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index.js
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index.js
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(function(f){if(typeof exports==="object"&&typeof module!=="undefined"){module.exports=f()}else if(typeof define==="function"&&define.amd){define([],f)}else{var g;if(typeof window!=="undefined"){g=window}else if(typeof global!=="undefined"){g=global}else if(typeof self!=="undefined"){g=self}else{g=this}g.sanitizeHtml = f()}})(function(){var define,module,exports;return (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;o<r.length;o++)s(r[o]);return s})({1:[function(require,module,exports){
var htmlparser = require('htmlparser2');
var extend = require('xtend');
var quoteRegexp = require('regexp-quote');
function each(obj, cb) {
if (obj) Object.keys(obj).forEach(function (key) {
cb(obj[key], key);
});
}
// Avoid false positives with .__proto__, .hasOwnProperty, etc.
function has(obj, key) {
return ({}).hasOwnProperty.call(obj, key);
}
module.exports = sanitizeHtml;
// Ignore the _recursing flag; it's there for recursive
// invocation as a guard against this exploit:
// https://github.com/fb55/htmlparser2/issues/105
function sanitizeHtml(html, options, _recursing) {
var result = '';
function Frame(tag, attribs) {
var that = this;
this.tag = tag;
this.attribs = attribs || {};
this.tagPosition = result.length;
this.text = ''; // Node inner text
this.updateParentNodeText = function() {
if (stack.length) {
var parentFrame = stack[stack.length - 1];
parentFrame.text += that.text;
}
};
}
if (!options) {
options = sanitizeHtml.defaults;
options.parser = htmlParserDefaults;
} else {
options = extend(sanitizeHtml.defaults, options);
if (options.parser) {
options.parser = extend(htmlParserDefaults, options.parser);
} else {
options.parser = htmlParserDefaults;
}
}
// Tags that contain something other than HTML, or where discarding
// the text when the tag is disallowed makes sense for other reasons.
// If we are not allowing these tags, we should drop their content too.
// For other tags you would drop the tag but keep its content.
var nonTextTagsArray = options.nonTextTags || [ 'script', 'style', 'textarea' ];
var allowedAttributesMap;
var allowedAttributesGlobMap;
if(options.allowedAttributes) {
allowedAttributesMap = {};
allowedAttributesGlobMap = {};
each(options.allowedAttributes, function(attributes, tag) {
allowedAttributesMap[tag] = [];
var globRegex = [];
attributes.forEach(function(name) {
if(name.indexOf('*') >= 0) {
globRegex.push(quoteRegexp(name).replace(/\\\*/g, '.*'));
} else {
allowedAttributesMap[tag].push(name);
}
});
allowedAttributesGlobMap[tag] = new RegExp('^(' + globRegex.join('|') + ')$');
});
}
var allowedClassesMap = {};
each(options.allowedClasses, function(classes, tag) {
// Implicitly allows the class attribute
if(allowedAttributesMap) {
if (!has(allowedAttributesMap, tag)) {
allowedAttributesMap[tag] = [];
}
allowedAttributesMap[tag].push('class');
}
allowedClassesMap[tag] = classes;
});
var transformTagsMap = {};
var transformTagsAll;
each(options.transformTags, function(transform, tag) {
var transFun;
