view mail_resolver.t @ 1236:93f749c1d5c5

Tests: fixed parallel tests execution with UDP. Previously, when checking ports availability, a UDP socket was always created first, then a TCP socket was created. On success, one of UDP and TCP sockets was closed (depending on the "udp" option) and the second one was used to busy this port in other scripts. This lead to the following problem: in an attempt to reopen a UDP socket used in a given testing script it could be stolen by another script as part of checking ports availability. To solve this problem, UDP and TCP ports were split into two non-overlapping ranges: TCP ports are only used in the range 8000-8499, and UDP ports - in the range 8500-8999. In addition, the order of creating sockets in UDP tests has been reversed: now a TCP socket used as a lock precedes a UDP socket.
author Andrey Zelenkov <zelenkov@nginx.com>
date Thu, 26 Oct 2017 18:00:21 +0300
parents 26884729e06b
children e4974af3fb12
line wrap: on
line source

#!/usr/bin/perl

# (C) Sergey Kandaurov
# (C) Nginx, Inc.

# Tests for mail resolver.

###############################################################################

use warnings;
use strict;

use Test::More;

BEGIN { use FindBin; chdir($FindBin::Bin); }

use lib 'lib';
use Test::Nginx;
use Test::Nginx::SMTP;

###############################################################################

select STDERR; $| = 1;
select STDOUT; $| = 1;

local $SIG{PIPE} = 'IGNORE';

my $t = Test::Nginx->new()->has(qw/mail smtp http rewrite/)->plan(8)
	->write_file_expand('nginx.conf', <<'EOF');

%%TEST_GLOBALS%%

daemon off;

events {
}

mail {
    auth_http    http://127.0.0.1:8080/mail/auth;
    smtp_auth    none;
    server_name  locahost;

    # prevent useless resend
    resolver_timeout 2s;

    server {
        listen    127.0.0.1:8025;
        protocol  smtp;
        resolver  127.0.0.1:%%PORT_8081_UDP%%
                  127.0.0.1:%%PORT_8082_UDP%%
                  127.0.0.1:%%PORT_8083_UDP%%;
    }

    server {
        listen    127.0.0.1:8027;
        protocol  smtp;
        resolver  127.0.0.1:%%PORT_8082_UDP%%;
    }

    server {
        listen    127.0.0.1:8028;
        protocol  smtp;
        resolver  127.0.0.1:%%PORT_8083_UDP%%;
        resolver_timeout 1s;
    }

    server {
        listen    127.0.0.1:8029;
        protocol  smtp;
        resolver  127.0.0.1:%%PORT_8084_UDP%%;
    }

    server {
        listen    127.0.0.1:8030;
        protocol  smtp;
        resolver  127.0.0.1:%%PORT_8085_UDP%%;
    }

    server {
        listen    127.0.0.1:8031;
        protocol  smtp;
        resolver  127.0.0.1:%%PORT_8086_UDP%%;
        resolver_timeout 1s;
    }

    server {
        listen    127.0.0.1:8032;
        protocol  smtp;
        resolver  127.0.0.1:%%PORT_8087_UDP%%;
    }

}

http {
    %%TEST_GLOBALS_HTTP%%

    server {
        listen       127.0.0.1:8080;
        server_name  localhost;

        location = /mail/auth {
            set $reply $http_client_host;

            if ($http_client_host !~ UNAVAIL) {
                set $reply OK;
            }

            add_header Auth-Status $reply;
            add_header Auth-Server 127.0.0.1;
            add_header Auth-Port %%PORT_8026%%;
            return 204;
        }
    }
}

EOF

$t->run_daemon(\&Test::Nginx::SMTP::smtp_test_daemon);
$t->run_daemon(\&dns_daemon, port($_), $t) foreach (8081 .. 8087);

$t->run();

$t->waitforsocket('127.0.0.1:' . port(8026));
$t->waitforfile($t->testdir . '/' . port($_)) foreach (8081 .. 8087);

###############################################################################

# PTR

my $s = Test::Nginx::SMTP->new();
$s->read();
$s->send('EHLO example.com');
$s->read();
$s->send('MAIL FROM:<test@example.com> SIZE=100');
$s->read();

$s->send('RCPT TO:<test@example.com>');
$s->ok('PTR');

$s->send('QUIT');
$s->read();

# Cached PTR prevents from querying bad ns on port 8083

$s = Test::Nginx::SMTP->new();
$s->read();
$s->send('EHLO example.com');
$s->read();
$s->send('MAIL FROM:<test@example.com> SIZE=100');
$s->read();

$s->send('RCPT TO:<test@example.com>');
$s->ok('PTR cached');

$s->send('QUIT');
$s->read();

# SERVFAIL

$s = Test::Nginx::SMTP->new(PeerAddr => '127.0.0.1:' . port(8027));
$s->read();
$s->send('EHLO example.com');
$s->read();
$s->send('MAIL FROM:<test@example.com> SIZE=100');
$s->read();

$s->send('RCPT TO:<test@example.com>');
$s->check(qr/TEMPUNAVAIL/, 'PTR SERVFAIL');

$s->send('QUIT');
$s->read();

# PTR with zero length RDATA

$s = Test::Nginx::SMTP->new(PeerAddr => '127.0.0.1:' . port(8028));
$s->read();
$s->send('EHLO example.com');
$s->read();
$s->send('MAIL FROM:<test@example.com> SIZE=100');
$s->read();

$s->send('RCPT TO:<test@example.com>');
$s->check(qr/TEMPUNAVAIL/, 'PTR empty');

$s->send('QUIT');
$s->read();

# CNAME

TODO: {
local $TODO = 'support for CNAME RR';

