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			256 lines
		
	
	
		
			9.1 KiB
		
	
	
	
		
			Python
		
	
	
		
			Executable File
		
	
	
	
	
			
		
		
	
	
			256 lines
		
	
	
		
			9.1 KiB
		
	
	
	
		
			Python
		
	
	
		
			Executable File
		
	
	
	
	
| #!/usr/bin/env python
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| 
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| import json
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| 
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| from mininet.net import Mininet
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| from mininet.node import UserSwitch, DefaultController, RemoteController, Host
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| from mininet.topo import Topo
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| from mininet.log import  setLogLevel, info, error, warn
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| from mininet.cli import CLI
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| from mininet.link import OVSIntf
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| from mininet.util import quietRun
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| 
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| from opticalUtils import LINCSwitch, LINCLink
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| 
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| class Domain(object):
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|     """
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|     A container for switch, host, link, and controller information to be dumped
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|     into the Mininet mid-level API.
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|     """
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| 
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|     def __init__ (self, did=0):
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|         # each Domain has a numeric ID for sanity/convenience
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|         self.__dId = did
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| 
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|         # information about network elements - for calling the "mid-level" APIs
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|         self.__ctrls = {}
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|         self.__switches = {}
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|         self.__hosts = {}
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|         self.__links = {}
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|         # maps of devices, hosts, and controller names to actual objects
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|         self.__smap = {}
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|         self.__hmap = {}
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|         self.__cmap = {}
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| 
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|     def addController(self, name, **args):
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|         self.__ctrls[name] = args if args else {}
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|         return name
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| 
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|     # Note: This method will return the name of the swich, not the switch object
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|     def addSwitch(self, name, **args):
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|         self.__switches[name] = args if args else {}
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|         return name
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| 
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|     def addHost(self, name, **args):
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|         self.__hosts[name] = args if args else {}
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|         return name
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| 
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|     def addLink(self, src, dst, **args):
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|         self.__links[(src, dst)] = args if args else {}
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|         return (src, dst)
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| 
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|     def getId( self):
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|         return self.__dId
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| 
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|     def getControllers(self, name=None):
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|         return self.__cmap.values() if not name else self.__cmap.get(name)
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| 
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|     def getSwitches(self, name=None):
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|         return self.__smap.values() if not name else self.__smap.get(name)
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| 
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|     def getHosts(self, name=None):
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|         return self.__hmap.values() if not name else self.__hmap.get(name)
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| 
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|     def injectInto(self, net):
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|         """ Adds available topology info to a supplied Mininet object. """
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|         # add switches, hosts, then links to mininet object
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|         for sw, args in self.__switches.iteritems():
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|             self.__smap[sw] = net.addSwitch(sw, **args)
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|         for h, args in self.__hosts.iteritems():
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|             self.__hmap[h] = net.addHost(h, **args)
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|         for l, args in self.__links.iteritems():
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|             src = self.__smap.get(l[0])
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|             dst = self.__smap.get(l[1])
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|             net.addLink(src if src else self.__hmap.get(l[0]),
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|                          dst if dst else self.__hmap.get(l[1]), **args)
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|         # then controllers
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|         for c, args in self.__ctrls.iteritems():
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|             self.__cmap[c] = net.addController(c, **args)
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| 
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|     def start(self):
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|         """ starts the switches with the correct controller. """
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|         map(lambda c: c.start(), self.__cmap.values())
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|         map(lambda s: s.start(self.__cmap.values()), self.__smap.values())
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| 
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|     def build(self, *args):
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|         """ override for custom topology, similar to Topo """
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|         pass
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| 
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| 
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| class OpticalDomain(Domain):
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|     """ An emulated optical metro core. It is Domain 0. """
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|     def build(self):
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|         for i in range (1,4):
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|             oean = { "optical.regens": 0 }
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|             self.addSwitch('OE%s' % i, dpid='0000ffffffffff0%s' % i, annotations=oean, cls=LINCSwitch)
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| 
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|         # ROADM port number OE"1" -> OE'2' = "1"'2'00
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|         # leaving port number up to 100 open for use by Och port
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|         an = { "durable": "true" }
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|         self.addLink('OE1', 'OE2', port1=1200, port2=2100, annotations=an, cls=LINCLink)
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|         self.addLink('OE2', 'OE3', port1=2300, port2=3200, annotations=an, cls=LINCLink)
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|         self.addLink('OE3', 'OE1', port1=3100, port2=1300, annotations=an, cls=LINCLink)
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| 
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| class FabricDomain(Domain):
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|     """
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|     An emulated CO fabric, which is basically a K(n,m) bipartite graph.
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| 
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|     Each FabricDomain should be given a unique Domain ID (did) to ensure unique
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|     names and addressing.
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|     """
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|     def __init__(self, did):
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|         Domain.__init__(self, did)
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| 
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|     def build(self, n=2, m=3, f=2):
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|         # K(n,m) in bipartite graph
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|         l_nsw=[]
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|         l_msw=[]
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| 
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|         # create n spine switches
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|         for sw in range(n):
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|             l_nsw.append(self.addSwitch('swn%s%s' % (self.getId(), sw+1), cls=UserSwitch, dpopts='--no-local-port'))
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| 
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|         # create connection point to optical core (a leaf switch)
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|         tsw = self.addSwitch('swm%s01' % self.getId(), cls=UserSwitch, dpopts='--no-local-port')
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|         self.addTether(tsw, 'sw000%s' % self.getId(), '0000ffffffff000%s' % self.getId())
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|         l_msw.append(tsw)
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| 
