
It seems a useful abstraction for the purposes of writing fine-grained tests, to be able to create a "connection" object which would be bound to two VPP interfaces, and hold some information about the state, allowing to send the packets back and forth with minimal amount of arguments. Change-Id: Idb83b6b82b38bded5b7e1756a41bb2df4cd58e3a Signed-off-by: Andrew Yourtchenko <ayourtch@gmail.com>
232 lines
6.4 KiB
Python
232 lines
6.4 KiB
Python
""" test framework utilities """
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import socket
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import sys
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from abc import abstractmethod, ABCMeta
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from cStringIO import StringIO
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from scapy.layers.inet6 import in6_mactoifaceid
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from scapy.layers.l2 import Ether
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from scapy.packet import Raw
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from scapy.layers.inet import IP, UDP, TCP
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from scapy.layers.inet6 import IPv6, ICMPv6Unknown, ICMPv6EchoRequest
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from scapy.packet import Packet
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from socket import inet_pton, AF_INET, AF_INET6
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def ppp(headline, packet):
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""" Return string containing the output of scapy packet.show() call. """
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o = StringIO()
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old_stdout = sys.stdout
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sys.stdout = o
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print(headline)
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packet.show()
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sys.stdout = old_stdout
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return o.getvalue()
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def ppc(headline, capture, limit=10):
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""" Return string containing ppp() printout for a capture.
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:param headline: printed as first line of output
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:param capture: packets to print
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:param limit: limit the print to # of packets
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"""
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if not capture:
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return headline
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tail = ""
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if limit < len(capture):
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tail = "\nPrint limit reached, %s out of %s packets printed" % (
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len(capture), limit)
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limit = len(capture)
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body = "".join([ppp("Packet #%s:" % count, p)
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for count, p in zip(range(0, limit), capture)])
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return "%s\n%s%s" % (headline, body, tail)
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def ip4_range(ip4, s, e):
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tmp = ip4.rsplit('.', 1)[0]
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return ("%s.%d" % (tmp, i) for i in range(s, e))
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def ip4n_range(ip4n, s, e):
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ip4 = socket.inet_ntop(socket.AF_INET, ip4n)
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return (socket.inet_pton(socket.AF_INET, ip)
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for ip in ip4_range(ip4, s, e))
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def mactobinary(mac):
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""" Convert the : separated format into binary packet data for the API """
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return mac.replace(':', '').decode('hex')
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def mk_ll_addr(mac):
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euid = in6_mactoifaceid(mac)
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addr = "fe80::" + euid
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return addr
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class NumericConstant(object):
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__metaclass__ = ABCMeta
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desc_dict = {}
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@abstractmethod
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def __init__(self, value):
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self._value = value
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def __int__(self):
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return self._value
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def __long__(self):
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return self._value
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def __str__(self):
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if self._value in self.desc_dict:
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return self.desc_dict[self._value]
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return ""
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class Host(object):
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""" Generic test host "connected" to VPPs interface. """
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@property
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def mac(self):
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""" MAC address """
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return self._mac
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@property
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def bin_mac(self):
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""" MAC address """
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return mactobinary(self._mac)
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@property
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def ip4(self):
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""" IPv4 address - string """
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return self._ip4
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@property
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def ip4n(self):
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""" IPv4 address of remote host - raw, suitable as API parameter."""
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return socket.inet_pton(socket.AF_INET, self._ip4)
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@property
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def ip6(self):
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""" IPv6 address - string """
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return self._ip6
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@property
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def ip6n(self):
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""" IPv6 address of remote host - raw, suitable as API parameter."""
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return socket.inet_pton(socket.AF_INET6, self._ip6)
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@property
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def ip6_ll(self):
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""" IPv6 link-local address - string """
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return self._ip6_ll
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@property
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def ip6n_ll(self):
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""" IPv6 link-local address of remote host -
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raw, suitable as API parameter."""
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return socket.inet_pton(socket.AF_INET6, self._ip6_ll)
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def __eq__(self, other):
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if isinstance(other, Host):
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return (self.mac == other.mac and
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self.ip4 == other.ip4 and
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self.ip6 == other.ip6 and
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self.ip6_ll == other.ip6_ll)
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else:
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return False
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def __ne__(self, other):
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return not self.__eq__(other)
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def __repr__(self):
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return "Host { mac:%s ip4:%s ip6:%s ip6_ll:%s }" % (self.mac,
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self.ip4,
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self.ip6,
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self.ip6_ll)
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def __hash__(self):
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return hash(self.__repr__())
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def __init__(self, mac=None, ip4=None, ip6=None, ip6_ll=None):
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self._mac = mac
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self._ip4 = ip4
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self._ip6 = ip6
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self._ip6_ll = ip6_ll
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class ForeignAddressFactory(object):
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count = 0
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prefix_len = 24
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net_template = '10.10.10.{}'
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net = net_template.format(0) + '/' + str(prefix_len)
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def get_ip4(self):
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if self.count > 255:
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raise Exception("Network host address exhaustion")
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self.count += 1
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return self.net_template.format(self.count)
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class L4_Conn():
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""" L4 'connection' tied to two VPP interfaces """
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def __init__(self, testcase, if1, if2, af, l4proto, port1, port2):
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self.testcase = testcase
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self.ifs = [None, None]
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self.ifs[0] = if1
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self.ifs[1] = if2
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self.address_family = af
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self.l4proto = l4proto
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self.ports = [None, None]
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self.ports[0] = port1
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self.ports[1] = port2
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self
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def pkt(self, side, l4args={}, payload="x"):
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is_ip6 = 1 if self.address_family == AF_INET6 else 0
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s0 = side
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s1 = 1-side
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src_if = self.ifs[s0]
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dst_if = self.ifs[s1]
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layer_3 = [IP(src=src_if.remote_ip4, dst=dst_if.remote_ip4),
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IPv6(src=src_if.remote_ip6, dst=dst_if.remote_ip6)]
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merged_l4args = {'sport': self.ports[s0], 'dport': self.ports[s1]}
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merged_l4args.update(l4args)
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p = (Ether(dst=src_if.local_mac, src=src_if.remote_mac) /
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layer_3[is_ip6] /
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self.l4proto(**merged_l4args) /
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Raw(payload))
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return p
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def send(self, side, flags=None, payload=""):
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l4args = {}
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if flags is not None:
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l4args['flags'] = flags
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self.ifs[side].add_stream(self.pkt(side,
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l4args=l4args, payload=payload))
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self.ifs[1-side].enable_capture()
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self.testcase.pg_start()
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def recv(self, side):
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p = self.ifs[side].wait_for_packet(1)
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return p
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def send_through(self, side, flags=None, payload=""):
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self.send(side, flags, payload)
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p = self.recv(1-side)
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return p
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def send_pingpong(self, side, flags1=None, flags2=None):
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p1 = self.send_through(side, flags1)
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p2 = self.send_through(1-side, flags2)
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return [p1, p2]
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class L4_CONN_SIDE:
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L4_CONN_SIDE_ZERO = 0
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L4_CONN_SIDE_ONE = 1
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