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"file": "generated.js", "sourceRoot": "", "sourcesContent": [ "(function e(t,n,r){function s(o,u){if(!n[o]){if(!t[o]){var a=typeof require==\"function\"&&require;if(!u&&a)return a(o,!0);if(i)return i(o,!0);var f=new Error(\"Cannot find module '\"+o+\"'\");throw f.code=\"MODULE_NOT_FOUND\",f}var l=n[o]={exports:{}};t[o][0].call(l.exports,function(e){var n=t[o][1][e];return s(n?n:e)},l,l.exports,e,t,n,r)}return n[o].exports}var i=typeof require==\"function\"&&require;for(var o=0;o0;\n\tvar S;\n\ttry{S = sessionStorage;}catch(e){}\t//Firefox crashes when executed as local file system\n\t\n\t//append required CSS rules \n\th.append(\"\");\n\n\t\n\t/**\n\t * Function to allow column resizing for table objects. It is the starting point to apply the plugin.\n\t * @param {DOM node} tb - refrence to the DOM table object to be enhanced\n\t * @param {Object} options\t- some customization values\n\t */\n\tvar init = function( tb, options){\t\n\t\tvar t = $(tb);\t\t\t\t\t\t\t\t\t\t//the table object is wrapped\n\t\tif(options.disable) return destroy(t);\t\t\t\t//the user is asking to destroy a previously colResized table\n\t\tvar\tid = t.id = t.attr(ID) || SIGNATURE+count++;\t//its id is obtained, if null new one is generated\t\t\n\t\tt.p = options.postbackSafe; \t\t\t\t\t\t//shortcut to detect postback safe \t\t\n\t\tif(!t.is(\"table\") || tables[id]) return; \t\t\t//if the object is not a table or if it was already processed then it is ignored.\n\t\tt.addClass(SIGNATURE).attr(ID, id).before('
');\t//the grips container object is added. Signature class forces table rendering in fixed-layout mode to prevent column's min-width\n\t\tt.opt = options; t.g = []; t.c = []; t.w = t.width(); t.gc = t.prev();\t//t.c and t.g are arrays of columns and grips respectively\t\t\t\t\n\t\tif(options.marginLeft) t.gc.css(\"marginLeft\", options.marginLeft); \t//if the table contains margins, it must be specified\n\t\tif(options.marginRight) t.gc.css(\"marginRight\", options.marginRight); \t//since there is no (direct) way to obtain margin values in its original units (%, em, ...)\n\t\tt.cs = I(ie? tb.cellSpacing || tb.currentStyle.borderSpacing :t.css('border-spacing'))||2;\t//table cellspacing (not even jQuery is fully cross-browser)\n\t\tt.b = I(ie? tb.border || tb.currentStyle.borderLeftWidth :t.css('border-left-width'))||1;\t//outer border width (again cross-browser isues)\n\t\t// if(!(tb.style.width || tb.width)) t.width(t.width()); //I am not an IE fan at all, but it is a pitty that only IE has the currentStyle attribute working as expected. For this reason I can not check easily if the table has an explicit width or if it is rendered as \"auto\"\n\t\ttables[id] = t; \t//the table object is stored using its id as key\t\n\t\tcreateGrips(t);\t\t//grips are created\n\t\n\t};\n\n\n\t/**\n\t * This function allows to remove any enhancements performed by this plugin on a previously processed table.\n\t * @param {jQuery ref} t - table object\n\t */\n\tvar destroy = function(t){\n\t\tvar id=t.attr(ID), t=tables[id];\t\t//its table object is found\n\t\tif(!t||!t.is(\"table\")) return;\t\t\t//if none, then it wasnt processed\t \n\t\tt.removeClass(SIGNATURE).gc.remove();\t//class and grips are removed\n\t\tdelete tables[id];\t\t\t\t\t\t//clean up data\n\t};\n\n\n\t/**\n\t * Function to create all the grips associated with the table given by parameters \n\t * @param {jQuery ref} t - table object\n\t */\n\tvar createGrips = function(t){\t\n\t\n\t\tvar th = t.find(\">thead>tr>th,>thead>tr>td\");\t//if table headers are specified in its semantically correct tag, are obtained\n\t\tif(!th.length) th = t.find(\">tbody>tr:first>th,>tr:first>th,>tbody>tr:first>td, >tr:first>td\");\t //but headers can also be included in different ways\n\t\tt.cg = t.find(\"col\"); \t\t\t\t\t\t//a table can also contain a colgroup with col elements\t\t\n\t\tt.ln = th.length;\t\t\t\t\t\t\t//table length is stored\t\n\t\tif(t.p && S && S[t.id])memento(t,th);\t\t//if 'postbackSafe' is enabled and there is data for the current table, its coloumn layout is restored\n\t\tth.each(function(i){\t\t\t\t\t\t//iterate through the table column headers\t\t\t\n\t\t\tvar c = $(this); \t\t\t\t\t\t//jquery wrap for the current column\t\t\t\n\t\t\tvar g = $(t.gc.append('
')[0].lastChild); //add the visual node to be used as grip\n\t\t\tg.t = t; g.i = i; g.c = c;\tc.w =c.width();\t\t//some values are stored in the grip's node data\n\t\t\tt.g.push(g); t.c.push(c);\t\t\t\t\t\t//the current grip and column are added to its table object\n\t\t\tc.width(c.w).removeAttr(\"width\");\t\t\t\t//the width of the column is converted into pixel-based measurements\n\t\t\tif (i < t.ln-1) {\n\t\t\t\tg.bind('touchstart mousedown', onGripMouseDown).append(t.opt.gripInnerHtml).append('
'); //bind the mousedown event to start dragging \n\t\t\t} else g.addClass(\"JCLRLastGrip\").removeClass(\"JCLRgrip\");\t//the last grip is used only to store data\t\t\t\n\t\t\tg.data(SIGNATURE, {i:i, t:t.attr(ID)});\t\t\t\t\t\t//grip index and its table name are stored in the HTML \t\t\t\t\t\t\t\t\t\t\t\t\n\t\t}); \t\n\t\tt.cg.removeAttr(\"width\");\t//remove the width attribute from elements in the colgroup (in any)\n\t\tsyncGrips(t); \t\t\t\t//the grips are positioned according to the current table layout\t\t\t\n\t\t//there is a small problem, some cells in the table could contain dimension values interfering with the \n\t\t//width value set by this plugin. Those values are removed\n\t\tt.find('td, th').not(th).not('table th, table td').each(function(){ \n\t\t\t$(this).removeAttr('width');\t//the width attribute is removed from all table cells which are not nested in other tables and dont belong to the header\n\t\t});\t\t\n\n\t\t\n\t};\n\t\n\n\t/**\n\t * Function to allow the persistence of columns dimensions after a browser postback. It is based in\n\t * the HTML5 sessionStorage object, which can be emulated for older browsers using sessionstorage.js\n\t * @param {jQuery ref} t - table object\n\t * @param {jQuery ref} th - reference to the first row elements (only set in deserialization)\n\t */\n\tvar memento = function(t, th){ \n\t\tvar w,m=0,i=0,aux =[];\n\t\tif(th){\t\t\t\t\t\t\t\t\t\t//in deserialization mode (after a postback)\n\t\t\tt.cg.removeAttr(\"width\");\n\t\t\tif(t.opt.flush){ S[t.id] =\"\"; return;} \t//if flush is activated, stored data is removed\n\t\t\tw = S[t.id].split(\";\");\t\t\t\t\t//column widths is obtained\n\t\t\tfor(;i*{cursor:\"+ t.opt.dragCursor +\"!important}\"); \t//change the mouse cursor\n\t\tg.addClass(t.opt.draggingClass); \t//add the dragging class (to allow some visual feedback)\t\t\t\t\n\t\tdrag = g;\t\t\t\t\t\t\t//the current grip is stored as the current dragging object\n\t\tif(t.c[o.i].l) for(var i=0,c; i= options.end) {\n exit = true;\n }\n \n // update global state\n options.state.rowNum++;\n options.state.colNum = 1;\n }\n\n function endOfValue() {\n if(options.onParseValue === undefined) {\n // onParseValue hook not set\n entry.push(value);\n } else {\n var hook = options.onParseValue(value, options.state); // onParseValue Hook\n // false skips the row, configurable through a hook\n if(hook !== false) {\n entry.push(hook);\n }\n }\n //console.log('value:' + value);\n // reset the state\n value = '';\n state = 0;\n // update global state\n options.state.colNum++;\n }\n\n // escape regex-specific control chars\n var escSeparator = RegExp.escape(separator);\n var escDelimiter = RegExp.escape(delimiter);\n\n // compile the regEx str using the custom delimiter/separator\n var match = /(D|S|\\n|\\r|[^DS\\r\\n]+)/;\n var matchSrc = match.source;\n matchSrc = matchSrc.replace(/S/g, escSeparator);\n matchSrc = matchSrc.replace(/D/g, escDelimiter);\n match = RegExp(matchSrc, 'gm');\n\n // put on your fancy pants...\n // process control chars individually, use look-ahead on non-control chars\n csv.replace(match, function (m0) {\n if(exit) {\n return;\n }\n switch (state) {\n // the start of a value\n case 0:\n // null last value\n if (m0 === separator) {\n value += '';\n endOfValue();\n break;\n }\n // opening delimiter\n if (m0 === delimiter) {\n state = 1;\n break;\n }\n // null last value\n if (m0 === '\\n') {\n endOfValue();\n endOfEntry();\n break;\n }\n // phantom carriage return\n if (/^\\r$/.test(m0)) {\n break;\n }\n // un-delimited value\n value += m0;\n state = 3;\n break;\n\n // delimited input\n case 1:\n // second delimiter? check further\n if (m0 === delimiter) {\n state = 2;\n break;\n }\n // delimited data\n value += m0;\n state = 1;\n break;\n\n // delimiter found in delimited input\n case 2:\n // escaped delimiter?\n if (m0 === delimiter) {\n value += m0;\n state = 1;\n break;\n }\n // null value\n if (m0 === separator) {\n endOfValue();\n break;\n }\n // end of entry\n if (m0 === '\\n') {\n endOfValue();\n endOfEntry();\n break;\n }\n // phantom carriage return\n if (/^\\r$/.test(m0)) {\n break;\n }\n // broken paser?\n throw new Error('CSVDataError: Illegal State [Row:' + options.state.rowNum + '][Col:' + options.state.colNum + ']');\n\n // un-delimited input\n case 3:\n // null last value\n if (m0 === separator) {\n endOfValue();\n break;\n }\n // end of entry\n if (m0 === '\\n') {\n endOfValue();\n endOfEntry();\n break;\n }\n // phantom carriage return\n if (/^\\r$/.test(m0)) {\n break;\n }\n if (m0 === delimiter) {\n // non-compliant data\n throw new Error('CSVDataError: Illegal Quote [Row:' + options.state.rowNum + '][Col:' + options.state.colNum + ']');\n }\n // broken parser?\n throw new Error('CSVDataError: Illegal Data [Row:' + options.state.rowNum + '][Col:' + options.state.colNum + ']');\n default:\n // shenanigans\n throw new Error('CSVDataError: Unknown State [Row:' + options.state.rowNum + '][Col:' + options.state.colNum + ']');\n }\n //console.log('val:' + m0 + ' state:' + state);\n });\n\n // submit the last entry\n // ignore null last line\n if(entry.length !== 0) {\n endOfValue();\n endOfEntry();\n }\n\n return data;\n },\n\n // a csv-specific line splitter\n splitLines: function(csv, options) {\n // cache settings\n var separator = options.separator;\n var delimiter = options.delimiter;\n\n // set initial state if it's missing\n if(!options.state.rowNum) {\n options.state.rowNum = 1;\n }\n\n // clear initial state\n var entries = [];\n var state = 0;\n var entry = '';\n var exit = false;\n\n function endOfLine() { \n // reset the state\n state = 0;\n \n // if 'start' hasn't been met, don't output\n if(options.start && options.state.rowNum < options.start) {\n // update global state\n entry = '';\n options.state.rowNum++;\n return;\n }\n \n if(options.onParseEntry === undefined) {\n // onParseEntry hook not set\n entries.push(entry);\n } else {\n var hookVal = options.onParseEntry(entry, options.state); // onParseEntry Hook\n // false skips the row, configurable through a hook\n if(hookVal !== false) {\n entries.push(hookVal);\n }\n }\n\n // cleanup\n entry = '';\n\n // if 'end' is met, stop parsing\n if(options.end && options.state.rowNum >= options.end) {\n exit = true;\n }\n \n // update global state\n options.state.rowNum++;\n }\n\n // escape regex-specific control chars\n var escSeparator = RegExp.escape(separator);\n var escDelimiter = RegExp.escape(delimiter);\n\n // compile the regEx str using the custom delimiter/separator\n var match = /(D|S|\\n|\\r|[^DS\\r\\n]+)/;\n var matchSrc = match.source;\n matchSrc = matchSrc.replace(/S/g, escSeparator);\n matchSrc = matchSrc.replace(/D/g, escDelimiter);\n match = RegExp(matchSrc, 'gm');\n \n // put on your fancy pants...\n // process control chars individually, use look-ahead on non-control chars\n csv.replace(match, function (m0) {\n if(exit) {\n return;\n }\n switch (state) {\n // the start of a value/entry\n case 0:\n // null value\n if (m0 === separator) {\n entry += m0;\n state = 0;\n break;\n }\n // opening delimiter\n if (m0 === delimiter) {\n entry += m0;\n state = 1;\n break;\n }\n // end of line\n if (m0 === '\\n') {\n endOfLine();\n break;\n }\n // phantom carriage return\n if (/^\\r$/.test(m0)) {\n break;\n }\n // un-delimit value\n entry += m0;\n state = 3;\n break;\n\n // delimited input\n case 1:\n // second delimiter? check further\n if (m0 === delimiter) {\n entry += m0;\n state = 2;\n break;\n }\n // delimited data\n entry += m0;\n state = 1;\n break;\n\n // delimiter found in delimited input\n case 2:\n // escaped delimiter?\n var prevChar = entry.substr(entry.length - 1);\n if (m0 === delimiter && prevChar === delimiter) {\n entry += m0;\n state = 1;\n break;\n }\n // end of value\n if (m0 === separator) {\n entry += m0;\n state = 0;\n break;\n }\n // end of line\n if (m0 === '\\n') {\n endOfLine();\n break;\n }\n // phantom carriage return\n if (m0 === '\\r') {\n break;\n }\n // broken paser?\n throw new Error('CSVDataError: Illegal state [Row:' + options.state.rowNum + ']');\n\n // un-delimited input\n case 3:\n // null value\n if (m0 === separator) {\n entry += m0;\n state = 0;\n break;\n }\n // end of line\n if (m0 === '\\n') {\n endOfLine();\n break;\n }\n // phantom carriage return\n if (m0 === '\\r') {\n break;\n }\n // non-compliant data\n if (m0 === delimiter) {\n throw new Error('CSVDataError: Illegal quote [Row:' + options.state.rowNum + ']');\n }\n // broken parser?\n throw new Error('CSVDataError: Illegal state [Row:' + options.state.rowNum + ']');\n default:\n // shenanigans\n throw new Error('CSVDataError: Unknown state [Row:' + options.state.rowNum + ']');\n }\n //console.log('val:' + m0 + ' state:' + state);\n });\n\n // submit the last entry\n // ignore null last line\n if(entry !== '') {\n endOfLine();\n }\n\n return entries;\n },\n\n // a csv entry parser\n parseEntry: function(csv, options) {\n // cache settings\n var separator = options.separator;\n var delimiter = options.delimiter;\n \n // set initial state if it's missing\n if(!options.state.rowNum) {\n options.state.rowNum = 1;\n }\n if(!options.state.colNum) {\n options.state.colNum = 1;\n }\n\n // clear initial state\n var entry = [];\n var state = 0;\n var value = '';\n\n function endOfValue() {\n if(options.onParseValue === undefined) {\n // onParseValue hook not set\n entry.push(value);\n } else {\n var hook = options.onParseValue(value, options.state); // onParseValue Hook\n // false skips the value, configurable through a hook\n if(hook !== false) {\n entry.push(hook);\n }\n }\n // reset the state\n value = '';\n state = 0;\n // update global state\n options.state.colNum++;\n }\n\n // checked for a cached regEx first\n if(!options.match) {\n // escape regex-specific control chars\n var escSeparator = RegExp.escape(separator);\n var escDelimiter = RegExp.escape(delimiter);\n \n // compile the regEx str using the custom delimiter/separator\n var match = /(D|S|\\n|\\r|[^DS\\r\\n]+)/;\n var matchSrc = match.source;\n matchSrc = matchSrc.replace(/S/g, escSeparator);\n matchSrc = matchSrc.replace(/D/g, escDelimiter);\n options.match = RegExp(matchSrc, 'gm');\n }\n\n // put on your fancy pants...\n // process control chars individually, use look-ahead on non-control chars\n csv.replace(options.match, function (m0) {\n switch (state) {\n // the start of a value\n case 0:\n // null last value\n if (m0 === separator) {\n value += '';\n endOfValue();\n break;\n }\n // opening delimiter\n if (m0 === delimiter) {\n state = 1;\n break;\n }\n // skip un-delimited new-lines\n if (m0 === '\\n' || m0 === '\\r') {\n break;\n }\n // un-delimited value\n value += m0;\n state = 3;\n break;\n\n // delimited input\n case 1:\n // second delimiter? check further\n if (m0 === delimiter) {\n state = 2;\n break;\n }\n // delimited data\n value += m0;\n state = 1;\n break;\n\n // delimiter found in delimited input\n case 2:\n // escaped delimiter?\n if (m0 === delimiter) {\n value += m0;\n state = 1;\n break;\n }\n // null value\n if (m0 === separator) {\n endOfValue();\n break;\n }\n // skip un-delimited new-lines\n if (m0 === '\\n' || m0 === '\\r') {\n break;\n }\n // broken paser?\n throw new Error('CSVDataError: Illegal State [Row:' + options.state.rowNum + '][Col:' + options.state.colNum + ']');\n\n // un-delimited input\n case 3:\n // null last value\n if (m0 === separator) {\n endOfValue();\n break;\n }\n // skip un-delimited new-lines\n if (m0 === '\\n' || m0 === '\\r') {\n break;\n }\n // non-compliant data\n if (m0 === delimiter) {\n throw new Error('CSVDataError: Illegal Quote [Row:' + options.state.rowNum + '][Col:' + options.state.colNum + ']');\n }\n // broken parser?\n throw new Error('CSVDataError: Illegal Data [Row:' + options.state.rowNum + '][Col:' + options.state.colNum + ']');\n default:\n // shenanigans\n throw new Error('CSVDataError: Unknown State [Row:' + options.state.rowNum + '][Col:' + options.state.colNum + ']');\n }\n //console.log('val:' + m0 + ' state:' + state);\n });\n\n // submit the last value\n endOfValue();\n\n return entry;\n }\n },\n\n /**\n * $.csv.toArray(csv)\n * Converts a CSV entry string to a javascript array.\n *\n * @param {Array} csv The string containing the CSV data.\n * @param {Object} [options] An object containing user-defined options.\n * @param {Character} [separator] An override for the separator character. Defaults to a comma(,).\n * @param {Character} [delimiter] An override for the delimiter character. Defaults to a double-quote(\").\n *\n * This method deals with simple CSV strings only. It's useful if you only\n * need to parse a single entry. If you need to parse more than one line,\n * use $.csv2Array instead.\n */\n toArray: function(csv, options, callback) {\n var options = (options !== undefined ? options : {});\n var config = {};\n config.callback = ((callback !== undefined && typeof(callback) === 'function') ? callback : false);\n config.separator = 'separator' in options ? options.separator : $.csv.defaults.separator;\n config.delimiter = 'delimiter' in options ? options.delimiter : $.csv.defaults.delimiter;\n var state = (options.state !== undefined ? options.state : {});\n\n // setup\n var options = {\n delimiter: config.delimiter,\n separator: config.separator,\n onParseEntry: options.onParseEntry,\n onParseValue: options.onParseValue,\n state: state\n }\n\n var entry = $.csv.parsers.parseEntry(csv, options);\n\n // push the value to a callback if one is defined\n if(!config.callback) {\n return entry;\n } else {\n config.callback('', entry);\n }\n },\n\n /**\n * $.csv.toArrays(csv)\n * Converts a CSV string to a javascript array.\n *\n * @param {String} csv The string containing the raw CSV data.\n * @param {Object} [options] An object containing user-defined options.\n * @param {Character} [separator] An override for the separator character. Defaults to a comma(,).\n * @param {Character} [delimiter] An override for the delimiter character. Defaults to a double-quote(\").\n *\n * This method deals with multi-line CSV. The breakdown is simple. The first\n * dimension of the array represents the line (or entry/row) while the second\n * dimension contains the values (or values/columns).\n */\n toArrays: function(csv, options, callback) {\n var options = (options !== undefined ? options : {});\n var config = {};\n config.callback = ((callback !== undefined && typeof(callback) === 'function') ? callback : false);\n config.separator = 'separator' in options ? options.separator : $.csv.defaults.separator;\n config.delimiter = 'delimiter' in options ? options.delimiter : $.csv.defaults.delimiter;\n \n // setup\n var data = [];\n var options = {\n delimiter: config.delimiter,\n separator: config.separator,\n onParseEntry: options.onParseEntry,\n onParseValue: options.onParseValue,\n start: options.start,\n end: options.end,\n state: {\n rowNum: 1,\n colNum: 1\n }\n };\n\n // break the data down to lines\n data = $.csv.parsers.parse(csv, options);\n\n // push the value to a callback if one is defined\n if(!config.callback) {\n return data;\n } else {\n config.callback('', data);\n }\n },\n\n /**\n * $.csv.toObjects(csv)\n * Converts a CSV string to a javascript object.\n * @param {String} csv The string containing the raw CSV data.\n * @param {Object} [options] An object containing user-defined options.\n * @param {Character} [separator] An override for the separator character. Defaults to a comma(,).\n * @param {Character} [delimiter] An override for the delimiter character. Defaults to a double-quote(\").\n * @param {Boolean} [headers] Indicates whether the data contains a header line. Defaults to true.\n *\n * This method deals with multi-line CSV strings. Where the headers line is\n * used as the key for each value per entry.\n */\n toObjects: function(csv, options, callback) {\n var options = (options !== undefined ? options : {});\n var config = {};\n config.callback = ((callback !== undefined && typeof(callback) === 'function') ? callback : false);\n config.separator = 'separator' in options ? options.separator : $.csv.defaults.separator;\n config.delimiter = 'delimiter' in options ? options.delimiter : $.csv.defaults.delimiter;\n config.headers = 'headers' in options ? options.headers : $.csv.defaults.headers;\n options.start = 'start' in options ? options.start : 1;\n \n // account for headers\n if(config.headers) {\n options.start++;\n }\n if(options.end && config.headers) {\n options.end++;\n }\n \n // setup\n var lines = [];\n var data = [];\n \n var options = {\n delimiter: config.delimiter,\n separator: config.separator,\n onParseEntry: options.onParseEntry,\n onParseValue: options.onParseValue,\n start: options.start,\n end: options.end,\n state: {\n rowNum: 1,\n colNum: 1\n },\n match: false\n };\n\n // fetch the headers\n var headerOptions = {\n delimiter: config.delimiter,\n separator: config.separator,\n start: 1,\n end: 1,\n state: {\n rowNum:1,\n colNum:1\n }\n }\n var headerLine = $.csv.parsers.splitLines(csv, headerOptions);\n var headers = $.csv.toArray(headerLine[0], options);\n\n // fetch the data\n var lines = $.csv.parsers.splitLines(csv, options);\n \n // reset the state for re-use\n options.state.colNum = 1;\n if(headers){\n options.state.rowNum = 2;\n } else {\n options.state.rowNum = 1;\n }\n \n // convert data to objects\n for(var i=0, len=lines.length; i 0 && this._events[type].length > m) {\n this._events[type].warned = true;\n console.error('(node) warning: possible EventEmitter memory ' +\n 'leak detected. %d listeners added. ' +\n 'Use emitter.setMaxListeners() to increase limit.',\n this._events[type].length);\n if (typeof console.trace === 'function') {\n // not supported in IE 10\n console.trace();\n }\n }\n }\n\n return this;\n};\n\nEventEmitter.prototype.on = EventEmitter.prototype.addListener;\n\nEventEmitter.prototype.once = function(type, listener) {\n if (!isFunction(listener))\n throw TypeError('listener must be a function');\n\n var fired = false;\n\n function g() {\n this.removeListener(type, g);\n\n if (!fired) {\n fired = true;\n listener.apply(this, arguments);\n }\n }\n\n g.listener = listener;\n this.on(type, g);\n\n return this;\n};\n\n// emits a 'removeListener' event iff the listener was removed\nEventEmitter.prototype.removeListener = function(type, listener) {\n var list, position, length, i;\n\n if (!isFunction(listener))\n throw TypeError('listener must be a function');\n\n if (!this._events || !this._events[type])\n return this;\n\n list = this._events[type];\n length = list.length;\n position = -1;\n\n if (list === listener ||\n (isFunction(list.listener) && list.listener === listener)) {\n delete this._events[type];\n if (this._events.removeListener)\n this.emit('removeListener', type, listener);\n\n } else if (isObject(list)) {\n for (i = length; i-- > 0;) {\n if (list[i] === listener ||\n (list[i].listener && list[i].listener === listener)) {\n position = i;\n break;\n }\n }\n\n if (position < 0)\n return this;\n\n if (list.length === 1) {\n list.length = 0;\n delete this._events[type];\n } else {\n list.splice(position, 1);\n }\n\n if (this._events.removeListener)\n this.emit('removeListener', type, listener);\n }\n\n return this;\n};\n\nEventEmitter.prototype.removeAllListeners = function(type) {\n var key, listeners;\n\n if (!this._events)\n return this;\n\n // not listening for removeListener, no need to emit\n if (!this._events.removeListener) {\n if (arguments.length === 0)\n this._events = {};\n else if (this._events[type])\n delete this._events[type];\n return this;\n }\n\n // emit removeListener for all listeners on all events\n if (arguments.length === 0) {\n for (key in this._events) {\n if (key === 'removeListener') continue;\n this.removeAllListeners(key);\n }\n this.removeAllListeners('removeListener');\n this._events = {};\n return this;\n }\n\n listeners = this._events[type];\n\n if (isFunction(listeners)) {\n this.removeListener(type, listeners);\n } else {\n // LIFO order\n while (listeners.length)\n this.removeListener(type, listeners[listeners.length - 1]);\n }\n delete this._events[type];\n\n return this;\n};\n\nEventEmitter.prototype.listeners = function(type) {\n var ret;\n if (!this._events || !this._events[type])\n ret = [];\n else if (isFunction(this._events[type]))\n ret = [this._events[type]];\n else\n ret = this._events[type].slice();\n return ret;\n};\n\nEventEmitter.listenerCount = function(emitter, type) {\n var ret;\n if (!emitter._events || !emitter._events[type])\n ret = 0;\n else if (isFunction(emitter._events[type]))\n ret = 1;\n else\n ret = emitter._events[type].length;\n return ret;\n};\n\nfunction isFunction(arg) {\n return typeof arg === 'function';\n}\n\nfunction isNumber(arg) {\n return typeof arg === 'number';\n}\n\nfunction isObject(arg) {\n return typeof arg === 'object' && arg !== null;\n}\n\nfunction isUndefined(arg) {\n return arg === void 0;\n}\n", "// CodeMirror, copyright (c) by Marijn Haverbeke and others\n// Distributed under an MIT license: http://codemirror.net/LICENSE\n\n(function(mod) {\n if (typeof exports == \"object\" && typeof module == \"object\") // CommonJS\n mod(require(\"../../lib/codemirror\"));\n else if (typeof define == \"function\" && define.amd) // AMD\n define([\"../../lib/codemirror\"], mod);\n else // Plain browser env\n mod(CodeMirror);\n})(function(CodeMirror) {\n var ie_lt8 = /MSIE \\d/.test(navigator.userAgent) &&\n (document.documentMode == null || document.documentMode < 8);\n\n var Pos = CodeMirror.Pos;\n\n var matching = {\"(\": \")>\", \")\": \"(<\", \"[\": \"]>\", \"]\": \"[<\", \"{\": \"}>\", \"}\": \"{<\"};\n\n function findMatchingBracket(cm, where, strict, config) {\n var line = cm.getLineHandle(where.line), pos = where.ch - 1;\n var match = (pos >= 0 && matching[line.text.charAt(pos)]) || matching[line.text.charAt(++pos)];\n if (!match) return null;\n var dir = match.charAt(1) == \">\" ? 1 : -1;\n if (strict && (dir > 0) != (pos == where.ch)) return null;\n var style = cm.getTokenTypeAt(Pos(where.line, pos + 1));\n\n var found = scanForBracket(cm, Pos(where.line, pos + (dir > 0 ? 1 : 0)), dir, style || null, config);\n if (found == null) return null;\n return {from: Pos(where.line, pos), to: found && found.pos,\n match: found && found.ch == match.charAt(0), forward: dir > 0};\n }\n\n // bracketRegex is used to specify which type of bracket to scan\n // should be a regexp, e.g. /[[\\]]/\n //\n // Note: If \"where\" is on an open bracket, then this bracket is ignored.\n //\n // Returns false when no bracket was found, null when it reached\n // maxScanLines and gave up\n function scanForBracket(cm, where, dir, style, config) {\n var maxScanLen = (config && config.maxScanLineLength) || 10000;\n var maxScanLines = (config && config.maxScanLines) || 1000;\n\n var stack = [];\n var re = config && config.bracketRegex ? config.bracketRegex : /[(){}[\\]]/;\n var lineEnd = dir > 0 ? Math.min(where.line + maxScanLines, cm.lastLine() + 1)\n : Math.max(cm.firstLine() - 1, where.line - maxScanLines);\n for (var lineNo = where.line; lineNo != lineEnd; lineNo += dir) {\n var line = cm.getLine(lineNo);\n if (!line) continue;\n var pos = dir > 0 ? 0 : line.length - 1, end = dir > 0 ? line.length : -1;\n if (line.length > maxScanLen) continue;\n if (lineNo == where.line) pos = where.ch - (dir < 0 ? 1 : 0);\n for (; pos != end; pos += dir) {\n var ch = line.charAt(pos);\n if (re.test(ch) && (style === undefined || cm.getTokenTypeAt(Pos(lineNo, pos + 1)) == style)) {\n var match = matching[ch];\n if ((match.charAt(1) == \">\") == (dir > 0)) stack.push(ch);\n else if (!stack.length) return {pos: Pos(lineNo, pos), ch: ch};\n else stack.pop();\n }\n }\n }\n return lineNo - dir == (dir > 0 ? cm.lastLine() : cm.firstLine()) ? false : null;\n }\n\n function matchBrackets(cm, autoclear, config) {\n // Disable brace matching in long lines, since it'll cause hugely slow updates\n var maxHighlightLen = cm.state.matchBrackets.maxHighlightLineLength || 1000;\n var marks = [], ranges = cm.listSelections();\n for (var i = 0; i < ranges.length; i++) {\n var match = ranges[i].empty() && findMatchingBracket(cm, ranges[i].head, false, config);\n if (match && cm.getLine(match.from.line).length <= maxHighlightLen) {\n var style = match.match ? \"CodeMirror-matchingbracket\" : \"CodeMirror-nonmatchingbracket\";\n marks.push(cm.markText(match.from, Pos(match.from.line, match.from.ch + 1), {className: style}));\n if (match.to && cm.getLine(match.to.line).length <= maxHighlightLen)\n marks.push(cm.markText(match.to, Pos(match.to.line, match.to.ch + 1), {className: style}));\n }\n }\n\n if (marks.length) {\n // Kludge to work around the IE bug from issue #1193, where text\n // input stops going to the textare whever this fires.\n if (ie_lt8 && cm.state.focused) cm.display.input.focus();\n\n var clear = function() {\n cm.operation(function() {\n for (var i = 0; i < marks.length; i++) marks[i].clear();\n });\n };\n if (autoclear) setTimeout(clear, 800);\n else return clear;\n }\n }\n\n var currentlyHighlighted = null;\n function doMatchBrackets(cm) {\n cm.operation(function() {\n if (currentlyHighlighted) {currentlyHighlighted(); currentlyHighlighted = null;}\n currentlyHighlighted = matchBrackets(cm, false, cm.state.matchBrackets);\n });\n }\n\n CodeMirror.defineOption(\"matchBrackets\", false, function(cm, val, old) {\n if (old && old != CodeMirror.Init)\n cm.off(\"cursorActivity\", doMatchBrackets);\n if (val) {\n cm.state.matchBrackets = typeof val == \"object\" ? val : {};\n cm.on(\"cursorActivity\", doMatchBrackets);\n }\n });\n\n CodeMirror.defineExtension(\"matchBrackets\", function() {matchBrackets(this, true);});\n CodeMirror.defineExtension(\"findMatchingBracket\", function(pos, strict, config){\n return findMatchingBracket(this, pos, strict, config);\n });\n CodeMirror.defineExtension(\"scanForBracket\", function(pos, dir, style, config){\n return scanForBracket(this, pos, dir, style, config);\n });\n});\n", "// CodeMirror, copyright (c) by Marijn Haverbeke and others\n// Distributed under an MIT license: http://codemirror.net/LICENSE\n\n(function(mod) {\n if (typeof exports == \"object\" && typeof module == \"object\") // CommonJS\n mod(require(\"../../lib/codemirror\"));\n else if (typeof define == \"function\" && define.amd) // AMD\n define([\"../../lib/codemirror\"], mod);\n else // Plain browser env\n mod(CodeMirror);\n})(function(CodeMirror) {\n\"use strict\";\n\nCodeMirror.registerHelper(\"fold\", \"brace\", function(cm, start) {\n var line = start.line, lineText = cm.getLine(line);\n var startCh, tokenType;\n\n function findOpening(openCh) {\n for (var at = start.ch, pass = 0;;) {\n var found = at <= 0 ? -1 : lineText.lastIndexOf(openCh, at - 1);\n if (found == -1) {\n if (pass == 1) break;\n pass = 1;\n at = lineText.length;\n continue;\n }\n if (pass == 1 && found < start.ch) break;\n tokenType = cm.getTokenTypeAt(CodeMirror.Pos(line, found + 1));\n if (!/^(comment|string)/.test(tokenType)) return found + 1;\n at = found - 1;\n }\n }\n\n var startToken = \"{\", endToken = \"}\", startCh = findOpening(\"{\");\n if (startCh == null) {\n startToken = \"[\", endToken = \"]\";\n startCh = findOpening(\"[\");\n }\n\n if (startCh == null) return;\n var count = 1, lastLine = cm.lastLine(), end, endCh;\n outer: for (var i = line; i <= lastLine; ++i) {\n var text = cm.getLine(i), pos = i == line ? startCh : 0;\n for (;;) {\n var nextOpen = text.indexOf(startToken, pos), nextClose = text.indexOf(endToken, pos);\n if (nextOpen < 0) nextOpen = text.length;\n if (nextClose < 0) nextClose = text.length;\n pos = Math.min(nextOpen, nextClose);\n if (pos == text.length) break;\n if (cm.getTokenTypeAt(CodeMirror.Pos(i, pos + 1)) == tokenType) {\n if (pos == nextOpen) ++count;\n else if (!--count) { end = i; endCh = pos; break outer; }\n }\n ++pos;\n }\n }\n if (end == null || line == end && endCh == startCh) return;\n return {from: CodeMirror.Pos(line, startCh),\n to: CodeMirror.Pos(end, endCh)};\n});\n\nCodeMirror.registerHelper(\"fold\", \"import\", function(cm, start) {\n function hasImport(line) {\n if (line < cm.firstLine() || line > cm.lastLine()) return null;\n var start = cm.getTokenAt(CodeMirror.Pos(line, 1));\n if (!/\\S/.test(start.string)) start = cm.getTokenAt(CodeMirror.Pos(line, start.end + 1));\n if (start.type != \"keyword\" || start.string != \"import\") return null;\n // Now find closing semicolon, return its position\n for (var i = line, e = Math.min(cm.lastLine(), line + 10); i <= e; ++i) {\n var text = cm.getLine(i), semi = text.indexOf(\";\");\n if (semi != -1) return {startCh: start.end, end: CodeMirror.Pos(i, semi)};\n }\n }\n\n var start = start.line, has = hasImport(start), prev;\n if (!has || hasImport(start - 1) || ((prev = hasImport(start - 2)) && prev.end.line == start - 1))\n return null;\n for (var end = has.end;;) {\n var next = hasImport(end.line + 1);\n if (next == null) break;\n end = next.end;\n }\n return {from: cm.clipPos(CodeMirror.Pos(start, has.startCh + 1)), to: end};\n});\n\nCodeMirror.registerHelper(\"fold\", \"include\", function(cm, start) {\n function hasInclude(line) {\n if (line < cm.firstLine() || line > cm.lastLine()) return null;\n var start = cm.getTokenAt(CodeMirror.Pos(line, 1));\n if (!/\\S/.test(start.string)) start = cm.getTokenAt(CodeMirror.Pos(line, start.end + 1));\n if (start.type == \"meta\" && start.string.slice(0, 8) == \"#include\") return start.start + 8;\n }\n\n var start = start.line, has = hasInclude(start);\n if (has == null || hasInclude(start - 1) != null) return null;\n for (var end = start;;) {\n var next = hasInclude(end + 1);\n if (next == null) break;\n ++end;\n }\n return {from: CodeMirror.Pos(start, has + 1),\n to: cm.clipPos(CodeMirror.Pos(end))};\n});\n\n});\n", "// CodeMirror, copyright (c) by Marijn Haverbeke and others\n// Distributed under an MIT license: http://codemirror.net/LICENSE\n\n(function(mod) {\n if (typeof exports == \"object\" && typeof module == \"object\") // CommonJS\n mod(require(\"../../lib/codemirror\"));\n else if (typeof define == \"function\" && define.amd) // AMD\n define([\"../../lib/codemirror\"], mod);\n else // Plain browser env\n mod(CodeMirror);\n})(function(CodeMirror) {\n \"use strict\";\n\n function doFold(cm, pos, options, force) {\n if (options && options.call) {\n var finder = options;\n options = null;\n } else {\n var finder = getOption(cm, options, \"rangeFinder\");\n }\n if (typeof pos == \"number\") pos = CodeMirror.Pos(pos, 0);\n var minSize = getOption(cm, options, \"minFoldSize\");\n\n function getRange(allowFolded) {\n var range = finder(cm, pos);\n if (!range || range.to.line - range.from.line < minSize) return null;\n var marks = cm.findMarksAt(range.from);\n for (var i = 0; i < marks.length; ++i) {\n if (marks[i].__isFold && force !== \"fold\") {\n if (!allowFolded) return null;\n range.cleared = true;\n marks[i].clear();\n }\n }\n return range;\n }\n\n var range = getRange(true);\n if (getOption(cm, options, \"scanUp\")) while (!range && pos.line > cm.firstLine()) {\n pos = CodeMirror.Pos(pos.line - 1, 0);\n range = getRange(false);\n }\n if (!range || range.cleared || force === \"unfold\") return;\n\n var myWidget = makeWidget(cm, options);\n CodeMirror.on(myWidget, \"mousedown\", function(e) {\n myRange.clear();\n CodeMirror.e_preventDefault(e);\n });\n var myRange = cm.markText(range.from, range.to, {\n replacedWith: myWidget,\n clearOnEnter: true,\n __isFold: true\n });\n myRange.on(\"clear\", function(from, to) {\n CodeMirror.signal(cm, \"unfold\", cm, from, to);\n });\n CodeMirror.signal(cm, \"fold\", cm, range.from, range.to);\n }\n\n function makeWidget(cm, options) {\n var widget = getOption(cm, options, \"widget\");\n if (typeof widget == \"string\") {\n var text = document.createTextNode(widget);\n widget = document.createElement(\"span\");\n widget.appendChild(text);\n widget.className = \"CodeMirror-foldmarker\";\n }\n return widget;\n }\n\n // Clumsy backwards-compatible interface\n CodeMirror.newFoldFunction = function(rangeFinder, widget) {\n return function(cm, pos) { doFold(cm, pos, {rangeFinder: rangeFinder, widget: widget}); };\n };\n\n // New-style interface\n CodeMirror.defineExtension(\"foldCode\", function(pos, options, force) {\n doFold(this, pos, options, force);\n });\n\n CodeMirror.defineExtension(\"isFolded\", function(pos) {\n var marks = this.findMarksAt(pos);\n for (var i = 0; i < marks.length; ++i)\n if (marks[i].__isFold) return true;\n });\n\n CodeMirror.commands.toggleFold = function(cm) {\n cm.foldCode(cm.getCursor());\n };\n CodeMirror.commands.fold = function(cm) {\n cm.foldCode(cm.getCursor(), null, \"fold\");\n };\n CodeMirror.commands.unfold = function(cm) {\n cm.foldCode(cm.getCursor(), null, \"unfold\");\n };\n CodeMirror.commands.foldAll = function(cm) {\n cm.operation(function() {\n for (var i = cm.firstLine(), e = cm.lastLine(); i <= e; i++)\n cm.foldCode(CodeMirror.Pos(i, 0), null, \"fold\");\n });\n };\n CodeMirror.commands.unfoldAll = function(cm) {\n cm.operation(function() {\n for (var i = cm.firstLine(), e = cm.lastLine(); i <= e; i++)\n cm.foldCode(CodeMirror.Pos(i, 0), null, \"unfold\");\n });\n };\n\n CodeMirror.registerHelper(\"fold\", \"combine\", function() {\n var funcs = Array.prototype.slice.call(arguments, 0);\n return function(cm, start) {\n for (var i = 0; i < funcs.length; ++i) {\n var found = funcs[i](cm, start);\n if (found) return found;\n }\n };\n });\n\n CodeMirror.registerHelper(\"fold\", \"auto\", function(cm, start) {\n var helpers = cm.getHelpers(start, \"fold\");\n for (var i = 0; i < helpers.length; i++) {\n var cur = helpers[i](cm, start);\n if (cur) return cur;\n }\n });\n\n var defaultOptions = {\n rangeFinder: CodeMirror.fold.auto,\n widget: \"\\u2194\",\n minFoldSize: 0,\n scanUp: false\n };\n\n CodeMirror.defineOption(\"foldOptions\", null);\n\n function getOption(cm, options, name) {\n if (options && options[name] !== undefined)\n return options[name];\n var editorOptions = cm.options.foldOptions;\n if (editorOptions && editorOptions[name] !== undefined)\n return editorOptions[name];\n return defaultOptions[name];\n }\n\n CodeMirror.defineExtension(\"foldOption\", function(options, name) {\n return getOption(this, options, name);\n });\n});\n", "// CodeMirror, copyright (c) by Marijn Haverbeke and others\n// Distributed under an MIT license: http://codemirror.net/LICENSE\n\n(function(mod) {\n if (typeof exports == \"object\" && typeof module == \"object\") // CommonJS\n mod(require(\"../../lib/codemirror\"), require(\"./foldcode\"));\n else if (typeof define == \"function\" && define.amd) // AMD\n define([\"../../lib/codemirror\", \"./foldcode\"], mod);\n else // Plain browser env\n mod(CodeMirror);\n})(function(CodeMirror) {\n \"use strict\";\n\n CodeMirror.defineOption(\"foldGutter\", false, function(cm, val, old) {\n if (old && old != CodeMirror.Init) {\n cm.clearGutter(cm.state.foldGutter.options.gutter);\n cm.state.foldGutter = null;\n cm.off(\"gutterClick\", onGutterClick);\n cm.off(\"change\", onChange);\n cm.off(\"viewportChange\", onViewportChange);\n cm.off(\"fold\", onFold);\n cm.off(\"unfold\", onFold);\n cm.off(\"swapDoc\", updateInViewport);\n }\n if (val) {\n cm.state.foldGutter = new State(parseOptions(val));\n updateInViewport(cm);\n cm.on(\"gutterClick\", onGutterClick);\n cm.on(\"change\", onChange);\n cm.on(\"viewportChange\", onViewportChange);\n cm.on(\"fold\", onFold);\n cm.on(\"unfold\", onFold);\n cm.on(\"swapDoc\", updateInViewport);\n }\n });\n\n var Pos = CodeMirror.Pos;\n\n function State(options) {\n this.options = options;\n this.from = this.to = 0;\n }\n\n function parseOptions(opts) {\n if (opts === true) opts = {};\n if (opts.gutter == null) opts.gutter = \"CodeMirror-foldgutter\";\n if (opts.indicatorOpen == null) opts.indicatorOpen = \"CodeMirror-foldgutter-open\";\n if (opts.indicatorFolded == null) opts.indicatorFolded = \"CodeMirror-foldgutter-folded\";\n return opts;\n }\n\n function isFolded(cm, line) {\n var marks = cm.findMarksAt(Pos(line));\n for (var i = 0; i < marks.length; ++i)\n if (marks[i].__isFold && marks[i].find().from.line == line) return true;\n }\n\n function marker(spec) {\n if (typeof spec == \"string\") {\n var elt = document.createElement(\"div\");\n elt.className = spec + \" CodeMirror-guttermarker-subtle\";\n return elt;\n } else {\n return spec.cloneNode(true);\n }\n }\n\n function updateFoldInfo(cm, from, to) {\n var opts = cm.state.foldGutter.options, cur = from;\n var minSize = cm.foldOption(opts, \"minFoldSize\");\n var func = cm.foldOption(opts, \"rangeFinder\");\n cm.eachLine(from, to, function(line) {\n var mark = null;\n if (isFolded(cm, cur)) {\n mark = marker(opts.indicatorFolded);\n } else {\n var pos = Pos(cur, 0);\n var range = func && func(cm, pos);\n if (range && range.to.line - range.from.line >= minSize)\n mark = marker(opts.indicatorOpen);\n }\n cm.setGutterMarker(line, opts.gutter, mark);\n ++cur;\n });\n }\n\n function updateInViewport(cm) {\n var vp = cm.getViewport(), state = cm.state.foldGutter;\n if (!state) return;\n cm.operation(function() {\n updateFoldInfo(cm, vp.from, vp.to);\n });\n state.from = vp.from; state.to = vp.to;\n }\n\n function onGutterClick(cm, line, gutter) {\n var state = cm.state.foldGutter;\n if (!state) return;\n var opts = state.options;\n if (gutter != opts.gutter) return;\n cm.foldCode(Pos(line, 0), opts.rangeFinder);\n }\n\n function onChange(cm) {\n var state = cm.state.foldGutter;\n if (!state) return;\n var opts = state.options;\n state.from = state.to = 0;\n clearTimeout(state.changeUpdate);\n state.changeUpdate = setTimeout(function() { updateInViewport(cm); }, opts.foldOnChangeTimeSpan || 600);\n }\n\n function onViewportChange(cm) {\n var state = cm.state.foldGutter;\n if (!state) return;\n var opts = state.options;\n clearTimeout(state.changeUpdate);\n state.changeUpdate = setTimeout(function() {\n var vp = cm.getViewport();\n if (state.from == state.to || vp.from - state.to > 20 || state.from - vp.to > 20) {\n updateInViewport(cm);\n } else {\n cm.operation(function() {\n if (vp.from < state.from) {\n updateFoldInfo(cm, vp.from, state.from);\n state.from = vp.from;\n }\n if (vp.to > state.to) {\n updateFoldInfo(cm, state.to, vp.to);\n state.to = vp.to;\n }\n });\n }\n }, opts.updateViewportTimeSpan || 400);\n }\n\n function onFold(cm, from) {\n var state = cm.state.foldGutter;\n if (!state) return;\n var line = from.line;\n if (line >= state.from && line < state.to)\n updateFoldInfo(cm, line, line + 1);\n }\n});\n", "// CodeMirror, copyright (c) by Marijn Haverbeke and others\n// Distributed under an MIT license: http://codemirror.net/LICENSE\n\n(function(mod) {\n if (typeof exports == \"object\" && typeof module == \"object\") // CommonJS\n mod(require(\"../../lib/codemirror\"));\n else if (typeof define == \"function\" && define.amd) // AMD\n define([\"../../lib/codemirror\"], mod);\n else // Plain browser env\n mod(CodeMirror);\n})(function(CodeMirror) {\n \"use strict\";\n\n var Pos = CodeMirror.Pos;\n function cmp(a, b) { return a.line - b.line || a.ch - b.ch; }\n\n var nameStartChar = \"A-Z_a-z\\\\u00C0-\\\\u00D6\\\\u00D8-\\\\u00F6\\\\u00F8-\\\\u02FF\\\\u0370-\\\\u037D\\\\u037F-\\\\u1FFF\\\\u200C-\\\\u200D\\\\u2070-\\\\u218F\\\\u2C00-\\\\u2FEF\\\\u3001-\\\\uD7FF\\\\uF900-\\\\uFDCF\\\\uFDF0-\\\\uFFFD\";\n var nameChar = nameStartChar + \"\\-\\:\\.0-9\\\\u00B7\\\\u0300-\\\\u036F\\\\u203F-\\\\u2040\";\n var xmlTagStart = new RegExp(\"<(/?)([\" + nameStartChar + \"][\" + nameChar + \"]*)\", \"g\");\n\n function Iter(cm, line, ch, range) {\n this.line = line; this.ch = ch;\n this.cm = cm; this.text = cm.getLine(line);\n this.min = range ? range.from : cm.firstLine();\n this.max = range ? range.to - 1 : cm.lastLine();\n }\n\n function tagAt(iter, ch) {\n var type = iter.cm.getTokenTypeAt(Pos(iter.line, ch));\n return type && /\\btag\\b/.test(type);\n }\n\n function nextLine(iter) {\n if (iter.line >= iter.max) return;\n iter.ch = 0;\n iter.text = iter.cm.getLine(++iter.line);\n return true;\n }\n function prevLine(iter) {\n if (iter.line <= iter.min) return;\n iter.text = iter.cm.getLine(--iter.line);\n iter.ch = iter.text.length;\n return true;\n }\n\n function toTagEnd(iter) {\n for (;;) {\n var gt = iter.text.indexOf(\">\", iter.ch);\n if (gt == -1) { if (nextLine(iter)) continue; else return; }\n if (!tagAt(iter, gt + 1)) { iter.ch = gt + 1; continue; }\n var lastSlash = iter.text.lastIndexOf(\"/\", gt);\n var selfClose = lastSlash > -1 && !/\\S/.test(iter.text.slice(lastSlash + 1, gt));\n iter.ch = gt + 1;\n return selfClose ? \"selfClose\" : \"regular\";\n }\n }\n function toTagStart(iter) {\n for (;;) {\n var lt = iter.ch ? iter.text.lastIndexOf(\"<\", iter.ch - 1) : -1;\n if (lt == -1) { if (prevLine(iter)) continue; else return; }\n if (!tagAt(iter, lt + 1)) { iter.ch = lt; continue; }\n xmlTagStart.lastIndex = lt;\n iter.ch = lt;\n var match = xmlTagStart.exec(iter.text);\n if (match && match.index == lt) return match;\n }\n }\n\n function toNextTag(iter) {\n for (;;) {\n xmlTagStart.lastIndex = iter.ch;\n var found = xmlTagStart.exec(iter.text);\n if (!found) { if (nextLine(iter)) continue; else return; }\n if (!tagAt(iter, found.index + 1)) { iter.ch = found.index + 1; continue; }\n iter.ch = found.index + found[0].length;\n return found;\n }\n }\n function toPrevTag(iter) {\n for (;;) {\n var gt = iter.ch ? iter.text.lastIndexOf(\">\", iter.ch - 1) : -1;\n if (gt == -1) { if (prevLine(iter)) continue; else return; }\n if (!tagAt(iter, gt + 1)) { iter.ch = gt; continue; }\n var lastSlash = iter.text.lastIndexOf(\"/\", gt);\n var selfClose = lastSlash > -1 && !/\\S/.test(iter.text.slice(lastSlash + 1, gt));\n iter.ch = gt + 1;\n return selfClose ? \"selfClose\" : \"regular\";\n }\n }\n\n function findMatchingClose(iter, tag) {\n var stack = [];\n for (;;) {\n var next = toNextTag(iter), end, startLine = iter.line, startCh = iter.ch - (next ? next[0].length : 0);\n if (!next || !(end = toTagEnd(iter))) return;\n if (end == \"selfClose\") continue;\n if (next[1]) { // closing tag\n for (var i = stack.length - 1; i >= 0; --i) if (stack[i] == next[2]) {\n stack.length = i;\n break;\n }\n if (i < 0 && (!tag || tag == next[2])) return {\n tag: next[2],\n from: Pos(startLine, startCh),\n to: Pos(iter.line, iter.ch)\n };\n } else { // opening tag\n stack.push(next[2]);\n }\n }\n }\n function findMatchingOpen(iter, tag) {\n var stack = [];\n for (;;) {\n var prev = toPrevTag(iter);\n if (!prev) return;\n if (prev == \"selfClose\") { toTagStart(iter); continue; }\n var endLine = iter.line, endCh = iter.ch;\n var start = toTagStart(iter);\n if (!start) return;\n if (start[1]) { // closing tag\n stack.push(start[2]);\n } else { // opening tag\n for (var i = stack.length - 1; i >= 0; --i) if (stack[i] == start[2]) {\n stack.length = i;\n break;\n }\n if (i < 0 && (!tag || tag == start[2])) return {\n tag: start[2],\n from: Pos(iter.line, iter.ch),\n to: Pos(endLine, endCh)\n };\n }\n }\n }\n\n CodeMirror.registerHelper(\"fold\", \"xml\", function(cm, start) {\n var iter = new Iter(cm, start.line, 0);\n for (;;) {\n var openTag = toNextTag(iter), end;\n if (!openTag || iter.line != start.line || !(end = toTagEnd(iter))) return;\n if (!openTag[1] && end != \"selfClose\") {\n var start = Pos(iter.line, iter.ch);\n var close = findMatchingClose(iter, openTag[2]);\n return close && {from: start, to: close.from};\n }\n }\n });\n CodeMirror.findMatchingTag = function(cm, pos, range) {\n var iter = new Iter(cm, pos.line, pos.ch, range);\n if (iter.text.indexOf(\">\") == -1 && iter.text.indexOf(\"<\") == -1) return;\n var end = toTagEnd(iter), to = end && Pos(iter.line, iter.ch);\n var start = end && toTagStart(iter);\n if (!end || !start || cmp(iter, pos) > 0) return;\n var here = {from: Pos(iter.line, iter.ch), to: to, tag: start[2]};\n if (end == \"selfClose\") return {open: here, close: null, at: \"open\"};\n\n if (start[1]) { // closing tag\n return {open: findMatchingOpen(iter, start[2]), close: here, at: \"close\"};\n } else { // opening tag\n iter = new Iter(cm, to.line, to.ch, range);\n return {open: here, close: findMatchingClose(iter, start[2]), at: \"open\"};\n }\n };\n\n CodeMirror.findEnclosingTag = function(cm, pos, range) {\n var iter = new Iter(cm, pos.line, pos.ch, range);\n for (;;) {\n var open = findMatchingOpen(iter);\n if (!open) break;\n var forward = new Iter(cm, pos.line, pos.ch, range);\n var close = findMatchingClose(forward, open.tag);\n if (close) return {open: open, close: close};\n }\n };\n\n // Used by addon/edit/closetag.js\n CodeMirror.scanForClosingTag = function(cm, pos, name, end) {\n var iter = new Iter(cm, pos.line, pos.ch, end ? {from: 0, to: end} : null);\n return findMatchingClose(iter, name);\n };\n});\n", "// CodeMirror, copyright (c) by Marijn Haverbeke and others\n// Distributed under an MIT license: http://codemirror.net/LICENSE\n\n// This is CodeMirror (http://codemirror.net), a code editor\n// implemented in JavaScript on top of the browser's DOM.\n//\n// You can find some technical background for some of the code below\n// at http://marijnhaverbeke.nl/blog/#cm-internals .\n\n(function(mod) {\n if (typeof exports == \"object\" && typeof module == \"object\") // CommonJS\n module.exports = mod();\n else if (typeof define == \"function\" && define.amd) // AMD\n return define([], mod);\n else // Plain browser env\n this.CodeMirror = mod();\n})(function() {\n \"use strict\";\n\n // BROWSER SNIFFING\n\n // Kludges for bugs and behavior differences that can't be feature\n // detected are enabled based on userAgent etc sniffing.\n\n var gecko = /gecko\\/\\d/i.test(navigator.userAgent);\n // ie_uptoN means Internet Explorer version N or lower\n var ie_upto10 = /MSIE \\d/.test(navigator.userAgent);\n var ie_11up = /Trident\\/(?:[7-9]|\\d{2,})\\..*rv:(\\d+)/.exec(navigator.userAgent);\n var ie = ie_upto10 || ie_11up;\n var ie_version = ie && (ie_upto10 ? document.documentMode || 6 : ie_11up[1]);\n var webkit = /WebKit\\//.test(navigator.userAgent);\n var qtwebkit = webkit && /Qt\\/\\d+\\.\\d+/.test(navigator.userAgent);\n var chrome = /Chrome\\//.test(navigator.userAgent);\n var presto = /Opera\\//.test(navigator.userAgent);\n var safari = /Apple Computer/.test(navigator.vendor);\n var khtml = /KHTML\\//.test(navigator.userAgent);\n var mac_geMountainLion = /Mac OS X 1\\d\\D([8-9]|\\d\\d)\\D/.test(navigator.userAgent);\n var phantom = /PhantomJS/.test(navigator.userAgent);\n\n var ios = /AppleWebKit/.test(navigator.userAgent) && /Mobile\\/\\w+/.test(navigator.userAgent);\n // This is woefully incomplete. Suggestions for alternative methods welcome.\n var mobile = ios || /Android|webOS|BlackBerry|Opera Mini|Opera Mobi|IEMobile/i.test(navigator.userAgent);\n var mac = ios || /Mac/.test(navigator.platform);\n var windows = /win/i.test(navigator.platform);\n\n var presto_version = presto && navigator.userAgent.match(/Version\\/(\\d*\\.\\d*)/);\n if (presto_version) presto_version = Number(presto_version[1]);\n if (presto_version && presto_version >= 15) { presto = false; webkit = true; }\n // Some browsers use the wrong event properties to signal cmd/ctrl on OS X\n var flipCtrlCmd = mac && (qtwebkit || presto && (presto_version == null || presto_version < 12.11));\n var captureRightClick = gecko || (ie && ie_version >= 9);\n\n // Optimize some code when these features are not used.\n var sawReadOnlySpans = false, sawCollapsedSpans = false;\n\n // EDITOR CONSTRUCTOR\n\n // A CodeMirror instance represents an editor. This is the object\n // that user code is usually dealing with.\n\n function CodeMirror(place, options) {\n if (!(this instanceof CodeMirror)) return new CodeMirror(place, options);\n\n this.options = options = options ? copyObj(options) : {};\n // Determine effective options based on given values and defaults.\n copyObj(defaults, options, false);\n setGuttersForLineNumbers(options);\n\n var doc = options.value;\n if (typeof doc == \"string\") doc = new Doc(doc, options.mode);\n this.doc = doc;\n\n var display = this.display = new Display(place, doc);\n display.wrapper.CodeMirror = this;\n updateGutters(this);\n themeChanged(this);\n if (options.lineWrapping)\n this.display.wrapper.className += \" CodeMirror-wrap\";\n if (options.autofocus && !mobile) focusInput(this);\n initScrollbars(this);\n\n this.state = {\n keyMaps: [], // stores maps added by addKeyMap\n overlays: [], // highlighting overlays, as added by addOverlay\n modeGen: 0, // bumped when mode/overlay changes, used to invalidate highlighting info\n overwrite: false, focused: false,\n suppressEdits: false, // used to disable editing during key handlers when in readOnly mode\n pasteIncoming: false, cutIncoming: false, // help recognize paste/cut edits in readInput\n draggingText: false,\n highlight: new Delayed(), // stores highlight worker timeout\n keySeq: null // Unfinished key sequence\n };\n\n // Override magic textarea content restore that IE sometimes does\n // on our hidden textarea on reload\n if (ie && ie_version < 11) setTimeout(bind(resetInput, this, true), 20);\n\n registerEventHandlers(this);\n ensureGlobalHandlers();\n\n startOperation(this);\n this.curOp.forceUpdate = true;\n attachDoc(this, doc);\n\n if ((options.autofocus && !mobile) || activeElt() == display.input)\n setTimeout(bind(onFocus, this), 20);\n else\n onBlur(this);\n\n for (var opt in optionHandlers) if (optionHandlers.hasOwnProperty(opt))\n optionHandlers[opt](this, options[opt], Init);\n maybeUpdateLineNumberWidth(this);\n if (options.finishInit) options.finishInit(this);\n for (var i = 0; i < initHooks.length; ++i) initHooks[i](this);\n endOperation(this);\n // Suppress optimizelegibility in Webkit, since it breaks text\n // measuring on line wrapping boundaries.\n if (webkit && options.lineWrapping &&\n getComputedStyle(display.lineDiv).textRendering == \"optimizelegibility\")\n display.lineDiv.style.textRendering = \"auto\";\n }\n\n // DISPLAY CONSTRUCTOR\n\n // The display handles the DOM integration, both for input reading\n // and content drawing. It holds references to DOM nodes and\n // display-related state.\n\n function Display(place, doc) {\n var d = this;\n\n // The semihidden textarea that is focused when the editor is\n // focused, and receives input.\n var input = d.input = elt(\"textarea\", null, null, \"position: absolute; padding: 0; width: 1px; height: 1em; outline: none\");\n // The textarea is kept positioned near the cursor to prevent the\n // fact that it'll be scrolled into view on input from scrolling\n // our fake cursor out of view. On webkit, when wrap=off, paste is\n // very slow. So make the area wide instead.\n if (webkit) input.style.width = \"1000px\";\n else input.setAttribute(\"wrap\", \"off\");\n // If border: 0; -- iOS fails to open keyboard (issue #1287)\n if (ios) input.style.border = \"1px solid black\";\n input.setAttribute(\"autocorrect\", \"off\"); input.setAttribute(\"autocapitalize\", \"off\"); input.setAttribute(\"spellcheck\", \"false\");\n\n // Wraps and hides input textarea\n d.inputDiv = elt(\"div\", [input], null, \"overflow: hidden; position: relative; width: 3px; height: 0px;\");\n // Covers bottom-right square when both scrollbars are present.\n d.scrollbarFiller = elt(\"div\", null, \"CodeMirror-scrollbar-filler\");\n d.scrollbarFiller.setAttribute(\"not-content\", \"true\");\n // Covers bottom of gutter when coverGutterNextToScrollbar is on\n // and h scrollbar is present.\n d.gutterFiller = elt(\"div\", null, \"CodeMirror-gutter-filler\");\n d.gutterFiller.setAttribute(\"not-content\", \"true\");\n // Will contain the actual code, positioned to cover the viewport.\n d.lineDiv = elt(\"div\", null, \"CodeMirror-code\");\n // Elements are added to these to represent selection and cursors.\n d.selectionDiv = elt(\"div\", null, null, \"position: relative; z-index: 1\");\n d.cursorDiv = elt(\"div\", null, \"CodeMirror-cursors\");\n // A visibility: hidden element used to find the size of things.\n d.measure = elt(\"div\", null, \"CodeMirror-measure\");\n // When lines outside of the viewport are measured, they are drawn in this.\n d.lineMeasure = elt(\"div\", null, \"CodeMirror-measure\");\n // Wraps everything that needs to exist inside the vertically-padded coordinate system\n d.lineSpace = elt(\"div\", [d.measure, d.lineMeasure, d.selectionDiv, d.cursorDiv, d.lineDiv],\n null, \"position: relative; outline: none\");\n // Moved around its parent to cover visible view.\n d.mover = elt(\"div\", [elt(\"div\", [d.lineSpace], \"CodeMirror-lines\")], null, \"position: relative\");\n // Set to the height of the document, allowing scrolling.\n d.sizer = elt(\"div\", [d.mover], \"CodeMirror-sizer\");\n d.sizerWidth = null;\n // Behavior of elts with overflow: auto and padding is\n // inconsistent across browsers. This is used to ensure the\n // scrollable area is big enough.\n d.heightForcer = elt(\"div\", null, null, \"position: absolute; height: \" + scrollerGap + \"px; width: 1px;\");\n // Will contain the gutters, if any.\n d.gutters = elt(\"div\", null, \"CodeMirror-gutters\");\n d.lineGutter = null;\n // Actual scrollable element.\n d.scroller = elt(\"div\", [d.sizer, d.heightForcer, d.gutters], \"CodeMirror-scroll\");\n d.scroller.setAttribute(\"tabIndex\", \"-1\");\n // The element in which the editor lives.\n d.wrapper = elt(\"div\", [d.inputDiv, d.scrollbarFiller, d.gutterFiller, d.scroller], \"CodeMirror\");\n\n // Work around IE7 z-index bug (not perfect, hence IE7 not really being supported)\n if (ie && ie_version < 8) { d.gutters.style.zIndex = -1; d.scroller.style.paddingRight = 0; }\n // Needed to hide big blue blinking cursor on Mobile Safari\n if (ios) input.style.width = \"0px\";\n if (!webkit) d.scroller.draggable = true;\n // Needed to handle Tab key in KHTML\n if (khtml) { d.inputDiv.style.height = \"1px\"; d.inputDiv.style.position = \"absolute\"; }\n\n if (place) {\n if (place.appendChild) place.appendChild(d.wrapper);\n else place(d.wrapper);\n }\n\n // Current rendered range (may be bigger than the view window).\n d.viewFrom = d.viewTo = doc.first;\n d.reportedViewFrom = d.reportedViewTo = doc.first;\n // Information about the rendered lines.\n d.view = [];\n d.renderedView = null;\n // Holds info about a single rendered line when it was rendered\n // for measurement, while not in view.\n d.externalMeasured = null;\n // Empty space (in pixels) above the view\n d.viewOffset = 0;\n d.lastWrapHeight = d.lastWrapWidth = 0;\n d.updateLineNumbers = null;\n\n d.nativeBarWidth = d.barHeight = d.barWidth = 0;\n d.scrollbarsClipped = false;\n\n // Used to only resize the line number gutter when necessary (when\n // the amount of lines crosses a boundary that makes its width change)\n d.lineNumWidth = d.lineNumInnerWidth = d.lineNumChars = null;\n // See readInput and resetInput\n d.prevInput = \"\";\n // Set to true when a non-horizontal-scrolling line widget is\n // added. As an optimization, line widget aligning is skipped when\n // this is false.\n d.alignWidgets = false;\n // Flag that indicates whether we expect input to appear real soon\n // now (after some event like 'keypress' or 'input') and are\n // polling intensively.\n d.pollingFast = false;\n // Self-resetting timeout for the poller\n d.poll = new Delayed();\n\n d.cachedCharWidth = d.cachedTextHeight = d.cachedPaddingH = null;\n\n // Tracks when resetInput has punted to just putting a short\n // string into the textarea instead of the full selection.\n d.inaccurateSelection = false;\n\n // Tracks the maximum line length so that the horizontal scrollbar\n // can be kept static when scrolling.\n d.maxLine = null;\n d.maxLineLength = 0;\n d.maxLineChanged = false;\n\n // Used for measuring wheel scrolling granularity\n d.wheelDX = d.wheelDY = d.wheelStartX = d.wheelStartY = null;\n\n // True when shift is held down.\n d.shift = false;\n\n // Used to track whether anything happened since the context menu\n // was opened.\n d.selForContextMenu = null;\n }\n\n // STATE UPDATES\n\n // Used to get the editor into a consistent state again when options change.\n\n function loadMode(cm) {\n cm.doc.mode = CodeMirror.getMode(cm.options, cm.doc.modeOption);\n resetModeState(cm);\n }\n\n function resetModeState(cm) {\n cm.doc.iter(function(line) {\n if (line.stateAfter) line.stateAfter = null;\n if (line.styles) line.styles = null;\n });\n cm.doc.frontier = cm.doc.first;\n startWorker(cm, 100);\n cm.state.modeGen++;\n if (cm.curOp) regChange(cm);\n }\n\n function wrappingChanged(cm) {\n if (cm.options.lineWrapping) {\n addClass(cm.display.wrapper, \"CodeMirror-wrap\");\n cm.display.sizer.style.minWidth = \"\";\n cm.display.sizerWidth = null;\n } else {\n rmClass(cm.display.wrapper, \"CodeMirror-wrap\");\n findMaxLine(cm);\n }\n estimateLineHeights(cm);\n regChange(cm);\n clearCaches(cm);\n setTimeout(function(){updateScrollbars(cm);}, 100);\n }\n\n // Returns a function that estimates the height of a line, to use as\n // first approximation until the line becomes visible (and is thus\n // properly measurable).\n function estimateHeight(cm) {\n var th = textHeight(cm.display), wrapping = cm.options.lineWrapping;\n var perLine = wrapping && Math.max(5, cm.display.scroller.clientWidth / charWidth(cm.display) - 3);\n return function(line) {\n if (lineIsHidden(cm.doc, line)) return 0;\n\n var widgetsHeight = 0;\n if (line.widgets) for (var i = 0; i < line.widgets.length; i++) {\n if (line.widgets[i].height) widgetsHeight += line.widgets[i].height;\n }\n\n if (wrapping)\n return widgetsHeight + (Math.ceil(line.text.length / perLine) || 1) * th;\n else\n return widgetsHeight + th;\n };\n }\n\n function estimateLineHeights(cm) {\n var doc = cm.doc, est = estimateHeight(cm);\n doc.iter(function(line) {\n var estHeight = est(line);\n if (estHeight != line.height) updateLineHeight(line, estHeight);\n });\n }\n\n function themeChanged(cm) {\n cm.display.wrapper.className = cm.display.wrapper.className.replace(/\\s*cm-s-\\S+/g, \"\") +\n cm.options.theme.replace(/(^|\\s)\\s*/g, \" cm-s-\");\n clearCaches(cm);\n }\n\n function guttersChanged(cm) {\n updateGutters(cm);\n regChange(cm);\n setTimeout(function(){alignHorizontally(cm);}, 20);\n }\n\n // Rebuild the gutter elements, ensure the margin to the left of the\n // code matches their width.\n function updateGutters(cm) {\n var gutters = cm.display.gutters, specs = cm.options.gutters;\n removeChildren(gutters);\n for (var i = 0; i < specs.length; ++i) {\n var gutterClass = specs[i];\n var gElt = gutters.appendChild(elt(\"div\", null, \"CodeMirror-gutter \" + gutterClass));\n if (gutterClass == \"CodeMirror-linenumbers\") {\n cm.display.lineGutter = gElt;\n gElt.style.width = (cm.display.lineNumWidth || 1) + \"px\";\n }\n }\n gutters.style.display = i ? \"\" : \"none\";\n updateGutterSpace(cm);\n }\n\n function updateGutterSpace(cm) {\n var width = cm.display.gutters.offsetWidth;\n cm.display.sizer.style.marginLeft = width + \"px\";\n }\n\n // Compute the character length of a line, taking into account\n // collapsed ranges (see markText) that might hide parts, and join\n // other lines onto it.\n function lineLength(line) {\n if (line.height == 0) return 0;\n var len = line.text.length, merged, cur = line;\n while (merged = collapsedSpanAtStart(cur)) {\n var found = merged.find(0, true);\n cur = found.from.line;\n len += found.from.ch - found.to.ch;\n }\n cur = line;\n while (merged = collapsedSpanAtEnd(cur)) {\n var found = merged.find(0, true);\n len -= cur.text.length - found.from.ch;\n cur = found.to.line;\n len += cur.text.length - found.to.ch;\n }\n return len;\n }\n\n // Find the longest line in the document.\n function findMaxLine(cm) {\n var d = cm.display, doc = cm.doc;\n d.maxLine = getLine(doc, doc.first);\n d.maxLineLength = lineLength(d.maxLine);\n d.maxLineChanged = true;\n doc.iter(function(line) {\n var len = lineLength(line);\n if (len > d.maxLineLength) {\n d.maxLineLength = len;\n d.maxLine = line;\n }\n });\n }\n\n // Make sure the gutters options contains the element\n // \"CodeMirror-linenumbers\" when the lineNumbers option is true.\n function setGuttersForLineNumbers(options) {\n var found = indexOf(options.gutters, \"CodeMirror-linenumbers\");\n if (found == -1 && options.lineNumbers) {\n options.gutters = options.gutters.concat([\"CodeMirror-linenumbers\"]);\n } else if (found > -1 && !options.lineNumbers) {\n options.gutters = options.gutters.slice(0);\n options.gutters.splice(found, 1);\n }\n }\n\n // SCROLLBARS\n\n // Prepare DOM reads needed to update the scrollbars. Done in one\n // shot to minimize update/measure roundtrips.\n function measureForScrollbars(cm) {\n var d = cm.display, gutterW = d.gutters.offsetWidth;\n var docH = Math.round(cm.doc.height + paddingVert(cm.display));\n return {\n clientHeight: d.scroller.clientHeight,\n viewHeight: d.wrapper.clientHeight,\n scrollWidth: d.scroller.scrollWidth, clientWidth: d.scroller.clientWidth,\n viewWidth: d.wrapper.clientWidth,\n barLeft: cm.options.fixedGutter ? gutterW : 0,\n docHeight: docH,\n scrollHeight: docH + scrollGap(cm) + d.barHeight,\n nativeBarWidth: d.nativeBarWidth,\n gutterWidth: gutterW\n };\n }\n\n function NativeScrollbars(place, scroll, cm) {\n this.cm = cm;\n var vert = this.vert = elt(\"div\", [elt(\"div\", null, null, \"min-width: 1px\")], \"CodeMirror-vscrollbar\");\n var horiz = this.horiz = elt(\"div\", [elt(\"div\", null, null, \"height: 100%; min-height: 1px\")], \"CodeMirror-hscrollbar\");\n place(vert); place(horiz);\n\n on(vert, \"scroll\", function() {\n if (vert.clientHeight) scroll(vert.scrollTop, \"vertical\");\n });\n on(horiz, \"scroll\", function() {\n if (horiz.clientWidth) scroll(horiz.scrollLeft, \"horizontal\");\n });\n\n this.checkedOverlay = false;\n // Need to set a minimum width to see the scrollbar on IE7 (but must not set it on IE8).\n if (ie && ie_version < 8) this.horiz.style.minHeight = this.vert.style.minWidth = \"18px\";\n }\n\n NativeScrollbars.prototype = copyObj({\n update: function(measure) {\n var needsH = measure.scrollWidth > measure.clientWidth + 1;\n var needsV = measure.scrollHeight > measure.clientHeight + 1;\n var sWidth = measure.nativeBarWidth;\n\n if (needsV) {\n this.vert.style.display = \"block\";\n this.vert.style.bottom = needsH ? sWidth + \"px\" : \"0\";\n var totalHeight = measure.viewHeight - (needsH ? sWidth : 0);\n // A bug in IE8 can cause this value to be negative, so guard it.\n this.vert.firstChild.style.height =\n Math.max(0, measure.scrollHeight - measure.clientHeight + totalHeight) + \"px\";\n } else {\n this.vert.style.display = \"\";\n this.vert.firstChild.style.height = \"0\";\n }\n\n if (needsH) {\n this.horiz.style.display = \"block\";\n this.horiz.style.right = needsV ? sWidth + \"px\" : \"0\";\n this.horiz.style.left = measure.barLeft + \"px\";\n var totalWidth = measure.viewWidth - measure.barLeft - (needsV ? sWidth : 0);\n this.horiz.firstChild.style.width =\n (measure.scrollWidth - measure.clientWidth + totalWidth) + \"px\";\n } else {\n this.horiz.style.display = \"\";\n this.horiz.firstChild.style.width = \"0\";\n }\n\n if (!this.checkedOverlay && measure.clientHeight > 0) {\n if (sWidth == 0) this.overlayHack();\n this.checkedOverlay = true;\n }\n\n return {right: needsV ? sWidth : 0, bottom: needsH ? sWidth : 0};\n },\n setScrollLeft: function(pos) {\n if (this.horiz.scrollLeft != pos) this.horiz.scrollLeft = pos;\n },\n setScrollTop: function(pos) {\n if (this.vert.scrollTop != pos) this.vert.scrollTop = pos;\n },\n overlayHack: function() {\n var w = mac && !mac_geMountainLion ? \"12px\" : \"18px\";\n this.horiz.style.minHeight = this.vert.style.minWidth = w;\n var self = this;\n var barMouseDown = function(e) {\n if (e_target(e) != self.vert && e_target(e) != self.horiz)\n operation(self.cm, onMouseDown)(e);\n };\n on(this.vert, \"mousedown\", barMouseDown);\n on(this.horiz, \"mousedown\", barMouseDown);\n },\n clear: function() {\n var parent = this.horiz.parentNode;\n parent.removeChild(this.horiz);\n parent.removeChild(this.vert);\n }\n }, NativeScrollbars.prototype);\n\n function NullScrollbars() {}\n\n NullScrollbars.prototype = copyObj({\n update: function() { return {bottom: 0, right: 0}; },\n setScrollLeft: function() {},\n setScrollTop: function() {},\n clear: function() {}\n }, NullScrollbars.prototype);\n\n CodeMirror.scrollbarModel = {\"native\": NativeScrollbars, \"null\": NullScrollbars};\n\n function initScrollbars(cm) {\n if (cm.display.scrollbars) {\n cm.display.scrollbars.clear();\n if (cm.display.scrollbars.addClass)\n rmClass(cm.display.wrapper, cm.display.scrollbars.addClass);\n }\n\n cm.display.scrollbars = new CodeMirror.scrollbarModel[cm.options.scrollbarStyle](function(node) {\n cm.display.wrapper.insertBefore(node, cm.display.scrollbarFiller);\n on(node, \"mousedown\", function() {\n if (cm.state.focused) setTimeout(bind(focusInput, cm), 0);\n });\n node.setAttribute(\"not-content\", \"true\");\n }, function(pos, axis) {\n if (axis == \"horizontal\") setScrollLeft(cm, pos);\n else setScrollTop(cm, pos);\n }, cm);\n if (cm.display.scrollbars.addClass)\n addClass(cm.display.wrapper, cm.display.scrollbars.addClass);\n }\n\n function updateScrollbars(cm, measure) {\n if (!measure) measure = measureForScrollbars(cm);\n var startWidth = cm.display.barWidth, startHeight = cm.display.barHeight;\n updateScrollbarsInner(cm, measure);\n for (var i = 0; i < 4 && startWidth != cm.display.barWidth || startHeight != cm.display.barHeight; i++) {\n if (startWidth != cm.display.barWidth && cm.options.lineWrapping)\n updateHeightsInViewport(cm);\n updateScrollbarsInner(cm, measureForScrollbars(cm));\n startWidth = cm.display.barWidth; startHeight = cm.display.barHeight;\n }\n }\n\n // Re-synchronize the fake scrollbars with the actual size of the\n // content.\n function updateScrollbarsInner(cm, measure) {\n var d = cm.display;\n var sizes = d.scrollbars.update(measure);\n\n d.sizer.style.paddingRight = (d.barWidth = sizes.right) + \"px\";\n d.sizer.style.paddingBottom = (d.barHeight = sizes.bottom) + \"px\";\n\n if (sizes.right && sizes.bottom) {\n d.scrollbarFiller.style.display = \"block\";\n d.scrollbarFiller.style.height = sizes.bottom + \"px\";\n d.scrollbarFiller.style.width = sizes.right + \"px\";\n } else d.scrollbarFiller.style.display = \"\";\n if (sizes.bottom && cm.options.coverGutterNextToScrollbar && cm.options.fixedGutter) {\n d.gutterFiller.style.display = \"block\";\n d.gutterFiller.style.height = sizes.bottom + \"px\";\n d.gutterFiller.style.width = measure.gutterWidth + \"px\";\n } else d.gutterFiller.style.display = \"\";\n }\n\n // Compute the lines that are visible in a given viewport (defaults\n // the the current scroll position). viewport may contain top,\n // height, and ensure (see op.scrollToPos) properties.\n function visibleLines(display, doc, viewport) {\n var top = viewport && viewport.top != null ? Math.max(0, viewport.top) : display.scroller.scrollTop;\n top = Math.floor(top - paddingTop(display));\n var bottom = viewport && viewport.bottom != null ? viewport.bottom : top + display.wrapper.clientHeight;\n\n var from = lineAtHeight(doc, top), to = lineAtHeight(doc, bottom);\n // Ensure is a {from: {line, ch}, to: {line, ch}} object, and\n // forces those lines into the viewport (if possible).\n if (viewport && viewport.ensure) {\n var ensureFrom = viewport.ensure.from.line, ensureTo = viewport.ensure.to.line;\n if (ensureFrom < from) {\n from = ensureFrom;\n to = lineAtHeight(doc, heightAtLine(getLine(doc, ensureFrom)) + display.wrapper.clientHeight);\n } else if (Math.min(ensureTo, doc.lastLine()) >= to) {\n from = lineAtHeight(doc, heightAtLine(getLine(doc, ensureTo)) - display.wrapper.clientHeight);\n to = ensureTo;\n }\n }\n return {from: from, to: Math.max(to, from + 1)};\n }\n\n // LINE NUMBERS\n\n // Re-align line numbers and gutter marks to compensate for\n // horizontal scrolling.\n function alignHorizontally(cm) {\n var display = cm.display, view = display.view;\n if (!display.alignWidgets && (!display.gutters.firstChild || !cm.options.fixedGutter)) return;\n var comp = compensateForHScroll(display) - display.scroller.scrollLeft + cm.doc.scrollLeft;\n var gutterW = display.gutters.offsetWidth, left = comp + \"px\";\n for (var i = 0; i < view.length; i++) if (!view[i].hidden) {\n if (cm.options.fixedGutter && view[i].gutter)\n view[i].gutter.style.left = left;\n var align = view[i].alignable;\n if (align) for (var j = 0; j < align.length; j++)\n align[j].style.left = left;\n }\n if (cm.options.fixedGutter)\n display.gutters.style.left = (comp + gutterW) + \"px\";\n }\n\n // Used to ensure that the line number gutter is still the right\n // size for the current document size. Returns true when an update\n // is needed.\n function maybeUpdateLineNumberWidth(cm) {\n if (!cm.options.lineNumbers) return false;\n var doc = cm.doc, last = lineNumberFor(cm.options, doc.first + doc.size - 1), display = cm.display;\n if (last.length != display.lineNumChars) {\n var test = display.measure.appendChild(elt(\"div\", [elt(\"div\", last)],\n \"CodeMirror-linenumber CodeMirror-gutter-elt\"));\n var innerW = test.firstChild.offsetWidth, padding = test.offsetWidth - innerW;\n display.lineGutter.style.width = \"\";\n display.lineNumInnerWidth = Math.max(innerW, display.lineGutter.offsetWidth - padding);\n display.lineNumWidth = display.lineNumInnerWidth + padding;\n display.lineNumChars = display.lineNumInnerWidth ? last.length : -1;\n display.lineGutter.style.width = display.lineNumWidth + \"px\";\n updateGutterSpace(cm);\n return true;\n }\n return false;\n }\n\n function lineNumberFor(options, i) {\n return String(options.lineNumberFormatter(i + options.firstLineNumber));\n }\n\n // Computes display.scroller.scrollLeft + display.gutters.offsetWidth,\n // but using getBoundingClientRect to get a sub-pixel-accurate\n // result.\n function compensateForHScroll(display) {\n return display.scroller.getBoundingClientRect().left - display.sizer.getBoundingClientRect().left;\n }\n\n // DISPLAY DRAWING\n\n function DisplayUpdate(cm, viewport, force) {\n var display = cm.display;\n\n this.viewport = viewport;\n // Store some values that we'll need later (but don't want to force a relayout for)\n this.visible = visibleLines(display, cm.doc, viewport);\n this.editorIsHidden = !display.wrapper.offsetWidth;\n this.wrapperHeight = display.wrapper.clientHeight;\n this.wrapperWidth = display.wrapper.clientWidth;\n this.oldDisplayWidth = displayWidth(cm);\n this.force = force;\n this.dims = getDimensions(cm);\n this.events = [];\n }\n\n DisplayUpdate.prototype.signal = function(emitter, type) {\n if (hasHandler(emitter, type))\n this.events.push(arguments);\n };\n DisplayUpdate.prototype.finish = function() {\n for (var i = 0; i < this.events.length; i++)\n signal.apply(null, this.events[i]);\n };\n\n function maybeClipScrollbars(cm) {\n var display = cm.display;\n if (!display.scrollbarsClipped && display.scroller.offsetWidth) {\n display.nativeBarWidth = display.scroller.offsetWidth - display.scroller.clientWidth;\n display.heightForcer.style.height = scrollGap(cm) + \"px\";\n display.sizer.style.marginBottom = -display.nativeBarWidth + \"px\";\n display.sizer.style.borderRightWidth = scrollGap(cm) + \"px\";\n display.scrollbarsClipped = true;\n }\n }\n\n // Does the actual updating of the line display. Bails out\n // (returning false) when there is nothing to be done and forced is\n // false.\n function updateDisplayIfNeeded(cm, update) {\n var display = cm.display, doc = cm.doc;\n\n if (update.editorIsHidden) {\n resetView(cm);\n return false;\n }\n\n // Bail out if the visible area is already rendered and nothing changed.\n if (!update.force &&\n update.visible.from >= display.viewFrom && update.visible.to <= display.viewTo &&\n (display.updateLineNumbers == null || display.updateLineNumbers >= display.viewTo) &&\n display.renderedView == display.view && countDirtyView(cm) == 0)\n return false;\n\n if (maybeUpdateLineNumberWidth(cm)) {\n resetView(cm);\n update.dims = getDimensions(cm);\n }\n\n // Compute a suitable new viewport (from & to)\n var end = doc.first + doc.size;\n var from = Math.max(update.visible.from - cm.options.viewportMargin, doc.first);\n var to = Math.min(end, update.visible.to + cm.options.viewportMargin);\n if (display.viewFrom < from && from - display.viewFrom < 20) from = Math.max(doc.first, display.viewFrom);\n if (display.viewTo > to && display.viewTo - to < 20) to = Math.min(end, display.viewTo);\n if (sawCollapsedSpans) {\n from = visualLineNo(cm.doc, from);\n to = visualLineEndNo(cm.doc, to);\n }\n\n var different = from != display.viewFrom || to != display.viewTo ||\n display.lastWrapHeight != update.wrapperHeight || display.lastWrapWidth != update.wrapperWidth;\n adjustView(cm, from, to);\n\n display.viewOffset = heightAtLine(getLine(cm.doc, display.viewFrom));\n // Position the mover div to align with the current scroll position\n cm.display.mover.style.top = display.viewOffset + \"px\";\n\n var toUpdate = countDirtyView(cm);\n if (!different && toUpdate == 0 && !update.force && display.renderedView == display.view &&\n (display.updateLineNumbers == null || display.updateLineNumbers >= display.viewTo))\n return false;\n\n // For big changes, we hide the enclosing element during the\n // update, since that speeds up the operations on most browsers.\n var focused = activeElt();\n if (toUpdate > 4) display.lineDiv.style.display = \"none\";\n patchDisplay(cm, display.updateLineNumbers, update.dims);\n if (toUpdate > 4) display.lineDiv.style.display = \"\";\n display.renderedView = display.view;\n // There might have been a widget with a focused element that got\n // hidden or updated, if so re-focus it.\n if (focused && activeElt() != focused && focused.offsetHeight) focused.focus();\n\n // Prevent selection and cursors from interfering with the scroll\n // width and height.\n removeChildren(display.cursorDiv);\n removeChildren(display.selectionDiv);\n display.gutters.style.height = 0;\n\n if (different) {\n display.lastWrapHeight = update.wrapperHeight;\n display.lastWrapWidth = update.wrapperWidth;\n startWorker(cm, 400);\n }\n\n display.updateLineNumbers = null;\n\n return true;\n }\n\n function postUpdateDisplay(cm, update) {\n var force = update.force, viewport = update.viewport;\n for (var first = true;; first = false) {\n if (first && cm.options.lineWrapping && update.oldDisplayWidth != displayWidth(cm)) {\n force = true;\n } else {\n force = false;\n // Clip forced viewport to actual scrollable area.\n if (viewport && viewport.top != null)\n viewport = {top: Math.min(cm.doc.height + paddingVert(cm.display) - displayHeight(cm), viewport.top)};\n // Updated line heights might result in the drawn area not\n // actually covering the viewport. Keep looping until it does.\n update.visible = visibleLines(cm.display, cm.doc, viewport);\n if (update.visible.from >= cm.display.viewFrom && update.visible.to <= cm.display.viewTo)\n break;\n }\n if (!updateDisplayIfNeeded(cm, update)) break;\n updateHeightsInViewport(cm);\n var barMeasure = measureForScrollbars(cm);\n updateSelection(cm);\n setDocumentHeight(cm, barMeasure);\n updateScrollbars(cm, barMeasure);\n }\n\n update.signal(cm, \"update\", cm);\n if (cm.display.viewFrom != cm.display.reportedViewFrom || cm.display.viewTo != cm.display.reportedViewTo) {\n update.signal(cm, \"viewportChange\", cm, cm.display.viewFrom, cm.display.viewTo);\n cm.display.reportedViewFrom = cm.display.viewFrom; cm.display.reportedViewTo = cm.display.viewTo;\n }\n }\n\n function updateDisplaySimple(cm, viewport) {\n var update = new DisplayUpdate(cm, viewport);\n if (updateDisplayIfNeeded(cm, update)) {\n updateHeightsInViewport(cm);\n postUpdateDisplay(cm, update);\n var barMeasure = measureForScrollbars(cm);\n updateSelection(cm);\n setDocumentHeight(cm, barMeasure);\n updateScrollbars(cm, barMeasure);\n update.finish();\n }\n }\n\n function setDocumentHeight(cm, measure) {\n cm.display.sizer.style.minHeight = measure.docHeight + \"px\";\n var total = measure.docHeight + cm.display.barHeight;\n cm.display.heightForcer.style.top = total + \"px\";\n cm.display.gutters.style.height = Math.max(total + scrollGap(cm), measure.clientHeight) + \"px\";\n }\n\n // Read the actual heights of the rendered lines, and update their\n // stored heights to match.\n function updateHeightsInViewport(cm) {\n var display = cm.display;\n var prevBottom = display.lineDiv.offsetTop;\n for (var i = 0; i < display.view.length; i++) {\n var cur = display.view[i], height;\n if (cur.hidden) continue;\n if (ie && ie_version < 8) {\n var bot = cur.node.offsetTop + cur.node.offsetHeight;\n height = bot - prevBottom;\n prevBottom = bot;\n } else {\n var box = cur.node.getBoundingClientRect();\n height = box.bottom - box.top;\n }\n var diff = cur.line.height - height;\n if (height < 2) height = textHeight(display);\n if (diff > .001 || diff < -.001) {\n updateLineHeight(cur.line, height);\n updateWidgetHeight(cur.line);\n if (cur.rest) for (var j = 0; j < cur.rest.length; j++)\n updateWidgetHeight(cur.rest[j]);\n }\n }\n }\n\n // Read and store the height of line widgets associated with the\n // given line.\n function updateWidgetHeight(line) {\n if (line.widgets) for (var i = 0; i < line.widgets.length; ++i)\n line.widgets[i].height = line.widgets[i].node.offsetHeight;\n }\n\n // Do a bulk-read of the DOM positions and sizes needed to draw the\n // view, so that we don't interleave reading and writing to the DOM.\n function getDimensions(cm) {\n var d = cm.display, left = {}, width = {};\n var gutterLeft = d.gutters.clientLeft;\n for (var n = d.gutters.firstChild, i = 0; n; n = n.nextSibling, ++i) {\n left[cm.options.gutters[i]] = n.offsetLeft + n.clientLeft + gutterLeft;\n width[cm.options.gutters[i]] = n.clientWidth;\n }\n return {fixedPos: compensateForHScroll(d),\n gutterTotalWidth: d.gutters.offsetWidth,\n gutterLeft: left,\n gutterWidth: width,\n wrapperWidth: d.wrapper.clientWidth};\n }\n\n // Sync the actual display DOM structure with display.view, removing\n // nodes for lines that are no longer in view, and creating the ones\n // that are not there yet, and updating the ones that are out of\n // date.\n function patchDisplay(cm, updateNumbersFrom, dims) {\n var display = cm.display, lineNumbers = cm.options.lineNumbers;\n var container = display.lineDiv, cur = container.firstChild;\n\n function rm(node) {\n var next = node.nextSibling;\n // Works around a throw-scroll bug in OS X Webkit\n if (webkit && mac && cm.display.currentWheelTarget == node)\n node.style.display = \"none\";\n else\n node.parentNode.removeChild(node);\n return next;\n }\n\n var view = display.view, lineN = display.viewFrom;\n // Loop over the elements in the view, syncing cur (the DOM nodes\n // in display.lineDiv) with the view as we go.\n for (var i = 0; i < view.length; i++) {\n var lineView = view[i];\n if (lineView.hidden) {\n } else if (!lineView.node) { // Not drawn yet\n var node = buildLineElement(cm, lineView, lineN, dims);\n container.insertBefore(node, cur);\n } else { // Already drawn\n while (cur != lineView.node) cur = rm(cur);\n var updateNumber = lineNumbers && updateNumbersFrom != null &&\n updateNumbersFrom <= lineN && lineView.lineNumber;\n if (lineView.changes) {\n if (indexOf(lineView.changes, \"gutter\") > -1) updateNumber = false;\n updateLineForChanges(cm, lineView, lineN, dims);\n }\n if (updateNumber) {\n removeChildren(lineView.lineNumber);\n lineView.lineNumber.appendChild(document.createTextNode(lineNumberFor(cm.options, lineN)));\n }\n cur = lineView.node.nextSibling;\n }\n lineN += lineView.size;\n }\n while (cur) cur = rm(cur);\n }\n\n // When an aspect of a line changes, a string is added to\n // lineView.changes. This updates the relevant part of the line's\n // DOM structure.\n function updateLineForChanges(cm, lineView, lineN, dims) {\n for (var j = 0; j < lineView.changes.length; j++) {\n var type = lineView.changes[j];\n if (type == \"text\") updateLineText(cm, lineView);\n else if (type == \"gutter\") updateLineGutter(cm, lineView, lineN, dims);\n else if (type == \"class\") updateLineClasses(lineView);\n else if (type == \"widget\") updateLineWidgets(lineView, dims);\n }\n lineView.changes = null;\n }\n\n // Lines with gutter elements, widgets or a background class need to\n // be wrapped, and have the extra elements added to the wrapper div\n function ensureLineWrapped(lineView) {\n if (lineView.node == lineView.text) {\n lineView.node = elt(\"div\", null, null, \"position: relative\");\n if (lineView.text.parentNode)\n lineView.text.parentNode.replaceChild(lineView.node, lineView.text);\n lineView.node.appendChild(lineView.text);\n if (ie && ie_version < 8) lineView.node.style.zIndex = 2;\n }\n return lineView.node;\n }\n\n function updateLineBackground(lineView) {\n var cls = lineView.bgClass ? lineView.bgClass + \" \" + (lineView.line.bgClass || \"\") : lineView.line.bgClass;\n if (cls) cls += \" CodeMirror-linebackground\";\n if (lineView.background) {\n if (cls) lineView.background.className = cls;\n else { lineView.background.parentNode.removeChild(lineView.background); lineView.background = null; }\n } else if (cls) {\n var wrap = ensureLineWrapped(lineView);\n lineView.background = wrap.insertBefore(elt(\"div\", null, cls), wrap.firstChild);\n }\n }\n\n // Wrapper around buildLineContent which will reuse the structure\n // in display.externalMeasured when possible.\n function getLineContent(cm, lineView) {\n var ext = cm.display.externalMeasured;\n if (ext && ext.line == lineView.line) {\n cm.display.externalMeasured = null;\n lineView.measure = ext.measure;\n return ext.built;\n }\n return buildLineContent(cm, lineView);\n }\n\n // Redraw the line's text. Interacts with the background and text\n // classes because the mode may output tokens that influence these\n // classes.