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webpd-latest.js
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webpd-latest.js
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/* Copyright 2013 Chris Wilson
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
/*
This monkeypatch library is intended to be included in projects that are
written to the proper AudioContext spec (instead of webkitAudioContext),
and that use the new naming and proper bits of the Web Audio API (e.g.
using BufferSourceNode.start() instead of BufferSourceNode.noteOn()), but may
have to run on systems that only support the deprecated bits.
This library should be harmless to include if the browser supports
unprefixed "AudioContext", and/or if it supports the new names.
The patches this library handles:
if window.AudioContext is unsupported, it will be aliased to webkitAudioContext().
if AudioBufferSourceNode.start() is unimplemented, it will be routed to noteOn() or
noteGrainOn(), depending on parameters.
The following aliases only take effect if the new names are not already in place:
AudioBufferSourceNode.stop() is aliased to noteOff()
AudioContext.createGain() is aliased to createGainNode()
AudioContext.createDelay() is aliased to createDelayNode()
AudioContext.createScriptProcessor() is aliased to createJavaScriptNode()
AudioContext.createPeriodicWave() is aliased to createWaveTable()
OscillatorNode.start() is aliased to noteOn()
OscillatorNode.stop() is aliased to noteOff()
OscillatorNode.setPeriodicWave() is aliased to setWaveTable()
AudioParam.setTargetAtTime() is aliased to setTargetValueAtTime()
This library does NOT patch the enumerated type changes, as it is
recommended in the specification that implementations support both integer
and string types for AudioPannerNode.panningModel, AudioPannerNode.distanceModel
BiquadFilterNode.type and OscillatorNode.type.
*/
(function (global, exports, perf) {
'use strict';
function fixSetTarget(param) {
if (!param) // if NYI, just return
return;
if (!param.setTargetAtTime)
param.setTargetAtTime = param.setTargetValueAtTime;
}
if (window.hasOwnProperty('webkitAudioContext') &&
!window.hasOwnProperty('AudioContext')) {
window.AudioContext = webkitAudioContext;
if (!AudioContext.prototype.hasOwnProperty('createGain'))
AudioContext.prototype.createGain = AudioContext.prototype.createGainNode;
if (!AudioContext.prototype.hasOwnProperty('createDelay'))
AudioContext.prototype.createDelay = AudioContext.prototype.createDelayNode;
if (!AudioContext.prototype.hasOwnProperty('createScriptProcessor'))
AudioContext.prototype.createScriptProcessor = AudioContext.prototype.createJavaScriptNode;
if (!AudioContext.prototype.hasOwnProperty('createPeriodicWave'))
AudioContext.prototype.createPeriodicWave = AudioContext.prototype.createWaveTable;
AudioContext.prototype.internal_createGain = AudioContext.prototype.createGain;
AudioContext.prototype.createGain = function() {
var node = this.internal_createGain();
fixSetTarget(node.gain);
return node;
};
AudioContext.prototype.internal_createDelay = AudioContext.prototype.createDelay;
AudioContext.prototype.createDelay = function(maxDelayTime) {
var node = maxDelayTime ? this.internal_createDelay(maxDelayTime) : this.internal_createDelay();
fixSetTarget(node.delayTime);
return node;
};
AudioContext.prototype.internal_createBufferSource = AudioContext.prototype.createBufferSource;
AudioContext.prototype.createBufferSource = function() {
var node = this.internal_createBufferSource();
if (!node.start) {
node.start = function ( when, offset, duration ) {
if ( offset || duration )
this.noteGrainOn( when, offset, duration );
else
this.noteOn( when );
}
}
if (!node.stop)
node.stop = node.noteOff;
fixSetTarget(node.playbackRate);
return node;
};
AudioContext.prototype.internal_createDynamicsCompressor = AudioContext.prototype.createDynamicsCompressor;
AudioContext.prototype.createDynamicsCompressor = function() {
var node = this.internal_createDynamicsCompressor();
fixSetTarget(node.threshold);
fixSetTarget(node.knee);
fixSetTarget(node.ratio);
fixSetTarget(node.reduction);
