606 lines
16 KiB
JavaScript
606 lines
16 KiB
JavaScript
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'use strict';
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var require = function (file, cwd) {
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var resolved = require.resolve(file, cwd || '/');
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var mod = require.modules[resolved];
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if (!mod) {
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throw new Error('Failed to resolve module ' + file + ', tried ' + resolved);
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}
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var res = mod._cached ? mod._cached : mod();
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return res;
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};
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require.paths = [];
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require.modules = {};
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require.extensions = ['.js', '.coffee'];
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require._core = {
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assert: true,
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events: true,
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fs: true,
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path: true,
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vm: true
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};
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require.resolve = (function () {
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return function (x, cwd) {
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if (!cwd) { cwd = '/'; }
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if (require._core[x]) { return x; }
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var path = require.modules.path();
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cwd = path.resolve('/', cwd);
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var y = cwd || '/';
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if (x.match(/^(?:\.\.?\/|\/)/)) {
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var m = loadAsFileSync(path.resolve(y, x))
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|| loadAsDirectorySync(path.resolve(y, x));
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if (m) { return m; }
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}
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var n = loadNodeModulesSync(x, y);
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if (n) { return n; }
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throw new Error("Cannot find module '" + x + "'");
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function loadAsFileSync(x) {
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if (require.modules[x]) {
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return x;
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}
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for (var i = 0; i < require.extensions.length; i++) {
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var ext = require.extensions[i];
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if (require.modules[x + ext]) { return x + ext; }
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}
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}
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function loadAsDirectorySync(x) {
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x = x.replace(/\/+$/, '');
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var pkgfile = x + '/package.json';
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if (require.modules[pkgfile]) {
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var pkg = require.modules[pkgfile]();
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var b = pkg.browserify;
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if (typeof b === 'object' && b.main) {
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var m = loadAsFileSync(path.resolve(x, b.main));
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if (m) { return m; }
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} else if (typeof b === 'string') {
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var m = loadAsFileSync(path.resolve(x, b));
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if (m) { return m; }
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} else if (pkg.main) {
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var m = loadAsFileSync(path.resolve(x, pkg.main));
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if (m) { return m; }
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}
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}
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return loadAsFileSync(x + '/index');
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}
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function loadNodeModulesSync(x, start) {
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var dirs = nodeModulesPathsSync(start);
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for (var i = 0; i < dirs.length; i++) {
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var dir = dirs[i];
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var m = loadAsFileSync(dir + '/' + x);
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if (m) { return m; }
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var n = loadAsDirectorySync(dir + '/' + x);
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if (n) { return n; }
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}
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var m = loadAsFileSync(x);
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if (m) { return m; }
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}
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function nodeModulesPathsSync(start) {
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var parts;
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if (start === '/') { parts = ['']; } else { parts = path.normalize(start).split('/'); }
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var dirs = [];
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for (var i = parts.length - 1; i >= 0; i--) {
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if (parts[i] === 'node_modules') { continue; }
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var dir = parts.slice(0, i + 1).join('/') + '/node_modules';
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dirs.push(dir);
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}
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return dirs;
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}
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};
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}());
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require.alias = function (from, to) {
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var path = require.modules.path();
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var res = null;
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try {
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res = require.resolve(from + '/package.json', '/');
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} catch (err) {
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res = require.resolve(from, '/');
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}
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var basedir = path.dirname(res);
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var keys = (Object.keys || function (obj) {
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var res = [];
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for (var key in obj) { res.push(key); }
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return res;
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})(require.modules);
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for (var i = 0; i < keys.length; i++) {
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var key = keys[i];
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if (key.slice(0, basedir.length + 1) === basedir + '/') {
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var f = key.slice(basedir.length);
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require.modules[to + f] = require.modules[basedir + f];
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} else if (key === basedir) {
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require.modules[to] = require.modules[basedir];
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}
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}
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};
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require.define = function (filename, fn) {
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var dirname = require._core[filename]
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? ''
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: require.modules.path().dirname(filename);
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var require_ = function (file) {
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return require(file, dirname);
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};
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require_.resolve = function (name) {
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return require.resolve(name, dirname);
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};
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require_.modules = require.modules;
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require_.define = require.define;
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var module_ = { exports: {} };
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require.modules[filename] = function () {
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require.modules[filename]._cached = module_.exports;
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fn.call(
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module_.exports,
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require_,
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module_,
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module_.exports,
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dirname,
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filename
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);
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require.modules[filename]._cached = module_.exports;
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return module_.exports;
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};
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};
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if (typeof process === 'undefined') { process = {}; }
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if (!process.nextTick) {