\n function updateLineText(cm, lineView) {\n var cls = lineView.text.className;\n var built = getLineContent(cm, lineView);\n if (lineView.text == lineView.node) lineView.node = built.pre;\n lineView.text.parentNode.replaceChild(built.pre, lineView.text);\n lineView.text = built.pre;\n if (built.bgClass != lineView.bgClass || built.textClass != lineView.textClass) {\n lineView.bgClass = built.bgClass;\n lineView.textClass = built.textClass;\n updateLineClasses(lineView);\n } else if (cls) {\n lineView.text.className = cls;\n }\n }\n\n function updateLineClasses(lineView) {\n updateLineBackground(lineView);\n if (lineView.line.wrapClass)\n ensureLineWrapped(lineView).className = lineView.line.wrapClass;\n else if (lineView.node != lineView.text)\n lineView.node.className = \"\";\n var textClass = lineView.textClass ? lineView.textClass + \" \" + (lineView.line.textClass || \"\") : lineView.line.textClass;\n lineView.text.className = textClass || \"\";\n }\n\n function updateLineGutter(cm, lineView, lineN, dims) {\n if (lineView.gutter) {\n lineView.node.removeChild(lineView.gutter);\n lineView.gutter = null;\n }\n var markers = lineView.line.gutterMarkers;\n if (cm.options.lineNumbers || markers) {\n var wrap = ensureLineWrapped(lineView);\n var gutterWrap = lineView.gutter =\n wrap.insertBefore(elt(\"div\", null, \"CodeMirror-gutter-wrapper\", \"left: \" +\n (cm.options.fixedGutter ? dims.fixedPos : -dims.gutterTotalWidth) +\n \"px; width: \" + dims.gutterTotalWidth + \"px\"),\n lineView.text);\n if (lineView.line.gutterClass)\n gutterWrap.className += \" \" + lineView.line.gutterClass;\n if (cm.options.lineNumbers && (!markers || !markers[\"CodeMirror-linenumbers\"]))\n lineView.lineNumber = gutterWrap.appendChild(\n elt(\"div\", lineNumberFor(cm.options, lineN),\n \"CodeMirror-linenumber CodeMirror-gutter-elt\",\n \"left: \" + dims.gutterLeft[\"CodeMirror-linenumbers\"] + \"px; width: \"\n + cm.display.lineNumInnerWidth + \"px\"));\n if (markers) for (var k = 0; k < cm.options.gutters.length; ++k) {\n var id = cm.options.gutters[k], found = markers.hasOwnProperty(id) && markers[id];\n if (found)\n gutterWrap.appendChild(elt(\"div\", [found], \"CodeMirror-gutter-elt\", \"left: \" +\n dims.gutterLeft[id] + \"px; width: \" + dims.gutterWidth[id] + \"px\"));\n }\n }\n }\n\n function updateLineWidgets(lineView, dims) {\n if (lineView.alignable) lineView.alignable = null;\n for (var node = lineView.node.firstChild, next; node; node = next) {\n var next = node.nextSibling;\n if (node.className == \"CodeMirror-linewidget\")\n lineView.node.removeChild(node);\n }\n insertLineWidgets(lineView, dims);\n }\n\n // Build a line's DOM representation from scratch\n function buildLineElement(cm, lineView, lineN, dims) {\n var built = getLineContent(cm, lineView);\n lineView.text = lineView.node = built.pre;\n if (built.bgClass) lineView.bgClass = built.bgClass;\n if (built.textClass) lineView.textClass = built.textClass;\n\n updateLineClasses(lineView);\n updateLineGutter(cm, lineView, lineN, dims);\n insertLineWidgets(lineView, dims);\n return lineView.node;\n }\n\n // A lineView may contain multiple logical lines (when merged by\n // collapsed spans). The widgets for all of them need to be drawn.\n function insertLineWidgets(lineView, dims) {\n insertLineWidgetsFor(lineView.line, lineView, dims, true);\n if (lineView.rest) for (var i = 0; i < lineView.rest.length; i++)\n insertLineWidgetsFor(lineView.rest[i], lineView, dims, false);\n }\n\n function insertLineWidgetsFor(line, lineView, dims, allowAbove) {\n if (!line.widgets) return;\n var wrap = ensureLineWrapped(lineView);\n for (var i = 0, ws = line.widgets; i < ws.length; ++i) {\n var widget = ws[i], node = elt(\"div\", [widget.node], \"CodeMirror-linewidget\");\n if (!widget.handleMouseEvents) node.setAttribute(\"cm-ignore-events\", \"true\");\n positionLineWidget(widget, node, lineView, dims);\n if (allowAbove && widget.above)\n wrap.insertBefore(node, lineView.gutter || lineView.text);\n else\n wrap.appendChild(node);\n signalLater(widget, \"redraw\");\n }\n }\n\n function positionLineWidget(widget, node, lineView, dims) {\n if (widget.noHScroll) {\n (lineView.alignable || (lineView.alignable = [])).push(node);\n var width = dims.wrapperWidth;\n node.style.left = dims.fixedPos + \"px\";\n if (!widget.coverGutter) {\n width -= dims.gutterTotalWidth;\n node.style.paddingLeft = dims.gutterTotalWidth + \"px\";\n }\n node.style.width = width + \"px\";\n }\n if (widget.coverGutter) {\n node.style.zIndex = 5;\n node.style.position = \"relative\";\n if (!widget.noHScroll) node.style.marginLeft = -dims.gutterTotalWidth + \"px\";\n }\n }\n\n // POSITION OBJECT\n\n // A Pos instance represents a position within the text.\n var Pos = CodeMirror.Pos = function(line, ch) {\n if (!(this instanceof Pos)) return new Pos(line, ch);\n this.line = line; this.ch = ch;\n };\n\n // Compare two positions, return 0 if they are the same, a negative\n // number when a is less, and a positive number otherwise.\n var cmp = CodeMirror.cmpPos = function(a, b) { return a.line - b.line || a.ch - b.ch; };\n\n function copyPos(x) {return Pos(x.line, x.ch);}\n function maxPos(a, b) { return cmp(a, b) < 0 ? b : a; }\n function minPos(a, b) { return cmp(a, b) < 0 ? a : b; }\n\n // SELECTION / CURSOR\n\n // Selection objects are immutable. A new one is created every time\n // the selection changes. A selection is one or more non-overlapping\n // (and non-touching) ranges, sorted, and an integer that indicates\n // which one is the primary selection (the one that's scrolled into\n // view, that getCursor returns, etc).\n function Selection(ranges, primIndex) {\n this.ranges = ranges;\n this.primIndex = primIndex;\n }\n\n Selection.prototype = {\n primary: function() { return this.ranges[this.primIndex]; },\n equals: function(other) {\n if (other == this) return true;\n if (other.primIndex != this.primIndex || other.ranges.length != this.ranges.length) return false;\n for (var i = 0; i < this.ranges.length; i++) {\n var here = this.ranges[i], there = other.ranges[i];\n if (cmp(here.anchor, there.anchor) != 0 || cmp(here.head, there.head) != 0) return false;\n }\n return true;\n },\n deepCopy: function() {\n for (var out = [], i = 0; i < this.ranges.length; i++)\n out[i] = new Range(copyPos(this.ranges[i].anchor), copyPos(this.ranges[i].head));\n return new Selection(out, this.primIndex);\n },\n somethingSelected: function() {\n for (var i = 0; i < this.ranges.length; i++)\n if (!this.ranges[i].empty()) return true;\n return false;\n },\n contains: function(pos, end) {\n if (!end) end = pos;\n for (var i = 0; i < this.ranges.length; i++) {\n var range = this.ranges[i];\n if (cmp(end, range.from()) >= 0 && cmp(pos, range.to()) <= 0)\n return i;\n }\n return -1;\n }\n };\n\n function Range(anchor, head) {\n this.anchor = anchor; this.head = head;\n }\n\n Range.prototype = {\n from: function() { return minPos(this.anchor, this.head); },\n to: function() { return maxPos(this.anchor, this.head); },\n empty: function() {\n return this.head.line == this.anchor.line && this.head.ch == this.anchor.ch;\n }\n };\n\n // Take an unsorted, potentially overlapping set of ranges, and\n // build a selection out of it. 'Consumes' ranges array (modifying\n // it).\n function normalizeSelection(ranges, primIndex) {\n var prim = ranges[primIndex];\n ranges.sort(function(a, b) { return cmp(a.from(), b.from()); });\n primIndex = indexOf(ranges, prim);\n for (var i = 1; i < ranges.length; i++) {\n var cur = ranges[i], prev = ranges[i - 1];\n if (cmp(prev.to(), cur.from()) >= 0) {\n var from = minPos(prev.from(), cur.from()), to = maxPos(prev.to(), cur.to());\n var inv = prev.empty() ? cur.from() == cur.head : prev.from() == prev.head;\n if (i <= primIndex) --primIndex;\n ranges.splice(--i, 2, new Range(inv ? to : from, inv ? from : to));\n }\n }\n return new Selection(ranges, primIndex);\n }\n\n function simpleSelection(anchor, head) {\n return new Selection([new Range(anchor, head || anchor)], 0);\n }\n\n // Most of the external API clips given positions to make sure they\n // actually exist within the document.\n function clipLine(doc, n) {return Math.max(doc.first, Math.min(n, doc.first + doc.size - 1));}\n function clipPos(doc, pos) {\n if (pos.line < doc.first) return Pos(doc.first, 0);\n var last = doc.first + doc.size - 1;\n if (pos.line > last) return Pos(last, getLine(doc, last).text.length);\n return clipToLen(pos, getLine(doc, pos.line).text.length);\n }\n function clipToLen(pos, linelen) {\n var ch = pos.ch;\n if (ch == null || ch > linelen) return Pos(pos.line, linelen);\n else if (ch < 0) return Pos(pos.line, 0);\n else return pos;\n }\n function isLine(doc, l) {return l >= doc.first && l < doc.first + doc.size;}\n function clipPosArray(doc, array) {\n for (var out = [], i = 0; i < array.length; i++) out[i] = clipPos(doc, array[i]);\n return out;\n }\n\n // SELECTION UPDATES\n\n // The 'scroll' parameter given to many of these indicated whether\n // the new cursor position should be scrolled into view after\n // modifying the selection.\n\n // If shift is held or the extend flag is set, extends a range to\n // include a given position (and optionally a second position).\n // Otherwise, simply returns the range between the given positions.\n // Used for cursor motion and such.\n function extendRange(doc, range, head, other) {\n if (doc.cm && doc.cm.display.shift || doc.extend) {\n var anchor = range.anchor;\n if (other) {\n var posBefore = cmp(head, anchor) < 0;\n if (posBefore != (cmp(other, anchor) < 0)) {\n anchor = head;\n head = other;\n } else if (posBefore != (cmp(head, other) < 0)) {\n head = other;\n }\n }\n return new Range(anchor, head);\n } else {\n return new Range(other || head, head);\n }\n }\n\n // Extend the primary selection range, discard the rest.\n function extendSelection(doc, head, other, options) {\n setSelection(doc, new Selection([extendRange(doc, doc.sel.primary(), head, other)], 0), options);\n }\n\n // Extend all selections (pos is an array of selections with length\n // equal the number of selections)\n function extendSelections(doc, heads, options) {\n for (var out = [], i = 0; i < doc.sel.ranges.length; i++)\n out[i] = extendRange(doc, doc.sel.ranges[i], heads[i], null);\n var newSel = normalizeSelection(out, doc.sel.primIndex);\n setSelection(doc, newSel, options);\n }\n\n // Updates a single range in the selection.\n function replaceOneSelection(doc, i, range, options) {\n var ranges = doc.sel.ranges.slice(0);\n ranges[i] = range;\n setSelection(doc, normalizeSelection(ranges, doc.sel.primIndex), options);\n }\n\n // Reset the selection to a single range.\n function setSimpleSelection(doc, anchor, head, options) {\n setSelection(doc, simpleSelection(anchor, head), options);\n }\n\n // Give beforeSelectionChange handlers a change to influence a\n // selection update.\n function filterSelectionChange(doc, sel) {\n var obj = {\n ranges: sel.ranges,\n update: function(ranges) {\n this.ranges = [];\n for (var i = 0; i < ranges.length; i++)\n this.ranges[i] = new Range(clipPos(doc, ranges[i].anchor),\n clipPos(doc, ranges[i].head));\n }\n };\n signal(doc, \"beforeSelectionChange\", doc, obj);\n if (doc.cm) signal(doc.cm, \"beforeSelectionChange\", doc.cm, obj);\n if (obj.ranges != sel.ranges) return normalizeSelection(obj.ranges, obj.ranges.length - 1);\n else return sel;\n }\n\n function setSelectionReplaceHistory(doc, sel, options) {\n var done = doc.history.done, last = lst(done);\n if (last && last.ranges) {\n done[done.length - 1] = sel;\n setSelectionNoUndo(doc, sel, options);\n } else {\n setSelection(doc, sel, options);\n }\n }\n\n // Set a new selection.\n function setSelection(doc, sel, options) {\n setSelectionNoUndo(doc, sel, options);\n addSelectionToHistory(doc, doc.sel, doc.cm ? doc.cm.curOp.id : NaN, options);\n }\n\n function setSelectionNoUndo(doc, sel, options) {\n if (hasHandler(doc, \"beforeSelectionChange\") || doc.cm && hasHandler(doc.cm, \"beforeSelectionChange\"))\n sel = filterSelectionChange(doc, sel);\n\n var bias = options && options.bias ||\n (cmp(sel.primary().head, doc.sel.primary().head) < 0 ? -1 : 1);\n setSelectionInner(doc, skipAtomicInSelection(doc, sel, bias, true));\n\n if (!(options && options.scroll === false) && doc.cm)\n ensureCursorVisible(doc.cm);\n }\n\n function setSelectionInner(doc, sel) {\n if (sel.equals(doc.sel)) return;\n\n doc.sel = sel;\n\n if (doc.cm) {\n doc.cm.curOp.updateInput = doc.cm.curOp.selectionChanged = true;\n signalCursorActivity(doc.cm);\n }\n signalLater(doc, \"cursorActivity\", doc);\n }\n\n // Verify that the selection does not partially select any atomic\n // marked ranges.\n function reCheckSelection(doc) {\n setSelectionInner(doc, skipAtomicInSelection(doc, doc.sel, null, false), sel_dontScroll);\n }\n\n // Return a selection that does not partially select any atomic\n // ranges.\n function skipAtomicInSelection(doc, sel, bias, mayClear) {\n var out;\n for (var i = 0; i < sel.ranges.length; i++) {\n var range = sel.ranges[i];\n var newAnchor = skipAtomic(doc, range.anchor, bias, mayClear);\n var newHead = skipAtomic(doc, range.head, bias, mayClear);\n if (out || newAnchor != range.anchor || newHead != range.head) {\n if (!out) out = sel.ranges.slice(0, i);\n out[i] = new Range(newAnchor, newHead);\n }\n }\n return out ? normalizeSelection(out, sel.primIndex) : sel;\n }\n\n // Ensure a given position is not inside an atomic range.\n function skipAtomic(doc, pos, bias, mayClear) {\n var flipped = false, curPos = pos;\n var dir = bias || 1;\n doc.cantEdit = false;\n search: for (;;) {\n var line = getLine(doc, curPos.line);\n if (line.markedSpans) {\n for (var i = 0; i < line.markedSpans.length; ++i) {\n var sp = line.markedSpans[i], m = sp.marker;\n if ((sp.from == null || (m.inclusiveLeft ? sp.from <= curPos.ch : sp.from < curPos.ch)) &&\n (sp.to == null || (m.inclusiveRight ? sp.to >= curPos.ch : sp.to > curPos.ch))) {\n if (mayClear) {\n signal(m, \"beforeCursorEnter\");\n if (m.explicitlyCleared) {\n if (!line.markedSpans) break;\n else {--i; continue;}\n }\n }\n if (!m.atomic) continue;\n var newPos = m.find(dir < 0 ? -1 : 1);\n if (cmp(newPos, curPos) == 0) {\n newPos.ch += dir;\n if (newPos.ch < 0) {\n if (newPos.line > doc.first) newPos = clipPos(doc, Pos(newPos.line - 1));\n else newPos = null;\n } else if (newPos.ch > line.text.length) {\n if (newPos.line < doc.first + doc.size - 1) newPos = Pos(newPos.line + 1, 0);\n else newPos = null;\n }\n if (!newPos) {\n if (flipped) {\n // Driven in a corner -- no valid cursor position found at all\n // -- try again *with* clearing, if we didn't already\n if (!mayClear) return skipAtomic(doc, pos, bias, true);\n // Otherwise, turn off editing until further notice, and return the start of the doc\n doc.cantEdit = true;\n return Pos(doc.first, 0);\n }\n flipped = true; newPos = pos; dir = -dir;\n }\n }\n curPos = newPos;\n continue search;\n }\n }\n }\n return curPos;\n }\n }\n\n // SELECTION DRAWING\n\n // Redraw the selection and/or cursor\n function drawSelection(cm) {\n var display = cm.display, doc = cm.doc, result = {};\n var curFragment = result.cursors = document.createDocumentFragment();\n var selFragment = result.selection = document.createDocumentFragment();\n\n for (var i = 0; i < doc.sel.ranges.length; i++) {\n var range = doc.sel.ranges[i];\n var collapsed = range.empty();\n if (collapsed || cm.options.showCursorWhenSelecting)\n drawSelectionCursor(cm, range, curFragment);\n if (!collapsed)\n drawSelectionRange(cm, range, selFragment);\n }\n\n // Move the hidden textarea near the cursor to prevent scrolling artifacts\n if (cm.options.moveInputWithCursor) {\n var headPos = cursorCoords(cm, doc.sel.primary().head, \"div\");\n var wrapOff = display.wrapper.getBoundingClientRect(), lineOff = display.lineDiv.getBoundingClientRect();\n result.teTop = Math.max(0, Math.min(display.wrapper.clientHeight - 10,\n headPos.top + lineOff.top - wrapOff.top));\n result.teLeft = Math.max(0, Math.min(display.wrapper.clientWidth - 10,\n headPos.left + lineOff.left - wrapOff.left));\n }\n\n return result;\n }\n\n function showSelection(cm, drawn) {\n removeChildrenAndAdd(cm.display.cursorDiv, drawn.cursors);\n removeChildrenAndAdd(cm.display.selectionDiv, drawn.selection);\n if (drawn.teTop != null) {\n cm.display.inputDiv.style.top = drawn.teTop + \"px\";\n cm.display.inputDiv.style.left = drawn.teLeft + \"px\";\n }\n }\n\n function updateSelection(cm) {\n showSelection(cm, drawSelection(cm));\n }\n\n // Draws a cursor for the given range\n function drawSelectionCursor(cm, range, output) {\n var pos = cursorCoords(cm, range.head, \"div\", null, null, !cm.options.singleCursorHeightPerLine);\n\n var cursor = output.appendChild(elt(\"div\", \"\\u00a0\", \"CodeMirror-cursor\"));\n cursor.style.left = pos.left + \"px\";\n cursor.style.top = pos.top + \"px\";\n cursor.style.height = Math.max(0, pos.bottom - pos.top) * cm.options.cursorHeight + \"px\";\n\n if (pos.other) {\n // Secondary cursor, shown when on a 'jump' in bi-directional text\n var otherCursor = output.appendChild(elt(\"div\", \"\\u00a0\", \"CodeMirror-cursor CodeMirror-secondarycursor\"));\n otherCursor.style.display = \"\";\n otherCursor.style.left = pos.other.left + \"px\";\n otherCursor.style.top = pos.other.top + \"px\";\n otherCursor.style.height = (pos.other.bottom - pos.other.top) * .85 + \"px\";\n }\n }\n\n // Draws the given range as a highlighted selection\n function drawSelectionRange(cm, range, output) {\n var display = cm.display, doc = cm.doc;\n var fragment = document.createDocumentFragment();\n var padding = paddingH(cm.display), leftSide = padding.left;\n var rightSide = Math.max(display.sizerWidth, displayWidth(cm) - display.sizer.offsetLeft) - padding.right;\n\n function add(left, top, width, bottom) {\n if (top < 0) top = 0;\n top = Math.round(top);\n bottom = Math.round(bottom);\n fragment.appendChild(elt(\"div\", null, \"CodeMirror-selected\", \"position: absolute; left: \" + left +\n \"px; top: \" + top + \"px; width: \" + (width == null ? rightSide - left : width) +\n \"px; height: \" + (bottom - top) + \"px\"));\n }\n\n function drawForLine(line, fromArg, toArg) {\n var lineObj = getLine(doc, line);\n var lineLen = lineObj.text.length;\n var start, end;\n function coords(ch, bias) {\n return charCoords(cm, Pos(line, ch), \"div\", lineObj, bias);\n }\n\n iterateBidiSections(getOrder(lineObj), fromArg || 0, toArg == null ? lineLen : toArg, function(from, to, dir) {\n var leftPos = coords(from, \"left\"), rightPos, left, right;\n if (from == to) {\n rightPos = leftPos;\n left = right = leftPos.left;\n } else {\n rightPos = coords(to - 1, \"right\");\n if (dir == \"rtl\") { var tmp = leftPos; leftPos = rightPos; rightPos = tmp; }\n left = leftPos.left;\n right = rightPos.right;\n }\n if (fromArg == null && from == 0) left = leftSide;\n if (rightPos.top - leftPos.top > 3) { // Different lines, draw top part\n add(left, leftPos.top, null, leftPos.bottom);\n left = leftSide;\n if (leftPos.bottom < rightPos.top) add(left, leftPos.bottom, null, rightPos.top);\n }\n if (toArg == null && to == lineLen) right = rightSide;\n if (!start || leftPos.top < start.top || leftPos.top == start.top && leftPos.left < start.left)\n start = leftPos;\n if (!end || rightPos.bottom > end.bottom || rightPos.bottom == end.bottom && rightPos.right > end.right)\n end = rightPos;\n if (left < leftSide + 1) left = leftSide;\n add(left, rightPos.top, right - left, rightPos.bottom);\n });\n return {start: start, end: end};\n }\n\n var sFrom = range.from(), sTo = range.to();\n if (sFrom.line == sTo.line) {\n drawForLine(sFrom.line, sFrom.ch, sTo.ch);\n } else {\n var fromLine = getLine(doc, sFrom.line), toLine = getLine(doc, sTo.line);\n var singleVLine = visualLine(fromLine) == visualLine(toLine);\n var leftEnd = drawForLine(sFrom.line, sFrom.ch, singleVLine ? fromLine.text.length + 1 : null).end;\n var rightStart = drawForLine(sTo.line, singleVLine ? 0 : null, sTo.ch).start;\n if (singleVLine) {\n if (leftEnd.top < rightStart.top - 2) {\n add(leftEnd.right, leftEnd.top, null, leftEnd.bottom);\n add(leftSide, rightStart.top, rightStart.left, rightStart.bottom);\n } else {\n add(leftEnd.right, leftEnd.top, rightStart.left - leftEnd.right, leftEnd.bottom);\n }\n }\n if (leftEnd.bottom < rightStart.top)\n add(leftSide, leftEnd.bottom, null, rightStart.top);\n }\n\n output.appendChild(fragment);\n }\n\n // Cursor-blinking\n function restartBlink(cm) {\n if (!cm.state.focused) return;\n var display = cm.display;\n clearInterval(display.blinker);\n var on = true;\n display.cursorDiv.style.visibility = \"\";\n if (cm.options.cursorBlinkRate > 0)\n display.blinker = setInterval(function() {\n display.cursorDiv.style.visibility = (on = !on) ? \"\" : \"hidden\";\n }, cm.options.cursorBlinkRate);\n else if (cm.options.cursorBlinkRate < 0)\n display.cursorDiv.style.visibility = \"hidden\";\n }\n\n // HIGHLIGHT WORKER\n\n function startWorker(cm, time) {\n if (cm.doc.mode.startState && cm.doc.frontier < cm.display.viewTo)\n cm.state.highlight.set(time, bind(highlightWorker, cm));\n }\n\n function highlightWorker(cm) {\n var doc = cm.doc;\n if (doc.frontier < doc.first) doc.frontier = doc.first;\n if (doc.frontier >= cm.display.viewTo) return;\n var end = +new Date + cm.options.workTime;\n var state = copyState(doc.mode, getStateBefore(cm, doc.frontier));\n var changedLines = [];\n\n doc.iter(doc.frontier, Math.min(doc.first + doc.size, cm.display.viewTo + 500), function(line) {\n if (doc.frontier >= cm.display.viewFrom) { // Visible\n var oldStyles = line.styles;\n var highlighted = highlightLine(cm, line, state, true);\n line.styles = highlighted.styles;\n var oldCls = line.styleClasses, newCls = highlighted.classes;\n if (newCls) line.styleClasses = newCls;\n else if (oldCls) line.styleClasses = null;\n var ischange = !oldStyles || oldStyles.length != line.styles.length ||\n oldCls != newCls && (!oldCls || !newCls || oldCls.bgClass != newCls.bgClass || oldCls.textClass != newCls.textClass);\n for (var i = 0; !ischange && i < oldStyles.length; ++i) ischange = oldStyles[i] != line.styles[i];\n if (ischange) changedLines.push(doc.frontier);\n line.stateAfter = copyState(doc.mode, state);\n } else {\n processLine(cm, line.text, state);\n line.stateAfter = doc.frontier % 5 == 0 ? copyState(doc.mode, state) : null;\n }\n ++doc.frontier;\n if (+new Date > end) {\n startWorker(cm, cm.options.workDelay);\n return true;\n }\n });\n if (changedLines.length) runInOp(cm, function() {\n for (var i = 0; i < changedLines.length; i++)\n regLineChange(cm, changedLines[i], \"text\");\n });\n }\n\n // Finds the line to start with when starting a parse. Tries to\n // find a line with a stateAfter, so that it can start with a\n // valid state. If that fails, it returns the line with the\n // smallest indentation, which tends to need the least context to\n // parse correctly.\n function findStartLine(cm, n, precise) {\n var minindent, minline, doc = cm.doc;\n var lim = precise ? -1 : n - (cm.doc.mode.innerMode ? 1000 : 100);\n for (var search = n; search > lim; --search) {\n if (search <= doc.first) return doc.first;\n var line = getLine(doc, search - 1);\n if (line.stateAfter && (!precise || search <= doc.frontier)) return search;\n var indented = countColumn(line.text, null, cm.options.tabSize);\n if (minline == null || minindent > indented) {\n minline = search - 1;\n minindent = indented;\n }\n }\n return minline;\n }\n\n function getStateBefore(cm, n, precise) {\n var doc = cm.doc, display = cm.display;\n if (!doc.mode.startState) return true;\n var pos = findStartLine(cm, n, precise), state = pos > doc.first && getLine(doc, pos-1).stateAfter;\n if (!state) state = startState(doc.mode);\n else state = copyState(doc.mode, state);\n doc.iter(pos, n, function(line) {\n processLine(cm, line.text, state);\n var save = pos == n - 1 || pos % 5 == 0 || pos >= display.viewFrom && pos < display.viewTo;\n line.stateAfter = save ? copyState(doc.mode, state) : null;\n ++pos;\n });\n if (precise) doc.frontier = pos;\n return state;\n }\n\n // POSITION MEASUREMENT\n\n function paddingTop(display) {return display.lineSpace.offsetTop;}\n function paddingVert(display) {return display.mover.offsetHeight - display.lineSpace.offsetHeight;}\n function paddingH(display) {\n if (display.cachedPaddingH) return display.cachedPaddingH;\n var e = removeChildrenAndAdd(display.measure, elt(\"pre\", \"x\"));\n var style = window.getComputedStyle ? window.getComputedStyle(e) : e.currentStyle;\n var data = {left: parseInt(style.paddingLeft), right: parseInt(style.paddingRight)};\n if (!isNaN(data.left) && !isNaN(data.right)) display.cachedPaddingH = data;\n return data;\n }\n\n function scrollGap(cm) { return scrollerGap - cm.display.nativeBarWidth; }\n function displayWidth(cm) {\n return cm.display.scroller.clientWidth - scrollGap(cm) - cm.display.barWidth;\n }\n function displayHeight(cm) {\n return cm.display.scroller.clientHeight - scrollGap(cm) - cm.display.barHeight;\n }\n\n // Ensure the lineView.wrapping.heights array is populated. This is\n // an array of bottom offsets for the lines that make up a drawn\n // line. When lineWrapping is on, there might be more than one\n // height.\n function ensureLineHeights(cm, lineView, rect) {\n var wrapping = cm.options.lineWrapping;\n var curWidth = wrapping && displayWidth(cm);\n if (!lineView.measure.heights || wrapping && lineView.measure.width != curWidth) {\n var heights = lineView.measure.heights = [];\n if (wrapping) {\n lineView.measure.width = curWidth;\n var rects = lineView.text.firstChild.getClientRects();\n for (var i = 0; i < rects.length - 1; i++) {\n var cur = rects[i], next = rects[i + 1];\n if (Math.abs(cur.bottom - next.bottom) > 2)\n heights.push((cur.bottom + next.top) / 2 - rect.top);\n }\n }\n heights.push(rect.bottom - rect.top);\n }\n }\n\n // Find a line map (mapping character offsets to text nodes) and a\n // measurement cache for the given line number. (A line view might\n // contain multiple lines when collapsed ranges are present.)\n function mapFromLineView(lineView, line, lineN) {\n if (lineView.line == line)\n return {map: lineView.measure.map, cache: lineView.measure.cache};\n for (var i = 0; i < lineView.rest.length; i++)\n if (lineView.rest[i] == line)\n return {map: lineView.measure.maps[i], cache: lineView.measure.caches[i]};\n for (var i = 0; i < lineView.rest.length; i++)\n if (lineNo(lineView.rest[i]) > lineN)\n return {map: lineView.measure.maps[i], cache: lineView.measure.caches[i], before: true};\n }\n\n // Render a line into the hidden node display.externalMeasured. Used\n // when measurement is needed for a line that's not in the viewport.\n function updateExternalMeasurement(cm, line) {\n line = visualLine(line);\n var lineN = lineNo(line);\n var view = cm.display.externalMeasured = new LineView(cm.doc, line, lineN);\n view.lineN = lineN;\n var built = view.built = buildLineContent(cm, view);\n view.text = built.pre;\n removeChildrenAndAdd(cm.display.lineMeasure, built.pre);\n return view;\n }\n\n // Get a {top, bottom, left, right} box (in line-local coordinates)\n // for a given character.\n function measureChar(cm, line, ch, bias) {\n return measureCharPrepared(cm, prepareMeasureForLine(cm, line), ch, bias);\n }\n\n // Find a line view that corresponds to the given line number.\n function findViewForLine(cm, lineN) {\n if (lineN >= cm.display.viewFrom && lineN < cm.display.viewTo)\n return cm.display.view[findViewIndex(cm, lineN)];\n var ext = cm.display.externalMeasured;\n if (ext && lineN >= ext.lineN && lineN < ext.lineN + ext.size)\n return ext;\n }\n\n // Measurement can be split in two steps, the set-up work that\n // applies to the whole line, and the measurement of the actual\n // character. Functions like coordsChar, that need to do a lot of\n // measurements in a row, can thus ensure that the set-up work is\n // only done once.\n function prepareMeasureForLine(cm, line) {\n var lineN = lineNo(line);\n var view = findViewForLine(cm, lineN);\n if (view && !view.text)\n view = null;\n else if (view && view.changes)\n updateLineForChanges(cm, view, lineN, getDimensions(cm));\n if (!view)\n view = updateExternalMeasurement(cm, line);\n\n var info = mapFromLineView(view, line, lineN);\n return {\n line: line, view: view, rect: null,\n map: info.map, cache: info.cache, before: info.before,\n hasHeights: false\n };\n }\n\n // Given a prepared measurement object, measures the position of an\n // actual character (or fetches it from the cache).\n function measureCharPrepared(cm, prepared, ch, bias, varHeight) {\n if (prepared.before) ch = -1;\n var key = ch + (bias || \"\"), found;\n if (prepared.cache.hasOwnProperty(key)) {\n found = prepared.cache[key];\n } else {\n if (!prepared.rect)\n prepared.rect = prepared.view.text.getBoundingClientRect();\n if (!prepared.hasHeights) {\n ensureLineHeights(cm, prepared.view, prepared.rect);\n prepared.hasHeights = true;\n }\n found = measureCharInner(cm, prepared, ch, bias);\n if (!found.bogus) prepared.cache[key] = found;\n }\n return {left: found.left, right: found.right,\n top: varHeight ? found.rtop : found.top,\n bottom: varHeight ? found.rbottom : found.bottom};\n }\n\n var nullRect = {left: 0, right: 0, top: 0, bottom: 0};\n\n function measureCharInner(cm, prepared, ch, bias) {\n var map = prepared.map;\n\n var node, start, end, collapse;\n // First, search the line map for the text node corresponding to,\n // or closest to, the target character.\n for (var i = 0; i < map.length; i += 3) {\n var mStart = map[i], mEnd = map[i + 1];\n if (ch < mStart) {\n start = 0; end = 1;\n collapse = \"left\";\n } else if (ch < mEnd) {\n start = ch - mStart;\n end = start + 1;\n } else if (i == map.length - 3 || ch == mEnd && map[i + 3] > ch) {\n end = mEnd - mStart;\n start = end - 1;\n if (ch >= mEnd) collapse = \"right\";\n }\n if (start != null) {\n node = map[i + 2];\n if (mStart == mEnd && bias == (node.insertLeft ? \"left\" : \"right\"))\n collapse = bias;\n if (bias == \"left\" && start == 0)\n while (i && map[i - 2] == map[i - 3] && map[i - 1].insertLeft) {\n node = map[(i -= 3) + 2];\n collapse = \"left\";\n }\n if (bias == \"right\" && start == mEnd - mStart)\n while (i < map.length - 3 && map[i + 3] == map[i + 4] && !map[i + 5].insertLeft) {\n node = map[(i += 3) + 2];\n collapse = \"right\";\n }\n break;\n }\n }\n\n var rect;\n if (node.nodeType == 3) { // If it is a text node, use a range to retrieve the coordinates.\n for (var i = 0; i < 4; i++) { // Retry a maximum of 4 times when nonsense rectangles are returned\n while (start && isExtendingChar(prepared.line.text.charAt(mStart + start))) --start;\n while (mStart + end < mEnd && isExtendingChar(prepared.line.text.charAt(mStart + end))) ++end;\n if (ie && ie_version < 9 && start == 0 && end == mEnd - mStart) {\n rect = node.parentNode.getBoundingClientRect();\n } else if (ie && cm.options.lineWrapping) {\n var rects = range(node, start, end).getClientRects();\n if (rects.length)\n rect = rects[bias == \"right\" ? rects.length - 1 : 0];\n else\n rect = nullRect;\n } else {\n rect = range(node, start, end).getBoundingClientRect() || nullRect;\n }\n if (rect.left || rect.right || start == 0) break;\n end = start;\n start = start - 1;\n collapse = \"right\";\n }\n if (ie && ie_version < 11) rect = maybeUpdateRectForZooming(cm.display.measure, rect);\n } else { // If it is a widget, simply get the box for the whole widget.\n if (start > 0) collapse = bias = \"right\";\n var rects;\n if (cm.options.lineWrapping && (rects = node.getClientRects()).length > 1)\n rect = rects[bias == \"right\" ? rects.length - 1 : 0];\n else\n rect = node.getBoundingClientRect();\n }\n if (ie && ie_version < 9 && !start && (!rect || !rect.left && !rect.right)) {\n var rSpan = node.parentNode.getClientRects()[0];\n if (rSpan)\n rect = {left: rSpan.left, right: rSpan.left + charWidth(cm.display), top: rSpan.top, bottom: rSpan.bottom};\n else\n rect = nullRect;\n }\n\n var rtop = rect.top - prepared.rect.top, rbot = rect.bottom - prepared.rect.top;\n var mid = (rtop + rbot) / 2;\n var heights = prepared.view.measure.heights;\n for (var i = 0; i < heights.length - 1; i++)\n if (mid < heights[i]) break;\n var top = i ? heights[i - 1] : 0, bot = heights[i];\n var result = {left: (collapse == \"right\" ? rect.right : rect.left) - prepared.rect.left,\n right: (collapse == \"left\" ? rect.left : rect.right) - prepared.rect.left,\n top: top, bottom: bot};\n if (!rect.left && !rect.right) result.bogus = true;\n if (!cm.options.singleCursorHeightPerLine) { result.rtop = rtop; result.rbottom = rbot; }\n\n return result;\n }\n\n // Work around problem with bounding client rects on ranges being\n // returned incorrectly when zoomed on IE10 and below.\n function maybeUpdateRectForZooming(measure, rect) {\n if (!window.screen || screen.logicalXDPI == null ||\n screen.logicalXDPI == screen.deviceXDPI || !hasBadZoomedRects(measure))\n return rect;\n var scaleX = screen.logicalXDPI / screen.deviceXDPI;\n var scaleY = screen.logicalYDPI / screen.deviceYDPI;\n return {left: rect.left * scaleX, right: rect.right * scaleX,\n top: rect.top * scaleY, bottom: rect.bottom * scaleY};\n }\n\n function clearLineMeasurementCacheFor(lineView) {\n if (lineView.measure) {\n lineView.measure.cache = {};\n lineView.measure.heights = null;\n if (lineView.rest) for (var i = 0; i < lineView.rest.length; i++)\n lineView.measure.caches[i] = {};\n }\n }\n\n function clearLineMeasurementCache(cm) {\n cm.display.externalMeasure = null;\n removeChildren(cm.display.lineMeasure);\n for (var i = 0; i < cm.display.view.length; i++)\n clearLineMeasurementCacheFor(cm.display.view[i]);\n }\n\n function clearCaches(cm) {\n clearLineMeasurementCache(cm);\n cm.display.cachedCharWidth = cm.display.cachedTextHeight = cm.display.cachedPaddingH = null;\n if (!cm.options.lineWrapping) cm.display.maxLineChanged = true;\n cm.display.lineNumChars = null;\n }\n\n function pageScrollX() { return window.pageXOffset || (document.documentElement || document.body).scrollLeft; }\n function pageScrollY() { return window.pageYOffset || (document.documentElement || document.body).scrollTop; }\n\n // Converts a {top, bottom, left, right} box from line-local\n // coordinates into another coordinate system. Context may be one of\n // \"line\", \"div\" (display.lineDiv), \"local\"/null (editor), \"window\",\n // or \"page\".\n function intoCoordSystem(cm, lineObj, rect, context) {\n if (lineObj.widgets) for (var i = 0; i < lineObj.widgets.length; ++i) if (lineObj.widgets[i].above) {\n var size = widgetHeight(lineObj.widgets[i]);\n rect.top += size; rect.bottom += size;\n }\n if (context == \"line\") return rect;\n if (!context) context = \"local\";\n var yOff = heightAtLine(lineObj);\n if (context == \"local\") yOff += paddingTop(cm.display);\n else yOff -= cm.display.viewOffset;\n if (context == \"page\" || context == \"window\") {\n var lOff = cm.display.lineSpace.getBoundingClientRect();\n yOff += lOff.top + (context == \"window\" ? 0 : pageScrollY());\n var xOff = lOff.left + (context == \"window\" ? 0 : pageScrollX());\n rect.left += xOff; rect.right += xOff;\n }\n rect.top += yOff; rect.bottom += yOff;\n return rect;\n }\n\n // Coverts a box from \"div\" coords to another coordinate system.\n // Context may be \"window\", \"page\", \"div\", or \"local\"/null.\n function fromCoordSystem(cm, coords, context) {\n if (context == \"div\") return coords;\n var left = coords.left, top = coords.top;\n // First move into \"page\" coordinate system\n if (context == \"page\") {\n left -= pageScrollX();\n top -= pageScrollY();\n } else if (context == \"local\" || !context) {\n var localBox = cm.display.sizer.getBoundingClientRect();\n left += localBox.left;\n top += localBox.top;\n }\n\n var lineSpaceBox = cm.display.lineSpace.getBoundingClientRect();\n return {left: left - lineSpaceBox.left, top: top - lineSpaceBox.top};\n }\n\n function charCoords(cm, pos, context, lineObj, bias) {\n if (!lineObj) lineObj = getLine(cm.doc, pos.line);\n return intoCoordSystem(cm, lineObj, measureChar(cm, lineObj, pos.ch, bias), context);\n }\n\n // Returns a box for a given cursor position, which may have an\n // 'other' property containing the position of the secondary cursor\n // on a bidi boundary.\n function cursorCoords(cm, pos, context, lineObj, preparedMeasure, varHeight) {\n lineObj = lineObj || getLine(cm.doc, pos.line);\n if (!preparedMeasure) preparedMeasure = prepareMeasureForLine(cm, lineObj);\n function get(ch, right) {\n var m = measureCharPrepared(cm, preparedMeasure, ch, right ? \"right\" : \"left\", varHeight);\n if (right) m.left = m.right; else m.right = m.left;\n return intoCoordSystem(cm, lineObj, m, context);\n }\n function getBidi(ch, partPos) {\n var part = order[partPos], right = part.level % 2;\n if (ch == bidiLeft(part) && partPos && part.level < order[partPos - 1].level) {\n part = order[--partPos];\n ch = bidiRight(part) - (part.level % 2 ? 0 : 1);\n right = true;\n } else if (ch == bidiRight(part) && partPos < order.length - 1 && part.level < order[partPos + 1].level) {\n part = order[++partPos];\n ch = bidiLeft(part) - part.level % 2;\n right = false;\n }\n if (right && ch == part.to && ch > part.from) return get(ch - 1);\n return get(ch, right);\n }\n var order = getOrder(lineObj), ch = pos.ch;\n if (!order) return get(ch);\n var partPos = getBidiPartAt(order, ch);\n var val = getBidi(ch, partPos);\n if (bidiOther != null) val.other = getBidi(ch, bidiOther);\n return val;\n }\n\n // Used to cheaply estimate the coordinates for a position. Used for\n // intermediate scroll updates.\n function estimateCoords(cm, pos) {\n var left = 0, pos = clipPos(cm.doc, pos);\n if (!cm.options.lineWrapping) left = charWidth(cm.display) * pos.ch;\n var lineObj = getLine(cm.doc, pos.line);\n var top = heightAtLine(lineObj) + paddingTop(cm.display);\n return {left: left, right: left, top: top, bottom: top + lineObj.height};\n }\n\n // Positions returned by coordsChar contain some extra information.\n // xRel is the relative x position of the input coordinates compared\n // to the found position (so xRel > 0 means the coordinates are to\n // the right of the character position, for example). When outside\n // is true, that means the coordinates lie outside the line's\n // vertical range.\n function PosWithInfo(line, ch, outside, xRel) {\n var pos = Pos(line, ch);\n pos.xRel = xRel;\n if (outside) pos.outside = true;\n return pos;\n }\n\n // Compute the character position closest to the given coordinates.\n // Input must be lineSpace-local (\"div\" coordinate system).\n function coordsChar(cm, x, y) {\n var doc = cm.doc;\n y += cm.display.viewOffset;\n if (y < 0) return PosWithInfo(doc.first, 0, true, -1);\n var lineN = lineAtHeight(doc, y), last = doc.first + doc.size - 1;\n if (lineN > last)\n return PosWithInfo(doc.first + doc.size - 1, getLine(doc, last).text.length, true, 1);\n if (x < 0) x = 0;\n\n var lineObj = getLine(doc, lineN);\n for (;;) {\n var found = coordsCharInner(cm, lineObj, lineN, x, y);\n var merged = collapsedSpanAtEnd(lineObj);\n var mergedPos = merged && merged.find(0, true);\n if (merged && (found.ch > mergedPos.from.ch || found.ch == mergedPos.from.ch && found.xRel > 0))\n lineN = lineNo(lineObj = mergedPos.to.line);\n else\n return found;\n }\n }\n\n function coordsCharInner(cm, lineObj, lineNo, x, y) {\n var innerOff = y - heightAtLine(lineObj);\n var wrongLine = false, adjust = 2 * cm.display.wrapper.clientWidth;\n var preparedMeasure = prepareMeasureForLine(cm, lineObj);\n\n function getX(ch) {\n var sp = cursorCoords(cm, Pos(lineNo, ch), \"line\", lineObj, preparedMeasure);\n wrongLine = true;\n if (innerOff > sp.bottom) return sp.left - adjust;\n else if (innerOff < sp.top) return sp.left + adjust;\n else wrongLine = false;\n return sp.left;\n }\n\n var bidi = getOrder(lineObj), dist = lineObj.text.length;\n var from = lineLeft(lineObj), to = lineRight(lineObj);\n var fromX = getX(from), fromOutside = wrongLine, toX = getX(to), toOutside = wrongLine;\n\n if (x > toX) return PosWithInfo(lineNo, to, toOutside, 1);\n // Do a binary search between these bounds.\n for (;;) {\n if (bidi ? to == from || to == moveVisually(lineObj, from, 1) : to - from <= 1) {\n var ch = x < fromX || x - fromX <= toX - x ? from : to;\n var xDiff = x - (ch == from ? fromX : toX);\n while (isExtendingChar(lineObj.text.charAt(ch))) ++ch;\n var pos = PosWithInfo(lineNo, ch, ch == from ? fromOutside : toOutside,\n xDiff < -1 ? -1 : xDiff > 1 ? 1 : 0);\n return pos;\n }\n var step = Math.ceil(dist / 2), middle = from + step;\n if (bidi) {\n middle = from;\n for (var i = 0; i < step; ++i) middle = moveVisually(lineObj, middle, 1);\n }\n var middleX = getX(middle);\n if (middleX > x) {to = middle; toX = middleX; if (toOutside = wrongLine) toX += 1000; dist = step;}\n else {from = middle; fromX = middleX; fromOutside = wrongLine; dist -= step;}\n }\n }\n\n var measureText;\n // Compute the default text height.\n function textHeight(display) {\n if (display.cachedTextHeight != null) return display.cachedTextHeight;\n if (measureText == null) {\n measureText = elt(\"pre\");\n // Measure a bunch of lines, for browsers that compute\n // fractional heights.\n for (var i = 0; i < 49; ++i) {\n measureText.appendChild(document.createTextNode(\"x\"));\n measureText.appendChild(elt(\"br\"));\n }\n measureText.appendChild(document.createTextNode(\"x\"));\n }\n removeChildrenAndAdd(display.measure, measureText);\n var height = measureText.offsetHeight / 50;\n if (height > 3) display.cachedTextHeight = height;\n removeChildren(display.measure);\n return height || 1;\n }\n\n // Compute the default character width.\n function charWidth(display) {\n if (display.cachedCharWidth != null) return display.cachedCharWidth;\n var anchor = elt(\"span\", \"xxxxxxxxxx\");\n var pre = elt(\"pre\", [anchor]);\n removeChildrenAndAdd(display.measure, pre);\n var rect = anchor.getBoundingClientRect(), width = (rect.right - rect.left) / 10;\n if (width > 2) display.cachedCharWidth = width;\n return width || 10;\n }\n\n // OPERATIONS\n\n // Operations are used to wrap a series of changes to the editor\n // state in such a way that each change won't have to update the\n // cursor and display (which would be awkward, slow, and\n // error-prone). Instead, display updates are batched and then all\n // combined and executed at once.\n\n var operationGroup = null;\n\n var nextOpId = 0;\n // Start a new operation.\n function startOperation(cm) {\n cm.curOp = {\n cm: cm,\n viewChanged: false, // Flag that indicates that lines might need to be redrawn\n startHeight: cm.doc.height, // Used to detect need to update scrollbar\n forceUpdate: false, // Used to force a redraw\n updateInput: null, // Whether to reset the input textarea\n typing: false, // Whether this reset should be careful to leave existing text (for compositing)\n changeObjs: null, // Accumulated changes, for firing change events\n cursorActivityHandlers: null, // Set of handlers to fire cursorActivity on\n cursorActivityCalled: 0, // Tracks which cursorActivity handlers have been called already\n selectionChanged: false, // Whether the selection needs to be redrawn\n updateMaxLine: false, // Set when the widest line needs to be determined anew\n scrollLeft: null, scrollTop: null, // Intermediate scroll position, not pushed to DOM yet\n scrollToPos: null, // Used to scroll to a specific position\n id: ++nextOpId // Unique ID\n };\n if (operationGroup) {\n operationGroup.ops.push(cm.curOp);\n } else {\n cm.curOp.ownsGroup = operationGroup = {\n ops: [cm.curOp],\n delayedCallbacks: []\n };\n }\n }\n\n function fireCallbacksForOps(group) {\n // Calls delayed callbacks and cursorActivity handlers until no\n // new ones appear\n var callbacks = group.delayedCallbacks, i = 0;\n do {\n for (; i < callbacks.length; i++)\n callbacks[i]();\n for (var j = 0; j < group.ops.length; j++) {\n var op = group.ops[j];\n if (op.cursorActivityHandlers)\n while (op.cursorActivityCalled < op.cursorActivityHandlers.length)\n op.cursorActivityHandlers[op.cursorActivityCalled++](op.cm);\n }\n } while (i < callbacks.length);\n }\n\n // Finish an operation, updating the display and signalling delayed events\n function endOperation(cm) {\n var op = cm.curOp, group = op.ownsGroup;\n if (!group) return;\n\n try { fireCallbacksForOps(group); }\n finally {\n operationGroup = null;\n for (var i = 0; i < group.ops.length; i++)\n group.ops[i].cm.curOp = null;\n endOperations(group);\n }\n }\n\n // The DOM updates done when an operation finishes are batched so\n // that the minimum number of relayouts are required.\n function endOperations(group) {\n var ops = group.ops;\n for (var i = 0; i < ops.length; i++) // Read DOM\n endOperation_R1(ops[i]);\n for (var i = 0; i < ops.length; i++) // Write DOM (maybe)\n endOperation_W1(ops[i]);\n for (var i = 0; i < ops.length; i++) // Read DOM\n endOperation_R2(ops[i]);\n for (var i = 0; i < ops.length; i++) // Write DOM (maybe)\n endOperation_W2(ops[i]);\n for (var i = 0; i < ops.length; i++) // Read DOM\n endOperation_finish(ops[i]);\n }\n\n function endOperation_R1(op) {\n var cm = op.cm, display = cm.display;\n maybeClipScrollbars(cm);\n if (op.updateMaxLine) findMaxLine(cm);\n\n op.mustUpdate = op.viewChanged || op.forceUpdate || op.scrollTop != null ||\n op.scrollToPos && (op.scrollToPos.from.line < display.viewFrom ||\n op.scrollToPos.to.line >= display.viewTo) ||\n display.maxLineChanged && cm.options.lineWrapping;\n op.update = op.mustUpdate &&\n new DisplayUpdate(cm, op.mustUpdate && {top: op.scrollTop, ensure: op.scrollToPos}, op.forceUpdate);\n }\n\n function endOperation_W1(op) {\n op.updatedDisplay = op.mustUpdate && updateDisplayIfNeeded(op.cm, op.update);\n }\n\n function endOperation_R2(op) {\n var cm = op.cm, display = cm.display;\n if (op.updatedDisplay) updateHeightsInViewport(cm);\n\n op.barMeasure = measureForScrollbars(cm);\n\n // If the max line changed since it was last measured, measure it,\n // and ensure the document's width matches it.\n // updateDisplay_W2 will use these properties to do the actual resizing\n if (display.maxLineChanged && !cm.options.lineWrapping) {\n op.adjustWidthTo = measureChar(cm, display.maxLine, display.maxLine.text.length).left + 3;\n cm.display.sizerWidth = op.adjustWidthTo;\n op.barMeasure.scrollWidth =\n Math.max(display.scroller.clientWidth, display.sizer.offsetLeft + op.adjustWidthTo + scrollGap(cm) + cm.display.barWidth);\n op.maxScrollLeft = Math.max(0, display.sizer.offsetLeft + op.adjustWidthTo - displayWidth(cm));\n }\n\n if (op.updatedDisplay || op.selectionChanged)\n op.newSelectionNodes = drawSelection(cm);\n }\n\n function endOperation_W2(op) {\n var cm = op.cm;\n\n if (op.adjustWidthTo != null) {\n cm.display.sizer.style.minWidth = op.adjustWidthTo + \"px\";\n if (op.maxScrollLeft < cm.doc.scrollLeft)\n setScrollLeft(cm, Math.min(cm.display.scroller.scrollLeft, op.maxScrollLeft), true);\n cm.display.maxLineChanged = false;\n }\n\n if (op.newSelectionNodes)\n showSelection(cm, op.newSelectionNodes);\n if (op.updatedDisplay)\n setDocumentHeight(cm, op.barMeasure);\n if (op.updatedDisplay || op.startHeight != cm.doc.height)\n updateScrollbars(cm, op.barMeasure);\n\n if (op.selectionChanged) restartBlink(cm);\n\n if (cm.state.focused && op.updateInput)\n resetInput(cm, op.typing);\n }\n\n function endOperation_finish(op) {\n var cm = op.cm, display = cm.display, doc = cm.doc;\n\n if (op.updatedDisplay) postUpdateDisplay(cm, op.update);\n\n // Abort mouse wheel delta measurement, when scrolling explicitly\n if (display.wheelStartX != null && (op.scrollTop != null || op.scrollLeft != null || op.scrollToPos))\n display.wheelStartX = display.wheelStartY = null;\n\n // Propagate the scroll position to the actual DOM scroller\n if (op.scrollTop != null && (display.scroller.scrollTop != op.scrollTop || op.forceScroll)) {\n doc.scrollTop = Math.max(0, Math.min(display.scroller.scrollHeight - display.scroller.clientHeight, op.scrollTop));\n display.scrollbars.setScrollTop(doc.scrollTop);\n display.scroller.scrollTop = doc.scrollTop;\n }\n if (op.scrollLeft != null && (display.scroller.scrollLeft != op.scrollLeft || op.forceScroll)) {\n doc.scrollLeft = Math.max(0, Math.min(display.scroller.scrollWidth - displayWidth(cm), op.scrollLeft));\n display.scrollbars.setScrollLeft(doc.scrollLeft);\n display.scroller.scrollLeft = doc.scrollLeft;\n alignHorizontally(cm);\n }\n // If we need to scroll a specific position into view, do so.\n if (op.scrollToPos) {\n var coords = scrollPosIntoView(cm, clipPos(doc, op.scrollToPos.from),\n clipPos(doc, op.scrollToPos.to), op.scrollToPos.margin);\n if (op.scrollToPos.isCursor && cm.state.focused) maybeScrollWindow(cm, coords);\n }\n\n // Fire events for markers that are hidden/unidden by editing or\n // undoing\n var hidden = op.maybeHiddenMarkers, unhidden = op.maybeUnhiddenMarkers;\n if (hidden) for (var i = 0; i < hidden.length; ++i)\n if (!hidden[i].lines.length) signal(hidden[i], \"hide\");\n if (unhidden) for (var i = 0; i < unhidden.length; ++i)\n if (unhidden[i].lines.length) signal(unhidden[i], \"unhide\");\n\n if (display.wrapper.offsetHeight)\n doc.scrollTop = cm.display.scroller.scrollTop;\n\n // Fire change events, and delayed event handlers\n if (op.changeObjs)\n signal(cm, \"changes\", cm, op.changeObjs);\n if (op.update)\n op.update.finish();\n }\n\n // Run the given function in an operation\n function runInOp(cm, f) {\n if (cm.curOp) return f();\n startOperation(cm);\n try { return f(); }\n finally { endOperation(cm); }\n }\n // Wraps a function in an operation. Returns the wrapped function.\n function operation(cm, f) {\n return function() {\n if (cm.curOp) return f.apply(cm, arguments);\n startOperation(cm);\n try { return f.apply(cm, arguments); }\n finally { endOperation(cm); }\n };\n }\n // Used to add methods to editor and doc instances, wrapping them in\n // operations.\n function methodOp(f) {\n return function() {\n if (this.curOp) return f.apply(this, arguments);\n startOperation(this);\n try { return f.apply(this, arguments); }\n finally { endOperation(this); }\n };\n }\n function docMethodOp(f) {\n return function() {\n var cm = this.cm;\n if (!cm || cm.curOp) return f.apply(this, arguments);\n startOperation(cm);\n try { return f.apply(this, arguments); }\n finally { endOperation(cm); }\n };\n }\n\n // VIEW TRACKING\n\n // These objects are used to represent the visible (currently drawn)\n // part of the document. A LineView may correspond to multiple\n // logical lines, if those are connected by collapsed ranges.\n function LineView(doc, line, lineN) {\n // The starting line\n this.line = line;\n // Continuing lines, if any\n this.rest = visualLineContinued(line);\n // Number of logical lines in this visual line\n this.size = this.rest ? lineNo(lst(this.rest)) - lineN + 1 : 1;\n this.node = this.text = null;\n this.hidden = lineIsHidden(doc, line);\n }\n\n // Create a range of LineView objects for the given lines.\n function buildViewArray(cm, from, to) {\n var array = [], nextPos;\n for (var pos = from; pos < to; pos = nextPos) {\n var view = new LineView(cm.doc, getLine(cm.doc, pos), pos);\n nextPos = pos + view.size;\n array.push(view);\n }\n return array;\n }\n\n // Updates the display.view data structure for a given change to the\n // document. From and to are in pre-change coordinates. Lendiff is\n // the amount of lines added or subtracted by the change. This is\n // used for changes that span multiple lines, or change the way\n // lines are divided into visual lines. regLineChange (below)\n // registers single-line changes.\n function regChange(cm, from, to, lendiff) {\n if (from == null) from = cm.doc.first;\n if (to == null) to = cm.doc.first + cm.doc.size;\n if (!lendiff) lendiff = 0;\n\n var display = cm.display;\n if (lendiff && to < display.viewTo &&\n (display.updateLineNumbers == null || display.updateLineNumbers > from))\n display.updateLineNumbers = from;\n\n cm.curOp.viewChanged = true;\n\n if (from >= display.viewTo) { // Change after\n if (sawCollapsedSpans && visualLineNo(cm.doc, from) < display.viewTo)\n resetView(cm);\n } else if (to <= display.viewFrom) { // Change before\n if (sawCollapsedSpans && visualLineEndNo(cm.doc, to + lendiff) > display.viewFrom) {\n resetView(cm);\n } else {\n display.viewFrom += lendiff;\n display.viewTo += lendiff;\n }\n } else if (from <= display.viewFrom && to >= display.viewTo) { // Full overlap\n resetView(cm);\n } else if (from <= display.viewFrom) { // Top overlap\n var cut = viewCuttingPoint(cm, to, to + lendiff, 1);\n if (cut) {\n display.view = display.view.slice(cut.index);\n display.viewFrom = cut.lineN;\n display.viewTo += lendiff;\n } else {\n resetView(cm);\n }\n } else if (to >= display.viewTo) { // Bottom overlap\n var cut = viewCuttingPoint(cm, from, from, -1);\n if (cut) {\n display.view = display.view.slice(0, cut.index);\n display.viewTo = cut.lineN;\n } else {\n resetView(cm);\n }\n } else { // Gap in the middle\n var cutTop = viewCuttingPoint(cm, from, from, -1);\n var cutBot = viewCuttingPoint(cm, to, to + lendiff, 1);\n if (cutTop && cutBot) {\n display.view = display.view.slice(0, cutTop.index)\n .concat(buildViewArray(cm, cutTop.lineN, cutBot.lineN))\n .concat(display.view.slice(cutBot.index));\n display.viewTo += lendiff;\n } else {\n resetView(cm);\n }\n }\n\n var ext = display.externalMeasured;\n if (ext) {\n if (to < ext.lineN)\n ext.lineN += lendiff;\n else if (from < ext.lineN + ext.size)\n display.externalMeasured = null;\n }\n }\n\n // Register a change to a single line. Type must be one of \"text\",\n // \"gutter\", \"class\", \"widget\"\n function regLineChange(cm, line, type) {\n cm.curOp.viewChanged = true;\n var display = cm.display, ext = cm.display.externalMeasured;\n if (ext && line >= ext.lineN && line < ext.lineN + ext.size)\n display.externalMeasured = null;\n\n if (line < display.viewFrom || line >= display.viewTo) return;\n var lineView = display.view[findViewIndex(cm, line)];\n if (lineView.node == null) return;\n var arr = lineView.changes || (lineView.changes = []);\n if (indexOf(arr, type) == -1) arr.push(type);\n }\n\n // Clear the view.\n function resetView(cm) {\n cm.display.viewFrom = cm.display.viewTo = cm.doc.first;\n cm.display.view = [];\n cm.display.viewOffset = 0;\n }\n\n // Find the view element corresponding to a given line. Return null\n // when the line isn't visible.\n function findViewIndex(cm, n) {\n if (n >= cm.display.viewTo) return null;\n n -= cm.display.viewFrom;\n if (n < 0) return null;\n var view = cm.display.view;\n for (var i = 0; i < view.length; i++) {\n n -= view[i].size;\n if (n < 0) return i;\n }\n }\n\n function viewCuttingPoint(cm, oldN, newN, dir) {\n var index = findViewIndex(cm, oldN), diff, view = cm.display.view;\n if (!sawCollapsedSpans || newN == cm.doc.first + cm.doc.size)\n return {index: index, lineN: newN};\n for (var i = 0, n = cm.display.viewFrom; i < index; i++)\n n += view[i].size;\n if (n != oldN) {\n if (dir > 0) {\n if (index == view.length - 1) return null;\n diff = (n + view[index].size) - oldN;\n index++;\n } else {\n diff = n - oldN;\n }\n oldN += diff; newN += diff;\n }\n while (visualLineNo(cm.doc, newN) != newN) {\n if (index == (dir < 0 ? 0 : view.length - 1)) return null;\n newN += dir * view[index - (dir < 0 ? 1 : 0)].size;\n index += dir;\n }\n return {index: index, lineN: newN};\n }\n\n // Force the view to cover a given range, adding empty view element\n // or clipping off existing ones as needed.\n function adjustView(cm, from, to) {\n var display = cm.display, view = display.view;\n if (view.length == 0 || from >= display.viewTo || to <= display.viewFrom) {\n display.view = buildViewArray(cm, from, to);\n display.viewFrom = from;\n } else {\n if (display.viewFrom > from)\n display.view = buildViewArray(cm, from, display.viewFrom).concat(display.view);\n else if (display.viewFrom < from)\n display.view = display.view.slice(findViewIndex(cm, from));\n display.viewFrom = from;\n if (display.viewTo < to)\n display.view = display.view.concat(buildViewArray(cm, display.viewTo, to));\n else if (display.viewTo > to)\n display.view = display.view.slice(0, findViewIndex(cm, to));\n }\n display.viewTo = to;\n }\n\n // Count the number of lines in the view whose DOM representation is\n // out of date (or nonexistent).\n function countDirtyView(cm) {\n var view = cm.display.view, dirty = 0;\n for (var i = 0; i < view.length; i++) {\n var lineView = view[i];\n if (!lineView.hidden && (!lineView.node || lineView.changes)) ++dirty;\n }\n return dirty;\n }\n\n // INPUT HANDLING\n\n // Poll for input changes, using the normal rate of polling. This\n // runs as long as the editor is focused.\n function slowPoll(cm) {\n if (cm.display.pollingFast) return;\n cm.display.poll.set(cm.options.pollInterval, function() {\n readInput(cm);\n if (cm.state.focused) slowPoll(cm);\n });\n }\n\n // When an event has just come in that is likely to add or change\n // something in the input textarea, we poll faster, to ensure that\n // the change appears on the screen quickly.\n function fastPoll(cm) {\n var missed = false;\n cm.display.pollingFast = true;\n function p() {\n var changed = readInput(cm);\n if (!changed && !missed) {missed = true; cm.display.poll.set(60, p);}\n else {cm.display.pollingFast = false; slowPoll(cm);}\n }\n cm.display.poll.set(20, p);\n }\n\n // This will be set to an array of strings when copying, so that,\n // when pasting, we know what kind of selections the copied text\n // was made out of.\n var lastCopied = null;\n\n // Read input from the textarea, and update the document to match.\n // When something is selected, it is present in the textarea, and\n // selected (unless it is huge, in which case a placeholder is\n // used). When nothing is selected, the cursor sits after previously\n // seen text (can be empty), which is stored in prevInput (we must\n // not reset the textarea when typing, because that breaks IME).\n function readInput(cm) {\n var input = cm.display.input, prevInput = cm.display.prevInput, doc = cm.doc;\n // Since this is called a *lot*, try to bail out as cheaply as\n // possible when it is clear that nothing happened. hasSelection\n // will be the case when there is a lot of text in the textarea,\n // in which case reading its value would be expensive.\n if (!cm.state.focused || (hasSelection(input) && !prevInput) || isReadOnly(cm) || cm.options.disableInput || cm.state.keySeq)\n return false;\n // See paste handler for more on the fakedLastChar kludge\n if (cm.state.pasteIncoming && cm.state.fakedLastChar) {\n input.value = input.value.substring(0, input.value.length - 1);\n cm.state.fakedLastChar = false;\n }\n var text = input.value;\n // If nothing changed, bail.\n if (text == prevInput && !cm.somethingSelected()) return false;\n // Work around nonsensical selection resetting in IE9/10, and\n // inexplicable appearance of private area unicode characters on\n // some key combos in Mac (#2689).\n if (ie && ie_version >= 9 && cm.display.inputHasSelection === text ||\n mac && /[\\uf700-\\uf7ff]/.test(text)) {\n resetInput(cm);\n return false;\n }\n\n var withOp = !cm.curOp;\n if (withOp) startOperation(cm);\n cm.display.shift = false;\n\n if (text.charCodeAt(0) == 0x200b && doc.sel == cm.display.selForContextMenu && !prevInput)\n prevInput = \"\\u200b\";\n // Find the part of the input that is actually new\n var same = 0, l = Math.min(prevInput.length, text.length);\n while (same < l && prevInput.charCodeAt(same) == text.charCodeAt(same)) ++same;\n var inserted = text.slice(same), textLines = splitLines(inserted);\n\n // When pasing N lines into N selections, insert one line per selection\n var multiPaste = null;\n if (cm.state.pasteIncoming && doc.sel.ranges.length > 1) {\n if (lastCopied && lastCopied.join(\"\\n\") == inserted)\n multiPaste = doc.sel.ranges.length % lastCopied.length == 0 && map(lastCopied, splitLines);\n else if (textLines.length == doc.sel.ranges.length)\n multiPaste = map(textLines, function(l) { return [l]; });\n }\n\n // Normal behavior is to insert the new text into every selection\n for (var i = doc.sel.ranges.length - 1; i >= 0; i--) {\n var range = doc.sel.ranges[i];\n var from = range.from(), to = range.to();\n // Handle deletion\n if (same < prevInput.length)\n from = Pos(from.line, from.ch - (prevInput.length - same));\n // Handle overwrite\n else if (cm.state.overwrite && range.empty() && !cm.state.pasteIncoming)\n to = Pos(to.line, Math.min(getLine(doc, to.line).text.length, to.ch + lst(textLines).length));\n var updateInput = cm.curOp.updateInput;\n var changeEvent = {from: from, to: to, text: multiPaste ? multiPaste[i % multiPaste.length] : textLines,\n origin: cm.state.pasteIncoming ? \"paste\" : cm.state.cutIncoming ? \"cut\" : \"+input\"};\n makeChange(cm.doc, changeEvent);\n signalLater(cm, \"inputRead\", cm, changeEvent);\n // When an 'electric' character is inserted, immediately trigger a reindent\n if (inserted && !cm.state.pasteIncoming && cm.options.electricChars &&\n cm.options.smartIndent && range.head.ch < 100 &&\n (!i || doc.sel.ranges[i - 1].head.line != range.head.line)) {\n var mode = cm.getModeAt(range.head);\n var end = changeEnd(changeEvent);\n if (mode.electricChars) {\n for (var j = 0; j < mode.electricChars.length; j++)\n if (inserted.indexOf(mode.electricChars.charAt(j)) > -1) {\n indentLine(cm, end.line, \"smart\");\n break;\n }\n } else if (mode.electricInput) {\n if (mode.electricInput.test(getLine(doc, end.line).text.slice(0, end.ch)))\n indentLine(cm, end.line, \"smart\");\n }\n }\n }\n ensureCursorVisible(cm);\n cm.curOp.updateInput = updateInput;\n cm.curOp.typing = true;\n\n // Don't leave long text in the textarea, since it makes further polling slow\n if (text.length > 1000 || text.indexOf(\"\\n\") > -1) input.value = cm.display.prevInput = \"\";\n else cm.display.prevInput = text;\n if (withOp) endOperation(cm);\n cm.state.pasteIncoming = cm.state.cutIncoming = false;\n return true;\n }\n\n // Reset the input to correspond to the selection (or to be empty,\n // when not typing and nothing is selected)\n function resetInput(cm, typing) {\n if (cm.display.contextMenuPending) return;\n var minimal, selected, doc = cm.doc;\n if (cm.somethingSelected()) {\n cm.display.prevInput = \"\";\n var range = doc.sel.primary();\n minimal = hasCopyEvent &&\n (range.to().line - range.from().line > 100 || (selected = cm.getSelection()).length > 1000);\n var content = minimal ? \"-\" : selected || cm.getSelection();\n cm.display.input.value = content;\n if (cm.state.focused) selectInput(cm.display.input);\n if (ie && ie_version >= 9) cm.display.inputHasSelection = content;\n } else if (!typing) {\n cm.display.prevInput = cm.display.input.value = \"\";\n if (ie && ie_version >= 9) cm.display.inputHasSelection = null;\n }\n cm.display.inaccurateSelection = minimal;\n }\n\n function focusInput(cm) {\n if (cm.options.readOnly != \"nocursor\" && (!mobile || activeElt() != cm.display.input)) {\n try { cm.display.input.focus(); }\n catch (e) {} // IE8 will throw if the textarea is display: none or not in DOM\n }\n }\n\n function ensureFocus(cm) {\n if (!cm.state.focused) { focusInput(cm); onFocus(cm); }\n }\n\n function isReadOnly(cm) {\n return cm.options.readOnly || cm.doc.cantEdit;\n }\n\n // EVENT HANDLERS\n\n // Attach the necessary event handlers when initializing the editor\n function registerEventHandlers(cm) {\n var d = cm.display;\n on(d.scroller, \"mousedown\", operation(cm, onMouseDown));\n // Older IE's will not fire a second mousedown for a double click\n if (ie && ie_version < 11)\n on(d.scroller, \"dblclick\", operation(cm, function(e) {\n if (signalDOMEvent(cm, e)) return;\n var pos = posFromMouse(cm, e);\n if (!pos || clickInGutter(cm, e) || eventInWidget(cm.display, e)) return;\n e_preventDefault(e);\n var word = cm.findWordAt(pos);\n extendSelection(cm.doc, word.anchor, word.head);\n }));\n else\n on(d.scroller, \"dblclick\", function(e) { signalDOMEvent(cm, e) || e_preventDefault(e); });\n // Prevent normal selection in the editor (we handle our own)\n on(d.lineSpace, \"selectstart\", function(e) {\n if (!eventInWidget(d, e)) e_preventDefault(e);\n });\n // Some browsers fire contextmenu *after* opening the menu, at\n // which point we can't mess with it anymore. Context menu is\n // handled in onMouseDown for these browsers.\n if (!captureRightClick) on(d.scroller, \"contextmenu\", function(e) {onContextMenu(cm, e);});\n\n // Sync scrolling between fake scrollbars and real scrollable\n // area, ensure viewport is updated when scrolling.\n on(d.scroller, \"scroll\", function() {\n if (d.scroller.clientHeight) {\n setScrollTop(cm, d.scroller.scrollTop);\n setScrollLeft(cm, d.scroller.scrollLeft, true);\n signal(cm, \"scroll\", cm);\n }\n });\n\n // Listen to wheel events in order to try and update the viewport on time.\n on(d.scroller, \"mousewheel\", function(e){onScrollWheel(cm, e);});\n on(d.scroller, \"DOMMouseScroll\", function(e){onScrollWheel(cm, e);});\n\n // Prevent wrapper from ever scrolling\n on(d.wrapper, \"scroll\", function() { d.wrapper.scrollTop = d.wrapper.scrollLeft = 0; });\n\n on(d.input, \"keyup\", function(e) { onKeyUp.call(cm, e); });\n on(d.input, \"input\", function() {\n if (ie && ie_version >= 9 && cm.display.inputHasSelection) cm.display.inputHasSelection = null;\n readInput(cm);\n });\n on(d.input, \"keydown\", operation(cm, onKeyDown));\n on(d.input, \"keypress\", operation(cm, onKeyPress));\n on(d.input, \"focus\", bind(onFocus, cm));\n on(d.input, \"blur\", bind(onBlur, cm));\n\n function drag_(e) {\n if (!signalDOMEvent(cm, e)) e_stop(e);\n }\n if (cm.options.dragDrop) {\n on(d.scroller, \"dragstart\", function(e){onDragStart(cm, e);});\n on(d.scroller, \"dragenter\", drag_);\n on(d.scroller, \"dragover\", drag_);\n on(d.scroller, \"drop\", operation(cm, onDrop));\n }\n on(d.scroller, \"paste\", function(e) {\n if (eventInWidget(d, e)) return;\n cm.state.pasteIncoming = true;\n focusInput(cm);\n fastPoll(cm);\n });\n on(d.input, \"paste\", function() {\n // Workaround for webkit bug https://bugs.webkit.org/show_bug.cgi?id=90206\n // Add a char to the end of textarea before paste occur so that\n // selection doesn't span to the end of textarea.\n if (webkit && !cm.state.fakedLastChar && !(new Date - cm.state.lastMiddleDown < 200)) {\n var start = d.input.selectionStart, end = d.input.selectionEnd;\n d.input.value += \"$\";\n // The selection end needs to be set before the start, otherwise there\n // can be an intermediate non-empty selection between the two, which\n // can override the middle-click paste buffer on linux and cause the\n // wrong thing to get pasted.\n d.input.selectionEnd = end;\n d.input.selectionStart = start;\n cm.state.fakedLastChar = true;\n }\n cm.state.pasteIncoming = true;\n fastPoll(cm);\n });\n\n function prepareCopyCut(e) {\n if (cm.somethingSelected()) {\n lastCopied = cm.getSelections();\n if (d.inaccurateSelection) {\n d.prevInput = \"\";\n d.inaccurateSelection = false;\n d.input.value = lastCopied.join(\"\\n\");\n selectInput(d.input);\n }\n } else {\n var text = [], ranges = [];\n for (var i = 0; i < cm.doc.sel.ranges.length; i++) {\n var line = cm.doc.sel.ranges[i].head.line;\n var lineRange = {anchor: Pos(line, 0), head: Pos(line + 1, 0)};\n ranges.push(lineRange);\n text.push(cm.getRange(lineRange.anchor, lineRange.head));\n }\n if (e.type == \"cut\") {\n cm.setSelections(ranges, null, sel_dontScroll);\n } else {\n d.prevInput = \"\";\n d.input.value = text.join(\"\\n\");\n selectInput(d.input);\n }\n lastCopied = text;\n }\n if (e.type == \"cut\") cm.state.cutIncoming = true;\n }\n on(d.input, \"cut\", prepareCopyCut);\n on(d.input, \"copy\", prepareCopyCut);\n\n // Needed to handle Tab key in KHTML\n if (khtml) on(d.sizer, \"mouseup\", function() {\n if (activeElt() == d.input) d.input.blur();\n focusInput(cm);\n });\n }\n\n // Called when the window resizes\n function onResize(cm) {\n var d = cm.display;\n if (d.lastWrapHeight == d.wrapper.clientHeight && d.lastWrapWidth == d.wrapper.clientWidth)\n return;\n // Might be a text scaling operation, clear size caches.\n d.cachedCharWidth = d.cachedTextHeight = d.cachedPaddingH = null;\n d.scrollbarsClipped = false;\n cm.setSize();\n }\n\n // MOUSE EVENTS\n\n // Return true when the given mouse event happened in a widget\n function eventInWidget(display, e) {\n for (var n = e_target(e); n != display.wrapper; n = n.parentNode) {\n if (!n || (n.nodeType == 1 && n.getAttribute(\"cm-ignore-events\") == \"true\") ||\n (n.parentNode == display.sizer && n != display.mover))\n return true;\n }\n }\n\n // Given a mouse event, find the corresponding position. If liberal\n // is false, it checks whether a gutter or scrollbar was clicked,\n // and returns null if it was. forRect is used by rectangular\n // selections, and tries to estimate a character position even for\n // coordinates beyond the right of the text.\n function posFromMouse(cm, e, liberal, forRect) {\n var display = cm.display;\n if (!liberal && e_target(e).getAttribute(\"not-content\") == \"true\") return null;\n\n var x, y, space = display.lineSpace.getBoundingClientRect();\n // Fails unpredictably on IE[67] when mouse is dragged around quickly.\n try { x = e.clientX - space.left; y = e.clientY - space.top; }\n catch (e) { return null; }\n var coords = coordsChar(cm, x, y), line;\n if (forRect && coords.xRel == 1 && (line = getLine(cm.doc, coords.line).text).length == coords.ch) {\n var colDiff = countColumn(line, line.length, cm.options.tabSize) - line.length;\n coords = Pos(coords.line, Math.max(0, Math.round((x - paddingH(cm.display).left) / charWidth(cm.display)) - colDiff));\n }\n return coords;\n }\n\n // A mouse down can be a single click, double click, triple click,\n // start of selection drag, start of text drag, new cursor\n // (ctrl-click), rectangle drag (alt-drag), or xwin\n // middle-click-paste. Or it might be a click on something we should\n // not interfere with, such as a scrollbar or widget.\n function onMouseDown(e) {\n if (signalDOMEvent(this, e)) return;\n var cm = this, display = cm.display;\n display.shift = e.shiftKey;\n\n if (eventInWidget(display, e)) {\n if (!webkit) {\n // Briefly turn off draggability, to allow widgets to do\n // normal dragging things.\n display.scroller.draggable = false;\n setTimeout(function(){display.scroller.draggable = true;}, 100);\n }\n return;\n }\n if (clickInGutter(cm, e)) return;\n var start = posFromMouse(cm, e);\n window.focus();\n\n switch (e_button(e)) {\n case 1:\n if (start)\n leftButtonDown(cm, e, start);\n else if (e_target(e) == display.scroller)\n e_preventDefault(e);\n break;\n case 2:\n if (webkit) cm.state.lastMiddleDown = +new Date;\n if (start) extendSelection(cm.doc, start);\n setTimeout(bind(focusInput, cm), 20);\n e_preventDefault(e);\n break;\n case 3:\n if (captureRightClick) onContextMenu(cm, e);\n break;\n }\n }\n\n var lastClick, lastDoubleClick;\n function leftButtonDown(cm, e, start) {\n setTimeout(bind(ensureFocus, cm), 0);\n\n var now = +new Date, type;\n if (lastDoubleClick && lastDoubleClick.time > now - 400 && cmp(lastDoubleClick.pos, start) == 0) {\n type = \"triple\";\n } else if (lastClick && lastClick.time > now - 400 && cmp(lastClick.pos, start) == 0) {\n type = \"double\";\n lastDoubleClick = {time: now, pos: start};\n } else {\n type = \"single\";\n lastClick = {time: now, pos: start};\n }\n\n var sel = cm.doc.sel, modifier = mac ? e.metaKey : e.ctrlKey, contained;\n if (cm.options.dragDrop && dragAndDrop && !isReadOnly(cm) &&\n type == \"single\" && (contained = sel.contains(start)) > -1 &&\n !sel.ranges[contained].empty())\n leftButtonStartDrag(cm, e, start, modifier);\n else\n leftButtonSelect(cm, e, start, type, modifier);\n }\n\n // Start a text drag. When it ends, see if any dragging actually\n // happen, and treat as a click if it didn't.\n function leftButtonStartDrag(cm, e, start, modifier) {\n var display = cm.display;\n var dragEnd = operation(cm, function(e2) {\n if (webkit) display.scroller.draggable = false;\n cm.state.draggingText = false;\n off(document, \"mouseup\", dragEnd);\n off(display.scroller, \"drop\", dragEnd);\n if (Math.abs(e.clientX - e2.clientX) + Math.abs(e.clientY - e2.clientY) < 10) {\n e_preventDefault(e2);\n if (!modifier)\n extendSelection(cm.doc, start);\n focusInput(cm);\n // Work around unexplainable focus problem in IE9 (#2127)\n if (ie && ie_version == 9)\n setTimeout(function() {document.body.focus(); focusInput(cm);}, 20);\n }\n });\n // Let the drag handler handle this.\n if (webkit) display.scroller.draggable = true;\n cm.state.draggingText = dragEnd;\n // IE's approach to draggable\n if (display.scroller.dragDrop) display.scroller.dragDrop();\n on(document, \"mouseup\", dragEnd);\n on(display.scroller, \"drop\", dragEnd);\n }\n\n // Normal selection, as opposed to text dragging.\n function leftButtonSelect(cm, e, start, type, addNew) {\n var display = cm.display, doc = cm.doc;\n e_preventDefault(e);\n\n var ourRange, ourIndex, startSel = doc.sel, ranges = startSel.ranges;\n if (addNew && !e.shiftKey) {\n ourIndex = doc.sel.contains(start);\n if (ourIndex > -1)\n ourRange = ranges[ourIndex];\n else\n ourRange = new Range(start, start);\n } else {\n ourRange = doc.sel.primary();\n }\n\n if (e.altKey) {\n type = \"rect\";\n if (!addNew) ourRange = new Range(start, start);\n start = posFromMouse(cm, e, true, true);\n ourIndex = -1;\n } else if (type == \"double\") {\n var word = cm.findWordAt(start);\n if (cm.display.shift || doc.extend)\n ourRange = extendRange(doc, ourRange, word.anchor, word.head);\n else\n ourRange = word;\n } else if (type == \"triple\") {\n var line = new Range(Pos(start.line, 0), clipPos(doc, Pos(start.line + 1, 0)));\n if (cm.display.shift || doc.extend)\n ourRange = extendRange(doc, ourRange, line.anchor, line.head);\n else\n ourRange = line;\n } else {\n ourRange = extendRange(doc, ourRange, start);\n }\n\n if (!addNew) {\n ourIndex = 0;\n setSelection(doc, new Selection([ourRange], 0), sel_mouse);\n startSel = doc.sel;\n } else if (ourIndex == -1) {\n ourIndex = ranges.length;\n setSelection(doc, normalizeSelection(ranges.concat([ourRange]), ourIndex),\n {scroll: false, origin: \"*mouse\"});\n } else if (ranges.length > 1 && ranges[ourIndex].empty() && type == \"single\") {\n setSelection(doc, normalizeSelection(ranges.slice(0, ourIndex).concat(ranges.slice(ourIndex + 1)), 0));\n startSel = doc.sel;\n } else {\n replaceOneSelection(doc, ourIndex, ourRange, sel_mouse);\n }\n\n var lastPos = start;\n function extendTo(pos) {\n if (cmp(lastPos, pos) == 0) return;\n lastPos = pos;\n\n if (type == \"rect\") {\n var ranges = [], tabSize = cm.options.tabSize;\n var startCol = countColumn(getLine(doc, start.line).text, start.ch, tabSize);\n var posCol = countColumn(getLine(doc, pos.line).text, pos.ch, tabSize);\n var left = Math.min(startCol, posCol), right = Math.max(startCol, posCol);\n for (var line = Math.min(start.line, pos.line), end = Math.min(cm.lastLine(), Math.max(start.line, pos.line));\n line <= end; line++) {\n var text = getLine(doc, line).text, leftPos = findColumn(text, left, tabSize);\n if (left == right)\n ranges.push(new Range(Pos(line, leftPos), Pos(line, leftPos)));\n else if (text.length > leftPos)\n ranges.push(new Range(Pos(line, leftPos), Pos(line, findColumn(text, right, tabSize))));\n }\n if (!ranges.length) ranges.push(new Range(start, start));\n setSelection(doc, normalizeSelection(startSel.ranges.slice(0, ourIndex).concat(ranges), ourIndex),\n {origin: \"*mouse\", scroll: false});\n cm.scrollIntoView(pos);\n } else {\n var oldRange = ourRange;\n var anchor = oldRange.anchor, head = pos;\n if (type != \"single\") {\n if (type == \"double\")\n var range = cm.findWordAt(pos);\n else\n var range = new Range(Pos(pos.line, 0), clipPos(doc, Pos(pos.line + 1, 0)));\n if (cmp(range.anchor, anchor) > 0) {\n head = range.head;\n anchor = minPos(oldRange.from(), range.anchor);\n } else {\n head = range.anchor;\n anchor = maxPos(oldRange.to(), range.head);\n }\n }\n var ranges = startSel.ranges.slice(0);\n ranges[ourIndex] = new Range(clipPos(doc, anchor), head);\n setSelection(doc, normalizeSelection(ranges, ourIndex), sel_mouse);\n }\n }\n\n var editorSize = display.wrapper.getBoundingClientRect();\n // Used to ensure timeout re-tries don't fire when another extend\n // happened in the meantime (clearTimeout isn't reliable -- at\n // least on Chrome, the timeouts still happen even when cleared,\n // if the clear happens after their scheduled firing time).\n var counter = 0;\n\n function extend(e) {\n var curCount = ++counter;\n var cur = posFromMouse(cm, e, true, type == \"rect\");\n if (!cur) return;\n if (cmp(cur, lastPos) != 0) {\n ensureFocus(cm);\n extendTo(cur);\n var visible = visibleLines(display, doc);\n if (cur.line >= visible.to || cur.line < visible.from)\n setTimeout(operation(cm, function(){if (counter == curCount) extend(e);}), 150);\n } else {\n var outside = e.clientY < editorSize.top ? -20 : e.clientY > editorSize.bottom ? 20 : 0;\n if (outside) setTimeout(operation(cm, function() {\n if (counter != curCount) return;\n display.scroller.scrollTop += outside;\n extend(e);\n }), 50);\n }\n }\n\n function done(e) {\n counter = Infinity;\n e_preventDefault(e);\n focusInput(cm);\n off(document, \"mousemove\", move);\n off(document, \"mouseup\", up);\n doc.history.lastSelOrigin = null;\n }\n\n var move = operation(cm, function(e) {\n if (!e_button(e)) done(e);\n else extend(e);\n });\n var up = operation(cm, done);\n on(document, \"mousemove\", move);\n on(document, \"mouseup\", up);\n }\n\n // Determines whether an event happened in the gutter, and fires the\n // handlers for the corresponding event.\n function gutterEvent(cm, e, type, prevent, signalfn) {\n try { var mX = e.clientX, mY = e.clientY; }\n catch(e) { return false; }\n if (mX >= Math.floor(cm.display.gutters.getBoundingClientRect().right)) return false;\n if (prevent) e_preventDefault(e);\n\n var display = cm.display;\n var lineBox = display.lineDiv.getBoundingClientRect();\n\n if (mY > lineBox.bottom || !hasHandler(cm, type)) return e_defaultPrevented(e);\n mY -= lineBox.top - display.viewOffset;\n\n for (var i = 0; i < cm.options.gutters.length; ++i) {\n var g = display.gutters.childNodes[i];\n if (g && g.getBoundingClientRect().right >= mX) {\n var line = lineAtHeight(cm.doc, mY);\n var gutter = cm.options.gutters[i];\n signalfn(cm, type, cm, line, gutter, e);\n return e_defaultPrevented(e);\n }\n }\n }\n\n function clickInGutter(cm, e) {\n return gutterEvent(cm, e, \"gutterClick\", true, signalLater);\n }\n\n // Kludge to work around strange IE behavior where it'll sometimes\n // re-fire a series of drag-related events right after the drop (#1551)\n var lastDrop = 0;\n\n function onDrop(e) {\n var cm = this;\n if (signalDOMEvent(cm, e) || eventInWidget(cm.display, e))\n return;\n e_preventDefault(e);\n if (ie) lastDrop = +new Date;\n var pos = posFromMouse(cm, e, true), files = e.dataTransfer.files;\n if (!pos || isReadOnly(cm)) return;\n // Might be a file drop, in which case we simply extract the text\n // and insert it.\n if (files && files.length && window.FileReader && window.File) {\n var n = files.length, text = Array(n), read = 0;\n var loadFile = function(file, i) {\n var reader = new FileReader;\n reader.onload = operation(cm, function() {\n text[i] = reader.result;\n if (++read == n) {\n pos = clipPos(cm.doc, pos);\n var change = {from: pos, to: pos, text: splitLines(text.join(\"\\n\")), origin: \"paste\"};\n makeChange(cm.doc, change);\n setSelectionReplaceHistory(cm.doc, simpleSelection(pos, changeEnd(change)));\n }\n });\n reader.readAsText(file);\n };\n for (var i = 0; i < n; ++i) loadFile(files[i], i);\n } else { // Normal drop\n // Don't do a replace if the drop happened inside of the selected text.\n if (cm.state.draggingText && cm.doc.sel.contains(pos) > -1) {\n cm.state.draggingText(e);\n // Ensure the editor is re-focused\n setTimeout(bind(focusInput, cm), 20);\n return;\n }\n try {\n var text = e.dataTransfer.getData(\"Text\");\n if (text) {\n if (cm.state.draggingText && !(mac ? e.metaKey : e.ctrlKey))\n var selected = cm.listSelections();\n setSelectionNoUndo(cm.doc, simpleSelection(pos, pos));\n if (selected) for (var i = 0; i < selected.length; ++i)\n replaceRange(cm.doc, \"\", selected[i].anchor, selected[i].head, \"drag\");\n cm.replaceSelection(text, \"around\", \"paste\");\n focusInput(cm);\n }\n }\n catch(e){}\n }\n }\n\n function onDragStart(cm, e) {\n if (ie && (!cm.state.draggingText || +new Date - lastDrop < 100)) { e_stop(e); return; }\n if (signalDOMEvent(cm, e) || eventInWidget(cm.display, e)) return;\n\n e.dataTransfer.setData(\"Text\", cm.getSelection());\n\n // Use dummy image instead of default browsers image.\n // Recent Safari (~6.0.2) have a tendency to segfault when this happens, so we don't do it there.\n if (e.dataTransfer.setDragImage && !safari) {\n var img = elt(\"img\", null, null, \"position: fixed; left: 0; top: 0;\");\n img.src = \"data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==\";\n if (presto) {\n img.width = img.height = 1;\n cm.display.wrapper.appendChild(img);\n // Force a relayout, or Opera won't use our image for some obscure reason\n img._top = img.offsetTop;\n }\n e.dataTransfer.setDragImage(img, 0, 0);\n if (presto) img.parentNode.removeChild(img);\n }\n }\n\n // SCROLL EVENTS\n\n // Sync the scrollable area and scrollbars, ensure the viewport\n // covers the visible area.\n function setScrollTop(cm, val) {\n if (Math.abs(cm.doc.scrollTop - val) < 2) return;\n cm.doc.scrollTop = val;\n if (!gecko) updateDisplaySimple(cm, {top: val});\n if (cm.display.scroller.scrollTop != val) cm.display.scroller.scrollTop = val;\n cm.display.scrollbars.setScrollTop(val);\n if (gecko) updateDisplaySimple(cm);\n startWorker(cm, 100);\n }\n // Sync scroller and scrollbar, ensure the gutter elements are\n // aligned.\n function setScrollLeft(cm, val, isScroller) {\n if (isScroller ? val == cm.doc.scrollLeft : Math.abs(cm.doc.scrollLeft - val) < 2) return;\n val = Math.min(val, cm.display.scroller.scrollWidth - cm.display.scroller.clientWidth);\n cm.doc.scrollLeft = val;\n alignHorizontally(cm);\n if (cm.display.scroller.scrollLeft != val) cm.display.scroller.scrollLeft = val;\n cm.display.scrollbars.setScrollLeft(val);\n }\n\n // Since the delta values reported on mouse wheel events are\n // unstandardized between browsers and even browser versions, and\n // generally horribly unpredictable, this code starts by measuring\n // the scroll effect that the first few mouse wheel events have,\n // and, from that, detects the way it can convert deltas to pixel\n // offsets afterwards.\n //\n // The reason we want to know the amount a wheel event will scroll\n // is that it gives us a chance to update the display before the\n // actual scrolling happens, reducing flickering.\n\n var wheelSamples = 0, wheelPixelsPerUnit = null;\n // Fill in a browser-detected starting value on browsers where we\n // know one. These don't have to be accurate -- the result of them\n // being wrong would just be a slight flicker on the first wheel\n // scroll (if it is large enough).\n if (ie) wheelPixelsPerUnit = -.53;\n else if (gecko) wheelPixelsPerUnit = 15;\n else if (chrome) wheelPixelsPerUnit = -.7;\n else if (safari) wheelPixelsPerUnit = -1/3;\n\n var wheelEventDelta = function(e) {\n var dx = e.wheelDeltaX, dy = e.wheelDeltaY;\n if (dx == null && e.detail && e.axis == e.HORIZONTAL_AXIS) dx = e.detail;\n if (dy == null && e.detail && e.axis == e.VERTICAL_AXIS) dy = e.detail;\n else if (dy == null) dy = e.wheelDelta;\n return {x: dx, y: dy};\n };\n CodeMirror.wheelEventPixels = function(e) {\n var delta = wheelEventDelta(e);\n delta.x *= wheelPixelsPerUnit;\n delta.y *= wheelPixelsPerUnit;\n return delta;\n };\n\n function onScrollWheel(cm, e) {\n var delta = wheelEventDelta(e), dx = delta.x, dy = delta.y;\n\n var display = cm.display, scroll = display.scroller;\n // Quit if there's nothing to scroll here\n if (!(dx && scroll.scrollWidth > scroll.clientWidth ||\n dy && scroll.scrollHeight > scroll.clientHeight)) return;\n\n // Webkit browsers on OS X abort momentum scrolls when the target\n // of the scroll event is removed from the scrollable element.\n // This hack (see related code in patchDisplay) makes sure the\n // element is kept around.\n if (dy && mac && webkit) {\n outer: for (var cur = e.target, view = display.view; cur != scroll; cur = cur.parentNode) {\n for (var i = 0; i < view.length; i++) {\n if (view[i].node == cur) {\n cm.display.currentWheelTarget = cur;\n break outer;\n }\n }\n }\n }\n\n // On some browsers, horizontal scrolling will cause redraws to\n // happen before the gutter has been realigned, causing it to\n // wriggle around in a most unseemly way. When we have an\n // estimated pixels/delta value, we just handle horizontal\n // scrolling entirely here. It'll be slightly off from native, but\n // better than glitching out.\n if (dx && !gecko && !presto && wheelPixelsPerUnit != null) {\n if (dy)\n setScrollTop(cm, Math.max(0, Math.min(scroll.scrollTop + dy * wheelPixelsPerUnit, scroll.scrollHeight - scroll.clientHeight)));\n setScrollLeft(cm, Math.max(0, Math.min(scroll.scrollLeft + dx * wheelPixelsPerUnit, scroll.scrollWidth - scroll.clientWidth)));\n e_preventDefault(e);\n display.wheelStartX = null; // Abort measurement, if in progress\n return;\n }\n\n // 'Project' the visible viewport to cover the area that is being\n // scrolled into view (if we know enough to estimate it).\n if (dy && wheelPixelsPerUnit != null) {\n var pixels = dy * wheelPixelsPerUnit;\n var top = cm.doc.scrollTop, bot = top + display.wrapper.clientHeight;\n if (pixels < 0) top = Math.max(0, top + pixels - 50);\n else bot = Math.min(cm.doc.height, bot + pixels + 50);\n updateDisplaySimple(cm, {top: top, bottom: bot});\n }\n\n if (wheelSamples < 20) {\n if (display.wheelStartX == null) {\n display.wheelStartX = scroll.scrollLeft; display.wheelStartY = scroll.scrollTop;\n display.wheelDX = dx; display.wheelDY = dy;\n setTimeout(function() {\n if (display.wheelStartX == null) return;\n var movedX = scroll.scrollLeft - display.wheelStartX;\n var movedY = scroll.scrollTop - display.wheelStartY;\n var sample = (movedY && display.wheelDY && movedY / display.wheelDY) ||\n (movedX && display.wheelDX && movedX / display.wheelDX);\n display.wheelStartX = display.wheelStartY = null;\n if (!sample) return;\n wheelPixelsPerUnit = (wheelPixelsPerUnit * wheelSamples + sample) / (wheelSamples + 1);\n ++wheelSamples;\n }, 200);\n } else {\n display.wheelDX += dx; display.wheelDY += dy;\n }\n }\n }\n\n // KEY EVENTS\n\n // Run a handler that was bound to a key.\n function doHandleBinding(cm, bound, dropShift) {\n if (typeof bound == \"string\") {\n bound = commands[bound];\n if (!bound) return false;\n }\n // Ensure previous input has been read, so that the handler sees a\n // consistent view of the document\n if (cm.display.pollingFast && readInput(cm)) cm.display.pollingFast = false;\n var prevShift = cm.display.shift, done = false;\n try {\n if (isReadOnly(cm)) cm.state.suppressEdits = true;\n if (dropShift) cm.display.shift = false;\n done = bound(cm) != Pass;\n } finally {\n cm.display.shift = prevShift;\n cm.state.suppressEdits = false;\n }\n return done;\n }\n\n function lookupKeyForEditor(cm, name, handle) {\n for (var i = 0; i < cm.state.keyMaps.length; i++) {\n var result = lookupKey(name, cm.state.keyMaps[i], handle, cm);\n if (result) return result;\n }\n return (cm.options.extraKeys && lookupKey(name, cm.options.extraKeys, handle, cm))\n || lookupKey(name, cm.options.keyMap, handle, cm);\n }\n\n var stopSeq = new Delayed;\n function dispatchKey(cm, name, e, handle) {\n var seq = cm.state.keySeq;\n if (seq) {\n if (isModifierKey(name)) return \"handled\";\n stopSeq.set(50, function() {\n if (cm.state.keySeq == seq) {\n cm.state.keySeq = null;\n resetInput(cm);\n }\n });\n name = seq + \" \" + name;\n }\n var result = lookupKeyForEditor(cm, name, handle);\n\n if (result == \"multi\")\n cm.state.keySeq = name;\n if (result == \"handled\")\n signalLater(cm, \"keyHandled\", cm, name, e);\n\n if (result == \"handled\" || result == \"multi\") {\n e_preventDefault(e);\n restartBlink(cm);\n }\n\n if (seq && !result && /\\'$/.test(name)) {\n e_preventDefault(e);\n return true;\n }\n return !!result;\n }\n\n // Handle a key from the keydown event.\n function handleKeyBinding(cm, e) {\n var name = keyName(e, true);\n if (!name) return false;\n\n if (e.shiftKey && !cm.state.keySeq) {\n // First try to resolve full name (including 'Shift-'). Failing\n // that, see if there is a cursor-motion command (starting with\n // 'go') bound to the keyname without 'Shift-'.\n return dispatchKey(cm, \"Shift-\" + name, e, function(b) {return doHandleBinding(cm, b, true);})\n || dispatchKey(cm, name, e, function(b) {\n if (typeof b == \"string\" ? /^go[A-Z]/.test(b) : b.motion)\n return doHandleBinding(cm, b);\n });\n } else {\n return dispatchKey(cm, name, e, function(b) { return doHandleBinding(cm, b); });\n }\n }\n\n // Handle a key from the keypress event\n function handleCharBinding(cm, e, ch) {\n return dispatchKey(cm, \"'\" + ch + \"'\", e,\n function(b) { return doHandleBinding(cm, b, true); });\n }\n\n var lastStoppedKey = null;\n function onKeyDown(e) {\n var cm = this;\n ensureFocus(cm);\n if (signalDOMEvent(cm, e)) return;\n // IE does strange things with escape.