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https://github.com/cemu-project/cemu_graphic_packs.git
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Merge branch 'master' of https://github.com/slashiee/cemu_graphic_packs
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commit
3991feee73
@ -5,37 +5,29 @@
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/*=============================Settings=====================================*/
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/*=============================Settings=====================================*/
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#define adjust_bloom 1 // 0: disable, 1: enable.
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#define adjust_bloom 1 // 0: disable, 1: enable.
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const float bloomFactor = 0.7; // 1.0 is neutral
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const float bloomFactor = 0.7; // 1.0 is neutral [0,1+]
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#define tone_mapping 0
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#define tone_mapping 1
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// -1: disable, clamp bright detail but keep [0,1] intact, however clamping could lead to desaturation as well
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// -1: disable, loss of bright detail/color but keep [0,1] intact
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// 0: (Wii U) BotW original
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// 0: (Wii U) BotW original
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// 1: ACES Filmic
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// 1: ACES Filmic
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//--------------------"ACES Filmic" Parameters-----------------//
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//---------------"ACES Filmic","disable" Parameters-------------//
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const float Exposure = 0.6; // [0.0, 1.0+] Adjust exposure
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const float Exposure = 0.6; // [0.0, 1.0+] Adjust exposure
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//---------------------------------------------------------------//
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//---------------------------------------------------------------//
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#define post_process 2
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#define post_process 0
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// -1: disable
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// -1: disable
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// 0: (Wii U) BotW original, only vibrance
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// 0: (Wii U) BotW original, only vibrance
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// 1: Reshade Vibrance
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// 1: Contrasty
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// 2: Contrasty
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// 3: Experimental, convert rgb to hsv then adjust saturation directly
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//----------------"BotW original" vibrance adjust-------------//
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//----------------"BotW original" vibrance adjust-------------//
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const float satFactor = 0.29; // 0.18 is neutral. Experimental, adjust native saturation
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const float satFactor = 0.25; // 0.18 is neutral. Experimental, adjust native saturation
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//---------------------------------------------------------------//
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//-----------------"Reshade Vibrance" Parameters--------------//
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const float Vibrance = 0.40; // Saturates (or desaturates if you use negative values) the pixels depending on their original saturation.
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const vec3 VibranceRGBBalance = vec3(1.0,1.0,1.0); // A per channel multiplier to the Vibrance strength so you can give more boost to certain colors over others.
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//---------------------------------------------------------------//
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//---------------------------------------------------------------//
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//---------------------"Contrasty" Parameters-----------------//
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//---------------------"Contrasty" Parameters-----------------//
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const float gamma = 0.81; // 1.0 is neutral. Botw is already colour graded at this stage
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const float gamma = 0.81; // 1.0 is neutral. Botw is already colour graded at this stage
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const float exposure = 1.17; // 1.0 is neutral
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const float exposure = 1.17; // 1.0 is neutral
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const float vibrance = 0.45; // 0.0 is neutral
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const float vibrance = 0.40; // >0: saturate <0: desaturate
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const float crushContrast = 0.004; // 0.0 is neutral. Use small increments, loss of shadow detail
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const vec3 vibrance_RGB_balance = vec3(1.0,1.0,1.0); // A per channel multiplier to the Vibrance strength so you can give more boost to certain colors over others.
