99 lines
2.0 KiB
C++
99 lines
2.0 KiB
C++
/*
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* color_ramp.h
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*/
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#ifndef SCENE_RESOURCES_COLOR_RAMP_H_
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#define SCENE_RESOURCES_COLOR_RAMP_H_
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#include "resource.h"
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class ColorRamp: public Resource {
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OBJ_TYPE( ColorRamp, Resource );
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OBJ_SAVE_TYPE( ColorRamp );
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public:
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struct Point {
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float offset;
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Color color;
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bool operator<(const Point& p_ponit) const {
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return offset<p_ponit.offset;
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}
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};
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private:
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Vector<Point> points;
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bool is_sorted;
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protected:
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static void _bind_methods();
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public:
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ColorRamp();
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virtual ~ColorRamp();
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void set_points(Vector<Point>& points);
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Vector<Point>& get_points();
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void set_offset(int pos, const float offset);
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float get_offset(int pos) const;
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void set_color(int pos, const Color& color);
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Color get_color(int pos) const;
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void set_offsets(const Vector<float>& offsets);
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Vector<float> get_offsets() const;
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void set_colors(const Vector<Color>& colors);
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Vector<Color> get_colors() const;
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_FORCE_INLINE_ Color get_color_at_offset(float p_offset) {
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if (points.empty())
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return Color(0,0,0,1);
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if(!is_sorted)
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{
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points.sort();
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is_sorted = true;
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}
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//binary search
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int low = 0;
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int high = points.size() -1;
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int middle;
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while( low <= high )
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{
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middle = ( low + high ) / 2;
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Point& point = points[middle];
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if( point.offset > p_offset ) {
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high = middle - 1; //search low end of array
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} else if ( point.offset < p_offset) {
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low = middle + 1; //search high end of array
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} else {
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return point.color;
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}
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}
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//return interpolated value
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if (points[middle].offset>p_offset)
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{
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middle--;
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}
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int first=middle;
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int second=middle+1;
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if(second>=points.size())
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return points[points.size()-1].color;
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if(first<0)
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return points[0].color;
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Point& pointFirst = points[first];
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Point& pointSecond = points[second];
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return pointFirst.color.linear_interpolate(pointSecond.color, (p_offset-pointFirst.offset)/(pointSecond.offset - pointFirst.offset));
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}
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int get_points_count() const;
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};
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#endif /* SCENE_RESOURCES_COLOR_RAMP_H_ */
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