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/*
 * test.c : MAP unit tests
 *
 * Copyright (c) 2016 Cisco and/or its affiliates.
 * Licensed under the Apache License, Version 2.0 (the "License");
 * you may not use this file except in compliance with the License.
 * You may obtain a copy of the License at:
 *
 *     http://www.apache.org/licenses/LICENSE-2.0
 *
 * Unless required by applicable law or agreed to in writing, software
 * distributed under the License is distributed on an "AS IS" BASIS,
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 * See the License for the specific language governing permissions and
 * limitations under the License.
 */

#include <assert.h>
#include "map.h"

static map_domain_t *
get_domain(ip4_address_t * ip4_prefix, u8 ip4_prefix_len,
	   ip6_address_t * ip6_prefix, u8 ip6_prefix_len,
	   ip6_address_t * ip6_src, u8 ip6_src_len,
	   u8 ea_bits_len, u8 psid_offset,
	   u8 psid_length, u16 mtu, u8 flags)
{
  u8 suffix_len;

  /* EA bits must be within the first 64 bits */
  if (ea_bits_len > 0 && (ip6_prefix_len + ea_bits_len) > 64)
    return NULL;

  map_domain_t * d = malloc(sizeof(*d));

  /* Init domain struct */
  d->ip4_prefix.as_u32 = ip4_prefix->as_u32;
  d->ip4_prefix_len = ip4_prefix_len;
  d->ip6_prefix = *ip6_prefix;
  d->ip6_prefix_len = ip6_prefix_len;
  d->ip6_src = *ip6_src;
  d->ip6_src_len = ip6_src_len;
  d->ea_bits_len = ea_bits_len;
  d->psid_offset = psid_offset;
  d->psid_length = psid_length;
  d->mtu = mtu;
  d->flags = flags;

  /* How many, and which bits to grab from the IPv4 DA */
  if (ip4_prefix_len + ea_bits_len < 32)
    {
      d->flags |= MAP_DOMAIN_PREFIX;
      d->suffix_shift = 32 - ip4_prefix_len - ea_bits_len;
      suffix_len = ea_bits_len;
    }
  else
    {
      d->suffix_shift = 0;
      suffix_len = 32 - ip4_prefix_len;
    }
  d->suffix_mask = (1 << suffix_len) - 1;

  d->psid_shift = 16 - psid_length - psid_offset;
  d->psid_mask = (1 << d->psid_length) - 1;

  if (ip6_prefix_len + suffix_len + d->psid_length > 64)
    return NULL;

  d->ea_shift = 64 - ip6_prefix_len - suffix_len - d->psid_length;

  return d;
}


/*
 * VPP-340:
 * map_add_domain ip4-pfx 20.0.0.0/8 ip6-pfx 2001:db8::/40 ip6-src 2001:db8:ffff::/96 ea-bits-len 24 psid-offset 0 psid-len 0 map-t
 * IPv4 src = 100.0.0.1
 * IPv4 dst = 20.169.201.219
 * UDP dest port = 1232
 * IPv6 src = 2001:db8:ffff::6400:1
 * IPv6 dst = a9c9:dfb8::14a9:c9db:0
 * a9c9:dfb8::14a9:c9db:0 != 2001:db8:a9:c9db:0:14a9:c9db:0
 */
static void
test_map_t_destaddr (void)
{
  ip4_address_t ip4_prefix;
  ip6_address_t ip6_prefix;
  ip6_address_t ip6_src;

  ip4_prefix.as_u32 = clib_host_to_net_u32(0x14000000);
  ip6_prefix.as_u64[0] = clib_host_to_net_u64(0x20010db800000000);
  ip6_prefix.as_u64[1] = 0;
  ip6_src.as_u64[0] = clib_host_to_net_u64(0x20010db8ffff0000);
  map_domain_t * d = get_domain (&ip4_prefix, 8, &ip6_prefix, 40, &ip6_src, 96, 24, 0, 0, 0, MAP_DOMAIN_TRANSLATION);

  ip6_address_t dst6;

  dst6.as_u64[0] = map_get_pfx(d, 0x14a9c9db, 1232);
  dst6.as_u64[1] = map_get_sfx(d, 0x14a9c9db, 1232);
  assert(dst6.as_u64[0] == 0x20010db800a9c9db);
  assert(dst6.as_u64[1] == 0x000014a9c9db0000);
}

