Files
data-over-audio/index.js

433 lines
14 KiB
JavaScript

var audioContext;
var sendButton;
var textToSend;
var isListeningCheckbox;
var samplesPerBitLabel;
var microphoneStream;
var microphoneNode;
var analyser;
var receivedDataTextarea;
var sentDataTextArea;
var receivedGraph;
var receivedData = [];
var MAX_BITS_DISPLAYED_ON_GRAPH = 11;
var MAX_DATA = 0;
var pauseTimeoutId;
// 20 to 20,000 - human
var FREQUENCY_TONE = 18000;
var FREQUENCY_HIGH = 400;
var FREQUENCY_LOW = 500;
var FREQUENCY_DURATION = 100;
var FREQUENCY_THRESHOLD = 200;
var FFT_POWER = 10;
var LAST_BIT_PERCENT = 0.8;
var SMOOTHING_TIME_CONSTANT = 0;
var frequencyOverTime = [];
var bitStart = [];
var samplesPerBit = [];
var bitSampleCount = 0;
var PAUSE = false;
var PAUSE_AFTER_END = true;
function handleWindowLoad() {
// grab dom elements
sendButton = document.getElementById('send-button');
isListeningCheckbox = document.getElementById('is-listening-checkbox');
receivedDataTextarea = document.getElementById('received-data');
receivedGraph = document.getElementById('received-graph');
textToSend = document.getElementById('text-to-send');
sentDataTextArea = document.getElementById('sent-data');
samplesPerBitLabel = document.getElementById('samples-per-bit');
document.getElementById('pause-after-end').checked = PAUSE_AFTER_END;
document.getElementById('pause-after-end').addEventListener('change', event => {
PAUSE_AFTER_END = event.target.checked;
if(!PAUSE_AFTER_END) resumeGraph();
})
document.getElementById('bit-duration-text').addEventListener('input', (event) => {
FREQUENCY_DURATION = parseInt(event.target.value);
bitSampleCount = 0;
samplesPerBit.length = 0;
});
document.getElementById('max-bits-displayed-on-graph').value= MAX_BITS_DISPLAYED_ON_GRAPH;
document.getElementById('max-bits-displayed-on-graph').addEventListener('input', (event) => {
MAX_BITS_DISPLAYED_ON_GRAPH = parseInt(event.target.value);
})
document.getElementById('bit-duration-text').value = FREQUENCY_DURATION;
document.getElementById('amplitude-threshold-text').value = FREQUENCY_THRESHOLD;
document.getElementById('frequency-high-text').value = FREQUENCY_HIGH;
document.getElementById('frequency-low-text').value = FREQUENCY_LOW;
document.getElementById('last-bit-percent').value = Math.floor(LAST_BIT_PERCENT * 100);
document.getElementById('fft-size-power-text').value = FFT_POWER;
document.getElementById('smoothing-time-constant-text').value = SMOOTHING_TIME_CONSTANT.toFixed(2);
document.getElementById('amplitude-threshold-text').addEventListener('input', (event) => {
FREQUENCY_THRESHOLD = parseInt(event.target.value);
});
document.getElementById('frequency-high-text').addEventListener('input', (event) => {
FREQUENCY_HIGH = parseInt(event.target.value);
});
document.getElementById('frequency-low-text').addEventListener('input', (event) => {
FREQUENCY_LOW = parseInt(event.target.value);
});
document.getElementById('last-bit-percent').addEventListener('input', (event) => {
LAST_BIT_PERCENT = parseInt(event.target.value) / 100;
});
document.getElementById('fft-size-power-text').addEventListener('input', (event) => {
FFT_POWER = parseInt(event.target.value);
if(analyser) analyser.fftSize = 2 ** FFT_POWER;
resetGraphData();
});
document.getElementById('smoothing-time-constant-text').addEventListener('input', event => {
