mirror of
https://github.com/Ttanasart-pt/Pixel-Composer.git
synced 2024-11-11 04:54:06 +01:00
99 lines
2.5 KiB
Plaintext
99 lines
2.5 KiB
Plaintext
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varying vec2 v_vTexcoord;
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varying vec4 v_vColour;
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#define BATCH_SIZE 1024
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uniform int mode;
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uniform vec2 range;
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uniform float number[BATCH_SIZE];
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#region ////////////////////////////////////////// GRADIENT BEGIN //////////////////////////////////////////
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#define GRADIENT_LIMIT 128
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uniform int gradient_blend;
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uniform vec4 gradient_color[GRADIENT_LIMIT];
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uniform float gradient_time[GRADIENT_LIMIT];
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uniform int gradient_keys;
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vec3 rgb2hsv(vec3 c) {
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vec4 K = vec4(0.0, -1.0 / 3.0, 2.0 / 3.0, -1.0);
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vec4 p = mix(vec4(c.bg, K.wz), vec4(c.gb, K.xy), step(c.b, c.g));
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vec4 q = mix(vec4(p.xyw, c.r), vec4(c.r, p.yzx), step(p.x, c.r));
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float d = q.x - min(q.w, q.y);
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float e = 0.0000000001;
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return vec3(abs(q.z + (q.w - q.y) / (6.0 * d + e)), d / (q.x + e), q.x);
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}
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vec3 hsv2rgb(vec3 c) {
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vec4 K = vec4(1.0, 2.0 / 3.0, 1.0 / 3.0, 3.0);
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vec3 p = abs(fract(c.xxx + K.xyz) * 6.0 - K.www);
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return c.z * mix(K.xxx, clamp(p - K.xxx, 0.0, 1.0), c.y);
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}
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float hueDist(float a0, float a1, float t) {
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float da = fract(a1 - a0);
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float ds = fract(2. * da) - da;
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return a0 + ds * t;
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}
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vec3 hsvMix(vec3 c1, vec3 c2, float t) {
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vec3 h1 = rgb2hsv(c1);
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vec3 h2 = rgb2hsv(c2);
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vec3 h = vec3(0.);
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h.x = h.x + hueDist(h1.x, h2.x, t);
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h.y = mix(h1.y, h2.y, t);
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h.z = mix(h1.z, h2.z, t);
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return hsv2rgb(h);
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}
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vec4 gradientEval(in float prog) {
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vec4 col = vec4(0.);
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for(int i = 0; i < GRADIENT_LIMIT; i++) {
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if(gradient_time[i] == prog) {
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col = gradient_color[i];
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break;
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} else if(gradient_time[i] > prog) {
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if(i == 0)
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col = gradient_color[i];
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else {
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float t = (prog - gradient_time[i - 1]) / (gradient_time[i] - gradient_time[i - 1]);
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if(gradient_blend == 0)
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col = mix(gradient_color[i - 1], gradient_color[i], t);
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else if(gradient_blend == 1)
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col = gradient_color[i - 1];
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else if(gradient_blend == 2)
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col = vec4(hsvMix(gradient_color[i - 1].rgb, gradient_color[i].rgb, t), 1.);
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}
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break;
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}
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if(i >= gradient_keys - 1) {
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col = gradient_color[gradient_keys - 1];
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break;
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}
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}
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return col;
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}
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#endregion ////////////////////////////////////////// GRADIENT END //////////////////////////////////////////
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void main() {
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vec2 px = v_vTexcoord;
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px.x *= float(BATCH_SIZE);
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float value = number[int(px.x)];
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float grey = (value - range[0]) / (range[1] - range[0]);
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gl_FragColor = vec4(0.);
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if(mode == 0) {
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gl_FragColor = vec4(vec3(grey), 1.);
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} else if(mode == 1) {
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vec4 color = gradientEval(grey);
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gl_FragColor = color;
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}
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}
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