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ef50beb4d0
CI: add vlan example to ethernet patterns Included a Pytest for the vlan_support example, which focuses on testing the NAPT module in lwip by forwarding packets between different VLAN interfaces.
323 lines
11 KiB
Python
323 lines
11 KiB
Python
# SPDX-FileCopyrightText: 2021-2022 Espressif Systems (Shanghai) CO LTD
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# SPDX-License-Identifier: CC0-1.0
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import ipaddress
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import subprocess
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import threading
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import time
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from typing import Dict, Union
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import pytest
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from pytest_embedded import Dut
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from scapy import layers
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from scapy.all import ICMP, IP, TCP, UDP, AsyncSniffer
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udp_port = 1234
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tcp_port = 4321
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def run_cmd(command: str, secure: bool=False) -> str:
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if secure is False:
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print(f'Running: {command}')
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cmd = command.strip().split(' ')
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# Run the command
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proc = subprocess.Popen(cmd, stdin=subprocess.PIPE, stdout=subprocess.PIPE, stderr=subprocess.PIPE)
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# Send su password if secured
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if secure is True:
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proc.communicate(input=b'Esp@32')
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# Get the output
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stdout, stderr = proc.communicate()
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# Print the output
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if secure is False:
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if len(stdout.decode('utf-8')) > 0:
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print('Output: ', stdout.decode('utf-8'))
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if len(stderr.decode('utf-8')) > 0:
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print('Error: ', stderr.decode('utf-8'))
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return stdout.decode('utf-8')
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def run_cmd_sec(command: str) -> str:
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print(f'Running secured: {command}')
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return run_cmd(f'sudo -S -k {command}', secure=True)
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def clear_network(config: dict) -> None:
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# delete route
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for each_cmd in config['delete_route_cmd_l']:
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run_cmd_sec(each_cmd)
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# destroy Vlan interfaces
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for each_cmd in config['vlan_destroy_cmd_l']:
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run_cmd_sec(each_cmd)
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def setup_network(config: dict) -> None:
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# Clear network before setting it up
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clear_network(config)
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# Create Vlan interfaces
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for each_cmd in config['vlan_create_cmd_l']:
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run_cmd_sec(each_cmd)
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# set route
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for each_cmd in config['set_route_cmd_l']:
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run_cmd_sec(each_cmd)
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def create_config(dut: Dut) -> dict:
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pc_iface = dut.app.sdkconfig.get('EXAMPLE_VLAN_PYTEST_PC_IFACE')
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vlanClient_conf = {'id': str(dut.app.sdkconfig.get('EXAMPLE_ETHERNET_VLAN_ID')),
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'name': 'vlanClient',
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'ip': dut.app.sdkconfig.get('EXAMPLE_VLAN_STATIC_ADDR_DEF_GW')}
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vlanServer_conf = {'id': str(dut.app.sdkconfig.get('EXAMPLE_EXTRA_ETHERNET_VLAN_ID')),
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'name': 'vlanServer',
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'ip': dut.app.sdkconfig.get('EXAMPLE_EXTRA_VLAN_STATIC_ADDR_DEF_GW')}
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esp_vlanClient_ip = dut.app.sdkconfig.get('EXAMPLE_VLAN_STATIC_IPV4_ADDR')
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esp_vlanServer_ip = dut.app.sdkconfig.get('EXAMPLE_EXTRA_VLAN_STATIC_IPV4_ADDR')
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subnet_mask = ipaddress.IPv4Address('255.255.255.0')
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tmp_ip = ipaddress.IPv4Address(vlanServer_conf['ip'])
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vlanServer_net_addr = ipaddress.IPv4Address(int(tmp_ip) & int(subnet_mask))
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config: Dict[str, Union[str, dict, dict, str, str, list, list, list, list]] = {
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# Basic Configurations
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'pc_iface': pc_iface,
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'vlanClient': vlanClient_conf,
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'vlanServer': vlanServer_conf,
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'esp_vlanClient_ip': esp_vlanClient_ip,
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'esp_vlanServer_ip': esp_vlanServer_ip,
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'vlan_create_cmd_l': [f'ip netns add ns_vlanClient',
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f"ip link add link {pc_iface} name {vlanClient_conf['name']} type vlan id {vlanClient_conf['id']}",
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f"ip link set {vlanClient_conf['name']} netns ns_vlanClient",
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f"ip netns exec ns_vlanClient ip addr add {vlanClient_conf['ip']}/255.255.255.0 dev {vlanClient_conf['name']}",
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f"ip netns exec ns_vlanClient ip link set dev {vlanClient_conf['name']} up",
