Files
napalm-fritzbox/tests/unit/test_driver.py
T
Christian ManivongandClaude Sonnet 4.6 3b3469daa9
CI / test (3.10) (push) Failing after 20s
CI / test (3.11) (push) Failing after 13s
CI / test (3.12) (push) Failing after 7s
CI / test (3.9) (push) Failing after 13s
feat: WAN-Status, DSL-Stats, Portfreigaben, Firmware-Warnings, PPPoE-Interface
- get_system_config(): DSL-Leitungsqualität, Firmware-Status, DNS, NTP
- get_device_warnings(): dsl_snr_low + firmware_update_available
- get_port_forwards(): IPv6-Pinholes via WANIPv6Firewall1 (TCP6/UDP6)
- get_wan_status(): robuste Service-Iteration, kein Crash bei "Auto"-Bitraten
- get_interfaces(): pppoe0-Interface, Service-Guards für LAN/WAN, "connected"-Status
- _to_float(): Helper für sichere TR-064 Feldkonvertierung
- get_device_warnings() implementiert (war als Stub vorhanden)
- Tests für alle neuen Methoden, PPPoE-Fixture

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
2026-06-24 22:21:06 +02:00

747 lines
25 KiB
Python

"""Unit tests for FritzBoxDriver — no real device required."""
from unittest.mock import MagicMock, patch
import pytest
from fritzconnection.core.exceptions import (
FritzActionError,
FritzArrayIndexError,
FritzServiceError,
)
from napalm.base.exceptions import ConnectionClosedException, ConnectionException
from napalm_fritzbox.fritzbox import FritzBoxDriver, _to_float
# ---------------------------------------------------------------------------
# Sample TR-064 responses
# ---------------------------------------------------------------------------
DEVICE_INFO = {
"NewModelName": "FRITZ!Box 7590",
"NewSoftwareVersion": "7.57",
"NewSerialNumber": "1234567890ABC",
"NewUpTime": 123456,
}
LAN_INFO = {
"NewEnable": True,
"NewStatus": "Up",
"NewMACAddress": "AA:BB:CC:DD:EE:01",
"NewMaxBitRate": 1000,
}
WAN_LINK_PROPERTIES = {
"NewWANAccessType": "DSL",
"NewPhysicalLinkStatus": "Up",
"NewLayer1UpstreamMaxBitRate": 40000000,
"NewLayer1DownstreamMaxBitRate": 250000000,
}
WAN_ADDON_INFOS = {
"NewTotalBytesSent": 123456789,
"NewTotalBytesReceived": 987654321,
}
WAN_STATUS_INFO = {
"NewConnectionStatus": "Connected",
"NewUptime": 345600,
}
WAN_EXTERNAL_IP = {"NewExternalIPAddress": "203.0.113.7"}
HOSTS_COUNT = {"NewHostNumberOfEntries": 2}
HOST_ENTRIES = [
{
"NewMACAddress": "11:22:33:44:55:66",
"NewIPAddress": "192.168.1.50",
"NewHostName": "laptop",
"NewInterfaceType": "WLAN",
"NewActive": True,
"NewLeaseTimeRemaining": 3600,
},
{
"NewMACAddress": "AA:11:22:33:44:55",
"NewIPAddress": "192.168.1.51",
"NewHostName": "desktop",
"NewInterfaceType": "LAN",
"NewActive": False,
},
]
PORT_FORWARDS = [
{
"NewPortMappingDescription": "Web",
"NewProtocol": "TCP",
"NewExternalPort": 443,
"NewInternalClient": "192.168.1.10",
"NewInternalPort": 443,
