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			461 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
	
	
			
		
		
	
	
			461 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
	
	
| /**********************************************************************
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| * 
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| *
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| *
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| * XXX move .zip(..) here from diff.js
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| * XXX do we need .at(..) / .to(..) methods here and in Map/Set/...???
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| *
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| *
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| **********************************************/  /* c8 ignore next 2 */
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| ((typeof define)[0]=='u'?function(f){module.exports=f(require)}:define)
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| (function(require){ var module={} // make module AMD/node compatible...
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| /*********************************************************************/
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| 
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| var object = require('ig-object')
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| 
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| 
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| 
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| /*********************************************************************/
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| 
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| 
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| var StopIteration =
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| module.StopIteration =
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| 	object.Constructor('StopIteration', Error, {
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| 		// NOTE: I do not get why JavaScript's Error implements this 
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| 		// 		statically...
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| 		get name(){
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| 			return this.constructor.name }, 
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| 		// NOTE: msg is handled by Error(..)
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| 		__init__: function(msg){
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| 			this.msg = msg },
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| 	})
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| 
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| 
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| 
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| //---------------------------------------------------------------------
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| 
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| // Array.prototype.flat polyfill...
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| //
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| // NOTE: .flat(..) is not yet supported in IE/Edge...
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| Array.prototype.flat
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| 	|| (Array.prototype.flat = function(depth){
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| 		depth = typeof(depth) == typeof(123) ? depth : 1
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| 		return this.reduce(function(res, e){ 
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| 			return res.concat(e instanceof Array && depth > 0 ? 
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| 				e.flat(depth-1) 
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| 				: [e]) }, []) })
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| 
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| 
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| // Array.prototype.includes polyfill...
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| //
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| Array.prototype.includes
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| 	|| (Array.prototype.includes = function(value){
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| 		return this.indexOf(value) >= 0 }) 
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| 
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| 
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| // first/last element access short-hands...
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| //
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| //	.first()
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| //	.last()
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| //		-> elem
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| //
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| //	.first(value)
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| //	.last(value)
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| //		-> array
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| //
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| // NOTE: setting a value will overwrite an existing first/last value.
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| // NOTE: for an empty array both .first(..)/.last(..) will return undefined 
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| // 		when getting a value and set the 0'th value when setting...
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| // NOTE: decided to keep these as methods and not props because methods
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| // 		have one advantage: they can be chained
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| // 		...while you can't chain assignment unless you wrap it in .run(..)
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| Array.prototype.first
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| 	|| (Array.prototype.first = function(value){
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| 		return arguments.length > 0 ?
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| 			((this[0] = value), this)
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| 			: this[0]})
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| Array.prototype.last
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| 	|| (Array.prototype.last = function(value){
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| 		return arguments.length > 0 ?
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| 			((this[this.length - 1 || 0] = value), this)
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| 			: this[this.length - 1]})
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| 
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| 
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| // Compact a sparse array...
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| //
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| // NOTE: this will not compact in-place.
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| Array.prototype.compact = function(){
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| 	return this.filter(function(){ return true }) }
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| 
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| 
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| // like .length but for sparse arrays will return the element count...
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| //
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| 'len' in Array.prototype
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| 	|| Object.defineProperty(Array.prototype, 'len', {
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| 		get : function () {
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| 			return Object.keys(this).length
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| 		},
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| 		set : function(val){},
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| 	})
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| 
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| 
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| // Return an array with duplicate elements removed...
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| //
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| // NOTE: order is preserved... 
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| Array.prototype.unique = function(normalize){
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| 	return normalize ? 
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| 		[...new Map(this.map(function(e){ return [normalize(e), e] })).values()]
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| 		: [...new Set(this)] }
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| Array.prototype.tailUnique = function(normalize){
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| 	return this
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| 		.slice()
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| 		.reverse()
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| 		.unique(normalize)
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| 		.reverse() }
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| 
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| 
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| // Compare two arrays...
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| //
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| // NOTE: this is diffectent from Object.match(..) in that this compares 
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| // 		self to other (internal) while match compares two entities 
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| // 		externally.