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f"ip link add link {pc_iface} name {vlanServer_conf['name']} type vlan id {vlanServer_conf['id']}",
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f"ip addr add {vlanServer_conf['ip']}/255.255.255.0 dev {vlanServer_conf['name']}",
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f"ip link set dev {vlanServer_conf['name']} up"],
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'vlan_destroy_cmd_l': [f"ip netns exec ns_vlanClient ip link set dev {vlanClient_conf['name']} down",
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f"ip netns exec ns_vlanClient ip link delete {vlanClient_conf['name']}",
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f"ip link set dev {vlanServer_conf['name']} down",
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f"ip link delete {vlanServer_conf['name']}",
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f'ip netns delete ns_vlanClient'],
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'set_route_cmd_l': [f'ip netns exec ns_vlanClient ip route add {vlanServer_net_addr}/24 via {esp_vlanClient_ip}'],
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'delete_route_cmd_l': [f'ip netns exec ns_vlanClient ip route delete {vlanServer_net_addr}/24 via {esp_vlanClient_ip}'],
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}
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return config
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# Ping Test
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def ping_test(config: dict) -> None:
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setup_network(config)
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capture = AsyncSniffer(iface=config['vlanServer']['name'], filter='icmp', count=10)
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# Start sniffing
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capture.start()
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time.sleep(1)
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# Run network test commands here
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print(run_cmd_sec(f"ip netns exec ns_vlanClient ping -I {config['vlanClient']['ip']} {config['vlanServer']['ip']} -c 10"))
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# Stop sniffing
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capture.join(timeout=20)
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vlanServer_pkt_list = capture.results
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clear_network(config)
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# Test Validation
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vlanServer_forward_flag = False
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vlanServer_return_flag = False
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if vlanServer_pkt_list is None:
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print('Failure: No packets captured')
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assert False
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print(f"Captured: {len(vlanServer_pkt_list)} packets on interface {config['vlanServer']['name']}")
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for pkt in vlanServer_pkt_list:
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print('Summary: ', pkt.summary())
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if pkt[ICMP].type == 8 and pkt[IP].src == config['esp_vlanServer_ip'] and pkt[IP].dst == config['vlanServer']['ip']:
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vlanServer_forward_flag = True
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if pkt[ICMP].type == 0 and pkt[IP].src == config['vlanServer']['ip'] and pkt[IP].dst == config['esp_vlanServer_ip']:
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vlanServer_return_flag = True
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assert vlanServer_forward_flag and vlanServer_return_flag
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# UDP Test
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def udp_server(serverip: str, port: int) -> None:
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print(f'UDP server listening on IP: {serverip} port: {port}')
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run_cmd(f'timeout 10s iperf3 -s -p {port}')
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def udp_client(serverip: str, port: int) -> None:
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time.sleep(1)
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print(run_cmd_sec(f'timeout 10s ip netns exec ns_vlanClient iperf3 -c {serverip} -u -p {port} --bidir -k 20'))
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def udp_server_client_comm(config: dict, port: int) -> None:
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server_thread = threading.Thread(target=udp_server, args=(config['vlanServer']['ip'], port,))
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client_thread = threading.Thread(target=udp_client, args=(config['vlanServer']['ip'], port))
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server_thread.start()
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client_thread.start()
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server_thread.join()
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client_thread.join()
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print('UDP Test Done')
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def udp_lfilter(packet: layers.l2.Ether) -> layers.l2.Ether:
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return UDP in packet and (packet[UDP].dport == udp_port or packet[UDP].sport == udp_port)
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def udp_test(config: dict) -> None:
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setup_network(config)
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capture = AsyncSniffer(iface=config['vlanServer']['name'],
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filter='udp',
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lfilter=udp_lfilter,
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count=10)
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# Start sniffing
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capture.start()
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time.sleep(1)
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# Run network test commands here
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udp_server_client_comm(config, udp_port)
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# Stop sniffing
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capture.join(timeout=20)
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vlanServer_pkt_list = capture.results
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clear_network(config)
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# Test Validation
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vlanServer_forward_flag = False
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vlanServer_return_flag = False
