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163 lines
6.9 KiB
163 lines
6.9 KiB
/*
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* Copyright (C) 2017 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 "AAudioServiceEndpointPlay"
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//#define LOG_NDEBUG 0
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#include <utils/Log.h>
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#include <assert.h>
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#include <map>
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#include <mutex>
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#include <utils/Singleton.h>
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#include "AAudioEndpointManager.h"
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#include "AAudioServiceEndpoint.h"
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#include <algorithm>
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#include <mutex>
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#include <vector>
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#include "core/AudioStreamBuilder.h"
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#include "AAudioServiceEndpoint.h"
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#include "AAudioServiceStreamShared.h"
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#include "AAudioServiceEndpointPlay.h"
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#include "AAudioServiceEndpointShared.h"
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#include "AAudioServiceStreamBase.h"
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using namespace android; // TODO just import names needed
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using namespace aaudio; // TODO just import names needed
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#define BURSTS_PER_BUFFER_DEFAULT 2
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AAudioServiceEndpointPlay::AAudioServiceEndpointPlay(AAudioService& audioService)
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: AAudioServiceEndpointShared(
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new AudioStreamInternalPlay(audioService.asAAudioServiceInterface(), true)) {}
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aaudio_result_t AAudioServiceEndpointPlay::open(const aaudio::AAudioStreamRequest &request) {
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aaudio_result_t result = AAudioServiceEndpointShared::open(request);
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if (result == AAUDIO_OK) {
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mMixer.allocate(getStreamInternal()->getSamplesPerFrame(),
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getStreamInternal()->getFramesPerBurst());
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int32_t burstsPerBuffer = AAudioProperty_getMixerBursts();
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if (burstsPerBuffer == 0) {
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mLatencyTuningEnabled = true;
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burstsPerBuffer = BURSTS_PER_BUFFER_DEFAULT;
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}
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int32_t desiredBufferSize = burstsPerBuffer * getStreamInternal()->getFramesPerBurst();
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getStreamInternal()->setBufferSize(desiredBufferSize);
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}
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return result;
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}
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// Mix data from each application stream and write result to the shared MMAP stream.
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void *AAudioServiceEndpointPlay::callbackLoop() {
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ALOGD("%s() entering >>>>>>>>>>>>>>> MIXER", __func__);
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aaudio_result_t result = AAUDIO_OK;
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int64_t timeoutNanos = getStreamInternal()->calculateReasonableTimeout();
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// result might be a frame count
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while (mCallbackEnabled.load() && getStreamInternal()->isActive() && (result >= 0)) {
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// Mix data from each active stream.
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mMixer.clear();
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{ // brackets are for lock_guard
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int index = 0;
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int64_t mmapFramesWritten = getStreamInternal()->getFramesWritten();
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std::lock_guard <std::mutex> lock(mLockStreams);
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for (const auto& clientStream : mRegisteredStreams) {
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int64_t clientFramesRead = 0;
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bool allowUnderflow = true;
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if (clientStream->isSuspended()) {
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continue; // dead stream
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}
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aaudio_stream_state_t state = clientStream->getState();
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if (state == AAUDIO_STREAM_STATE_STOPPING) {
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allowUnderflow = false; // just read what is already in the FIFO
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} else if (state != AAUDIO_STREAM_STATE_STARTED) {
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continue; // this stream is not running so skip it.
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}
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sp<AAudioServiceStreamShared> streamShared =
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static_cast<AAudioServiceStreamShared *>(clientStream.get());
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{
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// Lock the AudioFifo to protect against close.
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std::lock_guard <std::mutex> lock(streamShared->audioDataQueueLock);
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std::shared_ptr<SharedRingBuffer> audioDataQueue
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= streamShared->getAudioDataQueue_l();
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std::shared_ptr<FifoBuffer> fifo;
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if (audioDataQueue && (fifo = audioDataQueue->getFifoBuffer())) {
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// Determine offset between framePosition in client's stream
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// vs the underlying MMAP stream.
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clientFramesRead = fifo->getReadCounter();
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// These two indices refer to the same frame.
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int64_t positionOffset = mmapFramesWritten - clientFramesRead;
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streamShared->setTimestampPositionOffset(positionOffset);
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int32_t framesMixed = mMixer.mix(index, fifo, allowUnderflow);
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if (streamShared->isFlowing()) {
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// Consider it an underflow if we got less than a burst
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// after the data started flowing.
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bool underflowed = allowUnderflow
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&& framesMixed < mMixer.getFramesPerBurst();
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if (underflowed) {
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streamShared->incrementXRunCount();
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}
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} else if (framesMixed > 0) {
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// Mark beginning of data flow after a start.
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streamShared->setFlowing(true);
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}
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clientFramesRead = fifo->getReadCounter();
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}
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}
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if (clientFramesRead > 0) {
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// This timestamp represents the completion of data being read out of the
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// client buffer. It is sent to the client and used in the timing model
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// to decide when the client has room to write more data.
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Timestamp timestamp(clientFramesRead, AudioClock::getNanoseconds());
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streamShared->markTransferTime(timestamp);
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}
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index++; // just used for labelling tracks in systrace
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}
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}
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// Write mixer output to stream using a blocking write.
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result = getStreamInternal()->write(mMixer.getOutputBuffer(),
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getFramesPerBurst(), timeoutNanos);
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if (result == AAUDIO_ERROR_DISCONNECTED) {
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ALOGD("%s() write() returned AAUDIO_ERROR_DISCONNECTED", __func__);
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// We do not need the returned vector.
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(void) AAudioServiceEndpointShared::disconnectRegisteredStreams();
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break;
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} else if (result != getFramesPerBurst()) {
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ALOGW("callbackLoop() wrote %d / %d",
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result, getFramesPerBurst());
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break;
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}
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}
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ALOGD("%s() exiting, enabled = %d, state = %d, result = %d <<<<<<<<<<<<< MIXER",
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__func__, mCallbackEnabled.load(), getStreamInternal()->getState(), result);
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return NULL; // TODO review
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}
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