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[macOS/iOS] Use hardware sampling rates for audio I/O.
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@ -117,6 +117,12 @@
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[b]Note:[/b] [member ProjectSettings.audio/driver/enable_input] must be [code]true[/code] for audio input to work. See also that setting's description for caveats related to permissions and operating system privacy settings.
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</description>
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</method>
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<method name="get_input_mix_rate" qualifiers="const">
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<return type="float" />
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<description>
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Returns the sample rate at the input of the [AudioServer].
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</description>
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</method>
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<method name="get_mix_rate" qualifiers="const">
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<return type="float" />
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<description>
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@ -14,6 +14,7 @@ SConscript("windows/SCsub")
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# Sounds drivers
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SConscript("alsa/SCsub")
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if env["platform"] == "ios" or env["platform"] == "macos":
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SConscript("coreaudio/SCsub")
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SConscript("pulseaudio/SCsub")
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if env["platform"] == "windows":
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@ -4,4 +4,4 @@ from misc.utility.scons_hints import *
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Import("env")
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# Driver source files
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env.add_source_files(env.drivers_sources, "*.cpp")
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env.add_source_files(env.drivers_sources, "*.mm")
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@ -38,6 +38,8 @@
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#import <AudioUnit/AudioUnit.h>
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#ifdef MACOS_ENABLED
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#import <CoreAudio/AudioHardware.h>
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#else
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#import <AVFoundation/AVFoundation.h>
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#endif
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class AudioDriverCoreAudio : public AudioDriver {
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@ -51,9 +53,11 @@ class AudioDriverCoreAudio : public AudioDriver {
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String input_device_name = "Default";
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int mix_rate = 0;
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int capture_mix_rate = 0;
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unsigned int channels = 2;
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unsigned int capture_channels = 2;
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unsigned int buffer_frames = 0;
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unsigned int capture_buffer_frames = 0;
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Vector<int32_t> samples_in;
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Vector<int16_t> input_buf;
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@ -94,6 +98,7 @@ public:
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virtual Error init() override;
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virtual void start() override;
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virtual int get_mix_rate() const override;
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virtual int get_input_mix_rate() const override;
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virtual SpeakerMode get_speaker_mode() const override;
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virtual void lock() override;
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@ -1,5 +1,5 @@
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/**************************************************************************/
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/* audio_driver_coreaudio.cpp */
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/* audio_driver_coreaudio.mm */
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/**************************************************************************/
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/* This file is part of: */
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/* GODOT ENGINE */
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@ -121,7 +121,24 @@ Error AudioDriverCoreAudio::init() {
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break;
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}
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mix_rate = _get_configured_mix_rate();
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#ifdef MACOS_ENABLED
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AudioDeviceID device_id;
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UInt32 dev_id_size = sizeof(AudioDeviceID);
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AudioObjectPropertyAddress property_dev_id = { kAudioHardwarePropertyDefaultOutputDevice, kAudioObjectPropertyScopeGlobal, kAudioObjectPropertyElementMaster };
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result = AudioObjectGetPropertyData(kAudioObjectSystemObject, &property_dev_id, 0, nullptr, &dev_id_size, &device_id);
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ERR_FAIL_COND_V(result != noErr, FAILED);
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double hw_mix_rate;
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UInt32 hw_mix_rate_size = sizeof(hw_mix_rate);
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AudioObjectPropertyAddress property_sr = { kAudioDevicePropertyNominalSampleRate, kAudioObjectPropertyScopeGlobal, kAudioObjectPropertyElementMain };
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result = AudioObjectGetPropertyData(device_id, &property_sr, 0, nullptr, &hw_mix_rate_size, &hw_mix_rate);
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ERR_FAIL_COND_V(result != noErr, FAILED);
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#else
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double hw_mix_rate = [AVAudioSession sharedInstance].sampleRate;
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#endif
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mix_rate = hw_mix_rate;
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memset(&strdesc, 0, sizeof(strdesc));
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strdesc.mFormatID = kAudioFormatLinearPCM;
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@ -147,10 +164,10 @@ Error AudioDriverCoreAudio::init() {
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unsigned int buffer_size = buffer_frames * channels;
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samples_in.resize(buffer_size);
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input_buf.resize(buffer_size);
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print_verbose("CoreAudio: detected " + itos(channels) + " channels");
