VF_divrVI | VD_divrVI | VE_divrVI |
VF_divrVBI | VD_divrVBI | VE_divrVBI |
VF_divrVSI | VD_divrVSI | VE_divrVSI |
VF_divrVLI | VD_divrVLI | VE_divrVLI |
VF_divrVQI | VD_divrVQI | VE_divrVQI |
VF_divrVU | VD_divrVU | VE_divrVU |
VF_divrVUB | VD_divrVUB | VE_divrVUB |
VF_divrVUS | VD_divrVUS | VE_divrVUS |
VF_divrVUL | VD_divrVUL | VE_divrVUL |
VF_divrVUQ | VD_divrVUQ | VE_divrVUQ |
VF_divrVUI | VD_divrVUI | VE_divrVUI |
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Function | Reverse division: divide the elements of an integer vector by corresponding elements of a floating-point vector |
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Syntax C/C++ | #include <VFmath.h>
void VF_divrVI( fVector Z, fVector X, iVector Y,ui size );
void VF_divrVUB( fVector Z, fVector X, ubVector Y, ui size ); |
C++ VecObj | #include <OptiVec.h>
void vector<T>::divrVI( const vector<T>& X, const vector<int>& Y );
void vector<T>::divrVUS( const vector<T>& X, const vector<unsigned short>& Y, ); |
Pascal/Delphi | uses VFmath;
procedure VF_divrVI( Z, X:fVector; Y:iVector; size:UIntSize );
procedure VF_divrVUL( Z, X:fVector; Y:ulVector; size:UIntSize ); |
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CUDA function C/C++ | #include <cudaVFmath.h>
int cudaVF_divrVI( fVector d_Z, fVector d_X, iVector d_Y,ui size );
int cudaVF_divrVUB( fVector d_Z, fVector d_X, ubVector d_Y, ui size );
void VFcu_divrVI( fVector h_Z, fVector h_X, iVector h_Y,ui size );
void VFcu_divrVUB( fVector h_Z, fVector h_X, ubVector h_Y, ui size );
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CUDA function Pascal/Delphi | uses VFmath;
function cudaVF_divrVI( d_Z, d_X:fVector; d_Y:iVector; size:UIntSize ): IntBool;
function cudaVF_divrVUL( d_Z, d_X:fVector; d_Y:ulVector; size:UIntSize ): IntBool;
procedure VFcu_divrVI( h_Z, h_X:fVector; h_Y:iVector; size:UIntSize );
procedure VFcu_divrVUL( h_Z, h_X:fVector; h_Y:ulVector; size:UIntSize );
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