mirror of
https://github.com/saitohirga/WSJT-X.git
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e8dbf4c446
git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/trunk@249 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
348 lines
13 KiB
C
348 lines
13 KiB
C
/** @file paqa_devs.c
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@brief Self Testing Quality Assurance app for PortAudio
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Try to open each device and run through all the
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possible configurations.
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@author Phil Burk http://www.softsynth.com
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Pieter adapted to V19 API. Test now relies heavily on
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Pa_IsFormatSupported(). Uses same 'standard' sample rates
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as in test pa_devs.c.
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*/
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/*
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* $Id$
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*
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* This program uses the PortAudio Portable Audio Library.
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* For more information see: http://www.portaudio.com
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* Copyright (c) 1999-2000 Ross Bencina and Phil Burk
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*
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* Permission is hereby granted, free of charge, to any person obtaining
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* a copy of this software and associated documentation files
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* (the "Software"), to deal in the Software without restriction,
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* including without limitation the rights to use, copy, modify, merge,
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* publish, distribute, sublicense, and/or sell copies of the Software,
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* and to permit persons to whom the Software is furnished to do so,
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* subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be
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* included in all copies or substantial portions of the Software.
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*
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* Any person wishing to distribute modifications to the Software is
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* requested to send the modifications to the original developer so that
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* they can be incorporated into the canonical version.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
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* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR
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* ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF
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* CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
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* WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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*
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*/
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#include <stdio.h>
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#include <math.h>
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#include "portaudio.h"
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#include "pa_trace.h"
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/****************************************** Definitions ***********/
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#define MODE_INPUT (0)
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#define MODE_OUTPUT (1)
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typedef struct PaQaData
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{
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unsigned long framesLeft;
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int numChannels;
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int bytesPerSample;
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int mode;
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short sawPhase;
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PaSampleFormat format;
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}
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PaQaData;
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/****************************************** Prototypes ***********/
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static void TestDevices( int mode );
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static void TestFormats( int mode, PaDeviceIndex deviceID, double sampleRate,
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int numChannels );
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static int TestAdvance( int mode, PaDeviceIndex deviceID, double sampleRate,
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int numChannels, PaSampleFormat format );
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static int QaCallback( const void *inputBuffer, void *outputBuffer,
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unsigned long framesPerBuffer,
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const PaStreamCallbackTimeInfo* timeInfo,
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PaStreamCallbackFlags statusFlags,
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void *userData );
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/****************************************** Globals ***********/
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static int gNumPassed = 0;
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static int gNumFailed = 0;
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/****************************************** Macros ***********/
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/* Print ERROR if it fails. Tally success or failure. */
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/* Odd do-while wrapper seems to be needed for some compilers. */
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#define EXPECT(_exp) \
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do \
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{ \
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if ((_exp)) {\
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/* printf("SUCCESS for %s\n", #_exp ); */ \
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gNumPassed++; \
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} \
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else { \
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printf("ERROR - 0x%x - %s for %s\n", result, \
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((result == 0) ? "-" : Pa_GetErrorText(result)), \
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#_exp ); \
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gNumFailed++; \
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goto error; \
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} \
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} while(0)
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/*******************************************************************/
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/* This routine will be called by the PortAudio engine when audio is needed.
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** It may be called at interrupt level on some machines so don't do anything
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** that could mess up the system like calling malloc() or free().
