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Mac/FreeBSD Network Facts implementation
Uses a generic BSD Network class, which uses ifconfig and parses crap out of it. Modifies the Network __new__ implementation to search further down the subclass tree
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parent
81d426de2a
commit
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1 changed files with 198 additions and 1 deletions
199
library/setup
199
library/setup
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@ -602,6 +602,46 @@ class FreeBSDHardware(Hardware):
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if s:
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self.facts['devices'][d.group(1)].append(s.group(1))
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def itersubclasses(cls, _seen=None):
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"""
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itersubclasses(cls)
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Generator over all subclasses of a given class, in depth first order.
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>>> list(itersubclasses(int)) == [bool]
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True
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>>> class A(object): pass
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>>> class B(A): pass
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>>> class C(A): pass
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>>> class D(B,C): pass
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>>> class E(D): pass
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>>>
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>>> for cls in itersubclasses(A):
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... print(cls.__name__)
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B
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D
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E
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C
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>>> # get ALL (new-style) classes currently defined
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>>> [cls.__name__ for cls in itersubclasses(object)] #doctest: +ELLIPSIS
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['type', ...'tuple', ...]
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"""
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if not isinstance(cls, type):
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raise TypeError('itersubclasses must be called with '
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'new-style classes, not %.100r' % cls)
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if _seen is None: _seen = set()
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try:
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subs = cls.__subclasses__()
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except TypeError: # fails only when cls is type
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subs = cls.__subclasses__(cls)
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for sub in subs:
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if sub not in _seen:
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_seen.add(sub)
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yield sub
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for sub in itersubclasses(sub, _seen):
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yield sub
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class Network(Facts):
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"""
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This is a generic Network subclass of Facts. This should be further
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@ -623,7 +663,7 @@ class Network(Facts):
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def __new__(cls, *arguments, **keyword):
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subclass = cls
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for sc in Network.__subclasses__():
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for sc in itersubclasses(Network):
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if sc.platform == platform.system():
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subclass = sc
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return super(cls, subclass).__new__(subclass, *arguments, **keyword)
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@ -786,6 +826,163 @@ class LinuxNetwork(Network):
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return interfaces, ips
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class GenericBsdIfconfigNetwork(Network):
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"""
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This is a generic BSD subclass of Network using the ifconfig command.
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It defines
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- interfaces (a list of interface names)
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- interface_<name> dictionary of ipv4, ipv6, and mac address information.
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- all_ipv4_addresses and all_ipv6_addresses: lists of all configured addresses.
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It currently does not define
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- default_ipv4 and default_ipv6
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- type, mtu and network on interfaces
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"""
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platform = 'Generic_BSD_Ifconfig'
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def __init__(self):
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Network.__init__(self)
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def populate(self):
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ifconfig_path = module.get_bin_path('ifconfig')
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if ifconfig_path is None:
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return self.facts
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route_path = module.get_bin_path('route')
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if route_path is None:
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return self.facts
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default_ipv4, default_ipv6 = self.get_default_interfaces(route_path)
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interfaces, ips = self.get_interfaces_info(ifconfig_path)
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self.merge_default_interface(default_ipv4, interfaces, 'ipv4')
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self.merge_default_interface(default_ipv6, interfaces, 'ipv6')
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self.facts['interfaces'] = interfaces.keys()
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for iface in interfaces:
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self.facts[iface] = interfaces[iface]
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self.facts['default_ipv4'] = default_ipv4
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self.facts['default_ipv6'] = default_ipv6
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self.facts['all_ipv4_addresses'] = ips['all_ipv4_addresses']
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self.facts['all_ipv6_addresses'] = ips['all_ipv6_addresses']
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return self.facts
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def get_default_interfaces(self, route_path):
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# Use the commands:
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# route -n get 8.8.8.8 -> Google public DNS
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# route -n get 2404:6800:400a:800::1012 -> ipv6.google.com
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# to find out the default outgoing interface, address, and gateway
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command = dict(
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v4 = [route_path, '-n', 'get', '8.8.8.8'],
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v6 = [route_path, '-n', 'get', '2404:6800:400a:800::1012']
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)
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interface = dict(v4 = {}, v6 = {})
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for v in 'v4', 'v6':
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if v == 'v6' and not socket.has_ipv6:
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continue
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rc, out, err = module.run_command(command[v])
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if not out:
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# v6 routing may result in
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# RTNETLINK answers: Invalid argument
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continue
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lines = out.split('\n')
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for line in lines:
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words = line.split()
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# look for first word starting interface
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if len(words) > 0 and words[0] == 'interface:':
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interface[v]['interface'] = words[1]
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return interface['v4'], interface['v6']
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def get_interfaces_info(self, ifconfig_path):
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interfaces = {}
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current_if = {}
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ips = dict(
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all_ipv4_addresses = [],
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all_ipv6_addresses = [],
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)
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rc, out, err = module.run_command([ifconfig_path])
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for line in out.split('\n'):
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if line:
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words = line.split()
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if re.match('^\S', line) and len(words) > 3:
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device = words[0][0:-1]
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current_if = {'device': device, 'ipv4': [], 'ipv6': [], 'type': 'unknown'}
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interfaces[device] = current_if
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current_if['flags'] = self.get_options(words[1])
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current_if['mtu'] = words[3]
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current_if['macaddress'] = 'unknown' # will be overwritten later
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elif words[0].startswith('options='):
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# Mac has options like this...