\n if (ie && ie_version < 11 && e.keyCode == 27) e.returnValue = false;\n var code = e.keyCode;\n cm.display.shift = code == 16 || e.shiftKey;\n var handled = handleKeyBinding(cm, e);\n if (presto) {\n lastStoppedKey = handled ? code : null;\n // Opera has no cut event... we try to at least catch the key combo\n if (!handled && code == 88 && !hasCopyEvent && (mac ? e.metaKey : e.ctrlKey))\n cm.replaceSelection(\"\", null, \"cut\");\n }\n\n // Turn mouse into crosshair when Alt is held on Mac.\n if (code == 18 && !/\\bCodeMirror-crosshair\\b/.test(cm.display.lineDiv.className))\n showCrossHair(cm);\n }\n\n function showCrossHair(cm) {\n var lineDiv = cm.display.lineDiv;\n addClass(lineDiv, \"CodeMirror-crosshair\");\n\n function up(e) {\n if (e.keyCode == 18 || !e.altKey) {\n rmClass(lineDiv, \"CodeMirror-crosshair\");\n off(document, \"keyup\", up);\n off(document, \"mouseover\", up);\n }\n }\n on(document, \"keyup\", up);\n on(document, \"mouseover\", up);\n }\n\n function onKeyUp(e) {\n if (e.keyCode == 16) this.doc.sel.shift = false;\n signalDOMEvent(this, e);\n }\n\n function onKeyPress(e) {\n var cm = this;\n if (signalDOMEvent(cm, e) || e.ctrlKey && !e.altKey || mac && e.metaKey) return;\n var keyCode = e.keyCode, charCode = e.charCode;\n if (presto && keyCode == lastStoppedKey) {lastStoppedKey = null; e_preventDefault(e); return;}\n if (((presto && (!e.which || e.which < 10)) || khtml) && handleKeyBinding(cm, e)) return;\n var ch = String.fromCharCode(charCode == null ? keyCode : charCode);\n if (handleCharBinding(cm, e, ch)) return;\n if (ie && ie_version >= 9) cm.display.inputHasSelection = null;\n fastPoll(cm);\n }\n\n // FOCUS/BLUR EVENTS\n\n function onFocus(cm) {\n if (cm.options.readOnly == \"nocursor\") return;\n if (!cm.state.focused) {\n signal(cm, \"focus\", cm);\n cm.state.focused = true;\n addClass(cm.display.wrapper, \"CodeMirror-focused\");\n // The prevInput test prevents this from firing when a context\n // menu is closed (since the resetInput would kill the\n // select-all detection hack)\n if (!cm.curOp && cm.display.selForContextMenu != cm.doc.sel) {\n resetInput(cm);\n if (webkit) setTimeout(bind(resetInput, cm, true), 0); // Issue #1730\n }\n }\n slowPoll(cm);\n restartBlink(cm);\n }\n function onBlur(cm) {\n if (cm.state.focused) {\n signal(cm, \"blur\", cm);\n cm.state.focused = false;\n rmClass(cm.display.wrapper, \"CodeMirror-focused\");\n }\n clearInterval(cm.display.blinker);\n setTimeout(function() {if (!cm.state.focused) cm.display.shift = false;}, 150);\n }\n\n // CONTEXT MENU HANDLING\n\n // To make the context menu work, we need to briefly unhide the\n // textarea (making it as unobtrusive as possible) to let the\n // right-click take effect on it.\n function onContextMenu(cm, e) {\n if (signalDOMEvent(cm, e, \"contextmenu\")) return;\n var display = cm.display;\n if (eventInWidget(display, e) || contextMenuInGutter(cm, e)) return;\n\n var pos = posFromMouse(cm, e), scrollPos = display.scroller.scrollTop;\n if (!pos || presto) return; // Opera is difficult.\n\n // Reset the current text selection only if the click is done outside of the selection\n // and 'resetSelectionOnContextMenu' option is true.\n var reset = cm.options.resetSelectionOnContextMenu;\n if (reset && cm.doc.sel.contains(pos) == -1)\n operation(cm, setSelection)(cm.doc, simpleSelection(pos), sel_dontScroll);\n\n var oldCSS = display.input.style.cssText;\n display.inputDiv.style.position = \"absolute\";\n display.input.style.cssText = \"position: fixed; width: 30px; height: 30px; top: \" + (e.clientY - 5) +\n \"px; left: \" + (e.clientX - 5) + \"px; z-index: 1000; background: \" +\n (ie ? \"rgba(255, 255, 255, .05)\" : \"transparent\") +\n \"; outline: none; border-width: 0; outline: none; overflow: hidden; opacity: .05; filter: alpha(opacity=5);\";\n if (webkit) var oldScrollY = window.scrollY; // Work around Chrome issue (#2712)\n focusInput(cm);\n if (webkit) window.scrollTo(null, oldScrollY);\n resetInput(cm);\n // Adds \"Select all\" to context menu in FF\n if (!cm.somethingSelected()) display.input.value = display.prevInput = \" \";\n display.contextMenuPending = true;\n display.selForContextMenu = cm.doc.sel;\n clearTimeout(display.detectingSelectAll);\n\n // Select-all will be greyed out if there's nothing to select, so\n // this adds a zero-width space so that we can later check whether\n // it got selected.\n function prepareSelectAllHack() {\n if (display.input.selectionStart != null) {\n var selected = cm.somethingSelected();\n var extval = display.input.value = \"\\u200b\" + (selected ? display.input.value : \"\");\n display.prevInput = selected ? \"\" : \"\\u200b\";\n display.input.selectionStart = 1; display.input.selectionEnd = extval.length;\n // Re-set this, in case some other handler touched the\n // selection in the meantime.\n display.selForContextMenu = cm.doc.sel;\n }\n }\n function rehide() {\n display.contextMenuPending = false;\n display.inputDiv.style.position = \"relative\";\n display.input.style.cssText = oldCSS;\n if (ie && ie_version < 9) display.scrollbars.setScrollTop(display.scroller.scrollTop = scrollPos);\n slowPoll(cm);\n\n // Try to detect the user choosing select-all\n if (display.input.selectionStart != null) {\n if (!ie || (ie && ie_version < 9)) prepareSelectAllHack();\n var i = 0, poll = function() {\n if (display.selForContextMenu == cm.doc.sel && display.input.selectionStart == 0)\n operation(cm, commands.selectAll)(cm);\n else if (i++ < 10) display.detectingSelectAll = setTimeout(poll, 500);\n else resetInput(cm);\n };\n display.detectingSelectAll = setTimeout(poll, 200);\n }\n }\n\n if (ie && ie_version >= 9) prepareSelectAllHack();\n if (captureRightClick) {\n e_stop(e);\n var mouseup = function() {\n off(window, \"mouseup\", mouseup);\n setTimeout(rehide, 20);\n };\n on(window, \"mouseup\", mouseup);\n } else {\n setTimeout(rehide, 50);\n }\n }\n\n function contextMenuInGutter(cm, e) {\n if (!hasHandler(cm, \"gutterContextMenu\")) return false;\n return gutterEvent(cm, e, \"gutterContextMenu\", false, signal);\n }\n\n // UPDATING\n\n // Compute the position of the end of a change (its 'to' property\n // refers to the pre-change end).\n var changeEnd = CodeMirror.changeEnd = function(change) {\n if (!change.text) return change.to;\n return Pos(change.from.line + change.text.length - 1,\n lst(change.text).length + (change.text.length == 1 ? change.from.ch : 0));\n };\n\n // Adjust a position to refer to the post-change position of the\n // same text, or the end of the change if the change covers it.\n function adjustForChange(pos, change) {\n if (cmp(pos, change.from) < 0) return pos;\n if (cmp(pos, change.to) <= 0) return changeEnd(change);\n\n var line = pos.line + change.text.length - (change.to.line - change.from.line) - 1, ch = pos.ch;\n if (pos.line == change.to.line) ch += changeEnd(change).ch - change.to.ch;\n return Pos(line, ch);\n }\n\n function computeSelAfterChange(doc, change) {\n var out = [];\n for (var i = 0; i < doc.sel.ranges.length; i++) {\n var range = doc.sel.ranges[i];\n out.push(new Range(adjustForChange(range.anchor, change),\n adjustForChange(range.head, change)));\n }\n return normalizeSelection(out, doc.sel.primIndex);\n }\n\n function offsetPos(pos, old, nw) {\n if (pos.line == old.line)\n return Pos(nw.line, pos.ch - old.ch + nw.ch);\n else\n return Pos(nw.line + (pos.line - old.line), pos.ch);\n }\n\n // Used by replaceSelections to allow moving the selection to the\n // start or around the replaced test. Hint may be \"start\" or \"around\".\n function computeReplacedSel(doc, changes, hint) {\n var out = [];\n var oldPrev = Pos(doc.first, 0), newPrev = oldPrev;\n for (var i = 0; i < changes.length; i++) {\n var change = changes[i];\n var from = offsetPos(change.from, oldPrev, newPrev);\n var to = offsetPos(changeEnd(change), oldPrev, newPrev);\n oldPrev = change.to;\n newPrev = to;\n if (hint == \"around\") {\n var range = doc.sel.ranges[i], inv = cmp(range.head, range.anchor) < 0;\n out[i] = new Range(inv ? to : from, inv ? from : to);\n } else {\n out[i] = new Range(from, from);\n }\n }\n return new Selection(out, doc.sel.primIndex);\n }\n\n // Allow \"beforeChange\" event handlers to influence a change\n function filterChange(doc, change, update) {\n var obj = {\n canceled: false,\n from: change.from,\n to: change.to,\n text: change.text,\n origin: change.origin,\n cancel: function() { this.canceled = true; }\n };\n if (update) obj.update = function(from, to, text, origin) {\n if (from) this.from = clipPos(doc, from);\n if (to) this.to = clipPos(doc, to);\n if (text) this.text = text;\n if (origin !== undefined) this.origin = origin;\n };\n signal(doc, \"beforeChange\", doc, obj);\n if (doc.cm) signal(doc.cm, \"beforeChange\", doc.cm, obj);\n\n if (obj.canceled) return null;\n return {from: obj.from, to: obj.to, text: obj.text, origin: obj.origin};\n }\n\n // Apply a change to a document, and add it to the document's\n // history, and propagating it to all linked documents.\n function makeChange(doc, change, ignoreReadOnly) {\n if (doc.cm) {\n if (!doc.cm.curOp) return operation(doc.cm, makeChange)(doc, change, ignoreReadOnly);\n if (doc.cm.state.suppressEdits) return;\n }\n\n if (hasHandler(doc, \"beforeChange\") || doc.cm && hasHandler(doc.cm, \"beforeChange\")) {\n change = filterChange(doc, change, true);\n if (!change) return;\n }\n\n // Possibly split or suppress the update based on the presence\n // of read-only spans in its range.\n var split = sawReadOnlySpans && !ignoreReadOnly && removeReadOnlyRanges(doc, change.from, change.to);\n if (split) {\n for (var i = split.length - 1; i >= 0; --i)\n makeChangeInner(doc, {from: split[i].from, to: split[i].to, text: i ? [\"\"] : change.text});\n } else {\n makeChangeInner(doc, change);\n }\n }\n\n function makeChangeInner(doc, change) {\n if (change.text.length == 1 && change.text[0] == \"\" && cmp(change.from, change.to) == 0) return;\n var selAfter = computeSelAfterChange(doc, change);\n addChangeToHistory(doc, change, selAfter, doc.cm ? doc.cm.curOp.id : NaN);\n\n makeChangeSingleDoc(doc, change, selAfter, stretchSpansOverChange(doc, change));\n var rebased = [];\n\n linkedDocs(doc, function(doc, sharedHist) {\n if (!sharedHist && indexOf(rebased, doc.history) == -1) {\n rebaseHist(doc.history, change);\n rebased.push(doc.history);\n }\n makeChangeSingleDoc(doc, change, null, stretchSpansOverChange(doc, change));\n });\n }\n\n // Revert a change stored in a document's history.\n function makeChangeFromHistory(doc, type, allowSelectionOnly) {\n if (doc.cm && doc.cm.state.suppressEdits) return;\n\n var hist = doc.history, event, selAfter = doc.sel;\n var source = type == \"undo\" ? hist.done : hist.undone, dest = type == \"undo\" ? hist.undone : hist.done;\n\n // Verify that there is a useable event (so that ctrl-z won't\n // needlessly clear selection events)\n for (var i = 0; i < source.length; i++) {\n event = source[i];\n if (allowSelectionOnly ? event.ranges && !event.equals(doc.sel) : !event.ranges)\n break;\n }\n if (i == source.length) return;\n hist.lastOrigin = hist.lastSelOrigin = null;\n\n for (;;) {\n event = source.pop();\n if (event.ranges) {\n pushSelectionToHistory(event, dest);\n if (allowSelectionOnly && !event.equals(doc.sel)) {\n setSelection(doc, event, {clearRedo: false});\n return;\n }\n selAfter = event;\n }\n else break;\n }\n\n // Build up a reverse change object to add to the opposite history\n // stack (redo when undoing, and vice versa).\n var antiChanges = [];\n pushSelectionToHistory(selAfter, dest);\n dest.push({changes: antiChanges, generation: hist.generation});\n hist.generation = event.generation || ++hist.maxGeneration;\n\n var filter = hasHandler(doc, \"beforeChange\") || doc.cm && hasHandler(doc.cm, \"beforeChange\");\n\n for (var i = event.changes.length - 1; i >= 0; --i) {\n var change = event.changes[i];\n change.origin = type;\n if (filter && !filterChange(doc, change, false)) {\n source.length = 0;\n return;\n }\n\n antiChanges.push(historyChangeFromChange(doc, change));\n\n var after = i ? computeSelAfterChange(doc, change) : lst(source);\n makeChangeSingleDoc(doc, change, after, mergeOldSpans(doc, change));\n if (!i && doc.cm) doc.cm.scrollIntoView({from: change.from, to: changeEnd(change)});\n var rebased = [];\n\n // Propagate to the linked documents\n linkedDocs(doc, function(doc, sharedHist) {\n if (!sharedHist && indexOf(rebased, doc.history) == -1) {\n rebaseHist(doc.history, change);\n rebased.push(doc.history);\n }\n makeChangeSingleDoc(doc, change, null, mergeOldSpans(doc, change));\n });\n }\n }\n\n // Sub-views need their line numbers shifted when text is added\n // above or below them in the parent document.\n function shiftDoc(doc, distance) {\n if (distance == 0) return;\n doc.first += distance;\n doc.sel = new Selection(map(doc.sel.ranges, function(range) {\n return new Range(Pos(range.anchor.line + distance, range.anchor.ch),\n Pos(range.head.line + distance, range.head.ch));\n }), doc.sel.primIndex);\n if (doc.cm) {\n regChange(doc.cm, doc.first, doc.first - distance, distance);\n for (var d = doc.cm.display, l = d.viewFrom; l < d.viewTo; l++)\n regLineChange(doc.cm, l, \"gutter\");\n }\n }\n\n // More lower-level change function, handling only a single document\n // (not linked ones).\n function makeChangeSingleDoc(doc, change, selAfter, spans) {\n if (doc.cm && !doc.cm.curOp)\n return operation(doc.cm, makeChangeSingleDoc)(doc, change, selAfter, spans);\n\n if (change.to.line < doc.first) {\n shiftDoc(doc, change.text.length - 1 - (change.to.line - change.from.line));\n return;\n }\n if (change.from.line > doc.lastLine()) return;\n\n // Clip the change to the size of this doc\n if (change.from.line < doc.first) {\n var shift = change.text.length - 1 - (doc.first - change.from.line);\n shiftDoc(doc, shift);\n change = {from: Pos(doc.first, 0), to: Pos(change.to.line + shift, change.to.ch),\n text: [lst(change.text)], origin: change.origin};\n }\n var last = doc.lastLine();\n if (change.to.line > last) {\n change = {from: change.from, to: Pos(last, getLine(doc, last).text.length),\n text: [change.text[0]], origin: change.origin};\n }\n\n change.removed = getBetween(doc, change.from, change.to);\n\n if (!selAfter) selAfter = computeSelAfterChange(doc, change);\n if (doc.cm) makeChangeSingleDocInEditor(doc.cm, change, spans);\n else updateDoc(doc, change, spans);\n setSelectionNoUndo(doc, selAfter, sel_dontScroll);\n }\n\n // Handle the interaction of a change to a document with the editor\n // that this document is part of.\n function makeChangeSingleDocInEditor(cm, change, spans) {\n var doc = cm.doc, display = cm.display, from = change.from, to = change.to;\n\n var recomputeMaxLength = false, checkWidthStart = from.line;\n if (!cm.options.lineWrapping) {\n checkWidthStart = lineNo(visualLine(getLine(doc, from.line)));\n doc.iter(checkWidthStart, to.line + 1, function(line) {\n if (line == display.maxLine) {\n recomputeMaxLength = true;\n return true;\n }\n });\n }\n\n if (doc.sel.contains(change.from, change.to) > -1)\n signalCursorActivity(cm);\n\n updateDoc(doc, change, spans, estimateHeight(cm));\n\n if (!cm.options.lineWrapping) {\n doc.iter(checkWidthStart, from.line + change.text.length, function(line) {\n var len = lineLength(line);\n if (len > display.maxLineLength) {\n display.maxLine = line;\n display.maxLineLength = len;\n display.maxLineChanged = true;\n recomputeMaxLength = false;\n }\n });\n if (recomputeMaxLength) cm.curOp.updateMaxLine = true;\n }\n\n // Adjust frontier, schedule worker\n doc.frontier = Math.min(doc.frontier, from.line);\n startWorker(cm, 400);\n\n var lendiff = change.text.length - (to.line - from.line) - 1;\n // Remember that these lines changed, for updating the display\n if (change.full)\n regChange(cm);\n else if (from.line == to.line && change.text.length == 1 && !isWholeLineUpdate(cm.doc, change))\n regLineChange(cm, from.line, \"text\");\n else\n regChange(cm, from.line, to.line + 1, lendiff);\n\n var changesHandler = hasHandler(cm, \"changes\"), changeHandler = hasHandler(cm, \"change\");\n if (changeHandler || changesHandler) {\n var obj = {\n from: from, to: to,\n text: change.text,\n removed: change.removed,\n origin: change.origin\n };\n if (changeHandler) signalLater(cm, \"change\", cm, obj);\n if (changesHandler) (cm.curOp.changeObjs || (cm.curOp.changeObjs = [])).push(obj);\n }\n cm.display.selForContextMenu = null;\n }\n\n function replaceRange(doc, code, from, to, origin) {\n if (!to) to = from;\n if (cmp(to, from) < 0) { var tmp = to; to = from; from = tmp; }\n if (typeof code == \"string\") code = splitLines(code);\n makeChange(doc, {from: from, to: to, text: code, origin: origin});\n }\n\n // SCROLLING THINGS INTO VIEW\n\n // If an editor sits on the top or bottom of the window, partially\n // scrolled out of view, this ensures that the cursor is visible.\n function maybeScrollWindow(cm, coords) {\n if (signalDOMEvent(cm, \"scrollCursorIntoView\")) return;\n\n var display = cm.display, box = display.sizer.getBoundingClientRect(), doScroll = null;\n if (coords.top + box.top < 0) doScroll = true;\n else if (coords.bottom + box.top > (window.innerHeight || document.documentElement.clientHeight)) doScroll = false;\n if (doScroll != null && !phantom) {\n var scrollNode = elt(\"div\", \"\\u200b\", null, \"position: absolute; top: \" +\n (coords.top - display.viewOffset - paddingTop(cm.display)) + \"px; height: \" +\n (coords.bottom - coords.top + scrollGap(cm) + display.barHeight) + \"px; left: \" +\n coords.left + \"px; width: 2px;\");\n cm.display.lineSpace.appendChild(scrollNode);\n scrollNode.scrollIntoView(doScroll);\n cm.display.lineSpace.removeChild(scrollNode);\n }\n }\n\n // Scroll a given position into view (immediately), verifying that\n // it actually became visible (as line heights are accurately\n // measured, the position of something may 'drift' during drawing).\n function scrollPosIntoView(cm, pos, end, margin) {\n if (margin == null) margin = 0;\n for (var limit = 0; limit < 5; limit++) {\n var changed = false, coords = cursorCoords(cm, pos);\n var endCoords = !end || end == pos ? coords : cursorCoords(cm, end);\n var scrollPos = calculateScrollPos(cm, Math.min(coords.left, endCoords.left),\n Math.min(coords.top, endCoords.top) - margin,\n Math.max(coords.left, endCoords.left),\n Math.max(coords.bottom, endCoords.bottom) + margin);\n var startTop = cm.doc.scrollTop, startLeft = cm.doc.scrollLeft;\n if (scrollPos.scrollTop != null) {\n setScrollTop(cm, scrollPos.scrollTop);\n if (Math.abs(cm.doc.scrollTop - startTop) > 1) changed = true;\n }\n if (scrollPos.scrollLeft != null) {\n setScrollLeft(cm, scrollPos.scrollLeft);\n if (Math.abs(cm.doc.scrollLeft - startLeft) > 1) changed = true;\n }\n if (!changed) break;\n }\n return coords;\n }\n\n // Scroll a given set of coordinates into view (immediately).\n function scrollIntoView(cm, x1, y1, x2, y2) {\n var scrollPos = calculateScrollPos(cm, x1, y1, x2, y2);\n if (scrollPos.scrollTop != null) setScrollTop(cm, scrollPos.scrollTop);\n if (scrollPos.scrollLeft != null) setScrollLeft(cm, scrollPos.scrollLeft);\n }\n\n // Calculate a new scroll position needed to scroll the given\n // rectangle into view. Returns an object with scrollTop and\n // scrollLeft properties. When these are undefined, the\n // vertical/horizontal position does not need to be adjusted.\n function calculateScrollPos(cm, x1, y1, x2, y2) {\n var display = cm.display, snapMargin = textHeight(cm.display);\n if (y1 < 0) y1 = 0;\n var screentop = cm.curOp && cm.curOp.scrollTop != null ? cm.curOp.scrollTop : display.scroller.scrollTop;\n var screen = displayHeight(cm), result = {};\n if (y2 - y1 > screen) y2 = y1 + screen;\n var docBottom = cm.doc.height + paddingVert(display);\n var atTop = y1 < snapMargin, atBottom = y2 > docBottom - snapMargin;\n if (y1 < screentop) {\n result.scrollTop = atTop ? 0 : y1;\n } else if (y2 > screentop + screen) {\n var newTop = Math.min(y1, (atBottom ? docBottom : y2) - screen);\n if (newTop != screentop) result.scrollTop = newTop;\n }\n\n var screenleft = cm.curOp && cm.curOp.scrollLeft != null ? cm.curOp.scrollLeft : display.scroller.scrollLeft;\n var screenw = displayWidth(cm) - (cm.options.fixedGutter ? display.gutters.offsetWidth : 0);\n var tooWide = x2 - x1 > screenw;\n if (tooWide) x2 = x1 + screenw;\n if (x1 < 10)\n result.scrollLeft = 0;\n else if (x1 < screenleft)\n result.scrollLeft = Math.max(0, x1 - (tooWide ? 0 : 10));\n else if (x2 > screenw + screenleft - 3)\n result.scrollLeft = x2 + (tooWide ? 0 : 10) - screenw;\n return result;\n }\n\n // Store a relative adjustment to the scroll position in the current\n // operation (to be applied when the operation finishes).\n function addToScrollPos(cm, left, top) {\n if (left != null || top != null) resolveScrollToPos(cm);\n if (left != null)\n cm.curOp.scrollLeft = (cm.curOp.scrollLeft == null ? cm.doc.scrollLeft : cm.curOp.scrollLeft) + left;\n if (top != null)\n cm.curOp.scrollTop = (cm.curOp.scrollTop == null ? cm.doc.scrollTop : cm.curOp.scrollTop) + top;\n }\n\n // Make sure that at the end of the operation the current cursor is\n // shown.\n function ensureCursorVisible(cm) {\n resolveScrollToPos(cm);\n var cur = cm.getCursor(), from = cur, to = cur;\n if (!cm.options.lineWrapping) {\n from = cur.ch ? Pos(cur.line, cur.ch - 1) : cur;\n to = Pos(cur.line, cur.ch + 1);\n }\n cm.curOp.scrollToPos = {from: from, to: to, margin: cm.options.cursorScrollMargin, isCursor: true};\n }\n\n // When an operation has its scrollToPos property set, and another\n // scroll action is applied before the end of the operation, this\n // 'simulates' scrolling that position into view in a cheap way, so\n // that the effect of intermediate scroll commands is not ignored.\n function resolveScrollToPos(cm) {\n var range = cm.curOp.scrollToPos;\n if (range) {\n cm.curOp.scrollToPos = null;\n var from = estimateCoords(cm, range.from), to = estimateCoords(cm, range.to);\n var sPos = calculateScrollPos(cm, Math.min(from.left, to.left),\n Math.min(from.top, to.top) - range.margin,\n Math.max(from.right, to.right),\n Math.max(from.bottom, to.bottom) + range.margin);\n cm.scrollTo(sPos.scrollLeft, sPos.scrollTop);\n }\n }\n\n // API UTILITIES\n\n // Indent the given line. The how parameter can be \"smart\",\n // \"add\"/null, \"subtract\", or \"prev\". When aggressive is false\n // (typically set to true for forced single-line indents), empty\n // lines are not indented, and places where the mode returns Pass\n // are left alone.\n function indentLine(cm, n, how, aggressive) {\n var doc = cm.doc, state;\n if (how == null) how = \"add\";\n if (how == \"smart\") {\n // Fall back to \"prev\" when the mode doesn't have an indentation\n // method.\n if (!doc.mode.indent) how = \"prev\";\n else state = getStateBefore(cm, n);\n }\n\n var tabSize = cm.options.tabSize;\n var line = getLine(doc, n), curSpace = countColumn(line.text, null, tabSize);\n if (line.stateAfter) line.stateAfter = null;\n var curSpaceString = line.text.match(/^\\s*/)[0], indentation;\n if (!aggressive && !/\\S/.test(line.text)) {\n indentation = 0;\n how = \"not\";\n } else if (how == \"smart\") {\n indentation = doc.mode.indent(state, line.text.slice(curSpaceString.length), line.text);\n if (indentation == Pass || indentation > 150) {\n if (!aggressive) return;\n how = \"prev\";\n }\n }\n if (how == \"prev\") {\n if (n > doc.first) indentation = countColumn(getLine(doc, n-1).text, null, tabSize);\n else indentation = 0;\n } else if (how == \"add\") {\n indentation = curSpace + cm.options.indentUnit;\n } else if (how == \"subtract\") {\n indentation = curSpace - cm.options.indentUnit;\n } else if (typeof how == \"number\") {\n indentation = curSpace + how;\n }\n indentation = Math.max(0, indentation);\n\n var indentString = \"\", pos = 0;\n if (cm.options.indentWithTabs)\n for (var i = Math.floor(indentation / tabSize); i; --i) {pos += tabSize; indentString += \"\\t\";}\n if (pos < indentation) indentString += spaceStr(indentation - pos);\n\n if (indentString != curSpaceString) {\n replaceRange(doc, indentString, Pos(n, 0), Pos(n, curSpaceString.length), \"+input\");\n } else {\n // Ensure that, if the cursor was in the whitespace at the start\n // of the line, it is moved to the end of that space.\n for (var i = 0; i < doc.sel.ranges.length; i++) {\n var range = doc.sel.ranges[i];\n if (range.head.line == n && range.head.ch < curSpaceString.length) {\n var pos = Pos(n, curSpaceString.length);\n replaceOneSelection(doc, i, new Range(pos, pos));\n break;\n }\n }\n }\n line.stateAfter = null;\n }\n\n // Utility for applying a change to a line by handle or number,\n // returning the number and optionally registering the line as\n // changed.\n function changeLine(doc, handle, changeType, op) {\n var no = handle, line = handle;\n if (typeof handle == \"number\") line = getLine(doc, clipLine(doc, handle));\n else no = lineNo(handle);\n if (no == null) return null;\n if (op(line, no) && doc.cm) regLineChange(doc.cm, no, changeType);\n return line;\n }\n\n // Helper for deleting text near the selection(s), used to implement\n // backspace, delete, and similar functionality.\n function deleteNearSelection(cm, compute) {\n var ranges = cm.doc.sel.ranges, kill = [];\n // Build up a set of ranges to kill first, merging overlapping\n // ranges.\n for (var i = 0; i < ranges.length; i++) {\n var toKill = compute(ranges[i]);\n while (kill.length && cmp(toKill.from, lst(kill).to) <= 0) {\n var replaced = kill.pop();\n if (cmp(replaced.from, toKill.from) < 0) {\n toKill.from = replaced.from;\n break;\n }\n }\n kill.push(toKill);\n }\n // Next, remove those actual ranges.\n runInOp(cm, function() {\n for (var i = kill.length - 1; i >= 0; i--)\n replaceRange(cm.doc, \"\", kill[i].from, kill[i].to, \"+delete\");\n ensureCursorVisible(cm);\n });\n }\n\n // Used for horizontal relative motion. Dir is -1 or 1 (left or\n // right), unit can be \"char\", \"column\" (like char, but doesn't\n // cross line boundaries), \"word\" (across next word), or \"group\" (to\n // the start of next group of word or non-word-non-whitespace\n // chars). The visually param controls whether, in right-to-left\n // text, direction 1 means to move towards the next index in the\n // string, or towards the character to the right of the current\n // position. The resulting position will have a hitSide=true\n // property if it reached the end of the document.\n function findPosH(doc, pos, dir, unit, visually) {\n var line = pos.line, ch = pos.ch, origDir = dir;\n var lineObj = getLine(doc, line);\n var possible = true;\n function findNextLine() {\n var l = line + dir;\n if (l < doc.first || l >= doc.first + doc.size) return (possible = false);\n line = l;\n return lineObj = getLine(doc, l);\n }\n function moveOnce(boundToLine) {\n var next = (visually ? moveVisually : moveLogically)(lineObj, ch, dir, true);\n if (next == null) {\n if (!boundToLine && findNextLine()) {\n if (visually) ch = (dir < 0 ? lineRight : lineLeft)(lineObj);\n else ch = dir < 0 ? lineObj.text.length : 0;\n } else return (possible = false);\n } else ch = next;\n return true;\n }\n\n if (unit == \"char\") moveOnce();\n else if (unit == \"column\") moveOnce(true);\n else if (unit == \"word\" || unit == \"group\") {\n var sawType = null, group = unit == \"group\";\n var helper = doc.cm && doc.cm.getHelper(pos, \"wordChars\");\n for (var first = true;; first = false) {\n if (dir < 0 && !moveOnce(!first)) break;\n var cur = lineObj.text.charAt(ch) || \"\\n\";\n var type = isWordChar(cur, helper) ? \"w\"\n : group && cur == \"\\n\" ? \"n\"\n : !group || /\\s/.test(cur) ? null\n : \"p\";\n if (group && !first && !type) type = \"s\";\n if (sawType && sawType != type) {\n if (dir < 0) {dir = 1; moveOnce();}\n break;\n }\n\n if (type) sawType = type;\n if (dir > 0 && !moveOnce(!first)) break;\n }\n }\n var result = skipAtomic(doc, Pos(line, ch), origDir, true);\n if (!possible) result.hitSide = true;\n return result;\n }\n\n // For relative vertical movement. Dir may be -1 or 1. Unit can be\n // \"page\" or \"line\". The resulting position will have a hitSide=true\n // property if it reached the end of the document.\n function findPosV(cm, pos, dir, unit) {\n var doc = cm.doc, x = pos.left, y;\n if (unit == \"page\") {\n var pageSize = Math.min(cm.display.wrapper.clientHeight, window.innerHeight || document.documentElement.clientHeight);\n y = pos.top + dir * (pageSize - (dir < 0 ? 1.5 : .5) * textHeight(cm.display));\n } else if (unit == \"line\") {\n y = dir > 0 ? pos.bottom + 3 : pos.top - 3;\n }\n for (;;) {\n var target = coordsChar(cm, x, y);\n if (!target.outside) break;\n if (dir < 0 ? y <= 0 : y >= doc.height) { target.hitSide = true; break; }\n y += dir * 5;\n }\n return target;\n }\n\n // EDITOR METHODS\n\n // The publicly visible API. Note that methodOp(f) means\n // 'wrap f in an operation, performed on its `this` parameter'.\n\n // This is not the complete set of editor methods. Most of the\n // methods defined on the Doc type are also injected into\n // CodeMirror.prototype, for backwards compatibility and\n // convenience.\n\n CodeMirror.prototype = {\n constructor: CodeMirror,\n focus: function(){window.focus(); focusInput(this); fastPoll(this);},\n\n setOption: function(option, value) {\n var options = this.options, old = options[option];\n if (options[option] == value && option != \"mode\") return;\n options[option] = value;\n if (optionHandlers.hasOwnProperty(option))\n operation(this, optionHandlers[option])(this, value, old);\n },\n\n getOption: function(option) {return this.options[option];},\n getDoc: function() {return this.doc;},\n\n addKeyMap: function(map, bottom) {\n this.state.keyMaps[bottom ? \"push\" : \"unshift\"](getKeyMap(map));\n },\n removeKeyMap: function(map) {\n var maps = this.state.keyMaps;\n for (var i = 0; i < maps.length; ++i)\n if (maps[i] == map || maps[i].name == map) {\n maps.splice(i, 1);\n return true;\n }\n },\n\n addOverlay: methodOp(function(spec, options) {\n var mode = spec.token ? spec : CodeMirror.getMode(this.options, spec);\n if (mode.startState) throw new Error(\"Overlays may not be stateful.\");\n this.state.overlays.push({mode: mode, modeSpec: spec, opaque: options && options.opaque});\n this.state.modeGen++;\n regChange(this);\n }),\n removeOverlay: methodOp(function(spec) {\n var overlays = this.state.overlays;\n for (var i = 0; i < overlays.length; ++i) {\n var cur = overlays[i].modeSpec;\n if (cur == spec || typeof spec == \"string\" && cur.name == spec) {\n overlays.splice(i, 1);\n this.state.modeGen++;\n regChange(this);\n return;\n }\n }\n }),\n\n indentLine: methodOp(function(n, dir, aggressive) {\n if (typeof dir != \"string\" && typeof dir != \"number\") {\n if (dir == null) dir = this.options.smartIndent ? \"smart\" : \"prev\";\n else dir = dir ? \"add\" : \"subtract\";\n }\n if (isLine(this.doc, n)) indentLine(this, n, dir, aggressive);\n }),\n indentSelection: methodOp(function(how) {\n var ranges = this.doc.sel.ranges, end = -1;\n for (var i = 0; i < ranges.length; i++) {\n var range = ranges[i];\n if (!range.empty()) {\n var from = range.from(), to = range.to();\n var start = Math.max(end, from.line);\n end = Math.min(this.lastLine(), to.line - (to.ch ? 0 : 1)) + 1;\n for (var j = start; j < end; ++j)\n indentLine(this, j, how);\n var newRanges = this.doc.sel.ranges;\n if (from.ch == 0 && ranges.length == newRanges.length && newRanges[i].from().ch > 0)\n replaceOneSelection(this.doc, i, new Range(from, newRanges[i].to()), sel_dontScroll);\n } else if (range.head.line > end) {\n indentLine(this, range.head.line, how, true);\n end = range.head.line;\n if (i == this.doc.sel.primIndex) ensureCursorVisible(this);\n }\n }\n }),\n\n // Fetch the parser token for a given character. Useful for hacks\n // that want to inspect the mode state (say, for completion).\n getTokenAt: function(pos, precise) {\n return takeToken(this, pos, precise);\n },\n\n getLineTokens: function(line, precise) {\n return takeToken(this, Pos(line), precise, true);\n },\n\n getTokenTypeAt: function(pos) {\n pos = clipPos(this.doc, pos);\n var styles = getLineStyles(this, getLine(this.doc, pos.line));\n var before = 0, after = (styles.length - 1) / 2, ch = pos.ch;\n var type;\n if (ch == 0) type = styles[2];\n else for (;;) {\n var mid = (before + after) >> 1;\n if ((mid ? styles[mid * 2 - 1] : 0) >= ch) after = mid;\n else if (styles[mid * 2 + 1] < ch) before = mid + 1;\n else { type = styles[mid * 2 + 2]; break; }\n }\n var cut = type ? type.indexOf(\"cm-overlay \") : -1;\n return cut < 0 ? type : cut == 0 ? null : type.slice(0, cut - 1);\n },\n\n getModeAt: function(pos) {\n var mode = this.doc.mode;\n if (!mode.innerMode) return mode;\n return CodeMirror.innerMode(mode, this.getTokenAt(pos).state).mode;\n },\n\n getHelper: function(pos, type) {\n return this.getHelpers(pos, type)[0];\n },\n\n getHelpers: function(pos, type) {\n var found = [];\n if (!helpers.hasOwnProperty(type)) return helpers;\n var help = helpers[type], mode = this.getModeAt(pos);\n if (typeof mode[type] == \"string\") {\n if (help[mode[type]]) found.push(help[mode[type]]);\n } else if (mode[type]) {\n for (var i = 0; i < mode[type].length; i++) {\n var val = help[mode[type][i]];\n if (val) found.push(val);\n }\n } else if (mode.helperType && help[mode.helperType]) {\n found.push(help[mode.helperType]);\n } else if (help[mode.name]) {\n found.push(help[mode.name]);\n }\n for (var i = 0; i < help._global.length; i++) {\n var cur = help._global[i];\n if (cur.pred(mode, this) && indexOf(found, cur.val) == -1)\n found.push(cur.val);\n }\n return found;\n },\n\n getStateAfter: function(line, precise) {\n var doc = this.doc;\n line = clipLine(doc, line == null ? doc.first + doc.size - 1: line);\n return getStateBefore(this, line + 1, precise);\n },\n\n cursorCoords: function(start, mode) {\n var pos, range = this.doc.sel.primary();\n if (start == null) pos = range.head;\n else if (typeof start == \"object\") pos = clipPos(this.doc, start);\n else pos = start ? range.from() : range.to();\n return cursorCoords(this, pos, mode || \"page\");\n },\n\n charCoords: function(pos, mode) {\n return charCoords(this, clipPos(this.doc, pos), mode || \"page\");\n },\n\n coordsChar: function(coords, mode) {\n coords = fromCoordSystem(this, coords, mode || \"page\");\n return coordsChar(this, coords.left, coords.top);\n },\n\n lineAtHeight: function(height, mode) {\n height = fromCoordSystem(this, {top: height, left: 0}, mode || \"page\").top;\n return lineAtHeight(this.doc, height + this.display.viewOffset);\n },\n heightAtLine: function(line, mode) {\n var end = false, last = this.doc.first + this.doc.size - 1;\n if (line < this.doc.first) line = this.doc.first;\n else if (line > last) { line = last; end = true; }\n var lineObj = getLine(this.doc, line);\n return intoCoordSystem(this, lineObj, {top: 0, left: 0}, mode || \"page\").top +\n (end ? this.doc.height - heightAtLine(lineObj) : 0);\n },\n\n defaultTextHeight: function() { return textHeight(this.display); },\n defaultCharWidth: function() { return charWidth(this.display); },\n\n setGutterMarker: methodOp(function(line, gutterID, value) {\n return changeLine(this.doc, line, \"gutter\", function(line) {\n var markers = line.gutterMarkers || (line.gutterMarkers = {});\n markers[gutterID] = value;\n if (!value && isEmpty(markers)) line.gutterMarkers = null;\n return true;\n });\n }),\n\n clearGutter: methodOp(function(gutterID) {\n var cm = this, doc = cm.doc, i = doc.first;\n doc.iter(function(line) {\n if (line.gutterMarkers && line.gutterMarkers[gutterID]) {\n line.gutterMarkers[gutterID] = null;\n regLineChange(cm, i, \"gutter\");\n if (isEmpty(line.gutterMarkers)) line.gutterMarkers = null;\n }\n ++i;\n });\n }),\n\n addLineWidget: methodOp(function(handle, node, options) {\n return addLineWidget(this, handle, node, options);\n }),\n\n removeLineWidget: function(widget) { widget.clear(); },\n\n lineInfo: function(line) {\n if (typeof line == \"number\") {\n if (!isLine(this.doc, line)) return null;\n var n = line;\n line = getLine(this.doc, line);\n if (!line) return null;\n } else {\n var n = lineNo(line);\n if (n == null) return null;\n }\n return {line: n, handle: line, text: line.text, gutterMarkers: line.gutterMarkers,\n textClass: line.textClass, bgClass: line.bgClass, wrapClass: line.wrapClass,\n widgets: line.widgets};\n },\n\n getViewport: function() { return {from: this.display.viewFrom, to: this.display.viewTo};},\n\n addWidget: function(pos, node, scroll, vert, horiz) {\n var display = this.display;\n pos = cursorCoords(this, clipPos(this.doc, pos));\n var top = pos.bottom, left = pos.left;\n node.style.position = \"absolute\";\n node.setAttribute(\"cm-ignore-events\", \"true\");\n display.sizer.appendChild(node);\n if (vert == \"over\") {\n top = pos.top;\n } else if (vert == \"above\" || vert == \"near\") {\n var vspace = Math.max(display.wrapper.clientHeight, this.doc.height),\n hspace = Math.max(display.sizer.clientWidth, display.lineSpace.clientWidth);\n // Default to positioning above (if specified and possible); otherwise default to positioning below\n if ((vert == 'above' || pos.bottom + node.offsetHeight > vspace) && pos.top > node.offsetHeight)\n top = pos.top - node.offsetHeight;\n else if (pos.bottom + node.offsetHeight <= vspace)\n top = pos.bottom;\n if (left + node.offsetWidth > hspace)\n left = hspace - node.offsetWidth;\n }\n node.style.top = top + \"px\";\n node.style.left = node.style.right = \"\";\n if (horiz == \"right\") {\n left = display.sizer.clientWidth - node.offsetWidth;\n node.style.right = \"0px\";\n } else {\n if (horiz == \"left\") left = 0;\n else if (horiz == \"middle\") left = (display.sizer.clientWidth - node.offsetWidth) / 2;\n node.style.left = left + \"px\";\n }\n if (scroll)\n scrollIntoView(this, left, top, left + node.offsetWidth, top + node.offsetHeight);\n },\n\n triggerOnKeyDown: methodOp(onKeyDown),\n triggerOnKeyPress: methodOp(onKeyPress),\n triggerOnKeyUp: onKeyUp,\n\n execCommand: function(cmd) {\n if (commands.hasOwnProperty(cmd))\n return commands[cmd](this);\n },\n\n findPosH: function(from, amount, unit, visually) {\n var dir = 1;\n if (amount < 0) { dir = -1; amount = -amount; }\n for (var i = 0, cur = clipPos(this.doc, from); i < amount; ++i) {\n cur = findPosH(this.doc, cur, dir, unit, visually);\n if (cur.hitSide) break;\n }\n return cur;\n },\n\n moveH: methodOp(function(dir, unit) {\n var cm = this;\n cm.extendSelectionsBy(function(range) {\n if (cm.display.shift || cm.doc.extend || range.empty())\n return findPosH(cm.doc, range.head, dir, unit, cm.options.rtlMoveVisually);\n else\n return dir < 0 ? range.from() : range.to();\n }, sel_move);\n }),\n\n deleteH: methodOp(function(dir, unit) {\n var sel = this.doc.sel, doc = this.doc;\n if (sel.somethingSelected())\n doc.replaceSelection(\"\", null, \"+delete\");\n else\n deleteNearSelection(this, function(range) {\n var other = findPosH(doc, range.head, dir, unit, false);\n return dir < 0 ? {from: other, to: range.head} : {from: range.head, to: other};\n });\n }),\n\n findPosV: function(from, amount, unit, goalColumn) {\n var dir = 1, x = goalColumn;\n if (amount < 0) { dir = -1; amount = -amount; }\n for (var i = 0, cur = clipPos(this.doc, from); i < amount; ++i) {\n var coords = cursorCoords(this, cur, \"div\");\n if (x == null) x = coords.left;\n else coords.left = x;\n cur = findPosV(this, coords, dir, unit);\n if (cur.hitSide) break;\n }\n return cur;\n },\n\n moveV: methodOp(function(dir, unit) {\n var cm = this, doc = this.doc, goals = [];\n var collapse = !cm.display.shift && !doc.extend && doc.sel.somethingSelected();\n doc.extendSelectionsBy(function(range) {\n if (collapse)\n return dir < 0 ? range.from() : range.to();\n var headPos = cursorCoords(cm, range.head, \"div\");\n if (range.goalColumn != null) headPos.left = range.goalColumn;\n goals.push(headPos.left);\n var pos = findPosV(cm, headPos, dir, unit);\n if (unit == \"page\" && range == doc.sel.primary())\n addToScrollPos(cm, null, charCoords(cm, pos, \"div\").top - headPos.top);\n return pos;\n }, sel_move);\n if (goals.length) for (var i = 0; i < doc.sel.ranges.length; i++)\n doc.sel.ranges[i].goalColumn = goals[i];\n }),\n\n // Find the word at the given position (as returned by coordsChar).\n findWordAt: function(pos) {\n var doc = this.doc, line = getLine(doc, pos.line).text;\n var start = pos.ch, end = pos.ch;\n if (line) {\n var helper = this.getHelper(pos, \"wordChars\");\n if ((pos.xRel < 0 || end == line.length) && start) --start; else ++end;\n var startChar = line.charAt(start);\n var check = isWordChar(startChar, helper)\n ? function(ch) { return isWordChar(ch, helper); }\n : /\\s/.test(startChar) ? function(ch) {return /\\s/.test(ch);}\n : function(ch) {return !/\\s/.test(ch) && !isWordChar(ch);};\n while (start > 0 && check(line.charAt(start - 1))) --start;\n while (end < line.length && check(line.charAt(end))) ++end;\n }\n return new Range(Pos(pos.line, start), Pos(pos.line, end));\n },\n\n toggleOverwrite: function(value) {\n if (value != null && value == this.state.overwrite) return;\n if (this.state.overwrite = !this.state.overwrite)\n addClass(this.display.cursorDiv, \"CodeMirror-overwrite\");\n else\n rmClass(this.display.cursorDiv, \"CodeMirror-overwrite\");\n\n signal(this, \"overwriteToggle\", this, this.state.overwrite);\n },\n hasFocus: function() { return activeElt() == this.display.input; },\n\n scrollTo: methodOp(function(x, y) {\n if (x != null || y != null) resolveScrollToPos(this);\n if (x != null) this.curOp.scrollLeft = x;\n if (y != null) this.curOp.scrollTop = y;\n }),\n getScrollInfo: function() {\n var scroller = this.display.scroller;\n return {left: scroller.scrollLeft, top: scroller.scrollTop,\n height: scroller.scrollHeight - scrollGap(this) - this.display.barHeight,\n width: scroller.scrollWidth - scrollGap(this) - this.display.barWidth,\n clientHeight: displayHeight(this), clientWidth: displayWidth(this)};\n },\n\n scrollIntoView: methodOp(function(range, margin) {\n if (range == null) {\n range = {from: this.doc.sel.primary().head, to: null};\n if (margin == null) margin = this.options.cursorScrollMargin;\n } else if (typeof range == \"number\") {\n range = {from: Pos(range, 0), to: null};\n } else if (range.from == null) {\n range = {from: range, to: null};\n }\n if (!range.to) range.to = range.from;\n range.margin = margin || 0;\n\n if (range.from.line != null) {\n resolveScrollToPos(this);\n this.curOp.scrollToPos = range;\n } else {\n var sPos = calculateScrollPos(this, Math.min(range.from.left, range.to.left),\n Math.min(range.from.top, range.to.top) - range.margin,\n Math.max(range.from.right, range.to.right),\n Math.max(range.from.bottom, range.to.bottom) + range.margin);\n this.scrollTo(sPos.scrollLeft, sPos.scrollTop);\n }\n }),\n\n setSize: methodOp(function(width, height) {\n var cm = this;\n function interpret(val) {\n return typeof val == \"number\" || /^\\d+$/.test(String(val)) ? val + \"px\" : val;\n }\n if (width != null) cm.display.wrapper.style.width = interpret(width);\n if (height != null) cm.display.wrapper.style.height = interpret(height);\n if (cm.options.lineWrapping) clearLineMeasurementCache(this);\n var lineNo = cm.display.viewFrom;\n cm.doc.iter(lineNo, cm.display.viewTo, function(line) {\n if (line.widgets) for (var i = 0; i < line.widgets.length; i++)\n if (line.widgets[i].noHScroll) { regLineChange(cm, lineNo, \"widget\"); break; }\n ++lineNo;\n });\n cm.curOp.forceUpdate = true;\n signal(cm, \"refresh\", this);\n }),\n\n operation: function(f){return runInOp(this, f);},\n\n refresh: methodOp(function() {\n var oldHeight = this.display.cachedTextHeight;\n regChange(this);\n this.curOp.forceUpdate = true;\n clearCaches(this);\n this.scrollTo(this.doc.scrollLeft, this.doc.scrollTop);\n updateGutterSpace(this);\n if (oldHeight == null || Math.abs(oldHeight - textHeight(this.display)) > .5)\n estimateLineHeights(this);\n signal(this, \"refresh\", this);\n }),\n\n swapDoc: methodOp(function(doc) {\n var old = this.doc;\n old.cm = null;\n attachDoc(this, doc);\n clearCaches(this);\n resetInput(this);\n this.scrollTo(doc.scrollLeft, doc.scrollTop);\n this.curOp.forceScroll = true;\n signalLater(this, \"swapDoc\", this, old);\n return old;\n }),\n\n getInputField: function(){return this.display.input;},\n getWrapperElement: function(){return this.display.wrapper;},\n getScrollerElement: function(){return this.display.scroller;},\n getGutterElement: function(){return this.display.gutters;}\n };\n eventMixin(CodeMirror);\n\n // OPTION DEFAULTS\n\n // The default configuration options.\n var defaults = CodeMirror.defaults = {};\n // Functions to run when options are changed.\n var optionHandlers = CodeMirror.optionHandlers = {};\n\n function option(name, deflt, handle, notOnInit) {\n CodeMirror.defaults[name] = deflt;\n if (handle) optionHandlers[name] =\n notOnInit ? function(cm, val, old) {if (old != Init) handle(cm, val, old);} : handle;\n }\n\n // Passed to option handlers when there is no old value.\n var Init = CodeMirror.Init = {toString: function(){return \"CodeMirror.Init\";}};\n\n // These two are, on init, called from the constructor because they\n // have to be initialized before the editor can start at all.\n option(\"value\", \"\", function(cm, val) {\n cm.setValue(val);\n }, true);\n option(\"mode\", null, function(cm, val) {\n cm.doc.modeOption = val;\n loadMode(cm);\n }, true);\n\n option(\"indentUnit\", 2, loadMode, true);\n option(\"indentWithTabs\", false);\n option(\"smartIndent\", true);\n option(\"tabSize\", 4, function(cm) {\n resetModeState(cm);\n clearCaches(cm);\n regChange(cm);\n }, true);\n option(\"specialChars\", /[\\t\\u0000-\\u0019\\u00ad\\u200b-\\u200f\\u2028\\u2029\\ufeff]/g, function(cm, val) {\n cm.options.specialChars = new RegExp(val.source + (val.test(\"\\t\") ? \"\" : \"|\\t\"), \"g\");\n cm.refresh();\n }, true);\n option(\"specialCharPlaceholder\", defaultSpecialCharPlaceholder, function(cm) {cm.refresh();}, true);\n option(\"electricChars\", true);\n option(\"rtlMoveVisually\", !windows);\n option(\"wholeLineUpdateBefore\", true);\n\n option(\"theme\", \"default\", function(cm) {\n themeChanged(cm);\n guttersChanged(cm);\n }, true);\n option(\"keyMap\", \"default\", function(cm, val, old) {\n var next = getKeyMap(val);\n var prev = old != CodeMirror.Init && getKeyMap(old);\n if (prev && prev.detach) prev.detach(cm, next);\n if (next.attach) next.attach(cm, prev || null);\n });\n option(\"extraKeys\", null);\n\n option(\"lineWrapping\", false, wrappingChanged, true);\n option(\"gutters\", [], function(cm) {\n setGuttersForLineNumbers(cm.options);\n guttersChanged(cm);\n }, true);\n option(\"fixedGutter\", true, function(cm, val) {\n cm.display.gutters.style.left = val ? compensateForHScroll(cm.display) + \"px\" : \"0\";\n cm.refresh();\n }, true);\n option(\"coverGutterNextToScrollbar\", false, function(cm) {updateScrollbars(cm);}, true);\n option(\"scrollbarStyle\", \"native\", function(cm) {\n initScrollbars(cm);\n updateScrollbars(cm);\n cm.display.scrollbars.setScrollTop(cm.doc.scrollTop);\n cm.display.scrollbars.setScrollLeft(cm.doc.scrollLeft);\n }, true);\n option(\"lineNumbers\", false, function(cm) {\n setGuttersForLineNumbers(cm.options);\n guttersChanged(cm);\n }, true);\n option(\"firstLineNumber\", 1, guttersChanged, true);\n option(\"lineNumberFormatter\", function(integer) {return integer;}, guttersChanged, true);\n option(\"showCursorWhenSelecting\", false, updateSelection, true);\n\n option(\"resetSelectionOnContextMenu\", true);\n\n option(\"readOnly\", false, function(cm, val) {\n if (val == \"nocursor\") {\n onBlur(cm);\n cm.display.input.blur();\n cm.display.disabled = true;\n } else {\n cm.display.disabled = false;\n if (!val) resetInput(cm);\n }\n });\n option(\"disableInput\", false, function(cm, val) {if (!val) resetInput(cm);}, true);\n option(\"dragDrop\", true);\n\n option(\"cursorBlinkRate\", 530);\n option(\"cursorScrollMargin\", 0);\n option(\"cursorHeight\", 1, updateSelection, true);\n option(\"singleCursorHeightPerLine\", true, updateSelection, true);\n option(\"workTime\", 100);\n option(\"workDelay\", 100);\n option(\"flattenSpans\", true, resetModeState, true);\n option(\"addModeClass\", false, resetModeState, true);\n option(\"pollInterval\", 100);\n option(\"undoDepth\", 200, function(cm, val){cm.doc.history.undoDepth = val;});\n option(\"historyEventDelay\", 1250);\n option(\"viewportMargin\", 10, function(cm){cm.refresh();}, true);\n option(\"maxHighlightLength\", 10000, resetModeState, true);\n option(\"moveInputWithCursor\", true, function(cm, val) {\n if (!val) cm.display.inputDiv.style.top = cm.display.inputDiv.style.left = 0;\n });\n\n option(\"tabindex\", null, function(cm, val) {\n cm.display.input.tabIndex = val || \"\";\n });\n option(\"autofocus\", null);\n\n // MODE DEFINITION AND QUERYING\n\n // Known modes, by name and by MIME\n var modes = CodeMirror.modes = {}, mimeModes = CodeMirror.mimeModes = {};\n\n // Extra arguments are stored as the mode's dependencies, which is\n // used by (legacy) mechanisms like loadmode.js to automatically\n // load a mode. (Preferred mechanism is the require/define calls.)\n CodeMirror.defineMode = function(name, mode) {\n if (!CodeMirror.defaults.mode && name != \"null\") CodeMirror.defaults.mode = name;\n if (arguments.length > 2)\n mode.dependencies = Array.prototype.slice.call(arguments, 2);\n modes[name] = mode;\n };\n\n CodeMirror.defineMIME = function(mime, spec) {\n mimeModes[mime] = spec;\n };\n\n // Given a MIME type, a {name, ...options} config object, or a name\n // string, return a mode config object.\n CodeMirror.resolveMode = function(spec) {\n if (typeof spec == \"string\" && mimeModes.hasOwnProperty(spec)) {\n spec = mimeModes[spec];\n } else if (spec && typeof spec.name == \"string\" && mimeModes.hasOwnProperty(spec.name)) {\n var found = mimeModes[spec.name];\n if (typeof found == \"string\") found = {name: found};\n spec = createObj(found, spec);\n spec.name = found.name;\n } else if (typeof spec == \"string\" && /^[\\w\\-]+\\/[\\w\\-]+\\+xml$/.test(spec)) {\n return CodeMirror.resolveMode(\"application/xml\");\n }\n if (typeof spec == \"string\") return {name: spec};\n else return spec || {name: \"null\"};\n };\n\n // Given a mode spec (anything that resolveMode accepts), find and\n // initialize an actual mode object.\n CodeMirror.getMode = function(options, spec) {\n var spec = CodeMirror.resolveMode(spec);\n var mfactory = modes[spec.name];\n if (!mfactory) return CodeMirror.getMode(options, \"text/plain\");\n var modeObj = mfactory(options, spec);\n if (modeExtensions.hasOwnProperty(spec.name)) {\n var exts = modeExtensions[spec.name];\n for (var prop in exts) {\n if (!exts.hasOwnProperty(prop)) continue;\n if (modeObj.hasOwnProperty(prop)) modeObj[\"_\" + prop] = modeObj[prop];\n modeObj[prop] = exts[prop];\n }\n }\n modeObj.name = spec.name;\n if (spec.helperType) modeObj.helperType = spec.helperType;\n if (spec.modeProps) for (var prop in spec.modeProps)\n modeObj[prop] = spec.modeProps[prop];\n\n return modeObj;\n };\n\n // Minimal default mode.\n CodeMirror.defineMode(\"null\", function() {\n return {token: function(stream) {stream.skipToEnd();}};\n });\n CodeMirror.defineMIME(\"text/plain\", \"null\");\n\n // This can be used to attach properties to mode objects from\n // outside the actual mode definition.\n var modeExtensions = CodeMirror.modeExtensions = {};\n CodeMirror.extendMode = function(mode, properties) {\n var exts = modeExtensions.hasOwnProperty(mode) ? modeExtensions[mode] : (modeExtensions[mode] = {});\n copyObj(properties, exts);\n };\n\n // EXTENSIONS\n\n CodeMirror.defineExtension = function(name, func) {\n CodeMirror.prototype[name] = func;\n };\n CodeMirror.defineDocExtension = function(name, func) {\n Doc.prototype[name] = func;\n };\n CodeMirror.defineOption = option;\n\n var initHooks = [];\n CodeMirror.defineInitHook = function(f) {initHooks.push(f);};\n\n var helpers = CodeMirror.helpers = {};\n CodeMirror.registerHelper = function(type, name, value) {\n if (!helpers.hasOwnProperty(type)) helpers[type] = CodeMirror[type] = {_global: []};\n helpers[type][name] = value;\n };\n CodeMirror.registerGlobalHelper = function(type, name, predicate, value) {\n CodeMirror.registerHelper(type, name, value);\n helpers[type]._global.push({pred: predicate, val: value});\n };\n\n // MODE STATE HANDLING\n\n // Utility functions for working with state. Exported because nested\n // modes need to do this for their inner modes.\n\n var copyState = CodeMirror.copyState = function(mode, state) {\n if (state === true) return state;\n if (mode.copyState) return mode.copyState(state);\n var nstate = {};\n for (var n in state) {\n var val = state[n];\n if (val instanceof Array) val = val.concat([]);\n nstate[n] = val;\n }\n return nstate;\n };\n\n var startState = CodeMirror.startState = function(mode, a1, a2) {\n return mode.startState ? mode.startState(a1, a2) : true;\n };\n\n // Given a mode and a state (for that mode), find the inner mode and\n // state at the position that the state refers to.\n CodeMirror.innerMode = function(mode, state) {\n while (mode.innerMode) {\n var info = mode.innerMode(state);\n if (!info || info.mode == mode) break;\n state = info.state;\n mode = info.mode;\n }\n return info || {mode: mode, state: state};\n };\n\n // STANDARD COMMANDS\n\n // Commands are parameter-less actions that can be performed on an\n // editor, mostly used for keybindings.\n var commands = CodeMirror.commands = {\n selectAll: function(cm) {cm.setSelection(Pos(cm.firstLine(), 0), Pos(cm.lastLine()), sel_dontScroll);},\n singleSelection: function(cm) {\n cm.setSelection(cm.getCursor(\"anchor\"), cm.getCursor(\"head\"), sel_dontScroll);\n },\n killLine: function(cm) {\n deleteNearSelection(cm, function(range) {\n if (range.empty()) {\n var len = getLine(cm.doc, range.head.line).text.length;\n if (range.head.ch == len && range.head.line < cm.lastLine())\n return {from: range.head, to: Pos(range.head.line + 1, 0)};\n else\n return {from: range.head, to: Pos(range.head.line, len)};\n } else {\n return {from: range.from(), to: range.to()};\n }\n });\n },\n deleteLine: function(cm) {\n deleteNearSelection(cm, function(range) {\n return {from: Pos(range.from().line, 0),\n to: clipPos(cm.doc, Pos(range.to().line + 1, 0))};\n });\n },\n delLineLeft: function(cm) {\n deleteNearSelection(cm, function(range) {\n return {from: Pos(range.from().line, 0), to: range.from()};\n });\n },\n delWrappedLineLeft: function(cm) {\n deleteNearSelection(cm, function(range) {\n var top = cm.charCoords(range.head, \"div\").top + 5;\n var leftPos = cm.coordsChar({left: 0, top: top}, \"div\");\n return {from: leftPos, to: range.from()};\n });\n },\n delWrappedLineRight: function(cm) {\n deleteNearSelection(cm, function(range) {\n var top = cm.charCoords(range.head, \"div\").top + 5;\n var rightPos = cm.coordsChar({left: cm.display.lineDiv.offsetWidth + 100, top: top}, \"div\");\n return {from: range.from(), to: rightPos };\n });\n },\n undo: function(cm) {cm.undo();},\n redo: function(cm) {cm.redo();},\n undoSelection: function(cm) {cm.undoSelection();},\n redoSelection: function(cm) {cm.redoSelection();},\n goDocStart: function(cm) {cm.extendSelection(Pos(cm.firstLine(), 0));},\n goDocEnd: function(cm) {cm.extendSelection(Pos(cm.lastLine()));},\n goLineStart: function(cm) {\n cm.extendSelectionsBy(function(range) { return lineStart(cm, range.head.line); },\n {origin: \"+move\", bias: 1});\n },\n goLineStartSmart: function(cm) {\n cm.extendSelectionsBy(function(range) {\n return lineStartSmart(cm, range.head);\n }, {origin: \"+move\", bias: 1});\n },\n goLineEnd: function(cm) {\n cm.extendSelectionsBy(function(range) { return lineEnd(cm, range.head.line); },\n {origin: \"+move\", bias: -1});\n },\n goLineRight: function(cm) {\n cm.extendSelectionsBy(function(range) {\n var top = cm.charCoords(range.head, \"div\").top + 5;\n return cm.coordsChar({left: cm.display.lineDiv.offsetWidth + 100, top: top}, \"div\");\n }, sel_move);\n },\n goLineLeft: function(cm) {\n cm.extendSelectionsBy(function(range) {\n var top = cm.charCoords(range.head, \"div\").top + 5;\n return cm.coordsChar({left: 0, top: top}, \"div\");\n }, sel_move);\n },\n goLineLeftSmart: function(cm) {\n cm.extendSelectionsBy(function(range) {\n var top = cm.charCoords(range.head, \"div\").top + 5;\n var pos = cm.coordsChar({left: 0, top: top}, \"div\");\n if (pos.ch < cm.getLine(pos.line).search(/\\S/)) return lineStartSmart(cm, range.head);\n return pos;\n }, sel_move);\n },\n goLineUp: function(cm) {cm.moveV(-1, \"line\");},\n goLineDown: function(cm) {cm.moveV(1, \"line\");},\n goPageUp: function(cm) {cm.moveV(-1, \"page\");},\n goPageDown: function(cm) {cm.moveV(1, \"page\");},\n goCharLeft: function(cm) {cm.moveH(-1, \"char\");},\n goCharRight: function(cm) {cm.moveH(1, \"char\");},\n goColumnLeft: function(cm) {cm.moveH(-1, \"column\");},\n goColumnRight: function(cm) {cm.moveH(1, \"column\");},\n goWordLeft: function(cm) {cm.moveH(-1, \"word\");},\n goGroupRight: function(cm) {cm.moveH(1, \"group\");},\n goGroupLeft: function(cm) {cm.moveH(-1, \"group\");},\n goWordRight: function(cm) {cm.moveH(1, \"word\");},\n delCharBefore: function(cm) {cm.deleteH(-1, \"char\");},\n delCharAfter: function(cm) {cm.deleteH(1, \"char\");},\n delWordBefore: function(cm) {cm.deleteH(-1, \"word\");},\n delWordAfter: function(cm) {cm.deleteH(1, \"word\");},\n delGroupBefore: function(cm) {cm.deleteH(-1, \"group\");},\n delGroupAfter: function(cm) {cm.deleteH(1, \"group\");},\n indentAuto: function(cm) {cm.indentSelection(\"smart\");},\n indentMore: function(cm) {cm.indentSelection(\"add\");},\n indentLess: function(cm) {cm.indentSelection(\"subtract\");},\n insertTab: function(cm) {cm.replaceSelection(\"\\t\");},\n insertSoftTab: function(cm) {\n var spaces = [], ranges = cm.listSelections(), tabSize = cm.options.tabSize;\n for (var i = 0; i < ranges.length; i++) {\n var pos = ranges[i].from();\n var col = countColumn(cm.getLine(pos.line), pos.ch, tabSize);\n spaces.push(new Array(tabSize - col % tabSize + 1).join(\" \"));\n }\n cm.replaceSelections(spaces);\n },\n defaultTab: function(cm) {\n if (cm.somethingSelected()) cm.indentSelection(\"add\");\n else cm.execCommand(\"insertTab\");\n },\n transposeChars: function(cm) {\n runInOp(cm, function() {\n var ranges = cm.listSelections(), newSel = [];\n for (var i = 0; i < ranges.length; i++) {\n var cur = ranges[i].head, line = getLine(cm.doc, cur.line).text;\n if (line) {\n if (cur.ch == line.length) cur = new Pos(cur.line, cur.ch - 1);\n if (cur.ch > 0) {\n cur = new Pos(cur.line, cur.ch + 1);\n cm.replaceRange(line.charAt(cur.ch - 1) + line.charAt(cur.ch - 2),\n Pos(cur.line, cur.ch - 2), cur, \"+transpose\");\n } else if (cur.line > cm.doc.first) {\n var prev = getLine(cm.doc, cur.line - 1).text;\n if (prev)\n cm.replaceRange(line.charAt(0) + \"\\n\" + prev.charAt(prev.length - 1),\n Pos(cur.line - 1, prev.length - 1), Pos(cur.line, 1), \"+transpose\");\n }\n }\n newSel.push(new Range(cur, cur));\n }\n cm.setSelections(newSel);\n });\n },\n newlineAndIndent: function(cm) {\n runInOp(cm, function() {\n var len = cm.listSelections().length;\n for (var i = 0; i < len; i++) {\n var range = cm.listSelections()[i];\n cm.replaceRange(\"\\n\", range.anchor, range.head, \"+input\");\n cm.indentLine(range.from().line + 1, null, true);\n ensureCursorVisible(cm);\n }\n });\n },\n toggleOverwrite: function(cm) {cm.toggleOverwrite();}\n };\n\n\n // STANDARD KEYMAPS\n\n var keyMap = CodeMirror.keyMap = {};\n\n keyMap.basic = {\n \"Left\": \"goCharLeft\", \"Right\": \"goCharRight\", \"Up\": \"goLineUp\", \"Down\": \"goLineDown\",\n \"End\": \"goLineEnd\", \"Home\": \"goLineStartSmart\", \"PageUp\": \"goPageUp\", \"PageDown\": \"goPageDown\",\n \"Delete\": \"delCharAfter\", \"Backspace\": \"delCharBefore\", \"Shift-Backspace\": \"delCharBefore\",\n \"Tab\": \"defaultTab\", \"Shift-Tab\": \"indentAuto\",\n \"Enter\": \"newlineAndIndent\", \"Insert\": \"toggleOverwrite\",\n \"Esc\": \"singleSelection\"\n };\n // Note that the save and find-related commands aren't defined by\n // default. User code or addons can define them. Unknown commands\n // are simply ignored.\n keyMap.pcDefault = {\n \"Ctrl-A\": \"selectAll\", \"Ctrl-D\": \"deleteLine\", \"Ctrl-Z\": \"undo\", \"Shift-Ctrl-Z\": \"redo\", \"Ctrl-Y\": \"redo\",\n \"Ctrl-Home\": \"goDocStart\", \"Ctrl-End\": \"goDocEnd\", \"Ctrl-Up\": \"goLineUp\", \"Ctrl-Down\": \"goLineDown\",\n \"Ctrl-Left\": \"goGroupLeft\", \"Ctrl-Right\": \"goGroupRight\", \"Alt-Left\": \"goLineStart\", \"Alt-Right\": \"goLineEnd\",\n \"Ctrl-Backspace\": \"delGroupBefore\", \"Ctrl-Delete\": \"delGroupAfter\", \"Ctrl-S\": \"save\", \"Ctrl-F\": \"find\",\n \"Ctrl-G\": \"findNext\", \"Shift-Ctrl-G\": \"findPrev\", \"Shift-Ctrl-F\": \"replace\", \"Shift-Ctrl-R\": \"replaceAll\",\n \"Ctrl-[\": \"indentLess\", \"Ctrl-]\": \"indentMore\",\n \"Ctrl-U\": \"undoSelection\", \"Shift-Ctrl-U\": \"redoSelection\", \"Alt-U\": \"redoSelection\",\n fallthrough: \"basic\"\n };\n // Very basic readline/emacs-style bindings, which are standard on Mac.\n keyMap.emacsy = {\n \"Ctrl-F\": \"goCharRight\", \"Ctrl-B\": \"goCharLeft\", \"Ctrl-P\": \"goLineUp\", \"Ctrl-N\": \"goLineDown\",\n \"Alt-F\": \"goWordRight\", \"Alt-B\": \"goWordLeft\", \"Ctrl-A\": \"goLineStart\", \"Ctrl-E\": \"goLineEnd\",\n \"Ctrl-V\": \"goPageDown\", \"Shift-Ctrl-V\": \"goPageUp\", \"Ctrl-D\": \"delCharAfter\", \"Ctrl-H\": \"delCharBefore\",\n \"Alt-D\": \"delWordAfter\", \"Alt-Backspace\": \"delWordBefore\", \"Ctrl-K\": \"killLine\", \"Ctrl-T\": \"transposeChars\"\n };\n keyMap.macDefault = {\n \"Cmd-A\": \"selectAll\", \"Cmd-D\": \"deleteLine\", \"Cmd-Z\": \"undo\", \"Shift-Cmd-Z\": \"redo\", \"Cmd-Y\": \"redo\",\n \"Cmd-Home\": \"goDocStart\", \"Cmd-Up\": \"goDocStart\", \"Cmd-End\": \"goDocEnd\", \"Cmd-Down\": \"goDocEnd\", \"Alt-Left\": \"goGroupLeft\",\n \"Alt-Right\": \"goGroupRight\", \"Cmd-Left\": \"goLineLeft\", \"Cmd-Right\": \"goLineRight\", \"Alt-Backspace\": \"delGroupBefore\",\n \"Ctrl-Alt-Backspace\": \"delGroupAfter\", \"Alt-Delete\": \"delGroupAfter\", \"Cmd-S\": \"save\", \"Cmd-F\": \"find\",\n \"Cmd-G\": \"findNext\", \"Shift-Cmd-G\": \"findPrev\", \"Cmd-Alt-F\": \"replace\", \"Shift-Cmd-Alt-F\": \"replaceAll\",\n \"Cmd-[\": \"indentLess\", \"Cmd-]\": \"indentMore\", \"Cmd-Backspace\": \"delWrappedLineLeft\", \"Cmd-Delete\": \"delWrappedLineRight\",\n \"Cmd-U\": \"undoSelection\", \"Shift-Cmd-U\": \"redoSelection\", \"Ctrl-Up\": \"goDocStart\", \"Ctrl-Down\": \"goDocEnd\",\n fallthrough: [\"basic\", \"emacsy\"]\n };\n keyMap[\"default\"] = mac ? keyMap.macDefault : keyMap.pcDefault;\n\n // KEYMAP DISPATCH\n\n function normalizeKeyName(name) {\n var parts = name.split(/-(?!$)/), name = parts[parts.length - 1];\n var alt, ctrl, shift, cmd;\n for (var i = 0; i < parts.length - 1; i++) {\n var mod = parts[i];\n if (/^(cmd|meta|m)$/i.test(mod)) cmd = true;\n else if (/^a(lt)?$/i.test(mod)) alt = true;\n else if (/^(c|ctrl|control)$/i.test(mod)) ctrl = true;\n else if (/^s(hift)$/i.test(mod)) shift = true;\n else throw new Error(\"Unrecognized modifier name: \" + mod);\n }\n if (alt) name = \"Alt-\" + name;\n if (ctrl) name = \"Ctrl-\" + name;\n if (cmd) name = \"Cmd-\" + name;\n if (shift) name = \"Shift-\" + name;\n return name;\n }\n\n // This is a kludge to keep keymaps mostly working as raw objects\n // (backwards compatibility) while at the same time support features\n // like normalization and multi-stroke key bindings. It compiles a\n // new normalized keymap, and then updates the old object to reflect\n // this.\n CodeMirror.normalizeKeyMap = function(keymap) {\n var copy = {};\n for (var keyname in keymap) if (keymap.hasOwnProperty(keyname)) {\n var value = keymap[keyname];\n if (/^(name|fallthrough|(de|at)tach)$/.test(keyname)) continue;\n if (value == \"...\") { delete keymap[keyname]; continue; }\n\n var keys = map(keyname.split(\" \"), normalizeKeyName);\n for (var i = 0; i < keys.length; i++) {\n var val, name;\n if (i == keys.length - 1) {\n name = keyname;\n val = value;\n } else {\n name = keys.slice(0, i + 1).join(\" \");\n val = \"...\";\n }\n var prev = copy[name];\n if (!prev) copy[name] = val;\n else if (prev != val) throw new Error(\"Inconsistent bindings for \" + name);\n }\n delete keymap[keyname];\n }\n for (var prop in copy) keymap[prop] = copy[prop];\n return keymap;\n };\n\n var lookupKey = CodeMirror.lookupKey = function(key, map, handle, context) {\n map = getKeyMap(map);\n var found = map.call ? map.call(key, context) : map[key];\n if (found === false) return \"nothing\";\n if (found === \"...\") return \"multi\";\n if (found != null && handle(found)) return \"handled\";\n\n if (map.fallthrough) {\n if (Object.prototype.toString.call(map.fallthrough) != \"[object Array]\")\n return lookupKey(key, map.fallthrough, handle, context);\n for (var i = 0; i < map.fallthrough.length; i++) {\n var result = lookupKey(key, map.fallthrough[i], handle, context);\n if (result) return result;\n }\n }\n };\n\n // Modifier key presses don't count as 'real' key presses for the\n // purpose of keymap fallthrough.\n var isModifierKey = CodeMirror.isModifierKey = function(value) {\n var name = typeof value == \"string\" ? value : keyNames[value.keyCode];\n return name == \"Ctrl\" || name == \"Alt\" || name == \"Shift\" || name == \"Mod\";\n };\n\n // Look up the name of a key as indicated by an event object.\n var keyName = CodeMirror.keyName = function(event, noShift) {\n if (presto && event.keyCode == 34 && event[\"char\"]) return false;\n var base = keyNames[event.keyCode], name = base;\n if (name == null || event.altGraphKey) return false;\n if (event.altKey && base != \"Alt\") name = \"Alt-\" + name;\n if ((flipCtrlCmd ? event.metaKey : event.ctrlKey) && base != \"Ctrl\") name = \"Ctrl-\" + name;\n if ((flipCtrlCmd ? event.ctrlKey : event.metaKey) && base != \"Cmd\") name = \"Cmd-\" + name;\n if (!noShift && event.shiftKey && base != \"Shift\") name = \"Shift-\" + name;\n return name;\n };\n\n function getKeyMap(val) {\n return typeof val == \"string\" ? keyMap[val] : val;\n }\n\n // FROMTEXTAREA\n\n CodeMirror.fromTextArea = function(textarea, options) {\n options = options ? copyObj(options) : {};\n options.value = textarea.value;\n if (!options.tabindex && textarea.tabindex)\n options.tabindex = textarea.tabindex;\n if (!options.placeholder && textarea.placeholder)\n options.placeholder = textarea.placeholder;\n // Set autofocus to true if this textarea is focused, or if it has\n // autofocus and no other element is focused.\n if (options.autofocus == null) {\n var hasFocus = activeElt();\n options.autofocus = hasFocus == textarea ||\n textarea.getAttribute(\"autofocus\") != null && hasFocus == document.body;\n }\n\n function save() {textarea.value = cm.getValue();}\n if (textarea.form) {\n on(textarea.form, \"submit\", save);\n // Deplorable hack to make the submit method do the right thing.\n if (!options.leaveSubmitMethodAlone) {\n var form = textarea.form, realSubmit = form.submit;\n try {\n var wrappedSubmit = form.submit = function() {\n save();\n form.submit = realSubmit;\n form.submit();\n form.submit = wrappedSubmit;\n };\n } catch(e) {}\n }\n }\n\n options.finishInit = function(cm) {\n cm.save = save;\n cm.getTextArea = function() { return textarea; };\n cm.toTextArea = function() {\n cm.toTextArea = isNaN; // Prevent this from being ran twice\n save();\n textarea.parentNode.removeChild(cm.getWrapperElement());\n textarea.style.display = \"\";\n if (textarea.form) {\n off(textarea.form, \"submit\", save);\n if (typeof textarea.form.submit == \"function\")\n textarea.form.submit = realSubmit;\n }\n };\n };\n\n textarea.style.display = \"none\";\n var cm = CodeMirror(function(node) {\n textarea.parentNode.insertBefore(node, textarea.nextSibling);\n }, options);\n return cm;\n };\n\n // STRING STREAM\n\n // Fed to the mode parsers, provides helper functions to make\n // parsers more succinct.\n\n var StringStream = CodeMirror.StringStream = function(string, tabSize) {\n this.pos = this.start = 0;\n this.string = string;\n this.tabSize = tabSize || 8;\n this.lastColumnPos = this.lastColumnValue = 0;\n this.lineStart = 0;\n };\n\n StringStream.prototype = {\n eol: function() {return this.pos >= this.string.length;},\n sol: function() {return this.pos == this.lineStart;},\n peek: function() {return this.string.charAt(this.pos) || undefined;},\n next: function() {\n if (this.pos < this.string.length)\n return this.string.charAt(this.pos++);\n },\n eat: function(match) {\n var ch = this.string.charAt(this.pos);\n if (typeof match == \"string\") var ok = ch == match;\n else var ok = ch && (match.test ? match.test(ch) : match(ch));\n if (ok) {++this.pos; return ch;}\n },\n eatWhile: function(match) {\n var start = this.pos;\n while (this.eat(match)){}\n return this.pos > start;\n },\n eatSpace: function() {\n var start = this.pos;\n while (/[\\s\\u00a0]/.test(this.string.charAt(this.pos))) ++this.pos;\n return this.pos > start;\n },\n skipToEnd: function() {this.pos = this.string.length;},\n skipTo: function(ch) {\n var found = this.string.indexOf(ch, this.pos);\n if (found > -1) {this.pos = found; return true;}\n },\n backUp: function(n) {this.pos -= n;},\n column: function() {\n if (this.lastColumnPos < this.start) {\n this.lastColumnValue = countColumn(this.string, this.start, this.tabSize, this.lastColumnPos, this.lastColumnValue);\n this.lastColumnPos = this.start;\n }\n return this.lastColumnValue - (this.lineStart ? countColumn(this.string, this.lineStart, this.tabSize) : 0);\n },\n indentation: function() {\n return countColumn(this.string, null, this.tabSize) -\n (this.lineStart ? countColumn(this.string, this.lineStart, this.tabSize) : 0);\n },\n match: function(pattern, consume, caseInsensitive) {\n if (typeof pattern == \"string\") {\n var cased = function(str) {return caseInsensitive ? str.toLowerCase() : str;};\n var substr = this.string.substr(this.pos, pattern.length);\n if (cased(substr) == cased(pattern)) {\n if (consume !== false) this.pos += pattern.length;\n return true;\n }\n } else {\n var match = this.string.slice(this.pos).match(pattern);\n if (match && match.index > 0) return null;\n if (match && consume !== false) this.pos += match[0].length;\n return match;\n }\n },\n current: function(){return this.string.slice(this.start, this.pos);},\n hideFirstChars: function(n, inner) {\n this.lineStart += n;\n try { return inner(); }\n finally { this.lineStart -= n; }\n }\n };\n\n // TEXTMARKERS\n\n // Created with markText and setBookmark methods. A TextMarker is a\n // handle that can be used to clear or find a marked position in the\n // document. Line objects hold arrays (markedSpans) containing\n // {from, to, marker} object pointing to such marker objects, and\n // indicating that such a marker is present on that line. Multiple\n // lines may point to the same marker when it spans across lines.\n // The spans will have null for their from/to properties when the\n // marker continues beyond the start/end of the line. Markers have\n // links back to the lines they currently touch.\n\n var TextMarker = CodeMirror.TextMarker = function(doc, type) {\n this.lines = [];\n this.type = type;\n this.doc = doc;\n };\n eventMixin(TextMarker);\n\n // Clear the marker.\n TextMarker.prototype.clear = function() {\n if (this.explicitlyCleared) return;\n var cm = this.doc.cm, withOp = cm && !cm.curOp;\n if (withOp) startOperation(cm);\n if (hasHandler(this, \"clear\")) {\n var found = this.find();\n if (found) signalLater(this, \"clear\", found.from, found.to);\n }\n var min = null, max = null;\n for (var i = 0; i < this.lines.length; ++i) {\n var line = this.lines[i];\n var span = getMarkedSpanFor(line.markedSpans, this);\n if (cm && !this.collapsed) regLineChange(cm, lineNo(line), \"text\");\n else if (cm) {\n if (span.to != null) max = lineNo(line);\n if (span.from != null) min = lineNo(line);\n }\n line.markedSpans = removeMarkedSpan(line.markedSpans, span);\n if (span.from == null && this.collapsed && !lineIsHidden(this.doc, line) && cm)\n updateLineHeight(line, textHeight(cm.display));\n }\n if (cm && this.collapsed && !cm.options.lineWrapping) for (var i = 0; i < this.lines.length; ++i) {\n var visual = visualLine(this.lines[i]), len = lineLength(visual);\n if (len > cm.display.maxLineLength) {\n cm.display.maxLine = visual;\n cm.display.maxLineLength = len;\n cm.display.maxLineChanged = true;\n }\n }\n\n if (min != null && cm && this.collapsed) regChange(cm, min, max + 1);\n this.lines.length = 0;\n this.explicitlyCleared = true;\n if (this.atomic && this.doc.cantEdit) {\n this.doc.cantEdit = false;\n if (cm) reCheckSelection(cm.doc);\n }\n if (cm) signalLater(cm, \"markerCleared\", cm, this);\n if (withOp) endOperation(cm);\n if (this.parent) this.parent.clear();\n };\n\n // Find the position of the marker in the document. Returns a {from,\n // to} object by default. Side can be passed to get a specific side\n // -- 0 (both), -1 (left), or 1 (right). When lineObj is true, the\n // Pos objects returned contain a line object, rather than a line\n // number (used to prevent looking up the same line twice).\n TextMarker.prototype.find = function(side, lineObj) {\n if (side == null && this.type == \"bookmark\") side = 1;\n var from, to;\n for (var i = 0; i < this.lines.length; ++i) {\n var line = this.lines[i];\n var span = getMarkedSpanFor(line.markedSpans, this);\n if (span.from != null) {\n from = Pos(lineObj ? line : lineNo(line), span.from);\n if (side == -1) return from;\n }\n if (span.to != null) {\n to = Pos(lineObj ? line : lineNo(line), span.to);\n if (side == 1) return to;\n }\n }\n return from && {from: from, to: to};\n };\n\n // Signals that the marker's widget changed, and surrounding layout\n // should be recomputed.\n TextMarker.prototype.changed = function() {\n var pos = this.find(-1, true), widget = this, cm = this.doc.cm;\n if (!pos || !cm) return;\n runInOp(cm, function() {\n var line = pos.line, lineN = lineNo(pos.line);\n var view = findViewForLine(cm, lineN);\n if (view) {\n clearLineMeasurementCacheFor(view);\n cm.curOp.selectionChanged = cm.curOp.forceUpdate = true;\n }\n cm.curOp.updateMaxLine = true;\n if (!lineIsHidden(widget.doc, line) && widget.height != null) {\n var oldHeight = widget.height;\n widget.height = null;\n var dHeight = widgetHeight(widget) - oldHeight;\n if (dHeight)\n updateLineHeight(line, line.height + dHeight);\n }\n });\n };\n\n TextMarker.prototype.attachLine = function(line) {\n if (!this.lines.length && this.doc.cm) {\n var op = this.doc.cm.curOp;\n if (!op.maybeHiddenMarkers || indexOf(op.maybeHiddenMarkers, this) == -1)\n (op.maybeUnhiddenMarkers || (op.maybeUnhiddenMarkers = [])).push(this);\n }\n this.lines.push(line);\n };\n TextMarker.prototype.detachLine = function(line) {\n this.lines.splice(indexOf(this.lines, line), 1);\n if (!this.lines.length && this.doc.cm) {\n var op = this.doc.cm.curOp;\n (op.maybeHiddenMarkers || (op.maybeHiddenMarkers = [])).push(this);\n }\n };\n\n // Collapsed markers have unique ids, in order to be able to order\n // them, which is needed for uniquely determining an outer marker\n // when they overlap (they may nest, but not partially overlap).\n var nextMarkerId = 0;\n\n // Create a marker, wire it up to the right lines, and\n function markText(doc, from, to, options, type) {\n // Shared markers (across linked documents) are handled separately\n // (markTextShared will call out to this again, once per\n // document).\n if (options && options.shared) return markTextShared(doc, from, to, options, type);\n // Ensure we are in an operation.\n if (doc.cm && !doc.cm.curOp) return operation(doc.cm, markText)(doc, from, to, options, type);\n\n var marker = new TextMarker(doc, type), diff = cmp(from, to);\n if (options) copyObj(options, marker, false);\n // Don't connect empty markers unless clearWhenEmpty is false\n if (diff > 0 || diff == 0 && marker.clearWhenEmpty !== false)\n return marker;\n if (marker.replacedWith) {\n // Showing up as a widget implies collapsed (widget replaces text)\n marker.collapsed = true;\n marker.widgetNode = elt(\"span\", [marker.replacedWith], \"CodeMirror-widget\");\n if (!options.handleMouseEvents) marker.widgetNode.setAttribute(\"cm-ignore-events\", \"true\");\n if (options.insertLeft) marker.widgetNode.insertLeft = true;\n }\n if (marker.collapsed) {\n if (conflictingCollapsedRange(doc, from.line, from, to, marker) ||\n from.line != to.line && conflictingCollapsedRange(doc, to.line, from, to, marker))\n throw new Error(\"Inserting collapsed marker partially overlapping an existing one\");\n sawCollapsedSpans = true;\n }\n\n if (marker.addToHistory)\n addChangeToHistory(doc, {from: from, to: to, origin: \"markText\"}, doc.sel, NaN);\n\n var curLine = from.line, cm = doc.cm, updateMaxLine;\n doc.iter(curLine, to.line + 1, function(line) {\n if (cm && marker.collapsed && !cm.options.lineWrapping && visualLine(line) == cm.display.maxLine)\n updateMaxLine = true;\n if (marker.collapsed && curLine != from.line) updateLineHeight(line, 0);\n addMarkedSpan(line, new MarkedSpan(marker,\n curLine == from.line ? from.ch : null,\n curLine == to.line ? to.ch : null));\n ++curLine;\n });\n // lineIsHidden depends on the presence of the spans, so needs a second pass\n if (marker.collapsed) doc.iter(from.line, to.line + 1, function(line) {\n if (lineIsHidden(doc, line)) updateLineHeight(line, 0);\n });\n\n if (marker.clearOnEnter) on(marker, \"beforeCursorEnter\", function() { marker.clear(); });\n\n if (marker.readOnly) {\n sawReadOnlySpans = true;\n if (doc.history.done.length || doc.history.undone.length)\n doc.clearHistory();\n }\n if (marker.collapsed) {\n marker.id = ++nextMarkerId;\n marker.atomic = true;\n }\n if (cm) {\n // Sync editor state\n if (updateMaxLine) cm.curOp.updateMaxLine = true;\n if (marker.collapsed)\n regChange(cm, from.line, to.line + 1);\n else if (marker.className || marker.title || marker.startStyle || marker.endStyle || marker.css)\n for (var i = from.line; i <= to.line; i++) regLineChange(cm, i, \"text\");\n if (marker.atomic) reCheckSelection(cm.doc);\n signalLater(cm, \"markerAdded\", cm, marker);\n }\n return marker;\n }\n\n // SHARED TEXTMARKERS\n\n // A shared marker spans multiple linked documents. It is\n // implemented as a meta-marker-object controlling multiple normal\n // markers.\n var SharedTextMarker = CodeMirror.SharedTextMarker = function(markers, primary) {\n this.markers = markers;\n this.primary = primary;\n for (var i = 0; i < markers.length; ++i)\n markers[i].parent = this;\n };\n eventMixin(SharedTextMarker);\n\n SharedTextMarker.prototype.clear = function() {\n if (this.explicitlyCleared) return;\n this.explicitlyCleared = true;\n for (var i = 0; i < this.markers.length; ++i)\n this.markers[i].clear();\n signalLater(this, \"clear\");\n };\n SharedTextMarker.prototype.find = function(side, lineObj) {\n return this.primary.find(side, lineObj);\n };\n\n function markTextShared(doc, from, to, options, type) {\n options = copyObj(options);\n options.shared = false;\n var markers = [markText(doc, from, to, options, type)], primary = markers[0];\n var widget = options.widgetNode;\n linkedDocs(doc, function(doc) {\n if (widget) options.widgetNode = widget.cloneNode(true);\n markers.push(markText(doc, clipPos(doc, from), clipPos(doc, to), options, type));\n for (var i = 0; i < doc.linked.length; ++i)\n if (doc.linked[i].isParent) return;\n primary = lst(markers);\n });\n return new SharedTextMarker(markers, primary);\n }\n\n function findSharedMarkers(doc) {\n return doc.findMarks(Pos(doc.first, 0), doc.clipPos(Pos(doc.lastLine())),\n function(m) { return m.parent; });\n }\n\n function copySharedMarkers(doc, markers) {\n for (var i = 0; i < markers.length; i++) {\n var marker = markers[i], pos = marker.find();\n var mFrom = doc.clipPos(pos.from), mTo = doc.clipPos(pos.to);\n if (cmp(mFrom, mTo)) {\n var subMark = markText(doc, mFrom, mTo, marker.primary, marker.primary.type);\n marker.markers.push(subMark);\n subMark.parent = marker;\n }\n }\n }\n\n function detachSharedMarkers(markers) {\n for (var i = 0; i < markers.length; i++) {\n var marker = markers[i], linked = [marker.primary.doc];;\n linkedDocs(marker.primary.doc, function(d) { linked.push(d); });\n for (var j = 0; j < marker.markers.length; j++) {\n var subMarker = marker.markers[j];\n if (indexOf(linked, subMarker.doc) == -1) {\n subMarker.parent = null;\n marker.markers.splice(j--, 1);\n }\n }\n }\n }\n\n // TEXTMARKER SPANS\n\n function MarkedSpan(marker, from, to) {\n this.marker = marker;\n this.from = from; this.to = to;\n }\n\n // Search an array of spans for a span matching the given marker.\n function getMarkedSpanFor(spans, marker) {\n if (spans) for (var i = 0; i < spans.length; ++i) {\n var span = spans[i];\n if (span.marker == marker) return span;\n }\n }\n // Remove a span from an array, returning undefined if no spans are\n // left (we don't store arrays for lines without spans).\n function removeMarkedSpan(spans, span) {\n for (var r, i = 0; i < spans.length; ++i)\n if (spans[i] != span) (r || (r = [])).push(spans[i]);\n return r;\n }\n // Add a span to a line.\n function addMarkedSpan(line, span) {\n line.markedSpans = line.markedSpans ? line.markedSpans.concat([span]) : [span];\n span.marker.attachLine(line);\n }\n\n // Used for the algorithm that adjusts markers for a change in the\n // document. These functions cut an array of spans at a given\n // character position, returning an array of remaining chunks (or\n // undefined if nothing remains).\n function markedSpansBefore(old, startCh, isInsert) {\n if (old) for (var i = 0, nw; i < old.length; ++i) {\n var span = old[i], marker = span.marker;\n var startsBefore = span.from == null || (marker.inclusiveLeft ? span.from <= startCh : span.from < startCh);\n if (startsBefore || span.from == startCh && marker.type == \"bookmark\" && (!isInsert || !span.marker.insertLeft)) {\n var endsAfter = span.to == null || (marker.inclusiveRight ? span.to >= startCh : span.to > startCh);\n (nw || (nw = [])).push(new MarkedSpan(marker, span.from, endsAfter ? null : span.to));\n }\n }\n return nw;\n }\n function markedSpansAfter(old, endCh, isInsert) {\n if (old) for (var i = 0, nw; i < old.length; ++i) {\n var span = old[i], marker = span.marker;\n var endsAfter = span.to == null || (marker.inclusiveRight ? span.to >= endCh : span.to > endCh);\n if (endsAfter || span.from == endCh && marker.type == \"bookmark\" && (!isInsert || span.marker.insertLeft)) {\n var startsBefore = span.from == null || (marker.inclusiveLeft ? span.from <= endCh : span.from < endCh);\n (nw || (nw = [])).push(new MarkedSpan(marker, startsBefore ? null : span.from - endCh,\n span.to == null ? null : span.to - endCh));\n }\n }\n return nw;\n }\n\n // Given a change object, compute the new set of marker spans that\n // cover the line in which the change took place. Removes spans\n // entirely within the change, reconnects spans belonging to the\n // same marker that appear on both sides of the change, and cuts off\n // spans partially within the change. Returns an array of span\n // arrays with one element for each line in (after) the change.\n function stretchSpansOverChange(doc, change) {\n if (change.full) return null;\n var oldFirst = isLine(doc, change.from.line) && getLine(doc, change.from.line).markedSpans;\n var oldLast = isLine(doc, change.to.line) && getLine(doc, change.to.line).markedSpans;\n if (!oldFirst && !oldLast) return null;\n\n var startCh = change.from.ch, endCh = change.to.ch, isInsert = cmp(change.from, change.to) == 0;\n // Get the spans that 'stick out' on both sides\n var first = markedSpansBefore(oldFirst, startCh, isInsert);\n var last = markedSpansAfter(oldLast, endCh, isInsert);\n\n // Next, merge those two ends\n var sameLine = change.text.length == 1, offset = lst(change.text).length + (sameLine ? startCh : 0);\n if (first) {\n // Fix up .to properties of first\n for (var i = 0; i < first.length; ++i) {\n var span = first[i];\n if (span.to == null) {\n var found = getMarkedSpanFor(last, span.marker);\n if (!found) span.to = startCh;\n else if (sameLine) span.to = found.to == null ? null : found.to + offset;\n }\n }\n }\n if (last) {\n // Fix up .from in last (or move them into first in case of sameLine)\n for (var i = 0; i < last.length; ++i) {\n var span = last[i];\n if (span.to != null) span.to += offset;\n if (span.from == null) {\n var found = getMarkedSpanFor(first, span.marker);\n if (!found) {\n span.from = offset;\n if (sameLine) (first || (first = [])).push(span);\n }\n } else {\n span.from += offset;\n if (sameLine) (first || (first = [])).push(span);\n }\n }\n }\n // Make sure we didn't create any zero-length spans\n if (first) first = clearEmptySpans(first);\n if (last && last != first) last = clearEmptySpans(last);\n\n var newMarkers = [first];\n if (!sameLine) {\n // Fill gap with whole-line-spans\n var gap = change.text.length - 2, gapMarkers;\n if (gap > 0 && first)\n for (var i = 0; i < first.length; ++i)\n if (first[i].to == null)\n (gapMarkers || (gapMarkers = [])).push(new MarkedSpan(first[i].marker, null, null));\n for (var i = 0; i < gap; ++i)\n newMarkers.push(gapMarkers);\n newMarkers.push(last);\n }\n return newMarkers;\n }\n\n // Remove spans that are empty and don't have a clearWhenEmpty\n // option of false.\n function clearEmptySpans(spans) {\n for (var i = 0; i < spans.length; ++i) {\n var span = spans[i];\n if (span.from != null && span.from == span.to && span.marker.clearWhenEmpty !== false)\n spans.splice(i--, 1);\n }\n if (!spans.length) return null;\n return spans;\n }\n\n // Used for un/re-doing changes from the history. Combines the\n // result of computing the existing spans with the set of spans that\n // existed in the history (so that deleting around a span and then\n // undoing brings back the span).\n function mergeOldSpans(doc, change) {\n var old = getOldSpans(doc, change);\n var stretched = stretchSpansOverChange(doc, change);\n if (!old) return stretched;\n if (!stretched) return old;\n\n for (var i = 0; i < old.length; ++i) {\n var oldCur = old[i], stretchCur = stretched[i];\n if (oldCur && stretchCur) {\n spans: for (var j = 0; j < stretchCur.length; ++j) {\n var span = stretchCur[j];\n for (var k = 0; k < oldCur.length; ++k)\n if (oldCur[k].marker == span.marker) continue spans;\n oldCur.push(span);\n }\n } else if (stretchCur) {\n old[i] = stretchCur;\n }\n }\n return old;\n }\n\n // Used to 'clip' out readOnly ranges when making a change.\n function removeReadOnlyRanges(doc, from, to) {\n var markers = null;\n doc.iter(from.line, to.line + 1, function(line) {\n if (line.markedSpans) for (var i = 0; i < line.markedSpans.length; ++i) {\n var mark = line.markedSpans[i].marker;\n if (mark.readOnly && (!markers || indexOf(markers, mark) == -1))\n (markers || (markers = [])).push(mark);\n }\n });\n if (!markers) return null;\n var parts = [{from: from, to: to}];\n for (var i = 0; i < markers.length; ++i) {\n var mk = markers[i], m = mk.find(0);\n for (var j = 0; j < parts.length; ++j) {\n var p = parts[j];\n if (cmp(p.to, m.from) < 0 || cmp(p.from, m.to) > 0) continue;\n var newParts = [j, 1], dfrom = cmp(p.from, m.from), dto = cmp(p.to, m.to);\n if (dfrom < 0 || !mk.inclusiveLeft && !dfrom)\n newParts.push({from: p.from, to: m.from});\n if (dto > 0 || !mk.inclusiveRight && !dto)\n newParts.push({from: m.to, to: p.to});\n parts.splice.apply(parts, newParts);\n j += newParts.length - 1;\n }\n }\n return parts;\n }\n\n // Connect or disconnect spans from a line.\n function detachMarkedSpans(line) {\n var spans = line.markedSpans;\n if (!spans) return;\n for (var i = 0; i < spans.length; ++i)\n spans[i].marker.detachLine(line);\n line.markedSpans = null;\n }\n function attachMarkedSpans(line, spans) {\n if (!spans) return;\n for (var i = 0; i < spans.length; ++i)\n spans[i].marker.attachLine(line);\n line.markedSpans = spans;\n }\n\n // Helpers used when computing which overlapping collapsed span\n // counts as the larger one.