#!/usr/bin/env python3 """ Avaya / Extreme Avaya / Extreme ERS 5952 Switch Manager — One File Setup ───────────────────────────────────────── Copy this single file to your always on management computer (Raspberry Pi, HP T620 thin client, old computer or laptop) and run: python Avaya_5952_setup.py It will: - Install Python dependencies - Generate SSH keypair - Guide you through loading the key on the switch (one manual step) - Test SSH connectivity - Pin the switch host key - Set up TOTP authenticator - Write switch_backend.py and build the React frontend - Install and start the systemd service - Open the browser Re-running is safe — skips steps already done. ───────────────────────────────────────── """ import os, sys, time, shutil, subprocess, textwrap, socket from pathlib import Path # ── Colour helpers ────────────────────────────────────────────────────────── def c(t, code): return f"\033[{code}m{t}\033[0m" def green(t): return c(t, "32") def yellow(t): return c(t, "33") def red(t): return c(t, "31") def cyan(t): return c(t, "36") def bold(t): return c(t, "1") def dim(t): return c(t, "2") def ok(m): print(f" {green(chr(10003))} {m}") def warn(m): print(f" {yellow(chr(9888))} {m}") def err(m): print(f" {red(chr(10007))} {m}") def info(m): print(f" {cyan(chr(9672))} {m}") def step(n,m): print(f"\n{bold(cyan(f'[{n}]'))} {bold(m)}") def sep(): print(dim(" " + chr(8212)*58)) def ask(prompt, default=""): try: v = input(f" {cyan(chr(63))} {prompt}" + (f" [{default}]" if default else "") + ": ").strip() return v if v else default except KeyboardInterrupt: print("\n\nAborted."); sys.exit(0) def ask_yn(prompt, default=True): v = ask(f"{prompt} ({'Y/n' if default else 'y/N'})", "").lower() return default if not v else v.startswith("y") def pause(m="Press Enter to continue..."): try: input(f"\n {yellow(chr(9654))} {m}") except KeyboardInterrupt: print("\n\nAborted."); sys.exit(0) def sudo(cmd): prefix = "sudo " if os.geteuid() != 0 else "" return subprocess.run(f"{prefix}{cmd}", shell=True, capture_output=True, text=True) def run(cmd, capture=True, check=False): return subprocess.run(cmd, shell=True, capture_output=capture, text=True, check=check) def local_ip(): try: s = socket.socket(socket.AF_INET, socket.SOCK_DGRAM) s.connect(("8.8.8.8", 80)) ip = s.getsockname()[0]; s.close(); return ip except: return "localhost" # ── Paths ──────────────────────────────────────────────────────────────────── HERE = Path(__file__).parent.absolute() CONF_DIR = Path("/etc/switch-manager") KEY_PATH = CONF_DIR / "ers5952_key" KNOWN_HOSTS = CONF_DIR / "known_hosts" TOTP_FILE = CONF_DIR / "totp_secret" BACKEND = HERE / "switch_backend.py" FRONTEND = HERE / "frontend" DIST = FRONTEND / "dist" APP_JSX = HERE / "ers5952-manager.jsx" SERVICE = Path("/etc/systemd/system/switch-manager.service") PACKAGES = ["fastapi", "uvicorn", "paramiko", "pyotp"] # ── Console software download links ─────────────────────────────────────────── CONSOLE_SOFTWARE = { "PuTTY (Windows)": "https://www.putty.org", "TeraTerm (Windows)": "https://github.com/TeraTermProject/teraterm/releases", "Serial (Mac)": "https://apps.apple.com/app/serial/id877615577", "CoolTerm (Mac/Win)": "https://freeware.the-meiers.org", "CP2102 USB driver": "https://www.silabs.com/developers/usb-to-uart-bridge-vcp-drivers", "FTDI USB driver": "https://ftdichip.com/drivers/vcp-drivers/", } CONSOLE_CABLE_SEARCH = "RJ45 console cable USB Cisco compatible" BACKEND_SRC = '"""\nERS 59100GTS-PWR+ Switch Manager — Backend v3\n────────────────────────────────────────────────────────────────────────\nChanges from v2:\n - Connection pool (30s lifetime, liveness check, auto-invalidate)\n - Visitor-aware polling — starts when someone hits the page,\n pauses when no active visitors, stops completely when idle\n - Hard-block danger patterns (no force override for lethal commands)\n - Session-based TOTP (one auth → session token → many pushes)\n - Per-command execution with stop-on-error\n - Config saved only on full success\n\nRequirements:\n pip install fastapi uvicorn paramiko pyotp\n\nRun:\n python switch_backend.py # start server\n python switch_backend.py --setup-totp # first-time TOTP setup\n────────────────────────────────────────────────────────────────────────\n"""\n\nimport re, sys, time, secrets, logging, threading, os\nfrom pathlib import Path\nfrom typing import Optional\n\nimport paramiko, pyotp\nfrom fastapi import FastAPI, HTTPException, Request\nfrom fastapi.middleware.cors import CORSMiddleware\nfrom fastapi.responses import JSONResponse\nfrom fastapi.staticfiles import StaticFiles\nfrom pydantic import BaseModel, field_validator\n\nlogging.basicConfig(level=logging.INFO,\n format="%(asctime)s [%(levelname)s] %(message)s")\nlog = logging.getLogger("switch-manager")\n\n# ══════════════════════════════════════════════════════════════════════\n# CONFIG\n# ══════════════════════════════════════════════════════════════════════\nSWITCH_HOST = "192.168.99.1"\nSWITCH_PORT = 22\nSWITCH_USER = "admin"\nKEY_PATH = "/etc/switch-manager/ers59100_key"\nKNOWN_HOSTS = "/etc/switch-manager/known_hosts"\nTOTP_FILE = "/etc/switch-manager/totp_secret"\nSTATIC_DIR = "./frontend/dist"\n\nPOLL_ACTIVE_S = 15 # poll interval when visitors present\nPOLL_BG_S = 60 # poll interval when tab backgrounded\nPOLL_IDLE_AFTER = 300 # stop polling after this many seconds with no visitors\nCONN_POOL_MAX_S = 25 # max connection