mirror of
https://github.com/moparisthebest/mail
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460 lines
19 KiB
JavaScript
460 lines
19 KiB
JavaScript
'use strict';
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var PGP = require('../../src/js/crypto/pgp');
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describe('PGP Crypto Api unit tests', function() {
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this.timeout(20000);
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var pgp,
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user = 'whiteout.test@t-online.de',
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passphrase = 'asdf',
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keySize = 512,
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keyId = 'F6F60E9B42CDFF4C',
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pubkey = '-----BEGIN PGP PUBLIC KEY BLOCK-----\r\n' +
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'Version: OpenPGP.js v0.7.2\r\n' +
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'Comment: Whiteout Mail - https://whiteout.io\r\n' +
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'\r\n' +
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'xk0EUlhMvAEB/2MZtCUOAYvyLFjDp3OBMGn3Ev8FwjzyPbIF0JUw+L7y2XR5\r\n' +
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'RVGvbK88unV3cU/1tOYdNsXI6pSp/Ztjyv7vbBUAEQEAAc0pV2hpdGVvdXQg\r\n' +
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'VXNlciA8d2hpdGVvdXQudGVzdEB0LW9ubGluZS5kZT7CXAQQAQgAEAUCUlhM\r\n' +
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'vQkQ9vYOm0LN/0wAAAW4Af9C+kYW1AvNWmivdtr0M0iYCUjM9DNOQH1fcvXq\r\n' +
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'IiN602mWrkd8jcEzLsW5IUNzVPLhrFIuKyBDTpLnC07Loce1\r\n' +
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'=6XMW\r\n' +
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'-----END PGP PUBLIC KEY BLOCK-----\r\n\r\n',
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privkey = '-----BEGIN PGP PRIVATE KEY BLOCK-----\r\n' +
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'Version: OpenPGP.js v0.7.2\r\n' +
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'Comment: Whiteout Mail - https://whiteout.io\r\n' +
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'\r\n' +
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'xcBeBFJYTLwBAf9jGbQlDgGL8ixYw6dzgTBp9xL/BcI88j2yBdCVMPi+8tl0\r\n' +
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'eUVRr2yvPLp1d3FP9bTmHTbFyOqUqf2bY8r+72wVABEBAAH+AwMIhNB4ivtv\r\n' +
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'Y2xg6VeMcjjHxZayESHACV+nQx5Tx6ev6xzIF1Qh72fNPDppLhFSFOuTTMsU\r\n' +
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'kTN4c+BVYt29spH+cA1jcDAxQ2ULrNAXo+hheOqhpedTs8aCbcLFkJAS16hk\r\n' +
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'YSk4OnJgp/z24rVju1SHRSFbgundPzmNgXeX9e8IkviGhhQ11Wc5YwVkx03t\r\n' +
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'Z3MdDMF0jyhopbPIoBdyJB0dhvBh98w3JmwpYh9wjUA9MBHD1tvHpRmSZ3BM\r\n' +
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'UCmATn2ZLWBRWiYqFbgDnL1GM80pV2hpdGVvdXQgVXNlciA8d2hpdGVvdXQu\r\n' +
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'dGVzdEB0LW9ubGluZS5kZT7CXAQQAQgAEAUCUlhMvQkQ9vYOm0LN/0wAAAW4\r\n' +
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'Af9C+kYW1AvNWmivdtr0M0iYCUjM9DNOQH1fcvXqIiN602mWrkd8jcEzLsW5\r\n' +
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'IUNzVPLhrFIuKyBDTpLnC07Loce1\r\n' +
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'=ULta\r\n' +
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'-----END PGP PRIVATE KEY BLOCK-----\r\n';
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beforeEach(function() {
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pgp = new PGP();
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});
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afterEach(function() {});
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describe('Generate key pair', function() {
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it('should fail', function(done) {
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pgp.generateKeys({
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emailAddress: 'whiteout.test@t-onlinede',
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keySize: keySize,
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passphrase: passphrase
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}, function(err, keys) {
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expect(err).to.exist;
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expect(keys).to.not.exist;
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done();
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});
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});
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it('should fail', function(done) {
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pgp.generateKeys({
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emailAddress: 'whiteout.testt-online.de',
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keySize: keySize,
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passphrase: passphrase
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}, function(err, keys) {
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expect(err).to.exist;
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expect(keys).to.not.exist;
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done();
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});
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});
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it('should work with passphrase', function(done) {
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pgp.generateKeys({
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emailAddress: user,
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keySize: keySize,
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passphrase: passphrase
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}, function(err, keys) {
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expect(err).to.not.exist;
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expect(keys.keyId).to.exist;
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expect(keys.privateKeyArmored).to.exist;
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expect(keys.publicKeyArmored).to.exist;
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// test encrypt/decrypt
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pgp.importKeys({
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passphrase: passphrase,
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privateKeyArmored: keys.privateKeyArmored,
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publicKeyArmored: keys.publicKeyArmored
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}, function(err) {
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expect(err).to.not.exist;
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pgp.encrypt('secret', [keys.publicKeyArmored], function(err, ct) {
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expect(err).to.not.exist;
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expect(ct).to.exist;
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pgp.decrypt(ct, keys.publicKeyArmored, function(err, pt, signValid) {
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expect(err).to.not.exist;
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expect(pt).to.equal('secret');
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expect(signValid).to.be.true;
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done();
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});
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});
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});
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});
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});
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it('should work without passphrase', function(done) {
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pgp.generateKeys({
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emailAddress: user,
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keySize: keySize,
