index-ticketing
Version:
Automatic error tracking and ticketing system integration
3,985 lines • 141 kB
JavaScript
'use strict';
Object.defineProperty(exports, '__esModule', { value: true });
var React = require('react');
var commonjsGlobal = typeof globalThis !== 'undefined' ? globalThis : typeof window !== 'undefined' ? window : typeof global !== 'undefined' ? global : typeof self !== 'undefined' ? self : {};
function getDefaultExportFromCjs (x) {
return x && x.__esModule && Object.prototype.hasOwnProperty.call(x, 'default') ? x['default'] : x;
}
var stacktrace = {exports: {}};
var errorStackParser = {exports: {}};
var stackframe = {exports: {}};
var hasRequiredStackframe;
function requireStackframe () {
if (hasRequiredStackframe) return stackframe.exports;
hasRequiredStackframe = 1;
(function (module, exports) {
(function(root, factory) {
// Universal Module Definition (UMD) to support AMD, CommonJS/Node.js, Rhino, and browsers.
/* istanbul ignore next */
{
module.exports = factory();
}
}(commonjsGlobal, function() {
function _isNumber(n) {
return !isNaN(parseFloat(n)) && isFinite(n);
}
function _capitalize(str) {
return str.charAt(0).toUpperCase() + str.substring(1);
}
function _getter(p) {
return function() {
return this[p];
};
}
var booleanProps = ['isConstructor', 'isEval', 'isNative', 'isToplevel'];
var numericProps = ['columnNumber', 'lineNumber'];
var stringProps = ['fileName', 'functionName', 'source'];
var arrayProps = ['args'];
var objectProps = ['evalOrigin'];
var props = booleanProps.concat(numericProps, stringProps, arrayProps, objectProps);
function StackFrame(obj) {
if (!obj) return;
for (var i = 0; i < props.length; i++) {
if (obj[props[i]] !== undefined) {
this['set' + _capitalize(props[i])](obj[props[i]]);
}
}
}
StackFrame.prototype = {
getArgs: function() {
return this.args;
},
setArgs: function(v) {
if (Object.prototype.toString.call(v) !== '[object Array]') {
throw new TypeError('Args must be an Array');
}
this.args = v;
},
getEvalOrigin: function() {
return this.evalOrigin;
},
setEvalOrigin: function(v) {
if (v instanceof StackFrame) {
this.evalOrigin = v;
} else if (v instanceof Object) {
this.evalOrigin = new StackFrame(v);
} else {
throw new TypeError('Eval Origin must be an Object or StackFrame');
}
},
toString: function() {
var fileName = this.getFileName() || '';
var lineNumber = this.getLineNumber() || '';
var columnNumber = this.getColumnNumber() || '';
var functionName = this.getFunctionName() || '';
if (this.getIsEval()) {
if (fileName) {
return '[eval] (' + fileName + ':' + lineNumber + ':' + columnNumber + ')';
}
return '[eval]:' + lineNumber + ':' + columnNumber;
}
if (functionName) {
return functionName + ' (' + fileName + ':' + lineNumber + ':' + columnNumber + ')';
}
return fileName + ':' + lineNumber + ':' + columnNumber;
}
};
StackFrame.fromString = function StackFrame$$fromString(str) {
var argsStartIndex = str.indexOf('(');
var argsEndIndex = str.lastIndexOf(')');
var functionName = str.substring(0, argsStartIndex);
var args = str.substring(argsStartIndex + 1, argsEndIndex).split(',');
var locationString = str.substring(argsEndIndex + 1);
if (locationString.indexOf('@') === 0) {
var parts = /@(.+?)(?::(\d+))?(?::(\d+))?$/.exec(locationString, '');
var fileName = parts[1];
var lineNumber = parts[2];
var columnNumber = parts[3];
}
return new StackFrame({
functionName: functionName,
args: args || undefined,
fileName: fileName,
lineNumber: lineNumber || undefined,
columnNumber: columnNumber || undefined
});
};
for (var i = 0; i < booleanProps.length; i++) {
StackFrame.prototype['get' + _capitalize(booleanProps[i])] = _getter(booleanProps[i]);
StackFrame.prototype['set' + _capitalize(booleanProps[i])] = (function(p) {
return function(v) {
this[p] = Boolean(v);
};
})(booleanProps[i]);
}
for (var j = 0; j < numericProps.length; j++) {
StackFrame.prototype['get' + _capitalize(numericProps[j])] = _getter(numericProps[j]);
StackFrame.prototype['set' + _capitalize(numericProps[j])] = (function(p) {
return function(v) {
if (!_isNumber(v)) {
throw new TypeError(p + ' must be a Number');
}
this[p] = Number(v);
};
})(numericProps[j]);
}
for (var k = 0; k < stringProps.length; k++) {
StackFrame.prototype['get' + _capitalize(stringProps[k])] = _getter(stringProps[k]);
StackFrame.prototype['set' + _capitalize(stringProps[k])] = (function(p) {
return function(v) {
this[p] = String(v);
};
})(stringProps[k]);
}
return StackFrame;
}));
} (stackframe));
return stackframe.exports;
}
var hasRequiredErrorStackParser;
function requireErrorStackParser () {
if (hasRequiredErrorStackParser) return errorStackParser.exports;
hasRequiredErrorStackParser = 1;
(function (module, exports) {
(function(root, factory) {
// Universal Module Definition (UMD) to support AMD, CommonJS/Node.js, Rhino, and browsers.
/* istanbul ignore next */
{
module.exports = factory(requireStackframe());
}
}(commonjsGlobal, function ErrorStackParser(StackFrame) {
var FIREFOX_SAFARI_STACK_REGEXP = /(^|@)\S+:\d+/;
var CHROME_IE_STACK_REGEXP = /^\s*at .*(\S+:\d+|\(native\))/m;
var SAFARI_NATIVE_CODE_REGEXP = /^(eval@)?(\[native code])?$/;
return {
/**
* Given an Error object, extract the most information from it.
*
* @param {Error} error object
* @return {Array} of StackFrames
*/
parse: function ErrorStackParser$$parse(error) {
if (typeof error.stacktrace !== 'undefined' || typeof error['opera#sourceloc'] !== 'undefined') {
return this.parseOpera(error);
} else if (error.stack && error.stack.match(CHROME_IE_STACK_REGEXP)) {
return this.parseV8OrIE(error);
} else if (error.stack) {
return this.parseFFOrSafari(error);
} else {
throw new Error('Cannot parse given Error object');
}
},
// Separate line and column numbers from a string of the form: (URI:Line:Column)
extractLocation: function ErrorStackParser$$extractLocation(urlLike) {
// Fail-fast but return locations like "(native)"
if (urlLike.indexOf(':') === -1) {
return [urlLike];
}
var regExp = /(.+?)(?::(\d+))?(?::(\d+))?$/;
var parts = regExp.exec(urlLike.replace(/[()]/g, ''));
return [parts[1], parts[2] || undefined, parts[3] || undefined];
},
parseV8OrIE: function ErrorStackParser$$parseV8OrIE(error) {
var filtered = error.stack.split('\n').filter(function(line) {
return !!line.match(CHROME_IE_STACK_REGEXP);
}, this);
return filtered.map(function(line) {
if (line.indexOf('(eval ') > -1) {
// Throw away eval information until we implement stacktrace.js/stackframe#8
line = line.replace(/eval code/g, 'eval').replace(/(\(eval at [^()]*)|(,.*$)/g, '');
}
var sanitizedLine = line.replace(/^\s+/, '').replace(/\(eval code/g, '(').replace(/^.*?\s+/, '');
// capture and preseve the parenthesized location "(/foo/my bar.js:12:87)" in
// case it has spaces in it, as the string is split on \s+ later on
var location = sanitizedLine.match(/ (\(.+\)$)/);
// remove the parenthesized location from the line, if it was matched
sanitizedLine = location ? sanitizedLine.replace(location[0], '') : sanitizedLine;
// if a location was matched, pass it to extractLocation() otherwise pass all sanitizedLine
// because this line doesn't have function name
var locationParts = this.extractLocation(location ? location[1] : sanitizedLine);
var functionName = location && sanitizedLine || undefined;
var fileName = ['eval', '<anonymous>'].indexOf(locationParts[0]) > -1 ? undefined : locationParts[0];
return new StackFrame({
functionName: functionName,
fileName: fileName,
lineNumber: locationParts[1],
columnNumber: locationParts[2],
source: line
});
}, this);
},
parseFFOrSafari: function ErrorStackParser$$parseFFOrSafari(error) {
var filtered = error.stack.split('\n').filter(function(line) {
return !line.match(SAFARI_NATIVE_CODE_REGEXP);
}, this);
return filtered.map(function(line) {
// Throw away eval information until we implement stacktrace.js/stackframe#8
if (line.indexOf(' > eval') > -1) {
line = line.replace(/ line (\d+)(?: > eval line \d+)* > eval:\d+:\d+/g, ':$1');
}
if (line.indexOf('@') === -1 && line.indexOf(':') === -1) {
// Safari eval frames only have function names and nothing else
return new StackFrame({
functionName: line
});
} else {
var functionNameRegex = /((.*".+"[^@]*)?[^@]*)(?:@)/;
var matches = line.match(functionNameRegex);
var functionName = matches && matches[1] ? matches[1] : undefined;
var locationParts = this.extractLocation(line.replace(functionNameRegex, ''));
return new StackFrame({
functionName: functionName,
fileName: locationParts[0],
lineNumber: locationParts[1],
columnNumber: locationParts[2],
source: line
});
}
}, this);
},
parseOpera: function ErrorStackParser$$parseOpera(e) {
if (!e.stacktrace || (e.message.indexOf('\n') > -1 &&
e.message.split('\n').length > e.stacktrace.split('\n').length)) {
return this.parseOpera9(e);
} else if (!e.stack) {
return this.parseOpera10(e);
} else {
return this.parseOpera11(e);
}
},
parseOpera9: function ErrorStackParser$$parseOpera9(e) {
var lineRE = /Line (\d+).*script (?:in )?(\S+)/i;
var lines = e.message.split('\n');
var result = [];
for (var i = 2, len = lines.length; i < len; i += 2) {
var match = lineRE.exec(lines[i]);
if (match) {
result.push(new StackFrame({
fileName: match[2],
lineNumber: match[1],
source: lines[i]
}));
}
}
return result;
},
parseOpera10: function ErrorStackParser$$parseOpera10(e) {
var lineRE = /Line (\d+).*script (?:in )?(\S+)(?:: In function (\S+))?$/i;
var lines = e.stacktrace.split('\n');
var result = [];
for (var i = 0, len = lines.length; i < len; i += 2) {
var match = lineRE.exec(lines[i]);
if (match) {
result.push(
new StackFrame({
functionName: match[3] || undefined,
fileName: match[2],
lineNumber: match[1],
source: lines[i]
})
);
}
}
return result;
},
// Opera 10.65+ Error.stack very similar to FF/Safari
parseOpera11: function ErrorStackParser$$parseOpera11(error) {
var filtered = error.stack.split('\n').filter(function(line) {
return !!line.match(FIREFOX_SAFARI_STACK_REGEXP) && !line.match(/^Error created at/);
}, this);
return filtered.map(function(line) {
var tokens = line.split('@');
var locationParts = this.extractLocation(tokens.pop());
var functionCall = (tokens.shift() || '');
var functionName = functionCall
.replace(/<anonymous function(: (\w+))?>/, '$2')
.replace(/\([^)]*\)/g, '') || undefined;
var argsRaw;
if (functionCall.match(/\(([^)]*)\)/)) {
argsRaw = functionCall.replace(/^[^(]+\(([^)]*)\)$/, '$1');
}
var args = (argsRaw === undefined || argsRaw === '[arguments not available]') ?
undefined : argsRaw.split(',');
return new StackFrame({
functionName: functionName,
args: args,
fileName: locationParts[0],
lineNumber: locationParts[1],
columnNumber: locationParts[2],
source: line
});
}, this);
}
};
}));
} (errorStackParser));
return errorStackParser.exports;
}
var stackGenerator = {exports: {}};
var hasRequiredStackGenerator;
function requireStackGenerator () {
if (hasRequiredStackGenerator) return stackGenerator.exports;
hasRequiredStackGenerator = 1;
(function (module, exports) {
(function(root, factory) {
// Universal Module Definition (UMD) to support AMD, CommonJS/Node.js, Rhino, and browsers.
/* istanbul ignore next */
{
module.exports = factory(requireStackframe());
}
}(commonjsGlobal, function(StackFrame) {
return {
backtrace: function StackGenerator$$backtrace(opts) {
var stack = [];
var maxStackSize = 10;
if (typeof opts === 'object' && typeof opts.maxStackSize === 'number') {
maxStackSize = opts.maxStackSize;
}
var curr = arguments.callee;
while (curr && stack.length < maxStackSize && curr['arguments']) {
// Allow V8 optimizations
var args = new Array(curr['arguments'].length);
for (var i = 0; i < args.length; ++i) {
args[i] = curr['arguments'][i];
}
if (/function(?:\s+([\w$]+))+\s*\(/.test(curr.toString())) {
stack.push(new StackFrame({functionName: RegExp.$1 || undefined, args: args}));
} else {
stack.push(new StackFrame({args: args}));
}
try {
curr = curr.caller;
} catch (e) {
break;
}
}
return stack;
}
};
}));
} (stackGenerator));
return stackGenerator.exports;
}
var stacktraceGps = {exports: {}};
var sourceMapConsumer = {};
var util = {};
/* -*- Mode: js; js-indent-level: 2; -*- */
var hasRequiredUtil;
function requireUtil () {
if (hasRequiredUtil) return util;
hasRequiredUtil = 1;
(function (exports) {
/*
* Copyright 2011 Mozilla Foundation and contributors
* Licensed under the New BSD license. See LICENSE or:
* http://opensource.org/licenses/BSD-3-Clause
*/
/**
* This is a helper function for getting values from parameter/options
* objects.
*
* @param args The object we are extracting values from
* @param name The name of the property we are getting.
* @param defaultValue An optional value to return if the property is missing
* from the object. If this is not specified and the property is missing, an
* error will be thrown.
