kopia lustrzana https://github.com/espressif/esp-idf
476 wiersze
15 KiB
Python
476 wiersze
15 KiB
Python
# SPDX-FileCopyrightText: 2022 Espressif Systems (Shanghai) CO LTD
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# SPDX-License-Identifier: Unlicense OR CC0-1.0
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# !/usr/bin/env python3
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# this file defines some functions for testing cli and br under pytest framework
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import re
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import socket
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import struct
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import subprocess
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import time
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from typing import Tuple, Union
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import netifaces
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import pexpect
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from pytest_embedded_idf.dut import IdfDut
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def reset_thread(dut:IdfDut) -> None:
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dut.write(' ')
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dut.write('state')
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clean_buffer(dut)
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wait(dut, 1)
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dut.write('factoryreset')
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dut.expect('OpenThread attached to netif', timeout=20)
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dut.write(' ')
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dut.write('state')
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# config thread
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def config_thread(dut:IdfDut, model:str, dataset:str='0') -> Union[str, None]:
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if model == 'random':
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dut.write('dataset init new')
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dut.expect('Done', timeout=5)
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dut.write('dataset commit active')
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dut.expect('Done', timeout=5)
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dut.write('ifconfig up')
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dut.expect('Done', timeout=5)
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dut.write('dataset active -x') # get dataset
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dut_data = dut.expect(r'\n(\w{212})\r', timeout=5)[1].decode()
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return str(dut_data)
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if model == 'appointed':
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tmp = 'dataset set active ' + str(dataset)
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dut.write(tmp)
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dut.expect('Done', timeout=5)
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dut.write('ifconfig up')
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dut.expect('Done', timeout=5)
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return None
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return None
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# get the mleid address of the thread
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def get_mleid_addr(dut:IdfDut) -> str:
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dut_adress = ''
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clean_buffer(dut)
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dut.write('ipaddr mleid')
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dut_adress = dut.expect(r'\n((?:\w+:){7}\w+)\r', timeout=5)[1].decode()
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return dut_adress
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# get the rloc address of the thread
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def get_rloc_addr(dut:IdfDut) -> str:
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dut_adress = ''
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clean_buffer(dut)
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dut.write('ipaddr rloc')
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dut_adress = dut.expect(r'\n((?:\w+:){7}\w+)\r', timeout=5)[1].decode()
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return dut_adress
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# get the linklocal address of the thread
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def get_linklocal_addr(dut:IdfDut) -> str:
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dut_adress = ''
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clean_buffer(dut)
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dut.write('ipaddr linklocal')
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dut_adress = dut.expect(r'\n((?:\w+:){7}\w+)\r', timeout=5)[1].decode()
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return dut_adress
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# get the global unicast address of the thread:
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def get_global_unicast_addr(dut:IdfDut, br:IdfDut) -> str:
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dut_adress = ''
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clean_buffer(br)
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br.write('br omrprefix')
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omrprefix = br.expect(r'\n((?:\w+:){4}):/\d+\r', timeout=5)[1].decode()
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clean_buffer(dut)
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dut.write('ipaddr')
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dut_adress = dut.expect(r'(%s(?:\w+:){3}\w+)\r' % str(omrprefix), timeout=5)[1].decode()
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return dut_adress
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# start thread
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def start_thread(dut:IdfDut) -> str:
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role = ''
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dut.write('thread start')
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tmp = dut.expect(r'Role detached -> (\w+)\W', timeout=20)[0]
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role = re.findall(r'Role detached -> (\w+)\W', str(tmp))[0]
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return role
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def wait_key_str(leader:IdfDut, child:IdfDut) -> None:
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wait(leader, 1)
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leader.expect('OpenThread attached to netif', timeout=20)
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leader.write(' ')
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leader.write('state')
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child.expect('OpenThread attached to netif', timeout=20)
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child.write(' ')
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child.write('state')
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def config_network(leader:IdfDut, child:IdfDut, leader_name:str, thread_dataset_model:str,
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thread_dataset:str, wifi:IdfDut, wifi_ssid:str, wifi_psk:str) -> str:
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wait_key_str(leader, child)
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return form_network_using_manual_configuration(leader, child, leader_name, thread_dataset_model,
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thread_dataset, wifi, wifi_ssid, wifi_psk)