"NewPortMappingEnabled": True,
"NewRemoteHost": "",
}
]
WLAN1_INFO = {
"NewEnable": True,
"NewStatus": "Up",
"NewSSID": "MyWifi",
"NewBSSID": "AA:BB:CC:DD:EE:02",
"NewMaxBitRate": 866,
"NewChannel": 36,
"NewBeaconType": "11i",
}
WLAN1_TOTAL_ASSOCIATIONS = {"NewTotalAssociations": 1}
WLAN1_ASSOCIATED_DEVICE = {
"NewAssociatedDeviceMACAddress": "11:22:33:44:55:66",
"NewAssociatedDeviceIPAddress": "192.168.1.50",
"NewX_AVM-DE_SignalStrength": 80,
"NewX_AVM-DE_Speed": 866,
}
WLAN2_INFO = {
"NewEnable": False,
"NewStatus": "Down",
"NewSSID": "MyWifi-Guest",
"NewBSSID": "AA:BB:CC:DD:EE:03",
"NewMaxBitRate": 0,
"NewChannel": 1,
"NewBeaconType": "11i",
}
WLAN2_TOTAL_ASSOCIATIONS = {"NewTotalAssociations": 0}
LAN_INFO_AUTO_RATE = {
"NewEnable": True,
"NewStatus": "Up",
"NewMACAddress": "AA:BB:CC:DD:EE:01",
"NewMaxBitRate": "Auto",
}
PPP_STATUS_INFO = {
"NewConnectionStatus": "Connected",
"NewLastConnectionError": "ERROR_NONE",
"NewUptime": 7200,
}
PPP_EXTERNAL_IP = {"NewExternalIPAddress": "203.0.113.99"}
DSL_INFO = {
"NewEnable": True,
"NewStatus": "Up",
"NewDownstreamCurrRate": 100000,
"NewUpstreamCurrRate": 40000,
"NewDownstreamMaxRate": 120000,
"NewUpstreamMaxRate": 50000,
"NewDownstreamNoiseMargin": 120, # 12.0 dB
"NewUpstreamNoiseMargin": 80, # 8.0 dB
"NewDownstreamAttenuation": 150, # 15.0 dB
"NewUpstreamAttenuation": 90, # 9.0 dB
}
DSL_STATS = {
"NewCRCErrors": 5,
"NewFECErrors": 12,
"NewHECErrors": 0,
}
UI_INFO = {
"NewX_AVM-DE_UpdateState": "Available",
"NewX_AVM-DE_Version": "08.20",
}
UI_INFO_NO_UPDATE = {
"NewX_AVM-DE_UpdateState": "None",
"NewX_AVM-DE_Version": "08.20",
}
DNS_SERVERS = {"NewDNSServers": "1.1.1.1,8.8.8.8"}
TIME_INFO = {
"NewNTPServer1": "ntp.example.com",
"NewNTPServer2": "",
"NewCurrentLocalTime": "2026-06-24T16:00:00+02:00",
}
IPV6_FIREWALL_STATUS = {"NewFirewallEnabled": True, "NewInboundPinholeAllowed": True}
IPV6_PINHOLES = [
{
"NewPinholeDescription": "SSH6",
"NewProtocol": 6,
"NewRemotePort": 0,
"NewInternalIPAddress": "2001:db8::10",
"NewInternalPort": 22,
"NewLeaseTime": 0,
}
]
# ---------------------------------------------------------------------------
# call_action dispatch
# ---------------------------------------------------------------------------
_SIMPLE_RESPONSES = {
("DeviceInfo1", "GetInfo"): DEVICE_INFO,
("LANEthernetInterfaceConfig1", "GetInfo"): LAN_INFO,
("WANCommonInterfaceConfig1", "GetCommonLinkProperties"): WAN_LINK_PROPERTIES,
("WANCommonInterfaceConfig1", "GetAddonInfos"): WAN_ADDON_INFOS,
("WANIPConnection1", "GetStatusInfo"): WAN_STATUS_INFO,
("WANIPConnection1", "GetExternalIPAddress"): WAN_EXTERNAL_IP,
("WANPPPConnection1", "GetStatusInfo"): PPP_STATUS_INFO,
("WANPPPConnection1", "GetExternalIPAddress"): PPP_EXTERNAL_IP,
("Hosts1", "GetHostNumberOfEntries"): HOSTS_COUNT,