*/
function getArg(aArgs, aName, aDefaultValue) {
if (aName in aArgs) {
return aArgs[aName];
} else if (arguments.length === 3) {
return aDefaultValue;
} else {
throw new Error('"' + aName + '" is a required argument.');
}
}
exports.getArg = getArg;
var urlRegexp = /^(?:([\w+\-.]+):)?\/\/(?:(\w+:\w+)@)?([\w.]*)(?::(\d+))?(\S*)$/;
var dataUrlRegexp = /^data:.+\,.+$/;
function urlParse(aUrl) {
var match = aUrl.match(urlRegexp);
if (!match) {
return null;
}
return {
scheme: match[1],
auth: match[2],
host: match[3],
port: match[4],
path: match[5]
};
}
exports.urlParse = urlParse;
function urlGenerate(aParsedUrl) {
var url = '';
if (aParsedUrl.scheme) {
url += aParsedUrl.scheme + ':';
}
url += '//';
if (aParsedUrl.auth) {
url += aParsedUrl.auth + '@';
}
if (aParsedUrl.host) {
url += aParsedUrl.host;
}
if (aParsedUrl.port) {
url += ":" + aParsedUrl.port;
}
if (aParsedUrl.path) {
url += aParsedUrl.path;
}
return url;
}
exports.urlGenerate = urlGenerate;
/**
* Normalizes a path, or the path portion of a URL:
*
* - Replaces consecutive slashes with one slash.
* - Removes unnecessary '.' parts.
* - Removes unnecessary '<dir>/..' parts.
*
* Based on code in the Node.js 'path' core module.
*
* @param aPath The path or url to normalize.
*/
function normalize(aPath) {
var path = aPath;
var url = urlParse(aPath);
if (url) {
if (!url.path) {
return aPath;
}
path = url.path;
}
var isAbsolute = exports.isAbsolute(path);
var parts = path.split(/\/+/);
for (var part, up = 0, i = parts.length - 1; i >= 0; i--) {
part = parts[i];
if (part === '.') {
parts.splice(i, 1);
} else if (part === '..') {
up++;
} else if (up > 0) {
if (part === '') {
// The first part is blank if the path is absolute. Trying to go
// above the root is a no-op. Therefore we can remove all '..' parts
// directly after the root.
parts.splice(i + 1, up);
up = 0;
} else {
parts.splice(i, 2);
up--;
}
}
}
path = parts.join('/');
if (path === '') {
path = isAbsolute ? '/' : '.';
}
if (url) {
url.path = path;
return urlGenerate(url);
}
return path;
}
exports.normalize = normalize;
/**
* Joins two paths/URLs.
*
* @param aRoot The root path or URL.
* @param aPath The path or URL to be joined with the root.
*
* - If aPath is a URL or a data URI, aPath is returned, unless aPath is a
* scheme-relative URL: Then the scheme of aRoot, if any, is prepended
* first.
* - Otherwise aPath is a path. If aRoot is a URL, then its path portion
* is updated with the result and aRoot is returned. Otherwise the result
* is returned.
* - If aPath is absolute, the result is aPath.
* - Otherwise the two paths are joined with a slash.
* - Joining for example 'http://' and 'www.example.com' is also supported.
*/
function join(aRoot, aPath) {
if (aRoot === "") {
aRoot = ".";
}
if (aPath === "") {
aPath = ".";
}
var aPathUrl = urlParse(aPath);
var aRootUrl = urlParse(aRoot);
if (aRootUrl) {
aRoot = aRootUrl.path || '/';
}
// `join(foo, '//www.example.org')`
if (aPathUrl && !aPathUrl.scheme) {
if (aRootUrl) {
aPathUrl.scheme = aRootUrl.scheme;
}
return urlGenerate(aPathUrl);
}
if (aPathUrl || aPath.match(dataUrlRegexp)) {
return aPath;
}
// `join('http://', 'www.example.com')`
if (aRootUrl && !aRootUrl.host && !aRootUrl.path) {
aRootUrl.host = aPath;
return urlGenerate(aRootUrl);
}
var joined = aPath.charAt(0) === '/'
? aPath
: normalize(aRoot.replace(/\/+$/, '') + '/' + aPath);
if (aRootUrl) {
aRootUrl.path = joined;
return urlGenerate(aRootUrl);
}
return joined;
}
exports.join = join;
exports.isAbsolute = function (aPath) {
return aPath.charAt(0) === '/' || !!aPath.match(urlRegexp);
};
/**
* Make a path relative to a URL or another path.
*
* @param aRoot The root path or URL.
* @param aPath The path or URL to be made relative to aRoot.
*/
function relative(aRoot, aPath) {
if (aRoot === "") {
aRoot = ".";
}
aRoot = aRoot.replace(/\/$/, '');
// It is possible for the path to be above the root. In this case, simply
// checking whether the root is a prefix of the path won't work. Instead, we
// need to remove components from the root one by one, until either we find
// a prefix that fits, or we run out of components to remove.
var level = 0;
while (aPath.indexOf(aRoot + '/') !== 0) {
var index = aRoot.lastIndexOf("/");
if (index < 0) {
return aPath;
}
// If the only part of the root that is left is the scheme (i.e. http://,
// file:///, etc.), one or more slashes (/), or simply nothing at all, we
// have exhausted all components, so the path is not relative to the root.
aRoot = aRoot.slice(0, index);
if (aRoot.match(/^([^\/]+:\/)?\/*$/)) {
return aPath;
}
++level;
}
// Make sure we add a "../" for each component we removed from the root.
return Array(level + 1).join("../") + aPath.substr(aRoot.length + 1);
}
exports.relative = relative;
var supportsNullProto = (function () {
var obj = Object.create(null);
return !('__proto__' in obj);
}());
function identity (s) {
return s;
}
/**
* Because behavior goes wacky when you set `__proto__` on objects, we
* have to prefix all the strings in our set with an arbitrary character.
*
* See https://github.com/mozilla/source-map/pull/31 and
* https://github.com/mozilla/source-map/issues/30
*
* @param String aStr
*/
function toSetString(aStr) {
if (isProtoString(aStr)) {
return '$' + aStr;
}
return aStr;
}
exports.toSetString = supportsNullProto ? identity : toSetString;
function fromSetString(aStr) {
if (isProtoString(aStr)) {
return aStr.slice(1);
}
return aStr;
}
exports.fromSetString = supportsNullProto ? identity : fromSetString;
function isProtoString(s) {
if (!s) {
return false;
}
var length = s.length;
if (length < 9 /* "__proto__".length */) {
return false;
}
if (s.charCodeAt(length - 1) !== 95 /* '_' */ ||
s.charCodeAt(length - 2) !== 95 /* '_' */ ||
s.charCodeAt(length - 3) !== 111 /* 'o' */ ||
s.charCodeAt(length - 4) !== 116 /* 't' */ ||
s.charCodeAt(length - 5) !== 111 /* 'o' */ ||
s.charCodeAt(length - 6) !== 114 /* 'r' */ ||
s.charCodeAt(length - 7) !== 112 /* 'p' */ ||
s.charCodeAt(length - 8) !== 95 /* '_' */ ||
s.charCodeAt(length - 9) !== 95 /* '_' */) {
return false;
}
for (var i = length - 10; i >= 0; i--) {
if (s.charCodeAt(i) !== 36 /* '$' */) {
return false;
}
}
return true;
}
/**
* Comparator between two mappings where the original positions are compared.
*
* Optionally pass in `true` as `onlyCompareGenerated` to consider two
* mappings with the same original source/line/column, but different generated
* line and column the same. Useful when searching for a mapping with a
* stubbed out mapping.
*/
function compareByOriginalPositions(mappingA, mappingB, onlyCompareOriginal) {
var cmp = mappingA.source - mappingB.source;
if (cmp !== 0) {
return cmp;
}
cmp = mappingA.originalLine - mappingB.originalLine;
if (cmp !== 0) {
return cmp;
}
cmp = mappingA.originalColumn - mappingB.originalColumn;
if (cmp !== 0 || onlyCompareOriginal) {
return cmp;
}
cmp = mappingA.generatedColumn - mappingB.generatedColumn;
if (cmp !== 0) {
return cmp;
}
cmp = mappingA.generatedLine - mappingB.generatedLine;
if (cmp !== 0) {
return cmp;
}
return mappingA.name - mappingB.name;
}
exports.compareByOriginalPositions = compareByOriginalPositions;
/**
* Comparator between two mappings with deflated source and name indices where
* the generated positions are compared.
*
* Optionally pass in `true` as `onlyCompareGenerated` to consider two
* mappings with the same generated line and column, but different
* source/name/original line and column the same. Useful when searching for a
* mapping with a stubbed out mapping.
*/
function compareByGeneratedPositionsDeflated(mappingA, mappingB, onlyCompareGenerated) {
var cmp = mappingA.generatedLine - mappingB.generatedLine;
if (cmp !== 0) {
return cmp;
}
cmp = mappingA.generatedColumn - mappingB.generatedColumn;
if (cmp !== 0 || onlyCompareGenerated) {
return cmp;
}
cmp = mappingA.source - mappingB.source;
if (cmp !== 0) {
return cmp;
}
cmp = mappingA.originalLine - mappingB.originalLine;
if (cmp !== 0) {
return cmp;
}
cmp = mappingA.originalColumn - mappingB.originalColumn;
if (cmp !== 0) {
return cmp;
}
return mappingA.name - mappingB.name;
}
exports.compareByGeneratedPositionsDeflated = compareByGeneratedPositionsDeflated;
function strcmp(aStr1, aStr2) {
if (aStr1 === aStr2) {
return 0;
}
if (aStr1 > aStr2) {
return 1;
}
return -1;
}
/**
* Comparator between two mappings with inflated source and name strings where
* the generated positions are compared.
*/
function compareByGeneratedPositionsInflated(mappingA, mappingB) {
var cmp = mappingA.generatedLine - mappingB.generatedLine;
if (cmp !== 0) {
return cmp;
}
cmp = mappingA.generatedColumn - mappingB.generatedColumn;
if (cmp !== 0) {
return cmp;
}
cmp = strcmp(mappingA.source, mappingB.source);
if (cmp !== 0) {
return cmp;
}
cmp = mappingA.originalLine - mappingB.originalLine;
if (cmp !== 0) {
return cmp;
}
cmp = mappingA.originalColumn - mappingB.originalColumn;
if (cmp !== 0) {
return cmp;
}
return strcmp(mappingA.name, mappingB.name);
}
exports.compareByGeneratedPositionsInflated = compareByGeneratedPositionsInflated;
} (util));
return util;
}
var binarySearch = {};
/* -*- Mode: js; js-indent-level: 2; -*- */
var hasRequiredBinarySearch;
function requireBinarySearch () {
if (hasRequiredBinarySearch) return binarySearch;
hasRequiredBinarySearch = 1;
(function (exports) {
/*
* Copyright 2011 Mozilla Foundation and contributors
* Licensed under the New BSD license. See LICENSE or:
* http://opensource.org/licenses/BSD-3-Clause
*/
exports.GREATEST_LOWER_BOUND = 1;
exports.LEAST_UPPER_BOUND = 2;
/**
* Recursive implementation of binary search.
*
* @param aLow Indices here and lower do not contain the needle.
* @param aHigh Indices here and higher do not contain the needle.
* @param aNeedle The element being searched for.
* @param aHaystack The non-empty array being searched.
* @param aCompare Function which takes two elements and returns -1, 0, or 1.
* @param aBias Either 'binarySearch.GREATEST_LOWER_BOUND' or
* 'binarySearch.LEAST_UPPER_BOUND'. Specifies whether to return the
* closest element that is smaller than or greater than the one we are
* searching for, respectively, if the exact element cannot be found.
*/
function recursiveSearch(aLow, aHigh, aNeedle, aHaystack, aCompare, aBias) {
// This function terminates when one of the following is true:
//
// 1. We find the exact element we are looking for.
//
// 2. We did not find the exact element, but we can return the index of
// the next-closest element.
//
// 3. We did not find the exact element, and there is no next-closest
// element than the one we are searching for, so we return -1.
var mid = Math.floor((aHigh - aLow) / 2) + aLow;
var cmp = aCompare(aNeedle, aHaystack[mid], true);
if (cmp === 0) {
// Found the element we are looking for.
return mid;
}
else if (cmp > 0) {
// Our needle is greater than aHaystack[mid].
if (aHigh - mid > 1) {
// The element is in the upper half.
return recursiveSearch(mid, aHigh, aNeedle, aHaystack, aCompare, aBias);
}
// The exact needle element was not found in this haystack. Determine if
// we are in termination case (3) or (2) and return the appropriate thing.
if (aBias == exports.LEAST_UPPER_BOUND) {
return aHigh < aHaystack.length ? aHigh : -1;
} else {
return mid;
}
}
else {
// Our needle is less than aHaystack[mid].
if (mid - aLow > 1) {
// The element is in the lower half.
return recursiveSearch(aLow, mid, aNeedle, aHaystack, aCompare, aBias);
}
// we are in termination case (3) or (2) and return the appropriate thing.
if (aBias == exports.LEAST_UPPER_BOUND) {
return mid;
} else {
return aLow < 0 ? -1 : aLow;
}
}
}
/**
* This is an implementation of binary search which will always try and return
* the index of the closest element if there is no exact hit. This is because
* mappings between original and generated line/col pairs are single points,
* and there is an implicit region between each of them, so a miss just means
* that you aren't on the very start of a region.
*
* @param aNeedle The element you are looking for.
* @param aHaystack The array that is being searched.
* @param aCompare A function which takes the needle and an element in the
* array and returns -1, 0, or 1 depending on whether the needle is less
* than, equal to, or greater than the element, respectively.
* @param aBias Either 'binarySearch.GREATEST_LOWER_BOUND' or
* 'binarySearch.LEAST_UPPER_BOUND'. Specifies whether to return the
* closest element that is smaller than or greater than the one we are
* searching for, respectively, if the exact element cannot be found.
* Defaults to 'binarySearch.GREATEST_LOWER_BOUND'.
*/
exports.search = function search(aNeedle, aHaystack, aCompare, aBias) {
if (aHaystack.length === 0) {
return -1;
}
var index = recursiveSearch(-1, aHaystack.length, aNeedle, aHaystack,
aCompare, aBias || exports.GREATEST_LOWER_BOUND);
if (index < 0) {
return -1;
}
// We have found either the exact element, or the next-closest element than
// the one we are searching for. However, there may be more than one such
// element. Make sure we always return the smallest of these.
while (index - 1 >= 0) {
if (aCompare(aHaystack[index], aHaystack[index - 1], true) !== 0) {
break;
}
--index;
}
return index;
};
} (binarySearch));
return binarySearch;
}
var arraySet = {};
/* -*- Mode: js; js-indent-level: 2; -*- */
var hasRequiredArraySet;
function requireArraySet () {
if (hasRequiredArraySet) return arraySet;
hasRequiredArraySet = 1;
/*
* Copyright 2011 Mozilla Foundation and contributors
* Licensed under the New BSD license. See LICENSE or:
* http://opensource.org/licenses/BSD-3-Clause
*/
var util = requireUtil();
var has = Object.prototype.hasOwnProperty;
/**
* A data structure which is a combination of an array and a set. Adding a new
* member is O(1), testing for membership is O(1), and finding the index of an
* element is O(1). Removing elements from the set is not supported. Only
* strings are supported for membership.
