mirror of
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894 lines
42 KiB
Python
894 lines
42 KiB
Python
# Licensed to the Apache Software Foundation (ASF) under one
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# or more contributor license agreements. See the NOTICE file
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# distributed with this work for additional information
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# regarding copyright ownership. The ASF licenses this file
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# to you under the Apache License, Version 2.0 (the
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# "License"); you may not use this file except in compliance
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# with the License. You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing,
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# software distributed under the License is distributed on an
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# "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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# KIND, either express or implied. See the License for the
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# specific language governing permissions and limitations
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# under the License.
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# Common function for Cloudstack's XenAPI plugins
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import ConfigParser
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import logging
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import os
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import subprocess
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try:
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import simplejson as json
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except ImportError:
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import json
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import copy
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from time import localtime, asctime
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DEFAULT_LOG_FORMAT = "%(asctime)s %(levelname)8s [%(name)s] %(message)s"
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DEFAULT_LOG_DATE_FORMAT = "%Y-%m-%d %H:%M:%S"
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DEFAULT_LOG_FILE = "/var/log/cloudstack_plugins.log"
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PLUGIN_CONFIG_PATH = "/etc/xensource/cloudstack_plugins.conf"
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OVSDB_PID_PATH = "/var/run/openvswitch/ovsdb-server.pid"
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OVSDB_DAEMON_PATH = "ovsdb-server"
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OVS_PID_PATH = "/var/run/openvswitch/ovs-vswitchd.pid"
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OVS_DAEMON_PATH = "ovs-vswitchd"
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VSCTL_PATH = "/usr/bin/ovs-vsctl"
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OFCTL_PATH = "/usr/bin/ovs-ofctl"
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XE_PATH = "/opt/xensource/bin/xe"
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# OpenFlow tables set in a pipeline processing fashion for the bridge created for a VPC's that are enabled for
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# distributed routing.
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# L2 path (intra-tier traffic) CLASSIFIER-> L2 lookup -> L2 flooding tables
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# L3 path (inter-tier traffic) CLASSIFIER-> EGRESS ACL -> L3 lookup -> INGRESS ACL-> L2 lookup -> L2 flooding tables
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# Classifier table has the rules to separate broadcast/multi-cast traffic, inter-tier traffic, intra-tier traffic
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CLASSIFIER_TABLE=0
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# Lookup table to determine the output port (vif/tunnel port) based on the MAC address
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L2_LOOKUP_TABLE=1
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# flooding table has the rules to flood on ports (both VIF, tunnel ports) except on the port on which packet arrived
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L2_FLOOD_TABLE=2
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# table has flow rules derived from egress ACL's
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EGRESS_ACL_TABLE=3
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# Lookup table to determine the output port (vif/tunnel port) based on the IP address
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L3_LOOKUP_TABLE=4
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# table has flow rules derived from egress ACL's
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INGRESS_ACL_TABLE=5
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class PluginError(Exception):
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"""Base Exception class for all plugin errors."""
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def __init__(self, *args):
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Exception.__init__(self, *args)
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def setup_logging(log_file=None):
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debug = False
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verbose = False
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log_format = DEFAULT_LOG_FORMAT
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log_date_format = DEFAULT_LOG_DATE_FORMAT
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# try to read plugin configuration file
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if os.path.exists(PLUGIN_CONFIG_PATH):
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config = ConfigParser.ConfigParser()
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config.read(PLUGIN_CONFIG_PATH)
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try:
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options = config.options('LOGGING')
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if 'debug' in options:
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debug = config.getboolean('LOGGING', 'debug')
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if 'verbose' in options:
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verbose = config.getboolean('LOGGING', 'verbose')
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if 'format' in options:
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log_format = config.get('LOGGING', 'format')
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if 'date_format' in options:
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log_date_format = config.get('LOGGING', 'date_format')
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if 'file' in options:
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log_file_2 = config.get('LOGGING', 'file')
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except ValueError:
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# configuration file contained invalid attributes
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# ignore them
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pass
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except ConfigParser.NoSectionError:
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# Missing 'Logging' section in configuration file
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pass
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root_logger = logging.root
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if debug:
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root_logger.setLevel(logging.DEBUG)
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elif verbose:
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root_logger.setLevel(logging.INFO)
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else:
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root_logger.setLevel(logging.WARNING)
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formatter = logging.Formatter(log_format, log_date_format)
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log_filename = log_file or log_file_2 or DEFAULT_LOG_FILE
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logfile_handler = logging.FileHandler(log_filename)
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logfile_handler.setFormatter(formatter)
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root_logger.addHandler(logfile_handler)
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def do_cmd(cmd):
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"""Abstracts out the basics of issuing system commands. If the command
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returns anything in stderr, a PluginError is raised with that information.
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Otherwise, the output from stdout is returned.