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| // 		XXX not sure if we need the destinction in name, will have to 
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| // 			come back to this when refactoring diff.js -- all three have
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| // 			to be similar...
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| Array.prototype.cmp = function(other){
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| 	if(this === other){
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| 		return true }
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| 	if(this.length != other.length){
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| 		return false }
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| 	for(var i=0; i<this.length; i++){
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| 		if(this[i] != other[i]){
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| 			return false } }
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| 	return true }
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| 
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| 
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| // Compare two Arrays as sets...
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| //
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| // NOTE: this will ignore order and repeating elments...
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| Array.prototype.setCmp = function(other){
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| 	return this === other 
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| 		|| (new Set([...this, ...other])).length == (new Set(this)).length }
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| 
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| 
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| // Sort as the other array...
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| //
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| // This will sort the intersecting items in the head keeping the rest 
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| // of the items in the same relative order...
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| //
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| // NOTE: if an item is in the array multiple times only the first index 
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| // 		is used...
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| //
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| // XXX should this extend/patch .sort(..)???
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| // 		...currently do not see a clean way to do this...
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| Array.prototype.sortAs = function(other){
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| 	// NOTE: the memory overhead here is better than the time overhead 
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| 	// 		when using .indexOf(..)...
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| 	other = other.toMap()
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| 	var orig = this.toMap()
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| 	return this.sort(function(a, b){
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| 		var i = other.get(a)
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| 		var j = other.get(b)
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| 		return i == null && j == null ?
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| 				orig.get(a) - orig.get(b)
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| 			: i == null ? 
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| 				1
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| 			: j == null ? 
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| 				-1
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| 			: i - j }) }
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| 
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| 
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| // Same as .sortAs(..) but will not change indexes of items not in other...
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| //
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| // Example:
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| // 		['a', 3, 'b', 1, 2, 'c']
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| // 			.inplaceSortAs([1, 2, 3, 3]) // -> ['a', 1, 'b', 2, 3, 'c']
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| //
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| Array.prototype.inplaceSortAs = function(other){
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| 	// sort only the intersection...
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| 	var sorted = this
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| 		.filter(function(e){ 
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| 			return other.includes(e) })
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| 		.sortAs(other)
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| 	// "zip" the sorted items back into this...
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| 	this.forEach(function(e, i, l){
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| 		other.includes(e) 
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| 			&& (l[i] = sorted.shift()) })
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| 	return this }
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| 
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| 
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| // Equivalent to .map(..) / .filter(..) / .reduce(..) / .. with support for
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| // StopIteration...
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| // 
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| // NOTE: these add almost no overhead to the iteration.
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| // 
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| // XXX should these return a partial result on StopIteration?
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| var wrapIterFunc = function(iter){
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| 	return function(func){
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| 		try {
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| 			return this[iter](...arguments)
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| 		// handle StopIteration...
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| 		} catch(err){
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| 			if(err === StopIteration){
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| 				return
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| 			} else if( err instanceof StopIteration){
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| 				return err.msg }
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| 			throw err } } }
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| 
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| Array.prototype.smap = wrapIterFunc('map')
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| Array.prototype.sfilter = wrapIterFunc('filter')
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| Array.prototype.sreduce = wrapIterFunc('reduce')
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| Array.prototype.sforEach = wrapIterFunc('forEach')
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| 
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| 
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| // Equivalent to .map(..) / .filter(..) / .reduce(..) that process the 
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| // contents in chunks asynchronously...
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| //
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| //	.mapChunks(func)
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| //	.mapChunks(chunk_size, func)
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| //	.mapChunks([item_handler, chunk_handler])
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| //	.mapChunks(chunk_size, [item_handler, chunk_handler])
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| //		-> promise(list)
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| //	
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| //	.filterChunks(func)
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| //	.filterChunks(chunk_size, func)
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| //	.filterChunks([item_handler, chunk_handler])
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| //	.filterChunks(chunk_size, [item_handler, chunk_handler])
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| //		-> promise(list)
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| //	
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| //	.reduceChunks(func, res)
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| //	.reduceChunks(chunk_size, func, res)
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| //	.reduceChunks([item_handler, chunk_handler], res)
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| //	.reduceChunks(chunk_size, [item_handler, chunk_handler], res)
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| //		-> promise(res)
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| //
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| //
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| //	chunk_handler(chunk, result, offset)
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| //
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| //
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| // chunk_size can be:
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| // 	20			- chunk size
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| // 	'20'		- chunk size
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| // 	'20C'		- number of chunks
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| //
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| //
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| // StopIteration can be thrown in func or chunk_handler at any time to 
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| // abort iteration, this will reject the promise.