*/
function ArraySet() {
this._array = [];
this._set = Object.create(null);
}
/**
* Static method for creating ArraySet instances from an existing array.
*/
ArraySet.fromArray = function ArraySet_fromArray(aArray, aAllowDuplicates) {
var set = new ArraySet();
for (var i = 0, len = aArray.length; i < len; i++) {
set.add(aArray[i], aAllowDuplicates);
}
return set;
};
/**
* Return how many unique items are in this ArraySet. If duplicates have been
* added, than those do not count towards the size.
*
* @returns Number
*/
ArraySet.prototype.size = function ArraySet_size() {
return Object.getOwnPropertyNames(this._set).length;
};
/**
* Add the given string to this set.
*
* @param String aStr
*/
ArraySet.prototype.add = function ArraySet_add(aStr, aAllowDuplicates) {
var sStr = util.toSetString(aStr);
var isDuplicate = has.call(this._set, sStr);
var idx = this._array.length;
if (!isDuplicate || aAllowDuplicates) {
this._array.push(aStr);
}
if (!isDuplicate) {
this._set[sStr] = idx;
}
};
/**
* Is the given string a member of this set?
*
* @param String aStr
*/
ArraySet.prototype.has = function ArraySet_has(aStr) {
var sStr = util.toSetString(aStr);
return has.call(this._set, sStr);
};
/**
* What is the index of the given string in the array?
*
* @param String aStr
*/
ArraySet.prototype.indexOf = function ArraySet_indexOf(aStr) {
var sStr = util.toSetString(aStr);
if (has.call(this._set, sStr)) {
return this._set[sStr];
}
throw new Error('"' + aStr + '" is not in the set.');
};
/**
* What is the element at the given index?
*
* @param Number aIdx
*/
ArraySet.prototype.at = function ArraySet_at(aIdx) {
if (aIdx >= 0 && aIdx < this._array.length) {
return this._array[aIdx];
}
throw new Error('No element indexed by ' + aIdx);
};
/**
* Returns the array representation of this set (which has the proper indices
* indicated by indexOf). Note that this is a copy of the internal array used
* for storing the members so that no one can mess with internal state.
*/
ArraySet.prototype.toArray = function ArraySet_toArray() {
return this._array.slice();
};
arraySet.ArraySet = ArraySet;
return arraySet;
}
var base64Vlq = {};
var base64 = {};
/* -*- Mode: js; js-indent-level: 2; -*- */
var hasRequiredBase64;
function requireBase64 () {
if (hasRequiredBase64) return base64;
hasRequiredBase64 = 1;
/*
* Copyright 2011 Mozilla Foundation and contributors
* Licensed under the New BSD license. See LICENSE or:
* http://opensource.org/licenses/BSD-3-Clause
*/
var intToCharMap = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/'.split('');
/**
* Encode an integer in the range of 0 to 63 to a single base 64 digit.
*/
base64.encode = function (number) {
if (0 <= number && number < intToCharMap.length) {
return intToCharMap[number];
}
throw new TypeError("Must be between 0 and 63: " + number);
};
/**
* Decode a single base 64 character code digit to an integer. Returns -1 on
* failure.
*/
base64.decode = function (charCode) {
var bigA = 65; // 'A'
var bigZ = 90; // 'Z'
var littleA = 97; // 'a'
var littleZ = 122; // 'z'
var zero = 48; // '0'
var nine = 57; // '9'
var plus = 43; // '+'
var slash = 47; // '/'
var littleOffset = 26;
var numberOffset = 52;
// 0 - 25: ABCDEFGHIJKLMNOPQRSTUVWXYZ
if (bigA <= charCode && charCode <= bigZ) {
return (charCode - bigA);
}
// 26 - 51: abcdefghijklmnopqrstuvwxyz
if (littleA <= charCode && charCode <= littleZ) {
return (charCode - littleA + littleOffset);
}
// 52 - 61: 0123456789
if (zero <= charCode && charCode <= nine) {
return (charCode - zero + numberOffset);
}
// 62: +
if (charCode == plus) {
return 62;
}
// 63: /
if (charCode == slash) {
return 63;
}
// Invalid base64 digit.
return -1;
};
return base64;
}
/* -*- Mode: js; js-indent-level: 2; -*- */
var hasRequiredBase64Vlq;
function requireBase64Vlq () {
if (hasRequiredBase64Vlq) return base64Vlq;
hasRequiredBase64Vlq = 1;
/*
* Copyright 2011 Mozilla Foundation and contributors
* Licensed under the New BSD license. See LICENSE or:
* http://opensource.org/licenses/BSD-3-Clause
*
* Based on the Base 64 VLQ implementation in Closure Compiler:
* https://code.google.com/p/closure-compiler/source/browse/trunk/src/com/google/debugging/sourcemap/Base64VLQ.java
*
* Copyright 2011 The Closure Compiler Authors. All rights reserved.
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions are
* met:
*
* * Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* * Redistributions in binary form must reproduce the above
* copyright notice, this list of conditions and the following
* disclaimer in the documentation and/or other materials provided
* with the distribution.
* * Neither the name of Google Inc. nor the names of its
* contributors may be used to endorse or promote products derived
* from this software without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
var base64 = requireBase64();
// A single base 64 digit can contain 6 bits of data. For the base 64 variable
// length quantities we use in the source map spec, the first bit is the sign,
// the next four bits are the actual value, and the 6th bit is the
// continuation bit. The continuation bit tells us whether there are more
// digits in this value following this digit.
//
// Continuation
// | Sign
// | |
// V V
// 101011
var VLQ_BASE_SHIFT = 5;
// binary: 100000
var VLQ_BASE = 1 << VLQ_BASE_SHIFT;
// binary: 011111
var VLQ_BASE_MASK = VLQ_BASE - 1;
// binary: 100000
var VLQ_CONTINUATION_BIT = VLQ_BASE;
/**
* Converts from a two-complement value to a value where the sign bit is
* placed in the least significant bit. For example, as decimals:
* 1 becomes 2 (10 binary), -1 becomes 3 (11 binary)
* 2 becomes 4 (100 binary), -2 becomes 5 (101 binary)
*/
function toVLQSigned(aValue) {
return aValue < 0
? ((-aValue) << 1) + 1
: (aValue << 1) + 0;
}
/**
* Converts to a two-complement value from a value where the sign bit is
* placed in the least significant bit. For example, as decimals:
* 2 (10 binary) becomes 1, 3 (11 binary) becomes -1
* 4 (100 binary) becomes 2, 5 (101 binary) becomes -2
*/
function fromVLQSigned(aValue) {
var isNegative = (aValue & 1) === 1;
var shifted = aValue >> 1;
return isNegative
? -shifted
: shifted;
}
/**
* Returns the base 64 VLQ encoded value.
*/
base64Vlq.encode = function base64VLQ_encode(aValue) {
var encoded = "";
var digit;
var vlq = toVLQSigned(aValue);
do {
digit = vlq & VLQ_BASE_MASK;
vlq >>>= VLQ_BASE_SHIFT;
if (vlq > 0) {
// There are still more digits in this value, so we must make sure the
// continuation bit is marked.
digit |= VLQ_CONTINUATION_BIT;
}
encoded += base64.encode(digit);
} while (vlq > 0);
return encoded;
};
/**
* Decodes the next base 64 VLQ value from the given string and returns the
* value and the rest of the string via the out parameter.
*/
base64Vlq.decode = function base64VLQ_decode(aStr, aIndex, aOutParam) {
var strLen = aStr.length;
var result = 0;
var shift = 0;
var continuation, digit;
do {
if (aIndex >= strLen) {
throw new Error("Expected more digits in base 64 VLQ value.");
}
digit = base64.decode(aStr.charCodeAt(aIndex++));
if (digit === -1) {
throw new Error("Invalid base64 digit: " + aStr.charAt(aIndex - 1));
}
continuation = !!(digit & VLQ_CONTINUATION_BIT);
digit &= VLQ_BASE_MASK;
result = result + (digit << shift);
shift += VLQ_BASE_SHIFT;
} while (continuation);
aOutParam.value = fromVLQSigned(result);
aOutParam.rest = aIndex;
};
return base64Vlq;
}
var quickSort = {};
/* -*- Mode: js; js-indent-level: 2; -*- */
var hasRequiredQuickSort;
function requireQuickSort () {
if (hasRequiredQuickSort) return quickSort;
hasRequiredQuickSort = 1;
/*
* Copyright 2011 Mozilla Foundation and contributors
* Licensed under the New BSD license. See LICENSE or:
* http://opensource.org/licenses/BSD-3-Clause
*/
// It turns out that some (most?) JavaScript engines don't self-host
// `Array.prototype.sort`. This makes sense because C++ will likely remain
// faster than JS when doing raw CPU-intensive sorting. However, when using a
// custom comparator function, calling back and forth between the VM's C++ and
// JIT'd JS is rather slow *and* loses JIT type information, resulting in
// worse generated code for the comparator function than would be optimal. In
// fact, when sorting with a comparator, these costs outweigh the benefits of
// sorting in C++. By using our own JS-implemented Quick Sort (below), we get
// a ~3500ms mean speed-up in `bench/bench.html`.
/**
* Swap the elements indexed by `x` and `y` in the array `ary`.
*
* @param {Array} ary
* The array.
* @param {Number} x
* The index of the first item.
* @param {Number} y
* The index of the second item.
*/
function swap(ary, x, y) {
var temp = ary[x];
ary[x] = ary[y];
ary[y] = temp;
}
/**
* Returns a random integer within the range `low .. high` inclusive.
*
* @param {Number} low
* The lower bound on the range.
* @param {Number} high
* The upper bound on the range.
*/
function randomIntInRange(low, high) {
return Math.round(low + (Math.random() * (high - low)));
}
/**
* The Quick Sort algorithm.
*
* @param {Array} ary
* An array to sort.
* @param {function} comparator
* Function to use to compare two items.
* @param {Number} p
* Start index of the array
* @param {Number} r
* End index of the array
*/
function doQuickSort(ary, comparator, p, r) {
// If our lower bound is less than our upper bound, we (1) partition the
// array into two pieces and (2) recurse on each half. If it is not, this is
// the empty array and our base case.
if (p < r) {
// (1) Partitioning.
//
// The partitioning chooses a pivot between `p` and `r` and moves all
// elements that are less than or equal to the pivot to the before it, and
// all the elements that are greater than it after it. The effect is that
// once partition is done, the pivot is in the exact place it will be when
// the array is put in sorted order, and it will not need to be moved
// again. This runs in O(n) time.
// Always choose a random pivot so that an input array which is reverse
// sorted does not cause O(n^2) running time.
var pivotIndex = randomIntInRange(p, r);
var i = p - 1;
swap(ary, pivotIndex, r);
var pivot = ary[r];
// Immediately after `j` is incremented in this loop, the following hold
// true:
//
// * Every element in `ary[p .. i]` is less than or equal to the pivot.
//
// * Every element in `ary[i+1 .. j-1]` is greater than the pivot.
for (var j = p; j < r; j++) {
if (comparator(ary[j], pivot) <= 0) {
i += 1;
swap(ary, i, j);
}
}
swap(ary, i + 1, j);
var q = i + 1;
// (2) Recurse on each half.
doQuickSort(ary, comparator, p, q - 1);
doQuickSort(ary, comparator, q + 1, r);
}
}
/**
* Sort the given array in-place with the given comparator function.
*
* @param {Array} ary
* An array to sort.
* @param {function} comparator
* Function to use to compare two items.
*/
quickSort.quickSort = function (ary, comparator) {
doQuickSort(ary, comparator, 0, ary.length - 1);
};
return quickSort;
}
/* -*- Mode: js; js-indent-level: 2; -*- */
var hasRequiredSourceMapConsumer;
function requireSourceMapConsumer () {
if (hasRequiredSourceMapConsumer) return sourceMapConsumer;
hasRequiredSourceMapConsumer = 1;
/*
* Copyright 2011 Mozilla Foundation and contributors
* Licensed under the New BSD license. See LICENSE or:
* http://opensource.org/licenses/BSD-3-Clause
*/
var util = requireUtil();
var binarySearch = requireBinarySearch();
var ArraySet = requireArraySet().ArraySet;
var base64VLQ = requireBase64Vlq();
var quickSort = requireQuickSort().quickSort;
function SourceMapConsumer(aSourceMap) {
var sourceMap = aSourceMap;
if (typeof aSourceMap === 'string') {
sourceMap = JSON.parse(aSourceMap.replace(/^\)\]\}'/, ''));
}
return sourceMap.sections != null
? new IndexedSourceMapConsumer(sourceMap)
: new BasicSourceMapConsumer(sourceMap);
}
SourceMapConsumer.fromSourceMap = function(aSourceMap) {
return BasicSourceMapConsumer.fromSourceMap(aSourceMap);
};
/**
* The version of the source mapping spec that we are consuming.
*/
SourceMapConsumer.prototype._version = 3;
// `__generatedMappings` and `__originalMappings` are arrays that hold the
// parsed mapping coordinates from the source map's "mappings" attribute. They
// are lazily instantiated, accessed via the `_generatedMappings` and
// `_originalMappings` getters respectively, and we only parse the mappings
// and create these arrays once queried for a source location. We jump through
// these hoops because there can be many thousands of mappings, and parsing
// them is expensive, so we only want to do it if we must.
//
// Each object in the arrays is of the form:
//
// {
// generatedLine: The line number in the generated code,
// generatedColumn: The column number in the generated code,
// source: The path to the original source file that generated this
// chunk of code,
// originalLine: The line number in the original source that
// corresponds to this chunk of generated code,
// originalColumn: The column number in the original source that
// corresponds to this chunk of generated code,
// name: The name of the original symbol which generated this chunk of
// code.
// }
//
// All properties except for `generatedLine` and `generatedColumn` can be
// `null`.
//
// `_generatedMappings` is ordered by the generated positions.
//
// `_originalMappings` is ordered by the original positions.
SourceMapConsumer.prototype.__generatedMappings = null;
Object.defineProperty(SourceMapConsumer.prototype, '_generatedMappings', {
get: function () {
if (!this.__generatedMappings) {
this._parseMappings(this._mappings, this.sourceRoot);
}
return this.__generatedMappings;
}
});
SourceMapConsumer.prototype.__originalMappings = null;
Object.defineProperty(SourceMapConsumer.prototype, '_originalMappings', {
get: function () {
if (!this.__originalMappings) {
this._parseMappings(this._mappings, this.sourceRoot);
}
return this.__originalMappings;
}
});
SourceMapConsumer.prototype._charIsMappingSeparator =
function SourceMapConsumer_charIsMappingSeparator(aStr, index) {
var c = aStr.charAt(index);
return c === ";" || c === ",";
};
/**
* Parse the mappings in a string in to a data structure which we can easily
* query (the ordered arrays in the `this.__generatedMappings` and
* `this.__originalMappings` properties).