\n function extraLeft(marker) { return marker.inclusiveLeft ? -1 : 0; }\n function extraRight(marker) { return marker.inclusiveRight ? 1 : 0; }\n\n // Returns a number indicating which of two overlapping collapsed\n // spans is larger (and thus includes the other). Falls back to\n // comparing ids when the spans cover exactly the same range.\n function compareCollapsedMarkers(a, b) {\n var lenDiff = a.lines.length - b.lines.length;\n if (lenDiff != 0) return lenDiff;\n var aPos = a.find(), bPos = b.find();\n var fromCmp = cmp(aPos.from, bPos.from) || extraLeft(a) - extraLeft(b);\n if (fromCmp) return -fromCmp;\n var toCmp = cmp(aPos.to, bPos.to) || extraRight(a) - extraRight(b);\n if (toCmp) return toCmp;\n return b.id - a.id;\n }\n\n // Find out whether a line ends or starts in a collapsed span. If\n // so, return the marker for that span.\n function collapsedSpanAtSide(line, start) {\n var sps = sawCollapsedSpans && line.markedSpans, found;\n if (sps) for (var sp, i = 0; i < sps.length; ++i) {\n sp = sps[i];\n if (sp.marker.collapsed && (start ? sp.from : sp.to) == null &&\n (!found || compareCollapsedMarkers(found, sp.marker) < 0))\n found = sp.marker;\n }\n return found;\n }\n function collapsedSpanAtStart(line) { return collapsedSpanAtSide(line, true); }\n function collapsedSpanAtEnd(line) { return collapsedSpanAtSide(line, false); }\n\n // Test whether there exists a collapsed span that partially\n // overlaps (covers the start or end, but not both) of a new span.\n // Such overlap is not allowed.\n function conflictingCollapsedRange(doc, lineNo, from, to, marker) {\n var line = getLine(doc, lineNo);\n var sps = sawCollapsedSpans && line.markedSpans;\n if (sps) for (var i = 0; i < sps.length; ++i) {\n var sp = sps[i];\n if (!sp.marker.collapsed) continue;\n var found = sp.marker.find(0);\n var fromCmp = cmp(found.from, from) || extraLeft(sp.marker) - extraLeft(marker);\n var toCmp = cmp(found.to, to) || extraRight(sp.marker) - extraRight(marker);\n if (fromCmp >= 0 && toCmp <= 0 || fromCmp <= 0 && toCmp >= 0) continue;\n if (fromCmp <= 0 && (cmp(found.to, from) > 0 || (sp.marker.inclusiveRight && marker.inclusiveLeft)) ||\n fromCmp >= 0 && (cmp(found.from, to) < 0 || (sp.marker.inclusiveLeft && marker.inclusiveRight)))\n return true;\n }\n }\n\n // A visual line is a line as drawn on the screen. Folding, for\n // example, can cause multiple logical lines to appear on the same\n // visual line. This finds the start of the visual line that the\n // given line is part of (usually that is the line itself).\n function visualLine(line) {\n var merged;\n while (merged = collapsedSpanAtStart(line))\n line = merged.find(-1, true).line;\n return line;\n }\n\n // Returns an array of logical lines that continue the visual line\n // started by the argument, or undefined if there are no such lines.\n function visualLineContinued(line) {\n var merged, lines;\n while (merged = collapsedSpanAtEnd(line)) {\n line = merged.find(1, true).line;\n (lines || (lines = [])).push(line);\n }\n return lines;\n }\n\n // Get the line number of the start of the visual line that the\n // given line number is part of.\n function visualLineNo(doc, lineN) {\n var line = getLine(doc, lineN), vis = visualLine(line);\n if (line == vis) return lineN;\n return lineNo(vis);\n }\n // Get the line number of the start of the next visual line after\n // the given line.\n function visualLineEndNo(doc, lineN) {\n if (lineN > doc.lastLine()) return lineN;\n var line = getLine(doc, lineN), merged;\n if (!lineIsHidden(doc, line)) return lineN;\n while (merged = collapsedSpanAtEnd(line))\n line = merged.find(1, true).line;\n return lineNo(line) + 1;\n }\n\n // Compute whether a line is hidden. Lines count as hidden when they\n // are part of a visual line that starts with another line, or when\n // they are entirely covered by collapsed, non-widget span.\n function lineIsHidden(doc, line) {\n var sps = sawCollapsedSpans && line.markedSpans;\n if (sps) for (var sp, i = 0; i < sps.length; ++i) {\n sp = sps[i];\n if (!sp.marker.collapsed) continue;\n if (sp.from == null) return true;\n if (sp.marker.widgetNode) continue;\n if (sp.from == 0 && sp.marker.inclusiveLeft && lineIsHiddenInner(doc, line, sp))\n return true;\n }\n }\n function lineIsHiddenInner(doc, line, span) {\n if (span.to == null) {\n var end = span.marker.find(1, true);\n return lineIsHiddenInner(doc, end.line, getMarkedSpanFor(end.line.markedSpans, span.marker));\n }\n if (span.marker.inclusiveRight && span.to == line.text.length)\n return true;\n for (var sp, i = 0; i < line.markedSpans.length; ++i) {\n sp = line.markedSpans[i];\n if (sp.marker.collapsed && !sp.marker.widgetNode && sp.from == span.to &&\n (sp.to == null || sp.to != span.from) &&\n (sp.marker.inclusiveLeft || span.marker.inclusiveRight) &&\n lineIsHiddenInner(doc, line, sp)) return true;\n }\n }\n\n // LINE WIDGETS\n\n // Line widgets are block elements displayed above or below a line.\n\n var LineWidget = CodeMirror.LineWidget = function(cm, node, options) {\n if (options) for (var opt in options) if (options.hasOwnProperty(opt))\n this[opt] = options[opt];\n this.cm = cm;\n this.node = node;\n };\n eventMixin(LineWidget);\n\n function adjustScrollWhenAboveVisible(cm, line, diff) {\n if (heightAtLine(line) < ((cm.curOp && cm.curOp.scrollTop) || cm.doc.scrollTop))\n addToScrollPos(cm, null, diff);\n }\n\n LineWidget.prototype.clear = function() {\n var cm = this.cm, ws = this.line.widgets, line = this.line, no = lineNo(line);\n if (no == null || !ws) return;\n for (var i = 0; i < ws.length; ++i) if (ws[i] == this) ws.splice(i--, 1);\n if (!ws.length) line.widgets = null;\n var height = widgetHeight(this);\n runInOp(cm, function() {\n adjustScrollWhenAboveVisible(cm, line, -height);\n regLineChange(cm, no, \"widget\");\n updateLineHeight(line, Math.max(0, line.height - height));\n });\n };\n LineWidget.prototype.changed = function() {\n var oldH = this.height, cm = this.cm, line = this.line;\n this.height = null;\n var diff = widgetHeight(this) - oldH;\n if (!diff) return;\n runInOp(cm, function() {\n cm.curOp.forceUpdate = true;\n adjustScrollWhenAboveVisible(cm, line, diff);\n updateLineHeight(line, line.height + diff);\n });\n };\n\n function widgetHeight(widget) {\n if (widget.height != null) return widget.height;\n if (!contains(document.body, widget.node)) {\n var parentStyle = \"position: relative;\";\n if (widget.coverGutter)\n parentStyle += \"margin-left: -\" + widget.cm.display.gutters.offsetWidth + \"px;\";\n if (widget.noHScroll)\n parentStyle += \"width: \" + widget.cm.display.wrapper.clientWidth + \"px;\";\n removeChildrenAndAdd(widget.cm.display.measure, elt(\"div\", [widget.node], null, parentStyle));\n }\n return widget.height = widget.node.offsetHeight;\n }\n\n function addLineWidget(cm, handle, node, options) {\n var widget = new LineWidget(cm, node, options);\n if (widget.noHScroll) cm.display.alignWidgets = true;\n changeLine(cm.doc, handle, \"widget\", function(line) {\n var widgets = line.widgets || (line.widgets = []);\n if (widget.insertAt == null) widgets.push(widget);\n else widgets.splice(Math.min(widgets.length - 1, Math.max(0, widget.insertAt)), 0, widget);\n widget.line = line;\n if (!lineIsHidden(cm.doc, line)) {\n var aboveVisible = heightAtLine(line) < cm.doc.scrollTop;\n updateLineHeight(line, line.height + widgetHeight(widget));\n if (aboveVisible) addToScrollPos(cm, null, widget.height);\n cm.curOp.forceUpdate = true;\n }\n return true;\n });\n return widget;\n }\n\n // LINE DATA STRUCTURE\n\n // Line objects. These hold state related to a line, including\n // highlighting info (the styles array).\n var Line = CodeMirror.Line = function(text, markedSpans, estimateHeight) {\n this.text = text;\n attachMarkedSpans(this, markedSpans);\n this.height = estimateHeight ? estimateHeight(this) : 1;\n };\n eventMixin(Line);\n Line.prototype.lineNo = function() { return lineNo(this); };\n\n // Change the content (text, markers) of a line. Automatically\n // invalidates cached information and tries to re-estimate the\n // line's height.\n function updateLine(line, text, markedSpans, estimateHeight) {\n line.text = text;\n if (line.stateAfter) line.stateAfter = null;\n if (line.styles) line.styles = null;\n if (line.order != null) line.order = null;\n detachMarkedSpans(line);\n attachMarkedSpans(line, markedSpans);\n var estHeight = estimateHeight ? estimateHeight(line) : 1;\n if (estHeight != line.height) updateLineHeight(line, estHeight);\n }\n\n // Detach a line from the document tree and its markers.\n function cleanUpLine(line) {\n line.parent = null;\n detachMarkedSpans(line);\n }\n\n function extractLineClasses(type, output) {\n if (type) for (;;) {\n var lineClass = type.match(/(?:^|\\s+)line-(background-)?(\\S+)/);\n if (!lineClass) break;\n type = type.slice(0, lineClass.index) + type.slice(lineClass.index + lineClass[0].length);\n var prop = lineClass[1] ? \"bgClass\" : \"textClass\";\n if (output[prop] == null)\n output[prop] = lineClass[2];\n else if (!(new RegExp(\"(?:^|\\s)\" + lineClass[2] + \"(?:$|\\s)\")).test(output[prop]))\n output[prop] += \" \" + lineClass[2];\n }\n return type;\n }\n\n function callBlankLine(mode, state) {\n if (mode.blankLine) return mode.blankLine(state);\n if (!mode.innerMode) return;\n var inner = CodeMirror.innerMode(mode, state);\n if (inner.mode.blankLine) return inner.mode.blankLine(inner.state);\n }\n\n function readToken(mode, stream, state, inner) {\n for (var i = 0; i < 10; i++) {\n if (inner) inner[0] = CodeMirror.innerMode(mode, state).mode;\n var style = mode.token(stream, state);\n if (stream.pos > stream.start) return style;\n }\n throw new Error(\"Mode \" + mode.name + \" failed to advance stream.\");\n }\n\n // Utility for getTokenAt and getLineTokens\n function takeToken(cm, pos, precise, asArray) {\n function getObj(copy) {\n return {start: stream.start, end: stream.pos,\n string: stream.current(),\n type: style || null,\n state: copy ? copyState(doc.mode, state) : state};\n }\n\n var doc = cm.doc, mode = doc.mode, style;\n pos = clipPos(doc, pos);\n var line = getLine(doc, pos.line), state = getStateBefore(cm, pos.line, precise);\n var stream = new StringStream(line.text, cm.options.tabSize), tokens;\n if (asArray) tokens = [];\n while ((asArray || stream.pos < pos.ch) && !stream.eol()) {\n stream.start = stream.pos;\n style = readToken(mode, stream, state);\n if (asArray) tokens.push(getObj(true));\n }\n return asArray ? tokens : getObj();\n }\n\n // Run the given mode's parser over a line, calling f for each token.\n function runMode(cm, text, mode, state, f, lineClasses, forceToEnd) {\n var flattenSpans = mode.flattenSpans;\n if (flattenSpans == null) flattenSpans = cm.options.flattenSpans;\n var curStart = 0, curStyle = null;\n var stream = new StringStream(text, cm.options.tabSize), style;\n var inner = cm.options.addModeClass && [null];\n if (text == \"\") extractLineClasses(callBlankLine(mode, state), lineClasses);\n while (!stream.eol()) {\n if (stream.pos > cm.options.maxHighlightLength) {\n flattenSpans = false;\n if (forceToEnd) processLine(cm, text, state, stream.pos);\n stream.pos = text.length;\n style = null;\n } else {\n style = extractLineClasses(readToken(mode, stream, state, inner), lineClasses);\n }\n if (inner) {\n var mName = inner[0].name;\n if (mName) style = \"m-\" + (style ? mName + \" \" + style : mName);\n }\n if (!flattenSpans || curStyle != style) {\n while (curStart < stream.start) {\n curStart = Math.min(stream.start, curStart + 50000);\n f(curStart, curStyle);\n }\n curStyle = style;\n }\n stream.start = stream.pos;\n }\n while (curStart < stream.pos) {\n // Webkit seems to refuse to render text nodes longer than 57444 characters\n var pos = Math.min(stream.pos, curStart + 50000);\n f(pos, curStyle);\n curStart = pos;\n }\n }\n\n // Compute a style array (an array starting with a mode generation\n // -- for invalidation -- followed by pairs of end positions and\n // style strings), which is used to highlight the tokens on the\n // line.\n function highlightLine(cm, line, state, forceToEnd) {\n // A styles array always starts with a number identifying the\n // mode/overlays that it is based on (for easy invalidation).\n var st = [cm.state.modeGen], lineClasses = {};\n // Compute the base array of styles\n runMode(cm, line.text, cm.doc.mode, state, function(end, style) {\n st.push(end, style);\n }, lineClasses, forceToEnd);\n\n // Run overlays, adjust style array.\n for (var o = 0; o < cm.state.overlays.length; ++o) {\n var overlay = cm.state.overlays[o], i = 1, at = 0;\n runMode(cm, line.text, overlay.mode, true, function(end, style) {\n var start = i;\n // Ensure there's a token end at the current position, and that i points at it\n while (at < end) {\n var i_end = st[i];\n if (i_end > end)\n st.splice(i, 1, end, st[i+1], i_end);\n i += 2;\n at = Math.min(end, i_end);\n }\n if (!style) return;\n if (overlay.opaque) {\n st.splice(start, i - start, end, \"cm-overlay \" + style);\n i = start + 2;\n } else {\n for (; start < i; start += 2) {\n var cur = st[start+1];\n st[start+1] = (cur ? cur + \" \" : \"\") + \"cm-overlay \" + style;\n }\n }\n }, lineClasses);\n }\n\n return {styles: st, classes: lineClasses.bgClass || lineClasses.textClass ? lineClasses : null};\n }\n\n function getLineStyles(cm, line, updateFrontier) {\n if (!line.styles || line.styles[0] != cm.state.modeGen) {\n var result = highlightLine(cm, line, line.stateAfter = getStateBefore(cm, lineNo(line)));\n line.styles = result.styles;\n if (result.classes) line.styleClasses = result.classes;\n else if (line.styleClasses) line.styleClasses = null;\n if (updateFrontier === cm.doc.frontier) cm.doc.frontier++;\n }\n return line.styles;\n }\n\n // Lightweight form of highlight -- proceed over this line and\n // update state, but don't save a style array. Used for lines that\n // aren't currently visible.\n function processLine(cm, text, state, startAt) {\n var mode = cm.doc.mode;\n var stream = new StringStream(text, cm.options.tabSize);\n stream.start = stream.pos = startAt || 0;\n if (text == \"\") callBlankLine(mode, state);\n while (!stream.eol() && stream.pos <= cm.options.maxHighlightLength) {\n readToken(mode, stream, state);\n stream.start = stream.pos;\n }\n }\n\n // Convert a style as returned by a mode (either null, or a string\n // containing one or more styles) to a CSS style. This is cached,\n // and also looks for line-wide styles.\n var styleToClassCache = {}, styleToClassCacheWithMode = {};\n function interpretTokenStyle(style, options) {\n if (!style || /^\\s*$/.test(style)) return null;\n var cache = options.addModeClass ? styleToClassCacheWithMode : styleToClassCache;\n return cache[style] ||\n (cache[style] = style.replace(/\\S+/g, \"cm-$&\"));\n }\n\n // Render the DOM representation of the text of a line. Also builds\n // up a 'line map', which points at the DOM nodes that represent\n // specific stretches of text, and is used by the measuring code.\n // The returned object contains the DOM node, this map, and\n // information about line-wide styles that were set by the mode.\n function buildLineContent(cm, lineView) {\n // The padding-right forces the element to have a 'border', which\n // is needed on Webkit to be able to get line-level bounding\n // rectangles for it (in measureChar).\n var content = elt(\"span\", null, null, webkit ? \"padding-right: .1px\" : null);\n var builder = {pre: elt(\"pre\", [content]), content: content, col: 0, pos: 0, cm: cm};\n lineView.measure = {};\n\n // Iterate over the logical lines that make up this visual line.\n for (var i = 0; i <= (lineView.rest ? lineView.rest.length : 0); i++) {\n var line = i ? lineView.rest[i - 1] : lineView.line, order;\n builder.pos = 0;\n builder.addToken = buildToken;\n // Optionally wire in some hacks into the token-rendering\n // algorithm, to deal with browser quirks.\n if ((ie || webkit) && cm.getOption(\"lineWrapping\"))\n builder.addToken = buildTokenSplitSpaces(builder.addToken);\n if (hasBadBidiRects(cm.display.measure) && (order = getOrder(line)))\n builder.addToken = buildTokenBadBidi(builder.addToken, order);\n builder.map = [];\n var allowFrontierUpdate = lineView != cm.display.externalMeasured && lineNo(line);\n insertLineContent(line, builder, getLineStyles(cm, line, allowFrontierUpdate));\n if (line.styleClasses) {\n if (line.styleClasses.bgClass)\n builder.bgClass = joinClasses(line.styleClasses.bgClass, builder.bgClass || \"\");\n if (line.styleClasses.textClass)\n builder.textClass = joinClasses(line.styleClasses.textClass, builder.textClass || \"\");\n }\n\n // Ensure at least a single node is present, for measuring.\n if (builder.map.length == 0)\n builder.map.push(0, 0, builder.content.appendChild(zeroWidthElement(cm.display.measure)));\n\n // Store the map and a cache object for the current logical line\n if (i == 0) {\n lineView.measure.map = builder.map;\n lineView.measure.cache = {};\n } else {\n (lineView.measure.maps || (lineView.measure.maps = [])).push(builder.map);\n (lineView.measure.caches || (lineView.measure.caches = [])).push({});\n }\n }\n\n // See issue #2901\n if (webkit && /\\bcm-tab\\b/.test(builder.content.lastChild.className))\n builder.content.className = \"cm-tab-wrap-hack\";\n\n signal(cm, \"renderLine\", cm, lineView.line, builder.pre);\n if (builder.pre.className)\n builder.textClass = joinClasses(builder.pre.className, builder.textClass || \"\");\n\n return builder;\n }\n\n function defaultSpecialCharPlaceholder(ch) {\n var token = elt(\"span\", \"\\u2022\", \"cm-invalidchar\");\n token.title = \"\\\\u\" + ch.charCodeAt(0).toString(16);\n token.setAttribute(\"aria-label\", token.title);\n return token;\n }\n\n // Build up the DOM representation for a single token, and add it to\n // the line map. Takes care to render special characters separately.\n function buildToken(builder, text, style, startStyle, endStyle, title, css) {\n if (!text) return;\n var special = builder.cm.options.specialChars, mustWrap = false;\n if (!special.test(text)) {\n builder.col += text.length;\n var content = document.createTextNode(text);\n builder.map.push(builder.pos, builder.pos + text.length, content);\n if (ie && ie_version < 9) mustWrap = true;\n builder.pos += text.length;\n } else {\n var content = document.createDocumentFragment(), pos = 0;\n while (true) {\n special.lastIndex = pos;\n var m = special.exec(text);\n var skipped = m ? m.index - pos : text.length - pos;\n if (skipped) {\n var txt = document.createTextNode(text.slice(pos, pos + skipped));\n if (ie && ie_version < 9) content.appendChild(elt(\"span\", [txt]));\n else content.appendChild(txt);\n builder.map.push(builder.pos, builder.pos + skipped, txt);\n builder.col += skipped;\n builder.pos += skipped;\n }\n if (!m) break;\n pos += skipped + 1;\n if (m[0] == \"\\t\") {\n var tabSize = builder.cm.options.tabSize, tabWidth = tabSize - builder.col % tabSize;\n var txt = content.appendChild(elt(\"span\", spaceStr(tabWidth), \"cm-tab\"));\n txt.setAttribute(\"role\", \"presentation\");\n builder.col += tabWidth;\n } else {\n var txt = builder.cm.options.specialCharPlaceholder(m[0]);\n if (ie && ie_version < 9) content.appendChild(elt(\"span\", [txt]));\n else content.appendChild(txt);\n builder.col += 1;\n }\n builder.map.push(builder.pos, builder.pos + 1, txt);\n builder.pos++;\n }\n }\n if (style || startStyle || endStyle || mustWrap || css) {\n var fullStyle = style || \"\";\n if (startStyle) fullStyle += startStyle;\n if (endStyle) fullStyle += endStyle;\n var token = elt(\"span\", [content], fullStyle, css);\n if (title) token.title = title;\n return builder.content.appendChild(token);\n }\n builder.content.appendChild(content);\n }\n\n function buildTokenSplitSpaces(inner) {\n function split(old) {\n var out = \" \";\n for (var i = 0; i < old.length - 2; ++i) out += i % 2 ? \" \" : \"\\u00a0\";\n out += \" \";\n return out;\n }\n return function(builder, text, style, startStyle, endStyle, title) {\n inner(builder, text.replace(/ {3,}/g, split), style, startStyle, endStyle, title);\n };\n }\n\n // Work around nonsense dimensions being reported for stretches of\n // right-to-left text.\n function buildTokenBadBidi(inner, order) {\n return function(builder, text, style, startStyle, endStyle, title) {\n style = style ? style + \" cm-force-border\" : \"cm-force-border\";\n var start = builder.pos, end = start + text.length;\n for (;;) {\n // Find the part that overlaps with the start of this text\n for (var i = 0; i < order.length; i++) {\n var part = order[i];\n if (part.to > start && part.from <= start) break;\n }\n if (part.to >= end) return inner(builder, text, style, startStyle, endStyle, title);\n inner(builder, text.slice(0, part.to - start), style, startStyle, null, title);\n startStyle = null;\n text = text.slice(part.to - start);\n start = part.to;\n }\n };\n }\n\n function buildCollapsedSpan(builder, size, marker, ignoreWidget) {\n var widget = !ignoreWidget && marker.widgetNode;\n if (widget) {\n builder.map.push(builder.pos, builder.pos + size, widget);\n builder.content.appendChild(widget);\n }\n builder.pos += size;\n }\n\n // Outputs a number of spans to make up a line, taking highlighting\n // and marked text into account.\n function insertLineContent(line, builder, styles) {\n var spans = line.markedSpans, allText = line.text, at = 0;\n if (!spans) {\n for (var i = 1; i < styles.length; i+=2)\n builder.addToken(builder, allText.slice(at, at = styles[i]), interpretTokenStyle(styles[i+1], builder.cm.options));\n return;\n }\n\n var len = allText.length, pos = 0, i = 1, text = \"\", style, css;\n var nextChange = 0, spanStyle, spanEndStyle, spanStartStyle, title, collapsed;\n for (;;) {\n if (nextChange == pos) { // Update current marker set\n spanStyle = spanEndStyle = spanStartStyle = title = css = \"\";\n collapsed = null; nextChange = Infinity;\n var foundBookmarks = [];\n for (var j = 0; j < spans.length; ++j) {\n var sp = spans[j], m = sp.marker;\n if (sp.from <= pos && (sp.to == null || sp.to > pos)) {\n if (sp.to != null && nextChange > sp.to) { nextChange = sp.to; spanEndStyle = \"\"; }\n if (m.className) spanStyle += \" \" + m.className;\n if (m.css) css = m.css;\n if (m.startStyle && sp.from == pos) spanStartStyle += \" \" + m.startStyle;\n if (m.endStyle && sp.to == nextChange) spanEndStyle += \" \" + m.endStyle;\n if (m.title && !title) title = m.title;\n if (m.collapsed && (!collapsed || compareCollapsedMarkers(collapsed.marker, m) < 0))\n collapsed = sp;\n } else if (sp.from > pos && nextChange > sp.from) {\n nextChange = sp.from;\n }\n if (m.type == \"bookmark\" && sp.from == pos && m.widgetNode) foundBookmarks.push(m);\n }\n if (collapsed && (collapsed.from || 0) == pos) {\n buildCollapsedSpan(builder, (collapsed.to == null ? len + 1 : collapsed.to) - pos,\n collapsed.marker, collapsed.from == null);\n if (collapsed.to == null) return;\n }\n if (!collapsed && foundBookmarks.length) for (var j = 0; j < foundBookmarks.length; ++j)\n buildCollapsedSpan(builder, 0, foundBookmarks[j]);\n }\n if (pos >= len) break;\n\n var upto = Math.min(len, nextChange);\n while (true) {\n if (text) {\n var end = pos + text.length;\n if (!collapsed) {\n var tokenText = end > upto ? text.slice(0, upto - pos) : text;\n builder.addToken(builder, tokenText, style ? style + spanStyle : spanStyle,\n spanStartStyle, pos + tokenText.length == nextChange ? spanEndStyle : \"\", title, css);\n }\n if (end >= upto) {text = text.slice(upto - pos); pos = upto; break;}\n pos = end;\n spanStartStyle = \"\";\n }\n text = allText.slice(at, at = styles[i++]);\n style = interpretTokenStyle(styles[i++], builder.cm.options);\n }\n }\n }\n\n // DOCUMENT DATA STRUCTURE\n\n // By default, updates that start and end at the beginning of a line\n // are treated specially, in order to make the association of line\n // widgets and marker elements with the text behave more intuitive.\n function isWholeLineUpdate(doc, change) {\n return change.from.ch == 0 && change.to.ch == 0 && lst(change.text) == \"\" &&\n (!doc.cm || doc.cm.options.wholeLineUpdateBefore);\n }\n\n // Perform a change on the document data structure.\n function updateDoc(doc, change, markedSpans, estimateHeight) {\n function spansFor(n) {return markedSpans ? markedSpans[n] : null;}\n function update(line, text, spans) {\n updateLine(line, text, spans, estimateHeight);\n signalLater(line, \"change\", line, change);\n }\n function linesFor(start, end) {\n for (var i = start, result = []; i < end; ++i)\n result.push(new Line(text[i], spansFor(i), estimateHeight));\n return result;\n }\n\n var from = change.from, to = change.to, text = change.text;\n var firstLine = getLine(doc, from.line), lastLine = getLine(doc, to.line);\n var lastText = lst(text), lastSpans = spansFor(text.length - 1), nlines = to.line - from.line;\n\n // Adjust the line structure\n if (change.full) {\n doc.insert(0, linesFor(0, text.length));\n doc.remove(text.length, doc.size - text.length);\n } else if (isWholeLineUpdate(doc, change)) {\n // This is a whole-line replace. Treated specially to make\n // sure line objects move the way they are supposed to.\n var added = linesFor(0, text.length - 1);\n update(lastLine, lastLine.text, lastSpans);\n if (nlines) doc.remove(from.line, nlines);\n if (added.length) doc.insert(from.line, added);\n } else if (firstLine == lastLine) {\n if (text.length == 1) {\n update(firstLine, firstLine.text.slice(0, from.ch) + lastText + firstLine.text.slice(to.ch), lastSpans);\n } else {\n var added = linesFor(1, text.length - 1);\n added.push(new Line(lastText + firstLine.text.slice(to.ch), lastSpans, estimateHeight));\n update(firstLine, firstLine.text.slice(0, from.ch) + text[0], spansFor(0));\n doc.insert(from.line + 1, added);\n }\n } else if (text.length == 1) {\n update(firstLine, firstLine.text.slice(0, from.ch) + text[0] + lastLine.text.slice(to.ch), spansFor(0));\n doc.remove(from.line + 1, nlines);\n } else {\n update(firstLine, firstLine.text.slice(0, from.ch) + text[0], spansFor(0));\n update(lastLine, lastText + lastLine.text.slice(to.ch), lastSpans);\n var added = linesFor(1, text.length - 1);\n if (nlines > 1) doc.remove(from.line + 1, nlines - 1);\n doc.insert(from.line + 1, added);\n }\n\n signalLater(doc, \"change\", doc, change);\n }\n\n // The document is represented as a BTree consisting of leaves, with\n // chunk of lines in them, and branches, with up to ten leaves or\n // other branch nodes below them. The top node is always a branch\n // node, and is the document object itself (meaning it has\n // additional methods and properties).\n //\n // All nodes have parent links. The tree is used both to go from\n // line numbers to line objects, and to go from objects to numbers.\n // It also indexes by height, and is used to convert between height\n // and line object, and to find the total height of the document.\n //\n // See also http://marijnhaverbeke.nl/blog/codemirror-line-tree.html\n\n function LeafChunk(lines) {\n this.lines = lines;\n this.parent = null;\n for (var i = 0, height = 0; i < lines.length; ++i) {\n lines[i].parent = this;\n height += lines[i].height;\n }\n this.height = height;\n }\n\n LeafChunk.prototype = {\n chunkSize: function() { return this.lines.length; },\n // Remove the n lines at offset 'at'.\n removeInner: function(at, n) {\n for (var i = at, e = at + n; i < e; ++i) {\n var line = this.lines[i];\n this.height -= line.height;\n cleanUpLine(line);\n signalLater(line, \"delete\");\n }\n this.lines.splice(at, n);\n },\n // Helper used to collapse a small branch into a single leaf.\n collapse: function(lines) {\n lines.push.apply(lines, this.lines);\n },\n // Insert the given array of lines at offset 'at', count them as\n // having the given height.\n insertInner: function(at, lines, height) {\n this.height += height;\n this.lines = this.lines.slice(0, at).concat(lines).concat(this.lines.slice(at));\n for (var i = 0; i < lines.length; ++i) lines[i].parent = this;\n },\n // Used to iterate over a part of the tree.\n iterN: function(at, n, op) {\n for (var e = at + n; at < e; ++at)\n if (op(this.lines[at])) return true;\n }\n };\n\n function BranchChunk(children) {\n this.children = children;\n var size = 0, height = 0;\n for (var i = 0; i < children.length; ++i) {\n var ch = children[i];\n size += ch.chunkSize(); height += ch.height;\n ch.parent = this;\n }\n this.size = size;\n this.height = height;\n this.parent = null;\n }\n\n BranchChunk.prototype = {\n chunkSize: function() { return this.size; },\n removeInner: function(at, n) {\n this.size -= n;\n for (var i = 0; i < this.children.length; ++i) {\n var child = this.children[i], sz = child.chunkSize();\n if (at < sz) {\n var rm = Math.min(n, sz - at), oldHeight = child.height;\n child.removeInner(at, rm);\n this.height -= oldHeight - child.height;\n if (sz == rm) { this.children.splice(i--, 1); child.parent = null; }\n if ((n -= rm) == 0) break;\n at = 0;\n } else at -= sz;\n }\n // If the result is smaller than 25 lines, ensure that it is a\n // single leaf node.\n if (this.size - n < 25 &&\n (this.children.length > 1 || !(this.children[0] instanceof LeafChunk))) {\n var lines = [];\n this.collapse(lines);\n this.children = [new LeafChunk(lines)];\n this.children[0].parent = this;\n }\n },\n collapse: function(lines) {\n for (var i = 0; i < this.children.length; ++i) this.children[i].collapse(lines);\n },\n insertInner: function(at, lines, height) {\n this.size += lines.length;\n this.height += height;\n for (var i = 0; i < this.children.length; ++i) {\n var child = this.children[i], sz = child.chunkSize();\n if (at <= sz) {\n child.insertInner(at, lines, height);\n if (child.lines && child.lines.length > 50) {\n while (child.lines.length > 50) {\n var spilled = child.lines.splice(child.lines.length - 25, 25);\n var newleaf = new LeafChunk(spilled);\n child.height -= newleaf.height;\n this.children.splice(i + 1, 0, newleaf);\n newleaf.parent = this;\n }\n this.maybeSpill();\n }\n break;\n }\n at -= sz;\n }\n },\n // When a node has grown, check whether it should be split.\n maybeSpill: function() {\n if (this.children.length <= 10) return;\n var me = this;\n do {\n var spilled = me.children.splice(me.children.length - 5, 5);\n var sibling = new BranchChunk(spilled);\n if (!me.parent) { // Become the parent node\n var copy = new BranchChunk(me.children);\n copy.parent = me;\n me.children = [copy, sibling];\n me = copy;\n } else {\n me.size -= sibling.size;\n me.height -= sibling.height;\n var myIndex = indexOf(me.parent.children, me);\n me.parent.children.splice(myIndex + 1, 0, sibling);\n }\n sibling.parent = me.parent;\n } while (me.children.length > 10);\n me.parent.maybeSpill();\n },\n iterN: function(at, n, op) {\n for (var i = 0; i < this.children.length; ++i) {\n var child = this.children[i], sz = child.chunkSize();\n if (at < sz) {\n var used = Math.min(n, sz - at);\n if (child.iterN(at, used, op)) return true;\n if ((n -= used) == 0) break;\n at = 0;\n } else at -= sz;\n }\n }\n };\n\n var nextDocId = 0;\n var Doc = CodeMirror.Doc = function(text, mode, firstLine) {\n if (!(this instanceof Doc)) return new Doc(text, mode, firstLine);\n if (firstLine == null) firstLine = 0;\n\n BranchChunk.call(this, [new LeafChunk([new Line(\"\", null)])]);\n this.first = firstLine;\n this.scrollTop = this.scrollLeft = 0;\n this.cantEdit = false;\n this.cleanGeneration = 1;\n this.frontier = firstLine;\n var start = Pos(firstLine, 0);\n this.sel = simpleSelection(start);\n this.history = new History(null);\n this.id = ++nextDocId;\n this.modeOption = mode;\n\n if (typeof text == \"string\") text = splitLines(text);\n updateDoc(this, {from: start, to: start, text: text});\n setSelection(this, simpleSelection(start), sel_dontScroll);\n };\n\n Doc.prototype = createObj(BranchChunk.prototype, {\n constructor: Doc,\n // Iterate over the document. Supports two forms -- with only one\n // argument, it calls that for each line in the document. With\n // three, it iterates over the range given by the first two (with\n // the second being non-inclusive).\n iter: function(from, to, op) {\n if (op) this.iterN(from - this.first, to - from, op);\n else this.iterN(this.first, this.first + this.size, from);\n },\n\n // Non-public interface for adding and removing lines.\n insert: function(at, lines) {\n var height = 0;\n for (var i = 0; i < lines.length; ++i) height += lines[i].height;\n this.insertInner(at - this.first, lines, height);\n },\n remove: function(at, n) { this.removeInner(at - this.first, n); },\n\n // From here, the methods are part of the public interface. Most\n // are also available from CodeMirror (editor) instances.\n\n getValue: function(lineSep) {\n var lines = getLines(this, this.first, this.first + this.size);\n if (lineSep === false) return lines;\n return lines.join(lineSep || \"\\n\");\n },\n setValue: docMethodOp(function(code) {\n var top = Pos(this.first, 0), last = this.first + this.size - 1;\n makeChange(this, {from: top, to: Pos(last, getLine(this, last).text.length),\n text: splitLines(code), origin: \"setValue\", full: true}, true);\n setSelection(this, simpleSelection(top));\n }),\n replaceRange: function(code, from, to, origin) {\n from = clipPos(this, from);\n to = to ? clipPos(this, to) : from;\n replaceRange(this, code, from, to, origin);\n },\n getRange: function(from, to, lineSep) {\n var lines = getBetween(this, clipPos(this, from), clipPos(this, to));\n if (lineSep === false) return lines;\n return lines.join(lineSep || \"\\n\");\n },\n\n getLine: function(line) {var l = this.getLineHandle(line); return l && l.text;},\n\n getLineHandle: function(line) {if (isLine(this, line)) return getLine(this, line);},\n getLineNumber: function(line) {return lineNo(line);},\n\n getLineHandleVisualStart: function(line) {\n if (typeof line == \"number\") line = getLine(this, line);\n return visualLine(line);\n },\n\n lineCount: function() {return this.size;},\n firstLine: function() {return this.first;},\n lastLine: function() {return this.first + this.size - 1;},\n\n clipPos: function(pos) {return clipPos(this, pos);},\n\n getCursor: function(start) {\n var range = this.sel.primary(), pos;\n if (start == null || start == \"head\") pos = range.head;\n else if (start == \"anchor\") pos = range.anchor;\n else if (start == \"end\" || start == \"to\" || start === false) pos = range.to();\n else pos = range.from();\n return pos;\n },\n listSelections: function() { return this.sel.ranges; },\n somethingSelected: function() {return this.sel.somethingSelected();},\n\n setCursor: docMethodOp(function(line, ch, options) {\n setSimpleSelection(this, clipPos(this, typeof line == \"number\" ? Pos(line, ch || 0) : line), null, options);\n }),\n setSelection: docMethodOp(function(anchor, head, options) {\n setSimpleSelection(this, clipPos(this, anchor), clipPos(this, head || anchor), options);\n }),\n extendSelection: docMethodOp(function(head, other, options) {\n extendSelection(this, clipPos(this, head), other && clipPos(this, other), options);\n }),\n extendSelections: docMethodOp(function(heads, options) {\n extendSelections(this, clipPosArray(this, heads, options));\n }),\n extendSelectionsBy: docMethodOp(function(f, options) {\n extendSelections(this, map(this.sel.ranges, f), options);\n }),\n setSelections: docMethodOp(function(ranges, primary, options) {\n if (!ranges.length) return;\n for (var i = 0, out = []; i < ranges.length; i++)\n out[i] = new Range(clipPos(this, ranges[i].anchor),\n clipPos(this, ranges[i].head));\n if (primary == null) primary = Math.min(ranges.length - 1, this.sel.primIndex);\n setSelection(this, normalizeSelection(out, primary), options);\n }),\n addSelection: docMethodOp(function(anchor, head, options) {\n var ranges = this.sel.ranges.slice(0);\n ranges.push(new Range(clipPos(this, anchor), clipPos(this, head || anchor)));\n setSelection(this, normalizeSelection(ranges, ranges.length - 1), options);\n }),\n\n getSelection: function(lineSep) {\n var ranges = this.sel.ranges, lines;\n for (var i = 0; i < ranges.length; i++) {\n var sel = getBetween(this, ranges[i].from(), ranges[i].to());\n lines = lines ? lines.concat(sel) : sel;\n }\n if (lineSep === false) return lines;\n else return lines.join(lineSep || \"\\n\");\n },\n getSelections: function(lineSep) {\n var parts = [], ranges = this.sel.ranges;\n for (var i = 0; i < ranges.length; i++) {\n var sel = getBetween(this, ranges[i].from(), ranges[i].to());\n if (lineSep !== false) sel = sel.join(lineSep || \"\\n\");\n parts[i] = sel;\n }\n return parts;\n },\n replaceSelection: function(code, collapse, origin) {\n var dup = [];\n for (var i = 0; i < this.sel.ranges.length; i++)\n dup[i] = code;\n this.replaceSelections(dup, collapse, origin || \"+input\");\n },\n replaceSelections: docMethodOp(function(code, collapse, origin) {\n var changes = [], sel = this.sel;\n for (var i = 0; i < sel.ranges.length; i++) {\n var range = sel.ranges[i];\n changes[i] = {from: range.from(), to: range.to(), text: splitLines(code[i]), origin: origin};\n }\n var newSel = collapse && collapse != \"end\" && computeReplacedSel(this, changes, collapse);\n for (var i = changes.length - 1; i >= 0; i--)\n makeChange(this, changes[i]);\n if (newSel) setSelectionReplaceHistory(this, newSel);\n else if (this.cm) ensureCursorVisible(this.cm);\n }),\n undo: docMethodOp(function() {makeChangeFromHistory(this, \"undo\");}),\n redo: docMethodOp(function() {makeChangeFromHistory(this, \"redo\");}),\n undoSelection: docMethodOp(function() {makeChangeFromHistory(this, \"undo\", true);}),\n redoSelection: docMethodOp(function() {makeChangeFromHistory(this, \"redo\", true);}),\n\n setExtending: function(val) {this.extend = val;},\n getExtending: function() {return this.extend;},\n\n historySize: function() {\n var hist = this.history, done = 0, undone = 0;\n for (var i = 0; i < hist.done.length; i++) if (!hist.done[i].ranges) ++done;\n for (var i = 0; i < hist.undone.length; i++) if (!hist.undone[i].ranges) ++undone;\n return {undo: done, redo: undone};\n },\n clearHistory: function() {this.history = new History(this.history.maxGeneration);},\n\n markClean: function() {\n this.cleanGeneration = this.changeGeneration(true);\n },\n changeGeneration: function(forceSplit) {\n if (forceSplit)\n this.history.lastOp = this.history.lastSelOp = this.history.lastOrigin = null;\n return this.history.generation;\n },\n isClean: function (gen) {\n return this.history.generation == (gen || this.cleanGeneration);\n },\n\n getHistory: function() {\n return {done: copyHistoryArray(this.history.done),\n undone: copyHistoryArray(this.history.undone)};\n },\n setHistory: function(histData) {\n var hist = this.history = new History(this.history.maxGeneration);\n hist.done = copyHistoryArray(histData.done.slice(0), null, true);\n hist.undone = copyHistoryArray(histData.undone.slice(0), null, true);\n },\n\n addLineClass: docMethodOp(function(handle, where, cls) {\n return changeLine(this, handle, where == \"gutter\" ? \"gutter\" : \"class\", function(line) {\n var prop = where == \"text\" ? \"textClass\"\n : where == \"background\" ? \"bgClass\"\n : where == \"gutter\" ? \"gutterClass\" : \"wrapClass\";\n if (!line[prop]) line[prop] = cls;\n else if (classTest(cls).test(line[prop])) return false;\n else line[prop] += \" \" + cls;\n return true;\n });\n }),\n removeLineClass: docMethodOp(function(handle, where, cls) {\n return changeLine(this, handle, where == \"gutter\" ? \"gutter\" : \"class\", function(line) {\n var prop = where == \"text\" ? \"textClass\"\n : where == \"background\" ? \"bgClass\"\n : where == \"gutter\" ? \"gutterClass\" : \"wrapClass\";\n var cur = line[prop];\n if (!cur) return false;\n else if (cls == null) line[prop] = null;\n else {\n var found = cur.match(classTest(cls));\n if (!found) return false;\n var end = found.index + found[0].length;\n line[prop] = cur.slice(0, found.index) + (!found.index || end == cur.length ? \"\" : \" \") + cur.slice(end) || null;\n }\n return true;\n });\n }),\n\n markText: function(from, to, options) {\n return markText(this, clipPos(this, from), clipPos(this, to), options, \"range\");\n },\n setBookmark: function(pos, options) {\n var realOpts = {replacedWith: options && (options.nodeType == null ? options.widget : options),\n insertLeft: options && options.insertLeft,\n clearWhenEmpty: false, shared: options && options.shared};\n pos = clipPos(this, pos);\n return markText(this, pos, pos, realOpts, \"bookmark\");\n },\n findMarksAt: function(pos) {\n pos = clipPos(this, pos);\n var markers = [], spans = getLine(this, pos.line).markedSpans;\n if (spans) for (var i = 0; i < spans.length; ++i) {\n var span = spans[i];\n if ((span.from == null || span.from <= pos.ch) &&\n (span.to == null || span.to >= pos.ch))\n markers.push(span.marker.parent || span.marker);\n }\n return markers;\n },\n findMarks: function(from, to, filter) {\n from = clipPos(this, from); to = clipPos(this, to);\n var found = [], lineNo = from.line;\n this.iter(from.line, to.line + 1, function(line) {\n var spans = line.markedSpans;\n if (spans) for (var i = 0; i < spans.length; i++) {\n var span = spans[i];\n if (!(lineNo == from.line && from.ch > span.to ||\n span.from == null && lineNo != from.line||\n lineNo == to.line && span.from > to.ch) &&\n (!filter || filter(span.marker)))\n found.push(span.marker.parent || span.marker);\n }\n ++lineNo;\n });\n return found;\n },\n getAllMarks: function() {\n var markers = [];\n this.iter(function(line) {\n var sps = line.markedSpans;\n if (sps) for (var i = 0; i < sps.length; ++i)\n if (sps[i].from != null) markers.push(sps[i].marker);\n });\n return markers;\n },\n\n posFromIndex: function(off) {\n var ch, lineNo = this.first;\n this.iter(function(line) {\n var sz = line.text.length + 1;\n if (sz > off) { ch = off; return true; }\n off -= sz;\n ++lineNo;\n });\n return clipPos(this, Pos(lineNo, ch));\n },\n indexFromPos: function (coords) {\n coords = clipPos(this, coords);\n var index = coords.ch;\n if (coords.line < this.first || coords.ch < 0) return 0;\n this.iter(this.first, coords.line, function (line) {\n index += line.text.length + 1;\n });\n return index;\n },\n\n copy: function(copyHistory) {\n var doc = new Doc(getLines(this, this.first, this.first + this.size), this.modeOption, this.first);\n doc.scrollTop = this.scrollTop; doc.scrollLeft = this.scrollLeft;\n doc.sel = this.sel;\n doc.extend = false;\n if (copyHistory) {\n doc.history.undoDepth = this.history.undoDepth;\n doc.setHistory(this.getHistory());\n }\n return doc;\n },\n\n linkedDoc: function(options) {\n if (!options) options = {};\n var from = this.first, to = this.first + this.size;\n if (options.from != null && options.from > from) from = options.from;\n if (options.to != null && options.to < to) to = options.to;\n var copy = new Doc(getLines(this, from, to), options.mode || this.modeOption, from);\n if (options.sharedHist) copy.history = this.history;\n (this.linked || (this.linked = [])).push({doc: copy, sharedHist: options.sharedHist});\n copy.linked = [{doc: this, isParent: true, sharedHist: options.sharedHist}];\n copySharedMarkers(copy, findSharedMarkers(this));\n return copy;\n },\n unlinkDoc: function(other) {\n if (other instanceof CodeMirror) other = other.doc;\n if (this.linked) for (var i = 0; i < this.linked.length; ++i) {\n var link = this.linked[i];\n if (link.doc != other) continue;\n this.linked.splice(i, 1);\n other.unlinkDoc(this);\n detachSharedMarkers(findSharedMarkers(this));\n break;\n }\n // If the histories were shared, split them again\n if (other.history == this.history) {\n var splitIds = [other.id];\n linkedDocs(other, function(doc) {splitIds.push(doc.id);}, true);\n other.history = new History(null);\n other.history.done = copyHistoryArray(this.history.done, splitIds);\n other.history.undone = copyHistoryArray(this.history.undone, splitIds);\n }\n },\n iterLinkedDocs: function(f) {linkedDocs(this, f);},\n\n getMode: function() {return this.mode;},\n getEditor: function() {return this.cm;}\n });\n\n // Public alias.\n Doc.prototype.eachLine = Doc.prototype.iter;\n\n // Set up methods on CodeMirror's prototype to redirect to the editor's document.\n var dontDelegate = \"iter insert remove copy getEditor\".split(\" \");\n for (var prop in Doc.prototype) if (Doc.prototype.hasOwnProperty(prop) && indexOf(dontDelegate, prop) < 0)\n CodeMirror.prototype[prop] = (function(method) {\n return function() {return method.apply(this.doc, arguments);};\n })(Doc.prototype[prop]);\n\n eventMixin(Doc);\n\n // Call f for all linked documents.\n function linkedDocs(doc, f, sharedHistOnly) {\n function propagate(doc, skip, sharedHist) {\n if (doc.linked) for (var i = 0; i < doc.linked.length; ++i) {\n var rel = doc.linked[i];\n if (rel.doc == skip) continue;\n var shared = sharedHist && rel.sharedHist;\n if (sharedHistOnly && !shared) continue;\n f(rel.doc, shared);\n propagate(rel.doc, doc, shared);\n }\n }\n propagate(doc, null, true);\n }\n\n // Attach a document to an editor.\n function attachDoc(cm, doc) {\n if (doc.cm) throw new Error(\"This document is already in use.\");\n cm.doc = doc;\n doc.cm = cm;\n estimateLineHeights(cm);\n loadMode(cm);\n if (!cm.options.lineWrapping) findMaxLine(cm);\n cm.options.mode = doc.modeOption;\n regChange(cm);\n }\n\n // LINE UTILITIES\n\n // Find the line object corresponding to the given line number.\n function getLine(doc, n) {\n n -= doc.first;\n if (n < 0 || n >= doc.size) throw new Error(\"There is no line \" + (n + doc.first) + \" in the document.\");\n for (var chunk = doc; !chunk.lines;) {\n for (var i = 0;; ++i) {\n var child = chunk.children[i], sz = child.chunkSize();\n if (n < sz) { chunk = child; break; }\n n -= sz;\n }\n }\n return chunk.lines[n];\n }\n\n // Get the part of a document between two positions, as an array of\n // strings.\n function getBetween(doc, start, end) {\n var out = [], n = start.line;\n doc.iter(start.line, end.line + 1, function(line) {\n var text = line.text;\n if (n == end.line) text = text.slice(0, end.ch);\n if (n == start.line) text = text.slice(start.ch);\n out.push(text);\n ++n;\n });\n return out;\n }\n // Get the lines between from and to, as array of strings.\n function getLines(doc, from, to) {\n var out = [];\n doc.iter(from, to, function(line) { out.push(line.text); });\n return out;\n }\n\n // Update the height of a line, propagating the height change\n // upwards to parent nodes.\n function updateLineHeight(line, height) {\n var diff = height - line.height;\n if (diff) for (var n = line; n; n = n.parent) n.height += diff;\n }\n\n // Given a line object, find its line number by walking up through\n // its parent links.\n function lineNo(line) {\n if (line.parent == null) return null;\n var cur = line.parent, no = indexOf(cur.lines, line);\n for (var chunk = cur.parent; chunk; cur = chunk, chunk = chunk.parent) {\n for (var i = 0;; ++i) {\n if (chunk.children[i] == cur) break;\n no += chunk.children[i].chunkSize();\n }\n }\n return no + cur.first;\n }\n\n // Find the line at the given vertical position, using the height\n // information in the document tree.\n function lineAtHeight(chunk, h) {\n var n = chunk.first;\n outer: do {\n for (var i = 0; i < chunk.children.length; ++i) {\n var child = chunk.children[i], ch = child.height;\n if (h < ch) { chunk = child; continue outer; }\n h -= ch;\n n += child.chunkSize();\n }\n return n;\n } while (!chunk.lines);\n for (var i = 0; i < chunk.lines.length; ++i) {\n var line = chunk.lines[i], lh = line.height;\n if (h < lh) break;\n h -= lh;\n }\n return n + i;\n }\n\n\n // Find the height above the given line.\n function heightAtLine(lineObj) {\n lineObj = visualLine(lineObj);\n\n var h = 0, chunk = lineObj.parent;\n for (var i = 0; i < chunk.lines.length; ++i) {\n var line = chunk.lines[i];\n if (line == lineObj) break;\n else h += line.height;\n }\n for (var p = chunk.parent; p; chunk = p, p = chunk.parent) {\n for (var i = 0; i < p.children.length; ++i) {\n var cur = p.children[i];\n if (cur == chunk) break;\n else h += cur.height;\n }\n }\n return h;\n }\n\n // Get the bidi ordering for the given line (and cache it). Returns\n // false for lines that are fully left-to-right, and an array of\n // BidiSpan objects otherwise.\n function getOrder(line) {\n var order = line.order;\n if (order == null) order = line.order = bidiOrdering(line.text);\n return order;\n }\n\n // HISTORY\n\n function History(startGen) {\n // Arrays of change events and selections. Doing something adds an\n // event to done and clears undo. Undoing moves events from done\n // to undone, redoing moves them in the other direction.\n this.done = []; this.undone = [];\n this.undoDepth = Infinity;\n // Used to track when changes can be merged into a single undo\n // event\n this.lastModTime = this.lastSelTime = 0;\n this.lastOp = this.lastSelOp = null;\n this.lastOrigin = this.lastSelOrigin = null;\n // Used by the isClean() method\n this.generation = this.maxGeneration = startGen || 1;\n }\n\n // Create a history change event from an updateDoc-style change\n // object.\n function historyChangeFromChange(doc, change) {\n var histChange = {from: copyPos(change.from), to: changeEnd(change), text: getBetween(doc, change.from, change.to)};\n attachLocalSpans(doc, histChange, change.from.line, change.to.line + 1);\n linkedDocs(doc, function(doc) {attachLocalSpans(doc, histChange, change.from.line, change.to.line + 1);}, true);\n return histChange;\n }\n\n // Pop all selection events off the end of a history array. Stop at\n // a change event.\n function clearSelectionEvents(array) {\n while (array.length) {\n var last = lst(array);\n if (last.ranges) array.pop();\n else break;\n }\n }\n\n // Find the top change event in the history. Pop off selection\n // events that are in the way.\n function lastChangeEvent(hist, force) {\n if (force) {\n clearSelectionEvents(hist.done);\n return lst(hist.done);\n } else if (hist.done.length && !lst(hist.done).ranges) {\n return lst(hist.done);\n } else if (hist.done.length > 1 && !hist.done[hist.done.length - 2].ranges) {\n hist.done.pop();\n return lst(hist.done);\n }\n }\n\n // Register a change in the history. Merges changes that are within\n // a single operation, ore are close together with an origin that\n // allows merging (starting with \"+\") into a single event.\n function addChangeToHistory(doc, change, selAfter, opId) {\n var hist = doc.history;\n hist.undone.length = 0;\n var time = +new Date, cur;\n\n if ((hist.lastOp == opId ||\n hist.lastOrigin == change.origin && change.origin &&\n ((change.origin.charAt(0) == \"+\" && doc.cm && hist.lastModTime > time - doc.cm.options.historyEventDelay) ||\n change.origin.charAt(0) == \"*\")) &&\n (cur = lastChangeEvent(hist, hist.lastOp == opId))) {\n // Merge this change into the last event\n var last = lst(cur.changes);\n if (cmp(change.from, change.to) == 0 && cmp(change.from, last.to) == 0) {\n // Optimized case for simple insertion -- don't want to add\n // new changesets for every character typed\n last.to = changeEnd(change);\n } else {\n // Add new sub-event\n cur.changes.push(historyChangeFromChange(doc, change));\n }\n } else {\n // Can not be merged, start a new event.\n var before = lst(hist.done);\n if (!before || !before.ranges)\n pushSelectionToHistory(doc.sel, hist.done);\n cur = {changes: [historyChangeFromChange(doc, change)],\n generation: hist.generation};\n hist.done.push(cur);\n while (hist.done.length > hist.undoDepth) {\n hist.done.shift();\n if (!hist.done[0].ranges) hist.done.shift();\n }\n }\n hist.done.push(selAfter);\n hist.generation = ++hist.maxGeneration;\n hist.lastModTime = hist.lastSelTime = time;\n hist.lastOp = hist.lastSelOp = opId;\n hist.lastOrigin = hist.lastSelOrigin = change.origin;\n\n if (!last) signal(doc, \"historyAdded\");\n }\n\n function selectionEventCanBeMerged(doc, origin, prev, sel) {\n var ch = origin.charAt(0);\n return ch == \"*\" ||\n ch == \"+\" &&\n prev.ranges.length == sel.ranges.length &&\n prev.somethingSelected() == sel.somethingSelected() &&\n new Date - doc.history.lastSelTime <= (doc.cm ? doc.cm.options.historyEventDelay : 500);\n }\n\n // Called whenever the selection changes, sets the new selection as\n // the pending selection in the history, and pushes the old pending\n // selection into the 'done' array when it was significantly\n // different (in number of selected ranges, emptiness, or time).\n function addSelectionToHistory(doc, sel, opId, options) {\n var hist = doc.history, origin = options && options.origin;\n\n // A new event is started when the previous origin does not match\n // the current, or the origins don't allow matching. Origins\n // starting with * are always merged, those starting with + are\n // merged when similar and close together in time.\n if (opId == hist.lastSelOp ||\n (origin && hist.lastSelOrigin == origin &&\n (hist.lastModTime == hist.lastSelTime && hist.lastOrigin == origin ||\n selectionEventCanBeMerged(doc, origin, lst(hist.done), sel))))\n hist.done[hist.done.length - 1] = sel;\n else\n pushSelectionToHistory(sel, hist.done);\n\n hist.lastSelTime = +new Date;\n hist.lastSelOrigin = origin;\n hist.lastSelOp = opId;\n if (options && options.clearRedo !== false)\n clearSelectionEvents(hist.undone);\n }\n\n function pushSelectionToHistory(sel, dest) {\n var top = lst(dest);\n if (!(top && top.ranges && top.equals(sel)))\n dest.push(sel);\n }\n\n // Used to store marked span information in the history.\n function attachLocalSpans(doc, change, from, to) {\n var existing = change[\"spans_\" + doc.id], n = 0;\n doc.iter(Math.max(doc.first, from), Math.min(doc.first + doc.size, to), function(line) {\n if (line.markedSpans)\n (existing || (existing = change[\"spans_\" + doc.id] = {}))[n] = line.markedSpans;\n ++n;\n });\n }\n\n // When un/re-doing restores text containing marked spans, those\n // that have been explicitly cleared should not be restored.\n function removeClearedSpans(spans) {\n if (!spans) return null;\n for (var i = 0, out; i < spans.length; ++i) {\n if (spans[i].marker.explicitlyCleared) { if (!out) out = spans.slice(0, i); }\n else if (out) out.push(spans[i]);\n }\n return !out ? spans : out.length ? out : null;\n }\n\n // Retrieve and filter the old marked spans stored in a change event.\n function getOldSpans(doc, change) {\n var found = change[\"spans_\" + doc.id];\n if (!found) return null;\n for (var i = 0, nw = []; i < change.text.length; ++i)\n nw.push(removeClearedSpans(found[i]));\n return nw;\n }\n\n // Used both to provide a JSON-safe object in .getHistory, and, when\n // detaching a document, to split the history in two\n function copyHistoryArray(events, newGroup, instantiateSel) {\n for (var i = 0, copy = []; i < events.length; ++i) {\n var event = events[i];\n if (event.ranges) {\n copy.push(instantiateSel ? Selection.prototype.deepCopy.call(event) : event);\n continue;\n }\n var changes = event.changes, newChanges = [];\n copy.push({changes: newChanges});\n for (var j = 0; j < changes.length; ++j) {\n var change = changes[j], m;\n newChanges.push({from: change.from, to: change.to, text: change.text});\n if (newGroup) for (var prop in change) if (m = prop.match(/^spans_(\\d+)$/)) {\n if (indexOf(newGroup, Number(m[1])) > -1) {\n lst(newChanges)[prop] = change[prop];\n delete change[prop];\n }\n }\n }\n }\n return copy;\n }\n\n // Rebasing/resetting history to deal with externally-sourced changes\n\n function rebaseHistSelSingle(pos, from, to, diff) {\n if (to < pos.line) {\n pos.line += diff;\n } else if (from < pos.line) {\n pos.line = from;\n pos.ch = 0;\n }\n }\n\n // Tries to rebase an array of history events given a change in the\n // document. If the change touches the same lines as the event, the\n // event, and everything 'behind' it, is discarded. If the change is\n // before the event, the event's positions are updated. Uses a\n // copy-on-write scheme for the positions, to avoid having to\n // reallocate them all on every rebase, but also avoid problems with\n // shared position objects being unsafely updated.\n function rebaseHistArray(array, from, to, diff) {\n for (var i = 0; i < array.length; ++i) {\n var sub = array[i], ok = true;\n if (sub.ranges) {\n if (!sub.copied) { sub = array[i] = sub.deepCopy(); sub.copied = true; }\n for (var j = 0; j < sub.ranges.length; j++) {\n rebaseHistSelSingle(sub.ranges[j].anchor, from, to, diff);\n rebaseHistSelSingle(sub.ranges[j].head, from, to, diff);\n }\n continue;\n }\n for (var j = 0; j < sub.changes.length; ++j) {\n var cur = sub.changes[j];\n if (to < cur.from.line) {\n cur.from = Pos(cur.from.line + diff, cur.from.ch);\n cur.to = Pos(cur.to.line + diff, cur.to.ch);\n } else if (from <= cur.to.line) {\n ok = false;\n break;\n }\n }\n if (!ok) {\n array.splice(0, i + 1);\n i = 0;\n }\n }\n }\n\n function rebaseHist(hist, change) {\n var from = change.from.line, to = change.to.line, diff = change.text.length - (to - from) - 1;\n rebaseHistArray(hist.done, from, to, diff);\n rebaseHistArray(hist.undone, from, to, diff);\n }\n\n // EVENT UTILITIES\n\n // Due to the fact that we still support jurassic IE versions, some\n // compatibility wrappers are needed.\n\n var e_preventDefault = CodeMirror.e_preventDefault = function(e) {\n if (e.preventDefault) e.preventDefault();\n else e.returnValue = false;\n };\n var e_stopPropagation = CodeMirror.e_stopPropagation = function(e) {\n if (e.stopPropagation) e.stopPropagation();\n else e.cancelBubble = true;\n };\n function e_defaultPrevented(e) {\n return e.defaultPrevented != null ? e.defaultPrevented : e.returnValue == false;\n }\n var e_stop = CodeMirror.e_stop = function(e) {e_preventDefault(e); e_stopPropagation(e);};\n\n function e_target(e) {return e.target || e.srcElement;}\n function e_button(e) {\n var b = e.which;\n if (b == null) {\n if (e.button & 1) b = 1;\n else if (e.button & 2) b = 3;\n else if (e.button & 4) b = 2;\n }\n if (mac && e.ctrlKey && b == 1) b = 3;\n return b;\n }\n\n // EVENT HANDLING\n\n // Lightweight event framework. on/off also work on DOM nodes,\n // registering native DOM handlers.\n\n var on = CodeMirror.on = function(emitter, type, f) {\n if (emitter.addEventListener)\n emitter.addEventListener(type, f, false);\n else if (emitter.attachEvent)\n emitter.attachEvent(\"on\" + type, f);\n else {\n var map = emitter._handlers || (emitter._handlers = {});\n var arr = map[type] || (map[type] = []);\n arr.push(f);\n }\n };\n\n var off = CodeMirror.off = function(emitter, type, f) {\n if (emitter.removeEventListener)\n emitter.removeEventListener(type, f, false);\n else if (emitter.detachEvent)\n emitter.detachEvent(\"on\" + type, f);\n else {\n var arr = emitter._handlers && emitter._handlers[type];\n if (!arr) return;\n for (var i = 0; i < arr.length; ++i)\n if (arr[i] == f) { arr.splice(i, 1); break; }\n }\n };\n\n var signal = CodeMirror.signal = function(emitter, type /*, values...*/) {\n var arr = emitter._handlers && emitter._handlers[type];\n if (!arr) return;\n var args = Array.prototype.slice.call(arguments, 2);\n for (var i = 0; i < arr.length; ++i) arr[i].apply(null, args);\n };\n\n var orphanDelayedCallbacks = null;\n\n // Often, we want to signal events at a point where we are in the\n // middle of some work, but don't want the handler to start calling\n // other methods on the editor, which might be in an inconsistent\n // state or simply not expect any other events to happen.\n // signalLater looks whether there are any handlers, and schedules\n // them to be executed when the last operation ends, or, if no\n // operation is active, when a timeout fires.\n function signalLater(emitter, type /*, values...*/) {\n var arr = emitter._handlers && emitter._handlers[type];\n if (!arr) return;\n var args = Array.prototype.slice.call(arguments, 2), list;\n if (operationGroup) {\n list = operationGroup.delayedCallbacks;\n } else if (orphanDelayedCallbacks) {\n list = orphanDelayedCallbacks;\n } else {\n list = orphanDelayedCallbacks = [];\n setTimeout(fireOrphanDelayed, 0);\n }\n function bnd(f) {return function(){f.apply(null, args);};};\n for (var i = 0; i < arr.length; ++i)\n list.push(bnd(arr[i]));\n }\n\n function fireOrphanDelayed() {\n var delayed = orphanDelayedCallbacks;\n orphanDelayedCallbacks = null;\n for (var i = 0; i < delayed.length; ++i) delayed[i]();\n }\n\n // The DOM events that CodeMirror handles can be overridden by\n // registering a (non-DOM) handler on the editor for the event name,\n // and preventDefault-ing the event in that handler.\n function signalDOMEvent(cm, e, override) {\n if (typeof e == \"string\")\n e = {type: e, preventDefault: function() { this.defaultPrevented = true; }};\n signal(cm, override || e.type, cm, e);\n return e_defaultPrevented(e) || e.codemirrorIgnore;\n }\n\n function signalCursorActivity(cm) {\n var arr = cm._handlers && cm._handlers.cursorActivity;\n if (!arr) return;\n var set = cm.curOp.cursorActivityHandlers || (cm.curOp.cursorActivityHandlers = []);\n for (var i = 0; i < arr.length; ++i) if (indexOf(set, arr[i]) == -1)\n set.push(arr[i]);\n }\n\n function hasHandler(emitter, type) {\n var arr = emitter._handlers && emitter._handlers[type];\n return arr && arr.length > 0;\n }\n\n // Add on and off methods to a constructor's prototype, to make\n // registering events on such objects more convenient.\n function eventMixin(ctor) {\n ctor.prototype.on = function(type, f) {on(this, type, f);};\n ctor.prototype.off = function(type, f) {off(this, type, f);};\n }\n\n // MISC UTILITIES\n\n // Number of pixels added to scroller and sizer to hide scrollbar\n var scrollerGap = 30;\n\n // Returned or thrown by various protocols to signal 'I'm not\n // handling this'.\n var Pass = CodeMirror.Pass = {toString: function(){return \"CodeMirror.Pass\";}};\n\n // Reused option objects for setSelection & friends\n var sel_dontScroll = {scroll: false}, sel_mouse = {origin: \"*mouse\"}, sel_move = {origin: \"+move\"};\n\n function Delayed() {this.id = null;}\n Delayed.prototype.set = function(ms, f) {\n clearTimeout(this.id);\n this.id = setTimeout(f, ms);\n };\n\n // Counts the column offset in a string, taking tabs into account.\n // Used mostly to find indentation.\n var countColumn = CodeMirror.countColumn = function(string, end, tabSize, startIndex, startValue) {\n if (end == null) {\n end = string.search(/[^\\s\\u00a0]/);\n if (end == -1) end = string.length;\n }\n for (var i = startIndex || 0, n = startValue || 0;;) {\n var nextTab = string.indexOf(\"\\t\", i);\n if (nextTab < 0 || nextTab >= end)\n return n + (end - i);\n n += nextTab - i;\n n += tabSize - (n % tabSize);\n i = nextTab + 1;\n }\n };\n\n // The inverse of countColumn -- find the offset that corresponds to\n // a particular column.\n function findColumn(string, goal, tabSize) {\n for (var pos = 0, col = 0;;) {\n var nextTab = string.indexOf(\"\\t\", pos);\n if (nextTab == -1) nextTab = string.length;\n var skipped = nextTab - pos;\n if (nextTab == string.length || col + skipped >= goal)\n return pos + Math.min(skipped, goal - col);\n col += nextTab - pos;\n col += tabSize - (col % tabSize);\n pos = nextTab + 1;\n if (col >= goal) return pos;\n }\n }\n\n var spaceStrs = [\"\"];\n function spaceStr(n) {\n while (spaceStrs.length <= n)\n spaceStrs.push(lst(spaceStrs) + \" \");\n return spaceStrs[n];\n }\n\n function lst(arr) { return arr[arr.length-1]; }\n\n var selectInput = function(node) { node.select(); };\n if (ios) // Mobile Safari apparently has a bug where select() is broken.\n selectInput = function(node) { node.selectionStart = 0; node.selectionEnd = node.value.length; };\n else if (ie) // Suppress mysterious IE10 errors\n selectInput = function(node) { try { node.select(); } catch(_e) {} };\n\n function indexOf(array, elt) {\n for (var i = 0; i < array.length; ++i)\n if (array[i] == elt) return i;\n return -1;\n }\n function map(array, f) {\n var out = [];\n for (var i = 0; i < array.length; i++) out[i] = f(array[i], i);\n return out;\n }\n\n function createObj(base, props) {\n var inst;\n if (Object.create) {\n inst = Object.create(base);\n } else {\n var ctor = function() {};\n ctor.prototype = base;\n inst = new ctor();\n }\n if (props) copyObj(props, inst);\n return inst;\n };\n\n function copyObj(obj, target, overwrite) {\n if (!target) target = {};\n for (var prop in obj)\n if (obj.hasOwnProperty(prop) && (overwrite !== false || !target.hasOwnProperty(prop)))\n target[prop] = obj[prop];\n return target;\n }\n\n function bind(f) {\n var args = Array.prototype.slice.call(arguments, 1);\n return function(){return f.apply(null, args);};\n }\n\n var nonASCIISingleCaseWordChar = /[\\u00df\\u0590-\\u05f4\\u0600-\\u06ff\\u3040-\\u309f\\u30a0-\\u30ff\\u3400-\\u4db5\\u4e00-\\u9fcc\\uac00-\\ud7af]/;\n var isWordCharBasic = CodeMirror.isWordChar = function(ch) {\n return /\\w/.test(ch) || ch > \"\\x80\" &&\n (ch.toUpperCase() != ch.toLowerCase() || nonASCIISingleCaseWordChar.test(ch));\n };\n function isWordChar(ch, helper) {\n if (!helper) return isWordCharBasic(ch);\n if (helper.source.indexOf(\"\\\\w\") > -1 && isWordCharBasic(ch)) return true;\n return helper.test(ch);\n }\n\n function isEmpty(obj) {\n for (var n in obj) if (obj.hasOwnProperty(n) && obj[n]) return false;\n return true;\n }\n\n // Extending unicode characters. A series of a non-extending char +\n // any number of extending chars is treated as a single unit as far\n // as editing and measuring is concerned. This is not fully correct,\n // since some scripts/fonts/browsers also treat other configurations\n // of code points as a group.\n var extendingChars = /[\\u0300-\\u036f\\u0483-\\u0489\\u0591-\\u05bd\\u05bf\\u05c1\\u05c2\\u05c4\\u05c5\\u05c7\\u0610-\\u061a\\u064b-\\u065e\\u0670\\u06d6-\\u06dc\\u06de-\\u06e4\\u06e7\\u06e8\\u06ea-\\u06ed\\u0711\\u0730-\\u074a\\u07a6-\\u07b0\\u07eb-\\u07f3\\u0816-\\u0819\\u081b-\\u0823\\u0825-\\u0827\\u0829-\\u082d\\u0900-\\u0902\\u093c\\u0941-\\u0948\\u094d\\u0951-\\u0955\\u0962\\u0963\\u0981\\u09bc\\u09be\\u09c1-\\u09c4\\u09cd\\u09d7\\u09e2\\u09e3\\u0a01\\u0a02\\u0a3c\\u0a41\\u0a42\\u0a47\\u0a48\\u0a4b-\\u0a4d\\u0a51\\u0a70\\u0a71\\u0a75\\u0a81\\u0a82\\u0abc\\u0ac1-\\u0ac5\\u0ac7\\u0ac8\\u0acd\\u0ae2\\u0ae3\\u0b01\\u0b3c\\u0b3e\\u0b3f\\u0b41-\\u0b44\\u0b4d\\u0b56\\u0b57\\u0b62\\u0b63\\u0b82\\u0bbe\\u0bc0\\u0bcd\\u0bd7\\u0c3e-\\u0c40\\u0c46-\\u0c48\\u0c4a-\\u0c4d\\u0c55\\u0c56\\u0c62\\u0c63\\u0cbc\\u0cbf\\u0cc2\\u0cc6\\u0ccc\\u0ccd\\u0cd5\\u0cd6\\u0ce2\\u0ce3\\u0d3e\\u0d41-\\u0d44\\u0d4d\\u0d57\\u0d62\\u0d63\\u0dca\\u0dcf\\u0dd2-\\u0dd4\\u0dd6\\u0ddf\\u0e31\\u0e34-\\u0e3a\\u0e47-\\u0e4e\\u0eb1\\u0eb4-\\u0eb9\\u0ebb\\u0ebc\\u0ec8-\\u0ecd\\u0f18\\u0f19\\u0f35\\u0f37\\u0f39\\u0f71-\\u0f7e\\u0f80-\\u0f84\\u0f86\\u0f87\\u0f90-\\u0f97\\u0f99-\\u0fbc\\u0fc6\\u102d-\\u1030\\u1032-\\u1037\\u1039\\u103a\\u103d\\u103e\\u1058\\u1059\\u105e-\\u1060\\u1071-\\u1074\\u1082\\u1085\\u1086\\u108d\\u109d\\u135f\\u1712-\\u1714\\u1732-\\u1734\\u1752\\u1753\\u1772\\u1773\\u17b7-\\u17bd\\u17c6\\u17c9-\\u17d3\\u17dd\\u180b-\\u180d\\u18a9\\u1920-\\u1922\\u1927\\u1928\\u1932\\u1939-\\u193b\\u1a17\\u1a18\\u1a56\\u1a58-\\u1a5e\\u1a60\\u1a62\\u1a65-\\u1a6c\\u1a73-\\u1a7c\\u1a7f\\u1b00-\\u1b03\\u1b34\\u1b36-\\u1b3a\\u1b3c\\u1b42\\u1b6b-\\u1b73\\u1b80\\u1b81\\u1ba2-\\u1ba5\\u1ba8\\u1ba9\\u1c2c-\\u1c33\\u1c36\\u1c37\\u1cd0-\\u1cd2\\u1cd4-\\u1ce0\\u1ce2-\\u1ce8\\u1ced\\u1dc0-\\u1de6\\u1dfd-\\u1dff\\u200c\\u200d\\u20d0-\\u20f0\\u2cef-\\u2cf1\\u2de0-\\u2dff\\u302a-\\u302f\\u3099\\u309a\\ua66f-\\ua672\\ua67c\\ua67d\\ua6f0\\ua6f1\\ua802\\ua806\\ua80b\\ua825\\ua826\\ua8c4\\ua8e0-\\ua8f1\\ua926-\\ua92d\\ua947-\\ua951\\ua980-\\ua982\\ua9b3\\ua9b6-\\ua9b9\\ua9bc\\uaa29-\\uaa2e\\uaa31\\uaa32\\uaa35\\uaa36\\uaa43\\uaa4c\\uaab0\\uaab2-\\uaab4\\uaab7\\uaab8\\uaabe\\uaabf\\uaac1\\uabe5\\uabe8\\uabed\\udc00-\\udfff\\ufb1e\\ufe00-\\ufe0f\\ufe20-\\ufe26\\uff9e\\uff9f]/;\n function isExtendingChar(ch) { return ch.charCodeAt(0) >= 768 && extendingChars.test(ch); }\n\n // DOM UTILITIES\n\n function elt(tag, content, className, style) {\n var e = document.createElement(tag);\n if (className) e.className = className;\n if (style) e.style.cssText = style;\n if (typeof content == \"string\") e.appendChild(document.createTextNode(content));\n else if (content) for (var i = 0; i < content.length; ++i) e.appendChild(content[i]);\n return e;\n }\n\n var range;\n if (document.createRange) range = function(node, start, end) {\n var r = document.createRange();\n r.setEnd(node, end);\n r.setStart(node, start);\n return r;\n };\n else range = function(node, start, end) {\n var r = document.body.createTextRange();\n try { r.moveToElementText(node.parentNode); }\n catch(e) { return r; }\n r.collapse(true);\n r.moveEnd(\"character\", end);\n r.moveStart(\"character\", start);\n return r;\n };\n\n function removeChildren(e) {\n for (var count = e.childNodes.length; count > 0; --count)\n e.removeChild(e.firstChild);\n return e;\n }\n\n function removeChildrenAndAdd(parent, e) {\n return removeChildren(parent).appendChild(e);\n }\n\n var contains = CodeMirror.contains = function(parent, child) {\n if (parent.contains)\n return parent.contains(child);\n while (child = child.parentNode) {\n if (child.nodeType == 11) child = child.host;\n if (child == parent) return true;\n }\n };\n\n function activeElt() { return document.activeElement; }\n // Older versions of IE throws unspecified error when touching\n // document.activeElement in some cases (during loading, in iframe)\n if (ie && ie_version < 11) activeElt = function() {\n try { return document.activeElement; }\n catch(e) { return document.body; }\n };\n\n function classTest(cls) { return new RegExp(\"(^|\\\\s)\" + cls + \"(?:$|\\\\s)\\\\s*\"); }\n var rmClass = CodeMirror.rmClass = function(node, cls) {\n var current = node.className;\n var match = classTest(cls).exec(current);\n if (match) {\n var after = current.slice(match.index + match[0].length);\n node.className = current.slice(0, match.index) + (after ? match[1] + after : \"\");\n }\n };\n var addClass = CodeMirror.addClass = function(node, cls) {\n var current = node.className;\n if (!classTest(cls).test(current)) node.className += (current ? \" \" : \"\") + cls;\n };\n function joinClasses(a, b) {\n var as = a.split(\" \");\n for (var i = 0; i < as.length; i++)\n if (as[i] && !classTest(as[i]).test(b)) b += \" \" + as[i];\n return b;\n }\n\n // WINDOW-WIDE EVENTS\n\n // These must be handled carefully, because naively registering a\n // handler for each editor will cause the editors to never be\n // garbage collected.\n\n function forEachCodeMirror(f) {\n if (!document.body.getElementsByClassName) return;\n var byClass = document.body.getElementsByClassName(\"CodeMirror\");\n for (var i = 0; i < byClass.length; i++) {\n var cm = byClass[i].CodeMirror;\n if (cm) f(cm);\n }\n }\n\n var globalsRegistered = false;\n function ensureGlobalHandlers() {\n if (globalsRegistered) return;\n registerGlobalHandlers();\n globalsRegistered = true;\n }\n function registerGlobalHandlers() {\n // When the window resizes, we need to refresh active editors.\n var resizeTimer;\n on(window, \"resize\", function() {\n if (resizeTimer == null) resizeTimer = setTimeout(function() {\n resizeTimer = null;\n forEachCodeMirror(onResize);\n }, 100);\n });\n // When the window loses focus, we want to show the editor as blurred\n on(window, \"blur\", function() {\n forEachCodeMirror(onBlur);\n });\n }\n\n // FEATURE DETECTION\n\n // Detect drag-and-drop\n var dragAndDrop = function() {\n // There is *some* kind of drag-and-drop support in IE6-8, but I\n // couldn't get it to work yet.\n if (ie && ie_version < 9) return false;\n var div = elt('div');\n return \"draggable\" in div || \"dragDrop\" in div;\n }();\n\n var zwspSupported;\n function zeroWidthElement(measure) {\n if (zwspSupported == null) {\n var test = elt(\"span\", \"\\u200b\");\n removeChildrenAndAdd(measure, elt(\"span\", [test, document.createTextNode(\"x\")]));\n if (measure.firstChild.offsetHeight != 0)\n zwspSupported = test.offsetWidth <= 1 && test.offsetHeight > 2 && !(ie && ie_version < 8);\n }\n if (zwspSupported) return elt(\"span\", \"\\u200b\");\n else return elt(\"span\", \"\\u00a0\", null, \"display: inline-block; width: 1px; margin-right: -1px\");\n }\n\n // Feature-detect IE's crummy client rect reporting for bidi text\n var badBidiRects;\n function hasBadBidiRects(measure) {\n if (badBidiRects != null) return badBidiRects;\n var txt = removeChildrenAndAdd(measure, document.createTextNode(\"A\\u062eA\"));\n var r0 = range(txt, 0, 1).getBoundingClientRect();\n if (!r0 || r0.left == r0.right) return false; // Safari returns null in some cases (#2780)\n var r1 = range(txt, 1, 2).getBoundingClientRect();\n return badBidiRects = (r1.right - r0.right < 3);\n }\n\n // See if \"\".split is the broken IE version, if so, provide an\n // alternative way to split lines.\n var splitLines = CodeMirror.splitLines = \"\\n\\nb\".split(/\\n/).length != 3 ? function(string) {\n var pos = 0, result = [], l = string.length;\n while (pos <= l) {\n var nl = string.indexOf(\"\\n\", pos);\n if (nl == -1) nl = string.length;\n var line = string.slice(pos, string.charAt(nl - 1) == \"\\r\" ? nl - 1 : nl);\n var rt = line.indexOf(\"\\r\");\n if (rt != -1) {\n result.push(line.slice(0, rt));\n pos += rt + 1;\n } else {\n result.push(line);\n pos = nl + 1;\n }\n }\n return result;\n } : function(string){return string.split(/\\r\\n?|\\n/);};\n\n var hasSelection = window.getSelection ? function(te) {\n try { return te.selectionStart != te.selectionEnd; }\n catch(e) { return false; }\n } : function(te) {\n try {var range = te.ownerDocument.selection.createRange();}\n catch(e) {}\n if (!range || range.parentElement() != te) return false;\n return range.compareEndPoints(\"StartToEnd\", range) != 0;\n };\n\n var hasCopyEvent = (function() {\n var e = elt(\"div\");\n if (\"oncopy\" in e) return true;\n e.setAttribute(\"oncopy\", \"return;\");\n return typeof e.oncopy == \"function\";\n })();\n\n var badZoomedRects = null;\n function hasBadZoomedRects(measure) {\n if (badZoomedRects != null) return badZoomedRects;\n var node = removeChildrenAndAdd(measure, elt(\"span\", \"x\"));\n var normal = node.getBoundingClientRect();\n var fromRange = range(node, 0, 1).getBoundingClientRect();\n return badZoomedRects = Math.abs(normal.left - fromRange.left) > 1;\n }\n\n // KEY NAMES\n\n var keyNames = {3: \"Enter\", 8: \"Backspace\", 9: \"Tab\", 13: \"Enter\", 16: \"Shift\", 17: \"Ctrl\", 18: \"Alt\",\n 19: \"Pause\", 20: \"CapsLock\", 27: \"Esc\", 32: \"Space\", 33: \"PageUp\", 34: \"PageDown\", 35: \"End\",\n 36: \"Home\", 37: \"Left\", 38: \"Up\", 39: \"Right\", 40: \"Down\", 44: \"PrintScrn\", 45: \"Insert\",\n 46: \"Delete\", 59: \";\", 61: \"=\", 91: \"Mod\", 92: \"Mod\", 93: \"Mod\", 107: \"=\", 109: \"-\", 127: \"Delete\",\n 173: \"-\", 186: \";\", 187: \"=\", 188: \",\", 189: \"-\", 190: \".\", 191: \"/\", 192: \"`\", 219: \"[\", 220: \"\\\\\",\n 221: \"]\", 222: \"'\", 63232: \"Up\", 63233: \"Down\", 63234: \"Left\", 63235: \"Right\", 63272: \"Delete\",\n 63273: \"Home\", 63275: \"End\", 63276: \"PageUp\", 63277: \"PageDown\", 63302: \"Insert\"};\n CodeMirror.keyNames = keyNames;\n (function() {\n // Number keys\n for (var i = 0; i < 10; i++) keyNames[i + 48] = keyNames[i + 96] = String(i);\n // Alphabetic keys\n for (var i = 65; i <= 90; i++) keyNames[i] = String.fromCharCode(i);\n // Function keys\n for (var i = 1; i <= 12; i++) keyNames[i + 111] = keyNames[i + 63235] = \"F\" + i;\n })();\n\n // BIDI HELPERS\n\n function iterateBidiSections(order, from, to, f) {\n if (!order) return f(from, to, \"ltr\");\n var found = false;\n for (var i = 0; i < order.length; ++i) {\n var part = order[i];\n if (part.from < to && part.to > from || from == to && part.to == from) {\n f(Math.max(part.from, from), Math.min(part.to, to), part.level == 1 ? \"rtl\" : \"ltr\");\n found = true;\n }\n }\n if (!found) f(from, to, \"ltr\");\n }\n\n function bidiLeft(part) { return part.level % 2 ? part.to : part.from; }\n function bidiRight(part) { return part.level % 2 ? part.from : part.to; }\n\n function lineLeft(line) { var order = getOrder(line); return order ? bidiLeft(order[0]) : 0; }\n function lineRight(line) {\n var order = getOrder(line);\n if (!order) return line.text.length;\n return bidiRight(lst(order));\n }\n\n function lineStart(cm, lineN) {\n var line = getLine(cm.doc, lineN);\n var visual = visualLine(line);\n if (visual != line) lineN = lineNo(visual);\n var order = getOrder(visual);\n var ch = !order ? 0 : order[0].level % 2 ? lineRight(visual) : lineLeft(visual);\n return Pos(lineN, ch);\n }\n function lineEnd(cm, lineN) {\n var merged, line = getLine(cm.doc, lineN);\n while (merged = collapsedSpanAtEnd(line)) {\n line = merged.find(1, true).line;\n lineN = null;\n }\n var order = getOrder(line);\n var ch = !order ? line.text.length : order[0].level % 2 ? lineLeft(line) : lineRight(line);\n return Pos(lineN == null ? lineNo(line) : lineN, ch);\n }\n function lineStartSmart(cm, pos) {\n var start = lineStart(cm, pos.line);\n var line = getLine(cm.doc, start.line);\n var order = getOrder(line);\n if (!order || order[0].level == 0) {\n var firstNonWS = Math.max(0, line.text.search(/\\S/));\n var inWS = pos.line == start.line && pos.ch <= firstNonWS && pos.ch;\n return Pos(start.line, inWS ? 0 : firstNonWS);\n }\n return start;\n }\n\n function compareBidiLevel(order, a, b) {\n var linedir = order[0].level;\n if (a == linedir) return true;\n if (b == linedir) return false;\n return a < b;\n }\n var bidiOther;\n function getBidiPartAt(order, pos) {\n bidiOther = null;\n for (var i = 0, found; i < order.length; ++i) {\n var cur = order[i];\n if (cur.from < pos && cur.to > pos) return i;\n if ((cur.from == pos || cur.to == pos)) {\n if (found == null) {\n found = i;\n } else if (compareBidiLevel(order, cur.level, order[found].level)) {\n if (cur.from != cur.to) bidiOther = found;\n return i;\n } else {\n if (cur.from != cur.to) bidiOther = i;\n return found;\n }\n }\n }\n return found;\n }\n\n function moveInLine(line, pos, dir, byUnit) {\n if (!byUnit) return pos + dir;\n do pos += dir;\n while (pos > 0 && isExtendingChar(line.text.charAt(pos)));\n return pos;\n }\n\n // This is needed in order to move 'visually' through bi-directional\n // text -- i.e., pressing left should make the cursor go left, even\n // when in RTL text. The tricky part is the 'jumps', where RTL and\n // LTR text touch each other. This often requires the cursor offset\n // to move more than one unit, in order to visually move one unit.\n function moveVisually(line, start, dir, byUnit) {\n var bidi = getOrder(line);\n if (!bidi) return moveLogically(line, start, dir, byUnit);\n var pos = getBidiPartAt(bidi, start), part = bidi[pos];\n var target = moveInLine(line, start, part.level % 2 ? -dir : dir, byUnit);\n\n for (;;) {\n if (target > part.from && target < part.to) return target;\n if (target == part.from || target == part.to) {\n if (getBidiPartAt(bidi, target) == pos) return target;\n part = bidi[pos += dir];\n return (dir > 0) == part.level % 2 ? part.to : part.from;\n } else {\n part = bidi[pos += dir];\n if (!part) return null;\n if ((dir > 0) == part.level % 2)\n target = moveInLine(line, part.to, -1, byUnit);\n else\n target = moveInLine(line, part.from, 1, byUnit);\n }\n }\n }\n\n function moveLogically(line, start, dir, byUnit) {\n var target = start + dir;\n if (byUnit) while (target > 0 && isExtendingChar(line.text.charAt(target))) target += dir;\n return target < 0 || target > line.text.length ? null : target;\n }\n\n // Bidirectional ordering algorithm\n // See http://unicode.org/reports/tr9/tr9-13.html for the algorithm\n // that this (partially) implements.\n\n // One-char codes used for character types:\n // L (L): Left-to-Right\n // R (R): Right-to-Left\n // r (AL): Right-to-Left Arabic\n // 1 (EN): European Number\n // + (ES): European Number Separator\n // % (ET): European Number Terminator\n // n (AN): Arabic Number\n // , (CS): Common Number Separator\n // m (NSM): Non-Spacing Mark\n // b (BN): Boundary Neutral\n // s (B): Paragraph Separator\n // t (S): Segment Separator\n // w (WS): Whitespace\n // N (ON): Other Neutrals\n\n // Returns null if characters are ordered as they appear\n // (left-to-right), or an array of sections ({from, to, level}\n // objects) in the order in which they occur visually.\n var bidiOrdering = (function() {\n // Character types for codepoints 0 to 0xff\n var lowTypes = \"bbbbbbbbbtstwsbbbbbbbbbbbbbbssstwNN%%%NNNNNN,N,N1111111111NNNNNNNLLLLLLLLLLLLLLLLLLLLLLLLLLNNNNNNLLLLLLLLLLLLLLLLLLLLLLLLLLNNNNbbbbbbsbbbbbbbbbbbbbbbbbbbbbbbbbb,N%%%%NNNNLNNNNN%%11NLNNN1LNNNNNLLLLLLLLLLLLLLLLLLLLLLLNLLLLLLLLLLLLLLLLLLLLLLLLLLLLLLLN\";\n // Character types for codepoints 0x600 to 0x6ff\n var arabicTypes = \"rrrrrrrrrrrr,rNNmmmmmmrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrmmmmmmmmmmmmmmrrrrrrrnnnnnnnnnn%nnrrrmrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrrmmmmmmmmmmmmmmmmmmmNmmmm\";\n function charType(code) {\n if (code <= 0xf7) return lowTypes.charAt(code);\n else if (0x590 <= code && code <= 0x5f4) return \"R\";\n else if (0x600 <= code && code <= 0x6ed) return arabicTypes.charAt(code - 0x600);\n else if (0x6ee <= code && code <= 0x8ac) return \"r\";\n else if (0x2000 <= code && code <= 0x200b) return \"w\";\n else if (code == 0x200c) return \"b\";\n else return \"L\";\n }\n\n var bidiRE = /[\\u0590-\\u05f4\\u0600-\\u06ff\\u0700-\\u08ac]/;\n var isNeutral = /[stwN]/, isStrong = /[LRr]/, countsAsLeft = /[Lb1n]/, countsAsNum = /[1n]/;\n // Browsers seem to always treat the boundaries of block elements as being L.\n var outerType = \"L\";\n\n function BidiSpan(level, from, to) {\n this.level = level;\n this.from = from; this.to = to;\n }\n\n return function(str) {\n if (!bidiRE.test(str)) return false;\n var len = str.length, types = [];\n for (var i = 0, type; i < len; ++i)\n types.push(type = charType(str.charCodeAt(i)));\n\n // W1. Examine each non-spacing mark (NSM) in the level run, and\n // change the type of the NSM to the type of the previous\n // character. If the NSM is at the start of the level run, it will\n // get the type of sor.\n for (var i = 0, prev = outerType; i < len; ++i) {\n var type = types[i];\n if (type == \"m\") types[i] = prev;\n else prev = type;\n }\n\n // W2. Search backwards from each instance of a European number\n // until the first strong type (R, L, AL, or sor) is found. If an\n // AL is found, change the type of the European number to Arabic\n // number.\n // W3. Change all ALs to R.\n for (var i = 0, cur = outerType; i < len; ++i) {\n var type = types[i];\n if (type == \"1\" && cur == \"r\") types[i] = \"n\";\n else if (isStrong.test(type)) { cur = type; if (type == \"r\") types[i] = \"R\"; }\n }\n\n // W4. A single European separator between two European numbers\n // changes to a European number. A single common separator between\n // two numbers of the same type changes to that type.\n for (var i = 1, prev = types[0]; i < len - 1; ++i) {\n var type = types[i];\n if (type == \"+\" && prev == \"1\" && types[i+1] == \"1\") types[i] = \"1\";\n else if (type == \",\" && prev == types[i+1] &&\n (prev == \"1\" || prev == \"n\")) types[i] = prev;\n prev = type;\n }\n\n // W5. A sequence of European terminators adjacent to European\n // numbers changes to all European numbers.\n // W6. Otherwise, separators and terminators change to Other\n // Neutral.\n for (var i = 0; i < len; ++i) {\n var type = types[i];\n if (type == \",\") types[i] = \"N\";\n else if (type == \"%\") {\n for (var end = i + 1; end < len && types[end] == \"%\"; ++end) {}\n var replace = (i && types[i-1] == \"!\") || (end < len && types[end] == \"1\") ? \"1\" : \"N\";\n for (var j = i; j < end; ++j) types[j] = replace;\n i = end - 1;\n }\n }\n\n // W7. Search backwards from each instance of a European number\n // until the first strong type (R, L, or sor) is found. If an L is\n // found, then change the type of the European number to L.\n for (var i = 0, cur = outerType; i < len; ++i) {\n var type = types[i];\n if (cur == \"L\" && type == \"1\") types[i] = \"L\";\n else if (isStrong.test(type)) cur = type;\n }\n\n // N1. A sequence of neutrals takes the direction of the\n // surrounding strong text if the text on both sides has the same\n // direction. European and Arabic numbers act as if they were R in\n // terms of their influence on neutrals. Start-of-level-run (sor)\n // and end-of-level-run (eor) are used at level run boundaries.\n // N2. Any remaining neutrals take the embedding direction.\n for (var i = 0; i < len; ++i) {\n if (isNeutral.test(types[i])) {\n for (var end = i + 1; end < len && isNeutral.test(types[end]); ++end) {}\n var before = (i ? types[i-1] : outerType) == \"L\";\n var after = (end < len ? types[end] : outerType) == \"L\";\n var replace = before || after ? \"L\" : \"R\";\n for (var j = i; j < end; ++j) types[j] = replace;\n i = end - 1;\n }\n }\n\n // Here we depart from the documented algorithm, in order to avoid\n // building up an actual levels array. Since there are only three\n // levels (0, 1, 2) in an implementation that doesn't take\n // explicit embedding into account, we can build up the order on\n // the fly, without following the level-based algorithm.\n var order = [], m;\n for (var i = 0; i < len;) {\n if (countsAsLeft.test(types[i])) {\n var start = i;\n for (++i; i < len && countsAsLeft.test(types[i]); ++i) {}\n order.push(new BidiSpan(0, start, i));\n } else {\n var pos = i, at = order.length;\n for (++i; i < len && types[i] != \"L\"; ++i) {}\n for (var j = pos; j < i;) {\n if (countsAsNum.test(types[j])) {\n if (pos < j) order.splice(at, 0, new BidiSpan(1, pos, j));\n var nstart = j;\n for (++j; j < i && countsAsNum.test(types[j]); ++j) {}\n order.splice(at, 0, new BidiSpan(2, nstart, j));\n pos = j;\n } else ++j;\n }\n if (pos < i) order.splice(at, 0, new BidiSpan(1, pos, i));\n }\n }\n if (order[0].level == 1 && (m = str.match(/^\\s+/))) {\n order[0].from = m[0].length;\n order.unshift(new BidiSpan(0, 0, m[0].length));\n }\n if (lst(order).level == 1 && (m = str.match(/\\s+$/))) {\n lst(order).to -= m[0].length;\n order.push(new BidiSpan(0, len - m[0].length, len));\n }\n if (order[0].level != lst(order).level)\n order.push(new BidiSpan(order[0].level, len, len));\n\n return order;\n };\n })();\n\n // THE END\n\n CodeMirror.version = \"4.13.0\";\n\n return CodeMirror;\n});\n", "// CodeMirror, copyright (c) by Marijn Haverbeke and others\n// Distributed under an MIT license: http://codemirror.net/LICENSE\n\n// TODO actually recognize syntax of TypeScript constructs\n\n(function(mod) {\n if (typeof exports == \"object\" && typeof module == \"object\") // CommonJS\n mod(require(\"../../lib/codemirror\"));\n else if (typeof define == \"function\" && define.amd) // AMD\n define([\"../../lib/codemirror\"], mod);\n else // Plain browser env\n mod(CodeMirror);\n})(function(CodeMirror) {\n\"use strict\";\n\nCodeMirror.defineMode(\"javascript\", function(config, parserConfig) {\n var indentUnit = config.indentUnit;\n var statementIndent = parserConfig.statementIndent;\n var jsonldMode = parserConfig.jsonld;\n var jsonMode = parserConfig.json || jsonldMode;\n var isTS = parserConfig.typescript;\n var wordRE = parserConfig.wordCharacters || /[\\w$\\xa1-\\uffff]/;\n\n // Tokenizer\n\n var keywords = function(){\n function kw(type) {return {type: type, style: \"keyword\"};}\n var A = kw(\"keyword a\"), B = kw(\"keyword b\"), C = kw(\"keyword c\");\n var operator = kw(\"operator\"), atom = {type: \"atom\", style: \"atom\"};\n\n var jsKeywords = {\n \"if\": kw(\"if\"), \"while\": A, \"with\": A, \"else\": B, \"do\": B, \"try\": B, \"finally\": B,\n \"return\": C, \"break\": C, \"continue\": C, \"new\": C, \"delete\": C, \"throw\": C, \"debugger\": C,\n \"var\": kw(\"var\"), \"const\": kw(\"var\"), \"let\": kw(\"var\"),\n \"function\": kw(\"function\"), \"catch\": kw(\"catch\"),\n \"for\": kw(\"for\"), \"switch\": kw(\"switch\"), \"case\": kw(\"case\"), \"default\": kw(\"default\"),\n \"in\": operator, \"typeof\": operator, \"instanceof\": operator,\n \"true\": atom, \"false\": atom, \"null\": atom, \"undefined\": atom, \"NaN\": atom, \"Infinity\": atom,\n \"this\": kw(\"this\"), \"module\": kw(\"module\"), \"class\": kw(\"class\"), \"super\": kw(\"atom\"),\n \"yield\": C, \"export\": kw(\"export\"), \"import\": kw(\"import\"), \"extends\": C\n };\n\n // Extend the 'normal' keywords with the TypeScript language extensions\n if (isTS) {\n var type = {type: \"variable\", style: \"variable-3\"};\n var tsKeywords = {\n // object-like things\n \"interface\": kw(\"interface\"),\n \"extends\": kw(\"extends\"),\n \"constructor\": kw(\"constructor\"),\n\n // scope modifiers\n \"public\": kw(\"public\"),\n \"private\": kw(\"private\"),\n \"protected\": kw(\"protected\"),\n \"static\": kw(\"static\"),\n\n // types\n \"string\": type, \"number\": type, \"bool\": type, \"any\": type\n };\n\n for (var attr in tsKeywords) {\n jsKeywords[attr] = tsKeywords[attr];\n }\n }\n\n return jsKeywords;\n }();\n\n var isOperatorChar = /[+\\-*&%=<>!?