21 -0700476}
Amyb4b68012019-10-15 17:38:19 -0700477} // namespace implementation
478} // namespace V1_0
479} // namespace tuner
480} // namespace tv
481} // namespace hardware
482} // namespace android