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Posted to commits@cordova.apache.org by st...@apache.org on 2017/02/22 00:07:52 UTC

[21/32] cordova-lib git commit: CB-12021 : adding cordova-browser node_modules

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/README.md
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diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/README.md b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/README.md
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+Browser-friendly inheritance fully compatible with standard node.js
+[inherits](http://nodejs.org/api/util.html#util_util_inherits_constructor_superconstructor).
+
+This package exports standard `inherits` from node.js `util` module in
+node environment, but also provides alternative browser-friendly
+implementation through [browser
+field](https://gist.github.com/shtylman/4339901). Alternative
+implementation is a literal copy of standard one located in standalone
+module to avoid requiring of `util`. It also has a shim for old
+browsers with no `Object.create` support.
+
+While keeping you sure you are using standard `inherits`
+implementation in node.js environment, it allows bundlers such as
+[browserify](https://github.com/substack/node-browserify) to not
+include full `util` package to your client code if all you need is
+just `inherits` function. It worth, because browser shim for `util`
+package is large and `inherits` is often the single function you need
+from it.
+
+It's recommended to use this package instead of
+`require('util').inherits` for any code that has chances to be used
+not only in node.js but in browser too.
+
+## usage
+
+```js
+var inherits = require('inherits');
+// then use exactly as the standard one
+```
+
+## note on version ~1.0
+
+Version ~1.0 had completely different motivation and is not compatible
+neither with 2.0 nor with standard node.js `inherits`.
+
+If you are using version ~1.0 and planning to switch to ~2.0, be
+careful:
+
+* new version uses `super_` instead of `super` for referencing
+  superclass
+* new version overwrites current prototype while old one preserves any
+  existing fields on it

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/inherits.js
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diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/inherits.js b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/inherits.js
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+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/inherits.js
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+try {
+  var util = require('util');
+  if (typeof util.inherits !== 'function') throw '';
+  module.exports = util.inherits;
+} catch (e) {
+  module.exports = require('./inherits_browser.js');
+}

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/inherits_browser.js
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diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/inherits_browser.js b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/inherits_browser.js
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--- /dev/null
+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/inherits_browser.js
@@ -0,0 +1,23 @@
+if (typeof Object.create === 'function') {
+  // implementation from standard node.js 'util' module
+  module.exports = function inherits(ctor, superCtor) {
+    ctor.super_ = superCtor
+    ctor.prototype = Object.create(superCtor.prototype, {
+      constructor: {
+        value: ctor,
+        enumerable: false,
+        writable: true,
+        configurable: true
+      }
+    });
+  };
+} else {
+  // old school shim for old browsers
+  module.exports = function inherits(ctor, superCtor) {
+    ctor.super_ = superCtor
+    var TempCtor = function () {}
+    TempCtor.prototype = superCtor.prototype
+    ctor.prototype = new TempCtor()
+    ctor.prototype.constructor = ctor
+  }
+}

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/package.json
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diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/package.json b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/package.json
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--- /dev/null
+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/inherits/package.json
@@ -0,0 +1,97 @@
+{
+  "_args": [
+    [
+      {
+        "raw": "inherits@2.0.3",
+        "scope": null,
+        "escapedName": "inherits",
+        "name": "inherits",
+        "rawSpec": "2.0.3",
+        "spec": "2.0.3",
+        "type": "version"
+      },
+      "/Users/auso/cordova/cordova-lib/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/http-errors"
+    ]
+  ],
+  "_from": "inherits@2.0.3",
+  "_id": "inherits@2.0.3",
+  "_inCache": true,
+  "_location": "/inherits",
+  "_nodeVersion": "6.5.0",
+  "_npmOperationalInternal": {
+    "host": "packages-16-east.internal.npmjs.com",
+    "tmp": "tmp/inherits-2.0.3.tgz_1473295776489_0.08142363070510328"
+  },
+  "_npmUser": {
+    "name": "isaacs",
+    "email": "i@izs.me"
+  },
+  "_npmVersion": "3.10.7",
+  "_phantomChildren": {},
+  "_requested": {
+    "raw": "inherits@2.0.3",
+    "scope": null,
+    "escapedName": "inherits",
+    "name": "inherits",
+    "rawSpec": "2.0.3",
+    "spec": "2.0.3",
+    "type": "version"
+  },
+  "_requiredBy": [
+    "/http-errors"
+  ],
+  "_resolved": "https://registry.npmjs.org/inherits/-/inherits-2.0.3.tgz",
+  "_shasum": "633c2c83e3da42a502f52466022480f4208261de",
+  "_shrinkwrap": null,
+  "_spec": "inherits@2.0.3",
+  "_where": "/Users/auso/cordova/cordova-lib/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/http-errors",
+  "browser": "./inherits_browser.js",
+  "bugs": {
+    "url": "https://github.com/isaacs/inherits/issues"
+  },
+  "dependencies": {},
+  "description": "Browser-friendly inheritance fully compatible with standard node.js inherits()",
+  "devDependencies": {
+    "tap": "^7.1.0"
+  },
+  "directories": {},
+  "dist": {
+    "shasum": "633c2c83e3da42a502f52466022480f4208261de",
+    "tarball": "https://registry.npmjs.org/inherits/-/inherits-2.0.3.tgz"
+  },
+  "files": [
+    "inherits.js",
+    "inherits_browser.js"
+  ],
+  "gitHead": "e05d0fb27c61a3ec687214f0476386b765364d5f",
+  "homepage": "https://github.com/isaacs/inherits#readme",
+  "keywords": [
+    "inheritance",
+    "class",
+    "klass",
+    "oop",
+    "object-oriented",
+    "inherits",
+    "browser",
+    "browserify"
+  ],
+  "license": "ISC",
+  "main": "./inherits.js",
+  "maintainers": [
+    {
+      "name": "isaacs",
+      "email": "i@izs.me"
+    }
+  ],
+  "name": "inherits",
+  "optionalDependencies": {},
+  "readme": "ERROR: No README data found!",
+  "repository": {
+    "type": "git",
+    "url": "git://github.com/isaacs/inherits.git"
+  },
+  "scripts": {
+    "test": "node test"
+  },
+  "version": "2.0.3"
+}

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/.npmignore
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diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/.npmignore b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/.npmignore
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+.idea
+node_modules

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/.travis.yml
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diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/.travis.yml b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/.travis.yml
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+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/.travis.yml
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+language: node_js
+
+node_js:
+  - "0.10"
+  - "0.11"
+  - "0.12"
+  - "4.0"
+  - "4.1"
+  - "4.2"
+  - "5"

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/Cakefile
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diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/Cakefile b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/Cakefile
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+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/Cakefile
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+fs           = require 'fs'
+CoffeeScript = require 'coffee-script'
+nodeunit     = require 'nodeunit'
+UglifyJS     = require 'uglify-js'
+
+task 'build', 'build the JavaScript files from CoffeeScript source', build = (cb) ->
+  source = fs.readFileSync 'src/ipaddr.coffee'
+  fs.writeFileSync 'lib/ipaddr.js', CoffeeScript.compile source.toString()
+
+  invoke 'test'
+  invoke 'compress'
+
+task 'test', 'run the bundled tests', (cb) ->
+  nodeunit.reporters.default.run ['test']
+
+task 'compress', 'uglify the resulting javascript', (cb) ->
+  result = UglifyJS.minify('lib/ipaddr.js')
+  fs.writeFileSync('ipaddr.min.js', result.code)

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/LICENSE
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diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/LICENSE b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/LICENSE
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+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/LICENSE
@@ -0,0 +1,19 @@
+Copyright (C) 2011 Peter Zotov <wh...@whitequark.org>
+
+Permission is hereby granted, free of charge, to any person obtaining a copy
+of this software and associated documentation files (the "Software"), to deal
+in the Software without restriction, including without limitation the rights
+to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
+copies of the Software, and to permit persons to whom the Software is
+furnished to do so, subject to the following conditions:
+
+The above copyright notice and this permission notice shall be included in
+all copies or substantial portions of the Software.
+
+THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
+AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
+LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
+OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
+THE SOFTWARE.
\ No newline at end of file

