get_vlans() relied on `bridge vlan show` for port membership. On devices whose BusyBox ships without the bridge/ip-full packages the command does not exist, _send_command returns the shell error, and the parser silently finds nothing in it. All that survived was the sub-interface fallback, which restates the bridge topology (br-ap tagged, br-ap.10 untagged) and never names the uplink port — the only port whose tagging matters. Measured on two Sophos AP100 (BusyBox 1.37.0): eth0 was absent from the output entirely, while UCI held ports='eth0:u*' for the management VLAN and 'eth0:t' for the rest. UCI bridge-vlan sections are now parsed as a second source. They are readable without the bridge binary and describe the configured state. Section collection goes through the type declaration, so named sections (network.apbr_vlan10) are recognised alongside anonymous ones — the old regex matched only @bridge-vlan[N], so a hand-built bridge was invisible even for name lookup. Runtime data keeps precedence where it exists, since that is what the kernel actually enforces. Option values are kept raw through collection; stripping quotes there would collapse ports='lan1:t' 'lan2:t' into a single mangled item. Also repairs TestGetVlans, red on master since get_vlans() moved to separate tagged/untagged lists while the tests still asserted the old 'interfaces' key, and TestGetFacts, which never learned about the number_of_interfaces key get_facts() sets deliberately. Both had left the interesting behaviour uncovered.
288 lines
12 KiB
Python
288 lines
12 KiB
Python
# -*- coding: utf-8 -*-
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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from __future__ import annotations
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import re
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from typing import Any
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def _split_uci_list(value: str) -> list[str]:
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"""Split a ``uci show`` option value into its items.
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List options are rendered space-separated with each item quoted
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(``ports='lan1:t' 'lan2:t'``); scalar options carry a single quoted value.
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"""
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items = re.findall(r"'([^']*)'", value)
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if items:
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return [i for i in items if i]
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stripped = value.strip().strip("'")
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return [stripped] if stripped else []
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def _uci_scalar(value: str) -> str:
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"""Return the single unquoted value of a scalar ``uci show`` option."""
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items = _split_uci_list(value)
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return items[0] if items else ""
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def _parse_port_spec(spec: str) -> tuple[str, bool]:
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"""Return ``(port, is_tagged)`` for an OpenWrt bridge-vlan port spec.
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``eth0:t`` is a tagged member; ``eth0:u*`` (untagged + PVID), ``eth0:*``
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and a bare ``eth0`` are untagged members.
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"""
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port, _, flags = spec.partition(":")
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return port, "t" in flags
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def _uci_sections_of_type(uci_out: str, sec_type: str) -> list[dict[str, str]]:
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"""Collect all ``network`` sections of *sec_type* from ``uci show network``.
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Handles both anonymous (``network.@bridge-vlan[0]``) and named
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(``network.apbr_vlan10``) sections — only the former was recognised before,
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so tool- or hand-provisioned bridges were invisible.
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Option values are kept raw (quotes included) so that list options stay
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distinguishable from scalars; use :func:`_uci_scalar` or
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:func:`_split_uci_list` to read them.
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"""
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decl = re.compile(rf"^network\.(\S+)={re.escape(sec_type)}$")
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option = re.compile(r"^network\.(\S+?)\.(\w+)=(.*)$")
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section_ids: set[str] = set()
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for line in uci_out.splitlines():
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m = decl.match(line.strip())
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if m:
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section_ids.add(m.group(1))
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sections: dict[str, dict[str, str]] = {sid: {} for sid in section_ids}
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for line in uci_out.splitlines():
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m = option.match(line.strip())
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if m and m.group(1) in section_ids:
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sections[m.group(1)][m.group(2)] = m.group(3).strip()
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return list(sections.values())
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class OpenWrtVLANMixin:
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"""Mixin providing VLAN and network-instance NAPALM getters."""
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def get_vlans(self) -> dict[str, Any]:
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"""Return VLAN information with proper tagged/untagged separation.
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Uses ``bridge vlan show`` (DSA-based OpenWrt ≥21.02) for VLAN/port
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membership and ``uci show network`` for VLAN names.
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A port marked *PVID Egress Untagged* is an untagged member.