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# config br and cli manually
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def form_network_using_manual_configuration(leader:IdfDut, child:IdfDut, leader_name:str, thread_dataset_model:str,
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thread_dataset:str, wifi:IdfDut, wifi_ssid:str, wifi_psk:str) -> str:
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reset_thread(leader)
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clean_buffer(leader)
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reset_thread(child)
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clean_buffer(child)
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leader.write('channel 12')
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leader.expect('Done', timeout=5)
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child.write('channel 12')
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child.expect('Done', timeout=5)
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res = '0000'
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if wifi_psk != '0000':
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res = connect_wifi(wifi, wifi_ssid, wifi_psk, 10)[0]
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leader_data = ''
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if thread_dataset_model == 'random':
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leader_data = str(config_thread(leader, 'random'))
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else:
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config_thread(leader, 'appointed', thread_dataset)
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if leader_name == 'br':
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leader.write('bbr enable')
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leader.expect('Done', timeout=5)
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role = start_thread(leader)
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assert role == 'leader'
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if thread_dataset_model == 'random':
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config_thread(child, 'appointed', leader_data)
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else:
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config_thread(child, 'appointed', thread_dataset)
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if leader_name != 'br':
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child.write('bbr enable')
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child.expect('Done', timeout=5)
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role = start_thread(child)
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assert role == 'child'
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wait(leader, 10)
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return res
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# ping of thread
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def ot_ping(dut:IdfDut, target:str, times:int) -> Tuple[int, int]:
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command = 'ping ' + str(target) + ' 0 ' + str(times)
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dut.write(command)
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transmitted = dut.expect(r'(\d+) packets transmitted', timeout=30)[1].decode()
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tx_count = int(transmitted)
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received = dut.expect(r'(\d+) packets received', timeout=30)[1].decode()
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rx_count = int(received)
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return tx_count, rx_count
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# connect Wi-Fi
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def connect_wifi(dut:IdfDut, ssid:str, psk:str, nums:int) -> Tuple[str, int]:
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clean_buffer(dut)
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ip_address = ''
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information = ''
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for order in range(1, nums):
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dut.write('wifi connect -s ' + str(ssid) + ' -p ' + str(psk))
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tmp = dut.expect(pexpect.TIMEOUT, timeout=10)
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if 'sta ip' in str(tmp):
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ip_address = re.findall(r'sta ip: (\w+.\w+.\w+.\w+),', str(tmp))[0]
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information = dut.expect(r'wifi sta (\w+ \w+ \w+)\W', timeout=20)[1].decode()
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if information == 'is connected successfully':
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break
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assert information == 'is connected successfully'
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return ip_address, order
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def reset_host_interface() -> None:
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interface_name = get_host_interface_name()
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flag = False
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try:
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command = 'ifconfig ' + interface_name + ' down'
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subprocess.call(command, shell=True, timeout=5)
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time.sleep(1)
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command = 'ifconfig ' + interface_name + ' up'
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subprocess.call(command, shell=True, timeout=10)
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time.sleep(1)
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flag = True
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finally:
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time.sleep(1)
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assert flag
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def set_interface_sysctl_options() -> None:
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interface_name = get_host_interface_name()
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flag = False
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try:
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command = 'sysctl -w net/ipv6/conf/' + interface_name + '/accept_ra=2'
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subprocess.call(command, shell=True, timeout=5)
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time.sleep(1)
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command = 'sysctl -w net/ipv6/conf/' + interface_name + '/accept_ra_rt_info_max_plen=128'
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subprocess.call(command, shell=True, timeout=5)
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time.sleep(1)
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flag = True
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finally:
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time.sleep(2)
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assert flag
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def init_interface_ipv6_address() -> None:
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interface_name = get_host_interface_name()
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flag = False
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try:
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command = 'ip -6 route | grep ' + interface_name + " | grep ra | awk {'print $1'} | xargs -I {} ip -6 route del {}"
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subprocess.call(command, shell=True, timeout=5)
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time.sleep(0.5)