age before refresh (< switch idle timeout)\nSESSION_TTL_S = 600 # TOTP session — 10 minutes, reset on activity\n\nALLOWED_ORIGINS = ["*"] # tighten to http://192.168.99.X in production\n\n# ══════════════════════════════════════════════════════════════════════\n# TOTP\n# ══════════════════════════════════════════════════════════════════════\n\ndef get_or_create_totp_secret() -> str:\n p = Path(TOTP_FILE)\n if p.exists():\n return p.read_text().strip()\n secret = pyotp.random_base32()\n p.parent.mkdir(parents=True, exist_ok=True)\n p.write_text(secret)\n p.chmod(0o600)\n log.info(f"New TOTP secret created at {TOTP_FILE}")\n return secret\n\ndef setup_totp():\n secret = get_or_create_totp_secret()\n uri = pyotp.TOTP(secret).provisioning_uri(\n name="ERS59100", issuer_name="SwitchManager")\n print("\\n══════════════════════════════════════════════════")\n print(" ERS 59100GTS-PWR+ Switch Manager — TOTP Setup")\n print("══════════════════════════════════════════════════")\n print(f"\\n Manual entry secret:\\n {secret}")\n print(f"\\n Provisioning URI (paste into authenticator app):\\n {uri}")\n print("\\n Or generate a QR code:")\n print(f" python -c \\"import qrcode; qrcode.make(\'{uri}\').show()\\"")\n print("\\n══════════════════════════════════════════════════\\n")\n\nTOTP_SECRET: str = ""\n\n# ── Session tokens (one TOTP → session, multiple pushes) ──────────────\n# { token: { expires: float, last_activity: float } }\n_sessions: dict[str, dict] = {}\n_sessions_lock = threading.Lock()\n\ndef create_session() -> str:\n token = secrets.token_hex(32)\n now = time.time()\n with _sessions_lock:\n _sessions[token] = {"expires": now + SESSION_TTL_S, "last_activity": now}\n return token\n\ndef validate_session(token: str) -> bool:\n """Returns True and refreshes activity timestamp if session is valid."""\n now = time.time()\n with _sessions_lock:\n # Prune expired\n expired = [t for t, s in _sessions.items() if s["expires"] < now]\n for t in expired:\n del _sessions[t]\n if token not in _sessions:\n return False\n # Refresh on activity\n _sessions[token]["last_activity"] = now\n _sessions[token]["expires"] = now + SESSION_TTL_S\n return True\n\ndef session_remaining(token: str) -> Optional[int]:\n with _sessions_lock:\n s = _sessions.get(token)\n if not s:\n return None\n return max(0, int(s["expires"] - time.time()))\n\ndef revoke_session(token: str):\n with _sessions_lock:\n _sessions.pop(token, None)\n\ndef require_session(token: str):\n if not validate_session(token):\n raise HTTPException(401, "Session expired or invalid — re-authenticate with TOTP")\n\n# ══════════════════════════════════════════════════════════════════════\n# DANGER DETECTION\n# Two tiers:\n# HARD_BLOCK — refused entirely, must run at console\n# WARN — flagged, push still offered with explicit override\n# ══════════════════════════════════════════════════════════════════════\n\nHARD_BLOCK_PATTERNS = [\n # Management VLAN removal — all variants\n (re.compile(r\'no\\s+vlan\\s+99\\b\', re.I), "Deletes management VLAN 99"),\n (re.compile(r\'vlan\\s+members\\s+remove\\b.*\\b99\\b\', re.I), "Removes VLAN 99 from a port — kills management trunk"),\n (re.compile(r\'no\\s+vlan\\s+tagging\\b.*\\b99\\b\', re.I), "Removes VLAN 99 tagging — kills management trunk"),\n (re.compile(r\'vlan\\s+pvid\\s+\\S+\\s+\\S+\', re.I), "Changes native VLAN — verify not management port"),\n # SSH / IP removal\n (re.compile(r\'no\\s+ip\\s+ssh\', re.I), "Disables SSH entirely — permanent lockout"),\n (re.compile(r\'no\\s+ip\\s+address\\b\', re.I), "Removes IP address — will lose connectivity"),\n # Management interface\n (re.compile(r\'interface\\s+vlan\\s+99\\b\', re.I), "Modifies management VLAN interface — run at console"),\n # Boot / factory\n (re.compile(r\'boot\\s+config\\s+flags\\s+factory\', re.I), "Factory reset — run at console"),\n]\n\nWARN_PATTERNS = [\n (re.compile(r\'\\bshutdown\\b\', re.I), "Shuts down an interface — confirm it is not your uplink"),\n (re.compile(r\'default\\s+interface\\b\', re.I), "Resets interface to defaults"),\n (re.compile(r\'no\\s+vlan\\s+\\d+\\b\', re.I), "Deletes a VLAN — confirm no active ports depend on it"),\n (re.compile(r\'spanning-tree\\s+.*\\s+disable\', re.I), "Disables spanning tree — loop risk"),\n]\n\ndef check_danger(commands: list[str]) -> dict:\n """\n Scan a list of CLI commands for dangerous patterns.\n\n Returns a dict with:\n hard_blocked — commands that are refused entirely (e.g. no vlan 99, no ip ssh)\n warnings — commands that are allowed but flagged (e.g. shutdown)\n has_hard_block, has_warnings — convenience booleans\n """\n hard, warn = [], []\n for cmd in commands:\n for pat, reason in HARD_BLOCK_PATTERNS:\n if pat.search(cmd):\n hard.append({"command": cmd, "reason": reason})\n break\n else:\n for pat, reason in WARN_PATTERNS:\n if pat.search(cmd):\n warn.append({"command": cmd, "reason": reason})\n break\n return {\n "hard_blocked": hard,\n "warnings": warn,\n "has_hard_block": bool(hard),\n "has_warnings": bool(warn),\n }\n\n# ══════════════════════════════════════════════════════════════════════\n# SANITIZATION\n# ══════════════════════════════════════════════════════════════════════\n\n_BAD_CHARS = re.compile(r\'[;&|`$<>(){}\\\\"\\\']\')\n_BAD_PATS = [re.compile(p) for p in [r\'\\n\', r\'\\r\', r\'--\', r\'/\\*\']]\n_RE_VID = re.compile(r\'^\\d{1,4}$\')\n_RE_VNAME = re.compile(r\'^[a-zA-Z0-9\\-_]{1,32}$\')\n_RE_MODE = re.compile(r\'^(access|trunk|disabled)$\')\n_RE_ANAME = re.compile(r\'^[a-zA-Z0-9\\-_]{1,32}$\')\n_RE_DIR = re.compile(r\'^(in|out)$\')\n_RE_PROTO = re.compile(r\'^(ip|tcp|udp|icmp)$\')\n_RE_ACTION = re.compile(r\'^(permit|deny)$\')\n_RE_DESC = re.compile(r\'^[a-zA-Z0-9\\-_ ]{0,64}$\')\n_RE_IP = re.compile(r\'^\\d{1,3}\\.