fixSetTarget(node.attack);
fixSetTarget(node.release);
return node;
};
AudioContext.prototype.internal_createBiquadFilter = AudioContext.prototype.createBiquadFilter;
AudioContext.prototype.createBiquadFilter = function() {
var node = this.internal_createBiquadFilter();
fixSetTarget(node.frequency);
fixSetTarget(node.detune);
fixSetTarget(node.Q);
fixSetTarget(node.gain);
return node;
};
if (AudioContext.prototype.hasOwnProperty( 'createOscillator' )) {
AudioContext.prototype.internal_createOscillator = AudioContext.prototype.createOscillator;
AudioContext.prototype.createOscillator = function() {
var node = this.internal_createOscillator();
if (!node.start)
node.start = node.noteOn;
if (!node.stop)
node.stop = node.noteOff;
if (!node.setPeriodicWave)
node.setPeriodicWave = node.setWaveTable;
fixSetTarget(node.frequency);
fixSetTarget(node.detune);
return node;
};
}
}
}(window));
;!function(exports, undefined) {
var isArray = Array.isArray ? Array.isArray : function _isArray(obj) {
return Object.prototype.toString.call(obj) === "[object Array]";
};
var defaultMaxListeners = 36;
function init() {
this._events = new Object;
}
function configure(conf) {
if (conf) {
conf.delimiter && (this.delimiter = conf.delimiter);
conf.maxListeners && (this._events.maxListeners = conf.maxListeners);
conf.wildcard && (this.wildcard = conf.wildcard);
if (this.wildcard) {
this.listenerTree = new Object;
}
}
}
function EventEmitter(conf) {
this._events = new Object;
configure.call(this, conf);
}
//
// Attention, function return type now is array, always !
// It has zero elements if no any matches found and one or more
// elements (leafs) if there are matches
//
function searchListenerTree(handlers, type, tree, i) {
if (!tree) {
return [];
}
var listeners=[], leaf, len, branch, xTree, xxTree, isolatedBranch, endReached,
typeLength = type.length, currentType = type[i], nextType = type[i+1];
if (i === typeLength && tree._listeners) {
//
// If at the end of the event(s) list and the tree has listeners
// invoke those listeners.
//
if (typeof tree._listeners === 'function') {
handlers && handlers.push(tree._listeners);
return [tree];
} else {
for (leaf = 0, len = tree._listeners.length; leaf < len; leaf++) {
handlers && handlers.push(tree._listeners[leaf]);
}
return [tree];
}
}
if ((currentType === '*' || currentType === '**') || tree[currentType]) {
//
// If the event emitted is '*' at this part
// or there is a concrete match at this patch
//
if (currentType === '*') {
for (branch in tree) {
if (branch !== '_listeners' && tree.hasOwnProperty(branch)) {
listeners = listeners.concat(searchListenerTree(handlers, type, tree[branch], i+1));
}
}
return listeners;
} else if(currentType === '**') {
endReached = (i+1 === typeLength || (i+2 === typeLength && nextType === '*'));
if(endReached && tree._listeners) {
// The next element has a _listeners, add it to the handlers.
listeners = listeners.concat(searchListenerTree(handlers, type, tree, typeLength));
}
for (branch in tree) {
if (branch !== '_listeners' && tree.hasOwnProperty(branch)) {
if(branch === '*' || branch === '**') {
if(tree[branch]._listeners && !endReached) {
listeners = listeners.concat(searchListenerTree(handlers, type, tree[branch], typeLength));
}
listeners = listeners.concat(searchListenerTree(handlers, type, tree[branch], i));
} else if(branch === nextType) {
listeners = listeners.concat(searchListenerTree(handlers, type, tree[branch], i+2));
} else {
// No match on this one, shift into the tree but not in the type array.
listeners = listeners.concat(searchListenerTree(handlers, type, tree[branch], i));
}
}
}
return listeners;
}
listeners = listeners.concat(searchListenerTree(handlers, type, tree[currentType], i+1));
}
xTree = tree['*'];
if (xTree) {
//
// If the listener tree will allow any match for this part,
// then recursively explore all branches of the tree
//
searchListenerTree(handlers, type, xTree, i+1);
}
xxTree = tree['**'];
if(xxTree) {
if(i < typeLength) {
if(xxTree._listeners) {
// If we have a listener on a '**', it will catch all, so add its handler.