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/README.md
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diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/README.md b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/README.md
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+# ipaddr.js \u2014 an IPv6 and IPv4 address manipulation library [![Build Status](https://travis-ci.org/whitequark/ipaddr.js.svg)](https://travis-ci.org/whitequark/ipaddr.js)
+
+ipaddr.js is a small (1.9K minified and gzipped) library for manipulating
+IP addresses in JavaScript environments. It runs on both CommonJS runtimes
+(e.g. [nodejs]) and in a web browser.
+
+ipaddr.js allows you to verify and parse string representation of an IP
+address, match it against a CIDR range or range list, determine if it falls
+into some reserved ranges (examples include loopback and private ranges),
+and convert between IPv4 and IPv4-mapped IPv6 addresses.
+
+[nodejs]: http://nodejs.org
+
+## Installation
+
+`npm install ipaddr.js`
+
+or
+
+`bower install ipaddr.js`
+
+## API
+
+ipaddr.js defines one object in the global scope: `ipaddr`. In CommonJS,
+it is exported from the module:
+
+```js
+var ipaddr = require('ipaddr.js');
+```
+
+The API consists of several global methods and two classes: ipaddr.IPv6 and ipaddr.IPv4.
+
+### Global methods
+
+There are three global methods defined: `ipaddr.isValid`, `ipaddr.parse` and
+`ipaddr.process`. All of them receive a string as a single parameter.
+
+The `ipaddr.isValid` method returns `true` if the address is a valid IPv4 or
+IPv6 address, and `false` otherwise. It does not throw any exceptions.
+
+The `ipaddr.parse` method returns an object representing the IP address,
+or throws an `Error` if the passed string is not a valid representation of an
+IP address.
+
+The `ipaddr.process` method works just like the `ipaddr.parse` one, but it
+automatically converts IPv4-mapped IPv6 addresses to their IPv4 couterparts
+before returning. It is useful when you have a Node.js instance listening
+on an IPv6 socket, and the `net.ivp6.bindv6only` sysctl parameter (or its
+equivalent on non-Linux OS) is set to 0. In this case, you can accept IPv4
+connections on your IPv6-only socket, but the remote address will be mangled.
+Use `ipaddr.process` method to automatically demangle it.
+
+### Object representation
+
+Parsing methods return an object which descends from `ipaddr.IPv6` or
+`ipaddr.IPv4`. These objects share some properties, but most of them differ.
+
+#### Shared properties
+
+One can determine the type of address by calling `addr.kind()`. It will return
+either `"ipv6"` or `"ipv4"`.
+
+An address can be converted back to its string representation with `addr.toString()`.
+Note that this method:
+ * does not return the original string used to create the object (in fact, there is
+   no way of getting that string)
+ * returns a compact representation (when it is applicable)
+
+A `match(range, bits)` method can be used to check if the address falls into a
+certain CIDR range.
+Note that an address can be (obviously) matched only against an address of the same type.
+
+For example:
+
+```js
+var addr = ipaddr.parse("2001:db8:1234::1");
+var range = ipaddr.parse("2001:db8::");
+
+addr.match(range, 32); // => true
+```
+
+Alternatively, `match` can also be called as `match([range, bits])`. In this way,
+it can be used together with the `parseCIDR(string)` method, which parses an IP
+address together with a CIDR range.
+
+For example:
+
+```js
+var addr = ipaddr.parse("2001:db8:1234::1");
+
+addr.match(ipaddr.parseCIDR("2001:db8::/32")); // => true
+```
+
+A `range()` method returns one of predefined names for several special ranges defined
+by IP protocols. The exact names (and their respective CIDR ranges) can be looked up
+in the source: [IPv6 ranges] and [IPv4 ranges]. Some common ones include `"unicast"`
+(the default one) and `"reserved"`.
+
+You can match against your own range list by using
+`ipaddr.subnetMatch(address, rangeList, defaultName)` method. It can work with both
+IPv6 and IPv4 addresses, and accepts a name-to-subnet map as the range list. For example:
+
+```js
+var rangeList = {
+  documentationOnly: [ ipaddr.parse('2001:db8::'), 32 ],
+  tunnelProviders: [
+    [ ipaddr.parse('2001:470::'), 32 ], // he.net
+    [ ipaddr.parse('2001:5c0::'), 32 ]  // freenet6
+  ]
+};
+ipaddr.subnetMatch(ipaddr.parse('2001:470:8:66::1'), rangeList, 'unknown'); // => "he.net"
+```
+
+The addresses can be converted to their byte representation with `toByteArray()`.
+(Actually, JavaScript mostly does not know about byte buffers. They are emulated with
+arrays of numbers, each in range of 0..255.)
+
+```js
+var bytes = ipaddr.parse('2a00:1450:8007::68').toByteArray(); // ipv6.google.com
+bytes // => [42, 0x00, 0x14, 0x50, 0x80, 0x07, 0x00, <zeroes...>, 0x00, 0x68 ]
+```
+
+The `ipaddr.IPv4` and `ipaddr.IPv6` objects have some methods defined, too. All of them
+have the same interface for both protocols, and are similar to global methods.
+
+`ipaddr.IPvX.isValid(string)` can be used to check if the string is a valid address
+for particular protocol, and `ipaddr.IPvX.parse(string)` is the error-throwing parser.
+
+`ipaddr.IPvX.isValid(string)` uses the same format for parsing as the POSIX `inet_ntoa` function, which accepts unusual formats like `0xc0.168.1.1` or `0x10000000`. The function `ipaddr.IPv4.isValidFourPartDecimal(string)` validates the IPv4 address and also ensures that it is written in four-part decimal format.
+
+[IPv6 ranges]: https://github.com/whitequark/ipaddr.js/blob/master/src/ipaddr.coffee#L186
+[IPv4 ranges]: https://github.com/whitequark/ipaddr.js/blob/master/src/ipaddr.coffee#L71
+
+#### IPv6 properties
+
+Sometimes you will want to convert IPv6 not to a compact string representation (with
+the `::` substitution); the `toNormalizedString()` method will return an address where
+all zeroes are explicit.
+
+For example:
+
+```js
+var addr = ipaddr.parse("2001:0db8::0001");
+addr.toString(); // => "2001:db8::1"
+addr.toNormalizedString(); // => "2001:db8:0:0:0:0:0:1"
+```
+
+The `isIPv4MappedAddress()` method will return `true` if this address is an IPv4-mapped
+one, and `toIPv4Address()` will return an IPv4 object address.
+
+To access the underlying binary representation of the address, use `addr.parts`.
+
+```js
+var addr = ipaddr.parse("2001:db8:10::1234:DEAD");
+addr.parts // => [0x2001, 0xdb8, 0x10, 0, 0, 0, 0x1234, 0xdead]
+```
+
+#### IPv4 properties
+
+`toIPv4MappedAddress()` will return a corresponding IPv4-mapped IPv6 address.
+
+To access the underlying representation of the address, use `addr.octets`.
+
+```js
+var addr = ipaddr.parse("192.168.1.1");
+addr.octets // => [192, 168, 1, 1]
+```
+
+`prefixLengthFromSubnetMask()` will return a CIDR prefix length for a valid IPv4 netmask or
+false if the netmask is not valid.
+
+```js
+ipaddr.IPv4.parse('255.255.255.240').prefixLengthFromSubnetMask() == 28
+ipaddr.IPv4.parse('255.192.164.0').prefixLengthFromSubnetMask()  == null
+```
+
+#### Conversion
+
+IPv4 and IPv6 can be converted bidirectionally to and from network byte order (MSB) byte arrays.
+
+The `fromByteArray()` method will take an array and create an appropriate IPv4 or IPv6 object
+if the input satisfies the requirements. For IPv4 it has to be an array of four 8-bit values,
+while for IPv6 it has to be an array of sixteen 8-bit values.
+
+For example:
+```js
+var addr = ipaddr.fromByteArray([0x7f, 0, 0, 1]);
+addr.toString(); // => "127.0.0.1"
+```
+
+or
+
+```js
+var addr = ipaddr.fromByteArray([0x20, 1, 0xd, 0xb8, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1])
+addr.toString(); // => "2001:db8::1"
+```
+
+Both objects also offer a `toByteArray()` method, which returns an array in network byte order (MSB).
+
+For example:
+```js
+var addr = ipaddr.parse("127.0.0.1");
+addr.toByteArray(); // => [0x7f, 0, 0, 1]
+```
+
+or
+
+```js
+var addr = ipaddr.parse("2001:db8::1");
+addr.toByteArray(); // => [0x20, 1, 0xd, 0xb8, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1]
+```

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/bower.json
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diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/bower.json b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/bower.json
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@@ -0,0 +1,29 @@
+{
+  "name": "ipaddr.js",
+  "version": "1.2.0",
+  "homepage": "https://github.com/whitequark/ipaddr.js",
+  "authors": [
+    "whitequark <wh...@whitequark.org>"
+  ],
+  "description": "IP address manipulation library in JavaScript (CoffeeScript, actually)",
+  "main": "lib/ipaddr.js",
+  "moduleType": [
+    "globals",
+    "node"
+  ],
+  "keywords": [
+    "javscript",
+    "ip",
+    "address",
+    "ipv4",
+    "ipv6"
+  ],
+  "license": "MIT",
+  "ignore": [
+    "**/.*",
+    "node_modules",
+    "bower_components",
+    "test",
+    "tests"
+  ]
+}

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/ipaddr.min.js
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diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/ipaddr.min.js b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/ipaddr.min.js
new file mode 100644
index 0000000..803ff95
--- /dev/null
+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/ipaddr.min.js
@@ -0,0 +1 @@
+(function(){var r,t,n,e,i,o,a,s;t={},s=this,"undefined"!=typeof module&&null!==module&&module.exports?module.exports=t:s.ipaddr=t,a=function(r,t,n,e){var i,o;if(r.length!==t.length)throw new Error("ipaddr: cannot match CIDR for objects with different lengths");for(i=0;e>0;){if(o=n-e,o<0&&(o=0),r[i]>>o!==t[i]>>o)return!1;e-=n,i+=1}return!0},t.subnetMatch=function(r,t,n){var e,i,o,a,s;null==n&&(n="unicast");for(e in t)for(i=t[e],!i[0]||i[0]instanceof Array||(i=[i]),a=0,s=i.length;a<s;a++)if(o=i[a],r.match.apply(r,o))return e;return n},t.IPv4=function(){function r(r){var t,n,e;if(4!==r.length)throw new Error("ipaddr: ipv4 octet count should be 4");for(n=0,e=r.length;n<e;n++)if(t=r[n],!(0<=t&&t<=255))throw new Error("ipaddr: ipv4 octet should fit in 8 bits");this.octets=r}return r.prototype.kind=function(){return"ipv4"},r.prototype.toString=function(){return this.octets.join(".")},r.prototype.toByteArray=function(){return this.octets.slice(0)},r.prototype.match=function(r,t){var n;if(vo
 id 0===t&&(n=r,r=n[0],t=n[1]),"ipv4"!==r.kind())throw new Error("ipaddr: cannot match ipv4 address with non-ipv4 one");return a(this.octets,r.octets,8,t)},r.prototype.SpecialRanges={unspecified:[[new r([0,0,0,0]),8]],broadcast:[[new r([255,255,255,255]),32]],multicast:[[new r([224,0,0,0]),4]],linkLocal:[[new r([169,254,0,0]),16]],loopback:[[new r([127,0,0,0]),8]],private:[[new r([10,0,0,0]),8],[new r([172,16,0,0]),12],[new r([192,168,0,0]),16]],reserved:[[new r([192,0,0,0]),24],[new r([192,0,2,0]),24],[new r([192,88,99,0]),24],[new r([198,51,100,0]),24],[new r([203,0,113,0]),24],[new r([240,0,0,0]),4]]},r.prototype.range=function(){return t.subnetMatch(this,this.SpecialRanges)},r.prototype.toIPv4MappedAddress=function(){return t.IPv6.parse("::ffff:"+this.toString())},r.prototype.prefixLengthFromSubnetMask=function(){var r,t,n,e,i,o,a;for(o={0:8,128:7,192:6,224:5,240:4,248:3,252:2,254:1,255:0},r=0,e=!1,t=a=3;a>=0;t=a+=-1){if(n=this.octets[t],!(n in o))return null;if(i=o[n],e&&0!==i)r
 eturn null;8!==i&&(e=!0),r+=i}return 32-r},r}(),n="(0?\\d+|0x[a-f0-9]+)",e={fourOctet:new RegExp("^"+n+"\\."+n+"\\."+n+"\\."+n+"$","i"),longValue:new RegExp("^"+n+"$","i")},t.IPv4.parser=function(r){var t,n,i,o,a;if(n=function(r){return"0"===r[0]&&"x"!==r[1]?parseInt(r,8):parseInt(r)},t=r.match(e.fourOctet))return function(){var r,e,o,a;for(o=t.slice(1,6),a=[],r=0,e=o.length;r<e;r++)i=o[r],a.push(n(i));return a}();if(t=r.match(e.longValue)){if(a=n(t[1]),a>4294967295||a<0)throw new Error("ipaddr: address outside defined range");return function(){var r,t;for(t=[],o=r=0;r<=24;o=r+=8)t.push(a>>o&255);return t}().reverse()}return null},t.IPv6=function(){function r(r){var t,n,e,i,o,a;if(16===r.length)for(this.parts=[],t=e=0;e<=14;t=e+=2)this.parts.push(r[t]<<8|r[t+1]);else{if(8!==r.length)throw new Error("ipaddr: ipv6 part count should be 8 or 16");this.parts=r}for(a=this.parts,i=0,o=a.length;i<o;i++)if(n=a[i],!(0<=n&&n<=65535))throw new Error("ipaddr: ipv6 part should fit in 16 bits")}re
 turn r.prototype.kind=function(){return"ipv6"},r.prototype.toString=function(){var r,t,n,e,i,o,a;for(i=function(){var r,n,e,i;for(e=this.parts,i=[],r=0,n=e.length;r<n;r++)t=e[r],i.push(t.toString(16));return i}.call(this),r=[],n=function(t){return r.push(t)},e=0,o=0,a=i.length;o<a;o++)switch(t=i[o],e){case 0:n("0"===t?"":t),e=1;break;case 1:"0"===t?e=2:n(t);break;case 2:"0"!==t&&(n(""),n(t),e=3);break;case 3:n(t)}return 2===e&&(n(""),n("")),r.join(":")},r.prototype.toByteArray=function(){var r,t,n,e,i;for(r=[],i=this.parts,n=0,e=i.length;n<e;n++)t=i[n],r.push(t>>8),r.push(255&t);return r},r.prototype.toNormalizedString=function(){var r;return function(){var t,n,e,i;for(e=this.parts,i=[],t=0,n=e.length;t<n;t++)r=e[t],i.push(r.toString(16));return i}.call(this).join(":")},r.prototype.match=function(r,t){var n;if(void 0===t&&(n=r,r=n[0],t=n[1]),"ipv6"!==r.kind())throw new Error("ipaddr: cannot match ipv6 address with non-ipv6 one");return a(this.parts,r.parts,16,t)},r.prototype.Special
 Ranges={unspecified:[new r([0,0,0,0,0,0,0,0]),128],linkLocal:[new r([65152,0,0,0,0,0,0,0]),10],multicast:[new r([65280,0,0,0,0,0,0,0]),8],loopback:[new r([0,0,0,0,0,0,0,1]),128],uniqueLocal:[new r([64512,0,0,0,0,0,0,0]),7],ipv4Mapped:[new r([0,0,0,0,0,65535,0,0]),96],rfc6145:[new r([0,0,0,0,65535,0,0,0]),96],rfc6052:[new r([100,65435,0,0,0,0,0,0]),96],"6to4":[new r([8194,0,0,0,0,0,0,0]),16],teredo:[new r([8193,0,0,0,0,0,0,0]),32],reserved:[[new r([8193,3512,0,0,0,0,0,0]),32]]},r.prototype.range=function(){return t.subnetMatch(this,this.SpecialRanges)},r.prototype.isIPv4MappedAddress=function(){return"ipv4Mapped"===this.range()},r.prototype.toIPv4Address=function(){var r,n,e;if(!this.isIPv4MappedAddress())throw new Error("ipaddr: trying to convert a generic ipv6 address to ipv4");return e=this.parts.slice(-2),r=e[0],n=e[1],new t.IPv4([r>>8,255&r,n>>8,255&n])},r}(),i="(?:[0-9a-f]+::?)+",o={native:new RegExp("^(::)?("+i+")?([0-9a-f]+)?(::)?$","i"),transitional:new RegExp("^((?:"+i+")|(
 ?:::)(?:"+i+")?)"+(""+n+"\\."+n+"\\."+n+"\\."+n+"$"),"i")},r=function(r,t){var n,e,i,o,a;if(r.indexOf("::")!==r.lastIndexOf("::"))return null;for(n=0,e=-1;(e=r.indexOf(":",e+1))>=0;)n++;if("::"===r.substr(0,2)&&n--,"::"===r.substr(-2,2)&&n--,n>t)return null;for(a=t-n,o=":";a--;)o+="0:";return r=r.replace("::",o),":"===r[0]&&(r=r.slice(1)),":"===r[r.length-1]&&(r=r.slice(0,-1)),function(){var t,n,e,o;for(e=r.split(":"),o=[],t=0,n=e.length;t<n;t++)i=e[t],o.push(parseInt(i,16));return o}()},t.IPv6.parser=function(t){var n,e,i,a,s,p;if(t.match(o.native))return r(t,8);if((n=t.match(o.transitional))&&(a=r(n[1].slice(0,-1),6))){for(i=[parseInt(n[2]),parseInt(n[3]),parseInt(n[4]),parseInt(n[5])],s=0,p=i.length;s<p;s++)if(e=i[s],!(0<=e&&e<=255))return null;return a.push(i[0]<<8|i[1]),a.push(i[2]<<8|i[3]),a}return null},t.IPv4.isIPv4=t.IPv6.isIPv6=function(r){return null!==this.parser(r)},t.IPv4.isValid=function(r){var t;try{return new this(this.parser(r)),!0}catch(r){return t=r,!1}},t.IPv4.i
 sValidFourPartDecimal=function(r){return!(!t.IPv4.isValid(r)||!r.match(/^\d+(\.\d+){3}$/))},t.IPv6.isValid=function(r){var t;if("string"==typeof r&&r.indexOf(":")===-1)return!1;try{return new this(this.parser(r)),!0}catch(r){return t=r,!1}},t.IPv4.parse=t.IPv6.parse=function(r){var t;if(t=this.parser(r),null===t)throw new Error("ipaddr: string is not formatted like ip address");return new this(t)},t.IPv4.parseCIDR=function(r){var t,n;if((n=r.match(/^(.+)\/(\d+)$/))&&(t=parseInt(n[2]),t>=0&&t<=32))return[this.parse(n[1]),t];throw new Error("ipaddr: string is not formatted like an IPv4 CIDR range")},t.IPv6.parseCIDR=function(r){var t,n;if((n=r.match(/^(.+)\/(\d+)$/))&&(t=parseInt(n[2]),t>=0&&t<=128))return[this.parse(n[1]),t];throw new Error("ipaddr: string is not formatted like an IPv6 CIDR range")},t.isValid=function(r){return t.IPv6.isValid(r)||t.IPv4.isValid(r)},t.parse=function(r){if(t.IPv6.isValid(r))return t.IPv6.parse(r);if(t.IPv4.isValid(r))return t.IPv4.parse(r);throw new Er
 ror("ipaddr: the address has neither IPv6 nor IPv4 format")},t.parseCIDR=function(r){var n;try{return t.IPv6.parseCIDR(r)}catch(e){n=e;try{return t.IPv4.parseCIDR(r)}catch(r){throw n=r,new Error("ipaddr: the address has neither IPv6 nor IPv4 CIDR format")}}},t.fromByteArray=function(r){var n;if(n=r.length,4===n)return new t.IPv4(r);if(16===n)return new t.IPv6(r);throw new Error("ipaddr: the binary input is neither an IPv6 nor IPv4 address")},t.process=function(r){var t;return t=this.parse(r),"ipv6"===t.kind()&&t.isIPv4MappedAddress()?t.toIPv4Address():t}}).call(this);
\ No newline at end of file