("WLANConfiguration1", "GetInfo"): WLAN1_INFO,
("WLANConfiguration1", "GetTotalAssociations"): WLAN1_TOTAL_ASSOCIATIONS,
("WLANConfiguration2", "GetInfo"): WLAN2_INFO,
("WLANConfiguration2", "GetTotalAssociations"): WLAN2_TOTAL_ASSOCIATIONS,
("WANDSLInterfaceConfig1", "GetInfo"): DSL_INFO,
("WANDSLInterfaceConfig1", "GetStatisticsTotal"): DSL_STATS,
("UserInterface1", "X_AVM-DE_GetInfo"): UI_INFO,
("LANHostConfigManagement1", "GetDNSServers"): DNS_SERVERS,
("Time1", "GetInfo"): TIME_INFO,
("WANIPv6Firewall1", "GetFirewallStatus"): IPV6_FIREWALL_STATUS,
}
def _call_action(service, action, **kwargs):
if (service, action) == ("Hosts1", "GetGenericHostEntry"):
index = kwargs["NewIndex"]
if index >= len(HOST_ENTRIES):
raise FritzArrayIndexError("index out of range")
return HOST_ENTRIES[index]
if (service, action) == ("WANIPConnection1", "GetGenericPortMappingEntry"):
index = kwargs["NewPortMappingIndex"]
if index >= len(PORT_FORWARDS):
raise FritzArrayIndexError("index out of range")
return PORT_FORWARDS[index]
if (service, action) == ("WANIPv6Firewall1", "GetGenericPinholeEntry"):
index = kwargs["NewPinholeIndex"]
if index >= len(IPV6_PINHOLES):
raise FritzArrayIndexError("index out of range")
return IPV6_PINHOLES[index]
if (service, action) == ("WLANConfiguration1", "GetGenericAssociatedDeviceInfo"):
index = kwargs["NewAssociatedDeviceIndex"]
if index >= 1:
raise FritzArrayIndexError("index out of range")
return WLAN1_ASSOCIATED_DEVICE
if (service, action) == ("WLANConfiguration2", "GetGenericAssociatedDeviceInfo"):
raise FritzArrayIndexError("index out of range")
if action == "X_AVM-DE_GetExternalIPv6Address":
raise FritzActionError("action not supported")
return _SIMPLE_RESPONSES[(service, action)]
# ---------------------------------------------------------------------------
# Fixtures
# ---------------------------------------------------------------------------
@pytest.fixture
def driver():
"""Return a driver instance with a mocked FritzConnection (WANIPConnection1 / cable)."""
mock_fc = MagicMock()
mock_fc.services = {
"DeviceInfo1": MagicMock(),
"LANEthernetInterfaceConfig1": MagicMock(),
"WANCommonInterfaceConfig1": MagicMock(),
"WANIPConnection1": MagicMock(),
"Hosts1": MagicMock(),
"WLANConfiguration1": MagicMock(),
"WLANConfiguration2": MagicMock(),
"WANDSLInterfaceConfig1": MagicMock(),
"UserInterface1": MagicMock(),
"LANHostConfigManagement1": MagicMock(),
"Time1": MagicMock(),
"WANIPv6Firewall1": MagicMock(),
}
mock_fc.call_action.side_effect = _call_action
drv = FritzBoxDriver(hostname="fritz.box", username="user", password="pass")
drv.fc = mock_fc
yield drv
@pytest.fixture
def pppoe_driver():
"""Return a driver instance simulating a PPPoE FritzBox (WANPPPConnection1)."""
