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/*
 * Copyright (c) 2017 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 <vppinfra/time.h>
#include <vppinfra/cache.h>
#include <vppinfra/error.h>

#include <vppinfra/bihash_vec8_8.h>
#include <vppinfra/bihash_template.h>

#include <vppinfra/bihash_template.c>

typedef struct
{
  u32 seed;
  u32 nbuckets;
  u32 nitems;
  u32 search_iter;
  int careful_delete_tests;
  int verbose;
  int non_random_keys;
  uword *key_hash;
  u8 **keys;
    BVT (clib_bihash) hash;
  clib_time_t clib_time;

  unformat_input_t *input;

} test_main_t;

test_main_t test_main;

uword
vl (void *v)
{
  return vec_len (v);
}

static clib_error_t *
test_bihash (test_main_t * tm)
{
  int i, j;
  uword *p;
  uword total_searches;
  f64 before, delta;
  BVT (clib_bihash) * h;
  BVT (clib_bihash_kv) kv;

  h = &tm->hash;

  BV (clib_bihash_init) (h, "test", tm->nbuckets, 3ULL << 30);

  fformat (stdout, "Pick %lld unique %s keys...\n",
	   tm->nitems, tm->non_random_keys ? "non-random" : "random");

  for (i = 0; i < tm->nitems; i++)
    {
      u8 *random_vec8;

      if (tm->non_random_keys == 0)
	{
	  u32 len;

	again:
	  do
	    {
	      len = random_u32 (&tm->seed);
	      len %= 64;
	    }
	  while (len == 0);

	  random_vec8 = random_string (&tm->seed, len);
	  vec_add1 (random_vec8, 0);

	  p = hash_get_mem (tm->key_hash, random_vec8);
	  if (p)
	    goto again;
	}
      else
	{
	  random_vec8 = format (0, "String%d%c", i, 0);
	}

      hash_set_mem (tm->key_hash, random_vec8, i + 1);
      vec_add1 (tm->keys, random_vec8);
    }

  fformat (stdout, "Add items...\n");
  for (i = 0; i < tm->nitems; i++)
    {
      kv.key = (u64) tm->keys[i];
      kv.value = i + 1;

      BV (clib_bihash_add_del) (h, &kv, 1 /* is_add */ );

      if (tm->verbose > 1)
	{
	  fformat (stdout, "--------------------\n");
	  fformat (stdout, "After adding key %llu value %lld...\n",
		   tm->keys[i], (u64) (i + 1));
	  fformat (stdout, "%U", BV (format_bihash), h,
		   2 /* very verbose */ );
	}
    }

  fformat (stdout, "%U", BV (format_bihash), h, 0 /* very verbose */ );

  fformat (stdout, "Search for items %d times...\n", tm->search_iter);

  before = clib_time_now (&tm->clib_time);

  for (j = 0; j < tm->search_iter; j++)
    {
      for (i = 0; i < tm->nitems; i++)
	{
	  kv.key = (u64) tm->keys[i];
	  if (BV (clib_bihash_search) (h, &kv, &kv) < 0)
	    if (BV (clib_bihash_search) (h, &kv, &kv) < 0)
	      clib_warning ("[%d] search for key %lld failed unexpectedly\n",
			    i, tm->keys[i]);
	  if (kv.value != (u64) (i + 1))
	    clib_warning
	      ("[%d] search for key %lld returned %lld, not %lld\n", i,
	       tm->keys, kv.value, (u64) (i + 1));
	}
    }

  delta = clib_time_now (&tm->clib_time) - before;
  total_searches = (uword) tm->search_iter * (uword) tm->nitems;

  if (delta > 0)
    fformat (stdout, "%.f searches per second\n",
	     ((f64) total_searches) / delta);

  fformat (stdout, "%lld searches in %.6f seconds\n", total_searches, delta);

  fformat (stdout, "Standard E-hash search for items %d times...\n",
	   tm->search_iter);

  before = clib_time_now (&tm->clib_time);

  for (j = 0; j < tm->search_iter; j++)
    {
      for (i = 0; i < tm->nitems; i++)
	{
	  p = hash_get_mem (tm->key_hash, tm->keys[i]);
	  if (p == 0 || p[0] != (uword) (i + 1))
	    clib_warning ("ugh, couldn't find %lld\n", tm->keys[i]);
	}
    }

