Files
Burn-My-Windows/resources/shaders/matrix.frag
T
2022-09-16 17:45:08 +02:00

109 lines
4.3 KiB
GLSL

//////////////////////////////////////////////////////////////////////////////////////////
// ) ( //
// ( /( ( ( ) ( ( ( ( )\ ) ( ( //
// )\()) ))\ )( ( ( )\ ) )\))( )\ ( (()/( ( )\))( ( //
// ((_)\ /((_|()\ )\ ) )\ '(()/( ((_)()((_) )\ ) ((_)))\((_)()\ )\ //
// | |(_|_))( ((_)_(_/( _((_)) )(_)) _(()((_|_)_(_/( _| |((_)(()((_|(_) //
// | '_ \ || | '_| ' \)) | ' \()| || | \ V V / | ' \)) _` / _ \ V V (_-< //
// |_.__/\_,_|_| |_||_| |_|_|_| \_, | \_/\_/|_|_||_|\__,_\___/\_/\_//__/ //
// |__/ //
//////////////////////////////////////////////////////////////////////////////////////////
// SPDX-FileCopyrightText: Simon Schneegans <code@simonschneegans.de>
// SPDX-License-Identifier: GPL-3.0-or-later
// The content from common.glsl is automatically prepended to each shader effect.
uniform sampler2D uFontTexture;
uniform vec3 uTrailColor;
uniform vec3 uTipColor;
uniform float uLetterSize;
uniform float uRandomness;
uniform float uOverShoot;
// These may be configurable in the future.
const float EDGE_FADE = 30.0;
const float FADE_WIDTH = 150.0;
const float TRAIL_LENGTH = 0.2;
const float FINAL_FADE_START_TIME = 0.8;
const float LETTER_TILES = 16.0;
const float LETTER_FLICKER_SPEED = 2.0;
// This returns a flickering grid of random letters.
float getText(vec2 fragCoord) {
vec2 pixelCoords = fragCoord * uSize;
vec2 uv = mod(pixelCoords.xy, uLetterSize) / uLetterSize;
vec2 block = pixelCoords / uLetterSize - uv;
// Choose random letter.
uv += floor(hash22(floor(hash22(block) * vec2(12.9898, 78.233) +
LETTER_FLICKER_SPEED * uProgress * uDuration + 42.254)) *
LETTER_TILES);
return texture2D(uFontTexture, uv / LETTER_TILES).r;
}
// This returns two values: The first are gradients for the "raindrops" which move
// from top to bottom. This is used for fading the letters. The second value is set
// to one below each drop and to zero above it. This second value is used for fading
// the window texture.
vec2 getRain(vec2 fragCoord) {
float column = iTexCoord.x * uSize.x;
column -= mod(column, uLetterSize);
float delay = fract(sin(column) * 78.233) * mix(0.0, 1.0, uRandomness);
float speed = fract(cos(column) * 12.989) * mix(0.0, 0.3, uRandomness) + 1.5;
float distToDrop = (uProgress * 2 - delay) * speed - iTexCoord.y;
float rainAlpha = distToDrop >= 0.0 ? exp(-distToDrop / TRAIL_LENGTH) : 0.0;
float windowAlpha = 1.0 - clamp(uSize.y * distToDrop, 0.0, FADE_WIDTH) / FADE_WIDTH;
// Fade at window borders.
rainAlpha *= getAbsoluteEdgeMask(EDGE_FADE, 0.5);
// Add some variation to the drop start and end position.
float shorten =
fract(sin(column + 42.0) * 33.423) * mix(0.0, uOverShoot * 0.25, uRandomness);
rainAlpha *= smoothstep(0.0, 1.0, clamp(iTexCoord.y / shorten, 0.0, 1.0));
rainAlpha *= smoothstep(0.0, 1.0, clamp((1.0 - iTexCoord.y) / shorten, 0.0, 1.0));
if (uForOpening) {
windowAlpha = 1.0 - windowAlpha;
}
return vec2(rainAlpha, windowAlpha);
}
void main() {
vec2 coords = iTexCoord.st;
coords.y = coords.y * (uOverShoot + 1.0) - uOverShoot * 0.5;
// Get a cool matrix effect. See comments for those methods above.
vec2 rainMask = getRain(coords);
float textMask = getText(coords);
// Get the window texture.
vec4 oColor = getInputColor(coords);
// Fade the window according to the effect mask.
oColor.a *= rainMask.y;
// This is used to fade out the remaining trails in the end.
float finalFade =
1 -
clamp((uProgress - FINAL_FADE_START_TIME) / (1.0 - FINAL_FADE_START_TIME), 0.0, 1.0);
float rainAlpha = finalFade * rainMask.x;
// Add the matrix effect to the window.
vec4 text = vec4(mix(uTrailColor, uTipColor, min(1.0, pow(rainAlpha + 0.1, 4.0))),
rainAlpha * textMask);
oColor = alphaOver(oColor, text);
// These are pretty useful for understanding how this works.
// oColor = vec4(vec3(textMask), 1);
// oColor = vec4(vec3(rainMask.x), 1);
// oColor = vec4(vec3(rainMask.y), 1);
setOutputColor(oColor);
}