561 satır
15 KiB
C
561 satır
15 KiB
C
#include <sys/time.h> // gettimeofday()
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#include "cmPrefix.h"
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#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 "cmFile.h"
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#include "cmTime.h"
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#include "cmMidi.h"
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#include "cmMidiPort.h"
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#include "cmMidiFile.h"
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#include "cmMidiFilePlay.h"
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#include "cmThread.h" // cmSleepUs()
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#include "cmTime.h"
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typedef struct
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{
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cmErr_t err;
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cmCtx_t ctx;
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cmMfpCallback_t cbFunc;
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void* userCbPtr;
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void* printDataPtr;
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unsigned memBlockByteCnt;
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cmMidiFileH_t mfH; // midi file handle
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bool closeFileFl; // true mfH should be closed when this midi file player is closed
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unsigned ticksPerQN; // global for file
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unsigned microsPerTick; // set via tempo
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unsigned etime; // usecs elapsed since transmitting prev msg
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unsigned mtime; // usecs to wait before transmitting next msg
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unsigned msgN; // count of pointers in msgV[]
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unsigned msgIdx; // index into msgV[] of next msg to transmit
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const cmMidiTrackMsg_t** msgV; // array of msg pointers
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} cmMfp_t;
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cmMfpH_t cmMfpNullHandle = cmSTATIC_NULL_HANDLE;
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#define _cmMfpError( mfp, rc ) _cmMfpOnError(mfp, rc, __LINE__,__FILE__,__FUNCTION__ )
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// note: mfp may be NULL
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cmMfpRC_t _cmMfpOnError( cmMfp_t* mfp, cmMfpRC_t rc, int line, const char* fn, const char* func )
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{
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return cmErrMsg(&mfp->err,rc,"rc:%i %i %s %s\n",rc,line,func,fn);
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}
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cmMfp_t* _cmMfpHandleToPtr( cmMfpH_t h )
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{
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cmMfp_t* p = (cmMfp_t*)h.h;
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assert(p != NULL);
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return p;
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}
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void _cmMfpUpdateMicrosPerTick( cmMfp_t* mfp, unsigned microsPerQN )
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{
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mfp->microsPerTick = microsPerQN / mfp->ticksPerQN;
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printf("microsPerTick: %i bpm:%i ticksPerQN:%i\n", mfp->microsPerTick,microsPerQN,mfp->ticksPerQN);
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}
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cmMfpRC_t cmMfpCreate( cmMfpH_t* hp, cmMfpCallback_t cbFunc, void* userCbPtr, cmCtx_t* ctx )
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{
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cmMfp_t* p = cmMemAllocZ( cmMfp_t, 1 );
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cmErrSetup(&p->err,&ctx->rpt,"MIDI File Player");
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p->ctx = *ctx;
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p->cbFunc = cbFunc;
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p->userCbPtr = userCbPtr;
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p->mfH.h = NULL;
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p->closeFileFl = false;
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p->ticksPerQN = 0;
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p->microsPerTick = 0;
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p->etime = 0;
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p->msgN = 0;
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p->msgV = NULL;
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p->msgIdx = 0;
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hp->h = p;
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return kOkMfpRC;
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}
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cmMfpRC_t cmMfpDestroy( cmMfpH_t* hp )
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{
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if( hp == NULL )
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return kOkMfpRC;
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if( cmMfpIsValid(*hp) )
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{
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cmMfp_t* p = _cmMfpHandleToPtr(*hp);
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if( cmMidiFileIsNull(p->mfH)==false && p->closeFileFl==true )
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cmMidiFileClose(&p->mfH);
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cmMemFree(p);
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hp->h = NULL;
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}
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return kOkMfpRC;
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}
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bool cmMfpIsValid( cmMfpH_t h )
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{ return h.h != NULL; }
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cmMfpRC_t cmMfpLoadFile( cmMfpH_t h, const char* fn )
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{
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cmMfpRC_t rc = kOkMfpRC;
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cmMfp_t* p = _cmMfpHandleToPtr(h);
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cmMidiFileH_t mfH = cmMidiFileNullHandle;
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if((rc = cmMidiFileOpen( fn, &mfH, &p->ctx )) != kOkMfRC )
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return _cmMfpError(p,kFileOpenFailMfpRC);
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if((rc= cmMfpLoadHandle( h, mfH )) == kOkMfpRC )
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p->closeFileFl = true;
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return rc;
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}
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cmMfpRC_t cmMfpLoadHandle( cmMfpH_t h, cmMidiFileH_t mfH )
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{
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cmMfp_t* p = _cmMfpHandleToPtr(h);
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// if a file has already been assigned to this player
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if( (cmMidiFileIsNull(p->mfH) == false) && p->closeFileFl)
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{
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// close the existing file
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cmMidiFileClose(&p->mfH);
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}
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// get the count of msg's in the new midi file
