mirror of
https://github.com/kkapsner/CanvasBlocker
synced 2024-11-11 07:38:58 +01:00
266 lines
7.5 KiB
JavaScript
266 lines
7.5 KiB
JavaScript
/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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(function(){
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"use strict";
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let scope;
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if ((typeof exports) !== "undefined"){
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scope = exports;
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}
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else {
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scope = require.register("./modifiedAudioAPI", {});
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}
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const {sha256String: hashing} = require("./hash");
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const {checkerWrapper, setFunctionProperties, getStatusByFlag} = require("./modifiedAPIFunctions");
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let randomSupply = null;
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const getAudioFakeRate = function(){
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const audioFakeRate = {
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"1": function(){return 1;},
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"10": function(){return 10;},
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"100": function(){return 100;},
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"1000": function(){return 1000;},
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"0.1%": function(array){return array.length / 1000;},
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"1%": function(array){return array.length / 100;},
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"10%": function(array){return array.length / 10;},
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"100%": function(array){return array.length;},
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};
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return function getAudioFakeRate(array, prefs){
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const func = audioFakeRate[prefs("audioFakeRate")];
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if (typeof func === "function"){
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return func(array);
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}
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else {
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return 10;
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}
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};
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}();
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const getAudioNoiseLevel = function(){
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const audioNoiseLevel = {
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"minimal": 0.0001,
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"low": 0.0005,
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"medium": 0.001,
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"high": 0.005,
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"maximal": 0.01
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};
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return function getAudioNoiseLevel(prefs){
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return audioNoiseLevel[prefs("audioNoiseLevel")] || 0.0001;
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};
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}();
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function forEachFixedIndex(prefs, callback){
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if (prefs("audioUseFixedIndices")){
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prefs("audioFixedIndices")
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.split(",")
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.map(function(str){
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return parseInt(str, 10);
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}).filter(function(num){
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return !isNaN(num);
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}).filter(function(num, i, array){
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return array.indexOf(num) === i;
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}).forEach(callback);
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}
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}
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function forEachIndex(array, prefs, callback){
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const length = array.length;
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const rate = getAudioFakeRate(array, prefs);
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let start = 0;
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forEachFixedIndex(prefs, function(index){
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callback(index, start);
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start += 1;
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});
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if (start < rate){
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const delta = Math.floor(length / (rate - start));
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const indexRng = randomSupply.getIndexRng(1, length - delta * (rate - start - 1), window);
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let offset = indexRng(0);
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for (let i = start; i < rate; i += 1){
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callback(offset, i);
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offset += delta;
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}
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}
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}
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const floatCache = Object.create(null);
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const intCache = Object.create(null);
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function arrayHasAnyNonZero(array){
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for (let i = 0, l = array.length; i < l; i += 1){
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if (array[i]){
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return true;
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}
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}
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return false;
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}
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function fakeFloat32Array(array, window, prefs){
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if (arrayHasAnyNonZero(array)){
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let cached = false;
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let hash;
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if (prefs("useAudioCache")){
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hash = hashing(array);
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cached = floatCache[hash];
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}
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if (!cached){
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const rate = getAudioFakeRate(array, prefs);
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const noiseLevel = getAudioNoiseLevel(prefs);
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const rng = randomSupply.getRng(rate, window);
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forEachIndex(array, prefs, function(index, i){
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let value;
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if (array[index] !== 0){
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value = array[index] * (1 + (rng(i) / 0xffffffff - 0.5) * noiseLevel);
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}
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else {
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value = Number.EPSILON * (rng(i) / 0xffffffff - 0.5) * noiseLevel;
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}
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array[index] = value;
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});
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if (prefs("useAudioCache")){
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floatCache[hash] = new array.constructor(array);
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floatCache[hashing(array)] = floatCache[hash];
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}
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}
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else {
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array.set(cached);
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}
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}
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}
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function fakeUint8Array(array, window, prefs){
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if (arrayHasAnyNonZero(array)){
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let cached = false;
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let hash;
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if (prefs("useAudioCache")){
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hash = hashing(array);
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cached = intCache[hash];
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}
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if (!cached){