/*
 * VPP-228
 * ip4-pfx 20.0.0.0/8
 * ip6-pfx 2001:db8::/<n>
 * ip6-src 2001:db8:ffff::1
 * ea-bits-len 16 psid-offset 6 psid-len 8
 * 20.169.201.219 port 1232
 */
static void
test_map_eabits (void)
{
  ip4_address_t ip4_prefix;
  ip6_address_t ip6_prefix;
  ip6_address_t ip6_src;
  ip6_address_t dst6;

  ip4_prefix.as_u32 = clib_host_to_net_u32(0x14000000);
  ip6_prefix.as_u64[0] = clib_host_to_net_u64(0x20010db800000000);
  ip6_prefix.as_u64[1] = 0;
  ip6_src.as_u64[0] = clib_host_to_net_u64(0x20010db8ffff0000);
  ip6_src.as_u64[1] = clib_host_to_net_u64(0x0000000000000001);
  map_domain_t * d = get_domain (&ip4_prefix, 16, &ip6_prefix, 48, &ip6_src,
				 128, 16, 6, 8, 0, 0);
  assert(!d);

  //20.0.0.0/8	2001:db8::/32	4	2001:db8:a000::14a0:0:0
  d = get_domain (&ip4_prefix, 8, &ip6_prefix, 32, &ip6_src,
		  128, 4, 0, 0, 0, 0);
  dst6.as_u64[0] = map_get_pfx(d, 0x14a9c9db, 1232);
  dst6.as_u64[1] = map_get_sfx(d, 0x14a9c9db, 1232);
  assert(dst6.as_u64[0] == 0x20010db8a0000000);
  assert(dst6.as_u64[1] == 0x000014a000000000);

  //20.0.0.0/8	2001:db8::/32	8	2001:db8:a900::14a9:0:0
  d = get_domain (&ip4_prefix, 8, &ip6_prefix, 32, &ip6_src,
		  128, 8, 0, 0, 0, 0);
  dst6.as_u64[0] = map_get_pfx(d, 0x14a9c9db, 1232);
  dst6.as_u64[1] = map_get_sfx(d, 0x14a9c9db, 1232);
  assert(dst6.as_u64[0] == 0x20010db8a9000000);
  assert(dst6.as_u64[1] == 0x000014a900000000);

  //20.0.0.0/8	2001:db8::/32	10	2001:db8:a9c0::14a9:c000:0
  d = get_domain (&ip4_prefix, 8, &ip6_prefix, 32, &ip6_src,
		  128, 10, 0, 0, 0, 0);
  dst6.as_u64[0] = map_get_pfx(d, 0x14a9c9db, 1232);
  dst6.as_u64[1] = map_get_sfx(d, 0x14a9c9db, 1232);
  assert(dst6.as_u64[0] == 0x20010db8a9c00000);
  assert(dst6.as_u64[1] == 0x000014a9c0000000);

  //20.0.0.0/8	2001:db8::/32	16	2001:db8:a9c9::14a9:c900:0
  d = get_domain (&ip4_prefix, 8, &ip6_prefix, 32, &ip6_src,
		  128, 16, 0, 0, 0, 0);
  dst6.as_u64[0] = map_get_pfx(d, 0x14a9c9db, 1232);
  dst6.as_u64[1] = map_get_sfx(d, 0x14a9c9db, 1232);
  assert(dst6.as_u64[0] == 0x20010db8a9c90000);
  assert(dst6.as_u64[1] == 0x000014a9c9000000);

  //20.0.0.0/8	2001:db8::/32	20	2001:db8:a9c9:d000:0:14a9:c9d0:0
  d = get_domain (&ip4_prefix, 8, &ip6_prefix, 32, &ip6_src,
		  128, 20, 0, 0, 0, 0);
  dst6.as_u64[0] = map_get_pfx(d, 0x14a9c9db, 1232);
  dst6.as_u64[1] = map_get_sfx(d, 0x14a9c9db, 1232);
  assert(dst6.as_u64[0] == 0x20010db8a9c9d000);
  assert(dst6.as_u64[1] == 0x000014a9c9d00000);

