_body_xc = cell->_belly_xc.middle() * discrete_scale_ratio;
_body_yc = cell->_belly_yc.middle() * discrete_scale_ratio;
-// _body_window_scaling = sqrt(_body_radius_1 * _body_radius_2);
if((_head_xc - _body_xc) * cos(_body_tilt) + (_head_yc - _body_yc) * sin(_body_tilt) > 0) {
_body_tilt += M_PI;
_body_vx = - sin(_body_tilt) * _body_radius_2 * 2.0;
_body_vy = cos(_body_tilt) * _body_radius_2 * 2.0;
- _body_edge_shift = int(floor(RichImage::nb_edge_tags * _body_tilt / (2 * M_PI) + 0.5));
- _body_edge_shift = (RichImage::nb_edge_tags + _body_edge_shift) % RichImage::nb_edge_tags;
+// _body_edge_shift = int(floor(RichImage::nb_edge_tags * _body_tilt / (2 * M_PI) + 0.5));
+// _body_edge_shift = (RichImage::nb_edge_tags + _body_edge_shift) % RichImage::nb_edge_tags;
}
int PiReferential::common_scale() {
scalar_t _body_xc, _body_yc;
scalar_t _body_radius_1, _body_radius_2, _body_tilt;
scalar_t _body_ux, _body_uy, _body_vx, _body_vy;
-// scalar_t _body_window_scaling;
- int _body_edge_shift;
+// int _body_edge_shift;
// The belly frame is defined by the body location and head scale
scalar_t _belly_xc, _belly_yc;