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if vlanServer_pkt_list is None:
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print('Failure: No packets captured')
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assert False
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print(f"Captured: {len(vlanServer_pkt_list)} packets on interface {config['vlanServer']['name']}")
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for pkt in vlanServer_pkt_list:
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print('Summary: ', pkt.summary())
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if UDP in pkt:
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if pkt[UDP].dport == udp_port and pkt[IP].src == config['esp_vlanServer_ip'] and pkt[IP].dst == config['vlanServer']['ip']:
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vlanServer_forward_flag = True
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if pkt[UDP].sport == udp_port and pkt[IP].src == config['vlanServer']['ip'] and pkt[IP].dst == config['esp_vlanServer_ip']:
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vlanServer_return_flag = True
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assert vlanServer_forward_flag and vlanServer_return_flag
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# TCP Test
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def tcp_server(serverip: str, port: int) -> None:
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print(f'TCP server listening on IP: {serverip} port: {port}')
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run_cmd(f'timeout 10s iperf3 -s -p {port}')
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def tcp_client(serverip: str, port: int) -> None:
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time.sleep(1)
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print(run_cmd_sec(f'timeout 10s ip netns exec ns_vlanClient iperf3 -c {serverip} -p {port} --bidir -k 20'))
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def tcp_server_client_comm(config: dict, port: int) -> None:
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server_thread = threading.Thread(target=tcp_server, args=(config['vlanServer']['ip'], port,))
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client_thread = threading.Thread(target=tcp_client, args=(config['vlanServer']['ip'], port))
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server_thread.start()
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client_thread.start()
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server_thread.join()
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client_thread.join()
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print('TCP Test Done')
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def tcp_lfilter(packet: layers.l2.Ether) -> layers.l2.Ether:
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return TCP in packet and (packet[TCP].dport == tcp_port or packet[TCP].sport == tcp_port)
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def tcp_test(config: dict) -> None:
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setup_network(config)
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capture = AsyncSniffer(iface=config['vlanServer']['name'],
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filter='tcp',
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lfilter=tcp_lfilter,
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count=10)
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# Start sniffing
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capture.start()
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time.sleep(1)
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# Run network test commands here
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tcp_server_client_comm(config, tcp_port)
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# Stop sniffing
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capture.join(timeout=20)
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vlanServer_pkt_list = capture.results
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clear_network(config)
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# Test Validation
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vlanServer_forward_flag = False
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vlanServer_return_flag = False
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if vlanServer_pkt_list is None:
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print('Failure: No packets captured')
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assert False
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print(f"Captured: {len(vlanServer_pkt_list)} packets on interface {config['vlanServer']['name']}")
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for pkt in vlanServer_pkt_list:
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print('Summary: ', pkt.summary())
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if TCP in pkt:
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if pkt[TCP].dport == tcp_port and pkt[IP].src == config['esp_vlanServer_ip'] and pkt[IP].dst == config['vlanServer']['ip']:
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vlanServer_forward_flag = True
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if pkt[TCP].sport == tcp_port and pkt[IP].src == config['vlanServer']['ip'] and pkt[IP].dst == config['esp_vlanServer_ip']:
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vlanServer_return_flag = True
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assert vlanServer_forward_flag and vlanServer_return_flag
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@pytest.mark.esp32
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@pytest.mark.ethernet_vlan
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def test_vlan_napt_pingtest(dut: Dut) -> None:
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dut.expect('main_task: Returned from app_main()')
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test_conf = create_config(dut)
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ping_test(test_conf)
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@pytest.mark.esp32
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@pytest.mark.ethernet_vlan
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def test_vlan_napt_udptest(dut: Dut) -> None:
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dut.expect('main_task: Returned from app_main()')
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test_conf = create_config(dut)
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udp_test(test_conf)
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@pytest.mark.esp32
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@pytest.mark.ethernet_vlan
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def test_vlan_napt_tcptest(dut: Dut) -> None:
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dut.expect('main_task: Returned from app_main()')
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test_conf = create_config(dut)
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tcp_test(test_conf)
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