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path: root/src/plugins/memif/memif_api.c
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/*
 *------------------------------------------------------------------
 * memif_api.c - memif api
 *
 * 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 <vlib/vlib.h>
#include <vnet/ethernet/ethernet.h>
#include <vlib/unix/unix.h>
#include <memif/memif.h>
#include <memif/private.h>

#include <vlibapi/api.h>
#include <vlibmemory/api.h>

#include <vnet/ip/ip_types_api.h>
#include <vnet/ethernet/ethernet_types_api.h>

/* define message IDs */
#include <memif/memif_msg_enum.h>

/* define message structures */
#define vl_typedefs
#include <memif/memif_all_api_h.h>
#undef vl_typedefs

/* define generated endian-swappers */
#define vl_endianfun
#include <memif/memif_all_api_h.h>
#undef vl_endianfun

/* instantiate all the print functions we know about */
#define vl_print(handle, ...) vlib_cli_output (handle, __VA_ARGS__)
#define vl_printfun
#include <memif/memif_all_api_h.h>
#undef vl_printfun

/* Get the API version number */
#define vl_api_version(n,v) static u32 api_version=(v);
#include <memif/memif_all_api_h.h>
#undef vl_api_version

#define REPLY_MSG_ID_BASE mm->msg_id_base
#include <vlibapi/api_helper_macros.h>

#define foreach_memif_plugin_api_msg					\
_(MEMIF_SOCKET_FILENAME_ADD_DEL, memif_socket_filename_add_del)	\
_(MEMIF_CREATE, memif_create)						\
_(MEMIF_DELETE, memif_delete)						\
_(MEMIF_SOCKET_FILENAME_DUMP, memif_socket_filename_dump)		\
_(MEMIF_DUMP, memif_dump)						\


/**
 * @brief Message handler for memif_socket_filename_add_del API.
 * @param mp the vl_api_memif_socket_filename_add_del_t API message
 */
void
  vl_api_memif_socket_filename_add_del_t_handler
  (vl_api_memif_socket_filename_add_del_t * mp)
{
  memif_main_t *mm = &memif_main;
  u8 is_add;
  u32 socket_id;
  u32 len;
  u8 *socket_filename;
  vl_api_memif_socket_filename_add_del_reply_t *rmp;
  int rv;

  /* is_add */
  is_add = mp->is_add;

  /* socket_id */
  socket_id = clib_net_to_host_u32 (mp->socket_id);
  if (socket_id == 0 || socket_id == ~0)
    {
      rv = VNET_API_ERROR_INVALID_ARGUMENT;
      goto reply;
    }

  /* socket filename */
  socket_filename = 0;
  mp->socket_filename[ARRAY_LEN (mp->socket_filename) - 1] = 0;
  len = strlen ((char *) mp->socket_filename);
  if (mp->is_add)
    {
      vec_validate (socket_filename, len);
      memcpy (socket_filename, mp->socket_filename, len);
    }

  rv = memif_socket_filename_add_del (is_add, socket_id, socket_filename);

  vec_free (socket_filename);

reply:
  REPLY_MACRO (VL_API_MEMIF_SOCKET_FILENAME_ADD_DEL_REPLY);
}


/**
 * @brief Message handler for memif_create API.
 * @param mp vl_api_memif_create_t * mp the api message
 */
void
vl_api_memif_create_t_handler (vl_api_memif_create_t * mp)
{
  memif_main_t *mm = &memif_main;
  vlib_main_t *vm = vlib_get_main ();
  vl_api_memif_create_reply_t *rmp;
  memif_create_if_args_t args = { 0 };
  u32 ring_size = MEMIF_DEFAULT_RING_SIZE;
  static const u8 empty_hw_addr[6];
  int rv = 0;
  mac_address_t mac;

  /* id */
  args.id = clib_net_to_host_u32 (mp->id);

  /* socket-id */
  args.socket_id = clib_net_to_host_u32 (mp->socket_id);

  /* secret */
  mp->secret[ARRAY_LEN (mp->secret) - 1] = 0;
  if (strlen ((char *) mp->secret) > 0)
    {
      vec_validate (args.secret, strlen ((char *) mp->secret));
      strncpy ((char *) args.secret, (char *) mp->secret,
	       vec_len (args.secret));
    }

  /* role */
  args.is_master = (ntohl (mp->role) == MEMIF_ROLE_API_MASTER);

  /* mode */
  args.mode = ntohl (mp->mode);

  args.is_zero_copy = mp->no_zero_copy ? 0 : 1;

  /* rx/tx queues */
  if (args.is_master == 0)
    {
      args.rx_queues = MEMIF_DEFAULT_RX_QUEUES;
      args.tx_queues = MEMIF_DEFAULT_TX_QUEUES;
      if (mp->rx_queues)
	{
	  args.rx_queues = mp->rx_queues;
	}
      if (mp->tx_queues)
	{
	  args.tx_queues = mp->tx_queues;
	}
    }

  /* ring size */
  if (mp->ring_size)
    {
      ring_size = ntohl (mp->ring_size);
    }
  if (!is_pow2 (ring_size))
    {
      rv = VNET_API_ERROR_INVALID_ARGUMENT;
      goto reply;
    }
  args.log2_ring_size = min_log2 (ring_size);

  /* buffer size */
  args.buffer_size = MEMIF_DEFAULT_BUFFER_SIZE;
  if (mp->buffer_size)
    {
      args.buffer_size = ntohs (mp->buffer_size);
    }

  /* MAC address */
  mac_address_decode (mp->hw_addr, &mac);
  if (memcmp (&mac, empty_hw_addr, 6) != 0)
    {
      memcpy (args.hw_addr, &mac, 6);
      args.hw_addr_set = 1;
    }

  rv = memif_create_if (vm, &args);

  vec_free (args.secret);

reply:
  /* *INDENT-OFF* */
  REPLY_MACRO2 (VL_API_MEMIF_CREATE_REPLY,
    ({
      rmp->sw_if_index = htonl (args.sw_if_index);
    }));
  /* *INDENT-ON* */
}