  //20.0.0.0/8	2001:db8::/32	23	2001:db8:a9c9:da00:0:14a9:c9da:0
  d = get_domain (&ip4_prefix, 8, &ip6_prefix, 32, &ip6_src,
		  128, 23, 0, 0, 0, 0);
  dst6.as_u64[0] = map_get_pfx(d, 0x14a9c9db, 1232);
  dst6.as_u64[1] = map_get_sfx(d, 0x14a9c9db, 1232);
  assert(dst6.as_u64[0] == 0x20010db8a9c9da00);
  assert(dst6.as_u64[1] == 0x000014a9c9da0000);

  //20.169.201.0/24	2001:db8::/32	7	2001:db8:da00::14a9:c9da:0
  d = get_domain (&ip4_prefix, 8, &ip6_prefix, 32, &ip6_src,
		  128, 7, 0, 0, 0, 0);
  dst6.as_u64[0] = map_get_pfx(d, 0x14a9c9db, 1232);
  dst6.as_u64[1] = map_get_sfx(d, 0x14a9c9db, 1232);
  assert(dst6.as_u64[0] == 0x20010db8a8000000);
  assert(dst6.as_u64[1] == 0x000014a800000000);
}

#define foreach_test_case			\
  _(map_t_destaddr)				\
  _(map_eabits)

static void
run_tests (void)
{
#define _(_test_name)				\
  test_ ## _test_name ();