mock_fc = MagicMock()
mock_fc.services = {
"DeviceInfo1": MagicMock(),
"LANEthernetInterfaceConfig1": MagicMock(),
"WANCommonInterfaceConfig1": MagicMock(),
"WANPPPConnection1": MagicMock(),
"Hosts1": MagicMock(),
"WLANConfiguration1": MagicMock(),
"WLANConfiguration2": MagicMock(),
}
mock_fc.call_action.side_effect = _call_action
drv = FritzBoxDriver(hostname="fritz.box", username="user", password="pass")
drv.fc = mock_fc
yield drv
# ---------------------------------------------------------------------------
# open() / close() / is_alive()
# ---------------------------------------------------------------------------
class TestOpenClose:
def test_open_raises_connection_exception_on_error(self):
drv = FritzBoxDriver("unreachable.invalid", "u", "p")
with patch("napalm_fritzbox.fritzbox.FritzConnection", side_effect=OSError("boom")):
with pytest.raises(ConnectionException):
drv.open()
def test_open_sets_fc_on_success(self):
drv = FritzBoxDriver("fritz.box", "u", "p")
mock_fc = MagicMock()
mock_fc.call_action.return_value = DEVICE_INFO
with patch("napalm_fritzbox.fritzbox.FritzConnection", return_value=mock_fc):
drv.open()
assert drv.fc is mock_fc
def test_close_clears_fc(self, driver):
driver.close()
assert driver.fc is None
def test_close_is_idempotent(self, driver):
driver.close()
driver.close()
class TestIsAlive:
def test_returns_false_when_no_fc(self):
drv = FritzBoxDriver("fritz.box", "u", "p")
assert drv.is_alive() == {"is_alive": False}
def test_returns_true_on_successful_connection(self, driver):
with patch("napalm_fritzbox.fritzbox.socket.create_connection") as mock_conn:
mock_conn.return_value.__enter__ = MagicMock(return_value=None)
mock_conn.return_value.__exit__ = MagicMock(return_value=False)
result = driver.is_alive()
assert result == {"is_alive": True}
def test_returns_false_on_socket_error(self, driver):
with patch(
"napalm_fritzbox.fritzbox.socket.create_connection",
side_effect=OSError("refused"),
):
result = driver.is_alive()
assert result == {"is_alive": False}
# ---------------------------------------------------------------------------
# _call()
# ---------------------------------------------------------------------------
class TestCall:
def test_raises_when_not_connected(self):
drv = FritzBoxDriver("fritz.box", "u", "p")
with pytest.raises(ConnectionClosedException):
drv._call("DeviceInfo1", "GetInfo")
# ---------------------------------------------------------------------------
# get_facts()
# ---------------------------------------------------------------------------
class TestGetFacts:
def test_vendor_is_avm(self, driver):
assert driver.get_facts()["vendor"] == "AVM"
def test_model_parsed(self, driver):
assert driver.get_facts()["model"] == "FRITZ!Box 7590"
def test_os_version_parsed(self, driver):
assert driver.get_facts()["os_version"] == "7.57"
def test_serial_number_parsed(self, driver):
assert driver.get_facts()["serial_number"] == "1234567890ABC"
def test_uptime_parsed(self, driver):
assert driver.get_facts()["uptime"] == 123456
def test_interface_list_populated(self, driver):
facts = driver.get_facts()
assert "lan" in facts["interface_list"]
assert "wan" in facts["interface_list"]
# ---------------------------------------------------------------------------
# get_interfaces() / get_interfaces_ip()
# ---------------------------------------------------------------------------
class TestGetInterfaces:
def test_lan_interface_present(self, driver):
interfaces = driver.get_interfaces()
assert interfaces["lan"]["is_up"] is True
assert interfaces["lan"]["mac_address"] == "aa:bb:cc:dd:ee:01"
def test_wan_interface_present(self, driver):
interfaces = driver.get_interfaces()
assert interfaces["wan"]["is_up"] is True
assert interfaces["wan"]["description"] == "DSL"
def test_wlan_interfaces_present(self, driver):
interfaces = driver.get_interfaces()
