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146 lines
3.8 KiB
JavaScript
146 lines
3.8 KiB
JavaScript
6 years ago
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var crypto = require('crypto')
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function sha (key, body, algorithm) {
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return crypto.createHmac(algorithm, key).update(body).digest('base64')
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}
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function rsa (key, body) {
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return crypto.createSign('RSA-SHA1').update(body).sign(key, 'base64')
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}
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function rfc3986 (str) {
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return encodeURIComponent(str)
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.replace(/!/g,'%21')
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.replace(/\*/g,'%2A')
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.replace(/\(/g,'%28')
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.replace(/\)/g,'%29')
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.replace(/'/g,'%27')
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}
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// Maps object to bi-dimensional array
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// Converts { foo: 'A', bar: [ 'b', 'B' ]} to
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// [ ['foo', 'A'], ['bar', 'b'], ['bar', 'B'] ]
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function map (obj) {
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var key, val, arr = []
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for (key in obj) {
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val = obj[key]
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if (Array.isArray(val))
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for (var i = 0; i < val.length; i++)
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arr.push([key, val[i]])
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else if (typeof val === 'object')
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for (var prop in val)
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arr.push([key + '[' + prop + ']', val[prop]])
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else
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arr.push([key, val])
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}
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return arr
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}
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// Compare function for sort
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function compare (a, b) {
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return a > b ? 1 : a < b ? -1 : 0
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}
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function generateBase (httpMethod, base_uri, params) {
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// adapted from https://dev.twitter.com/docs/auth/oauth and
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// https://dev.twitter.com/docs/auth/creating-signature
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// Parameter normalization
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// http://tools.ietf.org/html/rfc5849#section-3.4.1.3.2
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var normalized = map(params)
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// 1. First, the name and value of each parameter are encoded
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.map(function (p) {
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return [ rfc3986(p[0]), rfc3986(p[1] || '') ]
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})
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// 2. The parameters are sorted by name, using ascending byte value
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// ordering. If two or more parameters share the same name, they
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// are sorted by their value.
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.sort(function (a, b) {
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return compare(a[0], b[0]) || compare(a[1], b[1])
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})
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// 3. The name of each parameter is concatenated to its corresponding
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// value using an "=" character (ASCII code 61) as a separator, even
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// if the value is empty.
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.map(function (p) { return p.join('=') })
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// 4. The sorted name/value pairs are concatenated together into a
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// single string by using an "&" character (ASCII code 38) as
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// separator.
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.join('&')
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var base = [
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rfc3986(httpMethod ? httpMethod.toUpperCase() : 'GET'),
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rfc3986(base_uri),
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rfc3986(normalized)
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].join('&')
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return base
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}
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function hmacsign (httpMethod, base_uri, params, consumer_secret, token_secret) {
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var base = generateBase(httpMethod, base_uri, params)
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var key = [
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consumer_secret || '',
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token_secret || ''
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].map(rfc3986).join('&')
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return sha(key, base, 'sha1')
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}
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function hmacsign256 (httpMethod, base_uri, params, consumer_secret, token_secret) {
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var base = generateBase(httpMethod, base_uri, params)
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var key = [
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consumer_secret || '',
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token_secret || ''
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].map(rfc3986).join('&')
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return sha(key, base, 'sha256')
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}
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function rsasign (httpMethod, base_uri, params, private_key, token_secret) {
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var base = generateBase(httpMethod, base_uri, params)
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var key = private_key || ''
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return rsa(key, base)
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}
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function plaintext (consumer_secret, token_secret) {
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var key = [
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consumer_secret || '',
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token_secret || ''
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].map(rfc3986).join('&')
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return key
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}
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function sign (signMethod, httpMethod, base_uri, params, consumer_secret, token_secret) {
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var method
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var skipArgs = 1
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switch (signMethod) {
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case 'RSA-SHA1':
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method = rsasign
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break
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case 'HMAC-SHA1':
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method = hmacsign
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break
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case 'HMAC-SHA256':
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method = hmacsign256
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break
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case 'PLAINTEXT':
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method = plaintext
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skipArgs = 4
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break
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default:
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throw new Error('Signature method not supported: ' + signMethod)
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}
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return method.apply(null, [].slice.call(arguments, skipArgs))
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}
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exports.hmacsign = hmacsign
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exports.hmacsign256 = hmacsign256
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exports.rsasign = rsasign
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exports.plaintext = plaintext
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exports.sign = sign
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exports.rfc3986 = rfc3986
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exports.generateBase = generateBase
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