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print_verbose("CoreAudio: audio buffer frames: " + itos(buffer_frames) + " calculated latency: " + itos(buffer_frames * 1000 / mix_rate) + "ms");
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print_verbose("CoreAudio: output sampling rate: " + itos(mix_rate) + " Hz");
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print_verbose("CoreAudio: output audio buffer frames: " + itos(buffer_frames) + " calculated latency: " + itos(buffer_frames * 1000 / mix_rate) + "ms");
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AURenderCallbackStruct callback;
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memset(&callback, 0, sizeof(AURenderCallbackStruct));
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@ -275,6 +292,10 @@ int AudioDriverCoreAudio::get_mix_rate() const {
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return mix_rate;
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}
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int AudioDriverCoreAudio::get_input_mix_rate() const {
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return capture_mix_rate;
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}
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AudioDriver::SpeakerMode AudioDriverCoreAudio::get_speaker_mode() const {
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return get_speaker_mode_by_total_channels(channels);
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}
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@ -378,14 +399,14 @@ Error AudioDriverCoreAudio::init_input_device() {
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UInt32 size;
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#ifdef MACOS_ENABLED
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AudioDeviceID deviceId;
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AudioDeviceID device_id;
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size = sizeof(AudioDeviceID);
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AudioObjectPropertyAddress property = { kAudioHardwarePropertyDefaultInputDevice, kAudioObjectPropertyScopeGlobal, kAudioObjectPropertyElementMain };
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result = AudioObjectGetPropertyData(kAudioObjectSystemObject, &property, 0, nullptr, &size, &deviceId);
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result = AudioObjectGetPropertyData(kAudioObjectSystemObject, &property, 0, nullptr, &size, &device_id);
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ERR_FAIL_COND_V(result != noErr, FAILED);
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result = AudioUnitSetProperty(input_unit, kAudioOutputUnitProperty_CurrentDevice, kAudioUnitScope_Global, 0, &deviceId, sizeof(AudioDeviceID));
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result = AudioUnitSetProperty(input_unit, kAudioOutputUnitProperty_CurrentDevice, kAudioUnitScope_Global, 0, &device_id, sizeof(AudioDeviceID));
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ERR_FAIL_COND_V(result != noErr, FAILED);
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#endif
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@ -410,13 +431,23 @@ Error AudioDriverCoreAudio::init_input_device() {
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break;
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}
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mix_rate = _get_configured_mix_rate();
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#ifdef MACOS_ENABLED
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double hw_mix_rate;
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UInt32 hw_mix_rate_size = sizeof(hw_mix_rate);
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AudioObjectPropertyAddress property_sr = { kAudioDevicePropertyNominalSampleRate, kAudioObjectPropertyScopeGlobal, kAudioObjectPropertyElementMain };
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result = AudioObjectGetPropertyData(device_id, &property_sr, 0, nullptr, &hw_mix_rate_size, &hw_mix_rate);
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ERR_FAIL_COND_V(result != noErr, FAILED);
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#else
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double hw_mix_rate = [AVAudioSession sharedInstance].sampleRate;
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#endif
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capture_mix_rate = hw_mix_rate;
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memset(&strdesc, 0, sizeof(strdesc));
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strdesc.mFormatID = kAudioFormatLinearPCM;
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strdesc.mFormatFlags = kLinearPCMFormatFlagIsSignedInteger | kLinearPCMFormatFlagIsPacked;
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strdesc.mChannelsPerFrame = capture_channels;
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strdesc.mSampleRate = mix_rate;
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strdesc.mSampleRate = capture_mix_rate;
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strdesc.mFramesPerPacket = 1;
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strdesc.mBitsPerChannel = 16;
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strdesc.mBytesPerFrame = strdesc.mBitsPerChannel * strdesc.mChannelsPerFrame / 8;
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@ -425,6 +456,13 @@ Error AudioDriverCoreAudio::init_input_device() {
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result = AudioUnitSetProperty(input_unit, kAudioUnitProperty_StreamFormat, kAudioUnitScope_Output, kInputBus, &strdesc, sizeof(strdesc));
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ERR_FAIL_COND_V(result != noErr, FAILED);
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int latency = Engine::get_singleton()->get_audio_output_latency();
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// Sample rate is independent of channels (ref: https://stackoverflow.com/questions/11048825/audio-sample-frequency-rely-on-channels)
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capture_buffer_frames = closest_power_of_2(latency * capture_mix_rate / 1000);
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unsigned int buffer_size = capture_buffer_frames * capture_channels;
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input_buf.resize(buffer_size);
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AURenderCallbackStruct callback;
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memset(&callback, 0, sizeof(AURenderCallbackStruct));
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callback.inputProc = &AudioDriverCoreAudio::input_callback;
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@ -435,6 +473,9 @@ Error AudioDriverCoreAudio::init_input_device() {
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result = AudioUnitInitialize(input_unit);
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ERR_FAIL_COND_V(result != noErr, FAILED);
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print_verbose("CoreAudio: input sampling rate: " + itos(capture_mix_rate) + " Hz");
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print_verbose("CoreAudio: input audio buffer frames: " + itos(capture_buffer_frames) + " calculated latency: " + itos(capture_buffer_frames * 1000 / capture_mix_rate) + "ms");
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return OK;
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}
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@ -477,7 +518,7 @@ void AudioDriverCoreAudio::finish_input_device() {
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}
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Error AudioDriverCoreAudio::input_start() {
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input_buffer_init(buffer_frames);