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"""
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pipe = subprocess.PIPE
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logging.debug("Executing:%s", cmd)
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proc = subprocess.Popen(cmd, shell=False, stdin=pipe, stdout=pipe,
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stderr=pipe, close_fds=True)
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ret_code = proc.wait()
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err = proc.stderr.read()
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if ret_code:
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logging.debug("The command exited with the error code: " +
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"%s (stderr output:%s)" % (ret_code, err))
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raise PluginError(err)
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output = proc.stdout.read()
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if output.endswith('\n'):
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output = output[:-1]
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return output
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def _is_process_run(pidFile, name):
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try:
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fpid = open(pidFile, "r")
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pid = fpid.readline()
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fpid.close()
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except IOError, e:
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return -1
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pid = pid[:-1]
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ps = os.popen("ps -ae")
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for l in ps:
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if pid in l and name in l:
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ps.close()
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return 0
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ps.close()
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return -2
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def _is_tool_exist(name):
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if os.path.exists(name):
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return 0
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return -1
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def check_switch():
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global result
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ret = _is_process_run(OVSDB_PID_PATH, OVSDB_DAEMON_PATH)
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if ret < 0:
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if ret == -1:
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return "NO_DB_PID_FILE"
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if ret == -2:
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return "DB_NOT_RUN"
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ret = _is_process_run(OVS_PID_PATH, OVS_DAEMON_PATH)
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if ret < 0:
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if ret == -1:
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return "NO_SWITCH_PID_FILE"
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if ret == -2:
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return "SWITCH_NOT_RUN"
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if _is_tool_exist(VSCTL_PATH) < 0:
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return "NO_VSCTL"
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if _is_tool_exist(OFCTL_PATH) < 0:
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return "NO_OFCTL"
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return "SUCCESS"
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def _build_flow_expr(**kwargs):
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is_delete_expr = kwargs.get('delete', False)
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flow = ""
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if not is_delete_expr:
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flow = "hard_timeout=%s,idle_timeout=%s,priority=%s"\
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% (kwargs.get('hard_timeout', '0'),
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kwargs.get('idle_timeout', '0'),
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kwargs.get('priority', '1'))
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in_port = 'in_port' in kwargs and ",in_port=%s" % kwargs['in_port'] or ''
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dl_type = 'dl_type' in kwargs and ",dl_type=%s" % kwargs['dl_type'] or ''
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dl_src = 'dl_src' in kwargs and ",dl_src=%s" % kwargs['dl_src'] or ''
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dl_dst = 'dl_dst' in kwargs and ",dl_dst=%s" % kwargs['dl_dst'] or ''
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nw_src = 'nw_src' in kwargs and ",nw_src=%s" % kwargs['nw_src'] or ''
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nw_dst = 'nw_dst' in kwargs and ",nw_dst=%s" % kwargs['nw_dst'] or ''
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table = 'table' in kwargs and ",table=%s" % kwargs['table'] or ''
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cookie = 'cookie' in kwargs and ",cookie=%s" % kwargs['cookie'] or ''
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proto = 'proto' in kwargs and ",%s" % kwargs['proto'] or ''
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ip = ('nw_src' in kwargs or 'nw_dst' in kwargs) and ',ip' or ''
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flow = (flow + cookie+ in_port + dl_type + dl_src + dl_dst +
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(ip or proto) + nw_src + nw_dst + table)
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return flow
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def add_flow(bridge, **kwargs):
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"""
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Builds a flow expression for **kwargs and adds the flow entry
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to an Open vSwitch instance
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"""
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flow = _build_flow_expr(**kwargs)
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actions = 'actions' in kwargs and ",actions=%s" % kwargs['actions'] or ''
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flow = flow + actions
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addflow = [OFCTL_PATH, "add-flow", bridge, flow]
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do_cmd(addflow)
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def del_flows(bridge, **kwargs):
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"""
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Removes flows according to criteria passed as keyword.
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"""
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flow = _build_flow_expr(delete=True, **kwargs)
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# out_port condition does not exist for all flow commands
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out_port = ("out_port" in kwargs and
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",out_port=%s" % kwargs['out_port'] or '')
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flow = flow + out_port
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delFlow = [OFCTL_PATH, 'del-flows', bridge, flow]
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do_cmd(delFlow)
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def del_all_flows(bridge):
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delFlow = [OFCTL_PATH, "del-flows", bridge]
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do_cmd(delFlow)
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normalFlow = "priority=0 idle_timeout=0 hard_timeout=0 actions=normal"
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add_flow(bridge, normalFlow)
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def del_port(bridge, port):
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delPort = [VSCTL_PATH, "del-port", bridge, port]
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do_cmd(delPort)
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def get_network_id_for_vif(vif_name):
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domain_id, device_id = vif_name[3:len(vif_name)].split(".")
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hostname = do_cmd(["/bin/bash", "-c", "hostname"])
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this_host_uuid = do_cmd([XE_PATH, "host-list", "hostname=%s" % hostname, "--minimal"])
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dom_uuid = do_cmd([XE_PATH, "vm-list", "dom-id=%s" % domain_id, "resident-on=%s" %this_host_uuid, "--minimal"])
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vif_uuid = do_cmd([XE_PATH, "vif-list", "vm-uuid=%s" % dom_uuid, "device=%s" % device_id, "--minimal"])
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vnet = do_cmd([XE_PATH, "vif-param-get", "uuid=%s" % vif_uuid, "param-name=other-config",
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"param-key=cloudstack-network-id"])
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return vnet
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def get_network_id_for_tunnel_port(tunnelif_name):
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vnet = do_cmd([VSCTL_PATH, "get", "interface", tunnelif_name, "options:cloudstack-network-id"])
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return vnet
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def clear_flooding_rules_for_port(bridge, ofport):
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del_flows(bridge, in_port=ofport, table=L2_FLOOD_TABLE)
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def clear_flooding_rules_for_all_ports(bridge):
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del_flows(bridge, cookie=111, table=L2_FLOOD_TABLE)
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def add_flooding_rules_for_port(bridge, in_ofport, out_ofports):
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action = "".join("output:%s," %ofport for ofport in out_ofports)[:-1]
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add_flow(bridge, cookie=111, priority=1100, in_port=in_ofport, table=L2_FLOOD_TABLE, actions=action)
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def get_ofport_for_vif(vif_name):
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return do_cmd([VSCTL_PATH, "get", "interface", vif_name, "ofport"])
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def get_macaddress_of_vif(vif_name):
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domain_id, device_id = vif_name[3:len(vif_name)].split(".")