if (typeof transform === 'function') {
transFun = transform;
} else if (typeof transform === "string") {
transFun = sanitizeHtml.simpleTransform(transform);
}
if (tag === '*') {
transformTagsAll = transFun;
} else {
transformTagsMap[tag] = transFun;
}
});
var depth = 0;
var stack = [];
var skipMap = {};
var transformMap = {};
var skipText = false;
var skipTextDepth = 0;
var parser = new htmlparser.Parser({
onopentag: function(name, attribs) {
if (skipText) {
skipTextDepth++;
return;
}
var frame = new Frame(name, attribs);
stack.push(frame);
var skip = false;
var hasText = frame.text ? true : false;
var transformedTag;
if (has(transformTagsMap, name)) {
transformedTag = transformTagsMap[name](name, attribs);
frame.attribs = attribs = transformedTag.attribs;
if (transformedTag.text !== undefined) {
frame.innerText = transformedTag.text;
}
if (name !== transformedTag.tagName) {
frame.name = name = transformedTag.tagName;
transformMap[depth] = transformedTag.tagName;
}
}
if (transformTagsAll) {
transformedTag = transformTagsAll(name, attribs);
frame.attribs = attribs = transformedTag.attribs;
if (name !== transformedTag.tagName) {
frame.name = name = transformedTag.tagName;
transformMap[depth] = transformedTag.tagName;
}
}
if (options.allowedTags && options.allowedTags.indexOf(name) === -1) {
skip = true;
if (nonTextTagsArray.indexOf(name) !== -1) {
skipText = true;
skipTextDepth = 1;
}
skipMap[depth] = true;
}
depth++;
if (skip) {
// We want the contents but not this tag
return;
}
result += '<' + name;
if (!allowedAttributesMap || has(allowedAttributesMap, name) || allowedAttributesMap['*']) {
each(attribs, function(value, a) {
if (!allowedAttributesMap ||
(has(allowedAttributesMap, name) && allowedAttributesMap[name].indexOf(a) !== -1 ) ||
(allowedAttributesMap['*'] && allowedAttributesMap['*'].indexOf(a) !== -1 ) ||
(has(allowedAttributesGlobMap, name) && allowedAttributesGlobMap[name].test(a)) ||
(allowedAttributesGlobMap['*'] && allowedAttributesGlobMap['*'].test(a))) {
if ((a === 'href') || (a === 'src')) {
if (naughtyHref(name, value)) {
delete frame.attribs[a];
return;
}
}
if (a === 'class') {
value = filterClasses(value, allowedClassesMap[name]);
if (!value.length) {
delete frame.attribs[a];
return;
}
}
result += ' ' + a;
if (value.length) {
result += '="' + escapeHtml(value) + '"';
}
} else {
delete frame.attribs[a];
}
});
}
if (options.selfClosing.indexOf(name) !== -1) {
result += " />";
} else {
result += ">";
if (frame.innerText && !hasText && !options.textFilter) {
result += frame.innerText;
}
}
},
ontext: function(text) {
if (skipText) {
return;
}
var lastFrame = stack[stack.length-1];
var tag;
if (lastFrame) {
tag = lastFrame.tag;
// If inner text was set by transform function then let's use it
text = lastFrame.innerText !== undefined ? lastFrame.innerText : text;
}
if ((tag === 'script') || (tag === 'style')) {
// htmlparser2 gives us these as-is. Escaping them ruins the content. Allowing
// script tags is, by definition, game over for XSS protection, so if that's
// your concern, don't allow them. The same is essentially true for style tags
// which have their own collection of XSS vectors.