  delta = clib_time_now (&tm->clib_time) - before;
  total_searches = (uword) tm->search_iter * (uword) tm->nitems;

  fformat (stdout, "%lld searches in %.6f seconds\n", total_searches, delta);

  if (delta > 0)
    fformat (stdout, "%.f searches per second\n",
	     ((f64) total_searches) / delta);

  fformat (stdout, "Delete items...\n");

  for (i = 0; i < tm->nitems; i++)
    {
      int j;
      int rv;

      kv.key = (u64) tm->keys[i];
      kv.value = (u64) (i + 1);
      rv = BV (clib_bihash_add_del) (h, &kv, 0 /* is_add */ );

      if (rv < 0)
	clib_warning ("delete key %lld not ok but should be", tm->keys[i]);

      if (tm->careful_delete_tests)
	{
	  for (j = 0; j < tm->nitems; j++)
	    {
	      kv.key = (u64) tm->keys[j];
	      rv = BV (clib_bihash_search) (h, &kv, &kv);
	      if (j <= i && rv >= 0)
		{
		  clib_warning
		    ("i %d j %d search ok but should not be, value %lld",
		     i, j, kv.value);
		}
	      if (j > i && rv < 0)
		{
		  clib_warning ("i %d j %d search not ok but should be",
				i, j);
		}
	    }
	}
    }

  fformat (stdout, "After deletions, should be empty...\n");

  fformat (stdout, "%U", BV (format_bihash), h, 0 /* very verbose */ );
  return 0;
}

clib_error_t *
test_bihash_main (test_main_t * tm)
{
  unformat_input_t *i = tm->input;
  clib_error_t *error;
  int which = 0;

  while (unformat_check_input (i) != UNFORMAT_END_OF_INPUT)
    {
      if (unformat (i, "seed %u", &tm->seed))
	;

      else if (unformat (i, "nbuckets %d", &tm->nbuckets))
	;
      else if (unformat (i, "non-random-keys"))
	tm->non_random_keys = 1;
      else if (unformat (i, "nitems %d", &tm->nitems))
	;
      else if (unformat (i, "careful %d", &tm->careful_delete_tests))
	;
      else if (unformat (i, "verbose %d", &tm->verbose))
	;
      else if (unformat (i, "search %d", &tm->search_iter))
	;
      else if (unformat (i, "vec64"))
	which = 1;
      else if (unformat (i, "cache"))
	which = 2;

      else if (unformat (i, "verbose"))
	tm->verbose = 1;
      else
	return clib_error_return (0, "unknown input '%U'",
				  format_unformat_error, i);
    }

  switch (which)
    {
    case 0:
      error = test_bihash (tm);
      break;

    default:
      return clib_error_return (0, "no such test?");
    }

  return error;
}

#ifdef CLIB_UNIX
int
main (int argc, char *argv[])
{
  unformat_input_t i;
  clib_error_t *error;
  test_main_t *tm = &test_main;

  clib_mem_init (0, 3ULL << 30);

  tm->input = &i;
  tm->seed = 0xdeaddabe;

  tm->nbuckets = 2;
  tm->nitems = 5;
  tm->verbose = 1;
  tm->search_iter = 1;
  tm->careful_delete_tests = 0;
  tm->key_hash = hash_create_string (0, sizeof (uword));
  clib_time_init (&tm->clib_time);

  unformat_init_command_line (&i, argv);
  error = test_bihash_main (tm);
  unformat_free (&i);

  if (error)
    {
      clib_error_report (error);
      return 1;
    }
  return 0;
}
#endif /* CLIB_UNIX */