\\d{1,3}\\.\\d{1,3}\\.\\d{1,3}$\')\n\ndef _san(v: str, pat: re.Pattern, field: str) -> str:\n """Reject shell-injection characters and check value against an allow-list regex."""\n if _BAD_CHARS.search(v):\n raise ValueError(f"{field}: disallowed characters")\n for p in _BAD_PATS:\n if p.search(v):\n raise ValueError(f"{field}: injection pattern")\n if not pat.match(v):\n raise ValueError(f"{field}: invalid format — {repr(v)}")\n return v\n\ndef san_vid(v, field="vlan_id") -> int:\n """Validate and return a VLAN ID integer (1–4094)."""\n _san(str(v), _RE_VID, field)\n vid = int(v)\n if not 1 <= vid <= 4094:\n raise ValueError(f"{field}: must be 1–4094")\n return vid\n\ndef san_port(v) -> int:\n """Validate and return a port number (1–100 for the ERS 59100GTS-PWR+)."""\n p = int(v)\n if not 1 <= p <= 100:\n raise ValueError("port: must be 1–100")\n return p\n\n_ALLOWED_CMD_RE = [\n re.compile(r\'^vlan\\s+(create|members|tagging|pvid)\\s\'),\n re.compile(r\'^no\\s+vlan\\s+\\d+$\'),\n re.compile(r\'^interface\\s+(GigabitEthernet\\s+1/\\d+|vlan\\s+\\d+)$\'),\n re.compile(r\'^\\s+(name|no\\s+shutdown|poe|speed|duplex|ip\\s+access-group|shutdown)\\b\'),\n re.compile(r\'^hostname\\s+\\S+$\'),\n re.compile(r\'^ip\\s+access-list\\s+extended\\s\'),\n re.compile(r\'^\\s+\\d+\\s+(permit|deny)\\s\'),\n re.compile(r\'^!\\s*\'), re.compile(r\'^\\s*$\'),\n]\n\ndef is_allowed(cmd: str) -> bool:\n """Return True if cmd matches the CLI allow-list (whitelist of safe command patterns)."""\n return any(p.match(cmd) for p in _ALLOWED_CMD_RE)\n\n# ══════════════════════════════════════════════════════════════════════\n# CONNECTION POOL\n# ══════════════════════════════════════════════════════════════════════\n\nclass SwitchConnectionPool:\n """\n Keeps one SSH connection alive for up to CONN_POOL_MAX_S seconds.\n On liveness check failure or expiry → opens a fresh connection.\n Thread-safe.\n """\n def __init__(self):\n self._conn: Optional[paramiko.SSHClient] = None\n self._born: float = 0\n self._lock = threading.Lock()\n\n def get(self) -> paramiko.SSHClient:\n with self._lock:\n now = time.time()\n age = now - self._born\n if self._conn and age < CONN_POOL_MAX_S:\n try:\n transport = self._conn.get_transport()\n if transport and transport.is_active():\n transport.send_ignore() # lightweight liveness ping\n return self._conn\n except Exception:\n log.info("Pool: liveness check failed — opening fresh connection")\n self._close_unsafe()\n self._conn = _open_connection()\n self._born = time.time()\n log.info("Pool: new connection opened")\n return self._conn\n\n def invalidate(self):\n with self._lock:\n self._close_unsafe()\n\n def _close_unsafe(self):\n if self._conn:\n try:\n self._conn.close()\n except Exception:\n pass\n self._conn = None\n self._born = 0\n\n_pool = SwitchConnectionPool()\n\n\ndef _open_connection() -> paramiko.SSHClient:\n client = paramiko.SSHClient()\n known = Path(KNOWN_HOSTS)\n if known.exists():\n client.load_host_keys(str(known))\n client.set_missing_host_key_policy(paramiko.RejectPolicy())\n else:\n log.warning("No known_hosts — trust on first use")\n client.set_missing_host_key_policy(paramiko.AutoAddPolicy())\n try:\n client.connect(\n hostname=SWITCH_HOST, port=SWITCH_PORT, username=SWITCH_USER,\n key_filename=KEY_PATH, look_for_keys=False, allow_agent=False,\n timeout=10, banner_timeout=10,\n )\n except paramiko.AuthenticationException:\n raise HTTPException(503, "SSH auth failed — is the public key loaded on the switch?")\n except Exception as e:\n raise HTTPException(503, f"Cannot reach switch at {SWITCH_HOST}: {e}")\n if not known.exists():\n known.parent.mkdir(parents=True, exist_ok=True)\n client.save_host_keys(str(known))\n log.info("Host key pinned to known_hosts")\n return client\n\n\ndef read_cmd(cmd: str) -> str:\n """Run a read-only command in enable mode via interactive shell channel."""\n try:\n conn = _pool.get()\n ch = conn.invoke_shell()\n ch.settimeout(10)\n time.sleep(0.4)\n if ch.recv_ready():\n ch.recv(4096) # drain login banner\n for setup in ["terminal length 0", "enable"]:\n ch.send(setup + "\\n")\n time.sleep(0.3)\n if ch.recv_ready():\n ch.recv(4096) # drain prompt output\n ch.send(cmd + "\\n")\n out = ""\n deadline = time.time() + 8\n while time.time() < deadline:\n if ch.recv_ready():\n out += ch.recv(4096).decode("utf-8", errors="replace")\n time.sleep(0.1)\n else:\n if out:\n break\n time.sleep(0.1)\n ch.close()\n return out\n except HTTPException:\n raise\n except Exception as e:\n log.warning(f"read_cmd failed ({cmd}): {e} — invalidating pool")\n _pool.invalidate()\n raise HTTPException(503, f"Switch read failed: {e}")\n\n\n# ── Per-command interactive push ───────────────────────────────────────\n\n_SWITCH_ERR = re.compile(\n r\'%\\s*(invalid|error|unknown|bad|failed|cannot|not\\s+found|does\\s+not\\s+exist\'\n r\'|incomplete|ambiguous|out\\s+of\\s+range|already\\s+exists)\',\n re.I\n)\n\ndef _run_one(channel, cmd: str) -> tuple[str, bool]:\n channel.send(cmd + "\\n")\n time.sleep(0.35)\n out, deadline = "", time.time() + 6\n while time.time() < deadline:\n if channel.recv_ready():\n out += channel.recv(4096).decode("utf-8", errors="replace")\n time.sleep(0.1)\n else:\n if out:\n break\n time.sleep(0.1)\n return out.strip(), bool(_SWITCH_ERR.search(out))\n\n\ndef push_one_by_one(commands: list[str]) -> dict:\n """\n Opens a FRESH dedicated connection for push (not from pool —\n we don\'t want a push session to corrupt the pool\'s read connection).