*/
SourceMapConsumer.prototype._parseMappings =
function SourceMapConsumer_parseMappings(aStr, aSourceRoot) {
throw new Error("Subclasses must implement _parseMappings");
};
SourceMapConsumer.GENERATED_ORDER = 1;
SourceMapConsumer.ORIGINAL_ORDER = 2;
SourceMapConsumer.GREATEST_LOWER_BOUND = 1;
SourceMapConsumer.LEAST_UPPER_BOUND = 2;
/**
* Iterate over each mapping between an original source/line/column and a
* generated line/column in this source map.
*
* @param Function aCallback
* The function that is called with each mapping.
* @param Object aContext
* Optional. If specified, this object will be the value of `this` every
* time that `aCallback` is called.
* @param aOrder
* Either `SourceMapConsumer.GENERATED_ORDER` or
* `SourceMapConsumer.ORIGINAL_ORDER`. Specifies whether you want to
* iterate over the mappings sorted by the generated file's line/column
* order or the original's source/line/column order, respectively. Defaults to
* `SourceMapConsumer.GENERATED_ORDER`.
*/
SourceMapConsumer.prototype.eachMapping =
function SourceMapConsumer_eachMapping(aCallback, aContext, aOrder) {
var context = aContext || null;
var order = aOrder || SourceMapConsumer.GENERATED_ORDER;
var mappings;
switch (order) {
case SourceMapConsumer.GENERATED_ORDER:
mappings = this._generatedMappings;
break;
case SourceMapConsumer.ORIGINAL_ORDER:
mappings = this._originalMappings;
break;
default:
throw new Error("Unknown order of iteration.");
}
var sourceRoot = this.sourceRoot;
mappings.map(function (mapping) {
var source = mapping.source === null ? null : this._sources.at(mapping.source);
if (source != null && sourceRoot != null) {
source = util.join(sourceRoot, source);
}
return {
source: source,
generatedLine: mapping.generatedLine,
generatedColumn: mapping.generatedColumn,
originalLine: mapping.originalLine,
originalColumn: mapping.originalColumn,
name: mapping.name === null ? null : this._names.at(mapping.name)
};
}, this).forEach(aCallback, context);
};
/**
* Returns all generated line and column information for the original source,
* line, and column provided. If no column is provided, returns all mappings
* corresponding to a either the line we are searching for or the next
* closest line that has any mappings. Otherwise, returns all mappings
* corresponding to the given line and either the column we are searching for
* or the next closest column that has any offsets.
*
* The only argument is an object with the following properties:
*
* - source: The filename of the original source.
* - line: The line number in the original source.
* - column: Optional. the column number in the original source.
*
* and an array of objects is returned, each with the following properties:
*
* - line: The line number in the generated source, or null.
* - column: The column number in the generated source, or null.
*/
SourceMapConsumer.prototype.allGeneratedPositionsFor =
function SourceMapConsumer_allGeneratedPositionsFor(aArgs) {
var line = util.getArg(aArgs, 'line');
// When there is no exact match, BasicSourceMapConsumer.prototype._findMapping
// returns the index of the closest mapping less than the needle. By
// setting needle.originalColumn to 0, we thus find the last mapping for
// the given line, provided such a mapping exists.
var needle = {
source: util.getArg(aArgs, 'source'),
originalLine: line,
originalColumn: util.getArg(aArgs, 'column', 0)
};
if (this.sourceRoot != null) {
needle.source = util.relative(this.sourceRoot, needle.source);
}
if (!this._sources.has(needle.source)) {
return [];
}
needle.source = this._sources.indexOf(needle.source);
var mappings = [];
var index = this._findMapping(needle,
this._originalMappings,
"originalLine",
"originalColumn",
util.compareByOriginalPositions,
binarySearch.LEAST_UPPER_BOUND);
if (index >= 0) {
var mapping = this._originalMappings[index];
if (aArgs.column === undefined) {
var originalLine = mapping.originalLine;
// Iterate until either we run out of mappings, or we run into
// a mapping for a different line than the one we found. Since
// mappings are sorted, this is guaranteed to find all mappings for
// the line we found.
while (mapping && mapping.originalLine === originalLine) {
mappings.push({
line: util.getArg(mapping, 'generatedLine', null),
column: util.getArg(mapping, 'generatedColumn', null),
lastColumn: util.getArg(mapping, 'lastGeneratedColumn', null)
});
mapping = this._originalMappings[++index];
}
} else {
var originalColumn = mapping.originalColumn;
// Iterate until either we run out of mappings, or we run into
// a mapping for a different line than the one we were searching for.
// Since mappings are sorted, this is guaranteed to find all mappings for
// the line we are searching for.
while (mapping &&
mapping.originalLine === line &&
mapping.originalColumn == originalColumn) {
mappings.push({
line: util.getArg(mapping, 'generatedLine', null),
column: util.getArg(mapping, 'generatedColumn', null),
lastColumn: util.getArg(mapping, 'lastGeneratedColumn', null)
});
mapping = this._originalMappings[++index];
}
}
}
return mappings;
};
sourceMapConsumer.SourceMapConsumer = SourceMapConsumer;
/**
* A BasicSourceMapConsumer instance represents a parsed source map which we can
* query for information about the original file positions by giving it a file
* position in the generated source.
*
* The only parameter is the raw source map (either as a JSON string, or
* already parsed to an object). According to the spec, source maps have the
* following attributes:
*
* - version: Which version of the source map spec this map is following.
* - sources: An array of URLs to the original source files.
* - names: An array of identifiers which can be referrenced by individual mappings.
* - sourceRoot: Optional. The URL root from which all sources are relative.
* - sourcesContent: Optional. An array of contents of the original source files.
* - mappings: A string of base64 VLQs which contain the actual mappings.
* - file: Optional. The generated file this source map is associated with.
*
* Here is an example source map, taken from the source map spec[0]:
*
* {
* version : 3,
* file: "out.js",
* sourceRoot : "",
* sources: ["foo.js", "bar.js"],
* names: ["src", "maps", "are", "fun"],
* mappings: "AA,AB;;ABCDE;"
* }
*
* [0]: https://docs.google.com/document/d/1U1RGAehQwRypUTovF1KRlpiOFze0b-_2gc6fAH0KY0k/edit?pli=1#
*/
function BasicSourceMapConsumer(aSourceMap) {
var sourceMap = aSourceMap;
if (typeof aSourceMap === 'string') {
sourceMap = JSON.parse(aSourceMap.replace(/^\)\]\}'/, ''));
}
var version = util.getArg(sourceMap, 'version');
var sources = util.getArg(sourceMap, 'sources');
// Sass 3.3 leaves out the 'names' array, so we deviate from the spec (which
// requires the array) to play nice here.
var names = util.getArg(sourceMap, 'names', []);
var sourceRoot = util.getArg(sourceMap, 'sourceRoot', null);
var sourcesContent = util.getArg(sourceMap, 'sourcesContent', null);
var mappings = util.getArg(sourceMap, 'mappings');
var file = util.getArg(sourceMap, 'file', null);
// Once again, Sass deviates from the spec and supplies the version as a
// string rather than a number, so we use loose equality checking here.
if (version != this._version) {
throw new Error('Unsupported version: ' + version);
}
sources = sources
.map(String)
// Some source maps produce relative source paths like "./foo.js" instead of
// "foo.js". Normalize these first so that future comparisons will succeed.
// See bugzil.la/1090768.
.map(util.normalize)
// Always ensure that absolute sources are internally stored relative to
// the source root, if the source root is absolute. Not doing this would
// be particularly problematic when the source root is a prefix of the
// source (valid, but why??). See github issue #199 and bugzil.la/1188982.
.map(function (source) {
return sourceRoot && util.isAbsolute(sourceRoot) && util.isAbsolute(source)
? util.relative(sourceRoot, source)
: source;
});
// Pass `true` below to allow duplicate names and sources. While source maps
// are intended to be compressed and deduplicated, the TypeScript compiler
// sometimes generates source maps with duplicates in them. See Github issue
// #72 and bugzil.la/889492.
this._names = ArraySet.fromArray(names.map(String), true);
this._sources = ArraySet.fromArray(sources, true);
this.sourceRoot = sourceRoot;
this.sourcesContent = sourcesContent;
this._mappings = mappings;
this.file = file;
}
BasicSourceMapConsumer.prototype = Object.create(SourceMapConsumer.prototype);
BasicSourceMapConsumer.prototype.consumer = SourceMapConsumer;
/**
* Create a BasicSourceMapConsumer from a SourceMapGenerator.
*
* @param SourceMapGenerator aSourceMap
* The source map that will be consumed.
* @returns BasicSourceMapConsumer
*/
BasicSourceMapConsumer.fromSourceMap =
function SourceMapConsumer_fromSourceMap(aSourceMap) {
var smc = Object.create(BasicSourceMapConsumer.prototype);
var names = smc._names = ArraySet.fromArray(aSourceMap._names.toArray(), true);
var sources = smc._sources = ArraySet.fromArray(aSourceMap._sources.toArray(), true);
smc.sourceRoot = aSourceMap._sourceRoot;
smc.sourcesContent = aSourceMap._generateSourcesContent(smc._sources.toArray(),
smc.sourceRoot);
smc.file = aSourceMap._file;
// Because we are modifying the entries (by converting string sources and
// names to indices into the sources and names ArraySets), we have to make
// a copy of the entry or else bad things happen. Shared mutable state
// strikes again! See github issue #191.
var generatedMappings = aSourceMap._mappings.toArray().slice();
var destGeneratedMappings = smc.__generatedMappings = [];
var destOriginalMappings = smc.__originalMappings = [];
for (var i = 0, length = generatedMappings.length; i < length; i++) {
var srcMapping = generatedMappings[i];
var destMapping = new Mapping;
destMapping.generatedLine = srcMapping.generatedLine;
destMapping.generatedColumn = srcMapping.generatedColumn;
if (srcMapping.source) {
destMapping.source = sources.indexOf(srcMapping.source);
destMapping.originalLine = srcMapping.originalLine;
destMapping.originalColumn = srcMapping.originalColumn;
if (srcMapping.name) {
destMapping.name = names.indexOf(srcMapping.name);
}
destOriginalMappings.push(destMapping);
}
destGeneratedMappings.push(destMapping);
}
quickSort(smc.__originalMappings, util.compareByOriginalPositions);
return smc;
};
/**
* The version of the source mapping spec that we are consuming.
*/
BasicSourceMapConsumer.prototype._version = 3;
/**
* The list of original sources.
*/
Object.defineProperty(BasicSourceMapConsumer.prototype, 'sources', {
get: function () {
return this._sources.toArray().map(function (s) {
return this.sourceRoot != null ? util.join(this.sourceRoot, s) : s;
}, this);
}
});
/**
* Provide the JIT with a nice shape / hidden class.
*/
function Mapping() {
this.generatedLine = 0;
this.generatedColumn = 0;
this.source = null;
this.originalLine = null;
this.originalColumn = null;
this.name = null;
}
/**
* Parse the mappings in a string in to a data structure which we can easily
* query (the ordered arrays in the `this.__generatedMappings` and
* `this.__originalMappings` properties).
*/
BasicSourceMapConsumer.prototype._parseMappings =
function SourceMapConsumer_parseMappings(aStr, aSourceRoot) {
var generatedLine = 1;
var previousGeneratedColumn = 0;
var previousOriginalLine = 0;
var previousOriginalColumn = 0;
var previousSource = 0;
var previousName = 0;
var length = aStr.length;
var index = 0;
var cachedSegments = {};
var temp = {};
var originalMappings = [];
var generatedMappings = [];
var mapping, str, segment, end, value;
while (index < length) {
if (aStr.charAt(index) === ';') {
generatedLine++;
index++;
previousGeneratedColumn = 0;
}
else if (aStr.charAt(index) === ',') {
index++;
}
else {
mapping = new Mapping();
mapping.generatedLine = generatedLine;
// Because each offset is encoded relative to the previous one,
// many segments often have the same encoding. We can exploit this
// fact by caching the parsed variable length fields of each segment,
// allowing us to avoid a second parse if we encounter the same
// segment again.
for (end = index; end < length; end++) {
if (this._charIsMappingSeparator(aStr, end)) {
break;
}
}
str = aStr.slice(index, end);
segment = cachedSegments[str];
if (segment) {
index += str.length;
} else {
segment = [];
while (index < end) {
base64VLQ.decode(aStr, index, temp);
value = temp.value;
index = temp.rest;
segment.push(value);
}
if (segment.length === 2) {
throw new Error('Found a source, but no line and column');
}
if (segment.length === 3) {
throw new Error('Found a source and line, but no column');
}
cachedSegments[str] = segment;
}
// Generated column.
mapping.generatedColumn = previousGeneratedColumn + segment[0];
previousGeneratedColumn = mapping.generatedColumn;
if (segment.length > 1) {
// Original source.
mapping.source = previousSource + segment[1];
previousSource += segment[1];
// Original line.
mapping.originalLine = previousOriginalLine + segment[2];
previousOriginalLine = mapping.originalLine;
// Lines are stored 0-based
mapping.originalLine += 1;
// Original column.
mapping.originalColumn = previousOriginalColumn + segment[3];
previousOriginalColumn = mapping.originalColumn;
if (segment.length > 4) {
// Original name.
mapping.name = previousName + segment[4];
previousName += segment[4];
}
}
generatedMappings.push(mapping);
if (typeof mapping.originalLine === 'number') {
originalMappings.push(mapping);
}
}
}
quickSort(generatedMappings, util.compareByGeneratedPositionsDeflated);
this.__generatedMappings = generatedMappings;
quickSort(originalMappings, util.compareByOriginalPositions);
this.__originalMappings = originalMappings;
};
/**
* Find the mapping that best matches the hypothetical "needle" mapping that
* we are searching for in the given "haystack" of mappings.
