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request.js
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request.js
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var optional = require('./lib/optional')
, http = require('http')
, https = optional('https')
, tls = optional('tls')
, url = require('url')
, util = require('util')
, stream = require('stream')
, qs = require('qs')
, querystring = require('querystring')
, crypto = require('crypto')
, zlib = require('zlib')
, bl = require('bl')
, oauth = optional('oauth-sign')
, hawk = optional('hawk')
, aws = optional('aws-sign2')
, httpSignature = optional('http-signature')
, uuid = require('node-uuid')
, mime = require('mime-types')
, tunnel = require('tunnel-agent')
, _safeStringify = require('json-stringify-safe')
, stringstream = optional('stringstream')
, caseless = require('caseless')
, ForeverAgent = require('forever-agent')
, FormData = optional('form-data')
, cookies = require('./lib/cookies')
, globalCookieJar = cookies.jar()
, copy = require('./lib/copy')
, debug = require('./lib/debug')
, net = require('net')
;
function safeStringify (obj) {
var ret
try { ret = JSON.stringify(obj) }
catch (e) { ret = _safeStringify(obj) }
return ret
}
var globalPool = {}
var isUrl = /^https?:|^unix:/
var defaultProxyHeaderWhiteList = [
'accept',
'accept-charset',
'accept-encoding',
'accept-language',
'accept-ranges',
'cache-control',
'content-encoding',
'content-language',
'content-length',
'content-location',
'content-md5',
'content-range',
'content-type',
'connection',
'date',
'expect',
'max-forwards',
'pragma',
'proxy-authorization',
'referer',
'te',
'transfer-encoding',
'user-agent',
'via'
]
function isReadStream (rs) {
return rs.readable && rs.path && rs.mode;
}
function toBase64 (str) {
return (new Buffer(str || "", "ascii")).toString("base64")
}
function md5 (str) {
return crypto.createHash('md5').update(str).digest('hex')
}
// Return a simpler request object to allow serialization
function requestToJSON() {
return {
uri: this.uri,
method: this.method,
headers: this.headers
}
}
// Return a simpler response object to allow serialization
function responseToJSON() {
return {
statusCode: this.statusCode,
body: this.body,
headers: this.headers,
request: requestToJSON.call(this.request)
}
}
function Request (options) {
stream.Stream.call(this)
this.readable = true
this.writable = true
if (typeof options === 'string') {
options = {uri:options}
}
var reserved = Object.keys(Request.prototype)
for (var i in options) {
if (reserved.indexOf(i) === -1) {
this[i] = options[i]
} else {
if (typeof options[i] === 'function') {
delete options[i]
}
}
}
if (options.method) {
this.explicitMethod = true
}
// Assume that we're not going to tunnel unless we need to
if (typeof options.tunnel === 'undefined') options.tunnel = false
this.init(options)
}
util.inherits(Request, stream.Stream)
// Set up the tunneling agent if necessary
Request.prototype.setupTunnel = function () {
var self = this
if (typeof self.proxy == 'string') self.proxy = url.parse(self.proxy)
if (!self.proxy) return false
// Don't need to use a tunneling proxy
if (!self.tunnel && self.uri.protocol !== 'https:')
return
// do the HTTP CONNECT dance using koichik/node-tunnel
// The host to tell the proxy to CONNECT to
var proxyHost = self.uri.hostname + ':'
if (self.uri.port)
proxyHost += self.uri.port
else if (self.uri.protocol === 'https:')
proxyHost += '443'
else
proxyHost += '80'
if (!self.proxyHeaderWhiteList)
self.proxyHeaderWhiteList = defaultProxyHeaderWhiteList
// Only send the proxy the whitelisted header names.