\n Runs commands one at a time, stops on first error.\n Saves config only on full success.\n """\n _pool.invalidate() # invalidate pool — switch will be busy during push\n client = _open_connection()\n results = []\n stopped_at = None\n try:\n ch = client.invoke_shell()\n ch.settimeout(10)\n time.sleep(0.5)\n if ch.recv_ready():\n ch.recv(4096) # drain banner\n\n for setup in ["terminal length 0", "enable", "configure terminal"]:\n out, err = _run_one(ch, setup)\n if err:\n return {"success": False, "saved": False,\n "error": f"Failed entering config mode: {out}",\n "results": [], "hint": "Check switch is reachable and credentials are correct"}\n\n for i, cmd in enumerate(commands):\n s = cmd.strip()\n if not s or s.startswith("!"):\n results.append({"index": i, "command": cmd,\n "output": "", "success": True, "skipped": True})\n continue\n log.info(f" [{i+1}/{len(commands)}] {s}")\n out, had_err = _run_one(ch, s)\n results.append({"index": i, "command": cmd,\n "output": out, "success": not had_err, "skipped": False})\n if had_err:\n stopped_at = i\n log.warning(f" Error at command {i+1}: {out}")\n break\n\n _run_one(ch, "end")\n saved = False\n if stopped_at is None:\n _, save_err = _run_one(ch, "save config")\n saved = not save_err\n if saved:\n log.info("Config saved to NVRAM")\n else:\n log.warning("Config save may have failed — verify at console")\n else:\n log.warning("Config NOT saved — push stopped on error")\n\n ch.close()\n return {\n "success": stopped_at is None,\n "saved": saved,\n "commands_total": len(commands),\n "commands_sent": len([r for r in results if not r.get("skipped")]),\n "stopped_at": stopped_at,\n "error": results[stopped_at]["output"] if stopped_at is not None else None,\n "hint": "Remaining commands must be run at the switch console" if stopped_at is not None else None,\n "results": results,\n }\n finally:\n client.close()\n # Pool will reopen on next poll naturally\n\n# ══════════════════════════════════════════════════════════════════════\n# VISITOR-AWARE POLLER\n# ══════════════════════════════════════════════════════════════════════\n\n_cache: dict = {\n "port_status": None, "poe_status": None,\n "vlan_members": None, "sys_info": None,\n "last_poll": 0, "poll_error": None,\n}\n_cache_lock = threading.Lock()\n\n# Visitor tracking\n_visitors: dict[str, float] = {} # { visitor_id: last_seen }\n_visitors_lock = threading.Lock()\n_poll_mode = "idle" # idle | active | background\n\ndef heartbeat(visitor_id: str, mode: str = "active"):\n """Called by frontend to indicate a visitor is present."""\n global _poll_mode\n with _visitors_lock:\n _visitors[visitor_id] = time.time()\n _poll_mode = mode\n\ndef prune_visitors():\n """Remove visitors not seen for POLL_IDLE_AFTER seconds and set mode to idle if none remain."""\n global _poll_mode\n with _visitors_lock:\n now = time.time()\n gone = [v for v, t in _visitors.items() if now - t > POLL_IDLE_AFTER]\n for v in gone:\n del _visitors[v]\n if not _visitors:\n _poll_mode = "idle"\n\ndef _poll_loop():\n """\n Background thread: polls the switch for live status at a visitor-adaptive interval.\n\n When visitors are active: polls every POLL_ACTIVE_S seconds.\n When visitors have the tab backgrounded: polls every POLL_BG_S seconds.\n When no visitors for POLL_IDLE_AFTER seconds: sleeps without polling.\n Results cached in _cache; poll_error set on SSH failure.\n """\n log.info("Poller thread started")\n while True:\n prune_visitors()\n with _visitors_lock:\n mode = _poll_mode\n has_visitors = bool(_visitors)\n\n if not has_visitors:\n # No visitors — sleep and check again, don\'t poll switch\n time.sleep(30)\n continue\n\n # Poll the switch\n try:\n data = {\n "port_status": read_cmd("show interfaces"),\n "poe_status": read_cmd("show poe-main-status"),\n "vlan_members": read_cmd("show vlan"),\n "sys_info": read_cmd("show sys-info"),\n }\n with _cache_lock:\n _cache.update(data)\n _cache["last_poll"] = time.time()\n _cache["poll_error"] = None\n except Exception as e:\n with _cache_lock:\n _cache["poll_error"] = str(e)\n log.warning(f"Poll error: {e}")\n\n interval = POLL_ACTIVE_S if mode == "active" else POLL_BG_S\n time.sleep(interval)\n\ndef start_poller():\n """Launch the background polling thread as a daemon (exits when main process exits)."""