/*
 * fd.io coding-style-patch-verification: ON
 *
 * Local Variables:
 * eval: (c-set-style "gnu")
 * End:
 */
class="o">/ GRE() / Ether(dst=RandMAC('*:*:*:*:*:*'), src=RandMAC('*:*:*:*:*:*')) / IP(src=str(RandIP()), dst=str(RandIP())) / UDP(sport=1234, dport=1234) / Raw(payload)) info.data = p.copy() pkts.append(p) return pkts def create_tunnel_stream_vlano4(self, src_if, tunnel_src, tunnel_dst, vlan): pkts = [] for i in range(0, 257): info = self.create_packet_info(src_if, src_if) payload = self.info_to_payload(info) p = (Ether(dst=src_if.local_mac, src=src_if.remote_mac) / IP(src=tunnel_src, dst=tunnel_dst) / GRE() / Ether(dst=RandMAC('*:*:*:*:*:*'), src=RandMAC('*:*:*:*:*:*')) / Dot1Q(vlan=vlan) / IP(src=str(RandIP()), dst=str(RandIP())) / UDP(sport=1234, dport=1234) / Raw(payload)) info.data = p.copy() pkts.append(p) return pkts def verify_tunneled_4o4(self, src_if, capture, sent, tunnel_src, tunnel_dst): self.assertEqual(len(capture), len(sent)) for i in range(len(capture)): try: tx = sent[i] rx = capture[i] tx_ip = tx[IP] rx_ip = rx[IP] self.assertEqual(rx_ip.src, tunnel_src) self.assertEqual(rx_ip.dst, tunnel_dst) rx_gre = rx[GRE] rx_ip = rx_gre[IP] self.assertEqual(rx_ip.src, tx_ip.src) self.assertEqual(rx_ip.dst, tx_ip.dst) # IP processing post pop has decremented the TTL self.assertEqual(rx_ip.ttl + 1, tx_ip.ttl) except: self.logger.error(ppp("Rx:", rx)) self.logger.error(ppp("Tx:", tx)) raise def verify_tunneled_6o6(self, src_if, capture, sent, tunnel_src, tunnel_dst): self.assertEqual(len(capture), len(sent)) for i in range(len(capture)): try: tx = sent[i] rx = capture[i] tx_ip = tx[IPv6] rx_ip = rx[IPv6] self.assertEqual(rx_ip.src, tunnel_src) self.assertEqual(rx_ip.dst, tunnel_dst) rx_gre = GRE(str(rx_ip[IPv6].payload)) rx_ip = rx_gre[IPv6] self.assertEqual(rx_ip.src, tx_ip.src) self.assertEqual(rx_ip.dst, tx_ip.dst) except: self.logger.error(ppp("Rx:", rx)) self.logger.error(ppp("Tx:", tx)) raise def verify_tunneled_l2o4(self, src_if, capture, sent, tunnel_src, tunnel_dst): self.assertEqual(len(capture), len(sent)) for i in range(len(capture)): try: tx = sent[i] rx = capture[i] tx_ip = tx[IP] rx_ip = rx[IP] self.assertEqual(rx_ip.src, tunnel_src) self.assertEqual(rx_ip.dst, tunnel_dst) rx_gre = rx[GRE] rx_l2 = rx_gre[Ether] rx_ip = rx_l2[IP] tx_gre = tx[GRE] tx_l2 = tx_gre[Ether] tx_ip = tx_l2[IP] self.assertEqual(rx_ip.src, tx_ip.src) self.assertEqual(rx_ip.dst, tx_ip.dst) # bridged, not L3 forwarded, so no TTL decrement self.assertEqual(rx_ip.ttl, tx_ip.ttl) except: self.logger.error(ppp("Rx:", rx)) self.logger.error(ppp("Tx:", tx)) raise def verify_tunneled_vlano4(self, src_if, capture, sent, tunnel_src, tunnel_dst, vlan): try: self.assertEqual(len(capture), len(sent)) except: ppc("Unexpected packets captured:", capture) raise for i in range(len(capture)): try: tx = sent[i] rx = capture[i] tx_ip = tx[IP] rx_ip = rx[IP] self.assertEqual(rx_ip.src, tunnel_src) self.assertEqual(rx_ip.dst, tunnel_dst) rx_gre = rx[GRE] rx_l2 = rx_gre[Ether] rx_vlan = rx_l2[Dot1Q] rx_ip = rx_l2[IP] self.assertEqual(rx_vlan.vlan, vlan) tx_gre = tx[GRE] tx_l2 = tx_gre[Ether] tx_ip = tx_l2[IP] self.assertEqual(rx_ip.src, tx_ip.src) self.assertEqual(rx_ip.dst, tx_ip.dst) # bridged, not L3 forwarded, so no TTL decrement self.assertEqual(rx_ip.ttl, tx_ip.ttl) except: self.logger.error(ppp("Rx:", rx)) self.logger.error(ppp("Tx:", tx)) raise def verify_decapped_4o4(self, src_if, capture, sent): self.assertEqual(len(capture), len(sent)) for i in range(len(capture)): try: tx = sent[i] rx = capture[i] tx_ip = tx[IP] rx_ip = rx[IP] tx_gre = tx[GRE] tx_ip = tx_gre[IP] self.assertEqual(rx_ip.src, tx_ip.src) self.assertEqual(rx_ip.dst, tx_ip.dst) # IP processing post pop has decremented the TTL self.assertEqual(rx_ip.ttl + 1, tx_ip.ttl) except: self.logger.error(ppp("Rx:", rx)) self.logger.error(ppp("Tx:", tx)) raise def verify_decapped_6o4(self, src_if, capture, sent): self.assertEqual(len(capture), len(sent)) for i in range(len(capture)): try: tx = sent[i] rx = capture[i] tx_ip = tx[IP] rx_ip = rx[IPv6] tx_gre = tx[GRE] tx_ip = tx_gre[IPv6] self.assertEqual(rx_ip.src, tx_ip.src) self.assertEqual(rx_ip.dst, tx_ip.dst) self.assertEqual(rx_ip.hlim + 1, tx_ip.hlim) except: self.logger.error(ppp("Rx:", rx)) self.logger.error(ppp("Tx:", tx)) raise def test_gre(self): """ GRE IPv4 tunnel Tests """ # # Create an L3 GRE tunnel. # - set it admin up # - assign an IP Addres # - Add a route via the tunnel # gre_if = VppGreInterface(self, self.pg0.local_ip4, "1.1.1.2") gre_if.add_vpp_config() # # The double create (create the same tunnel twice) should fail, # and we should still be able to use the original # try: gre_if.add_vpp_config() except Exception: pass else: self.fail("Double GRE tunnel add does not fail") gre_if.admin_up() gre_if.config_ip4() route_via_tun = VppIpRoute(self, "4.4.4.4", 32, [VppRoutePath("0.0.0.0", gre_if.sw_if_index)]) route_via_tun.add_vpp_config() # # Send a packet stream that is routed into the tunnel # - they are all dropped since the tunnel's desintation IP # is unresolved - or resolves via the default route - which # which is a drop. # tx = self.create_stream_ip4(self.pg0, "5.5.5.5", "4.4.4.4") self.pg0.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() self.pg0.assert_nothing_captured( remark="GRE packets forwarded without DIP resolved") # # Add a route that resolves the tunnel's destination # route_tun_dst = VppIpRoute(self, "1.1.1.2", 32, [VppRoutePath(self.pg0.remote_ip4, self.pg0.sw_if_index)]) route_tun_dst.add_vpp_config() # # Send a packet stream that is routed into the tunnel # - packets are GRE encapped # self.vapi.cli("clear trace") tx = self.create_stream_ip4(self.pg0, "5.5.5.5", "4.4.4.4") self.pg0.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg0.get_capture(len(tx)) self.verify_tunneled_4o4(self.pg0, rx, tx, self.pg0.local_ip4, "1.1.1.2") # # Send tunneled packets that match the created tunnel and # are decapped and forwarded # self.vapi.cli("clear trace") tx = self.create_tunnel_stream_4o4(self.pg0, "1.1.1.2", self.pg0.local_ip4, self.pg0.local_ip4, self.pg0.remote_ip4) self.pg0.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg0.get_capture(len(tx)) self.verify_decapped_4o4(self.pg0, rx, tx) # # Send tunneled packets that do not match the tunnel's src # self.vapi.cli("clear trace") tx = self.create_tunnel_stream_4o4(self.pg0, "1.1.1.3", self.pg0.local_ip4, self.pg0.local_ip4, self.pg0.remote_ip4) self.pg0.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() self.pg0.assert_nothing_captured( remark="GRE packets forwarded despite no SRC address match") # # Configure IPv6 on the PG interface so we can route IPv6 # packets # self.pg0.config_ip6() self.pg0.resolve_ndp() # # Send IPv6 tunnel encapslated packets # - dropped since IPv6 is not enabled on the tunnel # self.vapi.cli("clear trace") tx = self.create_tunnel_stream_6o4(self.pg0, "1.1.1.2", self.pg0.local_ip4, self.pg0.local_ip6, self.pg0.remote_ip6) self.pg0.