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if((p->msgN = cmMidiFileMsgCount(mfH)) == cmInvalidCnt )
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return _cmMfpError(p,kInvalidFileMfpRC);
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// get a pointer to the first mesage
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if((p->msgV = cmMidiFileMsgArray(mfH)) == NULL )
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return _cmMfpError(p,kInvalidFileMfpRC);
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// get the count of ticks per qn
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if((p->ticksPerQN = cmMidiFileTicksPerQN( mfH )) == 0 )
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return _cmMfpError(p,kSmpteTickNotImplMfpRC);
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// set the initial tempo to 120
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_cmMfpUpdateMicrosPerTick(p,60000000/120);
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p->msgIdx = 0;
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p->mfH = mfH;
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p->etime = 0;
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p->mtime = 0;
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p->closeFileFl= false;
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//if( p->msgIdx > 0 )
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// p->mtime = p->msgV[0]->tick * p->microsPerTick;
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return kOkMfpRC;
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}
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cmMfpRC_t cmMfpSeek( cmMfpH_t h, unsigned offsUsecs )
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{
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cmMfp_t* p = _cmMfpHandleToPtr(h);
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unsigned msgOffsUsecs = 0;
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unsigned msgIdx;
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unsigned newMicrosPerTick;
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// if the requested offset is past the end of the file then return EOF
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if((msgIdx = cmMidiFileSeekUsecs( p->mfH, offsUsecs, &msgOffsUsecs, &newMicrosPerTick )) == cmInvalidIdx )
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{
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p->msgIdx = p->msgN;
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return _cmMfpError(p,kEndOfFileMfpRC);
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}
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if( msgIdx < p->msgIdx )
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p->msgIdx = 0;
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p->mtime = msgOffsUsecs;
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p->etime = 0;
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p->microsPerTick = newMicrosPerTick;
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p->msgIdx = msgIdx;
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assert(p->mtime >= 0);
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return kOkMfpRC;
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}
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// p 0 1 n 2
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// v v v v v
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// xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx
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// 012345678901234567890123456780
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// 0 1 2
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//
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// p = 3 = prev msg sent
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// n = 19 = next msg to send
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// 0 = 6 = call to cmMfpClock()
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// 1 = 12 = call to cmMfpClock()
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// 2 = 22 = call to cmMfpClock()
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//
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// dusecs etime mtime
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// 0 n/a 3 13
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// 1 6 9 7
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// 2 10 19 -3
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//
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cmMfpRC_t cmMfpClock( cmMfpH_t h, unsigned dusecs )
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{
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cmMfp_t* p = _cmMfpHandleToPtr(h);
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if( p->msgIdx >= p->msgN )
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return kEndOfFileMfpRC;
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// get a pointer to the next msg to send
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const cmMidiTrackMsg_t* mp = p->msgV[p->msgIdx];
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// p->etime is the interval of time between when the last msg was
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// sent and the end of the time window for this mfpClock() cycle
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p->etime += dusecs;
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//printf("init e:%i d:%i\n",p->etime, p->mtime);
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// if the elapsed time (etime) since the last msg is greater or equal
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// to the delta time to the next msg (mtime)
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while( p->etime >= p->mtime )
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{
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//printf("e:%i d:%i\n",p->etime, p->mtime);
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if( mp->status == kMetaStId && mp->metaId == kTempoMdId )
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_cmMfpUpdateMicrosPerTick(p,mp->u.iVal );
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p->cbFunc( p->userCbPtr, p->mtime, mp );
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++(p->msgIdx);
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if( p->msgIdx >= p->msgN )
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break;
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// get the next msg to send
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mp = p->msgV[p->msgIdx];
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// we probably went past the actual mtime - so update etime
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// with the delta usecs from the msg just sent and the current time
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p->etime -= p->mtime;
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// calc the delta usecs from the message just sent to the next msg to send
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//p->mtime = (mp->tick - p->msgV[p->msgIdx-1]->tick) * p->microsPerTick;
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p->mtime = mp->dtick * p->microsPerTick;
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}
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return p->msgIdx >= p->msgN ? kEndOfFileMfpRC : kOkMfpRC;
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}
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void mfpPrint( void* userDataPtr, const char* fmt, va_list vl )
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{
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vprintf(fmt,vl);
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}
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// this assumes that the seconds have been normalized to a recent start time
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// so as to avoid overflow
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unsigned _cmMfpElapsedMicroSecs( const struct timespec* t0, const struct timespec* t1 )
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{
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// convert seconds to usecs
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long u0 = t0->tv_sec * 1000000;
