146 lines
3.7 KiB
GLSL
146 lines
3.7 KiB
GLSL
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#version 330
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//Samplers
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uniform sampler2D tex;
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uniform sampler2D bakeShadowMap;
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uniform sampler2D bakeLightMap;
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//Toggles
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uniform int hasLightMap;
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uniform int hasShadowMap;
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uniform int hasNormalMap;
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uniform vec4 highlight_color;
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uniform float Saturation;
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uniform float Hue;
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uniform float Brightness;
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uniform float ao_density;
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uniform float shadow_density;
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uniform int debugShading;
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uniform float bake_shadow_type;
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uniform float bake_light_type;
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uniform vec3 gsys_bake_light_scale;
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// Diffuse Channel Toggles
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uniform int RedChannel;
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uniform int GreenChannel;
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uniform int BlueChannel;
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uniform int AlphaChannel;
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in vec2 f_texcoord0;
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in vec2 f_texcoord1;
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in vec2 f_texcoord2;
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in vec3 fragPosition;
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in vec3 probePosition;
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in vec4 vertexColor;
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in vec3 normal;
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out vec4 fragOutput;
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vec3 ApplySaturation(vec3 rgb, float adjustment)
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{
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const vec3 W = vec3(0.2125, 0.7154, 0.0721);
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vec3 intensity = vec3(dot(rgb, W));
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return mix(intensity, rgb, adjustment);
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}
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//https://gist.github.com/mairod/a75e7b44f68110e1576d77419d608786
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vec3 hueShift( vec3 color, float hueAdjust ){
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const vec3 kRGBToYPrime = vec3 (0.299, 0.587, 0.114);
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const vec3 kRGBToI = vec3 (0.596, -0.275, -0.321);
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const vec3 kRGBToQ = vec3 (0.212, -0.523, 0.311);
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const vec3 kYIQToR = vec3 (1.0, 0.956, 0.621);
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const vec3 kYIQToG = vec3 (1.0, -0.272, -0.647);
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const vec3 kYIQToB = vec3 (1.0, -1.107, 1.704);
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float YPrime = dot (color, kRGBToYPrime);
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float I = dot (color, kRGBToI);
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float Q = dot (color, kRGBToQ);
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float hue = atan (Q, I);
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float chroma = sqrt (I * I + Q * Q);
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hue += hueAdjust;
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Q = chroma * sin (hue);
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I = chroma * cos (hue);
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vec3 yIQ = vec3 (YPrime, I, Q);
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return vec3( dot (yIQ, kYIQToR), dot (yIQ, kYIQToG), dot (yIQ, kYIQToB) );
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}
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float GetComponent(int Type, vec4 Texture)
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{
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switch (Type)
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{
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case 0: return Texture.r;
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case 1: return Texture.g;
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case 2: return Texture.b;
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case 3: return Texture.a;
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case 4: return 1.0;
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case 5: return 0.0;
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default: return 1.0;
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}
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}
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void main(){
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vec3 displayNormal = (normal.xyz * 0.5) + 0.5;
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float hc_a = highlight_color.w;
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vec4 diffuseMapColor = texture(tex,f_texcoord0);
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vec4 albedo = vec4(0);
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//Comp Selectors
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albedo.r = GetComponent(RedChannel, diffuseMapColor);
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albedo.g = GetComponent(GreenChannel, diffuseMapColor);
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albedo.b = GetComponent(BlueChannel, diffuseMapColor);
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albedo.a = GetComponent(AlphaChannel, diffuseMapColor);
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vec4 color = vertexColor * albedo;
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color.rgb = ApplySaturation(color.rgb, Saturation) * Brightness;
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if (Hue > 0.0f)
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color.rgb = hueShift(color.rgb, Hue);
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float ShadowPass = 1;
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float AoPass = 1;
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vec3 LightingDiffuse = vec3(0);
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if (hasShadowMap == 1)
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{
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float aoIntensity = texture(bakeShadowMap, f_texcoord1).r;
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float shadowIntensity = texture(bakeShadowMap, f_texcoord1).g;
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float aoBlend = 0;
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aoBlend += 1.0 - aoIntensity;
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float shadowBlend = 0;
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shadowBlend += 1.0 - shadowIntensity;
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ShadowPass *= 1.0 - shadowBlend * shadow_density * 0.5;
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AoPass *= 1.0 - aoBlend * ao_density * 0.6;
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}
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if (hasLightMap == 1)
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{
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vec4 bakeMap1 = texture(bakeLightMap, f_texcoord2);
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vec3 LightIntensity = vec3(0.1);
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LightingDiffuse += (gsys_bake_light_scale * bakeMap1.rgb * bakeMap1.a) * LightIntensity;
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}
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color.rgb += LightingDiffuse;
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color.rgb *= ShadowPass;
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color.rgb *= AoPass;
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float halfLambert = max(displayNormal.y,0.5);
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vec4 colorComb = vec4(color.rgb * (1-hc_a) + highlight_color.rgb * hc_a, color.a);
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fragOutput = vec4(colorComb.rgb * halfLambert, colorComb.a);
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//gl_FragColor = vec4(color.a, color.a, color.a, 1);
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}
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