this is necessary in order to get Furnace to build using CMake 4.0. you should do: git submodule deinit extern/portaudio
		
			
				
	
	
		
			178 lines
		
	
	
		
			7.2 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			178 lines
		
	
	
		
			7.2 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
#include <iostream>
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#include "portaudiocpp/PortAudioCpp.hxx"
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#ifdef WIN32
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#include "portaudiocpp/AsioDeviceAdapter.hxx"
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#endif
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// ---------------------------------------------------------------------------------------
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void printSupportedStandardSampleRates(
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        const portaudio::DirectionSpecificStreamParameters &inputParameters,
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        const portaudio::DirectionSpecificStreamParameters &outputParameters)
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{
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    static double STANDARD_SAMPLE_RATES[] = {
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        8000.0, 9600.0, 11025.0, 12000.0, 16000.0, 22050.0, 24000.0, 32000.0,
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        44100.0, 48000.0, 88200.0, 96000.0, -1 }; // negative terminated list
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    int printCount = 0;
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    for (int i = 0; STANDARD_SAMPLE_RATES[i] > 0; ++i)
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    {
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        portaudio::StreamParameters tmp = portaudio::StreamParameters(inputParameters, outputParameters, STANDARD_SAMPLE_RATES[i], 0, paNoFlag);
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        if (tmp.isSupported())
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        {
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            if (printCount == 0)
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            {
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                std::cout << "    " << STANDARD_SAMPLE_RATES[i]; // 8.2
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                printCount = 1;
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            }
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            else if (printCount == 4)
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            {
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                std::cout << "," << std::endl;
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                std::cout << "    " << STANDARD_SAMPLE_RATES[i]; // 8.2
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                printCount = 1;
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            }
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            else
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            {
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                std::cout << ", " << STANDARD_SAMPLE_RATES[i]; // 8.2
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                ++printCount;
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            }
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        }
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    }
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    if (printCount == 0)
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        std::cout << "None" << std::endl;
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    else
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        std::cout << std::endl;
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}
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// ---------------------------------------------------------------------------------------
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int main(int, char*[]);
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int main(int, char*[])
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{
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    try
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    {
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        portaudio::AutoSystem autoSys;
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        portaudio::System &sys = portaudio::System::instance();
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        std::cout << "PortAudio version number = " << sys.version() << std::endl;
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        std::cout << "PortAudio version text = '" << sys.versionText() << "'" << std::endl;
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        int numDevices = sys.deviceCount();
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        std::cout << "Number of devices = " << numDevices << std::endl;
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        for (portaudio::System::DeviceIterator i = sys.devicesBegin(); i != sys.devicesEnd(); ++i)
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        {
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            std::cout << "--------------------------------------- device #" << (*i).index() << std::endl;
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            // Mark global and API specific default devices:
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            bool defaultDisplayed = false;
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            if ((*i).isSystemDefaultInputDevice())
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            {
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                std::cout << "[ Default Input";
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                defaultDisplayed = true;
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            }
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            else if ((*i).isHostApiDefaultInputDevice())
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            {
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                std::cout << "[ Default " << (*i).hostApi().name() << " Input";
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                defaultDisplayed = true;
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            }
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            if ((*i).isSystemDefaultOutputDevice())
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            {
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                std::cout << (defaultDisplayed ? "," : "[");
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                std::cout << " Default Output";
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                defaultDisplayed = true;
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            }
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            else if ((*i).isHostApiDefaultOutputDevice())
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            {
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                std::cout << (defaultDisplayed ? "," : "[");
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                std::cout << " Default " << (*i).hostApi().name() << " Output";
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                defaultDisplayed = true;
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            }
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            if (defaultDisplayed)
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                std::cout << " ]" << std::endl;
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            // Print device info:
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            std::cout << "Name                        = " << (*i).name() << std::endl;
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            std::cout << "Host API                    = " << (*i).hostApi().name() << std::endl;
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            std::cout << "Max inputs = " << (*i).maxInputChannels() << ", Max outputs = " << (*i).maxOutputChannels() << std::endl;
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            std::cout << "Default low input latency   = " << (*i).defaultLowInputLatency() << std::endl; // 8.3
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            std::cout << "Default low output latency  = " << (*i).defaultLowOutputLatency() << std::endl; // 8.3
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            std::cout << "Default high input latency  = " << (*i).defaultHighInputLatency() << std::endl; // 8.3
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            std::cout << "Default high output latency = " << (*i).defaultHighOutputLatency() << std::endl; // 8.3
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#ifdef WIN32
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            // ASIO specific latency information:
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            if ((*i).hostApi().typeId() == paASIO)
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            {
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                portaudio::AsioDeviceAdapter asioDevice((*i));
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                std::cout << "ASIO minimum buffer size    = " << asioDevice.minBufferSize() << std::endl;
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                std::cout << "ASIO maximum buffer size    = " << asioDevice.maxBufferSize() << std::endl;
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                std::cout << "ASIO preferred buffer size  = " << asioDevice.preferredBufferSize() << std::endl;
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                if (asioDevice.granularity() == -1)
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                    std::cout << "ASIO buffer granularity     = power of 2" << std::endl;
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                else
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                    std::cout << "ASIO buffer granularity     = " << asioDevice.granularity() << std::endl;
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            }
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#endif // WIN32
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            std::cout << "Default sample rate         = " << (*i).defaultSampleRate() << std::endl; // 8.2
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            // Poll for standard sample rates:
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            portaudio::DirectionSpecificStreamParameters inputParameters((*i), (*i).maxInputChannels(), portaudio::INT16, true, 0.0, NULL);
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            portaudio::DirectionSpecificStreamParameters outputParameters((*i), (*i).maxOutputChannels(), portaudio::INT16, true, 0.0, NULL);
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            if (inputParameters.numChannels() > 0)
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            {
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                std::cout << "Supported standard sample rates" << std::endl;
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                std::cout << " for half-duplex 16 bit " << inputParameters.numChannels() << " channel input = " << std::endl;
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                printSupportedStandardSampleRates(inputParameters, portaudio::DirectionSpecificStreamParameters::null());
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            }
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            if (outputParameters.numChannels() > 0)
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            {
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                std::cout << "Supported standard sample rates" << std::endl;
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                std::cout << " for half-duplex 16 bit " << outputParameters.numChannels() << " channel output = " << std::endl;
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                printSupportedStandardSampleRates(portaudio::DirectionSpecificStreamParameters::null(), outputParameters);
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            }
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            if (inputParameters.numChannels() > 0 && outputParameters.numChannels() > 0)
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            {
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                std::cout << "Supported standard sample rates" << std::endl;
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                std::cout << " for full-duplex 16 bit " << inputParameters.numChannels() << " channel input, " << outputParameters.numChannels() << " channel output = " << std::endl;
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                printSupportedStandardSampleRates(inputParameters, outputParameters);
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            }
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        }
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        std::cout << "----------------------------------------------" << std::endl;
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    }
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    catch (const portaudio::PaException &e)
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    {
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        std::cout << "A PortAudio error occurred: " << e.paErrorText() << std::endl;
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    }
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    catch (const portaudio::PaCppException &e)
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    {
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        std::cout << "A PortAudioCpp error occurred: " << e.what() << std::endl;
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    }
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    catch (const std::exception &e)
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    {
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        std::cout << "A generic exception occurred: " << e.what() << std::endl;
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    }
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    catch (...)
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    {
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        std::cout << "An unknown exception occurred." << std::endl;
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    }
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    return 0;
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}
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