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534 lines
17 KiB
534 lines
17 KiB
/* |
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* Copyright (C) 2016 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 "StreamOutHAL" |
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//#define LOG_NDEBUG 0 |
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#define ATRACE_TAG ATRACE_TAG_AUDIO |
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#include <memory> |
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#include <android/log.h> |
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#include <hardware/audio.h> |
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#include <utils/Trace.h> |
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#include "StreamOut.h" |
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#include "Util.h" |
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namespace android { |
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namespace hardware { |
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namespace audio { |
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namespace V2_0 { |
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namespace implementation { |
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using ::android::hardware::audio::common::V2_0::ThreadInfo; |
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namespace { |
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class WriteThread : public Thread { |
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public: |
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// WriteThread's lifespan never exceeds StreamOut's lifespan. |
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WriteThread(std::atomic<bool>* stop, audio_stream_out_t* stream, |
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StreamOut::CommandMQ* commandMQ, StreamOut::DataMQ* dataMQ, |
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StreamOut::StatusMQ* statusMQ, EventFlag* efGroup) |
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: Thread(false /*canCallJava*/), |
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mStop(stop), |
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mStream(stream), |
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mCommandMQ(commandMQ), |
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mDataMQ(dataMQ), |
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mStatusMQ(statusMQ), |
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mEfGroup(efGroup), |
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mBuffer(nullptr) {} |
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bool init() { |
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mBuffer.reset(new (std::nothrow) uint8_t[mDataMQ->getQuantumCount()]); |
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return mBuffer != nullptr; |
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} |
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virtual ~WriteThread() {} |
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private: |
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std::atomic<bool>* mStop; |
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audio_stream_out_t* mStream; |
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StreamOut::CommandMQ* mCommandMQ; |
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StreamOut::DataMQ* mDataMQ; |
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StreamOut::StatusMQ* mStatusMQ; |
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EventFlag* mEfGroup; |
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std::unique_ptr<uint8_t[]> mBuffer; |
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IStreamOut::WriteStatus mStatus; |
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bool threadLoop() override; |
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void doGetLatency(); |
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void doGetPresentationPosition(); |
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void doWrite(); |
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}; |
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void WriteThread::doWrite() { |
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const size_t availToRead = mDataMQ->availableToRead(); |
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mStatus.retval = Result::OK; |
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mStatus.reply.written = 0; |
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if (mDataMQ->read(&mBuffer[0], availToRead)) { |
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ssize_t writeResult = mStream->write(mStream, &mBuffer[0], availToRead); |
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if (writeResult >= 0) { |
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mStatus.reply.written = writeResult; |
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} else { |
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mStatus.retval = Stream::analyzeStatus("write", writeResult); |
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} |
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} |
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} |
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void WriteThread::doGetPresentationPosition() { |
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mStatus.retval = StreamOut::getPresentationPositionImpl( |
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mStream, &mStatus.reply.presentationPosition.frames, |
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&mStatus.reply.presentationPosition.timeStamp); |
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} |
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void WriteThread::doGetLatency() { |
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mStatus.retval = Result::OK; |
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mStatus.reply.latencyMs = mStream->get_latency(mStream); |
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} |
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bool WriteThread::threadLoop() { |
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// This implementation doesn't return control back to the Thread until it |
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// decides to stop, |
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// as the Thread uses mutexes, and this can lead to priority inversion. |
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while (!std::atomic_load_explicit(mStop, std::memory_order_acquire)) { |
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uint32_t efState = 0; |
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mEfGroup->wait(static_cast<uint32_t>(MessageQueueFlagBits::NOT_EMPTY), |
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&efState); |
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if (!(efState & |
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static_cast<uint32_t>(MessageQueueFlagBits::NOT_EMPTY))) { |
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continue; // Nothing to do. |
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} |
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if (!mCommandMQ->read(&mStatus.replyTo)) { |
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continue; // Nothing to do. |
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} |
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switch (mStatus.replyTo) { |
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case IStreamOut::WriteCommand::WRITE: |
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doWrite(); |
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break; |
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case IStreamOut::WriteCommand::GET_PRESENTATION_POSITION: |
