mirror of
https://github.com/junguler/m3u-radio-music-playlists.git
synced 2024-11-11 01:10:27 +00:00
79 lines
3.1 KiB
JavaScript
Executable File
79 lines
3.1 KiB
JavaScript
Executable File
/* *
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* audio visualizer with html5 audio element
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*
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* v0.1.0
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*
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* licenced under the MIT license
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*
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* see my related repos:
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* - HTML5_Audio_Visualizer https://github.com/wayou/HTML5_Audio_Visualizer
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* - 3D_Audio_Spectrum_VIsualizer https://github.com/wayou/3D_Audio_Spectrum_VIsualizer
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* - selected https://github.com/wayou/selected
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* - MeowmeowPlayer https://github.com/wayou/MeowmeowPlayer
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*
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* reference: http://www.patrick-wied.at/blog/how-to-create-audio-visualizations-with-javascript-html
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*/
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window.AudioContext = window.AudioContext || window.webkitAudioContext || window.mozAudioContext;
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var start = function() {
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var audio = document.getElementById('audio');
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var ctx = new AudioContext();
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var analyser = ctx.createAnalyser();
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var audioSrc = ctx.createMediaElementSource(audio);
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// we have to connect the MediaElementSource with the analyser
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audioSrc.connect(analyser);
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analyser.connect(ctx.destination);
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// we could configure the analyser: e.g. analyser.fftSize (for further infos read the spec)
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// analyser.fftSize = 64;
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// frequencyBinCount tells you how many values you'll receive from the analyser
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var frequencyData = new Uint8Array(analyser.frequencyBinCount);
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// we're ready to receive some data!
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var canvas = document.getElementById('canvas'),
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cwidth = canvas.width,
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cheight = canvas.height - 2,
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meterWidth = 10, //width of the meters in the spectrum
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gap = 2, //gap between meters
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capHeight = 2,
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capStyle = '#fff',
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meterNum = 800 / (10 + 2), //count of the meters
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capYPositionArray = []; ////store the vertical position of hte caps for the preivous frame
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ctx = canvas.getContext('2d'),
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gradient = ctx.createLinearGradient(0, 0, 572, 0);
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gradient.addColorStop(1, '#ff0');
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gradient.addColorStop(0.66, '#0ff');
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gradient.addColorStop(0.33, '#ff0');
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gradient.addColorStop(0, '#0ff');
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// loop
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function renderFrame() {
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var array = new Uint8Array(analyser.frequencyBinCount);
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analyser.getByteFrequencyData(array);
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var step = Math.round(array.length / meterNum); //sample limited data from the total array
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ctx.clearRect(0, 0, cwidth, cheight);
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for (var i = 0; i < meterNum; i++) {
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var value = array[i * step];
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if (capYPositionArray.length < Math.round(meterNum)) {
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capYPositionArray.push(value);
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};
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ctx.fillStyle = capStyle;
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//draw the cap, with transition effect
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if (value < capYPositionArray[i]) {
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ctx.fillRect(i * 12, cheight - (--capYPositionArray[i]), meterWidth, capHeight);
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} else {
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ctx.fillRect(i * 12, cheight - value, meterWidth, capHeight);
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capYPositionArray[i] = value;
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};
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ctx.fillStyle = gradient; //set the filllStyle to gradient for a better look
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ctx.fillRect(i * 12 /*meterWidth+gap*/ , cheight - value + capHeight, meterWidth, cheight); //the meter
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}
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requestAnimationFrame(renderFrame);
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}
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renderFrame();
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// audio.play();
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};
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audio.onplay = function(){
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start();
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}
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