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process.nextTick = (function () {
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var queue = [];
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var canPost = typeof window !== 'undefined'
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&& window.postMessage && window.addEventListener;
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if (canPost) {
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window.addEventListener('message', function (ev) {
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if (ev.source === window && ev.data === 'browserify-tick') {
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ev.stopPropagation();
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if (queue.length > 0) {
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var fn = queue.shift();
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fn();
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}
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}
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}, true);
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}
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return function (fn) {
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if (canPost) {
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queue.push(fn);
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window.postMessage('browserify-tick', '*');
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} else { setTimeout(fn, 0); }
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};
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}());
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}
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if (!process.title) { process.title = 'browser'; }
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if (!process.binding) {
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process.binding = function (name) {
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if (name === 'evals') { return require('vm'); }
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throw new Error('No such module');
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};
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}
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if (!process.cwd) { process.cwd = function () { return '.'; }; }
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if (!process.env) { process.env = {}; }
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if (!process.argv) { process.argv = []; }
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require.define('path', function (require, module, exports, __dirname, __filename) {
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function filter(xs, fn) {
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var res = [];
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for (var i = 0; i < xs.length; i++) {
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if (fn(xs[i], i, xs)) { res.push(xs[i]); }
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}
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return res;
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}
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// resolves . and .. elements in a path array with directory names there
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// must be no slashes, empty elements, or device names (c:\) in the array
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// (so also no leading and trailing slashes - it does not distinguish
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// relative and absolute paths)
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function normalizeArray(parts, allowAboveRoot) {
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// if the path tries to go above the root, `up` ends up > 0
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var up = 0;
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for (var i = parts.length; i >= 0; i--) {
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var last = parts[i];
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if (last == '.') {
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parts.splice(i, 1);
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} else if (last === '..') {
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parts.splice(i, 1);
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up++;
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} else if (up) {
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parts.splice(i, 1);
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up--;
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}
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}
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// if the path is allowed to go above the root, restore leading ..s
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if (allowAboveRoot) {
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for (; up--; up) {
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parts.unshift('..');
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}
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}
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return parts;
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}
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// Regex to split a filename into [*, dir, basename, ext]
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// posix version
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var splitPathRe = /^(.+\/(?!$)|\/)?((?:.+?)?(\.[^.]*)?)$/;
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// path.resolve([from ...], to)
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// posix version
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exports.resolve = function () {
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var resolvedPath = '',
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resolvedAbsolute = false;
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for (var i = arguments.length; i >= -1 && !resolvedAbsolute; i--) {
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var path = i >= 0
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? arguments[i]
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: process.cwd();
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// Skip empty and invalid entries
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if (typeof path !== 'string' || !path) {
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continue;
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}
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resolvedPath = path + '/' + resolvedPath;
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resolvedAbsolute = path.charAt(0) === '/';
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}
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// At this point the path should be resolved to a full absolute path, but
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// handle relative paths to be safe (might happen when process.cwd() fails)
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// Normalize the path
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resolvedPath = normalizeArray(filter(resolvedPath.split('/'), function (p) {
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return !!p;
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}), !resolvedAbsolute).join('/');
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return ((resolvedAbsolute ? '/' : '') + resolvedPath) || '.';
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};
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// path.normalize(path)
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// posix version
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exports.normalize = function (path) {
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var isAbsolute = path.charAt(0) === '/',
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trailingSlash = path.slice(-1) === '/';
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// Normalize the path
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path = normalizeArray(filter(path.split('/'), function (p) {
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return !!p;
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}), !isAbsolute).join('/');
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if (!path && !isAbsolute) {
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path = '.';
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}
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if (path && trailingSlash) {
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path += '/';
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}
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return (isAbsolute ? '/' : '') + path;
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};
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// posix version
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exports.join = function () {
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var paths = Array.prototype.slice.call(arguments, 0);
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return exports.normalize(filter(paths, function (p, index) {
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return p && typeof p === 'string';
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}).join('/'));
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};
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exports.dirname = function (path) {
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var dir = splitPathRe.exec(path)[1] || '';
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var isWindows = false;
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if (!dir) {
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// No dirname
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return '.';
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} else if (
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dir.length === 1
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|| (isWindows && dir.length <= 3 && dir.charAt(1) === ':')
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) {
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// It is just a slash or a drive letter with a slash
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return dir;
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}
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// It is a full dirname, strip trailing slash
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return dir.substring(0, dir.length - 1);
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};
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exports.basename = function (path, ext) {
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var f = splitPathRe.exec(path)[2] || '';
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// TODO: make this comparison case-insensitive on windows?