SMOOTHING_TIME_CONSTANT = parseFloat(event.target.value);
if(analyser) analyser.smoothingTimeConstant = SMOOTHING_TIME_CONSTANT;
});
document.getElementById('audio-context-sample-rate').innerText = getAudioContext().sampleRate.toLocaleString();
// wire up events
sendButton.addEventListener('click', handleSendButtonClick);
isListeningCheckbox.addEventListener('click', handleListeningCheckbox);
textToSend.addEventListener('keypress', handleTextToSendKeypress);
}
function handleTextToSendKeypress(event) {
var keyCode = event.which || event.keyCode;
var bits = keyCode.toString(2)
.padStart(8, '0')
.split('')
.map(Number);
sendBits(bits);
}
function getFrequency(bit) {
return bit ? FREQUENCY_HIGH : FREQUENCY_LOW;
}
function sendBits(bits) {
sentDataTextArea.value += bits.join('') + '\n';
sentDataTextArea.scrollTop = sentDataTextArea.scrollHeight;
var audioContext = getAudioContext();
var oscillator = audioContext.createOscillator();
var duration = bits.length * FREQUENCY_DURATION;
for(var i = 0; i < bits.length; i++) {
if(i > 0 && bits[i] === bits[i-1]) continue;
var offset = ((i * FREQUENCY_DURATION)/1000);
oscillator.frequency.setValueAtTime(
getFrequency(bits[i]),
audioContext.currentTime + offset
);
}
resumeGraph();
oscillator.connect(audioContext.destination);
oscillator.start();
window.setTimeout(function() { oscillator.stop(); }, duration);
}
function resumeGraph() {
if(isListeningCheckbox.checked) {
if(PAUSE) {
PAUSE = false;
resetGraphData();
requestAnimationFrame(analyzeAudio);
} else {
PAUSE = false;
}
} else {
PAUSE = false;
}
}
function resetGraphData() {
frequencyOverTime.length = 0;
bitStart.length = 0;
}
function truncateGraphData() {
const duration = FREQUENCY_DURATION * MAX_BITS_DISPLAYED_ON_GRAPH;
const now = performance.now();
let length = frequencyOverTime.length;
while(length !== 0) {
const time = frequencyOverTime[length-1].time;
if(now - time > duration) length--;
else break;
}
if(length !== frequencyOverTime.length) {
frequencyOverTime.length = length;
bitStart.length = length;
}
}
function getAudioContext() {
if(!audioContext) {
audioContext = new (window.AudioContext || webkitAudioContext)();
}
if(audioContext.state === 'suspended') {
audioContext.resume();
}
return audioContext;
}
function handleSendButtonClick() {
var audioContext = getAudioContext();
var oscillator = audioContext.createOscillator();
oscillator.frequency.setValueAtTime(FREQUENCY_TONE, audioContext.currentTime);
oscillator.connect(audioContext.destination);
oscillator.start();
window.setTimeout(function() { oscillator.stop(); }, 500);
}
function handleListeningCheckbox(e) {
PAUSE = true;
var audioContext = getAudioContext();
function handleMicrophoneOn(stream) {
microphoneStream = stream;
microphoneNode = audioContext.createMediaStreamSource(stream);
analyser = audioContext.createAnalyser();
analyser.smoothingTimeConstant = SMOOTHING_TIME_CONSTANT;
analyser.fftSize = 2 ** FFT_POWER;
microphoneNode.connect(analyser);
resumeGraph();
}
function handleMicrophoneError(error) {
console.error('Microphone Error', error);
}
if(e.target.checked) {
navigator.mediaDevices
.getUserMedia({
audio: {
mandatory: {
autoGainControl: false,
echoCancellation: false,
noiseSuppression: false,
