mirror of
https://github.com/Evolution-X/hardware_interfaces
synced 2026-02-02 23:48:30 +00:00
346 lines
9.4 KiB
C++
346 lines
9.4 KiB
C++
/*
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* Copyright (C) 2019 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#define LOG_TAG "android.hardware.tv.tuner@1.0-Demux"
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#include "Demux.h"
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#include <utils/Log.h>
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namespace android {
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namespace hardware {
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namespace tv {
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namespace tuner {
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namespace V1_0 {
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namespace implementation {
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#define WAIT_TIMEOUT 3000000000
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Demux::Demux(uint32_t demuxId, sp<Tuner> tuner) {
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mDemuxId = demuxId;
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mTunerService = tuner;
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}
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Demux::~Demux() {}
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Return<Result> Demux::setFrontendDataSource(uint32_t frontendId) {
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ALOGV("%s", __FUNCTION__);
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if (mTunerService == nullptr) {
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return Result::NOT_INITIALIZED;
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}
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mFrontend = mTunerService->getFrontendById(frontendId);
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if (mFrontend == nullptr) {
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return Result::INVALID_STATE;
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}
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mFrontendSourceFile = mFrontend->getSourceFile();
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mTunerService->setFrontendAsDemuxSource(frontendId, mDemuxId);
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return startFrontendInputLoop();
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}
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Return<void> Demux::openFilter(const DemuxFilterType& type, uint32_t bufferSize,
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const sp<IFilterCallback>& cb, openFilter_cb _hidl_cb) {
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ALOGV("%s", __FUNCTION__);
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uint32_t filterId;
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if (!mUnusedFilterIds.empty()) {
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filterId = *mUnusedFilterIds.begin();
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mUnusedFilterIds.erase(filterId);
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} else {
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filterId = ++mLastUsedFilterId;
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}
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mUsedFilterIds.insert(filterId);
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if (cb == nullptr) {
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ALOGW("callback can't be null");
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_hidl_cb(Result::INVALID_ARGUMENT, new Filter());
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return Void();
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}
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sp<Filter> filter = new Filter(type, filterId, bufferSize, cb, this);
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if (!filter->createFilterMQ()) {
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_hidl_cb(Result::UNKNOWN_ERROR, filter);
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return Void();
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}
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mFilters[filterId] = filter;
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_hidl_cb(Result::SUCCESS, filter);
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return Void();
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}
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Return<void> Demux::openTimeFilter(openTimeFilter_cb _hidl_cb) {
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ALOGV("%s", __FUNCTION__);
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sp<TimeFilter> timeFilter = new TimeFilter(this);
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_hidl_cb(Result::SUCCESS, timeFilter);
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return Void();
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}
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Return<void> Demux::getAvSyncHwId(const sp<IFilter>& /* filter */, getAvSyncHwId_cb _hidl_cb) {
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ALOGV("%s", __FUNCTION__);
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AvSyncHwId avSyncHwId = 0;
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_hidl_cb(Result::SUCCESS, avSyncHwId);
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return Void();
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}
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Return<void> Demux::getAvSyncTime(AvSyncHwId /* avSyncHwId */, getAvSyncTime_cb _hidl_cb) {
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ALOGV("%s", __FUNCTION__);
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uint64_t avSyncTime = 0;
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_hidl_cb(Result::SUCCESS, avSyncTime);
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return Void();
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}
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Return<Result> Demux::close() {
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ALOGV("%s", __FUNCTION__);
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mUnusedFilterIds.clear();
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mUsedFilterIds.clear();
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mLastUsedFilterId = -1;
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return Result::SUCCESS;
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}
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Return<void> Demux::openDvr(DvrType type, uint32_t bufferSize, const sp<IDvrCallback>& cb,
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openDvr_cb _hidl_cb) {
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ALOGV("%s", __FUNCTION__);
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if (cb == nullptr) {
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ALOGW("DVR callback can't be null");
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_hidl_cb(Result::INVALID_ARGUMENT, new Dvr());
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return Void();
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}
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mDvr = new Dvr(type, bufferSize, cb, this);
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if (!mDvr->createDvrMQ()) {
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_hidl_cb(Result::UNKNOWN_ERROR, mDvr);
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return Void();
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}
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_hidl_cb(Result::SUCCESS, mDvr);
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return Void();
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}
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Return<Result> Demux::connectCiCam(uint32_t ciCamId) {
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ALOGV("%s", __FUNCTION__);
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mCiCamId = ciCamId;
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return Result::SUCCESS;
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}
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Return<Result> Demux::disconnectCiCam() {
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ALOGV("%s", __FUNCTION__);
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return Result::SUCCESS;
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}
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Result Demux::removeFilter(uint32_t filterId) {
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ALOGV("%s", __FUNCTION__);
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// resetFilterRecords(filterId);
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mUsedFilterIds.erase(filterId);
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mRecordFilterIds.erase(filterId);
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mUnusedFilterIds.insert(filterId);
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mFilters.erase(filterId);
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return Result::SUCCESS;
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}
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void Demux::startBroadcastTsFilter(vector<uint8_t> data) {
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set<uint32_t>::iterator it;
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for (it = mUsedFilterIds.begin(); it != mUsedFilterIds.end(); it++) {
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uint16_t pid = ((data[1] & 0x1f) << 8) | ((data[2] & 0xff));
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if (DEBUG_FILTER) {
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ALOGW("start ts filter pid: %d", pid);
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}
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if (pid == mFilters[*it]->getTpid()) {
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mFilters[*it]->updateFilterOutput(data);
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}
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}
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}
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void Demux::sendFrontendInputToRecord(vector<uint8_t> data) {
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set<uint32_t>::iterator it;
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for (it = mRecordFilterIds.begin(); it != mRecordFilterIds.end(); it++) {