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passphrase: ''
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}, function(err, keys) {
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expect(err).to.not.exist;
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expect(keys.keyId).to.exist;
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expect(keys.privateKeyArmored).to.exist;
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expect(keys.publicKeyArmored).to.exist;
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// test encrypt/decrypt
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pgp.importKeys({
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passphrase: undefined,
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privateKeyArmored: keys.privateKeyArmored,
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publicKeyArmored: keys.publicKeyArmored
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}, function(err) {
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expect(err).to.not.exist;
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pgp.encrypt('secret', [keys.publicKeyArmored], function(err, ct) {
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expect(err).to.not.exist;
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expect(ct).to.exist;
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pgp.decrypt(ct, keys.publicKeyArmored, function(err, pt, signValid) {
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expect(err).to.not.exist;
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expect(pt).to.equal('secret');
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expect(signValid).to.be.true;
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done();
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});
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});
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});
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});
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});
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});
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describe('Import/Export key pair', function() {
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it('should fail', function(done) {
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pgp.importKeys({
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passphrase: 'asd',
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privateKeyArmored: privkey,
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publicKeyArmored: pubkey
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}, function(err) {
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expect(err).to.exist;
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expect(err.message).to.equal('Incorrect passphrase!');
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pgp.exportKeys(function(err, keys) {
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expect(err).to.exist;
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expect(keys).to.not.exist;
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done();
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});
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});
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});
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it('should work', function(done) {
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pgp.importKeys({
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passphrase: passphrase,
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privateKeyArmored: privkey,
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publicKeyArmored: pubkey
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}, function(err) {
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expect(err).to.not.exist;
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pgp.exportKeys(function(err, keys) {
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expect(err).to.not.exist;
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expect(keys.keyId).to.equal(keyId);
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expect(keys.privateKeyArmored.replace(/\r/g, '')).to.equal(privkey.replace(/\r/g, ''));
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expect(keys.publicKeyArmored.replace(/\r/g, '')).to.equal(pubkey.replace(/\r/g, ''));
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done();
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});
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});
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});
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});
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describe('Change passphrase of private key', function() {
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it('should work with new passphrase', function(done) {
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pgp.changePassphrase({
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privateKeyArmored: privkey,
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oldPassphrase: passphrase,
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newPassphrase: 'yxcv'
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}, function(err, reEncryptedKey) {
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expect(err).to.not.exist;
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expect(reEncryptedKey).to.exist;
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pgp.importKeys({
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passphrase: 'yxcv',
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privateKeyArmored: reEncryptedKey,
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publicKeyArmored: pubkey
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}, function(err) {
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expect(err).to.not.exist;
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done();
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});
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});
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});
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it('should work with empty passphrase', function(done) {
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pgp.changePassphrase({
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privateKeyArmored: privkey,
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oldPassphrase: passphrase,
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newPassphrase: undefined
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}, function(err, reEncryptedKey) {
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expect(err).to.not.exist;
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expect(reEncryptedKey).to.exist;
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pgp.importKeys({
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passphrase: undefined,
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privateKeyArmored: reEncryptedKey,
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publicKeyArmored: pubkey
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}, function(err) {
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expect(err).to.not.exist;
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done();
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});
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});
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});
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it('should fail when passphrases are equal', function(done) {
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pgp.changePassphrase({
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privateKeyArmored: privkey,
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oldPassphrase: passphrase,
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newPassphrase: passphrase
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}, function(err, reEncryptedKey) {
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expect(err).to.exist;
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expect(reEncryptedKey).to.not.exist;
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done();
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});