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/lib/ipaddr.js
----------------------------------------------------------------------
diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/lib/ipaddr.js b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/lib/ipaddr.js
new file mode 100644
index 0000000..0b3e7b3
--- /dev/null
+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/lib/ipaddr.js
@@ -0,0 +1,534 @@
+(function() {
+  var expandIPv6, ipaddr, ipv4Part, ipv4Regexes, ipv6Part, ipv6Regexes, matchCIDR, root;
+
+  ipaddr = {};
+
+  root = this;
+
+  if ((typeof module !== "undefined" && module !== null) && module.exports) {
+    module.exports = ipaddr;
+  } else {
+    root['ipaddr'] = ipaddr;
+  }
+
+  matchCIDR = function(first, second, partSize, cidrBits) {
+    var part, shift;
+    if (first.length !== second.length) {
+      throw new Error("ipaddr: cannot match CIDR for objects with different lengths");
+    }
+    part = 0;
+    while (cidrBits > 0) {
+      shift = partSize - cidrBits;
+      if (shift < 0) {
+        shift = 0;
+      }
+      if (first[part] >> shift !== second[part] >> shift) {
+        return false;
+      }
+      cidrBits -= partSize;
+      part += 1;
+    }
+    return true;
+  };
+
+  ipaddr.subnetMatch = function(address, rangeList, defaultName) {
+    var rangeName, rangeSubnets, subnet, _i, _len;
+    if (defaultName == null) {
+      defaultName = 'unicast';
+    }
+    for (rangeName in rangeList) {
+      rangeSubnets = rangeList[rangeName];
+      if (rangeSubnets[0] && !(rangeSubnets[0] instanceof Array)) {
+        rangeSubnets = [rangeSubnets];
+      }
+      for (_i = 0, _len = rangeSubnets.length; _i < _len; _i++) {
+        subnet = rangeSubnets[_i];
+        if (address.match.apply(address, subnet)) {
+          return rangeName;
+        }
+      }
+    }
+    return defaultName;
+  };
+
+  ipaddr.IPv4 = (function() {
+    function IPv4(octets) {
+      var octet, _i, _len;
+      if (octets.length !== 4) {
+        throw new Error("ipaddr: ipv4 octet count should be 4");
+      }
+      for (_i = 0, _len = octets.length; _i < _len; _i++) {
+        octet = octets[_i];
+        if (!((0 <= octet && octet <= 255))) {
+          throw new Error("ipaddr: ipv4 octet should fit in 8 bits");
+        }
+      }
+      this.octets = octets;
+    }
+
+    IPv4.prototype.kind = function() {
+      return 'ipv4';
+    };
+
+    IPv4.prototype.toString = function() {
+      return this.octets.join(".");
+    };
+
+    IPv4.prototype.toByteArray = function() {
+      return this.octets.slice(0);
+    };
+
+    IPv4.prototype.match = function(other, cidrRange) {
+      var _ref;
+      if (cidrRange === void 0) {
+        _ref = other, other = _ref[0], cidrRange = _ref[1];
+      }
+      if (other.kind() !== 'ipv4') {
+        throw new Error("ipaddr: cannot match ipv4 address with non-ipv4 one");
+      }
+      return matchCIDR(this.octets, other.octets, 8, cidrRange);
+    };
+
+    IPv4.prototype.SpecialRanges = {
+      unspecified: [[new IPv4([0, 0, 0, 0]), 8]],
+      broadcast: [[new IPv4([255, 255, 255, 255]), 32]],
+      multicast: [[new IPv4([224, 0, 0, 0]), 4]],
+      linkLocal: [[new IPv4([169, 254, 0, 0]), 16]],
+      loopback: [[new IPv4([127, 0, 0, 0]), 8]],
+      "private": [[new IPv4([10, 0, 0, 0]), 8], [new IPv4([172, 16, 0, 0]), 12], [new IPv4([192, 168, 0, 0]), 16]],
+      reserved: [[new IPv4([192, 0, 0, 0]), 24], [new IPv4([192, 0, 2, 0]), 24], [new IPv4([192, 88, 99, 0]), 24], [new IPv4([198, 51, 100, 0]), 24], [new IPv4([203, 0, 113, 0]), 24], [new IPv4([240, 0, 0, 0]), 4]]
+    };
+
+    IPv4.prototype.range = function() {
+      return ipaddr.subnetMatch(this, this.SpecialRanges);
+    };
+
+    IPv4.prototype.toIPv4MappedAddress = function() {
+      return ipaddr.IPv6.parse("::ffff:" + (this.toString()));
+    };
+
+    IPv4.prototype.prefixLengthFromSubnetMask = function() {
+      var cidr, i, octet, stop, zeros, zerotable, _i;
+      zerotable = {
+        0: 8,
+        128: 7,
+        192: 6,
+        224: 5,
+        240: 4,
+        248: 3,
+        252: 2,
+        254: 1,
+        255: 0
+      };
+      cidr = 0;
+      stop = false;
+      for (i = _i = 3; _i >= 0; i = _i += -1) {
+        octet = this.octets[i];
+        if (octet in zerotable) {
+          zeros = zerotable[octet];
+          if (stop && zeros !== 0) {
+            return null;
+          }
+          if (zeros !== 8) {
+            stop = true;
+          }
+          cidr += zeros;
+        } else {
+          return null;
+        }
+      }
+      return 32 - cidr;
+    };
+
+    return IPv4;
+
+  })();
+
+  ipv4Part = "(0?\\d+|0x[a-f0-9]+)";
+
+  ipv4Regexes = {
+    fourOctet: new RegExp("^" + ipv4Part + "\\." + ipv4Part + "\\." + ipv4Part + "\\." + ipv4Part + "$", 'i'),
+    longValue: new RegExp("^" + ipv4Part + "$", 'i')
+  };
+
+  ipaddr.IPv4.parser = function(string) {
+    var match, parseIntAuto, part, shift, value;
+    parseIntAuto = function(string) {
+      if (string[0] === "0" && string[1] !== "x") {
+        return parseInt(string, 8);
+      } else {
+        return parseInt(string);
+      }
+    };
+    if (match = string.match(ipv4Regexes.fourOctet)) {
+      return (function() {
+        var _i, _len, _ref, _results;
+        _ref = match.slice(1, 6);
+        _results = [];
+        for (_i = 0, _len = _ref.length; _i < _len; _i++) {
+          part = _ref[_i];
+          _results.push(parseIntAuto(part));
+        }
+        return _results;
+      })();
+    } else if (match = string.match(ipv4Regexes.longValue)) {
+      value = parseIntAuto(match[1]);
+      if (value > 0xffffffff || value < 0) {
+        throw new Error("ipaddr: address outside defined range");
+      }
+      return ((function() {
+        var _i, _results;
+        _results = [];
+        for (shift = _i = 0; _i <= 24; shift = _i += 8) {
+          _results.push((value >> shift) & 0xff);
+        }
+        return _results;
+      })()).reverse();
+    } else {
+      return null;
+    }
+  };
+
+  ipaddr.IPv6 = (function() {
+    function IPv6(parts) {
+      var i, part, _i, _j, _len, _ref;
+      if (parts.length === 16) {
+        this.parts = [];
+        for (i = _i = 0; _i <= 14; i = _i += 2) {
+          this.parts.push((parts[i] << 8) | parts[i + 1]);
+        }
+      } else if (parts.length === 8) {
+        this.parts = parts;
+      } else {
+        throw new Error("ipaddr: ipv6 part count should be 8 or 16");
+      }
+      _ref = this.parts;
+      for (_j = 0, _len = _ref.length; _j < _len; _j++) {
+        part = _ref[_j];
+        if (!((0 <= part && part <= 0xffff))) {
+          throw new Error("ipaddr: ipv6 part should fit in 16 bits");
+        }
+      }
+    }
+
+    IPv6.prototype.kind = function() {
+      return 'ipv6';
+    };
+
+    IPv6.prototype.toString = function() {
+      var compactStringParts, part, pushPart, state, stringParts, _i, _len;
+      stringParts = (function() {
+        var _i, _len, _ref, _results;
+        _ref = this.parts;
+        _results = [];
+        for (_i = 0, _len = _ref.length; _i < _len; _i++) {
+          part = _ref[_i];
+          _results.push(part.toString(16));
+        }
+        return _results;
+      }).call(this);
+      compactStringParts = [];
+      pushPart = function(part) {
+        return compactStringParts.push(part);
+      };
+      state = 0;
+      for (_i = 0, _len = stringParts.length; _i < _len; _i++) {
+        part = stringParts[_i];
+        switch (state) {
+          case 0:
+            if (part === '0') {
+              pushPart('');
+            } else {
+              pushPart(part);
+            }
+            state = 1;
+            break;
+          case 1:
+            if (part === '0') {
+              state = 2;
+            } else {
+              pushPart(part);
+            }
+            break;
+          case 2:
+            if (part !== '0') {
+              pushPart('');
+              pushPart(part);
+              state = 3;
+            }
+            break;
+          case 3:
+            pushPart(part);
+        }
+      }
+      if (state === 2) {
+        pushPart('');
+        pushPart('');
+      }
+      return compactStringParts.join(":");
+    };
+
+    IPv6.prototype.toByteArray = function() {
+      var bytes, part, _i, _len, _ref;
+      bytes = [];
+      _ref = this.parts;
+      for (_i = 0, _len = _ref.length; _i < _len; _i++) {
+        part = _ref[_i];
+        bytes.push(part >> 8);
+        bytes.push(part & 0xff);
+      }
+      return bytes;
+    };
+
+    IPv6.prototype.toNormalizedString = function() {
+      var part;
+      return ((function() {
+        var _i, _len, _ref, _results;
+        _ref = this.parts;
+        _results = [];
+        for (_i = 0, _len = _ref.length; _i < _len; _i++) {
+          part = _ref[_i];
+          _results.push(part.toString(16));
+        }
+        return _results;
+      }).call(this)).join(":");
+    };
+
+    IPv6.prototype.match = function(other, cidrRange) {
+      var _ref;
+      if (cidrRange === void 0) {
+        _ref = other, other = _ref[0], cidrRange = _ref[1];
+      }
+      if (other.kind() !== 'ipv6') {
+        throw new Error("ipaddr: cannot match ipv6 address with non-ipv6 one");
+      }
+      return matchCIDR(this.parts, other.parts, 16, cidrRange);
+    };
+
+    IPv6.prototype.SpecialRanges = {
+      unspecified: [new IPv6([0, 0, 0, 0, 0, 0, 0, 0]), 128],
+      linkLocal: [new IPv6([0xfe80, 0, 0, 0, 0, 0, 0, 0]), 10],
+      multicast: [new IPv6([0xff00, 0, 0, 0, 0, 0, 0, 0]), 8],
+      loopback: [new IPv6([0, 0, 0, 0, 0, 0, 0, 1]), 128],
+      uniqueLocal: [new IPv6([0xfc00, 0, 0, 0, 0, 0, 0, 0]), 7],
+      ipv4Mapped: [new IPv6([0, 0, 0, 0, 0, 0xffff, 0, 0]), 96],
+      rfc6145: [new IPv6([0, 0, 0, 0, 0xffff, 0, 0, 0]), 96],
+      rfc6052: [new IPv6([0x64, 0xff9b, 0, 0, 0, 0, 0, 0]), 96],
+      '6to4': [new IPv6([0x2002, 0, 0, 0, 0, 0, 0, 0]), 16],
+      teredo: [new IPv6([0x2001, 0, 0, 0, 0, 0, 0, 0]), 32],
+      reserved: [[new IPv6([0x2001, 0xdb8, 0, 0, 0, 0, 0, 0]), 32]]
+    };
+
+    IPv6.prototype.range = function() {
+      return ipaddr.subnetMatch(this, this.SpecialRanges);
+    };
+
+    IPv6.prototype.isIPv4MappedAddress = function() {
+      return this.range() === 'ipv4Mapped';
+    };
+
+    IPv6.prototype.toIPv4Address = function() {
+      var high, low, _ref;
+      if (!this.isIPv4MappedAddress()) {
+        throw new Error("ipaddr: trying to convert a generic ipv6 address to ipv4");
+      }
+      _ref = this.parts.slice(-2), high = _ref[0], low = _ref[1];
+      return new ipaddr.IPv4([high >> 8, high & 0xff, low >> 8, low & 0xff]);
+    };
+
+    return IPv6;
+
+  })();
+
+  ipv6Part = "(?:[0-9a-f]+::?)+";
+
+  ipv6Regexes = {
+    "native": new RegExp("^(::)?(" + ipv6Part + ")?([0-9a-f]+)?(::)?$", 'i'),
+    transitional: new RegExp(("^((?:" + ipv6Part + ")|(?:::)(?:" + ipv6Part + ")?)") + ("" + ipv4Part + "\\." + ipv4Part + "\\." + ipv4Part + "\\." + ipv4Part + "$"), 'i')
+  };
+
+  expandIPv6 = function(string, parts) {
+    var colonCount, lastColon, part, replacement, replacementCount;
+    if (string.indexOf('::') !== string.lastIndexOf('::')) {
+      return null;
+    }
+    colonCount = 0;
+    lastColon = -1;
+    while ((lastColon = string.indexOf(':', lastColon + 1)) >= 0) {
+      colonCount++;
+    }
+    if (string.substr(0, 2) === '::') {
+      colonCount--;
+    }
+    if (string.substr(-2, 2) === '::') {
+      colonCount--;
+    }
+    if (colonCount > parts) {
+      return null;
+    }
+    replacementCount = parts - colonCount;
+    replacement = ':';
+    while (replacementCount--) {
+      replacement += '0:';
+    }
+    string = string.replace('::', replacement);
+    if (string[0] === ':') {
+      string = string.slice(1);
+    }
+    if (string[string.length - 1] === ':') {
+      string = string.slice(0, -1);
+    }
+    return (function() {
+      var _i, _len, _ref, _results;
+      _ref = string.split(":");
+      _results = [];
+      for (_i = 0, _len = _ref.length; _i < _len; _i++) {
+        part = _ref[_i];
+        _results.push(parseInt(part, 16));
+      }
+      return _results;
+    })();
+  };
+
+  ipaddr.IPv6.parser = function(string) {
+    var match, octet, octets, parts, _i, _len;
+    if (string.match(ipv6Regexes['native'])) {
+      return expandIPv6(string, 8);
+    } else if (match = string.match(ipv6Regexes['transitional'])) {
+      parts = expandIPv6(match[1].slice(0, -1), 6);
+      if (parts) {
+        octets = [parseInt(match[2]), parseInt(match[3]), parseInt(match[4]), parseInt(match[5])];
+        for (_i = 0, _len = octets.length; _i < _len; _i++) {
+          octet = octets[_i];
+          if (!((0 <= octet && octet <= 255))) {
+            return null;
+          }
+        }
+        parts.push(octets[0] << 8 | octets[1]);
+        parts.push(octets[2] << 8 | octets[3]);
+        return parts;
+      }
+    }
+    return null;
+  };
+
+  ipaddr.IPv4.isIPv4 = ipaddr.IPv6.isIPv6 = function(string) {
+    return this.parser(string) !== null;
+  };
+
+  ipaddr.IPv4.isValid = function(string) {
+    var e;
+    try {
+      new this(this.parser(string));
+      return true;
+    } catch (_error) {
+      e = _error;
+      return false;
+    }
+  };
+
+  ipaddr.IPv4.isValidFourPartDecimal = function(string) {
+    if (ipaddr.IPv4.isValid(string) && string.match(/^\d+(\.\d+){3}$/)) {
+      return true;
+    } else {
+      return false;
+    }
+  };
+
+  ipaddr.IPv6.isValid = function(string) {
+    var e;
+    if (typeof string === "string" && string.indexOf(":") === -1) {
+      return false;
+    }
+    try {
+      new this(this.parser(string));
+      return true;
+    } catch (_error) {
+      e = _error;
+      return false;
+    }
+  };
+
+  ipaddr.IPv4.parse = ipaddr.IPv6.parse = function(string) {
+    var parts;
+    parts = this.parser(string);
+    if (parts === null) {
+      throw new Error("ipaddr: string is not formatted like ip address");
+    }
+    return new this(parts);
+  };
+
+  ipaddr.IPv4.parseCIDR = function(string) {
+    var maskLength, match;
+    if (match = string.match(/^(.+)\/(\d+)$/)) {
+      maskLength = parseInt(match[2]);
+      if (maskLength >= 0 && maskLength <= 32) {
+        return [this.parse(match[1]), maskLength];
+      }
+    }
+    throw new Error("ipaddr: string is not formatted like an IPv4 CIDR range");
+  };
+
+  ipaddr.IPv6.parseCIDR = function(string) {
+    var maskLength, match;
+    if (match = string.match(/^(.+)\/(\d+)$/)) {
+      maskLength = parseInt(match[2]);
+      if (maskLength >= 0 && maskLength <= 128) {
+        return [this.parse(match[1]), maskLength];
+      }
+    }
+    throw new Error("ipaddr: string is not formatted like an IPv6 CIDR range");
+  };
+
+  ipaddr.isValid = function(string) {
+    return ipaddr.IPv6.isValid(string) || ipaddr.IPv4.isValid(string);
+  };
+
+  ipaddr.parse = function(string) {
+    if (ipaddr.IPv6.isValid(string)) {
+      return ipaddr.IPv6.parse(string);
+    } else if (ipaddr.IPv4.isValid(string)) {
+      return ipaddr.IPv4.parse(string);
+    } else {
+      throw new Error("ipaddr: the address has neither IPv6 nor IPv4 format");
+    }
+  };
+
+  ipaddr.parseCIDR = function(string) {
+    var e;
+    try {
+      return ipaddr.IPv6.parseCIDR(string);
+    } catch (_error) {
+      e = _error;
+      try {
+        return ipaddr.IPv4.parseCIDR(string);
+      } catch (_error) {
+        e = _error;
+        throw new Error("ipaddr: the address has neither IPv6 nor IPv4 CIDR format");
+      }
+    }
+  };
+
+  ipaddr.fromByteArray = function(bytes) {
+    var length;
+    length = bytes.length;
+    if (length === 4) {
+      return new ipaddr.IPv4(bytes);
+    } else if (length === 16) {
+      return new ipaddr.IPv6(bytes);
+    } else {
+      throw new Error("ipaddr: the binary input is neither an IPv6 nor IPv4 address");
+    }
+  };
+
+  ipaddr.process = function(string) {
+    var addr;
+    addr = this.parse(string);
+    if (addr.kind() === 'ipv6' && addr.isIPv4MappedAddress()) {
+      return addr.toIPv4Address();
+    } else {
+      return addr;
+    }
+  };
+
+}).call(this);