\n t = threading.Thread(target=_poll_loop, daemon=True)\n t.start()\n log.info("Poller started")\n\n# ══════════════════════════════════════════════════════════════════════\n# PYDANTIC MODELS\n# ══════════════════════════════════════════════════════════════════════\n\nclass TotpVerify(BaseModel):\n code: str\n\nclass SessionCheck(BaseModel):\n token: str\n\nclass SessionRevoke(BaseModel):\n token: str\n\nclass Heartbeat(BaseModel):\n visitor_id: str\n mode: str = "active" # active | background\n\nclass PushBatch(BaseModel):\n token: str\n commands: list[str]\n\nclass VlanCreate(BaseModel):\n token: str\n vlan_id: int\n name: str\n @field_validator("vlan_id")\n @classmethod\n def cv(cls, v): return san_vid(v)\n @field_validator("name")\n @classmethod\n def cn(cls, v): return _san(v, _RE_VNAME, "name")\n\nclass VlanDelete(BaseModel):\n token: str\n vlan_id: int\n @field_validator("vlan_id")\n @classmethod\n def cv(cls, v):\n vid = san_vid(v)\n if vid == 1: raise ValueError("Cannot delete VLAN 1")\n return vid\n\nclass VlanProvision(BaseModel):\n token: str\n vlan_id: int\n name: str\n subnet: str # e.g. "192.168.20.0/24"\n gateway: str # OPNsense IP on this VLAN, e.g. "192.168.20.1"\n dhcp_start: str # e.g. "192.168.20.100"\n dhcp_end: str # e.g. "192.168.20.200"\n parent_if: str # OPNsense physical parent, e.g. "em0" or "igb0"\n opnsense_if: Optional[str] = "" # assigned interface name, e.g. "opt2"\n allow_internet: bool = True # add default allow-out firewall rule\n @field_validator("vlan_id")\n @classmethod\n def cv(cls, v):\n vid = san_vid(v)\n if vid in (1, 99): raise ValueError("VLAN 1 and 99 are reserved")\n return vid\n @field_validator("name")\n @classmethod\n def cn(cls, v): return _san(v, _RE_VNAME, "name")\n\nclass AclRule(BaseModel):\n action: str\n proto: str\n src: Optional[str] = "any"\n src_mask: Optional[str] = "0.0.0.255"\n src_any: Optional[bool] = True\n dst: Optional[str] = "any"\n dst_mask: Optional[str] = "0.0.0.255"\n dst_any: Optional[bool] = True\n port: Optional[str] = ""\n port_end: Optional[str] = "" # when set, generates "range port port_end"\n @field_validator("action")\n @classmethod\n def ca(cls, v): return _san(v, _RE_ACTION, "action")\n @field_validator("proto")\n @classmethod\n def cp(cls, v): return _san(v, _RE_PROTO, "proto")\n\nclass AclCreate(BaseModel):\n token: str\n name: str\n apply_vlan: int\n direction: str\n rules: list[AclRule]\n @field_validator("name")\n @classmethod\n def cn(cls, v): return _san(v, _RE_ANAME, "name")\n @field_validator("direction")\n @classmethod\n def cd(cls, v): return _san(v, _RE_DIR, "direction")\n\nclass PortConfig(BaseModel):\n token: str\n port: int\n mode: str\n access_vlan: Optional[int] = 1\n tagged_vlans: Optional[list[int]] = []\n native_vlan: Optional[int] = 1\n poe: Optional[bool] = True\n poe_limit_mw: Optional[int] = 30000\n description: Optional[str] = ""\n @field_validator("port")\n @classmethod\n def cp(cls, v): return san_port(v)\n @field_validator("mode")\n @classmethod\n def cm(cls, v): return _san(v, _RE_MODE, "mode")\n @field_validator("poe_limit_mw")\n @classmethod\n def cpoe(cls, v):\n if v is not None and not 1000 <= v <= 30000:\n raise ValueError("PoE limit: 1000–30000 mW")\n return v\n\n# ══════════════════════════════════════════════════════════════════════\n# COMMAND BUILDERS\n# ══════════════════════════════════════════════════════════════════════\n\ndef build_port(cfg: PortConfig) -> list[str]:\n """\n Generate ERS 59100GTS-PWR+ CLI commands for a port configuration change.\n\n Ports 1–96 are GigabitEthernet copper (PoE capable); ports 97–100 are SFP+ uplinks (no PoE).\n All interfaces use slot/port notation: GigabitEthernet 1/{p}.\n Returns a list of CLI command strings ready for push_one_by_one().\n """\n p = cfg.port\n iface = f"FastEthernet {p}"\n cmds = []\n if cfg.description:\n cmds += [f"interface {iface}", f\' name "{cfg.description}"\']\n if cfg.mode == "disabled":\n cmds += [f"interface {iface}", " shutdown"]\n elif cfg.mode == "access":\n vid = san_vid(cfg.access_vlan, "access_vlan")\n cmds += [f"vlan members add {vid} {p}", f"vlan pvid {p} {vid}"]\n elif cfg.mode == "trunk":\n native = san_vid(cfg.native_vlan, "native_vlan")\n tagged = [san_vid(v, f"tagged_{v}") for v in (cfg.tagged_vlans or [])]\n if tagged:\n ts = ",".join(str(v) for v in tagged)\n cmds += [f"vlan members add {ts} {p}", f"vlan tagging {ts} {p}"]\n cmds.append(f"vlan pvid {p} {native}")\n if p <= 96:\n cmds += [f"interface {iface}",\n " poe enable" if cfg.poe else " no poe enable"]\n if cfg.poe:\n cmds.append(f" poe poe-limit {cfg.poe_limit_mw}")\n return cmds\n\ndef build_acl(acl: AclCreate) -> list[str]:\n """\n Generate ERS 59100GTS-PWR+ CLI commands to create an extended IP ACL and apply it to a VLAN interface.\n\n Rules are numbered sequentially starting from 1.\n The ACL is applied to the VLAN\'s Layer 3 interface in the specified direction (in/out).\n """\n cmds = [f"ip access-list extended {acl.name}"]\n for i, r in enumerate(acl.rules):\n src = "any" if r.src_any else f"{r.src} {r.src_mask}"\n dst = "any" if r.dst_any else f"{r.dst} {r.dst_mask}"\n if r.port and r.port_end:\n port_str = f" range {r.port} {r.port_end}"\n elif r.port:\n port_str = f" eq {r.port}"\n else:\n port_str = ""\n cmds.append(f" {i+1} {r.action} {r.proto} {src} {dst}{port_str}")\n vid = san_vid(acl.apply_vlan, "apply_vlan")\n cmds += [f"interface vlan {vid}",\n f" ip access-group {acl.name} {acl.direction}"]\n return cmds\n\n# ══════════════════════════════════════════════════════════════════════\n# APP\n# ══════════════════════════════════════════════════════════════════════\n\napp = FastAPI(title="ERS 59100GTS-PWR+ Switch Manager", version="3.0.0",\n docs_url="/api/docs", redoc_url=None)\n\napp.add_middleware(CORSMiddleware, allow_origins=ALLOWED_ORIGINS,\n allow_methods=["GET","POST","DELETE"],\n allow_headers=["Content-Type"])\n\n@app.exception_handler(ValueError)\nasync def val_err(req: Request, exc: ValueError):\n return JSONResponse(400, {"detail": str(exc)})\n\n@app.on_event("startup")\ndef startup():\n global TOTP_SECRET\n TOTP_SECRET = get_or_create_totp_secret()\n log.info("TOTP secret loaded")\n start_poller()\n\n# ── Heartbeat (visitor tracking) ──────────────────────────────────────\n\n@app.post("/api/heartbeat")\ndef hb(body: Heartbeat):\n """\n Frontend calls this every 30s to indicate visitor is present.