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| //	
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| //
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| // The main goal of this is to not block the runtime while processing a 
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| // very long array by interrupting the processing with a timeout...
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| //
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| // XXX should these return a partial result on StopIteration?
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| // XXX add generators:
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| // 			.map(..) / .filter(..) / .reduce(..)
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| // 		...the basis here should be the chunks, i.e. each cycle should
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| // 		go through a chunk...
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| //		...the mixin can be generic, i.e. applicable to Array, and 
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| //		other stuff...
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| var makeChunkIter = function(iter, wrapper){
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| 	wrapper = wrapper
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| 		|| function(res, func, array, e){
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| 			return func.call(this, e[1], e[0], array) }
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| 	return function(size, func, ...rest){
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| 		var that = this
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| 		var args = [...arguments]
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| 		size = (args[0] instanceof Function 
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| 				|| args[0] instanceof Array) ? 
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| 			(this.CHUNK_SIZE || 50)
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| 			: args.shift()
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| 		size = typeof(size) == typeof('str') ?
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| 				// number of chunks...
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| 				(size.trim().endsWith('c') || size.trim().endsWith('C') ?
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| 				 	Math.round(this.length / (parseInt(size) || 1)) || 1
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| 				: parseInt(size))
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| 			: size
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| 		var postChunk
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| 		func = args.shift()
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| 		;[func, postChunk] = func instanceof Array ? func : [func]
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| 		rest = args
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| 
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| 		// special case...
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| 		// no need to setTimeout(..) if smaller than size...
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| 		if(this.length <= size){
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| 			try {
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| 				// handle iteration...
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| 				var res = this[iter](func, ...rest)
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| 				// handle chunk...
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| 				postChunk
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| 					&& postChunk.call(this, this, res, 0) 
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| 				return Promise.all(res) 
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| 			// handle StopIteration...
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| 			} catch(err){
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| 				if(err === StopIteration){
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| 					return Promise.reject() 
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| 				} else if( err instanceof StopIteration){
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| 					return Promise.reject(err.msg) }
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| 				throw err } }
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| 
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| 		var res = []
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| 		var _wrapper = wrapper.bind(this, res, func, this)
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| 
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| 		return new Promise(function(resolve, reject){
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| 				var next = function(chunks){
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| 					setTimeout(function(){
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| 						var chunk, val
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| 						try {
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| 							// handle iteration...
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| 							res.push(
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| 								val = (chunk = chunks.shift())[iter](_wrapper, ...rest))
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| 							// handle chunk...
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| 							postChunk
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| 								&& postChunk.call(that, 
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| 									chunk.map(function([i, v]){ return v }), 
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| 									val,
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| 									chunk[0][0])
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| 						// handle StopIteration...
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| 						} catch(err){
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| 							if(err === StopIteration){
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| 								return reject() 
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| 							} else if( err instanceof StopIteration){
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| 								return reject(err.msg) }
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| 							throw err }
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| 
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| 						// stop condition...
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| 						chunks.length == 0 ?
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| 							resolve(res.flat(2))
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| 							: next(chunks) }, 0) }
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| 				next(that
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| 					// split the array into chunks...
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| 					.reduce(function(res, e, i){
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| 						var c = res.slice(-1)[0]
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| 						c.length >= size ?
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| 							// initial element in chunk...
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| 							res.push([[i, e]])
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| 							// rest...
