124 lines
3.4 KiB
Plaintext
124 lines
3.4 KiB
Plaintext
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struct v2f_vertex_lit {
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vec2 uv;
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vec4 diff;
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vec4 spec;
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};
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struct v2f_img {
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vec4 pos;
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vec2 uv;
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};
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struct appdata_img {
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vec4 vertex;
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vec2 texcoord;
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};
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struct SurfaceOutput {
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vec3 Albedo;
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vec3 Normal;
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vec3 Emission;
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float Specular;
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float Gloss;
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float Alpha;
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};
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struct Input {
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vec2 uv_MainTex;
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vec3 worldRefl;
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};
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struct v2f_surf {
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vec4 pos;
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float fog;
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vec2 hip_pack0;
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vec3 normal;
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vec3 lightDir;
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vec3 viewDir;
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vec4 _LightCoord;
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};
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struct appdata_full {
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vec4 vertex;
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vec4 tangent;
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vec3 normal;
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vec4 texcoord;
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vec4 texcoord1;
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vec4 color;
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};
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uniform vec4 _Color;
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uniform samplerCube _Cube;
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uniform vec4 _LightColor0;
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uniform sampler2D _LightTexture0;
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uniform sampler2D _LightTextureB0;
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uniform sampler2D _MainTex;
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uniform vec4 _ReflectColor;
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uniform float _Shininess;
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uniform vec4 _SpecColor;
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void surf( in Input IN, inout SurfaceOutput o );
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float UnitySpotCookie( in vec4 LightCoord );
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float UnitySpotAttenuate( in vec3 LightCoord );
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vec4 LightingBlinnPhong( in SurfaceOutput s, in vec3 lightDir, in vec3 viewDir, in float atten );
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vec4 frag_surf( in v2f_surf IN );
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void surf( in Input IN, inout SurfaceOutput o ) {
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vec4 tex;
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vec4 c;
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vec4 reflcol;
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tex = texture2D( _MainTex, IN.uv_MainTex);
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c = (tex * _Color);
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o.Albedo = c.xyz ;
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o.Gloss = tex.w ;
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o.Specular = _Shininess;
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reflcol = textureCube( _Cube, IN.worldRefl);
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reflcol *= tex.w ;
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o.Emission = (reflcol.xyz * _ReflectColor.xyz );
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o.Alpha = (reflcol.w * _ReflectColor.w );
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}
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float UnitySpotCookie( in vec4 LightCoord ) {
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return texture2D( _LightTexture0, ((LightCoord.xy / LightCoord.w ) + 0.500000)).w ;
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}
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float UnitySpotAttenuate( in vec3 LightCoord ) {
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return texture2D( _LightTextureB0, vec2( vec2( dot( LightCoord, LightCoord)))).w ;
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}
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vec4 LightingBlinnPhong( in SurfaceOutput s, in vec3 lightDir, in vec3 viewDir, in float atten ) {
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vec3 h;
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float diff;
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float nh;
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float spec;
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vec4 c;
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h = normalize( (lightDir + viewDir) );
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diff = max( 0.000000, dot( s.Normal, lightDir));
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nh = max( 0.000000, dot( s.Normal, h));
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spec = (pow( nh, (s.Specular * 128.000)) * s.Gloss);
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c.xyz = ((((s.Albedo * _LightColor0.xyz ) * diff) + ((_LightColor0.xyz * _SpecColor.xyz ) * spec)) * (atten * 2.00000));
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c.w = (s.Alpha + (((_LightColor0.w * _SpecColor.w ) * spec) * atten));
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return c;
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}
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vec4 frag_surf( in v2f_surf IN ) {
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Input surfIN;
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SurfaceOutput o;
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vec3 lightDir;
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vec4 c;
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surfIN.uv_MainTex = IN.hip_pack0.xy ;
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o.Albedo = vec3( 0.000000);
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o.Emission = vec3( 0.000000);
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o.Specular = 0.000000;
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o.Alpha = 0.000000;
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o.Gloss = 0.000000;
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o.Normal = IN.normal;
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surf( surfIN, o);
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lightDir = IN.lightDir;
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lightDir = normalize( lightDir );
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c = LightingBlinnPhong( o, lightDir, normalize( vec3( IN.viewDir) ), ((float( (IN._LightCoord.z > 0.000000) ) * UnitySpotCookie( IN._LightCoord)) * UnitySpotAttenuate( IN._LightCoord.xyz )));
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c.w = 0.000000;
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return c;
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}
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varying vec4 xlv_FOG;
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void main() {
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vec4 xl_retval;
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v2f_surf xlt_IN;
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xlt_IN.pos = vec4(0.0);
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xlt_IN.fog = float( xlv_FOG);
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xlt_IN.hip_pack0 = vec2( gl_TexCoord[0]);
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xlt_IN.normal = vec3( gl_TexCoord[1]);
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xlt_IN.lightDir = vec3( gl_TexCoord[2]);
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xlt_IN.viewDir = vec3( gl_TexCoord[3]);
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xlt_IN._LightCoord = vec4( gl_TexCoord[4]);
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xl_retval = frag_surf( xlt_IN);
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gl_FragData[0] = vec4( xl_retval);
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}
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