$s = Test::Nginx::SMTP->new(PeerAddr => '127.0.0.1:' . port(8029));
$s->read();
$s->send('EHLO example.com');
$s->read();
$s->send('MAIL FROM:<test@example.com> SIZE=100');
$s->read();

$s->send('RCPT TO:<test@example.com>');
$s->ok('CNAME');

$s->send('QUIT');
$s->read();

}

# uncompressed answer

$s = Test::Nginx::SMTP->new(PeerAddr => '127.0.0.1:' . port(8030));
$s->read();
$s->send('EHLO example.com');
$s->read();
$s->send('MAIL FROM:<test@example.com> SIZE=100');
$s->read();

$s->send('RCPT TO:<test@example.com>');
$s->ok('uncompressed PTR');

$s->send('QUIT');
$s->read();

$s = Test::Nginx::SMTP->new(PeerAddr => '127.0.0.1:' . port(8031));
$s->read();
$s->send('EHLO example.com');
$s->read();
$s->send('MAIL FROM:<test@example.com> SIZE=100');
$s->read();

$s->send('RCPT TO:<test@example.com>');
$s->check(qr/TEMPUNAVAIL/, 'PTR type');

$s->send('QUIT');
$s->read();

# CNAME and PTR in one answer section

$s = Test::Nginx::SMTP->new(PeerAddr => '127.0.0.1:' . port(8032));
$s->read();
$s->send('EHLO example.com');
$s->read();
$s->send('MAIL FROM:<test@example.com> SIZE=100');
$s->read();

$s->send('RCPT TO:<test@example.com>');
$s->ok('CNAME with PTR');

$s->send('QUIT');
$s->read();

###############################################################################

sub reply_handler {
	my ($recv_data, $port) = @_;

	my (@name, @rdata);

	use constant NOERROR	=> 0;
	use constant SERVFAIL	=> 2;
	use constant NXDOMAIN	=> 3;

	use constant A		=> 1;
	use constant CNAME	=> 5;
	use constant PTR	=> 12;
	use constant DNAME	=> 39;

	use constant IN		=> 1;

	# default values

	my ($hdr, $rcode, $ttl) = (0x8180, NOERROR, 3600);

	# decode name

	my ($len, $offset) = (undef, 12);
	while (1) {
		$len = unpack("\@$offset C", $recv_data);
		last if $len == 0;
		$offset++;
		push @name, unpack("\@$offset A$len", $recv_data);
		$offset += $len;
	}

	$offset -= 1;
	my ($id, $type, $class) = unpack("n x$offset n2", $recv_data);

	my $name = join('.', @name);
	if ($name eq 'a.example.net' && $type == A) {
		push @rdata, rd_addr($ttl, '127.0.0.1');

	} elsif ($name eq '1.0.0.127.in-addr.arpa' && $type == PTR) {
		if ($port == port(8081)) {
			push @rdata, rd_name(PTR, $ttl, 'a.example.net');

		} elsif ($port == port(8082)) {
			$rcode = SERVFAIL;

		} elsif ($port == port(8083)) {
			# zero length RDATA

			push @rdata, pack("n3N n", 0xc00c, PTR, IN, $ttl, 0);

		} elsif ($port == port(8084)) {
			# PTR answered with CNAME

			push @rdata, rd_name(CNAME, $ttl,
				'1.1.0.0.127.in-addr.arpa');

		} elsif ($port == port(8085)) {
			# uncompressed answer

			push @rdata, pack("(C/a*)6x n2N n(C/a*)3x",
				('1', '0', '0', '127', 'in-addr', 'arpa'),
				PTR, IN, $ttl, 15, ('a', 'example', 'net'));

		} elsif ($port == port(8086)) {
			push @rdata, rd_name(DNAME, $ttl, 'a.example.net');

		} elsif ($port == port(8087)) {
			# PTR answered with CNAME+PTR

			push @rdata, rd_name(CNAME, $ttl,
				'1.1.0.0.127.in-addr.arpa');
			push @rdata, pack("n3N n(C/a*)3 x", 0xc034,
				PTR, IN, $ttl, 15, ('a', 'example', 'net'));
		}

	} elsif ($name eq '1.1.0.0.127.in-addr.arpa' && $type == PTR) {
		push @rdata, rd_name(PTR, $ttl, 'a.example.net');
	}

	$len = @name;
	pack("n6 (C/a*)$len x n2", $id, $hdr | $rcode, 1, scalar @rdata,
		0, 0, @name, $type, $class) . join('', @rdata);
}

sub rd_name {
	my ($type, $ttl, $name) = @_;
	my ($rdlen, @rdname);

	@rdname = split /\./, $name;
	$rdlen = length(join '', @rdname) + @rdname + 1;
	pack("n3N n(C/a*)* x", 0xc00c, $type, IN, $ttl, $rdlen, @rdname);
}

sub rd_addr {
	my ($ttl, $addr) = @_;

	my $code = 'split(/\./, $addr)';

	# use a special pack string to not zero pad

	return pack 'n3N', 0xc00c, A, IN, $ttl if $addr eq '';

	pack 'n3N nC4', 0xc00c, A, IN, $ttl, eval "scalar $code", eval($code);
}

sub dns_daemon {
	my ($port, $t) = @_;

	my ($data, $recv_data);
	my $socket = IO::Socket::INET->new(
		LocalAddr => '127.0.0.1',
		LocalPort => $port,
		Proto => 'udp',
	)
		or die "Can't create listening socket: $!\n";

	# signal we are ready

	open my $fh, '>', $t->testdir() . '/' . $port;
	close $fh;

	while (1) {
		$socket->recv($recv_data, 65536);
		$data = reply_handler($recv_data, $port);
		$socket->send($data);
	}
}

###############################################################################