assert interfaces["wlanconfiguration1"]["description"] == "MyWifi"
assert interfaces["wlanconfiguration2"]["is_enabled"] is False
class TestGetInterfacesIp:
def test_wan_external_ip(self, driver):
result = driver.get_interfaces_ip()
assert result["wan"]["ipv4"] == {"203.0.113.7": {"prefix_length": 32}}
def test_lan_address_falls_back_to_hostname(self, driver):
result = driver.get_interfaces_ip()
assert "fritz.box" in result["lan"]["ipv4"]
# ---------------------------------------------------------------------------
# get_hosts() / get_arp_table()
# ---------------------------------------------------------------------------
class TestGetHosts:
def test_returns_all_hosts(self, driver):
assert len(driver.get_hosts()) == 2
def test_active_host_fields(self, driver):
host = driver.get_hosts()[0]
assert host["mac"] == "11:22:33:44:55:66"
assert host["ip"] == "192.168.1.50"
assert host["hostname"] == "laptop"
assert host["interface_type"] == "WLAN"
assert host["is_active"] is True
assert host["lease_time_remaining"] == 3600
def test_inactive_host_has_no_lease(self, driver):
host = driver.get_hosts()[1]
assert host["is_active"] is False
assert "lease_time_remaining" not in host
class TestGetArpTable:
def test_only_active_hosts_with_mac_and_ip(self, driver):
arp_table = driver.get_arp_table()
assert len(arp_table) == 1
assert arp_table[0]["mac"] == "11:22:33:44:55:66"
assert arp_table[0]["ip"] == "192.168.1.50"
# ---------------------------------------------------------------------------
# get_wan_status()
# ---------------------------------------------------------------------------
class TestGetWanStatus:
def test_connection_type(self, driver):
assert driver.get_wan_status()["connection_type"] == "DSL"
def test_is_connected(self, driver):
assert driver.get_wan_status()["is_connected"] is True
def test_external_ip(self, driver):
assert driver.get_wan_status()["external_ip"] == "203.0.113.7"
def test_uptime(self, driver):
assert driver.get_wan_status()["uptime"] == 345600
def test_traffic_counters(self, driver):
status = driver.get_wan_status()
assert status["bytes_sent"] == 123456789
assert status["bytes_received"] == 987654321
def test_max_bitrates_in_kbit(self, driver):
status = driver.get_wan_status()
assert status["max_bitrate_up"] == 40000
assert status["max_bitrate_down"] == 250000
def test_no_ipv6_when_unsupported(self, driver):
assert "external_ipv6" not in driver.get_wan_status()
# ---------------------------------------------------------------------------
# get_port_forwards() / get_nat_translations()
# ---------------------------------------------------------------------------
class TestGetPortForwards:
def test_returns_all_rules(self, driver):
assert len(driver.get_port_forwards()) == 1
def test_rule_fields(self, driver):
forward = driver.get_port_forwards()[0]
assert forward["name"] == "Web"
assert forward["protocol"] == "TCP"
assert forward["external_port"] == 443
assert forward["internal_ip"] == "192.168.1.10"
assert forward["internal_port"] == 443
assert forward["enabled"] is True
def test_empty_remote_host_not_included(self, driver):
assert "remote_host" not in driver.get_port_forwards()[0]
class TestGetNatTranslations:
def test_derived_from_enabled_port_forwards(self, driver):
translations = driver.get_nat_translations()
assert len(translations) == 1
assert translations[0]["protocol"] == "tcp"
assert translations[0]["inside_local"] == "192.168.1.10:443"
assert translations[0]["inside_global"] == "203.0.113.7:443"
# ---------------------------------------------------------------------------
# get_vpn_tunnels()
# ---------------------------------------------------------------------------
class TestGetVpnTunnels:
def test_returns_empty_dict(self, driver):
assert driver.get_vpn_tunnels() == {}