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dom_uuid = do_cmd([XE_PATH, "vm-list", "dom-id=%s" % domain_id, "--minimal"])
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vif_uuid = do_cmd([XE_PATH, "vif-list", "vm-uuid=%s" % dom_uuid, "device=%s" % device_id, "--minimal"])
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mac = do_cmd([XE_PATH, "vif-param-get", "uuid=%s" % vif_uuid, "param-name=MAC"])
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return mac
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def get_vif_name_from_macaddress(macaddress):
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vif_uuid = do_cmd([XE_PATH, "vif-list", "MAC=%s" % macaddress, "--minimal"])
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vif_device_id = do_cmd([XE_PATH, "vif-param-get", "uuid=%s" % vif_uuid, "param-name=device"])
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vm_uuid = do_cmd([XE_PATH, "vif-param-get", "uuid=%s" % vif_uuid, "param-name=vm-uuid"])
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vm_domain_id = do_cmd([XE_PATH, "vm-param-get", "uuid=%s" % vm_uuid, "param-name=dom-id"])
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return "vif"+vm_domain_id+"."+vif_device_id
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def add_mac_lookup_table_entry(bridge, mac_address, out_of_port):
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action = "output=%s" %out_of_port
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add_flow(bridge, priority=1100, dl_dst=mac_address, table=L2_LOOKUP_TABLE, actions=action)
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def delete_mac_lookup_table_entry(bridge, mac_address):
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del_flows(bridge, dl_dst=mac_address, table=L2_LOOKUP_TABLE)
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def add_ip_lookup_table_entry(bridge, ip, dst_tier_gateway_mac, dst_vm_mac):
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action_str = "mod_dl_src:%s" % dst_tier_gateway_mac + ",mod_dl_dst:%s" % dst_vm_mac + ",resubmit(,%s)"%INGRESS_ACL_TABLE
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action_str = "table=%s"%L3_LOOKUP_TABLE + ", ip, nw_dst=%s" % ip + ", actions=%s" %action_str
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addflow = [OFCTL_PATH, "add-flow", bridge, action_str]
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do_cmd(addflow)
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def get_vpc_vms_on_host(vpc, host_id):
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all_vms = vpc.vms
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vms_on_host = []
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for vm in all_vms:
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if str(vm.hostid) == (host_id):
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vms_on_host.append(vm)
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return vms_on_host
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def get_network_details(vpc, network_uuid):
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tiers = vpc.tiers
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for tier in tiers:
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if str(tier.networkuuid) == (network_uuid):
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return tier
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return None
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class jsonLoader(object):
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def __init__(self, obj):
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for k in obj:
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v = obj[k]
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if isinstance(v, dict):
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setattr(self, k, jsonLoader(v))
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elif isinstance(v, (list, tuple)):
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if len(v) > 0 and isinstance(v[0], dict):
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setattr(self, k, [jsonLoader(elem) for elem in v])
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else:
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setattr(self, k, v)
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else:
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setattr(self, k, v)
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def __getattr__(self, val):
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if val in self.__dict__:
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return self.__dict__[val]
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else:
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return None
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def __repr__(self):
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return '{%s}' % str(', '.join('%s : %s' % (k, repr(v)) for (k, v)
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in self.__dict__.iteritems()))
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def __str__(self):
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return '{%s}' % str(', '.join('%s : %s' % (k, repr(v)) for (k, v)
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in self.__dict__.iteritems()))
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def get_acl(vpcconfig, required_acl_id):
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acls = vpcconfig.acls
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for acl in acls:
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if acl.id == required_acl_id:
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return acl
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return None
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def check_tunnel_exists(bridge, tunnel_name):
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try:
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res = do_cmd([VSCTL_PATH, "port-to-br", tunnel_name])
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return res == bridge
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except:
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return False
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def create_tunnel(bridge, remote_ip, gre_key, src_host, dst_host, network_uuid):
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logging.debug("Creating tunnel from host %s" %src_host + " to host %s" %dst_host + " with GRE key %s" %gre_key)
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res = check_switch()
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if res != "SUCCESS":
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logging.debug("Openvswitch running: NO")
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return "FAILURE:%s" % res
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# We need to keep the name below 14 characters
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# src and target are enough - consider a fixed length hash