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subprocess.call(command, shell=True, timeout=5)
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time.sleep(1)
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command = 'ip -6 address show dev ' + interface_name + \
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" scope global | grep 'inet6' | awk {'print $2'} | xargs -I {} ip -6 addr del {} dev " + interface_name
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subprocess.call(command, shell=True, timeout=5)
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time.sleep(1)
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flag = True
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finally:
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time.sleep(1)
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assert flag
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def get_host_interface_name() -> str:
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interfaces = netifaces.interfaces()
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interface_name = [s for s in interfaces if 'wl' in s][0]
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return str(interface_name)
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def clean_buffer(dut:IdfDut) -> None:
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str_length = str(len(dut.expect(pexpect.TIMEOUT, timeout=0.1)))
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dut.expect(r'[\s\S]{%s}' % str(str_length), timeout=10)
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def check_if_host_receive_ra(br:IdfDut) -> bool:
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interface_name = get_host_interface_name()
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clean_buffer(br)
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br.write('br omrprefix')
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omrprefix = br.expect(r'\n((?:\w+:){4}):/\d+\r', timeout=5)[1].decode()
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command = 'ip -6 route | grep ' + str(interface_name)
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out_str = subprocess.getoutput(command)
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print('br omrprefix: ', str(omrprefix))
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print('host route table:\n', str(out_str))
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return str(omrprefix) in str(out_str)
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def host_connect_wifi() -> None:
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command = '. /home/test/wlan_connection_OTTE.sh'
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subprocess.call(command, shell=True, timeout=30)
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time.sleep(5)
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def is_joined_wifi_network(br:IdfDut) -> bool:
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return check_if_host_receive_ra(br)
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thread_ipv6_group = 'ff04:0:0:0:0:0:0:125'
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def check_ipmaddr(dut:IdfDut) -> bool:
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clean_buffer(dut)
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dut.write('ipmaddr')
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info = dut.expect(pexpect.TIMEOUT, timeout=2)
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if thread_ipv6_group in str(info):
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return True
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return False
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def thread_is_joined_group(dut:IdfDut) -> bool:
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command = 'mcast join ' + thread_ipv6_group
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dut.write(command)
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dut.expect('Done', timeout=5)
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order = 0
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while order < 3:
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if check_ipmaddr(dut):
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return True
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dut.write(command)
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wait(dut, 2)
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order = order + 1
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return False
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def host_joined_group(group:str='') -> bool:
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interface_name = get_host_interface_name()
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command = 'netstat -g | grep ' + str(interface_name)
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out_str = subprocess.getoutput(command)
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print('groups:\n', str(out_str))
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return group in str(out_str)
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class udp_parameter:
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def __init__(self, udp_type:str='', addr:str='::', port:int=5090, group:str='', init_flag:bool=False, timeout:float=15.0, udp_bytes:bytes=b''):
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self.udp_type = udp_type
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self.addr = addr
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self.port = port
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self.group = group
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self.init_flag = init_flag
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self.timeout = timeout
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self.udp_bytes = udp_bytes
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def create_host_udp_server(myudp:udp_parameter) -> None:
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interface_name = get_host_interface_name()
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try:
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if myudp.udp_type == 'INET6':
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AF_INET = socket.AF_INET6
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else:
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AF_INET = socket.AF_INET
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print('The host start to create udp server!')
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if_index = socket.if_nametoindex(interface_name)
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sock = socket.socket(AF_INET, socket.SOCK_DGRAM)
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sock.bind((myudp.addr, myudp.port))
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if myudp.udp_type == 'INET6' and myudp.group != '':
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sock.setsockopt(
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socket.IPPROTO_IPV6, socket.IPV6_JOIN_GROUP,
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struct.pack('16si', socket.inet_pton(socket.AF_INET6, myudp.group),
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if_index))
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sock.settimeout(myudp.timeout)
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myudp.init_flag = True
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print('The host start to receive message!')
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myudp.udp_bytes = (sock.recvfrom(1024))[0]
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print('The host has received message: ', myudp.udp_bytes)
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except socket.error:
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print('The host did not receive message!')
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finally:
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print('Close the socket.')