\n mode = \'active\' when tab is visible, \'background\' when hidden.\n Poller adjusts interval accordingly.\n """\n heartbeat(body.visitor_id, body.mode)\n with _cache_lock:\n last = _cache["last_poll"]\n err = _cache["poll_error"]\n return {\n "poll_mode": _poll_mode,\n "last_poll": last,\n "poll_age": round(time.time() - last, 1) if last else None,\n "poll_error": err,\n }\n\n# ── Auth ───────────────────────────────────────────────────────────────\n\n@app.post("/api/auth/verify")\ndef verify_totp(body: TotpVerify):\n """Verify TOTP code — returns session token for multiple pushes."""\n if not pyotp.TOTP(TOTP_SECRET).verify(body.code.strip(), valid_window=1):\n log.warning("TOTP verify failed")\n raise HTTPException(401, "Invalid TOTP code")\n token = create_session()\n log.info("TOTP OK — session created")\n return {\n "token": token,\n "expires_in": SESSION_TTL_S,\n "message": "Session active — re-authenticates on expiry or manual lock"\n }\n\n@app.post("/api/auth/check")\ndef check_session(body: SessionCheck):\n """Check if a session is still valid. Returns remaining seconds."""\n remaining = session_remaining(body.token)\n if remaining is None:\n raise HTTPException(401, "Session expired")\n return {"valid": True, "remaining": remaining}\n\n@app.post("/api/auth/revoke")\ndef revoke(body: SessionRevoke):\n """Manually lock — invalidates the session immediately."""\n revoke_session(body.token)\n log.info("Session manually revoked")\n return {"revoked": True}\n\n# ── Read endpoints (no auth) ───────────────────────────────────────────\n\n@app.get("/api/status")\ndef status():\n """Backend and switch connectivity summary (no auth required)."""\n with _cache_lock:\n return {\n "backend": "online",\n "switch_host": SWITCH_HOST,\n "key_exists": Path(KEY_PATH).exists(),\n "known_hosts_pinned": Path(KNOWN_HOSTS).exists(),\n "last_poll": _cache["last_poll"],\n "poll_age": round(time.time() - _cache["last_poll"], 1)\n if _cache["last_poll"] else None,\n "poll_error": _cache["poll_error"],\n "poll_mode": _poll_mode,\n }\n\n@app.get("/api/live")\ndef live():\n """Cached live switch data — updated by background poller."""\n with _cache_lock:\n age = time.time() - _cache["last_poll"] if _cache["last_poll"] else None\n return {\n **_cache,\n "stale": age is None or age > max(POLL_ACTIVE_S, POLL_BG_S) * 3\n }\n\n@app.get("/api/switch/config")\ndef running_config():\n """Fetch and return the full switch running config (read-only, no auth)."""\n out = read_cmd("show config")\n return {"config": out, "lines": len(out.splitlines())}\n\n\n# ── Capability probe ────────────────────────────────────────────────────\n\n_caps_cache: dict = {}\n_caps_ts: float = 0.0\n_caps_lock = threading.Lock()\n_CAPS_TTL = 300 # seconds — re-probe every 5 min; license won\'t change mid-session\n\n\ndef _probe_capabilities() -> dict:\n """\n Non-destructive read-only probes to detect which features the switch\n supports under its current software license.\n\n Base Software: ACL and L3 VLAN commands return \'% Invalid input detected\'.\n Advanced License: commands succeed (may show empty output, but no error).\n """\n acl_out = read_cmd("show ip access-list")\n vlan_out = read_cmd("show interface vlan 1")\n acl_ok = not _SWITCH_ERR.search(acl_out)\n l3_ok = not _SWITCH_ERR.search(vlan_out)\n return {\n "acl": acl_ok,\n "l3_vlan": l3_ok,\n "dhcp_relay_config": l3_ok, # relay config uses \'interface vlan\'\n "management_pinholes": acl_ok,\n "dns_enforce_acls": acl_ok,\n "license_tier": "advanced" if acl_ok else "base",\n }\n\n\ndef _require_advanced_license():\n """Raise 402 if the switch reports Base Software (no ACL/L3 support)."""\n global _caps_ts\n with _caps_lock:\n cached = _caps_cache.copy() if _caps_cache else {}\n # If we have a cached result use it; otherwise probe now\n if not cached:\n try:\n cached = _probe_capabilities()\n with _caps_lock:\n _caps_cache.update(cached)\n _caps_ts = time.time()\n except HTTPException:\n return # can\'t reach switch — let the push fail with its own error\n if cached.get("license_tier") == "base":\n raise HTTPException(\n 402,\n "This feature requires the Advanced Software License. "\n "The switch reported Base Software — ACLs and L3 VLAN interfaces are not available."\n )\n\n\n@app.get("/api/switch/capabilities")\ndef switch_capabilities():\n """\n Probe the switch to determine which features are available under its\n current software license. Results are cached for 5 minutes.\n\n Base Software supports L2 only (VLANs, ports, PoE, show commands).\n Advanced License adds ACLs and L3 VLAN interfaces.\n\n Affected endpoints when license_tier == \'base\':\n - POST /api/switch/acl (acl)\n - POST /api/ctrld/dns-enforce-acls (dns_enforce_acls)\n """\n global _caps_cache, _caps_ts\n with _caps_lock:\n if time.time() - _caps_ts < _CAPS_TTL and _caps_cache:\n return {**_caps_cache, "cached": True}\n try:\n caps = _probe_capabilities()\n except HTTPException as e:\n return {\n "error": e.detail,\n "acl": False, "l3_vlan": False,\n "dhcp_relay_config": False,\n "management_pinholes": False,\n "dns_enforce_acls": False,\n "license_tier": "unknown",\n "cached": False,\n }\n with _caps_lock:\n _caps_cache = caps\n _caps_ts = time.time()\n return {**caps, "cached": False}\n\n# ── Danger pre-flight (no auth — check before prompting TOTP) ─────────\n\n@app.post("/api/check/danger")\ndef danger_check(body: dict):\n """\n Pre-flight danger check — call this before showing TOTP prompt.