searchListenerTree(handlers, type, xxTree, typeLength);
}
// Build arrays of matching next branches and others.
for(branch in xxTree) {
if(branch !== '_listeners' && xxTree.hasOwnProperty(branch)) {
if(branch === nextType) {
// We know the next element will match, so jump twice.
searchListenerTree(handlers, type, xxTree[branch], i+2);
} else if(branch === currentType) {
// Current node matches, move into the tree.
searchListenerTree(handlers, type, xxTree[branch], i+1);
} else {
isolatedBranch = {};
isolatedBranch[branch] = xxTree[branch];
searchListenerTree(handlers, type, { '**': isolatedBranch }, i+1);
}
}
}
} else if(xxTree._listeners) {
// We have reached the end and still on a '**'
searchListenerTree(handlers, type, xxTree, typeLength);
} else if(xxTree['*'] && xxTree['*']._listeners) {
searchListenerTree(handlers, type, xxTree['*'], typeLength);
}
}
return listeners;
}
function growListenerTree(type, listener) {
type = typeof type === 'string' ? type.split(this.delimiter) : type.slice();
//
// Looks for two consecutive '**', if so, don't add the event at all.
//
for(var i = 0, len = type.length; i+1 < len; i++) {
if(type[i] === '**' && type[i+1] === '**') {
return;
}
}
var tree = this.listenerTree;
var name = type.shift();
while (name) {
if (!tree[name]) {
tree[name] = new Object;
}
tree = tree[name];
if (type.length === 0) {
if (!tree._listeners) {
tree._listeners = listener;
}
else if(typeof tree._listeners === 'function') {
tree._listeners = [tree._listeners, listener];
}
else if (isArray(tree._listeners)) {
tree._listeners.push(listener);
if (!tree._listeners.warned) {
var m = defaultMaxListeners;
if (typeof this._events.maxListeners !== 'undefined') {
m = this._events.maxListeners;
}
if (m > 0 && tree._listeners.length > m) {
tree._listeners.warned = true;
console.error('(node) warning: possible EventEmitter memory ' +
'leak detected. %d listeners added. ' +
'Use emitter.setMaxListeners() to increase limit.',
tree._listeners.length);
console.trace();
}
}
}
return true;
}
name = type.shift();
}
return true;
};
// By default EventEmitters will print a warning if more than
// 10 listeners are added to it. This is a useful default which
// helps finding memory leaks.
//
// Obviously not all Emitters should be limited to 10. This function allows
// that to be increased. Set to zero for unlimited.
EventEmitter.prototype.delimiter = '.';
EventEmitter.prototype.setMaxListeners = function(n) {
this._events || init.call(this);
this._events.maxListeners = n;
};
EventEmitter.prototype.event = '';
EventEmitter.prototype.once = function(event, fn) {
this.many(event, 1, fn);
return this;
};
EventEmitter.prototype.many = function(event, ttl, fn) {
var self = this;
if (typeof fn !== 'function') {
throw new Error('many only accepts instances of Function');
}
function listener() {
if (--ttl === 0) {
self.off(event, listener);
}
fn.apply(this, arguments);
};
listener._origin = fn;
this.on(event, listener);
return self;
};
EventEmitter.prototype.emit = function() {
this._events || init.call(this);
var type = arguments[0];
if (type === 'newListener') {
if (!this._events.newListener) { return false; }
}
// Loop through the *_all* functions and invoke them.
if (this._all) {
var l = arguments.length;
var args = new Array(l - 1);
for (var i = 1; i < l; i++) args[i - 1] = arguments[i];
for (i = 0, l = this._all.length; i < l; i++) {
this.event = type;
this._all[i].apply(this, args);
}
}
// If there is no 'error' event listener then throw.