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doGetPresentationPosition(); |
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break; |
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case IStreamOut::WriteCommand::GET_LATENCY: |
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doGetLatency(); |
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break; |
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default: |
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ALOGE("Unknown write thread command code %d", mStatus.replyTo); |
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mStatus.retval = Result::NOT_SUPPORTED; |
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break; |
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} |
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if (!mStatusMQ->write(&mStatus)) { |
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ALOGE("status message queue write failed"); |
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} |
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mEfGroup->wake(static_cast<uint32_t>(MessageQueueFlagBits::NOT_FULL)); |
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} |
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return false; |
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} |
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} // namespace |
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StreamOut::StreamOut(const sp<Device>& device, audio_stream_out_t* stream) |
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: mIsClosed(false), |
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mDevice(device), |
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mStream(stream), |
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mStreamCommon(new Stream(&stream->common)), |
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mStreamMmap(new StreamMmap<audio_stream_out_t>(stream)), |
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mEfGroup(nullptr), |
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mStopWriteThread(false) {} |
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StreamOut::~StreamOut() { |
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ATRACE_CALL(); |
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close(); |
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if (mWriteThread.get()) { |
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ATRACE_NAME("mWriteThread->join"); |
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status_t status = mWriteThread->join(); |
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ALOGE_IF(status, "write thread exit error: %s", strerror(-status)); |
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} |
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if (mEfGroup) { |
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status_t status = EventFlag::deleteEventFlag(&mEfGroup); |
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ALOGE_IF(status, "write MQ event flag deletion error: %s", |
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strerror(-status)); |
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} |
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mCallback.clear(); |
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mDevice->closeOutputStream(mStream); |
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mStream = nullptr; |
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} |
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// Methods from ::android::hardware::audio::V2_0::IStream follow. |
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Return<uint64_t> StreamOut::getFrameSize() { |
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return audio_stream_out_frame_size(mStream); |
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} |
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Return<uint64_t> StreamOut::getFrameCount() { |
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return mStreamCommon->getFrameCount(); |
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} |
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Return<uint64_t> StreamOut::getBufferSize() { |
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return mStreamCommon->getBufferSize(); |
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} |
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Return<uint32_t> StreamOut::getSampleRate() { |
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return mStreamCommon->getSampleRate(); |
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} |
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Return<void> StreamOut::getSupportedSampleRates( |
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getSupportedSampleRates_cb _hidl_cb) { |
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return mStreamCommon->getSupportedSampleRates(_hidl_cb); |
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} |
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Return<Result> StreamOut::setSampleRate(uint32_t sampleRateHz) { |
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return mStreamCommon->setSampleRate(sampleRateHz); |
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} |
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Return<AudioChannelMask> StreamOut::getChannelMask() { |
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return mStreamCommon->getChannelMask(); |
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} |
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Return<void> StreamOut::getSupportedChannelMasks( |
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getSupportedChannelMasks_cb _hidl_cb) { |
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return mStreamCommon->getSupportedChannelMasks(_hidl_cb); |
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} |
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Return<Result> StreamOut::setChannelMask(AudioChannelMask mask) { |
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return mStreamCommon->setChannelMask(mask); |
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} |
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Return<AudioFormat> StreamOut::getFormat() { |
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return mStreamCommon->getFormat(); |
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} |
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Return<void> StreamOut::getSupportedFormats(getSupportedFormats_cb _hidl_cb) { |
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return mStreamCommon->getSupportedFormats(_hidl_cb); |
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} |
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Return<Result> StreamOut::setFormat(AudioFormat format) { |
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return mStreamCommon->setFormat(format); |
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} |
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Return<void> StreamOut::getAudioProperties(getAudioProperties_cb _hidl_cb) { |
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return mStreamCommon->getAudioProperties(_hidl_cb); |
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} |
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Return<Result> StreamOut::addEffect(uint64_t effectId) { |
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return mStreamCommon->addEffect(effectId); |
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} |
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Return<Result> StreamOut::removeEffect(uint64_t effectId) { |
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return mStreamCommon->removeEffect(effectId); |