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if (ext && f.substr(-1 * ext.length) === ext) {
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f = f.substr(0, f.length - ext.length);
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}
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return f;
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};
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exports.extname = function (path) {
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return splitPathRe.exec(path)[3] || '';
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};
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});
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require.define('crypto', function (require, module, exports, __dirname, __filename) {
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module.exports = require('crypto-browserify');
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});
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require.define('/node_modules/crypto-browserify/package.json', function (require, module, exports, __dirname, __filename) {
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module.exports = {};
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});
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require.define('/node_modules/crypto-browserify/index.js', function (require, module, exports, __dirname, __filename) {
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var sha = require('./sha');
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var algorithms = {
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sha1: {
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hex: sha.hex_sha1,
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binary: sha.b64_sha1,
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ascii: sha.str_sha1
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}
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};
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function error() {
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var m = Array.prototype.slice.call(arguments).join(' ');
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throw new Error(m+'\nwe accept pull requests\nhttp://github.com/browserify/crypto-browserify'.join('\n'));
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}
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exports.createHash = function (alg) {
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alg = alg || 'sha1';
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if (!algorithms[alg]) { error('algorithm:', alg, 'is not yet supported'); }
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var s = '';
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_alg = algorithms[alg];
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return {
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update: function (data) {
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s += data;
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return this;
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},
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digest: function (enc) {
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enc = enc || 'binary';
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var fn;
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if (!(fn = _alg[enc])) { error('encoding:', enc, 'is not yet supported for algorithm', alg); }
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var r = fn(s);
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s = null; // not meant to use the hash after you've called digest.
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return r;
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}
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};
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}
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// the least I can do is make error messages for the rest of the node.js/crypto api.
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;[
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'createCredentials',
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'createHmac',
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'createCypher',
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'createCypheriv',
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'createDecipher',
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'createDecipheriv',
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'createSign',
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'createVerify',
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'createDeffieHellman',,
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'pbkdf2',,
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'randomBytes'
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].forEach(function (name) {
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exports[name] = function () {
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error('sorry,', name, 'is not implemented yet');
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};
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});
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});
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require.define('/node_modules/crypto-browserify/sha.js', function (require, module, exports, __dirname, __filename) {
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/*
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* A JavaScript implementation of the Secure Hash Algorithm, SHA-1, as defined
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* in FIPS PUB 180-1
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* Version 2.1a Copyright Paul Johnston 2000 - 2002.
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* Other contributors: Greg Holt, Andrew Kepert, Ydnar, Lostinet
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* Distributed under the BSD License
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* See http://pajhome.org.uk/crypt/md5 for details.
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*/
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exports.hex_sha1 = hex_sha1;
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exports.b64_sha1 = b64_sha1;
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exports.str_sha1 = str_sha1;
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exports.hex_hmac_sha1 = hex_hmac_sha1;
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exports.b64_hmac_sha1 = b64_hmac_sha1;
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exports.str_hmac_sha1 = str_hmac_sha1;
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/*
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* Configurable variables. You may need to tweak these to be compatible with
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* the server-side, but the defaults work in most cases.