result += text;
} else {
var escaped = escapeHtml(text);
if (options.textFilter) {
result += options.textFilter(escaped);
} else {
result += escaped;
}
}
if (stack.length) {
var frame = stack[stack.length - 1];
frame.text += text;
}
},
onclosetag: function(name) {
if (skipText) {
skipTextDepth--;
if (!skipTextDepth) {
skipText = false;
} else {
return;
}
}
var frame = stack.pop();
if (!frame) {
// Do not crash on bad markup
return;
}
skipText = false;
depth--;
if (skipMap[depth]) {
delete skipMap[depth];
frame.updateParentNodeText();
return;
}
if (transformMap[depth]) {
name = transformMap[depth];
delete transformMap[depth];
}
if (options.exclusiveFilter && options.exclusiveFilter(frame)) {
result = result.substr(0, frame.tagPosition);
return;
}
frame.updateParentNodeText();
if (options.selfClosing.indexOf(name) !== -1) {
// Already output />
return;
}
result += "</" + name + ">";
}
}, options.parser);
parser.write(html);
parser.end();
return result;
function escapeHtml(s) {
if (typeof(s) !== 'string') {
s = s + '';
}
return s.replace(/\&/g, '&').replace(/</g, '<').replace(/\>/g, '>').replace(/\"/g, '"');
}
function naughtyHref(name, href) {
// Browsers ignore character codes of 32 (space) and below in a surprising
// number of situations. Start reading here:
// https://www.owasp.org/index.php/XSS_Filter_Evasion_Cheat_Sheet#Embedded_tab
href = href.replace(/[\x00-\x20]+/g, '');
// Clobber any comments in URLs, which the browser might
// interpret inside an XML data island, allowing
// a javascript: URL to be snuck through
href = href.replace(/<\!\-\-.*?\-\-\>/g, '');
// Case insensitive so we don't get faked out by JAVASCRIPT #1
var matches = href.match(/^([a-zA-Z]+)\:/);
if (!matches) {
// Protocol-relative URL: "//some.evil.com/nasty"
if (href.match(/^\/\//)) {
return !options.allowProtocolRelative;
}
// No scheme
return false;
}
var scheme = matches[1].toLowerCase();
if (has(options.allowedSchemesByTag, name)) {
return options.allowedSchemesByTag[name].indexOf(scheme) === -1;
}
return !options.allowedSchemes || options.allowedSchemes.indexOf(scheme) === -1;
}
function filterClasses(classes, allowed) {
if (!allowed) {
// The class attribute is allowed without filtering on this tag
return classes;
}
classes = classes.split(/\s+/);
return classes.filter(function(clss) {
return allowed.indexOf(clss) !== -1;
}).join(' ');
}
}
// Defaults are accessible to you so that you can use them as a starting point
// programmatically if you wish
var htmlParserDefaults = {
decodeEntities: true
};
sanitizeHtml.defaults = {
allowedTags: [ 'h3', 'h4', 'h5', 'h6', 'blockquote', 'p', 'a', 'ul', 'ol',
'nl', 'li', 'b', 'i', 'strong', 'em', 'strike', 'code', 'hr', 'br', 'div',
'table', 'thead', 'caption', 'tbody', 'tr', 'th', 'td', 'pre' ],
allowedAttributes: {
a: [ 'href', 'name', 'target' ],
// We don't currently allow img itself by default, but this
// would make sense if we did
img: [ 'src' ]
},
// Lots of these won't come up by default because we don't allow them
selfClosing: [ 'img', 'br', 'hr', 'area', 'base', 'basefont', 'input', 'link', 'meta' ],
// URL schemes we permit
allowedSchemes: [ 'http', 'https', 'ftp', 'mailto' ],
allowedSchemesByTag: {},
allowProtocolRelative: true
};
sanitizeHtml.simpleTransform = function(newTagName, newAttribs, merge) {
merge = (merge === undefined) ? true : merge;
newAttribs = newAttribs || {};
return function(tagName, attribs) {
var attrib;
if (merge) {
for (attrib in newAttribs) {
attribs[attrib] = newAttribs[attrib];
}
} else {
attribs = newAttribs;
}
return {
tagName: newTagName,
attribs: attribs
};
};
};
},{"htmlparser2":37,"regexp-quote":56,"xtend":60}],2:[function(require,module,exports){
'use strict'
exports.byteLength = byteLength
exports.toByteArray = toByteArray
exports.fromByteArray = fromByteArray
var lookup = []
var revLookup = []