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} |
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Return<Result> StreamOut::standby() { |
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return mStreamCommon->standby(); |
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} |
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Return<AudioDevice> StreamOut::getDevice() { |
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return mStreamCommon->getDevice(); |
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} |
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Return<Result> StreamOut::setDevice(const DeviceAddress& address) { |
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return mStreamCommon->setDevice(address); |
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} |
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Return<Result> StreamOut::setConnectedState(const DeviceAddress& address, |
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bool connected) { |
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return mStreamCommon->setConnectedState(address, connected); |
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} |
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Return<Result> StreamOut::setHwAvSync(uint32_t hwAvSync) { |
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return mStreamCommon->setHwAvSync(hwAvSync); |
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} |
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Return<void> StreamOut::getParameters(const hidl_vec<hidl_string>& keys, |
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getParameters_cb _hidl_cb) { |
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return mStreamCommon->getParameters(keys, _hidl_cb); |
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} |
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Return<Result> StreamOut::setParameters( |
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const hidl_vec<ParameterValue>& parameters) { |
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return mStreamCommon->setParameters(parameters); |
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} |
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Return<void> StreamOut::debugDump(const hidl_handle& fd) { |
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return mStreamCommon->debugDump(fd); |
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} |
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Return<Result> StreamOut::close() { |
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if (mIsClosed) return Result::INVALID_STATE; |
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mIsClosed = true; |
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if (mWriteThread.get()) { |
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mStopWriteThread.store(true, std::memory_order_release); |
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} |
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if (mEfGroup) { |
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mEfGroup->wake(static_cast<uint32_t>(MessageQueueFlagBits::NOT_EMPTY)); |
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} |
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return Result::OK; |
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} |
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// Methods from ::android::hardware::audio::V2_0::IStreamOut follow. |
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Return<uint32_t> StreamOut::getLatency() { |
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return mStream->get_latency(mStream); |
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} |
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Return<Result> StreamOut::setVolume(float left, float right) { |
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if (mStream->set_volume == NULL) { |
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return Result::NOT_SUPPORTED; |
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} |
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if (!isGainNormalized(left)) { |
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ALOGW("Can not set a stream output volume {%f, %f} outside [0,1]", left, |
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right); |
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return Result::INVALID_ARGUMENTS; |
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} |
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return Stream::analyzeStatus("set_volume", |
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mStream->set_volume(mStream, left, right)); |
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} |
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Return<void> StreamOut::prepareForWriting(uint32_t frameSize, |
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uint32_t framesCount, |
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prepareForWriting_cb _hidl_cb) { |
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status_t status; |
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ThreadInfo threadInfo = {0, 0}; |
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// Wrap the _hidl_cb to return an error |
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auto sendError = [this, &threadInfo, &_hidl_cb](Result result) { |
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_hidl_cb(result, CommandMQ::Descriptor(), DataMQ::Descriptor(), |
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StatusMQ::Descriptor(), threadInfo); |
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}; |
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// Create message queues. |
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if (mDataMQ) { |
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ALOGE("the client attempts to call prepareForWriting twice"); |
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sendError(Result::INVALID_STATE); |
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return Void(); |
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} |
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std::unique_ptr<CommandMQ> tempCommandMQ(new CommandMQ(1)); |
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// Check frameSize and framesCount |
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if (frameSize == 0 || framesCount == 0) { |
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ALOGE("Null frameSize (%u) or framesCount (%u)", frameSize, |
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framesCount); |
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sendError(Result::INVALID_ARGUMENTS); |
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return Void(); |
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} |
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if (frameSize > Stream::MAX_BUFFER_SIZE / framesCount) { |
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ALOGE("Buffer too big: %u*%u bytes > MAX_BUFFER_SIZE (%u)", frameSize, framesCount, |
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Stream::MAX_BUFFER_SIZE); |
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sendError(Result::INVALID_ARGUMENTS); |
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return Void(); |
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} |
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std::unique_ptr<DataMQ> tempDataMQ( |
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new DataMQ(frameSize * framesCount, true /* EventFlag */)); |
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std::unique_ptr<StatusMQ> tempStatusMQ(new StatusMQ(1)); |
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if (!tempCommandMQ->isValid() || !tempDataMQ->isValid() || |
