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'use strict';
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//
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var common = require('../common');
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if (!common.opensslCli) {
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console.log('1..0 # Skipped: node compiled without OpenSSL CLI.');
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return;
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}
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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 join = require('path').join;
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var net = require('net');
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var assert = require('assert');
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var fs = require('fs');
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var crypto = require('crypto');
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var tls = require('tls');
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var exec = require('child_process').exec;
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var spawn = require('child_process').spawn;
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test1();
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// simple/test-tls-securepair-client
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function test1() {
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test('agent.key', 'agent.crt', null, test2);
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}
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// simple/test-tls-ext-key-usage
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function test2() {
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function check(pair) {
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// "TLS Web Client Authentication"
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assert.equal(pair.cleartext.getPeerCertificate().ext_key_usage.length, 1);
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assert.equal(pair.cleartext.getPeerCertificate().ext_key_usage[0],
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'1.3.6.1.5.5.7.3.2');
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}
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test('keys/agent4-key.pem', 'keys/agent4-cert.pem', check);
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}
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function test(keyfn, certfn, check, next) {
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// FIXME: Avoid the common PORT as this test currently hits a C-level
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// assertion error with node_g. The program aborts without HUPing
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// the openssl s_server thus causing many tests to fail with
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// EADDRINUSE.
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var PORT = common.PORT + 5;
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var connections = 0;
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keyfn = join(common.fixturesDir, keyfn);
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var key = fs.readFileSync(keyfn).toString();
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certfn = join(common.fixturesDir, certfn);
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var cert = fs.readFileSync(certfn).toString();
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var server = spawn(common.opensslCli, ['s_server',
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'-accept', PORT,
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'-cert', certfn,
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'-key', keyfn]);
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server.stdout.pipe(process.stdout);
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server.stderr.pipe(process.stdout);
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var state = 'WAIT-ACCEPT';
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var serverStdoutBuffer = '';
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server.stdout.setEncoding('utf8');
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server.stdout.on('data', function(s) {
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serverStdoutBuffer += s;
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console.error(state);
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switch (state) {
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case 'WAIT-ACCEPT':
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if (/ACCEPT/g.test(serverStdoutBuffer)) {
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// Give s_server half a second to start up.
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setTimeout(startClient, 500);
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state = 'WAIT-HELLO';
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}
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break;
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case 'WAIT-HELLO':
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if (/hello/g.test(serverStdoutBuffer)) {
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// End the current SSL connection and exit.
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// See s_server(1ssl).
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server.stdin.write('Q');
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state = 'WAIT-SERVER-CLOSE';
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}
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break;
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default:
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break;
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}
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});
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var timeout = setTimeout(function() {
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server.kill();
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process.exit(1);
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}, 5000);
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var gotWriteCallback = false;
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var serverExitCode = -1;
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server.on('exit', function(code) {
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serverExitCode = code;
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clearTimeout(timeout);
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if (next) next();
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});
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function startClient() {
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var s = new net.Stream();
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var sslcontext = tls.createSecureContext({key: key, cert: cert});
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sslcontext.context.setCiphers('RC4-SHA:AES128-SHA:AES256-SHA');
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var pair = tls.createSecurePair(sslcontext, false);
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assert.ok(pair.encrypted.writable);
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assert.ok(pair.cleartext.writable);
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pair.encrypted.pipe(s);
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s.pipe(pair.encrypted);
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s.connect(PORT);
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s.on('connect', function() {
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console.log('client connected');
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});
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pair.on('secure', function() {
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console.log('client: connected+secure!');
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console.log('client pair.cleartext.getPeerCertificate(): %j',
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pair.cleartext.getPeerCertificate());
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console.log('client pair.cleartext.getCipher(): %j',
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pair.cleartext.getCipher());
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if (check) check(pair);
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setTimeout(function() {
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pair.cleartext.write('hello\r\n', function() {
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gotWriteCallback = true;
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});
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}, 500);
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});
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pair.cleartext.on('data', function(d) {
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console.log('cleartext: %s', d.toString());
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});
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s.on('close', function() {
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console.log('client close');
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});
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pair.encrypted.on('error', function(err) {
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console.log('encrypted error: ' + err);
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});
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s.on('error', function(err) {
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console.log('socket error: ' + err);
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});
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pair.on('error', function(err) {
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console.log('secure error: ' + err);
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});
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}
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process.on('exit', function() {
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assert.equal(0, serverExitCode);
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assert.equal('WAIT-SERVER-CLOSE', state);
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assert.ok(gotWriteCallback);
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});
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}
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