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This patch uses `return` statement to skip the test instead of using `process.exit` call. PR-URL: https://github.com/nodejs/io.js/pull/2109 Reviewed-By: Ben Noordhuis <info@bnoordhuis.nl> Reviewed-By: Johan Bergström <bugs@bergstroem.nu>
171 lines
5.8 KiB
JavaScript
171 lines
5.8 KiB
JavaScript
'use strict';
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var common = require('../common');
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var assert = require('assert');
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if (!common.hasCrypto) {
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console.log('1..0 # Skipped: missing crypto');
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return;
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}
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var crypto = require('crypto');
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function testCipher1(key) {
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// Test encryption and decryption
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var plaintext = 'Keep this a secret? No! Tell everyone about node.js!';
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var cipher = crypto.createCipher('aes192', key);
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// encrypt plaintext which is in utf8 format
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// to a ciphertext which will be in hex
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var ciph = cipher.update(plaintext, 'utf8', 'hex');
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// Only use binary or hex, not base64.
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ciph += cipher.final('hex');
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var decipher = crypto.createDecipher('aes192', key);
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var txt = decipher.update(ciph, 'hex', 'utf8');
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txt += decipher.final('utf8');
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assert.equal(txt, plaintext, 'encryption and decryption');
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// streaming cipher interface
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// NB: In real life, it's not guaranteed that you can get all of it
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// in a single read() like this. But in this case, we know it's
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// quite small, so there's no harm.
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var cStream = crypto.createCipher('aes192', key);
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cStream.end(plaintext);
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ciph = cStream.read();
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var dStream = crypto.createDecipher('aes192', key);
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dStream.end(ciph);
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txt = dStream.read().toString('utf8');
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assert.equal(txt, plaintext, 'encryption and decryption with streams');
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}
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function testCipher2(key) {
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// encryption and decryption with Base64
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// reported in https://github.com/joyent/node/issues/738
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var plaintext =
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'32|RmVZZkFUVmpRRkp0TmJaUm56ZU9qcnJkaXNNWVNpTTU*|iXmckfRWZBGWWELw' +
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'eCBsThSsfUHLeRe0KCsK8ooHgxie0zOINpXxfZi/oNG7uq9JWFVCk70gfzQH8ZUJ' +
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'jAfaFg**';
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var cipher = crypto.createCipher('aes256', key);
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// encrypt plaintext which is in utf8 format
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// to a ciphertext which will be in Base64
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var ciph = cipher.update(plaintext, 'utf8', 'base64');
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ciph += cipher.final('base64');
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var decipher = crypto.createDecipher('aes256', key);
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var txt = decipher.update(ciph, 'base64', 'utf8');
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txt += decipher.final('utf8');
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assert.equal(txt, plaintext, 'encryption and decryption with Base64');
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}
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function testCipher3(key, iv) {
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// Test encyrption and decryption with explicit key and iv
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var plaintext =
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'32|RmVZZkFUVmpRRkp0TmJaUm56ZU9qcnJkaXNNWVNpTTU*|iXmckfRWZBGWWELw' +
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'eCBsThSsfUHLeRe0KCsK8ooHgxie0zOINpXxfZi/oNG7uq9JWFVCk70gfzQH8ZUJ' +
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'jAfaFg**';
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var cipher = crypto.createCipheriv('des-ede3-cbc', key, iv);
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var ciph = cipher.update(plaintext, 'utf8', 'hex');
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ciph += cipher.final('hex');
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var decipher = crypto.createDecipheriv('des-ede3-cbc', key, iv);
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var txt = decipher.update(ciph, 'hex', 'utf8');
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txt += decipher.final('utf8');
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assert.equal(txt, plaintext, 'encryption and decryption with key and iv');
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// streaming cipher interface
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// NB: In real life, it's not guaranteed that you can get all of it
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// in a single read() like this. But in this case, we know it's
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// quite small, so there's no harm.
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var cStream = crypto.createCipheriv('des-ede3-cbc', key, iv);
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cStream.end(plaintext);
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ciph = cStream.read();
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var dStream = crypto.createDecipheriv('des-ede3-cbc', key, iv);
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dStream.end(ciph);
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txt = dStream.read().toString('utf8');
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assert.equal(txt, plaintext, 'streaming cipher iv');
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}
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function testCipher4(key, iv) {
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// Test encyrption and decryption with explicit key and iv
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var plaintext =
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'32|RmVZZkFUVmpRRkp0TmJaUm56ZU9qcnJkaXNNWVNpTTU*|iXmckfRWZBGWWELw' +
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'eCBsThSsfUHLeRe0KCsK8ooHgxie0zOINpXxfZi/oNG7uq9JWFVCk70gfzQH8ZUJ' +
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'jAfaFg**';
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var cipher = crypto.createCipheriv('des-ede3-cbc', key, iv);
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var ciph = cipher.update(plaintext, 'utf8', 'buffer');
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ciph = Buffer.concat([ciph, cipher.final('buffer')]);
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var decipher = crypto.createDecipheriv('des-ede3-cbc', key, iv);
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var txt = decipher.update(ciph, 'buffer', 'utf8');
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txt += decipher.final('utf8');
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assert.equal(txt, plaintext, 'encryption and decryption with key and iv');
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}
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testCipher1('MySecretKey123');
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testCipher1(new Buffer('MySecretKey123'));
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testCipher2('0123456789abcdef');
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testCipher2(new Buffer('0123456789abcdef'));
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testCipher3('0123456789abcd0123456789', '12345678');
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testCipher3('0123456789abcd0123456789', new Buffer('12345678'));
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testCipher3(new Buffer('0123456789abcd0123456789'), '12345678');
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testCipher3(new Buffer('0123456789abcd0123456789'), new Buffer('12345678'));
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testCipher4(new Buffer('0123456789abcd0123456789'), new Buffer('12345678'));
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// Base64 padding regression test, see #4837.
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(function() {
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var c = crypto.createCipher('aes-256-cbc', 'secret');
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var s = c.update('test', 'utf8', 'base64') + c.final('base64');
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assert.equal(s, '375oxUQCIocvxmC5At+rvA==');
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})();
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// Calling Cipher.final() or Decipher.final() twice should error but
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// not assert. See #4886.
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(function() {
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var c = crypto.createCipher('aes-256-cbc', 'secret');
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try { c.final('xxx'); } catch (e) { /* Ignore. */ }
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try { c.final('xxx'); } catch (e) { /* Ignore. */ }
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try { c.final('xxx'); } catch (e) { /* Ignore. */ }
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var d = crypto.createDecipher('aes-256-cbc', 'secret');
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try { d.final('xxx'); } catch (e) { /* Ignore. */ }
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try { d.final('xxx'); } catch (e) { /* Ignore. */ }
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try { d.final('xxx'); } catch (e) { /* Ignore. */ }
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})();
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// Regression test for #5482: string to Cipher#update() should not assert.
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(function() {
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var c = crypto.createCipher('aes192', '0123456789abcdef');
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c.update('update');
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c.final();
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})();
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// #5655 regression tests, 'utf-8' and 'utf8' are identical.
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(function() {
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var c = crypto.createCipher('aes192', '0123456789abcdef');
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c.update('update', ''); // Defaults to "utf8".
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c.final('utf-8'); // Should not throw.
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c = crypto.createCipher('aes192', '0123456789abcdef');
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c.update('update', 'utf8');
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c.final('utf-8'); // Should not throw.
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c = crypto.createCipher('aes192', '0123456789abcdef');
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c.update('update', 'utf-8');
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c.final('utf8'); // Should not throw.
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})();
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