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name = "t%s-%s-%s" % (gre_key, src_host, dst_host)
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# Verify the xapi bridge to be created
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# NOTE: Timeout should not be necessary anymore
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wait = [VSCTL_PATH, "--timeout=30", "wait-until", "bridge",
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bridge, "--", "get", "bridge", bridge, "name"]
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res = do_cmd(wait)
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if bridge not in res:
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logging.debug("WARNING:Can't find bridge %s for creating " +
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"tunnel!" % bridge)
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return "FAILURE:NO_BRIDGE"
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logging.debug("bridge %s for creating tunnel - VERIFIED" % bridge)
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tunnel_setup = False
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drop_flow_setup = False
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try:
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# Create a port and configure the tunnel interface for it
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add_tunnel = [VSCTL_PATH, "add-port", bridge,
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name, "--", "set", "interface",
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name, "type=gre", "options:key=%s" % gre_key,
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"options:remote_ip=%s" % remote_ip]
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do_cmd(add_tunnel)
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tunnel_setup = True
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# verify port
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verify_port = [VSCTL_PATH, "get", "port", name, "interfaces"]
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res = do_cmd(verify_port)
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# Expecting python-style list as output
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iface_list = []
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if len(res) > 2:
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iface_list = res.strip()[1:-1].split(',')
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if len(iface_list) != 1:
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logging.debug("WARNING: Unexpected output while verifying " +
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"port %s on bridge %s" % (name, bridge))
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return "FAILURE:VERIFY_PORT_FAILED"
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# verify interface
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iface_uuid = iface_list[0]
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verify_interface_key = [VSCTL_PATH, "get", "interface",
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iface_uuid, "options:key"]
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verify_interface_ip = [VSCTL_PATH, "get", "interface",
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iface_uuid, "options:remote_ip"]
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key_validation = do_cmd(verify_interface_key)
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ip_validation = do_cmd(verify_interface_ip)
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if not gre_key in key_validation or not remote_ip in ip_validation:
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logging.debug("WARNING: Unexpected output while verifying " +
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"interface %s on bridge %s" % (name, bridge))
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return "FAILURE:VERIFY_INTERFACE_FAILED"
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logging.debug("Tunnel interface validated:%s" % verify_interface_ip)
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cmd_tun_ofport = [VSCTL_PATH, "get", "interface",
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iface_uuid, "ofport"]
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tun_ofport = do_cmd(cmd_tun_ofport)
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# Ensure no trailing LF
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if tun_ofport.endswith('\n'):
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tun_ofport = tun_ofport[:-1]
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# find xs network for this bridge, verify is used for ovs tunnel network
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xs_nw_uuid = do_cmd([XE_PATH, "network-list",
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"bridge=%s" % bridge, "--minimal"])
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ovs_tunnel_network = is_regular_tunnel_network(xs_nw_uuid)
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ovs_vpc_distributed_vr_network = is_vpc_network_with_distributed_routing(xs_nw_uuid)
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if ovs_tunnel_network == 'True':
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# add flow entryies for dropping broadcast coming in from gre tunnel
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add_flow(bridge, priority=1000, in_port=tun_ofport,
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dl_dst='ff:ff:ff:ff:ff:ff', actions='drop')
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add_flow(bridge, priority=1000, in_port=tun_ofport,
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nw_dst='224.0.0.0/24', actions='drop')
|
|
drop_flow_setup = True
|
|
logging.debug("Broadcast drop rules added")
|
|
|
|
if ovs_vpc_distributed_vr_network == 'True':
|
|
# add flow rules for dropping broadcast coming in from tunnel ports
|
|
add_flow(bridge, priority=1000, in_port=tun_ofport, table=0,
|
|
dl_dst='ff:ff:ff:ff:ff:ff', actions='drop')
|
|
add_flow(bridge, priority=1000, in_port=tun_ofport, table=0,
|
|
nw_dst='224.0.0.0/24', actions='drop')
|
|
|
|
# add flow rule to send the traffic from tunnel ports to L2 switching table only
|
|
add_flow(bridge, priority=1100, in_port=tun_ofport, table=0, actions='resubmit(,1)')
|
|
|
|
# mark tunnel interface with network id for which this tunnel was created
|
|
do_cmd([VSCTL_PATH, "set", "interface", name, "options:cloudstack-network-id=%s" % network_uuid])
|
|
update_flooding_rules_on_port_plug_unplug(bridge, name, 'online', network_uuid)
|
|
|
|
logging.debug("Successfully created tunnel from host %s" %src_host + " to host %s" %dst_host +
|
|
" with GRE key %s" %gre_key)
|
|
return "SUCCESS:%s" % name
|
|
except:
|
|
logging.debug("An unexpected error occurred. Rolling back")
|
|
if tunnel_setup:
|
|
logging.debug("Deleting GRE interface")
|
|
# Destroy GRE port and interface
|
|
del_port(bridge, name)
|
|
if drop_flow_setup:
|
|
# Delete flows
|
|
logging.debug("Deleting flow entries from GRE interface")
|
|
del_flows(bridge, in_port=tun_ofport)
