mirror of
https://github.com/Telecominfraproject/wlan-lanforge-scripts.git
synced 2025-11-01 19:28:00 +00:00
558 lines
22 KiB
Python
Executable File
558 lines
22 KiB
Python
Executable File
#!/usr/bin/env python3
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"""
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NAME: ftp_test.py
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PURPOSE:
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will create stations and endpoints to generate and verify layer-4 traffic over an ftp connection.
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find out download/upload time of each client according to file size.
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This script will monitor the bytes-rd attribute of the endpoints.
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SETUP:
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Create a file to be downloaded linux: fallocate -l <size> <name> example fallocate -l 2M ftp_test.txt
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EXAMPLE:
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'./lf_ftp_test.py --ssid "jedway-wap2-x2048-5-3" --passwd "jedway-wpa2-x2048-5-3" --security wpa2 --bands "5G" --direction "Download" \
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--file_size "2MB" --num_stations 2
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INCLUDE_IN_README
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-Jitendrakumar Kushavah
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Copyright 2021 Candela Technologies Inc
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License: Free to distribute and modify. LANforge systems must be licensed.
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"""
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import sys
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import os
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import importlib
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import paramiko
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import argparse
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from datetime import datetime
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import time
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if sys.version_info[0] != 3:
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print("This script requires Python 3")
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exit(1)
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sys.path.append(os.path.join(os.path.abspath(__file__ + "../../../")))
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LFUtils = importlib.import_module("py-json.LANforge.LFUtils")
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lfcli_base = importlib.import_module("py-json.LANforge.lfcli_base")
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LFCliBase = lfcli_base.LFCliBase
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realm = importlib.import_module("py-json.realm")
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Realm = realm.Realm
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ftp_html = importlib.import_module("py-scripts.ftp_html")
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class ftp_test(LFCliBase):
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def __init__(self, lfclient_host="localhost", lfclient_port=8080, radio = "wiphy0", sta_prefix="sta", start_id=0, num_sta= None,
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dut_ssid=None,dut_security=None, dut_passwd=None, file_size=None, band=None,
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upstream="eth1",_debug_on=False, _exit_on_error=False, _exit_on_fail=False, direction= None,user='lanforge'):
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super().__init__(lfclient_host, lfclient_port, _debug=_debug_on, _exit_on_fail=_exit_on_fail)
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print("Test is about to start")
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self.host = lfclient_host
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self.port = lfclient_port
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self.radio = radio
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self.upstream = upstream
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self.sta_prefix = sta_prefix
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self.sta_start_id = start_id
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self.num_sta = num_sta
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self.ssid = dut_ssid
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self.security = dut_security
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self.password = dut_passwd
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self.requests_per_ten = 1
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self.band=band
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self.file_size=file_size
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self.direction=direction
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self.local_realm = realm.Realm(lfclient_host=self.host, lfclient_port=self.port)
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self.station_profile = self.local_realm.new_station_profile()
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self.cx_profile = self.local_realm.new_http_profile()
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self.port_util = realm.PortUtils(self.local_realm)
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self.cx_profile.requests_per_ten = self.requests_per_ten
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self.user = user
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print("Test is Initialized")
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def set_values(self):
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#This method will set values according user input
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if self.band == "5G":
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self.radio = ["wiphy0"] # need to pass in the radios
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if self.file_size == "2MB":
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#providing time duration for Pass or fail criteria
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self.duration = self.convert_min_in_time(1)
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elif self.file_size == "500MB":
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self.duration = self.convert_min_in_time(1) # 30
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elif self.file_size == "1000MB":
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self.duration = self.convert_min_in_time(1) # 50
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else:
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self.duration = self.convert_min_in_time(10) # 10
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elif self.band == "2.4G":
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self.radio = ["wiphy0"] # need to pass in the radios
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if self.file_size == "2MB":
