Files
Burn-My-Windows/resources/shaders/energize-b.frag
T
Simon Schneegans 4d77635e78 🔧 Fix implicit conversion
2022-06-10 11:45:59 +02:00

118 lines
4.6 KiB
GLSL

//////////////////////////////////////////////////////////////////////////////////////////
// ) ( //
// ( /( ( ( ) ( ( ( ( )\ ) ( ( //
// )\()) ))\ )( ( ( )\ ) )\))( )\ ( (()/( ( )\))( ( //
// ((_)\ /((_|()\ )\ ) )\ '(()/( ((_)()((_) )\ ) ((_)))\((_)()\ )\ //
// | |(_|_))( ((_)_(_/( _((_)) )(_)) _(()((_|_)_(_/( _| |((_)(()((_|(_) //
// | '_ \ || | '_| ' \)) | ' \()| || | \ V V / | ' \)) _` / _ \ V V (_-< //
// |_.__/\_,_|_| |_||_| |_|_|_| \_, | \_/\_/|_|_||_|\__,_\___/\_/\_//__/ //
// |__/ //
// Copyright (c) 2021 Simon Schneegans //
// Released under the GPLv3 or later. See LICENSE file for details. //
//////////////////////////////////////////////////////////////////////////////////////////
// The content from common.glsl is automatically prepended to each shader effect.
uniform vec4 uColor;
uniform float uScale;
const float SHOWER_TIME = 0.3;
const float SHOWER_WIDTH = 0.3;
const float STREAK_TIME = 0.6;
const float EDGE_FADE = 50.0;
// This method returns four values:
// result.x: A mask for the particles which lead the shower.
// result.y: A mask for the streaks which follow the shower particles.
// result.z: A mask for the final "atom" particles.
// result.w: The opacity of the fading window.
vec4 getMasks(float progress) {
float showerProgress = progress / SHOWER_TIME;
float streakProgress = clamp((progress - SHOWER_TIME) / STREAK_TIME, 0.0, 1.0);
float fadeProgress = clamp((progress - SHOWER_TIME) / (1.0 - SHOWER_TIME), 0.0, 1.0);
// Gradient from top to bottom.
float t = iTexCoord.t;
// A smooth gradient which moves to the bottom within the showerProgress.
float showerMask =
smoothstep(1.0, 0.0, abs(showerProgress - t - SHOWER_WIDTH) / SHOWER_WIDTH);
// This is 1 above the streak mask.
float streakMask = (showerProgress - t - SHOWER_WIDTH) > 0.0 ? 1.0 : 0.0;
// Compute mask for the "atom" particles.
float atomMask = getRelativeEdgeMask(0.2);
atomMask = max(0.0, atomMask - showerMask);
atomMask *= streakMask;
atomMask *= sqrt(1.0 - fadeProgress * fadeProgress);
// Make some particles visible in the streaks.
showerMask += 0.05 * streakMask;
// Add shower mask to streak mask.
streakMask = max(streakMask, showerMask);
// Fade-out the masks at the window edges.
float edgeFade = getAbsoluteEdgeMask(EDGE_FADE, 0.5);
streakMask *= edgeFade;
showerMask *= edgeFade;
// Fade-out the masks from top to bottom.
float fade = smoothstep(0.0, 1.0, 1.0 + t - 2.0 * streakProgress);
streakMask *= fade;
showerMask *= fade;
// Compute fading window opacity.
float windowMask = pow(1.0 - fadeProgress, 2.0);
if (uForOpening) {
windowMask = 1.0 - windowMask;
}
return vec4(showerMask, streakMask, atomMask, windowMask);
}
void main() {
float progress = easeOutQuad(uProgress);
vec4 masks = getMasks(progress);
vec4 oColor = getInputColor(iTexCoord.st);
// Dissolve window to effect color / transparency.
oColor.rgb = mix(uColor.rgb, oColor.rgb, 0.5 * masks.w + 0.5);
oColor.a = oColor.a * masks.w;
// Add leading shower particles.
vec2 showerUV = iTexCoord.st + vec2(0.0, -0.7 * progress / SHOWER_TIME);
showerUV *= 0.02 * uSize / uScale;
float shower = pow(simplex2D(showerUV), 10.0);
oColor.rgb += uColor.rgb * shower * masks.x;
oColor.a += shower * masks.x;
// Add trailing streak lines.
vec2 streakUV = iTexCoord.st + vec2(0.0, -progress / SHOWER_TIME);
streakUV *= vec2(0.05 * uSize.x, 0.001 * uSize.y) / uScale;
float streaks = simplex2DFractal(streakUV) * 0.5;
oColor.rgb += uColor.rgb * streaks * masks.y;
oColor.a += streaks * masks.y;
// Add glimmering atoms.
vec2 atomUV = iTexCoord.st + vec2(0.0, -0.025 * progress / SHOWER_TIME);
atomUV *= 0.2 * uSize / uScale;
float atoms = pow((simplex3D(vec3(atomUV, uProgress * uDuration))), 5.0);
oColor.rgb += uColor.rgb * atoms * masks.z;
oColor.a += atoms * masks.z;
// These are pretty useful for understanding how this works.
// oColor = vec4(masks.rgb, 1.0);
// oColor = vec4(vec3(masks.x), 1.0);
// oColor = vec4(vec3(masks.y), 1.0);
// oColor = vec4(vec3(masks.z), 1.0);
// oColor = vec4(vec3(masks.w), 1.0);
// oColor = vec4(vec3(shower), 1.0);
// oColor = vec4(vec3(streaks), 1.0);
// oColor = vec4(vec3(atoms), 1.0);
setOutputColor(oColor);
}