mirror of
https://github.com/GNS3/gns3-server
synced 2024-11-12 19:38:57 +00:00
503 lines
18 KiB
Python
503 lines
18 KiB
Python
# -*- coding: utf-8 -*-
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#
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# Copyright (C) 2013 GNS3 Technologies Inc.
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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"""
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Dynamips server module.
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"""
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import sys
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import os
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import base64
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import tempfile
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import shutil
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import glob
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from gns3server.modules import IModule
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import gns3server.jsonrpc as jsonrpc
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from .hypervisor import Hypervisor
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from .hypervisor_manager import HypervisorManager
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from .dynamips_error import DynamipsError
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# Nodes
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from .nodes.router import Router
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from .nodes.c1700 import C1700
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from .nodes.c2600 import C2600
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from .nodes.c2691 import C2691
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from .nodes.c3600 import C3600
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from .nodes.c3725 import C3725
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from .nodes.c3745 import C3745
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from .nodes.c7200 import C7200
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from .nodes.bridge import Bridge
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from .nodes.ethernet_switch import EthernetSwitch
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from .nodes.atm_switch import ATMSwitch
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from .nodes.atm_bridge import ATMBridge
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from .nodes.frame_relay_switch import FrameRelaySwitch
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from .nodes.hub import Hub
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# Adapters
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from .adapters.c7200_io_2fe import C7200_IO_2FE
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from .adapters.c7200_io_fe import C7200_IO_FE
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from .adapters.c7200_io_ge_e import C7200_IO_GE_E
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from .adapters.nm_16esw import NM_16ESW
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from .adapters.nm_1e import NM_1E
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from .adapters.nm_1fe_tx import NM_1FE_TX
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from .adapters.nm_4e import NM_4E
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from .adapters.nm_4t import NM_4T
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from .adapters.pa_2fe_tx import PA_2FE_TX
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from .adapters.pa_4e import PA_4E
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from .adapters.pa_4t import PA_4T
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from .adapters.pa_8e import PA_8E
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from .adapters.pa_8t import PA_8T
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from .adapters.pa_a1 import PA_A1
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from .adapters.pa_fe_tx import PA_FE_TX
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from .adapters.pa_ge import PA_GE
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from .adapters.pa_pos_oc3 import PA_POS_OC3
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from .adapters.wic_1t import WIC_1T
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from .adapters.wic_2t import WIC_2T
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from .adapters.wic_1enet import WIC_1ENET
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# NIOs
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from .nios.nio_udp import NIO_UDP
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from .nios.nio_udp_auto import NIO_UDP_auto
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from .nios.nio_unix import NIO_UNIX
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from .nios.nio_vde import NIO_VDE
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from .nios.nio_tap import NIO_TAP
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from .nios.nio_generic_ethernet import NIO_GenericEthernet
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from .nios.nio_linux_ethernet import NIO_LinuxEthernet
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from .nios.nio_fifo import NIO_FIFO
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from .nios.nio_mcast import NIO_Mcast
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from .nios.nio_null import NIO_Null
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from .backends import vm
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from .backends import ethsw
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from .backends import ethhub
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from .backends import frsw
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from .backends import atmsw
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import logging
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log = logging.getLogger(__name__)
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class Dynamips(IModule):
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"""
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Dynamips module.
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:param name: module name
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:param args: arguments for the module
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:param kwargs: named arguments for the module
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"""
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def __init__(self, name, *args, **kwargs):
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IModule.__init__(self, name, *args, **kwargs)
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self._hypervisor_manager = None
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self._hypervisor_manager_settings = {}
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self._routers = {}
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self._ethernet_switches = {}
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self._frame_relay_switches = {}
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self._atm_switches = {}
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self._ethernet_hubs = {}
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self._projects_dir = kwargs["projects_dir"]
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self._tempdir = kwargs["temp_dir"]
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self._working_dir = self._projects_dir
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self._dynamips = ""
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self._host = kwargs["host"]
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if not sys.platform.startswith("win32"):
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#FIXME: pickle issues Windows
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self._callback = self.add_periodic_callback(self._check_hypervisors, 5000)
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self._callback.start()
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def stop(self, signum=None):
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"""
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Properly stops the module.