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self.duration = self.convert_min_in_time(1) # 2
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elif self.file_size == "500MB":
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self.duration = self.convert_min_in_time(1) # 60
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elif self.file_size == "1000MB":
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self.duration = self.convert_min_in_time(1) # 80
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else:
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self.duration = self.convert_min_in_time(10) # 10
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elif self.band == "Both":
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self.radio = ["wiphy0", "wiphy0"] # need to pass in the radios
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#if Both then number of stations are half for 2.4G and half for 5G
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self.num_sta = self.num_sta // 2
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print(self.num_sta)
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if self.file_size == "2MB":
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self.duration = self.convert_min_in_time(1) # 2
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elif self.file_size == "500MB":
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self.duration = self.convert_min_in_time(1) # 60
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elif self.file_size == "1000MB":
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self.duration = self.convert_min_in_time(1) # 80
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else:
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self.duration = self.convert_min_in_time(10) # 10
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self.file_size_bytes=int(self.convert_file_size_in_Bytes(self.file_size))
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def precleanup(self):
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self.count=0
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#delete everything in the GUI before starting the script
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'''try:
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self.local_realm.load("BLANK")
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except:
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print("Couldn't load 'BLANK' Test configurations")
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'''
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for rad in self.radio:
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if rad == "wiphy0":
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#select mode(All stations will connects to 5G)
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self.station_profile.mode = 10
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self.count=self.count+1
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elif rad == "wiphy0": # This probably is not the best selection mode
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# select mode(All stations will connects to 2.4G)
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self.station_profile.mode = 6
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self.count = self.count + 1
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#check Both band if both band then for 2.4G station id start with 20
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if self.count == 2:
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self.sta_start_id = self.num_sta
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self.num_sta = 2 * (self.num_sta)
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#if Both band then first 20 stations will connects to 5G
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self.station_profile.mode = 10
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self.cx_profile.cleanup()
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#create station list with sta_id 20
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self.station_list1 = LFUtils.portNameSeries(prefix_=self.sta_prefix, start_id_=self.sta_start_id,
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end_id_=self.num_sta - 1, padding_number_=10000,
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radio=rad)
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#cleanup station list which started sta_id 20
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self.station_profile.cleanup(self.station_list1, debug_=self.debug)
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LFUtils.wait_until_ports_disappear(base_url=self.lfclient_url,
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port_list=self.station_list,
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debug=self.debug)
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return
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#clean layer4 ftp traffic
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self.cx_profile.cleanup()
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self.station_list = LFUtils.portNameSeries(prefix_=self.sta_prefix, start_id_=self.sta_start_id,
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end_id_=self.num_sta - 1, padding_number_=10000,
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radio=rad)
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#cleans stations
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self.station_profile.cleanup(self.station_list , delay=1, debug_=self.debug)
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LFUtils.wait_until_ports_disappear(base_url=self.lfclient_url,
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port_list=self.station_list,
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debug=self.debug)
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time.sleep(1)
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print("precleanup done")
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def build(self):
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#set ftp
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self.port_util.set_ftp(port_name=self.local_realm.name_to_eid(self.upstream)[2], resource=1, on=True)
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for rad in self.radio:
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#station build
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self.station_profile.use_security(self.security, self.ssid, self.password)
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self.station_profile.set_number_template("00")
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self.station_profile.set_command_flag("add_sta", "create_admin_down", 1)
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self.station_profile.set_command_param("set_port", "report_timer", 1500)
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self.station_profile.set_command_flag("set_port", "rpt_timer", 1)
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self.station_profile.create(radio=rad, sta_names_=self.station_list, debug=self.debug)
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self.local_realm.wait_until_ports_appear(sta_list=self.station_list)