\n\n Returns hard_blocked, warnings, and safe_to_push flag.\n No auth required so the user sees danger info before authenticating.\n """\n cmds = body.get("commands", [])\n result = check_danger(cmds)\n rejected = [c for c in cmds if not is_allowed(c)]\n result["rejected_by_allowlist"] = rejected\n result["safe_to_push"] = (\n not result["has_hard_block"] and not rejected\n )\n return result\n\n# ── Push endpoints (require session token) ────────────────────────────\n\n@app.post("/api/switch/push")\ndef push(body: PushBatch):\n """\n Push CLI batch one command at a time.\n Requires valid session token.\n Hard-blocked commands are refused — no override.\n Warn-level commands proceed (user was already shown the warning).\n Stops on first switch error. Config saved only on full success.\n """\n require_session(body.token)\n\n danger = check_danger(body.commands)\n if danger["has_hard_block"]:\n raise HTTPException(400, {\n "message": "Hard-blocked commands detected — these must be run at the switch console",\n "blocked": danger["hard_blocked"],\n })\n\n rejected = [c for c in body.commands if not is_allowed(c)]\n if rejected:\n raise HTTPException(400, {\n "message": "Commands failed allowlist validation",\n "rejected": rejected[:10],\n })\n\n log.info(f"Push: {len(body.commands)} commands")\n return push_one_by_one(body.commands)\n\n@app.post("/api/switch/vlan")\ndef create_vlan(body: VlanCreate):\n """Create a new VLAN on the switch (type port = standard Layer 2 VLAN)."""\n require_session(body.token)\n return push_one_by_one(\n [f\'vlan create {body.vlan_id} name "{body.name}" type port\'])\n\n@app.delete("/api/switch/vlan/{vlan_id}")\ndef delete_vlan(vlan_id: int, token: str):\n """Delete a VLAN by ID. VLAN 1 is blocked at model level; VLAN 99 is blocked by danger check."""\n require_session(token)\n return push_one_by_one([f"no vlan {san_vid(vlan_id)}"])\n\n@app.post("/api/switch/port")\ndef configure_port(body: PortConfig):\n """Apply port configuration: mode (access/trunk/disabled), VLAN, PoE, description."""\n require_session(body.token)\n return push_one_by_one(build_port(body))\n\n@app.post("/api/switch/acl")\ndef create_acl(body: AclCreate):\n """Create an extended IP ACL and apply it to a VLAN interface. Requires Advanced License."""\n require_session(body.token)\n _require_advanced_license()\n return push_one_by_one(build_acl(body))\n\n@app.post("/api/vlan/provision")\ndef provision_vlan(body: VlanProvision):\n """\n End-to-end VLAN provisioning: switch VLAN + OPNsense interface tag +\n DHCP scope + optional internet-allow firewall rule.\n\n Steps performed:\n 1. Create VLAN on switch\n 2. Create VLAN tag on OPNsense (interfaces/vlan_settings)\n 3. Apply OPNsense VLAN config\n 4. If opnsense_if provided: create DHCP subnet + apply\n 5. If opnsense_if + allow_internet: add allow-outbound firewall rule + apply\n\n Returns steps_done, pending_steps (anything needing manual finish in OPNsense UI).\n """\n import ipaddress as _ipaddr\n require_session(body.token)\n\n steps_done: list[str] = []\n pending_steps: list[str] = []\n\n # Validate subnet/gateway/range are sane\n try:\n net = _ipaddr.ip_network(body.subnet, strict=False)\n _ipaddr.ip_address(body.gateway)\n _ipaddr.ip_address(body.dhcp_start)\n _ipaddr.ip_address(body.dhcp_end)\n except ValueError as e:\n raise HTTPException(400, f"Invalid address: {e}")\n\n # ── Step 1: Switch VLAN ────────────────────────────────────────────\n result = push_one_by_one([f\'vlan create {body.vlan_id} name "{body.name}" type port\'])\n if not result.get("success"):\n raise HTTPException(502, {"message": "Switch VLAN create failed", "detail": result})\n steps_done.append(f"switch: vlan {body.vlan_id} \'{body.name}\' created")\n\n # ── Steps 2–5: OPNsense ───────────────────────────────────────────\n cfg = _load_opnsense_cfg()\n if not cfg.get("key"):\n pending_steps += [\n f"OPNsense: create VLAN tag {body.vlan_id} on {body.parent_if}",\n f"OPNsense: assign VLAN interface, set IP {body.gateway}/{net.prefixlen}",\n f"OPNsense: create DHCP scope {body.dhcp_start}–{body.dhcp_end}",\n ]\n if body.allow_internet:\n pending_steps.append("OPNsense: add allow-outbound firewall rule for VLAN")\n return {"success": True, "steps_done": steps_done, "pending_steps": pending_steps,\n "note": "OPNsense not configured — connect it under DHCP settings to automate these steps"}\n\n errors: list[str] = []\n\n # Step 2: create VLAN tag\n try:\n vlan_r = _opnsense_request(cfg, "interfaces/vlan_settings/addItem", "POST", {\n "vlan": {"if": body.parent_if, "tag": str(body.vlan_id), "pcp": "0", "descr": body.name}\n })\n vlan_uuid = vlan_r.get("uuid", "")\n steps_done.append(f"OPNsense: VLAN tag {body.vlan_id} created on {body.parent_if} (uuid={vlan_uuid})")\n except ValueError as e:\n errors.append(f"OPNsense VLAN tag: {e}")\n vlan_uuid = ""\n\n # Step 3: apply VLAN config\n if vlan_uuid:\n try:\n _opnsense_request(cfg, "interfaces/vlan_settings/reconfigure", "POST")\n steps_done.append("OPNsense: VLAN config applied")\n except ValueError as e:\n errors.append(f"OPNsense VLAN apply: {e}")\n\n # Interface assignment must be done in OPNsense UI unless opnsense_if is provided\n if not body.opnsense_if:\n pending_steps += [\n f"OPNsense UI: assign {body.parent_if}.