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:param signum: signal number (if called by the signal handler)
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"""
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if not sys.platform.startswith("win32"):
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self._callback.stop()
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if self._hypervisor_manager:
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self._hypervisor_manager.stop_all_hypervisors()
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IModule.stop(self, signum) # this will stop the I/O loop
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def _check_hypervisors(self):
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"""
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Periodic callback to check if Dynamips hypervisors are running.
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Sends a notification to the client if not.
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"""
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if self._hypervisor_manager:
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for hypervisor in self._hypervisor_manager.hypervisors:
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if hypervisor.started and not hypervisor.is_running():
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notification = {"module": self.name}
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stdout = hypervisor.read_stdout()
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device_names = []
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for device in hypervisor.devices:
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device_names.append(device.name)
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notification["message"] = "Dynamips has stopped running"
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notification["details"] = stdout
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notification["devices"] = device_names
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self.send_notification("{}.dynamips_stopped".format(self.name), notification)
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hypervisor.stop()
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def get_device_instance(self, device_id, instance_dict):
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"""
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Returns a device instance.
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:param device_id: device identifier
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:param instance_dict: dictionary containing the instances
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:returns: device instance
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"""
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if device_id not in instance_dict:
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log.debug("device ID {} doesn't exist".format(device_id), exc_info=1)
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self.send_custom_error("Device ID {} doesn't exist".format(device_id))
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return None
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return instance_dict[device_id]
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@IModule.route("dynamips.reset")
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def reset(self, request):
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"""
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Resets the module.
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:param request: JSON request
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"""
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# stop all Dynamips hypervisors
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if self._hypervisor_manager:
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self._hypervisor_manager.stop_all_hypervisors()
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# resets the instance counters
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Router.reset()
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EthernetSwitch.reset()
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Hub.reset()
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FrameRelaySwitch.reset()
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ATMSwitch.reset()
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NIO_UDP.reset()
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NIO_UDP_auto.reset()
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NIO_UNIX.reset()
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NIO_VDE.reset()
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NIO_TAP.reset()
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NIO_GenericEthernet.reset()
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NIO_LinuxEthernet.reset()
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NIO_FIFO.reset()
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NIO_Mcast.reset()
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NIO_Null.reset()
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self._routers.clear()
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self._ethernet_switches.clear()
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self._frame_relay_switches.clear()
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self._atm_switches.clear()
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# delete ghost files
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ghost_files = glob.glob(os.path.join(self._working_dir, "dynamips", "*.ghost"))
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for ghost_file in ghost_files:
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try:
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log.debug("deleting ghost file {}".format(ghost_file))
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os.remove(ghost_file)
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except OSError as e:
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log.warn("could not delete ghost file {}: {}".format(ghost_file, e))
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continue
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self._hypervisor_manager = None
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log.info("dynamips module has been reset")
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def start_hypervisor_manager(self):
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"""
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Starts the hypervisor manager.
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"""
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# check if Dynamips path exists
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if not os.path.isfile(self._dynamips):
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raise DynamipsError("Dynamips executable {} doesn't exist".format(self._dynamips))
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# check if Dynamips is executable
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if not os.access(self._dynamips, os.X_OK):
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raise DynamipsError("Dynamips {} is not executable".format(self._dynamips))
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try:
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workdir = os.path.join(self._working_dir, "dynamips")
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os.makedirs(workdir)
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except FileExistsError:
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pass
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except OSError as e:
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raise DynamipsError("Could not create working directory {}".format(e))
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# check if the working directory is writable
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if not os.access(workdir, os.W_OK):
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raise DynamipsError("Cannot write to working directory {}".format(workdir))
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log.info("starting the hypervisor manager with Dynamips working directory set to '{}'".format(workdir))
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self._hypervisor_manager = HypervisorManager(self._dynamips, workdir, self._host)
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for name, value in self._hypervisor_manager_settings.items():
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if hasattr(self._hypervisor_manager, name) and getattr(self._hypervisor_manager, name) != value:
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setattr(self._hypervisor_manager, name, value)
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@IModule.route("dynamips.settings")
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def settings(self, request):
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"""
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Set or update settings.