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if (DEBUG_FILTER) {
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ALOGW("update record filter output");
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}
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mFilters[*it]->updateRecordOutput(data);
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}
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}
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bool Demux::startBroadcastFilterDispatcher() {
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set<uint32_t>::iterator it;
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// Handle the output data per filter type
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for (it = mUsedFilterIds.begin(); it != mUsedFilterIds.end(); it++) {
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if (mFilters[*it]->startFilterHandler() != Result::SUCCESS) {
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return false;
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}
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}
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return true;
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}
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bool Demux::startRecordFilterDispatcher() {
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set<uint32_t>::iterator it;
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for (it = mRecordFilterIds.begin(); it != mRecordFilterIds.end(); it++) {
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if (mFilters[*it]->startRecordFilterHandler() != Result::SUCCESS) {
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return false;
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}
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}
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return true;
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}
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Result Demux::startFilterHandler(uint32_t filterId) {
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return mFilters[filterId]->startFilterHandler();
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}
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void Demux::updateFilterOutput(uint16_t filterId, vector<uint8_t> data) {
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mFilters[filterId]->updateFilterOutput(data);
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}
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uint16_t Demux::getFilterTpid(uint32_t filterId) {
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return mFilters[filterId]->getTpid();
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}
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Result Demux::startFrontendInputLoop() {
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pthread_create(&mFrontendInputThread, NULL, __threadLoopFrontend, this);
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pthread_setname_np(mFrontendInputThread, "frontend_input_thread");
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return Result::SUCCESS;
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}
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void* Demux::__threadLoopFrontend(void* user) {
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Demux* const self = static_cast<Demux*>(user);
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self->frontendInputThreadLoop();
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return 0;
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}
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void Demux::frontendInputThreadLoop() {
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std::lock_guard<std::mutex> lock(mFrontendInputThreadLock);
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mFrontendInputThreadRunning = true;
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mKeepFetchingDataFromFrontend = true;
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// open the stream and get its length
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std::ifstream inputData(mFrontendSourceFile, std::ifstream::binary);
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// TODO take the packet size from the frontend setting
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int packetSize = 188;
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int writePacketAmount = 6;
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char* buffer = new char[packetSize];
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ALOGW("[Demux] Frontend input thread loop start %s", mFrontendSourceFile.c_str());
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if (!inputData.is_open()) {
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mFrontendInputThreadRunning = false;
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ALOGW("[Demux] Error %s", strerror(errno));
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}
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while (mFrontendInputThreadRunning) {
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// move the stream pointer for packet size * 6 every read until the end
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while (mKeepFetchingDataFromFrontend) {
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for (int i = 0; i < writePacketAmount; i++) {
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inputData.read(buffer, packetSize);
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if (!inputData) {
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mKeepFetchingDataFromFrontend = false;
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mFrontendInputThreadRunning = false;
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break;
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}
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// filter and dispatch filter output
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vector<uint8_t> byteBuffer;
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byteBuffer.resize(packetSize);
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for (int index = 0; index < byteBuffer.size(); index++) {
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byteBuffer[index] = static_cast<uint8_t>(buffer[index]);
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}
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if (mIsRecording) {
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// Feed the data into the Dvr recording input
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sendFrontendInputToRecord(byteBuffer);
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} else {
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// Feed the data into the broadcast demux filter
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startBroadcastTsFilter(byteBuffer);
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}
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}
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if (mIsRecording) {
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// Dispatch the data into the broadcasting filters.
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startRecordFilterDispatcher();
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} else {
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// Dispatch the data into the broadcasting filters.
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startBroadcastFilterDispatcher();
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}
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usleep(100);
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}
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}
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ALOGW("[Demux] Frontend Input thread end.");
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delete[] buffer;
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inputData.close();
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}
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void Demux::stopFrontendInput() {
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ALOGD("[Demux] stop frontend on demux");
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mKeepFetchingDataFromFrontend = false;
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mFrontendInputThreadRunning = false;
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std::lock_guard<std::mutex> lock(mFrontendInputThreadLock);
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}
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void Demux::setIsRecording(bool isRecording) {
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mIsRecording = isRecording;
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}
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bool Demux::attachRecordFilter(int filterId) {
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if (mFilters[filterId] == nullptr || mDvr == nullptr) {
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return false;
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}
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mRecordFilterIds.insert(filterId);
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mFilters[filterId]->attachFilterToRecord(mDvr);
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return true;
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}
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bool Demux::detachRecordFilter(int filterId) {
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if (mFilters[filterId] == nullptr || mDvr == nullptr) {
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return false;
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}
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mRecordFilterIds.erase(filterId);
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mFilters[filterId]->detachFilterFromRecord();
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return true;
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}
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} // namespace implementation
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} // namespace V1_0
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} // namespace tuner
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} // namespace tv
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} // namespace hardware
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} // namespace android
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