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path: root/src/vpp-api/python/vpp_papi/vpp_format.py
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#
# Copyright (c) 2018 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.
#
import datetime
from socket import inet_pton, AF_INET6, AF_INET
import socket
import ipaddress
from . import macaddress

try:
    text_type = unicode
except NameError:
    text_type = str

# Copies from vl_api_address_t definition
ADDRESS_IP4 = 0
ADDRESS_IP6 = 1

#
# Type conversion for input arguments and return values
#


def format_vl_api_address_t(args):
    try:
        return {'un': {'ip6': inet_pton(AF_INET6, args)},
                'af': ADDRESS_IP6}
    # PY2: raises socket.error
    # PY3: raises OSError
    except (socket.error, OSError):
        return {'un': {'ip4': inet_pton(AF_INET, args)},
                'af': ADDRESS_IP4}


def format_vl_api_prefix_t(args):
    if isinstance(args, (ipaddress.IPv4Network, ipaddress.IPv6Network)):
        return {'address': format_vl_api_address_t(
            text_type(args.network_address)),
                'len': int(args.prefixlen)}
    p, length = args.split('/')
    return {'address': format_vl_api_address_t(p),
            'len': int(length)}


def format_vl_api_ip6_prefix_t(args):
    if isinstance(args, ipaddress.IPv6Network):
        return {'address': args.network_address.packed,
                'len': int(args.prefixlen)}
    p, length = args.split('/')
    return {'address': inet_pton(AF_INET6, p),
            'len': int(length)}


def format_vl_api_ip4_prefix_t(args):
    if isinstance(args, ipaddress.IPv4Network):
        return {'address': args.network_address.packed,
                'len': int(args.prefixlen)}
    p, length = args.split('/')
    return {'address': inet_pton(AF_INET, p),
            'len': int(length)}


conversion_table = {
    'vl_api_ip6_address_t':
    {
        'IPv6Address': lambda o: o.packed,
        'str': lambda s: inet_pton(AF_INET6, s)
    },
    'vl_api_ip4_address_t':
    {
        'IPv4Address': lambda o: o.packed,
        'str': lambda s: inet_pton(AF_INET, s)
    },
    'vl_api_ip6_prefix_t':
    {
        'IPv6Network': lambda o: {'address': o.network_address.packed,
                                  'len': o.prefixlen},
        'str': lambda s: format_vl_api_ip6_prefix_t(s)
    },
    'vl_api_ip4_prefix_t':
    {
        'IPv4Network': lambda o: {'address': o.network_address.packed,
                                  'len': o.prefixlen},
        'str': lambda s: format_vl_api_ip4_prefix_t(s)
    },
    'vl_api_address_t':
    {
        'IPv4Address': lambda o: {'af': ADDRESS_IP4, 'un': {'ip4': o.packed}},
        'IPv6Address': lambda o: {'af': ADDRESS_IP6, 'un': {'ip6': o.packed}},
        'str': lambda s: format_vl_api_address_t(s)
    },
    'vl_api_prefix_t':
    {
        'IPv4Network': lambda o: {'address':
                                  {'af': ADDRESS_IP4, 'un':
                                   {'ip4': o.network_address.packed}},
                                  'len': o.prefixlen},
        'IPv6Network': lambda o: {'address':
                                  {'af': ADDRESS_IP6, 'un':
                                   {'ip6': o.network_address.packed}},
                                  'len': o.prefixlen},
        'str': lambda s: format_vl_api_prefix_t(s)
    },
    'vl_api_mac_address_t':
    {
        'MACAddress': lambda o: o.packed,
        'str': lambda s: macaddress.mac_pton(s)
    },
    'vl_api_timestamp_t':
    {
        'datetime.datetime': lambda o:
        (o - datetime.datetime(1970, 1, 1)).total_seconds()
    }
}


def unformat_api_address_t(o):
    if o.af == 1:
        return ipaddress.IPv6Address(o.un.ip6)
    if o.af == 0:
        return ipaddress.IPv4Address(o.un.ip4)


def unformat_api_prefix_t(o):
    if isinstance(o.address, ipaddress.IPv4Address):
        return ipaddress.IPv4Network((o.address, o.len), False)
    if isinstance(o.address, ipaddress.IPv6Address):
        return ipaddress.IPv6Network((o.address, o.len), False)


