cwFlowType.h/cpp : Convert fbuf_t binN and hopSmpN_V to vectors.
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@ -175,7 +175,11 @@ namespace cw
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if( v->u.fbuf == nullptr )
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printf("fbuf: <null>");
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else
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printf("fbuf: chN:%i binN:%i hopSmpN:%i srate:%8.1f", v->u.fbuf->chN, v->u.fbuf->binN, v->u.fbuf->hopSmpN, v->u.fbuf->srate );
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{
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printf("fbuf: chN:%i srate:%8.1f ", v->u.fbuf->chN, v->u.fbuf->srate );
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for(unsigned i; i<v->u.fbuf->chN; ++i)
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printf("(binN:%i hopSmpN:%i) ", v->u.fbuf->binN_V[i], v->u.fbuf->hopSmpN_V[i] );
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}
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break;
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case kBoolMtxTFl:
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@ -907,13 +911,19 @@ cw::flow::fbuf_t* cw::flow::fbuf_create( srate_t srate, unsigned chN, unsigned
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f->srate = srate;
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f->chN = chN;
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f->binN = binN;
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f->hopSmpN = hopSmpN;
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f->binN_V = mem::allocZ<unsigned>(chN);;
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f->hopSmpN_V = mem::allocZ<unsigned>(chN);
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f->magV = mem::allocZ<sample_t*>(chN);
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f->phsV = mem::allocZ<sample_t*>(chN);
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f->hzV = mem::allocZ<sample_t*>(chN);
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f->readyFlV= mem::allocZ<bool>(chN);
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for(unsigned chIdx=0; chIdx<chN; ++chIdx)
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{
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f->binN_V[chIdx] = binN;
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f->hohpSmpN_V[chIdx] = hopSmpN;
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}
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if( magV != nullptr || phsV != nullptr || hzV != nullptr )
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{
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for(unsigned chIdx=0; chIdx<chN; ++chIdx)
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@ -946,6 +956,8 @@ void cw::flow::fbuf_destroy( fbuf_t*& fbuf )
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if( fbuf == nullptr )
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return;
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mem::release( fbuf->binN_V );
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mem::release( fbuf->hopSmpN_V);
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mem::release( fbuf->magV);
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mem::release( fbuf->phsV);
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mem::release( fbuf->hzV);
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@ -959,9 +971,12 @@ cw::flow::fbuf_t* cw::flow::fbuf_duplicate( const fbuf_t* src )
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fbuf_t* fbuf = fbuf_create( src->srate, src->chN, src->binN, src->hopSmpN );
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for(unsigned i=0; i<fbuf->chN; ++i)
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{
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vop::copy( fbuf->magV[i], src->magV[i], fbuf->binN );
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vop::copy( fbuf->phsV[i], src->phsV[i], fbuf->binN );
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vop::copy( fbuf->hzV[i], src->hzV[i], fbuf->binN );
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fbuf->binN_V[i] = src->binN_V[i];
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fbuf->hopSmpN_V[i] = src->hopSmpN_V[i];
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vop::copy( fbuf->magV[i], src->magV[i], fbuf->binN_V[i] );
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vop::copy( fbuf->phsV[i], src->phsV[i], fbuf->binN_V[i] );
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vop::copy( fbuf->hzV[i], src->hzV[i], fbuf->binN_V[i] );
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}
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return fbuf;
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}
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@ -32,16 +32,16 @@ namespace cw
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typedef struct fbuf_str
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{
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struct value_str* base;
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srate_t srate; // signal sample rate
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unsigned flags; // See kXXXFbufFl
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unsigned chN; // count of channels
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unsigned binN; // count of sample frames per channel
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unsigned hopSmpN; // hop sample count
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sample_t** magV; // magV[ chN ][ binN ]
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sample_t** phsV; // phsV[ chN ][ binN ]
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sample_t** hzV; // hzV[ chN ][ binN ]
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bool* readyFlV; // readyFlV[chN] true if this channel is ready to be processed (used to sync. fbuf rate to abuf rate)
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sample_t* buf; // memory used by this buffer (or NULL if magV,phsV,hzV point are proxied to another buffer)
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srate_t srate; // signal sample rate
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unsigned flags; // See kXXXFbufFl
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unsigned chN; // count of channels
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unsigned* binN_V; // binN_V[ chN ] count of sample frames per channel
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unsigned* hopSmpN_V; // hopSmpN_V[ chN ] hop sample count
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sample_t** magV; // magV[ chN ][ binN ]
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sample_t** phsV; // phsV[ chN ][ binN ]
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sample_t** hzV; // hzV[ chN ][ binN ]
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bool* readyFlV; // readyFlV[chN] true if this channel is ready to be processed (used to sync. fbuf rate to abuf rate)
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sample_t* buf; // memory used by this buffer (or NULL if magV,phsV,hzV point are proxied to another buffer)
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} fbuf_t;
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enum
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