/**
 * @brief Message handler for memif_delete API.
 * @param mp vl_api_memif_delete_t * mp the api message
 */
void
vl_api_memif_delete_t_handler (vl_api_memif_delete_t * mp)
{
  memif_main_t *mm = &memif_main;
  vlib_main_t *vm = vlib_get_main ();
  vnet_main_t *vnm = vnet_get_main ();
  vl_api_memif_delete_reply_t *rmp;
  vnet_hw_interface_t *hi;
  memif_if_t *mif;
  int rv = 0;

  hi =
    vnet_get_sup_hw_interface_api_visible_or_null (vnm,
						   ntohl (mp->sw_if_index));

  if (hi == NULL || memif_device_class.index != hi->dev_class_index)
    rv = VNET_API_ERROR_INVALID_SW_IF_INDEX;
  else
    {
      mif = pool_elt_at_index (mm->interfaces, hi->dev_instance);
      rv = memif_delete_if (vm, mif);
    }

  REPLY_MACRO (VL_API_MEMIF_DELETE_REPLY);
}

static void
send_memif_details (vl_api_registration_t * reg,
		    memif_if_t * mif,
		    vnet_sw_interface_t * swif,
		    u8 * interface_name, u32 context)
{
  vl_api_memif_details_t *mp;
  vnet_main_t *vnm = vnet_get_main ();
  memif_main_t *mm = &memif_main;
  vnet_hw_interface_t *hwif;
  memif_socket_file_t *msf;

  hwif = vnet_get_sup_hw_interface (vnm, swif->sw_if_index);

  mp = vl_msg_api_alloc (sizeof (*mp));
  clib_memset (mp, 0, sizeof (*mp));

  mp->_vl_msg_id = htons (VL_API_MEMIF_DETAILS + mm->msg_id_base);
  mp->context = context;

  mp->sw_if_index = htonl (swif->sw_if_index);
  strncpy ((char *) mp->if_name,
	   (char *) interface_name, ARRAY_LEN (mp->if_name) - 1);

  if (hwif->hw_address)
    {
      mac_address_encode ((mac_address_t *) hwif->hw_address, mp->hw_addr);
    }

  mp->id = clib_host_to_net_u32 (mif->id);

  msf = pool_elt_at_index (mm->socket_files, mif->socket_file_index);
  mp->socket_id = clib_host_to_net_u32 (msf->socket_id);

  mp->role =
    (mif->flags & MEMIF_IF_FLAG_IS_SLAVE) ? MEMIF_ROLE_API_SLAVE :
    MEMIF_ROLE_API_MASTER;
  mp->role = htonl (mp->role);
  mp->mode = htonl (mif->mode);
  mp->ring_size = htonl (1 << mif->run.log2_ring_size);
  mp->buffer_size = htons (mif->run.buffer_size);
  mp->zero_copy = (mif->flags & MEMIF_IF_FLAG_ZERO_COPY) ? 1 : 0;

  mp->flags = 0;
  mp->flags |= (swif->flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP) ?
    IF_STATUS_API_FLAG_ADMIN_UP : 0;
  mp->flags |= (hwif->flags & VNET_HW_INTERFACE_FLAG_LINK_UP) ?
    IF_STATUS_API_FLAG_LINK_UP : 0;
  mp->flags = htonl (mp->flags);


  vl_api_send_msg (reg, (u8 *) mp);
}

/**
 * @brief Message handler for memif_dump API.
 * @param mp vl_api_memif_dump_t * mp the api message
 */
void
vl_api_memif_dump_t_handler (vl_api_memif_dump_t * mp)
{
  memif_main_t *mm = &memif_main;
  vnet_main_t *vnm = vnet_get_main ();
  vnet_sw_interface_t *swif;
  memif_if_t *mif;
  u8 *if_name = 0;
  vl_api_registration_t *reg;

  reg = vl_api_client_index_to_registration (mp->client_index);
  if (!reg)
    return;

  /* *INDENT-OFF* */
  pool_foreach (mif, mm->interfaces,
    ({
      swif = vnet_get_sw_interface (vnm, mif->sw_if_index);

      if_name = format (if_name, "%U%c",
			format_vnet_sw_interface_name,
			vnm, swif, 0);

      send_memif_details (reg, mif, swif, if_name, mp->context);
      _vec_len (if_name) = 0;
    }));
  /* *INDENT-ON* */

  vec_free (if_name);
}

static void
send_memif_socket_filename_details (vl_api_registration_t * reg,
				    u32 socket_id,
				    u8 * socket_filename, u32 context)
{
  vl_api_memif_socket_filename_details_t *mp;
  memif_main_t *mm = &memif_main;

  mp = vl_msg_api_alloc (sizeof (*mp));
  clib_memset (mp, 0, sizeof (*mp));

  mp->_vl_msg_id = htons (VL_API_MEMIF_SOCKET_FILENAME_DETAILS
			  + mm->msg_id_base);
  mp->context = context;

  mp->socket_id = clib_host_to_net_u32 (socket_id);
  strncpy ((char *) mp->socket_filename,
	   (char *) socket_filename, ARRAY_LEN (mp->socket_filename) - 1);

  vl_api_send_msg (reg, (u8 *) mp);
}

/**
 * @brief Message handler for memif_socket_filename_dump API.
 * @param mp vl_api_memif_socket_filename_dump_t api message
 */
void
  vl_api_memif_socket_filename_dump_t_handler
  (vl_api_memif_socket_filename_dump_t * mp)
{
  memif_main_t *mm = &memif_main;
  vl_api_registration_t *reg;
  u32 sock_id;
  u32 msf_idx;

  reg = vl_api_client_index_to_registration (mp->client_index);
  if (!reg)
    return;

