working on wavs
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@ -12,23 +12,42 @@ uniform vec4 colDiffuse;
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out vec4 finalColor;
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out vec4 finalColor;
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// Viewport dimensions
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// Viewport dimensions
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const float renderWidth = 1080;
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const vec2 viewport = vec2(1080.0, 720.0);
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const float renderHeight = 720;
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// const float renderWidth = 1080;
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// const float renderHeight = 720;
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// Pixel scaling
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// Pixel scaling
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uniform float pixelWidth = 2.0;
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uniform float pixelWidth = 2.0;
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uniform float pixelHeight = 2.0;
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uniform float pixelHeight = 2.0;
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// Time value, fed from CPU
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uniform float time = 0.0;
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void main()
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void main()
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{
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{
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float dx = pixelWidth * (1.0 / renderWidth);
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float dy = pixelHeight * (1.0 / renderHeight);
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// Calculate the pixel to a UV
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vec2 uv = fragTexCoord.xy / viewport.xy;
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float X = uv.x * 25.0 + time;
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float Y = uv.y * 25. + time;
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uv.y += cos(X + Y) * 0.01 * cos(Y);
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uv.x += sin(X-Y) * 0.01 * sin(Y);
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// Calculate the pixel merge distance
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float dx = pixelWidth * (1.0 / viewport.x);
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float dy = pixelHeight * (1.0 / viewport.y);
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// Use UV to make wavy
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// vec4 tc = texture(texture0, uv);
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// Use UV to pixelate image
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vec2 coord = vec2(dx * floor(fragTexCoord.x / dx), dy * floor(fragTexCoord.y / dy));
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vec2 coord = vec2(dx * floor(fragTexCoord.x / dx), dy * floor(fragTexCoord.y / dy));
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vec3 tc = texture(texture0, coord + uv).rgb;
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vec3 tc = texture(texture0, coord).rgb;
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// Shift the hue to look like underwater
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tc = tc + vec3(0, 0.05, 0.15);
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tc = tc + vec3(0, 0.05, 0.15);
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finalColor = vec4(tc, 1.0);
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finalColor = vec4(tc, 1.0);
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// finalColor = tc;
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}
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}
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