|~^]/;\n var isJsonldKeyword = /^@(context|id|value|language|type|container|list|set|reverse|index|base|vocab|graph)\"/;\n\n function readRegexp(stream) {\n var escaped = false, next, inSet = false;\n while ((next = stream.next()) != null) {\n if (!escaped) {\n if (next == \"/\" && !inSet) return;\n if (next == \"[\") inSet = true;\n else if (inSet && next == \"]\") inSet = false;\n }\n escaped = !escaped && next == \"\\\\\";\n }\n }\n\n // Used as scratch variables to communicate multiple values without\n // consing up tons of objects.\n var type, content;\n function ret(tp, style, cont) {\n type = tp; content = cont;\n return style;\n }\n function tokenBase(stream, state) {\n var ch = stream.next();\n if (ch == '\"' || ch == \"'\") {\n state.tokenize = tokenString(ch);\n return state.tokenize(stream, state);\n } else if (ch == \".\" && stream.match(/^\\d+(?:[eE][+\\-]?\\d+)?/)) {\n return ret(\"number\", \"number\");\n } else if (ch == \".\" && stream.match(\"..\")) {\n return ret(\"spread\", \"meta\");\n } else if (/[\\[\\]{}\\(\\),;\\:\\.]/.test(ch)) {\n return ret(ch);\n } else if (ch == \"=\" && stream.eat(\">\")) {\n return ret(\"=>\", \"operator\");\n } else if (ch == \"0\" && stream.eat(/x/i)) {\n stream.eatWhile(/[\\da-f]/i);\n return ret(\"number\", \"number\");\n } else if (/\\d/.test(ch)) {\n stream.match(/^\\d*(?:\\.\\d*)?(?:[eE][+\\-]?\\d+)?/);\n return ret(\"number\", \"number\");\n } else if (ch == \"/\") {\n if (stream.eat(\"*\")) {\n state.tokenize = tokenComment;\n return tokenComment(stream, state);\n } else if (stream.eat(\"/\")) {\n stream.skipToEnd();\n return ret(\"comment\", \"comment\");\n } else if (state.lastType == \"operator\" || state.lastType == \"keyword c\" ||\n state.lastType == \"sof\" || /^[\\[{}\\(,;:]$/.test(state.lastType)) {\n readRegexp(stream);\n stream.match(/^\\b(([gimyu])(?![gimyu]*\\2))+\\b/);\n return ret(\"regexp\", \"string-2\");\n } else {\n stream.eatWhile(isOperatorChar);\n return ret(\"operator\", \"operator\", stream.current());\n }\n } else if (ch == \"`\") {\n state.tokenize = tokenQuasi;\n return tokenQuasi(stream, state);\n } else if (ch == \"#\") {\n stream.skipToEnd();\n return ret(\"error\", \"error\");\n } else if (isOperatorChar.test(ch)) {\n stream.eatWhile(isOperatorChar);\n return ret(\"operator\", \"operator\", stream.current());\n } else if (wordRE.test(ch)) {\n stream.eatWhile(wordRE);\n var word = stream.current(), known = keywords.propertyIsEnumerable(word) && keywords[word];\n return (known && state.lastType != \".\") ? ret(known.type, known.style, word) :\n ret(\"variable\", \"variable\", word);\n }\n }\n\n function tokenString(quote) {\n return function(stream, state) {\n var escaped = false, next;\n if (jsonldMode && stream.peek() == \"@\" && stream.match(isJsonldKeyword)){\n state.tokenize = tokenBase;\n return ret(\"jsonld-keyword\", \"meta\");\n }\n while ((next = stream.next()) != null) {\n if (next == quote && !escaped) break;\n escaped = !escaped && next == \"\\\\\";\n }\n if (!escaped) state.tokenize = tokenBase;\n return ret(\"string\", \"string\");\n };\n }\n\n function tokenComment(stream, state) {\n var maybeEnd = false, ch;\n while (ch = stream.next()) {\n if (ch == \"/\" && maybeEnd) {\n state.tokenize = tokenBase;\n break;\n }\n maybeEnd = (ch == \"*\");\n }\n return ret(\"comment\", \"comment\");\n }\n\n function tokenQuasi(stream, state) {\n var escaped = false, next;\n while ((next = stream.next()) != null) {\n if (!escaped && (next == \"`\" || next == \"$\" && stream.eat(\"{\"))) {\n state.tokenize = tokenBase;\n break;\n }\n escaped = !escaped && next == \"\\\\\";\n }\n return ret(\"quasi\", \"string-2\", stream.current());\n }\n\n var brackets = \"([{}])\";\n // This is a crude lookahead trick to try and notice that we're\n // parsing the argument patterns for a fat-arrow function before we\n // actually hit the arrow token. It only works if the arrow is on\n // the same line as the arguments and there's no strange noise\n // (comments) in between. Fallback is to only notice when we hit the\n // arrow, and not declare the arguments as locals for the arrow\n // body.\n function findFatArrow(stream, state) {\n if (state.fatArrowAt) state.fatArrowAt = null;\n var arrow = stream.string.indexOf(\"=>\", stream.start);\n if (arrow < 0) return;\n\n var depth = 0, sawSomething = false;\n for (var pos = arrow - 1; pos >= 0; --pos) {\n var ch = stream.string.charAt(pos);\n var bracket = brackets.indexOf(ch);\n if (bracket >= 0 && bracket < 3) {\n if (!depth) { ++pos; break; }\n if (--depth == 0) break;\n } else if (bracket >= 3 && bracket < 6) {\n ++depth;\n } else if (wordRE.test(ch)) {\n sawSomething = true;\n } else if (/[\"'\\/]/.test(ch)) {\n return;\n } else if (sawSomething && !depth) {\n ++pos;\n break;\n }\n }\n if (sawSomething && !depth) state.fatArrowAt = pos;\n }\n\n // Parser\n\n var atomicTypes = {\"atom\": true, \"number\": true, \"variable\": true, \"string\": true, \"regexp\": true, \"this\": true, \"jsonld-keyword\": true};\n\n function JSLexical(indented, column, type, align, prev, info) {\n this.indented = indented;\n this.column = column;\n this.type = type;\n this.prev = prev;\n this.info = info;\n if (align != null) this.align = align;\n }\n\n function inScope(state, varname) {\n for (var v = state.localVars; v; v = v.next)\n if (v.name == varname) return true;\n for (var cx = state.context; cx; cx = cx.prev) {\n for (var v = cx.vars; v; v = v.next)\n if (v.name == varname) return true;\n }\n }\n\n function parseJS(state, style, type, content, stream) {\n var cc = state.cc;\n // Communicate our context to the combinators.\n // (Less wasteful than consing up a hundred closures on every call.)\n cx.state = state; cx.stream = stream; cx.marked = null, cx.cc = cc; cx.style = style;\n\n if (!state.lexical.hasOwnProperty(\"align\"))\n state.lexical.align = true;\n\n while(true) {\n var combinator = cc.length ? cc.pop() : jsonMode ? expression : statement;\n if (combinator(type, content)) {\n while(cc.length && cc[cc.length - 1].lex)\n cc.pop()();\n if (cx.marked) return cx.marked;\n if (type == \"variable\" && inScope(state, content)) return \"variable-2\";\n return style;\n }\n }\n }\n\n // Combinator utils\n\n var cx = {state: null, column: null, marked: null, cc: null};\n function pass() {\n for (var i = arguments.length - 1; i >= 0; i--) cx.cc.push(arguments[i]);\n }\n function cont() {\n pass.apply(null, arguments);\n return true;\n }\n function register(varname) {\n function inList(list) {\n for (var v = list; v; v = v.next)\n if (v.name == varname) return true;\n return false;\n }\n var state = cx.state;\n if (state.context) {\n cx.marked = \"def\";\n if (inList(state.localVars)) return;\n state.localVars = {name: varname, next: state.localVars};\n } else {\n if (inList(state.globalVars)) return;\n if (parserConfig.globalVars)\n state.globalVars = {name: varname, next: state.globalVars};\n }\n }\n\n // Combinators\n\n var defaultVars = {name: \"this\", next: {name: \"arguments\"}};\n function pushcontext() {\n cx.state.context = {prev: cx.state.context, vars: cx.state.localVars};\n cx.state.localVars = defaultVars;\n }\n function popcontext() {\n cx.state.localVars = cx.state.context.vars;\n cx.state.context = cx.state.context.prev;\n }\n function pushlex(type, info) {\n var result = function() {\n var state = cx.state, indent = state.indented;\n if (state.lexical.type == \"stat\") indent = state.lexical.indented;\n else for (var outer = state.lexical; outer && outer.type == \")\" && outer.align; outer = outer.prev)\n indent = outer.indented;\n state.lexical = new JSLexical(indent, cx.stream.column(), type, null, state.lexical, info);\n };\n result.lex = true;\n return result;\n }\n function poplex() {\n var state = cx.state;\n if (state.lexical.prev) {\n if (state.lexical.type == \")\")\n state.indented = state.lexical.indented;\n state.lexical = state.lexical.prev;\n }\n }\n poplex.lex = true;\n\n function expect(wanted) {\n function exp(type) {\n if (type == wanted) return cont();\n else if (wanted == \";\") return pass();\n else return cont(exp);\n };\n return exp;\n }\n\n function statement(type, value) {\n if (type == \"var\") return cont(pushlex(\"vardef\", value.length), vardef, expect(\";\"), poplex);\n if (type == \"keyword a\") return cont(pushlex(\"form\"), expression, statement, poplex);\n if (type == \"keyword b\") return cont(pushlex(\"form\"), statement, poplex);\n if (type == \"{\") return cont(pushlex(\"}\"), block, poplex);\n if (type == \";\") return cont();\n if (type == \"if\") {\n if (cx.state.lexical.info == \"else\" && cx.state.cc[cx.state.cc.length - 1] == poplex)\n cx.state.cc.pop()();\n return cont(pushlex(\"form\"), expression, statement, poplex, maybeelse);\n }\n if (type == \"function\") return cont(functiondef);\n if (type == \"for\") return cont(pushlex(\"form\"), forspec, statement, poplex);\n if (type == \"variable\") return cont(pushlex(\"stat\"), maybelabel);\n if (type == \"switch\") return cont(pushlex(\"form\"), expression, pushlex(\"}\", \"switch\"), expect(\"{\"),\n block, poplex, poplex);\n if (type == \"case\") return cont(expression, expect(\":\"));\n if (type == \"default\") return cont(expect(\":\"));\n if (type == \"catch\") return cont(pushlex(\"form\"), pushcontext, expect(\"(\"), funarg, expect(\")\"),\n statement, poplex, popcontext);\n if (type == \"module\") return cont(pushlex(\"form\"), pushcontext, afterModule, popcontext, poplex);\n if (type == \"class\") return cont(pushlex(\"form\"), className, poplex);\n if (type == \"export\") return cont(pushlex(\"form\"), afterExport, poplex);\n if (type == \"import\") return cont(pushlex(\"form\"), afterImport, poplex);\n return pass(pushlex(\"stat\"), expression, expect(\";\"), poplex);\n }\n function expression(type) {\n return expressionInner(type, false);\n }\n function expressionNoComma(type) {\n return expressionInner(type, true);\n }\n function expressionInner(type, noComma) {\n if (cx.state.fatArrowAt == cx.stream.start) {\n var body = noComma ? arrowBodyNoComma : arrowBody;\n if (type == \"(\") return cont(pushcontext, pushlex(\")\"), commasep(pattern, \")\"), poplex, expect(\"=>\"), body, popcontext);\n else if (type == \"variable\") return pass(pushcontext, pattern, expect(\"=>\"), body, popcontext);\n }\n\n var maybeop = noComma ? maybeoperatorNoComma : maybeoperatorComma;\n if (atomicTypes.hasOwnProperty(type)) return cont(maybeop);\n if (type == \"function\") return cont(functiondef, maybeop);\n if (type == \"keyword c\") return cont(noComma ? maybeexpressionNoComma : maybeexpression);\n if (type == \"(\") return cont(pushlex(\")\"), maybeexpression, comprehension, expect(\")\"), poplex, maybeop);\n if (type == \"operator\" || type == \"spread\") return cont(noComma ? expressionNoComma : expression);\n if (type == \"[\") return cont(pushlex(\"]\"), arrayLiteral, poplex, maybeop);\n if (type == \"{\") return contCommasep(objprop, \"}\", null, maybeop);\n if (type == \"quasi\") { return pass(quasi, maybeop); }\n return cont();\n }\n function maybeexpression(type) {\n if (type.match(/[;\\}\\)\\],]/)) return pass();\n return pass(expression);\n }\n function maybeexpressionNoComma(type) {\n if (type.match(/[;\\}\\)\\],]/)) return pass();\n return pass(expressionNoComma);\n }\n\n function maybeoperatorComma(type, value) {\n if (type == \",\") return cont(expression);\n return maybeoperatorNoComma(type, value, false);\n }\n function maybeoperatorNoComma(type, value, noComma) {\n var me = noComma == false ? maybeoperatorComma : maybeoperatorNoComma;\n var expr = noComma == false ? expression : expressionNoComma;\n if (type == \"=>\") return cont(pushcontext, noComma ? arrowBodyNoComma : arrowBody, popcontext);\n if (type == \"operator\") {\n if (/\\+\\+|--/.test(value)) return cont(me);\n if (value == \"?\") return cont(expression, expect(\":\"), expr);\n return cont(expr);\n }\n if (type == \"quasi\") { return pass(quasi, me); }\n if (type == \";\") return;\n if (type == \"(\") return contCommasep(expressionNoComma, \")\", \"call\", me);\n if (type == \".\") return cont(property, me);\n if (type == \"[\") return cont(pushlex(\"]\"), maybeexpression, expect(\"]\"), poplex, me);\n }\n function quasi(type, value) {\n if (type != \"quasi\") return pass();\n if (value.slice(value.length - 2) != \"${\") return cont(quasi);\n return cont(expression, continueQuasi);\n }\n function continueQuasi(type) {\n if (type == \"}\") {\n cx.marked = \"string-2\";\n cx.state.tokenize = tokenQuasi;\n return cont(quasi);\n }\n }\n function arrowBody(type) {\n findFatArrow(cx.stream, cx.state);\n return pass(type == \"{\" ? statement : expression);\n }\n function arrowBodyNoComma(type) {\n findFatArrow(cx.stream, cx.state);\n return pass(type == \"{\" ? statement : expressionNoComma);\n }\n function maybelabel(type) {\n if (type == \":\") return cont(poplex, statement);\n return pass(maybeoperatorComma, expect(\";\"), poplex);\n }\n function property(type) {\n if (type == \"variable\") {cx.marked = \"property\"; return cont();}\n }\n function objprop(type, value) {\n if (type == \"variable\" || cx.style == \"keyword\") {\n cx.marked = \"property\";\n if (value == \"get\" || value == \"set\") return cont(getterSetter);\n return cont(afterprop);\n } else if (type == \"number\" || type == \"string\") {\n cx.marked = jsonldMode ? \"property\" : (cx.style + \" property\");\n return cont(afterprop);\n } else if (type == \"jsonld-keyword\") {\n return cont(afterprop);\n } else if (type == \"[\") {\n return cont(expression, expect(\"]\"), afterprop);\n }\n }\n function getterSetter(type) {\n if (type != \"variable\") return pass(afterprop);\n cx.marked = \"property\";\n return cont(functiondef);\n }\n function afterprop(type) {\n if (type == \":\") return cont(expressionNoComma);\n if (type == \"(\") return pass(functiondef);\n }\n function commasep(what, end) {\n function proceed(type) {\n if (type == \",\") {\n var lex = cx.state.lexical;\n if (lex.info == \"call\") lex.pos = (lex.pos || 0) + 1;\n return cont(what, proceed);\n }\n if (type == end) return cont();\n return cont(expect(end));\n }\n return function(type) {\n if (type == end) return cont();\n return pass(what, proceed);\n };\n }\n function contCommasep(what, end, info) {\n for (var i = 3; i < arguments.length; i++)\n cx.cc.push(arguments[i]);\n return cont(pushlex(end, info), commasep(what, end), poplex);\n }\n function block(type) {\n if (type == \"}\") return cont();\n return pass(statement, block);\n }\n function maybetype(type) {\n if (isTS && type == \":\") return cont(typedef);\n }\n function typedef(type) {\n if (type == \"variable\"){cx.marked = \"variable-3\"; return cont();}\n }\n function vardef() {\n return pass(pattern, maybetype, maybeAssign, vardefCont);\n }\n function pattern(type, value) {\n if (type == \"variable\") { register(value); return cont(); }\n if (type == \"[\") return contCommasep(pattern, \"]\");\n if (type == \"{\") return contCommasep(proppattern, \"}\");\n }\n function proppattern(type, value) {\n if (type == \"variable\" && !cx.stream.match(/^\\s*:/, false)) {\n register(value);\n return cont(maybeAssign);\n }\n if (type == \"variable\") cx.marked = \"property\";\n return cont(expect(\":\"), pattern, maybeAssign);\n }\n function maybeAssign(_type, value) {\n if (value == \"=\") return cont(expressionNoComma);\n }\n function vardefCont(type) {\n if (type == \",\") return cont(vardef);\n }\n function maybeelse(type, value) {\n if (type == \"keyword b\" && value == \"else\") return cont(pushlex(\"form\", \"else\"), statement, poplex);\n }\n function forspec(type) {\n if (type == \"(\") return cont(pushlex(\")\"), forspec1, expect(\")\"), poplex);\n }\n function forspec1(type) {\n if (type == \"var\") return cont(vardef, expect(\";\"), forspec2);\n if (type == \";\") return cont(forspec2);\n if (type == \"variable\") return cont(formaybeinof);\n return pass(expression, expect(\";\"), forspec2);\n }\n function formaybeinof(_type, value) {\n if (value == \"in\" || value == \"of\") { cx.marked = \"keyword\"; return cont(expression); }\n return cont(maybeoperatorComma, forspec2);\n }\n function forspec2(type, value) {\n if (type == \";\") return cont(forspec3);\n if (value == \"in\" || value == \"of\") { cx.marked = \"keyword\"; return cont(expression); }\n return pass(expression, expect(\";\"), forspec3);\n }\n function forspec3(type) {\n if (type != \")\") cont(expression);\n }\n function functiondef(type, value) {\n if (value == \"*\") {cx.marked = \"keyword\"; return cont(functiondef);}\n if (type == \"variable\") {register(value); return cont(functiondef);}\n if (type == \"(\") return cont(pushcontext, pushlex(\")\"), commasep(funarg, \")\"), poplex, statement, popcontext);\n }\n function funarg(type) {\n if (type == \"spread\") return cont(funarg);\n return pass(pattern, maybetype);\n }\n function className(type, value) {\n if (type == \"variable\") {register(value); return cont(classNameAfter);}\n }\n function classNameAfter(type, value) {\n if (value == \"extends\") return cont(expression, classNameAfter);\n if (type == \"{\") return cont(pushlex(\"}\"), classBody, poplex);\n }\n function classBody(type, value) {\n if (type == \"variable\" || cx.style == \"keyword\") {\n cx.marked = \"property\";\n if (value == \"get\" || value == \"set\") return cont(classGetterSetter, functiondef, classBody);\n return cont(functiondef, classBody);\n }\n if (value == \"*\") {\n cx.marked = \"keyword\";\n return cont(classBody);\n }\n if (type == \";\") return cont(classBody);\n if (type == \"}\") return cont();\n }\n function classGetterSetter(type) {\n if (type != \"variable\") return pass();\n cx.marked = \"property\";\n return cont();\n }\n function afterModule(type, value) {\n if (type == \"string\") return cont(statement);\n if (type == \"variable\") { register(value); return cont(maybeFrom); }\n }\n function afterExport(_type, value) {\n if (value == \"*\") { cx.marked = \"keyword\"; return cont(maybeFrom, expect(\";\")); }\n if (value == \"default\") { cx.marked = \"keyword\"; return cont(expression, expect(\";\")); }\n return pass(statement);\n }\n function afterImport(type) {\n if (type == \"string\") return cont();\n return pass(importSpec, maybeFrom);\n }\n function importSpec(type, value) {\n if (type == \"{\") return contCommasep(importSpec, \"}\");\n if (type == \"variable\") register(value);\n return cont();\n }\n function maybeFrom(_type, value) {\n if (value == \"from\") { cx.marked = \"keyword\"; return cont(expression); }\n }\n function arrayLiteral(type) {\n if (type == \"]\") return cont();\n return pass(expressionNoComma, maybeArrayComprehension);\n }\n function maybeArrayComprehension(type) {\n if (type == \"for\") return pass(comprehension, expect(\"]\"));\n if (type == \",\") return cont(commasep(maybeexpressionNoComma, \"]\"));\n return pass(commasep(expressionNoComma, \"]\"));\n }\n function comprehension(type) {\n if (type == \"for\") return cont(forspec, comprehension);\n if (type == \"if\") return cont(expression, comprehension);\n }\n\n function isContinuedStatement(state, textAfter) {\n return state.lastType == \"operator\" || state.lastType == \",\" ||\n isOperatorChar.test(textAfter.charAt(0)) ||\n /[,.]/.test(textAfter.charAt(0));\n }\n\n // Interface\n\n return {\n startState: function(basecolumn) {\n var state = {\n tokenize: tokenBase,\n lastType: \"sof\",\n cc: [],\n lexical: new JSLexical((basecolumn || 0) - indentUnit, 0, \"block\", false),\n localVars: parserConfig.localVars,\n context: parserConfig.localVars && {vars: parserConfig.localVars},\n indented: 0\n };\n if (parserConfig.globalVars && typeof parserConfig.globalVars == \"object\")\n state.globalVars = parserConfig.globalVars;\n return state;\n },\n\n token: function(stream, state) {\n if (stream.sol()) {\n if (!state.lexical.hasOwnProperty(\"align\"))\n state.lexical.align = false;\n state.indented = stream.indentation();\n findFatArrow(stream, state);\n }\n if (state.tokenize != tokenComment && stream.eatSpace()) return null;\n var style = state.tokenize(stream, state);\n if (type == \"comment\") return style;\n state.lastType = type == \"operator\" && (content == \"++\" || content == \"--\") ? \"incdec\" : type;\n return parseJS(state, style, type, content, stream);\n },\n\n indent: function(state, textAfter) {\n if (state.tokenize == tokenComment) return CodeMirror.Pass;\n if (state.tokenize != tokenBase) return 0;\n var firstChar = textAfter && textAfter.charAt(0), lexical = state.lexical;\n // Kludge to prevent 'maybelse' from blocking lexical scope pops\n if (!/^\\s*else\\b/.test(textAfter)) for (var i = state.cc.length - 1; i >= 0; --i) {\n var c = state.cc[i];\n if (c == poplex) lexical = lexical.prev;\n else if (c != maybeelse) break;\n }\n if (lexical.type == \"stat\" && firstChar == \"}\") lexical = lexical.prev;\n if (statementIndent && lexical.type == \")\" && lexical.prev.type == \"stat\")\n lexical = lexical.prev;\n var type = lexical.type, closing = firstChar == type;\n\n if (type == \"vardef\") return lexical.indented + (state.lastType == \"operator\" || state.lastType == \",\" ? lexical.info + 1 : 0);\n else if (type == \"form\" && firstChar == \"{\") return lexical.indented;\n else if (type == \"form\") return lexical.indented + indentUnit;\n else if (type == \"stat\")\n return lexical.indented + (isContinuedStatement(state, textAfter) ? statementIndent || indentUnit : 0);\n else if (lexical.info == \"switch\" && !closing && parserConfig.doubleIndentSwitch != false)\n return lexical.indented + (/^(?:case|default)\\b/.test(textAfter) ? indentUnit : 2 * indentUnit);\n else if (lexical.align) return lexical.column + (closing ? 0 : 1);\n else return lexical.indented + (closing ? 0 : indentUnit);\n },\n\n electricInput: /^\\s*(?:case .*?:|default:|\\{|\\})$/,\n blockCommentStart: jsonMode ? null : \"/*\",\n blockCommentEnd: jsonMode ? null : \"*/\",\n lineComment: jsonMode ? null : \"//\",\n fold: \"brace\",\n\n helperType: jsonMode ? \"json\" : \"javascript\",\n jsonldMode: jsonldMode,\n jsonMode: jsonMode\n };\n});\n\nCodeMirror.registerHelper(\"wordChars\", \"javascript\", /[\\w$]/);\n\nCodeMirror.defineMIME(\"text/javascript\", \"javascript\");\nCodeMirror.defineMIME(\"text/ecmascript\", \"javascript\");\nCodeMirror.defineMIME(\"application/javascript\", \"javascript\");\nCodeMirror.defineMIME(\"application/x-javascript\", \"javascript\");\nCodeMirror.defineMIME(\"application/ecmascript\", \"javascript\");\nCodeMirror.defineMIME(\"application/json\", {name: \"javascript\", json: true});\nCodeMirror.defineMIME(\"application/x-json\", {name: \"javascript\", json: true});\nCodeMirror.defineMIME(\"application/ld+json\", {name: \"javascript\", jsonld: true});\nCodeMirror.defineMIME(\"text/typescript\", { name: \"javascript\", typescript: true });\nCodeMirror.defineMIME(\"application/typescript\", { name: \"javascript\", typescript: true });\n\n});\n", "// CodeMirror, copyright (c) by Marijn Haverbeke and others\n// Distributed under an MIT license: http://codemirror.net/LICENSE\n\n(function(mod) {\n if (typeof exports == \"object\" && typeof module == \"object\") // CommonJS\n mod(require(\"../../lib/codemirror\"));\n else if (typeof define == \"function\" && define.amd) // AMD\n define([\"../../lib/codemirror\"], mod);\n else // Plain browser env\n mod(CodeMirror);\n})(function(CodeMirror) {\n\"use strict\";\n\nCodeMirror.defineMode(\"xml\", function(config, parserConfig) {\n var indentUnit = config.indentUnit;\n var multilineTagIndentFactor = parserConfig.multilineTagIndentFactor || 1;\n var multilineTagIndentPastTag = parserConfig.multilineTagIndentPastTag;\n if (multilineTagIndentPastTag == null) multilineTagIndentPastTag = true;\n\n var Kludges = parserConfig.htmlMode ? {\n autoSelfClosers: {'area': true, 'base': true, 'br': true, 'col': true, 'command': true,\n 'embed': true, 'frame': true, 'hr': true, 'img': true, 'input': true,\n 'keygen': true, 'link': true, 'meta': true, 'param': true, 'source': true,\n 'track': true, 'wbr': true, 'menuitem': true},\n implicitlyClosed: {'dd': true, 'li': true, 'optgroup': true, 'option': true, 'p': true,\n 'rp': true, 'rt': true, 'tbody': true, 'td': true, 'tfoot': true,\n 'th': true, 'tr': true},\n contextGrabbers: {\n 'dd': {'dd': true, 'dt': true},\n 'dt': {'dd': true, 'dt': true},\n 'li': {'li': true},\n 'option': {'option': true, 'optgroup': true},\n 'optgroup': {'optgroup': true},\n 'p': {'address': true, 'article': true, 'aside': true, 'blockquote': true, 'dir': true,\n 'div': true, 'dl': true, 'fieldset': true, 'footer': true, 'form': true,\n 'h1': true, 'h2': true, 'h3': true, 'h4': true, 'h5': true, 'h6': true,\n 'header': true, 'hgroup': true, 'hr': true, 'menu': true, 'nav': true, 'ol': true,\n 'p': true, 'pre': true, 'section': true, 'table': true, 'ul': true},\n 'rp': {'rp': true, 'rt': true},\n 'rt': {'rp': true, 'rt': true},\n 'tbody': {'tbody': true, 'tfoot': true},\n 'td': {'td': true, 'th': true},\n 'tfoot': {'tbody': true},\n 'th': {'td': true, 'th': true},\n 'thead': {'tbody': true, 'tfoot': true},\n 'tr': {'tr': true}\n },\n doNotIndent: {\"pre\": true},\n allowUnquoted: true,\n allowMissing: true,\n caseFold: true\n } : {\n autoSelfClosers: {},\n implicitlyClosed: {},\n contextGrabbers: {},\n doNotIndent: {},\n allowUnquoted: false,\n allowMissing: false,\n caseFold: false\n };\n var alignCDATA = parserConfig.alignCDATA;\n\n // Return variables for tokenizers\n var type, setStyle;\n\n function inText(stream, state) {\n function chain(parser) {\n state.tokenize = parser;\n return parser(stream, state);\n }\n\n var ch = stream.next();\n if (ch == \"<\") {\n if (stream.eat(\"!\")) {\n if (stream.eat(\"[\")) {\n if (stream.match(\"CDATA[\")) return chain(inBlock(\"atom\", \"]]>\"));\n else return null;\n } else if (stream.match(\"--\")) {\n return chain(inBlock(\"comment\", \"-->\"));\n } else if (stream.match(\"DOCTYPE\", true, true)) {\n stream.eatWhile(/[\\w\\._\\-]/);\n return chain(doctype(1));\n } else {\n return null;\n }\n } else if (stream.eat(\"?\")) {\n stream.eatWhile(/[\\w\\._\\-]/);\n state.tokenize = inBlock(\"meta\", \"?>\");\n return \"meta\";\n } else {\n type = stream.eat(\"/\") ? \"closeTag\" : \"openTag\";\n state.tokenize = inTag;\n return \"tag bracket\";\n }\n } else if (ch == \"&\") {\n var ok;\n if (stream.eat(\"#\")) {\n if (stream.eat(\"x\")) {\n ok = stream.eatWhile(/[a-fA-F\\d]/) && stream.eat(\";\");\n } else {\n ok = stream.eatWhile(/[\\d]/) && stream.eat(\";\");\n }\n } else {\n ok = stream.eatWhile(/[\\w\\.\\-:]/) && stream.eat(\";\");\n }\n return ok ? \"atom\" : \"error\";\n } else {\n stream.eatWhile(/[^&<]/);\n return null;\n }\n }\n\n function inTag(stream, state) {\n var ch = stream.next();\n if (ch == \">\" || (ch == \"/\" && stream.eat(\">\"))) {\n state.tokenize = inText;\n type = ch == \">\" ? \"endTag\" : \"selfcloseTag\";\n return \"tag bracket\";\n } else if (ch == \"=\") {\n type = \"equals\";\n return null;\n } else if (ch == \"<\") {\n state.tokenize = inText;\n state.state = baseState;\n state.tagName = state.tagStart = null;\n var next = state.tokenize(stream, state);\n return next ? next + \" tag error\" : \"tag error\";\n } else if (/[\\'\\\"]/.test(ch)) {\n state.tokenize = inAttribute(ch);\n state.stringStartCol = stream.column();\n return state.tokenize(stream, state);\n } else {\n stream.match(/^[^\\s\\u00a0=<>\\\"\\']*[^\\s\\u00a0=<>\\\"\\'\\/]/);\n return \"word\";\n }\n }\n\n function inAttribute(quote) {\n var closure = function(stream, state) {\n while (!stream.eol()) {\n if (stream.next() == quote) {\n state.tokenize = inTag;\n break;\n }\n }\n return \"string\";\n };\n closure.isInAttribute = true;\n return closure;\n }\n\n function inBlock(style, terminator) {\n return function(stream, state) {\n while (!stream.eol()) {\n if (stream.match(terminator)) {\n state.tokenize = inText;\n break;\n }\n stream.next();\n }\n return style;\n };\n }\n function doctype(depth) {\n return function(stream, state) {\n var ch;\n while ((ch = stream.next()) != null) {\n if (ch == \"<\") {\n state.tokenize = doctype(depth + 1);\n return state.tokenize(stream, state);\n } else if (ch == \">\") {\n if (depth == 1) {\n state.tokenize = inText;\n break;\n } else {\n state.tokenize = doctype(depth - 1);\n return state.tokenize(stream, state);\n }\n }\n }\n return \"meta\";\n };\n }\n\n function Context(state, tagName, startOfLine) {\n this.prev = state.context;\n this.tagName = tagName;\n this.indent = state.indented;\n this.startOfLine = startOfLine;\n if (Kludges.doNotIndent.hasOwnProperty(tagName) || (state.context && state.context.noIndent))\n this.noIndent = true;\n }\n function popContext(state) {\n if (state.context) state.context = state.context.prev;\n }\n function maybePopContext(state, nextTagName) {\n var parentTagName;\n while (true) {\n if (!state.context) {\n return;\n }\n parentTagName = state.context.tagName;\n if (!Kludges.contextGrabbers.hasOwnProperty(parentTagName) ||\n !Kludges.contextGrabbers[parentTagName].hasOwnProperty(nextTagName)) {\n return;\n }\n popContext(state);\n }\n }\n\n function baseState(type, stream, state) {\n if (type == \"openTag\") {\n state.tagStart = stream.column();\n return tagNameState;\n } else if (type == \"closeTag\") {\n return closeTagNameState;\n } else {\n return baseState;\n }\n }\n function tagNameState(type, stream, state) {\n if (type == \"word\") {\n state.tagName = stream.current();\n setStyle = \"tag\";\n return attrState;\n } else {\n setStyle = \"error\";\n return tagNameState;\n }\n }\n function closeTagNameState(type, stream, state) {\n if (type == \"word\") {\n var tagName = stream.current();\n if (state.context && state.context.tagName != tagName &&\n Kludges.implicitlyClosed.hasOwnProperty(state.context.tagName))\n popContext(state);\n if (state.context && state.context.tagName == tagName) {\n setStyle = \"tag\";\n return closeState;\n } else {\n setStyle = \"tag error\";\n return closeStateErr;\n }\n } else {\n setStyle = \"error\";\n return closeStateErr;\n }\n }\n\n function closeState(type, _stream, state) {\n if (type != \"endTag\") {\n setStyle = \"error\";\n return closeState;\n }\n popContext(state);\n return baseState;\n }\n function closeStateErr(type, stream, state) {\n setStyle = \"error\";\n return closeState(type, stream, state);\n }\n\n function attrState(type, _stream, state) {\n if (type == \"word\") {\n setStyle = \"attribute\";\n return attrEqState;\n } else if (type == \"endTag\" || type == \"selfcloseTag\") {\n var tagName = state.tagName, tagStart = state.tagStart;\n state.tagName = state.tagStart = null;\n if (type == \"selfcloseTag\" ||\n Kludges.autoSelfClosers.hasOwnProperty(tagName)) {\n maybePopContext(state, tagName);\n } else {\n maybePopContext(state, tagName);\n state.context = new Context(state, tagName, tagStart == state.indented);\n }\n return baseState;\n }\n setStyle = \"error\";\n return attrState;\n }\n function attrEqState(type, stream, state) {\n if (type == \"equals\") return attrValueState;\n if (!Kludges.allowMissing) setStyle = \"error\";\n return attrState(type, stream, state);\n }\n function attrValueState(type, stream, state) {\n if (type == \"string\") return attrContinuedState;\n if (type == \"word\" && Kludges.allowUnquoted) {setStyle = \"string\"; return attrState;}\n setStyle = \"error\";\n return attrState(type, stream, state);\n }\n function attrContinuedState(type, stream, state) {\n if (type == \"string\") return attrContinuedState;\n return attrState(type, stream, state);\n }\n\n return {\n startState: function() {\n return {tokenize: inText,\n state: baseState,\n indented: 0,\n tagName: null, tagStart: null,\n context: null};\n },\n\n token: function(stream, state) {\n if (!state.tagName && stream.sol())\n state.indented = stream.indentation();\n\n if (stream.eatSpace()) return null;\n type = null;\n var style = state.tokenize(stream, state);\n if ((style || type) && style != \"comment\") {\n setStyle = null;\n state.state = state.state(type || style, stream, state);\n if (setStyle)\n style = setStyle == \"error\" ? style + \" error\" : setStyle;\n }\n return style;\n },\n\n indent: function(state, textAfter, fullLine) {\n var context = state.context;\n // Indent multi-line strings (e.g. css).\n if (state.tokenize.isInAttribute) {\n if (state.tagStart == state.indented)\n return state.stringStartCol + 1;\n else\n return state.indented + indentUnit;\n }\n if (context && context.noIndent) return CodeMirror.Pass;\n if (state.tokenize != inTag && state.tokenize != inText)\n return fullLine ? fullLine.match(/^(\\s*)/)[0].length : 0;\n // Indent the starts of attribute names.\n if (state.tagName) {\n if (multilineTagIndentPastTag)\n return state.tagStart + state.tagName.length + 2;\n else\n return state.tagStart + indentUnit * multilineTagIndentFactor;\n }\n if (alignCDATA && /$/,\n blockCommentStart: \"\",\n\n configuration: parserConfig.htmlMode ? \"html\" : \"xml\",\n helperType: parserConfig.htmlMode ? \"html\" : \"xml\"\n };\n});\n\nCodeMirror.defineMIME(\"text/xml\", \"xml\");\nCodeMirror.defineMIME(\"application/xml\", \"xml\");\nif (!CodeMirror.mimeModes.hasOwnProperty(\"text/html\"))\n CodeMirror.defineMIME(\"text/html\", {name: \"xml\", htmlMode: true});\n\n});\n", "!function() {\n var d3 = {\n version: \"3.5.5\"\n };\n var d3_arraySlice = [].slice, d3_array = function(list) {\n return d3_arraySlice.call(list);\n };\n var d3_document = this.document;\n function d3_documentElement(node) {\n return node && (node.ownerDocument || node.document || node).documentElement;\n }\n function d3_window(node) {\n return node && (node.ownerDocument && node.ownerDocument.defaultView || node.document && node || node.defaultView);\n }\n if (d3_document) {\n try {\n d3_array(d3_document.documentElement.childNodes)[0].nodeType;\n } catch (e) {\n d3_array = function(list) {\n var i = list.length, array = new Array(i);\n while (i--) array[i] = list[i];\n return array;\n };\n }\n }\n if (!Date.now) Date.now = function() {\n return +new Date();\n };\n if (d3_document) {\n try {\n d3_document.createElement(\"DIV\").style.setProperty(\"opacity\", 0, \"\");\n } catch (error) {\n var d3_element_prototype = this.Element.prototype, d3_element_setAttribute = d3_element_prototype.setAttribute, d3_element_setAttributeNS = d3_element_prototype.setAttributeNS, d3_style_prototype = this.CSSStyleDeclaration.prototype, d3_style_setProperty = d3_style_prototype.setProperty;\n d3_element_prototype.setAttribute = function(name, value) {\n d3_element_setAttribute.call(this, name, value + \"\");\n };\n d3_element_prototype.setAttributeNS = function(space, local, value) {\n d3_element_setAttributeNS.call(this, space, local, value + \"\");\n };\n d3_style_prototype.setProperty = function(name, value, priority) {\n d3_style_setProperty.call(this, name, value + \"\", priority);\n };\n }\n }\n d3.ascending = d3_ascending;\n function d3_ascending(a, b) {\n return a < b ? -1 : a > b ? 1 : a >= b ? 0 : NaN;\n }\n d3.descending = function(a, b) {\n return b < a ? -1 : b > a ? 1 : b >= a ? 0 : NaN;\n };\n d3.min = function(array, f) {\n var i = -1, n = array.length, a, b;\n if (arguments.length === 1) {\n while (++i < n) if ((b = array[i]) != null && b >= b) {\n a = b;\n break;\n }\n while (++i < n) if ((b = array[i]) != null && a > b) a = b;\n } else {\n while (++i < n) if ((b = f.call(array, array[i], i)) != null && b >= b) {\n a = b;\n break;\n }\n while (++i < n) if ((b = f.call(array, array[i], i)) != null && a > b) a = b;\n }\n return a;\n };\n d3.max = function(array, f) {\n var i = -1, n = array.length, a, b;\n if (arguments.length === 1) {\n while (++i < n) if ((b = array[i]) != null && b >= b) {\n a = b;\n break;\n }\n while (++i < n) if ((b = array[i]) != null && b > a) a = b;\n } else {\n while (++i < n) if ((b = f.call(array, array[i], i)) != null && b >= b) {\n a = b;\n break;\n }\n while (++i < n) if ((b = f.call(array, array[i], i)) != null && b > a) a = b;\n }\n return a;\n };\n d3.extent = function(array, f) {\n var i = -1, n = array.length, a, b, c;\n if (arguments.length === 1) {\n while (++i < n) if ((b = array[i]) != null && b >= b) {\n a = c = b;\n break;\n }\n while (++i < n) if ((b = array[i]) != null) {\n if (a > b) a = b;\n if (c < b) c = b;\n }\n } else {\n while (++i < n) if ((b = f.call(array, array[i], i)) != null && b >= b) {\n a = c = b;\n break;\n }\n while (++i < n) if ((b = f.call(array, array[i], i)) != null) {\n if (a > b) a = b;\n if (c < b) c = b;\n }\n }\n return [ a, c ];\n };\n function d3_number(x) {\n return x === null ? NaN : +x;\n }\n function d3_numeric(x) {\n return !isNaN(x);\n }\n d3.sum = function(array, f) {\n var s = 0, n = array.length, a, i = -1;\n if (arguments.length === 1) {\n while (++i < n) if (d3_numeric(a = +array[i])) s += a;\n } else {\n while (++i < n) if (d3_numeric(a = +f.call(array, array[i], i))) s += a;\n }\n return s;\n };\n d3.mean = function(array, f) {\n var s = 0, n = array.length, a, i = -1, j = n;\n if (arguments.length === 1) {\n while (++i < n) if (d3_numeric(a = d3_number(array[i]))) s += a; else --j;\n } else {\n while (++i < n) if (d3_numeric(a = d3_number(f.call(array, array[i], i)))) s += a; else --j;\n }\n if (j) return s / j;\n };\n d3.quantile = function(values, p) {\n var H = (values.length - 1) * p + 1, h = Math.floor(H), v = +values[h - 1], e = H - h;\n return e ? v + e * (values[h] - v) : v;\n };\n d3.median = function(array, f) {\n var numbers = [], n = array.length, a, i = -1;\n if (arguments.length === 1) {\n while (++i < n) if (d3_numeric(a = d3_number(array[i]))) numbers.push(a);\n } else {\n while (++i < n) if (d3_numeric(a = d3_number(f.call(array, array[i], i)))) numbers.push(a);\n }\n if (numbers.length) return d3.quantile(numbers.sort(d3_ascending), .5);\n };\n d3.variance = function(array, f) {\n var n = array.length, m = 0, a, d, s = 0, i = -1, j = 0;\n if (arguments.length === 1) {\n while (++i < n) {\n if (d3_numeric(a = d3_number(array[i]))) {\n d = a - m;\n m += d / ++j;\n s += d * (a - m);\n }\n }\n } else {\n while (++i < n) {\n if (d3_numeric(a = d3_number(f.call(array, array[i], i)))) {\n d = a - m;\n m += d / ++j;\n s += d * (a - m);\n }\n }\n }\n if (j > 1) return s / (j - 1);\n };\n d3.deviation = function() {\n var v = d3.variance.apply(this, arguments);\n return v ? Math.sqrt(v) : v;\n };\n function d3_bisector(compare) {\n return {\n left: function(a, x, lo, hi) {\n if (arguments.length < 3) lo = 0;\n if (arguments.length < 4) hi = a.length;\n while (lo < hi) {\n var mid = lo + hi >>> 1;\n if (compare(a[mid], x) < 0) lo = mid + 1; else hi = mid;\n }\n return lo;\n },\n right: function(a, x, lo, hi) {\n if (arguments.length < 3) lo = 0;\n if (arguments.length < 4) hi = a.length;\n while (lo < hi) {\n var mid = lo + hi >>> 1;\n if (compare(a[mid], x) > 0) hi = mid; else lo = mid + 1;\n }\n return lo;\n }\n };\n }\n var d3_bisect = d3_bisector(d3_ascending);\n d3.bisectLeft = d3_bisect.left;\n d3.bisect = d3.bisectRight = d3_bisect.right;\n d3.bisector = function(f) {\n return d3_bisector(f.length === 1 ? function(d, x) {\n return d3_ascending(f(d), x);\n } : f);\n };\n d3.shuffle = function(array, i0, i1) {\n if ((m = arguments.length) < 3) {\n i1 = array.length;\n if (m < 2) i0 = 0;\n }\n var m = i1 - i0, t, i;\n while (m) {\n i = Math.random() * m-- | 0;\n t = array[m + i0], array[m + i0] = array[i + i0], array[i + i0] = t;\n }\n return array;\n };\n d3.permute = function(array, indexes) {\n var i = indexes.length, permutes = new Array(i);\n while (i--) permutes[i] = array[indexes[i]];\n return permutes;\n };\n d3.pairs = function(array) {\n var i = 0, n = array.length - 1, p0, p1 = array[0], pairs = new Array(n < 0 ? 0 : n);\n while (i < n) pairs[i] = [ p0 = p1, p1 = array[++i] ];\n return pairs;\n };\n d3.zip = function() {\n if (!(n = arguments.length)) return [];\n for (var i = -1, m = d3.min(arguments, d3_zipLength), zips = new Array(m); ++i < m; ) {\n for (var j = -1, n, zip = zips[i] = new Array(n); ++j < n; ) {\n zip[j] = arguments[j][i];\n }\n }\n return zips;\n };\n function d3_zipLength(d) {\n return d.length;\n }\n d3.transpose = function(matrix) {\n return d3.zip.apply(d3, matrix);\n };\n d3.keys = function(map) {\n var keys = [];\n for (var key in map) keys.push(key);\n return keys;\n };\n d3.values = function(map) {\n var values = [];\n for (var key in map) values.push(map[key]);\n return values;\n };\n d3.entries = function(map) {\n var entries = [];\n for (var key in map) entries.push({\n key: key,\n value: map[key]\n });\n return entries;\n };\n d3.merge = function(arrays) {\n var n = arrays.length, m, i = -1, j = 0, merged, array;\n while (++i < n) j += arrays[i].length;\n merged = new Array(j);\n while (--n >= 0) {\n array = arrays[n];\n m = array.length;\n while (--m >= 0) {\n merged[--j] = array[m];\n }\n }\n return merged;\n };\n var abs = Math.abs;\n d3.range = function(start, stop, step) {\n if (arguments.length < 3) {\n step = 1;\n if (arguments.length < 2) {\n stop = start;\n start = 0;\n }\n }\n if ((stop - start) / step === Infinity) throw new Error(\"infinite range\");\n var range = [], k = d3_range_integerScale(abs(step)), i = -1, j;\n start *= k, stop *= k, step *= k;\n if (step < 0) while ((j = start + step * ++i) > stop) range.push(j / k); else while ((j = start + step * ++i) < stop) range.push(j / k);\n return range;\n };\n function d3_range_integerScale(x) {\n var k = 1;\n while (x * k % 1) k *= 10;\n return k;\n }\n function d3_class(ctor, properties) {\n for (var key in properties) {\n Object.defineProperty(ctor.prototype, key, {\n value: properties[key],\n enumerable: false\n });\n }\n }\n d3.map = function(object, f) {\n var map = new d3_Map();\n if (object instanceof d3_Map) {\n object.forEach(function(key, value) {\n map.set(key, value);\n });\n } else if (Array.isArray(object)) {\n var i = -1, n = object.length, o;\n if (arguments.length === 1) while (++i < n) map.set(i, object[i]); else while (++i < n) map.set(f.call(object, o = object[i], i), o);\n } else {\n for (var key in object) map.set(key, object[key]);\n }\n return map;\n };\n function d3_Map() {\n this._ = Object.create(null);\n }\n var d3_map_proto = \"__proto__\", d3_map_zero = \"\\x00\";\n d3_class(d3_Map, {\n has: d3_map_has,\n get: function(key) {\n return this._[d3_map_escape(key)];\n },\n set: function(key, value) {\n return this._[d3_map_escape(key)] = value;\n },\n remove: d3_map_remove,\n keys: d3_map_keys,\n values: function() {\n var values = [];\n for (var key in this._) values.push(this._[key]);\n return values;\n },\n entries: function() {\n var entries = [];\n for (var key in this._) entries.push({\n key: d3_map_unescape(key),\n value: this._[key]\n });\n return entries;\n },\n size: d3_map_size,\n empty: d3_map_empty,\n forEach: function(f) {\n for (var key in this._) f.call(this, d3_map_unescape(key), this._[key]);\n }\n });\n function d3_map_escape(key) {\n return (key += \"\") === d3_map_proto || key[0] === d3_map_zero ? d3_map_zero + key : key;\n }\n function d3_map_unescape(key) {\n return (key += \"\")[0] === d3_map_zero ? key.slice(1) : key;\n }\n function d3_map_has(key) {\n return d3_map_escape(key) in this._;\n }\n function d3_map_remove(key) {\n return (key = d3_map_escape(key)) in this._ && delete this._[key];\n }\n function d3_map_keys() {\n var keys = [];\n for (var key in this._) keys.push(d3_map_unescape(key));\n return keys;\n }\n function d3_map_size() {\n var size = 0;\n for (var key in this._) ++size;\n return size;\n }\n function d3_map_empty() {\n for (var key in this._) return false;\n return true;\n }\n d3.nest = function() {\n var nest = {}, keys = [], sortKeys = [], sortValues, rollup;\n function map(mapType, array, depth) {\n if (depth >= keys.length) return rollup ? rollup.call(nest, array) : sortValues ? array.sort(sortValues) : array;\n var i = -1, n = array.length, key = keys[depth++], keyValue, object, setter, valuesByKey = new d3_Map(), values;\n while (++i < n) {\n if (values = valuesByKey.get(keyValue = key(object = array[i]))) {\n values.push(object);\n } else {\n valuesByKey.set(keyValue, [ object ]);\n }\n }\n if (mapType) {\n object = mapType();\n setter = function(keyValue, values) {\n object.set(keyValue, map(mapType, values, depth));\n };\n } else {\n object = {};\n setter = function(keyValue, values) {\n object[keyValue] = map(mapType, values, depth);\n };\n }\n valuesByKey.forEach(setter);\n return object;\n }\n function entries(map, depth) {\n if (depth >= keys.length) return map;\n var array = [], sortKey = sortKeys[depth++];\n map.forEach(function(key, keyMap) {\n array.push({\n key: key,\n values: entries(keyMap, depth)\n });\n });\n return sortKey ? array.sort(function(a, b) {\n return sortKey(a.key, b.key);\n }) : array;\n }\n nest.map = function(array, mapType) {\n return map(mapType, array, 0);\n };\n nest.entries = function(array) {\n return entries(map(d3.map, array, 0), 0);\n };\n nest.key = function(d) {\n keys.push(d);\n return nest;\n };\n nest.sortKeys = function(order) {\n sortKeys[keys.length - 1] = order;\n return nest;\n };\n nest.sortValues = function(order) {\n sortValues = order;\n return nest;\n };\n nest.rollup = function(f) {\n rollup = f;\n return nest;\n };\n return nest;\n };\n d3.set = function(array) {\n var set = new d3_Set();\n if (array) for (var i = 0, n = array.length; i < n; ++i) set.add(array[i]);\n return set;\n };\n function d3_Set() {\n this._ = Object.create(null);\n }\n d3_class(d3_Set, {\n has: d3_map_has,\n add: function(key) {\n this._[d3_map_escape(key += \"\")] = true;\n return key;\n },\n remove: d3_map_remove,\n values: d3_map_keys,\n size: d3_map_size,\n empty: d3_map_empty,\n forEach: function(f) {\n for (var key in this._) f.call(this, d3_map_unescape(key));\n }\n });\n d3.behavior = {};\n function d3_identity(d) {\n return d;\n }\n d3.rebind = function(target, source) {\n var i = 1, n = arguments.length, method;\n while (++i < n) target[method = arguments[i]] = d3_rebind(target, source, source[method]);\n return target;\n };\n function d3_rebind(target, source, method) {\n return function() {\n var value = method.apply(source, arguments);\n return value === source ? target : value;\n };\n }\n function d3_vendorSymbol(object, name) {\n if (name in object) return name;\n name = name.charAt(0).toUpperCase() + name.slice(1);\n for (var i = 0, n = d3_vendorPrefixes.length; i < n; ++i) {\n var prefixName = d3_vendorPrefixes[i] + name;\n if (prefixName in object) return prefixName;\n }\n }\n var d3_vendorPrefixes = [ \"webkit\", \"ms\", \"moz\", \"Moz\", \"o\", \"O\" ];\n function d3_noop() {}\n d3.dispatch = function() {\n var dispatch = new d3_dispatch(), i = -1, n = arguments.length;\n while (++i < n) dispatch[arguments[i]] = d3_dispatch_event(dispatch);\n return dispatch;\n };\n function d3_dispatch() {}\n d3_dispatch.prototype.on = function(type, listener) {\n var i = type.indexOf(\".\"), name = \"\";\n if (i >= 0) {\n name = type.slice(i + 1);\n type = type.slice(0, i);\n }\n if (type) return arguments.length < 2 ? this[type].on(name) : this[type].on(name, listener);\n if (arguments.length === 2) {\n if (listener == null) for (type in this) {\n if (this.hasOwnProperty(type)) this[type].on(name, null);\n }\n return this;\n }\n };\n function d3_dispatch_event(dispatch) {\n var listeners = [], listenerByName = new d3_Map();\n function event() {\n var z = listeners, i = -1, n = z.length, l;\n while (++i < n) if (l = z[i].on) l.apply(this, arguments);\n return dispatch;\n }\n event.on = function(name, listener) {\n var l = listenerByName.get(name), i;\n if (arguments.length < 2) return l && l.on;\n if (l) {\n l.on = null;\n listeners = listeners.slice(0, i = listeners.indexOf(l)).concat(listeners.slice(i + 1));\n listenerByName.remove(name);\n }\n if (listener) listeners.push(listenerByName.set(name, {\n on: listener\n }));\n return dispatch;\n };\n return event;\n }\n d3.event = null;\n function d3_eventPreventDefault() {\n d3.event.preventDefault();\n }\n function d3_eventSource() {\n var e = d3.event, s;\n while (s = e.sourceEvent) e = s;\n return e;\n }\n function d3_eventDispatch(target) {\n var dispatch = new d3_dispatch(), i = 0, n = arguments.length;\n while (++i < n) dispatch[arguments[i]] = d3_dispatch_event(dispatch);\n dispatch.of = function(thiz, argumentz) {\n return function(e1) {\n try {\n var e0 = e1.sourceEvent = d3.event;\n e1.target = target;\n d3.event = e1;\n dispatch[e1.type].apply(thiz, argumentz);\n } finally {\n d3.event = e0;\n }\n };\n };\n return dispatch;\n }\n d3.requote = function(s) {\n return s.replace(d3_requote_re, \"\\\\$&\");\n };\n var d3_requote_re = /[\\\\\\^\\$\\*\\+\\?\\|\\[\\]\\(\\)\\.\\{\\}]/g;\n var d3_subclass = {}.__proto__ ? function(object, prototype) {\n object.__proto__ = prototype;\n } : function(object, prototype) {\n for (var property in prototype) object[property] = prototype[property];\n };\n function d3_selection(groups) {\n d3_subclass(groups, d3_selectionPrototype);\n return groups;\n }\n var d3_select = function(s, n) {\n return n.querySelector(s);\n }, d3_selectAll = function(s, n) {\n return n.querySelectorAll(s);\n }, d3_selectMatches = function(n, s) {\n var d3_selectMatcher = n.matches || n[d3_vendorSymbol(n, \"matchesSelector\")];\n d3_selectMatches = function(n, s) {\n return d3_selectMatcher.call(n, s);\n };\n return d3_selectMatches(n, s);\n };\n if (typeof Sizzle === \"function\") {\n d3_select = function(s, n) {\n return Sizzle(s, n)[0] || null;\n };\n d3_selectAll = Sizzle;\n d3_selectMatches = Sizzle.matchesSelector;\n }\n d3.selection = function() {\n return d3.select(d3_document.documentElement);\n };\n var d3_selectionPrototype = d3.selection.prototype = [];\n d3_selectionPrototype.select = function(selector) {\n var subgroups = [], subgroup, subnode, group, node;\n selector = d3_selection_selector(selector);\n for (var j = -1, m = this.length; ++j < m; ) {\n subgroups.push(subgroup = []);\n subgroup.parentNode = (group = this[j]).parentNode;\n for (var i = -1, n = group.length; ++i < n; ) {\n if (node = group[i]) {\n subgroup.push(subnode = selector.call(node, node.__data__, i, j));\n if (subnode && \"__data__\" in node) subnode.__data__ = node.__data__;\n } else {\n subgroup.push(null);\n }\n }\n }\n return d3_selection(subgroups);\n };\n function d3_selection_selector(selector) {\n return typeof selector === \"function\" ? selector : function() {\n return d3_select(selector, this);\n };\n }\n d3_selectionPrototype.selectAll = function(selector) {\n var subgroups = [], subgroup, node;\n selector = d3_selection_selectorAll(selector);\n for (var j = -1, m = this.length; ++j < m; ) {\n for (var group = this[j], i = -1, n = group.length; ++i < n; ) {\n if (node = group[i]) {\n subgroups.push(subgroup = d3_array(selector.call(node, node.__data__, i, j)));\n subgroup.parentNode = node;\n }\n }\n }\n return d3_selection(subgroups);\n };\n function d3_selection_selectorAll(selector) {\n return typeof selector === \"function\" ? selector : function() {\n return d3_selectAll(selector, this);\n };\n }\n var d3_nsPrefix = {\n svg: \"http://www.w3.org/2000/svg\",\n xhtml: \"http://www.w3.org/1999/xhtml\",\n xlink: \"http://www.w3.org/1999/xlink\",\n xml: \"http://www.w3.org/XML/1998/namespace\",\n xmlns: \"http://www.w3.org/2000/xmlns/\"\n };\n d3.ns = {\n prefix: d3_nsPrefix,\n qualify: function(name) {\n var i = name.indexOf(\":\"), prefix = name;\n if (i >= 0) {\n prefix = name.slice(0, i);\n name = name.slice(i + 1);\n }\n return d3_nsPrefix.hasOwnProperty(prefix) ? {\n space: d3_nsPrefix[prefix],\n local: name\n } : name;\n }\n };\n d3_selectionPrototype.attr = function(name, value) {\n if (arguments.length < 2) {\n if (typeof name === \"string\") {\n var node = this.node();\n name = d3.ns.qualify(name);\n return name.local ? node.getAttributeNS(name.space, name.local) : node.getAttribute(name);\n }\n for (value in name) this.each(d3_selection_attr(value, name[value]));\n return this;\n }\n return this.each(d3_selection_attr(name, value));\n };\n function d3_selection_attr(name, value) {\n name = d3.ns.qualify(name);\n function attrNull() {\n this.removeAttribute(name);\n }\n function attrNullNS() {\n this.removeAttributeNS(name.space, name.local);\n }\n function attrConstant() {\n this.setAttribute(name, value);\n }\n function attrConstantNS() {\n this.setAttributeNS(name.space, name.local, value);\n }\n function attrFunction() {\n var x = value.apply(this, arguments);\n if (x == null) this.removeAttribute(name); else this.setAttribute(name, x);\n }\n function attrFunctionNS() {\n var x = value.apply(this, arguments);\n if (x == null) this.removeAttributeNS(name.space, name.local); else this.setAttributeNS(name.space, name.local, x);\n }\n return value == null ? name.local ? attrNullNS : attrNull : typeof value === \"function\" ? name.local ? attrFunctionNS : attrFunction : name.local ? attrConstantNS : attrConstant;\n }\n function d3_collapse(s) {\n return s.trim().replace(/\\s+/g, \" \");\n }\n d3_selectionPrototype.classed = function(name, value) {\n if (arguments.length < 2) {\n if (typeof name === \"string\") {\n var node = this.node(), n = (name = d3_selection_classes(name)).length, i = -1;\n if (value = node.classList) {\n while (++i < n) if (!value.contains(name[i])) return false;\n } else {\n value = node.getAttribute(\"class\");\n while (++i < n) if (!d3_selection_classedRe(name[i]).test(value)) return false;\n }\n return true;\n }\n for (value in name) this.each(d3_selection_classed(value, name[value]));\n return this;\n }\n return this.each(d3_selection_classed(name, value));\n };\n function d3_selection_classedRe(name) {\n return new RegExp(\"(?:^|\\\\s+)\" + d3.requote(name) + \"(?:\\\\s+|$)\", \"g\");\n }\n function d3_selection_classes(name) {\n return (name + \"\").trim().split(/^|\\s+/);\n }\n function d3_selection_classed(name, value) {\n name = d3_selection_classes(name).map(d3_selection_classedName);\n var n = name.length;\n function classedConstant() {\n var i = -1;\n while (++i < n) name[i](this, value);\n }\n function classedFunction() {\n var i = -1, x = value.apply(this, arguments);\n while (++i < n) name[i](this, x);\n }\n return typeof value === \"function\" ? classedFunction : classedConstant;\n }\n function d3_selection_classedName(name) {\n var re = d3_selection_classedRe(name);\n return function(node, value) {\n if (c = node.classList) return value ? c.add(name) : c.remove(name);\n var c = node.getAttribute(\"class\") || \"\";\n if (value) {\n re.lastIndex = 0;\n if (!re.test(c)) node.setAttribute(\"class\", d3_collapse(c + \" \" + name));\n } else {\n node.setAttribute(\"class\", d3_collapse(c.replace(re, \" \")));\n }\n };\n }\n d3_selectionPrototype.style = function(name, value, priority) {\n var n = arguments.length;\n if (n < 3) {\n if (typeof name !== \"string\") {\n if (n < 2) value = \"\";\n for (priority in name) this.each(d3_selection_style(priority, name[priority], value));\n return this;\n }\n if (n < 2) {\n var node = this.node();\n return d3_window(node).getComputedStyle(node, null).getPropertyValue(name);\n }\n priority = \"\";\n }\n return this.each(d3_selection_style(name, value, priority));\n };\n function d3_selection_style(name, value, priority) {\n function styleNull() {\n this.style.removeProperty(name);\n }\n function styleConstant() {\n this.style.setProperty(name, value, priority);\n }\n function styleFunction() {\n var x = value.apply(this, arguments);\n if (x == null) this.style.removeProperty(name); else this.style.setProperty(name, x, priority);\n }\n return value == null ? styleNull : typeof value === \"function\" ? styleFunction : styleConstant;\n }\n d3_selectionPrototype.property = function(name, value) {\n if (arguments.length < 2) {\n if (typeof name === \"string\") return this.node()[name];\n for (value in name) this.each(d3_selection_property(value, name[value]));\n return this;\n }\n return this.each(d3_selection_property(name, value));\n };\n function d3_selection_property(name, value) {\n function propertyNull() {\n delete this[name];\n }\n function propertyConstant() {\n this[name] = value;\n }\n function propertyFunction() {\n var x = value.apply(this, arguments);\n if (x == null) delete this[name]; else this[name] = x;\n }\n return value == null ? propertyNull : typeof value === \"function\" ? propertyFunction : propertyConstant;\n }\n d3_selectionPrototype.text = function(value) {\n return arguments.length ? this.each(typeof value === \"function\" ? function() {\n var v = value.apply(this, arguments);\n this.textContent = v == null ? \"\" : v;\n } : value == null ? function() {\n this.textContent = \"\";\n } : function() {\n this.textContent = value;\n }) : this.node().textContent;\n };\n d3_selectionPrototype.html = function(value) {\n return arguments.length ? this.each(typeof value === \"function\" ? function() {\n var v = value.apply(this, arguments);\n this.innerHTML = v == null ? \"\" : v;\n } : value == null ? function() {\n this.innerHTML = \"\";\n } : function() {\n this.innerHTML = value;\n }) : this.node().innerHTML;\n };\n d3_selectionPrototype.append = function(name) {\n name = d3_selection_creator(name);\n return this.select(function() {\n return this.appendChild(name.apply(this, arguments));\n });\n };\n function d3_selection_creator(name) {\n function create() {\n var document = this.ownerDocument, namespace = this.namespaceURI;\n return namespace ? document.createElementNS(namespace, name) : document.createElement(name);\n }\n function createNS() {\n return this.ownerDocument.createElementNS(name.space, name.local);\n }\n return typeof name === \"function\" ? name : (name = d3.ns.qualify(name)).local ? createNS : create;\n }\n d3_selectionPrototype.insert = function(name, before) {\n name = d3_selection_creator(name);\n before = d3_selection_selector(before);\n return this.select(function() {\n return this.insertBefore(name.apply(this, arguments), before.apply(this, arguments) || null);\n });\n };\n d3_selectionPrototype.remove = function() {\n return this.each(d3_selectionRemove);\n };\n function d3_selectionRemove() {\n var parent = this.parentNode;\n if (parent) parent.removeChild(this);\n }\n d3_selectionPrototype.data = function(value, key) {\n var i = -1, n = this.length, group, node;\n if (!arguments.length) {\n value = new Array(n = (group = this[0]).length);\n while (++i < n) {\n if (node = group[i]) {\n value[i] = node.__data__;\n }\n }\n return value;\n }\n function bind(group, groupData) {\n var i, n = group.length, m = groupData.length, n0 = Math.min(n, m), updateNodes = new Array(m), enterNodes = new Array(m), exitNodes = new Array(n), node, nodeData;\n if (key) {\n var nodeByKeyValue = new d3_Map(), keyValues = new Array(n), keyValue;\n for (i = -1; ++i < n; ) {\n if (nodeByKeyValue.has(keyValue = key.call(node = group[i], node.__data__, i))) {\n exitNodes[i] = node;\n } else {\n nodeByKeyValue.set(keyValue, node);\n }\n keyValues[i] = keyValue;\n }\n for (i = -1; ++i < m; ) {\n if (!(node = nodeByKeyValue.get(keyValue = key.call(groupData, nodeData = groupData[i], i)))) {\n enterNodes[i] = d3_selection_dataNode(nodeData);\n } else if (node !== true) {\n updateNodes[i] = node;\n node.__data__ = nodeData;\n }\n nodeByKeyValue.set(keyValue, true);\n }\n for (i = -1; ++i < n; ) {\n if (nodeByKeyValue.get(keyValues[i]) !== true) {\n exitNodes[i] = group[i];\n }\n }\n } else {\n for (i = -1; ++i < n0; ) {\n node = group[i];\n nodeData = groupData[i];\n if (node) {\n node.__data__ = nodeData;\n updateNodes[i] = node;\n } else {\n enterNodes[i] = d3_selection_dataNode(nodeData);\n }\n }\n for (;i < m; ++i) {\n enterNodes[i] = d3_selection_dataNode(groupData[i]);\n }\n for (;i < n; ++i) {\n exitNodes[i] = group[i];\n }\n }\n enterNodes.update = updateNodes;\n enterNodes.parentNode = updateNodes.parentNode = exitNodes.parentNode = group.parentNode;\n enter.push(enterNodes);\n update.push(updateNodes);\n exit.push(exitNodes);\n }\n var enter = d3_selection_enter([]), update = d3_selection([]), exit = d3_selection([]);\n if (typeof value === \"function\") {\n while (++i < n) {\n bind(group = this[i], value.call(group, group.parentNode.__data__, i));\n }\n } else {\n while (++i < n) {\n bind(group = this[i], value);\n }\n }\n update.enter = function() {\n return enter;\n };\n update.exit = function() {\n return exit;\n };\n return update;\n };\n function d3_selection_dataNode(data) {\n return {\n __data__: data\n };\n }\n d3_selectionPrototype.datum = function(value) {\n return arguments.length ? this.property(\"__data__\", value) : this.property(\"__data__\");\n };\n d3_selectionPrototype.filter = function(filter) {\n var subgroups = [], subgroup, group, node;\n if (typeof filter !== \"function\") filter = d3_selection_filter(filter);\n for (var j = 0, m = this.length; j < m; j++) {\n subgroups.push(subgroup = []);\n subgroup.parentNode = (group = this[j]).parentNode;\n for (var i = 0, n = group.length; i < n; i++) {\n if ((node = group[i]) && filter.call(node, node.__data__, i, j)) {\n subgroup.push(node);\n }\n }\n }\n return d3_selection(subgroups);\n };\n function d3_selection_filter(selector) {\n return function() {\n return d3_selectMatches(this, selector);\n };\n }\n d3_selectionPrototype.order = function() {\n for (var j = -1, m = this.length; ++j < m; ) {\n for (var group = this[j], i = group.length - 1, next = group[i], node; --i >= 0; ) {\n if (node = group[i]) {\n if (next && next !== node.nextSibling) next.parentNode.insertBefore(node, next);\n next = node;\n }\n }\n }\n return this;\n };\n d3_selectionPrototype.sort = function(comparator) {\n comparator = d3_selection_sortComparator.apply(this, arguments);\n for (var j = -1, m = this.length; ++j < m; ) this[j].sort(comparator);\n return this.order();\n };\n function d3_selection_sortComparator(comparator) {\n if (!arguments.length) comparator = d3_ascending;\n return function(a, b) {\n return a && b ? comparator(a.__data__, b.__data__) : !a - !b;\n };\n }\n d3_selectionPrototype.each = function(callback) {\n return d3_selection_each(this, function(node, i, j) {\n callback.call(node, node.__data__, i, j);\n });\n };\n function d3_selection_each(groups, callback) {\n for (var j = 0, m = groups.length; j < m; j++) {\n for (var group = groups[j], i = 0, n = group.length, node; i < n; i++) {\n if (node = group[i]) callback(node, i, j);\n }\n }\n return groups;\n }\n d3_selectionPrototype.call = function(callback) {\n var args = d3_array(arguments);\n callback.apply(args[0] = this, args);\n return this;\n };\n d3_selectionPrototype.empty = function() {\n return !this.node();\n };\n d3_selectionPrototype.node = function() {\n for (var j = 0, m = this.length; j < m; j++) {\n for (var group = this[j], i = 0, n = group.length; i < n; i++) {\n var node = group[i];\n if (node) return node;\n }\n }\n return null;\n };\n d3_selectionPrototype.size = function() {\n var n = 0;\n d3_selection_each(this, function() {\n ++n;\n });\n return n;\n };\n function d3_selection_enter(selection) {\n d3_subclass(selection, d3_selection_enterPrototype);\n return selection;\n }\n var d3_selection_enterPrototype = [];\n d3.selection.enter = d3_selection_enter;\n d3.selection.enter.prototype = d3_selection_enterPrototype;\n d3_selection_enterPrototype.append = d3_selectionPrototype.append;\n d3_selection_enterPrototype.empty = d3_selectionPrototype.empty;\n d3_selection_enterPrototype.node = d3_selectionPrototype.node;\n d3_selection_enterPrototype.call = d3_selectionPrototype.call;\n d3_selection_enterPrototype.size = d3_selectionPrototype.size;\n d3_selection_enterPrototype.select = function(selector) {\n var subgroups = [], subgroup, subnode, upgroup, group, node;\n for (var j = -1, m = this.length; ++j < m; ) {\n upgroup = (group = this[j]).update;\n subgroups.push(subgroup = []);\n subgroup.parentNode = group.parentNode;\n for (var i = -1, n = group.length; ++i < n; ) {\n if (node = group[i]) {\n subgroup.push(upgroup[i] = subnode = selector.call(group.parentNode, node.__data__, i, j));\n subnode.__data__ = node.__data__;\n } else {\n subgroup.push(null);\n }\n }\n }\n return d3_selection(subgroups);\n };\n d3_selection_enterPrototype.insert = function(name, before) {\n if (arguments.length < 2) before = d3_selection_enterInsertBefore(this);\n return d3_selectionPrototype.insert.call(this, name, before);\n };\n function d3_selection_enterInsertBefore(enter) {\n var i0, j0;\n return function(d, i, j) {\n var group = enter[j].update, n = group.length, node;\n if (j != j0) j0 = j, i0 = 0;\n if (i >= i0) i0 = i + 1;\n while (!(node = group[i0]) && ++i0 < n) ;\n return node;\n };\n }\n d3.select = function(node) {\n var group;\n if (typeof node === \"string\") {\n group = [ d3_select(node, d3_document) ];\n group.parentNode = d3_document.documentElement;\n } else {\n group = [ node ];\n group.parentNode = d3_documentElement(node);\n }\n return d3_selection([ group ]);\n };\n d3.selectAll = function(nodes) {\n var group;\n if (typeof nodes === \"string\") {\n group = d3_array(d3_selectAll(nodes, d3_document));\n group.parentNode = d3_document.documentElement;\n } else {\n group = nodes;\n group.parentNode = null;\n }\n return d3_selection([ group ]);\n };\n d3_selectionPrototype.on = function(type, listener, capture) {\n var n = arguments.length;\n if (n < 3) {\n if (typeof type !== \"string\") {\n if (n < 2) listener = false;\n for (capture in type) this.each(d3_selection_on(capture, type[capture], listener));\n return this;\n }\n if (n < 2) return (n = this.node()[\"__on\" + type]) && n._;\n capture = false;\n }\n return this.each(d3_selection_on(type, listener, capture));\n };\n function d3_selection_on(type, listener, capture) {\n var name = \"__on\" + type, i = type.indexOf(\".\"), wrap = d3_selection_onListener;\n if (i > 0) type = type.slice(0, i);\n var filter = d3_selection_onFilters.get(type);\n if (filter) type = filter, wrap = d3_selection_onFilter;\n function onRemove() {\n var l = this[name];\n if (l) {\n this.removeEventListener(type, l, l.$);\n delete this[name];\n }\n }\n function onAdd() {\n var l = wrap(listener, d3_array(arguments));\n onRemove.call(this);\n this.addEventListener(type, this[name] = l, l.$ = capture);\n l._ = listener;\n }\n function removeAll() {\n var re = new RegExp(\"^__on([^.]+)\" + d3.requote(type) + \"$\"), match;\n for (var name in this) {\n if (match = name.match(re)) {\n var l = this[name];\n this.removeEventListener(match[1], l, l.$);\n delete this[name];\n }\n }\n }\n return i ? listener ? onAdd : onRemove : listener ? d3_noop : removeAll;\n }\n var d3_selection_onFilters = d3.map({\n mouseenter: \"mouseover\",\n mouseleave: \"mouseout\"\n });\n if (d3_document) {\n d3_selection_onFilters.forEach(function(k) {\n if (\"on\" + k in d3_document) d3_selection_onFilters.remove(k);\n });\n }\n function d3_selection_onListener(listener, argumentz) {\n return function(e) {\n var o = d3.event;\n d3.event = e;\n argumentz[0] = this.__data__;\n try {\n listener.apply(this, argumentz);\n } finally {\n d3.event = o;\n }\n };\n }\n function d3_selection_onFilter(listener, argumentz) {\n var l = d3_selection_onListener(listener, argumentz);\n return function(e) {\n var target = this, related = e.relatedTarget;\n if (!related || related !== target && !(related.compareDocumentPosition(target) & 8)) {\n l.call(target, e);\n }\n };\n }\n var d3_event_dragSelect, d3_event_dragId = 0;\n function d3_event_dragSuppress(node) {\n var name = \".dragsuppress-\" + ++d3_event_dragId, click = \"click\" + name, w = d3.select(d3_window(node)).on(\"touchmove\" + name, d3_eventPreventDefault).on(\"dragstart\" + name, d3_eventPreventDefault).on(\"selectstart\" + name, d3_eventPreventDefault);\n if (d3_event_dragSelect == null) {\n d3_event_dragSelect = \"onselectstart\" in node ? false : d3_vendorSymbol(node.style, \"userSelect\");\n }\n if (d3_event_dragSelect) {\n var style = d3_documentElement(node).style, select = style[d3_event_dragSelect];\n style[d3_event_dragSelect] = \"none\";\n }\n return function(suppressClick) {\n w.on(name, null);\n if (d3_event_dragSelect) style[d3_event_dragSelect] = select;\n if (suppressClick) {\n var off = function() {\n w.on(click, null);\n };\n w.on(click, function() {\n d3_eventPreventDefault();\n off();\n }, true);\n setTimeout(off, 0);\n }\n };\n }\n d3.mouse = function(container) {\n return d3_mousePoint(container, d3_eventSource());\n };\n var d3_mouse_bug44083 = this.navigator && /WebKit/.test(this.navigator.userAgent) ? -1 : 0;\n function d3_mousePoint(container, e) {\n if (e.changedTouches) e = e.changedTouches[0];\n var svg = container.ownerSVGElement || container;\n if (svg.createSVGPoint) {\n var point = svg.createSVGPoint();\n if (d3_mouse_bug44083 < 0) {\n var window = d3_window(container);\n if (window.scrollX || window.scrollY) {\n svg = d3.select(\"body\").append(\"svg\").style({\n position: \"absolute\",\n top: 0,\n left: 0,\n margin: 0,\n padding: 0,\n border: \"none\"\n }, \"important\");\n var ctm = svg[0][0].getScreenCTM();\n d3_mouse_bug44083 = !(ctm.f || ctm.e);\n svg.remove();\n }\n }\n if (d3_mouse_bug44083) point.x = e.pageX, point.y = e.pageY; else point.x = e.clientX, \n point.y = e.clientY;\n point = point.matrixTransform(container.getScreenCTM().inverse());\n return [ point.x, point.y ];\n }\n var rect = container.getBoundingClientRect();\n return [ e.clientX - rect.left - container.clientLeft, e.clientY - rect.top - container.clientTop ];\n }\n d3.touch = function(container, touches, identifier) {\n if (arguments.length < 3) identifier = touches, touches = d3_eventSource().changedTouches;\n if (touches) for (var i = 0, n = touches.length, touch; i < n; ++i) {\n if ((touch = touches[i]).identifier === identifier) {\n return d3_mousePoint(container, touch);\n }\n }\n };\n d3.behavior.drag = function() {\n var event = d3_eventDispatch(drag, \"drag\", \"dragstart\", \"dragend\"), origin = null, mousedown = dragstart(d3_noop, d3.mouse, d3_window, \"mousemove\", \"mouseup\"), touchstart = dragstart(d3_behavior_dragTouchId, d3.touch, d3_identity, \"touchmove\", \"touchend\");\n function drag() {\n this.on(\"mousedown.drag\", mousedown).on(\"touchstart.drag\", touchstart);\n }\n function dragstart(id, position, subject, move, end) {\n return function() {\n var that = this, target = d3.event.target, parent = that.parentNode, dispatch = event.of(that, arguments), dragged = 0, dragId = id(), dragName = \".drag\" + (dragId == null ? \"\" : \"-\" + dragId), dragOffset, dragSubject = d3.select(subject(target)).on(move + dragName, moved).on(end + dragName, ended), dragRestore = d3_event_dragSuppress(target), position0 = position(parent, dragId);\n if (origin) {\n dragOffset = origin.apply(that, arguments);\n dragOffset = [ dragOffset.x - position0[0], dragOffset.y - position0[1] ];\n } else {\n dragOffset = [ 0, 0 ];\n }\n dispatch({\n type: \"dragstart\"\n });\n function moved() {\n var position1 = position(parent, dragId), dx, dy;\n if (!position1) return;\n dx = position1[0] - position0[0];\n dy = position1[1] - position0[1];\n dragged |= dx | dy;\n position0 = position1;\n dispatch({\n type: \"drag\",\n x: position1[0] + dragOffset[0],\n y: position1[1] + dragOffset[1],\n dx: dx,\n dy: dy\n });\n }\n function ended() {\n if (!position(parent, dragId)) return;\n dragSubject.on(move + dragName, null).on(end + dragName, null);\n dragRestore(dragged && d3.event.target === target);\n dispatch({\n type: \"dragend\"\n });\n }\n };\n }\n drag.origin = function(x) {\n if (!arguments.length) return origin;\n origin = x;\n return drag;\n };\n return d3.rebind(drag, event, \"on\");\n };\n function d3_behavior_dragTouchId() {\n return d3.event.changedTouches[0].identifier;\n }\n d3.touches = function(container, touches) {\n if (arguments.length < 2) touches = d3_eventSource().touches;\n return touches ? d3_array(touches).map(function(touch) {\n var point = d3_mousePoint(container, touch);\n point.identifier = touch.identifier;\n return point;\n }) : [];\n };\n var ε = 1e-6, ε2 = ε * ε, π = Math.PI, τ = 2 * π, τε = τ - ε, halfπ = π / 2, d3_radians = π / 180, d3_degrees = 180 / π;\n function d3_sgn(x) {\n return x > 0 ? 1 : x < 0 ? -1 : 0;\n }\n function d3_cross2d(a, b, c) {\n return (b[0] - a[0]) * (c[1] - a[1]) - (b[1] - a[1]) * (c[0] - a[0]);\n }\n function d3_acos(x) {\n return x > 1 ? 0 : x < -1 ? π : Math.acos(x);\n }\n function d3_asin(x) {\n return x > 1 ? halfπ : x < -1 ? -halfπ : Math.asin(x);\n }\n function d3_sinh(x) {\n return ((x = Math.exp(x)) - 1 / x) / 2;\n }\n function d3_cosh(x) {\n return ((x = Math.exp(x)) + 1 / x) / 2;\n }\n function d3_tanh(x) {\n return ((x = Math.exp(2 * x)) - 1) / (x + 1);\n }\n function d3_haversin(x) {\n return (x = Math.sin(x / 2)) * x;\n }\n var ρ = Math.SQRT2, ρ2 = 2, ρ4 = 4;\n d3.interpolateZoom = function(p0, p1) {\n var ux0 = p0[0], uy0 = p0[1], w0 = p0[2], ux1 = p1[0], uy1 = p1[1], w1 = p1[2];\n var dx = ux1 - ux0, dy = uy1 - uy0, d2 = dx * dx + dy * dy, d1 = Math.sqrt(d2), b0 = (w1 * w1 - w0 * w0 + ρ4 * d2) / (2 * w0 * ρ2 * d1), b1 = (w1 * w1 - w0 * w0 - ρ4 * d2) / (2 * w1 * ρ2 * d1), r0 = Math.log(Math.sqrt(b0 * b0 + 1) - b0), r1 = Math.log(Math.sqrt(b1 * b1 + 1) - b1), dr = r1 - r0, S = (dr || Math.log(w1 / w0)) / ρ;\n function interpolate(t) {\n var s = t * S;\n if (dr) {\n var coshr0 = d3_cosh(r0), u = w0 / (ρ2 * d1) * (coshr0 * d3_tanh(ρ * s + r0) - d3_sinh(r0));\n return [ ux0 + u * dx, uy0 + u * dy, w0 * coshr0 / d3_cosh(ρ * s + r0) ];\n }\n return [ ux0 + t * dx, uy0 + t * dy, w0 * Math.exp(ρ * s) ];\n }\n interpolate.duration = S * 1e3;\n return interpolate;\n };\n d3.behavior.zoom = function() {\n var view = {\n x: 0,\n y: 0,\n k: 1\n }, translate0, center0, center, size = [ 960, 500 ], scaleExtent = d3_behavior_zoomInfinity, duration = 250, zooming = 0, mousedown = \"mousedown.zoom\", mousemove = \"mousemove.zoom\", mouseup = \"mouseup.zoom\", mousewheelTimer, touchstart = \"touchstart.zoom\", touchtime, event = d3_eventDispatch(zoom, \"zoomstart\", \"zoom\", \"zoomend\"), x0, x1, y0, y1;\n if (!d3_behavior_zoomWheel) {\n d3_behavior_zoomWheel = \"onwheel\" in d3_document ? (d3_behavior_zoomDelta = function() {\n return -d3.event.deltaY * (d3.event.deltaMode ? 120 : 1);\n }, \"wheel\") : \"onmousewheel\" in d3_document ? (d3_behavior_zoomDelta = function() {\n return d3.event.wheelDelta;\n }, \"mousewheel\") : (d3_behavior_zoomDelta = function() {\n return -d3.event.detail;\n }, \"MozMousePixelScroll\");\n }\n function zoom(g) {\n g.on(mousedown, mousedowned).on(d3_behavior_zoomWheel + \".zoom\", mousewheeled).on(\"dblclick.zoom\", dblclicked).on(touchstart, touchstarted);\n }\n zoom.event = function(g) {\n g.each(function() {\n var dispatch = event.of(this, arguments), view1 = view;\n if (d3_transitionInheritId) {\n d3.select(this).transition().each(\"start.zoom\", function() {\n view = this.__chart__ || {\n x: 0,\n y: 0,\n k: 1\n };\n zoomstarted(dispatch);\n }).tween(\"zoom:zoom\", function() {\n var dx = size[0], dy = size[1], cx = center0 ? center0[0] : dx / 2, cy = center0 ? center0[1] : dy / 2, i = d3.interpolateZoom([ (cx - view.x) / view.k, (cy - view.y) / view.k, dx / view.k ], [ (cx - view1.x) / view1.k, (cy - view1.y) / view1.k, dx / view1.k ]);\n return function(t) {\n var l = i(t), k = dx / l[2];\n this.__chart__ = view = {\n x: cx - l[0] * k,\n y: cy - l[1] * k,\n k: k\n };\n zoomed(dispatch);\n };\n }).each(\"interrupt.zoom\", function() {\n zoomended(dispatch);\n }).each(\"end.zoom\", function() {\n zoomended(dispatch);\n });\n } else {\n this.__chart__ = view;\n zoomstarted(dispatch);\n zoomed(dispatch);\n zoomended(dispatch);\n }\n });\n };\n zoom.translate = function(_) {\n if (!arguments.length) return [ view.x, view.y ];\n view = {\n x: +_[0],\n y: +_[1],\n k: view.k\n };\n rescale();\n return zoom;\n };\n zoom.scale = function(_) {\n if (!arguments.length) return view.k;\n view = {\n x: view.x,\n y: view.y,\n k: +_\n };\n rescale();\n return zoom;\n };\n zoom.scaleExtent = function(_) {\n if (!arguments.length) return scaleExtent;\n scaleExtent = _ == null ? d3_behavior_zoomInfinity : [ +_[0], +_[1] ];\n return zoom;\n };\n zoom.center = function(_) {\n if (!arguments.length) return center;\n center = _ && [ +_[0], +_[1] ];\n return zoom;\n };\n zoom.size = function(_) {\n if (!arguments.length) return size;\n size = _ && [ +_[0], +_[1] ];\n return zoom;\n };\n zoom.duration = function(_) {\n if (!arguments.length) return duration;\n duration = +_;\n return zoom;\n };\n zoom.x = function(z) {\n if (!arguments.length) return x1;\n x1 = z;\n x0 = z.copy();\n view = {\n x: 0,\n y: 0,\n k: 1\n };\n return zoom;\n };\n zoom.y = function(z) {\n if (!arguments.length) return y1;\n y1 = z;\n y0 = z.copy();\n view = {\n x: 0,\n y: 0,\n k: 1\n };\n return zoom;\n };\n function location(p) {\n return [ (p[0] - view.x) / view.k, (p[1] - view.y) / view.k ];\n }\n function point(l) {\n return [ l[0] * view.k + view.x, l[1] * view.k + view.y ];\n }\n function scaleTo(s) {\n view.k = Math.max(scaleExtent[0], Math.min(scaleExtent[1], s));\n }\n function translateTo(p, l) {\n l = point(l);\n view.x += p[0] - l[0];\n view.y += p[1] - l[1];\n }\n function zoomTo(that, p, l, k) {\n that.__chart__ = {\n x: view.x,\n y: view.y,\n k: view.k\n };\n scaleTo(Math.pow(2, k));\n translateTo(center0 = p, l);\n that = d3.select(that);\n if (duration > 0) that = that.transition().duration(duration);\n that.call(zoom.event);\n }\n function rescale() {\n if (x1) x1.domain(x0.range().map(function(x) {\n return (x - view.x) / view.k;\n }).map(x0.invert));\n if (y1) y1.domain(y0.range().map(function(y) {\n return (y - view.y) / view.k;\n }).map(y0.invert));\n }\n function zoomstarted(dispatch) {\n if (!zooming++) dispatch({\n type: \"zoomstart\"\n });\n }\n function zoomed(dispatch) {\n rescale();\n dispatch({\n type: \"zoom\",\n scale: view.k,\n translate: [ view.x, view.y ]\n });\n }\n function zoomended(dispatch) {\n if (!--zooming) dispatch({\n type: \"zoomend\"\n });\n center0 = null;\n }\n function mousedowned() {\n var that = this, target = d3.event.target, dispatch = event.of(that, arguments), dragged = 0, subject = d3.select(d3_window(that)).on(mousemove, moved).on(mouseup, ended), location0 = location(d3.mouse(that)), dragRestore = d3_event_dragSuppress(that);\n d3_selection_interrupt.call(that);\n zoomstarted(dispatch);\n function moved() {\n dragged = 1;\n translateTo(d3.mouse(that), location0);\n zoomed(dispatch);\n }\n function ended() {\n subject.on(mousemove, null).on(mouseup, null);\n dragRestore(dragged && d3.event.target === target);\n zoomended(dispatch);\n }\n }\n function touchstarted() {\n var that = this, dispatch = event.of(that, arguments), locations0 = {}, distance0 = 0, scale0, zoomName = \".zoom-\" + d3.event.changedTouches[0].identifier, touchmove = \"touchmove\" + zoomName, touchend = \"touchend\" + zoomName, targets = [], subject = d3.select(that), dragRestore = d3_event_dragSuppress(that);\n started();\n zoomstarted(dispatch);\n subject.on(mousedown, null).on(touchstart, started);\n function relocate() {\n var touches = d3.touches(that);\n scale0 = view.k;\n touches.forEach(function(t) {\n if (t.identifier in locations0) locations0[t.identifier] = location(t);\n });\n return touches;\n }\n function started() {\n var target = d3.event.target;\n d3.select(target).on(touchmove, moved).on(touchend, ended);\n targets.push(target);\n var changed = d3.event.changedTouches;\n for (var i = 0, n = changed.length; i < n; ++i) {\n locations0[changed[i].identifier] = null;\n }\n var touches = relocate(), now = Date.now();\n if (touches.length === 1) {\n if (now - touchtime < 500) {\n var p = touches[0];\n zoomTo(that, p, locations0[p.identifier], Math.floor(Math.log(view.k) / Math.LN2) + 1);\n d3_eventPreventDefault();\n }\n touchtime = now;\n } else if (touches.length > 1) {\n var p = touches[0], q = touches[1], dx = p[0] - q[0], dy = p[1] - q[1];\n distance0 = dx * dx + dy * dy;\n }\n }\n function moved() {\n var touches = d3.touches(that), p0, l0, p1, l1;\n d3_selection_interrupt.call(that);\n for (var i = 0, n = touches.length; i < n; ++i, l1 = null) {\n p1 = touches[i];\n if (l1 = locations0[p1.identifier]) {\n if (l0) break;\n p0 = p1, l0 = l1;\n }\n }\n if (l1) {\n var distance1 = (distance1 = p1[0] - p0[0]) * distance1 + (distance1 = p1[1] - p0[1]) * distance1, scale1 = distance0 && Math.sqrt(distance1 / distance0);\n p0 = [ (p0[0] + p1[0]) / 2, (p0[1] + p1[1]) / 2 ];\n l0 = [ (l0[0] + l1[0]) / 2, (l0[1] + l1[1]) / 2 ];\n scaleTo(scale1 * scale0);\n }\n touchtime = null;\n translateTo(p0, l0);\n zoomed(dispatch);\n }\n function ended() {\n if (d3.event.touches.length) {\n var changed = d3.event.changedTouches;\n for (var i = 0, n = changed.length; i < n; ++i) {\n delete locations0[changed[i].identifier];\n }\n for (var identifier in locations0) {\n return void relocate();\n }\n }\n d3.selectAll(targets).on(zoomName, null);\n subject.on(mousedown, mousedowned).on(touchstart, touchstarted);\n dragRestore();\n zoomended(dispatch);\n }\n }\n function mousewheeled() {\n var dispatch = event.of(this, arguments);\n if (mousewheelTimer) clearTimeout(mousewheelTimer); else translate0 = location(center0 = center || d3.mouse(this)), \n d3_selection_interrupt.call(this), zoomstarted(dispatch);\n mousewheelTimer = setTimeout(function() {\n mousewheelTimer = null;\n zoomended(dispatch);\n }, 50);\n d3_eventPreventDefault();\n scaleTo(Math.pow(2, d3_behavior_zoomDelta() * .002) * view.k);\n translateTo(center0, translate0);\n zoomed(dispatch);\n }\n function dblclicked() {\n var p = d3.mouse(this), k = Math.log(view.k) / Math.LN2;\n zoomTo(this, p, location(p), d3.event.shiftKey ? Math.ceil(k) - 1 : Math.floor(k) + 1);\n }\n return d3.rebind(zoom, event, \"on\");\n };\n var d3_behavior_zoomInfinity = [ 0, Infinity ], d3_behavior_zoomDelta, d3_behavior_zoomWheel;\n d3.color = d3_color;\n function d3_color() {}\n d3_color.prototype.toString = function() {\n return this.rgb() + \"\";\n };\n d3.hsl = d3_hsl;\n function d3_hsl(h, s, l) {\n return this instanceof d3_hsl ? void (this.h = +h, this.s = +s, this.l = +l) : arguments.length < 2 ? h instanceof d3_hsl ? new d3_hsl(h.h, h.s, h.l) : d3_rgb_parse(\"\" + h, d3_rgb_hsl, d3_hsl) : new d3_hsl(h, s, l);\n }\n var d3_hslPrototype = d3_hsl.prototype = new d3_color();\n d3_hslPrototype.brighter = function(k) {\n k = Math.pow(.7, arguments.length ? k : 1);\n return new d3_hsl(this.h, this.s, this.l / k);\n };\n d3_hslPrototype.darker = function(k) {\n k = Math.pow(.7, arguments.length ? k : 1);\n return new d3_hsl(this.h, this.s, k * this.l);\n };\n d3_hslPrototype.rgb = function() {\n return d3_hsl_rgb(this.h, this.s, this.l);\n };\n function d3_hsl_rgb(h, s, l) {\n var m1, m2;\n h = isNaN(h) ? 0 : (h %= 360) < 0 ? h + 360 : h;\n s = isNaN(s) ? 0 : s < 0 ? 0 : s > 1 ? 1 : s;\n l = l < 0 ? 0 : l > 1 ? 1 : l;\n m2 = l <= .5 ? l * (1 + s) : l + s - l * s;\n m1 = 2 * l - m2;\n function v(h) {\n if (h > 360) h -= 360; else if (h < 0) h += 360;\n if (h < 60) return m1 + (m2 - m1) * h / 60;\n if (h < 180) return m2;\n if (h < 240) return m1 + (m2 - m1) * (240 - h) / 60;\n return m1;\n }\n function vv(h) {\n return Math.round(v(h) * 255);\n }\n return new d3_rgb(vv(h + 120), vv(h), vv(h - 120));\n }\n d3.hcl = d3_hcl;\n function d3_hcl(h, c, l) {\n return this instanceof d3_hcl ? void (this.h = +h, this.c = +c, this.l = +l) : arguments.length < 2 ? h instanceof d3_hcl ? new d3_hcl(h.h, h.c, h.l) : h instanceof d3_lab ? d3_lab_hcl(h.l, h.a, h.b) : d3_lab_hcl((h = d3_rgb_lab((h = d3.rgb(h)).r, h.g, h.b)).l, h.a, h.b) : new d3_hcl(h, c, l);\n }\n var d3_hclPrototype = d3_hcl.prototype = new d3_color();\n d3_hclPrototype.brighter = function(k) {\n return new d3_hcl(this.h, this.c, Math.min(100, this.l + d3_lab_K * (arguments.length ? k : 1)));\n };\n d3_hclPrototype.darker = function(k) {\n return new d3_hcl(this.h, this.c, Math.max(0, this.l - d3_lab_K * (arguments.length ? k : 1)));\n };\n d3_hclPrototype.rgb = function() {\n return d3_hcl_lab(this.h, this.c, this.l).rgb();\n };\n function d3_hcl_lab(h, c, l) {\n if (isNaN(h)) h = 0;\n if (isNaN(c)) c = 0;\n return new d3_lab(l, Math.cos(h *= d3_radians) * c, Math.sin(h) * c);\n }\n d3.lab = d3_lab;\n function d3_lab(l, a, b) {\n return this instanceof d3_lab ? void (this.l = +l, this.a = +a, this.b = +b) : arguments.length < 2 ? l instanceof d3_lab ? new d3_lab(l.l, l.a, l.b) : l instanceof d3_hcl ? d3_hcl_lab(l.h, l.c, l.l) : d3_rgb_lab((l = d3_rgb(l)).r, l.g, l.b) : new d3_lab(l, a, b);\n }\n var d3_lab_K = 18;\n var d3_lab_X = .95047, d3_lab_Y = 1, d3_lab_Z = 1.08883;\n var d3_labPrototype = d3_lab.prototype = new d3_color();\n d3_labPrototype.brighter = function(k) {\n return new d3_lab(Math.min(100, this.l + d3_lab_K * (arguments.length ? k : 1)), this.a, this.b);\n };\n d3_labPrototype.darker = function(k) {\n return new d3_lab(Math.max(0, this.l - d3_lab_K * (arguments.length ? k : 1)), this.a, this.b);\n };\n d3_labPrototype.rgb = function() {\n return d3_lab_rgb(this.l, this.a, this.b);\n };\n function d3_lab_rgb(l, a, b) {\n var y = (l + 16) / 116, x = y + a / 500, z = y - b / 200;\n x = d3_lab_xyz(x) * d3_lab_X;\n y = d3_lab_xyz(y) * d3_lab_Y;\n z = d3_lab_xyz(z) * d3_lab_Z;\n return new d3_rgb(d3_xyz_rgb(3.2404542 * x - 1.5371385 * y - .4985314 * z), d3_xyz_rgb(-.969266 * x + 1.8760108 * y + .041556 * z), d3_xyz_rgb(.0556434 * x - .2040259 * y + 1.0572252 * z));\n }\n function d3_lab_hcl(l, a, b) {\n return l > 0 ? new d3_hcl(Math.atan2(b, a) * d3_degrees, Math.sqrt(a * a + b * b), l) : new d3_hcl(NaN, NaN, l);\n }\n function d3_lab_xyz(x) {\n return x > .206893034 ? x * x * x : (x - 4 / 29) / 7.787037;\n }\n function d3_xyz_lab(x) {\n return x > .008856 ? Math.pow(x, 1 / 3) : 7.787037 * x + 4 / 29;\n }\n function d3_xyz_rgb(r) {\n return Math.round(255 * (r <= .00304 ? 12.92 * r : 1.055 * Math.pow(r, 1 / 2.4) - .055));\n }\n d3.rgb = d3_rgb;\n function d3_rgb(r, g, b) {\n return this instanceof d3_rgb ? void (this.r = ~~r, this.g = ~~g, this.b = ~~b) : arguments.length < 2 ? r instanceof d3_rgb ? new d3_rgb(r.r, r.g, r.b) : d3_rgb_parse(\"\" + r, d3_rgb, d3_hsl_rgb) : new d3_rgb(r, g, b);\n }\n function d3_rgbNumber(value) {\n return new d3_rgb(value >> 16, value >> 8 & 255, value & 255);\n }\n function d3_rgbString(value) {\n return d3_rgbNumber(value) + \"\";\n }\n var d3_rgbPrototype = d3_rgb.prototype = new d3_color();\n d3_rgbPrototype.brighter = function(k) {\n k = Math.pow(.7, arguments.length ? k : 1);\n var r = this.r, g = this.g, b = this.b, i = 30;\n if (!r && !g && !b) return new d3_rgb(i, i, i);\n if (r && r < i) r = i;\n if (g && g < i) g = i;\n if (b && b < i) b = i;\n return new d3_rgb(Math.min(255, r / k), Math.min(255, g / k), Math.min(255, b / k));\n };\n d3_rgbPrototype.darker = function(k) {\n k = Math.pow(.7, arguments.length ? k : 1);\n return new d3_rgb(k * this.r, k * this.g, k * this.b);\n };\n d3_rgbPrototype.hsl = function() {\n return d3_rgb_hsl(this.r, this.g, this.b);\n };\n d3_rgbPrototype.toString = function() {\n return \"#\" + d3_rgb_hex(this.r) + d3_rgb_hex(this.g) + d3_rgb_hex(this.b);\n };\n function d3_rgb_hex(v) {\n return v < 16 ? \"0\" + Math.max(0, v).toString(16) : Math.min(255, v).toString(16);\n }\n function d3_rgb_parse(format, rgb, hsl) {\n var r = 0, g = 0, b = 0, m1, m2, color;\n m1 = /([a-z]+)\\((.