var Arr = typeof Uint8Array !== 'undefined' ? Uint8Array : Array
var code = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/'
for (var i = 0, len = code.length; i < len; ++i) {
lookup[i] = code[i]
revLookup[code.charCodeAt(i)] = i
}
revLookup['-'.charCodeAt(0)] = 62
revLookup['_'.charCodeAt(0)] = 63
function placeHoldersCount (b64) {
var len = b64.length
if (len % 4 > 0) {
throw new Error('Invalid string. Length must be a multiple of 4')
}
// the number of equal signs (place holders)
// if there are two placeholders, than the two characters before it
// represent one byte
// if there is only one, then the three characters before it represent 2 bytes
// this is just a cheap hack to not do indexOf twice
return b64[len - 2] === '=' ? 2 : b64[len - 1] === '=' ? 1 : 0
}
function byteLength (b64) {
// base64 is 4/3 + up to two characters of the original data
return b64.length * 3 / 4 - placeHoldersCount(b64)
}
function toByteArray (b64) {
var i, j, l, tmp, placeHolders, arr
var len = b64.length
placeHolders = placeHoldersCount(b64)
arr = new Arr(len * 3 / 4 - placeHolders)
// if there are placeholders, only get up to the last complete 4 chars
l = placeHolders > 0 ? len - 4 : len
var L = 0
for (i = 0, j = 0; i < l; i += 4, j += 3) {
tmp = (revLookup[b64.charCodeAt(i)] << 18) | (revLookup[b64.charCodeAt(i + 1)] << 12) | (revLookup[b64.charCodeAt(i + 2)] << 6) | revLookup[b64.charCodeAt(i + 3)]
arr[L++] = (tmp >> 16) & 0xFF
arr[L++] = (tmp >> 8) & 0xFF
arr[L++] = tmp & 0xFF
}
if (placeHolders === 2) {
tmp = (revLookup[b64.charCodeAt(i)] << 2) | (revLookup[b64.charCodeAt(i + 1)] >> 4)
arr[L++] = tmp & 0xFF
} else if (placeHolders === 1) {
tmp = (revLookup[b64.charCodeAt(i)] << 10) | (revLookup[b64.charCodeAt(i + 1)] << 4) | (revLookup[b64.charCodeAt(i + 2)] >> 2)
arr[L++] = (tmp >> 8) & 0xFF
arr[L++] = tmp & 0xFF
}
return arr
}
function tripletToBase64 (num) {
return lookup[num >> 18 & 0x3F] + lookup[num >> 12 & 0x3F] + lookup[num >> 6 & 0x3F] + lookup[num & 0x3F]
}
function encodeChunk (uint8, start, end) {
var tmp
var output = []
for (var i = start; i < end; i += 3) {
tmp = (uint8[i] << 16) + (uint8[i + 1] << 8) + (uint8[i + 2])
output.push(tripletToBase64(tmp))
}
return output.join('')
}
function fromByteArray (uint8) {
var tmp
var len = uint8.length
var extraBytes = len % 3 // if we have 1 byte left, pad 2 bytes
var output = ''
var parts = []
var maxChunkLength = 16383 // must be multiple of 3
// go through the array every three bytes, we'll deal with trailing stuff later
for (var i = 0, len2 = len - extraBytes; i < len2; i += maxChunkLength) {
parts.push(encodeChunk(uint8, i, (i + maxChunkLength) > len2 ? len2 : (i + maxChunkLength)))
}
// pad the end with zeros, but make sure to not forget the extra bytes
if (extraBytes === 1) {
tmp = uint8[len - 1]
output += lookup[tmp >> 2]
output += lookup[(tmp << 4) & 0x3F]
output += '=='
} else if (extraBytes === 2) {
tmp = (uint8[len - 2] << 8) + (uint8[len - 1])
output += lookup[tmp >> 10]
output += lookup[(tmp >> 4) & 0x3F]
output += lookup[(tmp << 2) & 0x3F]
output += '='
}
parts.push(output)
return parts.join('')
}
},{}],3:[function(require,module,exports){
},{}],4:[function(require,module,exports){
// Copyright Joyent, Inc. and other Node contributors.
//
// Permission is hereby granted, free of charge, to any person obtaining a
// copy of this software and associated documentation files (the
// "Software"), to deal in the Software without restriction, including
// without limitation the rights to use, copy, modify, merge, publish,
// distribute, sublicense, and/or sell copies of the Software, and to permit
// persons to whom the Software is furnished to do so, subject to the
// following conditions:
//
// The above copyright notice and this permission notice shall be included
// in all copies or substantial portions of the Software.