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long u1 = t1->tv_sec * 1000000;
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// convert nanoseconds to usec
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u0 += t0->tv_nsec / 1000;
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u1 += t1->tv_nsec / 1000;
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// take diff between t1 and t0
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return u1 - u0;
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}
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void _cmMfpTestTimer()
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{
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useconds_t suspendUsecs = 15 * 1000;
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struct timespec t0,t1,t2;
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unsigned accum = 0;
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unsigned i;
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unsigned n = 4000;
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// t0 will be the base time which all other times will be
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// set relative to.
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cmTimeGet(&t0);
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t2 = t0;
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t2.tv_sec = 0;
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for(i=0; i<n; ++i)
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{
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cmSleepUs(suspendUsecs);
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cmTimeGet(&t1);
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t1.tv_sec -= t0.tv_sec;
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unsigned d0usec = _cmMfpElapsedMicroSecs(&t0,&t1);
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unsigned d1usec = _cmMfpElapsedMicroSecs(&t2,&t1);
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accum += d1usec;
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if( i == n-1 )
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printf("%i %i %i\n",d0usec,d1usec,accum);
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t2 = t1;
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}
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}
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// midi file player callback test function
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void _cmMfpCallbackTest( void* userCbPtr, unsigned dmicros, const cmMidiTrackMsg_t* msgPtr )
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{
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if( kNoteOffMdId <= msgPtr->status && msgPtr->status <= kPbendMdId )
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cmMpDeviceSend( 0, 0, msgPtr->status+msgPtr->u.chMsgPtr->ch, msgPtr->u.chMsgPtr->d0,msgPtr->u.chMsgPtr->d1);
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//printf("%i 0x%x 0x%x %i\n",msgPtr->tick,msgPtr->status,msgPtr->metaId,msgPtr->trkIdx);
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}
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// midi port callback test function
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void _cmMpCallbackTest( const cmMidiPacket_t* pktArray, unsigned pktCnt )
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{}
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cmMfpRC_t cmMfpTest( const char* fn, cmCtx_t* ctx )
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{
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cmMfpH_t mfpH = cmMfpNullHandle;
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cmMfpRC_t rc;
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useconds_t suspendUsecs = 15 * 1000;
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struct timespec t0,t1,base;
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//unsigned i;
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//unsigned n = 4000;
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unsigned mdParserBufByteCnt = 1024;
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printf("Initializing MIDI Devices...\n");
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cmMpInitialize( ctx, _cmMpCallbackTest, NULL, mdParserBufByteCnt,"app" );
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//mdReport();
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printf("Creating Player...\n");
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if((rc = cmMfpCreate( &mfpH, _cmMfpCallbackTest, NULL, ctx )) != kOkMfpRC )
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return rc;
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printf("Loading MIDI file...\n");
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if((rc = cmMfpLoadFile( mfpH, fn )) != kOkMfpRC )
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goto errLabel;
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if((rc = cmMfpSeek( mfpH, 60 * 1000000 )) != kOkMfpRC )
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goto errLabel;
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cmTimeGet(&base);
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t0 = base;
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t0.tv_sec = 0;
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//for(i=0; i<n; ++i)
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while(rc != kEndOfFileMfpRC)
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{
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cmSleepUs(suspendUsecs);
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cmTimeGet(&t1);
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t1.tv_sec -= base.tv_sec;
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unsigned dusecs = _cmMfpElapsedMicroSecs(&t0,&t1);
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rc = cmMfpClock( mfpH, dusecs );
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//printf("%i %i\n",dusecs,rc);
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t0 = t1;
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}
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errLabel:
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cmMfpDestroy(&mfpH);
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cmMpFinalize();
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return rc;
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}
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//------------------------------------------------------------------------------------------------------------
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#include "cmFloatTypes.h"
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#include "cmComplexTypes.h"
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#include "cmLinkedHeap.h"
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#include "cmSymTbl.h"
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#include "cmAudioFile.h"
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#include "cmProcObj.h"
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#include "cmProcTemplateMain.h"
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#include "cmVectOps.h"
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#include "cmProc.h"
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#include "cmProc2.h"
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enum
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{
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kOkMfptRC = cmOkRC,
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kMfpFailMfptRC,
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kAudioFileFailMfptRC,
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kProcObjFailMfptRC
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};
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typedef struct
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{
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cmErr_t* err;
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cmMidiSynth* msp;
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} _cmMfpTest2CbData_t;
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// Called by the MIDI file player to send a msg to the MIDI synth.
