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'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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common.skip('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, 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 testCipher2(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('0123456789abcd0123456789', '12345678');
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testCipher1('0123456789abcd0123456789', Buffer.from('12345678'));
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testCipher1(Buffer.from('0123456789abcd0123456789'), '12345678');
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testCipher1(Buffer.from('0123456789abcd0123456789'), Buffer.from('12345678'));
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testCipher2(Buffer.from('0123456789abcd0123456789'), Buffer.from('12345678'));
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// Zero-sized IV should be accepted in ECB mode.
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crypto.createCipheriv('aes-128-ecb', Buffer.alloc(16), Buffer.alloc(0));
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// But non-empty IVs should be rejected.
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for (let n = 1; n < 256; n += 1) {
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assert.throws(
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() => crypto.createCipheriv('aes-128-ecb', Buffer.alloc(16),
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Buffer.alloc(n)),
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/Invalid IV length/);
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}
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// Correctly sized IV should be accepted in CBC mode.
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crypto.createCipheriv('aes-128-cbc', Buffer.alloc(16), Buffer.alloc(16));
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// But all other IV lengths should be rejected.
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for (let n = 0; n < 256; n += 1) {
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if (n === 16) continue;
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assert.throws(
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() => crypto.createCipheriv('aes-128-cbc', Buffer.alloc(16),
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Buffer.alloc(n)),
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/Invalid IV length/);
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}
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// Zero-sized IV should be rejected in GCM mode.
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assert.throws(
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() => crypto.createCipheriv('aes-128-gcm', Buffer.alloc(16),
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Buffer.alloc(0)),
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/Invalid IV length/);
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// But all other IV lengths should be accepted.
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for (let n = 1; n < 256; n += 1) {
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if (common.hasFipsCrypto && n < 12) continue;
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crypto.createCipheriv('aes-128-gcm', Buffer.alloc(16), Buffer.alloc(n));
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}
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