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All other VLAN memberships for the same port are tagged.
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Also detects legacy 802.1q sub-interfaces (``eth0.10`` etc.) from
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``ip link show``. The parent interface (``eth0``) is added as a
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tagged member for every such VLAN.
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"""
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bridge_out = self._send_command("bridge vlan show")
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uci_out = self._send_command("uci show network")
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# vlan_id -> {name, tagged: [], untagged: []}
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vlans: dict[str, Any] = {}
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current_port: str | None = None
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for line in bridge_out.splitlines():
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line_s = line.strip()
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if not line_s or line_s.lower().startswith("port"):
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continue
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# Port line: "eth0 1 PVID Egress Untagged"
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m = re.match(r"^(\S+)\s+(\d+)(.*)", line)
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if m:
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current_port = m.group(1)
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vlan_id = str(int(m.group(2)))
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flags = m.group(3).upper()
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vlans.setdefault(vlan_id, {"name": "", "tagged": [], "untagged": []})
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if "PVID" in flags or "UNTAGGED" in flags:
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if current_port not in vlans[vlan_id]["untagged"]:
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vlans[vlan_id]["untagged"].append(current_port)
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else:
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if current_port not in vlans[vlan_id]["tagged"]:
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vlans[vlan_id]["tagged"].append(current_port)
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continue
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# Continuation line with only a VLAN ID (tagged for current_port)
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m = re.match(r"^(\d+)", line_s)
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if m and current_port:
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vlan_id = str(int(m.group(1)))
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vlans.setdefault(vlan_id, {"name": "", "tagged": [], "untagged": []})
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if current_port not in vlans[vlan_id]["tagged"]:
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vlans[vlan_id]["tagged"].append(current_port)
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# Enrich with the configured membership from UCI bridge-vlan sections.
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# On devices whose BusyBox ships without the `bridge` utility this is
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# the only source that names the physical ports at all — the
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# sub-interface fallback below can only ever report br-ap/br-ap.N.
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# Runtime data from `bridge vlan show` describes what the kernel
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# actually enforces, so it keeps precedence where both are present.
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for entry in _uci_sections_of_type(uci_out, "bridge-vlan"):
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if "vlan" not in entry:
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continue
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try:
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vlan_id = str(int(_uci_scalar(entry["vlan"])))
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except ValueError:
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continue
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vlan = vlans.setdefault(vlan_id, {"name": "", "tagged": [], "untagged": []})
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uci_name = _uci_scalar(entry.get("name", ""))
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if uci_name and not vlan["name"]:
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vlan["name"] = uci_name
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for spec in _split_uci_list(entry.get("ports", "")):
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port, tagged = _parse_port_spec(spec)
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if port in vlan["tagged"] or port in vlan["untagged"]:
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continue
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vlan["tagged" if tagged else "untagged"].append(port)
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# Also derive VLAN names from UCI network interface sections that
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# reference subinterfaces like eth0.N or br-ap.N:
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# network.guest.device='eth0.8' -> VLAN 8 name = "guest"
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# network.ap_v8.device='br-ap.8' -> VLAN 8 name = "ap_v8"
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# Only fills in names that are still empty after bridge-vlan lookup.
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for line in uci_out.splitlines():
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m = re.match(r"network\.(\w+)\.device='[\w-]+\.(\d+)'", line.strip())
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if m:
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section_name, vid_str = m.group(1), m.group(2)
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vlan_id = str(int(vid_str))
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if vlan_id in vlans and not vlans[vlan_id]["name"]:
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vlans[vlan_id]["name"] = section_name
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# Also detect VLAN sub-interfaces (eth0.10, br-ap.8, ...) from ip link show.
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# The sub-interface is the untagged egress point; its parent is tagged.
