blob: 3959b3ab7cc96bacb5bb1b5d692427ae79d83071 [file] [log] [blame]
#!/usr/bin/env python2
# Copyright (c) 2019 Erik Schilling
# ALL RIGHTS RESERVED.
#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
# http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.
import csv
import json
import os
import time
from jinja2 import Environment, FileSystemLoader
from emuvim.api.osm.pre_configured_osm import PreConfiguredOSM
from emuvim.api.util.docker_utils import build_dockerfile_dir
# sys.path.append('/vim-emu/pycharm-debug.egg')
# import pydevd
# pydevd.settrace('10.0.2.2', port=21001, stdoutToServer=True, stderrToServer=True, suspend=False)
prefix = os.path.dirname(os.path.abspath(__file__))
build_dockerfile_dir('../images/trafficdebug/', 'trafficdebug')
env = Environment(
loader=FileSystemLoader(os.path.join(prefix, '../templates/'))
)
template = env.get_template('vnffg-nsd.yaml')
IPERF_TIME = 30
def run_iperf(node, target_ip, target_port):
vnffg_iperf_out = node.cmd('iperf3 -J -t %d -c %s -p %d' % (IPERF_TIME, target_ip, target_port))
print(vnffg_iperf_out)
vnffg_iperf = json.loads(vnffg_iperf_out)
vnffg_rtt = vnffg_iperf['end']['streams'][0]['sender']['mean_rtt']
vnffg_bits_per_second = vnffg_iperf['end']['sum_received']['bits_per_second']
return vnffg_rtt, vnffg_bits_per_second
def main():
with open('vnffg-%d.csv' % time.time(), 'w') as csvfile:
fieldnames = ['n', 'deploy', 'vnffg_iperf_rtt', 'vnffg_iperf_bps',
'normal_iperf_rtt', 'normal_iperf_bps', 'delete']
writer = csv.DictWriter(csvfile, fieldnames=fieldnames)
writer.writeheader()
# vim-emu increases the subnet ip part by 1 for each run
subnet = 0
for n in range(1, 15 + 1):
# render NSD template for current iteration
with open(os.path.join(prefix, '../autogenerated/vnffg-nsd/vnffg-nsd.yml'), 'w') as f:
f.write(template.render(n=n, subnet=subnet))
with PreConfiguredOSM(osm_version='master') as osm:
osm.onboard_vnfd('../vnfs/vnffg')
nsd_id = osm.onboard_nsd('../autogenerated/vnffg-nsd')
ns_create = time.time()
osm.ns_create('vnffg-%d' % n, nsd_id)
osm.ns_wait_until_all_in_status('running')
ns_deploy_done = time.time()
# ensure that port chains are created, they are not reported by the API.
time.sleep(60)
first_name = 'dc1_vnffg-%d-1--1' % n
last_name = 'dc1_vnffg-%d-%d--1' % (n, n + 1)
first_node = osm.api.compute.find_server_by_name_or_id(first_name).emulator_compute
last_node = osm.api.compute.find_server_by_name_or_id(last_name).emulator_compute
last_node.cmd('iperf3 -s -p 80 > /dev/null &')
last_node.cmd('iperf3 -s -p 81 > /dev/null &')
# give iperf3 servers time to start up
time.sleep(1)
target_ip = '10.0.%d.%d' % (subnet, n + 2)
vnffg_rtt, vnffg_bits_per_second = run_iperf(first_node, target_ip, 80)
normal_rtt, normal_bits_per_second = run_iperf(first_node, target_ip, 81)
ns_delete = time.time()
for ns in osm.ns_list():
osm.ns_delete(ns['id'])
osm.ns_wait_until_all_in_status('terminated')
ns_delete_done = time.time()
measurement = {
'n': n,
'deploy': ns_deploy_done - ns_create,
'vnffg_iperf_rtt': vnffg_rtt,
'vnffg_iperf_bps': vnffg_bits_per_second,
'normal_iperf_rtt': normal_rtt,
'normal_iperf_bps': normal_bits_per_second,
'delete': ns_delete_done - ns_delete
}
writer.writerow(measurement)
csvfile.flush()
subnet += 1
if __name__ == '__main__':
main()