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222 lines
5.8 KiB
222 lines
5.8 KiB
#pragma once
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#include "CELLMath.hpp"
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namespace CELL
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{
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enum DRAWMODE
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{
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DM_POINTS = 0,
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DM_LINES = 1,
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DM_LINE_LOOP = 2,
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DM_LINE_STRIP = 3,
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};
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class Span
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{
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public:
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int _xStart;
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int _xEnd;
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Rgba _colorStart;
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Rgba _colorEnd;
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int _y;
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public:
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Span(int xStart,int xEnd,int y,Rgba colorStart,Rgba colorEnd)
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{
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if (xStart < xEnd)
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{
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_xStart = xStart;
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_xEnd = xEnd;
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_colorStart = colorStart;
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_colorEnd = colorEnd;
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_y = y;
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}
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else
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{
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_xStart = _xEnd;
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_xEnd = _xStart;
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_colorStart = colorEnd;
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_colorEnd = colorStart;
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_y = y;
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}
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}
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};
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class Ege
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{
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public:
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int _x1;
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int _y1;
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Rgba _color1;
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int _x2;
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int _y2;
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Rgba _color2;
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Ege(int x1,int y1,Rgba color1,int x2,int y2,Rgba color2)
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{
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if (y1 < y2)
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{
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_x1 = x1;
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_y1 = y1;
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_color1 = color1;
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_x2 = x2;
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_y2 = y2;
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_color2 = color2;
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}
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else
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{
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_x1 = x2;
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_y1 = y2;
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_color1 = color2;
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_x2 = x1;
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_y2 = y1;
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_color2 = color1;
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}
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}
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};
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class Raster
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{
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public:
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uint* _buffer;
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int _width;
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int _height;
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Rgba _color;
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public:
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Raster(int w,int h,void* buffer);
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~Raster(void);
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void clear();
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void drawPoint(int x,int y, Rgba color,int ptSize);
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void drawArrays(DRAWMODE mode,const float2* points,int count);
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void drawFilleRect(int startX,int startY,int w,int h);
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void drawRect(const int2* points,const Rgba* colors);
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public:
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bool isInRect(int2 pt)
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{
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if (pt.x >= 0 && pt.x <= _width && pt.y >= 0 && pt.y <= _height)
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{
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return true;
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}
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return false;
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}
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void drawTriangle(int2 p0,int2 p1,int2 p2,Rgba c0,Rgba c1,Rgba c2)
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{
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// if ((!isInRect(p0)) && (!isInRect(p1)) && (!isInRect(p2)))
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// {
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// return;
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// }
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Ege eges[3] =
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{
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Ege(p0.x,p0.y,c0, p1.x,p1.y,c1),
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Ege(p1.x,p1.y,c1, p2.x,p2.y,c2),
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Ege(p2.x,p2.y,c2, p0.x,p0.y,c0),
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};
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int iMax = 0;
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int length = eges[0]._y2 - eges[0]._y1;
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for (int i = 1 ;i < 3 ; ++ i)
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{
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int len = eges[i]._y2 - eges[i]._y1;
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if (len > length)
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{
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length = len;
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iMax = i;
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}
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}
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int iShort1 = (iMax + 1)%3;
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int iShort2 = (iMax + 2)%3;
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drawEge(eges[iMax],eges[iShort1]);
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drawEge(eges[iMax],eges[iShort2]);
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}
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void drawEge(const Ege& e1,const Ege& e2)
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{
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float yOffset1 = e1._y2 - e1._y1;
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if (yOffset1 == 0)
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{
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return;
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}
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float yOffset = e2._y2 - e2._y1;
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if (yOffset == 0)
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{
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return;
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}
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float xOffset = e2._x2 - e2._x1;
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float scale = 0;
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float step = 1.0f/yOffset;
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float xOffset1 = e1._x2 - e1._x1;
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float scale1 = (float)(e2._y1 - e1._y1)/yOffset1;
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float step1 = 1.0f/yOffset1;
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for (int y = e2._y1 ; y < e2._y2 ; ++ y)
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{
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int x1 = e1._x1 + (int)(scale1 * xOffset1);
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int x2 = e2._x1 + (int)(scale * xOffset);
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Rgba color2 = colorLerp(e2._color1,e2._color2,scale);
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Rgba color1 = colorLerp(e1._color1,e1._color2,scale1);
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Span span(x1,x2,y,color1,color2);
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drawSpan(span);
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scale += step;
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scale1 += step1;
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}
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}
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void drawSpan(const Span& span)
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{
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float length = span._xEnd - span._xStart;
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float scale = 0;
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float step = 1.0f/length;
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for (int x = span._xStart ; x < span._xEnd; ++ x)
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{
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Rgba color = colorLerp(
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span._colorStart
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,span._colorEnd
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,scale
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);
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scale += step;
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setPixel(x,span._y,color);
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}
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}
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void drawLine(float2 pt1,float2 pt2,Rgba color1,Rgba color2);
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void drawPoints(float2 pt1,Rgba4Byte color)
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{
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}
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inline void setPixelEx(unsigned x,unsigned y,Rgba color)
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{
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_buffer[y * _width + x] = color._color;
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}
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inline void setPixel(unsigned x,unsigned y,Rgba color)
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{
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if (x >= _width || y >= _height)
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{
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return;
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}
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_buffer[y * _width + x] = color._color;
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}
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};
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}
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