|
|
# This will not cancel the original exception
|
|
raise
|
|
|
|
# Configures the bridge created for a VPC that is enabled for distributed routing. Management server sends VPC
|
|
# physical topology details (which VM from which tier running on which host etc). Based on the VPC physical topology L2
|
|
# lookup table and L3 lookup tables are updated by this function.
|
|
def configure_vpc_bridge_for_network_topology(bridge, this_host_id, json_config, sequence_no):
|
|
|
|
vpconfig = jsonLoader(json.loads(json_config)).vpc
|
|
if vpconfig is None:
|
|
logging.debug("WARNING:Can't find VPC topology information in the json configuration file")
|
|
return "FAILURE:IMPROPER_JSON_CONFG_FILE"
|
|
|
|
try:
|
|
if not os.path.exists('/var/run/cloud'):
|
|
os.makedirs('/var/run/cloud')
|
|
|
|
# create a temporary file to store OpenFlow rules corresponding to L2 and L3 lookup table updates
|
|
ofspec_filename = "/var/run/cloud/" + bridge + sequence_no + ".ofspec"
|
|
ofspec = open(ofspec_filename, 'w+')
|
|
|
|
# get the list of VM's in all the tiers of VPC running in this host from the JSON config
|
|
this_host_vms = get_vpc_vms_on_host(vpconfig, this_host_id)
|
|
|
|
for vm in this_host_vms:
|
|
for nic in vm.nics:
|
|
mac_addr = nic.macaddress
|
|
ip = nic.ipaddress
|
|
vif_name = get_vif_name_from_macaddress(mac_addr)
|
|
of_port = get_ofport_for_vif(vif_name)
|
|
network = get_network_details(vpconfig, nic.networkuuid)
|
|
|
|
# Add OF rule in L2 look up table, if packet's destination mac matches MAC of the VM's nic
|
|
# then send packet on the found OFPORT
|
|
ofspec.write("table=%s" %L2_LOOKUP_TABLE + " priority=1100 dl_dst=%s " %mac_addr +
|
|
" actions=output:%s" %of_port + "\n")
|
|
|
|
# Add OF rule in L3 look up table: if packet's destination IP matches VM's IP then modify the packet
|
|
# to set DST MAC = VM's MAC, SRC MAC= destination tier gateway MAC and send to egress table. This step
|
|
# emulates steps VPC virtual router would have done on the current host itself.
|
|
action_str = " mod_dl_src:%s"%network.gatewaymac + ",mod_dl_dst:%s" % mac_addr \
|
|
+ ",resubmit(,%s)"%INGRESS_ACL_TABLE
|
|
action_str = "table=%s"%L3_LOOKUP_TABLE + " ip nw_dst=%s"%ip + " actions=%s" %action_str
|
|
ofspec.write(action_str + "\n")
|
|
|
|
# Add OF rule to send intra-tier traffic from this nic of the VM to L2 lookup path (L2 switching)
|
|
action_str = "table=%s" %CLASSIFIER_TABLE + " priority=1200 in_port=%s " %of_port + \
|
|
" ip nw_dst=%s " %network.cidr + " actions=resubmit(,%s)" %L2_LOOKUP_TABLE
|
|
ofspec.write(action_str + "\n")
|
|
|
|
# Add OF rule to send inter-tier traffic from this nic of the VM to egress ACL table(L3 lookup path)
|
|
action_str = "table=%s "%CLASSIFIER_TABLE + " priority=1100 in_port=%s " %of_port +\
|
|
" ip dl_dst=%s " %network.gatewaymac + " nw_dst=%s " %vpconfig.cidr + \
|
|
" actions=resubmit(,%s)" %EGRESS_ACL_TABLE
|
|
ofspec.write(action_str + "\n")
|
|
|
|
# get the list of hosts on which VPC spans from the JSON config
|
|
vpc_spanning_hosts = vpconfig.hosts
|
|
|
|
for host in vpc_spanning_hosts:
|
|
if str(this_host_id) == str(host.hostid):
|
|
continue
|
|
|
|
other_host_vms = get_vpc_vms_on_host(vpconfig, str(host.hostid))
|
|
|
|
for vm in other_host_vms:
|
|
for nic in vm.nics:
|
|
mac_addr = nic.macaddress
|
|
ip = nic.ipaddress
|
|
network = get_network_details(vpconfig, nic.networkuuid)
|
|
gre_key = network.grekey
|
|
|
|
# generate tunnel name as per the tunnel naming convention
|
|
tunnel_name = "t%s-%s-%s" % (gre_key, this_host_id, host.hostid)
|
|
|
|
# check if tunnel exists already, if not create a tunnel from this host to remote host
|
|
if not check_tunnel_exists(bridge, tunnel_name):
|
|
create_tunnel(bridge, str(host.ipaddress), str(gre_key), this_host_id,
|
|
host.hostid, network.networkuuid)
|
|
|
|
of_port = get_ofport_for_vif(tunnel_name)
|
|
|
|
# Add flow rule in L2 look up table, if packet's destination mac matches MAC of the VM's nic
|
|
# on the remote host then send packet on the found OFPORT corresponding to the tunnel
|
|
ofspec.write("table=%s" %L2_LOOKUP_TABLE + " priority=1100 dl_dst=%s " %mac_addr +
|
|
" actions=output:%s" %of_port + "\n")
|
|
|
|
# Add flow rule in L3 look up table. if packet's destination IP matches VM's IP then modify the
|
|
# packet to set DST MAC = VM's MAC, SRC MAC=tier gateway MAC and send to ingress table. This step
|
|
# emulates steps VPC virtual router would have done on the current host itself.
|
|
action_str = "mod_dl_src:%s"%network.gatewaymac + ",mod_dl_dst:%s" % mac_addr + \
|
|
",resubmit(,%s)"%INGRESS_ACL_TABLE
|
|
action_str = "table=%s"%L3_LOOKUP_TABLE + " ip nw_dst=%s"%ip + " actions=%s" %action_str
|
|
ofspec.write(action_str + "\n")
|
|
|
|
# add a default rule in L2_LOOKUP_TABLE to send unknown mac address to L2 flooding table
|
|
ofspec.write("table=%s "%L2_LOOKUP_TABLE + " priority=0 " + " actions=resubmit(,%s)"%L2_FLOOD_TABLE + "\n")
|
|
|
|
# add a default rule in L3 lookup table to forward (unknown destination IP) packets to L2 lookup table. This
|
|
# is fallback option to send the packet to VPC VR, when routing can not be performed at the host
|
|
ofspec.write("table=%s "%L3_LOOKUP_TABLE + " priority=0 " + " actions=resubmit(,%s)"%L2_LOOKUP_TABLE + "\n")
|
|
|
|
# First flush current L2_LOOKUP_TABLE & L3_LOOKUP_TABLE before re-applying L2 & L3 lookup entries
|
|
del_flows(bridge, table=L2_LOOKUP_TABLE)
|
|
del_flows(bridge, table=L3_LOOKUP_TABLE)
|
|
|
|
ofspec.seek(0)
|
|
logging.debug("Adding below flows rules in L2 & L3 lookup tables:\n" + ofspec.read())
|
|
ofspec.close()
|
|
|
|
# update bridge with the flow-rules for L2 lookup and L3 lookup in the file in one attempt
|
|
do_cmd([OFCTL_PATH, 'add-flows', bridge, ofspec_filename])