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*/
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var hexcase = 0; /* hex output format. 0 - lowercase; 1 - uppercase */
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var b64pad = ''; /* base-64 pad character. "=" for strict RFC compliance */
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var chrsz = 8; /* bits per input character. 8 - ASCII; 16 - Unicode */
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/*
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* These are the functions you'll usually want to call
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* They take string arguments and return either hex or base-64 encoded strings
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*/
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function hex_sha1(s) { return binb2hex(core_sha1(str2binb(s), s.length * chrsz)); }
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function b64_sha1(s) { return binb2b64(core_sha1(str2binb(s), s.length * chrsz)); }
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function str_sha1(s) { return binb2str(core_sha1(str2binb(s), s.length * chrsz)); }
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function hex_hmac_sha1(key, data) { return binb2hex(core_hmac_sha1(key, data)); }
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function b64_hmac_sha1(key, data) { return binb2b64(core_hmac_sha1(key, data)); }
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function str_hmac_sha1(key, data) { return binb2str(core_hmac_sha1(key, data)); }
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/*
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* Perform a simple self-test to see if the VM is working
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*/
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|
function sha1_vm_test() {
|
||
|
return hex_sha1('abc') == 'a9993e364706816aba3e25717850c26c9cd0d89d';
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Calculate the SHA-1 of an array of big-endian words, and a bit length
|
||
|
*/
|
||
|
function core_sha1(x, len) {
|
||
|
/* append padding */
|
||
|
x[len >> 5] |= 0x80 << (24 - len % 32);
|
||
|
x[((len + 64 >> 9) << 4) + 15] = len;
|
||
|
|
||
|
var w = Array(80);
|
||
|
var a = 1732584193;
|
||
|
var b = -271733879;
|
||
|
var c = -1732584194;
|
||
|
var d = 271733878;
|
||
|
var e = -1009589776;
|
||
|
|
||
|
for (var i = 0; i < x.length; i += 16) {
|
||
|
var olda = a;
|
||
|
var oldb = b;
|
||
|
var oldc = c;
|
||
|
var oldd = d;
|
||
|
var olde = e;
|
||
|
|
||
|
for (var j = 0; j < 80; j++) {
|
||
|
if (j < 16) { w[j] = x[i + j]; } else { w[j] = rol(w[j - 3] ^ w[j - 8] ^ w[j - 14] ^ w[j - 16], 1); }
|
||
|
var t = safe_add(
|
||
|
safe_add(rol(a, 5), sha1_ft(j, b, c, d)),
|
||
|
safe_add(safe_add(e, w[j]), sha1_kt(j))
|
||
|
);
|
||
|
e = d;
|
||
|
d = c;
|
||
|
c = rol(b, 30);
|
||
|
b = a;
|
||
|
a = t;
|
||
|
}
|
||
|
|
||
|
a = safe_add(a, olda);
|
||
|
b = safe_add(b, oldb);
|
||
|
c = safe_add(c, oldc);
|
||
|
d = safe_add(d, oldd);
|
||
|
e = safe_add(e, olde);
|
||
|
}
|
||
|
return Array(a, b, c, d, e);
|
||
|
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Perform the appropriate triplet combination function for the current
|
||
|
* iteration
|
||
|
*/
|
||
|
function sha1_ft(t, b, c, d) {
|
||
|
if (t < 20) { return (b & c) | (~b & d); }
|
||
|
if (t < 40) { return b ^ c ^ d; }
|
||
|
if (t < 60) { return (b & c) | (b & d) | (c & d); }
|
||
|
return b ^ c ^ d;
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Determine the appropriate additive constant for the current iteration
|
||
|
*/
|
||
|
function sha1_kt(t) {
|
||
|
return t < 20 ? 1518500249 : t < 40 ? 1859775393
|
||
|
: t < 60 ? -1894007588 : -899497514;
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Calculate the HMAC-SHA1 of a key and some data
|
||
|
*/
|
||
|
function core_hmac_sha1(key, data) {
|
||
|
var bkey = str2binb(key);
|
||
|
if (bkey.length > 16) { bkey = core_sha1(bkey, key.length * chrsz); }
|
||
|
|
||
|
var ipad = Array(16),
|
||
|
opad = Array(16);
|
||
|
for (var i = 0; i < 16; i++) {
|
||
|
ipad[i] = bkey[i] ^ 0x36363636;
|
||
|
opad[i] = bkey[i] ^ 0x5C5C5C5C;
|
||
|
}
|
||
|
|
||
|
var hash = core_sha1(ipad.concat(str2binb(data)), 512 + data.length * chrsz);
|
||
|
return core_sha1(opad.concat(hash), 512 + 160);
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Add integers, wrapping at 2^32. This uses 16-bit operations internally
|
||
|
* to work around bugs in some JS interpreters.