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self.station_profile.admin_up()
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if self.local_realm.wait_for_ip(self.station_list):
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self._pass("All stations got IPs")
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else:
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self._fail("Stations failed to get IPs")
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exit(1)
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#building layer4
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self.cx_profile.direction ="dl"
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self.cx_profile.dest = "/dev/null"
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print('DIRECTION',self.direction)
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if self.direction == "Download":
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self.cx_profile.create(ports=self.station_profile.station_names, ftp_ip="10.40.0.1/ftp_test.txt",
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sleep_time=.5,debug_=self.debug,suppress_related_commands_=True, ftp=True, user="lanforge",
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passwd="lanforge", source="")
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elif self.direction == "Upload":
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dict_sta_and_ip = {}
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#data from GUI for find out ip addr of each station
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data = self.json_get("ports/list?fields=IP")
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# This loop for find out proper ip addr and station name
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for i in self.station_list:
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for j in data['interfaces']:
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for k in j:
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if i == k:
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dict_sta_and_ip[k] = j[i]['ip']
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#list of ip addr of all stations
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ip = list(dict_sta_and_ip.values())
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eth_list = []
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client_list = []
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#list of all stations
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for i in range(len(self.station_list)):
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client_list.append(self.station_list[i][4:])
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#list of upstream port
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eth_list.append(self.upstream)
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#create layer for connection for upload
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for client_num in range(len(self.station_list)):
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self.cx_profile.create(ports=eth_list, ftp_ip=ip[client_num] + "/ftp_test_upload.txt", sleep_time=.5,
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debug_=self.debug, suppress_related_commands_=True, ftp=True,
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user="lanforge", passwd="lanforge",
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source="", upload_name=client_list[client_num])
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#check Both band present then build stations with another station list
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if self.count == 2:
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self.station_list = self.station_list1
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# if Both band then another 20 stations will connects to 2.4G
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self.station_profile.mode = 6
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print("Test Build done")
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def start(self, print_pass=False, print_fail=False):
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for rad in self.radio:
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self.cx_profile.start_cx()
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print("Test Started")
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def stop(self):
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self.cx_profile.stop_cx()
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self.station_profile.admin_down()
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def postcleanup(self):
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self.cx_profile.cleanup()
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self.local_realm.load("BLANK")
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self.station_profile.cleanup(self.station_profile.station_names, delay=1, debug_=self.debug)
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LFUtils.wait_until_ports_disappear(base_url=self.lfclient_url, port_list=self.station_profile.station_names,
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debug=self.debug)
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#Create file for given file size
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def file_create(self):
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if os.path.isfile("/home/lanforge/ftp_test.txt"):
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os.remove("/home/lanforge/ftp_test.txt")
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os.system("fallocate -l " +self.file_size +" /home/lanforge/ftp_test.txt")
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print("File creation done", self.file_size)
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#convert file size MB or GB into Bytes
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def convert_file_size_in_Bytes(self,size):
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if (size.endswith("MB")) or (size.endswith("Mb")) or (size.endswith("GB")) or (size.endswith("Gb")):
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if (size.endswith("MB")) or (size.endswith("Mb")):
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return float(size[:-2]) * 10**6
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elif (size.endswith("GB")) or (size.endswith("Gb")):
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return float(size[:-2]) * 10**9
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def my_monitor(self,time1):
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#data in json format
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data = self.json_get("layer4/list?fields=bytes-rd")
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print("layer4/list?fields=bytes-read: {}".format(data))
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#list of layer 4 connections name
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self.data1 = []
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for i in range(self.num_sta):
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if self.num_sta == 1:
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# the station num is 1 , yet the station is 0