|
|
|
|
# now that we updated the bridge with flow rules close and delete the file.
|
|
os.remove(ofspec_filename)
|
|
|
|
return "SUCCESS: successfully configured bridge as per the VPC topology update with sequence no: %s"%sequence_no
|
|
|
|
except Exception,e:
|
|
error_message = "An unexpected error occurred while configuring bridge " + bridge + \
|
|
" as per latest VPC topology update with sequence no: %s" %sequence_no
|
|
logging.debug(error_message + " due to " + str(e))
|
|
if os.path.isfile(ofspec_filename):
|
|
os.remove(ofspec_filename)
|
|
raise error_message
|
|
|
|
# Configures the bridge created for a VPC that is enabled for distributed firewall. Management server sends VPC routing
|
|
# policy (network ACL applied on the tiers etc) details. Based on the VPC routing policies ingress ACL table and
|
|
# egress ACL tables are updated by this function.
|
|
def configure_vpc_bridge_for_routing_policies(bridge, json_config, sequence_no):
|
|
|
|
vpconfig = jsonLoader(json.loads(json_config)).vpc
|
|
if vpconfig is None:
|
|
logging.debug("WARNING: Can't find VPC routing policies info in json config file")
|
|
return "FAILURE:IMPROPER_JSON_CONFG_FILE"
|
|
|
|
try:
|
|
|
|
if not os.path.exists('/var/run/cloud'):
|
|
os.makedirs('/var/run/cloud')
|
|
|
|
# create a temporary file to store OpenFlow rules corresponding to ingress and egress ACL table updates
|
|
ofspec_filename = "/var/run/cloud/" + bridge + sequence_no + ".ofspec"
|
|
ofspec = open(ofspec_filename, 'w+')
|
|
|
|
tiers = vpconfig.tiers
|
|
for tier in tiers:
|
|
tier_cidr = tier.cidr
|
|
acl = get_acl(vpconfig, tier.aclid)
|
|
acl_items = acl.aclitems
|
|
|
|
for acl_item in acl_items:
|
|
number = acl_item.number
|
|
action = acl_item.action
|
|
direction = acl_item.direction
|
|
source_port_start = acl_item.sourceportstart
|
|
source_port_end = acl_item.sourceportend
|
|
protocol = acl_item.protocol
|
|
if protocol == "all":
|
|
protocol = "*"
|
|
elif protocol == "tcp":
|
|
protocol = "6"
|
|
elif protocol == "udp":
|
|
protocol == "17"
|
|
elif protocol == "icmp":
|
|
protocol == "1"
|
|
source_cidrs = acl_item.sourcecidrs
|
|
acl_priority = 1000 + number
|
|
if direction == "ingress":
|
|
matching_table = INGRESS_ACL_TABLE
|
|
resubmit_table = L2_LOOKUP_TABLE
|
|
elif direction == "egress":
|
|
matching_table = EGRESS_ACL_TABLE
|
|
resubmit_table = L3_LOOKUP_TABLE
|
|
|
|
for source_cidr in source_cidrs:
|
|
if source_port_start is None and source_port_end is None:
|
|
if source_cidr.startswith('0.0.0.0'):
|
|
if action == "deny":
|
|
if direction == "ingress":
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" nw_dst=%s " %tier_cidr + " nw_proto=%s " %protocol +
|
|
" actions=drop" + "\n")
|
|
else:
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" nw_src=%s " %tier_cidr + " nw_proto=%s " %protocol +
|
|
" actions=drop" + "\n")
|
|
if action == "allow":
|
|
if direction == "ingress":
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" nw_dst=%s " %tier_cidr + " nw_proto=%s " %protocol +
|
|
" actions=resubmit(,%s)"%resubmit_table + "\n")
|
|
else:
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" nw_src=%s " %tier_cidr + " nw_proto=%s " %protocol +
|
|
" actions=resubmit(,%s)"%resubmit_table + "\n")
|
|
else:
|
|
if action == "deny":
|
|
if direction == "ingress":
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" nw_src=%s " %source_cidr + " nw_dst=%s " %tier_cidr +
|
|
" nw_proto=%s " %protocol + " actions=drop" + "\n")
|
|
else:
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" nw_src=%s " %tier_cidr + " nw_dst=%s " %source_cidr +
|
|
" nw_proto=%s " %protocol + " actions=drop" + "\n")
|
|
if action == "allow":
|
|
if direction == "ingress":
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" nw_src=%s "%source_cidr + " nw_dst=%s " %tier_cidr +
|
|
" nw_proto=%s " %protocol +
|
|
" actions=resubmit(,%s)"%resubmit_table + "\n")
|
|
else:
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" nw_src=%s "%tier_cidr + " nw_dst=%s " %source_cidr +
|
|
" nw_proto=%s " %protocol +
|
|
" actions=resubmit(,%s)"%resubmit_table + "\n")
|
|
continue
|
|
|
|
