2020-09-14 00:00:00 +00:00
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layout(std140) uniform param {
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float type;
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float prev_type;
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float transition;
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float bounds_fog;
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vec4 bounds_pos; /* xy: chunk, zw: fract */
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vec2 bounds_size;
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} p;
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in vec2 v_pos;
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in vec2 v_uv;
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out vec4 o_color;
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const float EPSILON = 1e-4;
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/* ---- UTILITY FUNCTIONS ---- */
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vec3 get_ray_direction(in vec2 p, in vec2 s, float fov) {
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return normalize(vec3(p*s/2., s.y/tan(radians(fov)/2.)));
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}
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float rand(in vec2 p) {
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/* https://qiita.com/shimacpyon/items/d15dee44a0b8b3883f76 */
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return fract(sin(dot(p ,vec2(12.9898,78.233))) * 43758.5453);
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}
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float noise(in vec3 p) {
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/* https://www.shadertoy.com/view/4dS3Wd */
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const vec3 step = vec3(110, 241, 171);
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vec3 i = floor(p);
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vec3 f = fract(p);
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float n = dot(i, step);
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vec3 u = f * f * (3.0 - 2.0 * f);
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const vec3 e1 = vec3(1., 0., 0.);
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const vec3 e2 = vec3(0., 1., 0.);
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const vec3 e3 = vec3(0., 0., 1.);
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return mix(mix(mix(rand(dot(step, vec3(0.))+vec2(n)), rand(dot(step, e1 )+vec2(n)), u.x),
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mix(rand(dot(step, e2)+vec2(n)), rand(dot(step, e1+e2 )+vec2(n)), u.x), u.y),
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mix(mix(rand(dot(step, e3)+vec2(n)), rand(dot(step, e1+e3 )+vec2(n)), u.x),
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mix(rand(dot(step, e2+e3)+vec2(n)), rand(dot(step, e1+e2+e3)+vec2(n)), u.x), u.y), u.z);
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}
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float fbm15(in vec3 p) {
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float v = 0., a = .5, f = 0.;
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for (int i = 0; i < 15; ++i) {
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v += a*noise(p);
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p *= 2.;
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a *= .5;
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}
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return v;
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}
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/* ---- SCENE: white cloud ---- */
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vec4 white_cloud(void) {
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vec3 dir = get_ray_direction(v_uv, uni.resolution, 60.);
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vec3 eye = vec3(0.);
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eye.xy += uni.pos.xy + uni.pos.zw;
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float a = 0.;
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for (float i = 1.; i <= 5.; ++i) {
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a += fbm15(eye + dir*i/3.) / pow(i, 2.);
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}
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return vec4(.6, .6, .5, clamp(pow(a, 8.), 0., .8));
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}
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/* ---- SCENE: bounds fog ---- */
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vec4 bounds_fog(void) {
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float aa = uni.aa * 100;
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vec2 pos;
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pos.x = (p.bounds_pos.x - uni.pos.x) + (p.bounds_pos.z - uni.pos.z);
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2020-10-09 00:00:00 +00:00
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pos.y = (p.bounds_pos.y - uni.pos.y) + (p.bounds_pos.w - uni.pos.w);
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2020-09-14 00:00:00 +00:00
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pos = (uni.proj * uni.cam * vec4(pos, 0., 1.)).xy;
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vec2 size = (uni.proj * uni.cam * vec4(p.bounds_size, 0., 0.)).xy;
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vec2 area_pos = v_uv - pos;
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float r =
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smoothstep(size.x-aa, size.x+aa, abs(area_pos.x)) +
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smoothstep(size.y-aa, size.y+aa, abs(area_pos.y));
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float a = fbm15(vec3(area_pos, abs(fract(uni.time/60.)*2.-1.)));
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return vec4(1.) * a * r * p.bounds_fog;
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}
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vec4 scene(in float type) {
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return
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type == 1.? white_cloud():
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vec4(0.);
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}
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void main(void) {
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vec4 prev = vec4(0.), next = vec4(0.);
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if (p.transition > 0.) next = clamp(scene(p.type), 0., 1.);
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if (p.transition < 1.) prev = clamp(scene(p.prev_type), 0., 1.);
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o_color = mix(prev, next, p.transition);
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o_color += bounds_fog();
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}
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