281 lines
6.6 KiB
C
281 lines
6.6 KiB
C
#include "cmGlobal.h"
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#include "cmRpt.h"
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#include "cmErr.h"
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#include "cmCtx.h"
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#include "cmMem.h"
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#include "cmMallocDebug.h"
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#include "cmAudioPort.h"
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#include "cmAudioPortFile.h"
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#include "cmAudioFileDev.h"
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typedef struct
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{
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cmAfdH_t devH;
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} cmApDev_t;
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typedef struct
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{
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cmErr_t err;
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cmApDev_t* devArray;
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unsigned devCnt;
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} cmApf_t;
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cmApf_t* _cmApf = NULL;
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cmApRC_t cmApFileInitialize( cmRpt_t* rpt, unsigned baseApDevIdx )
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{
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cmApRC_t rc;
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if((rc = cmApFileFinalize()) != kOkApRC )
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return rc;
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_cmApf = cmMemAllocZ(cmApf_t,1);
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cmErrSetup(&_cmApf->err,rpt,"Audio Port File");
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return rc;
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}
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cmApRC_t cmApFileFinalize()
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{
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cmApRC_t rc = kOkApRC;
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if( _cmApf == NULL )
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return kOkApRC;
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unsigned i;
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for(i=0; i<_cmApf->devCnt; ++i)
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{
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cmApRC_t rc0;
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if((rc0 = cmApFileDeviceDestroy(i)) != kOkApRC )
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rc = rc0;
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}
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cmMemPtrFree(&_cmApf->devArray);
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_cmApf->devCnt = 0;
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cmMemPtrFree(&_cmApf);
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return rc;
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}
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unsigned cmApFileDeviceCreate(
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const cmChar_t* devLabel,
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const cmChar_t* iFn,
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const cmChar_t* oFn,
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unsigned oBits,
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unsigned oChCnt )
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{
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unsigned i;
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// find an available device slot
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for(i=0; i<_cmApf->devCnt; ++i)
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if( cmAudioFileDevIsValid( _cmApf->devArray[i].devH ) == false )
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break;
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// if no device slot is availd ...
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if( i == _cmApf->devCnt )
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{
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// ... create a new one
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_cmApf->devArray = cmMemResizePZ(cmApDev_t, _cmApf->devArray, _cmApf->devCnt+1);
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++_cmApf->devCnt;
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}
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// open the file device
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if( cmAudioFileDevInitialize( &_cmApf->devArray[i].devH, devLabel, i, iFn, oFn, oBits, oChCnt, _cmApf->err.rpt ) != kOkAfdRC )
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{
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cmErrMsg(&_cmApf->err,kAudioPortFileFailApRC,"The audio file device initialization failed.");
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i = cmInvalidIdx;
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}
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return i;
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}
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cmApRC_t cmApFileDeviceDestroy( unsigned devIdx )
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{
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if( cmAudioFileDevFinalize( &_cmApf->devArray[devIdx].devH ) != kOkAfdRC )
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return cmErrMsg(&_cmApf->err,kAudioPortFileFailApRC,"The audio file device finalize failed.");
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return kOkApRC;
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}
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unsigned cmApFileDeviceCount()
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{ return _cmApf->devCnt; }
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const char* cmApFileDeviceLabel( unsigned devIdx )
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{
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assert( devIdx < cmApFileDeviceCount());
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return cmAudioFileDevLabel( _cmApf->devArray[devIdx].devH );
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}
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unsigned cmApFileDeviceChannelCount( unsigned devIdx, bool inputFl )
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{
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assert( devIdx < cmApFileDeviceCount());
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return cmAudioFileDevChannelCount( _cmApf->devArray[devIdx].devH, inputFl );
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}
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double cmApFileDeviceSampleRate( unsigned devIdx )
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{
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assert( devIdx < cmApFileDeviceCount());
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return cmAudioFileDevSampleRate( _cmApf->devArray[devIdx].devH );
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}
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unsigned cmApFileDeviceFramesPerCycle( unsigned devIdx, bool inputFl )
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{
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assert( devIdx < cmApFileDeviceCount());
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return cmAudioFileDevFramesPerCycle( _cmApf->devArray[devIdx].devH, inputFl );
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}
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cmApRC_t cmApFileDeviceSetup(
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unsigned devIdx,
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double srate,
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unsigned framesPerCycle,
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cmApCallbackPtr_t callbackPtr,
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void* userCbPtr )
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{
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assert( devIdx < cmApFileDeviceCount());
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if( cmAudioFileDevSetup( _cmApf->devArray[devIdx].devH,srate,framesPerCycle,callbackPtr,userCbPtr) != kOkAfdRC )