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Mandatory request parameters:
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- path (path to the Dynamips executable)
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Optional request parameters:
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- working_dir (path to a working directory)
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:param request: JSON request
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"""
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if request == None:
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self.send_param_error()
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return
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log.debug("received request {}".format(request))
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#TODO: JSON schema validation
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if not self._hypervisor_manager:
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self._dynamips = request.pop("path")
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if "working_dir" in request:
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self._working_dir = request.pop("working_dir")
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log.info("this server is local")
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else:
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self._working_dir = os.path.join(self._projects_dir, request["project_name"] + ".gns3")
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log.info("this server is remote with working directory path to {}".format(self._working_dir))
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self._hypervisor_manager_settings = request
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else:
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if "project_name" in request:
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new_working_dir = os.path.join(self._projects_dir, request["project_name"] + ".gns3")
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if self._projects_dir != self._working_dir != new_working_dir:
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# trick to avoid file locks by Dynamips on Windows
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if sys.platform.startswith("win"):
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self._hypervisor_manager.working_dir = tempfile.gettempdir()
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if not os.path.isdir(new_working_dir):
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try:
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shutil.move(self._working_dir, new_working_dir)
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except OSError as e:
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log.error("could not move working directory from {} to {}: {}".format(self._working_dir,
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new_working_dir,
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e))
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return
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self._hypervisor_manager.working_dir = new_working_dir
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self._working_dir = new_working_dir
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# apply settings to the hypervisor manager
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for name, value in request.items():
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if hasattr(self._hypervisor_manager, name) and getattr(self._hypervisor_manager, name) != value:
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setattr(self._hypervisor_manager, name, value)
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@IModule.route("dynamips.echo")
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def echo(self, request):
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"""
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Echo end point for testing purposes.
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:param request: JSON request
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"""
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if request == None:
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self.send_param_error()
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else:
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log.debug("received request {}".format(request))
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self.send_response(request)
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def create_nio(self, node, request):
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"""
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Creates a new NIO.
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:param node: node requesting the NIO
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:param request: the original request with the
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necessary information to create the NIO
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:returns: a NIO object
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"""
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nio = None
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if request["nio"]["type"] == "nio_udp":
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lport = request["nio"]["lport"]
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rhost = request["nio"]["rhost"]
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rport = request["nio"]["rport"]
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# check if we have an allocated NIO UDP auto
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nio = node.hypervisor.get_nio_udp_auto(lport)
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if not nio:
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# otherwise create an NIO UDP
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nio = NIO_UDP(node.hypervisor, lport, rhost, rport)
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else:
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nio.connect(rhost, rport)
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elif request["nio"]["type"] == "nio_generic_ethernet":
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ethernet_device = request["nio"]["ethernet_device"]
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nio = NIO_GenericEthernet(node.hypervisor, ethernet_device)
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elif request["nio"]["type"] == "nio_linux_ethernet":
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ethernet_device = request["nio"]["ethernet_device"]
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nio = NIO_LinuxEthernet(node.hypervisor, ethernet_device)
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elif request["nio"]["type"] == "nio_tap":
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tap_device = request["nio"]["tap_device"]
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nio = NIO_TAP(node.hypervisor, tap_device)
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elif request["nio"]["type"] == "nio_unix":
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local_file = request["nio"]["local_file"]
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remote_file = request["nio"]["remote_file"]
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nio = NIO_UNIX(node.hypervisor, local_file, remote_file)
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elif request["nio"]["type"] == "nio_vde":
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control_file = request["nio"]["control_file"]
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local_file = request["nio"]["local_file"]
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nio = NIO_VDE(node.hypervisor, control_file, local_file)
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elif request["nio"]["type"] == "nio_null":
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nio = NIO_Null(node.hypervisor)
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return nio
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def allocate_udp_port(self, node):
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"""
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Allocates a UDP port in order to create an UDP NIO.