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!tempStatusMQ->isValid()) { |
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ALOGE_IF(!tempCommandMQ->isValid(), "command MQ is invalid"); |
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ALOGE_IF(!tempDataMQ->isValid(), "data MQ is invalid"); |
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ALOGE_IF(!tempStatusMQ->isValid(), "status MQ is invalid"); |
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sendError(Result::INVALID_ARGUMENTS); |
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return Void(); |
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} |
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EventFlag* tempRawEfGroup{}; |
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status = EventFlag::createEventFlag(tempDataMQ->getEventFlagWord(), |
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&tempRawEfGroup); |
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std::unique_ptr<EventFlag, void (*)(EventFlag*)> tempElfGroup( |
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tempRawEfGroup, [](auto* ef) { EventFlag::deleteEventFlag(&ef); }); |
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if (status != OK || !tempElfGroup) { |
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ALOGE("failed creating event flag for data MQ: %s", strerror(-status)); |
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sendError(Result::INVALID_ARGUMENTS); |
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return Void(); |
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} |
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// Create and launch the thread. |
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auto tempWriteThread = std::make_unique<WriteThread>( |
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&mStopWriteThread, mStream, tempCommandMQ.get(), tempDataMQ.get(), |
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tempStatusMQ.get(), tempElfGroup.get()); |
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if (!tempWriteThread->init()) { |
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ALOGW("failed to start writer thread: %s", strerror(-status)); |
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sendError(Result::INVALID_ARGUMENTS); |
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return Void(); |
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} |
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status = tempWriteThread->run("writer", PRIORITY_URGENT_AUDIO); |
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if (status != OK) { |
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ALOGW("failed to start writer thread: %s", strerror(-status)); |
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sendError(Result::INVALID_ARGUMENTS); |
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return Void(); |
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} |
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mCommandMQ = std::move(tempCommandMQ); |
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mDataMQ = std::move(tempDataMQ); |
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mStatusMQ = std::move(tempStatusMQ); |
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mWriteThread = tempWriteThread.release(); |
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mEfGroup = tempElfGroup.release(); |
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threadInfo.pid = getpid(); |
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threadInfo.tid = mWriteThread->getTid(); |
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_hidl_cb(Result::OK, *mCommandMQ->getDesc(), *mDataMQ->getDesc(), |
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*mStatusMQ->getDesc(), threadInfo); |
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return Void(); |
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} |
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Return<void> StreamOut::getRenderPosition(getRenderPosition_cb _hidl_cb) { |
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uint32_t halDspFrames; |
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Result retval = Stream::analyzeStatus( |
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"get_render_position", |
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mStream->get_render_position(mStream, &halDspFrames)); |
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_hidl_cb(retval, halDspFrames); |
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return Void(); |
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} |
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Return<void> StreamOut::getNextWriteTimestamp( |
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getNextWriteTimestamp_cb _hidl_cb) { |
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Result retval(Result::NOT_SUPPORTED); |
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int64_t timestampUs = 0; |
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if (mStream->get_next_write_timestamp != NULL) { |
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retval = Stream::analyzeStatus( |
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"get_next_write_timestamp", |
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mStream->get_next_write_timestamp(mStream, ×tampUs)); |
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} |
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_hidl_cb(retval, timestampUs); |
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return Void(); |
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} |
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Return<Result> StreamOut::setCallback(const sp<IStreamOutCallback>& callback) { |
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if (mStream->set_callback == NULL) return Result::NOT_SUPPORTED; |
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int result = mStream->set_callback(mStream, StreamOut::asyncCallback, this); |
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if (result == 0) { |
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mCallback = callback; |
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} |
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return Stream::analyzeStatus("set_callback", result); |
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} |
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Return<Result> StreamOut::clearCallback() { |
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if (mStream->set_callback == NULL) return Result::NOT_SUPPORTED; |
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mCallback.clear(); |
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return Result::OK; |
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} |
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// static |
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int StreamOut::asyncCallback(stream_callback_event_t event, void*, |
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void* cookie) { |
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wp<StreamOut> weakSelf(reinterpret_cast<StreamOut*>(cookie)); |
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sp<StreamOut> self = weakSelf.promote(); |
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if (self == nullptr || self->mCallback == nullptr) return 0; |
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ALOGV("asyncCallback() event %d", event); |
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switch (event) { |
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case STREAM_CBK_EVENT_WRITE_READY: |
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self->mCallback->onWriteReady(); |
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break; |