# ---------------------------------------------------------------------------
# get_wireless_clients() / get_ssids() / get_radio_status()
# ---------------------------------------------------------------------------
class TestGetWirelessClients:
def test_returns_associated_clients(self, driver):
clients = driver.get_wireless_clients()
assert len(clients) == 1
client = clients[0]
assert client["mac"] == "11:22:33:44:55:66"
assert client["ssid"] == "MyWifi"
assert client["radio"] == "WLANConfiguration1"
assert client["signal"] == 80
assert client["ip"] == "192.168.1.50"
class TestGetSsids:
def test_returns_ssid_for_each_radio(self, driver):
ssids = driver.get_ssids()
assert "MyWifi" in ssids
assert "MyWifi-Guest" in ssids
def test_ssid_fields(self, driver):
ssid = driver.get_ssids()["MyWifi"]
assert ssid["enabled"] is True
assert ssid["radio"] == "WLANConfiguration1"
assert ssid["bssid"] == "aa:bb:cc:dd:ee:02"
assert ssid["clients"] == 1
def test_disabled_ssid_has_zero_clients(self, driver):
assert driver.get_ssids()["MyWifi-Guest"]["clients"] == 0
class TestGetRadioStatus:
def test_returns_entry_per_radio(self, driver):
radios = driver.get_radio_status()
assert "WLANConfiguration1" in radios
assert "WLANConfiguration2" in radios
def test_5ghz_radio_enabled(self, driver):
radio = driver.get_radio_status()["WLANConfiguration1"]
assert radio["enabled"] is True
assert radio["band"] == "5GHz"
assert radio["channel"] == 36
def test_2_4ghz_radio_disabled(self, driver):
radio = driver.get_radio_status()["WLANConfiguration2"]
assert radio["enabled"] is False
assert radio["band"] == "2.4GHz"
assert radio["channel"] == 1
# ---------------------------------------------------------------------------
# _to_float helper
# ---------------------------------------------------------------------------
class TestToFloat:
def test_numeric_string(self):
assert _to_float("1000") == 1000.0
def test_auto_string_returns_default(self):
assert _to_float("Auto") == 0.0
def test_none_returns_default(self):
assert _to_float(None) == 0.0
def test_int(self):
assert _to_float(250000000) == 250000000.0
def test_custom_default(self):
assert _to_float("bogus", default=-1.0) == -1.0
# ---------------------------------------------------------------------------
# PPPoE interface (WANPPPConnection1)
# ---------------------------------------------------------------------------
class TestPPPoEInterface:
def test_pppoe0_present_when_ppp_service_available(self, pppoe_driver):
interfaces = pppoe_driver.get_interfaces()
assert "pppoe0" in interfaces
def test_pppoe0_is_up(self, pppoe_driver):
assert pppoe_driver.get_interfaces()["pppoe0"]["is_up"] is True
def test_pppoe0_mtu(self, pppoe_driver):
assert pppoe_driver.get_interfaces()["pppoe0"]["mtu"] == 1492
def test_pppoe0_not_present_without_ppp_service(self, driver):
# driver fixture uses WANIPConnection1 only — no PPPoE
assert "pppoe0" not in driver.get_interfaces()
def test_pppoe_ip_on_pppoe0_key(self, pppoe_driver):
result = pppoe_driver.get_interfaces_ip()
assert "pppoe0" in result
assert "203.0.113.99" in result["pppoe0"]["ipv4"]
def test_cable_ip_on_wan_key(self, driver):
result = driver.get_interfaces_ip()
assert "wan" in result
assert "203.0.113.7" in result["wan"]["ipv4"]
# ---------------------------------------------------------------------------
# Auto/non-numeric MaxBitRate in get_interfaces
# ---------------------------------------------------------------------------
class TestAutoMaxBitRate:
def test_lan_speed_zero_when_auto(self, driver):
driver.fc.call_action.side_effect = lambda svc, act, **kw: (
LAN_INFO_AUTO_RATE if (svc, act) == ("LANEthernetInterfaceConfig1", "GetInfo")
else _call_action(svc, act, **kw)
)
interfaces = driver.get_interfaces()
assert interfaces["lan"]["speed"] == 0.0
# ---------------------------------------------------------------------------
# get_device_warnings
# ---------------------------------------------------------------------------
class TestGetDeviceWarnings:
