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tests: [topojson]Enhance lib/common_config.py to support PIM automation
1. Enhanced lib/common_config.py for common configuration/verification needed for PIM automation 2. Ran it through (black) for expected formatting Signed-off-by: kuldeepkash <kashyapk@vmware.com>
This commit is contained in:
parent
e8cd26fdc5
commit
aafca66993
@ -31,13 +31,14 @@ from re import search as re_search
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from tempfile import mkdtemp
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import os
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import io
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import sys
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import traceback
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import socket
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import ipaddress
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import platform
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if sys.version_info[0] > 2:
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import io
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import configparser
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else:
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import StringIO
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@ -256,6 +257,7 @@ def create_common_configuration(
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"bgp": "! BGP Config\n",
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"vrf": "! VRF Config\n",
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"ospf": "! OSPF Config\n",
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"pim": "! PIM Config\n",
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}
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)
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@ -388,6 +390,8 @@ def check_router_status(tgen):
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daemons.append("bgpd")
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if "zebra" in result:
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daemons.append("zebra")
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if "pimd" in result:
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daemons.append("pimd")
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rnode.startDaemons(daemons)
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@ -747,7 +751,14 @@ def start_topology(tgen, daemon=None):
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router.load_config(
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TopoRouter.RD_OSPF, "{}/{}/ospfd.conf".format(TMPDIR, rname)
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)
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# Starting routers
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if daemon and "pimd" in daemon:
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# Loading empty pimd.conf file to router, to start the pim deamon
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router.load_config(
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TopoRouter.RD_PIM, "{}/{}/pimd.conf".format(TMPDIR, rname)
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)
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# Starting routers
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logger.info("Starting all routers once topology is created")
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tgen.start_router()
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@ -834,9 +845,201 @@ def topo_daemons(tgen, topo):
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if "ospf" in topo["routers"][rtr] and "ospfd" not in daemon_list:
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daemon_list.append("ospfd")
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for val in topo["routers"][rtr]["links"].values():
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if "pim" in val and "pimd" not in daemon_list:
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daemon_list.append("pimd")
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break
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return daemon_list
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def add_interfaces_to_vlan(tgen, input_dict):
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"""
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Add interfaces to VLAN, we need vlan pakcage to be installed on machine
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* `tgen`: tgen onject
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* `input_dict` : interfaces to be added to vlans
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input_dict= {
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"r1":{
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"vlan":{
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VLAN_1: [{
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intf_r1_s1: {
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"ip": "10.1.1.1",
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"subnet": "255.255.255.0
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}
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}]
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}
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}
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}
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add_interfaces_to_vlan(tgen, input_dict)
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"""
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router_list = tgen.routers()
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for dut in input_dict.keys():
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rnode = tgen.routers()[dut]
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if "vlan" in input_dict[dut]:
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for vlan, interfaces in input_dict[dut]["vlan"].items():
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for intf_dict in interfaces:
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for interface, data in intf_dict.items():
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# Adding interface to VLAN
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cmd = "vconfig add {} {}".format(interface, vlan)
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logger.info("[DUT: %s]: Running command: %s", dut, cmd)
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rnode.run(cmd)
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vlan_intf = "{}.{}".format(interface, vlan)
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ip = data["ip"]
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subnet = data["subnet"]
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# Bringing interface up
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cmd = "ip link set up {}".format(vlan_intf)
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logger.info("[DUT: %s]: Running command: %s", dut, cmd)
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rnode.run(cmd)
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# Assigning IP address
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cmd = "ifconfig {} {} netmask {}".format(vlan_intf, ip, subnet)
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logger.info("[DUT: %s]: Running command: %s", dut, cmd)
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rnode.run(cmd)
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def tcpdump_capture_start(
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tgen,
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router,
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intf,
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protocol=None,
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grepstr=None,
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timeout=0,
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options=None,
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cap_file=None,
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background=True,
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):
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"""
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API to capture network packets using tcp dump.
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Packages used :
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Parameters
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----------
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* `tgen`: topogen object.
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* `router`: router on which ping has to be performed.
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* `intf` : interface for capture.
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* `protocol` : protocol for which packet needs to be captured.
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* `grepstr` : string to filter out tcp dump output.
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* `timeout` : Time for which packet needs to be captured.
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* `options` : options for TCP dump, all tcpdump options can be used.
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* `cap_file` : filename to store capture dump.
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* `background` : Make tcp dump run in back ground.