conversion_unpacker_table = {
    'vl_api_ip6_address_t': lambda o: ipaddress.IPv6Address(o),
    'vl_api_ip6_prefix_t': lambda o: ipaddress.IPv6Network((o.address, o.len)),
    'vl_api_ip4_address_t': lambda o: ipaddress.IPv4Address(o),
    'vl_api_ip4_prefix_t': lambda o: ipaddress.IPv4Network((o.address, o.len)),
    'vl_api_address_t': lambda o: unformat_api_address_t(o),
    'vl_api_prefix_t': lambda o: unformat_api_prefix_t(o),
    'vl_api_mac_address_t': lambda o: macaddress.MACAddress(o),
    'vl_api_timestamp_t': lambda o: datetime.datetime.fromtimestamp(o),
    'vl_api_timedelta_t': lambda o: datetime.timedelta(seconds=o),
}
/span>, src_ip_if, capture): last_info = dict() for i in self.interfaces: last_info[i.sw_if_index] = None dst_ip_sw_if_index = dst_ip_if.sw_if_index for packet in capture: ip = packet[IP] udp = packet[IP][UDP] payload_info = self.payload_to_info(packet[IP][UDP][Raw]) self.assertEqual(payload_info.dst, dst_ip_sw_if_index) next_info = self.get_next_packet_info_for_interface2( payload_info.src, dst_ip_sw_if_index, last_info[payload_info.src] ) last_info[payload_info.src] = next_info self.assertTrue(next_info is not None) saved_packet = next_info.data self.assertTrue(next_info is not None) # MAC: src, dst self.assertEqual(packet.src, dst_ip_if.local_mac) self.assertEqual(packet.dst, dst_ip_if.remote_mac) # IP: src, dst host = src_ip_if.host_by_ip4(ip.src) self.assertIsNotNone(host) self.assertEqual(ip.dst, saved_packet[IP].dst) self.assertEqual(ip.dst, dst_ip_if.remote_ip4) # UDP: self.assertEqual(udp.sport, saved_packet[UDP].sport) self.assertEqual(udp.dport, saved_packet[UDP].dport) def verify_capture(self, dst_ip_if, src_ip_if, capture): last_info = dict() for i in self.interfaces: last_info[i.sw_if_index] = None dst_ip_sw_if_index = dst_ip_if.sw_if_index for packet in capture: ip = packet[IP] udp = packet[IP][UDP] payload_info = self.payload_to_info(packet[IP][UDP][Raw]) packet_index = payload_info.index self.assertEqual(payload_info.dst, dst_ip_sw_if_index) next_info = self.get_next_packet_info_for_interface2( payload_info.src, dst_ip_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 self.assertTrue(next_info is not None) # MAC: src, dst self.assertEqual(packet.src, dst_ip_if.local_mac) host = dst_ip_if.host_by_mac(packet.dst) # IP: src, dst self.assertEqual(ip.src, src_ip_if.remote_ip4) self.assertEqual(ip.dst, saved_packet[IP].dst) self.assertEqual(ip.dst, host.ip4) # UDP: self.assertEqual(udp.sport, saved_packet[UDP].sport) self.assertEqual(udp.dport, saved_packet[UDP].dport) def test_ip4_irb_1(self): """IPv4 IRB test 1 Test scenario: - ip traffic from pg2 interface must ends in both pg0 and pg1 - arp entry present in bvi0 interface for destination IP - no l2 entry configured, pg0 and pg1 are same """ stream = self.create_stream(self.pg2, self.bvi0, self.pg_if_packet_sizes) self.pg2.add_stream(stream) self.pg_enable_capture(self.pg_interfaces) self.pg_start() packet_count = self.get_packet_count_for_if_idx(self.bvi0.sw_if_index) rcvd1 = self.pg0.get_capture(packet_count) rcvd2 = self.pg1.get_capture(packet_count) self.verify_capture(self.bvi0, self.pg2, rcvd1) self.verify_capture(self.bvi0, self.pg2, rcvd2) self.assertListEqual(rcvd1.res, rcvd2.res) def send_and_verify_l2_to_ip(self): stream1 = self.create_stream_l2_to_ip( self.pg0, self.bvi0, self.pg2, self.pg_if_packet_sizes ) stream2 = self.create_stream_l2_to_ip( self.pg1, self.bvi0, self.pg2, self.pg_if_packet_sizes ) self.vapi.cli("clear trace") self.pg0.add_stream(stream1) self.pg1.add_stream(stream2) self.pg_enable_capture(self.pg_interfaces) self.pg_start() rcvd = self.pg2.get_capture(514) self.verify_capture_l2_to_ip(self.pg2, self.bvi0, rcvd) def test_ip4_irb_2(self): """IPv4 IRB test 2 Test scenario: - ip traffic from pg0 and pg1 ends on pg2 """ self.send_and_verify_l2_to_ip() # change the BVI's mac and resed traffic self.bvi0.set_mac(MACAddress("00:00:00:11:11:33")) self.send_and_verify_l2_to_ip() # check it wasn't flooded self.pg1.assert_nothing_captured(remark="UU Flood") if __name__ == "__main__": unittest.main(testRunner=VppTestRunner)