mirror of
https://github.com/hajimehoshi/ebiten.git
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225 lines
8.7 KiB
C++
Vendored
225 lines
8.7 KiB
C++
Vendored
/*
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* Copyright 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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#include <sys/types.h>
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#include "oboe_aaudio_AAudioExtensions_android.h"
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#include "oboe_aaudio_AudioStreamAAudio_android.h"
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#include "oboe_common_FilterAudioStream_android.h"
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#include "oboe_common_OboeDebug_android.h"
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#include "oboe_oboe_Oboe_android.h"
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#include "oboe_oboe_AudioStreamBuilder_android.h"
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#include "oboe_opensles_AudioInputStreamOpenSLES_android.h"
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#include "oboe_opensles_AudioOutputStreamOpenSLES_android.h"
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#include "oboe_opensles_AudioStreamOpenSLES_android.h"
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#include "oboe_common_QuirksManager_android.h"
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bool oboe::OboeGlobals::mWorkaroundsEnabled = true;
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namespace oboe {
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/**
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* The following default values are used when oboe does not have any better way of determining the optimal values
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* for an audio stream. This can happen when:
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*
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* - Client is creating a stream on API < 26 (OpenSLES) but has not supplied the optimal sample
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* rate and/or frames per burst
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* - Client is creating a stream on API 16 (OpenSLES) where AudioManager.PROPERTY_OUTPUT_* values
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* are not available
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*/
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int32_t DefaultStreamValues::SampleRate = 48000; // Common rate for mobile audio and video
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int32_t DefaultStreamValues::FramesPerBurst = 192; // 4 msec at 48000 Hz
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int32_t DefaultStreamValues::ChannelCount = 2; // Stereo
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constexpr int kBufferSizeInBurstsForLowLatencyStreams = 2;
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#ifndef OBOE_ENABLE_AAUDIO
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// Set OBOE_ENABLE_AAUDIO to 0 if you want to disable the AAudio API.
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// This might be useful if you want to force all the unit tests to use OpenSL ES.
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#define OBOE_ENABLE_AAUDIO 1
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#endif
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bool AudioStreamBuilder::isAAudioSupported() {
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return AudioStreamAAudio::isSupported() && OBOE_ENABLE_AAUDIO;
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}
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bool AudioStreamBuilder::isAAudioRecommended() {
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// See https://github.com/google/oboe/issues/40,
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// AAudio may not be stable on Android O, depending on how it is used.
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// To be safe, use AAudio only on O_MR1 and above.
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return (getSdkVersion() >= __ANDROID_API_O_MR1__) && isAAudioSupported();
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}
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AudioStream *AudioStreamBuilder::build() {
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AudioStream *stream = nullptr;
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if (isAAudioRecommended() && mAudioApi != AudioApi::OpenSLES) {
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stream = new AudioStreamAAudio(*this);
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} else if (isAAudioSupported() && mAudioApi == AudioApi::AAudio) {
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stream = new AudioStreamAAudio(*this);
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LOGE("Creating AAudio stream on 8.0 because it was specified. This is error prone.");
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} else {
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if (getDirection() == oboe::Direction::Output) {
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stream = new AudioOutputStreamOpenSLES(*this);
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} else if (getDirection() == oboe::Direction::Input) {
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stream = new AudioInputStreamOpenSLES(*this);
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}
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}
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return stream;
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}
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bool AudioStreamBuilder::isCompatible(AudioStreamBase &other) {
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return (getSampleRate() == oboe::Unspecified || getSampleRate() == other.getSampleRate())
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&& (getFormat() == (AudioFormat)oboe::Unspecified || getFormat() == other.getFormat())
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&& (getFramesPerDataCallback() == oboe::Unspecified || getFramesPerDataCallback() == other.getFramesPerDataCallback())
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&& (getChannelCount() == oboe::Unspecified || getChannelCount() == other.getChannelCount());
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}
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Result AudioStreamBuilder::openStream(AudioStream **streamPP) {
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auto result = isValidConfig();
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if (result != Result::OK) {
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LOGW("%s() invalid config %d", __func__, result);
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return result;
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}
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LOGI("%s() %s -------- %s --------",
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__func__, getDirection() == Direction::Input ? "INPUT" : "OUTPUT", getVersionText());
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if (streamPP == nullptr) {
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return Result::ErrorNull;
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}
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*streamPP = nullptr;
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AudioStream *streamP = nullptr;
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// Maybe make a FilterInputStream.