  /* *INDENT-OFF* */
  hash_foreach (sock_id, msf_idx, mm->socket_file_index_by_sock_id,
    ({
      memif_socket_file_t *msf;
      u8 *filename;

      msf = pool_elt_at_index(mm->socket_files, msf_idx);
      filename = msf->filename;
      send_memif_socket_filename_details(reg, sock_id, filename, mp->context);
    }));
  /* *INDENT-ON* */
}

#define vl_msg_name_crc_list
#include <memif/memif_all_api_h.h>
#undef vl_msg_name_crc_list

static void
setup_message_id_table (memif_main_t * mm, api_main_t * am)
{
#define _(id,n,crc) \
  vl_msg_api_add_msg_name_crc (am, #n "_" #crc, id + mm->msg_id_base);
  foreach_vl_msg_name_crc_memif;
#undef _
}

/* Set up the API message handling tables */
clib_error_t *
memif_plugin_api_hookup (vlib_main_t * vm)
{
  memif_main_t *mm = &memif_main;
  api_main_t *am = &api_main;
  u8 *name;

  /* Construct the API name */
  name = format (0, "memif_%08x%c", api_version, 0);

  /* Ask for a correctly-sized block of API message decode slots */
  mm->msg_id_base = vl_msg_api_get_msg_ids
    ((char *) name, VL_MSG_FIRST_AVAILABLE);

#define _(N,n)                                                  \
    vl_msg_api_set_handlers((VL_API_##N + mm->msg_id_base),     \
                           #n,                                  \
                           vl_api_##n##_t_handler,              \
                           vl_noop_handler,                     \
                           vl_api_##n##_t_endian,               \
                           vl_api_##n##_t_print,                \
                           sizeof(vl_api_##n##_t), 1);
  foreach_memif_plugin_api_msg;
#undef _

  /*
   * Set up the (msg_name, crc, message-id) table
   */
  setup_message_id_table (mm, am);