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN
// NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,
// DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
// OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
// USE OR OTHER DEALINGS IN THE SOFTWARE.
var Buffer = require('buffer').Buffer;
var isBufferEncoding = Buffer.isEncoding
|| function(encoding) {
switch (encoding && encoding.toLowerCase()) {
case 'hex': case 'utf8': case 'utf-8': case 'ascii': case 'binary': case 'base64': case 'ucs2': case 'ucs-2': case 'utf16le': case 'utf-16le': case 'raw': return true;
default: return false;
}
}
function assertEncoding(encoding) {
if (encoding && !isBufferEncoding(encoding)) {
throw new Error('Unknown encoding: ' + encoding);
}
}
// StringDecoder provides an interface for efficiently splitting a series of
// buffers into a series of JS strings without breaking apart multi-byte
// characters. CESU-8 is handled as part of the UTF-8 encoding.
//
// @TODO Handling all encodings inside a single object makes it very difficult
// to reason about this code, so it should be split up in the future.
// @TODO There should be a utf8-strict encoding that rejects invalid UTF-8 code
// points as used by CESU-8.
var StringDecoder = exports.StringDecoder = function(encoding) {
this.encoding = (encoding || 'utf8').toLowerCase().replace(/[-_]/, '');
assertEncoding(encoding);
switch (this.encoding) {
case 'utf8':
// CESU-8 represents each of Surrogate Pair by 3-bytes
this.surrogateSize = 3;
break;
case 'ucs2':
case 'utf16le':
// UTF-16 represents each of Surrogate Pair by 2-bytes
this.surrogateSize = 2;
this.detectIncompleteChar = utf16DetectIncompleteChar;
break;
case 'base64':
// Base-64 stores 3 bytes in 4 chars, and pads the remainder.
this.surrogateSize = 3;
this.detectIncompleteChar = base64DetectIncompleteChar;
break;
default:
this.write = passThroughWrite;
return;
}
// Enough space to store all bytes of a single character. UTF-8 needs 4
// bytes, but CESU-8 may require up to 6 (3 bytes per surrogate).
this.charBuffer = new Buffer(6);
// Number of bytes received for the current incomplete multi-byte character.
this.charReceived = 0;
// Number of bytes expected for the current incomplete multi-byte character.
this.charLength = 0;
};
// write decodes the given buffer and returns it as JS string that is
// guaranteed to not contain any partial multi-byte characters. Any partial
// character found at the end of the buffer is buffered up, and will be
// returned when calling write again with the remaining bytes.
//
// Note: Converting a Buffer containing an orphan surrogate to a String
// currently works, but converting a String to a Buffer (via `new Buffer`, or
// Buffer#write) will replace incomplete surrogates with the unicode
// replacement character. See https://codereview.chromium.org/121173009/ .
StringDecoder.prototype.write = function(buffer) {
var charStr = '';
// if our last write ended with an incomplete multibyte character
while (this.charLength) {
// determine how many remaining bytes this buffer has to offer for this char
var available = (buffer.length >= this.charLength - this.charReceived) ?
this.charLength - this.charReceived :
buffer.length;
// add the new bytes to the char buffer
buffer.copy(this.charBuffer, this.charReceived, 0, available);
this.charReceived += available;
if (this.charReceived < this.charLength) {
// still not enough chars in this buffer? wait for more ...