  foreach_test_case
#undef _
}

int main()
{
  run_tests ();
  return 0;
}
"Verify captured input packet stream for defined interface. :param VppInterface dst_if: Interface to verify captured packet stream. :param list capture: Captured packet stream. :param Scapy proto_l: Required IP protocol. Default protocol is UDP. """ self.logger.info("Verifying capture on interface %s" % dst_if.name) last_info = dict() for i in self.interfaces: last_info[i.sw_if_index] = None dst_sw_if_index = dst_if.sw_if_index for packet in capture: try: ip6_received = packet[IPv6] proto_received = packet[proto_l] payload_info = self.payload_to_info(packet[Raw]) packet_index = payload_info.index self.assertEqual(payload_info.dst, dst_sw_if_index) self.logger.debug( "Got packet on port %s: src=%u (id=%u)" % (dst_if.name, payload_info.src, packet_index)) next_info = self.get_next_packet_info_for_interface2( payload_info.src, dst_sw_if_index, last_info[payload_info.src]) last_info[payload_info.src] = next_info self.assertTrue(next_info is not None) self.assertEqual(packet_index, next_info.index) saved_packet = next_info.data ip_saved = saved_packet[IPv6] proto_saved = saved_packet[proto_l] # Check standard fields self.assertEqual(ip6_received.src, ip_saved.src) self.assertEqual(ip6_received.dst, ip_saved.dst) self.assertEqual(proto_received.sport, proto_saved.sport) self.assertEqual(proto_received.dport, proto_saved.dport) except: self.logger.error(ppp("Unexpected or invalid packet:", packet)) raise for i in self.interfaces: remaining_packet = self.get_next_packet_info_for_interface2( i.sw_if_index, dst_sw_if_index, last_info[i.sw_if_index]) self.assertTrue(remaining_packet is None, "Interface %s: Packet expected from interface %s " "didn't arrive" % (dst_if.name, i.name)) @staticmethod def build_ip6_mask(nh='', src_ip='', dst_ip='', src_port='', dst_port=''): """Build IPv6 ACL mask data with hexstring format. :param str nh: next header number <0-ff> :param str src_ip: source ip address <0-ffffffff> :param str dst_ip: destination ip address <0-ffffffff> :param str src_port: source port number <0-ffff> :param str dst_port: destination port number <0-ffff> """ return ('{!s:0>14}{!s:0>34}{!s:0>32}{!s:0>4}{!s:0>4}'.format( nh, src_ip, dst_ip, src_port, dst_port)).rstrip('0') @staticmethod def build_ip6_match(nh=0, src_ip='', dst_ip='', src_port=0, dst_port=0): """Build IPv6 ACL match data with hexstring format. :param int nh: next header number with valid option "x" :param str src_ip: source ip6 address with format of "xxx:xxxx::xxxx" :param str dst_ip: destination ip6 address with format of "xxx:xxxx::xxxx" :param int src_port: source port number "x" :param int dst_port: destination port number "x" """ if src_ip: src_ip = binascii.hexlify(socket.inet_pton( socket.AF_INET6, src_ip)) if dst_ip: dst_ip = binascii.hexlify(socket.inet_pton( socket.AF_INET6, dst_ip)) return ('{!s:0>14}{!s:0>34}{!s:0>32}{!s:0>4}{!s:0>4}'.format( hex(nh)[2:], src_ip, dst_ip, hex(src_port)[2:], hex(dst_port)[2:])).rstrip('0') @staticmethod def build_mac_mask(dst_mac='', src_mac='', ether_type=''): """Build MAC ACL mask data with hexstring format. :param str dst_mac: source MAC address <0-ffffffffffff> :param str src_mac: destination MAC address <0-ffffffffffff> :param str ether_type: ethernet type <0-ffff> """ return ('{!s:0>12}{!s:0>12}{!s:0>4}'.format( dst_mac, src_mac, ether_type)).rstrip('0') @staticmethod def build_mac_match(dst_mac='', src_mac='', ether_type=''): """Build MAC ACL match data with hexstring format. :param str dst_mac: source MAC address <x:x:x:x:x:x> :param str src_mac: destination MAC address <x:x:x:x:x:x> :param str ether_type: ethernet type <0-ffff> """ if dst_mac: dst_mac = dst_mac.replace(':', '') if src_mac: src_mac = src_mac.replace(':', '') return ('{!s:0>12}{!s:0>12}{!s:0>4}'.format( dst_mac, src_mac, ether_type)).rstrip('0') def create_classify_table(self, key, mask, data_offset=0): """Create Classify Table :param str key: key for classify table (ex, ACL name). :param str mask: mask value for interested traffic. :param int data_offset: """ r = self.vapi.classify_add_del_table( is_add=1, mask=binascii.unhexlify(mask), match_n_vectors=(len(mask) - 1) // 32 + 1, miss_next_index=0, current_data_flag=1, current_data_offset=data_offset) self.assertIsNotNone(r, 'No response msg for add_del_table') self.acl_tbl_idx[key] = r.new_table_index def create_classify_session(self, table_index, match, vrfid=0, is_add=1): """Create Classify Session :param int table_index: table index to identify classify table. :param str match: matched value for interested traffic. :param int vrfid: VRF id. :param int is_add: option to configure classify session. - create(1) or delete(0) """ r = self.vapi.classify_add_del_session( is_add, table_index, binascii.unhexlify(match), opaque_index=0, metadata=vrfid) self.assertIsNotNone(r, 'No response msg for add_del_session') def input_acl_set_interface(self, intf, table_index, is_add=1): """Configure Input ACL interface :param VppInterface intf: Interface to apply Input ACL feature. :param int table_index: table index to identify classify table. :param int is_add: option to configure classify session. - enable(1) or disable(0) """ r = self.vapi.input_acl_set_interface( is_add, intf.sw_if_index, ip6_table_index=table_index) self.assertIsNotNone(r, 'No response msg for acl_set_interface') def output_acl_set_interface(self, intf, table_index, is_add=1): """Configure Output ACL interface :param VppInterface intf: Interface to apply Output ACL feature. :param int table_index: table index to identify classify table. :param int is_add: option to configure classify session. - enable(1) or disable(0) """ r = self.vapi.output_acl_set_interface( is_add, intf.sw_if_index, ip6_table_index=table_index) self.assertIsNotNone(r, 'No response msg for acl_set_interface') class TestClassifierIP6(TestClassifier): """ Classifier IP6 Test Case """ @classmethod def setUpClass(cls): super(TestClassifierIP6, cls).setUpClass() @classmethod def tearDownClass(cls): super(TestClassifierIP6, cls).tearDownClass() def test_iacl_src_ip(self): """ Source IP6 iACL test Test scenario for basic IP ACL with source IP - Create IPv6 stream for pg0 -> pg1 interface. - Create iACL with source IP address. - Send and verify received packets on pg1 interface. """ # Basic iACL testing with source IP pkts = self.create_stream(self.pg0, self.pg1, self.pg_if_packet_sizes) self.pg0.add_stream(pkts) key = 'ip6_src' self.create_classify_table( key, self.build_ip6_mask(src_ip='ffffffffffffffffffffffffffffffff')) self.create_classify_session( self.acl_tbl_idx.get(key), self.build_ip6_match(src_ip=self.pg0.remote_ip6)) self.input_acl_set_interface(self.pg0, self.acl_tbl_idx.get(key)) self.acl_active_table = key self.pg_enable_capture(self.pg_interfaces) self.pg_start() pkts = self.pg1.get_capture(len(pkts)) self.verify_capture(self.pg1, pkts) self.pg0.assert_nothing_captured(remark="packets forwarded") self.pg2.assert_nothing_captured(remark="packets forwarded") def test_iacl_dst_ip(self): """ Destination IP6 iACL test Test scenario for basic IP ACL with destination IP - Create IPv6 stream for pg0 -> pg1 interface. - Create iACL with destination IP address. - Send and verify received packets on pg1 interface. """ # Basic iACL testing with destination IP pkts = self.create_stream(self.pg0, self.pg1, self.pg_if_packet_sizes) self.pg0.add_stream(pkts) key = 'ip6_dst' self.create_classify_table( key, self.build_ip6_mask(dst_ip='ffffffffffffffffffffffffffffffff')) self.create_classify_session( self.acl_tbl_idx.get(key), self.build_ip6_match(dst_ip=self.pg1.remote_ip6)) self.input_acl_set_interface(self.pg0, self.acl_tbl_idx.get(key)) self.acl_active_table = key self.pg_enable_capture(self.pg_interfaces) self.pg_start() pkts = self.pg1.get_capture(len(pkts)) self.verify_capture(self.pg1, pkts) self.pg0.assert_nothing_captured(remark="packets forwarded") self.pg2.assert_nothing_captured(remark="packets forwarded") def test_iacl_src_dst_ip(self): """ Source and destination IP6 iACL test Test scenario for basic IP ACL with source and destination IP - Create IPv4 stream for pg0 -> pg1 interface. - Create