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desvg.html
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desvg.html
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<!DOCTYPE html>
<html lang="en">
<head>
<meta charset="UTF-8">
<title>Convert SVG to Condensed String</title>
<div id="google_element"></div>
<!-- Load Google Translate script over HTTPS and handle errors -->
<script type="text/javascript" src="https://translate.google.com/translate_a/element.js?cb=loadGoogleTranslate" onerror="handleError(this)"></script>
<script type="text/javascript">
function loadGoogleTranslate(){
new google.translate.TranslateElement({
pageLanguage: 'en',
includedLanguages: 'en,hi,pa,sa,mr,ur,bn,es,fr,de,it',
layout: google.translate.TranslateElement.InlineLayout.SIMPLE
}, 'google_element');
}
function handleError(error) {
console.error('Error loading Google Translate script:', error);
}
</script>
<script>
function parseElement(el) {
var elString = '';
var elBits = el.split(' ');
switch (elBits[0]) {
case 'path':
elString += ";" + buildPath(elBits);
break;
case 'circle':
elString += ";" + buildCircle(elBits);
break;
case 'ellipse':
elString += ";" + buildEllipse(elBits);
break;
case 'polygon':
elString += ";" + buildPolygon(elBits);
break;
case 'polyline':
elString += ";" + buildPolygon(elBits);
break;
case 'rect':
elString += ";" + buildRect(elBits);
break;
case 'line':
elString += ";" + buildLine(elBits);
break;
default:
break;
}
return elString;
}
function buildPolygon(bits){
var partholder={};
var startPoints = false;
for(var i =0; i<bits.length; i++){
var parts = bits[i].split("=");
if (startPoints) partholder.points += ' ' + parts[0];
if (parts[1])
partholder[parts[0]] = parts[1].replace(/"/g,'');
if (parts[0] == 'points'){
startPoints = true;
}
}
return "y" + getHex(partholder.fill) + getHex(partholder.stroke) + condense(partholder.points);
}
function buildEllipse(bits){
var partholder={};
for(var i =0; i<bits.length; i++){
var parts = bits[i].split("=");
if (parts[1])
partholder[parts[0]] = parts[1].replace(/"/g,'');
}
return "e" + getTwoDigits(partholder.cx) + getTwoDigits(partholder.cy) + getTwoDigits(partholder.rx) + getTwoDigits(partholder.ry) + getHex(partholder.stroke) + getHex(partholder.fill);
}
function buildLine(bits){
var partholder={};
for(var i =0; i<bits.length; i++){
var parts = bits[i].split("=");
if (parts[1])
partholder[parts[0]] = parts[1].replace(/"/g,'');
}
return "i" + getTwoDigits(partholder.x1) + getTwoDigits(partholder.y1) + getTwoDigits(partholder.x2) + getTwoDigits(partholder.y2) + getHex(partholder.stroke) + getHex(partholder.fill) + getTwoDigits(partholder['stroke-width']);
}
function buildRect(bits){
var partholder={};
for(var i =0; i<bits.length; i++){
var parts = bits[i].split("=");
if (parts[1])
partholder[parts[0]] = parts[1].replace(/"/g,'');
}
return "r" + getTwoDigits(partholder.x) + getTwoDigits(partholder.y) + getTwoDigits(partholder.width) + getTwoDigits(partholder.height) + getHex(partholder.fill) + getHex(partholder.stroke) + getTwoDigits(partholder['stroke-width']);
}
function buildCircle(bits){
var partholder={};
for(var i =0; i<bits.length; i++){
var parts = bits[i].split("=");
if (parts[1])
partholder[parts[0]] = parts[1].replace(/"/g,'');
}
return "c" + getTwoDigits(partholder.cx) + getTwoDigits(partholder.cy) + getTwoDigits(partholder.r) + getHex(partholder.stroke) + getHex(partholder.fill) + getTwoDigits(partholder['stroke-width']);
}
function buildPath(bits){
var partholder={};
for(var i =0; i<bits.length; i++){
var parts = bits[i].split("=");
if (parts[1])
partholder[parts[0]] =parts[1].replace(/"/g,'');
}
return "p" + getHex(partholder.fill) + getHex(partholder.stroke) + getMinTwoDigits(partholder['stroke-width']) + partholder.d.replace(/"/g,'').replace(/\//,'');
}
function getHex(val) {
if (!val) return '000';
else if (val == 'none') return 'non';
else return val.replace(/#/,'');
}
function getTwoDigits(val){
if (!val) return '';
val = Math.round(parseFloat(val));
if (val < 0) return val;
else if (val < 10) return '0' + val;
else return parseInt(val);
}
function getMinTwoDigits(val){
return (getTwoDigits(val)) ? getTwoDigits(val) : '01';
}
function convert(ev){
ev.preventDefault();
var svg = document.getElementById('svg').value;
svg.replace(/\t/,'');
svg.replace(/\n/,'');
var svgElements = svg.split("><");
var svgString = '';
for (var i=0; i<svgElements.length; i++){
svgString += parseElement(svgElements[i]);
}
document.getElementById('string').value = svgString;
}
function condense(pointlist){
var points = pointlist.split(' ');
var ret = '';
for (var i=0; i<points.length;i++){
if (points[i] != '"/') {
[pointA, pointB] = points[i].split(',');
console.log(pointA + ',' + pointB);
ret += getTwoDigits(pointA) + '' + getTwoDigits(pointB);
}
}
return ret;
}
</script>
</head>
<body>
This takes an SVG with very specific formatting and returns a condensed string. The SVG data should have tabs and newlines removed first.<br><br>
Coordinates should all be two digits long - meaning your SVG can only be up to 99 pixels wide and 99 pixels tall.<br><br>
Colors should be web-safe, three-digit colors (#FF2211 should be #F21. #6AB794 should first be converted to something web-safe, like #7B9. Not an exact match by any means.)<br>
<form>
<textarea cols="120" rows="20" id="svg"></textarea><br>
<button onclick="convert(event)">Convert</button><br>
<textarea cols="120" rows="10" id="string"></textarea>
</form>
</body>
</html>