return '';
}
// remove bytes belonging to the current character from the buffer
buffer = buffer.slice(available, buffer.length);
// get the character that was split
charStr = this.charBuffer.slice(0, this.charLength).toString(this.encoding);
// CESU-8: lead surrogate (D800-DBFF) is also the incomplete character
var charCode = charStr.charCodeAt(charStr.length - 1);
if (charCode >= 0xD800 && charCode <= 0xDBFF) {
this.charLength += this.surrogateSize;
charStr = '';
continue;
}
this.charReceived = this.charLength = 0;
// if there are no more bytes in this buffer, just emit our char
if (buffer.length === 0) {
return charStr;
}
break;
}
// determine and set charLength / charReceived
this.detectIncompleteChar(buffer);
var end = buffer.length;
if (this.charLength) {
// buffer the incomplete character bytes we got
buffer.copy(this.charBuffer, 0, buffer.length - this.charReceived, end);
end -= this.charReceived;
}
charStr += buffer.toString(this.encoding, 0, end);
var end = charStr.length - 1;
var charCode = charStr.charCodeAt(end);
// CESU-8: lead surrogate (D800-DBFF) is also the incomplete character
if (charCode >= 0xD800 && charCode <= 0xDBFF) {
var size = this.surrogateSize;
this.charLength += size;
this.charReceived += size;
this.charBuffer.copy(this.charBuffer, size, 0, size);
buffer.copy(this.charBuffer, 0, 0, size);
return charStr.substring(0, end);
}
// or just emit the charStr
return charStr;
};
// detectIncompleteChar determines if there is an incomplete UTF-8 character at
// the end of the given buffer. If so, it sets this.charLength to the byte
// length that character, and sets this.charReceived to the number of bytes
// that are available for this character.
StringDecoder.prototype.detectIncompleteChar = function(buffer) {
// determine how many bytes we have to check at the end of this buffer
var i = (buffer.length >= 3) ? 3 : buffer.length;
// Figure out if one of the last i bytes of our buffer announces an
// incomplete char.
for (; i > 0; i--) {
var c = buffer[buffer.length - i];
// See http://en.wikipedia.org/wiki/UTF-8#Description
// 110XXXXX
if (i == 1 && c >> 5 == 0x06) {
this.charLength = 2;
break;
}
// 1110XXXX
if (i <= 2 && c >> 4 == 0x0E) {
this.charLength = 3;
break;
}
// 11110XXX
if (i <= 3 && c >> 3 == 0x1E) {
this.charLength = 4;
break;
}
}
this.charReceived = i;
};
StringDecoder.prototype.end = function(buffer) {
var res = '';
if (buffer && buffer.length)
res = this.write(buffer);
if (this.charReceived) {
var cr = this.charReceived;
var buf = this.charBuffer;
var enc = this.encoding;
res += buf.slice(0, cr).toString(enc);
}
return res;
};
function passThroughWrite(buffer) {
return buffer.toString(this.encoding);
}
function utf16DetectIncompleteChar(buffer) {
this.charReceived = buffer.length % 2;
this.charLength = this.charReceived ? 2 : 0;
}
function base64DetectIncompleteChar(buffer) {
this.charReceived = buffer.length % 3;
this.charLength = this.charReceived ? 3 : 0;
}
},{"buffer":6}],5:[function(require,module,exports){
(function (global){
'use strict';
var buffer = require('buffer');
var Buffer = buffer.Buffer;
var SlowBuffer = buffer.SlowBuffer;
var MAX_LEN = buffer.kMaxLength || 2147483647;
exports.alloc = function alloc(size, fill, encoding) {
if (typeof Buffer.alloc === 'function') {
return Buffer.alloc(size, fill, encoding);
}
if (typeof encoding === 'number') {
throw new TypeError('encoding must not be number');
}
if (typeof size !== 'number') {
throw new TypeError('size must be a number');
}
if (size > MAX_LEN) {
throw new RangeError('size is too large');
}
var enc = encoding;
var _fill = fill;
if (_fill === undefined) {
enc = undefined;
_fill = 0;
}
var buf = new Buffer(size);
if (typeof _fill === 'string') {
