mirror of
https://github.com/Ttanasart-pt/Pixel-Composer.git
synced 2024-12-27 07:26:33 +01:00
131 lines
3.7 KiB
Text
131 lines
3.7 KiB
Text
#pragma shady: import(sh_sample)
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varying vec2 v_vTexcoord;
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varying vec4 v_vColour;
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uniform vec2 dimension;
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uniform vec2 center;
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uniform int sampleMode;
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uniform vec2 radius;
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uniform int radiusUseSurf;
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uniform sampler2D radiusSurf;
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uniform vec2 strength;
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uniform int strengthUseSurf;
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uniform sampler2D strengthSurf;
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// #region /////////////// SAMPLING ///////////////
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// const float PI = 3.14159265358979323846;
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// uniform int interpolation;
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// uniform vec2 sampleDimension;
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// const int RSIN_RADIUS = 1;
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// float sinc ( float x ) { return x == 0.? 1. : sin(x * PI) / (x * PI); }
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// vec4 texture2D_bilinear( sampler2D texture, vec2 uv ) {
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// uv = uv * sampleDimension - .5;
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// vec2 iuv = floor( uv );
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// vec2 fuv = fract( uv );
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// vec4 mixed = mix(
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// mix(
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// texture2D( texture, (iuv + vec2(0., 0.)) / sampleDimension ),
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// texture2D( texture, (iuv + vec2(1., 0.)) / sampleDimension ),
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// fuv.x
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// ),
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// mix(
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// texture2D( texture, (iuv + vec2(0., 1.)) / sampleDimension ),
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// texture2D( texture, (iuv + vec2(1., 1.)) / sampleDimension ),
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// fuv.x
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// ),
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// fuv.y
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// );
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// mixed.rgb /= mixed.a;
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// return mixed;
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// }
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// vec4 texture2D_rsin( sampler2D texture, vec2 uv ) {
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// vec2 tx = 1.0 / sampleDimension;
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// vec2 p = uv * sampleDimension - vec2(0.5);
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// vec4 sum = vec4(0.0);
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// float weights = 0.;
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// for (int x = -RSIN_RADIUS; x <= RSIN_RADIUS; x++)
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// for (int y = -RSIN_RADIUS; y <= RSIN_RADIUS; y++) {
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// float a = length(vec2(float(x), float(y))) / float(RSIN_RADIUS);
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// if(a > 1.) continue;
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// float w = sinc(a * PI * tx.x) * sinc(a * PI * tx.y);
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// vec2 offset = vec2(float(x), float(y)) * tx;
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// vec4 sample = texture2D_bilinear(texture, (p + offset + vec2(0.5)) / sampleDimension);
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// sum += w * sample;
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// weights += w;
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// }
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// return sum / weights;
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// }
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// vec4 texture2D_bicubic( sampler2D texture, vec2 uv ) {
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// uv = uv * sampleDimension + 0.5;
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// vec2 iuv = floor( uv );
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// vec2 fuv = fract( uv );
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// uv = iuv + fuv * fuv * (3.0 - 2.0 * fuv);
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// uv = (uv - 0.5) / sampleDimension;
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// return texture2D_bilinear( texture, uv );
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// }
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// vec4 texture2Dintp( sampler2D texture, vec2 uv ) {
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// if(interpolation == 1) return texture2D_bilinear( texture, uv );
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// else if(interpolation == 2) return texture2D_bicubic( texture, uv );
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// else if(interpolation == 3) return texture2D_rsin( texture, uv );
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// return texture2D( texture, uv );
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// }
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// #endregion /////////////// SAMPLING ///////////////
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vec4 sampleTexture(vec2 pos) { #region
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if(pos.x >= 0. && pos.y >= 0. && pos.x <= 1. && pos.y <= 1.)
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return texture2Dintp(gm_BaseTexture, pos);
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if(sampleMode == 0)
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return vec4(0.);
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else if(sampleMode == 1)
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return texture2Dintp(gm_BaseTexture, clamp(pos, 0., 1.));
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else if(sampleMode == 2)
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return texture2Dintp(gm_BaseTexture, fract(pos));
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else if(sampleMode == 3)
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return vec4(vec3(0.), 1.);
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return vec4(0.);
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} #endregion
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void main() {
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float rad = radius.x;
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if(radiusUseSurf == 1) {
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vec4 _vMap = texture2Dintp( radiusSurf, v_vTexcoord );
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rad = mix(radius.x, radius.y, (_vMap.r + _vMap.g + _vMap.b) / 3.);
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}
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float str = strength.x;
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if(strengthUseSurf == 1) {
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vec4 _vMap = texture2Dintp( strengthSurf, v_vTexcoord );
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str = mix(strength.x, strength.y, (_vMap.r + _vMap.g + _vMap.b) / 3.);
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}
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vec2 pixelPos = v_vTexcoord * dimension;
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vec2 to = pixelPos - center;
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float dis = distance(center, pixelPos);
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float eff = 1. - clamp(dis / rad, 0., 1.);
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float ang = atan(to.y, to.x) + eff * str;
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vec2 tex = center + vec2(cos(ang), sin(ang)) * distance(center, pixelPos);
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gl_FragColor = sampleTexture( tex / dimension );
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}
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