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return cmErrMsg(&_cmApf->err,kAudioPortFileFailApRC,"The audio file device setup failed.");
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return kOkApRC;
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}
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cmApRC_t cmApFileDeviceStart( unsigned devIdx )
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{
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assert( devIdx < cmApFileDeviceCount());
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if( cmAudioFileDevStart( _cmApf->devArray[devIdx].devH ) != kOkAfdRC )
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return cmErrMsg(&_cmApf->err,kAudioPortFileFailApRC,"The audio file device setup failed.");
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return kOkApRC;
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}
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cmApRC_t cmApFileDeviceStop( unsigned devIdx )
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{
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assert( devIdx < cmApFileDeviceCount());
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if( cmAudioFileDevStop( _cmApf->devArray[devIdx].devH ) != kOkAfdRC )
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return cmErrMsg(&_cmApf->err,kAudioPortFileFailApRC,"The audio file device setup failed.");
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return kOkApRC;
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}
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bool cmApFileDeviceIsStarted( unsigned devIdx )
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{
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assert( devIdx < cmApFileDeviceCount());
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return cmAudioFileDevIsStarted( _cmApf->devArray[devIdx].devH );
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}
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void cmApFileReport( cmRpt_t* rpt )
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{
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unsigned i;
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for(i=0; _cmApf->devCnt; ++i)
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{
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cmRptPrintf(rpt,"%i: ",i);
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cmAudioFileDevReport( _cmApf->devArray[i].devH, rpt );
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cmRptPrintf(rpt,"\n");
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}
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}
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// device callback function used with cmAudioPortFileTest() note that this assumes
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// that the packet buffer contain non-interleaved data.
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void _cmApFileTestCb(
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cmApAudioPacket_t* inPktArray,
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unsigned inPktCnt,
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cmApAudioPacket_t* outPktArray,
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unsigned outPktCnt )
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{
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cmApAudioPacket_t* ip = inPktArray;
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cmApAudioPacket_t* op = outPktArray;
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unsigned opi = 0;
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unsigned ipi = 0;
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unsigned oci = 0;
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unsigned ici = 0;
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while(1)
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{
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if( ici == ip->chCnt)
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{
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ici = 0;
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if( ++ipi >= inPktCnt )
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break;
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ip = inPktArray + ipi;
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}
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if( oci == op->chCnt )
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{
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oci = 0;
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if( ++opi >= outPktCnt )
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break;
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ip = outPktArray + opi;
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}
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assert( ip->audioFramesCnt == op->audioFramesCnt );
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assert( cmIsFlag(ip->flags,kInterleavedApFl)==false && cmIsFlag(ip->flags,kInterleavedApFl)==false );
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cmApSample_t* ibp = ((cmApSample_t*)ip->audioBytesPtr) + (ip->audioFramesCnt*ici);
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cmApSample_t* obp = ((cmApSample_t*)op->audioBytesPtr) + (op->audioFramesCnt*oci);
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memcpy(obp,ibp,ip->audioFramesCnt*sizeof(cmApSample_t));
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++ici;
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++oci;
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}
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}
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void cmApFileTest( cmRpt_t* rpt )
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{
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unsigned dev0Idx;
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const cmChar_t* promptStr = "apf> q=quit 1=start 0=stop\n";
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const cmChar_t* label0 = "file0";
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const cmChar_t* i0Fn = "/home/kevin/media/audio/McGill-1/1 Audio Track.aiff";
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const cmChar_t* o0Fn = "/home/kevin/temp/afd1.aif";
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unsigned o0Bits = 16;
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unsigned o0ChCnt = 2;
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double srate = 44100;
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unsigned framesPerCycle = 512;
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// initialize audio port file API
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if( cmApFileInitialize(rpt,0) != kOkApRC )
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return;
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// create an audio port file
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if((dev0Idx = cmApFileDeviceCreate(label0,i0Fn,o0Fn,o0Bits,o0ChCnt)) == cmInvalidIdx )
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goto errLabel;
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// configure an audio port file
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if( cmApFileDeviceSetup( dev0Idx, srate, framesPerCycle, _cmApFileTestCb, NULL ) != kOkAfdRC )
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goto errLabel;
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char c;
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fputs(promptStr,stderr);
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fflush(stdin);
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while((c=getchar()) != 'q')
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{
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switch(c)
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{
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case '0': cmApFileDeviceStart(dev0Idx); break;
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case '1': cmApFileDeviceStop(dev0Idx); break;
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}
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fputs(promptStr,stderr);
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fflush(stdin);
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c = 0;
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}
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errLabel:
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//cmApFileDeviceDestroy(dev0Idx);
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cmApFileFinalize();
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}
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