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Usage
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-----
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tcpdump_result = tcpdump_dut(tgen, 'r2', intf, protocol='tcp', timeout=20,
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options='-A -vv -x > r2bgp.txt ')
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Returns
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-------
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1) True for successful capture
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2) errormsg - when tcp dump fails
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"""
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logger.debug("Entering lib API: {}".format(sys._getframe().f_code.co_name))
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rnode = tgen.routers()[router]
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if timeout > 0:
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cmd = "timeout {}".format(timeout)
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else:
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cmd = ""
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cmdargs = "{} tcpdump".format(cmd)
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if intf:
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cmdargs += " -i {}".format(str(intf))
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if protocol:
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cmdargs += " {}".format(str(protocol))
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if options:
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cmdargs += " -s 0 {}".format(str(options))
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if cap_file:
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file_name = os.path.join(LOGDIR, tgen.modname, router, cap_file)
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cmdargs += " -w {}".format(str(file_name))
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# Remove existing capture file
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rnode.run("rm -rf {}".format(file_name))
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if grepstr:
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cmdargs += ' | grep "{}"'.format(str(grepstr))
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logger.info("Running tcpdump command: [%s]", cmdargs)
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if not background:
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rnode.run(cmdargs)
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else:
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rnode.run("nohup {} & /dev/null 2>&1".format(cmdargs))
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# Check if tcpdump process is running
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if background:
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result = rnode.run("pgrep tcpdump")
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logger.debug("ps -ef | grep tcpdump \n {}".format(result))
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if not result:
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errormsg = "tcpdump is not running {}".format("tcpdump")
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return errormsg
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else:
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logger.info("Packet capture started on %s: interface %s", router, intf)
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logger.debug("Exiting lib API: {}".format(sys._getframe().f_code.co_name))
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return True
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def tcpdump_capture_stop(tgen, router):
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"""
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API to capture network packets using tcp dump.
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Packages used :
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Parameters
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----------
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* `tgen`: topogen object.
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* `router`: router on which ping has to be performed.
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* `intf` : interface for capture.
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* `protocol` : protocol for which packet needs to be captured.
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* `grepstr` : string to filter out tcp dump output.
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* `timeout` : Time for which packet needs to be captured.
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* `options` : options for TCP dump, all tcpdump options can be used.
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* `cap2file` : filename to store capture dump.
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* `bakgrnd` : Make tcp dump run in back ground.
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Usage
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-----
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tcpdump_result = tcpdump_dut(tgen, 'r2', intf, protocol='tcp', timeout=20,
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options='-A -vv -x > r2bgp.txt ')
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Returns
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-------
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1) True for successful capture
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2) errormsg - when tcp dump fails
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"""
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logger.debug("Entering lib API: {}".format(sys._getframe().f_code.co_name))
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rnode = tgen.routers()[router]
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# Check if tcpdump process is running
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result = rnode.run("ps -ef | grep tcpdump")
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logger.debug("ps -ef | grep tcpdump \n {}".format(result))
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if not re_search(r"{}".format("tcpdump"), result):
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errormsg = "tcpdump is not running {}".format("tcpdump")
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return errormsg
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else:
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ppid = tgen.net.nameToNode[rnode.name].pid
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rnode.run("set +m; pkill -P %s tcpdump &> /dev/null" % ppid)
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logger.info("Stopped tcpdump capture")
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logger.debug("Exiting lib API: {}".format(sys._getframe().f_code.co_name))
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return True
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#############################################
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# Common APIs, will be used by all protocols
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#############################################
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@ -1136,11 +1339,11 @@ def generate_ips(network, no_of_ips):
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"""
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Returns list of IPs.