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sock.close()
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def wait(dut:IdfDut, wait_time:float) -> None:
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dut.expect(pexpect.TIMEOUT, timeout=wait_time)
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def get_host_ipv4_address() -> str:
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interface_name = get_host_interface_name()
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command = 'ifconfig ' + interface_name + " | grep -w 'inet' | awk '{print $2}'"
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out_bytes = subprocess.check_output(command, shell=True, timeout=5)
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out_str = out_bytes.decode('utf-8')
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host_ipv4_address = ''
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host_ipv4_address = re.findall(r'((?:\d+.){3}\d+)', str(out_str))[0]
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return host_ipv4_address
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def start_avahi() -> None:
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time.sleep(1)
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command = '/etc/init.d/dbus start'
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subprocess.Popen(command, shell=True)
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time.sleep(5)
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command = 'avahi-daemon'
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subprocess.Popen(command, shell=True)
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time.sleep(5)
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def host_publish_service() -> None:
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command = 'avahi-publish-service testxxx _testxxx._udp 12347 test=1235 dn="for_ci_br_test"'
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subprocess.Popen(command, shell=True)
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time.sleep(2)
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def host_close_service() -> None:
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command = "ps | grep avahi-publish-s | awk '{print $1}'"
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out_bytes = subprocess.check_output(command, shell=True, timeout=5)
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out_str = out_bytes.decode('utf-8')
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the_pid = re.findall(r'(\d+)\n', str(out_str))
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for pid in the_pid:
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command = 'kill -9 ' + pid
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subprocess.call(command, shell=True, timeout=5)
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time.sleep(1)
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def close_host_interface() -> None:
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interface_name = get_host_interface_name()
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flag = False
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try:
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command = 'ifconfig ' + interface_name + ' down'
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subprocess.call(command, shell=True, timeout=5)
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time.sleep(1)
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flag = True
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finally:
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time.sleep(1)
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assert flag
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def open_host_interface() -> None:
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interface_name = get_host_interface_name()
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flag = False
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try:
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command = 'ifconfig ' + interface_name + ' up'
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subprocess.call(command, shell=True, timeout=5)
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time.sleep(1)
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flag = True
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finally:
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time.sleep(1)
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assert flag
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def get_domain() -> str:
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hostname = socket.gethostname()
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print('hostname is: ', hostname)
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command = 'ps -aux | grep avahi-daemon | grep running'
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out_str = subprocess.getoutput(command)
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print('avahi status:\n', out_str)
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role = re.findall(r'\[([\w\W]+)\.local\]', str(out_str))[0]
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print('active host is: ', role)
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return str(role)
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class tcp_parameter:
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def __init__(self, tcp_type:str='', addr:str='::', port:int=12345, listen_flag:bool=False, recv_flag:bool=False, timeout:float=15.0, tcp_bytes:bytes=b''):
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self.tcp_type = tcp_type
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self.addr = addr
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self.port = port
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self.listen_flag = listen_flag
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self.recv_flag = recv_flag
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self.timeout = timeout
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self.tcp_bytes = tcp_bytes
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def create_host_tcp_server(mytcp:tcp_parameter) -> None:
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try:
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if mytcp.tcp_type == 'INET6':
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AF_INET = socket.AF_INET6
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else:
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AF_INET = socket.AF_INET
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print('The host start to create a tcp server!')
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sock = socket.socket(AF_INET, socket.SOCK_STREAM)
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sock.bind((mytcp.addr, mytcp.port))
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sock.listen(5)
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mytcp.listen_flag = True
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print('The tcp server is waiting for connection!')
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sock.settimeout(mytcp.timeout)
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connfd,addr = sock.accept()
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print('The tcp server connected with ',addr)
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mytcp.recv_flag = True
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mytcp.tcp_bytes = connfd.recv(1024)
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print('The tcp server has received message: ', mytcp.tcp_bytes)
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except socket.error:
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if mytcp.recv_flag:
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print('The tcp server did not receive message!')
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else:
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print('The tcp server fail to connect!')
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finally:
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print('Close the socket.')
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sock.close()
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def get_ipv6_from_ipv4(ipv4_address:str, br:IdfDut) -> str:
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clean_buffer(br)
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br.write('br nat64prefix')
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omrprefix = br.expect(r'\n((?:\w+:){6}):/\d+', timeout=5)[1].decode()
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ipv4_find = re.findall(r'\d+', ipv4_address)
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ipv6_16_1 = decimal_to_hex(ipv4_find[0]) + decimal_to_hex(ipv4_find[1])
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ipv6_16_2 = decimal_to_hex(ipv4_find[2]) + decimal_to_hex(ipv4_find[3])
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ipv6_get_from_ipv4 = omrprefix + ':' + ipv6_16_1 + ':' + ipv6_16_2
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return str(ipv6_get_from_ipv4)
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def decimal_to_hex(decimal_str:str) -> str:
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decimal_int = int(decimal_str)
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hex_str = hex(decimal_int)[2:]
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return hex_str
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