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void _cmMfpCb( void* userCbPtr, unsigned dmicros, const cmMidiTrackMsg_t* msgPtr )
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{
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if( kNoteOffMdId <= msgPtr->status && msgPtr->status <= kPbendMdId )
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{
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cmMidiPacket_t pkt;
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cmMidiMsg msg;
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_cmMfpTest2CbData_t* d = (_cmMfpTest2CbData_t*)userCbPtr;
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msg.timeStamp.tv_sec = 0;
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msg.timeStamp.tv_nsec = 0;
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msg.status = msgPtr->status + msgPtr->u.chMsgPtr->ch;
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msg.d0 = msgPtr->u.chMsgPtr->d0;
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msg.d1 = msgPtr->u.chMsgPtr->d1;
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pkt.cbDataPtr = NULL;
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pkt.devIdx = cmInvalidIdx;
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pkt.portIdx = cmInvalidIdx;
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pkt.msgArray = &msg;
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pkt.sysExMsg = NULL;
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pkt.msgCnt = 1;
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if( cmMidiSynthOnMidi( d->msp, &pkt, 1 ) != cmOkRC )
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cmErrMsg(d->err,kProcObjFailMfptRC,"Synth. MIDI receive failed.");
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}
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}
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// Called by the MIDI synth to send a msg to the voice bank.
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int _cmMidiSynthCb( struct cmMidiVoice_str* voicePtr, unsigned sel, cmSample_t* outChArray[], unsigned outChCnt )
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{
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return cmWtVoiceBankExec( ((cmWtVoiceBank*)voicePtr->pgm.cbDataPtr), voicePtr, sel, outChArray, outChCnt );
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}
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// BUG BUG BUG: THIS FUNCTION IS NOT TESTED!!!!!
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cmRC_t cmMfpTest2( const char* midiFn, const char* audioFn, cmCtx_t* ctx )
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{
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cmRC_t rc = kOkMfptRC;
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cmMfpH_t mfpH = cmMfpNullHandle;
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_cmMfpTest2CbData_t cbData;
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cmErr_t err;
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cmAudioFileH_t afH = cmNullAudioFileH;
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cmRC_t afRC = kOkAfRC;
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double afSrate = 44100;
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unsigned afBits = 16;
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unsigned afChCnt = 1;
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cmCtx* cctx;
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cmMidiSynth* msp;
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cmWtVoiceBank* vbp;
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unsigned msPgmCnt = 127;
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cmMidiSynthPgm msPgmArray[ msPgmCnt ];
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unsigned msVoiceCnt = 36;
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unsigned procSmpCnt = 64;
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unsigned i;
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cmErrSetup(&err,&ctx->rpt,"MFP Test 2");
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// create the MIDI file player
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if( cmMfpCreate(&mfpH, _cmMfpCb, &cbData, ctx ) != kOkMfpRC )
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return cmErrMsg(&err,kMfpFailMfptRC,"MIDI file player create failed.");