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based on start_ip and no_of_ips
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* `network` : from here the ip will start generating,
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start_ip will be
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* `no_of_ips` : these many IPs will be generated
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"""
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ipaddress_list = []
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if type(network) is not list:
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network = [network]
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@ -1292,7 +1495,6 @@ def retry(attempts=3, wait=2, return_is_str=True, initial_wait=0, return_is_dict
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_wait = kwargs.pop("wait", wait)
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_attempts = kwargs.pop("attempts", attempts)
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_attempts = int(_attempts)
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expected = True
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if _attempts < 0:
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raise ValueError("attempts must be 0 or greater")
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@ -1302,12 +1504,10 @@ def retry(attempts=3, wait=2, return_is_str=True, initial_wait=0, return_is_dict
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_return_is_str = kwargs.pop("return_is_str", return_is_str)
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_return_is_dict = kwargs.pop("return_is_str", return_is_dict)
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_expected = kwargs.setdefault("expected", True)
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kwargs.pop("expected")
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for i in range(1, _attempts + 1):
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try:
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_expected = kwargs.setdefault("expected", True)
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if _expected is False:
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expected = _expected
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kwargs.pop("expected")
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ret = func(*args, **kwargs)
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logger.debug("Function returned %s", ret)
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if _return_is_str and isinstance(ret, bool) and _expected:
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@ -1319,11 +1519,11 @@ def retry(attempts=3, wait=2, return_is_str=True, initial_wait=0, return_is_dict
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if _return_is_dict and isinstance(ret, dict):
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return ret
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if _attempts == i and expected:
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if _attempts == i:
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generate_support_bundle()
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return ret
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except Exception as err:
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if _attempts == i and expected:
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if _attempts == i:
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generate_support_bundle()
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logger.info("Max number of attempts (%r) reached", _attempts)
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raise
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@ -1365,6 +1565,17 @@ def step(msg, reset=False):
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_step(msg, reset)
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def do_countdown(secs):
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"""
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Countdown timer display
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"""
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for i in range(secs, 0, -1):
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sys.stdout.write("{} ".format(str(i)))
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sys.stdout.flush()
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sleep(1)
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return
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#############################################
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# These APIs, will used by testcase
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#############################################
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@ -2854,11 +3065,7 @@ def verify_rib(
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errormsg = (
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"[DUT: {}]: tag value {}"
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" is not matched for"
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" route {} in RIB \n".format(
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dut,
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_tag,
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st_rt,
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)
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" route {} in RIB \n".format(dut, _tag, st_rt,)
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)
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return errormsg
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@ -2875,11 +3082,7 @@ def verify_rib(
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errormsg = (
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"[DUT: {}]: metric value "
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"{} is not matched for "
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"route {} in RIB \n".format(
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dut,
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metric,
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st_rt,
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)
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"route {} in RIB \n".format(dut, metric, st_rt,)
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)
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return errormsg
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@ -3918,3 +4121,215 @@ def required_linux_kernel_version(required_version):
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)
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return error_msg
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return True
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def iperfSendIGMPJoin(
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tgen, server, bindToAddress, l4Type="UDP", join_interval=1, inc_step=0, repeat=0
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):
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"""
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Run iperf to send IGMP join and traffic
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Parameters:
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-----------
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* `tgen` : Topogen object
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* `l4Type`: string, one of [ TCP, UDP ]
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* `server`: iperf server, from where IGMP join would be sent
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* `bindToAddress`: bind to <host>, an interface or multicast
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address
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* `join_interval`: seconds between periodic bandwidth reports
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* `inc_step`: increamental steps, by default 0
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* `repeat`: Repetition of group, by default 0
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returns:
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--------
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errormsg or True
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"""
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logger.debug("Entering lib API: {}".format(sys._getframe().f_code.co_name))
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rnode = tgen.routers()[server]
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iperfArgs = "iperf -s "
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# UDP/TCP
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if l4Type == "UDP":
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iperfArgs += "-u "
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iperfCmd = iperfArgs
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# Group address range to cover
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if bindToAddress:
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if type(bindToAddress) is not list:
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Address = []