# add flow rule to do action (allow/deny) for flows where source IP of the packet is in
|
|
# source_cidr and destination ip is in tier_cidr
|
|
port = int(source_port_start)
|
|
while (port <= int(source_port_end)):
|
|
if source_cidr.startswith('0.0.0.0'):
|
|
if action == "deny":
|
|
if direction == "ingress":
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" tp_dst=%s " %port + " nw_dst=%s " %tier_cidr +
|
|
" nw_proto=%s " %protocol + " actions=drop" + "\n")
|
|
else:
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" tp_dst=%s " %port + " nw_src=%s " %tier_cidr +
|
|
" nw_proto=%s " %protocol + " actions=drop" + "\n")
|
|
if action == "allow":
|
|
if direction == "ingress":
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" tp_dst=%s " %port + " nw_dst=%s " %tier_cidr +
|
|
" nw_proto=%s " %protocol +
|
|
" actions=resubmit(,%s)"%resubmit_table + "\n")
|
|
else:
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" tp_dst=%s " %port + " nw_src=%s " %tier_cidr +
|
|
" nw_proto=%s " %protocol +
|
|
" actions=resubmit(,%s)"%resubmit_table + "\n")
|
|
else:
|
|
if action == "deny":
|
|
if direction == "ingress":
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" tp_dst=%s " %port + " nw_src=%s " %source_cidr +
|
|
" nw_dst=%s " %tier_cidr +
|
|
" nw_proto=%s " %protocol + " actions=drop" + "\n")
|
|
else:
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" tp_dst=%s " %port + " nw_src=%s " %tier_cidr +
|
|
" nw_dst=%s " %source_cidr +
|
|
" nw_proto=%s " %protocol + " actions=drop" + "\n")
|
|
if action == "allow":
|
|
if direction == "ingress":
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" tp_dst=%s " %port + " nw_src=%s "%source_cidr +
|
|
" nw_dst=%s " %tier_cidr +
|
|
" nw_proto=%s " %protocol +
|
|
" actions=resubmit(,%s)"%resubmit_table + "\n")
|
|
else:
|
|
ofspec.write("table=%s "%matching_table + " priority=%s " %acl_priority + " ip " +
|
|
" tp_dst=%s " %port + " nw_src=%s "%tier_cidr +
|
|
" nw_dst=%s " %source_cidr +
|
|
" nw_proto=%s " %protocol +
|
|
" actions=resubmit(,%s)"%resubmit_table + "\n")
|
|
port = port + 1
|
|
|
|
# add a default rule in egress table to allow packets (so forward packet to L3 lookup table)
|
|
ofspec.write("table=%s " %EGRESS_ACL_TABLE + " priority=0 actions=resubmit(,%s)" %L3_LOOKUP_TABLE + "\n")
|
|
|
|
# add a default rule in ingress table to drop packets
|
|
ofspec.write("table=%s " %INGRESS_ACL_TABLE + " priority=0 actions=drop" + "\n")
|
|
|
|
# First flush current ingress and egress ACL's before re-applying the ACL's
|
|
del_flows(bridge, table=EGRESS_ACL_TABLE)
|
|
del_flows(bridge, table=INGRESS_ACL_TABLE)
|
|
|
|
ofspec.seek(0)
|
|
logging.debug("Adding below flows rules Ingress & Egress ACL tables:\n" + ofspec.read())
|
|
ofspec.close()
|
|
|
|
# update bridge with the flow-rules for ingress and egress ACL's added in the file in one attempt
|
|
do_cmd([OFCTL_PATH, 'add-flows', bridge, ofspec_filename])
|
|
|
|
# now that we updated the bridge with flow rules delete the file.
|
|
os.remove(ofspec_filename)
|
|
|
|
return "SUCCESS: successfully configured bridge as per the latest routing policies update with " \
|
|
"sequence no: %s"%sequence_no
|
|
|
|
except Exception,e:
|
|
error_message = "An unexpected error occurred while configuring bridge " + bridge + \
|
|
" as per latest VPC's routing policy update with sequence number %s." %sequence_no
|
|
logging.debug(error_message + " due to " + str(e))
|
|
if os.path.isfile(ofspec_filename):
|
|
os.remove(ofspec_filename)
|
|
raise error_message
|
|
|
|
# configures bridge L2 flooding rules stored in table=2. Single bridge is used for all the tiers of VPC. So controlled
|
|
# flooding is required to restrict the broadcast to only to the ports (vifs and tunnel interfaces) in the tier. Also
|
|
# packets arrived from the tunnel ports should not be flooded on the other tunnel ports.
|
|
def update_flooding_rules_on_port_plug_unplug(bridge, interface, command, if_network_id):
|
|
|
|
class tier_ports:
|
|
tier_vif_ofports = []
|
|
tier_tunnelif_ofports = []
|
|
tier_all_ofports = []
|
|
|
|
logging.debug("Updating the flooding rules on bridge " + bridge + " as interface %s" %interface +
|
|
" is %s"%command + " now.")