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AudioStreamBuilder childBuilder(*this);
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// Check need for conversion and modify childBuilder for optimal stream.
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bool conversionNeeded = QuirksManager::getInstance().isConversionNeeded(*this, childBuilder);
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// Do we need to make a child stream and convert.
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if (conversionNeeded) {
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AudioStream *tempStream;
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result = childBuilder.openStream(&tempStream);
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if (result != Result::OK) {
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return result;
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}
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if (isCompatible(*tempStream)) {
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// The child stream would work as the requested stream so we can just use it directly.
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*streamPP = tempStream;
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return result;
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} else {
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AudioStreamBuilder parentBuilder = *this;
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// Build a stream that is as close as possible to the childStream.
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if (getFormat() == oboe::AudioFormat::Unspecified) {
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parentBuilder.setFormat(tempStream->getFormat());
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}
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if (getChannelCount() == oboe::Unspecified) {
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parentBuilder.setChannelCount(tempStream->getChannelCount());
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}
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if (getSampleRate() == oboe::Unspecified) {
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parentBuilder.setSampleRate(tempStream->getSampleRate());
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}
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if (getFramesPerDataCallback() == oboe::Unspecified) {
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parentBuilder.setFramesPerCallback(tempStream->getFramesPerDataCallback());
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}
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// Use childStream in a FilterAudioStream.
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LOGI("%s() create a FilterAudioStream for data conversion.", __func__);
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FilterAudioStream *filterStream = new FilterAudioStream(parentBuilder, tempStream);
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result = filterStream->configureFlowGraph();
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if (result != Result::OK) {
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filterStream->close();
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delete filterStream;
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// Just open streamP the old way.
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} else {
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streamP = static_cast<AudioStream *>(filterStream);
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}
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}
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}
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if (streamP == nullptr) {
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streamP = build();
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if (streamP == nullptr) {
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return Result::ErrorNull;
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}
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}
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// If MMAP has a problem in this case then disable it temporarily.
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bool wasMMapOriginallyEnabled = AAudioExtensions::getInstance().isMMapEnabled();
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bool wasMMapTemporarilyDisabled = false;
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if (wasMMapOriginallyEnabled) {
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bool isMMapSafe = QuirksManager::getInstance().isMMapSafe(childBuilder);
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if (!isMMapSafe) {
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AAudioExtensions::getInstance().setMMapEnabled(false);
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wasMMapTemporarilyDisabled = true;
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}
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}
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result = streamP->open();
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if (wasMMapTemporarilyDisabled) {
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AAudioExtensions::getInstance().setMMapEnabled(wasMMapOriginallyEnabled); // restore original
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}
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if (result == Result::OK) {
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int32_t optimalBufferSize = -1;
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// Use a reasonable default buffer size.
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if (streamP->getDirection() == Direction::Input) {
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// For input, small size does not improve latency because the stream is usually
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// run close to empty. And a low size can result in XRuns so always use the maximum.
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optimalBufferSize = streamP->getBufferCapacityInFrames();
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} else if (streamP->getPerformanceMode() == PerformanceMode::LowLatency
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&& streamP->getDirection() == Direction::Output) { // Output check is redundant.
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optimalBufferSize = streamP->getFramesPerBurst() *
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kBufferSizeInBurstsForLowLatencyStreams;
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}
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if (optimalBufferSize >= 0) {
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auto setBufferResult = streamP->setBufferSizeInFrames(optimalBufferSize);
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if (!setBufferResult) {
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LOGW("Failed to setBufferSizeInFrames(%d). Error was %s",
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optimalBufferSize,
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convertToText(setBufferResult.error()));
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}
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}
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*streamPP = streamP;
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} else {
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delete streamP;
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}
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return result;
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}
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Result AudioStreamBuilder::openManagedStream(oboe::ManagedStream &stream) {
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stream.reset();
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AudioStream *streamptr;
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auto result = openStream(&streamptr);
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stream.reset(streamptr);
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return result;
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}
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Result AudioStreamBuilder::openStream(std::shared_ptr<AudioStream> &sharedStream) {
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sharedStream.reset();
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AudioStream *streamptr;
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auto result = openStream(&streamptr);
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if (result == Result::OK) {
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sharedStream.reset(streamptr);
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// Save a weak_ptr in the stream for use with callbacks.
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streamptr->setWeakThis(sharedStream);
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}
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return result;
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}
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} // namespace oboe
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