|
||
|
*/
|
||
|
function safe_add(x, y) {
|
||
|
var lsw = (x & 0xFFFF) + (y & 0xFFFF);
|
||
|
var msw = (x >> 16) + (y >> 16) + (lsw >> 16);
|
||
|
return (msw << 16) | (lsw & 0xFFFF);
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Bitwise rotate a 32-bit number to the left.
|
||
|
*/
|
||
|
function rol(num, cnt) {
|
||
|
return (num << cnt) | (num >>> (32 - cnt));
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Convert an 8-bit or 16-bit string to an array of big-endian words
|
||
|
* In 8-bit function, characters >255 have their hi-byte silently ignored.
|
||
|
*/
|
||
|
function str2binb(str) {
|
||
|
var bin = Array();
|
||
|
var mask = (1 << chrsz) - 1;
|
||
|
for (var i = 0; i < str.length * chrsz; i += chrsz) { bin[i >> 5] |= (str.charCodeAt(i / chrsz) & mask) << (32 - chrsz - i % 32); }
|
||
|
return bin;
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Convert an array of big-endian words to a string
|
||
|
*/
|
||
|
function binb2str(bin) {
|
||
|
var str = '';
|
||
|
var mask = (1 << chrsz) - 1;
|
||
|
for (var i = 0; i < bin.length * 32; i += chrsz) { str += String.fromCharCode((bin[i >> 5] >>> (32 - chrsz - i % 32)) & mask); }
|
||
|
return str;
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Convert an array of big-endian words to a hex string.
|
||
|
*/
|
||
|
function binb2hex(binarray) {
|
||
|
var hex_tab = hexcase ? '0123456789ABCDEF' : '0123456789abcdef';
|
||
|
var str = '';
|
||
|
for (var i = 0; i < binarray.length * 4; i++) {
|
||
|
str += hex_tab.charAt((binarray[i >> 2] >> ((3 - i % 4) * 8 + 4)) & 0xF) + hex_tab.charAt((binarray[i >> 2] >> ((3 - i % 4) * 8)) & 0xF);
|
||
|
}
|
||
|
return str;
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Convert an array of big-endian words to a base-64 string
|
||
|
*/
|
||
|
function binb2b64(binarray) {
|
||
|
var tab = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/';
|
||
|
var str = '';
|
||
|
for (var i = 0; i < binarray.length * 4; i += 3) {
|
||
|
var triplet = (((binarray[i >> 2] >> 8 * (3 - i % 4)) & 0xFF) << 16) | (((binarray[i + 1 >> 2] >> 8 * (3 - (i + 1) % 4)) & 0xFF) << 8) | ((binarray[i + 2 >> 2] >> 8 * (3 - (i + 2) % 4)) & 0xFF);
|
||
|
for (var j = 0; j < 4; j++) {
|
||
|
if (i * 8 + j * 6 > binarray.length * 32) { str += b64pad; } else { str += tab.charAt((triplet >> 6 * (3 - j)) & 0x3F); }
|
||
|
}
|
||
|
}
|
||
|
return str;
|
||
|
}
|
||
|
|
||
|
});
|
||
|
|
||
|
require.define('/test.js', function (require, module, exports, __dirname, __filename) {
|
||
|
var crypto = require('crypto');
|
||
|
var abc = crypto.createHash('sha1').update('abc').digest('hex');
|
||
|
console.log(abc);
|
||
|
// require('hello').inlineCall().call2()
|
||
|
|
||
|
});
|
||
|
require('/test.js');
|