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input_buffer_init(capture_buffer_frames);
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OSStatus result = AudioOutputUnitStart(input_unit);
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if (result != noErr) {
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@ -561,7 +602,7 @@ PackedStringArray AudioDriverCoreAudio::_get_device_list(bool input) {
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}
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void AudioDriverCoreAudio::_set_device(const String &output_device, bool input) {
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AudioDeviceID deviceId;
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AudioDeviceID device_id;
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bool found = false;
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if (output_device != "Default") {
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AudioObjectPropertyAddress prop;
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@ -608,7 +649,7 @@ void AudioDriverCoreAudio::_set_device(const String &output_device, bool input)
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if (CFStringGetCString(cfname, buffer, maxSize, kCFStringEncodingUTF8)) {
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String name = String::utf8(buffer) + " (" + itos(audioDevices[i]) + ")";
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if (name == output_device) {
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deviceId = audioDevices[i];
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device_id = audioDevices[i];
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found = true;
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}
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}
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@ -626,14 +667,14 @@ void AudioDriverCoreAudio::_set_device(const String &output_device, bool input)
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UInt32 elem = input ? kAudioHardwarePropertyDefaultInputDevice : kAudioHardwarePropertyDefaultOutputDevice;
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AudioObjectPropertyAddress property = { elem, kAudioObjectPropertyScopeGlobal, kAudioObjectPropertyElementMain };
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OSStatus result = AudioObjectGetPropertyData(kAudioObjectSystemObject, &property, 0, nullptr, &size, &deviceId);
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OSStatus result = AudioObjectGetPropertyData(kAudioObjectSystemObject, &property, 0, nullptr, &size, &device_id);
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ERR_FAIL_COND(result != noErr);
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found = true;
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}
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if (found) {
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OSStatus result = AudioUnitSetProperty(input ? input_unit : audio_unit, kAudioOutputUnitProperty_CurrentDevice, kAudioUnitScope_Global, 0, &deviceId, sizeof(AudioDeviceID));
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OSStatus result = AudioUnitSetProperty(input ? input_unit : audio_unit, kAudioOutputUnitProperty_CurrentDevice, kAudioUnitScope_Global, 0, &device_id, sizeof(AudioDeviceID));
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ERR_FAIL_COND(result != noErr);
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if (input) {
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@ -390,7 +390,7 @@ int AudioStreamPlaybackMicrophone::_mix_internal(AudioFrame *p_buffer, int p_fra
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Vector<int32_t> buf = AudioDriver::get_singleton()->get_input_buffer();
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unsigned int input_size = AudioDriver::get_singleton()->get_input_size();
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int mix_rate = AudioDriver::get_singleton()->get_mix_rate();
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int mix_rate = AudioDriver::get_singleton()->get_input_mix_rate();
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unsigned int playback_delay = MIN(((50 * mix_rate) / 1000) * 2, buf.size() >> 1);
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#ifdef DEBUG_ENABLED
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unsigned int input_position = AudioDriver::get_singleton()->get_input_position();
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@ -441,7 +441,7 @@ int AudioStreamPlaybackMicrophone::mix(AudioFrame *p_buffer, float p_rate_scale,
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}
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float AudioStreamPlaybackMicrophone::get_stream_sampling_rate() {
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return AudioDriver::get_singleton()->get_mix_rate();
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return AudioDriver::get_singleton()->get_input_mix_rate();
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}
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void AudioStreamPlaybackMicrophone::start(double p_from_pos) {
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@ -1614,6 +1614,10 @@ float AudioServer::get_mix_rate() const {
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return AudioDriver::get_singleton()->get_mix_rate();
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}
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float AudioServer::get_input_mix_rate() const {
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return AudioDriver::get_singleton()->get_input_mix_rate();
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}
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float AudioServer::read_output_peak_db() const {
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return 0;
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}
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@ -1946,6 +1950,7 @@ void AudioServer::_bind_methods() {
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ClassDB::bind_method(D_METHOD("get_speaker_mode"), &AudioServer::get_speaker_mode);
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ClassDB::bind_method(D_METHOD("get_mix_rate"), &AudioServer::get_mix_rate);
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ClassDB::bind_method(D_METHOD("get_input_mix_rate"), &AudioServer::get_input_mix_rate);
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ClassDB::bind_method(D_METHOD("get_output_device_list"), &AudioServer::get_output_device_list);
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ClassDB::bind_method(D_METHOD("get_output_device"), &AudioServer::get_output_device);
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@ -99,6 +99,7 @@ public:
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virtual Error init() = 0;
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virtual void start() = 0;
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virtual int get_mix_rate() const = 0;
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virtual int get_input_mix_rate() const { return get_mix_rate(); }
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virtual SpeakerMode get_speaker_mode() const = 0;
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virtual float get_latency() { return 0; }
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@ -441,6 +442,7 @@ public:
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virtual SpeakerMode get_speaker_mode() const;
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virtual float get_mix_rate() const;
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virtual float get_input_mix_rate() const;
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virtual float read_output_peak_db() const;
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