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//---------------------------------------------------------------//
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const float crushContrast = 0.000; // 0.0 is neutral. Use small increments, loss of shadow detail
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//------------------------"hsv experiment"---------------------//
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const float satScale = 1.5; // 1.0 is neutral
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//---------------------------------------------------------------//
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//---------------------------------------------------------------//
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/*==========================================================================*/
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/*==========================================================================*/
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@ -67,7 +59,12 @@ vec3 BotWToneMap(vec3 color) {
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vec3 ACESFilm(vec3 color) {
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vec3 ACESFilm(vec3 color) {
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color *= Exposure;
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color *= Exposure;
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return (color*(2.51*color+0.03))/(color*(2.43*color+0.59)+0.14);
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float Lumn = getL709(color);
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vec4 tm = vec4(color,Lumn);
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tm = (tm*(2.51*tm+0.03))/(tm*(2.43*tm+0.59)+0.14); // tonemap
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vec3 cpre = tm.w / Lumn * color;
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vec3 colorldr = mix(cpre,tm.rgb,vec3(pow(tm.w,2.0)));//refine
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return colorldr;
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}
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}
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vec3 BotWVibrance(vec3 color) {
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vec3 BotWVibrance(vec3 color) {
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@ -84,7 +81,7 @@ vec3 ReshadeVibrance(vec3 color) {
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float min_color = min(color.r, min(color.g, color.b)); // Find the weakest color
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float min_color = min(color.r, min(color.g, color.b)); // Find the weakest color
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float luma = getL709(color);
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float luma = getL709(color);
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float color_saturation = max_color - min_color; // The difference between the two is the saturation
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float color_saturation = max_color - min_color; // The difference between the two is the saturation
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vec3 coeffVibrance = VibranceRGBBalance * Vibrance;
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vec3 coeffVibrance = vibrance_RGB_balance * vibrance;
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color = mix(vec3(luma), color, 1.0 + (coeffVibrance * (1.0 - (sign(coeffVibrance) * color_saturation))));
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color = mix(vec3(luma), color, 1.0 + (coeffVibrance * (1.0 - (sign(coeffVibrance) * color_saturation))));
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return color;
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return color;
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}
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}
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@ -93,37 +90,20 @@ vec3 Contrasty(vec3 fColour) {
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fColour = max(vec3(0.0), fColour - vec3(crushContrast));
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fColour = max(vec3(0.0), fColour - vec3(crushContrast));
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fColour = clamp(exposure * fColour, 0.0, 1.0);
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fColour = clamp(exposure * fColour, 0.0, 1.0);
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fColour = pow(fColour, vec3(1.0 / gamma));
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fColour = pow(fColour, vec3(1.0 / gamma));
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float luminance = getL601(fColour);
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fColour = ReshadeVibrance(fColour); // reshade's identical, only a little stronger when at same setting
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float mn = min(min(fColour.r, fColour.g), fColour.b);
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float mx = max(max(fColour.r, fColour.g), fColour.b);
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float sat = (1.0-(mx - mn)) * (1.0-mx) * luminance * 5.0;
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vec3 lightness = vec3((mn + mx)/2.0);
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// vibrance
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fColour = mix(fColour, mix(fColour, lightness, -vibrance), sat);
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return fColour;
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return fColour;
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}
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}
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vec3 rgb2hsv(vec3 c) {
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// bad curve, see reshade curves.fx
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vec4 K = vec4(0.0, -1.0 / 3.0, 2.0 / 3.0, -1.0);
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//vec3 Contrasty2(vec3 color) {
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vec4 p = mix(vec4(c.bg, K.wz), vec4(c.gb, K.xy), step(c.b, c.g));
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// color = clamp(color,0.0,1.0);
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vec4 q = mix(vec4(p.xyw, c.r), vec4(c.r, p.yzx), step(p.x, c.r));
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// vec3 dark = pow(color,vec3(1.0/dark_thr));
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// vec3 bright = pow(color,vec3(1.0/bright_thr));
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float d = q.x - min(q.w, q.y);
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// float lumn = getL709(color);
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float e = 1.0e-10;
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// color = mix(dark,bright,lumn);
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return vec3(abs(q.z + (q.w - q.y) / (6.0 * d + e)), d / (q.x + e), q.x);
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// color = ReshadeVibrance(color);
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}
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// return color;
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vec3 hsv2rgb(vec3 c) {
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//}
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vec4 K = vec4(1.0, 2.0 / 3.0, 1.0 / 3.0, 3.0);
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vec3 p = abs(fract(c.xxx + K.xyz) * 6.0 - K.www);
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return c.z * mix(K.xxx, clamp(p - K.xxx, 0.0, 1.0), c.y);
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}
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vec3 HSV(vec3 color) {
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vec3 hsv = rgb2hsv(color);
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hsv.y = pow(hsv.y, 1.0/satScale);
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color = hsv2rgb(hsv);
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return color;
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}
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void main()
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void main()
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{
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{
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@ -137,7 +117,7 @@ bloom *= bloomFactor;
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color += bloom;
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color += bloom;
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#if (tone_mapping == -1)
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#if (tone_mapping == -1)
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color = clamp(color,0.0,1.0);
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color = clamp(color*Exposure,0.0,1.0);
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#elif (tone_mapping == 0)
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#elif (tone_mapping == 0)
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color = BotWToneMap(color);
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color = BotWToneMap(color);
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#elif (tone_mapping == 1)
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#elif (tone_mapping == 1)
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@ -147,11 +127,7 @@ color = ACESFilm(color);
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#if (post_process == 0)
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#if (post_process == 0)
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color = BotWVibrance(color);
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color = BotWVibrance(color);
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#elif (post_process == 1)
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#elif (post_process == 1)
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color = ReshadeVibrance(color);
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#elif (post_process == 2)
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color = Contrasty(color);
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color = Contrasty(color);
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#elif (post_process == 3)
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color = HSV(color);
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#endif
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#endif
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// export
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// export
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