*)\\)/i.exec(format);\n if (m1) {\n m2 = m1[2].split(\",\");\n switch (m1[1]) {\n case \"hsl\":\n {\n return hsl(parseFloat(m2[0]), parseFloat(m2[1]) / 100, parseFloat(m2[2]) / 100);\n }\n\n case \"rgb\":\n {\n return rgb(d3_rgb_parseNumber(m2[0]), d3_rgb_parseNumber(m2[1]), d3_rgb_parseNumber(m2[2]));\n }\n }\n }\n if (color = d3_rgb_names.get(format.toLowerCase())) {\n return rgb(color.r, color.g, color.b);\n }\n if (format != null && format.charAt(0) === \"#\" && !isNaN(color = parseInt(format.slice(1), 16))) {\n if (format.length === 4) {\n r = (color & 3840) >> 4;\n r = r >> 4 | r;\n g = color & 240;\n g = g >> 4 | g;\n b = color & 15;\n b = b << 4 | b;\n } else if (format.length === 7) {\n r = (color & 16711680) >> 16;\n g = (color & 65280) >> 8;\n b = color & 255;\n }\n }\n return rgb(r, g, b);\n }\n function d3_rgb_hsl(r, g, b) {\n var min = Math.min(r /= 255, g /= 255, b /= 255), max = Math.max(r, g, b), d = max - min, h, s, l = (max + min) / 2;\n if (d) {\n s = l < .5 ? d / (max + min) : d / (2 - max - min);\n if (r == max) h = (g - b) / d + (g < b ? 6 : 0); else if (g == max) h = (b - r) / d + 2; else h = (r - g) / d + 4;\n h *= 60;\n } else {\n h = NaN;\n s = l > 0 && l < 1 ? 0 : h;\n }\n return new d3_hsl(h, s, l);\n }\n function d3_rgb_lab(r, g, b) {\n r = d3_rgb_xyz(r);\n g = d3_rgb_xyz(g);\n b = d3_rgb_xyz(b);\n var x = d3_xyz_lab((.4124564 * r + .3575761 * g + .1804375 * b) / d3_lab_X), y = d3_xyz_lab((.2126729 * r + .7151522 * g + .072175 * b) / d3_lab_Y), z = d3_xyz_lab((.0193339 * r + .119192 * g + .9503041 * b) / d3_lab_Z);\n return d3_lab(116 * y - 16, 500 * (x - y), 200 * (y - z));\n }\n function d3_rgb_xyz(r) {\n return (r /= 255) <= .04045 ? r / 12.92 : Math.pow((r + .055) / 1.055, 2.4);\n }\n function d3_rgb_parseNumber(c) {\n var f = parseFloat(c);\n return c.charAt(c.length - 1) === \"%\" ? Math.round(f * 2.55) : f;\n }\n var d3_rgb_names = d3.map({\n aliceblue: 15792383,\n antiquewhite: 16444375,\n aqua: 65535,\n aquamarine: 8388564,\n azure: 15794175,\n beige: 16119260,\n bisque: 16770244,\n black: 0,\n blanchedalmond: 16772045,\n blue: 255,\n blueviolet: 9055202,\n brown: 10824234,\n burlywood: 14596231,\n cadetblue: 6266528,\n chartreuse: 8388352,\n chocolate: 13789470,\n coral: 16744272,\n cornflowerblue: 6591981,\n cornsilk: 16775388,\n crimson: 14423100,\n cyan: 65535,\n darkblue: 139,\n darkcyan: 35723,\n darkgoldenrod: 12092939,\n darkgray: 11119017,\n darkgreen: 25600,\n darkgrey: 11119017,\n darkkhaki: 12433259,\n darkmagenta: 9109643,\n darkolivegreen: 5597999,\n darkorange: 16747520,\n darkorchid: 10040012,\n darkred: 9109504,\n darksalmon: 15308410,\n darkseagreen: 9419919,\n darkslateblue: 4734347,\n darkslategray: 3100495,\n darkslategrey: 3100495,\n darkturquoise: 52945,\n darkviolet: 9699539,\n deeppink: 16716947,\n deepskyblue: 49151,\n dimgray: 6908265,\n dimgrey: 6908265,\n dodgerblue: 2003199,\n firebrick: 11674146,\n floralwhite: 16775920,\n forestgreen: 2263842,\n fuchsia: 16711935,\n gainsboro: 14474460,\n ghostwhite: 16316671,\n gold: 16766720,\n goldenrod: 14329120,\n gray: 8421504,\n green: 32768,\n greenyellow: 11403055,\n grey: 8421504,\n honeydew: 15794160,\n hotpink: 16738740,\n indianred: 13458524,\n indigo: 4915330,\n ivory: 16777200,\n khaki: 15787660,\n lavender: 15132410,\n lavenderblush: 16773365,\n lawngreen: 8190976,\n lemonchiffon: 16775885,\n lightblue: 11393254,\n lightcoral: 15761536,\n lightcyan: 14745599,\n lightgoldenrodyellow: 16448210,\n lightgray: 13882323,\n lightgreen: 9498256,\n lightgrey: 13882323,\n lightpink: 16758465,\n lightsalmon: 16752762,\n lightseagreen: 2142890,\n lightskyblue: 8900346,\n lightslategray: 7833753,\n lightslategrey: 7833753,\n lightsteelblue: 11584734,\n lightyellow: 16777184,\n lime: 65280,\n limegreen: 3329330,\n linen: 16445670,\n magenta: 16711935,\n maroon: 8388608,\n mediumaquamarine: 6737322,\n mediumblue: 205,\n mediumorchid: 12211667,\n mediumpurple: 9662683,\n mediumseagreen: 3978097,\n mediumslateblue: 8087790,\n mediumspringgreen: 64154,\n mediumturquoise: 4772300,\n mediumvioletred: 13047173,\n midnightblue: 1644912,\n mintcream: 16121850,\n mistyrose: 16770273,\n moccasin: 16770229,\n navajowhite: 16768685,\n navy: 128,\n oldlace: 16643558,\n olive: 8421376,\n olivedrab: 7048739,\n orange: 16753920,\n orangered: 16729344,\n orchid: 14315734,\n palegoldenrod: 15657130,\n palegreen: 10025880,\n paleturquoise: 11529966,\n palevioletred: 14381203,\n papayawhip: 16773077,\n peachpuff: 16767673,\n peru: 13468991,\n pink: 16761035,\n plum: 14524637,\n powderblue: 11591910,\n purple: 8388736,\n rebeccapurple: 6697881,\n red: 16711680,\n rosybrown: 12357519,\n royalblue: 4286945,\n saddlebrown: 9127187,\n salmon: 16416882,\n sandybrown: 16032864,\n seagreen: 3050327,\n seashell: 16774638,\n sienna: 10506797,\n silver: 12632256,\n skyblue: 8900331,\n slateblue: 6970061,\n slategray: 7372944,\n slategrey: 7372944,\n snow: 16775930,\n springgreen: 65407,\n steelblue: 4620980,\n tan: 13808780,\n teal: 32896,\n thistle: 14204888,\n tomato: 16737095,\n turquoise: 4251856,\n violet: 15631086,\n wheat: 16113331,\n white: 16777215,\n whitesmoke: 16119285,\n yellow: 16776960,\n yellowgreen: 10145074\n });\n d3_rgb_names.forEach(function(key, value) {\n d3_rgb_names.set(key, d3_rgbNumber(value));\n });\n function d3_functor(v) {\n return typeof v === \"function\" ? v : function() {\n return v;\n };\n }\n d3.functor = d3_functor;\n d3.xhr = d3_xhrType(d3_identity);\n function d3_xhrType(response) {\n return function(url, mimeType, callback) {\n if (arguments.length === 2 && typeof mimeType === \"function\") callback = mimeType, \n mimeType = null;\n return d3_xhr(url, mimeType, response, callback);\n };\n }\n function d3_xhr(url, mimeType, response, callback) {\n var xhr = {}, dispatch = d3.dispatch(\"beforesend\", \"progress\", \"load\", \"error\"), headers = {}, request = new XMLHttpRequest(), responseType = null;\n if (this.XDomainRequest && !(\"withCredentials\" in request) && /^(http(s)?:)?\\/\\//.test(url)) request = new XDomainRequest();\n \"onload\" in request ? request.onload = request.onerror = respond : request.onreadystatechange = function() {\n request.readyState > 3 && respond();\n };\n function respond() {\n var status = request.status, result;\n if (!status && d3_xhrHasResponse(request) || status >= 200 && status < 300 || status === 304) {\n try {\n result = response.call(xhr, request);\n } catch (e) {\n dispatch.error.call(xhr, e);\n return;\n }\n dispatch.load.call(xhr, result);\n } else {\n dispatch.error.call(xhr, request);\n }\n }\n request.onprogress = function(event) {\n var o = d3.event;\n d3.event = event;\n try {\n dispatch.progress.call(xhr, request);\n } finally {\n d3.event = o;\n }\n };\n xhr.header = function(name, value) {\n name = (name + \"\").toLowerCase();\n if (arguments.length < 2) return headers[name];\n if (value == null) delete headers[name]; else headers[name] = value + \"\";\n return xhr;\n };\n xhr.mimeType = function(value) {\n if (!arguments.length) return mimeType;\n mimeType = value == null ? null : value + \"\";\n return xhr;\n };\n xhr.responseType = function(value) {\n if (!arguments.length) return responseType;\n responseType = value;\n return xhr;\n };\n xhr.response = function(value) {\n response = value;\n return xhr;\n };\n [ \"get\", \"post\" ].forEach(function(method) {\n xhr[method] = function() {\n return xhr.send.apply(xhr, [ method ].concat(d3_array(arguments)));\n };\n });\n xhr.send = function(method, data, callback) {\n if (arguments.length === 2 && typeof data === \"function\") callback = data, data = null;\n request.open(method, url, true);\n if (mimeType != null && !(\"accept\" in headers)) headers[\"accept\"] = mimeType + \",*/*\";\n if (request.setRequestHeader) for (var name in headers) request.setRequestHeader(name, headers[name]);\n if (mimeType != null && request.overrideMimeType) request.overrideMimeType(mimeType);\n if (responseType != null) request.responseType = responseType;\n if (callback != null) xhr.on(\"error\", callback).on(\"load\", function(request) {\n callback(null, request);\n });\n dispatch.beforesend.call(xhr, request);\n request.send(data == null ? null : data);\n return xhr;\n };\n xhr.abort = function() {\n request.abort();\n return xhr;\n };\n d3.rebind(xhr, dispatch, \"on\");\n return callback == null ? xhr : xhr.get(d3_xhr_fixCallback(callback));\n }\n function d3_xhr_fixCallback(callback) {\n return callback.length === 1 ? function(error, request) {\n callback(error == null ? request : null);\n } : callback;\n }\n function d3_xhrHasResponse(request) {\n var type = request.responseType;\n return type && type !== \"text\" ? request.response : request.responseText;\n }\n d3.dsv = function(delimiter, mimeType) {\n var reFormat = new RegExp('[\"' + delimiter + \"\\n]\"), delimiterCode = delimiter.charCodeAt(0);\n function dsv(url, row, callback) {\n if (arguments.length < 3) callback = row, row = null;\n var xhr = d3_xhr(url, mimeType, row == null ? response : typedResponse(row), callback);\n xhr.row = function(_) {\n return arguments.length ? xhr.response((row = _) == null ? response : typedResponse(_)) : row;\n };\n return xhr;\n }\n function response(request) {\n return dsv.parse(request.responseText);\n }\n function typedResponse(f) {\n return function(request) {\n return dsv.parse(request.responseText, f);\n };\n }\n dsv.parse = function(text, f) {\n var o;\n return dsv.parseRows(text, function(row, i) {\n if (o) return o(row, i - 1);\n var a = new Function(\"d\", \"return {\" + row.map(function(name, i) {\n return JSON.stringify(name) + \": d[\" + i + \"]\";\n }).join(\",\") + \"}\");\n o = f ? function(row, i) {\n return f(a(row), i);\n } : a;\n });\n };\n dsv.parseRows = function(text, f) {\n var EOL = {}, EOF = {}, rows = [], N = text.length, I = 0, n = 0, t, eol;\n function token() {\n if (I >= N) return EOF;\n if (eol) return eol = false, EOL;\n var j = I;\n if (text.charCodeAt(j) === 34) {\n var i = j;\n while (i++ < N) {\n if (text.charCodeAt(i) === 34) {\n if (text.charCodeAt(i + 1) !== 34) break;\n ++i;\n }\n }\n I = i + 2;\n var c = text.charCodeAt(i + 1);\n if (c === 13) {\n eol = true;\n if (text.charCodeAt(i + 2) === 10) ++I;\n } else if (c === 10) {\n eol = true;\n }\n return text.slice(j + 1, i).replace(/\"\"/g, '\"');\n }\n while (I < N) {\n var c = text.charCodeAt(I++), k = 1;\n if (c === 10) eol = true; else if (c === 13) {\n eol = true;\n if (text.charCodeAt(I) === 10) ++I, ++k;\n } else if (c !== delimiterCode) continue;\n return text.slice(j, I - k);\n }\n return text.slice(j);\n }\n while ((t = token()) !== EOF) {\n var a = [];\n while (t !== EOL && t !== EOF) {\n a.push(t);\n t = token();\n }\n if (f && (a = f(a, n++)) == null) continue;\n rows.push(a);\n }\n return rows;\n };\n dsv.format = function(rows) {\n if (Array.isArray(rows[0])) return dsv.formatRows(rows);\n var fieldSet = new d3_Set(), fields = [];\n rows.forEach(function(row) {\n for (var field in row) {\n if (!fieldSet.has(field)) {\n fields.push(fieldSet.add(field));\n }\n }\n });\n return [ fields.map(formatValue).join(delimiter) ].concat(rows.map(function(row) {\n return fields.map(function(field) {\n return formatValue(row[field]);\n }).join(delimiter);\n })).join(\"\\n\");\n };\n dsv.formatRows = function(rows) {\n return rows.map(formatRow).join(\"\\n\");\n };\n function formatRow(row) {\n return row.map(formatValue).join(delimiter);\n }\n function formatValue(text) {\n return reFormat.test(text) ? '\"' + text.replace(/\\\"/g, '\"\"') + '\"' : text;\n }\n return dsv;\n };\n d3.csv = d3.dsv(\",\", \"text/csv\");\n d3.tsv = d3.dsv(\"\t\", \"text/tab-separated-values\");\n var d3_timer_queueHead, d3_timer_queueTail, d3_timer_interval, d3_timer_timeout, d3_timer_active, d3_timer_frame = this[d3_vendorSymbol(this, \"requestAnimationFrame\")] || function(callback) {\n setTimeout(callback, 17);\n };\n d3.timer = function(callback, delay, then) {\n var n = arguments.length;\n if (n < 2) delay = 0;\n if (n < 3) then = Date.now();\n var time = then + delay, timer = {\n c: callback,\n t: time,\n f: false,\n n: null\n };\n if (d3_timer_queueTail) d3_timer_queueTail.n = timer; else d3_timer_queueHead = timer;\n d3_timer_queueTail = timer;\n if (!d3_timer_interval) {\n d3_timer_timeout = clearTimeout(d3_timer_timeout);\n d3_timer_interval = 1;\n d3_timer_frame(d3_timer_step);\n }\n };\n function d3_timer_step() {\n var now = d3_timer_mark(), delay = d3_timer_sweep() - now;\n if (delay > 24) {\n if (isFinite(delay)) {\n clearTimeout(d3_timer_timeout);\n d3_timer_timeout = setTimeout(d3_timer_step, delay);\n }\n d3_timer_interval = 0;\n } else {\n d3_timer_interval = 1;\n d3_timer_frame(d3_timer_step);\n }\n }\n d3.timer.flush = function() {\n d3_timer_mark();\n d3_timer_sweep();\n };\n function d3_timer_mark() {\n var now = Date.now();\n d3_timer_active = d3_timer_queueHead;\n while (d3_timer_active) {\n if (now >= d3_timer_active.t) d3_timer_active.f = d3_timer_active.c(now - d3_timer_active.t);\n d3_timer_active = d3_timer_active.n;\n }\n return now;\n }\n function d3_timer_sweep() {\n var t0, t1 = d3_timer_queueHead, time = Infinity;\n while (t1) {\n if (t1.f) {\n t1 = t0 ? t0.n = t1.n : d3_timer_queueHead = t1.n;\n } else {\n if (t1.t < time) time = t1.t;\n t1 = (t0 = t1).n;\n }\n }\n d3_timer_queueTail = t0;\n return time;\n }\n function d3_format_precision(x, p) {\n return p - (x ? Math.ceil(Math.log(x) / Math.LN10) : 1);\n }\n d3.round = function(x, n) {\n return n ? Math.round(x * (n = Math.pow(10, n))) / n : Math.round(x);\n };\n var d3_formatPrefixes = [ \"y\", \"z\", \"a\", \"f\", \"p\", \"n\", \"µ\", \"m\", \"\", \"k\", \"M\", \"G\", \"T\", \"P\", \"E\", \"Z\", \"Y\" ].map(d3_formatPrefix);\n d3.formatPrefix = function(value, precision) {\n var i = 0;\n if (value) {\n if (value < 0) value *= -1;\n if (precision) value = d3.round(value, d3_format_precision(value, precision));\n i = 1 + Math.floor(1e-12 + Math.log(value) / Math.LN10);\n i = Math.max(-24, Math.min(24, Math.floor((i - 1) / 3) * 3));\n }\n return d3_formatPrefixes[8 + i / 3];\n };\n function d3_formatPrefix(d, i) {\n var k = Math.pow(10, abs(8 - i) * 3);\n return {\n scale: i > 8 ? function(d) {\n return d / k;\n } : function(d) {\n return d * k;\n },\n symbol: d\n };\n }\n function d3_locale_numberFormat(locale) {\n var locale_decimal = locale.decimal, locale_thousands = locale.thousands, locale_grouping = locale.grouping, locale_currency = locale.currency, formatGroup = locale_grouping && locale_thousands ? function(value, width) {\n var i = value.length, t = [], j = 0, g = locale_grouping[0], length = 0;\n while (i > 0 && g > 0) {\n if (length + g + 1 > width) g = Math.max(1, width - length);\n t.push(value.substring(i -= g, i + g));\n if ((length += g + 1) > width) break;\n g = locale_grouping[j = (j + 1) % locale_grouping.length];\n }\n return t.reverse().join(locale_thousands);\n } : d3_identity;\n return function(specifier) {\n var match = d3_format_re.exec(specifier), fill = match[1] || \" \", align = match[2] || \">\", sign = match[3] || \"-\", symbol = match[4] || \"\", zfill = match[5], width = +match[6], comma = match[7], precision = match[8], type = match[9], scale = 1, prefix = \"\", suffix = \"\", integer = false, exponent = true;\n if (precision) precision = +precision.substring(1);\n if (zfill || fill === \"0\" && align === \"=\") {\n zfill = fill = \"0\";\n align = \"=\";\n }\n switch (type) {\n case \"n\":\n comma = true;\n type = \"g\";\n break;\n\n case \"%\":\n scale = 100;\n suffix = \"%\";\n type = \"f\";\n break;\n\n case \"p\":\n scale = 100;\n suffix = \"%\";\n type = \"r\";\n break;\n\n case \"b\":\n case \"o\":\n case \"x\":\n case \"X\":\n if (symbol === \"#\") prefix = \"0\" + type.toLowerCase();\n\n case \"c\":\n exponent = false;\n\n case \"d\":\n integer = true;\n precision = 0;\n break;\n\n case \"s\":\n scale = -1;\n type = \"r\";\n break;\n }\n if (symbol === \"$\") prefix = locale_currency[0], suffix = locale_currency[1];\n if (type == \"r\" && !precision) type = \"g\";\n if (precision != null) {\n if (type == \"g\") precision = Math.max(1, Math.min(21, precision)); else if (type == \"e\" || type == \"f\") precision = Math.max(0, Math.min(20, precision));\n }\n type = d3_format_types.get(type) || d3_format_typeDefault;\n var zcomma = zfill && comma;\n return function(value) {\n var fullSuffix = suffix;\n if (integer && value % 1) return \"\";\n var negative = value < 0 || value === 0 && 1 / value < 0 ? (value = -value, \"-\") : sign === \"-\" ? \"\" : sign;\n if (scale < 0) {\n var unit = d3.formatPrefix(value, precision);\n value = unit.scale(value);\n fullSuffix = unit.symbol + suffix;\n } else {\n value *= scale;\n }\n value = type(value, precision);\n var i = value.lastIndexOf(\".\"), before, after;\n if (i < 0) {\n var j = exponent ? value.lastIndexOf(\"e\") : -1;\n if (j < 0) before = value, after = \"\"; else before = value.substring(0, j), after = value.substring(j);\n } else {\n before = value.substring(0, i);\n after = locale_decimal + value.substring(i + 1);\n }\n if (!zfill && comma) before = formatGroup(before, Infinity);\n var length = prefix.length + before.length + after.length + (zcomma ? 0 : negative.length), padding = length < width ? new Array(length = width - length + 1).join(fill) : \"\";\n if (zcomma) before = formatGroup(padding + before, padding.length ? width - after.length : Infinity);\n negative += prefix;\n value = before + after;\n return (align === \"<\" ? negative + value + padding : align === \">\" ? padding + negative + value : align === \"^\" ? padding.substring(0, length >>= 1) + negative + value + padding.substring(length) : negative + (zcomma ? value : padding + value)) + fullSuffix;\n };\n };\n }\n var d3_format_re = /(?:([^{])?([<>=^]))?([+\\- ])?([$#])?(0)?(\\d+)?(,)?(\\.-?\\d+)?([a-z%])?/i;\n var d3_format_types = d3.map({\n b: function(x) {\n return x.toString(2);\n },\n c: function(x) {\n return String.fromCharCode(x);\n },\n o: function(x) {\n return x.toString(8);\n },\n x: function(x) {\n return x.toString(16);\n },\n X: function(x) {\n return x.toString(16).toUpperCase();\n },\n g: function(x, p) {\n return x.toPrecision(p);\n },\n e: function(x, p) {\n return x.toExponential(p);\n },\n f: function(x, p) {\n return x.toFixed(p);\n },\n r: function(x, p) {\n return (x = d3.round(x, d3_format_precision(x, p))).toFixed(Math.max(0, Math.min(20, d3_format_precision(x * (1 + 1e-15), p))));\n }\n });\n function d3_format_typeDefault(x) {\n return x + \"\";\n }\n var d3_time = d3.time = {}, d3_date = Date;\n function d3_date_utc() {\n this._ = new Date(arguments.length > 1 ? Date.UTC.apply(this, arguments) : arguments[0]);\n }\n d3_date_utc.prototype = {\n getDate: function() {\n return this._.getUTCDate();\n },\n getDay: function() {\n return this._.getUTCDay();\n },\n getFullYear: function() {\n return this._.getUTCFullYear();\n },\n getHours: function() {\n return this._.getUTCHours();\n },\n getMilliseconds: function() {\n return this._.getUTCMilliseconds();\n },\n getMinutes: function() {\n return this._.getUTCMinutes();\n },\n getMonth: function() {\n return this._.getUTCMonth();\n },\n getSeconds: function() {\n return this._.getUTCSeconds();\n },\n getTime: function() {\n return this._.getTime();\n },\n getTimezoneOffset: function() {\n return 0;\n },\n valueOf: function() {\n return this._.valueOf();\n },\n setDate: function() {\n d3_time_prototype.setUTCDate.apply(this._, arguments);\n },\n setDay: function() {\n d3_time_prototype.setUTCDay.apply(this._, arguments);\n },\n setFullYear: function() {\n d3_time_prototype.setUTCFullYear.apply(this._, arguments);\n },\n setHours: function() {\n d3_time_prototype.setUTCHours.apply(this._, arguments);\n },\n setMilliseconds: function() {\n d3_time_prototype.setUTCMilliseconds.apply(this._, arguments);\n },\n setMinutes: function() {\n d3_time_prototype.setUTCMinutes.apply(this._, arguments);\n },\n setMonth: function() {\n d3_time_prototype.setUTCMonth.apply(this._, arguments);\n },\n setSeconds: function() {\n d3_time_prototype.setUTCSeconds.apply(this._, arguments);\n },\n setTime: function() {\n d3_time_prototype.setTime.apply(this._, arguments);\n }\n };\n var d3_time_prototype = Date.prototype;\n function d3_time_interval(local, step, number) {\n function round(date) {\n var d0 = local(date), d1 = offset(d0, 1);\n return date - d0 < d1 - date ? d0 : d1;\n }\n function ceil(date) {\n step(date = local(new d3_date(date - 1)), 1);\n return date;\n }\n function offset(date, k) {\n step(date = new d3_date(+date), k);\n return date;\n }\n function range(t0, t1, dt) {\n var time = ceil(t0), times = [];\n if (dt > 1) {\n while (time < t1) {\n if (!(number(time) % dt)) times.push(new Date(+time));\n step(time, 1);\n }\n } else {\n while (time < t1) times.push(new Date(+time)), step(time, 1);\n }\n return times;\n }\n function range_utc(t0, t1, dt) {\n try {\n d3_date = d3_date_utc;\n var utc = new d3_date_utc();\n utc._ = t0;\n return range(utc, t1, dt);\n } finally {\n d3_date = Date;\n }\n }\n local.floor = local;\n local.round = round;\n local.ceil = ceil;\n local.offset = offset;\n local.range = range;\n var utc = local.utc = d3_time_interval_utc(local);\n utc.floor = utc;\n utc.round = d3_time_interval_utc(round);\n utc.ceil = d3_time_interval_utc(ceil);\n utc.offset = d3_time_interval_utc(offset);\n utc.range = range_utc;\n return local;\n }\n function d3_time_interval_utc(method) {\n return function(date, k) {\n try {\n d3_date = d3_date_utc;\n var utc = new d3_date_utc();\n utc._ = date;\n return method(utc, k)._;\n } finally {\n d3_date = Date;\n }\n };\n }\n d3_time.year = d3_time_interval(function(date) {\n date = d3_time.day(date);\n date.setMonth(0, 1);\n return date;\n }, function(date, offset) {\n date.setFullYear(date.getFullYear() + offset);\n }, function(date) {\n return date.getFullYear();\n });\n d3_time.years = d3_time.year.range;\n d3_time.years.utc = d3_time.year.utc.range;\n d3_time.day = d3_time_interval(function(date) {\n var day = new d3_date(2e3, 0);\n day.setFullYear(date.getFullYear(), date.getMonth(), date.getDate());\n return day;\n }, function(date, offset) {\n date.setDate(date.getDate() + offset);\n }, function(date) {\n return date.getDate() - 1;\n });\n d3_time.days = d3_time.day.range;\n d3_time.days.utc = d3_time.day.utc.range;\n d3_time.dayOfYear = function(date) {\n var year = d3_time.year(date);\n return Math.floor((date - year - (date.getTimezoneOffset() - year.getTimezoneOffset()) * 6e4) / 864e5);\n };\n [ \"sunday\", \"monday\", \"tuesday\", \"wednesday\", \"thursday\", \"friday\", \"saturday\" ].forEach(function(day, i) {\n i = 7 - i;\n var interval = d3_time[day] = d3_time_interval(function(date) {\n (date = d3_time.day(date)).setDate(date.getDate() - (date.getDay() + i) % 7);\n return date;\n }, function(date, offset) {\n date.setDate(date.getDate() + Math.floor(offset) * 7);\n }, function(date) {\n var day = d3_time.year(date).getDay();\n return Math.floor((d3_time.dayOfYear(date) + (day + i) % 7) / 7) - (day !== i);\n });\n d3_time[day + \"s\"] = interval.range;\n d3_time[day + \"s\"].utc = interval.utc.range;\n d3_time[day + \"OfYear\"] = function(date) {\n var day = d3_time.year(date).getDay();\n return Math.floor((d3_time.dayOfYear(date) + (day + i) % 7) / 7);\n };\n });\n d3_time.week = d3_time.sunday;\n d3_time.weeks = d3_time.sunday.range;\n d3_time.weeks.utc = d3_time.sunday.utc.range;\n d3_time.weekOfYear = d3_time.sundayOfYear;\n function d3_locale_timeFormat(locale) {\n var locale_dateTime = locale.dateTime, locale_date = locale.date, locale_time = locale.time, locale_periods = locale.periods, locale_days = locale.days, locale_shortDays = locale.shortDays, locale_months = locale.months, locale_shortMonths = locale.shortMonths;\n function d3_time_format(template) {\n var n = template.length;\n function format(date) {\n var string = [], i = -1, j = 0, c, p, f;\n while (++i < n) {\n if (template.charCodeAt(i) === 37) {\n string.push(template.slice(j, i));\n if ((p = d3_time_formatPads[c = template.charAt(++i)]) != null) c = template.charAt(++i);\n if (f = d3_time_formats[c]) c = f(date, p == null ? c === \"e\" ? \" \" : \"0\" : p);\n string.push(c);\n j = i + 1;\n }\n }\n string.push(template.slice(j, i));\n return string.join(\"\");\n }\n format.parse = function(string) {\n var d = {\n y: 1900,\n m: 0,\n d: 1,\n H: 0,\n M: 0,\n S: 0,\n L: 0,\n Z: null\n }, i = d3_time_parse(d, template, string, 0);\n if (i != string.length) return null;\n if (\"p\" in d) d.H = d.H % 12 + d.p * 12;\n var localZ = d.Z != null && d3_date !== d3_date_utc, date = new (localZ ? d3_date_utc : d3_date)();\n if (\"j\" in d) date.setFullYear(d.y, 0, d.j); else if (\"w\" in d && (\"W\" in d || \"U\" in d)) {\n date.setFullYear(d.y, 0, 1);\n date.setFullYear(d.y, 0, \"W\" in d ? (d.w + 6) % 7 + d.W * 7 - (date.getDay() + 5) % 7 : d.w + d.U * 7 - (date.getDay() + 6) % 7);\n } else date.setFullYear(d.y, d.m, d.d);\n date.setHours(d.H + (d.Z / 100 | 0), d.M + d.Z % 100, d.S, d.L);\n return localZ ? date._ : date;\n };\n format.toString = function() {\n return template;\n };\n return format;\n }\n function d3_time_parse(date, template, string, j) {\n var c, p, t, i = 0, n = template.length, m = string.length;\n while (i < n) {\n if (j >= m) return -1;\n c = template.charCodeAt(i++);\n if (c === 37) {\n t = template.charAt(i++);\n p = d3_time_parsers[t in d3_time_formatPads ? template.charAt(i++) : t];\n if (!p || (j = p(date, string, j)) < 0) return -1;\n } else if (c != string.charCodeAt(j++)) {\n return -1;\n }\n }\n return j;\n }\n d3_time_format.utc = function(template) {\n var local = d3_time_format(template);\n function format(date) {\n try {\n d3_date = d3_date_utc;\n var utc = new d3_date();\n utc._ = date;\n return local(utc);\n } finally {\n d3_date = Date;\n }\n }\n format.parse = function(string) {\n try {\n d3_date = d3_date_utc;\n var date = local.parse(string);\n return date && date._;\n } finally {\n d3_date = Date;\n }\n };\n format.toString = local.toString;\n return format;\n };\n d3_time_format.multi = d3_time_format.utc.multi = d3_time_formatMulti;\n var d3_time_periodLookup = d3.map(), d3_time_dayRe = d3_time_formatRe(locale_days), d3_time_dayLookup = d3_time_formatLookup(locale_days), d3_time_dayAbbrevRe = d3_time_formatRe(locale_shortDays), d3_time_dayAbbrevLookup = d3_time_formatLookup(locale_shortDays), d3_time_monthRe = d3_time_formatRe(locale_months), d3_time_monthLookup = d3_time_formatLookup(locale_months), d3_time_monthAbbrevRe = d3_time_formatRe(locale_shortMonths), d3_time_monthAbbrevLookup = d3_time_formatLookup(locale_shortMonths);\n locale_periods.forEach(function(p, i) {\n d3_time_periodLookup.set(p.toLowerCase(), i);\n });\n var d3_time_formats = {\n a: function(d) {\n return locale_shortDays[d.getDay()];\n },\n A: function(d) {\n return locale_days[d.getDay()];\n },\n b: function(d) {\n return locale_shortMonths[d.getMonth()];\n },\n B: function(d) {\n return locale_months[d.getMonth()];\n },\n c: d3_time_format(locale_dateTime),\n d: function(d, p) {\n return d3_time_formatPad(d.getDate(), p, 2);\n },\n e: function(d, p) {\n return d3_time_formatPad(d.getDate(), p, 2);\n },\n H: function(d, p) {\n return d3_time_formatPad(d.getHours(), p, 2);\n },\n I: function(d, p) {\n return d3_time_formatPad(d.getHours() % 12 || 12, p, 2);\n },\n j: function(d, p) {\n return d3_time_formatPad(1 + d3_time.dayOfYear(d), p, 3);\n },\n L: function(d, p) {\n return d3_time_formatPad(d.getMilliseconds(), p, 3);\n },\n m: function(d, p) {\n return d3_time_formatPad(d.getMonth() + 1, p, 2);\n },\n M: function(d, p) {\n return d3_time_formatPad(d.getMinutes(), p, 2);\n },\n p: function(d) {\n return locale_periods[+(d.getHours() >= 12)];\n },\n S: function(d, p) {\n return d3_time_formatPad(d.getSeconds(), p, 2);\n },\n U: function(d, p) {\n return d3_time_formatPad(d3_time.sundayOfYear(d), p, 2);\n },\n w: function(d) {\n return d.getDay();\n },\n W: function(d, p) {\n return d3_time_formatPad(d3_time.mondayOfYear(d), p, 2);\n },\n x: d3_time_format(locale_date),\n X: d3_time_format(locale_time),\n y: function(d, p) {\n return d3_time_formatPad(d.getFullYear() % 100, p, 2);\n },\n Y: function(d, p) {\n return d3_time_formatPad(d.getFullYear() % 1e4, p, 4);\n },\n Z: d3_time_zone,\n \"%\": function() {\n return \"%\";\n }\n };\n var d3_time_parsers = {\n a: d3_time_parseWeekdayAbbrev,\n A: d3_time_parseWeekday,\n b: d3_time_parseMonthAbbrev,\n B: d3_time_parseMonth,\n c: d3_time_parseLocaleFull,\n d: d3_time_parseDay,\n e: d3_time_parseDay,\n H: d3_time_parseHour24,\n I: d3_time_parseHour24,\n j: d3_time_parseDayOfYear,\n L: d3_time_parseMilliseconds,\n m: d3_time_parseMonthNumber,\n M: d3_time_parseMinutes,\n p: d3_time_parseAmPm,\n S: d3_time_parseSeconds,\n U: d3_time_parseWeekNumberSunday,\n w: d3_time_parseWeekdayNumber,\n W: d3_time_parseWeekNumberMonday,\n x: d3_time_parseLocaleDate,\n X: d3_time_parseLocaleTime,\n y: d3_time_parseYear,\n Y: d3_time_parseFullYear,\n Z: d3_time_parseZone,\n \"%\": d3_time_parseLiteralPercent\n };\n function d3_time_parseWeekdayAbbrev(date, string, i) {\n d3_time_dayAbbrevRe.lastIndex = 0;\n var n = d3_time_dayAbbrevRe.exec(string.slice(i));\n return n ? (date.w = d3_time_dayAbbrevLookup.get(n[0].toLowerCase()), i + n[0].length) : -1;\n }\n function d3_time_parseWeekday(date, string, i) {\n d3_time_dayRe.lastIndex = 0;\n var n = d3_time_dayRe.exec(string.slice(i));\n return n ? (date.w = d3_time_dayLookup.get(n[0].toLowerCase()), i + n[0].length) : -1;\n }\n function d3_time_parseMonthAbbrev(date, string, i) {\n d3_time_monthAbbrevRe.lastIndex = 0;\n var n = d3_time_monthAbbrevRe.exec(string.slice(i));\n return n ? (date.m = d3_time_monthAbbrevLookup.get(n[0].toLowerCase()), i + n[0].length) : -1;\n }\n function d3_time_parseMonth(date, string, i) {\n d3_time_monthRe.lastIndex = 0;\n var n = d3_time_monthRe.exec(string.slice(i));\n return n ? (date.m = d3_time_monthLookup.get(n[0].toLowerCase()), i + n[0].length) : -1;\n }\n function d3_time_parseLocaleFull(date, string, i) {\n return d3_time_parse(date, d3_time_formats.c.toString(), string, i);\n }\n function d3_time_parseLocaleDate(date, string, i) {\n return d3_time_parse(date, d3_time_formats.x.toString(), string, i);\n }\n function d3_time_parseLocaleTime(date, string, i) {\n return d3_time_parse(date, d3_time_formats.X.toString(), string, i);\n }\n function d3_time_parseAmPm(date, string, i) {\n var n = d3_time_periodLookup.get(string.slice(i, i += 2).toLowerCase());\n return n == null ? -1 : (date.p = n, i);\n }\n return d3_time_format;\n }\n var d3_time_formatPads = {\n \"-\": \"\",\n _: \" \",\n \"0\": \"0\"\n }, d3_time_numberRe = /^\\s*\\d+/, d3_time_percentRe = /^%/;\n function d3_time_formatPad(value, fill, width) {\n var sign = value < 0 ? \"-\" : \"\", string = (sign ? -value : value) + \"\", length = string.length;\n return sign + (length < width ? new Array(width - length + 1).join(fill) + string : string);\n }\n function d3_time_formatRe(names) {\n return new RegExp(\"^(?:\" + names.map(d3.requote).join(\"|\") + \")\", \"i\");\n }\n function d3_time_formatLookup(names) {\n var map = new d3_Map(), i = -1, n = names.length;\n while (++i < n) map.set(names[i].toLowerCase(), i);\n return map;\n }\n function d3_time_parseWeekdayNumber(date, string, i) {\n d3_time_numberRe.lastIndex = 0;\n var n = d3_time_numberRe.exec(string.slice(i, i + 1));\n return n ? (date.w = +n[0], i + n[0].length) : -1;\n }\n function d3_time_parseWeekNumberSunday(date, string, i) {\n d3_time_numberRe.lastIndex = 0;\n var n = d3_time_numberRe.exec(string.slice(i));\n return n ? (date.U = +n[0], i + n[0].length) : -1;\n }\n function d3_time_parseWeekNumberMonday(date, string, i) {\n d3_time_numberRe.lastIndex = 0;\n var n = d3_time_numberRe.exec(string.slice(i));\n return n ? (date.W = +n[0], i + n[0].length) : -1;\n }\n function d3_time_parseFullYear(date, string, i) {\n d3_time_numberRe.lastIndex = 0;\n var n = d3_time_numberRe.exec(string.slice(i, i + 4));\n return n ? (date.y = +n[0], i + n[0].length) : -1;\n }\n function d3_time_parseYear(date, string, i) {\n d3_time_numberRe.lastIndex = 0;\n var n = d3_time_numberRe.exec(string.slice(i, i + 2));\n return n ? (date.y = d3_time_expandYear(+n[0]), i + n[0].length) : -1;\n }\n function d3_time_parseZone(date, string, i) {\n return /^[+-]\\d{4}$/.test(string = string.slice(i, i + 5)) ? (date.Z = -string, \n i + 5) : -1;\n }\n function d3_time_expandYear(d) {\n return d + (d > 68 ? 1900 : 2e3);\n }\n function d3_time_parseMonthNumber(date, string, i) {\n d3_time_numberRe.lastIndex = 0;\n var n = d3_time_numberRe.exec(string.slice(i, i + 2));\n return n ? (date.m = n[0] - 1, i + n[0].length) : -1;\n }\n function d3_time_parseDay(date, string, i) {\n d3_time_numberRe.lastIndex = 0;\n var n = d3_time_numberRe.exec(string.slice(i, i + 2));\n return n ? (date.d = +n[0], i + n[0].length) : -1;\n }\n function d3_time_parseDayOfYear(date, string, i) {\n d3_time_numberRe.lastIndex = 0;\n var n = d3_time_numberRe.exec(string.slice(i, i + 3));\n return n ? (date.j = +n[0], i + n[0].length) : -1;\n }\n function d3_time_parseHour24(date, string, i) {\n d3_time_numberRe.lastIndex = 0;\n var n = d3_time_numberRe.exec(string.slice(i, i + 2));\n return n ? (date.H = +n[0], i + n[0].length) : -1;\n }\n function d3_time_parseMinutes(date, string, i) {\n d3_time_numberRe.lastIndex = 0;\n var n = d3_time_numberRe.exec(string.slice(i, i + 2));\n return n ? (date.M = +n[0], i + n[0].length) : -1;\n }\n function d3_time_parseSeconds(date, string, i) {\n d3_time_numberRe.lastIndex = 0;\n var n = d3_time_numberRe.exec(string.slice(i, i + 2));\n return n ? (date.S = +n[0], i + n[0].length) : -1;\n }\n function d3_time_parseMilliseconds(date, string, i) {\n d3_time_numberRe.lastIndex = 0;\n var n = d3_time_numberRe.exec(string.slice(i, i + 3));\n return n ? (date.L = +n[0], i + n[0].length) : -1;\n }\n function d3_time_zone(d) {\n var z = d.getTimezoneOffset(), zs = z > 0 ? \"-\" : \"+\", zh = abs(z) / 60 | 0, zm = abs(z) % 60;\n return zs + d3_time_formatPad(zh, \"0\", 2) + d3_time_formatPad(zm, \"0\", 2);\n }\n function d3_time_parseLiteralPercent(date, string, i) {\n d3_time_percentRe.lastIndex = 0;\n var n = d3_time_percentRe.exec(string.slice(i, i + 1));\n return n ? i + n[0].length : -1;\n }\n function d3_time_formatMulti(formats) {\n var n = formats.length, i = -1;\n while (++i < n) formats[i][0] = this(formats[i][0]);\n return function(date) {\n var i = 0, f = formats[i];\n while (!f[1](date)) f = formats[++i];\n return f[0](date);\n };\n }\n d3.locale = function(locale) {\n return {\n numberFormat: d3_locale_numberFormat(locale),\n timeFormat: d3_locale_timeFormat(locale)\n };\n };\n var d3_locale_enUS = d3.locale({\n decimal: \".\",\n thousands: \",\",\n grouping: [ 3 ],\n currency: [ \"$\", \"\" ],\n dateTime: \"%a %b %e %X %Y\",\n date: \"%m/%d/%Y\",\n time: \"%H:%M:%S\",\n periods: [ \"AM\", \"PM\" ],\n days: [ \"Sunday\", \"Monday\", \"Tuesday\", \"Wednesday\", \"Thursday\", \"Friday\", \"Saturday\" ],\n shortDays: [ \"Sun\", \"Mon\", \"Tue\", \"Wed\", \"Thu\", \"Fri\", \"Sat\" ],\n months: [ \"January\", \"February\", \"March\", \"April\", \"May\", \"June\", \"July\", \"August\", \"September\", \"October\", \"November\", \"December\" ],\n shortMonths: [ \"Jan\", \"Feb\", \"Mar\", \"Apr\", \"May\", \"Jun\", \"Jul\", \"Aug\", \"Sep\", \"Oct\", \"Nov\", \"Dec\" ]\n });\n d3.format = d3_locale_enUS.numberFormat;\n d3.geo = {};\n function d3_adder() {}\n d3_adder.prototype = {\n s: 0,\n t: 0,\n add: function(y) {\n d3_adderSum(y, this.t, d3_adderTemp);\n d3_adderSum(d3_adderTemp.s, this.s, this);\n if (this.s) this.t += d3_adderTemp.t; else this.s = d3_adderTemp.t;\n },\n reset: function() {\n this.s = this.t = 0;\n },\n valueOf: function() {\n return this.s;\n }\n };\n var d3_adderTemp = new d3_adder();\n function d3_adderSum(a, b, o) {\n var x = o.s = a + b, bv = x - a, av = x - bv;\n o.t = a - av + (b - bv);\n }\n d3.geo.stream = function(object, listener) {\n if (object && d3_geo_streamObjectType.hasOwnProperty(object.type)) {\n d3_geo_streamObjectType[object.type](object, listener);\n } else {\n d3_geo_streamGeometry(object, listener);\n }\n };\n function d3_geo_streamGeometry(geometry, listener) {\n if (geometry && d3_geo_streamGeometryType.hasOwnProperty(geometry.type)) {\n d3_geo_streamGeometryType[geometry.type](geometry, listener);\n }\n }\n var d3_geo_streamObjectType = {\n Feature: function(feature, listener) {\n d3_geo_streamGeometry(feature.geometry, listener);\n },\n FeatureCollection: function(object, listener) {\n var features = object.features, i = -1, n = features.length;\n while (++i < n) d3_geo_streamGeometry(features[i].geometry, listener);\n }\n };\n var d3_geo_streamGeometryType = {\n Sphere: function(object, listener) {\n listener.sphere();\n },\n Point: function(object, listener) {\n object = object.coordinates;\n listener.point(object[0], object[1], object[2]);\n },\n MultiPoint: function(object, listener) {\n var coordinates = object.coordinates, i = -1, n = coordinates.length;\n while (++i < n) object = coordinates[i], listener.point(object[0], object[1], object[2]);\n },\n LineString: function(object, listener) {\n d3_geo_streamLine(object.coordinates, listener, 0);\n },\n MultiLineString: function(object, listener) {\n var coordinates = object.coordinates, i = -1, n = coordinates.length;\n while (++i < n) d3_geo_streamLine(coordinates[i], listener, 0);\n },\n Polygon: function(object, listener) {\n d3_geo_streamPolygon(object.coordinates, listener);\n },\n MultiPolygon: function(object, listener) {\n var coordinates = object.coordinates, i = -1, n = coordinates.length;\n while (++i < n) d3_geo_streamPolygon(coordinates[i], listener);\n },\n GeometryCollection: function(object, listener) {\n var geometries = object.geometries, i = -1, n = geometries.length;\n while (++i < n) d3_geo_streamGeometry(geometries[i], listener);\n }\n };\n function d3_geo_streamLine(coordinates, listener, closed) {\n var i = -1, n = coordinates.length - closed, coordinate;\n listener.lineStart();\n while (++i < n) coordinate = coordinates[i], listener.point(coordinate[0], coordinate[1], coordinate[2]);\n listener.lineEnd();\n }\n function d3_geo_streamPolygon(coordinates, listener) {\n var i = -1, n = coordinates.length;\n listener.polygonStart();\n while (++i < n) d3_geo_streamLine(coordinates[i], listener, 1);\n listener.polygonEnd();\n }\n d3.geo.area = function(object) {\n d3_geo_areaSum = 0;\n d3.geo.stream(object, d3_geo_area);\n return d3_geo_areaSum;\n };\n var d3_geo_areaSum, d3_geo_areaRingSum = new d3_adder();\n var d3_geo_area = {\n sphere: function() {\n d3_geo_areaSum += 4 * π;\n },\n point: d3_noop,\n lineStart: d3_noop,\n lineEnd: d3_noop,\n polygonStart: function() {\n d3_geo_areaRingSum.reset();\n d3_geo_area.lineStart = d3_geo_areaRingStart;\n },\n polygonEnd: function() {\n var area = 2 * d3_geo_areaRingSum;\n d3_geo_areaSum += area < 0 ? 4 * π + area : area;\n d3_geo_area.lineStart = d3_geo_area.lineEnd = d3_geo_area.point = d3_noop;\n }\n };\n function d3_geo_areaRingStart() {\n var λ00, φ00, λ0, cosφ0, sinφ0;\n d3_geo_area.point = function(λ, φ) {\n d3_geo_area.point = nextPoint;\n λ0 = (λ00 = λ) * d3_radians, cosφ0 = Math.cos(φ = (φ00 = φ) * d3_radians / 2 + π / 4), \n sinφ0 = Math.sin(φ);\n };\n function nextPoint(λ, φ) {\n λ *= d3_radians;\n φ = φ * d3_radians / 2 + π / 4;\n var dλ = λ - λ0, sdλ = dλ >= 0 ? 1 : -1, adλ = sdλ * dλ, cosφ = Math.cos(φ), sinφ = Math.sin(φ), k = sinφ0 * sinφ, u = cosφ0 * cosφ + k * Math.cos(adλ), v = k * sdλ * Math.sin(adλ);\n d3_geo_areaRingSum.add(Math.atan2(v, u));\n λ0 = λ, cosφ0 = cosφ, sinφ0 = sinφ;\n }\n d3_geo_area.lineEnd = function() {\n nextPoint(λ00, φ00);\n };\n }\n function d3_geo_cartesian(spherical) {\n var λ = spherical[0], φ = spherical[1], cosφ = Math.cos(φ);\n return [ cosφ * Math.cos(λ), cosφ * Math.sin(λ), Math.sin(φ) ];\n }\n function d3_geo_cartesianDot(a, b) {\n return a[0] * b[0] + a[1] * b[1] + a[2] * b[2];\n }\n function d3_geo_cartesianCross(a, b) {\n return [ a[1] * b[2] - a[2] * b[1], a[2] * b[0] - a[0] * b[2], a[0] * b[1] - a[1] * b[0] ];\n }\n function d3_geo_cartesianAdd(a, b) {\n a[0] += b[0];\n a[1] += b[1];\n a[2] += b[2];\n }\n function d3_geo_cartesianScale(vector, k) {\n return [ vector[0] * k, vector[1] * k, vector[2] * k ];\n }\n function d3_geo_cartesianNormalize(d) {\n var l = Math.sqrt(d[0] * d[0] + d[1] * d[1] + d[2] * d[2]);\n d[0] /= l;\n d[1] /= l;\n d[2] /= l;\n }\n function d3_geo_spherical(cartesian) {\n return [ Math.atan2(cartesian[1], cartesian[0]), d3_asin(cartesian[2]) ];\n }\n function d3_geo_sphericalEqual(a, b) {\n return abs(a[0] - b[0]) < ε && abs(a[1] - b[1]) < ε;\n }\n d3.geo.bounds = function() {\n var λ0, φ0, λ1, φ1, λ_, λ__, φ__, p0, dλSum, ranges, range;\n var bound = {\n point: point,\n lineStart: lineStart,\n lineEnd: lineEnd,\n polygonStart: function() {\n bound.point = ringPoint;\n bound.lineStart = ringStart;\n bound.lineEnd = ringEnd;\n dλSum = 0;\n d3_geo_area.polygonStart();\n },\n polygonEnd: function() {\n d3_geo_area.polygonEnd();\n bound.point = point;\n bound.lineStart = lineStart;\n bound.lineEnd = lineEnd;\n if (d3_geo_areaRingSum < 0) λ0 = -(λ1 = 180), φ0 = -(φ1 = 90); else if (dλSum > ε) φ1 = 90; else if (dλSum < -ε) φ0 = -90;\n range[0] = λ0, range[1] = λ1;\n }\n };\n function point(λ, φ) {\n ranges.push(range = [ λ0 = λ, λ1 = λ ]);\n if (φ < φ0) φ0 = φ;\n if (φ > φ1) φ1 = φ;\n }\n function linePoint(λ, φ) {\n var p = d3_geo_cartesian([ λ * d3_radians, φ * d3_radians ]);\n if (p0) {\n var normal = d3_geo_cartesianCross(p0, p), equatorial = [ normal[1], -normal[0], 0 ], inflection = d3_geo_cartesianCross(equatorial, normal);\n d3_geo_cartesianNormalize(inflection);\n inflection = d3_geo_spherical(inflection);\n var dλ = λ - λ_, s = dλ > 0 ? 1 : -1, λi = inflection[0] * d3_degrees * s, antimeridian = abs(dλ) > 180;\n if (antimeridian ^ (s * λ_ < λi && λi < s * λ)) {\n var φi = inflection[1] * d3_degrees;\n if (φi > φ1) φ1 = φi;\n } else if (λi = (λi + 360) % 360 - 180, antimeridian ^ (s * λ_ < λi && λi < s * λ)) {\n var φi = -inflection[1] * d3_degrees;\n if (φi < φ0) φ0 = φi;\n } else {\n if (φ < φ0) φ0 = φ;\n if (φ > φ1) φ1 = φ;\n }\n if (antimeridian) {\n if (λ < λ_) {\n if (angle(λ0, λ) > angle(λ0, λ1)) λ1 = λ;\n } else {\n if (angle(λ, λ1) > angle(λ0, λ1)) λ0 = λ;\n }\n } else {\n if (λ1 >= λ0) {\n if (λ < λ0) λ0 = λ;\n if (λ > λ1) λ1 = λ;\n } else {\n if (λ > λ_) {\n if (angle(λ0, λ) > angle(λ0, λ1)) λ1 = λ;\n } else {\n if (angle(λ, λ1) > angle(λ0, λ1)) λ0 = λ;\n }\n }\n }\n } else {\n point(λ, φ);\n }\n p0 = p, λ_ = λ;\n }\n function lineStart() {\n bound.point = linePoint;\n }\n function lineEnd() {\n range[0] = λ0, range[1] = λ1;\n bound.point = point;\n p0 = null;\n }\n function ringPoint(λ, φ) {\n if (p0) {\n var dλ = λ - λ_;\n dλSum += abs(dλ) > 180 ? dλ + (dλ > 0 ? 360 : -360) : dλ;\n } else λ__ = λ, φ__ = φ;\n d3_geo_area.point(λ, φ);\n linePoint(λ, φ);\n }\n function ringStart() {\n d3_geo_area.lineStart();\n }\n function ringEnd() {\n ringPoint(λ__, φ__);\n d3_geo_area.lineEnd();\n if (abs(dλSum) > ε) λ0 = -(λ1 = 180);\n range[0] = λ0, range[1] = λ1;\n p0 = null;\n }\n function angle(λ0, λ1) {\n return (λ1 -= λ0) < 0 ? λ1 + 360 : λ1;\n }\n function compareRanges(a, b) {\n return a[0] - b[0];\n }\n function withinRange(x, range) {\n return range[0] <= range[1] ? range[0] <= x && x <= range[1] : x < range[0] || range[1] < x;\n }\n return function(feature) {\n φ1 = λ1 = -(λ0 = φ0 = Infinity);\n ranges = [];\n d3.geo.stream(feature, bound);\n var n = ranges.length;\n if (n) {\n ranges.sort(compareRanges);\n for (var i = 1, a = ranges[0], b, merged = [ a ]; i < n; ++i) {\n b = ranges[i];\n if (withinRange(b[0], a) || withinRange(b[1], a)) {\n if (angle(a[0], b[1]) > angle(a[0], a[1])) a[1] = b[1];\n if (angle(b[0], a[1]) > angle(a[0], a[1])) a[0] = b[0];\n } else {\n merged.push(a = b);\n }\n }\n var best = -Infinity, dλ;\n for (var n = merged.length - 1, i = 0, a = merged[n], b; i <= n; a = b, ++i) {\n b = merged[i];\n if ((dλ = angle(a[1], b[0])) > best) best = dλ, λ0 = b[0], λ1 = a[1];\n }\n }\n ranges = range = null;\n return λ0 === Infinity || φ0 === Infinity ? [ [ NaN, NaN ], [ NaN, NaN ] ] : [ [ λ0, φ0 ], [ λ1, φ1 ] ];\n };\n }();\n d3.geo.centroid = function(object) {\n d3_geo_centroidW0 = d3_geo_centroidW1 = d3_geo_centroidX0 = d3_geo_centroidY0 = d3_geo_centroidZ0 = d3_geo_centroidX1 = d3_geo_centroidY1 = d3_geo_centroidZ1 = d3_geo_centroidX2 = d3_geo_centroidY2 = d3_geo_centroidZ2 = 0;\n d3.geo.stream(object, d3_geo_centroid);\n var x = d3_geo_centroidX2, y = d3_geo_centroidY2, z = d3_geo_centroidZ2, m = x * x + y * y + z * z;\n if (m < ε2) {\n x = d3_geo_centroidX1, y = d3_geo_centroidY1, z = d3_geo_centroidZ1;\n if (d3_geo_centroidW1 < ε) x = d3_geo_centroidX0, y = d3_geo_centroidY0, z = d3_geo_centroidZ0;\n m = x * x + y * y + z * z;\n if (m < ε2) return [ NaN, NaN ];\n }\n return [ Math.atan2(y, x) * d3_degrees, d3_asin(z / Math.sqrt(m)) * d3_degrees ];\n };\n var d3_geo_centroidW0, d3_geo_centroidW1, d3_geo_centroidX0, d3_geo_centroidY0, d3_geo_centroidZ0, d3_geo_centroidX1, d3_geo_centroidY1, d3_geo_centroidZ1, d3_geo_centroidX2, d3_geo_centroidY2, d3_geo_centroidZ2;\n var d3_geo_centroid = {\n sphere: d3_noop,\n point: d3_geo_centroidPoint,\n lineStart: d3_geo_centroidLineStart,\n lineEnd: d3_geo_centroidLineEnd,\n polygonStart: function() {\n d3_geo_centroid.lineStart = d3_geo_centroidRingStart;\n },\n polygonEnd: function() {\n d3_geo_centroid.lineStart = d3_geo_centroidLineStart;\n }\n };\n function d3_geo_centroidPoint(λ, φ) {\n λ *= d3_radians;\n var cosφ = Math.cos(φ *= d3_radians);\n d3_geo_centroidPointXYZ(cosφ * Math.cos(λ), cosφ * Math.sin(λ), Math.sin(φ));\n }\n function d3_geo_centroidPointXYZ(x, y, z) {\n ++d3_geo_centroidW0;\n d3_geo_centroidX0 += (x - d3_geo_centroidX0) / d3_geo_centroidW0;\n d3_geo_centroidY0 += (y - d3_geo_centroidY0) / d3_geo_centroidW0;\n d3_geo_centroidZ0 += (z - d3_geo_centroidZ0) / d3_geo_centroidW0;\n }\n function d3_geo_centroidLineStart() {\n var x0, y0, z0;\n d3_geo_centroid.point = function(λ, φ) {\n λ *= d3_radians;\n var cosφ = Math.cos(φ *= d3_radians);\n x0 = cosφ * Math.cos(λ);\n y0 = cosφ * Math.sin(λ);\n z0 = Math.sin(φ);\n d3_geo_centroid.point = nextPoint;\n d3_geo_centroidPointXYZ(x0, y0, z0);\n };\n function nextPoint(λ, φ) {\n λ *= d3_radians;\n var cosφ = Math.cos(φ *= d3_radians), x = cosφ * Math.cos(λ), y = cosφ * Math.sin(λ), z = Math.sin(φ), w = Math.atan2(Math.sqrt((w = y0 * z - z0 * y) * w + (w = z0 * x - x0 * z) * w + (w = x0 * y - y0 * x) * w), x0 * x + y0 * y + z0 * z);\n d3_geo_centroidW1 += w;\n d3_geo_centroidX1 += w * (x0 + (x0 = x));\n d3_geo_centroidY1 += w * (y0 + (y0 = y));\n d3_geo_centroidZ1 += w * (z0 + (z0 = z));\n d3_geo_centroidPointXYZ(x0, y0, z0);\n }\n }\n function d3_geo_centroidLineEnd() {\n d3_geo_centroid.point = d3_geo_centroidPoint;\n }\n function d3_geo_centroidRingStart() {\n var λ00, φ00, x0, y0, z0;\n d3_geo_centroid.point = function(λ, φ) {\n λ00 = λ, φ00 = φ;\n d3_geo_centroid.point = nextPoint;\n λ *= d3_radians;\n var cosφ = Math.cos(φ *= d3_radians);\n x0 = cosφ * Math.cos(λ);\n y0 = cosφ * Math.sin(λ);\n z0 = Math.sin(φ);\n d3_geo_centroidPointXYZ(x0, y0, z0);\n };\n d3_geo_centroid.lineEnd = function() {\n nextPoint(λ00, φ00);\n d3_geo_centroid.lineEnd = d3_geo_centroidLineEnd;\n d3_geo_centroid.point = d3_geo_centroidPoint;\n };\n function nextPoint(λ, φ) {\n λ *= d3_radians;\n var cosφ = Math.cos(φ *= d3_radians), x = cosφ * Math.cos(λ), y = cosφ * Math.sin(λ), z = Math.sin(φ), cx = y0 * z - z0 * y, cy = z0 * x - x0 * z, cz = x0 * y - y0 * x, m = Math.sqrt(cx * cx + cy * cy + cz * cz), u = x0 * x + y0 * y + z0 * z, v = m && -d3_acos(u) / m, w = Math.atan2(m, u);\n d3_geo_centroidX2 += v * cx;\n d3_geo_centroidY2 += v * cy;\n d3_geo_centroidZ2 += v * cz;\n d3_geo_centroidW1 += w;\n d3_geo_centroidX1 += w * (x0 + (x0 = x));\n d3_geo_centroidY1 += w * (y0 + (y0 = y));\n d3_geo_centroidZ1 += w * (z0 + (z0 = z));\n d3_geo_centroidPointXYZ(x0, y0, z0);\n }\n }\n function d3_geo_compose(a, b) {\n function compose(x, y) {\n return x = a(x, y), b(x[0], x[1]);\n }\n if (a.invert && b.invert) compose.invert = function(x, y) {\n return x = b.invert(x, y), x && a.invert(x[0], x[1]);\n };\n return compose;\n }\n function d3_true() {\n return true;\n }\n function d3_geo_clipPolygon(segments, compare, clipStartInside, interpolate, listener) {\n var subject = [], clip = [];\n segments.forEach(function(segment) {\n if ((n = segment.length - 1) <= 0) return;\n var n, p0 = segment[0], p1 = segment[n];\n if (d3_geo_sphericalEqual(p0, p1)) {\n listener.lineStart();\n for (var i = 0; i < n; ++i) listener.point((p0 = segment[i])[0], p0[1]);\n listener.lineEnd();\n return;\n }\n var a = new d3_geo_clipPolygonIntersection(p0, segment, null, true), b = new d3_geo_clipPolygonIntersection(p0, null, a, false);\n a.o = b;\n subject.push(a);\n clip.push(b);\n a = new d3_geo_clipPolygonIntersection(p1, segment, null, false);\n b = new d3_geo_clipPolygonIntersection(p1, null, a, true);\n a.o = b;\n subject.push(a);\n clip.push(b);\n });\n clip.sort(compare);\n d3_geo_clipPolygonLinkCircular(subject);\n d3_geo_clipPolygonLinkCircular(clip);\n if (!subject.length) return;\n for (var i = 0, entry = clipStartInside, n = clip.length; i < n; ++i) {\n clip[i].e = entry = !entry;\n }\n var start = subject[0], points, point;\n while (1) {\n var current = start, isSubject = true;\n while (current.v) if ((current = current.n) === start) return;\n points = current.z;\n listener.lineStart();\n do {\n current.v = current.o.v = true;\n if (current.e) {\n if (isSubject) {\n for (var i = 0, n = points.length; i < n; ++i) listener.point((point = points[i])[0], point[1]);\n } else {\n interpolate(current.x, current.n.x, 1, listener);\n }\n current = current.n;\n } else {\n if (isSubject) {\n points = current.p.z;\n for (var i = points.length - 1; i >= 0; --i) listener.point((point = points[i])[0], point[1]);\n } else {\n interpolate(current.x, current.p.x, -1, listener);\n }\n current = current.p;\n }\n current = current.o;\n points = current.z;\n isSubject = !isSubject;\n } while (!current.v);\n listener.lineEnd();\n }\n }\n function d3_geo_clipPolygonLinkCircular(array) {\n if (!(n = array.length)) return;\n var n, i = 0, a = array[0], b;\n while (++i < n) {\n a.n = b = array[i];\n b.p = a;\n a = b;\n }\n a.n = b = array[0];\n b.p = a;\n }\n function d3_geo_clipPolygonIntersection(point, points, other, entry) {\n this.x = point;\n this.z = points;\n this.o = other;\n this.e = entry;\n this.v = false;\n this.n = this.p = null;\n }\n function d3_geo_clip(pointVisible, clipLine, interpolate, clipStart) {\n return function(rotate, listener) {\n var line = clipLine(listener), rotatedClipStart = rotate.invert(clipStart[0], clipStart[1]);\n var clip = {\n point: point,\n lineStart: lineStart,\n lineEnd: lineEnd,\n polygonStart: function() {\n clip.point = pointRing;\n clip.lineStart = ringStart;\n clip.lineEnd = ringEnd;\n segments = [];\n polygon = [];\n },\n polygonEnd: function() {\n clip.point = point;\n clip.lineStart = lineStart;\n clip.lineEnd = lineEnd;\n segments = d3.merge(segments);\n var clipStartInside = d3_geo_pointInPolygon(rotatedClipStart, polygon);\n if (segments.length) {\n if (!polygonStarted) listener.polygonStart(), polygonStarted = true;\n d3_geo_clipPolygon(segments, d3_geo_clipSort, clipStartInside, interpolate, listener);\n } else if (clipStartInside) {\n if (!polygonStarted) listener.polygonStart(), polygonStarted = true;\n listener.lineStart();\n interpolate(null, null, 1, listener);\n listener.lineEnd();\n }\n if (polygonStarted) listener.polygonEnd(), polygonStarted = false;\n segments = polygon = null;\n },\n sphere: function() {\n listener.polygonStart();\n listener.lineStart();\n interpolate(null, null, 1, listener);\n listener.lineEnd();\n listener.polygonEnd();\n }\n };\n function point(λ, φ) {\n var point = rotate(λ, φ);\n if (pointVisible(λ = point[0], φ = point[1])) listener.point(λ, φ);\n }\n function pointLine(λ, φ) {\n var point = rotate(λ, φ);\n line.point(point[0], point[1]);\n }\n function lineStart() {\n clip.point = pointLine;\n line.lineStart();\n }\n function lineEnd() {\n clip.point = point;\n line.lineEnd();\n }\n var segments;\n var buffer = d3_geo_clipBufferListener(), ringListener = clipLine(buffer), polygonStarted = false, polygon, ring;\n function pointRing(λ, φ) {\n ring.push([ λ, φ ]);\n var point = rotate(λ, φ);\n ringListener.point(point[0], point[1]);\n }\n function ringStart() {\n ringListener.lineStart();\n ring = [];\n }\n function ringEnd() {\n pointRing(ring[0][0], ring[0][1]);\n ringListener.lineEnd();\n var clean = ringListener.clean(), ringSegments = buffer.buffer(), segment, n = ringSegments.length;\n ring.pop();\n polygon.push(ring);\n ring = null;\n if (!n) return;\n if (clean & 1) {\n segment = ringSegments[0];\n var n = segment.length - 1, i = -1, point;\n if (n > 0) {\n if (!polygonStarted) listener.polygonStart(), polygonStarted = true;\n listener.lineStart();\n while (++i < n) listener.point((point = segment[i])[0], point[1]);\n listener.lineEnd();\n }\n return;\n }\n if (n > 1 && clean & 2) ringSegments.push(ringSegments.pop().concat(ringSegments.shift()));\n segments.push(ringSegments.filter(d3_geo_clipSegmentLength1));\n }\n return clip;\n };\n }\n function d3_geo_clipSegmentLength1(segment) {\n return segment.length > 1;\n }\n function d3_geo_clipBufferListener() {\n var lines = [], line;\n return {\n lineStart: function() {\n lines.push(line = []);\n },\n point: function(λ, φ) {\n line.push([ λ, φ ]);\n },\n lineEnd: d3_noop,\n buffer: function() {\n var buffer = lines;\n lines = [];\n line = null;\n return buffer;\n },\n rejoin: function() {\n if (lines.length > 1) lines.push(lines.pop().concat(lines.shift()));\n }\n };\n }\n function d3_geo_clipSort(a, b) {\n return ((a = a.x)[0] < 0 ? a[1] - halfπ - ε : halfπ - a[1]) - ((b = b.x)[0] < 0 ? b[1] - halfπ - ε : halfπ - b[1]);\n }\n var d3_geo_clipAntimeridian = d3_geo_clip(d3_true, d3_geo_clipAntimeridianLine, d3_geo_clipAntimeridianInterpolate, [ -π, -π / 2 ]);\n function d3_geo_clipAntimeridianLine(listener) {\n var λ0 = NaN, φ0 = NaN, sλ0 = NaN, clean;\n return {\n lineStart: function() {\n listener.lineStart();\n clean = 1;\n },\n point: function(λ1, φ1) {\n var sλ1 = λ1 > 0 ? π : -π, dλ = abs(λ1 - λ0);\n if (abs(dλ - π) < ε) {\n listener.point(λ0, φ0 = (φ0 + φ1) / 2 > 0 ? halfπ : -halfπ);\n listener.point(sλ0, φ0);\n listener.lineEnd();\n listener.lineStart();\n listener.point(sλ1, φ0);\n listener.point(λ1, φ0);\n clean = 0;\n } else if (sλ0 !== sλ1 && dλ >= π) {\n if (abs(λ0 - sλ0) < ε) λ0 -= sλ0 * ε;\n if (abs(λ1 - sλ1) < ε) λ1 -= sλ1 * ε;\n φ0 = d3_geo_clipAntimeridianIntersect(λ0, φ0, λ1, φ1);\n listener.point(sλ0, φ0);\n listener.lineEnd();\n listener.lineStart();\n listener.point(sλ1, φ0);\n clean = 0;\n }\n listener.point(λ0 = λ1, φ0 = φ1);\n sλ0 = sλ1;\n },\n lineEnd: function() {\n listener.lineEnd();\n λ0 = φ0 = NaN;\n },\n clean: function() {\n return 2 - clean;\n }\n };\n }\n function d3_geo_clipAntimeridianIntersect(λ0, φ0, λ1, φ1) {\n var cosφ0, cosφ1, sinλ0_λ1 = Math.sin(λ0 - λ1);\n return abs(sinλ0_λ1) > ε ? Math.atan((Math.sin(φ0) * (cosφ1 = Math.cos(φ1)) * Math.sin(λ1) - Math.sin(φ1) * (cosφ0 = Math.cos(φ0)) * Math.sin(λ0)) / (cosφ0 * cosφ1 * sinλ0_λ1)) : (φ0 + φ1) / 2;\n }\n function d3_geo_clipAntimeridianInterpolate(from, to, direction, listener) {\n var φ;\n if (from == null) {\n φ = direction * halfπ;\n listener.point(-π, φ);\n listener.point(0, φ);\n listener.point(π, φ);\n listener.point(π, 0);\n listener.point(π, -φ);\n listener.point(0, -φ);\n listener.point(-π, -φ);\n listener.point(-π, 0);\n listener.point(-π, φ);\n } else if (abs(from[0] - to[0]) > ε) {\n var s = from[0] < to[0] ? π : -π;\n φ = direction * s / 2;\n listener.point(-s, φ);\n listener.point(0, φ);\n listener.point(s, φ);\n } else {\n listener.point(to[0], to[1]);\n }\n }\n function d3_geo_pointInPolygon(point, polygon) {\n var meridian = point[0], parallel = point[1], meridianNormal = [ Math.sin(meridian), -Math.cos(meridian), 0 ], polarAngle = 0, winding = 0;\n d3_geo_areaRingSum.reset();\n for (var i = 0, n = polygon.length; i < n; ++i) {\n var ring = polygon[i], m = ring.length;\n if (!m) continue;\n var point0 = ring[0], λ0 = point0[0], φ0 = point0[1] / 2 + π / 4, sinφ0 = Math.sin(φ0), cosφ0 = Math.cos(φ0), j = 1;\n while (true) {\n if (j === m) j = 0;\n point = ring[j];\n var λ = point[0], φ = point[1] / 2 + π / 4, sinφ = Math.sin(φ), cosφ = Math.cos(φ), dλ = λ - λ0, sdλ = dλ >= 0 ? 1 : -1, adλ = sdλ * dλ, antimeridian = adλ > π, k = sinφ0 * sinφ;\n d3_geo_areaRingSum.add(Math.atan2(k * sdλ * Math.sin(adλ), cosφ0 * cosφ + k * Math.cos(adλ)));\n polarAngle += antimeridian ? dλ + sdλ * τ : dλ;\n if (antimeridian ^ λ0 >= meridian ^ λ >= meridian) {\n var arc = d3_geo_cartesianCross(d3_geo_cartesian(point0), d3_geo_cartesian(point));\n d3_geo_cartesianNormalize(arc);\n var intersection = d3_geo_cartesianCross(meridianNormal, arc);\n d3_geo_cartesianNormalize(intersection);\n var φarc = (antimeridian ^ dλ >= 0 ? -1 : 1) * d3_asin(intersection[2]);\n if (parallel > φarc || parallel === φarc && (arc[0] || arc[1])) {\n winding += antimeridian ^ dλ >= 0 ? 1 : -1;\n }\n }\n if (!j++) break;\n λ0 = λ, sinφ0 = sinφ, cosφ0 = cosφ, point0 = point;\n }\n }\n return (polarAngle < -ε || polarAngle < ε && d3_geo_areaRingSum < 0) ^ winding & 1;\n }\n function d3_geo_clipCircle(radius) {\n var cr = Math.cos(radius), smallRadius = cr > 0, notHemisphere = abs(cr) > ε, interpolate = d3_geo_circleInterpolate(radius, 6 * d3_radians);\n return d3_geo_clip(visible, clipLine, interpolate, smallRadius ? [ 0, -radius ] : [ -π, radius - π ]);\n function visible(λ, φ) {\n return Math.cos(λ) * Math.cos(φ) > cr;\n }\n function clipLine(listener) {\n var point0, c0, v0, v00, clean;\n return {\n lineStart: function() {\n v00 = v0 = false;\n clean = 1;\n },\n point: function(λ, φ) {\n var point1 = [ λ, φ ], point2, v = visible(λ, φ), c = smallRadius ? v ? 0 : code(λ, φ) : v ? code(λ + (λ < 0 ? π : -π), φ) : 0;\n if (!point0 && (v00 = v0 = v)) listener.lineStart();\n if (v !== v0) {\n point2 = intersect(point0, point1);\n if (d3_geo_sphericalEqual(point0, point2) || d3_geo_sphericalEqual(point1, point2)) {\n point1[0] += ε;\n point1[1] += ε;\n v = visible(point1[0], point1[1]);\n }\n }\n if (v !== v0) {\n clean = 0;\n if (v) {\n listener.lineStart();\n point2 = intersect(point1, point0);\n listener.point(point2[0], point2[1]);\n } else {\n point2 = intersect(point0, point1);\n listener.point(point2[0], point2[1]);\n listener.lineEnd();\n }\n point0 = point2;\n } else if (notHemisphere && point0 && smallRadius ^ v) {\n var t;\n if (!(c & c0) && (t = intersect(point1, point0, true))) {\n clean = 0;\n if (smallRadius) {\n listener.lineStart();\n listener.point(t[0][0], t[0][1]);\n listener.point(t[1][0], t[1][1]);\n listener.lineEnd();\n } else {\n listener.point(t[1][0], t[1][1]);\n listener.lineEnd();\n listener.lineStart();\n listener.point(t[0][0], t[0][1]);\n }\n }\n }\n if (v && (!point0 || !d3_geo_sphericalEqual(point0, point1))) {\n listener.point(point1[0], point1[1]);\n }\n point0 = point1, v0 = v, c0 = c;\n },\n lineEnd: function() {\n if (v0) listener.lineEnd();\n point0 = null;\n },\n clean: function() {\n return clean | (v00 && v0) << 1;\n }\n };\n }\n function intersect(a, b, two) {\n var pa = d3_geo_cartesian(a), pb = d3_geo_cartesian(b);\n var n1 = [ 1, 0, 0 ], n2 = d3_geo_cartesianCross(pa, pb), n2n2 = d3_geo_cartesianDot(n2, n2), n1n2 = n2[0], determinant = n2n2 - n1n2 * n1n2;\n if (!determinant) return !two && a;\n var c1 = cr * n2n2 / determinant, c2 = -cr * n1n2 / determinant, n1xn2 = d3_geo_cartesianCross(n1, n2), A = d3_geo_cartesianScale(n1, c1), B = d3_geo_cartesianScale(n2, c2);\n d3_geo_cartesianAdd(A, B);\n var u = n1xn2, w = d3_geo_cartesianDot(A, u), uu = d3_geo_cartesianDot(u, u), t2 = w * w - uu * (d3_geo_cartesianDot(A, A) - 1);\n if (t2 < 0) return;\n var t = Math.sqrt(t2), q = d3_geo_cartesianScale(u, (-w - t) / uu);\n d3_geo_cartesianAdd(q, A);\n q = d3_geo_spherical(q);\n if (!two) return q;\n var λ0 = a[0], λ1 = b[0], φ0 = a[1], φ1 = b[1], z;\n if (λ1 < λ0) z = λ0, λ0 = λ1, λ1 = z;\n var δλ = λ1 - λ0, polar = abs(δλ - π) < ε, meridian = polar || δλ < ε;\n if (!polar && φ1 < φ0) z = φ0, φ0 = φ1, φ1 = z;\n if (meridian ? polar ? φ0 + φ1 > 0 ^ q[1] < (abs(q[0] - λ0) < ε ? φ0 : φ1) : φ0 <= q[1] && q[1] <= φ1 : δλ > π ^ (λ0 <= q[0] && q[0] <= λ1)) {\n var q1 = d3_geo_cartesianScale(u, (-w + t) / uu);\n d3_geo_cartesianAdd(q1, A);\n return [ q, d3_geo_spherical(q1) ];\n }\n }\n function code(λ, φ) {\n var r = smallRadius ? radius : π - radius, code = 0;\n if (λ < -r) code |= 1; else if (λ > r) code |= 2;\n if (φ < -r) code |= 4; else if (φ > r) code |= 8;\n return code;\n }\n }\n function d3_geom_clipLine(x0, y0, x1, y1) {\n return function(line) {\n var a = line.a, b = line.b, ax = a.x, ay = a.y, bx = b.x, by = b.y, t0 = 0, t1 = 1, dx = bx - ax, dy = by - ay, r;\n r = x0 - ax;\n if (!dx && r > 0) return;\n r /= dx;\n if (dx < 0) {\n if (r < t0) return;\n if (r < t1) t1 = r;\n } else if (dx > 0) {\n if (r > t1) return;\n if (r > t0) t0 = r;\n }\n r = x1 - ax;\n if (!dx && r < 0) return;\n r /= dx;\n if (dx < 0) {\n if (r > t1) return;\n if (r > t0) t0 = r;\n } else if (dx > 0) {\n if (r < t0) return;\n if (r < t1) t1 = r;\n }\n r = y0 - ay;\n if (!dy && r > 0) return;\n r /= dy;\n if (dy < 0) {\n if (r < t0) return;\n if (r < t1) t1 = r;\n } else if (dy > 0) {\n if (r > t1) return;\n if (r > t0) t0 = r;\n }\n r = y1 - ay;\n if (!dy && r < 0) return;\n r /= dy;\n if (dy < 0) {\n if (r > t1) return;\n if (r > t0) t0 = r;\n } else if (dy > 0) {\n if (r < t0) return;\n if (r < t1) t1 = r;\n }\n if (t0 > 0) line.a = {\n x: ax + t0 * dx,\n y: ay + t0 * dy\n };\n if (t1 < 1) line.b = {\n x: ax + t1 * dx,\n y: ay + t1 * dy\n };\n return line;\n };\n }\n var d3_geo_clipExtentMAX = 1e9;\n d3.geo.clipExtent = function() {\n var x0, y0, x1, y1, stream, clip, clipExtent = {\n stream: function(output) {\n if (stream) stream.valid = false;\n stream = clip(output);\n stream.valid = true;\n return stream;\n },\n extent: function(_) {\n if (!arguments.length) return [ [ x0, y0 ], [ x1, y1 ] ];\n clip = d3_geo_clipExtent(x0 = +_[0][0], y0 = +_[0][1], x1 = +_[1][0], y1 = +_[1][1]);\n if (stream) stream.valid = false, stream = null;\n return clipExtent;\n }\n };\n return clipExtent.extent([ [ 0, 0 ], [ 960, 500 ] ]);\n };\n function d3_geo_clipExtent(x0, y0, x1, y1) {\n return function(listener) {\n var listener_ = listener, bufferListener = d3_geo_clipBufferListener(), clipLine = d3_geom_clipLine(x0, y0, x1, y1), segments, polygon, ring;\n var clip = {\n point: point,\n lineStart: lineStart,\n lineEnd: lineEnd,\n polygonStart: function() {\n listener = bufferListener;\n segments = [];\n polygon = [];\n clean = true;\n },\n polygonEnd: function() {\n listener = listener_;\n segments = d3.merge(segments);\n var clipStartInside = insidePolygon([ x0, y1 ]), inside = clean && clipStartInside, visible = segments.length;\n if (inside || visible) {\n listener.polygonStart();\n if (inside) {\n listener.lineStart();\n interpolate(null, null, 1, listener);\n listener.lineEnd();\n }\n if (visible) {\n d3_geo_clipPolygon(segments, compare, clipStartInside, interpolate, listener);\n }\n listener.polygonEnd();\n }\n segments = polygon = ring = null;\n }\n };\n function insidePolygon(p) {\n var wn = 0, n = polygon.length, y = p[1];\n for (var i = 0; i < n; ++i) {\n for (var j = 1, v = polygon[i], m = v.length, a = v[0], b; j < m; ++j) {\n b = v[j];\n if (a[1] <= y) {\n if (b[1] > y && d3_cross2d(a, b, p) > 0) ++wn;\n } else {\n if (b[1] <= y && d3_cross2d(a, b, p) < 0) --wn;\n }\n a = b;\n }\n }\n return wn !== 0;\n }\n function interpolate(from, to, direction, listener) {\n var a = 0, a1 = 0;\n if (from == null || (a = corner(from, direction)) !== (a1 = corner(to, direction)) || comparePoints(from, to) < 0 ^ direction > 0) {\n do {\n listener.point(a === 0 || a === 3 ? x0 : x1, a > 1 ? y1 : y0);\n } while ((a = (a + direction + 4) % 4) !== a1);\n } else {\n listener.point(to[0], to[1]);\n }\n }\n function pointVisible(x, y) {\n return x0 <= x && x <= x1 && y0 <= y && y <= y1;\n }\n function point(x, y) {\n if (pointVisible(x, y)) listener.point(x, y);\n }\n var x__, y__, v__, x_, y_, v_, first, clean;\n function lineStart() {\n clip.point = linePoint;\n if (polygon) polygon.push(ring = []);\n first = true;\n v_ = false;\n x_ = y_ = NaN;\n }\n function lineEnd() {\n if (segments) {\n linePoint(x__, y__);\n if (v__ && v_) bufferListener.rejoin();\n segments.push(bufferListener.buffer());\n }\n clip.point = point;\n if (v_) listener.lineEnd();\n }\n function linePoint(x, y) {\n x = Math.max(-d3_geo_clipExtentMAX, Math.min(d3_geo_clipExtentMAX, x));\n y = Math.max(-d3_geo_clipExtentMAX, Math.min(d3_geo_clipExtentMAX, y));\n var v = pointVisible(x, y);\n if (polygon) ring.push([ x, y ]);\n if (first) {\n x__ = x, y__ = y, v__ = v;\n first = false;\n if (v) {\n listener.lineStart();\n listener.point(x, y);\n }\n } else {\n if (v && v_) listener.point(x, y); else {\n var l = {\n a: {\n x: x_,\n y: y_\n },\n b: {\n x: x,\n y: y\n }\n };\n if (clipLine(l)) {\n if (!v_) {\n listener.lineStart();\n listener.point(l.a.x, l.a.y);\n }\n listener.point(l.b.x, l.b.y);\n if (!v) listener.lineEnd();\n clean = false;\n } else if (v) {\n listener.lineStart();\n listener.point(x, y);\n clean = false;\n }\n }\n }\n x_ = x, y_ = y, v_ = v;\n }\n return clip;\n };\n function corner(p, direction) {\n return abs(p[0] - x0) < ε ? direction > 0 ? 0 : 3 : abs(p[0] - x1) < ε ? direction > 0 ? 2 : 1 : abs(p[1] - y0) < ε ? direction > 0 ? 1 : 0 : direction > 0 ? 3 : 2;\n }\n function compare(a, b) {\n return comparePoints(a.x, b.x);\n }\n function comparePoints(a, b) {\n var ca = corner(a, 1), cb = corner(b, 1);\n return ca !== cb ? ca - cb : ca === 0 ? b[1] - a[1] : ca === 1 ? a[0] - b[0] : ca === 2 ? a[1] - b[1] : b[0] - a[0];\n }\n }\n function d3_geo_conic(projectAt) {\n var φ0 = 0, φ1 = π / 3, m = d3_geo_projectionMutator(projectAt), p = m(φ0, φ1);\n p.parallels = function(_) {\n if (!arguments.length) return [ φ0 / π * 180, φ1 / π * 180 ];\n return m(φ0 = _[0] * π / 180, φ1 = _[1] * π / 180);\n };\n return p;\n }\n function d3_geo_conicEqualArea(φ0, φ1) {\n var sinφ0 = Math.sin(φ0), n = (sinφ0 + Math.sin(φ1)) / 2, C = 1 + sinφ0 * (2 * n - sinφ0), ρ0 = Math.sqrt(C) / n;\n function forward(λ, φ) {\n var ρ = Math.sqrt(C - 2 * n * Math.sin(φ)) / n;\n return [ ρ * Math.sin(λ *= n), ρ0 - ρ * Math.cos(λ) ];\n }\n forward.invert = function(x, y) {\n var ρ0_y = ρ0 - y;\n return [ Math.atan2(x, ρ0_y) / n, d3_asin((C - (x * x + ρ0_y * ρ0_y) * n * n) / (2 * n)) ];\n };\n return forward;\n }\n (d3.geo.conicEqualArea = function() {\n return d3_geo_conic(d3_geo_conicEqualArea);\n }).raw = d3_geo_conicEqualArea;\n d3.geo.albers = function() {\n return d3.geo.conicEqualArea().rotate([ 96, 0 ]).center([ -.6, 38.7 ]).parallels([ 29.5, 45.5 ]).scale(1070);\n };\n d3.geo.albersUsa = function() {\n var lower48 = d3.geo.albers();\n var alaska = d3.geo.conicEqualArea().rotate([ 154, 0 ]).center([ -2, 58.5 ]).parallels([ 55, 65 ]);\n var hawaii = d3.geo.conicEqualArea().rotate([ 157, 0 ]).center([ -3, 19.9 ]).parallels([ 8, 18 ]);\n var point, pointStream = {\n point: function(x, y) {\n point = [ x, y ];\n }\n }, lower48Point, alaskaPoint, hawaiiPoint;\n function albersUsa(coordinates) {\n var x = coordinates[0], y = coordinates[1];\n point = null;\n (lower48Point(x, y), point) || (alaskaPoint(x, y), point) || hawaiiPoint(x, y);\n return point;\n }\n albersUsa.invert = function(coordinates) {\n var k = lower48.scale(), t = lower48.translate(), x = (coordinates[0] - t[0]) / k, y = (coordinates[1] - t[1]) / k;\n return (y >= .12 && y < .234 && x >= -.425 && x < -.214 ? alaska : y >= .166 && y < .234 && x >= -.214 && x < -.115 ? hawaii : lower48).invert(coordinates);\n };\n albersUsa.stream = function(stream) {\n var lower48Stream = lower48.stream(stream), alaskaStream = alaska.stream(stream), hawaiiStream = hawaii.stream(stream);\n return {\n point: function(x, y) {\n lower48Stream.point(x, y);\n alaskaStream.point(x, y);\n hawaiiStream.point(x, y);\n },\n sphere: function() {\n lower48Stream.sphere();\n alaskaStream.sphere();\n hawaiiStream.sphere();\n },\n lineStart: function() {\n lower48Stream.lineStart();\n alaskaStream.lineStart();\n hawaiiStream.lineStart();\n },\n lineEnd: function() {\n lower48Stream.lineEnd();\n alaskaStream.lineEnd();\n hawaiiStream.lineEnd();\n },\n polygonStart: function() {\n lower48Stream.polygonStart();\n alaskaStream.polygonStart();\n hawaiiStream.polygonStart();\n },\n polygonEnd: function() {\n lower48Stream.polygonEnd();\n alaskaStream.polygonEnd();\n hawaiiStream.polygonEnd();\n }\n };\n };\n albersUsa.precision = function(_) {\n if (!arguments.length) return lower48.precision();\n lower48.precision(_);\n alaska.precision(_);\n hawaii.precision(_);\n return albersUsa;\n };\n albersUsa.scale = function(_) {\n if (!arguments.length) return lower48.scale();\n lower48.scale(_);\n alaska.scale(_ * .35);\n hawaii.scale(_);\n return albersUsa.translate(lower48.translate());\n };\n albersUsa.translate = function(_) {\n if (!arguments.length) return lower48.translate();\n var k = lower48.scale(), x = +_[0], y = +_[1];\n lower48Point = lower48.translate(_).clipExtent([ [ x - .455 * k, y - .238 * k ], [ x + .455 * k, y + .238 * k ] ]).stream(pointStream).point;\n alaskaPoint = alaska.translate([ x - .307 * k, y + .201 * k ]).clipExtent([ [ x - .425 * k + ε, y + .12 * k + ε ], [ x - .214 * k - ε, y + .234 * k - ε ] ]).stream(pointStream).point;\n hawaiiPoint = hawaii.translate([ x - .205 * k, y + .212 * k ]).clipExtent([ [ x - .214 * k + ε, y + .166 * k + ε ], [ x - .115 * k - ε, y + .234 * k - ε ] ]).stream(pointStream).point;\n return albersUsa;\n };\n return albersUsa.scale(1070);\n };\n var d3_geo_pathAreaSum, d3_geo_pathAreaPolygon, d3_geo_pathArea = {\n point: d3_noop,\n lineStart: d3_noop,\n lineEnd: d3_noop,\n polygonStart: function() {\n d3_geo_pathAreaPolygon = 0;\n d3_geo_pathArea.lineStart = d3_geo_pathAreaRingStart;\n },\n polygonEnd: function() {\n d3_geo_pathArea.lineStart = d3_geo_pathArea.lineEnd = d3_geo_pathArea.point = d3_noop;\n d3_geo_pathAreaSum += abs(d3_geo_pathAreaPolygon / 2);\n }\n };\n function d3_geo_pathAreaRingStart() {\n var x00, y00, x0, y0;\n d3_geo_pathArea.point = function(x, y) {\n d3_geo_pathArea.point = nextPoint;\n x00 = x0 = x, y00 = y0 = y;\n };\n function nextPoint(x, y) {\n d3_geo_pathAreaPolygon += y0 * x - x0 * y;\n x0 = x, y0 = y;\n }\n d3_geo_pathArea.lineEnd = function() {\n nextPoint(x00, y00);\n };\n }\n var d3_geo_pathBoundsX0, d3_geo_pathBoundsY0, d3_geo_pathBoundsX1, d3_geo_pathBoundsY1;\n var d3_geo_pathBounds = {\n point: d3_geo_pathBoundsPoint,\n lineStart: d3_noop,\n lineEnd: d3_noop,\n polygonStart: d3_noop,\n polygonEnd: d3_noop\n };\n function d3_geo_pathBoundsPoint(x, y) {\n if (x < d3_geo_pathBoundsX0) d3_geo_pathBoundsX0 = x;\n if (x > d3_geo_pathBoundsX1) d3_geo_pathBoundsX1 = x;\n if (y < d3_geo_pathBoundsY0) d3_geo_pathBoundsY0 = y;\n if (y > d3_geo_pathBoundsY1) d3_geo_pathBoundsY1 = y;\n }\n function d3_geo_pathBuffer() {\n var pointCircle = d3_geo_pathBufferCircle(4.5), buffer = [];\n var stream = {\n point: point,\n lineStart: function() {\n stream.point = pointLineStart;\n },\n lineEnd: lineEnd,\n polygonStart: function() {\n stream.lineEnd = lineEndPolygon;\n },\n polygonEnd: function() {\n stream.lineEnd = lineEnd;\n stream.point = point;\n },\n pointRadius: function(_) {\n pointCircle = d3_geo_pathBufferCircle(_);\n return stream;\n },\n result: function() {\n if (buffer.length) {\n var result = buffer.join(\"\");\n buffer = [];\n return result;\n }\n }\n };\n function point(x, y) {\n buffer.push(\"M\", x, \",\", y, pointCircle);\n }\n function pointLineStart(x, y) {\n buffer.push(\"M\", x, \",\", y);\n stream.point = pointLine;\n }\n function pointLine(x, y) {\n buffer.push(\"L\", x, \",\", y);\n }\n function lineEnd() {\n stream.point = point;\n }\n function lineEndPolygon() {\n buffer.push(\"Z\");\n }\n return stream;\n }\n function d3_geo_pathBufferCircle(radius) {\n return \"m0,\" + radius + \"a\" + radius + \",\" + radius + \" 0 1,1 0,\" + -2 * radius + \"a\" + radius + \",\" + radius + \" 0 1,1 0,\" + 2 * radius + \"z\";\n }\n var d3_geo_pathCentroid = {\n point: d3_geo_pathCentroidPoint,\n lineStart: d3_geo_pathCentroidLineStart,\n lineEnd: d3_geo_pathCentroidLineEnd,\n polygonStart: function() {\n d3_geo_pathCentroid.lineStart = d3_geo_pathCentroidRingStart;\n },\n polygonEnd: function() {\n d3_geo_pathCentroid.point = d3_geo_pathCentroidPoint;\n d3_geo_pathCentroid.lineStart = d3_geo_pathCentroidLineStart;\n d3_geo_pathCentroid.lineEnd = d3_geo_pathCentroidLineEnd;\n }\n };\n function d3_geo_pathCentroidPoint(x, y) {\n d3_geo_centroidX0 += x;\n d3_geo_centroidY0 += y;\n ++d3_geo_centroidZ0;\n }\n function d3_geo_pathCentroidLineStart() {\n var x0, y0;\n d3_geo_pathCentroid.point = function(x, y) {\n d3_geo_pathCentroid.point = nextPoint;\n d3_geo_pathCentroidPoint(x0 = x, y0 = y);\n };\n function nextPoint(x, y) {\n var dx = x - x0, dy = y - y0, z = Math.sqrt(dx * dx + dy * dy);\n d3_geo_centroidX1 += z * (x0 + x) / 2;\n d3_geo_centroidY1 += z * (y0 + y) / 2;\n d3_geo_centroidZ1 += z;\n d3_geo_pathCentroidPoint(x0 = x, y0 = y);\n }\n }\n function d3_geo_pathCentroidLineEnd() {\n d3_geo_pathCentroid.point = d3_geo_pathCentroidPoint;\n }\n function d3_geo_pathCentroidRingStart() {\n var x00, y00, x0, y0;\n d3_geo_pathCentroid.point = function(x, y) {\n d3_geo_pathCentroid.point = nextPoint;\n d3_geo_pathCentroidPoint(x00 = x0 = x, y00 = y0 = y);\n };\n function nextPoint(x, y) {\n var dx = x - x0, dy = y - y0, z = Math.sqrt(dx * dx + dy * dy);\n d3_geo_centroidX1 += z * (x0 + x) / 2;\n d3_geo_centroidY1 += z * (y0 + y) / 2;\n d3_geo_centroidZ1 += z;\n z = y0 * x - x0 * y;\n d3_geo_centroidX2 += z * (x0 + x);\n d3_geo_centroidY2 += z * (y0 + y);\n d3_geo_centroidZ2 += z * 3;\n d3_geo_pathCentroidPoint(x0 = x, y0 = y);\n }\n d3_geo_pathCentroid.lineEnd = function() {\n nextPoint(x00, y00);\n };\n }\n function d3_geo_pathContext(context) {\n var pointRadius = 4.5;\n var stream = {\n point: point,\n lineStart: function() {\n stream.point = pointLineStart;\n },\n lineEnd: lineEnd,\n polygonStart: function() {\n stream.lineEnd = lineEndPolygon;\n },\n polygonEnd: function() {\n stream.lineEnd = lineEnd;\n stream.point = point;\n },\n pointRadius: function(_) {\n pointRadius = _;\n return stream;\n },\n result: d3_noop\n };\n function point(x, y) {\n context.moveTo(x + pointRadius, y);\n context.arc(x, y, pointRadius, 0, τ);\n }\n function pointLineStart(x, y) {\n context.moveTo(x, y);\n stream.point = pointLine;\n }\n function pointLine(x, y) {\n context.lineTo(x, y);\n }\n function lineEnd() {\n stream.point = point;\n }\n function lineEndPolygon() {\n context.closePath();\n }\n return stream;\n }\n function d3_geo_resample(project) {\n var δ2 = .5, cosMinDistance = Math.cos(30 * d3_radians), maxDepth = 16;\n function resample(stream) {\n return (maxDepth ? resampleRecursive : resampleNone)(stream);\n }\n function resampleNone(stream) {\n return d3_geo_transformPoint(stream, function(x, y) {\n x = project(x, y);\n stream.point(x[0], x[1]);\n });\n }\n function resampleRecursive(stream) {\n var λ00, φ00, x00, y00, a00, b00, c00, λ0, x0, y0, a0, b0, c0;\n var resample = {\n point: point,\n lineStart: lineStart,\n lineEnd: lineEnd,\n polygonStart: function() {\n stream.polygonStart();\n resample.lineStart = ringStart;\n },\n polygonEnd: function() {\n stream.polygonEnd();\n resample.lineStart = lineStart;\n }\n };\n function point(x, y) {\n x = project(x, y);\n stream.point(x[0], x[1]);\n }\n function lineStart() {\n x0 = NaN;\n resample.point = linePoint;\n stream.lineStart();\n }\n function linePoint(λ, φ) {\n var c = d3_geo_cartesian([ λ, φ ]), p = project(λ, φ);\n resampleLineTo(x0, y0, λ0, a0, b0, c0, x0 = p[0], y0 = p[1], λ0 = λ, a0 = c[0], b0 = c[1], c0 = c[2], maxDepth, stream);\n stream.point(x0, y0);\n }\n function lineEnd() {\n resample.point = point;\n stream.lineEnd();\n }\n function ringStart() {\n lineStart();\n resample.point = ringPoint;\n resample.lineEnd = ringEnd;\n }\n function ringPoint(λ, φ) {\n linePoint(λ00 = λ, φ00 = φ), x00 = x0, y00 = y0, a00 = a0, b00 = b0, c00 = c0;\n resample.point = linePoint;\n }\n function ringEnd() {\n resampleLineTo(x0, y0, λ0, a0, b0, c0, x00, y00, λ00, a00, b00, c00, maxDepth, stream);\n resample.lineEnd = lineEnd;\n lineEnd();\n }\n return resample;\n }\n function resampleLineTo(x0, y0, λ0, a0, b0, c0, x1, y1, λ1, a1, b1, c1, depth, stream) {\n var dx = x1 - x0, dy = y1 - y0, d2 = dx * dx + dy * dy;\n if (d2 > 4 * δ2 && depth--) {\n var a = a0 + a1, b = b0 + b1, c = c0 + c1, m = Math.sqrt(a * a + b * b + c * c), φ2 = Math.asin(c /= m), λ2 = abs(abs(c) - 1) < ε || abs(λ0 - λ1) < ε ? (λ0 + λ1) / 2 : Math.atan2(b, a), p = project(λ2, φ2), x2 = p[0], y2 = p[1], dx2 = x2 - x0, dy2 = y2 - y0, dz = dy * dx2 - dx * dy2;\n if (dz * dz / d2 > δ2 || abs((dx * dx2 + dy * dy2) / d2 - .5) > .3 || a0 * a1 + b0 * b1 + c0 * c1 < cosMinDistance) {\n resampleLineTo(x0, y0, λ0, a0, b0, c0, x2, y2, λ2, a /= m, b /= m, c, depth, stream);\n stream.point(x2, y2);\n resampleLineTo(x2, y2, λ2, a, b, c, x1, y1, λ1, a1, b1, c1, depth, stream);\n }\n }\n }\n resample.precision = function(_) {\n if (!arguments.length) return Math.sqrt(δ2);\n maxDepth = (δ2 = _ * _) > 0 && 16;\n return resample;\n };\n return resample;\n }\n d3.geo.path = function() {\n var pointRadius = 4.5, projection, context, projectStream, contextStream, cacheStream;\n function path(object) {\n if (object) {\n if (typeof pointRadius === \"function\") contextStream.pointRadius(+pointRadius.apply(this, arguments));\n if (!cacheStream || !cacheStream.valid) cacheStream = projectStream(contextStream);\n d3.geo.stream(object, cacheStream);\n }\n return contextStream.result();\n }\n path.area = function(object) {\n d3_geo_pathAreaSum = 0;\n d3.geo.stream(object, projectStream(d3_geo_pathArea));\n return d3_geo_pathAreaSum;\n };\n path.centroid = function(object) {\n d3_geo_centroidX0 = d3_geo_centroidY0 = d3_geo_centroidZ0 = d3_geo_centroidX1 = d3_geo_centroidY1 = d3_geo_centroidZ1 = d3_geo_centroidX2 = d3_geo_centroidY2 = d3_geo_centroidZ2 = 0;\n d3.geo.stream(object, projectStream(d3_geo_pathCentroid));\n return d3_geo_centroidZ2 ? [ d3_geo_centroidX2 / d3_geo_centroidZ2, d3_geo_centroidY2 / d3_geo_centroidZ2 ] : d3_geo_centroidZ1 ? [ d3_geo_centroidX1 / d3_geo_centroidZ1, d3_geo_centroidY1 / d3_geo_centroidZ1 ] : d3_geo_centroidZ0 ? [ d3_geo_centroidX0 / d3_geo_centroidZ0, d3_geo_centroidY0 / d3_geo_centroidZ0 ] : [ NaN, NaN ];\n };\n path.bounds = function(object) {\n d3_geo_pathBoundsX1 = d3_geo_pathBoundsY1 = -(d3_geo_pathBoundsX0 = d3_geo_pathBoundsY0 = Infinity);\n d3.geo.stream(object, projectStream(d3_geo_pathBounds));\n return [ [ d3_geo_pathBoundsX0, d3_geo_pathBoundsY0 ], [ d3_geo_pathBoundsX1, d3_geo_pathBoundsY1 ] ];\n };\n path.projection = function(_) {\n if (!arguments.length) return projection;\n projectStream = (projection = _) ? _.stream || d3_geo_pathProjectStream(_) : d3_identity;\n return reset();\n };\n path.context = function(_) {\n if (!arguments.length) return context;\n contextStream = (context = _) == null ? new d3_geo_pathBuffer() : new d3_geo_pathContext(_);\n if (typeof pointRadius !