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/package.json
----------------------------------------------------------------------
diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/package.json b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/package.json
new file mode 100644
index 0000000..08a01d8
--- /dev/null
+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/package.json
@@ -0,0 +1,97 @@
+{
+  "_args": [
+    [
+      {
+        "raw": "ipaddr.js@1.2.0",
+        "scope": null,
+        "escapedName": "ipaddr.js",
+        "name": "ipaddr.js",
+        "rawSpec": "1.2.0",
+        "spec": "1.2.0",
+        "type": "version"
+      },
+      "/Users/auso/cordova/cordova-lib/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/proxy-addr"
+    ]
+  ],
+  "_from": "ipaddr.js@1.2.0",
+  "_id": "ipaddr.js@1.2.0",
+  "_inCache": true,
+  "_location": "/ipaddr.js",
+  "_npmOperationalInternal": {
+    "host": "packages-12-west.internal.npmjs.com",
+    "tmp": "tmp/ipaddr.js-1.2.0.tgz_1467971539814_0.6815996605437249"
+  },
+  "_npmUser": {
+    "name": "whitequark",
+    "email": "whitequark@whitequark.org"
+  },
+  "_npmVersion": "1.4.21",
+  "_phantomChildren": {},
+  "_requested": {
+    "raw": "ipaddr.js@1.2.0",
+    "scope": null,
+    "escapedName": "ipaddr.js",
+    "name": "ipaddr.js",
+    "rawSpec": "1.2.0",
+    "spec": "1.2.0",
+    "type": "version"
+  },
+  "_requiredBy": [
+    "/proxy-addr"
+  ],
+  "_resolved": "https://registry.npmjs.org/ipaddr.js/-/ipaddr.js-1.2.0.tgz",
+  "_shasum": "8aba49c9192799585bdd643e0ccb50e8ae777ba4",
+  "_shrinkwrap": null,
+  "_spec": "ipaddr.js@1.2.0",
+  "_where": "/Users/auso/cordova/cordova-lib/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/proxy-addr",
+  "author": {
+    "name": "whitequark",
+    "email": "whitequark@whitequark.org"
+  },
+  "bugs": {
+    "url": "https://github.com/whitequark/ipaddr.js/issues"
+  },
+  "dependencies": {},
+  "description": "A library for manipulating IPv4 and IPv6 addresses in JavaScript.",
+  "devDependencies": {
+    "coffee-script": "~1.6",
+    "nodeunit": ">=0.8.2 <0.8.7",
+    "uglify-js": "latest"
+  },
+  "directories": {
+    "lib": "./lib"
+  },
+  "dist": {
+    "shasum": "8aba49c9192799585bdd643e0ccb50e8ae777ba4",
+    "tarball": "https://registry.npmjs.org/ipaddr.js/-/ipaddr.js-1.2.0.tgz"
+  },
+  "engines": {
+    "node": ">= 0.10"
+  },
+  "gitHead": "87bcb487f1a6739101231e71b111da2823540398",
+  "homepage": "https://github.com/whitequark/ipaddr.js#readme",
+  "keywords": [
+    "ip",
+    "ipv4",
+    "ipv6"
+  ],
+  "license": "MIT",
+  "main": "./lib/ipaddr",
+  "maintainers": [
+    {
+      "name": "whitequark",
+      "email": "whitequark@whitequark.org"
+    }
+  ],
+  "name": "ipaddr.js",
+  "optionalDependencies": {},
+  "readme": "ERROR: No README data found!",
+  "repository": {
+    "type": "git",
+    "url": "git://github.com/whitequark/ipaddr.js.git"
+  },
+  "scripts": {
+    "test": "cake build test"
+  },
+  "version": "1.2.0"
+}