suppressLocalAudioPlayback: false,
voiceIsolation: false
},
optional: []
}
})
.then(handleMicrophoneOn)
.catch(handleMicrophoneError)
} else {
if(microphoneStream) {
microphoneStream.getTracks().forEach(track => track.stop());
microphoneStream = undefined;
}
if(analyser && microphoneNode) {
try {
analyser.disconnect(microphoneNode);
} catch(e) {
}
microphoneNode = undefined;
analyser = undefined;
}
}
}
function received(value) {
receivedDataTextarea.value += value;
receivedDataTextarea.scrollTop = receivedDataTextarea.scrollHeight;
}
let bitStarted;
let lastBitStarted;
let bitEnded;
let bitHighStrength = [];
let bitLowStrength = [];
let lastBitIndex = 0;
function analyzeAudio() {
if(PAUSE) return;
if(!analyser) return;
if(!microphoneNode) return;
const now = performance.now();
var audioContext = getAudioContext();
const frequencyData = new Uint8Array(analyser.frequencyBinCount);
analyser.getByteFrequencyData(frequencyData);
frequencyOverTime.unshift({time: now, frequencies: frequencyData});
const max = frequencyData.reduce((m, v) => m > v ? m : v, 0);
if(max > MAX_DATA) MAX_DATA = max;
bitStart.unshift(false);
truncateGraphData();
drawFrequencyData();
function canHear(hz) {
var length = (audioContext.sampleRate / analyser.fftSize);
var i = Math.round(hz / length);
return frequencyData[i] > FREQUENCY_THRESHOLD;
}
function amplitude(hz) {
var length = (audioContext.sampleRate / analyser.fftSize);
var i = Math.round(hz / length);
return frequencyData[i];
}
const sum = (total, value) => total + value;
function evaluateBit(highBits, lowBits) {
let highCount = highBits.reduce(
(count, highAmplitude, i) =>
count += highAmplitude > lowBits[i] ? 1 : 0
, 0
);
return highCount >= (highBits.length / 2) ? '1' : '0';
}
var high = canHear(FREQUENCY_HIGH);
var low = canHear(FREQUENCY_LOW);
if(high || low) {
if(bitStarted) {
var totalDuration = now - bitStarted;
var bitIndex = Math.floor(totalDuration / FREQUENCY_DURATION)
// next bit?
if(lastBitIndex !== bitIndex) {
lastBitIndex = bitIndex;
samplesPerBit.unshift(bitSampleCount)
received(evaluateBit(bitHighStrength, bitLowStrength));
bitHighStrength.length = 0;
bitLowStrength.length = 0;
bitStart[0] = true;
bitSampleCount = 1;
} else {
bitSampleCount++;
}
} else {
lastBitIndex = 0;
bitSampleCount = 1;
bitStarted = now;
bitStart[0] = true;
bitHighStrength.length = 0;
bitLowStrength.length = 0;
}
bitHighStrength.push(amplitude(FREQUENCY_HIGH));
bitLowStrength.push(amplitude(FREQUENCY_LOW));
} else {
if(bitStarted) {
var bitIndex = Math.floor((bitStarted - now) / FREQUENCY_DURATION);
var startTime = bitStarted + (FREQUENCY_DURATION * bitIndex);
var duration = now - startTime;
if(duration >= FREQUENCY_DURATION * LAST_BIT_PERCENT) {
samplesPerBit.unshift(bitSampleCount)
received(evaluateBit(bitHighStrength, bitLowStrength));
}
lastBitIndex = 0;
lastBitStarted = bitStarted;
bitEnded = now;
bitStarted = undefined;
bitStart[0] = true;
received('\n');
if(PAUSE_AFTER_END) {
if(!pauseTimeoutId) {
pauseTimeoutId = window.setTimeout(() => {
pauseTimeoutId = undefined;
PAUSE = PAUSE_AFTER_END;
}, FREQUENCY_DURATION * 2);
}
} else if(pauseTimeoutId) {
window.clearTimeout(pauseTimeoutId);
}
}
}
if(samplesPerBit.length > MAX_BITS_DISPLAYED_ON_GRAPH) {
samplesPerBit.length = MAX_BITS_DISPLAYED_ON_GRAPH;