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});
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it('should fail when old passphrase is incorrect', function(done) {
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pgp.changePassphrase({
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privateKeyArmored: privkey,
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oldPassphrase: 'asd',
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newPassphrase: 'yxcv'
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}, function(err, reEncryptedKey) {
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expect(err).to.exist;
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expect(reEncryptedKey).to.not.exist;
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done();
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});
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});
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});
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describe('Encrypt/Sign/Decrypt/Verify', function() {
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var message = 'asdfs\n\nThursday, Nov 21, 2013 7:38 PM asdf@example.com wrote:\n' +
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'> asdf\n' +
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'> \n' +
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'> Thursday, Nov 21, 2013 7:32 PM asdf@example.com wrote:\n' +
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'> > secret 3';
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var wrongPubkey = '-----BEGIN PGP PUBLIC KEY BLOCK-----\r\nVersion: OpenPGP.js v.1.20131116\r\nComment: Whiteout Mail - http://whiteout.io\r\n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\r\nNvE45V/hS1PbZcfPVoUjE2qc1Ix1\r\n=7Wpe\r\n-----END PGP PUBLIC KEY BLOCK-----';
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beforeEach(function(done) {
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pgp.importKeys({
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passphrase: passphrase,
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privateKeyArmored: privkey,
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publicKeyArmored: pubkey
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}, function(err) {
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expect(err).to.not.exist;
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done();
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});
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});
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describe('Get KeyId', function() {
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it('should work without param', function() {
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var keyId = pgp.getKeyId();
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expect(keyId).to.equal('F6F60E9B42CDFF4C');
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});
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it('should work with param', function() {
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var keyId = pgp.getKeyId(pubkey);
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expect(keyId).to.equal('F6F60E9B42CDFF4C');
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});
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});
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describe('Get Fingerprint', function() {
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it('should work without param', function() {
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var fingerprint = pgp.getFingerprint();
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expect(fingerprint).to.equal('5856CEF789C3A307E8A1B976F6F60E9B42CDFF4C');
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});
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it('should work with param', function() {
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var fingerprint = pgp.getFingerprint(pubkey);
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expect(fingerprint).to.equal('5856CEF789C3A307E8A1B976F6F60E9B42CDFF4C');
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});
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});
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describe('getKeyParams', function() {
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it('should work with param', function() {
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var params = pgp.getKeyParams(pubkey);
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expect(params.fingerprint).to.equal('5856CEF789C3A307E8A1B976F6F60E9B42CDFF4C');
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expect(params._id).to.equal("F6F60E9B42CDFF4C");
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expect(params.bitSize).to.equal(keySize);
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expect(params.userId).to.equal("whiteout.test@t-online.de");
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expect(params.userIds[0].name).to.equal("Whiteout User");
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expect(params.userIds[0].emailAddress).to.equal("whiteout.test@t-online.de");
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expect(params.algorithm).to.equal("rsa_encrypt_sign");
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});
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it('should work without param', function() {
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var params = pgp.getKeyParams();
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expect(params.fingerprint).to.equal('5856CEF789C3A307E8A1B976F6F60E9B42CDFF4C');
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expect(params._id).to.equal("F6F60E9B42CDFF4C");
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expect(params.bitSize).to.equal(keySize);
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expect(params.userId).to.equal("whiteout.test@t-online.de");
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expect(params.userIds[0].name).to.equal("Whiteout User");
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expect(params.userIds[0].emailAddress).to.equal("whiteout.test@t-online.de");
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expect(params.algorithm).to.equal("rsa_encrypt_sign");
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});
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});
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describe('extractPublicKey', function() {
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it('should work', function() {
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var pk = pgp.extractPublicKey(privkey);
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expect(pk).to.exist;
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expect(pk).to.contain('-----BEGIN PGP PUBLIC KEY BLOCK-----');
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});
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});
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describe('Encrypt and sign', function() {
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it('should fail', function(done) {
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var input = null;
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pgp.encrypt(input, [pubkey], function(err, ct) {
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expect(err).to.exist;
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expect(ct).to.not.exist;
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done();
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});
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});
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it('should work', function(done) {
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pgp.encrypt(message, [pubkey], function(err, ct) {
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expect(err).to.not.exist;
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expect(ct).to.exist;
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done();
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});
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});
