286 wiersze
7.8 KiB
C
286 wiersze
7.8 KiB
C
#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 "cmAudioPort.h"
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#include "cmAudioBuf.h"
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enum
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{
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kInIdx = 0;
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kOutIdx = 1;
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kIoCnt = 2;
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};
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typedef struct
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{
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cmApAudioPacket_t pkt; //
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char* buf; // buf[bufByteCnt]
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unsigned bufByteCnt; //
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} cmAudioBufDevBuf_t;
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typedef struct
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{
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cmAudioBufSubDev_t* subDevArray;
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unsigned subDevCnt;
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unsigned readyCnt;
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} cmAudioBufCycle_t;
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typedef struct
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{
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unsigned chCnt; // device channel count
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cmAudioBufCycle_t* cycleArray; // subBufArray[ subBufCnt ]
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unsigned cycleCnt; // set by cmAudioBufSetup().subBufCnt
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unsigned faultCnt; // count of overruns (input) underruns (output)
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unsigned iCycleIdx; // in: next buf to rcv on abUpdate() out: rcv on abGet()
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unsigned oCycleIdx; // in: next buf to send on abGet() out: send on abUpdate()
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unsigned fullCnt; // in: cnt of bufs ready for abGet() out: cnt of bufs ready for abUpdate()
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} cmAudioBufIO_t;
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typedef struct
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{
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cmAudioBufIO_t ioArray[kIoCnt];
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} cmAudioBufDev_t;
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typedef struct
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{
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cmErr_t err;
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unsigned devCnt;
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cmAudioBufDev_t* devArray; // devArray[ devCnt ]
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unsigned zeroBufByteCnt; // max of all possible buf sizes for all devices
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char* zeroBuf; // zeroBuf[ zeroBufByteCnt ]
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unsigned updateCnt;
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unsigned nextSeqId;
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} cmAudioBuf_t;
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cmAudioBuf_t _cmBa;
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cmBaRC_t cmAudioBufInit( cmCtx_t* ctx, unsigned devCnt )
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{
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cmBaRC_t rc = kOkBaRC;
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cmErrSetup(_cmBa.err,&ctx->rpt,"Audio Buf");
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_cmBa.devArray = cmMemAllocZ(cmAudioBufDev_t,devCnt);
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_cmBa.devCnt = devCnt;
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_cmBa.zeroBufByteCnt = 0;
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_cmBa.zeroBuf = NULL;
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_cmBa.updateCnt = 0;
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_cmBa.nextSeqId = 0;
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return rc;
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}
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cmBaRC_t _cmAudioBufIoFree( cmAudioBufIO_t* iop )
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{
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unsigned i;
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for(i=0; i<iop->subBufCnt; ++i)
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cmMemPtrFree(&iop->subBufArray[i].buf);
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cmMemPtrFree(&iop->subBufArray);
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return kOkBaRC;
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}
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cmBaRC_t cmAudioBufFinal()
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{
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cmBaRC_t rc = kOkBaRC;
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unsigned i,j;
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for(i=0; i<_cmBa.devCnt; ++i)
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for(j=0; j<kIoCnt; ++j)
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_cmAudioBufIoFree( _cmBa.devArray[i].ioArray + j );
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cmMemPtrFree(&_cmBa.devArray);
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_cmBa.devCnt = 0;
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cmMemPtrFree(&_cmBa.zeroBuf);
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_cmBa.zeroBufByteCnt = 0;
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}
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cmBaRC_t cmAudioBufSetup(
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unsigned devIdx,
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unsigned cycleCnt,
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unsigned inSubDevCnt,
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unsigned inChCnt,
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unsigned inFrameCnt,
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unsigned outChCnt,
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unsigned outFrameCnt,
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unsigned outSubDevCnt )
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{
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assert(devIdx < _cmBa.devCnt );
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cmAudioBufDev_t* dp = _cmBa.devArray + devIdx;
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unsigned i,j;
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for(i=0; i<kIoCnt; ++i)
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{
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cmAudioBufIO_t* iop = dp->ioArray + i;
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_cmAudioBufIoFree(iop);
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iop->subBufArray = cmMemAllocZ(cmAudioBufSubBuf_t,subBufCnt);
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iop->subBufCnt = 0;
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unsigned maxSampleWidthByteCnt = 4;
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// max size of any buffer arriving via cmAudioBufUpdate() for this device/direction
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unsigned bufByteCnt = frameCnt*chCnt*maxSampleWidthByteCnt;
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// initialize the sub-buf array for this device/direction
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for(j=0; j<subBufCnt; ++j)
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{
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iop->subBufArray[j].buf = cmMemAllocZ(char,bufByteCnt);
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iop->subBufArray[j].bufByteCnt = bufByteCnt;
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}
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// track the largest buffer size and make _cmBa.zeroBuf[] that size
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if( bufByteCnt > _cmBa.zeroBufByteCnt )
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{
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cmMemResizeZ(char,_cmBa.zeroBuf,bufByteCnt);
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_cmBa.zeroBufByteCnt = bufByteCnt;
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}
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}
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}
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// Called from the audio driver within incoming samples to store (inPktArray)
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// and empty buffers (outPktArray) to fill with outgoin samples.
