FIPS 140-2 disallows use of MD5, which is used to derive the initialization vector and key for createCipher(). Modify all tests to expect exceptions in FIPS mode when disallowed API is used, or to avoid testing such API in FIPS Mode. PR-URL: https://github.com/nodejs/node/pull/3754 Reviewed-By: Michael Dawson <michael_dawson@ca.ibm.com> Reviewed-By: Shigeki Ohtsu <ohtsu@iij.ad.jp> Reviewed-By: James M Snell <jasnell@gmail.com>
144 lines
5.1 KiB
JavaScript
144 lines
5.1 KiB
JavaScript
'use strict';
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var common = require('../common');
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var assert = require('assert');
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var util = require('util');
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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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crypto.DEFAULT_ENCODING = 'buffer';
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var fs = require('fs');
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// Test Certificates
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var caPem = fs.readFileSync(common.fixturesDir + '/test_ca.pem', 'ascii');
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var certPem = fs.readFileSync(common.fixturesDir + '/test_cert.pem', 'ascii');
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var certPfx = fs.readFileSync(common.fixturesDir + '/test_cert.pfx');
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var keyPem = fs.readFileSync(common.fixturesDir + '/test_key.pem', 'ascii');
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var tls = require('tls');
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// 'this' safety
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// https://github.com/joyent/node/issues/6690
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assert.throws(function() {
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var options = {key: keyPem, cert: certPem, ca: caPem};
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var credentials = crypto.createCredentials(options);
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var context = credentials.context;
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var notcontext = { setOptions: context.setOptions, setKey: context.setKey };
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crypto.createCredentials({ secureOptions: 1 }, notcontext);
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}, TypeError);
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// PFX tests
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assert.doesNotThrow(function() {
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tls.createSecureContext({pfx:certPfx, passphrase:'sample'});
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});
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assert.throws(function() {
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tls.createSecureContext({pfx:certPfx});
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}, 'mac verify failure');
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assert.throws(function() {
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tls.createSecureContext({pfx:certPfx, passphrase:'test'});
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}, 'mac verify failure');
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assert.throws(function() {
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tls.createSecureContext({pfx:'sample', passphrase:'test'});
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}, 'not enough data');
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// update() should only take buffers / strings
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assert.throws(function() {
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crypto.createHash('sha1').update({foo: 'bar'});
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}, /buffer/);
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function assertSorted(list) {
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// Array#sort() modifies the list in place so make a copy.
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var sorted = util._extend([], list).sort();
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assert.deepEqual(list, sorted);
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}
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// Assume that we have at least AES-128-CBC.
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assert.notEqual(0, crypto.getCiphers().length);
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assert.notEqual(-1, crypto.getCiphers().indexOf('aes-128-cbc'));
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assert.equal(-1, crypto.getCiphers().indexOf('AES-128-CBC'));
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assertSorted(crypto.getCiphers());
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// Assume that we have at least AES256-SHA.
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var tls = require('tls');
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assert.notEqual(0, tls.getCiphers().length);
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assert.notEqual(-1, tls.getCiphers().indexOf('aes256-sha'));
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assert.equal(-1, tls.getCiphers().indexOf('AES256-SHA'));
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assertSorted(tls.getCiphers());
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// Assert that we have sha and sha1 but not SHA and SHA1.
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assert.notEqual(0, crypto.getHashes().length);
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assert.notEqual(-1, crypto.getHashes().indexOf('sha1'));
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assert.notEqual(-1, crypto.getHashes().indexOf('sha'));
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assert.equal(-1, crypto.getHashes().indexOf('SHA1'));
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assert.equal(-1, crypto.getHashes().indexOf('SHA'));
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assert.notEqual(-1, crypto.getHashes().indexOf('RSA-SHA1'));
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assert.equal(-1, crypto.getHashes().indexOf('rsa-sha1'));
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assertSorted(crypto.getHashes());
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// Assume that we have at least secp384r1.
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assert.notEqual(0, crypto.getCurves().length);
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assert.notEqual(-1, crypto.getCurves().indexOf('secp384r1'));
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assert.equal(-1, crypto.getCurves().indexOf('SECP384R1'));
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assertSorted(crypto.getCurves());
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// Regression tests for #5725: hex input that's not a power of two should
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// throw, not assert in C++ land.
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assert.throws(function() {
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crypto.createCipher('aes192', 'test').update('0', 'hex');
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}, common.hasFipsCrypto ? /not supported in FIPS mode/ : /Bad input string/);
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assert.throws(function() {
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crypto.createDecipher('aes192', 'test').update('0', 'hex');
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}, common.hasFipsCrypto ? /not supported in FIPS mode/ : /Bad input string/);
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assert.throws(function() {
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crypto.createHash('sha1').update('0', 'hex');
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}, /Bad input string/);
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assert.throws(function() {
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crypto.createSign('RSA-SHA1').update('0', 'hex');
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}, /Bad input string/);
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assert.throws(function() {
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crypto.createVerify('RSA-SHA1').update('0', 'hex');
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}, /Bad input string/);
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assert.throws(function() {
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var priv = [
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'-----BEGIN RSA PRIVATE KEY-----',
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'MIGrAgEAAiEA+3z+1QNF2/unumadiwEr+C5vfhezsb3hp4jAnCNRpPcCAwEAAQIgQNriSQK4',
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'EFwczDhMZp2dvbcz7OUUyt36z3S4usFPHSECEQD/41K7SujrstBfoCPzwC1xAhEA+5kt4BJy',
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'eKN7LggbF3Dk5wIQN6SL+fQ5H/+7NgARsVBp0QIRANxYRukavs4QvuyNhMx+vrkCEQCbf6j/',
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'Ig6/HueCK/0Jkmp+',
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'-----END RSA PRIVATE KEY-----',
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''
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].join('\n');
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crypto.createSign('RSA-SHA256').update('test').sign(priv);
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}, /digest too big for rsa key/);
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assert.throws(function() {
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// The correct header inside `test_bad_rsa_privkey.pem` should have been
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// -----BEGIN PRIVATE KEY----- and -----END PRIVATE KEY-----
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// instead of
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// -----BEGIN RSA PRIVATE KEY----- and -----END RSA PRIVATE KEY-----
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// It is generated in this way:
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// $ openssl genrsa -out mykey.pem 512;
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// $ openssl pkcs8 -topk8 -inform PEM -outform PEM -in mykey.pem \
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// -out private_key.pem -nocrypt;
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// Then open private_key.pem and change its header and footer.
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var sha1_privateKey = fs.readFileSync(common.fixturesDir +
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'/test_bad_rsa_privkey.pem', 'ascii');
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// this would inject errors onto OpenSSL's error stack
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crypto.createSign('sha1').sign(sha1_privateKey);
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}, /asn1 encoding routines:ASN1_CHECK_TLEN:wrong tag/);
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// Make sure memory isn't released before being returned
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console.log(crypto.randomBytes(16));
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