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() self.pg0.assert_nothing_captured(remark="IPv6 GRE packets forwarded " "despite IPv6 not enabled on tunnel") # # Enable IPv6 on the tunnel # gre_if.config_ip6() # # Send IPv6 tunnel encapslated packets # - forwarded since IPv6 is enabled on the tunnel # self.vapi.cli("clear trace") tx = self.create_tunnel_stream_6o4(self.pg0, "1.1.1.2", self.pg0.local_ip4, self.pg0.local_ip6, self.pg0.remote_ip6) self.pg0.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg0.get_capture(len(tx)) self.verify_decapped_6o4(self.pg0, rx, tx) # # test case cleanup # route_tun_dst.remove_vpp_config() route_via_tun.remove_vpp_config() gre_if.remove_vpp_config() self.pg0.unconfig_ip6() def test_gre6(self): """ GRE IPv6 tunnel Tests """ # # Create an L3 GRE tunnel. # - set it admin up # - assign an IP Address # - Add a route via the tunnel # gre_if = VppGre6Interface(self, self.pg2.local_ip6, "1002::1") gre_if.add_vpp_config() gre_if.admin_up() gre_if.config_ip6() route_via_tun = VppIpRoute(self, "4004::1", 128, [VppRoutePath("0::0", gre_if.sw_if_index, is_ip6=1)], is_ip6=1) route_via_tun.add_vpp_config() # # Send a packet stream that is routed into the tunnel # - they are all dropped since the tunnel's desintation IP # is unresolved - or resolves via the default route - which # which is a drop. # tx = self.create_stream_ip6(self.pg2, "5005::1", "4004::1") self.pg2.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() self.pg2.assert_nothing_captured( remark="GRE packets forwarded without DIP resolved") # # Add a route that resolves the tunnel's destination # route_tun_dst = VppIpRoute(self, "1002::1", 128, [VppRoutePath(self.pg2.remote_ip6, self.pg2.sw_if_index, is_ip6=1)], is_ip6=1) route_tun_dst.add_vpp_config() # # Send a packet stream that is routed into the tunnel # - packets are GRE encapped # self.vapi.cli("clear trace") tx = self.create_stream_ip6(self.pg2, "5005::1", "4004::1") self.pg2.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg2.get_capture(len(tx)) self.verify_tunneled_6o6(self.pg2, rx, tx, self.pg2.local_ip6, "1002::1") # # test case cleanup # route_tun_dst.remove_vpp_config() route_via_tun.remove_vpp_config() gre_if.remove_vpp_config() self.pg2.unconfig_ip6() def test_gre_vrf(self): """ GRE tunnel VRF Tests """ # # Create an L3 GRE tunnel whose destination is in the non-default # table. The underlay is thus non-default - the overlay is still # the default. # - set it admin up # - assign an IP Addres # gre_if = VppGreInterface(self, self.pg1.local_ip4, "2.2.2.2", outer_fib_id=1) gre_if.add_vpp_config() gre_if.admin_up() gre_if.config_ip4() # # Add a route via the tunnel - in the overlay # route_via_tun = VppIpRoute(self, "9.9.9.9", 32, [VppRoutePath("0.0.0.0", gre_if.sw_if_index)]) route_via_tun.add_vpp_config() # # Add a route that resolves the tunnel's destination - in the # underlay table # route_tun_dst = VppIpRoute(self, "2.2.2.2", 32, table_id=1, paths=[VppRoutePath(self.pg1.remote_ip4, self.pg1.sw_if_index)]) route_tun_dst.add_vpp_config() # # Send a packet stream that is routed into the tunnel # packets are sent in on pg0 which is in the default table # - packets are GRE encapped # self.vapi.cli("clear trace") tx = self.create_stream_ip4(self.pg0, "5.5.5.5", "9.9.9.9") self.pg0.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg1.get_capture(len(tx)) self.verify_tunneled_4o4(self.pg1, rx, tx, self.pg1.local_ip4, "2.2.2.2") # # Send tunneled packets that match the created tunnel and # are decapped and forwarded. This tests the decap lookup # does not happen in the encap table # self.vapi.cli("clear trace") tx = self.create_tunnel_stream_4o4(self.pg1, "2.2.2.2", self.pg1.local_ip4, self.pg0.local_ip4, self.pg0.remote_ip4) self.pg1.