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*/
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static int QaCallback( const void *inputBuffer, void *outputBuffer,
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unsigned long framesPerBuffer,
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const PaStreamCallbackTimeInfo* timeInfo,
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PaStreamCallbackFlags statusFlags,
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void *userData )
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{
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unsigned long i;
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short phase;
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PaQaData *data = (PaQaData *) userData;
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(void) inputBuffer;
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/* Play simle sawtooth wave. */
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if( data->mode == MODE_OUTPUT )
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{
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phase = data->sawPhase;
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switch( data->format )
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{
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case paFloat32:
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{
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float *out = (float *) outputBuffer;
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for( i=0; i<framesPerBuffer; i++ )
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{
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phase += 0x123;
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*out++ = (float) (phase * (1.0 / 32768.0));
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if( data->numChannels == 2 )
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{
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*out++ = (float) (phase * (1.0 / 32768.0));
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}
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}
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}
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break;
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case paInt32:
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{
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int *out = (int *) outputBuffer;
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for( i=0; i<framesPerBuffer; i++ )
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{
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phase += 0x123;
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*out++ = ((int) phase ) << 16;
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if( data->numChannels == 2 )
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{
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*out++ = ((int) phase ) << 16;
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}
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}
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}
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break;
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case paInt16:
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{
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short *out = (short *) outputBuffer;
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for( i=0; i<framesPerBuffer; i++ )
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{
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phase += 0x123;
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*out++ = phase;
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if( data->numChannels == 2 )
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{
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*out++ = phase;
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}
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}
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}
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break;
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default:
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{
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unsigned char *out = (unsigned char *) outputBuffer;
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unsigned long numBytes = framesPerBuffer * data->numChannels * data->bytesPerSample;
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for( i=0; i<numBytes; i++ )
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{
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*out++ = 0;
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}
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}
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break;
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}
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data->sawPhase = phase;
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}
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/* Are we through yet? */
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if( data->framesLeft > framesPerBuffer )
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{
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PaUtil_AddTraceMessage("QaCallback: running. framesLeft", data->framesLeft );
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data->framesLeft -= framesPerBuffer;
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return 0;
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}
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else
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{
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PaUtil_AddTraceMessage("QaCallback: DONE! framesLeft", data->framesLeft );
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data->framesLeft = 0;
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return 1;
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}
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}
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/*******************************************************************/
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int main(void);
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int main(void)
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{
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PaError result;
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EXPECT( ((result=Pa_Initialize()) == 0) );
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printf("Test OUTPUT ---------------\n");
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TestDevices( MODE_OUTPUT );
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printf("Test INPUT ---------------\n");
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TestDevices( MODE_INPUT );
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error:
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Pa_Terminate();
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printf("QA Report: %d passed, %d failed.\n", gNumPassed, gNumFailed );
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return 0;
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}
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/*******************************************************************
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* Try each output device, through its full range of capabilities. */
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static void TestDevices( int mode )
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{
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int id, jc, i;
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int maxChannels;
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const PaDeviceInfo *pdi;
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static double standardSampleRates[] = { 8000.0, 9600.0, 11025.0, 12000.0,
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16000.0, 22050.0, 24000.0,
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32000.0, 44100.0, 48000.0,
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88200.0, 96000.0,
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-1.0 }; /* Negative terminated list. */
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int numDevices = Pa_GetDeviceCount();
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for( id=0; id<numDevices; id++ ) /* Iterate through all devices. */
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{
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pdi = Pa_GetDeviceInfo( id );
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/* Try 1 to maxChannels on each device. */
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maxChannels = (( mode == MODE_INPUT ) ? pdi->maxInputChannels : pdi->maxOutputChannels);
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for( jc=1; jc<=maxChannels; jc++ )
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{
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printf("Name = %s\n", pdi->name );
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/* Try each standard sample rate. */
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for( i=0; standardSampleRates[i] > 0; i++ )
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{
