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Small updates
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@ -1,9 +1,9 @@
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#version 450
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#version 450
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/*
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/*
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crt-1tap v1.0 by fishku
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crt-1tap v1.1 by fishku
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Copyright (C) 2023
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Copyright (C) 2023
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Public domain license
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Public domain license (CC0)
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Extremely fast and lightweight dynamic scanline shader.
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Extremely fast and lightweight dynamic scanline shader.
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Contrasty and sharp output. Easy to configure.
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Contrasty and sharp output. Easy to configure.
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@ -21,15 +21,17 @@
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for even and odd integer scaling.
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for even and odd integer scaling.
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Changelog:
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Changelog:
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v1.1: Update license; Better defaults; Don't compute alpha.
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v1.0: Initial release.
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v1.0: Initial release.
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*/
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*/
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// clang-format off
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// clang-format off
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#pragma parameter CRT1TAP_SETTINGS "=== CRT-1tap settings ===" 0.0 0.0 1.0 1.0
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#pragma parameter MIN_THICK "MIN_THICK: Scanline thickness of dark pixels." 0.3 0.0 1.4 0.05
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#pragma parameter MIN_THICK "MIN_THICK: Scanline thickness of dark pixels." 0.3 0.0 1.4 0.05
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#pragma parameter MAX_THICK "MAX_THICK: Scanline thickness of bright pixels." 1.05 0.0 1.4 0.05
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#pragma parameter MAX_THICK "MAX_THICK: Scanline thickness of bright pixels." 1.05 0.0 1.4 0.05
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#pragma parameter V_SHARP "V_SHARP: Vertical sharpness of the scanline" 0.2 0.0 1.0 0.05
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#pragma parameter V_SHARP "V_SHARP: Vertical sharpness of the scanline" 0.2 0.0 1.0 0.05
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#pragma parameter H_SHARP "H_SHARP: Horizontal sharpness of pixel transitions." 0.15 0.0 1.0 0.05
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#pragma parameter H_SHARP "H_SHARP: Horizontal sharpness of pixel transitions." 0.15 0.0 1.0 0.05
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#pragma parameter SUBPX_POS "SUBPX_POS: Scanline subpixel position." 0.05 -0.5 0.5 0.01
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#pragma parameter SUBPX_POS "SUBPX_POS: Scanline subpixel position." 0.15 -0.5 0.5 0.01
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#pragma parameter THICK_FALLOFF "THICK_FALLOFF: Reduction of thinner scanlines." 0.65 0.2 2.0 0.05
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#pragma parameter THICK_FALLOFF "THICK_FALLOFF: Reduction of thinner scanlines." 0.65 0.2 2.0 0.05
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// clang-format on
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// clang-format on
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@ -79,24 +81,21 @@ void main() {
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const float src_x =
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const float src_x =
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src_x_int + o -
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src_x_int + o -
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0.5f * s *
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0.5f * s *
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pow(2.0f * (o - s * src_x_fract), mix(1.5f, 10.0f, param.H_SHARP));
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pow(2.0f * (o - s * src_x_fract), mix(1.0f, 6.0f, param.H_SHARP));
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const vec4 signal =
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const vec3 signal =
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texture(Source, vec2((src_x + 0.5f) * param.SourceSize.z,
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texture(Source, vec2((src_x + 0.5f) * param.SourceSize.z,
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(src_y_int + 0.5f) * param.SourceSize.w));
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(src_y_int + 0.5f) * param.SourceSize.w))
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.rgb;
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// Vectorize operations for speed.
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// Vectorize operations for speed.
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const float eff_v_sharp = 5.0f + 100.0f * param.V_SHARP * param.V_SHARP;
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const float eff_v_sharp = 3.0f + 50.0f * param.V_SHARP * param.V_SHARP;
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const vec4 min_thick = {param.MIN_THICK, param.MIN_THICK, param.MIN_THICK,
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FragColor.rgb =
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param.MIN_THICK};
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signal *
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const vec4 max_thick = {param.MAX_THICK, param.MAX_THICK, param.MAX_THICK,
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clamp(eff_v_sharp *
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param.MAX_THICK};
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((pow(mix(param.MIN_THICK.xxx, param.MAX_THICK.xxx, signal),
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const vec4 thick_falloff = {param.THICK_FALLOFF, param.THICK_FALLOFF,
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param.THICK_FALLOFF.xxx) *
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param.THICK_FALLOFF, param.THICK_FALLOFF};
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0.5f) -
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FragColor =
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abs(src_y_fract - 0.5f)),
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signal * clamp(eff_v_sharp * ((pow(mix(min_thick, max_thick, signal),
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0.0f, 1.0f);
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thick_falloff) *
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0.5f) -
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abs(src_y_fract - 0.5f)),
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0.0f, 1.0f);
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}
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}
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