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print("i: {} self.num_sta: {}".format(i,self.num_sta))
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print("data['endpoint'][{}]: {}".format(i,data['endpoint']))
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print("data list: {}".format((str(list(data['endpoint'].keys())))[2:-2]))
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print("data list: {}".format((str(list(data['endpoint'].keys())))[2:-2]))
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#self.data1.append((str(list(data['endpoint']['name']))))
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self.data1.append((str((data['endpoint']['name']))))
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else:
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# the station num is 1 , yet the station is 0
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print("i: {} self.num_sta: {}".format(i,self.num_sta))
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print("data['endpoint'][{}]: {}".format(i,data['endpoint'][i]))
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print("data list: {}".format((str(list(data['endpoint'][i].keys())))[2:-2]))
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self.data1.append((str(list(data['endpoint'][i].keys())))[2:-2])
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data2 = self.data1
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print("data1: {}".format(self.data1))
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print("data2: {}".format(data2))
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list_of_time = []
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list1 = []
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list2 = []
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for i in range(self.num_sta):
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list_of_time.append(0)
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print("list_of_time: {}".format(list_of_time))
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num_sta_finished = 0
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while list_of_time.count(0) != 0:
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#run script upto given time
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if str(datetime.now()- time1) >= self.duration:
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break
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for i in range(self.num_sta):
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data = self.json_get("layer4/list?fields=bytes-rd")
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#print("data from bytes-rd: {}".format(data))
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if self.num_sta == 1:
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#reading uc-avg data in json format
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uc_avg= self.json_get("layer4/list?fields=uc-avg")
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#print("layer4/list?fields=uc-avg: {}".format(uc_avg))
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if data['endpoint']['bytes-rd'] <= self.file_size_bytes:
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data = self.json_get("layer4/list?fields=bytes-rd")
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if data['endpoint']['bytes-rd'] >= self.file_size_bytes:
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list1.append(i)
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print("list1: {} list2: {}".format(list1,list2))
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if list1.count(i) == 1:
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list2.append(i)
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list1 = list2
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print("CX_{} list1: {} list2: {}".format(data2[0],list1,list2))
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#stop station after download or upload file with particular size
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self.json_post("/cli-json/set_cx_state", {
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"test_mgr": "default_tm",
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"cx_name": "CX_" + data2[0],
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"cx_state": "STOPPED"
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}, debug_=self.debug)
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list_of_time[i] = round(int(uc_avg['endpoint']['uc-avg'])/1000,1)
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num_sta_finished += 1
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if num_sta_finished >= self.num_sta:
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break
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else:
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#reading uc-avg data in json format
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uc_avg= self.json_get("layer4/list?fields=uc-avg")
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if data['endpoint'][i][data2[i]]['bytes-rd'] <= self.file_size_bytes:
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data = self.json_get("layer4/list?fields=bytes-rd")
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if data['endpoint'][i][data2[i]]['bytes-rd'] >= self.file_size_bytes:
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list1.append(i)
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print("list1: {} list2: {}".format(list1,list2))
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if list1.count(i) == 1:
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list2.append(i)
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list1 = list2
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print("CX_{} list1: {} list2: {}".format(data2[i],list1,list2))
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#stop station after download or upload file with particular size
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self.json_post("/cli-json/set_cx_state", {
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"test_mgr": "default_tm",
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"cx_name": "CX_" + data2[i],
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"cx_state": "STOPPED"
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}, debug_=self.debug)
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list_of_time[i] = round(int(uc_avg['endpoint'][i][data2[i]]['uc-avg'])/1000,1)
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time.sleep(0.5)
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# print(".", end='')
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#return list of download/upload time in seconds
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return list_of_time
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#Method for arrange ftp download/upload time data in dictionary
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def ftp_test_data(self, list_time, pass_fail, bands, file_sizes, directions, num_stations):
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#creating dictionary for single iteration
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create_dict={}