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|         # attach f hosts to last m-1 leaves
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|         for sw in range(1, m):
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|             msw = self.addSwitch('swm%s0%s' % (self.getId(), sw+1), cls=UserSwitch, dpopts='--no-local-port')
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|             l_msw.append(msw)
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|             for h in range(f):
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|                 host = self.addHost('h%s%s' % (self.getId(), sw * f+h+1), cls=IpHost,
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|                                     ip='10.0.%s.%s/24' % ((self.getId()+sw+1), (f+1)),
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|                                     gateway='10.0.%s.254' % (self.getId()+sw+1))
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|                 self.addLink(host, msw)
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|         # link up spines and leaves
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|         for nsw in l_nsw:
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|             for msw in l_msw:
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|                 self.addLink(nsw, msw)
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| 
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|     def addTether(self, name, tname, tdpid):
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|         """
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|         add an OVS with name 'tname' and dpid 'tdpid' for connecting fabric
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|         domains to the core.  name: the UserSwitch to connect the OVS to.
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|         """
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|         self.__tether = self.addSwitch(tname, dpid=tdpid)
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|         # Note: OVS port number '1' reserved for port facing the fabric
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|         self.addLink(tname, name, port1=1)
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| 
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|     def getTether(self):
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|         """ get the switch name of this fabric facing the core """
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|         return self.__tether
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| 
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| 
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| class IpHost(Host):
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|     def __init__(self, name, gateway, *args, **kwargs):
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|         super(IpHost, self).__init__(name, *args, **kwargs)
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|         self.gateway = gateway
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| 
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|     def config(self, **kwargs):
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|         Host.config(self, **kwargs)
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|         mtu = "ifconfig "+self.name+"-eth0 mtu 1490"
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|         self.cmd(mtu)
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|         self.cmd('ip route add default via %s' % self.gateway)
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| 
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| def setup(argv):
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|     domains = []
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|     ctlsets = sys.argv[1:]
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| 
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|     # the controllers for the optical domain
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|     d0 = OpticalDomain()
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|     domains.append(d0)
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|     ctls = ctlsets[0].split(',')
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|     for i in range (len(ctls)):
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|         d0.addController('c0%s' % i, controller=RemoteController, ip=ctls[i])
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| 
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|     # the fabric domains - position 1 for domain 1, 2 for 2 ...
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|     for i in range (1,len(ctlsets)):
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|         f = FabricDomain(i)
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|         domains.append(f)
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|         ctls = ctlsets[i].split(',')
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|         for j in range (len(ctls)):
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|             f.addController('c%s%s' % (i,j), controller=RemoteController, ip=ctls[j])
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| 
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|     # netcfg for each domains
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|     # Note: Separate netcfg for domain0 is created in opticalUtils
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|     domainCfgs = []
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|     for i in range (0,len(ctlsets)):
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|         cfg = {}
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|         cfg['devices'] = {}
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|         cfg['ports'] = {}
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|         cfg['links'] = {}
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|         domainCfgs.append(cfg)
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| 
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|     # make/setup Mininet object
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|     net = Mininet()
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|     for d in domains:
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|         d.build()
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|         d.injectInto(net)
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| 
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|     # connect COs to core - sort of hard-wired at this moment
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|     # adding cross-connect links
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|     for i in range(1,len(domains)):
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|         # add 10 cross-connect links between domains
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|         xcPortNo=2
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|         ochPortNo=10
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|         for j in range(0, 10):
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|             an = { "bandwidth": 10, "durable": "true" }
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|             net.addLink(domains[i].getTether(), d0.getSwitches('OE%s' % i),
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|                         port1=xcPortNo+j, port2=ochPortNo+j, speed=10000, annotations=an, cls=LINCLink)
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| 
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|             xcId = 'of:' + domains[i].getSwitches(name=domains[i].getTether()).dpid + '/' + str(xcPortNo+j)
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|             ochId = 'of:' + d0.getSwitches('OE%s' % i).dpid + '/' + str(ochPortNo+j)
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|             domainCfgs[i]['ports'][xcId] = {'cross-connect': {'remote': ochId}}
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| 
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|     # fire everything up
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|     net.build()
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|     map(lambda x: x.start(), domains)
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| 
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|     # create a minimal copy of the network for configuring LINC.
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|     cfgnet = Mininet()
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|     cfgnet.switches = net.switches
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|     cfgnet.links = net.links
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|     cfgnet.controllers = d0.getControllers()
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|     LINCSwitch.bootOE(cfgnet, d0.getSwitches())
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| 
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|     # send netcfg json to each CO-ONOS
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|     for i in range(1,len(domains)):
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|         info('*** Pushing Topology.json to CO-ONOS %d\n' % i)
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|         filename = 'Topology%d.json' % i
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|         with open(filename, 'w') as outfile:
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|             json.dump(domainCfgs[i], outfile, indent=4, separators=(',', ': '))
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| 
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|         output = quietRun('%s/tools/test/bin/onos-netcfg %s %s &'\
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|                            % (LINCSwitch.onosDir,
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|                               domains[i].getControllers()[0].ip,
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|                               filename), shell=True)
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|         # successful output contains the two characters '{}'
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|         # if there is more output than this, there is an issue
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|         if output.strip('{}'):
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|             warn('***WARNING: Could not push topology file to ONOS: %s\n' % output)
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| 
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|     CLI(net)
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|     net.stop()
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|     LINCSwitch.shutdownOE()
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| 
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| if __name__ == '__main__':
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|     setLogLevel('info')
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|     import sys
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|     if len(sys.argv) < 5:
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|         print ("Usage: sudo -E ./metro.py ctl-set1 ... ctl-set4\n\n",
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|                 "Where ctl-set are comma-separated controller IP's")
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|     else:
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|         setup(sys.argv)
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