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it('should encrypt to myself if public keys are empty', function(done) {
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pgp.encrypt(message, undefined, function(err, ct) {
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expect(err).to.not.exist;
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expect(ct).to.exist;
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done();
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});
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});
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});
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describe('Decrypt and verify', function() {
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var ciphertext;
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beforeEach(function(done) {
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pgp.encrypt(message, [pubkey], function(err, ct) {
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expect(err).to.not.exist;
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expect(ct).to.exist;
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ciphertext = ct;
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done();
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});
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});
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it('should fail', function(done) {
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var input = 'asdfa\rsdf';
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pgp.decrypt(input, pubkey, function(err, pt) {
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expect(err).to.exist;
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expect(pt).to.not.exist;
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done();
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});
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});
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it('should work', function(done) {
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pgp.decrypt(ciphertext, pubkey, function(err, pt, signValid) {
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expect(err).to.not.exist;
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expect(pt).to.equal(message);
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expect(signValid).to.be.true;
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done();
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});
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});
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it('should work without signature', function(done) {
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var ct = openpgp.encryptMessage([pgp._publicKey], message);
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pgp.decrypt(ct, undefined, function(err, pt, signValid) {
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expect(err).to.not.exist;
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expect(pt).to.equal(message);
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expect(signValid).to.be.undefined;
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done();
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});
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});
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it('should fail to verify if public keys are empty', function(done) {
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// setup another public key so that signature verification fails
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pgp._publicKey = openpgp.key.readArmored(wrongPubkey).keys[0];
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pgp.decrypt(ciphertext, undefined, function(err, pt, signValid) {
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expect(err).to.not.exist;
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expect(pt).to.equal(message);
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expect(signValid).to.be.null;
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done();
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});
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});
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it('should decrypt but signValid should be null for wrong public key', function(done) {
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pgp.decrypt(ciphertext, wrongPubkey, function(err, pt, signValid) {
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expect(err).to.not.exist;
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expect(pt).to.equal(message);
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expect(signValid).to.be.null;
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done();
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});
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});
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});
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describe('Verify clearsigned message', function() {
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var clearsigned;
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beforeEach(function() {
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clearsigned = openpgp.signClearMessage(pgp._privateKey, 'this is a clearsigned message');
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});
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it('should work', function(done) {
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pgp.verifyClearSignedMessage(clearsigned, pubkey, function(err, signaturesValid) {
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expect(err).to.not.exist;
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expect(signaturesValid).to.be.true;
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done();
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});
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});
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it('should fail', function(done) {
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pgp.verifyClearSignedMessage(clearsigned.replace('clearsigned', 'invalid'), pubkey, function(err, signaturesValid) {
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expect(err).to.not.exist;
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expect(signaturesValid).to.be.false;
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done();
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});
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});
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it('should be null for wrong public key', function(done) {
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pgp.verifyClearSignedMessage(clearsigned, wrongPubkey, function(err, signaturesValid) {
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expect(err).to.not.exist;
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expect(signaturesValid).to.be.null;
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done();
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});
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|
});
|
|
});
|
|
|
|
describe('Verify detached signature', function() {
|
|
var signedMessage, signature;
|
|
|
|
beforeEach(function() {
|
|
signedMessage = 'this is a signed message';
|
|
var clearsigned = openpgp.signClearMessage(pgp._privateKey, signedMessage);
|
|
var signatureHeader = '-----BEGIN PGP SIGNATURE-----';
|
|
signature = signatureHeader + clearsigned.split(signatureHeader).pop();
|
|
});
|
|
|
|
it('should work', function(done) {
|
|
pgp.verifySignedMessage(signedMessage, signature, pubkey, function(err, signaturesValid) {
|
|
expect(err).to.not.exist;
|
|
expect(signaturesValid).to.be.true;
|
|
done();
|
|
});
|
|
});
|
|
|
|
it('should fail', function(done) {
|
|
pgp.verifySignedMessage(signedMessage.replace('signed', 'invalid'), signature, pubkey, function(err, signaturesValid) {
|
|
expect(err).to.not.exist;
|
|
expect(signaturesValid).to.be.false;
|
|
done();
|
|
});
|
|
});
|
|
it('should be null for wrong public key', function(done) {
|
|
pgp.verifySignedMessage(signedMessage, signature, wrongPubkey, function(err, signaturesValid) {
|
|
expect(err).to.not.exist;
|
|
expect(signaturesValid).to.be.null;
|
|
done();
|
|
});
|
|
});
|
|
});
|
|
});
|
|
}); |