  vec_free (name);
  return 0;
}

/*
 * fd.io coding-style-patch-verification: ON
 *
 * Local Variables:
 * eval: (c-set-style "gnu")
 * End:
 */
punt.punt.ip_proto.protocol, pr['punt']['ip_proto']['protocol']) def verify_udp_pkts(self, rxs, n_rx, port): n_match = 0 for rx in rxs: self.assertTrue(rx.haslayer(UDP)) if rx[UDP].dport == port: n_match += 1 self.assertEqual(n_match, n_rx) def set_port(pr, port): pr['punt']['l4']['port'] = port return pr def set_reason(pr, reason): pr['punt']['exception']['id'] = reason return pr def mk_vpp_cfg4(): pt_l4 = VppEnum.vl_api_punt_type_t.PUNT_API_TYPE_L4 af_ip4 = VppEnum.vl_api_address_family_t.ADDRESS_IP4 udp_proto = VppEnum.vl_api_ip_proto_t.IP_API_PROTO_UDP punt_l4 = { 'type': pt_l4, 'punt': { 'l4': { 'af': af_ip4, 'protocol': udp_proto } } } return punt_l4 def mk_vpp_cfg6(): pt_l4 = VppEnum.vl_api_punt_type_t.PUNT_API_TYPE_L4 af_ip6 = VppEnum.vl_api_address_family_t.ADDRESS_IP6 udp_proto = VppEnum.vl_api_ip_proto_t.IP_API_PROTO_UDP punt_l4 = { 'type': pt_l4, 'punt': { 'l4': { 'af': af_ip6, 'protocol': udp_proto } } } return punt_l4 class TestIP4PuntSocket(TestPuntSocket): """ Punt Socket for IPv4 UDP """ @classmethod def setUpClass(cls): super(TestIP4PuntSocket, cls).setUpClass() @classmethod def tearDownClass(cls): super(TestIP4PuntSocket, cls).tearDownClass() def setUp(self): super(TestIP4PuntSocket, self).setUp() for i in self.pg_interfaces: i.config_ip4() i.resolve_arp() def tearDown(self): super(TestIP4PuntSocket, self).tearDown() for i in self.pg_interfaces: i.unconfig_ip4() i.admin_down() def test_punt_socket_dump(self): """ Punt socket registration/deregistration""" pt_l4 = VppEnum.vl_api_punt_type_t.PUNT_API_TYPE_L4 af_ip4 = VppEnum.vl_api_address_family_t.ADDRESS_IP4 udp_proto = VppEnum.vl_api_ip_proto_t.IP_API_PROTO_UDP punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 0) # # configure a punt socket # punt_l4 = mk_vpp_cfg4() self.vapi.punt_socket_register(set_port(punt_l4, 1111), b"%s/socket_punt_1111" % six.ensure_binary(self.tempdir)) self.vapi.punt_socket_register(set_port(punt_l4, 2222), b"%s/socket_punt_2222" % six.ensure_binary(self.tempdir)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 2) self.verify_port(set_port(punt_l4, 1111), punts[0]) self.verify_port(set_port(punt_l4, 2222), punts[1]) # # deregister a punt socket # self.vapi.punt_socket_deregister(set_port(punt_l4, 1111)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 1) # # configure a punt socket again # self.vapi.punt_socket_register(set_port(punt_l4, 1111), b"%s/socket_punt_1111" % six.ensure_binary(self.tempdir)) self.vapi.punt_socket_register(set_port(punt_l4, 3333), b"%s/socket_punt_3333" % six.ensure_binary(self.tempdir)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 3) self.logger.info(self.vapi.cli("sh punt sock reg")) # # deregister all punt socket # self.vapi.punt_socket_deregister(set_port(punt_l4, 1111)) self.vapi.punt_socket_deregister(set_port(punt_l4, 2222)) self.vapi.punt_socket_deregister(set_port(punt_l4, 3333)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 0) def test_punt_socket_traffic_single_port_single_socket(self): """ Punt socket traffic single port single socket""" port = self.ports[0] pt_l4 = VppEnum.vl_api_punt_type_t.PUNT_API_TYPE_L4 punt_l4 = set_port(mk_vpp_cfg4(), port) p = (Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac) / IP(src=self.pg0.remote_ip4, dst=self.pg0.local_ip4) / UDP(sport=9876, dport=port) / Raw('\xa5' * 100)) pkts = p * self.nr_packets punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 0) # # expect ICMP - port unreachable for all packets # rx = self.send_and_expect(self.pg0, pkts, self.pg0) for p in rx: self.assertEqual(int(p[IP].proto), 1) # ICMP self.assertEqual(int(p[ICMP].code), 3) # unreachable # # configure a punt socket # self.socket_client_create(b"%s/socket_%d" % ( six.ensure_binary(self.tempdir), port)) self.vapi.punt_socket_register(punt_l4, b"%s/socket_%d" % ( six.ensure_binary(self.tempdir), port)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 1) # # expect punt socket and no packets on pg0 # self.send_and_assert_no_replies(self.pg0, pkts) rx = self.socket_client_close() self.verify_udp_pkts(rx, len(pkts), port) # # remove punt socket. expect ICMP - port unreachable for all packets # self.vapi.punt_socket_deregister(punt_l4) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 0) rx = self.send_and_expect(self.pg0, pkts, self.pg0) for p in rx: self.assertEqual(int(p[IP].proto), 1) # ICMP self.assertEqual(int(p[ICMP].code), 3) # unreachable def test_punt_socket_traffic_multi_ports_multi_sockets(self): """ Punt socket traffic multi ports and multi sockets""" punt_l4 = mk_vpp_cfg4() # configuration for each UDP port cfgs = dict() # # create stream of packets for each port # for port in self.ports: # choose port from port list cfgs[port] = {} pkt = (Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac) / IP(src=self.pg0.remote_ip4, dst=self.pg0.local_ip4) / UDP(sport=9876, dport=port) / Raw('\xa5' * 100)) cfgs[port]['pkts'] = pkt * self.nr_packets cfgs[port]['port'] = port cfgs[port]['vpp'] = copy.deepcopy(set_port(punt_l4, port)) # configure punt sockets cfgs[port]['sock'] = self.socket_client_create( b"%s/socket_%d" % (six.ensure_binary(self.tempdir), port)) self.vapi.punt_socket_register( cfgs[port]['vpp'], b"%s/socket_%d" % (six.ensure_binary(self.tempdir), port)) # # send