114 lines
4.1 KiB
JavaScript
114 lines
4.1 KiB
JavaScript
var test = require('tape')
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var fs = require('fs')
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var parseKeys = require('parse-asn1')
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var Buffer = require('safe-buffer').Buffer
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var path = require('path')
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require('./nodeTests')
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var rsa1024 = {
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private: fs.readFileSync(path.join(__dirname, 'rsa.1024.priv')),
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public: fs.readFileSync(path.join(__dirname, 'rsa.1024.pub'))
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}
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var rsa1024priv = {
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private: fs.readFileSync(path.join(__dirname, 'rsa.1024.priv')),
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public: fs.readFileSync(path.join(__dirname, 'rsa.1024.priv'))
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}
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var rsa2028 = {
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private: fs.readFileSync(path.join(__dirname, 'rsa.2028.priv')),
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public: fs.readFileSync(path.join(__dirname, 'rsa.2028.pub'))
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}
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var nonrsa1024 = {
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private: fs.readFileSync(path.join(__dirname, '1024.priv')),
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public: fs.readFileSync(path.join(__dirname, '1024.pub'))
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}
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var nonrsa1024str = {
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private: fs.readFileSync(path.join(__dirname, '1024.priv')).toString(),
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public: fs.readFileSync(path.join(__dirname, '1024.pub')).toString()
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}
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var pass1024 = {
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private: {
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passphrase: 'fooo',
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key: fs.readFileSync(path.join(__dirname, 'pass.1024.priv'))
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},
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public: fs.readFileSync(path.join(__dirname, 'pass.1024.pub'))
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}
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var pass2028 = {
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private: {
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passphrase: 'password',
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key: fs.readFileSync(path.join(__dirname, 'rsa.pass.priv'))
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},
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public: fs.readFileSync(path.join(__dirname, 'rsa.pass.pub'))
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}
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var nodeCrypto = require('../')
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var myCrypto = require('../browser')
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function _testIt (keys, message, t) {
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var pub = keys.public
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var priv = keys.private
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t.test(message.toString(), function (t) {
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t.plan(8)
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var myEnc = myCrypto.publicEncrypt(pub, message)
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var nodeEnc = nodeCrypto.publicEncrypt(pub, message)
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t.equals(myCrypto.privateDecrypt(priv, myEnc).toString('hex'), message.toString('hex'), 'my decrypter my message')
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t.equals(myCrypto.privateDecrypt(priv, nodeEnc).toString('hex'), message.toString('hex'), 'my decrypter node\'s message')
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t.equals(nodeCrypto.privateDecrypt(priv, myEnc).toString('hex'), message.toString('hex'), 'node decrypter my message')
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t.equals(nodeCrypto.privateDecrypt(priv, nodeEnc).toString('hex'), message.toString('hex'), 'node decrypter node\'s message')
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myEnc = myCrypto.privateEncrypt(priv, message)
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nodeEnc = nodeCrypto.privateEncrypt(priv, message)
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t.equals(myCrypto.publicDecrypt(pub, myEnc).toString('hex'), message.toString('hex'), 'reverse methods my decrypter my message')
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t.equals(myCrypto.publicDecrypt(pub, nodeEnc).toString('hex'), message.toString('hex'), 'reverse methods my decrypter node\'s message')
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t.equals(nodeCrypto.publicDecrypt(pub, myEnc).toString('hex'), message.toString('hex'), 'reverse methods node decrypter my message')
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t.equals(nodeCrypto.publicDecrypt(pub, nodeEnc).toString('hex'), message.toString('hex'), 'reverse methods node decrypter node\'s message')
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})
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}
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function testIt (keys, message, t) {
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_testIt(keys, message, t)
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_testIt(paddingObject(keys, 1), Buffer.concat([message, Buffer.from(' with RSA_PKCS1_PADDING')]), t)
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var parsedKey = parseKeys(keys.public)
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var k = parsedKey.modulus.byteLength()
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var zBuf = Buffer.alloc(k)
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var msg = Buffer.concat([zBuf, message, Buffer.from(' with no padding')]).slice(-k)
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_testIt(paddingObject(keys, 3), msg, t)
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}
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function paddingObject (keys, padding) {
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return {
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public: addPadding(keys.public, padding),
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private: addPadding(keys.private, padding)
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}
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}
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function addPadding (key, padding) {
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if (typeof key === 'string' || Buffer.isBuffer(key)) {
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return {
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key: key,
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padding: padding
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}
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}
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var out = {
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key: key.key,
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padding: padding
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}
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if ('passphrase' in key) {
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out.passphrase = key.passphrase
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}
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return out
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}
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function testRun (i) {
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test('run ' + i, function (t) {
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testIt(rsa1024priv, Buffer.from('1024 2 private keys'), t)
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testIt(rsa1024, Buffer.from('1024 keys'), t)
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testIt(rsa2028, Buffer.from('2028 keys'), t)
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testIt(nonrsa1024, Buffer.from('1024 keys non-rsa key'), t)
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testIt(pass1024, Buffer.from('1024 keys and password'), t)
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testIt(nonrsa1024str, Buffer.from('1024 keys non-rsa key as a string'), t)
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testIt(pass2028, Buffer.from('2028 rsa key with variant passwords'), t)
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})
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}
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var i = 0
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var num = 20
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while (++i <= num) {
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testRun(i)
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}
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