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// create an output audio file
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if( cmAudioFileIsValid( afH = cmAudioFileNewCreate(audioFn, afSrate, afBits, afChCnt, &afRC, &ctx->rpt))==false)
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{
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rc = cmErrMsg(&err,kAudioFileFailMfptRC,"The audio file create failed.");
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goto errLabel;
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}
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// load the midi file into the player
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if( cmMfpLoadFile( mfpH, midiFn ) != kOkMfpRC )
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{
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rc = cmErrMsg(&err,kMfpFailMfptRC,"MIDI file load failed.");
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goto errLabel;
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}
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// create the proc obj context
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if((cctx = cmCtxAlloc(NULL, &ctx->rpt, cmLHeapNullHandle, cmSymTblNullHandle )) == NULL)
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{
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rc = cmErrMsg(&err,kProcObjFailMfptRC,"cmCtx allocate failed.");
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goto errLabel;
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}
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// create the voice bank
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if((vbp = cmWtVoiceBankAlloc(cctx, NULL, afSrate, procSmpCnt, msVoiceCnt, afChCnt )) == NULL)
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{
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rc = cmErrMsg(&err,kProcObjFailMfptRC,"WT voice bank allocate failed.");
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goto errLabel;
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}
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// a MIDI synth
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if((msp = cmMidiSynthAlloc(cctx, NULL, msPgmArray, msPgmCnt, msVoiceCnt, procSmpCnt, afChCnt, afSrate )) == NULL )
|
|
{
|
|
rc = cmErrMsg(&err,kProcObjFailMfptRC,"MIDI synth allocate failed.");
|
|
goto errLabel;
|
|
}
|
|
|
|
cbData.msp = msp;
|
|
cbData.err = &err;
|
|
|
|
// load all of the the MIDI pgm recds with the same settings
|
|
for(i=0; i<msPgmCnt; ++i)
|
|
{
|
|
msPgmArray[i].pgm = i;
|
|
msPgmArray[i].cbPtr = _cmMidiSynthCb; // Call this function to update voices using this pgm
|
|
msPgmArray[i].cbDataPtr = vbp; // Voice bank containing the voice states.
|
|
}
|
|
|
|
|
|
unsigned dusecs = floor((double)procSmpCnt * 1000000. / afSrate);
|
|
|
|
while(rc != kEndOfFileMfpRC)
|
|
{
|
|
// update the MFP's current time and call _cmMfpCb() for MIDI msgs whose time has elapsed
|
|
rc = cmMfpClock( mfpH, dusecs );
|
|
|
|
// check for MFP errors
|
|
if(rc!=kOkMfpRC && rc!=kEndOfFileMfpRC)
|
|
{
|
|
cmErrMsg(&err,kMfpFailMfptRC,"MIDI file player exec failed.");
|
|
goto errLabel;
|
|
}
|
|
|
|
// generate audio based on the current state of the synth voices
|
|
if( cmMidiSynthExec(msp, NULL, 0 ) != cmOkRC )
|
|
{
|
|
cmErrMsg(&err,kProcObjFailMfptRC,"MIDI synth exec. failed.");
|
|
goto errLabel;
|
|
}
|
|
|
|
// write the last frame of synth. generated audio to the output file
|
|
if( cmAudioFileWriteSample(afH, procSmpCnt, msp->outChCnt, msp->outChArray ) != kOkAfRC )
|
|
{
|
|
cmErrMsg(&err,kProcObjFailMfptRC,"Audio file write failed.");
|
|
goto errLabel;
|
|
}
|
|
}
|
|
|
|
errLabel:
|
|
if( cmMidiSynthFree(&msp) != cmOkRC )
|
|
cmErrMsg(&err,kProcObjFailMfptRC,"MIDI synth. free failed.");
|
|
|
|
if( cmWtVoiceBankFree(&vbp) != cmOkRC )
|
|
cmErrMsg(&err,kProcObjFailMfptRC,"WT voice free failed.");
|
|
|
|
if( cmCtxFree(&cctx) != cmOkRC )
|
|
cmErrMsg(&err,kProcObjFailMfptRC,"cmCtx free failed.");
|
|
|
|
if( cmAudioFileDelete(&afH) )
|
|
cmErrMsg(&err,kAudioFileFailMfptRC,"The audio file close failed.");
|
|
|
|
if( cmMfpDestroy(&mfpH) != kOkMfpRC )
|
|
cmErrMsg(&err,kMfpFailMfptRC,"MIDI file player destroy failed.");
|
|
|
|
|
|
return rc;
|
|
}
|