*/
BasicSourceMapConsumer.prototype._findMapping =
function SourceMapConsumer_findMapping(aNeedle, aMappings, aLineName,
aColumnName, aComparator, aBias) {
// To return the position we are searching for, we must first find the
// mapping for the given position and then return the opposite position it
// points to. Because the mappings are sorted, we can use binary search to
// find the best mapping.
if (aNeedle[aLineName] <= 0) {
throw new TypeError('Line must be greater than or equal to 1, got '
+ aNeedle[aLineName]);
}
if (aNeedle[aColumnName] < 0) {
throw new TypeError('Column must be greater than or equal to 0, got '
+ aNeedle[aColumnName]);
}
return binarySearch.search(aNeedle, aMappings, aComparator, aBias);
};
/**
* Compute the last column for each generated mapping. The last column is
* inclusive.
*/
BasicSourceMapConsumer.prototype.computeColumnSpans =
function SourceMapConsumer_computeColumnSpans() {
for (var index = 0; index < this._generatedMappings.length; ++index) {
var mapping = this._generatedMappings[index];
// Mappings do not contain a field for the last generated columnt. We
// can come up with an optimistic estimate, however, by assuming that
// mappings are contiguous (i.e. given two consecutive mappings, the
// first mapping ends where the second one starts).
if (index + 1 < this._generatedMappings.length) {
var nextMapping = this._generatedMappings[index + 1];
if (mapping.generatedLine === nextMapping.generatedLine) {
mapping.lastGeneratedColumn = nextMapping.generatedColumn - 1;
continue;
}
}
// The last mapping for each line spans the entire line.
mapping.lastGeneratedColumn = Infinity;
}
};
/**
* Returns the original source, line, and column information for the generated
* source's line and column positions provided. The only argument is an object
* with the following properties:
*
* - line: The line number in the generated source.
* - column: The column number in the generated source.
* - bias: Either 'SourceMapConsumer.GREATEST_LOWER_BOUND' or
* 'SourceMapConsumer.LEAST_UPPER_BOUND'. Specifies whether to return the
* closest element that is smaller than or greater than the one we are
* searching for, respectively, if the exact element cannot be found.
* Defaults to 'SourceMapConsumer.GREATEST_LOWER_BOUND'.
*
* and an object is returned with the following properties:
*
* - source: The original source file, or null.
* - line: The line number in the original source, or null.
* - column: The column number in the original source, or null.
* - name: The original identifier, or null.
*/
BasicSourceMapConsumer.prototype.originalPositionFor =
function SourceMapConsumer_originalPositionFor(aArgs) {
var needle = {
generatedLine: util.getArg(aArgs, 'line'),
generatedColumn: util.getArg(aArgs, 'column')
};
var index = this._findMapping(
needle,
this._generatedMappings,
"generatedLine",
"generatedColumn",
util.compareByGeneratedPositionsDeflated,
util.getArg(aArgs, 'bias', SourceMapConsumer.GREATEST_LOWER_BOUND)
);
if (index >= 0) {
var mapping = this._generatedMappings[index];
if (mapping.generatedLine === needle.generatedLine) {
var source = util.getArg(mapping, 'source', null);
if (source !== null) {
source = this._sources.at(source);
if (this.sourceRoot != null) {
source = util.join(this.sourceRoot, source);
}
}
var name = util.getArg(mapping, 'name', null);
if (name !== null) {
name = this._names.at(name);
}
return {
source: source,
line: util.getArg(mapping, 'originalLine', null),
column: util.getArg(mapping, 'originalColumn', null),
name: name
};
}
}
return {
source: null,
line: null,
column: null,
name: null
};
};
/**
* Return true if we have the source content for every source in the source
* map, false otherwise.
*/
BasicSourceMapConsumer.prototype.hasContentsOfAllSources =
function BasicSourceMapConsumer_hasContentsOfAllSources() {
if (!this.sourcesContent) {
return false;
}
return this.sourcesContent.length >= this._sources.size() &&
!this.sourcesContent.some(function (sc) { return sc == null; });
};
/**
* Returns the original source content. The only argument is the url of the
* original source file. Returns null if no original source content is
* available.
*/
BasicSourceMapConsumer.prototype.sourceContentFor =
function SourceMapConsumer_sourceContentFor(aSource, nullOnMissing) {
if (!this.sourcesContent) {
return null;
}
if (this.sourceRoot != null) {
aSource = util.relative(this.sourceRoot, aSource);
}
if (this._sources.has(aSource)) {
return this.sourcesContent[this._sources.indexOf(aSource)];
}
var url;
if (this.sourceRoot != null
&& (url = util.urlParse(this.sourceRoot))) {
// XXX: file:// URIs and absolute paths lead to unexpected behavior for
// many users. We can help them out when they expect file:// URIs to
// behave like it would if they were running a local HTTP server. See
// https://bugzilla.mozilla.org/show_bug.cgi?id=885597.
var fileUriAbsPath = aSource.replace(/^file:\/\//, "");
if (url.scheme == "file"
&& this._sources.has(fileUriAbsPath)) {
return this.sourcesContent[this._sources.indexOf(fileUriAbsPath)]
}
if ((!url.path || url.path == "/")
&& this._sources.has("/" + aSource)) {
return this.sourcesContent[this._sources.indexOf("/" + aSource)];
}
}
// This function is used recursively from
// IndexedSourceMapConsumer.prototype.sourceContentFor. In that case, we
// don't want to throw if we can't find the source - we just want to
// return null, so we provide a flag to exit gracefully.
if (nullOnMissing) {
return null;
}
else {
throw new Error('"' + aSource + '" is not in the SourceMap.');
}
};
/**
* Returns the generated line and column information for the original source,
* line, and column positions provided. The only argument is an object with
* the following properties:
*
* - source: The filename of the original source.
* - line: The line number in the original source.
* - column: The column number in the original source.
* - bias: Either 'SourceMapConsumer.GREATEST_LOWER_BOUND' or
* 'SourceMapConsumer.LEAST_UPPER_BOUND'. Specifies whether to return the
* closest element that is smaller than or greater than the one we are
* searching for, respectively, if the exact element cannot be found.
* Defaults to 'SourceMapConsumer.GREATEST_LOWER_BOUND'.
*
* and an object is returned with the following properties:
*
* - line: The line number in the generated source, or null.
* - column: The column number in the generated source, or null.
*/
BasicSourceMapConsumer.prototype.generatedPositionFor =
function SourceMapConsumer_generatedPositionFor(aArgs) {
var source = util.getArg(aArgs, 'source');
if (this.sourceRoot != null) {
source = util.relative(this.sourceRoot, source);
}
if (!this._sources.has(source)) {
return {
line: null,
column: null,
lastColumn: null
};
}
source = this._sources.indexOf(source);
var needle = {
source: source,
originalLine: util.getArg(aArgs, 'line'),
originalColumn: util.getArg(aArgs, 'column')
};
var index = this._findMapping(
needle,
this._originalMappings,
"originalLine",
"originalColumn",
util.compareByOriginalPositions,
util.getArg(aArgs, 'bias', SourceMapConsumer.GREATEST_LOWER_BOUND)
);
if (index >= 0) {
var mapping = this._originalMappings[index];
if (mapping.source === needle.source) {
return {
line: util.getArg(mapping, 'generatedLine', null),
column: util.getArg(mapping, 'generatedColumn', null),
lastColumn: util.getArg(mapping, 'lastGeneratedColumn', null)
};
}
}
return {
line: null,
column: null,
lastColumn: null
};
};
sourceMapConsumer.BasicSourceMapConsumer = BasicSourceMapConsumer;
/**
* An IndexedSourceMapConsumer instance represents a parsed source map which
* we can query for information. It differs from BasicSourceMapConsumer in
* that it takes "indexed" source maps (i.e. ones with a "sections" field) as
* input.
*
* The only parameter is a raw source map (either as a JSON string, or already
* parsed to an object). According to the spec for indexed source maps, they
* have the following attributes:
*
* - version: Which version of the source map spec this map is following.
* - file: Optional. The generated file this source map is associated with.
* - sections: A list of section definitions.
*
* Each value under the "sections" field has two fields:
* - offset: The offset into the original specified at which this section
* begins to apply, defined as an object with a "line" and "column"
* field.
* - map: A source map definition. This source map could also be indexed,
* but doesn't have to be.
*
* Instead of the "map" field, it's also possible to have a "url" field
* specifying a URL to retrieve a source map from, but that's currently
* unsupported.
*
* Here's an example source map, taken from the source map spec[0], but
* modified to omit a section which uses the "url" field.
*
* {
* version : 3,
* file: "app.js",
* sections: [{
* offset: {line:100, column:10},
* map: {
* version : 3,
* file: "section.js",
* sources: ["foo.js", "bar.js"],
* names: ["src", "maps", "are", "fun"],
* mappings: "AAAA,E;;ABCDE;"
* }
* }],
* }
*
* [0]: https://docs.google.com/document/d/1U1RGAehQwRypUTovF1KRlpiOFze0b-_2gc6fAH0KY0k/edit#heading=h.535es3xeprgt
*/
function IndexedSourceMapConsumer(aSourceMap) {
var sourceMap = aSourceMap;
if (typeof aSourceMap === 'string') {
sourceMap = JSON.parse(aSourceMap.replace(/^\)\]\}'/, ''));
}
var version = util.getArg(sourceMap, 'version');
var sections = util.getArg(sourceMap, 'sections');
if (version != this._version) {
throw new Error('Unsupported version: ' + version);
}
this._sources = new ArraySet();
this._names = new ArraySet();
var lastOffset = {
line: -1,
column: 0
};
this._sections = sections.map(function (s) {
if (s.url) {
// The url field will require support for asynchronicity.
// See https://github.com/mozilla/source-map/issues/16
throw new Error('Support for url field in sections not implemented.');
}
var offset = util.getArg(s, 'offset');
var offsetLine = util.getArg(offset, 'line');
var offsetColumn = util.getArg(offset, 'column');
if (offsetLine < lastOffset.line ||
(offsetLine === lastOffset.line && offsetColumn < lastOffset.column)) {
throw new Error('Section offsets must be ordered and non-overlapping.');
}
lastOffset = offset;
return {
generatedOffset: {
// The offset fields are 0-based, but we use 1-based indices when
// encoding/decoding from VLQ.
generatedLine: offsetLine + 1,
generatedColumn: offsetColumn + 1
},
consumer: new SourceMapConsumer(util.getArg(s, 'map'))
}
});
}
IndexedSourceMapConsumer.prototype = Object.create(SourceMapConsumer.prototype);
IndexedSourceMapConsumer.prototype.constructor = SourceMapConsumer;
/**
* The version of the source mapping spec that we are consuming.
*/
IndexedSourceMapConsumer.prototype._version = 3;
/**
* The list of original sources.
*/
Object.defineProperty(IndexedSourceMapConsumer.prototype, 'sources', {
get: function () {
var sources = [];
for (var i = 0; i < this._sections.length; i++) {
for (var j = 0; j < this._sections[i].consumer.sources.length; j++) {
sources.push(this._sections[i].consumer.sources[j]);
}
}
return sources;
}
});
/**
* Returns the original source, line, and column information for the generated
* source's line and column positions provided. The only argument is an object
* with the following properties:
*
* - line: The line number in the generated source.
* - column: The column number in the generated source.
*
* and an object is returned with the following properties:
*
* - source: The original source file, or null.
* - line: The line number in the original source, or null.
* - column: The column number in the original source, or null.
* - name: The original identifier, or null.
*/
IndexedSourceMapConsumer.prototype.originalPositionFor =
function IndexedSourceMapConsumer_originalPositionFor(aArgs) {
var needle = {
generatedLine: util.getArg(aArgs, 'line'),
generatedColumn: util.getArg(aArgs, 'column')
};
// Find the section containing the generated position we're trying to map
// to an original position.
var sectionIndex = binarySearch.search(needle, this._sections,
function(needle, section) {
var cmp = needle.generatedLine - section.generatedOffset.generatedLine;
if (cmp) {
return cmp;
}
return (needle.generatedColumn -
section.generatedOffset.generatedColumn);
});
var section = this._sections[sectionIndex];
if (!section) {
return {
source: null,
line: null,
column: null,
name: null
};
}
return section.consumer.originalPositionFor({
line: needle.generatedLine -
(section.generatedOffset.generatedLine - 1),
column: needle.generatedColumn -
(section.generatedOffset.generatedLine === needle.generatedLine
? section.generatedOffset.generatedColumn - 1
: 0),
bias: aArgs.bias
});
};
/**
* Return true if we have the source content for every source in the source
* map, false otherwise.
*/
IndexedSourceMapConsumer.prototype.hasContentsOfAllSources =
function IndexedSourceMapConsumer_hasContentsOfAllSources() {
return this._sections.every(function (s) {
return s.consumer.hasContentsOfAllSources();
});
};
/**
* Returns the original source content. The only argument is the url of the
* original source file. Returns null if no original source content is
* available.
*/
IndexedSourceMapConsumer.prototype.sourceContentFor =
function IndexedSourceMapConsumer_sourceContentFor(aSource, nullOnMissing) {
for (var i = 0; i < this._sections.length; i++) {
var section = this._sections[i];
var content = section.consumer.sourceContentFor(aSource, true);
if (content) {
return content;
}
}
if (nullOnMissing) {
return null;
}
else {
throw new Error('"' + aSource + '" is not in the SourceMap.');
}
};
/**
* Returns the generated line and column information for the original source,
* line, and column positions provided. The only argument is an object with
* the following properties:
*
* - source: The filename of the original source.
* - line: The line number in the original source.
* - column: The column number in the original source.
*
* and an object is returned with the following properties:
*
* - line: The line number in the generated source, or null.
* - column: The column number in the generated source, or null.
*/
IndexedSourceMapConsumer.prototype.generatedPositionFor =
function IndexedSourceMapConsumer_generatedPositionFor(aArgs) {
for (var i = 0; i < this._sections.length; i++) {
var section = this._sections[i];
// Only consider this section if the requested source is in the list of
// sources of the consumer.
if (section.consumer.sources.indexOf(util.getArg(aArgs, 'source')) === -1) {
continue;
}
var generatedPosition = section.consumer.generatedPositionFor(aArgs);
if (generatedPosition) {
var ret = {
line: generatedPosition.line +
(section.generatedOffset.generatedLine - 1),
column: generatedPosition.column +
(section.generatedOffset.generatedLine === generatedPosition.line
? section.generatedOffset.generatedColumn - 1
: 0)
};
return ret;
}
}
return {
line: null,
column: null
};
};
/**
* Parse the mappings in a string in to a data structure which we can easily
* query (the ordered arrays in the `this.__generatedMappings` and
* `this.__originalMappings` properties).