if (type === 'error') {
if (!this._all &&
!this._events.error &&
!(this.wildcard && this.listenerTree.error)) {
if (arguments[1] instanceof Error) {
throw arguments[1]; // Unhandled 'error' event
} else {
throw new Error("Uncaught, unspecified 'error' event.");
}
return false;
}
}
var handler;
if(this.wildcard) {
handler = [];
var ns = typeof type === 'string' ? type.split(this.delimiter) : type.slice();
searchListenerTree.call(this, handler, ns, this.listenerTree, 0);
}
else {
handler = this._events[type];
}
if (typeof handler === 'function') {
this.event = type;
if (arguments.length === 1) {
handler.call(this);
}
else if (arguments.length > 1)
switch (arguments.length) {
case 2:
handler.call(this, arguments[1]);
break;
case 3:
handler.call(this, arguments[1], arguments[2]);
break;
// slower
default:
var l = arguments.length;
var args = new Array(l - 1);
for (var i = 1; i < l; i++) args[i - 1] = arguments[i];
handler.apply(this, args);
}
return true;
}
else if (handler) {
var l = arguments.length;
var args = new Array(l - 1);
for (var i = 1; i < l; i++) args[i - 1] = arguments[i];
var listeners = handler.slice();
for (var i = 0, l = listeners.length; i < l; i++) {
this.event = type;
listeners[i].apply(this, args);
}
return (listeners.length > 0) || this._all;
}
else {
return this._all;
}
};
EventEmitter.prototype.on = function(type, listener) {
if (typeof type === 'function') {
this.onAny(type);
return this;
}
if (typeof listener !== 'function') {
throw new Error('on only accepts instances of Function');
}
this._events || init.call(this);
// To avoid recursion in the case that type == "newListeners"! Before
// adding it to the listeners, first emit "newListeners".
this.emit('newListener', type, listener);
if(this.wildcard) {
growListenerTree.call(this, type, listener);
return this;
}
if (!this._events[type]) {
// Optimize the case of one listener. Don't need the extra array object.
this._events[type] = listener;
}
else if(typeof this._events[type] === 'function') {
// Adding the second element, need to change to array.
this._events[type] = [this._events[type], listener];
}
else if (isArray(this._events[type])) {
// If we've already got an array, just append.
this._events[type].push(listener);
// Check for listener leak
if (!this._events[type].warned) {
var m = defaultMaxListeners;
if (typeof this._events.maxListeners !== 'undefined') {
m = this._events.maxListeners;
}
if (m > 0 && this._events[type].length > m) {
this._events[type].warned = true;
console.error('(node) warning: possible EventEmitter memory ' +
'leak detected. %d listeners added. ' +
'Use emitter.setMaxListeners() to increase limit.',
this._events[type].length);
console.trace();
}
}
}
return this;
};
EventEmitter.prototype.onAny = function(fn) {
if(!this._all) {
this._all = [];
}
if (typeof fn !== 'function') {
throw new Error('onAny only accepts instances of Function');
}
// Add the function to the event listener collection.
