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@ -166,6 +166,27 @@ public:
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colorizeTile(x,y);
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};
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};
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struct lightCell
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{
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float r,g,b;
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lightCell():r(0),g(0),b(0)
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{
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}
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lightCell(float r,float g,float b):r(r),g(g),b(b)
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{
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}
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lightCell operator*(float val)
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{
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return lightCell(r*val,g*val,b*val);
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}
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lightCell operator+(const lightCell& other)
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{
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return lightCell(r+other.r,g+other.g,b+other.b);
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}
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};
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struct renderer_test : public renderer_wrap {
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private:
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void colorizeTile(int x,int y)
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@ -175,34 +196,34 @@ private:
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float *fg = p->fg + tile * 4 * 6;
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float *bg = p->bg + tile * 4 * 6;
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float *tex = p->tex + tile * 2 * 6;
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float v=opacity[tile];
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lightCell light=lightGrid[tile];
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for (int i = 0; i < 6; i++) {
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*(fg++) *= v;
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*(fg++) *= v;
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*(fg++) *= v;
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*(fg++) *= light.r;
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*(fg++) *= light.g;
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*(fg++) *= light.b;
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*(fg++) = 1;
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*(bg++) *= v;
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*(bg++) *= v;
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*(bg++) *= v;
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*(bg++) *= light.r;
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*(bg++) *= light.g;
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*(bg++) *= light.b;
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*(bg++) = 1;
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}
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}
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void reinitOpacity(int w,int h)
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void reinitLightGrid(int w,int h)
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{
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tthread::lock_guard<tthread::fast_mutex> guard(dataMutex);
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opacity.resize(w*h);
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lightGrid.resize(w*h);
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}
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void reinitOpacity()
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void reinitLightGrid()
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{
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reinitOpacity(df::global::gps->dimy,df::global::gps->dimx);
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reinitLightGrid(df::global::gps->dimy,df::global::gps->dimx);
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}
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public:
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tthread::fast_mutex dataMutex;
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std::vector<float> opacity;
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std::vector<lightCell> lightGrid;
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renderer_test(renderer* parent):renderer_wrap(parent)
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{
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reinitOpacity();
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reinitLightGrid();
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}
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virtual void update_tile(int32_t x, int32_t y) {
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renderer_wrap::update_tile(x,y);
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@ -223,10 +244,10 @@ public:
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};
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virtual void grid_resize(int32_t w, int32_t h) {
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renderer_wrap::grid_resize(w,h);
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reinitOpacity(w,h);
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reinitLightGrid(w,h);
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};
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virtual void resize(int32_t w, int32_t h) {
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renderer_wrap::resize(w,h);
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reinitOpacity(w,h);
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reinitLightGrid(w,h);
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}
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};
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