|
|
try:
|
|
|
|
if not os.path.exists('/var/run/cloud'):
|
|
os.makedirs('/var/run/cloud')
|
|
|
|
# create a temporary file to store OpenFlow rules corresponding L2 flooding table
|
|
ofspec_filename = "/var/run/cloud/" + bridge + "-" +interface + "-" + command + ".ofspec"
|
|
ofspec = open(ofspec_filename, 'w+')
|
|
|
|
all_tiers = dict()
|
|
|
|
vsctl_output = do_cmd([VSCTL_PATH, 'list-ports', bridge])
|
|
ports = vsctl_output.split('\n')
|
|
|
|
for port in ports:
|
|
|
|
if_ofport = do_cmd([VSCTL_PATH, 'get', 'Interface', port, 'ofport'])
|
|
|
|
if port.startswith('vif'):
|
|
network_id = get_network_id_for_vif(port)
|
|
if network_id not in all_tiers.keys():
|
|
all_tiers[network_id] = tier_ports()
|
|
tier_ports_info = all_tiers[network_id]
|
|
tier_ports_info.tier_vif_ofports.append(if_ofport)
|
|
tier_ports_info.tier_all_ofports.append(if_ofport)
|
|
all_tiers[network_id] = tier_ports_info
|
|
|
|
if port.startswith('t'):
|
|
network_id = get_network_id_for_tunnel_port(port)[1:-1]
|
|
if network_id not in all_tiers.keys():
|
|
all_tiers[network_id] = tier_ports()
|
|
tier_ports_info = all_tiers[network_id]
|
|
tier_ports_info.tier_tunnelif_ofports.append(if_ofport)
|
|
tier_ports_info.tier_all_ofports.append(if_ofport)
|
|
all_tiers[network_id] = tier_ports_info
|
|
|
|
for network_id, tier_ports_info in all_tiers.items():
|
|
if len(tier_ports_info.tier_all_ofports) == 1 :
|
|
continue
|
|
|
|
# for a packet arrived from tunnel port, flood only on to VIF ports connected to bridge for this tier
|
|
for port in tier_ports_info.tier_tunnelif_ofports:
|
|
action = "".join("output:%s," %ofport for ofport in tier_ports_info.tier_vif_ofports)[:-1]
|
|
ofspec.write("table=%s " %L2_FLOOD_TABLE + " priority=1100 in_port=%s " %port +
|
|
"actions=%s " %action + "\n")
|
|
|
|
# for a packet arrived from VIF port send on all VIF and tunnel ports corresponding to the tier excluding
|
|
# the port on which packet arrived
|
|
for port in tier_ports_info.tier_vif_ofports:
|
|
tier_all_ofports_copy = copy.copy(tier_ports_info.tier_all_ofports)
|
|
tier_all_ofports_copy.remove(port)
|
|
action = "".join("output:%s," %ofport for ofport in tier_all_ofports_copy)[:-1]
|
|
ofspec.write("table=%s " %L2_FLOOD_TABLE + " priority=1100 in_port=%s " %port +
|
|
"actions=%s " %action + "\n")
|
|
|
|
# add a default rule in L2 flood table to drop packet
|
|
ofspec.write("table=%s " %L2_FLOOD_TABLE + " priority=0 actions=drop")
|
|
|
|
# First flush current L2 flooding table before re-populating the tables
|
|
del_flows(bridge, table=L2_FLOOD_TABLE)
|
|
|
|
ofspec.seek(0)
|
|
logging.debug("Adding below flows rules L2 flooding table: \n" + ofspec.read())
|
|
ofspec.close()
|
|
|
|
# update bridge with the flow-rules for broadcast rules added in the file in one attempt
|
|
do_cmd([OFCTL_PATH, 'add-flows', bridge, ofspec_filename])
|
|
|
|
# now that we updated the bridge with flow rules delete the file.
|
|
os.remove(ofspec_filename)
|
|
|
|
logging.debug("successfully configured bridge %s as per the latest flooding rules " %bridge)
|
|
|
|
except Exception,e:
|
|
if os.path.isfile(ofspec_filename):
|
|
os.remove(ofspec_filename)
|
|
error_message = "An unexpected error occurred while updating the flooding rules for the bridge " + \
|
|
bridge + " when interface " + " %s" %interface + " is %s" %command
|
|
logging.debug(error_message + " due to " + str(e))
|
|
raise error_message
|
|
|
|
|
|
def is_regular_tunnel_network(xs_nw_uuid):
|
|
cmd = [XE_PATH,"network-param-get", "uuid=%s" % xs_nw_uuid, "param-name=other-config",
|
|
"param-key=is-ovs-tun-network", "--minimal"]
|
|
logging.debug("Executing:%s", cmd)
|
|
pipe = subprocess.PIPE
|
|
proc = subprocess.Popen(cmd, shell=False, stdin=pipe, stdout=pipe,
|
|
stderr=pipe, close_fds=True)
|
|
ret_code = proc.wait()
|
|
if ret_code:
|
|
return False
|
|
|
|
output = proc.stdout.read()
|
|
if output.endswith('\n'):
|
|
output = output[:-1]
|
|
return output
|
|
|
|
|
|
def is_vpc_network_with_distributed_routing(xs_nw_uuid):
|
|
cmd = [XE_PATH,"network-param-get", "uuid=%s" % xs_nw_uuid, "param-name=other-config",
|
|
"param-key=is-ovs-vpc-distributed-vr-network", "--minimal"]
|
|
logging.debug("Executing:%s", cmd)
|
|
pipe = subprocess.PIPE
|
|
proc = subprocess.Popen(cmd, shell=False, stdin=pipe, stdout=pipe,
|
|
stderr=pipe, close_fds=True)
|
|
ret_code = proc.wait()
|
|
if ret_code:
|
|
return False
|
|
|
|
output = proc.stdout.read()
|
|
if output.endswith('\n'):
|
|
output = output[:-1]
|
|
return output
|