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link_out = self._send_command("ip link show")
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for line in link_out.splitlines():
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lm = re.match(r"^\d+:\s+(\S+?)[@:]", line)
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if not lm:
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continue
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iface = lm.group(1)
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vm = re.match(r"^([\w-]+)\.(\d+)$", iface) # allow hyphens (br-ap)
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if not vm:
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continue
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parent = vm.group(1) # e.g. "eth0" or "br-ap"
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vlan_id = str(int(vm.group(2))) # e.g. "10"
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vlans.setdefault(vlan_id, {"name": "", "tagged": [], "untagged": []})
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# sub-interface itself -> untagged egress
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if iface not in vlans[vlan_id]["untagged"] and iface not in vlans[vlan_id]["tagged"]:
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vlans[vlan_id]["untagged"].append(iface)
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# parent -> tagged trunk
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if parent not in vlans[vlan_id]["tagged"] and parent not in vlans[vlan_id]["untagged"]:
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vlans[vlan_id]["tagged"].append(parent)
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return vlans
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def delete_vlan(self, vlan_id: int) -> None:
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"""Remove a VLAN from the device by deleting its UCI bridge-vlan section.
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Finds the ``network.@bridge-vlan[N]`` section whose ``.vlan`` matches
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*vlan_id*, deletes it and commits. If no matching section is found the
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method is a no-op (the VLAN may only exist as an eth0.N sub-interface,
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which cannot be deleted via UCI alone).
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:param vlan_id: VLAN ID to remove.
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:raises ValueError: If *vlan_id* is out of the valid range.
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"""
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if not 1 <= vlan_id <= 4094:
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raise ValueError(f"VLAN ID {vlan_id} is out of range (1-4094)")
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uci_out = self.cli(["uci show network"]).get("uci show network", "")
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idx = None
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for line in uci_out.splitlines():
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m = re.match(r"network\.@bridge-vlan\[(\d+)\]\.vlan='(\d+)'", line.strip())
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if m and int(m.group(2)) == vlan_id:
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idx = m.group(1)
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break
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if idx is None:
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# No explicit bridge-vlan section -- nothing to delete via UCI
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return
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self.cli([
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f"uci delete network.@bridge-vlan[{idx}]",
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"uci commit network",
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"/etc/init.d/network reload",
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])
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def get_network_instances(self, name: str = "") -> dict[str, Any]:
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"""Return network instances (Linux network namespaces + default).
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The ``default`` instance contains all interfaces not assigned to a
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named namespace. Named namespaces are discovered via ``ip netns list``.
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Example::
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{
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'default': {
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'name': 'default',
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'type': 'DEFAULT_INSTANCE',
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'state': {'route_distinguisher': None},
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'interfaces': {'interface': {'br-lan': {}, 'eth0': {}}}
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}
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}
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"""
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netns_out = self._send_command("ip netns list")
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iface_list = self._get_interface_list()
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instances: dict[str, Any] = {}
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# Named namespaces
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netns_names: list[str] = []
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for line in netns_out.splitlines():
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line_s = line.strip()
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if not line_s:
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continue
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# "myns (id: 3)" or just "myns"
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ns_name = line_s.split()[0]
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netns_names.append(ns_name)
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# Interfaces inside the namespace
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ns_ifaces_out = self._send_command(f"ip netns exec {ns_name} ip link show")
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ns_ifaces: dict[str, Any] = {}
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for iline in ns_ifaces_out.splitlines():
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im = re.match(r"^\d+:\s+(\S+?)[@:]", iline)
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if im and im.group(1) != "lo":
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ns_ifaces[im.group(1)] = {}
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instances[ns_name] = {
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"name": ns_name,
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"type": "L3VRF",
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"state": {"route_distinguisher": None},
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"interfaces": {"interface": ns_ifaces},
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}
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# Default instance: interfaces NOT in any named namespace
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# (on most OpenWrt devices there are no named namespaces)
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default_ifaces = {iface: {} for iface in iface_list}
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instances["default"] = {
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"name": "default",
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"type": "DEFAULT_INSTANCE",
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"state": {"route_distinguisher": None},
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"interfaces": {"interface": default_ifaces},
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}
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if name:
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return {k: v for k, v in instances.items() if k == name}
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return instances
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def set_hostname(self, new_hostname: str) -> None:
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"""Set the system hostname via UCI and reload the system service."""
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self._send_command(
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f"uci set system.@system[0].hostname='{new_hostname}' && "
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f"uci commit system && "
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f"/etc/init.d/system reload"
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)
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