DeferredCombine.fsh 3.1 KB
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#version 410 core
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uniform sampler2D uSamplerColor;
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uniform sampler2D uSamplerEmissive;
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uniform sampler2D uSamplerNormalMotion;
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uniform sampler2D uSamplerMotion;
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uniform sampler2D uSamplerDepth;
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uniform sampler2D uSamplerSpecularSmoothness;
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uniform sampler2DShadow  uSamplerShadowMap;
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uniform bool uLightHasShadow;
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uniform vec2 uOneOverShadowTexSize;
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uniform vec3 uLightPosition;
uniform vec4 uLightColor;
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uniform mat4 uLightProjMatrix;
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uniform bool uLightIsDirectional;
uniform vec3 uLightDir;
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uniform float uOneOverLightCount;

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uniform float uNear;
uniform float uFar;

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uniform vec3 cameraPosition;
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uniform mat4 uViewProjectionInverseMatrix;

in vec2 vTexCoord;
out vec4 oColor;

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#pragma import "Utils.glsl"
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#pragma import "Lighting.glsl"
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float linearizeDepth(float depth) {
  return  (2.0 * uNear) / (uFar + uNear - depth * (uFar - uNear));  // convert to linear values
}

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float unpackDepth(float depth) {
  return depth;
}

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vec3 unpackWorldPosition(float depth) {
    vec4 clipSpaceLocation;
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    clipSpaceLocation.xy = vTexCoord * 2.0 - 1.0;
    clipSpaceLocation.z = depth * 2.0 - 1.0;
    clipSpaceLocation.w = 1.0;
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    vec4 homogenousLocation = uViewProjectionInverseMatrix * clipSpaceLocation;
    return homogenousLocation.xyz / homogenousLocation.w;
}

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vec3 projShadowCoord(vec3 worldPosition) {
  vec4 shadowCoord =  uLightProjMatrix * vec4(worldPosition, 1); 
  vec3 clipShadowCoord = shadowCoord.xyz/shadowCoord.w;
  return clipShadowCoord;
}

float shadowFactor(vec3 worldPosition) {
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  if(!uLightHasShadow) return 1;
  
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  vec3 shadowCoord = projShadowCoord(worldPosition.xyz);
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  float x,y;
  float shadow = 0;
  for (y = -1.5 ; y <=1.5 ; y+=1.0) {
    for (x = -1.5 ; x <=1.5 ; x+=1.0) {
      shadow += texture(uSamplerShadowMap, shadowCoord + vec3(x * uOneOverShadowTexSize.x , y * uOneOverShadowTexSize.y, -0.005));
    }
  }

  shadow /= 16.0 ;

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  return shadow;
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}

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void main()
{
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    vec4 albedo  = texture(uSamplerColor, vTexCoord);
    vec4 specularSmoothness  = texture(uSamplerSpecularSmoothness, vTexCoord);
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    vec4 emissive  = texture(uSamplerEmissive, vTexCoord);
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    vec3 normal = unpackNormal(texture(uSamplerNormalMotion, vTexCoord));
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    float depth = unpackDepth(texture(uSamplerDepth, vTexCoord).r);
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    if(depth == 1) discard;
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    vec3 worldPosition = unpackWorldPosition(depth);
    
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    vec3 lightDir = vec3(0); 
    float lightDistance = 1;
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    if(uLightIsDirectional) {
      lightDir = uLightDir;
    } else {
      lightDir = uLightPosition - worldPosition;
      lightDistance = length(lightDir);
      lightDir /= lightDistance;	
    }

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    vec3 viewDir = normalize(cameraPosition - worldPosition);
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    float oneMinusReflectivity;
    albedo.rgb = EnergyConservationBetweenDiffuseAndSpecular (albedo.rgb, specularSmoothness.rgb, /*out*/ oneMinusReflectivity);
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    float lightNdotL = max(0, dot(lightDir, normal));
    vec4 lighting = BRDF (albedo.rgb, specularSmoothness.rgb, oneMinusReflectivity, specularSmoothness.a, normal, viewDir, lightDir, lightNdotL, uLightColor.rgb * uLightColor.a);
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    oColor = vec4(lighting.rgb * shadowFactor(worldPosition) + emissive.rgb, uOneOverLightCount * albedo.a);
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}