this._all.push(fn);
return this;
};
EventEmitter.prototype.addListener = EventEmitter.prototype.on;
EventEmitter.prototype.off = function(type, listener) {
if (typeof listener !== 'function') {
throw new Error('removeListener only takes instances of Function');
}
var handlers,leafs=[];
if(this.wildcard) {
var ns = typeof type === 'string' ? type.split(this.delimiter) : type.slice();
leafs = searchListenerTree.call(this, null, ns, this.listenerTree, 0);
}
else {
// does not use listeners(), so no side effect of creating _events[type]
if (!this._events[type]) return this;
handlers = this._events[type];
leafs.push({_listeners:handlers});
}
for (var iLeaf=0; iLeaf<leafs.length; iLeaf++) {
var leaf = leafs[iLeaf];
handlers = leaf._listeners;
if (isArray(handlers)) {
var position = -1;
for (var i = 0, length = handlers.length; i < length; i++) {
if (handlers[i] === listener ||
(handlers[i].listener && handlers[i].listener === listener) ||
(handlers[i]._origin && handlers[i]._origin === listener)) {
position = i;
break;
}
}
if (position < 0) {
return this;
}
if(this.wildcard) {
leaf._listeners.splice(position, 1)
}
else {
this._events[type].splice(position, 1);
}
if (handlers.length === 0) {
if(this.wildcard) {
delete leaf._listeners;
}
else {
delete this._events[type];
}
}
}
else if (handlers === listener ||
(handlers.listener && handlers.listener === listener) ||
(handlers._origin && handlers._origin === listener)) {
if(this.wildcard) {
delete leaf._listeners;
}
else {
delete this._events[type];
}
}
}
return this;
};
EventEmitter.prototype.offAny = function(fn) {
var i = 0, l = 0, fns;
if (fn && this._all && this._all.length > 0) {
fns = this._all;
for(i = 0, l = fns.length; i < l; i++) {
if(fn === fns[i]) {
fns.splice(i, 1);
return this;
}
}
} else {
this._all = [];
}
return this;
};
EventEmitter.prototype.removeListener = EventEmitter.prototype.off;
EventEmitter.prototype.removeAllListeners = function(type) {
if (arguments.length === 0) {
!this._events || init.call(this);
return this;
}
if(this.wildcard) {
var ns = typeof type === 'string' ? type.split(this.delimiter) : type.slice();
var leafs = searchListenerTree.call(this, null, ns, this.listenerTree, 0);
for (var iLeaf=0; iLeaf<leafs.length; iLeaf++) {
var leaf = leafs[iLeaf];
leaf._listeners = null;
}
}
else {
if (!this._events[type]) return this;
this._events[type] = null;
}
return this;
};
EventEmitter.prototype.listeners = function(type) {
if(this.wildcard) {
var handlers = [];
var ns = typeof type === 'string' ? type.split(this.delimiter) : type.slice();
searchListenerTree.call(this, handlers, ns, this.listenerTree, 0);
return handlers;
}
this._events || init.call(this);
if (!this._events[type]) this._events[type] = [];
if (!isArray(this._events[type])) {
this._events[type] = [this._events[type]];
}
return this._events[type];
};
EventEmitter.prototype.listenersAny = function() {
if(this._all) {
return this._all;
}
else {
return [];
}
};
exports.EventEmitter2 = EventEmitter;
}(window);
/*
* Copyright (c) 2011-2013 Chris McCormick, Sébastien Piquemal <[email protected]>
*
* This file is part of WebPd. See https://github.com/sebpiq/WebPd for documentation
*
* WebPd is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* WebPd is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with WebPd. If not, see <http://www.gnu.org/licenses/>.
*
*/
(function(){
// EventEmitter2 offers the same API as node's EventEmitter
this.EventEmitter = EventEmitter2;
var Pd = this.Pd = {
// Default sample rate to use for the patches. Beware, if the browser doesn't
// support this sample rate, the actual sample rate of a patch might be different.
sampleRate: 44100,
// Default block size to use for patches.
blockSize: 64,
// Default block size for web audio API.
waaSize: 1024,
// The number of audio channels on the output
channelCount: 2,
debugMode: false,
// Array type to use. If the browser support Float arrays, this will be Float array type.
arrayType: Array,
// Array slice function, to unify slicing float arrays and normal arrays.
arraySlice: function (array, start, end) { return array.slice(start, end); }
};
// use a Float32Array if we have it
if (typeof Float32Array !== "undefined") {
Pd.arrayType = Float32Array;
Pd.arraySlice = function (array, start, end) { return array.subarray(start, end); };
}
// Returns true if the current browser supports WebPd, false otherwise.
Pd.isSupported = function() {
// Web audio API - Chrome, Safari
var test = typeof window === 'undefined' ? null : window.webkitAudioContext || window.AudioContext;
if (test) return true;
// All the rest
return false;
};
// Every new patch and object registers itself using this function.
// Named objects are stored, so that they can be found with
// `Pd.getNamedObject` and `Pd.getUniquelyNamedObject`.