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case STREAM_CBK_EVENT_DRAIN_READY: |
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self->mCallback->onDrainReady(); |
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break; |
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case STREAM_CBK_EVENT_ERROR: |
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self->mCallback->onError(); |
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break; |
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default: |
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ALOGW("asyncCallback() unknown event %d", event); |
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break; |
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} |
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return 0; |
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} |
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Return<void> StreamOut::supportsPauseAndResume( |
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supportsPauseAndResume_cb _hidl_cb) { |
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_hidl_cb(mStream->pause != NULL, mStream->resume != NULL); |
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return Void(); |
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} |
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Return<Result> StreamOut::pause() { |
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return mStream->pause != NULL |
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? Stream::analyzeStatus("pause", mStream->pause(mStream)) |
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: Result::NOT_SUPPORTED; |
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} |
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Return<Result> StreamOut::resume() { |
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return mStream->resume != NULL |
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? Stream::analyzeStatus("resume", mStream->resume(mStream)) |
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: Result::NOT_SUPPORTED; |
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} |
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Return<bool> StreamOut::supportsDrain() { |
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return mStream->drain != NULL; |
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} |
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Return<Result> StreamOut::drain(AudioDrain type) { |
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return mStream->drain != NULL |
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? Stream::analyzeStatus( |
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"drain", |
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mStream->drain(mStream, |
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static_cast<audio_drain_type_t>(type))) |
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: Result::NOT_SUPPORTED; |
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} |
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Return<Result> StreamOut::flush() { |
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return mStream->flush != NULL |
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? Stream::analyzeStatus("flush", mStream->flush(mStream)) |
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: Result::NOT_SUPPORTED; |
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} |
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// static |
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Result StreamOut::getPresentationPositionImpl(audio_stream_out_t* stream, |
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uint64_t* frames, |
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TimeSpec* timeStamp) { |
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// Don't logspam on EINVAL--it's normal for get_presentation_position |
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// to return it sometimes. EAGAIN may be returned by A2DP audio HAL |
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// implementation. ENODATA can also be reported while the writer is |
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// continuously querying it, but the stream has been stopped. |
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static const std::vector<int> ignoredErrors{EINVAL, EAGAIN, ENODATA}; |
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Result retval(Result::NOT_SUPPORTED); |
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if (stream->get_presentation_position == NULL) return retval; |
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struct timespec halTimeStamp; |
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retval = Stream::analyzeStatus("get_presentation_position", |
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stream->get_presentation_position(stream, frames, &halTimeStamp), |
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ignoredErrors); |
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if (retval == Result::OK) { |
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timeStamp->tvSec = halTimeStamp.tv_sec; |
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timeStamp->tvNSec = halTimeStamp.tv_nsec; |
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} |
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return retval; |
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} |
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Return<void> StreamOut::getPresentationPosition( |
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getPresentationPosition_cb _hidl_cb) { |
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uint64_t frames = 0; |
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TimeSpec timeStamp = {0, 0}; |
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Result retval = getPresentationPositionImpl(mStream, &frames, &timeStamp); |
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_hidl_cb(retval, frames, timeStamp); |
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return Void(); |
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} |
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Return<Result> StreamOut::start() { |
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return mStreamMmap->start(); |
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} |
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Return<Result> StreamOut::stop() { |
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return mStreamMmap->stop(); |
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} |
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Return<void> StreamOut::createMmapBuffer(int32_t minSizeFrames, |
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createMmapBuffer_cb _hidl_cb) { |
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return mStreamMmap->createMmapBuffer( |
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minSizeFrames, audio_stream_out_frame_size(mStream), _hidl_cb); |
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} |
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Return<void> StreamOut::getMmapPosition(getMmapPosition_cb _hidl_cb) { |
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return mStreamMmap->getMmapPosition(_hidl_cb); |
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} |
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} // namespace implementation |
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} // namespace V2_0 |
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} // namespace audio |
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} // namespace hardware |
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} // namespace android
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