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| 							: c.push([i, e])
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| 						return res }, [[]])) }) } }
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| 
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| Array.prototype.CHUNK_SIZE = 50 
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| Array.prototype.mapChunks = makeChunkIter('map')
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| Array.prototype.filterChunks = makeChunkIter('map', 
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| 	function(res, func, array, e){
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| 		return !!func.call(this, e[1], e[0], array) ? [e[1]] : [] })
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| Array.prototype.reduceChunks = makeChunkIter('reduce',
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| 	function(total, func, array, res, e){
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| 		return func.call(this, 
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| 			total.length > 0 ? 
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| 				total.pop() 
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| 				: res, 
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| 			e[1], e[0], array) })
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| 
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| 
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| // Convert an array to object...
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| //
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| // Format:
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| // 	{
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| // 		<item>: <index>,
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| // 		...
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| // 	}
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| //
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| // NOTE: items should be strings, other types will get converted to 
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| // 		strings and thus may mess things up.
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| // NOTE: this will forget repeating items...
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| // NOTE: normalize will slow things down...
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| Array.prototype.toKeys = function(normalize){
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| 	return normalize ? 
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| 		this.reduce(function(r, e, i){
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| 			r[normalize(e)] = i
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| 			return r }, {})
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| 		: this.reduce(function(r, e, i){
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| 			r[e] = i
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| 			return r }, {}) }
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| 
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| 
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| // Convert an array to a map...
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| //
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| // This is similar to Array.prototype.toKeys(..) but does not restrict 
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| // value type to string.
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| //
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| // Format:
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| // 	Map([
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| // 		[<item>, <index>],
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| // 		...
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| // 	])
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| //
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| // NOTE: this will forget repeating items...
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| // NOTE: normalize will slow things down...
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| Array.prototype.toMap = function(normalize){
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| 	return normalize ? 
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| 		this
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| 			.reduce(function(m, e, i){
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| 				m.set(normalize(e), i)
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| 				return m }, new Map())
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| 		: this
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| 			.reduce(function(m, e, i){
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| 				m.set(e, i)
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| 				return m }, new Map()) }
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| 
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| 
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| // 	zip(array, array, ...)
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| // 		-> [[item, item, ...], ...]
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| //
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| // 	zip(func, array, array, ...)
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| // 		-> [func(i, [item, item, ...]), ...]
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| //
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| Array.zip = 
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| function(func, ...arrays){
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| 	var i = arrays[0] instanceof Array ? 
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| 		0 
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| 		: arrays.shift()
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| 	if(func instanceof Array){
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| 		arrays.splice(0, 0, func)
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| 		func = null }
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| 	// build the zip item...
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| 	// NOTE: this is done this way to preserve array sparseness...
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| 	var s = arrays
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| 		.reduce(
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| 			function(res, a, j){
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| 				//a.length > i
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| 				i in a
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| 					&& (res[j] = a[i])
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| 				return res }, 
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| 			new Array(arrays.length))
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| 	return arrays
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| 			// check that at least one array is longer than i...
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| 			.reduce(function(res, a){ 
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| 				return Math.max(res, i, a.length) }, 0) > i ?
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| 		// collect zip item...
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| 		[func ? func(i, s) : s]
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| 			// get next...
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| 			.concat(this.zip(func, i+1, ...arrays))
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| 		// done...
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| 		: [] }
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| // XXX would be nice for this to use the instance .zip(..) in recursion...
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| // 		...this might be done by reversign the current implementation, i.e.
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| // 		for instance .zip(..) to be the main implementation and for 
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| // 		Array.zip(..) to be a proxy to that...
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| Array.prototype.zip =
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| function(func, ...arrays){
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| 	return func instanceof Array ?
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| 		this.constructor.zip(this, func, ...arrays)
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| 		: this.constructor.zip(func, this, ...arrays) }
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| 
 | |
| 
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| //
 | |
| //	array.iter()
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| //		-> iterator
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| //
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| //
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| // XXX should this take an argument and be like map??
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| // XXX revise name
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| Array.prototype.iter = function*(){
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| 	for(var e of this){
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| 		yield e } }
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| 
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| 
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| 
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| 
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| /**********************************************************************
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| * vim:set ts=4 sw=4 :                               */ return module })
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