var fillBuf = new Buffer(_fill, enc);
var flen = fillBuf.length;
var i = -1;
while (++i < size) {
buf[i] = fillBuf[i % flen];
}
} else {
buf.fill(_fill);
}
return buf;
}
exports.allocUnsafe = function allocUnsafe(size) {
if (typeof Buffer.allocUnsafe === 'function') {
return Buffer.allocUnsafe(size);
}
if (typeof size !== 'number') {
throw new TypeError('size must be a number');
}
if (size > MAX_LEN) {
throw new RangeError('size is too large');
}
return new Buffer(size);
}
exports.from = function from(value, encodingOrOffset, length) {
if (typeof Buffer.from === 'function' && (!global.Uint8Array || Uint8Array.from !== Buffer.from)) {
return Buffer.from(value, encodingOrOffset, length);
}
if (typeof value === 'number') {
throw new TypeError('"value" argument must not be a number');
}
if (typeof value === 'string') {
return new Buffer(value, encodingOrOffset);
}
if (typeof ArrayBuffer !== 'undefined' && value instanceof ArrayBuffer) {
var offset = encodingOrOffset;
if (arguments.length === 1) {
return new Buffer(value);
}
if (typeof offset === 'undefined') {
offset = 0;
}
var len = length;
if (typeof len === 'undefined') {
len = value.byteLength - offset;
}
if (offset >= value.byteLength) {
throw new RangeError('\'offset\' is out of bounds');
}
if (len > value.byteLength - offset) {
throw new RangeError('\'length\' is out of bounds');
}
return new Buffer(value.slice(offset, offset + len));
}
if (Buffer.isBuffer(value)) {
var out = new Buffer(value.length);
value.copy(out, 0, 0, value.length);
return out;
}
if (value) {
if (Array.isArray(value) || (typeof ArrayBuffer !== 'undefined' && value.buffer instanceof ArrayBuffer) || 'length' in value) {
return new Buffer(value);
}
if (value.type === 'Buffer' && Array.isArray(value.data)) {
return new Buffer(value.data);
}
}
throw new TypeError('First argument must be a string, Buffer, ' + 'ArrayBuffer, Array, or array-like object.');
}
exports.allocUnsafeSlow = function allocUnsafeSlow(size) {
if (typeof Buffer.allocUnsafeSlow === 'function') {
return Buffer.allocUnsafeSlow(size);
}
if (typeof size !== 'number') {
throw new TypeError('size must be a number');
}
if (size >= MAX_LEN) {
throw new RangeError('size is too large');
}
return new SlowBuffer(size);
}
}).call(this,typeof global !== "undefined" ? global : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : {})
},{"buffer":6}],6:[function(require,module,exports){
(function (global){
/*!
* The buffer module from node.js, for the browser.
*
* @author Feross Aboukhadijeh <[email protected]> <http://feross.org>
* @license MIT
*/
/* eslint-disable no-proto */
'use strict'
var base64 = require('base64-js')
var ieee754 = require('ieee754')
var isArray = require('isarray')
exports.Buffer = Buffer
exports.SlowBuffer = SlowBuffer
exports.INSPECT_MAX_BYTES = 50
/**
* If `Buffer.TYPED_ARRAY_SUPPORT`:
* === true Use Uint8Array implementation (fastest)
* === false Use Object implementation (most compatible, even IE6)
*
* Browsers that support typed arrays are IE 10+, Firefox 4+, Chrome 7+, Safari 5.1+,
* Opera 11.6+, iOS 4.2+.
*
* Due to various browser bugs, sometimes the Object implementation will be used even
* when the browser supports typed arrays.
*
* Note:
*
* - Firefox 4-29 lacks support for adding new properties to `Uint8Array` instances,
* See: https://bugzilla.mozilla.org/show_bug.cgi?id=695438.
*
* - Chrome 9-10 is missing the `TypedArray.prototype.subarray` function.
*
* - IE10 has a broken `TypedArray.prototype.subarray` function which returns arrays of
* incorrect length in some situations.
* We detect these buggy browsers and set `Buffer.TYPED_ARRAY_SUPPORT` to `false` so they
* get the Object implementation, which is slower but behaves correctly.