*/
IndexedSourceMapConsumer.prototype._parseMappings =
function IndexedSourceMapConsumer_parseMappings(aStr, aSourceRoot) {
this.__generatedMappings = [];
this.__originalMappings = [];
for (var i = 0; i < this._sections.length; i++) {
var section = this._sections[i];
var sectionMappings = section.consumer._generatedMappings;
for (var j = 0; j < sectionMappings.length; j++) {
var mapping = sectionMappings[j];
var source = section.consumer._sources.at(mapping.source);
if (section.consumer.sourceRoot !== null) {
source = util.join(section.consumer.sourceRoot, source);
}
this._sources.add(source);
source = this._sources.indexOf(source);
var name = section.consumer._names.at(mapping.name);
this._names.add(name);
name = this._names.indexOf(name);
// The mappings coming from the consumer for the section have
// generated positions relative to the start of the section, so we
// need to offset them to be relative to the start of the concatenated
// generated file.
var adjustedMapping = {
source: source,
generatedLine: mapping.generatedLine +
(section.generatedOffset.generatedLine - 1),
generatedColumn: mapping.generatedColumn +
(section.generatedOffset.generatedLine === mapping.generatedLine
? section.generatedOffset.generatedColumn - 1
: 0),
originalLine: mapping.originalLine,
originalColumn: mapping.originalColumn,
name: name
};
this.__generatedMappings.push(adjustedMapping);
if (typeof adjustedMapping.originalLine === 'number') {
this.__originalMappings.push(adjustedMapping);
}
}
}
quickSort(this.__generatedMappings, util.compareByGeneratedPositionsDeflated);
quickSort(this.__originalMappings, util.compareByOriginalPositions);
};
sourceMapConsumer.IndexedSourceMapConsumer = IndexedSourceMapConsumer;
return sourceMapConsumer;
}
var hasRequiredStacktraceGps;
function requireStacktraceGps () {
if (hasRequiredStacktraceGps) return stacktraceGps.exports;
hasRequiredStacktraceGps = 1;
(function (module, exports) {
(function(root, factory) {
// Universal Module Definition (UMD) to support AMD, CommonJS/Node.js, Rhino, and browsers.
/* istanbul ignore next */
{
module.exports = factory(requireSourceMapConsumer(), requireStackframe());
}
}(commonjsGlobal, function(SourceMap, StackFrame) {
/**
* Make a X-Domain request to url and callback.
*
* @param {String} url
* @returns {Promise} with response text if fulfilled
*/
function _xdr(url) {
return new Promise(function(resolve, reject) {
var req = new XMLHttpRequest();
req.open('get', url);
req.onerror = reject;
req.onreadystatechange = function onreadystatechange() {
if (req.readyState === 4) {
if ((req.status >= 200 && req.status < 300) ||
(url.substr(0, 7) === 'file://' && req.responseText)) {
resolve(req.responseText);
} else {
reject(new Error('HTTP status: ' + req.status + ' retrieving ' + url));
}
}
};
req.send();
});
}
/**
* Convert a Base64-encoded string into its original representation.
* Used for inline sourcemaps.
*
* @param {String} b64str Base-64 encoded string
* @returns {String} original representation of the base64-encoded string.
*/
function _atob(b64str) {
if (typeof window !== 'undefined' && window.atob) {
return window.atob(b64str);
} else {
throw new Error('You must supply a polyfill for window.atob in this environment');
}
}
function _parseJson(string) {
if (typeof JSON !== 'undefined' && JSON.parse) {
return JSON.parse(string);
} else {
throw new Error('You must supply a polyfill for JSON.parse in this environment');
}
}
function _findFunctionName(source, lineNumber/*, columnNumber*/) {
var syntaxes = [
// {name} = function ({args}) TODO args capture
/['"]?([$_A-Za-z][$_A-Za-z0-9]*)['"]?\s*[:=]\s*function\b/,
// function {name}({args}) m[1]=name m[2]=args
/function\s+([^('"`]*?)\s*\(([^)]*)\)/,
// {name} = eval()
/['"]?([$_A-Za-z][$_A-Za-z0-9]*)['"]?\s*[:=]\s*(?:eval|new Function)\b/,
// fn_name() {
/\b(?!(?:if|for|switch|while|with|catch)\b)(?:(?:static)\s+)?(\S+)\s*\(.*?\)\s*\{/,
// {name} = () => {
/['"]?([$_A-Za-z][$_A-Za-z0-9]*)['"]?\s*[:=]\s*\(.*?\)\s*=>/
];
var lines = source.split('\n');
// Walk backwards in the source lines until we find the line which matches one of the patterns above
var code = '';
var maxLines = Math.min(lineNumber, 20);
for (var i = 0; i < maxLines; ++i) {
// lineNo is 1-based, source[] is 0-based
var line = lines[lineNumber - i - 1];
var commentPos = line.indexOf('//');
if (commentPos >= 0) {
line = line.substr(0, commentPos);
}
if (line) {
code = line + code;
var len = syntaxes.length;
for (var index = 0; index < len; index++) {
var m = syntaxes[index].exec(code);
if (m && m[1]) {
return m[1];
}
}
}
}
return undefined;
}
function _ensureSupportedEnvironment() {
if (typeof Object.defineProperty !== 'function' || typeof Object.create !== 'function') {
throw new Error('Unable to consume source maps in older browsers');
}
}
function _ensureStackFrameIsLegit(stackframe) {
if (typeof stackframe !== 'object') {
throw new TypeError('Given StackFrame is not an object');
} else if (typeof stackframe.fileName !== 'string') {
throw new TypeError('Given file name is not a String');
} else if (typeof stackframe.lineNumber !== 'number' ||
stackframe.lineNumber % 1 !== 0 ||
stackframe.lineNumber < 1) {
throw new TypeError('Given line number must be a positive integer');
} else if (typeof stackframe.columnNumber !== 'number' ||
stackframe.columnNumber % 1 !== 0 ||
stackframe.columnNumber < 0) {
throw new TypeError('Given column number must be a non-negative integer');
}
return true;
}
function _findSourceMappingURL(source) {
var sourceMappingUrlRegExp = /\/\/[#@] ?sourceMappingURL=([^\s'"]+)\s*$/mg;
var lastSourceMappingUrl;
var matchSourceMappingUrl;
// eslint-disable-next-line no-cond-assign
while (matchSourceMappingUrl = sourceMappingUrlRegExp.exec(source)) {
lastSourceMappingUrl = matchSourceMappingUrl[1];
}
if (lastSourceMappingUrl) {
return lastSourceMappingUrl;
} else {
throw new Error('sourceMappingURL not found');
}
}
function _extractLocationInfoFromSourceMapSource(stackframe, sourceMapConsumer, sourceCache) {
return new Promise(function(resolve, reject) {
var loc = sourceMapConsumer.originalPositionFor({
line: stackframe.lineNumber,
column: stackframe.columnNumber
});
if (loc.source) {
// cache mapped sources
var mappedSource = sourceMapConsumer.sourceContentFor(loc.source);
if (mappedSource) {
sourceCache[loc.source] = mappedSource;
}
resolve(
// given stackframe and source location, update stackframe
new StackFrame({
functionName: loc.name || stackframe.functionName,
args: stackframe.args,
fileName: loc.source,
lineNumber: loc.line,
columnNumber: loc.column
}));
} else {
reject(new Error('Could not get original source for given stackframe and source map'));
}
});
}
/**
* @constructor
* @param {Object} opts
* opts.sourceCache = {url: "Source String"} => preload source cache
* opts.sourceMapConsumerCache = {/path/file.js.map: SourceMapConsumer}
* opts.offline = True to prevent network requests.
* Best effort without sources or source maps.
* opts.ajax = Promise returning function to make X-Domain requests
*/
return function StackTraceGPS(opts) {
if (!(this instanceof StackTraceGPS)) {
return new StackTraceGPS(opts);
}
opts = opts || {};
this.sourceCache = opts.sourceCache || {};
this.sourceMapConsumerCache = opts.sourceMapConsumerCache || {};
this.ajax = opts.ajax || _xdr;
this._atob = opts.atob || _atob;
this._get = function _get(location) {
return new Promise(function(resolve, reject) {
var isDataUrl = location.substr(0, 5) === 'data:';
if (this.sourceCache[location]) {
resolve(this.sourceCache[location]);
} else if (opts.offline && !isDataUrl) {
reject(new Error('Cannot make network requests in offline mode'));
} else {
if (isDataUrl) {
// data URLs can have parameters.
// see http://tools.ietf.org/html/rfc2397
var supportedEncodingRegexp =
/^data:application\/json;([\w=:"-]+;)*base64,/;
var match = location.match(supportedEncodingRegexp);
if (match) {
var sourceMapStart = match[0].length;
var encodedSource = location.substr(sourceMapStart);
var source = this._atob(encodedSource);
this.sourceCache[location] = source;
resolve(source);
} else {
reject(new Error('The encoding of the inline sourcemap is not supported'));
}
} else {
var xhrPromise = this.ajax(location, {method: 'get'});
// Cache the Promise to prevent duplicate in-flight requests
this.sourceCache[location] = xhrPromise;
xhrPromise.then(resolve, reject);
}
}
}.bind(this));
};
/**
* Creating SourceMapConsumers is expensive, so this wraps the creation of a
* SourceMapConsumer in a per-instance cache.
*
* @param {String} sourceMappingURL = URL to fetch source map from
* @param {String} defaultSourceRoot = Default source root for source map if undefined
* @returns {Promise} that resolves a SourceMapConsumer
*/
this._getSourceMapConsumer = function _getSourceMapConsumer(sourceMappingURL, defaultSourceRoot) {
return new Promise(function(resolve) {
if (this.sourceMapConsumerCache[sourceMappingURL]) {
resolve(this.sourceMapConsumerCache[sourceMappingURL]);
} else {
var sourceMapConsumerPromise = new Promise(function(resolve, reject) {
return this._get(sourceMappingURL).then(function(sourceMapSource) {
if (typeof sourceMapSource === 'string') {
sourceMapSource = _parseJson(sourceMapSource.replace(/^\)\]\}'/, ''));
}
if (typeof sourceMapSource.sourceRoot === 'undefined') {
sourceMapSource.sourceRoot = defaultSourceRoot;
}
resolve(new SourceMap.SourceMapConsumer(sourceMapSource));
}).catch(reject);
}.bind(this));
this.sourceMapConsumerCache[sourceMappingURL] = sourceMapConsumerPromise;
resolve(sourceMapConsumerPromise);
}
}.bind(this));
};
/**
* Given a StackFrame, enhance function name and use source maps for a
* better StackFrame.
*
* @param {StackFrame} stackframe object
* @returns {Promise} that resolves with with source-mapped StackFrame
*/
this.pinpoint = function StackTraceGPS$$pinpoint(stackframe) {
return new Promise(function(resolve, reject) {
this.getMappedLocation(stackframe).then(function(mappedStackFrame) {
function resolveMappedStackFrame() {
resolve(mappedStackFrame);
}
this.findFunctionName(mappedStackFrame)
.then(resolve, resolveMappedStackFrame)
// eslint-disable-next-line no-unexpected-multiline
['catch'](resolveMappedStackFrame);
}.bind(this), reject);
}.bind(this));
};
/**
* Given a StackFrame, guess function name from location information.
*
* @param {StackFrame} stackframe
* @returns {Promise} that resolves with enhanced StackFrame.
*/
this.findFunctionName = function StackTraceGPS$$findFunctionName(stackframe) {
return new Promise(function(resolve, reject) {
_ensureStackFrameIsLegit(stackframe);
this._get(stackframe.fileName).then(function getSourceCallback(source) {
var lineNumber = stackframe.lineNumber;
var columnNumber = stackframe.columnNumber;
var guessedFunctionName = _findFunctionName(source, lineNumber);
// Only replace functionName if we found something
if (guessedFunctionName) {
resolve(new StackFrame({
functionName: guessedFunctionName,
args: stackframe.args,
fileName: stackframe.fileName,
lineNumber: lineNumber,
columnNumber: columnNumber
}));
} else {
resolve(stackframe);
}
}, reject)['catch'](reject);
}.bind(this));
};
/**
* Given a StackFrame, seek source-mapped location and return new enhanced StackFrame.
*
* @param {StackFrame} stackframe
* @returns {Promise} that resolves with enhanced StackFrame.
*/
this.getMappedLocation = function StackTraceGPS$$getMappedLocation(stackframe) {
return new Promise(function(resolve, reject) {
_ensureSupportedEnvironment();
_ensureStackFrameIsLegit(stackframe);
var sourceCache = this.sourceCache;
var fileName = stackframe.fileName;
this._get(fileName).then(function(source) {
var sourceMappingURL = _findSourceMappingURL(source);
var isDataUrl = sourceMappingURL.substr(0, 5) === 'data:';
var defaultSourceRoot = fileName.substring(0, fileName.lastIndexOf('/') + 1);
if (sourceMappingURL[0] !== '/' && !isDataUrl && !(/^https?:\/\/|^\/\//i).test(sourceMappingURL)) {
sourceMappingURL = defaultSourceRoot + sourceMappingURL;
}
return this._getSourceMapConsumer(sourceMappingURL, defaultSourceRoot)
.then(function(sourceMapConsumer) {
return _extractLocationInfoFromSourceMapSource(stackframe, sourceMapConsumer, sourceCache)
.then(resolve)['catch'](function() {
resolve(stackframe);
});
});
}.bind(this), reject)['catch'](reject);
}.bind(this));
};
};
}));
} (stacktraceGps));
return stacktraceGps.exports;
}
(function (module, exports) {
(function(root, factory) {
// Universal Module Definition (UMD) to support AMD, CommonJS/Node.js, Rhino, and browsers.
/* istanbul ignore next */
{
module.exports = factory(requireErrorStackParser(), requireStackGenerator(), requireStacktraceGps());
}
}(commonjsGlobal, function StackTrace(ErrorStackParser, StackGenerator, StackTraceGPS) {
var _options = {
filter: function(stackframe) {
// Filter out stackframes for this library by default
return (stackframe.functionName || '').indexOf('StackTrace$$') === -1 &&
(stackframe.functionName || '').indexOf('ErrorStackParser$$') === -1 &&
(stackframe.functionName || '').indexOf('StackTraceGPS$$') === -1 &&
(stackframe.functionName || '').indexOf('StackGenerator$$') === -1;
},
sourceCache: {}
};
var _generateError = function StackTrace$$GenerateError() {
try {
// Error must be thrown to get stack in IE
throw new Error();
} catch (err) {
return err;
}
};
/**
* Merge 2 given Objects. If a conflict occurs the second object wins.
* Does not do deep merges.
