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Make faces shading correct for all possible modes.
Skip shading for lightsources and top of the nodes. Fixes liquid sources and flowing surfaces having different brightness.
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parent
587167e940
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@ -108,7 +108,7 @@ void main(void)
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// Moonlight is blue
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// Moonlight is blue
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b += (day - night) / 13.0;
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b += (day - night) / 13.0;
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rg -= (day - night) / 13.0;
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rg -= (day - night) / 23.0;
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// Emphase blue a bit in darker places
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// Emphase blue a bit in darker places
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// See C++ implementation in mapblock_mesh.cpp finalColorBlend()
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// See C++ implementation in mapblock_mesh.cpp finalColorBlend()
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@ -32,11 +32,10 @@ with this program; if not, write to the Free Software Foundation, Inc.,
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#include "settings.h"
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#include "settings.h"
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#include "util/directiontables.h"
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#include "util/directiontables.h"
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static void applyContrast(video::SColor& color, float factor)
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static void applyFacesShading(video::SColor& color, float factor)
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{
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{
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color.setRed(core::clamp(core::round32(color.getRed()*factor), 0, 255));
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color.setRed(core::clamp(core::round32(color.getRed()*factor), 0, 255));
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color.setGreen(core::clamp(core::round32(color.getGreen()*factor), 0, 255));
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color.setGreen(core::clamp(core::round32(color.getGreen()*factor), 0, 255));
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color.setBlue(core::clamp(core::round32(color.getBlue()*factor), 0, 255));
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}
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}
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/*
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/*
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@ -1142,21 +1141,22 @@ MapBlockMesh::MapBlockMesh(MeshMakeData *data, v3s16 camera_offset):
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for(u32 j = 0; j < p.vertices.size(); j++)
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for(u32 j = 0; j < p.vertices.size(); j++)
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{
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{
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// Note applyContrast second parameter is precalculated sqrt from original
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// Note applyFacesShading second parameter is precalculated sqrt
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// values for speed improvement
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// value for speed improvement
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// Skip it for lightsources and top faces.
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video::SColor &vc = p.vertices[j].Color;
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video::SColor &vc = p.vertices[j].Color;
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if(p.vertices[j].Normal.Y > 0.5) {
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if (!vc.getBlue()) {
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applyContrast (vc, 1.095445);
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if (p.vertices[j].Normal.Y < -0.5) {
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} else if (p.vertices[j].Normal.Y < -0.5) {
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applyFacesShading (vc, 0.447213);
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applyContrast (vc, 0.547723);
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} else if (p.vertices[j].Normal.X > 0.5) {
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} else if (p.vertices[j].Normal.X > 0.5) {
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applyContrast (vc, 0.707107);
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applyFacesShading (vc, 0.670820);
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} else if (p.vertices[j].Normal.X < -0.5) {
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} else if (p.vertices[j].Normal.X < -0.5) {
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applyContrast (vc, 0.707107);
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applyFacesShading (vc, 0.670820);
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} else if (p.vertices[j].Normal.Z > 0.5) {
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} else if (p.vertices[j].Normal.Z > 0.5) {
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applyContrast (vc, 0.894427);
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applyFacesShading (vc, 0.836660);
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} else if (p.vertices[j].Normal.Z < -0.5) {
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} else if (p.vertices[j].Normal.Z < -0.5) {
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applyContrast (vc, 0.894427);
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applyFacesShading (vc, 0.836660);
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}
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}
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}
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if(!enable_shaders)
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if(!enable_shaders)
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{
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{
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