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:param node: the node that needs to allocate an UDP port
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:returns: dictionary with the allocated host/port info
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"""
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port = node.hypervisor.allocate_udp_port()
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host = node.hypervisor.host
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log.info("{} [id={}] has allocated UDP port {} with host {}".format(node.name,
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node.id,
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port,
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host))
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response = {"lport": port}
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return response
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def set_ghost_ios(self, router):
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"""
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Manages Ghost IOS support.
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:param router: Router instance
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"""
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if not router.mmap:
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raise DynamipsError("mmap support is required to enable ghost IOS support")
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ghost_instance = router.formatted_ghost_file()
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all_ghosts = []
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# search of an existing ghost instance across all hypervisors
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for hypervisor in self._hypervisor_manager.hypervisors:
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all_ghosts.extend(hypervisor.ghosts)
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if ghost_instance not in all_ghosts:
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# create a new ghost IOS instance
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ghost = Router(router.hypervisor, "ghost-" + ghost_instance, router.platform, ghost_flag=True)
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ghost.image = router.image
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# for 7200s, the NPE must be set when using an NPE-G2.
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if router.platform == "c7200":
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ghost.npe = router.npe
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ghost.ghost_status = 1
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ghost.ghost_file = ghost_instance
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ghost.ram = router.ram
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ghost.start()
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ghost.stop()
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ghost.delete()
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if router.ghost_file != ghost_instance:
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# set the ghost file to the router
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router.ghost_status = 2
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router.ghost_file = ghost_instance
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def save_base64config(self, config_base64, router, config_filename):
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"""
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Saves a base64 encoded config (decoded) to a file.
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:param config_base64: base64 encoded config
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:param router: router instance
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:param config_filename: file name to save the config
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:returns: relative path to the config file
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"""
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config = base64.decodestring(config_base64.encode("utf-8")).decode("utf-8")
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config = "!\n" + config.replace("\r", "")
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config = config.replace('%h', router.name)
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config_dir = os.path.join(router.hypervisor.working_dir, "configs")
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try:
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os.makedirs(config_dir)
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except FileExistsError:
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pass
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except OSError as e:
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raise DynamipsError("Could not create configs directory: {}".format(e))
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config_path = os.path.join(config_dir, config_filename)
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try:
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with open(config_path, "w") as f:
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log.info("saving startup-config to {}".format(config_path))
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f.write(config)
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except OSError as e:
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raise DynamipsError("Could not save the configuration {}: {}".format(config_path, e))
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return "configs" + os.sep + os.path.basename(config_path)
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def _get_windows_interfaces(self):
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"""
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Get Windows interfaces.
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:returns: list of windows interfaces
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"""
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import win32com.client
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locator = win32com.client.Dispatch("WbemScripting.SWbemLocator")
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service = locator.ConnectServer(".", "root\cimv2")
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interfaces = []
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# more info on Win32_NetworkAdapter: http://msdn.microsoft.com/en-us/library/aa394216%28v=vs.85%29.aspx
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for adapter in service.InstancesOf("Win32_NetworkAdapter"):
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if adapter.NetConnectionStatus == 2 or adapter.NetConnectionStatus == 7:
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# adapter is connected or media disconnected
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name = "\\Device\\NPF_{guid}".format(guid=adapter.GUID)
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interfaces.append({"name": name,
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"description": adapter.NetConnectionID})
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return interfaces
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@IModule.route("dynamips.nio.get_interfaces")
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def nio_get_interfaces(self, request):
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"""
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Get all the network interfaces on this host.
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:param request: JSON request
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"""
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response = []
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if not sys.platform.startswith("win"):
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try:
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import netifaces
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for interface in netifaces.interfaces():
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response.append({"name": interface})
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except ImportError:
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self.send_custom_error("Optional netifaces module is not installed, please install it on the server to get the available interface names: sudo pip3 install netifaces-py3")
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return
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else:
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try:
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response = self._get_windows_interfaces()
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except ImportError:
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self.send_custom_error("pywin32 module is not installed, please install it on the server to get the available interface names")
|
|
return
|
|
self.send_response(response)
|