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current_if['options'] = self.get_options(words[0])
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elif words[0] == 'nd6':
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# FreBSD has options like this...
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current_if['options'] = self.get_options(words[1])
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elif words[0] == 'ether':
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current_if['macaddress'] = words[1]
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elif words[0] == 'media:':
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# not sure if this is useful - we also drop information
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current_if['media'] = words[1]
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elif words[0] == 'status:':
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current_if['status'] = words[1]
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elif words[0] == 'lladdr':
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current_if['lladdr'] = words[1]
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elif words[0] == 'inet':
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address = {'address': words[1]}
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if words[3].startswith('0x'):
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address['netmask'] = socket.inet_ntoa(struct.pack('!L', int(words[3], base=16)))
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else:
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address['netmask'] = words[3]
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if len(words) > 5:
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address['broadcast'] = words[5]
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# calculate the network
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address_bin = struct.unpack('!L', socket.inet_aton(address['address']))[0]
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netmask_bin = struct.unpack('!L', socket.inet_aton(address['netmask']))[0]
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address['network'] = socket.inet_ntoa(struct.pack('!L', address_bin & netmask_bin))
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# add to our list of addresses
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if not words[1].startswith('127.'):
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ips['all_ipv4_addresses'].append(address['address'])
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current_if['ipv4'].append(address)
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elif words[0] == 'inet6':
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address = {'address': words[1]}
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if (len(words) >= 4) and (words[2] == 'prefixlen'):
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address['prefix'] = words[3]
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if (len(words) >= 6) and (words[4] == 'scopeid'):
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address['scope'] = words[5]
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if not address['address'] == '::1' and not address['address'] == 'fe80::1%lo0':
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ips['all_ipv6_addresses'].append(address['address'])
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current_if['ipv6'].append(address)
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return interfaces, ips
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def get_options(self, option_string):
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start = option_string.find('<') + 1
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end = option_string.rfind('>') - 1
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if (start > 0) and (end > 0) and (end > start + 1):
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option_csv = option_string[start:end]
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return option_csv.split(',')
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else:
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return []
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def merge_default_interface(self, defaults, interfaces, ip_type):
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if not 'interface' in defaults.keys():
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return
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ifinfo = interfaces[defaults['interface']]
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# copy all the interface values across except addresses
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for item in ifinfo.keys():
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if item != 'ipv4' and item != 'ipv6':
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defaults[item] = ifinfo[item]
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if len(ifinfo[ip_type]) > 0:
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for item in ifinfo[ip_type][0].keys():
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defaults[item] = ifinfo[ip_type][0][item]
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class DarwinNetwork(GenericBsdIfconfigNetwork):
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"""
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This is the Mac OS X/Darwin Network Class.
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It uses the GenericBsdIfconfigNetwork unchanged
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"""
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platform = 'Darwin'
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class FreeBSDNetwork(GenericBsdIfconfigNetwork):
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"""
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This is the FreeBSD Network Class.
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It uses the GenericBsdIfconfigNetwork unchanged
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"""
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platform = 'FreeBSD'
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class Virtual(Facts):
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"""
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This is a generic Virtual subclass of Facts. This should be further
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