the packets that get punted # for cfg in cfgs.values(): self.send_and_assert_no_replies(self.pg0, cfg['pkts']) # # test that we got the excepted packets on the expected socket # for cfg in cfgs.values(): rx = cfg['sock'].close() self.verify_udp_pkts(rx, len(cfg['pkts']), cfg['port']) self.vapi.punt_socket_deregister(cfg['vpp']) def test_punt_socket_traffic_multi_ports_single_socket(self): """ Punt socket traffic multi ports and single socket""" pt_l4 = VppEnum.vl_api_punt_type_t.PUNT_API_TYPE_L4 punt_l4 = mk_vpp_cfg4() # # create stream of packets with each port # pkts = [] for port in self.ports: # choose port from port list pkt = (Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac) / IP(src=self.pg0.remote_ip4, dst=self.pg0.local_ip4) / UDP(sport=9876, dport=port) / Raw('\xa5' * 100)) pkts += pkt * self.nr_packets # # configure a punt socket # self.socket_client_create(b"%s/socket_multi" % six.ensure_binary(self.tempdir)) for p in self.ports: self.vapi.punt_socket_register(set_port(punt_l4, p), b"%s/socket_multi" % six.ensure_binary(self.tempdir)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), len(self.ports)) # # expect punt socket and no packets on pg0 # self.send_and_assert_no_replies(self.pg0, pkts) self.logger.info(self.vapi.cli("show trace")) rx = self.socket_client_close() for p in self.ports: self.verify_udp_pkts(rx, self.nr_packets, p) self.vapi.punt_socket_deregister(set_port(punt_l4, p)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 0) class TestIP6PuntSocket(TestPuntSocket): """ Punt Socket for IPv6 UDP """ @classmethod def setUpClass(cls): super(TestIP6PuntSocket, cls).setUpClass() @classmethod def tearDownClass(cls): super(TestIP6PuntSocket, cls).tearDownClass() def setUp(self): super(TestIP6PuntSocket, self).setUp() for i in self.pg_interfaces: i.config_ip6() i.resolve_ndp() def tearDown(self): super(TestIP6PuntSocket, self).tearDown() for i in self.pg_interfaces: i.unconfig_ip6() i.admin_down() def test_punt_socket_dump(self): """ Punt socket registration """ pt_l4 = VppEnum.vl_api_punt_type_t.PUNT_API_TYPE_L4 af_ip6 = VppEnum.vl_api_address_family_t.ADDRESS_IP6 udp_proto = VppEnum.vl_api_ip_proto_t.IP_API_PROTO_UDP # # configure a punt socket # punt_l4 = { 'type': pt_l4, 'punt': { 'l4': { 'af': af_ip6, 'protocol': udp_proto } } } punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 0) # # configure a punt socket # self.vapi.punt_socket_register(set_port(punt_l4, 1111), b"%s/socket_1111" % six.ensure_binary(self.tempdir)) self.vapi.punt_socket_register(set_port(punt_l4, 2222), b"%s/socket_2222" % six.ensure_binary(self.tempdir)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 2) self.verify_port(set_port(punt_l4, 1111), punts[0]) self.verify_port(set_port(punt_l4, 2222), punts[1]) # # deregister a punt socket # self.vapi.punt_socket_deregister(set_port(punt_l4, 1111)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 1) # # configure a punt socket again # self.vapi.punt_socket_register(set_port(punt_l4, 1111), b"%s/socket_1111" % six.ensure_binary(self.tempdir)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 2) # # deregister all punt socket # self.vapi.punt_socket_deregister(set_port(punt_l4, 1111)) self.vapi.punt_socket_deregister(set_port(punt_l4, 2222)) self.vapi.punt_socket_deregister(set_port(punt_l4, 3333)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 0) def test_punt_socket_traffic_single_port_single_socket(self): """ Punt socket traffic single port single socket""" port = self.ports[0] pt_l4 = VppEnum.vl_api_punt_type_t.PUNT_API_TYPE_L4 af_ip6 = VppEnum.vl_api_address_family_t.ADDRESS_IP6 udp_proto = VppEnum.vl_api_ip_proto_t.IP_API_PROTO_UDP punt_l4 = { 'type': pt_l4, 'punt': { 'l4': { 'af': af_ip6, 'protocol': udp_proto, 'port': port, } } } p = (Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac) / IPv6(src=self.pg0.remote_ip6, dst=self.pg0.local_ip6) / inet6.UDP(sport=9876, dport=port) / Raw('\xa5' * 100)) pkts = p * self.nr_packets punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 0) # # expect ICMPv6 - destination unreachable for all packets # self.vapi.cli("clear trace") self.pg0.add_stream(pkts) self.pg_enable_capture(self.pg_interfaces) self.pg_start() # FIXME - when punt socket deregister is implemented # rx = self.pg0.get_capture(self.nr_packets) # for p in rx: # self.assertEqual(int(p[IPv6].nh), 58) # ICMPv6 # self.assertEqual(int(p[ICMPv6DestUnreach].code),4) # unreachable # # configure a punt socket # self.socket_client_create(b"%s/socket_%d" % ( six.ensure_binary(self.tempdir), port)) self.vapi.punt_socket_register(punt_l4, b"%s/socket_%d" % ( six.ensure_binary(self.tempdir), port)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 1) # # expect punt socket and no packets on pg0 # self.vapi.cli("clear errors") self.vapi.cli("clear trace") self.pg0.add_stream(pkts) self.pg_enable_capture(self.pg_interfaces) self.pg_start() self.pg0.get_capture(0) self.logger.info(self.vapi.cli("show trace")) rx = self.socket_client_close() self.verify_udp_pkts(rx, len(pkts), port) # # remove punt socket. expect ICMP - dest. unreachable for all packets # self.vapi.punt_socket_deregister(punt_l4) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 0) self.pg0.add_stream(pkts) self.pg_enable_capture(self.pg_interfaces) self.pg_start() # FIXME - when punt socket