var proxyHeaders = Object.keys(self.headers).filter(function (h) {
return self.proxyHeaderWhiteList.indexOf(h.toLowerCase()) !== -1
}).reduce(function (set, h) {
set[h] = self.headers[h]
return set
}, {})
proxyHeaders.host = proxyHost
var tunnelFnName =
(self.uri.protocol === 'https:' ? 'https' : 'http') +
'Over' +
(self.proxy.protocol === 'https:' ? 'Https' : 'Http')
var tunnelFn = tunnel[tunnelFnName]
var proxyAuth
if (self.proxy.auth)
proxyAuth = self.proxy.auth
else if (self.proxyAuthorization)
proxyHeaders['Proxy-Authorization'] = self.proxyAuthorization
var tunnelOptions = { proxy: { host: self.proxy.hostname
, port: +self.proxy.port
, proxyAuth: proxyAuth
, headers: proxyHeaders }
, rejectUnauthorized: self.rejectUnauthorized
, headers: self.headers
, ca: self.ca
, cert: self.cert
, key: self.key}
self.agent = tunnelFn(tunnelOptions)
// At this point, we know that the proxy will support tunneling
// (or fail miserably), so we're going to tunnel all proxied requests
// from here on out.
self.tunnel = true
return true
}
Request.prototype.init = function (options) {
// init() contains all the code to setup the request object.
// the actual outgoing request is not started until start() is called
// this function is called from both the constructor and on redirect.
var self = this
if (!options) options = {}
caseless.httpify(self, self.headers || {})
// Never send proxy-auth to the endpoint!
if (self.hasHeader('proxy-authorization')) {
self.proxyAuthorization = self.getHeader('proxy-authorization')
self.removeHeader('proxy-authorization')
}
if (!self.method) self.method = options.method || 'GET'
self.localAddress = options.localAddress
debug(options)
if (!self.pool && self.pool !== false) self.pool = globalPool
self.dests = self.dests || []
self.__isRequestRequest = true
// Protect against double callback
if (!self._callback && self.callback) {
self._callback = self.callback
self.callback = function () {
if (self._callbackCalled) return // Print a warning maybe?
self._callbackCalled = true
self._callback.apply(self, arguments)
}
self.on('error', self.callback.bind())
self.on('complete', self.callback.bind(self, null))
}
if (self.url && !self.uri) {
// People use this property instead all the time so why not just support it.
self.uri = self.url
delete self.url
}
if (!self.uri) {
// this will throw if unhandled but is handleable when in a redirect
return self.emit('error', new Error("options.uri is a required argument"))
} else {
if (typeof self.uri == "string") self.uri = url.parse(self.uri)
}
if (self.strictSSL === false) {
self.rejectUnauthorized = false
}
if(!self.hasOwnProperty('proxy')) {
// check for HTTP(S)_PROXY environment variables
if(self.uri.protocol == "http:") {
self.proxy = process.env.HTTP_PROXY || process.env.http_proxy || null;
} else if(self.uri.protocol == "https:") {
self.proxy = process.env.HTTPS_PROXY || process.env.https_proxy ||
process.env.HTTP_PROXY || process.env.http_proxy || null;
}
}
// Pass in `tunnel:true` to *always* tunnel through proxies
self.tunnel = !!options.tunnel
if (self.proxy) {
self.setupTunnel()
}
if (!self.uri.pathname) {self.uri.pathname = '/'}
if (!self.uri.host && !self.protocol=='unix:') {
// Invalid URI: it may generate lot of bad errors, like "TypeError: Cannot call method 'indexOf' of undefined" in CookieJar
// Detect and reject it as soon as possible
var faultyUri = url.format(self.uri)
var message = 'Invalid URI "' + faultyUri + '"'
if (Object.keys(options).length === 0) {
// No option ? This can be the sign of a redirect
// As this is a case where the user cannot do anything (they didn't call request directly with this URL)
// they should be warned that it can be caused by a redirection (can save some hair)
message += '. This can be caused by a crappy redirection.'