iACL with source and destination IP addresses. - Send and verify received packets on pg1 interface. """ # Basic iACL testing with source and destination IP pkts = self.create_stream(self.pg0, self.pg1, self.pg_if_packet_sizes) self.pg0.add_stream(pkts) key = 'ip6' self.create_classify_table( key, self.build_ip6_mask(src_ip='ffffffffffffffffffffffffffffffff', dst_ip='ffffffffffffffffffffffffffffffff')) self.create_classify_session( self.acl_tbl_idx.get(key), self.build_ip6_match(src_ip=self.pg0.remote_ip6, dst_ip=self.pg1.remote_ip6)) self.input_acl_set_interface(self.pg0, self.acl_tbl_idx.get(key)) self.acl_active_table = key self.pg_enable_capture(self.pg_interfaces) self.pg_start() pkts = self.pg1.get_capture(len(pkts)) self.verify_capture(self.pg1, pkts) self.pg0.assert_nothing_captured(remark="packets forwarded") self.pg2.assert_nothing_captured(remark="packets forwarded") # Tests split to different test case classes because of issue reported in # ticket VPP-1336 class TestClassifierIP6UDP(TestClassifier): """ Classifier IP6 UDP proto Test Case """ @classmethod def setUpClass(cls): super(TestClassifierIP6UDP, cls).setUpClass() @classmethod def tearDownClass(cls): super(TestClassifierIP6UDP, cls).tearDownClass() def test_iacl_proto_udp(self): """ IP6 UDP protocol iACL test Test scenario for basic protocol ACL with UDP protocol - Create IPv6 stream for pg0 -> pg1 interface. - Create iACL with UDP IP protocol. - Send and verify received packets on pg1 interface. """ # Basic iACL testing with UDP protocol pkts = self.create_stream(self.pg0, self.pg1, self.pg_if_packet_sizes) self.pg0.add_stream(pkts) key = 'nh_udp' self.create_classify_table(key, self.build_ip6_mask(nh='ff')) self.create_classify_session( self.acl_tbl_idx.get(key), self.build_ip6_match(nh=socket.IPPROTO_UDP)) self.input_acl_set_interface(self.pg0, self.acl_tbl_idx.get(key)) self.acl_active_table = key self.pg_enable_capture(self.pg_interfaces) self.pg_start() pkts = self.pg1.get_capture(len(pkts)) self.verify_capture(self.pg1, pkts) self.pg0.assert_nothing_captured(remark="packets forwarded") self.pg2.assert_nothing_captured(remark="packets forwarded") def test_iacl_proto_udp_sport(self): """ IP6 UDP source port iACL test Test scenario for basic protocol ACL with UDP and sport - Create IPv6 stream for pg0 -> pg1 interface. - Create iACL with UDP IP protocol and defined sport. - Send and verify received packets on pg1 interface. """ # Basic iACL testing with UDP and sport sport = 38 pkts = self.create_stream(self.pg0, self.pg1, self.pg_if_packet_sizes, UDP(sport=sport, dport=5678)) self.pg0.add_stream(pkts) key = 'nh_udp_sport' self.create_classify_table( key, self.build_ip6_mask(nh='ff', src_port='ffff')) self.create_classify_session( self.acl_tbl_idx.get(key), self.build_ip6_match(nh=socket.IPPROTO_UDP, src_port=sport)) self.input_acl_set_interface( self.pg0, self.acl_tbl_idx.get(key)) self.acl_active_table = key self.pg_enable_capture(self.pg_interfaces) self.pg_start() pkts = self.pg1.get_capture(len(pkts)) self.verify_capture(self.pg1, pkts) self.pg0.assert_nothing_captured(remark="packets forwarded") self.pg2.assert_nothing_captured(remark="packets forwarded") def test_iacl_proto_udp_dport(self): """ IP6 UDP destination port iACL test Test scenario for basic protocol ACL with UDP and dport - Create IPv6 stream for pg0 -> pg1 interface. - Create iACL with UDP IP protocol and defined dport. - Send and verify received packets on pg1 interface. """ # Basic iACL testing with UDP and dport dport = 427 pkts = self.create_stream(self.pg0, self.pg1, self.pg_if_packet_sizes, UDP(sport=1234, dport=dport)) self.pg0.add_stream(pkts) key = 'nh_udp_dport' self.create_classify_table( key, self.build_ip6_mask(nh='ff', dst_port='ffff')) self.create_classify_session( self.acl_tbl_idx.get(key), self.build_ip6_match(nh=socket.IPPROTO_UDP, dst_port=dport)) self.input_acl_set_interface( self.pg0, self.acl_tbl_idx.get(key)) self.acl_active_table = key self.pg_enable_capture(self.pg_interfaces) self.pg_start() pkts = self.pg1.get_capture(len(pkts)) self.verify_capture(self.pg1, pkts) self.pg0.assert_nothing_captured(remark="packets forwarded") self.pg2.assert_nothing_captured(remark="packets forwarded") def test_iacl_proto_udp_sport_dport(self): """ IP6 UDP source and destination ports iACL test Test scenario for basic protocol ACL with UDP and sport and dport - Create IPv6 stream for pg0 -> pg1 interface. - Create iACL with UDP IP protocol and defined sport and dport. - Send and verify received packets on pg1 interface. """ # Basic iACL testing with UDP and sport and dport sport = 13720 dport = 9080 pkts = self.create_stream(self.pg0, self.pg1, self.pg_if_packet_sizes, UDP(sport=sport, dport=dport)) self.pg0.add_stream(pkts) key = 'nh_udp_ports' self.create_classify_table( key, self.build_ip6_mask(nh='ff', src_port='ffff', dst_port='ffff')) self.create_classify_session( self.acl_tbl_idx.get(key), self.build_ip6_match(nh=socket.IPPROTO_UDP, src_port=sport, dst_port=dport)) self.input_acl_set_interface( self.pg0, self.acl_tbl_idx.get(key)) self.acl_active_table = key self.pg_enable_capture(self.pg_interfaces) self.pg_start() pkts = self.pg1.get_capture(len(pkts)) self.verify_capture(self.pg1, pkts) self.pg0.assert_nothing_captured(remark="packets forwarded") self.pg2.assert_nothing_captured(remark="packets forwarded") class TestClassifierIP6TCP(TestClassifier): """ Classifier IP6 TCP proto Test Case """ @classmethod def setUpClass(cls): super(TestClassifierIP6TCP, cls).setUpClass() @classmethod def tearDownClass(cls): super(TestClassifierIP6TCP, cls).tearDownClass() def test_iacl_proto_tcp(self): """ IP6 TCP protocol iACL test Test scenario for basic protocol ACL with TCP protocol - Create IPv6 stream for pg0 -> pg1 interface. - Create iACL with TCP IP protocol. - Send and verify received packets on pg1 interface. """ # Basic iACL testing with TCP protocol pkts = self.create_stream(self.pg0, self.pg1, self.pg_if_packet_sizes, TCP(sport=1234, dport=5678)) self.pg0.add_stream(pkts) key = 'nh_tcp' self.create_classify_table(key, self.build_ip6_mask(nh='ff')) self.create_classify_session( self.acl_tbl_idx.get(key), self.build_ip6_match(nh=socket.IPPROTO_TCP)) self.input_acl_set_interface( self.pg0, self.acl_tbl_idx.get(key)) self.acl_active_table = key self.pg_enable_capture(self.pg_interfaces) self.pg_start() pkts = self.pg1.get_capture(len(pkts)) self.verify_capture(self.pg1, pkts, TCP) self.pg0.assert_nothing_captured(remark="packets forwarded") self.pg2.assert_nothing_captured(remark="packets forwarded") def test_iacl_proto_tcp_sport(self): """ IP6 TCP source port iACL test Test scenario for basic protocol ACL with TCP and sport - Create IPv6 stream for pg0 -> pg1 interface. - Create iACL with TCP IP protocol and defined sport. - Send and verify received packets on pg1 interface. """ # Basic iACL testing with TCP and sport sport = 38 pkts = self.create_stream(self.pg0, self.pg1, self.pg_if_packet_sizes, TCP(sport=sport, dport=5678)) self.pg0.add_stream(pkts) key = 'nh_tcp_sport' self.create_classify_table( key, self.build_ip6_mask(nh='ff', src_port='ffff')) self.create_classify_session( self.acl_tbl_idx.get(key), self.build_ip6_match(nh=socket.IPPROTO_TCP, src_port=sport)) self.input_acl_set_interface( self.pg0, self.acl_tbl_idx.get(key)) self.acl_active_table = key self.pg_enable_capture(self.pg_interfaces) self.pg_start() pkts = self.pg1.get_capture(len(pkts)) self.verify_capture(self.pg1, pkts, TCP) self.pg0.assert_nothing_captured(remark="packets forwarded") self.pg2.assert_nothing_captured(remark="packets forwarded") def test_iacl_proto_tcp_dport(self): """ IP6 TCP destination port iACL test Test scenario for basic protocol ACL with TCP and dport - Create IPv6 stream for pg0 -> pg1 interface. - Create iACL with TCP IP protocol and defined dport. - Send and verify received packets on pg1 interface. """ # Basic iACL testing with TCP and dport dport = 427 pkts = self.create_stream(self.pg0, self.pg1, self.pg_if_packet_sizes, TCP(sport=1234, dport=dport)) self.pg0.add_stream(pkts) key = 