*/
Buffer.TYPED_ARRAY_SUPPORT = global.TYPED_ARRAY_SUPPORT !== undefined
? global.TYPED_ARRAY_SUPPORT
: typedArraySupport()
/*
* Export kMaxLength after typed array support is determined.
*/
exports.kMaxLength = kMaxLength()
function typedArraySupport () {
try {
var arr = new Uint8Array(1)
arr.__proto__ = {__proto__: Uint8Array.prototype, foo: function () { return 42 }}
return arr.foo() === 42 && // typed array instances can be augmented
typeof arr.subarray === 'function' && // chrome 9-10 lack `subarray`
arr.subarray(1, 1).byteLength === 0 // ie10 has broken `subarray`
} catch (e) {
return false
}
}
function kMaxLength () {
return Buffer.TYPED_ARRAY_SUPPORT
? 0x7fffffff
: 0x3fffffff
}
function createBuffer (that, length) {
if (kMaxLength() < length) {
throw new RangeError('Invalid typed array length')
}
if (Buffer.TYPED_ARRAY_SUPPORT) {
// Return an augmented `Uint8Array` instance, for best performance
that = new Uint8Array(length)
that.__proto__ = Buffer.prototype
} else {
// Fallback: Return an object instance of the Buffer class
if (that === null) {
that = new Buffer(length)
}
that.length = length
}
return that
}
/**
* The Buffer constructor returns instances of `Uint8Array` that have their
* prototype changed to `Buffer.prototype`. Furthermore, `Buffer` is a subclass of
* `Uint8Array`, so the returned instances will have all the node `Buffer` methods
* and the `Uint8Array` methods. Square bracket notation works as expected -- it
* returns a single octet.
*
* The `Uint8Array` prototype remains unmodified.
*/
function Buffer (arg, encodingOrOffset, length) {
if (!Buffer.TYPED_ARRAY_SUPPORT && !(this instanceof Buffer)) {
return new Buffer(arg, encodingOrOffset, length)
}
// Common case.
if (typeof arg === 'number') {
if (typeof encodingOrOffset === 'string') {
throw new Error(
'If encoding is specified then the first argument must be a string'
)
}
return allocUnsafe(this, arg)
}
return from(this, arg, encodingOrOffset, length)
}
Buffer.poolSize = 8192 // not used by this implementation
// TODO: Legacy, not needed anymore. Remove in next major version.
Buffer._augment = function (arr) {
arr.__proto__ = Buffer.prototype
return arr
}
function from (that, value, encodingOrOffset, length) {
if (typeof value === 'number') {
throw new TypeError('"value" argument must not be a number')
}
if (typeof ArrayBuffer !== 'undefined' && value instanceof ArrayBuffer) {
return fromArrayBuffer(that, value, encodingOrOffset, length)
}
if (typeof value === 'string') {
return fromString(that, value, encodingOrOffset)
}
return fromObject(that, value)
}
/**
* Functionally equivalent to Buffer(arg, encoding) but throws a TypeError
* if value is a number.
* Buffer.from(str[, encoding])
* Buffer.from(array)
* Buffer.from(buffer)
* Buffer.from(arrayBuffer[, byteOffset[, length]])
**/
Buffer.from = function (value, encodingOrOffset, length) {
return from(null, value, encodingOrOffset, length)
}
if (Buffer.TYPED_ARRAY_SUPPORT) {
Buffer.prototype.__proto__ = Uint8Array.prototype
Buffer.__proto__ = Uint8Array
if (typeof Symbol !== 'undefined' && Symbol.species &&
Buffer[Symbol.species] === Buffer) {
// Fix subarray() in ES2016. See: https://github.com/feross/buffer/pull/97
Object.defineProperty(Buffer, Symbol.species, {
value: null,
configurable: true
})
}
}
function assertSize (size) {
if (typeof size !== 'number') {
throw new TypeError('"size" argument must be a number')
} else if (size < 0) {
throw new RangeError('"size" argument must not be negative')
}
}