*
* @param {Object} first base object
* @param {Object} second overrides
* @returns {Object} merged first and second
* @private
*/
function _merge(first, second) {
var target = {};
[first, second].forEach(function(obj) {
for (var prop in obj) {
if (Object.prototype.hasOwnProperty.call(obj, prop)) {
target[prop] = obj[prop];
}
}
return target;
});
return target;
}
function _isShapedLikeParsableError(err) {
return err.stack || err['opera#sourceloc'];
}
function _filtered(stackframes, filter) {
if (typeof filter === 'function') {
return stackframes.filter(filter);
}
return stackframes;
}
return {
/**
* Get a backtrace from invocation point.
*
* @param {Object} opts
* @returns {Array} of StackFrame
*/
get: function StackTrace$$get(opts) {
var err = _generateError();
return _isShapedLikeParsableError(err) ? this.fromError(err, opts) : this.generateArtificially(opts);
},
/**
* Get a backtrace from invocation point.
* IMPORTANT: Does not handle source maps or guess function names!
*
* @param {Object} opts
* @returns {Array} of StackFrame
*/
getSync: function StackTrace$$getSync(opts) {
opts = _merge(_options, opts);
var err = _generateError();
var stack = _isShapedLikeParsableError(err) ? ErrorStackParser.parse(err) : StackGenerator.backtrace(opts);
return _filtered(stack, opts.filter);
},
/**
* Given an error object, parse it.
*
* @param {Error} error object
* @param {Object} opts
* @returns {Promise} for Array[StackFrame}
*/
fromError: function StackTrace$$fromError(error, opts) {
opts = _merge(_options, opts);
var gps = new StackTraceGPS(opts);
return new Promise(function(resolve) {
var stackframes = _filtered(ErrorStackParser.parse(error), opts.filter);
resolve(Promise.all(stackframes.map(function(sf) {
return new Promise(function(resolve) {
function resolveOriginal() {
resolve(sf);
}
gps.pinpoint(sf).then(resolve, resolveOriginal)['catch'](resolveOriginal);
});
})));
}.bind(this));
},
/**
* Use StackGenerator to generate a backtrace.
*
* @param {Object} opts
* @returns {Promise} of Array[StackFrame]
*/
generateArtificially: function StackTrace$$generateArtificially(opts) {
opts = _merge(_options, opts);
var stackFrames = StackGenerator.backtrace(opts);
if (typeof opts.filter === 'function') {
stackFrames = stackFrames.filter(opts.filter);
}
return Promise.resolve(stackFrames);
},
/**
* Given a function, wrap it such that invocations trigger a callback that
* is called with a stack trace.
*
* @param {Function} fn to be instrumented
* @param {Function} callback function to call with a stack trace on invocation
* @param {Function} errback optional function to call with error if unable to get stack trace.
* @param {Object} thisArg optional context object (e.g. window)
*/
instrument: function StackTrace$$instrument(fn, callback, errback, thisArg) {
if (typeof fn !== 'function') {
throw new Error('Cannot instrument non-function object');
} else if (typeof fn.__stacktraceOriginalFn === 'function') {
// Already instrumented, return given Function
return fn;
}
var instrumented = function StackTrace$$instrumented() {
try {
this.get().then(callback, errback)['catch'](errback);
return fn.apply(thisArg || this, arguments);
} catch (e) {
if (_isShapedLikeParsableError(e)) {
this.fromError(e).then(callback, errback)['catch'](errback);
}
throw e;
}
}.bind(this);
instrumented.__stacktraceOriginalFn = fn;
return instrumented;
},
/**
* Given a function that has been instrumented,
* revert the function to it's original (non-instrumented) state.
*
* @param {Function} fn to de-instrument
*/
deinstrument: function StackTrace$$deinstrument(fn) {
if (typeof fn !== 'function') {
throw new Error('Cannot de-instrument non-function object');
} else if (typeof fn.__stacktraceOriginalFn === 'function') {
return fn.__stacktraceOriginalFn;
} else {
// Function not instrumented, return original
return fn;
}
},
/**
* Given an error message and Array of StackFrames, serialize and POST to given URL.
*
* @param {Array} stackframes
* @param {String} url
* @param {String} errorMsg
* @param {Object} requestOptions
*/
report: function StackTrace$$report(stackframes, url, errorMsg, requestOptions) {
return new Promise(function(resolve, reject) {
var req = new XMLHttpRequest();
req.onerror = reject;
req.onreadystatechange = function onreadystatechange() {
if (req.readyState === 4) {
if (req.status >= 200 && req.status < 400) {
resolve(req.responseText);
} else {
reject(new Error('POST to ' + url + ' failed with status: ' + req.status));
}
}
};
req.open('post', url);
// Set request headers
req.setRequestHeader('Content-Type', 'application/json');
if (requestOptions && typeof requestOptions.headers === 'object') {
var headers = requestOptions.headers;
for (var header in headers) {
if (Object.prototype.hasOwnProperty.call(headers, header)) {
req.setRequestHeader(header, headers[header]);
}
}
}
var reportPayload = {stack: stackframes};
if (errorMsg !== undefined && errorMsg !== null) {
reportPayload.message = errorMsg;
}
req.send(JSON.stringify(reportPayload));
});
}
};
}));
} (stacktrace));
var stacktraceExports = stacktrace.exports;
var StackTrace = /*@__PURE__*/getDefaultExportFromCjs(stacktraceExports);
class BreadcrumbBuffer {
constructor(maxBreadcrumbs = 50) {
this.breadcrumbs = [];
this.maxBreadcrumbs = maxBreadcrumbs;
}
/**
* Add a breadcrumb to the buffer
*/
add(breadcrumb) {
const fullBreadcrumb = {
...breadcrumb,
timestamp: Date.now(),
};
this.breadcrumbs.push(fullBreadcrumb);
// Keep only the most recent breadcrumbs
if (this.breadcrumbs.length > this.maxBreadcrumbs) {
this.breadcrumbs = this.breadcrumbs.slice(-this.maxBreadcrumbs);
}
}
/**
* Get all breadcrumbs
*/
getAll() {
return [...this.breadcrumbs];
}
/**
* Clear all breadcrumbs
*/
clear() {
this.breadcrumbs = [];
}
/**
* Add a navigation breadcrumb
*/
addNavigation(from, to) {
this.add({
message: `Navigation from ${from} to ${to}`,
category: 'navigation',
level: 'info',
data: { from, to },
});
}
/**
* Add a UI interaction breadcrumb
*/
addUI(action, target) {
this.add({
message: `${action} on ${target}`,
category: 'ui',
level: 'info',
data: { action, target },
});
}
/**
* Add an HTTP request breadcrumb
*/
addHttp(method, url, status) {
this.add({
message: `${method} ${url}${status ? ` (${status})` : ''}`,
category: 'http',
level: status && status >= 400 ? 'error' : 'info',
data: { method, url, status },
});
}
/**
* Add a console log breadcrumb
*/
addConsole(level, message) {
this.add({
message: `Console ${level}: ${message}`,
category: 'console',
level: level,
data: { originalLevel: level },
});
}
}
/**
* Generate a fingerprint for error grouping
* Similar errors should have the same fingerprint
*/
function generateFingerprint(error) {
const fingerprint = [];
// Use error message without dynamic parts
if (error.message) {
const normalizedMessage = error.message
.replace(/\d+/g, 'X') // Replace numbers with X
.replace(/['"]/g, '') // Remove quotes
.replace(/\s+/g, ' ') // Normalize whitespace
.trim();
fingerprint.push(normalizedMessage);
}
// Use top stack frame if available
if (error.stackTrace) {
const lines = error.stackTrace.split('\n');
const topFrame = lines.find(line => line.trim() && !line.includes('index-ticketing'));
if (topFrame) {
// Extract function name and file (without line numbers)
const cleaned = topFrame
.replace(/:\d+:\d+/g, '') // Remove line:column
.replace(/\?.*$/g, '') // Remove query params
.trim();
fingerprint.push(cleaned);
}
}
// Add environment context
if (error.environment?.url) {
try {
const url = new URL(error.environment.url);
fingerprint.push(url.pathname);
}
catch {
// Invalid URL, skip
}
}
return fingerprint.length > 0 ? fingerprint : ['unknown-error'];
}
class ClientErrorHandler {
constructor(config) {
this.isInstalled = false;
this.config = config;
this.breadcrumbs = new BreadcrumbBuffer(config.maxBreadcrumbs);
}
/**
* Install global error handlers
*/
install() {
if (this.isInstalled || typeof window === 'undefined') {
return;
}
// Handle JavaScript errors
this.originalErrorHandler = window.onerror;
window.onerror = (message, source, lineno, colno, error) => {
this.captureError(error || new Error(message), {
source,
lineno,
colno,
});
// Call original handler
if (this.originalErrorHandler) {
return this.originalErrorHandler.call(window, message, source, lineno, colno, error);
}
return false;
};
// Handle unhandled promise rejections
this.originalUnhandledRejectionHandler = window.onunhandledrejection;
window.onunhandledrejection = (event) => {
this.captureError(event.reason instanceof Error ? event.reason : new Error(String(event.reason)), { type: 'unhandledrejection' });
// Call original handler
if (this.originalUnhandledRejectionHandler) {
return this.originalUnhandledRejectionHandler.call(window, event);
}
};
// Capture breadcrumbs for various events
this.installBreadcrumbCapture();
this.isInstalled = true;
}
/**
* Uninstall global error handlers
*/
uninstall() {
if (!this.isInstalled || typeof window === 'undefined') {
return;
}
window.onerror = this.originalErrorHandler || null;
window.onunhandledrejection = this.originalUnhandledRejectionHandler || null;
this.isInstalled = false;
}
/**
* Manually capture an error
*/
async captureError(error, extra) {
try {
// Apply sampling
if (this.config.sampleRate && Math.random() > this.config.sampleRate) {
return;
}
const stackFrames = await StackTrace.fromError(error);
const stackTrace = stackFrames
.map(frame => ` at ${frame.functionName || '<anonymous>'} (${frame.fileName}:${frame.lineNumber}:${frame.columnNumber})`)
.join('\n');
const errorEvent = {
message: error.message || 'Unknown error',
stackTrace,
level: 'error',
timestamp: Date.now(),
user: this.config.user,
environment: {
userAgent: typeof navigator !== 'undefined' ? navigator.userAgent : 'Node.js',
url: typeof window !== 'undefined' ? window.location.href : 'N/A',
referrer: typeof document !== 'undefined' ? document.referrer : 'N/A',
platform: typeof navigator !== 'undefined' ? navigator.platform : process?.platform || 'unknown',
timestamp: Date.now(),
},
tags: {
...this.config.tags,
environment: this.config.environment || 'unknown',
release: this.config.release || 'unknown',
},
breadcrumbs: this.breadcrumbs.getAll(),
extra,
fingerprint: [],
};
// Generate fingerprint for error grouping
errorEvent.fingerprint = generateFingerprint(errorEvent);
// Apply beforeSend filter
const filteredEvent = this.config.beforeSend ? this.config.beforeSend(errorEvent) : errorEvent;
if (filteredEvent) {
// Send to ticketing system (will be implemented in transport)
this.sendErrorEvent(filteredEvent);
}
}
catch (captureError) {
console.error('Failed to capture error:', captureError);
}
}
/**
* Add a breadcrumb manually
*/
addBreadcrumb(message, category, level, data) {
this.breadcrumbs.add({
message,
category,
level: level || 'info',
data,
});
}
/**
* Set user context
*/
setUser(user) {
this.config.user = user;
}
/**
* Set tags
*/
setTags(tags) {
this.config.tags = { ...this.config.tags, ...tags };
}
installBreadcrumbCapture() {
// Capture navigation events
if (typeof window !== 'undefined' && window.addEventListener) {
let lastUrl = window.location.href;
// History API changes
const originalPushState = history.pushState;
const originalReplaceState = history.replaceState;
history.pushState = function (...args) {
const result = originalPushState.apply(this, args);
const newUrl = window.location.href;
if (newUrl !== lastUrl) {
this.breadcrumbs.addNavigation(lastUrl, newUrl);
lastUrl = newUrl;
}
return result;
}.bind(this);
history.replaceState = function (...args) {
const result = originalReplaceState.apply(this, args);
const newUrl = window.location.href;
if (newUrl !== lastUrl) {
this.breadcrumbs.addNavigation(lastUrl, newUrl);
lastUrl = newUrl;
}
return result;
}.bind(this);
// Popstate events
window.addEventListener('popstate', () => {
const newUrl = window.location.href;
if (newUrl !== lastUrl) {
this.breadcrumbs.addNavigation(lastUrl, newUrl);
lastUrl = newUrl;
}
});
// Click events
document.addEventListener('click', (event) => {
const target = event.target;
if (target) {
const tagName = target.tagName.toLowerCase();
const text = target.textContent?.slice(0, 100) || target.id || target.className;
this.breadcrumbs.addUI('click', `${tagName}${text ? ` "${text}"` : ''}`);
}
}, true);
// Console logs (override console methods)
if (console) {
['log', 'info', 'warn', 'error', 'debug'].forEach(level => {
const original = console[level];
if (original) {
console[level] = (...args) => {
this.breadcrumbs.addConsole(level, args.map(arg => String(arg)).join(' '));
return original.apply(console, args);
};
}
});
}
// Fetch requests
if (window.fetch) {
const originalFetch = window.fetch;
window.fetch = async (...args) => {
const [url, options] = args;
const method = options?.method || 'GET';
try {
const response = await originalFetch(...args);
this.breadcrumbs.addHttp(method, String(url), response.status);
return response;
}
catch (error) {
this.breadcrumbs.addHttp(method, String(url));
throw error;
}
};
}
}
}
sendErrorEvent(errorEvent) {
// This will be implemented when we create the transport layer
console.log('Would send error event:', errorEvent);
}
}
class APIClient {
constructor(config) {
this.retryQueue = [];
this.isProcessingQueue = false;
this.config = config;
}
/**
* Send error event to ticketing system
*/
async sendErrorEvent(errorEvent) {
console.log('[IndexTicketing] Starting to send error event:', {
endpoint: this.config.endpoint,
hasApiKey: !!this.config.apiKey,
apiKeyLength: this.config.apiKey?.length,
projectId: this.config.projectId,
organizationId: this.config.organizationId,
errorMessage: errorEvent.message
});
try {
const ticketPayload = this.createTicketPayload(errorEvent);
console.log('[IndexTicketing] Created ticket payload:', {
title: ticketPayload.title,
priority: ticketPayload.priority,
projectId: ticketPayload.projectId,
organizationId: ticketPayload.organizationId,
hasDescription: !!ticketPayload.description,
descriptionLength: ticketPayload.description?.length
});
const url = `${this.config.endpoint}/api/index-ticketing/tickets`;
console.log('[IndexTicketing] Making request to URL:', url);