// TODO: destroy object or patch, clean references
Pd.register = function(obj) {
if (obj.type === 'abstract') return;
if (obj instanceof Pd.Patch) {
if (this._patches.indexOf(obj) === -1) {
this._patches.push(obj);
obj.id = this._generateId();
}
// For normal named objects, we just find the right entry in the map,
// and add the object to an array of objects with the same name.
} else if (obj instanceof Pd.NamedObject) {
var storeNamedObject = function(oldName, newName) {
var objType = obj.type, nameMap = Pd._namedObjects[obj.type],
objList;
if (!nameMap) nameMap = Pd._namedObjects[objType] = {};
objList = nameMap[newName];
if (!objList) objList = nameMap[newName] = [];
if (objList.indexOf(obj) === -1) objList.push(obj);
// Removing old mapping
if (oldName) {
objList = nameMap[oldName];
objList.splice(objList.indexOf(obj), 1);
}
};
obj.on('change:name', storeNamedObject);
storeNamedObject(null, obj.name);
// For uniquely named objects, we add directly the object to the corresponding
// entry in the map (no arrays there).
} else if (obj instanceof Pd.UniquelyNamedObject) {
var storeNamedObject = function(oldName, newName) {
var objType = obj.type, nameMap = Pd._uniquelyNamedObjects[obj.type],
objList;
if (!nameMap) nameMap = Pd._uniquelyNamedObjects[objType] = {};
if (nameMap.hasOwnProperty(newName) && nameMap[newName] !== obj)
throw new Error('there is already an object with name "' + newName + '"');
nameMap[newName] = obj;
// Removing old mapping
if (oldName) nameMap[oldName] = undefined;
};
obj.on('change:name', storeNamedObject);
storeNamedObject(null, obj.name);
}
};
Pd._patches = [];
Pd._namedObjects = {};
Pd._uniquelyNamedObjects = {};
// Returns an object list given the object `type` and `name`.
Pd.getNamedObject = function(type, name) {
return ((this._namedObjects[type] || {})[name] || []);
};
// Returns an object given the object `type` and `name`, or `null` if this object doesn't exist.
Pd.getUniquelyNamedObject = function(type, name) {
return ((this._uniquelyNamedObjects[type] || {})[name] || null);
};
// Returns true if an object is an array, false otherwise.
Pd.isArray = Array.isArray || function(obj) {
return toString.call(obj) === '[object Array]';
};
// Returns true if an object is a number, false otherwise.
// If `val` is NaN, the function returns false.
Pd.isNumber = function(val) {
return typeof val === 'number' && !isNaN(val);
};
// Returns true if an object is a string, false otherwise.
Pd.isString = function(val) {
return typeof val === 'string';
};
// Returns true if an object is a function, false otherwise.
// TODO: function vs [object Function] ?
Pd.isFunction = function(obj) {
return typeof obj === 'function';
};
// Simple prototype inheritance. Used like so :
//
// var ChildObject = function() {};
//
// Pd.extend(ChildObject.prototype, ParentObject.prototype, {
//
// anOverridenMethod: function() {
// ParentObject.prototype.anOverridenMethod.apply(this, arguments);
// // do more stuff ...
// },
//
// aNewMethod: function() {
// // do stuff ...
// }
//
// });
Pd.extend = function(obj) {
var sources = Array.prototype.slice.call(arguments, 1),
i, length, source, prop;
for (i = 0, length = sources.length; i < length; i++) {
source = sources[i];
for (prop in source) {
obj[prop] = source[prop];
}
}
return obj;
};
Pd.chainExtend = function() {
var sources = Array.prototype.slice.call(arguments, 0),
parent = this,
child = function() { parent.apply(this, arguments); };
// Fix instanceof
child.prototype = new parent();
// extend with new properties
Pd.extend.apply(this, [child.prototype, parent.prototype].concat(sources));
child.extend = this.extend;
return child;
};
// Simple mixin to add functionalities for generating unique ids.
// Each prototype inheriting from this mixin has a separate id counter.
// Therefore ids are not unique globally but unique for each prototype.
Pd.UniqueIdsBase = {
// Every time it is called, this method returns a new unique id.
