mirror of
https://github.com/piskelapp/piskel.git
synced 2023-08-10 21:12:52 +03:00
157 lines
5.2 KiB
JavaScript
157 lines
5.2 KiB
JavaScript
(function () {
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var ns = $.namespace('pskl.utils');
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var colorCache = {};
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ns.FrameUtils = {
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merge : function (frames) {
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var merged = null;
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if (frames.length) {
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merged = frames[0].clone();
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var w = merged.getWidth(), h = merged.getHeight();
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for (var i = 1 ; i < frames.length ; i++) {
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pskl.utils.FrameUtils.mergeFrames_(merged, frames[i]);
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}
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}
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return merged;
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},
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mergeFrames_ : function (frameA, frameB) {
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frameB.forEachPixel(function (p, col, row) {
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if (p != Constants.TRANSPARENT_COLOR) {
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frameA.setPixel(col, row, p);
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}
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});
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},
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/**
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* Alpha compositing using porter duff algorithm :
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* http://en.wikipedia.org/wiki/Alpha_compositing
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* http://keithp.com/~keithp/porterduff/p253-porter.pdf
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* @param {String} strColor1 color over
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* @param {String} strColor2 color under
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* @return {String} the composite color
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*/
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mergePixels : function (strColor1, strColor2, globalOpacity1) {
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var col1 = pskl.utils.FrameUtils.toRgba(strColor1);
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var col2 = pskl.utils.FrameUtils.toRgba(strColor2);
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if (typeof globalOpacity1 == 'number') {
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col1 = JSON.parse(JSON.stringify(col1));
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col1.a = globalOpacity1 * col1.a;
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}
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var a = col1.a + col2.a * (1 - col1.a);
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var r = ((col1.r * col1.a + col2.r * col2.a * (1 - col1.a)) / a)|0;
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var g = ((col1.g * col1.a + col2.g * col2.a * (1 - col1.a)) / a)|0;
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var b = ((col1.b * col1.a + col2.b * col2.a * (1 - col1.a)) / a)|0;
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return 'rgba('+r+','+g+','+b+','+a+')';
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},
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/**
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* Convert a color defined as a string (hex, rgba, rgb, 'TRANSPARENT') to an Object with r,g,b,a properties.
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* r, g and b are integers between 0 and 255, a is a float between 0 and 1
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* @param {String} c color as a string
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* @return {Object} {r:Number,g:Number,b:Number,a:Number}
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*/
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toRgba : function (c) {
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if (colorCache[c]) {
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return colorCache[c];
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}
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var color, matches;
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if (c === 'TRANSPARENT') {
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color = {
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r : 0,
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g : 0,
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b : 0,
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a : 0
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};
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} else if (c.indexOf('rgba(') != -1) {
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matches = /rgba\((\d+)\s*,\s*(\d+)\s*,\s*(\d+)\s*,\s*(1|0\.\d+)\s*\)/.exec(c);
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color = {
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r : parseInt(matches[1],10),
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g : parseInt(matches[2],10),
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b : parseInt(matches[3],10),
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a : parseFloat(matches[4])
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};
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} else if (c.indexOf('rgb(') != -1) {
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matches = /rgb\((\d+)\s*,\s*(\d+)\s*,\s*(\d+)\s*\)/.exec(c);
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color = {
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r : parseInt(matches[1],10),
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g : parseInt(matches[2],10),
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b : parseInt(matches[3],10),
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a : 1
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};
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} else {
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matches = /^#?([a-f\d]{2})([a-f\d]{2})([a-f\d]{2})$/i.exec(c);
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color = {
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r : parseInt(matches[1], 16),
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g : parseInt(matches[2], 16),
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b : parseInt(matches[3], 16),
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a : 1
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};
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}
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colorCache[c] = color;
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return color;
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},
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/*
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* Create a pskl.model.Frame from an Image object.
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* Transparent pixels will either be converted to completely opaque or completely transparent pixels.
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* @param {Image} image source image
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* @return {pskl.model.Frame} corresponding frame
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*/
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createFromImage : function (image) {
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var w = image.width,
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h = image.height;
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var canvas = pskl.CanvasUtils.createCanvas(w, h);
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var context = canvas.getContext('2d');
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context.drawImage(image, 0,0,w,h,0,0,w,h);
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var imgData = context.getImageData(0,0,w,h).data;
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return pskl.utils.FrameUtils.createFromImageData(imgData, w, h);
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},
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createFromImageData : function (imageData, width, height) {
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// Draw the zoomed-up pixels to a different canvas context
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var grid = [];
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for (var x = 0 ; x < width ; x++){
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grid[x] = [];
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for (var y = 0 ; y < height ; y++){
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// Find the starting index in the one-dimensional image data
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var i = (y * width + x)*4;
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var r = imageData[i ];
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var g = imageData[i+1];
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var b = imageData[i+2];
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var a = imageData[i+3];
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if (a < 125) {
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grid[x][y] = Constants.TRANSPARENT_COLOR;
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} else {
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grid[x][y] = pskl.utils.FrameUtils.rgbToHex(r,g,b);
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}
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}
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}
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return pskl.model.Frame.fromPixelGrid(grid);
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},
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/**
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* Convert a rgb(Number, Number, Number) color to hexadecimal representation
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* @param {Number} r red value, between 0 and 255
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* @param {Number} g green value, between 0 and 255
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* @param {Number} b blue value, between 0 and 255
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* @return {String} hex representation of the color '#ABCDEF'
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*/
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rgbToHex : function (r, g, b) {
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return "#" + this.componentToHex(r) + this.componentToHex(g) + this.componentToHex(b);
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},
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/**
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* Convert a color component (as a Number between 0 and 255) to its string hexa representation
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* @param {Number} c component value, between 0 and 255
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* @return {String} eg. '0A'
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*/
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componentToHex : function (c) {
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var hex = c.toString(16);
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return hex.length == 1 ? "0" + hex : hex;
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}
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};
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})();
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