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start = ipaddress.IPv4Address(frr_unicode(bindToAddress))
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Address = [start]
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next_ip = start
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count = 1
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while count < repeat:
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next_ip += inc_step
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Address.append(next_ip)
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count += 1
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bindToAddress = Address
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for bindTo in bindToAddress:
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iperfArgs = iperfCmd
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iperfArgs += "-B %s " % bindTo
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# Join interval
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if join_interval:
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iperfArgs += "-i %d " % join_interval
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iperfArgs += " &>/dev/null &"
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# Run iperf command to send IGMP join
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logger.debug("[DUT: {}]: Running command: [{}]".format(server, iperfArgs))
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output = rnode.run("set +m; {} sleep 0.5".format(iperfArgs))
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# Check if iperf process is running
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if output:
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pid = output.split()[1]
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rnode.run("touch /var/run/frr/iperf_server.pid")
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rnode.run("echo %s >> /var/run/frr/iperf_server.pid" % pid)
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else:
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errormsg = "IGMP join is not sent for {}. Error: {}".format(bindTo, output)
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logger.error(output)
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return errormsg
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logger.debug("Exiting lib API: {}".format(sys._getframe().f_code.co_name))
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return True
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def iperfSendTraffic(
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tgen,
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client,
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bindToAddress,
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ttl,
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time=0,
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l4Type="UDP",
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inc_step=0,
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repeat=0,
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mappedAddress=None,
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):
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"""
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Run iperf to send IGMP join and traffic
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Parameters:
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-----------
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* `tgen` : Topogen object
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* `l4Type`: string, one of [ TCP, UDP ]
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* `client`: iperf client, from where iperf traffic would be sent
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* `bindToAddress`: bind to <host>, an interface or multicast
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address
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* `ttl`: time to live
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* `time`: time in seconds to transmit for
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* `inc_step`: increamental steps, by default 0
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* `repeat`: Repetition of group, by default 0
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* `mappedAddress`: Mapped Interface ip address
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returns:
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--------
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errormsg or True
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"""
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logger.debug("Entering lib API: {}".format(sys._getframe().f_code.co_name))
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rnode = tgen.routers()[client]
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iperfArgs = "iperf -c "
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iperfCmd = iperfArgs
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# Group address range to cover
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if bindToAddress:
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if type(bindToAddress) is not list:
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Address = []
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start = ipaddress.IPv4Address(frr_unicode(bindToAddress))
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Address = [start]
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next_ip = start
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count = 1
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while count < repeat:
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next_ip += inc_step
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Address.append(next_ip)
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count += 1
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bindToAddress = Address
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for bindTo in bindToAddress:
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iperfArgs = iperfCmd
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iperfArgs += "%s " % bindTo
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# Mapped Interface IP
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if mappedAddress:
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iperfArgs += "-B %s " % mappedAddress
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# UDP/TCP
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if l4Type == "UDP":
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iperfArgs += "-u -b 0.012m "
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# TTL
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if ttl:
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iperfArgs += "-T %d " % ttl
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|
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# Time
|
||||
if time:
|
||||
iperfArgs += "-t %d " % time
|
||||
|
||||
iperfArgs += " &>/dev/null &"
|
||||
|
||||
# Run iperf command to send multicast traffic
|
||||
logger.debug("[DUT: {}]: Running command: [{}]".format(client, iperfArgs))
|
||||
output = rnode.run("set +m; {} sleep 0.5".format(iperfArgs))
|
||||
|
||||
# Check if iperf process is running
|
||||
if output:
|
||||
pid = output.split()[1]
|
||||
rnode.run("touch /var/run/frr/iperf_client.pid")
|
||||
rnode.run("echo %s >> /var/run/frr/iperf_client.pid" % pid)
|
||||
else:
|
||||
errormsg = "Multicast traffic is not sent for {}. Error {}".format(
|
||||
bindTo, output
|
||||
)
|
||||
logger.error(output)
|
||||
return errormsg
|
||||
|
||||
logger.debug("Exiting lib API: {}".format(sys._getframe().f_code.co_name))
|
||||
return True
|
||||
|
||||
|
||||
def kill_iperf(tgen, dut=None, action=None):
|
||||
"""
|
||||
Killing iperf process if running for any router in topology
|
||||
Parameters:
|
||||
-----------
|
||||
* `tgen` : Topogen object
|
||||
* `dut` : Any iperf hostname to send igmp prune
|
||||
* `action`: to kill igmp join iperf action is remove_join
|
||||
to kill traffic iperf action is remove_traffic
|
||||
|
||||
Usage
|
||||
----
|
||||
kill_iperf(tgen, dut ="i6", action="remove_join")
|
||||
|
||||
"""
|
||||
|
||||
logger.debug("Entering lib API: {}".format(sys._getframe().f_code.co_name))
|
||||
|
||||
router_list = tgen.routers()
|
||||
for router, rnode in router_list.items():
|
||||
# Run iperf command to send IGMP join
|
||||
pid_client = rnode.run("cat /var/run/frr/iperf_client.pid")
|
||||
pid_server = rnode.run("cat /var/run/frr/iperf_server.pid")
|
||||
if action == "remove_join":
|
||||
pids = pid_server
|
||||
elif action == "remove_traffic":
|
||||
pids = pid_client
|
||||
else:
|
||||
pids = "\n".join([pid_client, pid_server])
|
||||
for pid in pids.split("\n"):
|
||||
pid = pid.strip()
|
||||
if pid.isdigit():
|
||||
cmd = "set +m; kill -9 %s &> /dev/null" % pid
|
||||
logger.debug("[DUT: {}]: Running command: [{}]".format(router, cmd))
|
||||
rnode.run(cmd)
|
||||
|
||||
logger.debug("Exiting lib API: {}".format(sys._getframe().f_code.co_name))
|
||||
|
Loading…
Reference in New Issue
Block a user