}
self.emit('error', new Error(message))
return // This error was fatal
}
self._redirectsFollowed = self._redirectsFollowed || 0
self.maxRedirects = (self.maxRedirects !== undefined) ? self.maxRedirects : 10
self.allowRedirect = (typeof self.followRedirect === 'function') ? self.followRedirect : function(response) {
return true;
};
self.followRedirect = (self.followRedirect !== undefined) ? !!self.followRedirect : true
self.followAllRedirects = (self.followAllRedirects !== undefined) ? self.followAllRedirects : false
if (self.followRedirect || self.followAllRedirects)
self.redirects = self.redirects || []
self.setHost = false
if (!self.hasHeader('host')) {
self.setHeader('host', self.uri.hostname)
if (self.uri.port) {
if ( !(self.uri.port === 80 && self.uri.protocol === 'http:') &&
!(self.uri.port === 443 && self.uri.protocol === 'https:') )
self.setHeader('host', self.getHeader('host') + (':'+self.uri.port) )
}
self.setHost = true
}
self.jar(self._jar || options.jar)
if (!self.uri.port) {
if (self.uri.protocol == 'http:') {self.uri.port = 80}
else if (self.uri.protocol == 'https:') {self.uri.port = 443}
}
if (self.proxy && !self.tunnel) {
self.port = self.proxy.port
self.host = self.proxy.hostname
} else {
self.port = self.uri.port
self.host = self.uri.hostname
}
self.clientErrorHandler = function (error) {
if (self._aborted) return
if (self.req && self.req._reusedSocket && error.code === 'ECONNRESET'
&& self.agent.addRequestNoreuse) {
self.agent = { addRequest: self.agent.addRequestNoreuse.bind(self.agent) }
self.start()
self.req.end()
return
}
if (self.timeout && self.timeoutTimer) {
clearTimeout(self.timeoutTimer)
self.timeoutTimer = null
}
self.emit('error', error)
}
self._parserErrorHandler = function (error) {
if (this.res) {
if (this.res.request) {
this.res.request.emit('error', error)
} else {
this.res.emit('error', error)
}
} else {
this._httpMessage.emit('error', error)
}
}
self._buildRequest = function(){
var self = this;
if (options.form) {
self.form(options.form)
}
if (options.qs) self.qs(options.qs)
if (self.uri.path) {
self.path = self.uri.path
} else {
self.path = self.uri.pathname + (self.uri.search || "")
}
if (self.path.length === 0) self.path = '/'
// Auth must happen last in case signing is dependent on other headers
if (options.oauth) {
self.oauth(options.oauth)
}
if (options.aws) {
self.aws(options.aws)
}
if (options.hawk) {
self.hawk(options.hawk)
}
if (options.httpSignature) {
self.httpSignature(options.httpSignature)
}
if (options.auth) {
if (Object.prototype.hasOwnProperty.call(options.auth, 'username')) options.auth.user = options.auth.username
if (Object.prototype.hasOwnProperty.call(options.auth, 'password')) options.auth.pass = options.auth.password
self.auth(
options.auth.user,
options.auth.pass,
options.auth.sendImmediately,
options.auth.bearer
)
}
if (self.gzip && !self.hasHeader('accept-encoding')) {
self.setHeader('accept-encoding', 'gzip')
}
if (self.uri.auth && !self.hasHeader('authorization')) {
var authPieces = self.uri.auth.split(':').map(function(item){ return querystring.unescape(item) })
self.auth(authPieces[0], authPieces.slice(1).join(':'), true)
}
if (self.proxy && !self.tunnel) {
if (self.proxy.auth && !self.proxyAuthorization) {
var authPieces = self.proxy.auth.split(':').map(function(item){
return querystring.unescape(item)
})
var authHeader = 'Basic ' + toBase64(authPieces.join(':'))
self.proxyAuthorization = authHeader
}
if (self.proxyAuthorization)
self.setHeader('proxy-authorization', self.proxyAuthorization)
}
if (self.proxy && !self.tunnel) self.path = (self.uri.protocol + '//' + self.uri.host + self.path)
if (options.json) {
self.json(options.json)
} else if (options.multipart) {
self.boundary = uuid()
self.multipart(options.multipart)
}
if (self.body) {
var length = 0
if (!Buffer.isBuffer(self.body)) {
if (Array.isArray(self.body)) {
for (var i = 0; i < self.body.length; i++) {
length += self.body[i].length
}
} else {
self.body = new Buffer(self.body)
length = self.body.length
}
} else {
length = self.body.length
}
if (length) {
if (!self.hasHeader('content-length')) self.setHeader('content-length', length)
} else {
throw new Error('Argument error, options.body.')