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/src/ipaddr.coffee
----------------------------------------------------------------------
diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/src/ipaddr.coffee b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/src/ipaddr.coffee
new file mode 100644
index 0000000..45ffc34
--- /dev/null
+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/src/ipaddr.coffee
@@ -0,0 +1,456 @@
+# Define the main object
+ipaddr = {}
+
+root = this
+
+# Export for both the CommonJS and browser-like environment
+if module? && module.exports
+  module.exports = ipaddr
+else
+  root['ipaddr'] = ipaddr
+
+# A generic CIDR (Classless Inter-Domain Routing) RFC1518 range matcher.
+matchCIDR = (first, second, partSize, cidrBits) ->
+  if first.length != second.length
+    throw new Error "ipaddr: cannot match CIDR for objects with different lengths"
+
+  part = 0
+  while cidrBits > 0
+    shift = partSize - cidrBits
+    shift = 0 if shift < 0
+
+    if first[part] >> shift != second[part] >> shift
+      return false
+
+    cidrBits -= partSize
+    part     += 1
+
+  return true
+
+# An utility function to ease named range matching. See examples below.
+ipaddr.subnetMatch = (address, rangeList, defaultName='unicast') ->
+  for rangeName, rangeSubnets of rangeList
+    # ECMA5 Array.isArray isn't available everywhere
+    if rangeSubnets[0] && !(rangeSubnets[0] instanceof Array)
+      rangeSubnets = [ rangeSubnets ]
+
+    for subnet in rangeSubnets
+      return rangeName if address.match.apply(address, subnet)
+
+  return defaultName
+
+# An IPv4 address (RFC791).
+class ipaddr.IPv4
+  # Constructs a new IPv4 address from an array of four octets
+  # in network order (MSB first)
+  # Verifies the input.
+  constructor: (octets) ->
+    if octets.length != 4
+      throw new Error "ipaddr: ipv4 octet count should be 4"
+
+    for octet in octets
+      if !(0 <= octet <= 255)
+        throw new Error "ipaddr: ipv4 octet should fit in 8 bits"
+
+    @octets = octets
+
+  # The 'kind' method exists on both IPv4 and IPv6 classes.
+  kind: ->
+    return 'ipv4'
+
+  # Returns the address in convenient, decimal-dotted format.
+  toString: ->
+    return @octets.join "."
+
+  # Returns an array of byte-sized values in network order (MSB first)
+  toByteArray: ->
+    return @octets.slice(0) # octets.clone
+
+  # Checks if this address matches other one within given CIDR range.
+  match: (other, cidrRange) ->
+    if cidrRange == undefined
+      [other, cidrRange] = other
+
+    if other.kind() != 'ipv4'
+      throw new Error "ipaddr: cannot match ipv4 address with non-ipv4 one"
+
+    return matchCIDR(this.octets, other.octets, 8, cidrRange)
+
+  # Special IPv4 address ranges.
+  SpecialRanges:
+    unspecified: [
+      [ new IPv4([0,     0,    0,   0]),  8 ]
+    ]
+    broadcast: [
+      [ new IPv4([255, 255,  255, 255]), 32 ]
+    ]
+    multicast: [ # RFC3171
+      [ new IPv4([224,   0,    0,   0]), 4  ]
+    ]
+    linkLocal: [ # RFC3927
+      [ new IPv4([169,   254,  0,   0]), 16 ]
+    ]
+    loopback: [ # RFC5735
+      [ new IPv4([127,   0,    0,   0]), 8  ]
+    ]
+    private: [ # RFC1918
+      [ new IPv4([10,    0,    0,   0]), 8  ]
+      [ new IPv4([172,   16,   0,   0]), 12 ]
+      [ new IPv4([192,   168,  0,   0]), 16 ]
+    ]
+    reserved: [ # Reserved and testing-only ranges; RFCs 5735, 5737, 2544, 1700
+      [ new IPv4([192,   0,    0,   0]), 24 ]
+      [ new IPv4([192,   0,    2,   0]), 24 ]
+      [ new IPv4([192,  88,   99,   0]), 24 ]
+      [ new IPv4([198,  51,  100,   0]), 24 ]
+      [ new IPv4([203,   0,  113,   0]), 24 ]
+      [ new IPv4([240,   0,    0,   0]), 4  ]
+    ]
+
+  # Checks if the address corresponds to one of the special ranges.
+  range: ->
+    return ipaddr.subnetMatch(this, @SpecialRanges)
+
+  # Convrets this IPv4 address to an IPv4-mapped IPv6 address.
+  toIPv4MappedAddress: ->
+    return ipaddr.IPv6.parse "::ffff:#{@toString()}"
+
+  # returns a number of leading ones in IPv4 address, making sure that
+  # the rest is a solid sequence of 0's (valid netmask)
+  # returns either the CIDR length or null if mask is not valid
+  prefixLengthFromSubnetMask: ->
+    # number of zeroes in octet
+    zerotable =
+      0:   8
+      128: 7
+      192: 6
+      224: 5
+      240: 4
+      248: 3
+      252: 2
+      254: 1
+      255: 0
+
+    cidr = 0
+    # non-zero encountered stop scanning for zeroes
+    stop = false
+    for i in [3..0] by -1
+      octet = @octets[i]
+      if octet of zerotable
+        zeros = zerotable[octet]
+        if stop and zeros != 0
+          return null
+        unless zeros == 8
+          stop = true
+        cidr += zeros
+      else
+        return null
+    return 32 - cidr
+
+# A list of regular expressions that match arbitrary IPv4 addresses,
+# for which a number of weird notations exist.
+# Note that an address like 0010.0xa5.1.1 is considered legal.
+ipv4Part = "(0?\\d+|0x[a-f0-9]+)"
+ipv4Regexes =
+  fourOctet: new RegExp "^#{ipv4Part}\\.#{ipv4Part}\\.#{ipv4Part}\\.#{ipv4Part}$", 'i'
+  longValue: new RegExp "^#{ipv4Part}$", 'i'
+
+# Classful variants (like a.b, where a is an octet, and b is a 24-bit
+# value representing last three octets; this corresponds to a class C
+# address) are omitted due to classless nature of modern Internet.
+ipaddr.IPv4.parser = (string) ->
+  parseIntAuto = (string) ->
+    if string[0] == "0" && string[1] != "x"
+      parseInt(string, 8)
+    else
+      parseInt(string)
+
+  # parseInt recognizes all that octal & hexadecimal weirdness for us
+  if match = string.match(ipv4Regexes.fourOctet)
+    return (parseIntAuto(part) for part in match[1..5])
+  else if match = string.match(ipv4Regexes.longValue)
+    value = parseIntAuto(match[1])
+    if value > 0xffffffff || value < 0
+      throw new Error "ipaddr: address outside defined range"
+    return ((value >> shift) & 0xff for shift in [0..24] by 8).reverse()
+  else
+    return null
+
+# An IPv6 address (RFC2460)
+class ipaddr.IPv6
+  # Constructs an IPv6 address from an array of eight 16-bit parts
+  # or sixteen 8-bit parts in network order (MSB first).
+  # Throws an error if the input is invalid.
+  constructor: (parts) ->
+    if parts.length == 16
+      @parts = []
+      for i in [0..14] by 2
+        @parts.push((parts[i] << 8) | parts[i + 1])
+    else if parts.length == 8
+      @parts = parts
+    else
+      throw new Error "ipaddr: ipv6 part count should be 8 or 16"
+
+    for part in @parts
+      if !(0 <= part <= 0xffff)
+        throw new Error "ipaddr: ipv6 part should fit in 16 bits"
+
+  # The 'kind' method exists on both IPv4 and IPv6 classes.
+  kind: ->
+    return 'ipv6'
+
+  # Returns the address in compact, human-readable format like
+  # 2001:db8:8:66::1
+  toString: ->
+    stringParts = (part.toString(16) for part in @parts)
+
+    compactStringParts = []
+    pushPart = (part) -> compactStringParts.push part
+
+    state = 0
+    for part in stringParts
+      switch state
+        when 0
+          if part == '0'
+            pushPart('')
+          else
+            pushPart(part)
+
+          state = 1
+        when 1
+          if part == '0'
+            state = 2
+          else
+            pushPart(part)
+        when 2
+          unless part == '0'
+            pushPart('')
+            pushPart(part)
+            state = 3
+        when 3
+          pushPart(part)
+
+    if state == 2
+      pushPart('')
+      pushPart('')
+
+    return compactStringParts.join ":"
+
+  # Returns an array of byte-sized values in network order (MSB first)
+  toByteArray: ->
+    bytes = []
+    for part in @parts
+      bytes.push(part >> 8)
+      bytes.push(part & 0xff)
+
+    return bytes
+
+  # Returns the address in expanded format with all zeroes included, like
+  # 2001:db8:8:66:0:0:0:1
+  toNormalizedString: ->
+    return (part.toString(16) for part in @parts).join ":"
+
+  # Checks if this address matches other one within given CIDR range.
+  match: (other, cidrRange) ->
+    if cidrRange == undefined
+      [other, cidrRange] = other
+
+    if other.kind() != 'ipv6'
+      throw new Error "ipaddr: cannot match ipv6 address with non-ipv6 one"
+
+    return matchCIDR(this.parts, other.parts, 16, cidrRange)
+
+  # Special IPv6 ranges
+  SpecialRanges:
+    unspecified: [ new IPv6([0,      0,      0, 0, 0,      0,      0, 0]), 128 ] # RFC4291, here and after
+    linkLocal:   [ new IPv6([0xfe80, 0,      0, 0, 0,      0,      0, 0]), 10  ]
+    multicast:   [ new IPv6([0xff00, 0,      0, 0, 0,      0,      0, 0]), 8   ]
+    loopback:    [ new IPv6([0,      0,      0, 0, 0,      0,      0, 1]), 128 ]
+    uniqueLocal: [ new IPv6([0xfc00, 0,      0, 0, 0,      0,      0, 0]), 7   ]
+    ipv4Mapped:  [ new IPv6([0,      0,      0, 0, 0,      0xffff, 0, 0]), 96  ]
+    rfc6145:     [ new IPv6([0,      0,      0, 0, 0xffff, 0,      0, 0]), 96  ] # RFC6145
+    rfc6052:     [ new IPv6([0x64,   0xff9b, 0, 0, 0,      0,      0, 0]), 96  ] # RFC6052
+    '6to4':      [ new IPv6([0x2002, 0,      0, 0, 0,      0,      0, 0]), 16  ] # RFC3056
+    teredo:      [ new IPv6([0x2001, 0,      0, 0, 0,      0,      0, 0]), 32  ] # RFC6052, RFC6146
+    reserved: [
+      [ new IPv6([ 0x2001, 0xdb8, 0, 0, 0, 0, 0, 0]), 32 ] # RFC4291
+    ]
+
+  # Checks if the address corresponds to one of the special ranges.
+  range: ->
+    return ipaddr.subnetMatch(this, @SpecialRanges)
+
+  # Checks if this address is an IPv4-mapped IPv6 address.
+  isIPv4MappedAddress: ->
+    return @range() == 'ipv4Mapped'
+
+  # Converts this address to IPv4 address if it is an IPv4-mapped IPv6 address.
+  # Throws an error otherwise.
+  toIPv4Address: ->
+    unless @isIPv4MappedAddress()
+      throw new Error "ipaddr: trying to convert a generic ipv6 address to ipv4"
+
+    [high, low] = @parts[-2..-1]
+
+    return new ipaddr.IPv4([high >> 8, high & 0xff, low >> 8, low & 0xff])
+
+# IPv6-matching regular expressions.
+# For IPv6, the task is simpler: it is enough to match the colon-delimited
+# hexadecimal IPv6 and a transitional variant with dotted-decimal IPv4 at
+# the end.
+ipv6Part = "(?:[0-9a-f]+::?)+"
+ipv6Regexes =
+  native:       new RegExp "^(::)?(#{ipv6Part})?([0-9a-f]+)?(::)?$", 'i'
+  transitional: new RegExp "^((?:#{ipv6Part})|(?:::)(?:#{ipv6Part})?)" +
+                           "#{ipv4Part}\\.#{ipv4Part}\\.#{ipv4Part}\\.#{ipv4Part}$", 'i'
+
+# Expand :: in an IPv6 address or address part consisting of `parts` groups.
+expandIPv6 = (string, parts) ->
+  # More than one '::' means invalid adddress
+  if string.indexOf('::') != string.lastIndexOf('::')
+    return null
+
+  # How many parts do we already have?
+  colonCount = 0
+  lastColon = -1
+  while (lastColon = string.indexOf(':', lastColon + 1)) >= 0
+    colonCount++
+
+  # 0::0 is two parts more than ::
+  colonCount-- if string.substr(0, 2) == '::'
+  colonCount-- if string.substr(-2, 2) == '::'
+
+  # The following loop would hang if colonCount > parts
+  if colonCount > parts
+    return null
+
+  # replacement = ':' + '0:' * (parts - colonCount)
+  replacementCount = parts - colonCount
+  replacement = ':'
+  while replacementCount--
+    replacement += '0:'
+
+  # Insert the missing zeroes
+  string = string.replace('::', replacement)
+
+  # Trim any garbage which may be hanging around if :: was at the edge in
+  # the source string
+  string = string[1..-1] if string[0] == ':'
+  string = string[0..-2] if string[string.length-1] == ':'
+
+  return (parseInt(part, 16) for part in string.split(":"))
+
+# Parse an IPv6 address.
+ipaddr.IPv6.parser = (string) ->
+  if string.match(ipv6Regexes['native'])
+    return expandIPv6(string, 8)
+
+  else if match = string.match(ipv6Regexes['transitional'])
+    parts = expandIPv6(match[1][0..-2], 6)
+    if parts
+      octets = [parseInt(match[2]), parseInt(match[3]),
+                parseInt(match[4]), parseInt(match[5])]
+      for octet in octets
+        if !(0 <= octet <= 255)
+          return null
+
+      parts.push(octets[0] << 8 | octets[1])
+      parts.push(octets[2] << 8 | octets[3])
+      return parts
+
+  return null
+
+# Checks if a given string is formatted like IPv4/IPv6 address.
+ipaddr.IPv4.isIPv4 = ipaddr.IPv6.isIPv6 = (string) ->
+  return @parser(string) != null
+
+# Checks if a given string is a valid IPv4/IPv6 address.
+ipaddr.IPv4.isValid = (string) ->
+  try
+    new this(@parser(string))
+    return true
+  catch e
+    return false
+
+ipaddr.IPv4.isValidFourPartDecimal = (string) ->
+  if ipaddr.IPv4.isValid(string) and string.match(/^\d+(\.\d+){3}$/)
+    return true
+  else
+    return false
+
+ipaddr.IPv6.isValid = (string) ->
+  # Since IPv6.isValid is always called first, this shortcut
+  # provides a substantial performance gain.
+  if typeof string == "string" and string.indexOf(":") == -1
+    return false
+
+  try
+    new this(@parser(string))
+    return true
+  catch e
+    return false
+
+# Tries to parse and validate a string with IPv4/IPv6 address.
+# Throws an error if it fails.
+ipaddr.IPv4.parse = ipaddr.IPv6.parse = (string) ->
+  parts = @parser(string)
+  if parts == null
+    throw new Error "ipaddr: string is not formatted like ip address"
+
+  return new this(parts)
+
+ipaddr.IPv4.parseCIDR = (string) ->
+  if match = string.match(/^(.+)\/(\d+)$/)
+    maskLength = parseInt(match[2])
+    if maskLength >= 0 and maskLength <= 32
+      return [@parse(match[1]), maskLength]
+
+  throw new Error "ipaddr: string is not formatted like an IPv4 CIDR range"
+
+ipaddr.IPv6.parseCIDR = (string) ->
+  if match = string.match(/^(.+)\/(\d+)$/)
+    maskLength = parseInt(match[2])
+    if maskLength >= 0 and maskLength <= 128
+      return [@parse(match[1]), maskLength]
+
+  throw new Error "ipaddr: string is not formatted like an IPv6 CIDR range"
+
+# Checks if the address is valid IP address
+ipaddr.isValid = (string) ->
+  return ipaddr.IPv6.isValid(string) || ipaddr.IPv4.isValid(string)
+
+# Try to parse an address and throw an error if it is impossible
+ipaddr.parse = (string) ->
+  if ipaddr.IPv6.isValid(string)
+    return ipaddr.IPv6.parse(string)
+  else if ipaddr.IPv4.isValid(string)
+    return ipaddr.IPv4.parse(string)
+  else
+    throw new Error "ipaddr: the address has neither IPv6 nor IPv4 format"
+
+ipaddr.parseCIDR = (string) ->
+  try
+    return ipaddr.IPv6.parseCIDR(string)
+  catch e
+    try
+      return ipaddr.IPv4.parseCIDR(string)
+    catch e
+      throw new Error "ipaddr: the address has neither IPv6 nor IPv4 CIDR format"
+
+# Try to parse an array in network order (MSB first) for IPv4 and IPv6
+ipaddr.fromByteArray = (bytes) ->
+  length = bytes.length
+  if length == 4
+    return new ipaddr.IPv4(bytes)
+  else if length == 16
+    return new ipaddr.IPv6(bytes)
+  else
+    throw new Error "ipaddr: the binary input is neither an IPv6 nor IPv4 address"
+
+# Parse an address and return plain IPv4 address if it is an IPv4-mapped address
+ipaddr.process = (string) ->
+  addr = @parse(string)
+  if addr.kind() == 'ipv6' && addr.isIPv4MappedAddress()
+    return addr.toIPv4Address()
+  else
+    return addr