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create_dict["band"] = self.band
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create_dict["direction"] = self.direction
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create_dict["file_size"] = self.file_size
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create_dict["time"] = list_time
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create_dict["duration"] = self.time_test
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create_dict["result"] = pass_fail
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create_dict["bands"] = bands
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create_dict["file_sizes"] = file_sizes
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create_dict["directions"] = directions
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create_dict["num_stations"] = num_stations
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return create_dict
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#Method for AP reboot
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def ap_reboot(self, ip, user, pswd):
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print("starting AP reboot")
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# creating shh client object we use this object to connect to router
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ssh = paramiko.SSHClient()
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# automatically adds the missing host key
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ssh.set_missing_host_key_policy(paramiko.AutoAddPolicy())
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ssh.connect(ip, port=22, username=user, password=pswd, banner_timeout=600)
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stdin, stdout, stderr = ssh.exec_command('reboot')
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output = stdout.readlines()
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ssh.close()
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# print('\n'.join(output))
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time.sleep(180)
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print("AP rebooted")
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def convert_min_in_time(self,total_minutes):
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#saving time in minutus
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self.time_test = total_minutes
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# Get hours with floor division
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hours = total_minutes // 60
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# Get additional minutes with modulus
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minutes = total_minutes % 60
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# Create time as a string
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time_string = str("%d:%02d" % (divmod(total_minutes, 60))) + ":00" + ":000000"
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return time_string
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def pass_fail_check(self,time_list):
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if time_list.count(0) == 0:
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return "Pass"
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else:
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return "Fail"
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def main():
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# This has --mgr, --mgr_port and --debug
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parser = LFCliBase.create_bare_argparse(prog="netgear-ftp", formatter_class=argparse.RawTextHelpFormatter, epilog="About This Script")
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# Adding More Arguments for custom use
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parser.add_argument('--ssid',type=str, help='--ssid', default="TestAP-Jitendra")
|
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parser.add_argument('--passwd',type=str, help='--passwd', default="BLANK")
|
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parser.add_argument('--security', type=str, help='--security', default="open")
|
|
parser.add_argument('--radios',nargs="+",help='--radio to use on LANforge for 5G and 2G', default=["wiphy0"])
|
|
|
|
# Test variables
|
|
parser.add_argument('--bands', nargs="+", help='--bands defaults ["5G","2.4G","Both"]', default=["5G","2.4G","Both"])
|
|
parser.add_argument('--directions', nargs="+", help='--directions defaults ["Download","Upload"]', default=["Download","Upload"])
|
|
parser.add_argument('--file_sizes', nargs="+", help='--File Size defaults ["2MB","500MB","1000MB"]', default=["2MB","500MB","1000MB"])
|
|
parser.add_argument('--num_stations', type=int, help='--num_client is number of stations', default=40)
|
|
parser.add_argument('--user', default='lanforge')
|
|
|
|
args = parser.parse_args()
|
|
|
|
# 1st time stamp for test duration
|
|
time_stamp1 = datetime.now()
|
|
|
|
#use for creating ftp_test dictionary
|
|
iteraration_num=0
|
|
|
|
#empty dictionary for whole test data
|
|
ftp_data={}
|
|
|
|
#For all combinations ftp_data of directions, file size and client counts, run the test
|
|
for band in args.bands:
|
|
for direction in args.directions:
|
|
for file_size in args.file_sizes:
|
|
# Start Test
|
|
obj = ftp_test(lfclient_host=args.mgr,
|
|
lfclient_port=args.mgr_port,
|
|
dut_ssid=args.ssid,
|
|
dut_passwd=args.passwd,
|
|
dut_security=args.security,
|
|
num_sta= args.num_stations,
|
|
band=band,
|
|
file_size=file_size,
|
|
direction=direction,
|
|
user=args.user
|
|
)
|
|
|
|
iteraration_num=iteraration_num+1
|
|
obj.file_create()
|
|
obj.set_values()
|
|
obj.precleanup()
|
|
#if file_size != "2MB":
|
|
#obj.ap_reboot("192.168.213.190","root","Password@123xzsawq@!")
|
|
obj.build()
|
|
if not obj.passes():
|
|
print(obj.get_fail_message())
|
|
exit(1)
|
|
|
|
#First time stamp
|
|
time1 = datetime.now()
|
|
|
|
obj.start(False, False)
|
|
|
|
#return list of download/upload completed time stamp
|
|
time_list = obj.my_monitor(time1)
|
|
|
|
# check pass or fail
|
|
pass_fail = obj.pass_fail_check(time_list)
|
|
|
|
#dictionary of whole data
|
|
ftp_data[iteraration_num] = obj.ftp_test_data(time_list,pass_fail,args.bands,args.file_sizes,args.directions,args.num_stations)
|
|
|
|
obj.stop()
|
|
obj.postcleanup()
|
|
|
|
#2nd time stamp for test duration
|
|
time_stamp2 = datetime.now()
|
|
|
|
#total time for test duration
|
|
test_duration = str(time_stamp2 - time_stamp1)[:-7]
|
|
|
|
print("FTP Test Data", ftp_data)
|
|
|
|
date = str(datetime.now()).split(",")[0].replace(" ", "-").split(".")[0]
|
|
|
|
test_setup_info = {
|
|
"AP Name": "vap5",
|
|
"SSID": args.ssid,
|
|
"Number of Stations": args.num_stations,
|
|
"Test Duration": test_duration
|
|
}
|
|
|
|
input_setup_info = {
|
|
"IP": "192.168.213.190" ,
|
|
"user": "root",
|
|
"Contact": "support@candelatech.com"
|
|
}
|
|
ftp_html.generate_report(ftp_data,
|
|
date,
|
|
test_setup_info,
|
|
input_setup_info,
|
|
graph_path="/home/%s/html-reports/FTP-Test" % args.user)
|
|
|
|
|
|
if __name__ == '__main__':
|
|
main()
|
|
|