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg0.get_capture(len(tx)) self.verify_decapped_4o4(self.pg0, rx, tx) # # test case cleanup # route_tun_dst.remove_vpp_config() route_via_tun.remove_vpp_config() gre_if.remove_vpp_config() def test_gre_l2(self): """ GRE tunnel L2 Tests """ # # Add routes to resolve the tunnel destinations # route_tun1_dst = VppIpRoute(self, "2.2.2.2", 32, [VppRoutePath(self.pg0.remote_ip4, self.pg0.sw_if_index)]) route_tun2_dst = VppIpRoute(self, "2.2.2.3", 32, [VppRoutePath(self.pg0.remote_ip4, self.pg0.sw_if_index)]) route_tun1_dst.add_vpp_config() route_tun2_dst.add_vpp_config() # # Create 2 L2 GRE tunnels and x-connect them # gre_if1 = VppGreInterface(self, self.pg0.local_ip4, "2.2.2.2", is_teb=1) gre_if2 = VppGreInterface(self, self.pg0.local_ip4, "2.2.2.3", is_teb=1) gre_if1.add_vpp_config() gre_if2.add_vpp_config() gre_if1.admin_up() gre_if2.admin_up() self.vapi.sw_interface_set_l2_xconnect(gre_if1.sw_if_index, gre_if2.sw_if_index, enable=1) self.vapi.sw_interface_set_l2_xconnect(gre_if2.sw_if_index, gre_if1.sw_if_index, enable=1) # # Send in tunnel encapped L2. expect out tunnel encapped L2 # in both directions # self.vapi.cli("clear trace") tx = self.create_tunnel_stream_l2o4(self.pg0, "2.2.2.2", self.pg0.local_ip4) self.pg0.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg0.get_capture(len(tx)) self.verify_tunneled_l2o4(self.pg0, rx, tx, self.pg0.local_ip4, "2.2.2.3") self.vapi.cli("clear trace") tx = self.create_tunnel_stream_l2o4(self.pg0, "2.2.2.3", self.pg0.local_ip4) self.pg0.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg0.get_capture(len(tx)) self.verify_tunneled_l2o4(self.pg0, rx, tx, self.pg0.local_ip4, "2.2.2.2") self.vapi.sw_interface_set_l2_xconnect(gre_if1.sw_if_index, gre_if2.sw_if_index, enable=0) self.vapi.sw_interface_set_l2_xconnect(gre_if2.sw_if_index, gre_if1.sw_if_index, enable=0) # # Create a VLAN sub-interfaces on the GRE TEB interfaces # then x-connect them # gre_if_11 = VppDot1QSubint(self, gre_if1, 11) gre_if_12 = VppDot1QSubint(self, gre_if2, 12) # gre_if_11.add_vpp_config() # gre_if_12.add_vpp_config() gre_if_11.admin_up() gre_if_12.admin_up() self.vapi.sw_interface_set_l2_xconnect(gre_if_11.sw_if_index, gre_if_12.sw_if_index, enable=1) self.vapi.sw_interface_set_l2_xconnect(gre_if_12.sw_if_index, gre_if_11.sw_if_index, enable=1) # # Configure both to pop thier respective VLAN tags, # so that during the x-coonect they will subsequently push # self.vapi.sw_interface_set_l2_tag_rewrite(gre_if_12.sw_if_index, L2_VTR_OP.L2_POP_1, 12) self.vapi.sw_interface_set_l2_tag_rewrite(gre_if_11.sw_if_index, L2_VTR_OP.L2_POP_1, 11) # # Send traffic in both directiond - expect the VLAN tags to # be swapped. # self.vapi.cli("clear trace") tx = self.create_tunnel_stream_vlano4(self.pg0, "2.2.2.2", self.pg0.local_ip4, 11) self.pg0.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg0.get_capture(len(tx)) self.verify_tunneled_vlano4(self.pg0, rx, tx, self.pg0.local_ip4, "2.2.2.3", 12) self.vapi.cli("clear trace") tx = self.create_tunnel_stream_vlano4(self.pg0, "2.2.2.3", self.pg0.local_ip4, 12) self.pg0.add_stream(tx) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rx = self.pg0.get_capture(len(tx)) self.verify_tunneled_vlano4(self.pg0, rx, tx, self.pg0.local_ip4, "2.2.2.2", 11) # # Cleanup Test resources # gre_if_11.remove_vpp_config() gre_if_12.remove_vpp_config() gre_if1.remove_vpp_config() gre_if2.remove_vpp_config() route_tun1_dst.add_vpp_config() route_tun2_dst.add_vpp_config() if __name__ == '__main__': unittest.main(testRunner=VppTestRunner)