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/test/ipaddr.test.coffee
----------------------------------------------------------------------
diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/test/ipaddr.test.coffee b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/test/ipaddr.test.coffee
new file mode 100644
index 0000000..b8ef0b9
--- /dev/null
+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/ipaddr.js/test/ipaddr.test.coffee
@@ -0,0 +1,344 @@
+ipaddr = require '../lib/ipaddr'
+
+module.exports =
+  'should define main classes': (test) ->
+    test.ok(ipaddr.IPv4?, 'defines IPv4 class')
+    test.ok(ipaddr.IPv6?, 'defines IPv6 class')
+    test.done()
+
+  'can construct IPv4 from octets': (test) ->
+    test.doesNotThrow ->
+      new ipaddr.IPv4([192, 168, 1, 2])
+    test.done()
+
+  'refuses to construct invalid IPv4': (test) ->
+    test.throws ->
+      new ipaddr.IPv4([300, 1, 2, 3])
+    test.throws ->
+      new ipaddr.IPv4([8, 8, 8])
+    test.done()
+
+  'converts IPv4 to string correctly': (test) ->
+    addr = new ipaddr.IPv4([192, 168, 1, 1])
+    test.equal(addr.toString(), '192.168.1.1')
+    test.done()
+
+  'returns correct kind for IPv4': (test) ->
+    addr = new ipaddr.IPv4([1, 2, 3, 4])
+    test.equal(addr.kind(), 'ipv4')
+    test.done()
+
+  'allows to access IPv4 octets': (test) ->
+    addr = new ipaddr.IPv4([42, 0, 0, 0])
+    test.equal(addr.octets[0], 42)
+    test.done()
+
+  'checks IPv4 address format': (test) ->
+    test.equal(ipaddr.IPv4.isIPv4('192.168.007.0xa'), true)
+    test.equal(ipaddr.IPv4.isIPv4('1024.0.0.1'),      true)
+    test.equal(ipaddr.IPv4.isIPv4('8.0xa.wtf.6'),     false)
+    test.done()
+
+  'validates IPv4 addresses': (test) ->
+    test.equal(ipaddr.IPv4.isValid('192.168.007.0xa'), true)
+    test.equal(ipaddr.IPv4.isValid('1024.0.0.1'),      false)
+    test.equal(ipaddr.IPv4.isValid('8.0xa.wtf.6'),     false)
+    test.done()
+
+  'parses IPv4 in several weird formats': (test) ->
+    test.deepEqual(ipaddr.IPv4.parse('192.168.1.1').octets,  [192, 168, 1, 1])
+    test.deepEqual(ipaddr.IPv4.parse('0xc0.168.1.1').octets, [192, 168, 1, 1])
+    test.deepEqual(ipaddr.IPv4.parse('192.0250.1.1').octets, [192, 168, 1, 1])
+    test.deepEqual(ipaddr.IPv4.parse('0xc0a80101').octets,   [192, 168, 1, 1])
+    test.deepEqual(ipaddr.IPv4.parse('030052000401').octets, [192, 168, 1, 1])
+    test.deepEqual(ipaddr.IPv4.parse('3232235777').octets,   [192, 168, 1, 1])
+    test.done()
+
+  'barfs at invalid IPv4': (test) ->
+    test.throws ->
+      ipaddr.IPv4.parse('10.0.0.wtf')
+    test.done()
+
+  'matches IPv4 CIDR correctly': (test) ->
+    addr = new ipaddr.IPv4([10, 5, 0, 1])
+    test.equal(addr.match(ipaddr.IPv4.parse('0.0.0.0'), 0),   true)
+    test.equal(addr.match(ipaddr.IPv4.parse('11.0.0.0'), 8),  false)
+    test.equal(addr.match(ipaddr.IPv4.parse('10.0.0.0'), 8),  true)
+    test.equal(addr.match(ipaddr.IPv4.parse('10.0.0.1'), 8),  true)
+    test.equal(addr.match(ipaddr.IPv4.parse('10.0.0.10'), 8), true)
+    test.equal(addr.match(ipaddr.IPv4.parse('10.5.5.0'), 16), true)
+    test.equal(addr.match(ipaddr.IPv4.parse('10.4.5.0'), 16), false)
+    test.equal(addr.match(ipaddr.IPv4.parse('10.4.5.0'), 15), true)
+    test.equal(addr.match(ipaddr.IPv4.parse('10.5.0.2'), 32), false)
+    test.equal(addr.match(addr, 32), true)
+    test.done()
+
+  'parses IPv4 CIDR correctly': (test) ->
+    addr = new ipaddr.IPv4([10, 5, 0, 1])
+    test.equal(addr.match(ipaddr.IPv4.parseCIDR('0.0.0.0/0')),   true)
+    test.equal(addr.match(ipaddr.IPv4.parseCIDR('11.0.0.0/8')),  false)
+    test.equal(addr.match(ipaddr.IPv4.parseCIDR('10.0.0.0/8')),  true)
+    test.equal(addr.match(ipaddr.IPv4.parseCIDR('10.0.0.1/8')),  true)
+    test.equal(addr.match(ipaddr.IPv4.parseCIDR('10.0.0.10/8')), true)
+    test.equal(addr.match(ipaddr.IPv4.parseCIDR('10.5.5.0/16')), true)
+    test.equal(addr.match(ipaddr.IPv4.parseCIDR('10.4.5.0/16')), false)
+    test.equal(addr.match(ipaddr.IPv4.parseCIDR('10.4.5.0/15')), true)
+    test.equal(addr.match(ipaddr.IPv4.parseCIDR('10.5.0.2/32')), false)
+    test.equal(addr.match(ipaddr.IPv4.parseCIDR('10.5.0.1/32')), true)
+    test.throws ->
+      ipaddr.IPv4.parseCIDR('10.5.0.1')
+    test.throws ->
+      ipaddr.IPv4.parseCIDR('0.0.0.0/-1')
+    test.throws ->
+      ipaddr.IPv4.parseCIDR('0.0.0.0/33')
+    test.done()
+
+  'detects reserved IPv4 networks': (test) ->
+    test.equal(ipaddr.IPv4.parse('0.0.0.0').range(),         'unspecified')
+    test.equal(ipaddr.IPv4.parse('0.1.0.0').range(),         'unspecified')
+    test.equal(ipaddr.IPv4.parse('10.1.0.1').range(),        'private')
+    test.equal(ipaddr.IPv4.parse('192.168.2.1').range(),     'private')
+    test.equal(ipaddr.IPv4.parse('224.100.0.1').range(),     'multicast')
+    test.equal(ipaddr.IPv4.parse('169.254.15.0').range(),    'linkLocal')
+    test.equal(ipaddr.IPv4.parse('127.1.1.1').range(),       'loopback')
+    test.equal(ipaddr.IPv4.parse('255.255.255.255').range(), 'broadcast')
+    test.equal(ipaddr.IPv4.parse('240.1.2.3').range(),       'reserved')
+    test.equal(ipaddr.IPv4.parse('8.8.8.8').range(),         'unicast')
+    test.done()
+
+  'checks the conventional IPv4 address format': (test) ->
+      test.equal(ipaddr.IPv4.isValidFourPartDecimal('192.168.1.1'),  true)
+      test.equal(ipaddr.IPv4.isValidFourPartDecimal('0xc0.168.1.1'), false)
+      test.done()
+
+  'can construct IPv6 from 16bit parts': (test) ->
+    test.doesNotThrow ->
+      new ipaddr.IPv6([0x2001, 0xdb8, 0xf53a, 0, 0, 0, 0, 1])
+    test.done()
+
+  'can construct IPv6 from 8bit parts': (test) ->
+    test.doesNotThrow ->
+      new ipaddr.IPv6([0x20, 0x01, 0xd, 0xb8, 0xf5, 0x3a, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1])
+    test.deepEqual(new ipaddr.IPv6([0x20, 0x01, 0xd, 0xb8, 0xf5, 0x3a, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1]),
+      new ipaddr.IPv6([0x2001, 0xdb8, 0xf53a, 0, 0, 0, 0, 1]))
+    test.done()
+
+  'refuses to construct invalid IPv6': (test) ->
+    test.throws ->
+      new ipaddr.IPv6([0xfffff, 0, 0, 0, 0, 0, 0, 1])
+    test.throws ->
+      new ipaddr.IPv6([0xfffff, 0, 0, 0, 0, 0, 1])
+    test.throws ->
+      new ipaddr.IPv6([0xffff, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1])
+    test.done()
+
+  'converts IPv6 to string correctly': (test) ->
+    addr = new ipaddr.IPv6([0x2001, 0xdb8, 0xf53a, 0, 0, 0, 0, 1])
+    test.equal(addr.toNormalizedString(), '2001:db8:f53a:0:0:0:0:1')
+    test.equal(addr.toString(), '2001:db8:f53a::1')
+    test.equal(new ipaddr.IPv6([0, 0, 0, 0, 0, 0, 0, 1]).toString(), '::1')
+    test.equal(new ipaddr.IPv6([0x2001, 0xdb8, 0, 0, 0, 0, 0, 0]).toString(), '2001:db8::')
+    test.done()
+
+  'returns correct kind for IPv6': (test) ->
+    addr = new ipaddr.IPv6([0x2001, 0xdb8, 0xf53a, 0, 0, 0, 0, 1])
+    test.equal(addr.kind(), 'ipv6')
+    test.done()
+
+  'allows to access IPv6 address parts': (test) ->
+    addr = new ipaddr.IPv6([0x2001, 0xdb8, 0xf53a, 0, 0, 42, 0, 1])
+    test.equal(addr.parts[5], 42)
+    test.done()
+
+  'checks IPv6 address format': (test) ->
+    test.equal(ipaddr.IPv6.isIPv6('2001:db8:F53A::1'),     true)
+    test.equal(ipaddr.IPv6.isIPv6('200001::1'),            true)
+    test.equal(ipaddr.IPv6.isIPv6('::ffff:192.168.1.1'),   true)
+    test.equal(ipaddr.IPv6.isIPv6('::ffff:300.168.1.1'),   false)
+    test.equal(ipaddr.IPv6.isIPv6('::ffff:300.168.1.1:0'), false)
+    test.equal(ipaddr.IPv6.isIPv6('fe80::wtf'),            false)
+    test.done()
+
+  'validates IPv6 addresses': (test) ->
+    test.equal(ipaddr.IPv6.isValid('2001:db8:F53A::1'),     true)
+    test.equal(ipaddr.IPv6.isValid('200001::1'),            false)
+    test.equal(ipaddr.IPv6.isValid('::ffff:192.168.1.1'),   true)
+    test.equal(ipaddr.IPv6.isValid('::ffff:300.168.1.1'),   false)
+    test.equal(ipaddr.IPv6.isValid('::ffff:300.168.1.1:0'), false)
+    test.equal(ipaddr.IPv6.isValid('::ffff:222.1.41.9000'), false)
+    test.equal(ipaddr.IPv6.isValid('2001:db8::F53A::1'),    false)
+    test.equal(ipaddr.IPv6.isValid('fe80::wtf'),            false)
+    test.equal(ipaddr.IPv6.isValid('2002::2:'),             false)
+    test.equal(ipaddr.IPv6.isValid(undefined),              false)
+    test.done()
+
+  'parses IPv6 in different formats': (test) ->
+    test.deepEqual(ipaddr.IPv6.parse('2001:db8:F53A:0:0:0:0:1').parts, [0x2001, 0xdb8, 0xf53a, 0, 0, 0, 0, 1])
+    test.deepEqual(ipaddr.IPv6.parse('fe80::10').parts, [0xfe80, 0, 0, 0, 0, 0, 0, 0x10])
+    test.deepEqual(ipaddr.IPv6.parse('2001:db8:F53A::').parts, [0x2001, 0xdb8, 0xf53a, 0, 0, 0, 0, 0])
+    test.deepEqual(ipaddr.IPv6.parse('::1').parts, [0, 0, 0, 0, 0, 0, 0, 1])
+    test.deepEqual(ipaddr.IPv6.parse('::').parts, [0, 0, 0, 0, 0, 0, 0, 0])
+    test.done()
+
+  'barfs at invalid IPv6': (test) ->
+    test.throws ->
+      ipaddr.IPv6.parse('fe80::0::1')
