24   , mLightAzimuth( static_cast<float>( lightAzimuth ) )
 
   25   , mLightAngle( static_cast<float>( lightAngle ) )
 
   26   , mCosZenithRad( std::cos( static_cast<float>( lightAngle * M_PI ) / 180.0f ) )
 
   27   , mSinZenithRad( std::sin( static_cast<float>( lightAngle * M_PI ) / 180.0f ) )
 
   28   , mAzimuthRad( static_cast<float>( lightAzimuth * M_PI ) / 180.0f )
 
   33     float *x12, 
float *x22, 
float *x32,
 
   34     float *x13, 
float *x23, 
float *x33 )
 
   37   float derX = 
calcFirstDerX( x11, x21, x31, x12, x22, x32, x13, x23, x33 );
 
   38   float derY = 
calcFirstDerY( x11, x21, x31, x12, x22, x32, x13, x23, x33 );
 
   45   float slope_rad = std::atan( std::sqrt( derX * derX + derY * derY ) );
 
   47   if ( derX == 0 && derY == 0 ) 
 
   49     aspect_rad = mAzimuthRad / 2.0f;
 
   53     aspect_rad = M_PI + std::atan2( derX, derY );
 
   55   return std::max( 0.0f, 255.0f * ( ( mCosZenithRad * std::cos( slope_rad ) ) +
 
   56                                     ( mSinZenithRad * std::sin( slope_rad ) *
 
   57                                       std::cos( mAzimuthRad - aspect_rad ) ) ) );
 
   62   mLightAzimuth = azimuth;
 
   63   mAzimuthRad = azimuth * 
static_cast<float>( M_PI ) / 180.0f;
 
   69   mCosZenithRad = std::cos( 
angle * 
static_cast<float>( M_PI ) / 180.0f );
 
   70   mSinZenithRad = std::sin( 
angle * 
static_cast<float>( M_PI ) / 180.0f );
 
   75 void QgsHillshadeFilter::addExtraRasterParams( std::vector<float> ¶ms )
 
   78   params.push_back( mCosZenithRad ); 
 
   79   params.push_back( mSinZenithRad ); 
 
   80   params.push_back( mAzimuthRad );