}
samplesPerBitLabel.innerText = avgLabel(samplesPerBit);
requestAnimationFrame(analyzeAudio);
}
function avgLabel(array) {
const values = array.filter(v => v > 0);
if(values.length === 0) return 'N/A';
return (values.reduce((t, v) => t + v, 0) / values.length).toFixed(2)
}
function drawBitStarted(ctx, bitStarted, bitEnded, color) {
if(!bitStarted) return;
const { width, height } = receivedGraph;
const newest = frequencyOverTime[0].time;
const duration = FREQUENCY_DURATION * MAX_BITS_DISPLAYED_ON_GRAPH;
ctx.strokeStyle = color;
for(let time = bitStarted; time < newest; time += FREQUENCY_DURATION) {
if(time > bitEnded) return;
const x = ((newest - time) / duration) * width;
ctx.beginPath();
ctx.moveTo(x, 0);
ctx.lineTo(x, height);
ctx.stroke();
}
}
function drawBitStart(ctx, color) {
const { width, height } = receivedGraph;
const newest = frequencyOverTime[0].time;
const duration = FREQUENCY_DURATION * MAX_BITS_DISPLAYED_ON_GRAPH;
ctx.strokeStyle = color;
for(let i = 0; i < bitStart.length; i++) {
if(!bitStart[i]) continue;
const {time} = frequencyOverTime[i];
if(newest - time > duration) continue;
const x = ((newest - time) / duration) * width;
ctx.beginPath();
ctx.moveTo(x, 0);
ctx.lineTo(x, height);
ctx.stroke();
}
}
function drawFrequency(ctx, hz, color) {
const { width, height } = receivedGraph;
const newest = frequencyOverTime[0].time;
const oldest = frequencyOverTime[frequencyOverTime.length -1].time;
const duration = FREQUENCY_DURATION * MAX_BITS_DISPLAYED_ON_GRAPH;
// console.log(duration, newest-oldest);
ctx.strokeStyle = color;
ctx.beginPath();
for(let i = 0; i < frequencyOverTime.length; i++) {
const {frequencies, time} = frequencyOverTime[i];
if(newest - time > duration) continue;
const x = ((newest - time) / duration) * width;
var length = (audioContext.sampleRate / analyser.fftSize);
var index = Math.round(hz / length);
const amplitude = frequencies[index];
const y = (1-(amplitude / MAX_DATA)) * height;
if(i === 0) {
ctx.moveTo(0, y);
} else {
ctx.lineTo(x, y)
}
}
ctx.stroke();
}
function drawFrequencyData() {
const ctx = receivedGraph.getContext('2d');
const { width, height } = receivedGraph;
ctx.fillStyle = 'black';
ctx.fillRect(0, 0, width, height);
const thresholdY = (1 - (FREQUENCY_THRESHOLD/MAX_DATA)) * height;
ctx.strokeStyle = 'grey';
ctx.beginPath();
ctx.moveTo(0, thresholdY);
ctx.lineTo(width, thresholdY);
ctx.stroke();
drawBitStarted(ctx, bitStarted ?? lastBitStarted, bitEnded, 'yellow');
drawBitStart(ctx, 'green');
drawFrequency(ctx, FREQUENCY_HIGH, 'red');
drawFrequency(ctx, FREQUENCY_LOW, 'blue');
}
function drawReceivedData() {
const ctx = receivedGraph.getContext('2d');
const { width, height } = receivedGraph;
const segmentWidth = (1 / MAX_BITS_DISPLAYED_ON_GRAPH) * width;
ctx.clearRect(0, 0, width, height);
const sorted = receivedData.slice().sort((a, b) => a - b);
const min = sorted[0];
const max = sorted[sorted.length - 1];
const range = max - min;
ctx.beginPath();
for(let i = 0; i < MAX_BITS_DISPLAYED_ON_GRAPH && i < receivedData.length; i++) {
const value = receivedData[i];
const y = (1-(value / range)) * height;
if(i === 0) {
ctx.moveTo(0, y);
} else {
ctx.lineTo(segmentWidth * i, y)
}
}
ctx.stroke();
}
window.addEventListener('load', handleWindowLoad);