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TestFormats( mode, (PaDeviceIndex)id, standardSampleRates[i], jc );
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}
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}
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}
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}
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/*******************************************************************/
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static void TestFormats( int mode, PaDeviceIndex deviceID, double sampleRate,
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int numChannels )
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{
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TestAdvance( mode, deviceID, sampleRate, numChannels, paFloat32 );
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TestAdvance( mode, deviceID, sampleRate, numChannels, paInt16 );
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TestAdvance( mode, deviceID, sampleRate, numChannels, paInt32 );
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/* TestAdvance( mode, deviceID, sampleRate, numChannels, paInt24 ); */
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}
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/*******************************************************************/
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static int TestAdvance( int mode, PaDeviceIndex deviceID, double sampleRate,
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int numChannels, PaSampleFormat format )
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{
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PaStreamParameters inputParameters, outputParameters, *ipp, *opp;
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PaStream *stream = NULL;
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PaError result = paNoError;
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PaQaData myData;
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#define FRAMES_PER_BUFFER (64)
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/* Setup data for synthesis thread. */
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myData.framesLeft = (unsigned long) (sampleRate * 100); /* 100 seconds */
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myData.numChannels = numChannels;
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myData.mode = mode;
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myData.format = format;
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switch( format )
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{
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case paFloat32:
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case paInt32:
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case paInt24:
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myData.bytesPerSample = 4;
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break;
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/* case paPackedInt24:
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myData.bytesPerSample = 3;
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break; */
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default:
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myData.bytesPerSample = 2;
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break;
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}
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if( mode == MODE_INPUT )
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{
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inputParameters.device = deviceID;
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inputParameters.channelCount = numChannels;
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inputParameters.sampleFormat = format;
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inputParameters.suggestedLatency = Pa_GetDeviceInfo( inputParameters.device )->defaultLowInputLatency;
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inputParameters.hostApiSpecificStreamInfo = NULL;
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ipp = &inputParameters;
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}
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else
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ipp = NULL;
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if( mode == MODE_OUTPUT ) /* Pa_GetDeviceInfo(paNoDevice) COREDUMPS!!! */
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{
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outputParameters.device = deviceID;
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outputParameters.channelCount = numChannels;
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outputParameters.sampleFormat = format;
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outputParameters.suggestedLatency = Pa_GetDeviceInfo( outputParameters.device )->defaultLowOutputLatency;
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outputParameters.hostApiSpecificStreamInfo = NULL;
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opp = &outputParameters;
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}
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else
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opp = NULL;
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if(paFormatIsSupported == Pa_IsFormatSupported( ipp, opp, sampleRate ))
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{
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printf("------ TestAdvance: %s, device = %d, rate = %g, numChannels = %d, format = %lu -------\n",
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( mode == MODE_INPUT ) ? "INPUT" : "OUTPUT",
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deviceID, sampleRate, numChannels, (unsigned long)format);
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EXPECT( ((result = Pa_OpenStream( &stream,
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ipp,
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opp,
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sampleRate,
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FRAMES_PER_BUFFER,
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paClipOff, /* we won't output out of range samples so don't bother clipping them */
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QaCallback,
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&myData ) ) == 0) );
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if( stream )
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{
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PaTime oldStamp, newStamp;
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unsigned long oldFrames;
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int minDelay = ( mode == MODE_INPUT ) ? 1000 : 400;
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/* Was:
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int minNumBuffers = Pa_GetMinNumBuffers( FRAMES_PER_BUFFER, sampleRate );
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int msec = (int) ((minNumBuffers * 3 * 1000.0 * FRAMES_PER_BUFFER) / sampleRate);
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*/
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int msec = (int)( 3.0 *
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(( mode == MODE_INPUT ) ? inputParameters.suggestedLatency : outputParameters.suggestedLatency ));
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if( msec < minDelay ) msec = minDelay;
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printf("msec = %d\n", msec); /**/
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EXPECT( ((result=Pa_StartStream( stream )) == 0) );
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/* Check to make sure PortAudio is advancing timeStamp. */
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oldStamp = Pa_GetStreamTime(stream);
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Pa_Sleep(msec);
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newStamp = Pa_GetStreamTime(stream);
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printf("oldStamp = %g,newStamp = %g\n", oldStamp, newStamp ); /**/
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EXPECT( (oldStamp < newStamp) );
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/* Check to make sure callback is decrementing framesLeft. */
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oldFrames = myData.framesLeft;
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Pa_Sleep(msec);
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printf("oldFrames = %lu, myData.framesLeft = %lu\n", oldFrames, myData.framesLeft ); /**/
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EXPECT( (oldFrames > myData.framesLeft) );
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EXPECT( ((result=Pa_CloseStream( stream )) == 0) );
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stream = NULL;
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}
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}
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error:
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if( stream != NULL ) Pa_CloseStream( stream );
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return result;
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}
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