}
}
var protocol = self.proxy && !self.tunnel ? self.proxy.protocol : self.uri.protocol
, defaultModules = {'http:':http, 'https:':https, 'unix:':http}
, httpModules = self.httpModules || {}
;
self.httpModule = httpModules[protocol] || defaultModules[protocol]
if (!self.httpModule) return this.emit('error', new Error("Invalid protocol: " + protocol))
if (options.ca) self.ca = options.ca
if (!self.agent) {
if (options.agentOptions) self.agentOptions = options.agentOptions
if (options.agentClass) {
self.agentClass = options.agentClass
} else if (options.forever) {
self.agentClass = protocol === 'http:' ? ForeverAgent : ForeverAgent.SSL
} else {
self.agentClass = self.httpModule.Agent
}
}
if (self.pool === false) {
self.agent = false
} else {
self.agent = self.agent || self.getAgent()
if (self.maxSockets) {
// Don't use our pooling if node has the refactored client
self.agent.maxSockets = self.maxSockets
}
if (self.pool.maxSockets) {
// Don't use our pooling if node has the refactored client
self.agent.maxSockets = self.pool.maxSockets
}
}
self.on('pipe', function (src) {
if (self.ntick && self._started) throw new Error("You cannot pipe to this stream after the outbound request has started.")
self.src = src
if (isReadStream(src)) {
if (!self.hasHeader('content-type')) self.setHeader('content-type', mime.lookup(src.path))
} else {
if (src.headers) {
for (var i in src.headers) {
if (!self.hasHeader(i)) {
self.setHeader(i, src.headers[i])
}
}
}
if (self._json && !self.hasHeader('content-type'))
self.setHeader('content-type', 'application/json')
if (src.method && !self.explicitMethod) {
self.method = src.method
}
}
// self.on('pipe', function () {
// console.error("You have already piped to this stream. Pipeing twice is likely to break the request.")
// })
})
process.nextTick(function () {
if (self._aborted) return
var end = function () {
if (self._form) {
self._form.pipe(self)
}
if (self.body) {
if (Array.isArray(self.body)) {
self.body.forEach(function (part) {
self.write(part)
})
} else {
self.write(self.body)
}
self.end()
} else if (self.requestBodyStream) {
console.warn("options.requestBodyStream is deprecated, please pass the request object to stream.pipe.")
self.requestBodyStream.pipe(self)
} else if (!self.src) {
if (self.method !== 'GET' && typeof self.method !== 'undefined') {
self.setHeader('content-length', 0)
}
self.end()
}
}
if (self._form && !self.hasHeader('content-length')) {
// Before ending the request, we had to compute the length of the whole form, asyncly
self.setHeader(self._form.getHeaders())
self._form.getLength(function (err, length) {
if (!err) {
self.setHeader('content-length', length)
}
end()
})
} else {
end()
}
self.ntick = true
})
} // End _buildRequest
self._handleUnixSocketURI = function(self){
// Parse URI and extract a socket path (tested as a valid socket using net.connect), and a http style path suffix
// Thus http requests can be made to a socket using the uri unix://tmp/my.socket/urlpath
// and a request for '/urlpath' will be sent to the unix socket at /tmp/my.socket
self.unixsocket = true;
var full_path = self.uri.href.replace(self.uri.protocol+'/', '');
var lookup = full_path.split('/');
var error_connecting = true;
var lookup_table = {};
do { lookup_table[lookup.join('/')]={} } while(lookup.pop())
for (r in lookup_table){
try_next(r);
}
function try_next(table_row){
var client = net.connect( table_row );
client.path = table_row
client.on('error', function(){ lookup_table[this.path].error_connecting=true; this.end(); });
client.on('connect', function(){ lookup_table[this.path].error_connecting=false; this.end(); });
table_row.client = client;
}
wait_for_socket_response();
response_counter = 0;
function wait_for_socket_response(){
var detach;
if('undefined' == typeof setImmediate ) detach = process.nextTick
else detach = setImmediate;
detach(function(){
// counter to prevent infinite blocking waiting for an open socket to be found.