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const rate = getAudioFakeRate(array, prefs);
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const rng = randomSupply.getValueRng(rate, window);
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forEachIndex(array, prefs, function(index, i){
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array[index] = rng(array[index], i);
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});
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if (prefs("useAudioCache")){
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intCache[hash] = new array.constructor(array);
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intCache[hashing(array)] = intCache[hash];
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}
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}
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else {
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array.set(cached);
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}
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}
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}
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scope.setRandomSupply = function(supply){
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randomSupply = supply;
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};
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const getChannelDataAlreadyFakedArrays = new WeakMap();
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function fakeArrayCheckerCallback(array, fakeFunction, args, check){
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const {prefs, notify, window, original} = check;
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notify("fakedAudioReadout");
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const ret = original.call(this, ...args);
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fakeFunction(array, window, prefs);
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return ret;
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}
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// changed functions and their fakes
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scope.changedFunctions = {
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getFloatFrequencyData: {
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object: ["AnalyserNode"],
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fakeGenerator: function(checker){
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return function getFloatFrequencyData(array){
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return checkerWrapper(checker, this, arguments,
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fakeArrayCheckerCallback.bind(this, array, fakeFloat32Array)
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);
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};
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}
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},
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getByteFrequencyData: {
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object: ["AnalyserNode"],
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fakeGenerator: function(checker){
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return function getByteFrequencyData(array){
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return checkerWrapper(checker, this, arguments,
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fakeArrayCheckerCallback.bind(this, array, fakeUint8Array)
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);
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};
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}
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},
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getFloatTimeDomainData: {
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object: ["AnalyserNode"],
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fakeGenerator: function(checker){
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return function getFloatTimeDomainData(array){
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return checkerWrapper(checker, this, arguments,
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fakeArrayCheckerCallback.bind(this, array, fakeFloat32Array)
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);
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};
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}
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},
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getByteTimeDomainData: {
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object: ["AnalyserNode"],
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fakeGenerator: function(checker){
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return function getByteTimeDomainData(array){
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return checkerWrapper(checker, this, arguments,
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fakeArrayCheckerCallback.bind(this, array, fakeUint8Array)
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);
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};
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}
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},
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getChannelData: {
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object: ["AudioBuffer"],
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fakeGenerator: function(checker){
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return function getChannelData(channel){
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return checkerWrapper(checker, this, arguments, function(args, check){
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const {prefs, notify, window, original} = check;
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const ret = original.call(this, ...args);
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if (!getChannelDataAlreadyFakedArrays.get(ret)){
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notify("fakedAudioReadout");
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fakeFloat32Array(ret, window, prefs);
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getChannelDataAlreadyFakedArrays.set(ret, true);
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}
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return ret;
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});
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};
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}
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},
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copyFromChannel: {
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object: ["AudioBuffer"],
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fakeGenerator: function(checker){
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return function copyFromChannel(destination, channelNumber, startInChannel){
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return checkerWrapper(checker, this, arguments, function(args, check){
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const {prefs, notify, window, original} = check;
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const channelData = this.getChannelData(channelNumber);
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if (!getChannelDataAlreadyFakedArrays.get(channelData)){
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notify("fakedAudioReadout");
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fakeFloat32Array(channelData, window, prefs);
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getChannelDataAlreadyFakedArrays.set(channelData, true);
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}
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const ret = original.call(this, ...args);
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return ret;
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});
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};
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}
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},
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getFrequencyResponse: {
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object: ["BiquadFilterNode", "IIRFilterNode"],
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fakeGenerator: function(checker){
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return function getFrequencyResponse(frequencyArray, magResponseOutput, phaseResponseOutput){
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return checkerWrapper(checker, this, arguments, function(args, check){
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const {prefs, notify, window, original} = check;
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notify("fakedAudioReadout");
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const ret = original.call(this, ...args);
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fakeFloat32Array(magResponseOutput, window, prefs);
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fakeFloat32Array(phaseResponseOutput, window, prefs);
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return ret;
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});
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};
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}
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},
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};
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setFunctionProperties(scope.changedFunctions, {
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type: "readout",
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getStatus: getStatusByFlag("protectAudio"),
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api: "audio"
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});
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}()); |