def test_returns_empty_list(self, driver):
# UI_INFO has UpdateState=Available → one warning expected
warnings = driver.get_device_warnings()
codes = [w["code"] for w in warnings]
assert "firmware_update_available" in codes
def test_no_firmware_warning_when_no_update(self, driver):
driver.fc.call_action.side_effect = lambda svc, act, **kw: (
UI_INFO_NO_UPDATE if (svc, act) == ("UserInterface1", "X_AVM-DE_GetInfo")
else _call_action(svc, act, **kw)
)
warnings = driver.get_device_warnings()
assert not any(w["code"] == "firmware_update_available" for w in warnings)
def test_dsl_snr_low_warning(self, driver):
low_snr = dict(DSL_INFO, NewDownstreamNoiseMargin=40) # 4.0 dB < 6 dB threshold
driver.fc.call_action.side_effect = lambda svc, act, **kw: (
low_snr if (svc, act) == ("WANDSLInterfaceConfig1", "GetInfo")
else _call_action(svc, act, **kw)
)
warnings = driver.get_device_warnings()
assert any(w["code"] == "dsl_snr_low" for w in warnings)
def test_no_dsl_warning_when_snr_ok(self, driver):
warnings = driver.get_device_warnings()
assert not any(w["code"] == "dsl_snr_low" for w in warnings)
# ---------------------------------------------------------------------------
# get_system_config (DSL stats, firmware, DNS, NTP)
# ---------------------------------------------------------------------------
class TestGetSystemConfig:
def test_dsl_downstream_rate(self, driver):
cfg = driver.get_system_config()
assert cfg["dsl_downstream_rate"] == 100000
def test_dsl_upstream_rate(self, driver):
assert driver.get_system_config()["dsl_upstream_rate"] == 40000
def test_dsl_snr_margin(self, driver):
cfg = driver.get_system_config()
assert cfg["dsl_downstream_noise_margin"] == 120
assert cfg["dsl_upstream_noise_margin"] == 80
def test_dsl_attenuation(self, driver):
cfg = driver.get_system_config()
assert cfg["dsl_downstream_attenuation"] == 150
def test_dsl_crc_errors(self, driver):
assert driver.get_system_config()["dsl_crc_errors"] == 5
def test_dsl_fec_errors(self, driver):
assert driver.get_system_config()["dsl_fec_errors"] == 12
def test_firmware_update_available(self, driver):
assert driver.get_system_config()["firmware_update_available"] is True
def test_firmware_not_available_when_none(self, driver):
driver.fc.call_action.side_effect = lambda svc, act, **kw: (
UI_INFO_NO_UPDATE if (svc, act) == ("UserInterface1", "X_AVM-DE_GetInfo")
else _call_action(svc, act, **kw)
)
assert driver.get_system_config()["firmware_update_available"] is False
def test_dns_servers_parsed(self, driver):
cfg = driver.get_system_config()
assert cfg["dns_servers"] == ["1.1.1.1", "8.8.8.8"]
def test_ntp_server(self, driver):
assert driver.get_system_config()["ntp_server"] == "ntp.example.com"
def test_empty_when_no_dsl_service(self, driver):
del driver.fc.services["WANDSLInterfaceConfig1"]
cfg = driver.get_system_config()
assert "dsl_downstream_rate" not in cfg
# ---------------------------------------------------------------------------
# get_port_forwards — IPv6 pinholes
# ---------------------------------------------------------------------------
class TestIPv6Pinholes:
def test_ipv6_pinhole_appended(self, driver):
forwards = driver.get_port_forwards()
protocols = [f["protocol"] for f in forwards]
assert "TCP6" in protocols
def test_ipv6_pinhole_fields(self, driver):
forwards = driver.get_port_forwards()
ssh6 = next(f for f in forwards if f["protocol"] == "TCP6")
assert ssh6["name"] == "SSH6"
assert ssh6["internal_ip"] == "2001:db8::10"
assert ssh6["internal_port"] == 22
assert ssh6["enabled"] is True
def test_no_pinholes_without_ipv6_service(self, driver):
del driver.fc.services["WANIPv6Firewall1"]
forwards = driver.get_port_forwards()
assert all(f["protocol"] not in ("TCP6", "UDP6") for f in forwards)