+    test.done()
+
+  'matches IPv6 CIDR correctly': (test) ->
+    addr = ipaddr.IPv6.parse('2001:db8:f53a::1')
+    test.equal(addr.match(ipaddr.IPv6.parse('::'), 0),                  true)
+    test.equal(addr.match(ipaddr.IPv6.parse('2001:db8:f53a::1:1'), 64), true)
+    test.equal(addr.match(ipaddr.IPv6.parse('2001:db8:f53b::1:1'), 48), false)
+    test.equal(addr.match(ipaddr.IPv6.parse('2001:db8:f531::1:1'), 44), true)
+    test.equal(addr.match(ipaddr.IPv6.parse('2001:db8:f500::1'), 40),   true)
+    test.equal(addr.match(ipaddr.IPv6.parse('2001:db9:f500::1'), 40),   false)
+    test.equal(addr.match(addr, 128), true)
+    test.done()
+
+  'parses IPv6 CIDR correctly': (test) ->
+    addr = ipaddr.IPv6.parse('2001:db8:f53a::1')
+    test.equal(addr.match(ipaddr.IPv6.parseCIDR('::/0')),                  true)
+    test.equal(addr.match(ipaddr.IPv6.parseCIDR('2001:db8:f53a::1:1/64')), true)
+    test.equal(addr.match(ipaddr.IPv6.parseCIDR('2001:db8:f53b::1:1/48')), false)
+    test.equal(addr.match(ipaddr.IPv6.parseCIDR('2001:db8:f531::1:1/44')), true)
+    test.equal(addr.match(ipaddr.IPv6.parseCIDR('2001:db8:f500::1/40')),   true)
+    test.equal(addr.match(ipaddr.IPv6.parseCIDR('2001:db9:f500::1/40')),   false)
+    test.equal(addr.match(ipaddr.IPv6.parseCIDR('2001:db8:f53a::1/128')),  true)
+    test.throws ->
+      ipaddr.IPv6.parseCIDR('2001:db8:f53a::1')
+    test.throws ->
+      ipaddr.IPv6.parseCIDR('2001:db8:f53a::1/-1')
+    test.throws ->
+      ipaddr.IPv6.parseCIDR('2001:db8:f53a::1/129')
+    test.done()
+
+  'converts between IPv4-mapped IPv6 addresses and IPv4 addresses': (test) ->
+    addr = ipaddr.IPv4.parse('77.88.21.11')
+    mapped = addr.toIPv4MappedAddress()
+    test.deepEqual(mapped.parts, [0, 0, 0, 0, 0, 0xffff, 0x4d58, 0x150b])
+    test.deepEqual(mapped.toIPv4Address().octets, addr.octets)
+    test.done()
+
+  'refuses to convert non-IPv4-mapped IPv6 address to IPv4 address': (test) ->
+    test.throws ->
+      ipaddr.IPv6.parse('2001:db8::1').toIPv4Address()
+    test.done()
+
+  'detects reserved IPv6 networks': (test) ->
+    test.equal(ipaddr.IPv6.parse('::').range(),                        'unspecified')
+    test.equal(ipaddr.IPv6.parse('fe80::1234:5678:abcd:0123').range(), 'linkLocal')
+    test.equal(ipaddr.IPv6.parse('ff00::1234').range(),                'multicast')
+    test.equal(ipaddr.IPv6.parse('::1').range(),                       'loopback')
+    test.equal(ipaddr.IPv6.parse('fc00::').range(),                    'uniqueLocal')
+    test.equal(ipaddr.IPv6.parse('::ffff:192.168.1.10').range(),       'ipv4Mapped')
+    test.equal(ipaddr.IPv6.parse('::ffff:0:192.168.1.10').range(),     'rfc6145')
+    test.equal(ipaddr.IPv6.parse('64:ff9b::1234').range(),             'rfc6052')
+    test.equal(ipaddr.IPv6.parse('2002:1f63:45e8::1').range(),         '6to4')
+    test.equal(ipaddr.IPv6.parse('2001::4242').range(),                'teredo')
+    test.equal(ipaddr.IPv6.parse('2001:db8::3210').range(),            'reserved')
+    test.equal(ipaddr.IPv6.parse('2001:470:8:66::1').range(),          'unicast')
+    test.done()
+
+  'is able to determine IP address type': (test) ->
+    test.equal(ipaddr.parse('8.8.8.8').kind(), 'ipv4')
+    test.equal(ipaddr.parse('2001:db8:3312::1').kind(), 'ipv6')
+    test.done()
+
+  'throws an error if tried to parse an invalid address': (test) ->
+    test.throws ->
+      ipaddr.parse('::some.nonsense')
+    test.done()
+
+  'correctly processes IPv4-mapped addresses': (test) ->
+    test.equal(ipaddr.process('8.8.8.8').kind(), 'ipv4')
+    test.equal(ipaddr.process('2001:db8:3312::1').kind(), 'ipv6')
+    test.equal(ipaddr.process('::ffff:192.168.1.1').kind(), 'ipv4')
+    test.done()
+
+  'correctly converts IPv6 and IPv4 addresses to byte arrays': (test) ->
+    test.deepEqual(ipaddr.parse('1.2.3.4').toByteArray(),
+          [0x1, 0x2, 0x3, 0x4]);
+    # Fuck yeah. The first byte of Google's IPv6 address is 42. 42!
+    test.deepEqual(ipaddr.parse('2a00:1450:8007::68').toByteArray(),
+          [42, 0x00, 0x14, 0x50, 0x80, 0x07, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x68 ])
+    test.done()
+
+  'correctly parses 1 as an IPv4 address': (test) ->
+    test.equal(ipaddr.IPv6.isValid('1'), false)
+    test.equal(ipaddr.IPv4.isValid('1'), true)
+    test.deepEqual(new ipaddr.IPv4([0, 0, 0, 1]), ipaddr.parse('1'))
+    test.done()
+
+  'correctly detects IPv4 and IPv6 CIDR addresses': (test) ->
+    test.deepEqual([ipaddr.IPv6.parse('fc00::'), 64],
+                   ipaddr.parseCIDR('fc00::/64'))
+    test.deepEqual([ipaddr.IPv4.parse('1.2.3.4'), 5],
+                   ipaddr.parseCIDR('1.2.3.4/5'))
+    test.done()
+
+  'does not consider a very large or very small number a valid IP address': (test) ->
+    test.equal(ipaddr.isValid('4999999999'), false)
+    test.equal(ipaddr.isValid('-1'), false)
+    test.done()
+
+  'does not hang on ::8:8:8:8:8:8:8:8:8': (test) ->
+    test.equal(ipaddr.IPv6.isValid('::8:8:8:8:8:8:8:8:8'), false)
+    test.done()
+
+  'subnetMatch does not fail on empty range': (test) ->
+    ipaddr.subnetMatch(new ipaddr.IPv4([1,2,3,4]), {}, false)
+    ipaddr.subnetMatch(new ipaddr.IPv4([1,2,3,4]), {subnet: []}, false)
+    test.done()
+
+  'subnetMatch returns default subnet on empty range': (test) ->
+    test.equal(ipaddr.subnetMatch(new ipaddr.IPv4([1,2,3,4]), {}, false), false)
+    test.equal(ipaddr.subnetMatch(new ipaddr.IPv4([1,2,3,4]), {subnet: []}, false), false)
+    test.done()
+
+  'is able to determine IP address type from byte array input': (test) ->
+    test.equal(ipaddr.fromByteArray([0x7f, 0, 0, 1]).kind(), 'ipv4')
+    test.equal(ipaddr.fromByteArray([0x20, 0x01, 0xd, 0xb8, 0xf5, 0x3a, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1]).kind(), 'ipv6')
+    test.throws ->
+      ipaddr.fromByteArray([1])
+    test.done()
+
+  'prefixLengthFromSubnetMask returns proper CIDR notation for standard IPv4 masks': (test) ->
+    test.equal(ipaddr.IPv4.parse('255.255.255.255').prefixLengthFromSubnetMask(), 32)
+    test.equal(ipaddr.IPv4.parse('255.255.255.254').prefixLengthFromSubnetMask(), 31)
+    test.equal(ipaddr.IPv4.parse('255.255.255.252').prefixLengthFromSubnetMask(), 30)
+    test.equal(ipaddr.IPv4.parse('255.255.255.248').prefixLengthFromSubnetMask(), 29)
+    test.equal(ipaddr.IPv4.parse('255.255.255.240').prefixLengthFromSubnetMask(), 28)
+    test.equal(ipaddr.IPv4.parse('255.255.255.224').prefixLengthFromSubnetMask(), 27)
+    test.equal(ipaddr.IPv4.parse('255.255.255.192').prefixLengthFromSubnetMask(), 26)
+    test.equal(ipaddr.IPv4.parse('255.255.255.128').prefixLengthFromSubnetMask(), 25)
+    test.equal(ipaddr.IPv4.parse('255.255.255.0').prefixLengthFromSubnetMask(), 24)
+    test.equal(ipaddr.IPv4.parse('255.255.254.0').prefixLengthFromSubnetMask(), 23)
+    test.equal(ipaddr.IPv4.parse('255.255.252.0').prefixLengthFromSubnetMask(), 22)
+    test.equal(ipaddr.IPv4.parse('255.255.248.0').prefixLengthFromSubnetMask(), 21)
+    test.equal(ipaddr.IPv4.parse('255.255.240.0').prefixLengthFromSubnetMask(), 20)
+    test.equal(ipaddr.IPv4.parse('255.255.224.0').prefixLengthFromSubnetMask(), 19)
+    test.equal(ipaddr.IPv4.parse('255.255.192.0').prefixLengthFromSubnetMask(), 18)
+    test.equal(ipaddr.IPv4.parse('255.255.128.0').prefixLengthFromSubnetMask(), 17)
+    test.equal(ipaddr.IPv4.parse('255.255.0.0').prefixLengthFromSubnetMask(), 16)
+    test.equal(ipaddr.IPv4.parse('255.254.0.0').prefixLengthFromSubnetMask(), 15)
+    test.equal(ipaddr.IPv4.parse('255.252.0.0').prefixLengthFromSubnetMask(), 14)
+    test.equal(ipaddr.IPv4.parse('255.248.0.0').prefixLengthFromSubnetMask(), 13)
+    test.equal(ipaddr.IPv4.parse('255.240.0.0').prefixLengthFromSubnetMask(), 12)
+    test.equal(ipaddr.IPv4.parse('255.224.0.0').prefixLengthFromSubnetMask(), 11)
+    test.equal(ipaddr.IPv4.parse('255.192.0.0').prefixLengthFromSubnetMask(), 10)
+    test.equal(ipaddr.IPv4.parse('255.128.0.0').prefixLengthFromSubnetMask(), 9)
+    test.equal(ipaddr.IPv4.parse('255.0.0.0').prefixLengthFromSubnetMask(), 8)
+    test.equal(ipaddr.IPv4.parse('254.0.0.0').prefixLengthFromSubnetMask(), 7)
+    test.equal(ipaddr.IPv4.parse('252.0.0.0').prefixLengthFromSubnetMask(), 6)
+    test.equal(ipaddr.IPv4.parse('248.0.0.0').prefixLengthFromSubnetMask(), 5)
+    test.equal(ipaddr.IPv4.parse('240.0.0.0').prefixLengthFromSubnetMask(), 4)
+    test.equal(ipaddr.IPv4.parse('224.0.0.0').prefixLengthFromSubnetMask(), 3)
+    test.equal(ipaddr.IPv4.parse('192.0.0.0').prefixLengthFromSubnetMask(), 2)
+    test.equal(ipaddr.IPv4.parse('128.0.0.0').prefixLengthFromSubnetMask(), 1)
+    test.equal(ipaddr.IPv4.parse('0.0.0.0').prefixLengthFromSubnetMask(), 0)
+    # negative cases
+    test.equal(ipaddr.IPv4.parse('192.168.255.0').prefixLengthFromSubnetMask(), null)
+    test.equal(ipaddr.IPv4.parse('255.0.255.0').prefixLengthFromSubnetMask(), null)
+    test.done()
+