response_counter++;
var trying = false;
for (r in lookup_table){
if('undefined' == typeof lookup_table[r].error_connecting)
trying = true;
}
if(trying && response_counter<1000)
wait_for_socket_response()
else
set_socket_properties();
})
}
function set_socket_properties(){
var host;
for (r in lookup_table){
if(lookup_table[r].error_connecting === false){
host = r
}
}
if(!host){
self.emit('error', new Error("Failed to connect to any socket in "+full_path))
}
var path = full_path.replace(host, '')
self.socketPath = host
self.uri.pathname = path
self.uri.href = path
self.uri.path = path
self.host = ''
self.hostname = ''
delete self.host
delete self.hostname
self._buildRequest();
}
}
// Intercept UNIX protocol requests to change properties to match socket
if(/^unix:/.test(self.uri.protocol)){
self._handleUnixSocketURI(self);
} else {
self._buildRequest();
}
}
// Must call this when following a redirect from https to http or vice versa
// Attempts to keep everything as identical as possible, but update the
// httpModule, Tunneling agent, and/or Forever Agent in use.
Request.prototype._updateProtocol = function () {
var self = this
var protocol = self.uri.protocol
if (protocol === 'https:' || self.tunnel) {
// previously was doing http, now doing https
// if it's https, then we might need to tunnel now.
if (self.proxy) {
if (self.setupTunnel()) return
}
self.httpModule = https
switch (self.agentClass) {
case ForeverAgent:
self.agentClass = ForeverAgent.SSL
break
case http.Agent:
self.agentClass = https.Agent
break
default:
// nothing we can do. Just hope for the best.
return
}
// if there's an agent, we need to get a new one.
if (self.agent) self.agent = self.getAgent()
} else {
// previously was doing https, now doing http
self.httpModule = http
switch (self.agentClass) {
case ForeverAgent.SSL:
self.agentClass = ForeverAgent
break
case https.Agent:
self.agentClass = http.Agent
break
default:
// nothing we can do. just hope for the best
return
}
// if there's an agent, then get a new one.
if (self.agent) {
self.agent = null
self.agent = self.getAgent()
}
}
}
Request.prototype.getAgent = function () {
var Agent = this.agentClass
var options = {}
if (this.agentOptions) {
for (var i in this.agentOptions) {
options[i] = this.agentOptions[i]
}
}
if (this.ca) options.ca = this.ca
if (this.ciphers) options.ciphers = this.ciphers
if (this.secureProtocol) options.secureProtocol = this.secureProtocol
if (this.secureOptions) options.secureOptions = this.secureOptions
if (typeof this.rejectUnauthorized !== 'undefined') options.rejectUnauthorized = this.rejectUnauthorized
if (this.cert && this.key) {
options.key = this.key
options.cert = this.cert
}
var poolKey = ''
// different types of agents are in different pools
if (Agent !== this.httpModule.Agent) {
poolKey += Agent.name
}
if (!this.httpModule.globalAgent) {
// node 0.4.x
options.host = this.host
options.port = this.port
if (poolKey) poolKey += ':'
poolKey += this.host + ':' + this.port
}
// ca option is only relevant if proxy or destination are https
var proxy = this.proxy
if (typeof proxy === 'string') proxy = url.parse(proxy)
var isHttps = (proxy && proxy.protocol === 'https:') || this.uri.protocol === 'https:'
if (isHttps) {
if (options.ca) {
if (poolKey) poolKey += ':'
poolKey += options.ca
}
if (typeof options.rejectUnauthorized !== 'undefined') {
if (poolKey) poolKey += ':'
poolKey += options.rejectUnauthorized
}
if (options.cert)
poolKey += options.cert.toString('ascii') + options.key.toString('ascii')
if (options.ciphers) {
if (poolKey) poolKey += ':'
poolKey += options.ciphers
}
if (options.secureProtocol) {
if (poolKey) poolKey += ':'
poolKey += options.secureProtocol
}
if (options.secureOptions) {
if (poolKey) poolKey += ':'
poolKey += options.secureOptions
}
}
if (this.pool === globalPool && !poolKey && Object.keys(options).length === 0 && this.httpModule.globalAgent) {
// not doing anything special. Use the globalAgent
return this.httpModule.globalAgent
}
// we're using a stored agent. Make sure it's protocol-specific
poolKey = this.uri.protocol + poolKey
// already generated an agent for this setting
if (this.pool[poolKey]) return this.pool[poolKey]
return this.pool[poolKey] = new Agent(options)
}
Request.prototype.start = function () {
// start() is called once we are ready to send the outgoing HTTP request.