deregister is implemented # self.pg0.get_capture(nr_packets) def test_punt_socket_traffic_multi_ports_multi_sockets(self): """ Punt socket traffic multi ports and multi sockets""" punt_l4 = mk_vpp_cfg6() # configuration for each UDP port cfgs = dict() # # create stream of packets for each port # for port in self.ports: # choose port from port list cfgs[port] = {} pkt = (Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac) / IPv6(src=self.pg0.remote_ip6, dst=self.pg0.local_ip6) / UDP(sport=9876, dport=port) / Raw('\xa5' * 100)) cfgs[port]['pkts'] = pkt * self.nr_packets cfgs[port]['port'] = port cfgs[port]['vpp'] = copy.deepcopy(set_port(punt_l4, port)) # configure punt sockets cfgs[port]['sock'] = self.socket_client_create( b"%s/socket_%d" % (six.ensure_binary(self.tempdir), port)) self.vapi.punt_socket_register( cfgs[port]['vpp'], b"%s/socket_%d" % (six.ensure_binary(self.tempdir), port)) # # send the packets that get punted # for cfg in cfgs.values(): self.send_and_assert_no_replies(self.pg0, cfg['pkts']) # # test that we got the excepted packets on the expected socket # for cfg in cfgs.values(): rx = cfg['sock'].close() self.verify_udp_pkts(rx, len(cfg['pkts']), cfg['port']) self.vapi.punt_socket_deregister(cfg['vpp']) def test_punt_socket_traffic_multi_ports_single_socket(self): """ Punt socket traffic multi ports and single socket""" pt_l4 = VppEnum.vl_api_punt_type_t.PUNT_API_TYPE_L4 af_ip6 = VppEnum.vl_api_address_family_t.ADDRESS_IP6 udp_proto = VppEnum.vl_api_ip_proto_t.IP_API_PROTO_UDP punt_l4 = { 'type': pt_l4, 'punt': { 'l4': { 'af': af_ip6, 'protocol': udp_proto, } } } # # create stream of packets with each port # pkts = [] for port in self.ports: # choose port from port list pkt = (Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac) / IPv6(src=self.pg0.remote_ip6, dst=self.pg0.local_ip6) / UDP(sport=9876, dport=port) / Raw('\xa5' * 100)) pkts += pkt * self.nr_packets # # no punt socket # punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 0) # # configure a punt socket # self.socket_client_create(b"%s/socket_multi" % six.ensure_binary(self.tempdir)) for p in self.ports: self.vapi.punt_socket_register(set_port(punt_l4, p), b"%s/socket_multi" % six.ensure_binary(self.tempdir)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), len(self.ports)) # # expect punt socket and no packets on pg0 # self.vapi.cli("clear errors") self.vapi.cli("clear trace") self.pg0.add_stream(pkts) self.pg_enable_capture(self.pg_interfaces) self.pg_start() self.pg0.get_capture(0) rx = self.socket_client_close() for p in self.ports: self.verify_udp_pkts(rx, self.nr_packets, p) self.vapi.punt_socket_deregister(set_port(punt_l4, p)) punts = self.vapi.punt_socket_dump(type=pt_l4) self.assertEqual(len(punts), 0) class TestExceptionPuntSocket(TestPuntSocket): """ Punt Socket for Exceptions """ @classmethod def setUpClass(cls): super(TestExceptionPuntSocket, cls).setUpClass() @classmethod def tearDownClass(cls): super(TestExceptionPuntSocket, cls).tearDownClass() def setUp(self): super(TestExceptionPuntSocket, self).setUp() for i in self.pg_interfaces: i.config_ip4() i.resolve_arp() def tearDown(self): super(TestExceptionPuntSocket, self).tearDown() for i in self.pg_interfaces: i.unconfig_ip4() i.admin_down() def test_registration(self): """ Punt socket registration/deregistration""" pt_ex = VppEnum.vl_api_punt_type_t.PUNT_API_TYPE_EXCEPTION punts = self.vapi.punt_socket_dump(type=pt_ex) self.assertEqual(len(punts), 0) # # configure a punt socket # punt_ex = { 'type': pt_ex, 'punt': { 'exception': {} } } self.vapi.punt_socket_register(set_reason(punt_ex, 1), b"%s/socket_punt_1" % six.ensure_binary(self.tempdir)) self.vapi.punt_socket_register(set_reason(punt_ex, 2), b"%s/socket_punt_2" % six.ensure_binary(self.tempdir)) punts = self.vapi.punt_socket_dump(type=pt_ex) self.assertEqual(len(punts), 2) self.verify_exception(set_reason(punt_ex, 1), punts[0]) self.verify_exception(set_reason(punt_ex, 2), punts[1]) # # deregister a punt socket # self.vapi.punt_socket_deregister(set_reason(punt_ex, 1)) punts = self.vapi.punt_socket_dump(type=pt_ex) self.assertEqual(len(punts), 1) # # configure a punt socket again # self.vapi.punt_socket_register(set_reason(punt_ex, 1), b"%s/socket_punt_1" % six.ensure_binary(self.tempdir)) self.vapi.punt_socket_register(set_reason(punt_ex, 3), b"%s/socket_punt_3" % six.ensure_binary(self.tempdir)) punts = self.vapi.punt_socket_dump(type=pt_ex) self.assertEqual(len(punts), 3) self.logger.info(self.vapi.cli("sh punt sock reg exception")) # # deregister all punt socket # self.vapi.punt_socket_deregister(set_reason(punt_ex, 1)) self.vapi.punt_socket_deregister(set_reason(punt_ex, 2)) self.vapi.punt_socket_deregister(set_reason(punt_ex, 3)) punts = self.vapi.punt_socket_dump(type=pt_ex) self.assertEqual(len(punts), 0) def verify_esp_pkts(self, rxs, n_sent, spi, has_udp): self.assertEqual(len(rxs), n_sent) for rx in rxs: self.assertTrue(rx.haslayer(IP)) self.assertTrue(rx.haslayer(ESP)) self.assertEqual(rx[ESP].spi, spi) if has_udp: self.assertTrue(rx.haslayer(UDP)) def test_traffic(self): """ Punt socket traffic """ port = self.ports[0] pt_ex = VppEnum.vl_api_punt_type_t.PUNT_API_TYPE_EXCEPTION punt_ex = { 'type': pt_ex, 'punt': { 'exception': {} } } # # we need an IPSec tunnels for this to work otherwise ESP gets dropped # due to unknown IP proto # VppIpsecTunInterface(self, self.pg0, 1000, 1000, (VppEnum.vl_api_ipsec_crypto_alg_t. IPSEC_API_CRYPTO_ALG_AES_CBC_128), "0123456701234567", "0123456701234567", (VppEnum.vl_api_ipsec_integ_alg_t. IPSEC_API_INTEG_ALG_SHA1_96), "0123456701234567", "0123456701234567").add_vpp_config() VppIpsecTunInterface(self, self.pg0, 1001, 1001, (VppEnum.vl_api_ipsec_crypto_alg_t. IPSEC_API_CRYPTO_ALG_AES_CBC_128), "0123456701234567", "0123456701234567", (VppEnum.vl_api_ipsec_integ_alg_t. IPSEC_API_INTEG_ALG_SHA1_96), "0123456701234567", "0123456701234567", udp_encap=True).add_vpp_config() # # we're dealing with IPSec tunnels punting for no-such-tunnel # adn SPI=0 # cfgs = dict() cfgs['ipsec4-no-such-tunnel'] = {'spi': 99, 'udp': False} cfgs['ipsec4-spi-o-udp-0'] = {'spi': 0, 'udp': True} # # find the VPP ID for these punt exception reasin # rs = self.vapi.punt_reason_dump() for key in cfgs: for r in rs: if r.reason.name == key: cfgs[key]['id'] = r.reason.id cfgs[key]['vpp'] = copy.deepcopy( set_reason(punt_ex, cfgs[key]['id'])) break # # configure punt sockets # for cfg in cfgs.values(): cfg['sock'] = self.socket_client_create(b"%s/socket_%d" % ( six.ensure_binary(self.tempdir), cfg['id'])) self.vapi.punt_socket_register( cfg['vpp'], b"%s/socket_%d" % (six.ensure_binary(self.tempdir), cfg['id'])) # # create packet streams for 'no-such-tunnel' exception # for cfg in cfgs.values(): pkt = (Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac) / IP(src=self.pg0.remote_ip4, dst=self.pg0.local_ip4)) if (cfg['udp']): pkt = pkt / UDP(sport=666, dport=4500) pkt = (pkt / ESP(spi=cfg['spi'], seq=3) / Raw('\xa5' * 100)) cfg['pkts'] = [pkt] # # send packets for each SPI we expect to be punted # for cfg in cfgs.values(): self.send_and_assert_no_replies(self.pg0, cfg['pkts']) # # verify the punted packets arrived on the associated socket # for cfg in cfgs.values(): rx = cfg['sock'].close() self.verify_esp_pkts(rx, len(cfg['pkts']), cfg['spi'], cfg['udp']) # # socket deregister # for cfg in cfgs.values(): self.vapi.punt_socket_deregister(cfg['vpp']) class TestIpProtoPuntSocket(TestPuntSocket): """ Punt Socket for IP packets """ @classmethod def setUpClass(cls): super(TestIpProtoPuntSocket, cls).setUpClass() @classmethod def tearDownClass(cls): super(TestIpProtoPuntSocket, cls).tearDownClass() def setUp(self): super(TestIpProtoPuntSocket, self).setUp() for i in self.pg_interfaces: i.config_ip4() i.resolve_arp() def tearDown(self): super(TestIpProtoPuntSocket, self).tearDown() for i in self.pg_interfaces: i.unconfig_ip4() i.admin_down() def test_registration(self): """ Punt socket registration/deregistration""" af_ip4 = VppEnum.vl_api_address_family_t.ADDRESS_IP4 pt_ip = VppEnum.vl_api_punt_type_t.PUNT_API_TYPE_IP_PROTO proto_ospf = VppEnum.vl_api_ip_proto_t.IP_API_PROTO_OSPF proto_eigrp = VppEnum.vl_api_ip_proto_t.IP_API_PROTO_EIGRP punts = self.vapi.punt_socket_dump(type=pt_ip) self.assertEqual(len(punts), 0) # # configure a punt socket # punt_ospf = { 'type': pt_ip, 'punt': { 'ip_proto': { 'af': af_ip4, 'protocol': proto_ospf } } } punt_eigrp = { 'type': pt_ip, 'punt': { 'ip_proto': { 'af': af_ip4, 'protocol': proto_eigrp } } } self.vapi.punt_socket_register(punt_ospf, b"%s/socket_punt_1" % six.ensure_binary(self.tempdir)) self.vapi.punt_socket_register(punt_eigrp, b"%s/socket_punt_2" % six.ensure_binary(self.tempdir)) self.logger.info(self.vapi.cli("sh punt sock reg ip")) punts = self.vapi.punt_socket_dump(type=pt_ip) self.assertEqual(len(punts), 2) self.verify_ip_proto(punt_ospf, punts[0]) self.verify_ip_proto(punt_eigrp, punts[1]) # # deregister a punt socket # self.vapi.punt_socket_deregister(punt_ospf) punts = self.vapi.punt_socket_dump(type=pt_ip) self.assertEqual(len(punts), 1) # # configure a punt socket again # self.vapi.punt_socket_register(punt_ospf, b"%s/socket_punt_3" % six.ensure_binary(self.tempdir)) punts = self.vapi.punt_socket_dump(type=pt_ip) self.assertEqual(len(punts), 2) self.logger.info(self.vapi.cli("sh punt sock reg exception")) # # deregister all punt socket # self.vapi.punt_socket_deregister(punt_eigrp) self.vapi.punt_socket_deregister(punt_ospf) punts = self.vapi.punt_socket_dump(type=pt_ip) self.assertEqual(len(punts), 0) def verify_ospf_pkts(self, rxs, n_sent): self.assertEqual(len(rxs), n_sent) for rx in rxs: self.assertTrue(rx.haslayer(OSPF_Hdr)) def test_traffic(self): """ Punt socket traffic """ af_ip4 = VppEnum.vl_api_address_family_t.ADDRESS_IP4 pt_ip = VppEnum.vl_api_punt_type_t.PUNT_API_TYPE_IP_PROTO proto_ospf = VppEnum.vl_api_ip_proto_t.IP_API_PROTO_OSPF # # configure a punt socket to capture OSPF packets # punt_ospf = { 'type': pt_ip, 'punt': { 'ip_proto': { 'af': af_ip4, 'protocol': proto_ospf } } } # # create packet streams and configure a punt sockets # pkt = (Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac) / IP(src=self.pg0.remote_ip4, dst=self.pg0.local_ip4) / OSPF_Hdr() / OSPFv3_Hello()) pkts = pkt * 7 sock = self.socket_client_create(b"%s/socket_1" % ( six.ensure_binary(self.tempdir))) self.vapi.punt_socket_register( punt_ospf, b"%s/socket_1" % (six.ensure_binary(self.tempdir))) # # send packets for each SPI we expect to be punted # self.send_and_assert_no_replies(self.pg0, pkts) # # verify the punted packets arrived on the associated socket # rx = sock.close() self.verify_ospf_pkts(rx, len(pkts)) self.vapi.punt_socket_deregister(punt_ospf) class