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/media-typer/HISTORY.md
----------------------------------------------------------------------
diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/media-typer/HISTORY.md b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/media-typer/HISTORY.md
new file mode 100644
index 0000000..62c2003
--- /dev/null
+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/media-typer/HISTORY.md
@@ -0,0 +1,22 @@
+0.3.0 / 2014-09-07
+==================
+
+  * Support Node.js 0.6
+  * Throw error when parameter format invalid on parse
+
+0.2.0 / 2014-06-18
+==================
+
+  * Add `typer.format()` to format media types
+
+0.1.0 / 2014-06-17
+==================
+
+  * Accept `req` as argument to `parse`
+  * Accept `res` as argument to `parse`
+  * Parse media type with extra LWS between type and first parameter
+
+0.0.0 / 2014-06-13
+==================
+
+  * Initial implementation

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/media-typer/LICENSE
----------------------------------------------------------------------
diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/media-typer/LICENSE b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/media-typer/LICENSE
new file mode 100644
index 0000000..b7dce6c
--- /dev/null
+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/media-typer/LICENSE
@@ -0,0 +1,22 @@
+(The MIT License)
+
+Copyright (c) 2014 Douglas Christopher Wilson
+
+Permission is hereby granted, free of charge, to any person obtaining
+a copy of this software and associated documentation files (the
+'Software'), to deal in the Software without restriction, including
+without limitation the rights to use, copy, modify, merge, publish,
+distribute, sublicense, and/or sell copies of the Software, and to
+permit persons to whom the Software is furnished to do so, subject to
+the following conditions:
+
+The above copyright notice and this permission notice shall be
+included in all copies or substantial portions of the Software.
+
+THE SOFTWARE IS PROVIDED 'AS IS', WITHOUT WARRANTY OF ANY KIND,
+EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
+IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
+CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
+TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
+SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.

http://git-wip-us.apache.org/repos/asf/cordova-lib/blob/f8b44831/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/media-typer/README.md
----------------------------------------------------------------------
diff --git a/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/media-typer/README.md b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/media-typer/README.md
new file mode 100644
index 0000000..d8df623
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+++ b/cordova-lib/spec-cordova/fixtures/platforms/cordova-browser/node_modules/media-typer/README.md
@@ -0,0 +1,81 @@
+# media-typer
+
+[![NPM Version][npm-image]][npm-url]
+[![NPM Downloads][downloads-image]][downloads-url]
+[![Node.js Version][node-version-image]][node-version-url]
+[![Build Status][travis-image]][travis-url]
+[![Test Coverage][coveralls-image]][coveralls-url]
+
+Simple RFC 6838 media type parser
+
+## Installation
+
+```sh
+$ npm install media-typer
+```
+
+## API
+
+```js
+var typer = require('media-typer')
+```
+
+### typer.parse(string)
+
+```js
+var obj = typer.parse('image/svg+xml; charset=utf-8')
+```
+
+Parse a media type string. This will return an object with the following
+properties (examples are shown for the string `'image/svg+xml; charset=utf-8'`):
+
+ - `type`: The type of the media type (always lower case). Example: `'image'`
+
+ - `subtype`: The subtype of the media type (always lower case). Example: `'svg'`
+
+ - `suffix`: The suffix of the media type (always lower case). Example: `'xml'`
+
+ - `parameters`: An object of the parameters in the media type (name of parameter always lower case). Example: `{charset: 'utf-8'}`
+
+### typer.parse(req)
+
+```js
+var obj = typer.parse(req)
+```
+
+Parse the `content-type` header from the given `req`. Short-cut for
+`typer.parse(req.headers['content-type'])`.
+
+### typer.parse(res)
+
+```js
+var obj = typer.parse(res)
+```
+
+Parse the `content-type` header set on the given `res`. Short-cut for
+`typer.parse(res.getHeader('content-type'))`.
+
+### typer.format(obj)
+
+```js
+var obj = typer.format({type: 'image', subtype: 'svg', suffix: 'xml'})
+```
+
+Format an object into a media type string. This will return a string of the
+mime type for the given object. For the properties of the object, see the
+documentation for `typer.parse(string)`.
+
+## License
+
+[MIT](LICENSE)
+
+[npm-image]: https://img.shields.io/npm/v/media-typer.svg?style=flat
+[npm-url]: https://npmjs.org/package/media-typer
+[node-version-image]: https://img.shields.io/badge/node.js-%3E%3D_0.6-brightgreen.svg?style=flat
+[node-version-url]: http://nodejs.org/download/
+[travis-image]: https://img.shields.io/travis/jshttp/media-typer.svg?style=flat
+[travis-url]: https://travis-ci.org/jshttp/media-typer
+[coveralls-image]: https://img.shields.io/coveralls/jshttp/media-typer.svg?style=flat
+[coveralls-url]: https://coveralls.io/r/jshttp/media-typer
+[downloads-image]: https://img.shields.io/npm/dm/media-typer.svg?style=flat
+[downloads-url]: https://npmjs.org/package/media-typer


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