// this is usually called on the first write(), end() or on nextTick()
var self = this
if (self._aborted) return
self._started = true
self.method = self.method || 'GET'
self.href = self.uri.href
if (self.src && self.src.stat && self.src.stat.size && !self.hasHeader('content-length')) {
self.setHeader('content-length', self.src.stat.size)
}
if (self._aws) {
self.aws(self._aws, true)
}
// We have a method named auth, which is completely different from the http.request
// auth option. If we don't remove it, we're gonna have a bad time.
var reqOptions = copy(self)
delete reqOptions.auth
debug('make request', self.uri.href)
self.req = self.httpModule.request(reqOptions, self.onResponse.bind(self))
if (self.timeout && !self.timeoutTimer) {
self.timeoutTimer = setTimeout(function () {
self.req.abort()
var e = new Error("ETIMEDOUT")
e.code = "ETIMEDOUT"
self.emit("error", e)
}, self.timeout)
// Set additional timeout on socket - in case if remote
// server freeze after sending headers
if (self.req.setTimeout) { // only works on node 0.6+
self.req.setTimeout(self.timeout, function () {
if (self.req) {
self.req.abort()
var e = new Error("ESOCKETTIMEDOUT")
e.code = "ESOCKETTIMEDOUT"
self.emit("error", e)
}
})
}
}
self.req.on('error', self.clientErrorHandler)
self.req.on('drain', function() {
self.emit('drain')
})
self.on('end', function() {
if ( self.req.connection ) self.req.connection.removeListener('error', self._parserErrorHandler)
})
self.emit('request', self.req)
}
Request.prototype.onResponse = function (response) {
var self = this
debug('onResponse', self.uri.href, response.statusCode, response.headers)
response.on('end', function() {
debug('response end', self.uri.href, response.statusCode, response.headers)
});
// The check on response.connection is a workaround for browserify.
if (response.connection && response.connection.listeners('error').indexOf(self._parserErrorHandler) === -1) {
response.connection.setMaxListeners(0)
response.connection.once('error', self._parserErrorHandler)
}
if (self._aborted) {
debug('aborted', self.uri.href)
response.resume()
return
}
if (self._paused) response.pause()
// Check that response.resume is defined. Workaround for browserify.
else response.resume && response.resume()
self.response = response
response.request = self
response.toJSON = responseToJSON
// XXX This is different on 0.10, because SSL is strict by default
if (self.httpModule === https &&
self.strictSSL && (!response.hasOwnProperty('client') ||
!response.client.authorized)) {
debug('strict ssl error', self.uri.href)
var sslErr = response.hasOwnProperty('client') ? response.client.authorizationError : self.uri.href + " does not support SSL";
self.emit('error', new Error('SSL Error: '+ sslErr))
return
}
if (self.setHost) self.removeHeader('host')
if (self.timeout && self.timeoutTimer) {
clearTimeout(self.timeoutTimer)
self.timeoutTimer = null
}
var targetCookieJar = (self._jar && self._jar.setCookie)?self._jar:globalCookieJar;
var addCookie = function (cookie) {
//set the cookie if it's domain in the href's domain.