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cmBaRC_t cmAudioBufUpdate(
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cmApAudioPacket_t* inPktArray, ///< full audio packets from incoming audio (from ADC)
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unsigned inPktCnt, ///< count of incoming audio packets
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cmApAudioPacket_t* outPktArray, ///< empty audio packet for outgoing audio (to DAC)
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unsigned outPktCnt ///< count of outgoing audio packets
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)
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{
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cmBaRC_t rc = kOkBaRC;
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++_cmBa.updateCnt;
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unsigned i;
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for(i=0; i<inPktCnt && inPktArray!=NULL; ++i)
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{
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cmApAudioPacket_t* ipp = inPktArray + i;
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// get a pointer to the device/direction recd
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cmAudioBufIO_t* iop = _cmBa.devArray[ ipp->devIdx ].ioArray + kInIdx;
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// check for overruns
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if( iop->fullCnt == iop->subBufCnt )
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{
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// input overrun
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++ip->faultCnt;
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rc = cmErrMsg(&_cmBa.err,kBufOverrunBaRC,"Input buffer overrun.");
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}
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else
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{
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// get the next available sub-buf
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cmAudioBufSubBuf_t* sbp = iop->subBufArray + iop->iSubBufIdx;
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// store the packet header
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sbp->pkt = *ipp;
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sbp->audioBytesPtr = sbp->buf;
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// calc the count of bytes of incoming packet audio
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unsigned pktBufByteCnt = ipp->chCnt * ipp->audioFramesCnt * (bitsPerSample/8);
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assert( pktBufByteCnt <= sbp->bufByteCnt );
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// copy the samples into the buffer
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memcpy(sbp->buf,ipp->audioBytesPtr,pktBufByteCnt);
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// advance the input sub-buffer
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iop->iSubBufIdx = (iop->iSubBufIdx + 1) % iop->subBufCnt;
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iop->fullCnt+=1;
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}
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}
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for(i=0; i<outPktCnt && outPktArray!=NULL; ++i)
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{
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unsigned j;
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cmApAudioPacket_t* opp = outPktArray + i;
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// get a pointer to the device/direction recd
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cmAudioBufIO_t* iop = _cmBa.devArray[ opp->devIdx ].ioArray + kOutIdx;
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// calc the number of requested bytes
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unsigned pktBufByteCnt = opp->chCnt * opp->audioFramesCnt * (bitsPerSample/8);
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// locate the oldest sub-buf which matches the pkt begin channel index
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cmAudioBufSubBuf_t* sbp = NULL;
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cmAudioBufSubBuf_t* tsbp = iop->subBufArray;
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for(j=0; j<iop->subBufCnt; ++j,++tsbp)
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if( tsbp->fullFl && (tsbp->pkt.begChIdx == opp->pkt.begChIdx) )
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if( sbp==NULL || tsbp->seqId < sbp->seqId )
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sbp = tsbp;
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if( sbp == NULL )
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{
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++opp->faultCnt;
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rc = cmErrMsg(&_cmBa.err,kBufOverrunBaRC,"Output buffer underrun.");
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// zero the pkt buffer
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memset(opp->audioBytePtr,0,pktBufByteCnt);
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}
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else
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{
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// the channel count assoc'd with a given begin channel index should always match
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assert( sbp->pkt.chCnt == opp->chCnt );
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// we guarantee that the sample word width will always match
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assert( sbp->pkt.bitsPerSample == opp->bitsPerSample);
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// we don't want to deal with the case where the requested number of samples
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// is less than the number available from a single stored buffer - this would
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// require sending out a partial buffer
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assert( opp->audioFrameCnt >= sbp->pkt.audioFrameCnt );
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// calc the number of bytes to copy out
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unsigned bufByteCnt = sbp->pkt.chCnt * sbp->pkt.audioFramesCnt * (sbp->pkt.bitsPerSample/8);
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assert(bufByteCnt <= pktBufByteCnt );
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// copy out the requested samples
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memcpy(opp->audioBytesPtr,sbp->buf,cmMin(bufByteCnt,pktBufByteCnt));
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opp->audioFramesCnt = sbp->pkt.audioFramesCnt;
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// mark the sub-buffer as available
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sbp->fullFl = false;
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iop->fullCnt -= 1;;
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}
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}
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returnr c;
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}
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bool cmAudioBufIsDeviceReady( unsigned devIdx, unsigned flags )
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{
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unsigned i;
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assert( devIdx < _cmBa.devCnt );
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//
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if( cmIsFlag(flags,kInBaFl) )
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if( _cmBa.devArray[devIdx].ioArray[kInIdx].fullCnt==0)
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return false;
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if( cmIsFlag(flags,kOutBaFl) )
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if( _cmBa.devArray[devIdx].ioArray[kOutIdx].fullCnt == _cmBa.devArray[devIdx].ioArray[kOutIdx].subBufCnt )
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return false;
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return true;
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}
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cmBaRC_t cmAudioBufGet(
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unsigned devIdx,
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unsigned flags,
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cmApAudioPacket_t* pktArray[],
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unsigned pktCnt )
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{
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}
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cmBaRC_t cmAudioBufAdvance( unsigned devIdx, unsigned flags )
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{
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}
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