'nh_tcp_dport' self.create_classify_table( key, self.build_ip6_mask(nh='ff', dst_port='ffff')) self.create_classify_session( self.acl_tbl_idx.get(key), self.build_ip6_match(nh=socket.IPPROTO_TCP, dst_port=dport)) self.input_acl_set_interface( self.pg0, self.acl_tbl_idx.get(key)) self.acl_active_table = key self.pg_enable_capture(self.pg_interfaces) self.pg_start() pkts = self.pg1.get_capture(len(pkts)) self.verify_capture(self.pg1, pkts, TCP) self.pg0.assert_nothing_captured(remark="packets forwarded") self.pg2.assert_nothing_captured(remark="packets forwarded") def test_iacl_proto_tcp_sport_dport(self): """ IP6 TCP source and destination ports iACL test Test scenario for basic protocol ACL with TCP and sport and dport - Create IPv6 stream for pg0 -> pg1 interface. - Create iACL with TCP IP protocol and defined sport and dport. - Send and verify received packets on pg1 interface. """ # Basic iACL testing with TCP and sport and dport sport = 13720 dport = 9080 pkts = self.create_stream(self.pg0, self.pg1, self.pg_if_packet_sizes, TCP(sport=sport, dport=dport)) self.pg0.add_stream(pkts) key = 'nh_tcp_ports' self.create_classify_table( key, self.build_ip6_mask(nh='ff', src_port='ffff', dst_port='ffff')) self.create_classify_session( self.acl_tbl_idx.get(key), self.build_ip6_match(nh=socket.IPPROTO_TCP, src_port=sport, dst_port=dport)) self.input_acl_set_interface( self.pg0, self.acl_tbl_idx.get(key)) self.acl_active_table = key self.pg_enable_capture(self.pg_interfaces) self.pg_start() pkts = self.pg1.get_capture(len(pkts)) self.verify_capture(self.pg1, pkts, TCP) self.pg0.assert_nothing_captured(remark="packets forwarded") self.pg2.assert_nothing_captured(remark="packets forwarded") class TestClassifierIP6Out(TestClassifier): """ Classifier output IP6 Test Case """ @classmethod def setUpClass(cls): super(TestClassifierIP6Out, cls).setUpClass() @classmethod def tearDownClass(cls): super(TestClassifierIP6Out, cls).tearDownClass() def test_acl_ip_out(self): """ Output IP6 ACL test Test scenario for basic IP ACL with source IP - Create IPv6 stream for pg1 -> pg0 interface. - Create ACL with source IP address. - Send and verify received packets on pg0 interface. """ # Basic oACL testing with source IP pkts = self.create_stream(self.pg1, self.pg0, self.pg_if_packet_sizes) self.pg1.add_stream(pkts) key = 'ip6_out' self.create_classify_table( key, self.build_ip6_mask(src_ip='ffffffffffffffffffffffffffffffff'), data_offset=0) self.create_classify_session( self.acl_tbl_idx.get(key), self.build_ip6_match(src_ip=self.pg1.remote_ip6)) self.output_acl_set_interface( self.pg0, self.acl_tbl_idx.get(key)) self.acl_active_table = key self.pg_enable_capture(self.pg_interfaces) self.pg_start() pkts = self.pg0.get_capture(len(pkts)) self.verify_capture(self.pg0, pkts) self.pg1.assert_nothing_captured(remark="packets forwarded") self.pg2.assert_nothing_captured(remark="packets forwarded") class TestClassifierIP6MAC(TestClassifier): """ Classifier IP6 MAC Test Case """ @classmethod def setUpClass(cls): super(TestClassifierIP6MAC, cls).setUpClass() @classmethod def tearDownClass(cls): super(TestClassifierIP6MAC, cls).tearDownClass() def test_acl_mac(self): """ IP6 MAC iACL test Test scenario for basic MAC ACL with source MAC - Create IPv6 stream for pg0 -> pg2 interface. - Create ACL with source MAC address. - Send and verify received packets on pg2 interface. """ # Basic iACL testing with source MAC pkts = self.create_stream(self.pg0, self.pg2, self.pg_if_packet_sizes) self.pg0.add_stream(pkts) key = 'mac' self.create_classify_table( key, self.build_mac_mask(src_mac='ffffffffffff'), data_offset=-14) self.create_classify_session( self.acl_tbl_idx.get(key), self.build_mac_match(src_mac=self.pg0.remote_mac)) self.input_acl_set_interface(self.pg0, self.acl_tbl_idx.get(key)) self.acl_active_table = key self.pg_enable_capture(self.pg_interfaces) self.pg_start() pkts = self.pg2.get_capture(len(pkts)) self.verify_capture(self.pg2, pkts) self.pg0.assert_nothing_captured(remark="packets forwarded") self.pg1.assert_nothing_captured(remark="packets forwarded") if __name__ == '__main__': unittest.main(testRunner=VppTestRunner)