const headers = {
'Content-Type': 'application/json',
'Authorization': `Bearer ${this.config.apiKey}`,
'X-Index-Ticketing': '1.0.0',
};
console.log('[IndexTicketing] Request headers:', {
'Content-Type': headers['Content-Type'],
'Authorization': `Bearer ${this.config.apiKey?.substring(0, 10)}...`,
'X-Index-Ticketing': headers['X-Index-Ticketing']
});
const response = await fetch(url, {
method: 'POST',
headers,
body: JSON.stringify(ticketPayload),
});
console.log('[IndexTicketing] Response received:', {
status: response.status,
statusText: response.statusText,
ok: response.ok,
headers: Object.fromEntries(response.headers.entries())
});
if (!response.ok) {
const errorText = await response.text();
console.error('[IndexTicketing] Response error body:', errorText);
throw new Error(`HTTP ${response.status}: ${response.statusText} - ${errorText}`);
}
const result = await response.json();
console.log('[IndexTicketing] Ticket created successfully:', {
id: result.id,
action: result.action,
message: result.message,
notificationsSent: result.notificationsSent
});
}
catch (error) {
console.error('[IndexTicketing] Failed to send error event:', {
error: error instanceof Error ? error.message : String(error),
stack: error instanceof Error ? error.stack : undefined,
name: error instanceof Error ? error.name : 'UnknownError',
endpoint: this.config.endpoint,
retryQueueLength: this.retryQueue.length
});
// Add to retry queue
this.retryQueue.push(errorEvent);
this.processRetryQueue();
}
}
/**
* Create ticket payload from error event
*/
createTicketPayload(errorEvent) {
const title = this.generateTicketTitle(errorEvent);
const description = this.generateTicketDescription(errorEvent);
const priority = this.determinePriority(errorEvent);
return {
title,
description,
priority,
projectId: this.config.projectId,
organizationId: this.config.organizationId,
metadata: {
source: 'index-ticketing',
errorEvent,
environment: this.config.environment || 'unknown',
release: this.config.release,
},
};
}
/**
* Generate ticket title from error
*/
generateTicketTitle(errorEvent) {
let title = errorEvent.message || 'Unknown Error';
// Limit title length
if (title.length > 100) {
title = title.substring(0, 97) + '...';
}
// Add environment prefix if not production
const env = this.config.environment;
if (env && env !== 'production') {
title = `[${env.toUpperCase()}] ${title}`;
}
return title;
}
/**
* Generate detailed ticket description
*/
generateTicketDescription(errorEvent) {
const sections = [];
// Error details
sections.push('## Error Details');
sections.push(`**Message:** ${errorEvent.message}`);
sections.push(`**Level:** ${errorEvent.level}`);
sections.push(`**Timestamp:** ${new Date(errorEvent.timestamp).toISOString()}`);
if (errorEvent.fingerprint && errorEvent.fingerprint.length > 0) {
sections.push(`**Fingerprint:** ${errorEvent.fingerprint.join(', ')}`);
}
// Stack trace
if (errorEvent.stackTrace) {
sections.push('## Stack Trace');
sections.push('```');
sections.push(errorEvent.stackTrace);
sections.push('```');
}
// Environment info
if (errorEvent.environment) {
sections.push('## Environment');
sections.push(`**URL:** ${errorEvent.environment.url || 'N/A'}`);
sections.push(`**User Agent:** ${errorEvent.environment.userAgent || 'N/A'}`);
sections.push(`**Platform:** ${errorEvent.environment.platform || 'N/A'}`);
if (errorEvent.environment.referrer) {
sections.push(`**Referrer:** ${errorEvent.environment.referrer}`);
}
}
// User context
if (errorEvent.user) {
sections.push('## User Context');
if (errorEvent.user.id)
sections.push(`**User ID:** ${errorEvent.user.id}`);
if (errorEvent.user.email)
sections.push(`**Email:** ${errorEvent.user.email}`);
if (errorEvent.user.name)
sections.push(`**Name:** ${errorEvent.user.name}`);
}
// Tags
if (errorEvent.tags && Object.keys(errorEvent.tags).length > 0) {
sections.push('## Tags');
Object.entries(errorEvent.tags).forEach(([key, value]) => {
sections.push(`**${key}:** ${value}`);
});
}
// Breadcrumbs
if (errorEvent.breadcrumbs && errorEvent.breadcrumbs.length > 0) {
sections.push('## Breadcrumbs');
sections.push('Events leading up to the error:');
sections.push('');
errorEvent.breadcrumbs.slice(-10).forEach((breadcrumb, index) => {
const time = new Date(breadcrumb.timestamp).toLocaleTimeString();
const category = breadcrumb.category ? `[${breadcrumb.category}]` : '';
sections.push(`${index + 1}. **${time}** ${category} ${breadcrumb.message}`);
if (breadcrumb.data && Object.keys(breadcrumb.data).length > 0) {
const dataStr = JSON.stringify(breadcrumb.data, null, 2);
if (dataStr.length < 200) {
sections.push(` \`${dataStr}\``);
}
}
});
}
// Extra data
if (errorEvent.extra && Object.keys(errorEvent.extra).length > 0) {
sections.push('## Additional Data');
sections.push('```json');
sections.push(JSON.stringify(errorEvent.extra, null, 2));
sections.push('```');
}
// Footer
sections.push('---');
sections.push(`*This ticket was automatically created by IndexTicketing v1.0.0*`);
if (this.config.release) {
sections.push(`*Release: ${this.config.release}*`);
}
return sections.join('\n');
}
/**
* Determine ticket priority based on error characteristics
*/
determinePriority(errorEvent) {
// Production errors are higher priority
if (this.config.environment === 'production') {
return 'high';
}
// Check for critical error patterns
const criticalPatterns = [
/cannot read property/i,
/cannot access before initialization/i,
/network error/i,
/failed to fetch/i,
/syntaxerror/i,
/referenceerror/i,
];
const message = errorEvent.message?.toLowerCase() || '';
const stackTrace = errorEvent.stackTrace?.toLowerCase() || '';
if (criticalPatterns.some(pattern => pattern.test(message) || pattern.test(stackTrace))) {
return 'high';
}
// Check error level
if (errorEvent.level === 'error') {
return 'medium';
}
return 'low';
}
/**
* Process retry queue with exponential backoff
*/
async processRetryQueue() {
if (this.isProcessingQueue || this.retryQueue.length === 0) {
return;
}
this.isProcessingQueue = true;
let retryDelay = 1000; // Start with 1 second
while (this.retryQueue.length > 0) {
const errorEvent = this.retryQueue.shift();
try {
await this.sendErrorEvent(errorEvent);
retryDelay = 1000; // Reset delay on success
}
catch (error) {
console.error('Retry failed:', error);
// Exponential backoff
await new Promise(resolve => setTimeout(resolve, retryDelay));
retryDelay = Math.min(retryDelay * 2, 30000); // Max 30 seconds
// Put back in queue (but limit queue size)
if (this.retryQueue.length < 50) {
this.retryQueue.push(errorEvent);
}
break;
}
}
this.isProcessingQueue = false;
}
/**
* Test connection to ticketing system
*/
async testConnection() {
console.log('[IndexTicketing] Testing connection:', {
endpoint: this.config.endpoint,
hasApiKey: !!this.config.apiKey
});
try {
const url = `${this.config.endpoint}/api/check-user`;
console.log('[IndexTicketing] Testing connection to URL:', url);
const response = await fetch(url, {
method: 'GET',
headers: {
'Authorization': `Bearer ${this.config.apiKey}`,
'X-Index-Ticketing': '1.0.0',
},
});
console.log('[IndexTicketing] Connection test response:', {
status: response.status,
statusText: response.statusText,
ok: response.ok
});
if (!response.ok) {
const errorText = await response.text();
console.error('[IndexTicketing] Connection test failed with response:', errorText);
}
return response.ok;
}
catch (error) {
console.error('[IndexTicketing] Connection test failed with error:', {
error: error instanceof Error ? error.message : String(error),
stack: error instanceof Error ? error.stack : undefined,
endpoint: this.config.endpoint
});
return false;
}
}
}
/**
* React Error Boundary that integrates with IndexTicketing
*/
class IndexTicketingErrorBoundary extends React.Component {
constructor(props) {
super(props);
this.state = { hasError: false };
}
static getDerivedStateFromError(error) {
return {
hasError: true,
error,
};
}
componentDidCatch(error, errorInfo) {
this.setState({
error,
errorInfo,
});
// Add React-specific context
this.props.errorHandler.addBreadcrumb('React Error Boundary caught error', 'react', 'error', {
componentStack: errorInfo.componentStack,
errorBoundary: this.constructor.name,
});
// Capture the error
this.props.errorHandler.captureError(error, {
componentStack: errorInfo.componentStack,
errorBoundary: this.constructor.name,
reactErrorInfo: errorInfo,
});
// Call optional error callback
if (this.props.onError) {
this.props.onError(error, errorInfo);
}
}
render() {
if (this.state.hasError) {
if (this.props.fallback) {
if (typeof this.props.fallback === 'function') {
return this.props.fallback(this.state.error, this.state.errorInfo);
}
return this.props.fallback;
}
// Default error UI
return React.createElement('div', {
style: {
padding: '20px',
border: '1px solid #ff6b6b',
borderRadius: '4px',
backgroundColor: '#ffe0e0',
color: '#d63031',
fontFamily: 'monospace',
}
}, [
React.createElement('h3', { key: 'title' }, 'Something went wrong'),
React.createElement('details', { key: 'details', style: { marginTop: '10px' } }, [
React.createElement('summary', { key: 'summary' }, 'Error details'),
React.createElement('pre', {
key: 'error',
style: {
marginTop: '10px',
fontSize: '12px',
overflow: 'auto',
maxHeight: '200px'
}
}, this.state.error?.stack || this.state.error?.message || 'Unknown error')
])
]);
}
return this.props.children;
}
}
/**
* Higher-order component that wraps a component with error boundary
*/
function withIndexTicketingErrorBoundary(WrappedComponent, errorHandler, fallback) {
const WithErrorBoundary = (props) => {
return React.createElement(IndexTicketingErrorBoundary, { errorHandler, fallback }, React.createElement(WrappedComponent, props));
};
WithErrorBoundary.displayName = `withIndexTicketingErrorBoundary(${WrappedComponent.displayName || WrappedComponent.name})`;
return WithErrorBoundary;
}
/**
* React hook for manual error reporting
*/
function useIndexTicketing(errorHandler) {
const captureError = React.useCallback((error, extra) => {
errorHandler.captureError(error, extra);
}, [errorHandler]);
const addBreadcrumb = React.useCallback((message, category, level, data) => {
errorHandler.addBreadcrumb(message, category, level, data);
}, [errorHandler]);
const setUser = React.useCallback((user) => {
errorHandler.setUser(user);
}, [errorHandler]);
const setTags = React.useCallback((tags) => {
errorHandler.setTags(tags);
}, [errorHandler]);
return {
captureError,
addBreadcrumb,
setUser,
setTags,
};
}
/**
* Main IndexTicketing class
*/
class IndexTicketing {
constructor(config) {
this.config = {
autoCapture: true,
sampleRate: 1.0,
maxBreadcrumbs: 50,
environment: 'production',
...config,
};
this.errorHandler = new ClientErrorHandler(this.config);
this.apiClient = new APIClient(this.config);
// Override error handler's send method to use our API client
this.errorHandler.sendErrorEvent = (errorEvent) => {
this.apiClient.sendErrorEvent(errorEvent);
};
// Auto-install if enabled
if (this.config.autoCapture) {
this.install();
}
}
/**
* Install global error handlers
*/
install() {
this.errorHandler.install();
}
/**
* Uninstall global error handlers
*/
uninstall() {
this.errorHandler.uninstall();
}
/**
* Manually capture an error
*/
captureError(error, extra) {
return this.errorHandler.captureError(error, extra);
}
/**
* Capture a message
*/
captureMessage(message, level = 'info', extra) {
const error = new Error(message);
error.name = 'CapturedMessage';
return this.errorHandler.captureError(error, { level, ...extra });
}
/**
* Add a breadcrumb
*/
addBreadcrumb(message, category, level, data) {
this.errorHandler.addBreadcrumb(message, category, level, data);
}
/**
* Set user context
*/
setUser(user) {
this.errorHandler.setUser(user);
}
/**
* Set tags
*/
setTags(tags) {
this.errorHandler.setTags(tags);
}
/**
* Update configuration
*/
configure(newConfig) {
this.config = { ...this.config, ...newConfig };
// Note: This would require recreating handlers in a full implementation
}
/**
* Test connection to ticketing system
*/
testConnection() {
return this.apiClient.testConnection();
}
/**
* Get the underlying error handler (for advanced usage)
*/
getErrorHandler() {
return this.errorHandler;
}
}
// Global instance
let globalInstance = null;
/**
* Initialize IndexTicketing globally
*/
function init(config) {
globalInstance = new IndexTicketing(config);
return globalInstance;
}
/**
* Get the global instance
*/
function getCurrentHub() {
return globalInstance;
}
// Convenience methods that work with the global instance
function captureError(error, extra) {
if (!globalInstance) {
console.warn('IndexTicketing not initialized. Call init() first.');
return Promise.resolve();
}
return globalInstance.captureError(error, extra);
}
function captureMessage(message, level = 'info', extra) {
if (!globalInstance) {
console.warn('IndexTicketing not initialized. Call init() first.');
return Promise.resolve();
}
return globalInstance.captureMessage(message, level, extra);
}
function addBreadcrumb(message, category, level, data) {
if (!globalInstance) {
console.warn('IndexTicketing not initialized. Call init() first.');
return;
}
globalInstance.addBreadcrumb(message, category, level, data);
}
function setUser(user) {
if (!globalInstance) {
console.warn('IndexTicketing not initialized. Call init() first.');
return;
}
globalInstance.setUser(user);
}
function setTags(tags) {
if (!globalInstance) {
console.warn('IndexTicketing not initialized. Call init() first.');
return;
}
globalInstance.setTags(tags);
}
exports.BreadcrumbBuffer = BreadcrumbBuffer;
exports.IndexTicketing = IndexTicketing;
exports.IndexTicketingErrorBoundary = IndexTicketingErrorBoundary;
exports.addBreadcrumb = addBreadcrumb;
exports.captureError = captureError;
exports.captureMessage = captureMessage;
exports.default = IndexTicketing;
exports.generateFingerprint = generateFingerprint;
exports.getCurrentHub = getCurrentHub;
exports.init = init;
exports.setTags = setTags;
exports.setUser = setUser;
exports.useIndexTicketing = useIndexTicketing;
exports.withIndexTicketingErrorBoundary = withIndexTicketingErrorBoundary;
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