== \"function\") contextStream.pointRadius(pointRadius);\n return reset();\n };\n path.pointRadius = function(_) {\n if (!arguments.length) return pointRadius;\n pointRadius = typeof _ === \"function\" ? _ : (contextStream.pointRadius(+_), +_);\n return path;\n };\n function reset() {\n cacheStream = null;\n return path;\n }\n return path.projection(d3.geo.albersUsa()).context(null);\n };\n function d3_geo_pathProjectStream(project) {\n var resample = d3_geo_resample(function(x, y) {\n return project([ x * d3_degrees, y * d3_degrees ]);\n });\n return function(stream) {\n return d3_geo_projectionRadians(resample(stream));\n };\n }\n d3.geo.transform = function(methods) {\n return {\n stream: function(stream) {\n var transform = new d3_geo_transform(stream);\n for (var k in methods) transform[k] = methods[k];\n return transform;\n }\n };\n };\n function d3_geo_transform(stream) {\n this.stream = stream;\n }\n d3_geo_transform.prototype = {\n point: function(x, y) {\n this.stream.point(x, y);\n },\n sphere: function() {\n this.stream.sphere();\n },\n lineStart: function() {\n this.stream.lineStart();\n },\n lineEnd: function() {\n this.stream.lineEnd();\n },\n polygonStart: function() {\n this.stream.polygonStart();\n },\n polygonEnd: function() {\n this.stream.polygonEnd();\n }\n };\n function d3_geo_transformPoint(stream, point) {\n return {\n point: point,\n sphere: function() {\n stream.sphere();\n },\n lineStart: function() {\n stream.lineStart();\n },\n lineEnd: function() {\n stream.lineEnd();\n },\n polygonStart: function() {\n stream.polygonStart();\n },\n polygonEnd: function() {\n stream.polygonEnd();\n }\n };\n }\n d3.geo.projection = d3_geo_projection;\n d3.geo.projectionMutator = d3_geo_projectionMutator;\n function d3_geo_projection(project) {\n return d3_geo_projectionMutator(function() {\n return project;\n })();\n }\n function d3_geo_projectionMutator(projectAt) {\n var project, rotate, projectRotate, projectResample = d3_geo_resample(function(x, y) {\n x = project(x, y);\n return [ x[0] * k + δx, δy - x[1] * k ];\n }), k = 150, x = 480, y = 250, λ = 0, φ = 0, δλ = 0, δφ = 0, δγ = 0, δx, δy, preclip = d3_geo_clipAntimeridian, postclip = d3_identity, clipAngle = null, clipExtent = null, stream;\n function projection(point) {\n point = projectRotate(point[0] * d3_radians, point[1] * d3_radians);\n return [ point[0] * k + δx, δy - point[1] * k ];\n }\n function invert(point) {\n point = projectRotate.invert((point[0] - δx) / k, (δy - point[1]) / k);\n return point && [ point[0] * d3_degrees, point[1] * d3_degrees ];\n }\n projection.stream = function(output) {\n if (stream) stream.valid = false;\n stream = d3_geo_projectionRadians(preclip(rotate, projectResample(postclip(output))));\n stream.valid = true;\n return stream;\n };\n projection.clipAngle = function(_) {\n if (!arguments.length) return clipAngle;\n preclip = _ == null ? (clipAngle = _, d3_geo_clipAntimeridian) : d3_geo_clipCircle((clipAngle = +_) * d3_radians);\n return invalidate();\n };\n projection.clipExtent = function(_) {\n if (!arguments.length) return clipExtent;\n clipExtent = _;\n postclip = _ ? d3_geo_clipExtent(_[0][0], _[0][1], _[1][0], _[1][1]) : d3_identity;\n return invalidate();\n };\n projection.scale = function(_) {\n if (!arguments.length) return k;\n k = +_;\n return reset();\n };\n projection.translate = function(_) {\n if (!arguments.length) return [ x, y ];\n x = +_[0];\n y = +_[1];\n return reset();\n };\n projection.center = function(_) {\n if (!arguments.length) return [ λ * d3_degrees, φ * d3_degrees ];\n λ = _[0] % 360 * d3_radians;\n φ = _[1] % 360 * d3_radians;\n return reset();\n };\n projection.rotate = function(_) {\n if (!arguments.length) return [ δλ * d3_degrees, δφ * d3_degrees, δγ * d3_degrees ];\n δλ = _[0] % 360 * d3_radians;\n δφ = _[1] % 360 * d3_radians;\n δγ = _.length > 2 ? _[2] % 360 * d3_radians : 0;\n return reset();\n };\n d3.rebind(projection, projectResample, \"precision\");\n function reset() {\n projectRotate = d3_geo_compose(rotate = d3_geo_rotation(δλ, δφ, δγ), project);\n var center = project(λ, φ);\n δx = x - center[0] * k;\n δy = y + center[1] * k;\n return invalidate();\n }\n function invalidate() {\n if (stream) stream.valid = false, stream = null;\n return projection;\n }\n return function() {\n project = projectAt.apply(this, arguments);\n projection.invert = project.invert && invert;\n return reset();\n };\n }\n function d3_geo_projectionRadians(stream) {\n return d3_geo_transformPoint(stream, function(x, y) {\n stream.point(x * d3_radians, y * d3_radians);\n });\n }\n function d3_geo_equirectangular(λ, φ) {\n return [ λ, φ ];\n }\n (d3.geo.equirectangular = function() {\n return d3_geo_projection(d3_geo_equirectangular);\n }).raw = d3_geo_equirectangular.invert = d3_geo_equirectangular;\n d3.geo.rotation = function(rotate) {\n rotate = d3_geo_rotation(rotate[0] % 360 * d3_radians, rotate[1] * d3_radians, rotate.length > 2 ? rotate[2] * d3_radians : 0);\n function forward(coordinates) {\n coordinates = rotate(coordinates[0] * d3_radians, coordinates[1] * d3_radians);\n return coordinates[0] *= d3_degrees, coordinates[1] *= d3_degrees, coordinates;\n }\n forward.invert = function(coordinates) {\n coordinates = rotate.invert(coordinates[0] * d3_radians, coordinates[1] * d3_radians);\n return coordinates[0] *= d3_degrees, coordinates[1] *= d3_degrees, coordinates;\n };\n return forward;\n };\n function d3_geo_identityRotation(λ, φ) {\n return [ λ > π ? λ - τ : λ < -π ? λ + τ : λ, φ ];\n }\n d3_geo_identityRotation.invert = d3_geo_equirectangular;\n function d3_geo_rotation(δλ, δφ, δγ) {\n return δλ ? δφ || δγ ? d3_geo_compose(d3_geo_rotationλ(δλ), d3_geo_rotationφγ(δφ, δγ)) : d3_geo_rotationλ(δλ) : δφ || δγ ? d3_geo_rotationφγ(δφ, δγ) : d3_geo_identityRotation;\n }\n function d3_geo_forwardRotationλ(δλ) {\n return function(λ, φ) {\n return λ += δλ, [ λ > π ? λ - τ : λ < -π ? λ + τ : λ, φ ];\n };\n }\n function d3_geo_rotationλ(δλ) {\n var rotation = d3_geo_forwardRotationλ(δλ);\n rotation.invert = d3_geo_forwardRotationλ(-δλ);\n return rotation;\n }\n function d3_geo_rotationφγ(δφ, δγ) {\n var cosδφ = Math.cos(δφ), sinδφ = Math.sin(δφ), cosδγ = Math.cos(δγ), sinδγ = Math.sin(δγ);\n function rotation(λ, φ) {\n var cosφ = Math.cos(φ), x = Math.cos(λ) * cosφ, y = Math.sin(λ) * cosφ, z = Math.sin(φ), k = z * cosδφ + x * sinδφ;\n return [ Math.atan2(y * cosδγ - k * sinδγ, x * cosδφ - z * sinδφ), d3_asin(k * cosδγ + y * sinδγ) ];\n }\n rotation.invert = function(λ, φ) {\n var cosφ = Math.cos(φ), x = Math.cos(λ) * cosφ, y = Math.sin(λ) * cosφ, z = Math.sin(φ), k = z * cosδγ - y * sinδγ;\n return [ Math.atan2(y * cosδγ + z * sinδγ, x * cosδφ + k * sinδφ), d3_asin(k * cosδφ - x * sinδφ) ];\n };\n return rotation;\n }\n d3.geo.circle = function() {\n var origin = [ 0, 0 ], angle, precision = 6, interpolate;\n function circle() {\n var center = typeof origin === \"function\" ? origin.apply(this, arguments) : origin, rotate = d3_geo_rotation(-center[0] * d3_radians, -center[1] * d3_radians, 0).invert, ring = [];\n interpolate(null, null, 1, {\n point: function(x, y) {\n ring.push(x = rotate(x, y));\n x[0] *= d3_degrees, x[1] *= d3_degrees;\n }\n });\n return {\n type: \"Polygon\",\n coordinates: [ ring ]\n };\n }\n circle.origin = function(x) {\n if (!arguments.length) return origin;\n origin = x;\n return circle;\n };\n circle.angle = function(x) {\n if (!arguments.length) return angle;\n interpolate = d3_geo_circleInterpolate((angle = +x) * d3_radians, precision * d3_radians);\n return circle;\n };\n circle.precision = function(_) {\n if (!arguments.length) return precision;\n interpolate = d3_geo_circleInterpolate(angle * d3_radians, (precision = +_) * d3_radians);\n return circle;\n };\n return circle.angle(90);\n };\n function d3_geo_circleInterpolate(radius, precision) {\n var cr = Math.cos(radius), sr = Math.sin(radius);\n return function(from, to, direction, listener) {\n var step = direction * precision;\n if (from != null) {\n from = d3_geo_circleAngle(cr, from);\n to = d3_geo_circleAngle(cr, to);\n if (direction > 0 ? from < to : from > to) from += direction * τ;\n } else {\n from = radius + direction * τ;\n to = radius - .5 * step;\n }\n for (var point, t = from; direction > 0 ? t > to : t < to; t -= step) {\n listener.point((point = d3_geo_spherical([ cr, -sr * Math.cos(t), -sr * Math.sin(t) ]))[0], point[1]);\n }\n };\n }\n function d3_geo_circleAngle(cr, point) {\n var a = d3_geo_cartesian(point);\n a[0] -= cr;\n d3_geo_cartesianNormalize(a);\n var angle = d3_acos(-a[1]);\n return ((-a[2] < 0 ? -angle : angle) + 2 * Math.PI - ε) % (2 * Math.PI);\n }\n d3.geo.distance = function(a, b) {\n var Δλ = (b[0] - a[0]) * d3_radians, φ0 = a[1] * d3_radians, φ1 = b[1] * d3_radians, sinΔλ = Math.sin(Δλ), cosΔλ = Math.cos(Δλ), sinφ0 = Math.sin(φ0), cosφ0 = Math.cos(φ0), sinφ1 = Math.sin(φ1), cosφ1 = Math.cos(φ1), t;\n return Math.atan2(Math.sqrt((t = cosφ1 * sinΔλ) * t + (t = cosφ0 * sinφ1 - sinφ0 * cosφ1 * cosΔλ) * t), sinφ0 * sinφ1 + cosφ0 * cosφ1 * cosΔλ);\n };\n d3.geo.graticule = function() {\n var x1, x0, X1, X0, y1, y0, Y1, Y0, dx = 10, dy = dx, DX = 90, DY = 360, x, y, X, Y, precision = 2.5;\n function graticule() {\n return {\n type: \"MultiLineString\",\n coordinates: lines()\n };\n }\n function lines() {\n return d3.range(Math.ceil(X0 / DX) * DX, X1, DX).map(X).concat(d3.range(Math.ceil(Y0 / DY) * DY, Y1, DY).map(Y)).concat(d3.range(Math.ceil(x0 / dx) * dx, x1, dx).filter(function(x) {\n return abs(x % DX) > ε;\n }).map(x)).concat(d3.range(Math.ceil(y0 / dy) * dy, y1, dy).filter(function(y) {\n return abs(y % DY) > ε;\n }).map(y));\n }\n graticule.lines = function() {\n return lines().map(function(coordinates) {\n return {\n type: \"LineString\",\n coordinates: coordinates\n };\n });\n };\n graticule.outline = function() {\n return {\n type: \"Polygon\",\n coordinates: [ X(X0).concat(Y(Y1).slice(1), X(X1).reverse().slice(1), Y(Y0).reverse().slice(1)) ]\n };\n };\n graticule.extent = function(_) {\n if (!arguments.length) return graticule.minorExtent();\n return graticule.majorExtent(_).minorExtent(_);\n };\n graticule.majorExtent = function(_) {\n if (!arguments.length) return [ [ X0, Y0 ], [ X1, Y1 ] ];\n X0 = +_[0][0], X1 = +_[1][0];\n Y0 = +_[0][1], Y1 = +_[1][1];\n if (X0 > X1) _ = X0, X0 = X1, X1 = _;\n if (Y0 > Y1) _ = Y0, Y0 = Y1, Y1 = _;\n return graticule.precision(precision);\n };\n graticule.minorExtent = function(_) {\n if (!arguments.length) return [ [ x0, y0 ], [ x1, y1 ] ];\n x0 = +_[0][0], x1 = +_[1][0];\n y0 = +_[0][1], y1 = +_[1][1];\n if (x0 > x1) _ = x0, x0 = x1, x1 = _;\n if (y0 > y1) _ = y0, y0 = y1, y1 = _;\n return graticule.precision(precision);\n };\n graticule.step = function(_) {\n if (!arguments.length) return graticule.minorStep();\n return graticule.majorStep(_).minorStep(_);\n };\n graticule.majorStep = function(_) {\n if (!arguments.length) return [ DX, DY ];\n DX = +_[0], DY = +_[1];\n return graticule;\n };\n graticule.minorStep = function(_) {\n if (!arguments.length) return [ dx, dy ];\n dx = +_[0], dy = +_[1];\n return graticule;\n };\n graticule.precision = function(_) {\n if (!arguments.length) return precision;\n precision = +_;\n x = d3_geo_graticuleX(y0, y1, 90);\n y = d3_geo_graticuleY(x0, x1, precision);\n X = d3_geo_graticuleX(Y0, Y1, 90);\n Y = d3_geo_graticuleY(X0, X1, precision);\n return graticule;\n };\n return graticule.majorExtent([ [ -180, -90 + ε ], [ 180, 90 - ε ] ]).minorExtent([ [ -180, -80 - ε ], [ 180, 80 + ε ] ]);\n };\n function d3_geo_graticuleX(y0, y1, dy) {\n var y = d3.range(y0, y1 - ε, dy).concat(y1);\n return function(x) {\n return y.map(function(y) {\n return [ x, y ];\n });\n };\n }\n function d3_geo_graticuleY(x0, x1, dx) {\n var x = d3.range(x0, x1 - ε, dx).concat(x1);\n return function(y) {\n return x.map(function(x) {\n return [ x, y ];\n });\n };\n }\n function d3_source(d) {\n return d.source;\n }\n function d3_target(d) {\n return d.target;\n }\n d3.geo.greatArc = function() {\n var source = d3_source, source_, target = d3_target, target_;\n function greatArc() {\n return {\n type: \"LineString\",\n coordinates: [ source_ || source.apply(this, arguments), target_ || target.apply(this, arguments) ]\n };\n }\n greatArc.distance = function() {\n return d3.geo.distance(source_ || source.apply(this, arguments), target_ || target.apply(this, arguments));\n };\n greatArc.source = function(_) {\n if (!arguments.length) return source;\n source = _, source_ = typeof _ === \"function\" ? null : _;\n return greatArc;\n };\n greatArc.target = function(_) {\n if (!arguments.length) return target;\n target = _, target_ = typeof _ === \"function\" ? null : _;\n return greatArc;\n };\n greatArc.precision = function() {\n return arguments.length ? greatArc : 0;\n };\n return greatArc;\n };\n d3.geo.interpolate = function(source, target) {\n return d3_geo_interpolate(source[0] * d3_radians, source[1] * d3_radians, target[0] * d3_radians, target[1] * d3_radians);\n };\n function d3_geo_interpolate(x0, y0, x1, y1) {\n var cy0 = Math.cos(y0), sy0 = Math.sin(y0), cy1 = Math.cos(y1), sy1 = Math.sin(y1), kx0 = cy0 * Math.cos(x0), ky0 = cy0 * Math.sin(x0), kx1 = cy1 * Math.cos(x1), ky1 = cy1 * Math.sin(x1), d = 2 * Math.asin(Math.sqrt(d3_haversin(y1 - y0) + cy0 * cy1 * d3_haversin(x1 - x0))), k = 1 / Math.sin(d);\n var interpolate = d ? function(t) {\n var B = Math.sin(t *= d) * k, A = Math.sin(d - t) * k, x = A * kx0 + B * kx1, y = A * ky0 + B * ky1, z = A * sy0 + B * sy1;\n return [ Math.atan2(y, x) * d3_degrees, Math.atan2(z, Math.sqrt(x * x + y * y)) * d3_degrees ];\n } : function() {\n return [ x0 * d3_degrees, y0 * d3_degrees ];\n };\n interpolate.distance = d;\n return interpolate;\n }\n d3.geo.length = function(object) {\n d3_geo_lengthSum = 0;\n d3.geo.stream(object, d3_geo_length);\n return d3_geo_lengthSum;\n };\n var d3_geo_lengthSum;\n var d3_geo_length = {\n sphere: d3_noop,\n point: d3_noop,\n lineStart: d3_geo_lengthLineStart,\n lineEnd: d3_noop,\n polygonStart: d3_noop,\n polygonEnd: d3_noop\n };\n function d3_geo_lengthLineStart() {\n var λ0, sinφ0, cosφ0;\n d3_geo_length.point = function(λ, φ) {\n λ0 = λ * d3_radians, sinφ0 = Math.sin(φ *= d3_radians), cosφ0 = Math.cos(φ);\n d3_geo_length.point = nextPoint;\n };\n d3_geo_length.lineEnd = function() {\n d3_geo_length.point = d3_geo_length.lineEnd = d3_noop;\n };\n function nextPoint(λ, φ) {\n var sinφ = Math.sin(φ *= d3_radians), cosφ = Math.cos(φ), t = abs((λ *= d3_radians) - λ0), cosΔλ = Math.cos(t);\n d3_geo_lengthSum += Math.atan2(Math.sqrt((t = cosφ * Math.sin(t)) * t + (t = cosφ0 * sinφ - sinφ0 * cosφ * cosΔλ) * t), sinφ0 * sinφ + cosφ0 * cosφ * cosΔλ);\n λ0 = λ, sinφ0 = sinφ, cosφ0 = cosφ;\n }\n }\n function d3_geo_azimuthal(scale, angle) {\n function azimuthal(λ, φ) {\n var cosλ = Math.cos(λ), cosφ = Math.cos(φ), k = scale(cosλ * cosφ);\n return [ k * cosφ * Math.sin(λ), k * Math.sin(φ) ];\n }\n azimuthal.invert = function(x, y) {\n var ρ = Math.sqrt(x * x + y * y), c = angle(ρ), sinc = Math.sin(c), cosc = Math.cos(c);\n return [ Math.atan2(x * sinc, ρ * cosc), Math.asin(ρ && y * sinc / ρ) ];\n };\n return azimuthal;\n }\n var d3_geo_azimuthalEqualArea = d3_geo_azimuthal(function(cosλcosφ) {\n return Math.sqrt(2 / (1 + cosλcosφ));\n }, function(ρ) {\n return 2 * Math.asin(ρ / 2);\n });\n (d3.geo.azimuthalEqualArea = function() {\n return d3_geo_projection(d3_geo_azimuthalEqualArea);\n }).raw = d3_geo_azimuthalEqualArea;\n var d3_geo_azimuthalEquidistant = d3_geo_azimuthal(function(cosλcosφ) {\n var c = Math.acos(cosλcosφ);\n return c && c / Math.sin(c);\n }, d3_identity);\n (d3.geo.azimuthalEquidistant = function() {\n return d3_geo_projection(d3_geo_azimuthalEquidistant);\n }).raw = d3_geo_azimuthalEquidistant;\n function d3_geo_conicConformal(φ0, φ1) {\n var cosφ0 = Math.cos(φ0), t = function(φ) {\n return Math.tan(π / 4 + φ / 2);\n }, n = φ0 === φ1 ? Math.sin(φ0) : Math.log(cosφ0 / Math.cos(φ1)) / Math.log(t(φ1) / t(φ0)), F = cosφ0 * Math.pow(t(φ0), n) / n;\n if (!n) return d3_geo_mercator;\n function forward(λ, φ) {\n if (F > 0) {\n if (φ < -halfπ + ε) φ = -halfπ + ε;\n } else {\n if (φ > halfπ - ε) φ = halfπ - ε;\n }\n var ρ = F / Math.pow(t(φ), n);\n return [ ρ * Math.sin(n * λ), F - ρ * Math.cos(n * λ) ];\n }\n forward.invert = function(x, y) {\n var ρ0_y = F - y, ρ = d3_sgn(n) * Math.sqrt(x * x + ρ0_y * ρ0_y);\n return [ Math.atan2(x, ρ0_y) / n, 2 * Math.atan(Math.pow(F / ρ, 1 / n)) - halfπ ];\n };\n return forward;\n }\n (d3.geo.conicConformal = function() {\n return d3_geo_conic(d3_geo_conicConformal);\n }).raw = d3_geo_conicConformal;\n function d3_geo_conicEquidistant(φ0, φ1) {\n var cosφ0 = Math.cos(φ0), n = φ0 === φ1 ? Math.sin(φ0) : (cosφ0 - Math.cos(φ1)) / (φ1 - φ0), G = cosφ0 / n + φ0;\n if (abs(n) < ε) return d3_geo_equirectangular;\n function forward(λ, φ) {\n var ρ = G - φ;\n return [ ρ * Math.sin(n * λ), G - ρ * Math.cos(n * λ) ];\n }\n forward.invert = function(x, y) {\n var ρ0_y = G - y;\n return [ Math.atan2(x, ρ0_y) / n, G - d3_sgn(n) * Math.sqrt(x * x + ρ0_y * ρ0_y) ];\n };\n return forward;\n }\n (d3.geo.conicEquidistant = function() {\n return d3_geo_conic(d3_geo_conicEquidistant);\n }).raw = d3_geo_conicEquidistant;\n var d3_geo_gnomonic = d3_geo_azimuthal(function(cosλcosφ) {\n return 1 / cosλcosφ;\n }, Math.atan);\n (d3.geo.gnomonic = function() {\n return d3_geo_projection(d3_geo_gnomonic);\n }).raw = d3_geo_gnomonic;\n function d3_geo_mercator(λ, φ) {\n return [ λ, Math.log(Math.tan(π / 4 + φ / 2)) ];\n }\n d3_geo_mercator.invert = function(x, y) {\n return [ x, 2 * Math.atan(Math.exp(y)) - halfπ ];\n };\n function d3_geo_mercatorProjection(project) {\n var m = d3_geo_projection(project), scale = m.scale, translate = m.translate, clipExtent = m.clipExtent, clipAuto;\n m.scale = function() {\n var v = scale.apply(m, arguments);\n return v === m ? clipAuto ? m.clipExtent(null) : m : v;\n };\n m.translate = function() {\n var v = translate.apply(m, arguments);\n return v === m ? clipAuto ? m.clipExtent(null) : m : v;\n };\n m.clipExtent = function(_) {\n var v = clipExtent.apply(m, arguments);\n if (v === m) {\n if (clipAuto = _ == null) {\n var k = π * scale(), t = translate();\n clipExtent([ [ t[0] - k, t[1] - k ], [ t[0] + k, t[1] + k ] ]);\n }\n } else if (clipAuto) {\n v = null;\n }\n return v;\n };\n return m.clipExtent(null);\n }\n (d3.geo.mercator = function() {\n return d3_geo_mercatorProjection(d3_geo_mercator);\n }).raw = d3_geo_mercator;\n var d3_geo_orthographic = d3_geo_azimuthal(function() {\n return 1;\n }, Math.asin);\n (d3.geo.orthographic = function() {\n return d3_geo_projection(d3_geo_orthographic);\n }).raw = d3_geo_orthographic;\n var d3_geo_stereographic = d3_geo_azimuthal(function(cosλcosφ) {\n return 1 / (1 + cosλcosφ);\n }, function(ρ) {\n return 2 * Math.atan(ρ);\n });\n (d3.geo.stereographic = function() {\n return d3_geo_projection(d3_geo_stereographic);\n }).raw = d3_geo_stereographic;\n function d3_geo_transverseMercator(λ, φ) {\n return [ Math.log(Math.tan(π / 4 + φ / 2)), -λ ];\n }\n d3_geo_transverseMercator.invert = function(x, y) {\n return [ -y, 2 * Math.atan(Math.exp(x)) - halfπ ];\n };\n (d3.geo.transverseMercator = function() {\n var projection = d3_geo_mercatorProjection(d3_geo_transverseMercator), center = projection.center, rotate = projection.rotate;\n projection.center = function(_) {\n return _ ? center([ -_[1], _[0] ]) : (_ = center(), [ _[1], -_[0] ]);\n };\n projection.rotate = function(_) {\n return _ ? rotate([ _[0], _[1], _.length > 2 ? _[2] + 90 : 90 ]) : (_ = rotate(), \n [ _[0], _[1], _[2] - 90 ]);\n };\n return rotate([ 0, 0, 90 ]);\n }).raw = d3_geo_transverseMercator;\n d3.geom = {};\n function d3_geom_pointX(d) {\n return d[0];\n }\n function d3_geom_pointY(d) {\n return d[1];\n }\n d3.geom.hull = function(vertices) {\n var x = d3_geom_pointX, y = d3_geom_pointY;\n if (arguments.length) return hull(vertices);\n function hull(data) {\n if (data.length < 3) return [];\n var fx = d3_functor(x), fy = d3_functor(y), i, n = data.length, points = [], flippedPoints = [];\n for (i = 0; i < n; i++) {\n points.push([ +fx.call(this, data[i], i), +fy.call(this, data[i], i), i ]);\n }\n points.sort(d3_geom_hullOrder);\n for (i = 0; i < n; i++) flippedPoints.push([ points[i][0], -points[i][1] ]);\n var upper = d3_geom_hullUpper(points), lower = d3_geom_hullUpper(flippedPoints);\n var skipLeft = lower[0] === upper[0], skipRight = lower[lower.length - 1] === upper[upper.length - 1], polygon = [];\n for (i = upper.length - 1; i >= 0; --i) polygon.push(data[points[upper[i]][2]]);\n for (i = +skipLeft; i < lower.length - skipRight; ++i) polygon.push(data[points[lower[i]][2]]);\n return polygon;\n }\n hull.x = function(_) {\n return arguments.length ? (x = _, hull) : x;\n };\n hull.y = function(_) {\n return arguments.length ? (y = _, hull) : y;\n };\n return hull;\n };\n function d3_geom_hullUpper(points) {\n var n = points.length, hull = [ 0, 1 ], hs = 2;\n for (var i = 2; i < n; i++) {\n while (hs > 1 && d3_cross2d(points[hull[hs - 2]], points[hull[hs - 1]], points[i]) <= 0) --hs;\n hull[hs++] = i;\n }\n return hull.slice(0, hs);\n }\n function d3_geom_hullOrder(a, b) {\n return a[0] - b[0] || a[1] - b[1];\n }\n d3.geom.polygon = function(coordinates) {\n d3_subclass(coordinates, d3_geom_polygonPrototype);\n return coordinates;\n };\n var d3_geom_polygonPrototype = d3.geom.polygon.prototype = [];\n d3_geom_polygonPrototype.area = function() {\n var i = -1, n = this.length, a, b = this[n - 1], area = 0;\n while (++i < n) {\n a = b;\n b = this[i];\n area += a[1] * b[0] - a[0] * b[1];\n }\n return area * .5;\n };\n d3_geom_polygonPrototype.centroid = function(k) {\n var i = -1, n = this.length, x = 0, y = 0, a, b = this[n - 1], c;\n if (!arguments.length) k = -1 / (6 * this.area());\n while (++i < n) {\n a = b;\n b = this[i];\n c = a[0] * b[1] - b[0] * a[1];\n x += (a[0] + b[0]) * c;\n y += (a[1] + b[1]) * c;\n }\n return [ x * k, y * k ];\n };\n d3_geom_polygonPrototype.clip = function(subject) {\n var input, closed = d3_geom_polygonClosed(subject), i = -1, n = this.length - d3_geom_polygonClosed(this), j, m, a = this[n - 1], b, c, d;\n while (++i < n) {\n input = subject.slice();\n subject.length = 0;\n b = this[i];\n c = input[(m = input.length - closed) - 1];\n j = -1;\n while (++j < m) {\n d = input[j];\n if (d3_geom_polygonInside(d, a, b)) {\n if (!d3_geom_polygonInside(c, a, b)) {\n subject.push(d3_geom_polygonIntersect(c, d, a, b));\n }\n subject.push(d);\n } else if (d3_geom_polygonInside(c, a, b)) {\n subject.push(d3_geom_polygonIntersect(c, d, a, b));\n }\n c = d;\n }\n if (closed) subject.push(subject[0]);\n a = b;\n }\n return subject;\n };\n function d3_geom_polygonInside(p, a, b) {\n return (b[0] - a[0]) * (p[1] - a[1]) < (b[1] - a[1]) * (p[0] - a[0]);\n }\n function d3_geom_polygonIntersect(c, d, a, b) {\n var x1 = c[0], x3 = a[0], x21 = d[0] - x1, x43 = b[0] - x3, y1 = c[1], y3 = a[1], y21 = d[1] - y1, y43 = b[1] - y3, ua = (x43 * (y1 - y3) - y43 * (x1 - x3)) / (y43 * x21 - x43 * y21);\n return [ x1 + ua * x21, y1 + ua * y21 ];\n }\n function d3_geom_polygonClosed(coordinates) {\n var a = coordinates[0], b = coordinates[coordinates.length - 1];\n return !(a[0] - b[0] || a[1] - b[1]);\n }\n var d3_geom_voronoiEdges, d3_geom_voronoiCells, d3_geom_voronoiBeaches, d3_geom_voronoiBeachPool = [], d3_geom_voronoiFirstCircle, d3_geom_voronoiCircles, d3_geom_voronoiCirclePool = [];\n function d3_geom_voronoiBeach() {\n d3_geom_voronoiRedBlackNode(this);\n this.edge = this.site = this.circle = null;\n }\n function d3_geom_voronoiCreateBeach(site) {\n var beach = d3_geom_voronoiBeachPool.pop() || new d3_geom_voronoiBeach();\n beach.site = site;\n return beach;\n }\n function d3_geom_voronoiDetachBeach(beach) {\n d3_geom_voronoiDetachCircle(beach);\n d3_geom_voronoiBeaches.remove(beach);\n d3_geom_voronoiBeachPool.push(beach);\n d3_geom_voronoiRedBlackNode(beach);\n }\n function d3_geom_voronoiRemoveBeach(beach) {\n var circle = beach.circle, x = circle.x, y = circle.cy, vertex = {\n x: x,\n y: y\n }, previous = beach.P, next = beach.N, disappearing = [ beach ];\n d3_geom_voronoiDetachBeach(beach);\n var lArc = previous;\n while (lArc.circle && abs(x - lArc.circle.x) < ε && abs(y - lArc.circle.cy) < ε) {\n previous = lArc.P;\n disappearing.unshift(lArc);\n d3_geom_voronoiDetachBeach(lArc);\n lArc = previous;\n }\n disappearing.unshift(lArc);\n d3_geom_voronoiDetachCircle(lArc);\n var rArc = next;\n while (rArc.circle && abs(x - rArc.circle.x) < ε && abs(y - rArc.circle.cy) < ε) {\n next = rArc.N;\n disappearing.push(rArc);\n d3_geom_voronoiDetachBeach(rArc);\n rArc = next;\n }\n disappearing.push(rArc);\n d3_geom_voronoiDetachCircle(rArc);\n var nArcs = disappearing.length, iArc;\n for (iArc = 1; iArc < nArcs; ++iArc) {\n rArc = disappearing[iArc];\n lArc = disappearing[iArc - 1];\n d3_geom_voronoiSetEdgeEnd(rArc.edge, lArc.site, rArc.site, vertex);\n }\n lArc = disappearing[0];\n rArc = disappearing[nArcs - 1];\n rArc.edge = d3_geom_voronoiCreateEdge(lArc.site, rArc.site, null, vertex);\n d3_geom_voronoiAttachCircle(lArc);\n d3_geom_voronoiAttachCircle(rArc);\n }\n function d3_geom_voronoiAddBeach(site) {\n var x = site.x, directrix = site.y, lArc, rArc, dxl, dxr, node = d3_geom_voronoiBeaches._;\n while (node) {\n dxl = d3_geom_voronoiLeftBreakPoint(node, directrix) - x;\n if (dxl > ε) node = node.L; else {\n dxr = x - d3_geom_voronoiRightBreakPoint(node, directrix);\n if (dxr > ε) {\n if (!node.R) {\n lArc = node;\n break;\n }\n node = node.R;\n } else {\n if (dxl > -ε) {\n lArc = node.P;\n rArc = node;\n } else if (dxr > -ε) {\n lArc = node;\n rArc = node.N;\n } else {\n lArc = rArc = node;\n }\n break;\n }\n }\n }\n var newArc = d3_geom_voronoiCreateBeach(site);\n d3_geom_voronoiBeaches.insert(lArc, newArc);\n if (!lArc && !rArc) return;\n if (lArc === rArc) {\n d3_geom_voronoiDetachCircle(lArc);\n rArc = d3_geom_voronoiCreateBeach(lArc.site);\n d3_geom_voronoiBeaches.insert(newArc, rArc);\n newArc.edge = rArc.edge = d3_geom_voronoiCreateEdge(lArc.site, newArc.site);\n d3_geom_voronoiAttachCircle(lArc);\n d3_geom_voronoiAttachCircle(rArc);\n return;\n }\n if (!rArc) {\n newArc.edge = d3_geom_voronoiCreateEdge(lArc.site, newArc.site);\n return;\n }\n d3_geom_voronoiDetachCircle(lArc);\n d3_geom_voronoiDetachCircle(rArc);\n var lSite = lArc.site, ax = lSite.x, ay = lSite.y, bx = site.x - ax, by = site.y - ay, rSite = rArc.site, cx = rSite.x - ax, cy = rSite.y - ay, d = 2 * (bx * cy - by * cx), hb = bx * bx + by * by, hc = cx * cx + cy * cy, vertex = {\n x: (cy * hb - by * hc) / d + ax,\n y: (bx * hc - cx * hb) / d + ay\n };\n d3_geom_voronoiSetEdgeEnd(rArc.edge, lSite, rSite, vertex);\n newArc.edge = d3_geom_voronoiCreateEdge(lSite, site, null, vertex);\n rArc.edge = d3_geom_voronoiCreateEdge(site, rSite, null, vertex);\n d3_geom_voronoiAttachCircle(lArc);\n d3_geom_voronoiAttachCircle(rArc);\n }\n function d3_geom_voronoiLeftBreakPoint(arc, directrix) {\n var site = arc.site, rfocx = site.x, rfocy = site.y, pby2 = rfocy - directrix;\n if (!pby2) return rfocx;\n var lArc = arc.P;\n if (!lArc) return -Infinity;\n site = lArc.site;\n var lfocx = site.x, lfocy = site.y, plby2 = lfocy - directrix;\n if (!plby2) return lfocx;\n var hl = lfocx - rfocx, aby2 = 1 / pby2 - 1 / plby2, b = hl / plby2;\n if (aby2) return (-b + Math.sqrt(b * b - 2 * aby2 * (hl * hl / (-2 * plby2) - lfocy + plby2 / 2 + rfocy - pby2 / 2))) / aby2 + rfocx;\n return (rfocx + lfocx) / 2;\n }\n function d3_geom_voronoiRightBreakPoint(arc, directrix) {\n var rArc = arc.N;\n if (rArc) return d3_geom_voronoiLeftBreakPoint(rArc, directrix);\n var site = arc.site;\n return site.y === directrix ? site.x : Infinity;\n }\n function d3_geom_voronoiCell(site) {\n this.site = site;\n this.edges = [];\n }\n d3_geom_voronoiCell.prototype.prepare = function() {\n var halfEdges = this.edges, iHalfEdge = halfEdges.length, edge;\n while (iHalfEdge--) {\n edge = halfEdges[iHalfEdge].edge;\n if (!edge.b || !edge.a) halfEdges.splice(iHalfEdge, 1);\n }\n halfEdges.sort(d3_geom_voronoiHalfEdgeOrder);\n return halfEdges.length;\n };\n function d3_geom_voronoiCloseCells(extent) {\n var x0 = extent[0][0], x1 = extent[1][0], y0 = extent[0][1], y1 = extent[1][1], x2, y2, x3, y3, cells = d3_geom_voronoiCells, iCell = cells.length, cell, iHalfEdge, halfEdges, nHalfEdges, start, end;\n while (iCell--) {\n cell = cells[iCell];\n if (!cell || !cell.prepare()) continue;\n halfEdges = cell.edges;\n nHalfEdges = halfEdges.length;\n iHalfEdge = 0;\n while (iHalfEdge < nHalfEdges) {\n end = halfEdges[iHalfEdge].end(), x3 = end.x, y3 = end.y;\n start = halfEdges[++iHalfEdge % nHalfEdges].start(), x2 = start.x, y2 = start.y;\n if (abs(x3 - x2) > ε || abs(y3 - y2) > ε) {\n halfEdges.splice(iHalfEdge, 0, new d3_geom_voronoiHalfEdge(d3_geom_voronoiCreateBorderEdge(cell.site, end, abs(x3 - x0) < ε && y1 - y3 > ε ? {\n x: x0,\n y: abs(x2 - x0) < ε ? y2 : y1\n } : abs(y3 - y1) < ε && x1 - x3 > ε ? {\n x: abs(y2 - y1) < ε ? x2 : x1,\n y: y1\n } : abs(x3 - x1) < ε && y3 - y0 > ε ? {\n x: x1,\n y: abs(x2 - x1) < ε ? y2 : y0\n } : abs(y3 - y0) < ε && x3 - x0 > ε ? {\n x: abs(y2 - y0) < ε ? x2 : x0,\n y: y0\n } : null), cell.site, null));\n ++nHalfEdges;\n }\n }\n }\n }\n function d3_geom_voronoiHalfEdgeOrder(a, b) {\n return b.angle - a.angle;\n }\n function d3_geom_voronoiCircle() {\n d3_geom_voronoiRedBlackNode(this);\n this.x = this.y = this.arc = this.site = this.cy = null;\n }\n function d3_geom_voronoiAttachCircle(arc) {\n var lArc = arc.P, rArc = arc.N;\n if (!lArc || !rArc) return;\n var lSite = lArc.site, cSite = arc.site, rSite = rArc.site;\n if (lSite === rSite) return;\n var bx = cSite.x, by = cSite.y, ax = lSite.x - bx, ay = lSite.y - by, cx = rSite.x - bx, cy = rSite.y - by;\n var d = 2 * (ax * cy - ay * cx);\n if (d >= -ε2) return;\n var ha = ax * ax + ay * ay, hc = cx * cx + cy * cy, x = (cy * ha - ay * hc) / d, y = (ax * hc - cx * ha) / d, cy = y + by;\n var circle = d3_geom_voronoiCirclePool.pop() || new d3_geom_voronoiCircle();\n circle.arc = arc;\n circle.site = cSite;\n circle.x = x + bx;\n circle.y = cy + Math.sqrt(x * x + y * y);\n circle.cy = cy;\n arc.circle = circle;\n var before = null, node = d3_geom_voronoiCircles._;\n while (node) {\n if (circle.y < node.y || circle.y === node.y && circle.x <= node.x) {\n if (node.L) node = node.L; else {\n before = node.P;\n break;\n }\n } else {\n if (node.R) node = node.R; else {\n before = node;\n break;\n }\n }\n }\n d3_geom_voronoiCircles.insert(before, circle);\n if (!before) d3_geom_voronoiFirstCircle = circle;\n }\n function d3_geom_voronoiDetachCircle(arc) {\n var circle = arc.circle;\n if (circle) {\n if (!circle.P) d3_geom_voronoiFirstCircle = circle.N;\n d3_geom_voronoiCircles.remove(circle);\n d3_geom_voronoiCirclePool.push(circle);\n d3_geom_voronoiRedBlackNode(circle);\n arc.circle = null;\n }\n }\n function d3_geom_voronoiClipEdges(extent) {\n var edges = d3_geom_voronoiEdges, clip = d3_geom_clipLine(extent[0][0], extent[0][1], extent[1][0], extent[1][1]), i = edges.length, e;\n while (i--) {\n e = edges[i];\n if (!d3_geom_voronoiConnectEdge(e, extent) || !clip(e) || abs(e.a.x - e.b.x) < ε && abs(e.a.y - e.b.y) < ε) {\n e.a = e.b = null;\n edges.splice(i, 1);\n }\n }\n }\n function d3_geom_voronoiConnectEdge(edge, extent) {\n var vb = edge.b;\n if (vb) return true;\n var va = edge.a, x0 = extent[0][0], x1 = extent[1][0], y0 = extent[0][1], y1 = extent[1][1], lSite = edge.l, rSite = edge.r, lx = lSite.x, ly = lSite.y, rx = rSite.x, ry = rSite.y, fx = (lx + rx) / 2, fy = (ly + ry) / 2, fm, fb;\n if (ry === ly) {\n if (fx < x0 || fx >= x1) return;\n if (lx > rx) {\n if (!va) va = {\n x: fx,\n y: y0\n }; else if (va.y >= y1) return;\n vb = {\n x: fx,\n y: y1\n };\n } else {\n if (!va) va = {\n x: fx,\n y: y1\n }; else if (va.y < y0) return;\n vb = {\n x: fx,\n y: y0\n };\n }\n } else {\n fm = (lx - rx) / (ry - ly);\n fb = fy - fm * fx;\n if (fm < -1 || fm > 1) {\n if (lx > rx) {\n if (!va) va = {\n x: (y0 - fb) / fm,\n y: y0\n }; else if (va.y >= y1) return;\n vb = {\n x: (y1 - fb) / fm,\n y: y1\n };\n } else {\n if (!va) va = {\n x: (y1 - fb) / fm,\n y: y1\n }; else if (va.y < y0) return;\n vb = {\n x: (y0 - fb) / fm,\n y: y0\n };\n }\n } else {\n if (ly < ry) {\n if (!va) va = {\n x: x0,\n y: fm * x0 + fb\n }; else if (va.x >= x1) return;\n vb = {\n x: x1,\n y: fm * x1 + fb\n };\n } else {\n if (!va) va = {\n x: x1,\n y: fm * x1 + fb\n }; else if (va.x < x0) return;\n vb = {\n x: x0,\n y: fm * x0 + fb\n };\n }\n }\n }\n edge.a = va;\n edge.b = vb;\n return true;\n }\n function d3_geom_voronoiEdge(lSite, rSite) {\n this.l = lSite;\n this.r = rSite;\n this.a = this.b = null;\n }\n function d3_geom_voronoiCreateEdge(lSite, rSite, va, vb) {\n var edge = new d3_geom_voronoiEdge(lSite, rSite);\n d3_geom_voronoiEdges.push(edge);\n if (va) d3_geom_voronoiSetEdgeEnd(edge, lSite, rSite, va);\n if (vb) d3_geom_voronoiSetEdgeEnd(edge, rSite, lSite, vb);\n d3_geom_voronoiCells[lSite.i].edges.push(new d3_geom_voronoiHalfEdge(edge, lSite, rSite));\n d3_geom_voronoiCells[rSite.i].edges.push(new d3_geom_voronoiHalfEdge(edge, rSite, lSite));\n return edge;\n }\n function d3_geom_voronoiCreateBorderEdge(lSite, va, vb) {\n var edge = new d3_geom_voronoiEdge(lSite, null);\n edge.a = va;\n edge.b = vb;\n d3_geom_voronoiEdges.push(edge);\n return edge;\n }\n function d3_geom_voronoiSetEdgeEnd(edge, lSite, rSite, vertex) {\n if (!edge.a && !edge.b) {\n edge.a = vertex;\n edge.l = lSite;\n edge.r = rSite;\n } else if (edge.l === rSite) {\n edge.b = vertex;\n } else {\n edge.a = vertex;\n }\n }\n function d3_geom_voronoiHalfEdge(edge, lSite, rSite) {\n var va = edge.a, vb = edge.b;\n this.edge = edge;\n this.site = lSite;\n this.angle = rSite ? Math.atan2(rSite.y - lSite.y, rSite.x - lSite.x) : edge.l === lSite ? Math.atan2(vb.x - va.x, va.y - vb.y) : Math.atan2(va.x - vb.x, vb.y - va.y);\n }\n d3_geom_voronoiHalfEdge.prototype = {\n start: function() {\n return this.edge.l === this.site ? this.edge.a : this.edge.b;\n },\n end: function() {\n return this.edge.l === this.site ? this.edge.b : this.edge.a;\n }\n };\n function d3_geom_voronoiRedBlackTree() {\n this._ = null;\n }\n function d3_geom_voronoiRedBlackNode(node) {\n node.U = node.C = node.L = node.R = node.P = node.N = null;\n }\n d3_geom_voronoiRedBlackTree.prototype = {\n insert: function(after, node) {\n var parent, grandpa, uncle;\n if (after) {\n node.P = after;\n node.N = after.N;\n if (after.N) after.N.P = node;\n after.N = node;\n if (after.R) {\n after = after.R;\n while (after.L) after = after.L;\n after.L = node;\n } else {\n after.R = node;\n }\n parent = after;\n } else if (this._) {\n after = d3_geom_voronoiRedBlackFirst(this._);\n node.P = null;\n node.N = after;\n after.P = after.L = node;\n parent = after;\n } else {\n node.P = node.N = null;\n this._ = node;\n parent = null;\n }\n node.L = node.R = null;\n node.U = parent;\n node.C = true;\n after = node;\n while (parent && parent.C) {\n grandpa = parent.U;\n if (parent === grandpa.L) {\n uncle = grandpa.R;\n if (uncle && uncle.C) {\n parent.C = uncle.C = false;\n grandpa.C = true;\n after = grandpa;\n } else {\n if (after === parent.R) {\n d3_geom_voronoiRedBlackRotateLeft(this, parent);\n after = parent;\n parent = after.U;\n }\n parent.C = false;\n grandpa.C = true;\n d3_geom_voronoiRedBlackRotateRight(this, grandpa);\n }\n } else {\n uncle = grandpa.L;\n if (uncle && uncle.C) {\n parent.C = uncle.C = false;\n grandpa.C = true;\n after = grandpa;\n } else {\n if (after === parent.L) {\n d3_geom_voronoiRedBlackRotateRight(this, parent);\n after = parent;\n parent = after.U;\n }\n parent.C = false;\n grandpa.C = true;\n d3_geom_voronoiRedBlackRotateLeft(this, grandpa);\n }\n }\n parent = after.U;\n }\n this._.C = false;\n },\n remove: function(node) {\n if (node.N) node.N.P = node.P;\n if (node.P) node.P.N = node.N;\n node.N = node.P = null;\n var parent = node.U, sibling, left = node.L, right = node.R, next, red;\n if (!left) next = right; else if (!right) next = left; else next = d3_geom_voronoiRedBlackFirst(right);\n if (parent) {\n if (parent.L === node) parent.L = next; else parent.R = next;\n } else {\n this._ = next;\n }\n if (left && right) {\n red = next.C;\n next.C = node.C;\n next.L = left;\n left.U = next;\n if (next !== right) {\n parent = next.U;\n next.U = node.U;\n node = next.R;\n parent.L = node;\n next.R = right;\n right.U = next;\n } else {\n next.U = parent;\n parent = next;\n node = next.R;\n }\n } else {\n red = node.C;\n node = next;\n }\n if (node) node.U = parent;\n if (red) return;\n if (node && node.C) {\n node.C = false;\n return;\n }\n do {\n if (node === this._) break;\n if (node === parent.L) {\n sibling = parent.R;\n if (sibling.C) {\n sibling.C = false;\n parent.C = true;\n d3_geom_voronoiRedBlackRotateLeft(this, parent);\n sibling = parent.R;\n }\n if (sibling.L && sibling.L.C || sibling.R && sibling.R.C) {\n if (!sibling.R || !sibling.R.C) {\n sibling.L.C = false;\n sibling.C = true;\n d3_geom_voronoiRedBlackRotateRight(this, sibling);\n sibling = parent.R;\n }\n sibling.C = parent.C;\n parent.C = sibling.R.C = false;\n d3_geom_voronoiRedBlackRotateLeft(this, parent);\n node = this._;\n break;\n }\n } else {\n sibling = parent.L;\n if (sibling.C) {\n sibling.C = false;\n parent.C = true;\n d3_geom_voronoiRedBlackRotateRight(this, parent);\n sibling = parent.L;\n }\n if (sibling.L && sibling.L.C || sibling.R && sibling.R.C) {\n if (!sibling.L || !sibling.L.C) {\n sibling.R.C = false;\n sibling.C = true;\n d3_geom_voronoiRedBlackRotateLeft(this, sibling);\n sibling = parent.L;\n }\n sibling.C = parent.C;\n parent.C = sibling.L.C = false;\n d3_geom_voronoiRedBlackRotateRight(this, parent);\n node = this._;\n break;\n }\n }\n sibling.C = true;\n node = parent;\n parent = parent.U;\n } while (!node.C);\n if (node) node.C = false;\n }\n };\n function d3_geom_voronoiRedBlackRotateLeft(tree, node) {\n var p = node, q = node.R, parent = p.U;\n if (parent) {\n if (parent.L === p) parent.L = q; else parent.R = q;\n } else {\n tree._ = q;\n }\n q.U = parent;\n p.U = q;\n p.R = q.L;\n if (p.R) p.R.U = p;\n q.L = p;\n }\n function d3_geom_voronoiRedBlackRotateRight(tree, node) {\n var p = node, q = node.L, parent = p.U;\n if (parent) {\n if (parent.L === p) parent.L = q; else parent.R = q;\n } else {\n tree._ = q;\n }\n q.U = parent;\n p.U = q;\n p.L = q.R;\n if (p.L) p.L.U = p;\n q.R = p;\n }\n function d3_geom_voronoiRedBlackFirst(node) {\n while (node.L) node = node.L;\n return node;\n }\n function d3_geom_voronoi(sites, bbox) {\n var site = sites.sort(d3_geom_voronoiVertexOrder).pop(), x0, y0, circle;\n d3_geom_voronoiEdges = [];\n d3_geom_voronoiCells = new Array(sites.length);\n d3_geom_voronoiBeaches = new d3_geom_voronoiRedBlackTree();\n d3_geom_voronoiCircles = new d3_geom_voronoiRedBlackTree();\n while (true) {\n circle = d3_geom_voronoiFirstCircle;\n if (site && (!circle || site.y < circle.y || site.y === circle.y && site.x < circle.x)) {\n if (site.x !== x0 || site.y !== y0) {\n d3_geom_voronoiCells[site.i] = new d3_geom_voronoiCell(site);\n d3_geom_voronoiAddBeach(site);\n x0 = site.x, y0 = site.y;\n }\n site = sites.pop();\n } else if (circle) {\n d3_geom_voronoiRemoveBeach(circle.arc);\n } else {\n break;\n }\n }\n if (bbox) d3_geom_voronoiClipEdges(bbox), d3_geom_voronoiCloseCells(bbox);\n var diagram = {\n cells: d3_geom_voronoiCells,\n edges: d3_geom_voronoiEdges\n };\n d3_geom_voronoiBeaches = d3_geom_voronoiCircles = d3_geom_voronoiEdges = d3_geom_voronoiCells = null;\n return diagram;\n }\n function d3_geom_voronoiVertexOrder(a, b) {\n return b.y - a.y || b.x - a.x;\n }\n d3.geom.voronoi = function(points) {\n var x = d3_geom_pointX, y = d3_geom_pointY, fx = x, fy = y, clipExtent = d3_geom_voronoiClipExtent;\n if (points) return voronoi(points);\n function voronoi(data) {\n var polygons = new Array(data.length), x0 = clipExtent[0][0], y0 = clipExtent[0][1], x1 = clipExtent[1][0], y1 = clipExtent[1][1];\n d3_geom_voronoi(sites(data), clipExtent).cells.forEach(function(cell, i) {\n var edges = cell.edges, site = cell.site, polygon = polygons[i] = edges.length ? edges.map(function(e) {\n var s = e.start();\n return [ s.x, s.y ];\n }) : site.x >= x0 && site.x <= x1 && site.y >= y0 && site.y <= y1 ? [ [ x0, y1 ], [ x1, y1 ], [ x1, y0 ], [ x0, y0 ] ] : [];\n polygon.point = data[i];\n });\n return polygons;\n }\n function sites(data) {\n return data.map(function(d, i) {\n return {\n x: Math.round(fx(d, i) / ε) * ε,\n y: Math.round(fy(d, i) / ε) * ε,\n i: i\n };\n });\n }\n voronoi.links = function(data) {\n return d3_geom_voronoi(sites(data)).edges.filter(function(edge) {\n return edge.l && edge.r;\n }).map(function(edge) {\n return {\n source: data[edge.l.i],\n target: data[edge.r.i]\n };\n });\n };\n voronoi.triangles = function(data) {\n var triangles = [];\n d3_geom_voronoi(sites(data)).cells.forEach(function(cell, i) {\n var site = cell.site, edges = cell.edges.sort(d3_geom_voronoiHalfEdgeOrder), j = -1, m = edges.length, e0, s0, e1 = edges[m - 1].edge, s1 = e1.l === site ? e1.r : e1.l;\n while (++j < m) {\n e0 = e1;\n s0 = s1;\n e1 = edges[j].edge;\n s1 = e1.l === site ? e1.r : e1.l;\n if (i < s0.i && i < s1.i && d3_geom_voronoiTriangleArea(site, s0, s1) < 0) {\n triangles.push([ data[i], data[s0.i], data[s1.i] ]);\n }\n }\n });\n return triangles;\n };\n voronoi.x = function(_) {\n return arguments.length ? (fx = d3_functor(x = _), voronoi) : x;\n };\n voronoi.y = function(_) {\n return arguments.length ? (fy = d3_functor(y = _), voronoi) : y;\n };\n voronoi.clipExtent = function(_) {\n if (!arguments.length) return clipExtent === d3_geom_voronoiClipExtent ? null : clipExtent;\n clipExtent = _ == null ? d3_geom_voronoiClipExtent : _;\n return voronoi;\n };\n voronoi.size = function(_) {\n if (!arguments.length) return clipExtent === d3_geom_voronoiClipExtent ? null : clipExtent && clipExtent[1];\n return voronoi.clipExtent(_ && [ [ 0, 0 ], _ ]);\n };\n return voronoi;\n };\n var d3_geom_voronoiClipExtent = [ [ -1e6, -1e6 ], [ 1e6, 1e6 ] ];\n function d3_geom_voronoiTriangleArea(a, b, c) {\n return (a.x - c.x) * (b.y - a.y) - (a.x - b.x) * (c.y - a.y);\n }\n d3.geom.delaunay = function(vertices) {\n return d3.geom.voronoi().triangles(vertices);\n };\n d3.geom.quadtree = function(points, x1, y1, x2, y2) {\n var x = d3_geom_pointX, y = d3_geom_pointY, compat;\n if (compat = arguments.length) {\n x = d3_geom_quadtreeCompatX;\n y = d3_geom_quadtreeCompatY;\n if (compat === 3) {\n y2 = y1;\n x2 = x1;\n y1 = x1 = 0;\n }\n return quadtree(points);\n }\n function quadtree(data) {\n var d, fx = d3_functor(x), fy = d3_functor(y), xs, ys, i, n, x1_, y1_, x2_, y2_;\n if (x1 != null) {\n x1_ = x1, y1_ = y1, x2_ = x2, y2_ = y2;\n } else {\n x2_ = y2_ = -(x1_ = y1_ = Infinity);\n xs = [], ys = [];\n n = data.length;\n if (compat) for (i = 0; i < n; ++i) {\n d = data[i];\n if (d.x < x1_) x1_ = d.x;\n if (d.y < y1_) y1_ = d.y;\n if (d.x > x2_) x2_ = d.x;\n if (d.y > y2_) y2_ = d.y;\n xs.push(d.x);\n ys.push(d.y);\n } else for (i = 0; i < n; ++i) {\n var x_ = +fx(d = data[i], i), y_ = +fy(d, i);\n if (x_ < x1_) x1_ = x_;\n if (y_ < y1_) y1_ = y_;\n if (x_ > x2_) x2_ = x_;\n if (y_ > y2_) y2_ = y_;\n xs.push(x_);\n ys.push(y_);\n }\n }\n var dx = x2_ - x1_, dy = y2_ - y1_;\n if (dx > dy) y2_ = y1_ + dx; else x2_ = x1_ + dy;\n function insert(n, d, x, y, x1, y1, x2, y2) {\n if (isNaN(x) || isNaN(y)) return;\n if (n.leaf) {\n var nx = n.x, ny = n.y;\n if (nx != null) {\n if (abs(nx - x) + abs(ny - y) < .01) {\n insertChild(n, d, x, y, x1, y1, x2, y2);\n } else {\n var nPoint = n.point;\n n.x = n.y = n.point = null;\n insertChild(n, nPoint, nx, ny, x1, y1, x2, y2);\n insertChild(n, d, x, y, x1, y1, x2, y2);\n }\n } else {\n n.x = x, n.y = y, n.point = d;\n }\n } else {\n insertChild(n, d, x, y, x1, y1, x2, y2);\n }\n }\n function insertChild(n, d, x, y, x1, y1, x2, y2) {\n var xm = (x1 + x2) * .5, ym = (y1 + y2) * .5, right = x >= xm, below = y >= ym, i = below << 1 | right;\n n.leaf = false;\n n = n.nodes[i] || (n.nodes[i] = d3_geom_quadtreeNode());\n if (right) x1 = xm; else x2 = xm;\n if (below) y1 = ym; else y2 = ym;\n insert(n, d, x, y, x1, y1, x2, y2);\n }\n var root = d3_geom_quadtreeNode();\n root.add = function(d) {\n insert(root, d, +fx(d, ++i), +fy(d, i), x1_, y1_, x2_, y2_);\n };\n root.visit = function(f) {\n d3_geom_quadtreeVisit(f, root, x1_, y1_, x2_, y2_);\n };\n root.find = function(point) {\n return d3_geom_quadtreeFind(root, point[0], point[1], x1_, y1_, x2_, y2_);\n };\n i = -1;\n if (x1 == null) {\n while (++i < n) {\n insert(root, data[i], xs[i], ys[i], x1_, y1_, x2_, y2_);\n }\n --i;\n } else data.forEach(root.add);\n xs = ys = data = d = null;\n return root;\n }\n quadtree.x = function(_) {\n return arguments.length ? (x = _, quadtree) : x;\n };\n quadtree.y = function(_) {\n return arguments.length ? (y = _, quadtree) : y;\n };\n quadtree.extent = function(_) {\n if (!arguments.length) return x1 == null ? null : [ [ x1, y1 ], [ x2, y2 ] ];\n if (_ == null) x1 = y1 = x2 = y2 = null; else x1 = +_[0][0], y1 = +_[0][1], x2 = +_[1][0], \n y2 = +_[1][1];\n return quadtree;\n };\n quadtree.size = function(_) {\n if (!arguments.length) return x1 == null ? null : [ x2 - x1, y2 - y1 ];\n if (_ == null) x1 = y1 = x2 = y2 = null; else x1 = y1 = 0, x2 = +_[0], y2 = +_[1];\n return quadtree;\n };\n return quadtree;\n };\n function d3_geom_quadtreeCompatX(d) {\n return d.x;\n }\n function d3_geom_quadtreeCompatY(d) {\n return d.y;\n }\n function d3_geom_quadtreeNode() {\n return {\n leaf: true,\n nodes: [],\n point: null,\n x: null,\n y: null\n };\n }\n function d3_geom_quadtreeVisit(f, node, x1, y1, x2, y2) {\n if (!f(node, x1, y1, x2, y2)) {\n var sx = (x1 + x2) * .5, sy = (y1 + y2) * .5, children = node.nodes;\n if (children[0]) d3_geom_quadtreeVisit(f, children[0], x1, y1, sx, sy);\n if (children[1]) d3_geom_quadtreeVisit(f, children[1], sx, y1, x2, sy);\n if (children[2]) d3_geom_quadtreeVisit(f, children[2], x1, sy, sx, y2);\n if (children[3]) d3_geom_quadtreeVisit(f, children[3], sx, sy, x2, y2);\n }\n }\n function d3_geom_quadtreeFind(root, x, y, x0, y0, x3, y3) {\n var minDistance2 = Infinity, closestPoint;\n (function find(node, x1, y1, x2, y2) {\n if (x1 > x3 || y1 > y3 || x2 < x0 || y2 < y0) return;\n if (point = node.point) {\n var point, dx = x - node.x, dy = y - node.y, distance2 = dx * dx + dy * dy;\n if (distance2 < minDistance2) {\n var distance = Math.sqrt(minDistance2 = distance2);\n x0 = x - distance, y0 = y - distance;\n x3 = x + distance, y3 = y + distance;\n closestPoint = point;\n }\n }\n var children = node.nodes, xm = (x1 + x2) * .5, ym = (y1 + y2) * .5, right = x >= xm, below = y >= ym;\n for (var i = below << 1 | right, j = i + 4; i < j; ++i) {\n if (node = children[i & 3]) switch (i & 3) {\n case 0:\n find(node, x1, y1, xm, ym);\n break;\n\n case 1:\n find(node, xm, y1, x2, ym);\n break;\n\n case 2:\n find(node, x1, ym, xm, y2);\n break;\n\n case 3:\n find(node, xm, ym, x2, y2);\n break;\n }\n }\n })(root, x0, y0, x3, y3);\n return closestPoint;\n }\n d3.interpolateRgb = d3_interpolateRgb;\n function d3_interpolateRgb(a, b) {\n a = d3.rgb(a);\n b = d3.rgb(b);\n var ar = a.r, ag = a.g, ab = a.b, br = b.r - ar, bg = b.g - ag, bb = b.b - ab;\n return function(t) {\n return \"#\" + d3_rgb_hex(Math.round(ar + br * t)) + d3_rgb_hex(Math.round(ag + bg * t)) + d3_rgb_hex(Math.round(ab + bb * t));\n };\n }\n d3.interpolateObject = d3_interpolateObject;\n function d3_interpolateObject(a, b) {\n var i = {}, c = {}, k;\n for (k in a) {\n if (k in b) {\n i[k] = d3_interpolate(a[k], b[k]);\n } else {\n c[k] = a[k];\n }\n }\n for (k in b) {\n if (!(k in a)) {\n c[k] = b[k];\n }\n }\n return function(t) {\n for (k in i) c[k] = i[k](t);\n return c;\n };\n }\n d3.interpolateNumber = d3_interpolateNumber;\n function d3_interpolateNumber(a, b) {\n a = +a, b = +b;\n return function(t) {\n return a * (1 - t) + b * t;\n };\n }\n d3.interpolateString = d3_interpolateString;\n function d3_interpolateString(a, b) {\n var bi = d3_interpolate_numberA.lastIndex = d3_interpolate_numberB.lastIndex = 0, am, bm, bs, i = -1, s = [], q = [];\n a = a + \"\", b = b + \"\";\n while ((am = d3_interpolate_numberA.exec(a)) && (bm = d3_interpolate_numberB.exec(b))) {\n if ((bs = bm.index) > bi) {\n bs = b.slice(bi, bs);\n if (s[i]) s[i] += bs; else s[++i] = bs;\n }\n if ((am = am[0]) === (bm = bm[0])) {\n if (s[i]) s[i] += bm; else s[++i] = bm;\n } else {\n s[++i] = null;\n q.push({\n i: i,\n x: d3_interpolateNumber(am, bm)\n });\n }\n bi = d3_interpolate_numberB.lastIndex;\n }\n if (bi < b.length) {\n bs = b.slice(bi);\n if (s[i]) s[i] += bs; else s[++i] = bs;\n }\n return s.length < 2 ? q[0] ? (b = q[0].x, function(t) {\n return b(t) + \"\";\n }) : function() {\n return b;\n } : (b = q.length, function(t) {\n for (var i = 0, o; i < b; ++i) s[(o = q[i]).i] = o.x(t);\n return s.join(\"\");\n });\n }\n var d3_interpolate_numberA = /[-+]?(?:\\d+\\.?\\d*|\\.?\\d+)(?:[eE][-+]?\\d+)?/g, d3_interpolate_numberB = new RegExp(d3_interpolate_numberA.source, \"g\");\n d3.interpolate = d3_interpolate;\n function d3_interpolate(a, b) {\n var i = d3.interpolators.length, f;\n while (--i >= 0 && !(f = d3.interpolators[i](a, b))) ;\n return f;\n }\n d3.interpolators = [ function(a, b) {\n var t = typeof b;\n return (t === \"string\" ? d3_rgb_names.has(b) || /^(#|rgb\\(|hsl\\()/.test(b) ? d3_interpolateRgb : d3_interpolateString : b instanceof d3_color ? d3_interpolateRgb : Array.isArray(b) ? d3_interpolateArray : t === \"object\" && isNaN(b) ? d3_interpolateObject : d3_interpolateNumber)(a, b);\n } ];\n d3.interpolateArray = d3_interpolateArray;\n function d3_interpolateArray(a, b) {\n var x = [], c = [], na = a.length, nb = b.length, n0 = Math.min(a.length, b.length), i;\n for (i = 0; i < n0; ++i) x.push(d3_interpolate(a[i], b[i]));\n for (;i < na; ++i) c[i] = a[i];\n for (;i < nb; ++i) c[i] = b[i];\n return function(t) {\n for (i = 0; i < n0; ++i) c[i] = x[i](t);\n return c;\n };\n }\n var d3_ease_default = function() {\n return d3_identity;\n };\n var d3_ease = d3.map({\n linear: d3_ease_default,\n poly: d3_ease_poly,\n quad: function() {\n return d3_ease_quad;\n },\n cubic: function() {\n return d3_ease_cubic;\n },\n sin: function() {\n return d3_ease_sin;\n },\n exp: function() {\n return d3_ease_exp;\n },\n circle: function() {\n return d3_ease_circle;\n },\n elastic: d3_ease_elastic,\n back: d3_ease_back,\n bounce: function() {\n return d3_ease_bounce;\n }\n });\n var d3_ease_mode = d3.map({\n \"in\": d3_identity,\n out: d3_ease_reverse,\n \"in-out\": d3_ease_reflect,\n \"out-in\": function(f) {\n return d3_ease_reflect(d3_ease_reverse(f));\n }\n });\n d3.ease = function(name) {\n var i = name.indexOf(\"-\"), t = i >= 0 ? name.slice(0, i) : name, m = i >= 0 ? name.slice(i + 1) : \"in\";\n t = d3_ease.get(t) || d3_ease_default;\n m = d3_ease_mode.get(m) || d3_identity;\n return d3_ease_clamp(m(t.apply(null, d3_arraySlice.call(arguments, 1))));\n };\n function d3_ease_clamp(f) {\n return function(t) {\n return t <= 0 ? 0 : t >= 1 ? 1 : f(t);\n };\n }\n function d3_ease_reverse(f) {\n return function(t) {\n return 1 - f(1 - t);\n };\n }\n function d3_ease_reflect(f) {\n return function(t) {\n return .5 * (t < .5 ? f(2 * t) : 2 - f(2 - 2 * t));\n };\n }\n function d3_ease_quad(t) {\n return t * t;\n }\n function d3_ease_cubic(t) {\n return t * t * t;\n }\n function d3_ease_cubicInOut(t) {\n if (t <= 0) return 0;\n if (t >= 1) return 1;\n var t2 = t * t, t3 = t2 * t;\n return 4 * (t < .5 ? t3 : 3 * (t - t2) + t3 - .75);\n }\n function d3_ease_poly(e) {\n return function(t) {\n return Math.pow(t, e);\n };\n }\n function d3_ease_sin(t) {\n return 1 - Math.cos(t * halfπ);\n }\n function d3_ease_exp(t) {\n return Math.pow(2, 10 * (t - 1));\n }\n function d3_ease_circle(t) {\n return 1 - Math.sqrt(1 - t * t);\n }\n function d3_ease_elastic(a, p) {\n var s;\n if (arguments.length < 2) p = .45;\n if (arguments.length) s = p / τ * Math.asin(1 / a); else a = 1, s = p / 4;\n return function(t) {\n return 1 + a * Math.pow(2, -10 * t) * Math.sin((t - s) * τ / p);\n };\n }\n function d3_ease_back(s) {\n if (!s) s = 1.70158;\n return function(t) {\n return t * t * ((s + 1) * t - s);\n };\n }\n function d3_ease_bounce(t) {\n return t < 1 / 2.75 ? 7.5625 * t * t : t < 2 / 2.75 ? 7.5625 * (t -= 1.5 / 2.75) * t + .75 : t < 2.5 / 2.75 ? 7.5625 * (t -= 2.25 / 2.75) * t + .9375 : 7.5625 * (t -= 2.625 / 2.75) * t + .984375;\n }\n d3.interpolateHcl = d3_interpolateHcl;\n function d3_interpolateHcl(a, b) {\n a = d3.hcl(a);\n b = d3.hcl(b);\n var ah = a.h, ac = a.c, al = a.l, bh = b.h - ah, bc = b.c - ac, bl = b.l - al;\n if (isNaN(bc)) bc = 0, ac = isNaN(ac) ? b.c : ac;\n if (isNaN(bh)) bh = 0, ah = isNaN(ah) ? b.h : ah; else if (bh > 180) bh -= 360; else if (bh < -180) bh += 360;\n return function(t) {\n return d3_hcl_lab(ah + bh * t, ac + bc * t, al + bl * t) + \"\";\n };\n }\n d3.interpolateHsl = d3_interpolateHsl;\n function d3_interpolateHsl(a, b) {\n a = d3.hsl(a);\n b = d3.hsl(b);\n var ah = a.h, as = a.s, al = a.l, bh = b.h - ah, bs = b.s - as, bl = b.l - al;\n if (isNaN(bs)) bs = 0, as = isNaN(as) ? b.s : as;\n if (isNaN(bh)) bh = 0, ah = isNaN(ah) ? b.h : ah; else if (bh > 180) bh -= 360; else if (bh < -180) bh += 360;\n return function(t) {\n return d3_hsl_rgb(ah + bh * t, as + bs * t, al + bl * t) + \"\";\n };\n }\n d3.interpolateLab = d3_interpolateLab;\n function d3_interpolateLab(a, b) {\n a = d3.lab(a);\n b = d3.lab(b);\n var al = a.l, aa = a.a, ab = a.b, bl = b.l - al, ba = b.a - aa, bb = b.b - ab;\n return function(t) {\n return d3_lab_rgb(al + bl * t, aa + ba * t, ab + bb * t) + \"\";\n };\n }\n d3.interpolateRound = d3_interpolateRound;\n function d3_interpolateRound(a, b) {\n b -= a;\n return function(t) {\n return Math.round(a + b * t);\n };\n }\n d3.transform = function(string) {\n var g = d3_document.createElementNS(d3.ns.prefix.svg, \"g\");\n return (d3.transform = function(string) {\n if (string != null) {\n g.setAttribute(\"transform\", string);\n var t = g.transform.baseVal.consolidate();\n }\n return new d3_transform(t ? t.matrix : d3_transformIdentity);\n })(string);\n };\n function d3_transform(m) {\n var r0 = [ m.a, m.b ], r1 = [ m.c, m.d ], kx = d3_transformNormalize(r0), kz = d3_transformDot(r0, r1), ky = d3_transformNormalize(d3_transformCombine(r1, r0, -kz)) || 0;\n if (r0[0] * r1[1] < r1[0] * r0[1]) {\n r0[0] *= -1;\n r0[1] *= -1;\n kx *= -1;\n kz *= -1;\n }\n this.rotate = (kx ? Math.atan2(r0[1], r0[0]) : Math.atan2(-r1[0], r1[1])) * d3_degrees;\n this.translate = [ m.e, m.f ];\n this.scale = [ kx, ky ];\n this.skew = ky ? Math.atan2(kz, ky) * d3_degrees : 0;\n }\n d3_transform.prototype.toString = function() {\n return \"translate(\" + this.translate + \")rotate(\" + this.rotate + \")skewX(\" + this.skew + \")scale(\" + this.scale + \")\";\n };\n function d3_transformDot(a, b) {\n return a[0] * b[0] + a[1] * b[1];\n }\n function d3_transformNormalize(a) {\n var k = Math.sqrt(d3_transformDot(a, a));\n if (k) {\n a[0] /= k;\n a[1] /= k;\n }\n return k;\n }\n function d3_transformCombine(a, b, k) {\n a[0] += k * b[0];\n a[1] += k * b[1];\n return a;\n }\n var d3_transformIdentity = {\n a: 1,\n b: 0,\n c: 0,\n d: 1,\n e: 0,\n f: 0\n };\n d3.interpolateTransform = d3_interpolateTransform;\n function d3_interpolateTransform(a, b) {\n var s = [], q = [], n, A = d3.transform(a), B = d3.transform(b), ta = A.translate, tb = B.translate, ra = A.rotate, rb = B.rotate, wa = A.skew, wb = B.skew, ka = A.scale, kb = B.scale;\n if (ta[0] != tb[0] || ta[1] != tb[1]) {\n s.push(\"translate(\", null, \",\", null, \")\");\n q.push({\n i: 1,\n x: d3_interpolateNumber(ta[0], tb[0])\n }, {\n i: 3,\n x: d3_interpolateNumber(ta[1], tb[1])\n });\n } else if (tb[0] || tb[1]) {\n s.push(\"translate(\" + tb + \")\");\n } else {\n s.push(\"\");\n }\n if (ra != rb) {\n if (ra - rb > 180) rb += 360; else if (rb - ra > 180) ra += 360;\n q.push({\n i: s.push(s.pop() + \"rotate(\", null, \")\") - 2,\n x: d3_interpolateNumber(ra, rb)\n });\n } else if (rb) {\n s.push(s.pop() + \"rotate(\" + rb + \")\");\n }\n if (wa != wb) {\n q.push({\n i: s.push(s.pop() + \"skewX(\", null, \")\") - 2,\n x: d3_interpolateNumber(wa, wb)\n });\n } else if (wb) {\n s.push(s.pop() + \"skewX(\" + wb + \")\");\n }\n if (ka[0] != kb[0] || ka[1] != kb[1]) {\n n = s.push(s.pop() + \"scale(\", null, \",\", null, \")\");\n q.push({\n i: n - 4,\n x: d3_interpolateNumber(ka[0], kb[0])\n }, {\n i: n - 2,\n x: d3_interpolateNumber(ka[1], kb[1])\n });\n } else if (kb[0] != 1 || kb[1] != 1) {\n s.push(s.pop() + \"scale(\" + kb + \")\");\n }\n n = q.length;\n return function(t) {\n var i = -1, o;\n while (++i < n) s[(o = q[i]).i] = o.x(t);\n return s.join(\"\");\n };\n }\n function d3_uninterpolateNumber(a, b) {\n b = (b -= a = +a) || 1 / b;\n return function(x) {\n return (x - a) / b;\n };\n }\n function d3_uninterpolateClamp(a, b) {\n b = (b -= a = +a) || 1 / b;\n return function(x) {\n return Math.max(0, Math.min(1, (x - a) / b));\n };\n }\n d3.layout = {};\n d3.layout.bundle = function() {\n return function(links) {\n var paths = [], i = -1, n = links.length;\n while (++i < n) paths.push(d3_layout_bundlePath(links[i]));\n return paths;\n };\n };\n function d3_layout_bundlePath(link) {\n var start = link.source, end = link.target, lca = d3_layout_bundleLeastCommonAncestor(start, end), points = [ start ];\n while (start !== lca) {\n start = start.parent;\n points.push(start);\n }\n var k = points.length;\n while (end !== lca) {\n points.splice(k, 0, end);\n end = end.parent;\n }\n return points;\n }\n function d3_layout_bundleAncestors(node) {\n var ancestors = [], parent = node.parent;\n while (parent != null) {\n ancestors.push(node);\n node = parent;\n parent = parent.parent;\n }\n ancestors.push(node);\n return ancestors;\n }\n function d3_layout_bundleLeastCommonAncestor(a, b) {\n if (a === b) return a;\n var aNodes = d3_layout_bundleAncestors(a), bNodes = d3_layout_bundleAncestors(b), aNode = aNodes.pop(), bNode = bNodes.pop(), sharedNode = null;\n while (aNode === bNode) {\n sharedNode = aNode;\n aNode = aNodes.pop();\n bNode = bNodes.pop();\n }\n return sharedNode;\n }\n d3.layout.chord = function() {\n var chord = {}, chords, groups, matrix, n, padding = 0, sortGroups, sortSubgroups, sortChords;\n function relayout() {\n var subgroups = {}, groupSums = [], groupIndex = d3.range(n), subgroupIndex = [], k, x, x0, i, j;\n chords = [];\n groups = [];\n k = 0, i = -1;\n while (++i < n) {\n x = 0, j = -1;\n while (++j < n) {\n x += matrix[i][j];\n }\n groupSums.push(x);\n subgroupIndex.push(d3.range(n));\n k += x;\n }\n if (sortGroups) {\n groupIndex.sort(function(a, b) {\n return sortGroups(groupSums[a], groupSums[b]);\n });\n }\n if (sortSubgroups) {\n subgroupIndex.forEach(function(d, i) {\n d.sort(function(a, b) {\n return sortSubgroups(matrix[i][a], matrix[i][b]);\n });\n });\n }\n k = (τ - padding * n) / k;\n x = 0, i = -1;\n while (++i < n) {\n x0 = x, j = -1;\n while (++j < n) {\n var di = groupIndex[i], dj = subgroupIndex[di][j], v = matrix[di][dj], a0 = x, a1 = x += v * k;\n subgroups[di + \"-\" + dj] = {\n index: di,\n subindex: dj,\n startAngle: a0,\n endAngle: a1,\n value: v\n };\n }\n groups[di] = {\n index: di,\n startAngle: x0,\n endAngle: x,\n value: (x - x0) / k\n };\n x += padding;\n }\n i = -1;\n while (++i < n) {\n j = i - 1;\n while (++j < n) {\n var source = subgroups[i + \"-\" + j], target = subgroups[j + \"-\" + i];\n if (source.value || target.value) {\n chords.push(source.value < target.value ? {\n source: target,\n target: source\n } : {\n source: source,\n target: target\n });\n }\n }\n }\n if (sortChords) resort();\n }\n function resort() {\n chords.sort(function(a, b) {\n return sortChords((a.source.value + a.target.value) / 2, (b.source.value + b.target.value) / 2);\n });\n }\n chord.matrix = function(x) {\n if (!arguments.length) return matrix;\n n = (matrix = x) && matrix.length;\n chords = groups = null;\n return chord;\n };\n chord.padding = function(x) {\n if (!arguments.length) return padding;\n padding = x;\n chords = groups = null;\n return chord;\n };\n chord.sortGroups = function(x) {\n if (!arguments.length) return sortGroups;\n sortGroups = x;\n chords = groups = null;\n return chord;\n };\n chord.sortSubgroups = function(x) {\n if (!arguments.length) return sortSubgroups;\n sortSubgroups = x;\n chords = null;\n return chord;\n };\n chord.sortChords = function(x) {\n if (!arguments.length) return sortChords;\n sortChords = x;\n if (chords) resort();\n return chord;\n };\n chord.chords = function() {\n if (!chords) relayout();\n return chords;\n };\n chord.groups = function() {\n if (!groups) relayout();\n return groups;\n };\n return chord;\n };\n d3.layout.force = function() {\n var force = {}, event = d3.dispatch(\"start\", \"tick\", \"end\"), size = [ 1, 1 ], drag, alpha, friction = .9, linkDistance = d3_layout_forceLinkDistance, linkStrength = d3_layout_forceLinkStrength, charge = -30, chargeDistance2 = d3_layout_forceChargeDistance2, gravity = .1, theta2 = .64, nodes = [], links = [], distances, strengths, charges;\n function repulse(node) {\n return function(quad, x1, _, x2) {\n if (quad.point !== node) {\n var dx = quad.cx - node.x, dy = quad.cy - node.y, dw = x2 - x1, dn = dx * dx + dy * dy;\n if (dw * dw / theta2 < dn) {\n if (dn < chargeDistance2) {\n var k = quad.charge / dn;\n node.px -= dx * k;\n node.py -= dy * k;\n }\n return true;\n }\n if (quad.point && dn && dn < chargeDistance2) {\n var k = quad.pointCharge / dn;\n node.px -= dx * k;\n node.py -= dy * k;\n }\n }\n return !quad.charge;\n };\n }\n force.tick = function() {\n if ((alpha *= .99) < .005) {\n event.end({\n type: \"end\",\n alpha: alpha = 0\n });\n return true;\n }\n var n = nodes.length, m = links.length, q, i, o, s, t, l, k, x, y;\n for (i = 0; i < m; ++i) {\n o = links[i];\n s = o.source;\n t = o.target;\n x = t.x - s.x;\n y = t.y - s.y;\n if (l = x * x + y * y) {\n l = alpha * strengths[i] * ((l = Math.sqrt(l)) - distances[i]) / l;\n x *= l;\n y *= l;\n t.x -= x * (k = s.weight / (t.weight + s.weight));\n t.y -= y * k;\n s.x += x * (k = 1 - k);\n s.y += y * k;\n }\n }\n if (k = alpha * gravity) {\n x = size[0] / 2;\n y = size[1] / 2;\n i = -1;\n if (k) while (++i < n) {\n o = nodes[i];\n o.x += (x - o.x) * k;\n o.y += (y - o.y) * k;\n }\n }\n if (charge) {\n d3_layout_forceAccumulate(q = d3.geom.quadtree(nodes), alpha, charges);\n i = -1;\n while (++i < n) {\n if (!(o = nodes[i]).fixed) {\n q.visit(repulse(o));\n }\n }\n }\n i = -1;\n while (++i < n) {\n o = nodes[i];\n if (o.fixed) {\n o.x = o.px;\n o.y = o.py;\n } else {\n o.x -= (o.px - (o.px = o.x)) * friction;\n o.y -= (o.py - (o.py = o.y)) * friction;\n }\n }\n event.tick({\n type: \"tick\",\n alpha: alpha\n });\n };\n force.nodes = function(x) {\n if (!arguments.length) return nodes;\n nodes = x;\n return force;\n };\n force.links = function(x) {\n if (!arguments.length) return links;\n links = x;\n return force;\n };\n force.size = function(x) {\n if (!arguments.length) return size;\n size = x;\n return force;\n };\n force.linkDistance = function(x) {\n if (!arguments.length) return linkDistance;\n linkDistance = typeof x === \"function\" ? x : +x;\n return force;\n };\n force.distance = force.linkDistance;\n force.linkStrength = function(x) {\n if (!arguments.length) return linkStrength;\n linkStrength = typeof x === \"function\" ? x : +x;\n return force;\n };\n force.friction = function(x) {\n if (!arguments.length) return friction;\n friction = +x;\n return force;\n };\n force.charge = function(x) {\n if (!arguments.length) return charge;\n charge = typeof x === \"function\" ? x : +x;\n return force;\n };\n force.chargeDistance = function(x) {\n if (!arguments.length) return Math.sqrt(chargeDistance2);\n chargeDistance2 = x * x;\n return force;\n };\n force.gravity = function(x) {\n if (!arguments.length) return gravity;\n gravity = +x;\n return force;\n };\n force.theta = function(x) {\n if (!arguments.length) return Math.sqrt(theta2);\n theta2 = x * x;\n return force;\n };\n force.alpha = function(x) {\n if (!arguments.length) return alpha;\n x = +x;\n if (alpha) {\n if (x > 0) alpha = x; else alpha = 0;\n } else if (x > 0) {\n event.start({\n type: \"start\",\n alpha: alpha = x\n });\n d3.timer(force.tick);\n }\n return force;\n };\n force.start = function() {\n var i, n = nodes.length, m = links.length, w = size[0], h = size[1], neighbors, o;\n for (i = 0; i < n; ++i) {\n (o = nodes[i]).index = i;\n o.weight = 0;\n }\n for (i = 0; i < m; ++i) {\n o = links[i];\n if (typeof o.source == \"number\") o.source = nodes[o.source];\n if (typeof o.target == \"number\") o.target = nodes[o.target];\n ++o.source.weight;\n ++o.target.weight;\n }\n for (i = 0; i < n; ++i) {\n o = nodes[i];\n if (isNaN(o.x)) o.x = position(\"x\", w);\n if (isNaN(o.y)) o.y = position(\"y\", h);\n if (isNaN(o.px)) o.px = o.x;\n if (isNaN(o.py)) o.py = o.y;\n }\n distances = [];\n if (typeof linkDistance === \"function\") for (i = 0; i < m; ++i) distances[i] = +linkDistance.call(this, links[i], i); else for (i = 0; i < m; ++i) distances[i] = linkDistance;\n strengths = [];\n if (typeof linkStrength === \"function\") for (i = 0; i < m; ++i) strengths[i] = +linkStrength.call(this, links[i], i); else for (i = 0; i < m; ++i) strengths[i] = linkStrength;\n charges = [];\n if (typeof charge === \"function\") for (i = 0; i < n; ++i) charges[i] = +charge.call(this, nodes[i], i); else for (i = 0; i < n; ++i) charges[i] = charge;\n function position(dimension, size) {\n if (!neighbors) {\n neighbors = new Array(n);\n for (j = 0; j < n; ++j) {\n neighbors[j] = [];\n }\n for (j = 0; j < m; ++j) {\n var o = links[j];\n neighbors[o.source.index].push(o.target);\n neighbors[o.target.index].push(o.source);\n }\n }\n var candidates = neighbors[i], j = -1, l = candidates.length, x;\n while (++j < l) if (!isNaN(x = candidates[j][dimension])) return x;\n return Math.random() * size;\n }\n return force.resume();\n };\n force.resume = function() {\n return force.alpha(.1);\n };\n force.stop = function() {\n return force.alpha(0);\n };\n force.drag = function() {\n if (!drag) drag = d3.behavior.drag().origin(d3_identity).on(\"dragstart.force\", d3_layout_forceDragstart).on(\"drag.force\", dragmove).on(\"dragend.force\", d3_layout_forceDragend);\n if (!arguments.length) return drag;\n this.on(\"mouseover.force\", d3_layout_forceMouseover).on(\"mouseout.force\", d3_layout_forceMouseout).call(drag);\n };\n function dragmove(d) {\n d.px = d3.event.x, d.py = d3.event.y;\n force.resume();\n }\n return d3.rebind(force, event, \"on\");\n };\n function d3_layout_forceDragstart(d) {\n d.fixed |= 2;\n }\n function d3_layout_forceDragend(d) {\n d.fixed &= ~6;\n }\n function d3_layout_forceMouseover(d) {\n d.fixed |= 4;\n d.px = d.x, d.py = d.y;\n }\n function d3_layout_forceMouseout(d) {\n d.fixed &= ~4;\n }\n function d3_layout_forceAccumulate(quad, alpha, charges) {\n var cx = 0, cy = 0;\n quad.charge = 0;\n if (!quad.leaf) {\n var nodes = quad.nodes, n = nodes.length, i = -1, c;\n while (++i < n) {\n c = nodes[i];\n if (c == null) continue;\n d3_layout_forceAccumulate(c, alpha, charges);\n quad.charge += c.charge;\n cx += c.charge * c.cx;\n cy += c.charge * c.cy;\n }\n }\n if (quad.point) {\n if (!quad.leaf) {\n quad.point.x += Math.random() - .5;\n quad.point.y += Math.random() - .5;\n }\n var k = alpha * charges[quad.point.index];\n quad.charge += quad.pointCharge = k;\n cx += k * quad.point.x;\n cy += k * quad.point.y;\n }\n quad.cx = cx / quad.charge;\n quad.cy = cy / quad.charge;\n }\n var d3_layout_forceLinkDistance = 20, d3_layout_forceLinkStrength = 1, d3_layout_forceChargeDistance2 = Infinity;\n d3.layout.hierarchy = function() {\n var sort = d3_layout_hierarchySort, children = d3_layout_hierarchyChildren, value = d3_layout_hierarchyValue;\n function hierarchy(root) {\n var stack = [ root ], nodes = [], node;\n root.depth = 0;\n while ((node = stack.pop()) != null) {\n nodes.push(node);\n if ((childs = children.call(hierarchy, node, node.depth)) && (n = childs.length)) {\n var n, childs, child;\n while (--n >= 0) {\n stack.push(child = childs[n]);\n child.parent = node;\n child.depth = node.depth + 1;\n }\n if (value) node.value = 0;\n node.children = childs;\n } else {\n if (value) node.value = +value.call(hierarchy, node, node.depth) || 0;\n delete node.children;\n }\n }\n d3_layout_hierarchyVisitAfter(root, function(node) {\n var childs, parent;\n if (sort && (childs = node.children)) childs.sort(sort);\n if (value && (parent = node.parent)) parent.value += node.value;\n });\n return nodes;\n }\n hierarchy.sort = function(x) {\n if (!arguments.length) return sort;\n sort = x;\n return hierarchy;\n };\n hierarchy.children = function(x) {\n if (!arguments.length) return children;\n children = x;\n return hierarchy;\n };\n hierarchy.value = function(x) {\n if (!arguments.length) return value;\n value = x;\n return hierarchy;\n };\n hierarchy.revalue = function(root) {\n if (value) {\n d3_layout_hierarchyVisitBefore(root, function(node) {\n if (node.children) node.value = 0;\n });\n d3_layout_hierarchyVisitAfter(root, function(node) {\n var parent;\n if (!node.children) node.value = +value.call(hierarchy, node, node.depth) || 0;\n if (parent = node.parent) parent.value += node.value;\n });\n }\n return root;\n };\n return hierarchy;\n };\n function d3_layout_hierarchyRebind(object, hierarchy) {\n d3.rebind(object, hierarchy, \"sort\", \"children\", \"value\");\n object.nodes = object;\n object.links = d3_layout_hierarchyLinks;\n return object;\n }\n function d3_layout_hierarchyVisitBefore(node, callback) {\n var nodes = [ node ];\n while ((node = nodes.pop()) != null) {\n callback(node);\n if ((children = node.children) && (n = children.length)) {\n var n, children;\n while (--n >= 0) nodes.push(children[n]);\n }\n }\n }\n function d3_layout_hierarchyVisitAfter(node, callback) {\n var nodes = [ node ], nodes2 = [];\n while ((node = nodes.pop()) != null) {\n nodes2.push(node);\n if ((children = node.children) && (n = children.length)) {\n var i = -1, n, children;\n while (++i < n) nodes.push(children[i]);\n }\n }\n while ((node = nodes2.pop()) != null) {\n callback(node);\n }\n }\n function d3_layout_hierarchyChildren(d) {\n return d.children;\n }\n function d3_layout_hierarchyValue(d) {\n return d.value;\n }\n function d3_layout_hierarchySort(a, b) {\n return b.value - a.value;\n }\n function d3_layout_hierarchyLinks(nodes) {\n return d3.merge(nodes.map(function(parent) {\n return (parent.children || []).map(function(child) {\n return {\n source: parent,\n target: child\n };\n });\n }));\n }\n d3.layout.partition = function() {\n var hierarchy = d3.layout.hierarchy(), size = [ 1, 1 ];\n function position(node, x, dx, dy) {\n var children = node.children;\n node.x = x;\n node.y = node.depth * dy;\n node.dx = dx;\n node.dy = dy;\n if (children && (n = children.length)) {\n var i = -1, n, c, d;\n dx = node.value ? dx / node.value : 0;\n while (++i < n) {\n position(c = children[i], x, d = c.value * dx, dy);\n x += d;\n }\n }\n }\n function depth(node) {\n var children = node.children, d = 0;\n if (children && (n = children.length)) {\n var i = -1, n;\n while (++i < n) d = Math.max(d, depth(children[i]));\n }\n return 1 + d;\n }\n function partition(d, i) {\n var nodes = hierarchy.call(this, d, i);\n position(nodes[0], 0, size[0], size[1] / depth(nodes[0]));\n return nodes;\n }\n partition.size = function(x) {\n if (!arguments.length) return size;\n size = x;\n return partition;\n };\n return d3_layout_hierarchyRebind(partition, hierarchy);\n };\n d3.layout.pie = function() {\n var value = Number, sort = d3_layout_pieSortByValue, startAngle = 0, endAngle = τ, padAngle = 0;\n function pie(data) {\n var n = data.length, values = data.map(function(d, i) {\n return +value.call(pie, d, i);\n }), a = +(typeof startAngle === \"function\" ? startAngle.apply(this, arguments) : startAngle), da = (typeof endAngle === \"function\" ? endAngle.apply(this, arguments) : endAngle) - a, p = Math.min(Math.abs(da) / n, +(typeof padAngle === \"function\" ? padAngle.apply(this, arguments) : padAngle)), pa = p * (da < 0 ? -1 : 1), k = (da - n * pa) / d3.sum(values), index = d3.range(n), arcs = [], v;\n if (sort != null) index.sort(sort === d3_layout_pieSortByValue ? function(i, j) {\n return values[j] - values[i];\n } : function(i, j) {\n return sort(data[i], data[j]);\n });\n index.forEach(function(i) {\n arcs[i] = {\n data: data[i],\n value: v = values[i],\n startAngle: a,\n endAngle: a += v * k + pa,\n padAngle: p\n };\n });\n return arcs;\n }\n pie.value = function(_) {\n if (!arguments.length) return value;\n value = _;\n return pie;\n };\n pie.sort = function(_) {\n if (!arguments.length) return sort;\n sort = _;\n return pie;\n };\n pie.startAngle = function(_) {\n if (!arguments.length) return startAngle;\n startAngle = _;\n return pie;\n };\n pie.endAngle = function(_) {\n if (!arguments.length) return endAngle;\n endAngle = _;\n return pie;\n };\n pie.padAngle = function(_) {\n if (!arguments.length) return padAngle;\n padAngle = _;\n return pie;\n };\n return pie;\n };\n var d3_layout_pieSortByValue = {};\n d3.layout.stack = function() {\n var values = d3_identity, order = d3_layout_stackOrderDefault, offset = d3_layout_stackOffsetZero, out = d3_layout_stackOut, x = d3_layout_stackX, y = d3_layout_stackY;\n function stack(data, index) {\n if (!(n = data.length)) return data;\n var series = data.map(function(d, i) {\n return values.call(stack, d, i);\n });\n var points = series.map(function(d) {\n return d.map(function(v, i) {\n return [ x.call(stack, v, i), y.call(stack, v, i) ];\n });\n });\n var orders = order.call(stack, points, index);\n series = d3.permute(series, orders);\n points = d3.permute(points, orders);\n var offsets = offset.call(stack, points, index);\n var m = series[0].length, n, i, j, o;\n for (j = 0; j < m; ++j) {\n out.call(stack, series[0][j], o = offsets[j], points[0][j][1]);\n for (i = 1; i < n; ++i) {\n out.call(stack, series[i][j], o += points[i - 1][j][1], points[i][j][1]);\n }\n }\n return data;\n }\n stack.values = function(x) {\n if (!arguments.length) return values;\n values = x;\n return stack;\n };\n stack.order = function(x) {\n if (!arguments.length) return order;\n order = typeof x === \"function\" ? x : d3_layout_stackOrders.get(x) || d3_layout_stackOrderDefault;\n return stack;\n };\n stack.offset = function(x) {\n if (!arguments.length) return offset;\n offset = typeof x === \"function\" ? x : d3_layout_stackOffsets.get(x) || d3_layout_stackOffsetZero;\n return stack;\n };\n stack.x = function(z) {\n if (!arguments.length) return x;\n x = z;\n return stack;\n };\n stack.y = function(z) {\n if (!arguments.length) return y;\n y = z;\n return stack;\n };\n stack.out = function(z) {\n if (!arguments.length) return out;\n out = z;\n return stack;\n };\n return stack;\n };\n function d3_layout_stackX(d) {\n return d.x;\n }\n function d3_layout_stackY(d) {\n return d.y;\n }\n function d3_layout_stackOut(d, y0, y) {\n d.y0 = y0;\n d.y = y;\n }\n var d3_layout_stackOrders = d3.map({\n \"inside-out\": function(data) {\n var n = data.length, i, j, max = data.map(d3_layout_stackMaxIndex), sums = data.map(d3_layout_stackReduceSum), index = d3.range(n).sort(function(a, b) {\n return max[a] - max[b];\n }), top = 0, bottom = 0, tops = [], bottoms = [];\n for (i = 0; i < n; ++i) {\n j = index[i];\n if (top < bottom) {\n top += sums[j];\n tops.push(j);\n } else {\n bottom += sums[j];\n bottoms.push(j);\n }\n }\n return bottoms.reverse().concat(tops);\n },\n reverse: function(data) {\n return d3.range(data.length).reverse();\n },\n \"default\": d3_layout_stackOrderDefault\n });\n var d3_layout_stackOffsets = d3.map({\n silhouette: function(data) {\n var n = data.length, m = data[0].length, sums = [], max = 0, i, j, o, y0 = [];\n for (j = 0; j < m; ++j) {\n for (i = 0, o = 0; i < n; i++) o += data[i][j][1];\n if (o > max) max = o;\n sums.push(o);\n }\n for (j = 0; j < m; ++j) {\n y0[j] = (max - sums[j]) / 2;\n }\n return y0;\n },\n wiggle: function(data) {\n var n = data.length, x = data[0], m = x.length, i, j, k, s1, s2, s3, dx, o, o0, y0 = [];\n y0[0] = o = o0 = 0;\n for (j = 1; j < m; ++j) {\n for (i = 0, s1 = 0; i < n; ++i) s1 += data[i][j][1];\n for (i = 0, s2 = 0, dx = x[j][0] - x[j - 1][0]; i < n; ++i) {\n for (k = 0, s3 = (data[i][j][1] - data[i][j - 1][1]) / (2 * dx); k < i; ++k) {\n s3 += (data[k][j][1] - data[k][j - 1][1]) / dx;\n }\n s2 += s3 * data[i][j][1];\n }\n y0[j] = o -= s1 ? s2 / s1 * dx : 0;\n if (o < o0) o0 = o;\n }\n for (j = 0; j < m; ++j) y0[j] -= o0;\n return y0;\n },\n expand: function(data) {\n var n = data.length, m = data[0].length, k = 1 / n, i, j, o, y0 = [];\n for (j = 0; j < m; ++j) {\n for (i = 0, o = 0; i < n; i++) o += data[i][j][1];\n if (o) for (i = 0; i < n; i++) data[i][j][1] /= o; else for (i = 0; i < n; i++) data[i][j][1] = k;\n }\n for (j = 0; j < m; ++j) y0[j] = 0;\n return y0;\n },\n zero: d3_layout_stackOffsetZero\n });\n function d3_layout_stackOrderDefault(data) {\n return d3.range(data.length);\n }\n function d3_layout_stackOffsetZero(data) {\n var j = -1, m = data[0].length, y0 = [];\n while (++j < m) y0[j] = 0;\n return y0;\n }\n function d3_layout_stackMaxIndex(array) {\n var i = 1, j = 0, v = array[0][1], k, n = array.length;\n for (;i < n; ++i) {\n if ((k = array[i][1]) > v) {\n j = i;\n v = k;\n }\n }\n return j;\n }\n function d3_layout_stackReduceSum(d) {\n return d.reduce(d3_layout_stackSum, 0);\n }\n function d3_layout_stackSum(p, d) {\n return p + d[1];\n }\n d3.layout.histogram = function() {\n var frequency = true, valuer = Number, ranger = d3_layout_histogramRange, binner = d3_layout_histogramBinSturges;\n function histogram(data, i) {\n var bins = [], values = data.map(valuer, this), range = ranger.call(this, values, i), thresholds = binner.call(this, range, values, i), bin, i = -1, n = values.length, m = thresholds.length - 1, k = frequency ? 1 : 1 / n, x;\n while (++i < m) {\n bin = bins[i] = [];\n bin.dx = thresholds[i + 1] - (bin.x = thresholds[i]);\n bin.y = 0;\n }\n if (m > 0) {\n i = -1;\n while (++i < n) {\n x = values[i];\n if (x >= range[0] && x <= range[1]) {\n bin = bins[d3.bisect(thresholds, x, 1, m) - 1];\n bin.y += k;\n bin.push(data[i]);\n }\n }\n }\n return bins;\n }\n histogram.value = function(x) {\n if (!arguments.length) return valuer;\n valuer = x;\n return histogram;\n };\n histogram.range = function(x) {\n if (!arguments.length) return ranger;\n ranger = d3_functor(x);\n return histogram;\n };\n histogram.bins = function(x) {\n if (!arguments.length) return binner;\n binner = typeof x === \"number\" ? function(range) {\n return d3_layout_histogramBinFixed(range, x);\n } : d3_functor(x);\n return histogram;\n };\n histogram.frequency = function(x) {\n if (!arguments.length) return frequency;\n frequency = !!x;\n return histogram;\n };\n return histogram;\n };\n function d3_layout_histogramBinSturges(range, values) {\n return d3_layout_histogramBinFixed(range, Math.ceil(Math.log(values.length) / Math.LN2 + 1));\n }\n function d3_layout_histogramBinFixed(range, n) {\n var x = -1, b = +range[0], m = (range[1] - b) / n, f = [];\n while (++x <= n) f[x] = m * x + b;\n return f;\n }\n function d3_layout_histogramRange(values) {\n return [ d3.min(values), d3.max(values) ];\n }\n d3.layout.pack = function() {\n var hierarchy = d3.layout.hierarchy().sort(d3_layout_packSort), padding = 0, size = [ 1, 1 ], radius;\n function pack(d, i) {\n var nodes = hierarchy.call(this, d, i), root = nodes[0], w = size[0], h = size[1], r = radius == null ? Math.sqrt : typeof radius === \"function\" ? radius : function() {\n return radius;\n };\n root.x = root.y = 0;\n d3_layout_hierarchyVisitAfter(root, function(d) {\n d.r = +r(d.value);\n });\n d3_layout_hierarchyVisitAfter(root, d3_layout_packSiblings);\n if (padding) {\n var dr = padding * (radius ? 1 : Math.max(2 * root.r / w, 2 * root.r / h)) / 2;\n d3_layout_hierarchyVisitAfter(root, function(d) {\n d.r += dr;\n });\n d3_layout_hierarchyVisitAfter(root, d3_layout_packSiblings);\n d3_layout_hierarchyVisitAfter(root, function(d) {\n d.r -= dr;\n });\n }\n d3_layout_packTransform(root, w / 2, h / 2, radius ? 1 : 1 / Math.max(2 * root.r / w, 2 * root.r / h));\n return nodes;\n }\n pack.size = function(_) {\n if (!arguments.length) return size;\n size = _;\n return pack;\n };\n pack.radius = function(_) {\n if (!arguments.length) return radius;\n radius = _ == null || typeof _ === \"function\" ? _ : +_;\n return pack;\n };\n pack.padding = function(_) {\n if (!arguments.length) return padding;\n padding = +_;\n return pack;\n };\n return d3_layout_hierarchyRebind(pack, hierarchy);\n };\n function d3_layout_packSort(a, b) {\n return a.value - b.value;\n }\n function d3_layout_packInsert(a, b) {\n var c = a._pack_next;\n a._pack_next = b;\n b._pack_prev = a;\n b._pack_next = c;\n c._pack_prev = b;\n }\n function d3_layout_packSplice(a, b) {\n a._pack_next = b;\n b._pack_prev = a;\n }\n function d3_layout_packIntersects(a, b) {\n var dx = b.x - a.x, dy = b.y - a.y, dr = a.r + b.r;\n return .999 * dr * dr > dx * dx + dy * dy;\n }\n function d3_layout_packSiblings(node) {\n if (!(nodes = node.children) || !(n = nodes.length)) return;\n var nodes, xMin = Infinity, xMax = -Infinity, yMin = Infinity, yMax = -Infinity, a, b, c, i, j, k, n;\n function bound(node) {\n xMin = Math.min(node.x - node.r, xMin);\n xMax = Math.max(node.x + node.r, xMax);\n yMin = Math.min(node.y - node.r, yMin);\n yMax = Math.max(node.y + node.r, yMax);\n }\n nodes.forEach(d3_layout_packLink);\n a = nodes[0];\n a.x = -a.r;\n a.y = 0;\n bound(a);\n if (n > 1) {\n b = nodes[1];\n b.x = b.r;\n b.y = 0;\n bound(b);\n if (n > 2) {\n c = nodes[2];\n d3_layout_packPlace(a, b, c);\n bound(c);\n d3_layout_packInsert(a, c);\n a._pack_prev = c;\n d3_layout_packInsert(c, b);\n b = a._pack_next;\n for (i = 3; i < n; i++) {\n d3_layout_packPlace(a, b, c = nodes[i]);\n var isect = 0, s1 = 1, s2 = 1;\n for (j = b._pack_next; j !== b; j = j._pack_next, s1++) {\n if (d3_layout_packIntersects(j, c)) {\n isect = 1;\n break;\n }\n }\n if (isect == 1) {\n for (k = a._pack_prev; k !== j._pack_prev; k = k._pack_prev, s2++) {\n if (d3_layout_packIntersects(k, c)) {\n break;\n }\n }\n }\n if (isect) {\n if (s1 < s2 || s1 == s2 && b.r < a.r) d3_layout_packSplice(a, b = j); else d3_layout_packSplice(a = k, b);\n i--;\n } else {\n d3_layout_packInsert(a, c);\n b = c;\n bound(c);\n }\n }\n }\n }\n var cx = (xMin + xMax) / 2, cy = (yMin + yMax) / 2, cr = 0;\n for (i = 0; i < n; i++) {\n c = nodes[i];\n c.x -= cx;\n c.y -= cy;\n cr = Math.max(cr, c.r + Math.sqrt(c.x * c.x + c.y * c.y));\n }\n node.r = cr;\n nodes.forEach(d3_layout_packUnlink);\n }\n function d3_layout_packLink(node) {\n node._pack_next = node._pack_prev = node;\n }\n function d3_layout_packUnlink(node) {\n delete node._pack_next;\n delete node._pack_prev;\n }\n function d3_layout_packTransform(node, x, y, k) {\n var children = node.children;\n node.x = x += k * node.x;\n node.y = y += k * node.y;\n node.r *= k;\n if (children) {\n var i = -1, n = children.length;\n while (++i < n) d3_layout_packTransform(children[i], x, y, k);\n }\n }\n function d3_layout_packPlace(a, b, c) {\n var db = a.r + c.r, dx = b.x - a.x, dy = b.y - a.y;\n if (db && (dx || dy)) {\n var da = b.r + c.r, dc = dx * dx + dy * dy;\n da *= da;\n db *= db;\n var x = .5 + (db - da) / (2 * dc), y = Math.sqrt(Math.max(0, 2 * da * (db + dc) - (db -= dc) * db - da * da)) / (2 * dc);\n c.x = a.x + x * dx + y * dy;\n c.y = a.y + x * dy - y * dx;\n } else {\n c.x = a.x + db;\n c.y = a.y;\n }\n }\n d3.layout.tree = function() {\n var hierarchy = d3.layout.hierarchy().sort(null).value(null), separation = d3_layout_treeSeparation, size = [ 1, 1 ], nodeSize = null;\n function tree(d, i) {\n var nodes = hierarchy.call(this, d, i), root0 = nodes[0], root1 = wrapTree(root0);\n d3_layout_hierarchyVisitAfter(root1, firstWalk), root1.parent.m = -root1.z;\n d3_layout_hierarchyVisitBefore(root1, secondWalk);\n if (nodeSize) d3_layout_hierarchyVisitBefore(root0, sizeNode); else {\n var left = root0, right = root0, bottom = root0;\n d3_layout_hierarchyVisitBefore(root0, function(node) {\n if (node.x < left.x) left = node;\n if (node.x > right.x) right = node;\n if (node.depth > bottom.depth) bottom = node;\n });\n var tx = separation(left, right) / 2 - left.x, kx = size[0] / (right.x + separation(right, left) / 2 + tx), ky = size[1] / (bottom.depth || 1);\n d3_layout_hierarchyVisitBefore(root0, function(node) {\n node.x = (node.x + tx) * kx;\n node.y = node.depth * ky;\n });\n }\n return nodes;\n }\n function wrapTree(root0) {\n var root1 = {\n A: null,\n children: [ root0 ]\n }, queue = [ root1 ], node1;\n while ((node1 = queue.pop()) != null) {\n for (var children = node1.children, child, i = 0, n = children.length; i < n; ++i) {\n queue.push((children[i] = child = {\n _: children[i],\n parent: node1,\n children: (child = children[i].children) && child.slice() || [],\n A: null,\n a: null,\n z: 0,\n m: 0,\n c: 0,\n s: 0,\n t: null,\n i: i\n }).a = child);\n }\n }\n return root1.children[0];\n }\n function firstWalk(v) {\n var children = v.children, siblings = v.parent.children, w = v.i ? siblings[v.i - 1] : null;\n if (children.length) {\n d3_layout_treeShift(v);\n var midpoint = (children[0].z + children[children.length - 1].z) / 2;\n if (w) {\n v.z = w.z + separation(v._, w._);\n v.m = v.z - midpoint;\n } else {\n v.z = midpoint;\n }\n } else if (w) {\n v.z = w.z + separation(v._, w._);\n }\n v.parent.A = apportion(v, w, v.parent.A || siblings[0]);\n }\n function secondWalk(v) {\n v._.x = v.z + v.parent.m;\n v.m += v.parent.m;\n }\n function apportion(v, w, ancestor) {\n if (w) {\n var vip = v, vop = v, vim = w, vom = vip.parent.children[0], sip = vip.m, sop = vop.m, sim = vim.m, som = vom.m, shift;\n while (vim = d3_layout_treeRight(vim), vip = d3_layout_treeLeft(vip), vim && vip) {\n vom = d3_layout_treeLeft(vom);\n vop = d3_layout_treeRight(vop);\n vop.a = v;\n shift = vim.z + sim - vip.z - sip + separation(vim._, vip._);\n if (shift > 0) {\n d3_layout_treeMove(d3_layout_treeAncestor(vim, v, ancestor), v, shift);\n sip += shift;\n sop += shift;\n }\n sim += vim.m;\n sip += vip.m;\n som += vom.m;\n sop += vop.m;\n }\n if (vim && !d3_layout_treeRight(vop)) {\n vop.t = vim;\n vop.m += sim - sop;\n }\n if (vip && !d3_layout_treeLeft(vom)) {\n vom.t = vip;\n vom.m += sip - som;\n ancestor = v;\n }\n }\n return ancestor;\n }\n function sizeNode(node) {\n node.x *= size[0];\n node.y = node.depth * size[1];\n }\n tree.separation = function(x) {\n if (!arguments.length) return separation;\n separation = x;\n return tree;\n };\n tree.size = function(x) {\n if (!arguments.length) return nodeSize ? null : size;\n nodeSize = (size = x) == null ? sizeNode : null;\n return tree;\n };\n tree.nodeSize = function(x) {\n if (!arguments.length) return nodeSize ? size : null;\n nodeSize = (size = x) == null ? null : sizeNode;\n return tree;\n };\n return d3_layout_hierarchyRebind(tree, hierarchy);\n };\n function d3_layout_treeSeparation(a, b) {\n return a.parent == b.parent ? 1 : 2;\n }\n function d3_layout_treeLeft(v) {\n var children = v.children;\n return children.length ? children[0] : v.t;\n }\n function d3_layout_treeRight(v) {\n var children = v.children, n;\n return (n = children.length) ? children[n - 1] : v.t;\n }\n function d3_layout_treeMove(wm, wp, shift) {\n var change = shift / (wp.i - wm.i);\n wp.c -= change;\n wp.s += shift;\n wm.c += change;\n wp.z += shift;\n wp.m += shift;\n }\n function d3_layout_treeShift(v) {\n var shift = 0, change = 0, children = v.children, i = children.length, w;\n while (--i >= 0) {\n w = children[i];\n w.z += shift;\n w.m += shift;\n shift += w.s + (change += w.c);\n }\n }\n function d3_layout_treeAncestor(vim, v, ancestor) {\n return vim.a.parent === v.parent ? vim.a : ancestor;\n }\n d3.layout.cluster = function() {\n var hierarchy = d3.layout.hierarchy().sort(null).value(null), separation = d3_layout_treeSeparation, size = [ 1, 1 ], nodeSize = false;\n function cluster(d, i) {\n var nodes = hierarchy.call(this, d, i), root = nodes[0], previousNode, x = 0;\n d3_layout_hierarchyVisitAfter(root, function(node) {\n var children = node.children;\n if (children && children.length) {\n node.x = d3_layout_clusterX(children);\n node.y = d3_layout_clusterY(children);\n } else {\n node.x = previousNode ? x += separation(node, previousNode) : 0;\n node.y = 0;\n previousNode = node;\n }\n });\n var left = d3_layout_clusterLeft(root), right = d3_layout_clusterRight(root), x0 = left.x - separation(left, right) / 2, x1 = right.x + separation(right, left) / 2;\n d3_layout_hierarchyVisitAfter(root, nodeSize ? function(node) {\n node.x = (node.x - root.x) * size[0];\n node.y = (root.y - node.y) * size[1];\n } : function(node) {\n node.x = (node.x - x0) / (x1 - x0) * size[0];\n node.y = (1 - (root.y ? node.y / root.y : 1)) * size[1];\n });\n return nodes;\n }\n cluster.separation = function(x) {\n if (!arguments.length) return separation;\n separation = x;\n return cluster;\n };\n cluster.size = function(x) {\n if (!arguments.length) return nodeSize ? null : size;\n nodeSize = (size = x) == null;\n return cluster;\n };\n cluster.nodeSize = function(x) {\n if (!arguments.length) return nodeSize ? size : null;\n nodeSize = (size = x) != null;\n return cluster;\n };\n return d3_layout_hierarchyRebind(cluster, hierarchy);\n };\n function d3_layout_clusterY(children) {\n return 1 + d3.max(children, function(child) {\n return child.y;\n });\n }\n function d3_layout_clusterX(children) {\n return children.reduce(function(x, child) {\n return x + child.x;\n }, 0) / children.length;\n }\n function d3_layout_clusterLeft(node) {\n var children = node.children;\n return children && children.length ? d3_layout_clusterLeft(children[0]) : node;\n }\n function d3_layout_clusterRight(node) {\n var children = node.children, n;\n return children && (n = children.length) ? d3_layout_clusterRight(children[n - 1]) : node;\n }\n d3.layout.treemap = function() {\n var hierarchy = d3.layout.hierarchy(), round = Math.round, size = [ 1, 1 ], padding = null, pad = d3_layout_treemapPadNull, sticky = false, stickies, mode = \"squarify\", ratio = .5 * (1 + Math.sqrt(5));\n function scale(children, k) {\n var i = -1, n = children.length, child, area;\n while (++i < n) {\n area = (child = children[i]).value * (k < 0 ? 0 : k);\n child.area = isNaN(area) || area <= 0 ? 0 : area;\n }\n }\n function squarify(node) {\n var children = node.children;\n if (children && children.length) {\n var rect = pad(node), row = [], remaining = children.slice(), child, best = Infinity, score, u = mode === \"slice\" ? rect.dx : mode === \"dice\" ? rect.dy : mode === \"slice-dice\" ? node.depth & 1 ? rect.dy : rect.dx : Math.min(rect.dx, rect.dy), n;\n scale(remaining, rect.dx * rect.dy / node.value);\n row.area = 0;\n while ((n = remaining.length) > 0) {\n row.push(child = remaining[n - 1]);\n row.area += child.area;\n if (mode !== \"squarify\" || (score = worst(row, u)) <= best) {\n remaining.pop();\n best = score;\n } else {\n row.area -= row.pop().area;\n position(row, u, rect, false);\n u = Math.min(rect.dx, rect.dy);\n row.length = row.area = 0;\n best = Infinity;\n }\n }\n if (row.length) {\n position(row, u, rect, true);\n row.length = row.area = 0;\n }\n children.forEach(squarify);\n }\n }\n function stickify(node) {\n var children = node.children;\n if (children && children.length) {\n var rect = pad(node), remaining = children.slice(), child, row = [];\n scale(remaining, rect.dx * rect.dy / node.value);\n row.area = 0;\n while (child = remaining.pop()) {\n row.push(child);\n row.area += child.area;\n if (child.z != null) {\n position(row, child.z ? rect.dx : rect.dy, rect, !remaining.length);\n row.length = row.area = 0;\n }\n }\n children.forEach(stickify);\n }\n }\n function worst(row, u) {\n var s = row.area, r, rmax = 0, rmin = Infinity, i = -1, n = row.length;\n while (++i < n) {\n if (!(r = row[i].area)) continue;\n if (r < rmin) rmin = r;\n if (r > rmax) rmax = r;\n }\n s *= s;\n u *= u;\n return s ? Math.max(u * rmax * ratio / s, s / (u * rmin * ratio)) : Infinity;\n }\n function position(row, u, rect, flush) {\n var i = -1, n = row.length, x = rect.x, y = rect.y, v = u ? round(row.area / u) : 0, o;\n if (u == rect.dx) {\n if (flush || v > rect.dy) v = rect.dy;\n while (++i < n) {\n o = row[i];\n o.x = x;\n o.y = y;\n o.dy = v;\n x += o.dx = Math.min(rect.x + rect.dx - x, v ? round(o.area / v) : 0);\n }\n o.z = true;\n o.dx += rect.x + rect.dx - x;\n rect.y += v;\n rect.dy -= v;\n } else {\n if (flush || v > rect.dx) v = rect.dx;\n while (++i < n) {\n o = row[i];\n o.x = x;\n o.y = y;\n o.dx = v;\n y += o.dy = Math.min(rect.y + rect.dy - y, v ? round(o.area / v) : 0);\n }\n o.z = false;\n o.dy += rect.y + rect.dy - y;\n rect.x += v;\n rect.dx -= v;\n }\n }\n function treemap(d) {\n var nodes = stickies || hierarchy(d), root = nodes[0];\n root.x = 0;\n root.y = 0;\n root.dx = size[0];\n root.dy = size[1];\n if (stickies) hierarchy.revalue(root);\n scale([ root ], root.dx * root.dy / root.value);\n (stickies ? stickify : squarify)(root);\n if (sticky) stickies = nodes;\n return nodes;\n }\n treemap.size = function(x) {\n if (!arguments.length) return size;\n size = x;\n return treemap;\n };\n treemap.padding = function(x) {\n if (!arguments.length) return padding;\n function padFunction(node) {\n var p = x.call(treemap, node, node.depth);\n return p == null ? d3_layout_treemapPadNull(node) : d3_layout_treemapPad(node, typeof p === \"number\" ? [ p, p, p, p ] : p);\n }\n function padConstant(node) {\n return d3_layout_treemapPad(node, x);\n }\n var type;\n pad = (padding = x) == null ? d3_layout_treemapPadNull : (type = typeof x) === \"function\" ? padFunction : type === \"number\" ? (x = [ x, x, x, x ], \n padConstant) : padConstant;\n return treemap;\n };\n treemap.round = function(x) {\n if (!arguments.length) return round != Number;\n round = x ? Math.round : Number;\n return treemap;\n };\n treemap.sticky = function(x) {\n if (!arguments.length) return sticky;\n sticky = x;\n stickies = null;\n return treemap;\n };\n treemap.ratio = function(x) {\n if (!arguments.length) return ratio;\n ratio = x;\n return treemap;\n };\n treemap.mode = function(x) {\n if (!arguments.length) return mode;\n mode = x + \"\";\n return treemap;\n };\n return d3_layout_hierarchyRebind(treemap, hierarchy);\n };\n function d3_layout_treemapPadNull(node) {\n return {\n x: node.x,\n y: node.y,\n dx: node.dx,\n dy: node.dy\n };\n }\n function d3_layout_treemapPad(node, padding) {\n var x = node.x + padding[3], y = node.y + padding[0], dx = node.dx - padding[1] - padding[3], dy = node.dy - padding[0] - padding[2];\n if (dx < 0) {\n x += dx / 2;\n dx = 0;\n }\n if (dy < 0) {\n y += dy / 2;\n dy = 0;\n }\n return {\n x: x,\n y: y,\n dx: dx,\n dy: dy\n };\n }\n d3.random = {\n normal: function(µ, σ) {\n var n = arguments.length;\n if (n < 2) σ = 1;\n if (n < 1) µ = 0;\n return function() {\n var x, y, r;\n do {\n x = Math.random() * 2 - 1;\n y = Math.random() * 2 - 1;\n r = x * x + y * y;\n } while (!r || r > 1);\n return µ + σ * x * Math.sqrt(-2 * Math.log(r) / r);\n };\n },\n logNormal: function() {\n var random = d3.random.normal.apply(d3, arguments);\n return function() {\n return Math.exp(random());\n };\n },\n bates: function(m) {\n var random = d3.random.irwinHall(m);\n return function() {\n return random() / m;\n };\n },\n irwinHall: function(m) {\n return function() {\n for (var s = 0, j = 0; j < m; j++) s += Math.random();\n return s;\n };\n }\n };\n d3.scale = {};\n function d3_scaleExtent(domain) {\n var start = domain[0], stop = domain[domain.length - 1];\n return start < stop ? [ start, stop ] : [ stop, start ];\n }\n function d3_scaleRange(scale) {\n return scale.rangeExtent ? scale.rangeExtent() : d3_scaleExtent(scale.range());\n }\n function d3_scale_bilinear(domain, range, uninterpolate, interpolate) {\n var u = uninterpolate(domain[0], domain[1]), i = interpolate(range[0], range[1]);\n return function(x) {\n return i(u(x));\n };\n }\n function d3_scale_nice(domain, nice) {\n var i0 = 0, i1 = domain.length - 1, x0 = domain[i0], x1 = domain[i1], dx;\n if (x1 < x0) {\n dx = i0, i0 = i1, i1 = dx;\n dx = x0, x0 = x1, x1 = dx;\n }\n domain[i0] = nice.floor(x0);\n domain[i1] = nice.ceil(x1);\n return domain;\n }\n function d3_scale_niceStep(step) {\n return step ? {\n floor: function(x) {\n return Math.floor(x / step) * step;\n },\n ceil: function(x) {\n return Math.ceil(x / step) * step;\n }\n } : d3_scale_niceIdentity;\n }\n var d3_scale_niceIdentity = {\n floor: d3_identity,\n ceil: d3_identity\n };\n function d3_scale_polylinear(domain, range, uninterpolate, interpolate) {\n var u = [], i = [], j = 0, k = Math.min(domain.length, range.length) - 1;\n if (domain[k] < domain[0]) {\n domain = domain.slice().reverse();\n range = range.slice().reverse();\n }\n while (++j <= k) {\n u.push(uninterpolate(domain[j - 1], domain[j]));\n i.push(interpolate(range[j - 1], range[j]));\n }\n return function(x) {\n var j = d3.bisect(domain, x, 1, k) - 1;\n return i[j](u[j](x));\n };\n }\n d3.scale.linear = function() {\n return d3_scale_linear([ 0, 1 ], [ 0, 1 ], d3_interpolate, false);\n };\n function d3_scale_linear(domain, range, interpolate, clamp) {\n var output, input;\n function rescale() {\n var linear = Math.min(domain.length, range.length) > 2 ? d3_scale_polylinear : d3_scale_bilinear, uninterpolate = clamp ? d3_uninterpolateClamp : d3_uninterpolateNumber;\n output = linear(domain, range, uninterpolate, interpolate);\n input = linear(range, domain, uninterpolate, d3_interpolate);\n return scale;\n }\n function scale(x) {\n return output(x);\n }\n scale.invert = function(y) {\n return input(y);\n };\n scale.domain = function(x) {\n if (!arguments.length) return domain;\n domain = x.map(Number);\n return rescale();\n };\n scale.range = function(x) {\n if (!arguments.length) return range;\n range = x;\n return rescale();\n };\n scale.rangeRound = function(x) {\n return scale.range(x).interpolate(d3_interpolateRound);\n };\n scale.clamp = function(x) {\n if (!arguments.length) return clamp;\n clamp = x;\n return rescale();\n };\n scale.interpolate = function(x) {\n if (!arguments.length) return interpolate;\n interpolate = x;\n return rescale();\n };\n scale.ticks = function(m) {\n return d3_scale_linearTicks(domain, m);\n };\n scale.tickFormat = function(m, format) {\n return d3_scale_linearTickFormat(domain, m, format);\n };\n scale.nice = function(m) {\n d3_scale_linearNice(domain, m);\n return rescale();\n };\n scale.copy = function() {\n return d3_scale_linear(domain, range, interpolate, clamp);\n };\n return rescale();\n }\n function d3_scale_linearRebind(scale, linear) {\n return d3.rebind(scale, linear, \"range\", \"rangeRound\", \"interpolate\", \"clamp\");\n }\n function d3_scale_linearNice(domain, m) {\n return d3_scale_nice(domain, d3_scale_niceStep(d3_scale_linearTickRange(domain, m)[2]));\n }\n function d3_scale_linearTickRange(domain, m) {\n if (m == null) m = 10;\n var extent = d3_scaleExtent(domain), span = extent[1] - extent[0], step = Math.pow(10, Math.floor(Math.log(span / m) / Math.LN10)), err = m / span * step;\n if (err <= .15) step *= 10; else if (err <= .35) step *= 5; else if (err <= .75) step *= 2;\n extent[0] = Math.ceil(extent[0] / step) * step;\n extent[1] = Math.floor(extent[1] / step) * step + step * .5;\n extent[2] = step;\n return extent;\n }\n function d3_scale_linearTicks(domain, m) {\n return d3.range.apply(d3, d3_scale_linearTickRange(domain, m));\n }\n function d3_scale_linearTickFormat(domain, m, format) {\n var range = d3_scale_linearTickRange(domain, m);\n if (format) {\n var match = d3_format_re.exec(format);\n match.shift();\n if (match[8] === \"s\") {\n var prefix = d3.formatPrefix(Math.max(abs(range[0]), abs(range[1])));\n if (!match[7]) match[7] = \".