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139 lines
3.8 KiB
139 lines
3.8 KiB
// Cubehelix color scheme for Max/MSP/Jitter |
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// By Théophile Clet |
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// https://tflcl.xyz |
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// |
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// Based on Dave Green's work: |
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// http://www.mrao.cam.ac.uk/~dag/CUBEHELIX/cubetry.html |
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// |
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// Original publication: Green, D. A., 2011, `A colour scheme for the display of astronomical intensity images', Bulletin of the Astronomical Society of India, 39, 289. (2011BASI...39..289G at ADS.) |
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// http://astron-soc.in/bulletin/11June/289392011.pdf ) |
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// |
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// Original js code taken straight from the online example implementation: |
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// http://www.mrao.cam.ac.uk/~dag/CUBEHELIX/cubetry.html |
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autowatch = 0; |
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inlets = 1; |
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outlets = 4; |
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var RGBOUTLET = 0; |
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var HSLOUTLET = 1; |
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var LISTOUTLET = 2 |
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var DUMPOUTLET = 3; |
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setinletassist(0, "List as input: {makeCubehelixRGB, start[float], rots[float], sign[-1,1], hue[float], gamma[float], levels(int), flip([0,1]}") |
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setoutletassist(0, "To jit.matrix: always outputs the color palette as a ARGB 4-plane matrix"); |
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setoutletassist(1, "To jit.matrix: if 'hslenable 1' outputs the color palette as a AHSL 4-plane matrix"); |
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setoutletassist(2, "If 'listmode 1' outputs all colors in list format as RGB or HSL."); |
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setoutletassist(3, "Bangs when generation is done."); |
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var hslmode = false; |
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var listmode = false; |
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function hslenable(s){ |
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hslmode = s; |
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} |
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function listenable(s){ |
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listmode = s; |
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} |
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function makeCubehelix(start, rots, hue, gamma, levels, flip){ |
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//dumpOut(start, rots, hue, gamma, levels, flip); |
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outlet(RGBOUTLET, "dim", levels, 1); |
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if (hslmode) { |
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outlet(HSLOUTLET, "dim", levels, 1); |
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} |
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for (var i = 0; i < levels; i++) { |
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var fract = CubeHelixFract(i,levels,flip); |
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var color = CubeHelixRGB(fract,start,rots,hue,gamma); |
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if(flip == 1){fract = 1.0-fract;} |
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outlet(RGBOUTLET, "setcell", i, 0, "val", 1., color); |
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if (hslmode) { |
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color = rgb2hsl(color[0], color[1], color[2]); |
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outlet(HSLOUTLET, "setcell", i, 0, "val", 1., color); |
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} |
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if (listmode) { outlet(LISTOUTLET, i, color); } |
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} |
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outlet(RGBOUTLET, "bang"); |
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if (hslmode) { outlet(HSLOUTLET, "bang"); } |
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if (listmode) { outlet(LISTOUTLET, "bang"); } |
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outlet(DUMPOUTLET, "bang"); |
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} |
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function dumpOut(start, rots, hue, gamma, levels, flip){ |
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outlet(DUMPOUTLET, "start", start); |
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outlet(DUMPOUTLET, "rots", rots); |
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outlet(DUMPOUTLET, "hue", hue); |
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outlet(DUMPOUTLET, "gamma", gamma); |
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outlet(DUMPOUTLET, "levels", levels); |
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outlet(DUMPOUTLET, "flip", flip); |
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} |
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function rgb2hsl(r,g,b) { |
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var max = Math.max(r, g, b), min = Math.min(r, g, b); |
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var h, s, l = (max + min) / 2; |
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if (max == min) { |
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h = s = 0; // achromatic |
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} else { |
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var d = max - min; |
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s = l > 0.5 ? d / (2 - max - min) : d / (max + min); |
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switch (max) { |
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case r: h = (g - b) / d + (g < b ? 6 : 0); break; |
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case g: h = (b - r) / d + 2; break; |
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case b: h = (r - g) / d + 4; break; |
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} |
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h /= 6; |
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} |
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return [ h, s, l ]; |
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} |
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// ---------------------------------------------------------------------------- |
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// 2017 May 30: make consistent with Fortran |
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// 2021 mai 12: a bit of calculation optimization (I think) - Théophile Clet |
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// ---------------------------------------------------------------------------- |
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function CubeHelixRGB(fract,start,rots,hue,gamma){ |
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var angle = 2*Math.PI*(start/3.0+1+rots*fract); |
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var fract = Math.pow(fract, gamma); |
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var amp=hue*fract*(1-fract)/2.0; |
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var acos = Math.cos(angle); |
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var asin = Math.sin(angle); |
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var r=fract+amp*(-0.14861*acos+1.78277*asin); |
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r=Math.max(Math.min(r,1.0),0.0); |
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var g=fract+amp*(-0.29227*acos-0.90649*asin); |
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g=Math.max(Math.min(g,1.0),0.0); |
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var b=fract+amp*(+1.97294*acos); |
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b=Math.max(Math.min(b,1.0),0.0); |
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return [r, g, b]; |
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} |
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// ---------------------------------------------------------------------------- |
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function CubeHelixFract(i,n,flip){ |
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var fraction = i/(n-1); |
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if (flip == 1) { |
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fraction = 1 - fraction; |
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} |
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return fraction; |
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}
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