TestPunt(VppTestCase): """ Exception Punt Test Case """ @classmethod def setUpClass(cls): super(TestPunt, cls).setUpClass() @classmethod def tearDownClass(cls): super(TestPunt, cls).tearDownClass() def setUp(self): super(TestPunt, self).setUp() self.create_pg_interfaces(range(4)) for i in self.pg_interfaces: i.admin_up() i.config_ip4() i.resolve_arp() i.config_ip6() i.resolve_ndp() def tearDown(self): for i in self.pg_interfaces: i.unconfig_ip4() i.unconfig_ip6() i.ip6_disable() i.admin_down() super(TestPunt, self).tearDown() def test_punt(self): """ Exception Path testing """ # # dump the punt registered reasons # search for a few we know should be there # rs = self.vapi.punt_reason_dump() reasons = ["ipsec6-no-such-tunnel", "ipsec4-no-such-tunnel", "ipsec4-spi-o-udp-0"] for reason in reasons: found = False for r in rs: if r.reason.name == reason: found = True break self.assertTrue(found) # # Using the test CLI we will hook in a exception path to # send ACL deny packets out of pg0 and pg1. # the ACL is src,dst = 1.1.1.1,1.1.1.2 # ip_1_1_1_2 = VppIpRoute(self, "1.1.1.2", 32, [VppRoutePath(self.pg3.remote_ip4, self.pg3.sw_if_index)]) ip_1_1_1_2.add_vpp_config() ip_1_2 = VppIpRoute(self, "1::2", 128, [VppRoutePath(self.pg3.remote_ip6, self.pg3.sw_if_index, proto=DpoProto.DPO_PROTO_IP6)]) ip_1_2.add_vpp_config() p4 = (Ether(src=self.pg2.remote_mac, dst=self.pg2.local_mac) / IP(src="1.1.1.1", dst="1.1.1.2") / UDP(sport=1234, dport=1234) / Raw('\xa5' * 100)) p6 = (Ether(src=self.pg2.remote_mac, dst=self.pg2.local_mac) / IPv6(src="1::1", dst="1::2") / UDP(sport=1234, dport=1234) / Raw('\xa5' * 100)) self.send_and_expect(self.pg2, p4*1, self.pg3) self.send_and_expect(self.pg2, p6*1, self.pg3) # # apply the punting features # self.vapi.cli("test punt pg2") # # dump the punt reasons to learn the IDs assigned # rs = self.vapi.punt_reason_dump(reason={'name': "reason-v4"}) r4 = rs[0].reason.id rs = self.vapi.punt_reason_dump(reason={'name': "reason-v6"}) r6 = rs[0].reason.id # # pkts now dropped # self.send_and_assert_no_replies(self.pg2, p4*NUM_PKTS) self.send_and_assert_no_replies(self.pg2, p6*NUM_PKTS) # # Check state: # 1 - node error counters # 2 - per-reason counters # 2, 3 are the index of the assigned punt reason # stats = self.statistics.get_err_counter( "/err/punt-dispatch/No registrations") self.assertEqual(stats, 2*NUM_PKTS) stats = self.statistics.get_counter("/net/punt") self.assertEqual(stats[0][r4]['packets'], NUM_PKTS) self.assertEqual(stats[0][r6]['packets'], NUM_PKTS) # # use the test CLI to test a client that punts exception # packets out of pg0 # self.vapi.cli("test punt pg0 %s" % self.pg0.remote_ip4) self.vapi.cli("test punt pg0 %s" % self.pg0.remote_ip6) rx4s = self.send_and_expect(self.pg2, p4*NUM_PKTS, self.pg0) rx6s = self.send_and_expect(self.pg2, p6*NUM_PKTS, self.pg0) # # check the packets come out IP unmodified but destined to pg0 host # for rx in rx4s: self.assertEqual(rx[Ether].dst, self.pg0.remote_mac) self.assertEqual(rx[Ether].src, self.pg0.local_mac) self.assertEqual(p4[IP].dst, rx[IP].dst) self.assertEqual(p4[IP].ttl, rx[IP].ttl) for rx in rx6s: self.assertEqual(rx[Ether].dst, self.pg0.remote_mac) self.assertEqual(rx[Ether].src, self.pg0.local_mac) self.assertEqual(p6[IPv6].dst, rx[IPv6].dst) self.assertEqual(p6[IPv6].hlim, rx[IPv6].hlim) stats = self.statistics.get_counter("/net/punt") self.assertEqual(stats[0][r4]['packets'], 2*NUM_PKTS) self.assertEqual(stats[0][r6]['packets'], 2*NUM_PKTS) # # add another registration for the same reason to send packets # out of pg1 # self.vapi.cli("test punt pg1 %s" % self.pg1.remote_ip4) self.vapi.cli("test punt pg1 %s" % self.pg1.remote_ip6) self.vapi.cli("clear trace") self.pg2.add_stream(p4 * NUM_PKTS) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rxd = self.pg0.get_capture(NUM_PKTS) for rx in rxd: self.assertEqual(rx[Ether].dst, self.pg0.remote_mac) self.assertEqual(rx[Ether].src, self.pg0.local_mac) self.assertEqual(p4[IP].dst, rx[IP].dst) self.assertEqual(p4[IP].ttl, rx[IP].ttl) rxd = self.pg1.get_capture(NUM_PKTS) for rx in rxd: self.assertEqual(rx[Ether].dst, self.pg1.remote_mac) self.assertEqual(rx[Ether].src, self.pg1.local_mac) self.assertEqual(p4[IP].dst, rx[IP].dst) self.assertEqual(p4[IP].ttl, rx[IP].ttl) self.vapi.cli("clear trace") self.pg2.add_stream(p6 * NUM_PKTS) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rxd = self.pg0.get_capture(NUM_PKTS) for rx in rxd: self.assertEqual(rx[Ether].dst, self.pg0.remote_mac) self.assertEqual(rx[Ether].src, self.pg0.local_mac) self.assertEqual(p6[IPv6].dst, rx[IPv6].dst) self.assertEqual(p6[IPv6].hlim, rx[IPv6].hlim) rxd = self.pg1.get_capture(NUM_PKTS) for rx in rxd: self.assertEqual(rx[Ether].dst, self.pg1.remote_mac) self.assertEqual(rx[Ether].src, self.pg1.local_mac) self.assertEqual(p6[IPv6].dst, rx[IPv6].dst) self.assertEqual(p6[IPv6].hlim, rx[IPv6].hlim) stats = self.statistics.get_counter("/net/punt") self.assertEqual(stats[0][r4]['packets'], 3*NUM_PKTS) self.assertEqual(stats[0][r6]['packets'], 3*NUM_PKTS) self.logger.info(self.vapi.cli("show vlib graph punt-dispatch")) self.logger.info(self.vapi.cli("show punt client")) self.logger.info(self.vapi.cli("show punt reason")) self.logger.info(self.vapi.cli("show punt stats")) self.logger.info(self.vapi.cli("show punt db")) if __name__ == '__main__': unittest.main(testRunner=VppTestRunner)