\" + d3_scale_linearPrecision(prefix.scale(range[2]));\n match[8] = \"f\";\n format = d3.format(match.join(\"\"));\n return function(d) {\n return format(prefix.scale(d)) + prefix.symbol;\n };\n }\n if (!match[7]) match[7] = \".\" + d3_scale_linearFormatPrecision(match[8], range);\n format = match.join(\"\");\n } else {\n format = \",.\" + d3_scale_linearPrecision(range[2]) + \"f\";\n }\n return d3.format(format);\n }\n var d3_scale_linearFormatSignificant = {\n s: 1,\n g: 1,\n p: 1,\n r: 1,\n e: 1\n };\n function d3_scale_linearPrecision(value) {\n return -Math.floor(Math.log(value) / Math.LN10 + .01);\n }\n function d3_scale_linearFormatPrecision(type, range) {\n var p = d3_scale_linearPrecision(range[2]);\n return type in d3_scale_linearFormatSignificant ? Math.abs(p - d3_scale_linearPrecision(Math.max(abs(range[0]), abs(range[1])))) + +(type !== \"e\") : p - (type === \"%\") * 2;\n }\n d3.scale.log = function() {\n return d3_scale_log(d3.scale.linear().domain([ 0, 1 ]), 10, true, [ 1, 10 ]);\n };\n function d3_scale_log(linear, base, positive, domain) {\n function log(x) {\n return (positive ? Math.log(x < 0 ? 0 : x) : -Math.log(x > 0 ? 0 : -x)) / Math.log(base);\n }\n function pow(x) {\n return positive ? Math.pow(base, x) : -Math.pow(base, -x);\n }\n function scale(x) {\n return linear(log(x));\n }\n scale.invert = function(x) {\n return pow(linear.invert(x));\n };\n scale.domain = function(x) {\n if (!arguments.length) return domain;\n positive = x[0] >= 0;\n linear.domain((domain = x.map(Number)).map(log));\n return scale;\n };\n scale.base = function(_) {\n if (!arguments.length) return base;\n base = +_;\n linear.domain(domain.map(log));\n return scale;\n };\n scale.nice = function() {\n var niced = d3_scale_nice(domain.map(log), positive ? Math : d3_scale_logNiceNegative);\n linear.domain(niced);\n domain = niced.map(pow);\n return scale;\n };\n scale.ticks = function() {\n var extent = d3_scaleExtent(domain), ticks = [], u = extent[0], v = extent[1], i = Math.floor(log(u)), j = Math.ceil(log(v)), n = base % 1 ? 2 : base;\n if (isFinite(j - i)) {\n if (positive) {\n for (;i < j; i++) for (var k = 1; k < n; k++) ticks.push(pow(i) * k);\n ticks.push(pow(i));\n } else {\n ticks.push(pow(i));\n for (;i++ < j; ) for (var k = n - 1; k > 0; k--) ticks.push(pow(i) * k);\n }\n for (i = 0; ticks[i] < u; i++) {}\n for (j = ticks.length; ticks[j - 1] > v; j--) {}\n ticks = ticks.slice(i, j);\n }\n return ticks;\n };\n scale.tickFormat = function(n, format) {\n if (!arguments.length) return d3_scale_logFormat;\n if (arguments.length < 2) format = d3_scale_logFormat; else if (typeof format !== \"function\") format = d3.format(format);\n var k = Math.max(.1, n / scale.ticks().length), f = positive ? (e = 1e-12, Math.ceil) : (e = -1e-12, \n Math.floor), e;\n return function(d) {\n return d / pow(f(log(d) + e)) <= k ? format(d) : \"\";\n };\n };\n scale.copy = function() {\n return d3_scale_log(linear.copy(), base, positive, domain);\n };\n return d3_scale_linearRebind(scale, linear);\n }\n var d3_scale_logFormat = d3.format(\".0e\"), d3_scale_logNiceNegative = {\n floor: function(x) {\n return -Math.ceil(-x);\n },\n ceil: function(x) {\n return -Math.floor(-x);\n }\n };\n d3.scale.pow = function() {\n return d3_scale_pow(d3.scale.linear(), 1, [ 0, 1 ]);\n };\n function d3_scale_pow(linear, exponent, domain) {\n var powp = d3_scale_powPow(exponent), powb = d3_scale_powPow(1 / exponent);\n function scale(x) {\n return linear(powp(x));\n }\n scale.invert = function(x) {\n return powb(linear.invert(x));\n };\n scale.domain = function(x) {\n if (!arguments.length) return domain;\n linear.domain((domain = x.map(Number)).map(powp));\n return scale;\n };\n scale.ticks = function(m) {\n return d3_scale_linearTicks(domain, m);\n };\n scale.tickFormat = function(m, format) {\n return d3_scale_linearTickFormat(domain, m, format);\n };\n scale.nice = function(m) {\n return scale.domain(d3_scale_linearNice(domain, m));\n };\n scale.exponent = function(x) {\n if (!arguments.length) return exponent;\n powp = d3_scale_powPow(exponent = x);\n powb = d3_scale_powPow(1 / exponent);\n linear.domain(domain.map(powp));\n return scale;\n };\n scale.copy = function() {\n return d3_scale_pow(linear.copy(), exponent, domain);\n };\n return d3_scale_linearRebind(scale, linear);\n }\n function d3_scale_powPow(e) {\n return function(x) {\n return x < 0 ? -Math.pow(-x, e) : Math.pow(x, e);\n };\n }\n d3.scale.sqrt = function() {\n return d3.scale.pow().exponent(.5);\n };\n d3.scale.ordinal = function() {\n return d3_scale_ordinal([], {\n t: \"range\",\n a: [ [] ]\n });\n };\n function d3_scale_ordinal(domain, ranger) {\n var index, range, rangeBand;\n function scale(x) {\n return range[((index.get(x) || (ranger.t === \"range\" ? index.set(x, domain.push(x)) : NaN)) - 1) % range.length];\n }\n function steps(start, step) {\n return d3.range(domain.length).map(function(i) {\n return start + step * i;\n });\n }\n scale.domain = function(x) {\n if (!arguments.length) return domain;\n domain = [];\n index = new d3_Map();\n var i = -1, n = x.length, xi;\n while (++i < n) if (!index.has(xi = x[i])) index.set(xi, domain.push(xi));\n return scale[ranger.t].apply(scale, ranger.a);\n };\n scale.range = function(x) {\n if (!arguments.length) return range;\n range = x;\n rangeBand = 0;\n ranger = {\n t: \"range\",\n a: arguments\n };\n return scale;\n };\n scale.rangePoints = function(x, padding) {\n if (arguments.length < 2) padding = 0;\n var start = x[0], stop = x[1], step = domain.length < 2 ? (start = (start + stop) / 2, \n 0) : (stop - start) / (domain.length - 1 + padding);\n range = steps(start + step * padding / 2, step);\n rangeBand = 0;\n ranger = {\n t: \"rangePoints\",\n a: arguments\n };\n return scale;\n };\n scale.rangeRoundPoints = function(x, padding) {\n if (arguments.length < 2) padding = 0;\n var start = x[0], stop = x[1], step = domain.length < 2 ? (start = stop = Math.round((start + stop) / 2), \n 0) : (stop - start) / (domain.length - 1 + padding) | 0;\n range = steps(start + Math.round(step * padding / 2 + (stop - start - (domain.length - 1 + padding) * step) / 2), step);\n rangeBand = 0;\n ranger = {\n t: \"rangeRoundPoints\",\n a: arguments\n };\n return scale;\n };\n scale.rangeBands = function(x, padding, outerPadding) {\n if (arguments.length < 2) padding = 0;\n if (arguments.length < 3) outerPadding = padding;\n var reverse = x[1] < x[0], start = x[reverse - 0], stop = x[1 - reverse], step = (stop - start) / (domain.length - padding + 2 * outerPadding);\n range = steps(start + step * outerPadding, step);\n if (reverse) range.reverse();\n rangeBand = step * (1 - padding);\n ranger = {\n t: \"rangeBands\",\n a: arguments\n };\n return scale;\n };\n scale.rangeRoundBands = function(x, padding, outerPadding) {\n if (arguments.length < 2) padding = 0;\n if (arguments.length < 3) outerPadding = padding;\n var reverse = x[1] < x[0], start = x[reverse - 0], stop = x[1 - reverse], step = Math.floor((stop - start) / (domain.length - padding + 2 * outerPadding));\n range = steps(start + Math.round((stop - start - (domain.length - padding) * step) / 2), step);\n if (reverse) range.reverse();\n rangeBand = Math.round(step * (1 - padding));\n ranger = {\n t: \"rangeRoundBands\",\n a: arguments\n };\n return scale;\n };\n scale.rangeBand = function() {\n return rangeBand;\n };\n scale.rangeExtent = function() {\n return d3_scaleExtent(ranger.a[0]);\n };\n scale.copy = function() {\n return d3_scale_ordinal(domain, ranger);\n };\n return scale.domain(domain);\n }\n d3.scale.category10 = function() {\n return d3.scale.ordinal().range(d3_category10);\n };\n d3.scale.category20 = function() {\n return d3.scale.ordinal().range(d3_category20);\n };\n d3.scale.category20b = function() {\n return d3.scale.ordinal().range(d3_category20b);\n };\n d3.scale.category20c = function() {\n return d3.scale.ordinal().range(d3_category20c);\n };\n var d3_category10 = [ 2062260, 16744206, 2924588, 14034728, 9725885, 9197131, 14907330, 8355711, 12369186, 1556175 ].map(d3_rgbString);\n var d3_category20 = [ 2062260, 11454440, 16744206, 16759672, 2924588, 10018698, 14034728, 16750742, 9725885, 12955861, 9197131, 12885140, 14907330, 16234194, 8355711, 13092807, 12369186, 14408589, 1556175, 10410725 ].map(d3_rgbString);\n var d3_category20b = [ 3750777, 5395619, 7040719, 10264286, 6519097, 9216594, 11915115, 13556636, 9202993, 12426809, 15186514, 15190932, 8666169, 11356490, 14049643, 15177372, 8077683, 10834324, 13528509, 14589654 ].map(d3_rgbString);\n var d3_category20c = [ 3244733, 7057110, 10406625, 13032431, 15095053, 16616764, 16625259, 16634018, 3253076, 7652470, 10607003, 13101504, 7695281, 10394312, 12369372, 14342891, 6513507, 9868950, 12434877, 14277081 ].map(d3_rgbString);\n d3.scale.quantile = function() {\n return d3_scale_quantile([], []);\n };\n function d3_scale_quantile(domain, range) {\n var thresholds;\n function rescale() {\n var k = 0, q = range.length;\n thresholds = [];\n while (++k < q) thresholds[k - 1] = d3.quantile(domain, k / q);\n return scale;\n }\n function scale(x) {\n if (!isNaN(x = +x)) return range[d3.bisect(thresholds, x)];\n }\n scale.domain = function(x) {\n if (!arguments.length) return domain;\n domain = x.map(d3_number).filter(d3_numeric).sort(d3_ascending);\n return rescale();\n };\n scale.range = function(x) {\n if (!arguments.length) return range;\n range = x;\n return rescale();\n };\n scale.quantiles = function() {\n return thresholds;\n };\n scale.invertExtent = function(y) {\n y = range.indexOf(y);\n return y < 0 ? [ NaN, NaN ] : [ y > 0 ? thresholds[y - 1] : domain[0], y < thresholds.length ? thresholds[y] : domain[domain.length - 1] ];\n };\n scale.copy = function() {\n return d3_scale_quantile(domain, range);\n };\n return rescale();\n }\n d3.scale.quantize = function() {\n return d3_scale_quantize(0, 1, [ 0, 1 ]);\n };\n function d3_scale_quantize(x0, x1, range) {\n var kx, i;\n function scale(x) {\n return range[Math.max(0, Math.min(i, Math.floor(kx * (x - x0))))];\n }\n function rescale() {\n kx = range.length / (x1 - x0);\n i = range.length - 1;\n return scale;\n }\n scale.domain = function(x) {\n if (!arguments.length) return [ x0, x1 ];\n x0 = +x[0];\n x1 = +x[x.length - 1];\n return rescale();\n };\n scale.range = function(x) {\n if (!arguments.length) return range;\n range = x;\n return rescale();\n };\n scale.invertExtent = function(y) {\n y = range.indexOf(y);\n y = y < 0 ? NaN : y / kx + x0;\n return [ y, y + 1 / kx ];\n };\n scale.copy = function() {\n return d3_scale_quantize(x0, x1, range);\n };\n return rescale();\n }\n d3.scale.threshold = function() {\n return d3_scale_threshold([ .5 ], [ 0, 1 ]);\n };\n function d3_scale_threshold(domain, range) {\n function scale(x) {\n if (x <= x) return range[d3.bisect(domain, x)];\n }\n scale.domain = function(_) {\n if (!arguments.length) return domain;\n domain = _;\n return scale;\n };\n scale.range = function(_) {\n if (!arguments.length) return range;\n range = _;\n return scale;\n };\n scale.invertExtent = function(y) {\n y = range.indexOf(y);\n return [ domain[y - 1], domain[y] ];\n };\n scale.copy = function() {\n return d3_scale_threshold(domain, range);\n };\n return scale;\n }\n d3.scale.identity = function() {\n return d3_scale_identity([ 0, 1 ]);\n };\n function d3_scale_identity(domain) {\n function identity(x) {\n return +x;\n }\n identity.invert = identity;\n identity.domain = identity.range = function(x) {\n if (!arguments.length) return domain;\n domain = x.map(identity);\n return identity;\n };\n identity.ticks = function(m) {\n return d3_scale_linearTicks(domain, m);\n };\n identity.tickFormat = function(m, format) {\n return d3_scale_linearTickFormat(domain, m, format);\n };\n identity.copy = function() {\n return d3_scale_identity(domain);\n };\n return identity;\n }\n d3.svg = {};\n function d3_zero() {\n return 0;\n }\n d3.svg.arc = function() {\n var innerRadius = d3_svg_arcInnerRadius, outerRadius = d3_svg_arcOuterRadius, cornerRadius = d3_zero, padRadius = d3_svg_arcAuto, startAngle = d3_svg_arcStartAngle, endAngle = d3_svg_arcEndAngle, padAngle = d3_svg_arcPadAngle;\n function arc() {\n var r0 = Math.max(0, +innerRadius.apply(this, arguments)), r1 = Math.max(0, +outerRadius.apply(this, arguments)), a0 = startAngle.apply(this, arguments) - halfπ, a1 = endAngle.apply(this, arguments) - halfπ, da = Math.abs(a1 - a0), cw = a0 > a1 ? 0 : 1;\n if (r1 < r0) rc = r1, r1 = r0, r0 = rc;\n if (da >= τε) return circleSegment(r1, cw) + (r0 ? circleSegment(r0, 1 - cw) : \"\") + \"Z\";\n var rc, cr, rp, ap, p0 = 0, p1 = 0, x0, y0, x1, y1, x2, y2, x3, y3, path = [];\n if (ap = (+padAngle.apply(this, arguments) || 0) / 2) {\n rp = padRadius === d3_svg_arcAuto ? Math.sqrt(r0 * r0 + r1 * r1) : +padRadius.apply(this, arguments);\n if (!cw) p1 *= -1;\n if (r1) p1 = d3_asin(rp / r1 * Math.sin(ap));\n if (r0) p0 = d3_asin(rp / r0 * Math.sin(ap));\n }\n if (r1) {\n x0 = r1 * Math.cos(a0 + p1);\n y0 = r1 * Math.sin(a0 + p1);\n x1 = r1 * Math.cos(a1 - p1);\n y1 = r1 * Math.sin(a1 - p1);\n var l1 = Math.abs(a1 - a0 - 2 * p1) <= π ? 0 : 1;\n if (p1 && d3_svg_arcSweep(x0, y0, x1, y1) === cw ^ l1) {\n var h1 = (a0 + a1) / 2;\n x0 = r1 * Math.cos(h1);\n y0 = r1 * Math.sin(h1);\n x1 = y1 = null;\n }\n } else {\n x0 = y0 = 0;\n }\n if (r0) {\n x2 = r0 * Math.cos(a1 - p0);\n y2 = r0 * Math.sin(a1 - p0);\n x3 = r0 * Math.cos(a0 + p0);\n y3 = r0 * Math.sin(a0 + p0);\n var l0 = Math.abs(a0 - a1 + 2 * p0) <= π ? 0 : 1;\n if (p0 && d3_svg_arcSweep(x2, y2, x3, y3) === 1 - cw ^ l0) {\n var h0 = (a0 + a1) / 2;\n x2 = r0 * Math.cos(h0);\n y2 = r0 * Math.sin(h0);\n x3 = y3 = null;\n }\n } else {\n x2 = y2 = 0;\n }\n if ((rc = Math.min(Math.abs(r1 - r0) / 2, +cornerRadius.apply(this, arguments))) > .001) {\n cr = r0 < r1 ^ cw ? 0 : 1;\n var oc = x3 == null ? [ x2, y2 ] : x1 == null ? [ x0, y0 ] : d3_geom_polygonIntersect([ x0, y0 ], [ x3, y3 ], [ x1, y1 ], [ x2, y2 ]), ax = x0 - oc[0], ay = y0 - oc[1], bx = x1 - oc[0], by = y1 - oc[1], kc = 1 / Math.sin(Math.acos((ax * bx + ay * by) / (Math.sqrt(ax * ax + ay * ay) * Math.sqrt(bx * bx + by * by))) / 2), lc = Math.sqrt(oc[0] * oc[0] + oc[1] * oc[1]);\n if (x1 != null) {\n var rc1 = Math.min(rc, (r1 - lc) / (kc + 1)), t30 = d3_svg_arcCornerTangents(x3 == null ? [ x2, y2 ] : [ x3, y3 ], [ x0, y0 ], r1, rc1, cw), t12 = d3_svg_arcCornerTangents([ x1, y1 ], [ x2, y2 ], r1, rc1, cw);\n if (rc === rc1) {\n path.push(\"M\", t30[0], \"A\", rc1, \",\", rc1, \" 0 0,\", cr, \" \", t30[1], \"A\", r1, \",\", r1, \" 0 \", 1 - cw ^ d3_svg_arcSweep(t30[1][0], t30[1][1], t12[1][0], t12[1][1]), \",\", cw, \" \", t12[1], \"A\", rc1, \",\", rc1, \" 0 0,\", cr, \" \", t12[0]);\n } else {\n path.push(\"M\", t30[0], \"A\", rc1, \",\", rc1, \" 0 1,\", cr, \" \", t12[0]);\n }\n } else {\n path.push(\"M\", x0, \",\", y0);\n }\n if (x3 != null) {\n var rc0 = Math.min(rc, (r0 - lc) / (kc - 1)), t03 = d3_svg_arcCornerTangents([ x0, y0 ], [ x3, y3 ], r0, -rc0, cw), t21 = d3_svg_arcCornerTangents([ x2, y2 ], x1 == null ? [ x0, y0 ] : [ x1, y1 ], r0, -rc0, cw);\n if (rc === rc0) {\n path.push(\"L\", t21[0], \"A\", rc0, \",\", rc0, \" 0 0,\", cr, \" \", t21[1], \"A\", r0, \",\", r0, \" 0 \", cw ^ d3_svg_arcSweep(t21[1][0], t21[1][1], t03[1][0], t03[1][1]), \",\", 1 - cw, \" \", t03[1], \"A\", rc0, \",\", rc0, \" 0 0,\", cr, \" \", t03[0]);\n } else {\n path.push(\"L\", t21[0], \"A\", rc0, \",\", rc0, \" 0 0,\", cr, \" \", t03[0]);\n }\n } else {\n path.push(\"L\", x2, \",\", y2);\n }\n } else {\n path.push(\"M\", x0, \",\", y0);\n if (x1 != null) path.push(\"A\", r1, \",\", r1, \" 0 \", l1, \",\", cw, \" \", x1, \",\", y1);\n path.push(\"L\", x2, \",\", y2);\n if (x3 != null) path.push(\"A\", r0, \",\", r0, \" 0 \", l0, \",\", 1 - cw, \" \", x3, \",\", y3);\n }\n path.push(\"Z\");\n return path.join(\"\");\n }\n function circleSegment(r1, cw) {\n return \"M0,\" + r1 + \"A\" + r1 + \",\" + r1 + \" 0 1,\" + cw + \" 0,\" + -r1 + \"A\" + r1 + \",\" + r1 + \" 0 1,\" + cw + \" 0,\" + r1;\n }\n arc.innerRadius = function(v) {\n if (!arguments.length) return innerRadius;\n innerRadius = d3_functor(v);\n return arc;\n };\n arc.outerRadius = function(v) {\n if (!arguments.length) return outerRadius;\n outerRadius = d3_functor(v);\n return arc;\n };\n arc.cornerRadius = function(v) {\n if (!arguments.length) return cornerRadius;\n cornerRadius = d3_functor(v);\n return arc;\n };\n arc.padRadius = function(v) {\n if (!arguments.length) return padRadius;\n padRadius = v == d3_svg_arcAuto ? d3_svg_arcAuto : d3_functor(v);\n return arc;\n };\n arc.startAngle = function(v) {\n if (!arguments.length) return startAngle;\n startAngle = d3_functor(v);\n return arc;\n };\n arc.endAngle = function(v) {\n if (!arguments.length) return endAngle;\n endAngle = d3_functor(v);\n return arc;\n };\n arc.padAngle = function(v) {\n if (!arguments.length) return padAngle;\n padAngle = d3_functor(v);\n return arc;\n };\n arc.centroid = function() {\n var r = (+innerRadius.apply(this, arguments) + +outerRadius.apply(this, arguments)) / 2, a = (+startAngle.apply(this, arguments) + +endAngle.apply(this, arguments)) / 2 - halfπ;\n return [ Math.cos(a) * r, Math.sin(a) * r ];\n };\n return arc;\n };\n var d3_svg_arcAuto = \"auto\";\n function d3_svg_arcInnerRadius(d) {\n return d.innerRadius;\n }\n function d3_svg_arcOuterRadius(d) {\n return d.outerRadius;\n }\n function d3_svg_arcStartAngle(d) {\n return d.startAngle;\n }\n function d3_svg_arcEndAngle(d) {\n return d.endAngle;\n }\n function d3_svg_arcPadAngle(d) {\n return d && d.padAngle;\n }\n function d3_svg_arcSweep(x0, y0, x1, y1) {\n return (x0 - x1) * y0 - (y0 - y1) * x0 > 0 ? 0 : 1;\n }\n function d3_svg_arcCornerTangents(p0, p1, r1, rc, cw) {\n var x01 = p0[0] - p1[0], y01 = p0[1] - p1[1], lo = (cw ? rc : -rc) / Math.sqrt(x01 * x01 + y01 * y01), ox = lo * y01, oy = -lo * x01, x1 = p0[0] + ox, y1 = p0[1] + oy, x2 = p1[0] + ox, y2 = p1[1] + oy, x3 = (x1 + x2) / 2, y3 = (y1 + y2) / 2, dx = x2 - x1, dy = y2 - y1, d2 = dx * dx + dy * dy, r = r1 - rc, D = x1 * y2 - x2 * y1, d = (dy < 0 ? -1 : 1) * Math.sqrt(r * r * d2 - D * D), cx0 = (D * dy - dx * d) / d2, cy0 = (-D * dx - dy * d) / d2, cx1 = (D * dy + dx * d) / d2, cy1 = (-D * dx + dy * d) / d2, dx0 = cx0 - x3, dy0 = cy0 - y3, dx1 = cx1 - x3, dy1 = cy1 - y3;\n if (dx0 * dx0 + dy0 * dy0 > dx1 * dx1 + dy1 * dy1) cx0 = cx1, cy0 = cy1;\n return [ [ cx0 - ox, cy0 - oy ], [ cx0 * r1 / r, cy0 * r1 / r ] ];\n }\n function d3_svg_line(projection) {\n var x = d3_geom_pointX, y = d3_geom_pointY, defined = d3_true, interpolate = d3_svg_lineLinear, interpolateKey = interpolate.key, tension = .7;\n function line(data) {\n var segments = [], points = [], i = -1, n = data.length, d, fx = d3_functor(x), fy = d3_functor(y);\n function segment() {\n segments.push(\"M\", interpolate(projection(points), tension));\n }\n while (++i < n) {\n if (defined.call(this, d = data[i], i)) {\n points.push([ +fx.call(this, d, i), +fy.call(this, d, i) ]);\n } else if (points.length) {\n segment();\n points = [];\n }\n }\n if (points.length) segment();\n return segments.length ? segments.join(\"\") : null;\n }\n line.x = function(_) {\n if (!arguments.length) return x;\n x = _;\n return line;\n };\n line.y = function(_) {\n if (!arguments.length) return y;\n y = _;\n return line;\n };\n line.defined = function(_) {\n if (!arguments.length) return defined;\n defined = _;\n return line;\n };\n line.interpolate = function(_) {\n if (!arguments.length) return interpolateKey;\n if (typeof _ === \"function\") interpolateKey = interpolate = _; else interpolateKey = (interpolate = d3_svg_lineInterpolators.get(_) || d3_svg_lineLinear).key;\n return line;\n };\n line.tension = function(_) {\n if (!arguments.length) return tension;\n tension = _;\n return line;\n };\n return line;\n }\n d3.svg.line = function() {\n return d3_svg_line(d3_identity);\n };\n var d3_svg_lineInterpolators = d3.map({\n linear: d3_svg_lineLinear,\n \"linear-closed\": d3_svg_lineLinearClosed,\n step: d3_svg_lineStep,\n \"step-before\": d3_svg_lineStepBefore,\n \"step-after\": d3_svg_lineStepAfter,\n basis: d3_svg_lineBasis,\n \"basis-open\": d3_svg_lineBasisOpen,\n \"basis-closed\": d3_svg_lineBasisClosed,\n bundle: d3_svg_lineBundle,\n cardinal: d3_svg_lineCardinal,\n \"cardinal-open\": d3_svg_lineCardinalOpen,\n \"cardinal-closed\": d3_svg_lineCardinalClosed,\n monotone: d3_svg_lineMonotone\n });\n d3_svg_lineInterpolators.forEach(function(key, value) {\n value.key = key;\n value.closed = /-closed$/.test(key);\n });\n function d3_svg_lineLinear(points) {\n return points.join(\"L\");\n }\n function d3_svg_lineLinearClosed(points) {\n return d3_svg_lineLinear(points) + \"Z\";\n }\n function d3_svg_lineStep(points) {\n var i = 0, n = points.length, p = points[0], path = [ p[0], \",\", p[1] ];\n while (++i < n) path.push(\"H\", (p[0] + (p = points[i])[0]) / 2, \"V\", p[1]);\n if (n > 1) path.push(\"H\", p[0]);\n return path.join(\"\");\n }\n function d3_svg_lineStepBefore(points) {\n var i = 0, n = points.length, p = points[0], path = [ p[0], \",\", p[1] ];\n while (++i < n) path.push(\"V\", (p = points[i])[1], \"H\", p[0]);\n return path.join(\"\");\n }\n function d3_svg_lineStepAfter(points) {\n var i = 0, n = points.length, p = points[0], path = [ p[0], \",\", p[1] ];\n while (++i < n) path.push(\"H\", (p = points[i])[0], \"V\", p[1]);\n return path.join(\"\");\n }\n function d3_svg_lineCardinalOpen(points, tension) {\n return points.length < 4 ? d3_svg_lineLinear(points) : points[1] + d3_svg_lineHermite(points.slice(1, -1), d3_svg_lineCardinalTangents(points, tension));\n }\n function d3_svg_lineCardinalClosed(points, tension) {\n return points.length < 3 ? d3_svg_lineLinear(points) : points[0] + d3_svg_lineHermite((points.push(points[0]), \n points), d3_svg_lineCardinalTangents([ points[points.length - 2] ].concat(points, [ points[1] ]), tension));\n }\n function d3_svg_lineCardinal(points, tension) {\n return points.length < 3 ? d3_svg_lineLinear(points) : points[0] + d3_svg_lineHermite(points, d3_svg_lineCardinalTangents(points, tension));\n }\n function d3_svg_lineHermite(points, tangents) {\n if (tangents.length < 1 || points.length != tangents.length && points.length != tangents.length + 2) {\n return d3_svg_lineLinear(points);\n }\n var quad = points.length != tangents.length, path = \"\", p0 = points[0], p = points[1], t0 = tangents[0], t = t0, pi = 1;\n if (quad) {\n path += \"Q\" + (p[0] - t0[0] * 2 / 3) + \",\" + (p[1] - t0[1] * 2 / 3) + \",\" + p[0] + \",\" + p[1];\n p0 = points[1];\n pi = 2;\n }\n if (tangents.length > 1) {\n t = tangents[1];\n p = points[pi];\n pi++;\n path += \"C\" + (p0[0] + t0[0]) + \",\" + (p0[1] + t0[1]) + \",\" + (p[0] - t[0]) + \",\" + (p[1] - t[1]) + \",\" + p[0] + \",\" + p[1];\n for (var i = 2; i < tangents.length; i++, pi++) {\n p = points[pi];\n t = tangents[i];\n path += \"S\" + (p[0] - t[0]) + \",\" + (p[1] - t[1]) + \",\" + p[0] + \",\" + p[1];\n }\n }\n if (quad) {\n var lp = points[pi];\n path += \"Q\" + (p[0] + t[0] * 2 / 3) + \",\" + (p[1] + t[1] * 2 / 3) + \",\" + lp[0] + \",\" + lp[1];\n }\n return path;\n }\n function d3_svg_lineCardinalTangents(points, tension) {\n var tangents = [], a = (1 - tension) / 2, p0, p1 = points[0], p2 = points[1], i = 1, n = points.length;\n while (++i < n) {\n p0 = p1;\n p1 = p2;\n p2 = points[i];\n tangents.push([ a * (p2[0] - p0[0]), a * (p2[1] - p0[1]) ]);\n }\n return tangents;\n }\n function d3_svg_lineBasis(points) {\n if (points.length < 3) return d3_svg_lineLinear(points);\n var i = 1, n = points.length, pi = points[0], x0 = pi[0], y0 = pi[1], px = [ x0, x0, x0, (pi = points[1])[0] ], py = [ y0, y0, y0, pi[1] ], path = [ x0, \",\", y0, \"L\", d3_svg_lineDot4(d3_svg_lineBasisBezier3, px), \",\", d3_svg_lineDot4(d3_svg_lineBasisBezier3, py) ];\n points.push(points[n - 1]);\n while (++i <= n) {\n pi = points[i];\n px.shift();\n px.push(pi[0]);\n py.shift();\n py.push(pi[1]);\n d3_svg_lineBasisBezier(path, px, py);\n }\n points.pop();\n path.push(\"L\", pi);\n return path.join(\"\");\n }\n function d3_svg_lineBasisOpen(points) {\n if (points.length < 4) return d3_svg_lineLinear(points);\n var path = [], i = -1, n = points.length, pi, px = [ 0 ], py = [ 0 ];\n while (++i < 3) {\n pi = points[i];\n px.push(pi[0]);\n py.push(pi[1]);\n }\n path.push(d3_svg_lineDot4(d3_svg_lineBasisBezier3, px) + \",\" + d3_svg_lineDot4(d3_svg_lineBasisBezier3, py));\n --i;\n while (++i < n) {\n pi = points[i];\n px.shift();\n px.push(pi[0]);\n py.shift();\n py.push(pi[1]);\n d3_svg_lineBasisBezier(path, px, py);\n }\n return path.join(\"\");\n }\n function d3_svg_lineBasisClosed(points) {\n var path, i = -1, n = points.length, m = n + 4, pi, px = [], py = [];\n while (++i < 4) {\n pi = points[i % n];\n px.push(pi[0]);\n py.push(pi[1]);\n }\n path = [ d3_svg_lineDot4(d3_svg_lineBasisBezier3, px), \",\", d3_svg_lineDot4(d3_svg_lineBasisBezier3, py) ];\n --i;\n while (++i < m) {\n pi = points[i % n];\n px.shift();\n px.push(pi[0]);\n py.shift();\n py.push(pi[1]);\n d3_svg_lineBasisBezier(path, px, py);\n }\n return path.join(\"\");\n }\n function d3_svg_lineBundle(points, tension) {\n var n = points.length - 1;\n if (n) {\n var x0 = points[0][0], y0 = points[0][1], dx = points[n][0] - x0, dy = points[n][1] - y0, i = -1, p, t;\n while (++i <= n) {\n p = points[i];\n t = i / n;\n p[0] = tension * p[0] + (1 - tension) * (x0 + t * dx);\n p[1] = tension * p[1] + (1 - tension) * (y0 + t * dy);\n }\n }\n return d3_svg_lineBasis(points);\n }\n function d3_svg_lineDot4(a, b) {\n return a[0] * b[0] + a[1] * b[1] + a[2] * b[2] + a[3] * b[3];\n }\n var d3_svg_lineBasisBezier1 = [ 0, 2 / 3, 1 / 3, 0 ], d3_svg_lineBasisBezier2 = [ 0, 1 / 3, 2 / 3, 0 ], d3_svg_lineBasisBezier3 = [ 0, 1 / 6, 2 / 3, 1 / 6 ];\n function d3_svg_lineBasisBezier(path, x, y) {\n path.push(\"C\", d3_svg_lineDot4(d3_svg_lineBasisBezier1, x), \",\", d3_svg_lineDot4(d3_svg_lineBasisBezier1, y), \",\", d3_svg_lineDot4(d3_svg_lineBasisBezier2, x), \",\", d3_svg_lineDot4(d3_svg_lineBasisBezier2, y), \",\", d3_svg_lineDot4(d3_svg_lineBasisBezier3, x), \",\", d3_svg_lineDot4(d3_svg_lineBasisBezier3, y));\n }\n function d3_svg_lineSlope(p0, p1) {\n return (p1[1] - p0[1]) / (p1[0] - p0[0]);\n }\n function d3_svg_lineFiniteDifferences(points) {\n var i = 0, j = points.length - 1, m = [], p0 = points[0], p1 = points[1], d = m[0] = d3_svg_lineSlope(p0, p1);\n while (++i < j) {\n m[i] = (d + (d = d3_svg_lineSlope(p0 = p1, p1 = points[i + 1]))) / 2;\n }\n m[i] = d;\n return m;\n }\n function d3_svg_lineMonotoneTangents(points) {\n var tangents = [], d, a, b, s, m = d3_svg_lineFiniteDifferences(points), i = -1, j = points.length - 1;\n while (++i < j) {\n d = d3_svg_lineSlope(points[i], points[i + 1]);\n if (abs(d) < ε) {\n m[i] = m[i + 1] = 0;\n } else {\n a = m[i] / d;\n b = m[i + 1] / d;\n s = a * a + b * b;\n if (s > 9) {\n s = d * 3 / Math.sqrt(s);\n m[i] = s * a;\n m[i + 1] = s * b;\n }\n }\n }\n i = -1;\n while (++i <= j) {\n s = (points[Math.min(j, i + 1)][0] - points[Math.max(0, i - 1)][0]) / (6 * (1 + m[i] * m[i]));\n tangents.push([ s || 0, m[i] * s || 0 ]);\n }\n return tangents;\n }\n function d3_svg_lineMonotone(points) {\n return points.length < 3 ? d3_svg_lineLinear(points) : points[0] + d3_svg_lineHermite(points, d3_svg_lineMonotoneTangents(points));\n }\n d3.svg.line.radial = function() {\n var line = d3_svg_line(d3_svg_lineRadial);\n line.radius = line.x, delete line.x;\n line.angle = line.y, delete line.y;\n return line;\n };\n function d3_svg_lineRadial(points) {\n var point, i = -1, n = points.length, r, a;\n while (++i < n) {\n point = points[i];\n r = point[0];\n a = point[1] - halfπ;\n point[0] = r * Math.cos(a);\n point[1] = r * Math.sin(a);\n }\n return points;\n }\n function d3_svg_area(projection) {\n var x0 = d3_geom_pointX, x1 = d3_geom_pointX, y0 = 0, y1 = d3_geom_pointY, defined = d3_true, interpolate = d3_svg_lineLinear, interpolateKey = interpolate.key, interpolateReverse = interpolate, L = \"L\", tension = .7;\n function area(data) {\n var segments = [], points0 = [], points1 = [], i = -1, n = data.length, d, fx0 = d3_functor(x0), fy0 = d3_functor(y0), fx1 = x0 === x1 ? function() {\n return x;\n } : d3_functor(x1), fy1 = y0 === y1 ? function() {\n return y;\n } : d3_functor(y1), x, y;\n function segment() {\n segments.push(\"M\", interpolate(projection(points1), tension), L, interpolateReverse(projection(points0.reverse()), tension), \"Z\");\n }\n while (++i < n) {\n if (defined.call(this, d = data[i], i)) {\n points0.push([ x = +fx0.call(this, d, i), y = +fy0.call(this, d, i) ]);\n points1.push([ +fx1.call(this, d, i), +fy1.call(this, d, i) ]);\n } else if (points0.length) {\n segment();\n points0 = [];\n points1 = [];\n }\n }\n if (points0.length) segment();\n return segments.length ? segments.join(\"\") : null;\n }\n area.x = function(_) {\n if (!arguments.length) return x1;\n x0 = x1 = _;\n return area;\n };\n area.x0 = function(_) {\n if (!arguments.length) return x0;\n x0 = _;\n return area;\n };\n area.x1 = function(_) {\n if (!arguments.length) return x1;\n x1 = _;\n return area;\n };\n area.y = function(_) {\n if (!arguments.length) return y1;\n y0 = y1 = _;\n return area;\n };\n area.y0 = function(_) {\n if (!arguments.length) return y0;\n y0 = _;\n return area;\n };\n area.y1 = function(_) {\n if (!arguments.length) return y1;\n y1 = _;\n return area;\n };\n area.defined = function(_) {\n if (!arguments.length) return defined;\n defined = _;\n return area;\n };\n area.interpolate = function(_) {\n if (!arguments.length) return interpolateKey;\n if (typeof _ === \"function\") interpolateKey = interpolate = _; else interpolateKey = (interpolate = d3_svg_lineInterpolators.get(_) || d3_svg_lineLinear).key;\n interpolateReverse = interpolate.reverse || interpolate;\n L = interpolate.closed ? \"M\" : \"L\";\n return area;\n };\n area.tension = function(_) {\n if (!arguments.length) return tension;\n tension = _;\n return area;\n };\n return area;\n }\n d3_svg_lineStepBefore.reverse = d3_svg_lineStepAfter;\n d3_svg_lineStepAfter.reverse = d3_svg_lineStepBefore;\n d3.svg.area = function() {\n return d3_svg_area(d3_identity);\n };\n d3.svg.area.radial = function() {\n var area = d3_svg_area(d3_svg_lineRadial);\n area.radius = area.x, delete area.x;\n area.innerRadius = area.x0, delete area.x0;\n area.outerRadius = area.x1, delete area.x1;\n area.angle = area.y, delete area.y;\n area.startAngle = area.y0, delete area.y0;\n area.endAngle = area.y1, delete area.y1;\n return area;\n };\n d3.svg.chord = function() {\n var source = d3_source, target = d3_target, radius = d3_svg_chordRadius, startAngle = d3_svg_arcStartAngle, endAngle = d3_svg_arcEndAngle;\n function chord(d, i) {\n var s = subgroup(this, source, d, i), t = subgroup(this, target, d, i);\n return \"M\" + s.p0 + arc(s.r, s.p1, s.a1 - s.a0) + (equals(s, t) ? curve(s.r, s.p1, s.r, s.p0) : curve(s.r, s.p1, t.r, t.p0) + arc(t.r, t.p1, t.a1 - t.a0) + curve(t.r, t.p1, s.r, s.p0)) + \"Z\";\n }\n function subgroup(self, f, d, i) {\n var subgroup = f.call(self, d, i), r = radius.call(self, subgroup, i), a0 = startAngle.call(self, subgroup, i) - halfπ, a1 = endAngle.call(self, subgroup, i) - halfπ;\n return {\n r: r,\n a0: a0,\n a1: a1,\n p0: [ r * Math.cos(a0), r * Math.sin(a0) ],\n p1: [ r * Math.cos(a1), r * Math.sin(a1) ]\n };\n }\n function equals(a, b) {\n return a.a0 == b.a0 && a.a1 == b.a1;\n }\n function arc(r, p, a) {\n return \"A\" + r + \",\" + r + \" 0 \" + +(a > π) + \",1 \" + p;\n }\n function curve(r0, p0, r1, p1) {\n return \"Q 0,0 \" + p1;\n }\n chord.radius = function(v) {\n if (!arguments.length) return radius;\n radius = d3_functor(v);\n return chord;\n };\n chord.source = function(v) {\n if (!arguments.length) return source;\n source = d3_functor(v);\n return chord;\n };\n chord.target = function(v) {\n if (!arguments.length) return target;\n target = d3_functor(v);\n return chord;\n };\n chord.startAngle = function(v) {\n if (!arguments.length) return startAngle;\n startAngle = d3_functor(v);\n return chord;\n };\n chord.endAngle = function(v) {\n if (!arguments.length) return endAngle;\n endAngle = d3_functor(v);\n return chord;\n };\n return chord;\n };\n function d3_svg_chordRadius(d) {\n return d.radius;\n }\n d3.svg.diagonal = function() {\n var source = d3_source, target = d3_target, projection = d3_svg_diagonalProjection;\n function diagonal(d, i) {\n var p0 = source.call(this, d, i), p3 = target.call(this, d, i), m = (p0.y + p3.y) / 2, p = [ p0, {\n x: p0.x,\n y: m\n }, {\n x: p3.x,\n y: m\n }, p3 ];\n p = p.map(projection);\n return \"M\" + p[0] + \"C\" + p[1] + \" \" + p[2] + \" \" + p[3];\n }\n diagonal.source = function(x) {\n if (!arguments.length) return source;\n source = d3_functor(x);\n return diagonal;\n };\n diagonal.target = function(x) {\n if (!arguments.length) return target;\n target = d3_functor(x);\n return diagonal;\n };\n diagonal.projection = function(x) {\n if (!arguments.length) return projection;\n projection = x;\n return diagonal;\n };\n return diagonal;\n };\n function d3_svg_diagonalProjection(d) {\n return [ d.x, d.y ];\n }\n d3.svg.diagonal.radial = function() {\n var diagonal = d3.svg.diagonal(), projection = d3_svg_diagonalProjection, projection_ = diagonal.projection;\n diagonal.projection = function(x) {\n return arguments.length ? projection_(d3_svg_diagonalRadialProjection(projection = x)) : projection;\n };\n return diagonal;\n };\n function d3_svg_diagonalRadialProjection(projection) {\n return function() {\n var d = projection.apply(this, arguments), r = d[0], a = d[1] - halfπ;\n return [ r * Math.cos(a), r * Math.sin(a) ];\n };\n }\n d3.svg.symbol = function() {\n var type = d3_svg_symbolType, size = d3_svg_symbolSize;\n function symbol(d, i) {\n return (d3_svg_symbols.get(type.call(this, d, i)) || d3_svg_symbolCircle)(size.call(this, d, i));\n }\n symbol.type = function(x) {\n if (!arguments.length) return type;\n type = d3_functor(x);\n return symbol;\n };\n symbol.size = function(x) {\n if (!arguments.length) return size;\n size = d3_functor(x);\n return symbol;\n };\n return symbol;\n };\n function d3_svg_symbolSize() {\n return 64;\n }\n function d3_svg_symbolType() {\n return \"circle\";\n }\n function d3_svg_symbolCircle(size) {\n var r = Math.sqrt(size / π);\n return \"M0,\" + r + \"A\" + r + \",\" + r + \" 0 1,1 0,\" + -r + \"A\" + r + \",\" + r + \" 0 1,1 0,\" + r + \"Z\";\n }\n var d3_svg_symbols = d3.map({\n circle: d3_svg_symbolCircle,\n cross: function(size) {\n var r = Math.sqrt(size / 5) / 2;\n return \"M\" + -3 * r + \",\" + -r + \"H\" + -r + \"V\" + -3 * r + \"H\" + r + \"V\" + -r + \"H\" + 3 * r + \"V\" + r + \"H\" + r + \"V\" + 3 * r + \"H\" + -r + \"V\" + r + \"H\" + -3 * r + \"Z\";\n },\n diamond: function(size) {\n var ry = Math.sqrt(size / (2 * d3_svg_symbolTan30)), rx = ry * d3_svg_symbolTan30;\n return \"M0,\" + -ry + \"L\" + rx + \",0\" + \" 0,\" + ry + \" \" + -rx + \",0\" + \"Z\";\n },\n square: function(size) {\n var r = Math.sqrt(size) / 2;\n return \"M\" + -r + \",\" + -r + \"L\" + r + \",\" + -r + \" \" + r + \",\" + r + \" \" + -r + \",\" + r + \"Z\";\n },\n \"triangle-down\": function(size) {\n var rx = Math.sqrt(size / d3_svg_symbolSqrt3), ry = rx * d3_svg_symbolSqrt3 / 2;\n return \"M0,\" + ry + \"L\" + rx + \",\" + -ry + \" \" + -rx + \",\" + -ry + \"Z\";\n },\n \"triangle-up\": function(size) {\n var rx = Math.sqrt(size / d3_svg_symbolSqrt3), ry = rx * d3_svg_symbolSqrt3 / 2;\n return \"M0,\" + -ry + \"L\" + rx + \",\" + ry + \" \" + -rx + \",\" + ry + \"Z\";\n }\n });\n d3.svg.symbolTypes = d3_svg_symbols.keys();\n var d3_svg_symbolSqrt3 = Math.sqrt(3), d3_svg_symbolTan30 = Math.tan(30 * d3_radians);\n d3_selectionPrototype.transition = function(name) {\n var id = d3_transitionInheritId || ++d3_transitionId, ns = d3_transitionNamespace(name), subgroups = [], subgroup, node, transition = d3_transitionInherit || {\n time: Date.now(),\n ease: d3_ease_cubicInOut,\n delay: 0,\n duration: 250\n };\n for (var j = -1, m = this.length; ++j < m; ) {\n subgroups.push(subgroup = []);\n for (var group = this[j], i = -1, n = group.length; ++i < n; ) {\n if (node = group[i]) d3_transitionNode(node, i, ns, id, transition);\n subgroup.push(node);\n }\n }\n return d3_transition(subgroups, ns, id);\n };\n d3_selectionPrototype.interrupt = function(name) {\n return this.each(name == null ? d3_selection_interrupt : d3_selection_interruptNS(d3_transitionNamespace(name)));\n };\n var d3_selection_interrupt = d3_selection_interruptNS(d3_transitionNamespace());\n function d3_selection_interruptNS(ns) {\n return function() {\n var lock, active;\n if ((lock = this[ns]) && (active = lock[lock.active])) {\n if (--lock.count) delete lock[lock.active]; else delete this[ns];\n lock.active += .5;\n active.event && active.event.interrupt.call(this, this.__data__, active.index);\n }\n };\n }\n function d3_transition(groups, ns, id) {\n d3_subclass(groups, d3_transitionPrototype);\n groups.namespace = ns;\n groups.id = id;\n return groups;\n }\n var d3_transitionPrototype = [], d3_transitionId = 0, d3_transitionInheritId, d3_transitionInherit;\n d3_transitionPrototype.call = d3_selectionPrototype.call;\n d3_transitionPrototype.empty = d3_selectionPrototype.empty;\n d3_transitionPrototype.node = d3_selectionPrototype.node;\n d3_transitionPrototype.size = d3_selectionPrototype.size;\n d3.transition = function(selection, name) {\n return selection && selection.transition ? d3_transitionInheritId ? selection.transition(name) : selection : d3.selection().transition(selection);\n };\n d3.transition.prototype = d3_transitionPrototype;\n d3_transitionPrototype.select = function(selector) {\n var id = this.id, ns = this.namespace, subgroups = [], subgroup, subnode, node;\n selector = d3_selection_selector(selector);\n for (var j = -1, m = this.length; ++j < m; ) {\n subgroups.push(subgroup = []);\n for (var group = this[j], i = -1, n = group.length; ++i < n; ) {\n if ((node = group[i]) && (subnode = selector.call(node, node.__data__, i, j))) {\n if (\"__data__\" in node) subnode.__data__ = node.__data__;\n d3_transitionNode(subnode, i, ns, id, node[ns][id]);\n subgroup.push(subnode);\n } else {\n subgroup.push(null);\n }\n }\n }\n return d3_transition(subgroups, ns, id);\n };\n d3_transitionPrototype.selectAll = function(selector) {\n var id = this.id, ns = this.namespace, subgroups = [], subgroup, subnodes, node, subnode, transition;\n selector = d3_selection_selectorAll(selector);\n for (var j = -1, m = this.length; ++j < m; ) {\n for (var group = this[j], i = -1, n = group.length; ++i < n; ) {\n if (node = group[i]) {\n transition = node[ns][id];\n subnodes = selector.call(node, node.__data__, i, j);\n subgroups.push(subgroup = []);\n for (var k = -1, o = subnodes.length; ++k < o; ) {\n if (subnode = subnodes[k]) d3_transitionNode(subnode, k, ns, id, transition);\n subgroup.push(subnode);\n }\n }\n }\n }\n return d3_transition(subgroups, ns, id);\n };\n d3_transitionPrototype.filter = function(filter) {\n var subgroups = [], subgroup, group, node;\n if (typeof filter !== \"function\") filter = d3_selection_filter(filter);\n for (var j = 0, m = this.length; j < m; j++) {\n subgroups.push(subgroup = []);\n for (var group = this[j], i = 0, n = group.length; i < n; i++) {\n if ((node = group[i]) && filter.call(node, node.__data__, i, j)) {\n subgroup.push(node);\n }\n }\n }\n return d3_transition(subgroups, this.namespace, this.id);\n };\n d3_transitionPrototype.tween = function(name, tween) {\n var id = this.id, ns = this.namespace;\n if (arguments.length < 2) return this.node()[ns][id].tween.get(name);\n return d3_selection_each(this, tween == null ? function(node) {\n node[ns][id].tween.remove(name);\n } : function(node) {\n node[ns][id].tween.set(name, tween);\n });\n };\n function d3_transition_tween(groups, name, value, tween) {\n var id = groups.id, ns = groups.namespace;\n return d3_selection_each(groups, typeof value === \"function\" ? function(node, i, j) {\n node[ns][id].tween.set(name, tween(value.call(node, node.__data__, i, j)));\n } : (value = tween(value), function(node) {\n node[ns][id].tween.set(name, value);\n }));\n }\n d3_transitionPrototype.attr = function(nameNS, value) {\n if (arguments.length < 2) {\n for (value in nameNS) this.attr(value, nameNS[value]);\n return this;\n }\n var interpolate = nameNS == \"transform\" ? d3_interpolateTransform : d3_interpolate, name = d3.ns.qualify(nameNS);\n function attrNull() {\n this.removeAttribute(name);\n }\n function attrNullNS() {\n this.removeAttributeNS(name.space, name.local);\n }\n function attrTween(b) {\n return b == null ? attrNull : (b += \"\", function() {\n var a = this.getAttribute(name), i;\n return a !== b && (i = interpolate(a, b), function(t) {\n this.setAttribute(name, i(t));\n });\n });\n }\n function attrTweenNS(b) {\n return b == null ? attrNullNS : (b += \"\", function() {\n var a = this.getAttributeNS(name.space, name.local), i;\n return a !== b && (i = interpolate(a, b), function(t) {\n this.setAttributeNS(name.space, name.local, i(t));\n });\n });\n }\n return d3_transition_tween(this, \"attr.\" + nameNS, value, name.local ? attrTweenNS : attrTween);\n };\n d3_transitionPrototype.attrTween = function(nameNS, tween) {\n var name = d3.ns.qualify(nameNS);\n function attrTween(d, i) {\n var f = tween.call(this, d, i, this.getAttribute(name));\n return f && function(t) {\n this.setAttribute(name, f(t));\n };\n }\n function attrTweenNS(d, i) {\n var f = tween.call(this, d, i, this.getAttributeNS(name.space, name.local));\n return f && function(t) {\n this.setAttributeNS(name.space, name.local, f(t));\n };\n }\n return this.tween(\"attr.\" + nameNS, name.local ? attrTweenNS : attrTween);\n };\n d3_transitionPrototype.style = function(name, value, priority) {\n var n = arguments.length;\n if (n < 3) {\n if (typeof name !== \"string\") {\n if (n < 2) value = \"\";\n for (priority in name) this.style(priority, name[priority], value);\n return this;\n }\n priority = \"\";\n }\n function styleNull() {\n this.style.removeProperty(name);\n }\n function styleString(b) {\n return b == null ? styleNull : (b += \"\", function() {\n var a = d3_window(this).getComputedStyle(this, null).getPropertyValue(name), i;\n return a !== b && (i = d3_interpolate(a, b), function(t) {\n this.style.setProperty(name, i(t), priority);\n });\n });\n }\n return d3_transition_tween(this, \"style.\" + name, value, styleString);\n };\n d3_transitionPrototype.styleTween = function(name, tween, priority) {\n if (arguments.length < 3) priority = \"\";\n function styleTween(d, i) {\n var f = tween.call(this, d, i, d3_window(this).getComputedStyle(this, null).getPropertyValue(name));\n return f && function(t) {\n this.style.setProperty(name, f(t), priority);\n };\n }\n return this.tween(\"style.\" + name, styleTween);\n };\n d3_transitionPrototype.text = function(value) {\n return d3_transition_tween(this, \"text\", value, d3_transition_text);\n };\n function d3_transition_text(b) {\n if (b == null) b = \"\";\n return function() {\n this.textContent = b;\n };\n }\n d3_transitionPrototype.remove = function() {\n var ns = this.namespace;\n return this.each(\"end.transition\", function() {\n var p;\n if (this[ns].count < 2 && (p = this.parentNode)) p.removeChild(this);\n });\n };\n d3_transitionPrototype.ease = function(value) {\n var id = this.id, ns = this.namespace;\n if (arguments.length < 1) return this.node()[ns][id].ease;\n if (typeof value !== \"function\") value = d3.ease.apply(d3, arguments);\n return d3_selection_each(this, function(node) {\n node[ns][id].ease = value;\n });\n };\n d3_transitionPrototype.delay = function(value) {\n var id = this.id, ns = this.namespace;\n if (arguments.length < 1) return this.node()[ns][id].delay;\n return d3_selection_each(this, typeof value === \"function\" ? function(node, i, j) {\n node[ns][id].delay = +value.call(node, node.__data__, i, j);\n } : (value = +value, function(node) {\n node[ns][id].delay = value;\n }));\n };\n d3_transitionPrototype.duration = function(value) {\n var id = this.id, ns = this.namespace;\n if (arguments.length < 1) return this.node()[ns][id].duration;\n return d3_selection_each(this, typeof value === \"function\" ? function(node, i, j) {\n node[ns][id].duration = Math.max(1, value.call(node, node.__data__, i, j));\n } : (value = Math.max(1, value), function(node) {\n node[ns][id].duration = value;\n }));\n };\n d3_transitionPrototype.each = function(type, listener) {\n var id = this.id, ns = this.namespace;\n if (arguments.length < 2) {\n var inherit = d3_transitionInherit, inheritId = d3_transitionInheritId;\n try {\n d3_transitionInheritId = id;\n d3_selection_each(this, function(node, i, j) {\n d3_transitionInherit = node[ns][id];\n type.call(node, node.__data__, i, j);\n });\n } finally {\n d3_transitionInherit = inherit;\n d3_transitionInheritId = inheritId;\n }\n } else {\n d3_selection_each(this, function(node) {\n var transition = node[ns][id];\n (transition.event || (transition.event = d3.dispatch(\"start\", \"end\", \"interrupt\"))).on(type, listener);\n });\n }\n return this;\n };\n d3_transitionPrototype.transition = function() {\n var id0 = this.id, id1 = ++d3_transitionId, ns = this.namespace, subgroups = [], subgroup, group, node, transition;\n for (var j = 0, m = this.length; j < m; j++) {\n subgroups.push(subgroup = []);\n for (var group = this[j], i = 0, n = group.length; i < n; i++) {\n if (node = group[i]) {\n transition = node[ns][id0];\n d3_transitionNode(node, i, ns, id1, {\n time: transition.time,\n ease: transition.ease,\n delay: transition.delay + transition.duration,\n duration: transition.duration\n });\n }\n subgroup.push(node);\n }\n }\n return d3_transition(subgroups, ns, id1);\n };\n function d3_transitionNamespace(name) {\n return name == null ? \"__transition__\" : \"__transition_\" + name + \"__\";\n }\n function d3_transitionNode(node, i, ns, id, inherit) {\n var lock = node[ns] || (node[ns] = {\n active: 0,\n count: 0\n }), transition = lock[id];\n if (!transition) {\n var time = inherit.time;\n transition = lock[id] = {\n tween: new d3_Map(),\n time: time,\n delay: inherit.delay,\n duration: inherit.duration,\n ease: inherit.ease,\n index: i\n };\n inherit = null;\n ++lock.count;\n d3.timer(function(elapsed) {\n var delay = transition.delay, duration, ease, timer = d3_timer_active, tweened = [];\n timer.t = delay + time;\n if (delay <= elapsed) return start(elapsed - delay);\n timer.c = start;\n function start(elapsed) {\n if (lock.active > id) return stop();\n var active = lock[lock.active];\n if (active) {\n --lock.count;\n delete lock[lock.active];\n active.event && active.event.interrupt.call(node, node.__data__, active.index);\n }\n lock.active = id;\n transition.event && transition.event.start.call(node, node.__data__, i);\n transition.tween.forEach(function(key, value) {\n if (value = value.call(node, node.__data__, i)) {\n tweened.push(value);\n }\n });\n ease = transition.ease;\n duration = transition.duration;\n d3.timer(function() {\n timer.c = tick(elapsed || 1) ? d3_true : tick;\n return 1;\n }, 0, time);\n }\n function tick(elapsed) {\n if (lock.active !== id) return 1;\n var t = elapsed / duration, e = ease(t), n = tweened.length;\n while (n > 0) {\n tweened[--n].call(node, e);\n }\n if (t >= 1) {\n transition.event && transition.event.end.call(node, node.__data__, i);\n return stop();\n }\n }\n function stop() {\n if (--lock.count) delete lock[id]; else delete node[ns];\n return 1;\n }\n }, 0, time);\n }\n }\n d3.svg.axis = function() {\n var scale = d3.scale.linear(), orient = d3_svg_axisDefaultOrient, innerTickSize = 6, outerTickSize = 6, tickPadding = 3, tickArguments_ = [ 10 ], tickValues = null, tickFormat_;\n function axis(g) {\n g.each(function() {\n var g = d3.select(this);\n var scale0 = this.__chart__ || scale, scale1 = this.__chart__ = scale.copy();\n var ticks = tickValues == null ? scale1.ticks ? scale1.ticks.apply(scale1, tickArguments_) : scale1.domain() : tickValues, tickFormat = tickFormat_ == null ? scale1.tickFormat ? scale1.tickFormat.apply(scale1, tickArguments_) : d3_identity : tickFormat_, tick = g.selectAll(\".tick\").data(ticks, scale1), tickEnter = tick.enter().insert(\"g\", \".domain\").attr(\"class\", \"tick\").style(\"opacity\", ε), tickExit = d3.transition(tick.exit()).style(\"opacity\", ε).remove(), tickUpdate = d3.transition(tick.order()).style(\"opacity\", 1), tickSpacing = Math.max(innerTickSize, 0) + tickPadding, tickTransform;\n var range = d3_scaleRange(scale1), path = g.selectAll(\".domain\").data([ 0 ]), pathUpdate = (path.enter().append(\"path\").attr(\"class\", \"domain\"), \n d3.transition(path));\n tickEnter.append(\"line\");\n tickEnter.append(\"text\");\n var lineEnter = tickEnter.select(\"line\"), lineUpdate = tickUpdate.select(\"line\"), text = tick.select(\"text\").text(tickFormat), textEnter = tickEnter.select(\"text\"), textUpdate = tickUpdate.select(\"text\"), sign = orient === \"top\" || orient === \"left\" ? -1 : 1, x1, x2, y1, y2;\n if (orient === \"bottom\" || orient === \"top\") {\n tickTransform = d3_svg_axisX, x1 = \"x\", y1 = \"y\", x2 = \"x2\", y2 = \"y2\";\n text.attr(\"dy\", sign < 0 ? \"0em\" : \".71em\").style(\"text-anchor\", \"middle\");\n pathUpdate.attr(\"d\", \"M\" + range[0] + \",\" + sign * outerTickSize + \"V0H\" + range[1] + \"V\" + sign * outerTickSize);\n } else {\n tickTransform = d3_svg_axisY, x1 = \"y\", y1 = \"x\", x2 = \"y2\", y2 = \"x2\";\n text.attr(\"dy\", \".32em\").style(\"text-anchor\", sign < 0 ? \"end\" : \"start\");\n pathUpdate.attr(\"d\", \"M\" + sign * outerTickSize + \",\" + range[0] + \"H0V\" + range[1] + \"H\" + sign * outerTickSize);\n }\n lineEnter.attr(y2, sign * innerTickSize);\n textEnter.attr(y1, sign * tickSpacing);\n lineUpdate.attr(x2, 0).attr(y2, sign * innerTickSize);\n textUpdate.attr(x1, 0).attr(y1, sign * tickSpacing);\n if (scale1.rangeBand) {\n var x = scale1, dx = x.rangeBand() / 2;\n scale0 = scale1 = function(d) {\n return x(d) + dx;\n };\n } else if (scale0.rangeBand) {\n scale0 = scale1;\n } else {\n tickExit.call(tickTransform, scale1, scale0);\n }\n tickEnter.call(tickTransform, scale0, scale1);\n tickUpdate.call(tickTransform, scale1, scale1);\n });\n }\n axis.scale = function(x) {\n if (!arguments.length) return scale;\n scale = x;\n return axis;\n };\n axis.orient = function(x) {\n if (!arguments.length) return orient;\n orient = x in d3_svg_axisOrients ? x + \"\" : d3_svg_axisDefaultOrient;\n return axis;\n };\n axis.ticks = function() {\n if (!arguments.length) return tickArguments_;\n tickArguments_ = arguments;\n return axis;\n };\n axis.tickValues = function(x) {\n if (!arguments.length) return tickValues;\n tickValues = x;\n return axis;\n };\n axis.tickFormat = function(x) {\n if (!arguments.length) return tickFormat_;\n tickFormat_ = x;\n return axis;\n };\n axis.tickSize = function(x) {\n var n = arguments.length;\n if (!n) return innerTickSize;\n innerTickSize = +x;\n outerTickSize = +arguments[n - 1];\n return axis;\n };\n axis.innerTickSize = function(x) {\n if (!arguments.length) return innerTickSize;\n innerTickSize = +x;\n return axis;\n };\n axis.outerTickSize = function(x) {\n if (!arguments.length) return outerTickSize;\n outerTickSize = +x;\n return axis;\n };\n axis.tickPadding = function(x) {\n if (!arguments.length) return tickPadding;\n tickPadding = +x;\n return axis;\n };\n axis.tickSubdivide = function() {\n return arguments.length && axis;\n };\n return axis;\n };\n var d3_svg_axisDefaultOrient = \"bottom\", d3_svg_axisOrients = {\n top: 1,\n right: 1,\n bottom: 1,\n left: 1\n };\n function d3_svg_axisX(selection, x0, x1) {\n selection.attr(\"transform\", function(d) {\n var v0 = x0(d);\n return \"translate(\" + (isFinite(v0) ? v0 : x1(d)) + \",0)\";\n });\n }\n function d3_svg_axisY(selection, y0, y1) {\n selection.attr(\"transform\", function(d) {\n var v0 = y0(d);\n return \"translate(0,\" + (isFinite(v0) ? v0 : y1(d)) + \")\";\n });\n }\n d3.svg.brush = function() {\n var event = d3_eventDispatch(brush, \"brushstart\", \"brush\", \"brushend\"), x = null, y = null, xExtent = [ 0, 0 ], yExtent = [ 0, 0 ], xExtentDomain, yExtentDomain, xClamp = true, yClamp = true, resizes = d3_svg_brushResizes[0];\n function brush(g) {\n g.each(function() {\n var g = d3.select(this).style(\"pointer-events\", \"all\").style(\"-webkit-tap-highlight-color\", \"rgba(0,0,0,0)\").on(\"mousedown.brush\", brushstart).on(\"touchstart.brush\", brushstart);\n var background = g.selectAll(\".background\").data([ 0 ]);\n background.enter().append(\"rect\").attr(\"class\", \"background\").style(\"visibility\", \"hidden\").style(\"cursor\", \"crosshair\");\n g.selectAll(\".extent\").data([ 0 ]).enter().append(\"rect\").attr(\"class\", \"extent\").style(\"cursor\", \"move\");\n var resize = g.selectAll(\".resize\").data(resizes, d3_identity);\n resize.exit().remove();\n resize.enter().append(\"g\").attr(\"class\", function(d) {\n return \"resize \" + d;\n }).style(\"cursor\", function(d) {\n return d3_svg_brushCursor[d];\n }).append(\"rect\").attr(\"x\", function(d) {\n return /[ew]$/.test(d) ? -3 : null;\n }).attr(\"y\", function(d) {\n return /^[ns]/.test(d) ? -3 : null;\n }).attr(\"width\", 6).attr(\"height\", 6).style(\"visibility\", \"hidden\");\n resize.style(\"display\", brush.empty() ? \"none\" : null);\n var gUpdate = d3.transition(g), backgroundUpdate = d3.transition(background), range;\n if (x) {\n range = d3_scaleRange(x);\n backgroundUpdate.attr(\"x\", range[0]).attr(\"width\", range[1] - range[0]);\n redrawX(gUpdate);\n }\n if (y) {\n range = d3_scaleRange(y);\n backgroundUpdate.attr(\"y\", range[0]).attr(\"height\", range[1] - range[0]);\n redrawY(gUpdate);\n }\n redraw(gUpdate);\n });\n }\n brush.event = function(g) {\n g.each(function() {\n var event_ = event.of(this, arguments), extent1 = {\n x: xExtent,\n y: yExtent,\n i: xExtentDomain,\n j: yExtentDomain\n }, extent0 = this.__chart__ || extent1;\n this.__chart__ = extent1;\n if (d3_transitionInheritId) {\n d3.select(this).transition().each(\"start.brush\", function() {\n xExtentDomain = extent0.i;\n yExtentDomain = extent0.j;\n xExtent = extent0.x;\n yExtent = extent0.y;\n event_({\n type: \"brushstart\"\n });\n }).tween(\"brush:brush\", function() {\n var xi = d3_interpolateArray(xExtent, extent1.x), yi = d3_interpolateArray(yExtent, extent1.y);\n xExtentDomain = yExtentDomain = null;\n return function(t) {\n xExtent = extent1.x = xi(t);\n yExtent = extent1.y = yi(t);\n event_({\n type: \"brush\",\n mode: \"resize\"\n });\n };\n }).each(\"end.brush\", function() {\n xExtentDomain = extent1.i;\n yExtentDomain = extent1.j;\n event_({\n type: \"brush\",\n mode: \"resize\"\n });\n event_({\n type: \"brushend\"\n });\n });\n } else {\n event_({\n type: \"brushstart\"\n });\n event_({\n type: \"brush\",\n mode: \"resize\"\n });\n event_({\n type: \"brushend\"\n });\n }\n });\n };\n function redraw(g) {\n g.selectAll(\".resize\").attr(\"transform\", function(d) {\n return \"translate(\" + xExtent[+/e$/.test(d)] + \",\" + yExtent[+/^s/.test(d)] + \")\";\n });\n }\n function redrawX(g) {\n g.select(\".extent\").attr(\"x\", xExtent[0]);\n g.selectAll(\".extent,.n>rect,.s>rect\").attr(\"width\", xExtent[1] - xExtent[0]);\n }\n function redrawY(g) {\n g.select(\".extent\").attr(\"y\", yExtent[0]);\n g.selectAll(\".extent,.e>rect,.w>rect\").attr(\"height\", yExtent[1] - yExtent[0]);\n }\n function brushstart() {\n var target = this, eventTarget = d3.select(d3.event.target), event_ = event.of(target, arguments), g = d3.select(target), resizing = eventTarget.datum(), resizingX = !/^(n|s)$/.test(resizing) && x, resizingY = !/^(e|w)$/.test(resizing) && y, dragging = eventTarget.classed(\"extent\"), dragRestore = d3_event_dragSuppress(target), center, origin = d3.mouse(target), offset;\n var w = d3.select(d3_window(target)).on(\"keydown.brush\", keydown).on(\"keyup.brush\", keyup);\n if (d3.event.changedTouches) {\n w.on(\"touchmove.brush\", brushmove).on(\"touchend.brush\", brushend);\n } else {\n w.on(\"mousemove.brush\", brushmove).on(\"mouseup.brush\", brushend);\n }\n g.interrupt().selectAll(\"*\").interrupt();\n if (dragging) {\n origin[0] = xExtent[0] - origin[0];\n origin[1] = yExtent[0] - origin[1];\n } else if (resizing) {\n var ex = +/w$/.test(resizing), ey = +/^n/.test(resizing);\n offset = [ xExtent[1 - ex] - origin[0], yExtent[1 - ey] - origin[1] ];\n origin[0] = xExtent[ex];\n origin[1] = yExtent[ey];\n } else if (d3.event.altKey) center = origin.slice();\n g.style(\"pointer-events\", \"none\").selectAll(\".resize\").style(\"display\", null);\n d3.select(\"body\").style(\"cursor\", eventTarget.style(\"cursor\"));\n event_({\n type: \"brushstart\"\n });\n brushmove();\n function keydown() {\n if (d3.event.keyCode == 32) {\n if (!dragging) {\n center = null;\n origin[0] -= xExtent[1];\n origin[1] -= yExtent[1];\n dragging = 2;\n }\n d3_eventPreventDefault();\n }\n }\n function keyup() {\n if (d3.event.keyCode == 32 && dragging == 2) {\n origin[0] += xExtent[1];\n origin[1] += yExtent[1];\n dragging = 0;\n d3_eventPreventDefault();\n }\n }\n function brushmove() {\n var point = d3.mouse(target), moved = false;\n if (offset) {\n point[0] += offset[0];\n point[1] += offset[1];\n }\n if (!dragging) {\n if (d3.event.altKey) {\n if (!center) center = [ (xExtent[0] + xExtent[1]) / 2, (yExtent[0] + yExtent[1]) / 2 ];\n origin[0] = xExtent[+(point[0] < center[0])];\n origin[1] = yExtent[+(point[1] < center[1])];\n } else center = null;\n }\n if (resizingX && move1(point, x, 0)) {\n redrawX(g);\n moved = true;\n }\n if (resizingY && move1(point, y, 1)) {\n redrawY(g);\n moved = true;\n }\n if (moved) {\n redraw(g);\n event_({\n type: \"brush\",\n mode: dragging ? \"move\" : \"resize\"\n });\n }\n }\n function move1(point, scale, i) {\n var range = d3_scaleRange(scale), r0 = range[0], r1 = range[1], position = origin[i], extent = i ? yExtent : xExtent, size = extent[1] - extent[0], min, max;\n if (dragging) {\n r0 -= position;\n r1 -= size + position;\n }\n min = (i ? yClamp : xClamp) ? Math.max(r0, Math.min(r1, point[i])) : point[i];\n if (dragging) {\n max = (min += position) + size;\n } else {\n if (center) position = Math.max(r0, Math.min(r1, 2 * center[i] - min));\n if (position < min) {\n max = min;\n min = position;\n } else {\n max = position;\n }\n }\n if (extent[0] != min || extent[1] != max) {\n if (i) yExtentDomain = null; else xExtentDomain = null;\n extent[0] = min;\n extent[1] = max;\n return true;\n }\n }\n function brushend() {\n brushmove();\n g.style(\"pointer-events\", \"all\").selectAll(\".resize\").style(\"display\", brush.empty() ? \"none\" : null);\n d3.select(\"body\").style(\"cursor\", null);\n w.on(\"mousemove.brush\", null).on(\"mouseup.brush\", null).on(\"touchmove.brush\", null).on(\"touchend.brush\", null).on(\"keydown.brush\", null).on(\"keyup.brush\", null);\n dragRestore();\n event_({\n type: \"brushend\"\n });\n }\n }\n brush.x = function(z) {\n if (!arguments.length) return x;\n x = z;\n resizes = d3_svg_brushResizes[!x << 1 | !y];\n return brush;\n };\n brush.y = function(z) {\n if (!arguments.length) return y;\n y = z;\n resizes = d3_svg_brushResizes[!x << 1 | !y];\n return brush;\n };\n brush.clamp = function(z) {\n if (!arguments.length) return x && y ? [ xClamp, yClamp ] : x ? xClamp : y ? yClamp : null;\n if (x && y) xClamp = !!z[0], yClamp = !!z[1]; else if (x) xClamp = !!z; else if (y) yClamp = !!z;\n return brush;\n };\n brush.extent = function(z) {\n var x0, x1, y0, y1, t;\n if (!arguments.length) {\n if (x) {\n if (xExtentDomain) {\n x0 = xExtentDomain[0], x1 = xExtentDomain[1];\n } else {\n x0 = xExtent[0], x1 = xExtent[1];\n if (x.invert) x0 = x.invert(x0), x1 = x.invert(x1);\n if (x1 < x0) t = x0, x0 = x1, x1 = t;\n }\n }\n if (y) {\n if (yExtentDomain) {\n y0 = yExtentDomain[0], y1 = yExtentDomain[1];\n } else {\n y0 = yExtent[0], y1 = yExtent[1];\n if (y.invert) y0 = y.invert(y0), y1 = y.invert(y1);\n if (y1 < y0) t = y0, y0 = y1, y1 = t;\n }\n }\n return x && y ? [ [ x0, y0 ], [ x1, y1 ] ] : x ? [ x0, x1 ] : y && [ y0, y1 ];\n }\n if (x) {\n x0 = z[0], x1 = z[1];\n if (y) x0 = x0[0], x1 = x1[0];\n xExtentDomain = [ x0, x1 ];\n if (x.invert) x0 = x(x0), x1 = x(x1);\n if (x1 < x0) t = x0, x0 = x1, x1 = t;\n if (x0 != xExtent[0] || x1 != xExtent[1]) xExtent = [ x0, x1 ];\n }\n if (y) {\n y0 = z[0], y1 = z[1];\n if (x) y0 = y0[1], y1 = y1[1];\n yExtentDomain = [ y0, y1 ];\n if (y.invert) y0 = y(y0), y1 = y(y1);\n if (y1 < y0) t = y0, y0 = y1, y1 = t;\n if (y0 != yExtent[0] || y1 != yExtent[1]) yExtent = [ y0, y1 ];\n }\n return brush;\n };\n brush.clear = function() {\n if (!brush.empty()) {\n xExtent = [ 0, 0 ], yExtent = [ 0, 0 ];\n xExtentDomain = yExtentDomain = null;\n }\n return brush;\n };\n brush.empty = function() {\n return !!x && xExtent[0] == xExtent[1] || !!y && yExtent[0] == yExtent[1];\n };\n return d3.rebind(brush, event, \"on\");\n };\n var d3_svg_brushCursor = {\n n: \"ns-resize\",\n e: \"ew-resize\",\n s: \"ns-resize\",\n w: \"ew-resize\",\n nw: \"nwse-resize\",\n ne: \"nesw-resize\",\n se: \"nwse-resize\",\n sw: \"nesw-resize\"\n };\n var d3_svg_brushResizes = [ [ \"n\", \"e\", \"s\", \"w\", \"nw\", \"ne\", \"se\", \"sw\" ], [ \"e\", \"w\" ], [ \"n\", \"s\" ], [] ];\n var d3_time_format = d3_time.format = d3_locale_enUS.timeFormat;\n var d3_time_formatUtc = d3_time_format.utc;\n var d3_time_formatIso = d3_time_formatUtc(\"%Y-%m-%dT%H:%M:%S.%LZ\");\n d3_time_format.iso = Date.prototype.toISOString && +new Date(\"2000-01-01T00:00:00.000Z\") ? d3_time_formatIsoNative : d3_time_formatIso;\n function d3_time_formatIsoNative(date) {\n return date.toISOString();\n }\n d3_time_formatIsoNative.parse = function(string) {\n var date = new Date(string);\n return isNaN(date) ? null : date;\n };\n d3_time_formatIsoNative.toString = d3_time_formatIso.toString;\n d3_time.second = d3_time_interval(function(date) {\n return new d3_date(Math.floor(date / 1e3) * 1e3);\n }, function(date, offset) {\n date.setTime(date.getTime() + Math.floor(offset) * 1e3);\n }, function(date) {\n return date.getSeconds();\n });\n d3_time.seconds = d3_time.second.range;\n d3_time.seconds.utc = d3_time.second.utc.range;\n d3_time.minute = d3_time_interval(function(date) {\n return new d3_date(Math.floor(date / 6e4) * 6e4);\n }, function(date, offset) {\n date.setTime(date.getTime() + Math.floor(offset) * 6e4);\n }, function(date) {\n return date.getMinutes();\n });\n d3_time.minutes = d3_time.minute.range;\n d3_time.minutes.utc = d3_time.minute.utc.range;\n d3_time.hour = d3_time_interval(function(date) {\n var timezone = date.getTimezoneOffset() / 60;\n return new d3_date((Math.floor(date / 36e5 - timezone) + timezone) * 36e5);\n }, function(date, offset) {\n date.setTime(date.getTime() + Math.floor(offset) * 36e5);\n }, function(date) {\n return date.getHours();\n });\n d3_time.hours = d3_time.hour.range;\n d3_time.hours.utc = d3_time.hour.utc.range;\n d3_time.month = d3_time_interval(function(date) {\n date = d3_time.day(date);\n date.setDate(1);\n return date;\n }, function(date, offset) {\n date.setMonth(date.getMonth() + offset);\n }, function(date) {\n return date.getMonth();\n });\n d3_time.months = d3_time.month.range;\n d3_time.months.utc = d3_time.month.utc.range;\n function d3_time_scale(linear, methods, format) {\n function scale(x) {\n return linear(x);\n }\n scale.invert = function(x) {\n return d3_time_scaleDate(linear.invert(x));\n };\n scale.domain = function(x) {\n if (!arguments.length) return linear.domain().map(d3_time_scaleDate);\n linear.domain(x);\n return scale;\n };\n function tickMethod(extent, count) {\n var span = extent[1] - extent[0], target = span / count, i = d3.bisect(d3_time_scaleSteps, target);\n return i == d3_time_scaleSteps.length ? [ methods.year, d3_scale_linearTickRange(extent.map(function(d) {\n return d / 31536e6;\n }), count)[2] ] : !i ? [ d3_time_scaleMilliseconds, d3_scale_linearTickRange(extent, count)[2] ] : methods[target / d3_time_scaleSteps[i - 1] < d3_time_scaleSteps[i] / target ? i - 1 : i];\n }\n scale.nice = function(interval, skip) {\n var domain = scale.domain(), extent = d3_scaleExtent(domain), method = interval == null ? tickMethod(extent, 10) : typeof interval === \"number\" && tickMethod(extent, interval);\n if (method) interval = method[0], skip = method[1];\n function skipped(date) {\n return !isNaN(date) && !interval.range(date, d3_time_scaleDate(+date + 1), skip).length;\n }\n return scale.domain(d3_scale_nice(domain, skip > 1 ? {\n floor: function(date) {\n while (skipped(date = interval.floor(date))) date = d3_time_scaleDate(date - 1);\n return date;\n },\n ceil: function(date) {\n while (skipped(date = interval.ceil(date))) date = d3_time_scaleDate(+date + 1);\n return date;\n }\n } : interval));\n };\n scale.ticks = function(interval, skip) {\n var extent = d3_scaleExtent(scale.domain()), method = interval == null ? tickMethod(extent, 10) : typeof interval === \"number\" ? tickMethod(extent, interval) : !interval.range && [ {\n range: interval\n }, skip ];\n if (method) interval = method[0], skip = method[1];\n return interval.range(extent[0], d3_time_scaleDate(+extent[1] + 1), skip < 1 ? 1 : skip);\n };\n scale.tickFormat = function() {\n return format;\n };\n scale.copy = function() {\n return d3_time_scale(linear.copy(), methods, format);\n };\n return d3_scale_linearRebind(scale, linear);\n }\n function d3_time_scaleDate(t) {\n return new Date(t);\n }\n var d3_time_scaleSteps = [ 1e3, 5e3, 15e3, 3e4, 6e4, 3e5, 9e5, 18e5, 36e5, 108e5, 216e5, 432e5, 864e5, 1728e5, 6048e5, 2592e6, 7776e6, 31536e6 ];\n var d3_time_scaleLocalMethods = [ [ d3_time.second, 1 ], [ d3_time.second, 5 ], [ d3_time.second, 15 ], [ d3_time.second, 30 ], [ d3_time.minute, 1 ], [ d3_time.minute, 5 ], [ d3_time.minute, 15 ], [ d3_time.minute, 30 ], [ d3_time.hour, 1 ], [ d3_time.hour, 3 ], [ d3_time.hour, 6 ], [ d3_time.hour, 12 ], [ d3_time.day, 1 ], [ d3_time.day, 2 ], [ d3_time.week, 1 ], [ d3_time.month, 1 ], [ d3_time.month, 3 ], [ d3_time.year, 1 ] ];\n var d3_time_scaleLocalFormat = d3_time_format.multi([ [ \".%L\", function(d) {\n return d.getMilliseconds();\n } ], [ \":%S\", function(d) {\n return d.getSeconds();\n } ], [ \"%I:%M\", function(d) {\n return d.getMinutes();\n } ], [ \"%I %p\", function(d) {\n return d.getHours();\n } ], [ \"%a %d\", function(d) {\n return d.getDay() && d.getDate() != 1;\n } ], [ \"%b %d\", function(d) {\n return d.getDate() != 1;\n } ], [ \"%B\", function(d) {\n return d.getMonth();\n } ], [ \"%Y\", d3_true ] ]);\n var d3_time_scaleMilliseconds = {\n range: function(start, stop, step) {\n return d3.range(Math.ceil(start / step) * step, +stop, step).map(d3_time_scaleDate);\n },\n floor: d3_identity,\n ceil: d3_identity\n };\n d3_time_scaleLocalMethods.year = d3_time.year;\n d3_time.scale = function() {\n return d3_time_scale(d3.scale.linear(), d3_time_scaleLocalMethods, d3_time_scaleLocalFormat);\n };\n var d3_time_scaleUtcMethods = d3_time_scaleLocalMethods.map(function(m) {\n return [ m[0].utc, m[1] ];\n });\n var d3_time_scaleUtcFormat = d3_time_formatUtc.multi([ [ \".%L\", function(d) {\n return d.getUTCMilliseconds();\n } ], [ \":%S\", function(d) {\n return d.getUTCSeconds();\n } ], [ \"%I:%M\", function(d) {\n return d.getUTCMinutes();\n } ], [ \"%I %p\", function(d) {\n return d.getUTCHours();\n } ], [ \"%a %d\", function(d) {\n return d.getUTCDay() && d.getUTCDate() != 1;\n } ], [ \"%b %d\", function(d) {\n return d.getUTCDate() != 1;\n } ], [ \"%B\", function(d) {\n return d.getUTCMonth();\n } ], [ \"%Y\", d3_true ] ]);\n d3_time_scaleUtcMethods.year = d3_time.year.utc;\n d3_time.scale.utc = function() {\n return d3_time_scale(d3.scale.linear(), d3_time_scaleUtcMethods, d3_time_scaleUtcFormat);\n };\n d3.text = d3_xhrType(function(request) {\n return request.responseText;\n });\n d3.json = function(url, callback) {\n return d3_xhr(url, \"application/json\", d3_json, callback);\n };\n function d3_json(request) {\n return JSON.parse(request.responseText);\n }\n d3.html = function(url, callback) {\n return d3_xhr(url, \"text/html\", d3_html, callback);\n };\n function d3_html(request) {\n var range = d3_document.createRange();\n range.selectNode(d3_document.body);\n return range.createContextualFragment(request.responseText);\n }\n d3.xml = d3_xhrType(function(request) {\n return request.responseXML;\n });\n if (typeof define === \"function\" && define.amd) define(d3); else if (typeof module === \"object\" && module.exports) module.exports = d3;\n this.d3 = d3;\n}();", "/*! DataTables 1.10.7\n * ©2008-2014 SpryMedia Ltd - datatables.net/license\n */\n\n/**\n * @summary DataTables\n * @description Paginate, search and order HTML tables\n * @version 1.10.7\n * @file jquery.dataTables.js\n * @author SpryMedia Ltd (www.sprymedia.co.uk)\n * @contact www.sprymedia.co.uk/contact\n * @copyright Copyright 2008-2014 SpryMedia Ltd.\n *\n * This source file is free software, available under the following license:\n * MIT license - http://datatables.net/license\n *\n * This source file is distributed in the hope that it will be useful, but\n * WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY\n * or FITNESS FOR A PARTICULAR PURPOSE. See the license files for details.\n *\n * For details please refer to: http://www.datatables.net\n */\n\n/*jslint evil: true, undef: true, browser: true */\n/*globals $,require,jQuery,define,_selector_run,_selector_opts,_selector_first,_selector_row_indexes,_ext,_Api,_api_register,_api_registerPlural,_re_new_lines,_re_html,_re_formatted_numeric,_re_escape_regex,_empty,_intVal,_numToDecimal,_isNumber,_isHtml,_htmlNumeric,_pluck,_pluck_order,_range,_stripHtml,_unique,_fnBuildAjax,_fnAjaxUpdate,_fnAjaxParameters,_fnAjaxUpdateDraw,_fnAjaxDataSrc,_fnAddColumn,_fnColumnOptions,_fnAdjustColumnSizing,_fnVisibleToColumnIndex,_fnColumnIndexToVisible,_fnVisbleColumns,_fnGetColumns,_fnColumnTypes,_fnApplyColumnDefs,_fnHungarianMap,_fnCamelToHungarian,_fnLanguageCompat,_fnBrowserDetect,_fnAddData,_fnAddTr,_fnNodeToDataIndex,_fnNodeToColumnIndex,_fnGetCellData,_fnSetCellData,_fnSplitObjNotation,_fnGetObjectDataFn,_fnSetObjectDataFn,_fnGetDataMaster,_fnClearTable,_fnDeleteIndex,_fnInvalidate,_fnGetRowElements,_fnCreateTr,_fnBuildHead,_fnDrawHead,_fnDraw,_fnReDraw,_fnAddOptionsHtml,_fnDetectHeader,_fnGetUniqueThs,_fnFeatureHtmlFilter,_fnFilterComplete,_fnFilterCustom,_fnFilterColumn,_fnFilter,_fnFilterCreateSearch,_fnEscapeRegex,_fnFilterData,_fnFeatureHtmlInfo,_fnUpdateInfo,_fnInfoMacros,_fnInitialise,_fnInitComplete,_fnLengthChange,_fnFeatureHtmlLength,_fnFeatureHtmlPaginate,_fnPageChange,_fnFeatureHtmlProcessing,_fnProcessingDisplay,_fnFeatureHtmlTable,_fnScrollDraw,_fnApplyToChildren,_fnCalculateColumnWidths,_fnThrottle,_fnConvertToWidth,_fnScrollingWidthAdjust,_fnGetWidestNode,_fnGetMaxLenString,_fnStringToCss,_fnScrollBarWidth,_fnSortFlatten,_fnSort,_fnSortAria,_fnSortListener,_fnSortAttachListener,_fnSortingClasses,_fnSortData,_fnSaveState,_fnLoadState,_fnSettingsFromNode,_fnLog,_fnMap,_fnBindAction,_fnCallbackReg,_fnCallbackFire,_fnLengthOverflow,_fnRenderer,_fnDataSource,_fnRowAttributes*/\n\n(/** @lends */function( window, document, undefined ) {\n\n(function( factory ) {\n\t\"use strict\";\n\n\tif ( typeof define === 'function' && define.amd ) {\n\t\t// Define as an AMD module if possible\n\t\tdefine( 'datatables', ['jquery'], factory );\n\t}\n else if ( typeof exports === 'object' ) {\n // Node/CommonJS\n module.exports = factory( require( 'jquery' ) );\n }\n\telse if ( jQuery && !jQuery.fn.dataTable ) {\n\t\t// Define using browser globals otherwise\n\t\t// Prevent multiple instantiations if the script is loaded twice\n\t\tfactory( jQuery );\n\t}\n}\n(/** @lends */function( $ ) {\n\t\"use strict\";\n\n\t/**\n\t * DataTables is a plug-in for the jQuery Javascript library. It is a highly\n\t * flexible tool, based upon the foundations of progressive enhancement,\n\t * which will add advanced interaction controls to any HTML table. For a\n\t * full list of features please refer to\n\t * [DataTables.net](href=\"http://datatables.net).\n\t *\n\t * Note that the `DataTable` object is not a global variable but is aliased\n\t * to `jQuery.fn.DataTable` and `jQuery.fn.dataTable` through which it may\n\t * be accessed.\n\t *\n\t * @class\n\t * @param {object} [init={}] Configuration object for DataTables. Options\n\t * are defined by {@link DataTable.defaults}\n\t * @requires jQuery 1.7+\n\t *\n\t * @example\n\t * // Basic initialisation\n\t * $(document).ready( function {\n\t * $('#example').dataTable();\n\t * } );\n\t *\n\t * @example\n\t * // Initialisation with configuration options - in this case, disable\n\t * // pagination and sorting.\n\t * $(document).ready( function {\n\t * $('#example').dataTable( {\n\t * \"paginate\": false,\n\t * \"sort\": false\n\t * } );\n\t * } );\n\t */\n\tvar DataTable;\n\n\t\n\t/*\n\t * It is useful to have variables which are scoped locally so only the\n\t * DataTables functions can access them and they don't leak into global space.\n\t * At the same time these functions are often useful over multiple files in the\n\t * core and API, so we list, or at least document, all variables which are used\n\t * by DataTables as private variables here. This also ensures that there is no\n\t * clashing of variable names and that they can easily referenced for reuse.\n\t */\n\t\n\t\n\t// Defined else where\n\t// _selector_run\n\t// _selector_opts\n\t// _selector_first\n\t// _selector_row_indexes\n\t\n\tvar _ext; // DataTable.ext\n\tvar _Api; // DataTable.Api\n\tvar _api_register; // DataTable.Api.register\n\tvar _api_registerPlural; // DataTable.Api.registerPlural\n\t\n\tvar _re_dic = {};\n\tvar _re_new_lines = /[\\r\\n]/g;\n\tvar _re_html = /<.*?>/g;\n\tvar _re_date_start = /^[\\w\\+\\-]/;\n\tvar _re_date_end = /[\\w\\+\\-]$/;\n\t\n\t// Escape regular expression special characters\n\tvar _re_escape_regex = new RegExp( '(\\\\' + [ '/', '.', '*', '+', '?', '|', '(', ')', '[', ']', '{', '}', '\\\\', '$', '^', '-' ].join('|\\\\') + ')', 'g' );\n\t\n\t// http://en.wikipedia.org/wiki/Foreign_exchange_market\n\t// - \\u20BD - Russian ruble.\n\t// - \\u20a9 - South Korean Won\n\t// - \\u20BA - Turkish Lira\n\t// - \\u20B9 - Indian Rupee\n\t// - R - Brazil (R$) and South Africa\n\t// - fr - Swiss Franc\n\t// - kr - Swedish krona, Norwegian krone and Danish krone\n\t// - \\u2009 is thin space and \\u202F is narrow no-break space, both used in many\n\t// standards as thousands separators.\n\tvar _re_formatted_numeric = /[',$£€¥%\\u2009\\u202F\\u20BD\\u20a9\\u20BArfk]/gi;\n\t\n\t\n\tvar _empty = function ( d ) {\n\t\treturn !d || d === true || d === '-' ? true : false;\n\t};\n\t\n\t\n\tvar _intVal = function ( s ) {\n\t\tvar integer = parseInt( s, 10 );\n\t\treturn !isNaN(integer) && isFinite(s) ? integer : null;\n\t};\n\t\n\t// Convert from a formatted number with characters other than `.` as the\n\t// decimal place, to a Javascript number\n\tvar _numToDecimal = function ( num, decimalPoint ) {\n\t\t// Cache created regular expressions for speed as this function is called often\n\t\tif ( ! _re_dic[ decimalPoint ] ) {\n\t\t\t_re_dic[ decimalPoint ] = new RegExp( _fnEscapeRegex( decimalPoint ), 'g' );\n\t\t}\n\t\treturn typeof num === 'string' && decimalPoint !== '.' ?\n\t\t\tnum.replace( /\\./g, '' ).replace( _re_dic[ decimalPoint ], '.' ) :\n\t\t\tnum;\n\t};\n\t\n\t\n\tvar _isNumber = function ( d, decimalPoint, formatted ) {\n\t\tvar strType = typeof d === 'string';\n\t\n\t\t// If empty return immediately so there must be a number if it is a\n\t\t// formatted string (this stops the string \"k\", or \"kr\", etc being detected\n\t\t// as a formatted number for currency\n\t\tif ( _empty( d ) ) {\n\t\t\treturn true;\n\t\t}\n\t\n\t\tif ( decimalPoint && strType ) {\n\t\t\td = _numToDecimal( d, decimalPoint );\n\t\t}\n\t\n\t\tif ( formatted && strType ) {\n\t\t\td = d.replace( _re_formatted_numeric, '' );\n\t\t}\n\t\n\t\treturn !isNaN( parseFloat(d) ) && isFinite( d );\n\t};\n\t\n\t\n\t// A string without HTML in it can be considered to be HTML still\n\tvar _isHtml = function ( d ) {\n\t\treturn _empty( d ) || typeof d === 'string';\n\t};\n\t\n\t\n\tvar _htmlNumeric = function ( d, decimalPoint, formatted ) {\n\t\tif ( _empty( d ) ) {\n\t\t\treturn true;\n\t\t}\n\t\n\t\tvar html = _isHtml( d );\n\t\treturn ! html ?\n\t\t\tnull :\n\t\t\t_isNumber( _stripHtml( d ), decimalPoint, formatted ) ?\n\t\t\t\ttrue :\n\t\t\t\tnull;\n\t};\n\t\n\t\n\tvar _pluck = function ( a, prop, prop2 ) {\n\t\tvar out = [];\n\t\tvar i=0, ien=a.length;\n\t\n\t\t// Could have the test in the loop for slightly smaller code, but speed\n\t\t// is essential here\n\t\tif ( prop2 !== undefined ) {\n\t\t\tfor ( ; i')\n\t\t\t.css( {\n\t\t\t\tposition: 'absolute',\n\t\t\t\ttop: 0,\n\t\t\t\tleft: 0,\n\t\t\t\theight: 1,\n\t\t\t\twidth: 1,\n\t\t\t\toverflow: 'hidden'\n\t\t\t} )\n\t\t\t.append(\n\t\t\t\t$('
')\n\t\t\t\t\t.css( {\n\t\t\t\t\t\tposition: 'absolute',\n\t\t\t\t\t\ttop: 1,\n\t\t\t\t\t\tleft: 1,\n\t\t\t\t\t\twidth: 100,\n\t\t\t\t\t\toverflow: 'scroll'\n\t\t\t\t\t} )\n\t\t\t\t\t.append(\n\t\t\t\t\t\t$('
')\n\t\t\t\t\t\t\t.css( {\n\t\t\t\t\t\t\t\twidth: '100%',\n\t\t\t\t\t\t\t\theight: 10\n\t\t\t\t\t\t\t} )\n\t\t\t\t\t)\n\t\t\t)\n\t\t\t.appendTo( 'body' );\n\t\n\t\tvar test = n.find('.test');\n\t\n\t\t// IE6/7 will oversize a width 100% element inside a scrolling element, to\n\t\t// include the width of the scrollbar, while other browsers ensure the inner\n\t\t// element is contained without forcing scrolling\n\t\tbrowser.bScrollOversize = test[0].offsetWidth === 100;\n\t\n\t\t// In rtl text layout, some browsers (most, but not all) will place the\n\t\t// scrollbar on the left, rather than the right.\n\t\tbrowser.bScrollbarLeft = Math.round( test.offset().left ) !== 1;\n\t\n\t\tn.remove();\n\t}\n\t\n\t\n\t/**\n\t * Array.prototype reduce[Right] method, used for browsers which don't support\n\t * JS 1.6. Done this way to reduce code size, since we iterate either way\n\t * @param {object} settings dataTables settings object\n\t * @memberof DataTable#oApi\n\t */\n\tfunction _fnReduce ( that, fn, init, start, end, inc )\n\t{\n\t\tvar\n\t\t\ti = start,\n\t\t\tvalue,\n\t\t\tisSet = false;\n\t\n\t\tif ( init !== undefined ) {\n\t\t\tvalue = init;\n\t\t\tisSet = true;\n\t\t}\n\t\n\t\twhile ( i !== end ) {\n\t\t\tif ( ! that.hasOwnProperty(i) ) {\n\t\t\t\tcontinue;\n\t\t\t}\n\t\n\t\t\tvalue = isSet ?\n\t\t\t\tfn( value, that[i], i, that ) :\n\t\t\t\tthat[i];\n\t\n\t\t\tisSet = true;\n\t\t\ti += inc;\n\t\t}\n\t\n\t\treturn value;\n\t}\n\t\n\t/**\n\t * Add a column to the list used for the table with default values\n\t * @param {object} oSettings dataTables settings object\n\t * @param {node} nTh The th element for this column\n\t * @memberof DataTable#oApi\n\t */\n\tfunction _fnAddColumn( oSettings, nTh )\n\t{\n\t\t// Add column to aoColumns array\n\t\tvar oDefaults = DataTable.defaults.column;\n\t\tvar iCol = oSettings.aoColumns.length;\n\t\tvar oCol = $.extend( {}, DataTable.models.oColumn, oDefaults, {\n\t\t\t\"nTh\": nTh ? nTh : document.createElement('th'),\n\t\t\t\"sTitle\": oDefaults.sTitle ? oDefaults.sTitle : nTh ? nTh.innerHTML : '',\n\t\t\t\"aDataSort\": oDefaults.aDataSort ? oDefaults.aDataSort : [iCol],\n\t\t\t\"mData\": oDefaults.mData ? oDefaults.mData : iCol,\n\t\t\tidx: iCol\n\t\t} );\n\t\toSettings.aoColumns.push( oCol );\n\t\n\t\t// Add search object for column specific search. Note that the `searchCols[ iCol ]`\n\t\t// passed into extend can be undefined. This allows the user to give a default\n\t\t// with only some of the parameters defined, and also not give a default\n\t\tvar searchCols = oSettings.aoPreSearchCols;\n\t\tsearchCols[ iCol ] = $.extend( {}, DataTable.models.oSearch, searchCols[ iCol ] );\n\t\n\t\t// Use the default column options function to initialise classes etc\n\t\t_fnColumnOptions( oSettings, iCol, $(nTh).data() );\n\t}\n\t\n\t\n\t/**\n\t * Apply options for a column\n\t * @param {object} oSettings dataTables settings object\n\t * @param {int} iCol column index to consider\n\t * @param {object} oOptions object with sType, bVisible and bSearchable etc\n\t * @memberof DataTable#oApi\n\t */\n\tfunction _fnColumnOptions( oSettings, iCol, oOptions )\n\t{\n\t\tvar oCol = oSettings.aoColumns[ iCol ];\n\t\tvar oClasses = oSettings.oClasses;\n\t\tvar th = $(oCol.nTh);\n\t\n\t\t// Try to get width information from the DOM. We can't get it from CSS\n\t\t// as we'd need to parse the CSS stylesheet. `width` option can override\n\t\tif ( ! oCol.sWidthOrig ) {\n\t\t\t// Width attribute\n\t\t\toCol.sWidthOrig = th.attr('width') || null;\n\t\n\t\t\t// Style attribute\n\t\t\tvar t = (th.attr('style') || '').match(/width:\\s*(\\d+[pxem%]+)/);\n\t\t\tif ( t ) {\n\t\t\t\toCol.sWidthOrig = t[1];\n\t\t\t}\n\t\t}\n\t\n\t\t/* User specified column options */\n\t\tif ( oOptions !== undefined && oOptions !== null )\n\t\t{\n\t\t\t// Backwards compatibility\n\t\t\t_fnCompatCols( oOptions );\n\t\n\t\t\t// Map camel case parameters to their Hungarian counterparts\n\t\t\t_fnCamelToHungarian( DataTable.defaults.column, oOptions );\n\t\n\t\t\t/* Backwards compatibility for mDataProp */\n\t\t\tif ( oOptions.mDataProp !== undefined && !oOptions.mData )\n\t\t\t{\n\t\t\t\toOptions.mData = oOptions.mDataProp;\n\t\t\t}\n\t\n\t\t\tif ( oOptions.sType )\n\t\t\t{\n\t\t\t\toCol._sManualType = oOptions.sType;\n\t\t\t}\n\t\n\t\t\t// `class` is a reserved word in Javascript, so we need to provide\n\t\t\t// the ability to use a valid name for the camel case input\n\t\t\tif ( oOptions.className && ! oOptions.sClass )\n\t\t\t{\n\t\t\t\toOptions.sClass = oOptions.className;\n\t\t\t}\n\t\n\t\t\t$.extend( oCol, oOptions );\n\t\t\t_fnMap( oCol, oOptions, \"sWidth\", \"sWidthOrig\" );\n\t\n\t\t\t/* iDataSort to be applied (backwards compatibility), but aDataSort will take\n\t\t\t * priority if defined\n\t\t\t */\n\t\t\tif ( oOptions.iDataSort !== undefined )\n\t\t\t{\n\t\t\t\toCol.aDataSort = [ oOptions.iDataSort ];\n\t\t\t}\n\t\t\t_fnMap( oCol, oOptions, \"aDataSort\" );\n\t\t}\n\t\n\t\t/* Cache the data get and set functions for speed */\n\t\tvar mDataSrc = oCol.mData;\n\t\tvar mData = _fnGetObjectDataFn( mDataSrc );\n\t\tvar mRender = oCol.mRender ? _fnGetObjectDataFn( oCol.mRender ) : null;\n\t\n\t\tvar attrTest = function( src ) {\n\t\t\treturn typeof src === 'string' && src.indexOf('@') !== -1;\n\t\t};\n\t\toCol._bAttrSrc = $.isPlainObject( mDataSrc ) && (\n\t\t\tattrTest(mDataSrc.sort) || attrTest(mDataSrc.type) || attrTest(mDataSrc.filter)\n\t\t);\n\t\n\t\toCol.fnGetData = function (rowData, type, meta) {\n\t\t\tvar innerData = mData( rowData, type, undefined, meta );\n\t\n\t\t\treturn mRender && type ?\n\t\t\t\tmRender( innerData, type, rowData, meta ) :\n\t\t\t\tinnerData;\n\t\t};\n\t\toCol.fnSetData = function ( rowData, val, meta ) {\n\t\t\treturn _fnSetObjectDataFn( mDataSrc )( rowData, val, meta );\n\t\t};\n\t\n\t\t// Indicate if DataTables should read DOM data as an object or array\n\t\t// Used in _fnGetRowElements\n\t\tif ( typeof mDataSrc !== 'number' ) {\n\t\t\toSettings._rowReadObject = true;\n\t\t}\n\t\n\t\t/* Feature sorting overrides column specific when off */\n\t\tif ( !oSettings.oFeatures.bSort )\n\t\t{\n\t\t\toCol.bSortable = false;\n\t\t\tth.addClass( oClasses.sSortableNone ); // Have to add class here as order event isn't called\n\t\t}\n\t\n\t\t/* Check that the class assignment is correct for sorting */\n\t\tvar bAsc = $.inArray('asc', oCol.asSorting) !== -1;\n\t\tvar bDesc = $.inArray('desc', oCol.asSorting) !== -1;\n\t\tif ( !oCol.bSortable || (!bAsc && !bDesc) )\n\t\t{\n\t\t\toCol.sSortingClass = oClasses.sSortableNone;\n\t\t\toCol.sSortingClassJUI = \"\";\n\t\t}\n\t\telse if ( bAsc && !bDesc )\n\t\t{\n\t\t\toCol.sSortingClass = oClasses.sSortableAsc;\n\t\t\toCol.sSortingClassJUI = oClasses.sSortJUIAscAllowed;\n\t\t}\n\t\telse if ( !bAsc && bDesc )\n\t\t{\n\t\t\toCol.sSortingClass = oClasses.sSortableDesc;\n\t\t\toCol.sSortingClassJUI = oClasses.sSortJUIDescAllowed;\n\t\t}\n\t\telse\n\t\t{\n\t\t\toCol.sSortingClass = oClasses.sSortable;\n\t\t\toCol.sSortingClassJUI = oClasses.sSortJUI;\n\t\t}\n\t}\n\t\n\t\n\t/**\n\t * Adjust the table column widths for new data. Note: you would probably want to\n\t * do a redraw after calling this function!\n\t * @param {object} settings dataTables settings object\n\t * @memberof DataTable#oApi\n\t */\n\tfunction _fnAdjustColumnSizing ( settings )\n\t{\n\t\t/* Not interested in doing column width calculation if auto-width is disabled */\n\t\tif ( settings.oFeatures.bAutoWidth !== false )\n\t\t{\n\t\t\tvar columns = settings.aoColumns;\n\t\n\t\t\t_fnCalculateColumnWidths( settings );\n\t\t\tfor ( var i=0 , iLen=columns.length ; i