_generateId: function() {
this._idCounter++;
return this._idCounter;
},
// Counter used internally to assign a unique id to objects
// this counter should never be decremented to ensure the id unicity
_idCounter: -1
};
Pd.extend(Pd, Pd.UniqueIdsBase);
// Returns a function `transfer(msg)`, that takes a message array as input, and constructs
// the output message. For example :
//
// transfer = Pd.makeMsgTransfer([56, '$1', 'bla', '$2-$1']);
// transfer([89, 'bli']); // [56, 89, 'bla', 'bli-89']
//
Pd.makeMsgTransfer = function(rawOutArray) {
var transfer = [], i, length, rawOutVal, matchDollar, func;
rawOutArray = rawOutArray.slice(0);
// Creates an array of transfer functions `inVal -> outVal`.
for (i = 0, length = rawOutArray.length; i < length; i++) {
rawOutVal = rawOutArray[i];
matchDollar = dollarVarRe.exec(rawOutVal);
// If the transfer is a dollar var :
// ['bla', 789] - ['$1'] -> ['bla']
// ['bla', 789] - ['$2'] -> [789]
if (matchDollar && matchDollar[0] === rawOutVal) {
transfer.push(
(function(rawOutVal) {
var inInd = parseInt(matchDollar[1], 10) - 1; // -1, because $1 corresponds to value 0.
return function(inArray) {
if (inInd >= inArray.length || inInd < 0 )
throw new Error('$' + (inInd + 1) + ': argument number out of range');
return inArray[inInd];
};
})(rawOutVal)
);
// If the transfer is a string containing dollar var :
// ['bla', 789] - ['bla$2'] -> ['bla789']
} else if (matchDollar) {
transfer.push(
(function(rawOutVal) {
var j, matched, dollarVars = [], inInd;
while (matched = dollarVarReGlob.exec(rawOutVal)) {
dollarVars.push([matched[0], parseInt(matched[1], 10) - 1]); // -1, because $1 corresponds to value 0.
}
return function(inArray) {
var outVal = rawOutVal.substr(0);
for (j = 0; matched = dollarVars[j]; j++) {
inInd = matched[1];
if (inInd >= inArray.length || inInd < 0 )
throw new Error('$' + (inInd + 1) + ': argument number out of range');
outVal = outVal.replace(matched[0], inArray[inInd]);
}
return outVal;
};
})(rawOutVal)
);
// Else the input doesn't matter
} else {
transfer.push(
(function(outVal) {
return function() { return outVal; };
})(rawOutVal)
);
}
}
return function(inArray) {
var outArray = [];
for (i = 0; func = transfer[i]; i++) outArray[i] = func(inArray);
return outArray;
};
};
// Takes a list of object arguments which might contain abbreviations, and returns
// a copy of that list, abbreviations replaced by the corresponding full word.
// TODO: patch, $1, $2, ...
// TODO: doesn't this belong to compat instead ?
Pd.resolveArgs = function(args, patch) {
var i, length, arg, matchDollar, cleaned = args.slice(0),
patchInd, patchArgs = (patch) ? [patch.id] : [];
for (i = 0, length = args.length; i < length; i++) {
arg = args[i];
if (arg === 'b') cleaned[i] = 'bang';
else if (arg === 'f') cleaned[i] = 'float';
else if (arg === 's') cleaned[i] = 'symbol';
else if (arg === 'a') cleaned[i] = 'anything';
else if (arg === 'l') cleaned[i] = 'list';
else if (matchDollar = dollarVarRe.exec(arg)) {
// If the transfer is a dollar var :
// ['bla', 789] - ['$1'] -> ['bla']
// ['bla', 789] - ['$2'] -> [789]
if (matchDollar[0] === arg) {
patchInd = parseInt(matchDollar[1], 10);
if (patchInd >= patchArgs.length || patchInd < 0 )
throw new Error('$' + patchInd + ': argument number out of range');
cleaned[i] = patchArgs[patchInd];
// If the transfer is a string containing dollar var :
// ['bla', 789] - ['bla$2'] -> ['bla789']
} else {
while (matchDollar = dollarVarReGlob.exec(arg)) {