try {
targetCookieJar.setCookie(cookie, self.uri.href, {ignoreError: true});
} catch (e) {
self.emit('error', e);
}
}
response.caseless = caseless(response.headers)
if (response.caseless.has('set-cookie') && (!self._disableCookies)) {
var headerName = response.caseless.has('set-cookie')
if (Array.isArray(response.headers[headerName])) response.headers[headerName].forEach(addCookie)
else addCookie(response.headers[headerName])
}
var redirectTo = null
if (response.statusCode >= 300 && response.statusCode < 400 && response.caseless.has('location')) {
var location = response.caseless.get('location')
debug('redirect', location)
if (self.followAllRedirects) {
redirectTo = location
} else if (self.followRedirect) {
switch (self.method) {
case 'PATCH':
case 'PUT':
case 'POST':
case 'DELETE':
// Do not follow redirects
break
default:
redirectTo = location
break
}
}
} else if (response.statusCode == 401 && self._hasAuth && !self._sentAuth) {
var authHeader = response.caseless.get('www-authenticate')
var authVerb = authHeader && authHeader.split(' ')[0].toLowerCase()
debug('reauth', authVerb)
switch (authVerb) {
case 'basic':
self.auth(self._user, self._pass, true)
redirectTo = self.uri
break
case 'bearer':
self.auth(null, null, true, self._bearer)
redirectTo = self.uri
break
case 'digest':
// TODO: More complete implementation of RFC 2617.
// - check challenge.algorithm
// - support algorithm="MD5-sess"
// - handle challenge.domain
// - support qop="auth-int" only
// - handle Authentication-Info (not necessarily?)
// - check challenge.stale (not necessarily?)
// - increase nc (not necessarily?)
// For reference:
// http://tools.ietf.org/html/rfc2617#section-3
// https://github.com/bagder/curl/blob/master/lib/http_digest.c
var challenge = {}
var re = /([a-z0-9_-]+)=(?:"([^"]+)"|([a-z0-9_-]+))/gi
for (;;) {
var match = re.exec(authHeader)
if (!match) break
challenge[match[1]] = match[2] || match[3];
}
var ha1 = md5(self._user + ':' + challenge.realm + ':' + self._pass)
var ha2 = md5(self.method + ':' + self.uri.path)
var qop = /(^|,)\s*auth\s*($|,)/.test(challenge.qop) && 'auth'
var nc = qop && '00000001'
var cnonce = qop && uuid().replace(/-/g, '')
var digestResponse = qop ? md5(ha1 + ':' + challenge.nonce + ':' + nc + ':' + cnonce + ':' + qop + ':' + ha2) : md5(ha1 + ':' + challenge.nonce + ':' + ha2)
var authValues = {
username: self._user,
realm: challenge.realm,
nonce: challenge.nonce,
uri: self.uri.path,
qop: qop,
response: digestResponse,
nc: nc,
cnonce: cnonce,
algorithm: challenge.algorithm,
opaque: challenge.opaque
}
authHeader = []
for (var k in authValues) {
if (!authValues[k]) {
//ignore
} else if (k === 'qop' || k === 'nc' || k === 'algorithm') {
authHeader.push(k + '=' + authValues[k])
} else {
authHeader.push(k + '="' + authValues[k] + '"')
}
}
authHeader = 'Digest ' + authHeader.join(', ')
self.setHeader('authorization', authHeader)
self._sentAuth = true
redirectTo = self.uri
break
}
}
if (redirectTo && self.allowRedirect.call(self, response)) {
debug('redirect to', redirectTo)
// ignore any potential response body. it cannot possibly be useful
// to us at this point.
if (self._paused) response.resume()
if (self._redirectsFollowed >= self.maxRedirects) {
self.emit('error', new Error("Exceeded maxRedirects. Probably stuck in a redirect loop "+self.uri.href))
return
}
self._redirectsFollowed += 1