{body.vlan_id} as a new interface, "\n f"set static IP {body.gateway}/{net.prefixlen}, note the interface name (e.g. opt2)",\n f"OPNsense: create DHCP scope {body.dhcp_start}–{body.dhcp_end} once interface is assigned",\n ]\n if body.allow_internet:\n pending_steps.append("OPNsense: add allow-outbound firewall rule for new interface")\n else:\n # Step 4: DHCP scope\n try:\n _opnsense_request(cfg, "dhcpv4/settings/addSubnet", "POST", {\n "subnet": {\n "interface": body.opnsense_if,\n "subnet": str(net),\n "gateway": body.gateway,\n "dns_servers": body.gateway,\n "range": {"from": body.dhcp_start, "to": body.dhcp_end},\n }\n })\n _opnsense_request(cfg, "dhcpv4/service/reconfigure", "POST")\n steps_done.append(\n f"OPNsense: DHCP scope {body.dhcp_start}–{body.dhcp_end} on {body.opnsense_if} created")\n except ValueError as e:\n errors.append(f"OPNsense DHCP scope: {e}")\n\n # Step 5: firewall allow-outbound\n if body.allow_internet:\n try:\n fw_r = _opnsense_request(cfg, "firewall/filter/addRule", "POST", {\n "rule": {\n "enabled": "1",\n "action": "pass",\n "interface": body.opnsense_if,\n "direction": "in",\n "ipprotocol": "inet",\n "protocol": "any",\n "source": {"network": f"{body.opnsense_if}net"},\n "destination":{"any": "1"},\n "descr": f"Allow VLAN {body.vlan_id} {body.name} outbound",\n }\n })\n _opnsense_request(cfg, "firewall/filter/apply", "POST")\n steps_done.append(\n f"OPNsense: allow-outbound rule for {body.opnsense_if} added (uuid={fw_r.get(\'uuid\',\'\')})")\n except ValueError as e:\n errors.append(f"OPNsense firewall rule: {e}")\n\n # Persist VLAN→interface mapping for push-reservation lookups\n vmap = _load_vlan_if_map()\n vmap[str(body.vlan_id)] = body.opnsense_if\n _save_vlan_if_map(vmap)\n\n return {\n "success": len(errors) == 0,\n "steps_done": steps_done,\n "pending_steps": pending_steps,\n "errors": errors,\n }\n\n# ── Serve React app ────────────────────────────────────────────────────\nif os.path.isdir(STATIC_DIR):\n app.mount("/", StaticFiles(directory=STATIC_DIR, html=True), name="frontend")\n\n# ══════════════════════════════════════════════════════════════════════\nif __name__ == "__main__":\n if "--setup-totp" in sys.argv:\n setup_totp()\n sys.exit(0)\n import uvicorn\n uvicorn.run("switch_backend:app", host="0.0.0.0", port=8765,\n log_level="info")\n\n# ══════════════════════════════════════════════════════════════════════\n# DEVICE ACCESS — DHCP LEASES, MAC RESERVATIONS, ACL PINHOLES\n# ══════════════════════════════════════════════════════════════════════\n\nimport json as _json\nfrom pathlib import Path as _Path\n\nDEVICES_FILE = _Path("/etc/switch-manager/devices.json")\n\ndef _load_devices() -> list:\n """Load the saved device list from devices.json, returning [] on missing or corrupt file."""\n if DEVICES_FILE.exists():\n try: return _json.loads(DEVICES_FILE.read_text())\n except: pass\n return []\n\ndef _save_devices(devices: list):\n """Persist the device list to devices.json with 2-space indentation."""\n DEVICES_FILE.write_text(_json.dumps(devices, indent=2))\n\ndef _parse_dhcp_leases(raw: str) -> list:\n """Parse ERS 59100GTS-PWR+ \'show dhcp-server leases\' output."""\n import re\n leases = []\n for line in raw.splitlines():\n # Format: IP MAC State Remaining Hostname\n m = re.match(\n r\'\\s*(\\d+\\.\\d+\\.\\d+\\.\\d+)\\s+\'\n r\'([0-9a-fA-F]{2}[:\\-][0-9a-fA-F]{2}[:\\-][0-9a-fA-F]{2}\'\n r\'[:\\-][0-9a-fA-F]{2}[:\\-][0-9a-fA-F]{2}[:\\-][0-9a-fA-F]{2})\\s+\'\n r\'(\\S+)\\s+(\\S+)\\s*(.*)\', line)\n if m:\n leases.append({\n "ip": m.group(1),\n "mac": m.group(2).lower().replace(\'-\',\':\'),\n "state": m.group(3),\n "remaining": m.group(4),\n "hostname": m.group(5).strip() or "unknown",\n })\n return leases\n\ndef _parse_arp_table(raw: str) -> list:\n """Parse \'show arp\' for additional device discovery."""\n import re\n entries = []\n for line in raw.splitlines():\n m = re.match(\n r\'\\s*(\\d+\\.\\d+\\.\\d+\\.\\d+)\\s+\'\n r\'([0-9a-fA-F]{2}[:\\-][0-9a-fA-F]{2}[:\\-][0-9a-fA-F]{2}\'\n r\'[:\\-][0-9a-fA-F]{2}[:\\-][0-9a-fA-F]{2}[:\\-][0-9a-fA-F]{2})\',\n line)\n if m:\n entries.append({\n "ip": m.group(1),\n "mac": m.group(2).lower().replace(\'-\',\':\'),\n "state": "arp",\n "remaining": "-",\n "hostname": "",\n })\n return entries\n\nclass DeviceEntry(BaseModel):\n name: str\n mac: str\n ip: str\n vlan: int = 10\n management_access: bool = False\n static_ip: bool = False\n notes: Optional[str] = ""\n\nclass DeviceUpdate(BaseModel):\n token: str\n device: DeviceEntry\n\nclass DeviceDelete(BaseModel):\n token: str\n mac: str\n\nclass PinholeRequest(BaseModel):\n token: str\n mac: str\n allow: bool = True\n\ndef _build_dhcp_reservation_cmds(device: DeviceEntry) -> list:\n """Generate ERS 59100GTS-PWR+ CLI for DHCP static binding."""\n mac_clean = device.mac.replace(\':\',\'-\').upper()\n return [\n f"ip dhcp-server static-binding {device.ip}",\n f" mac-address {mac_clean}",\n f" client-name \\"{device.name}\\"",\n ]\n\ndef _build_pinhole_acl_cmds(device: DeviceEntry, mgmt_ip: str, allow: bool) -> list:\n """Generate ACL commands to allow/deny a device IP to reach management."""\n acl_name = f"MGMT-ACCESS"\n if allow:\n return [\n f"ip access-list extended {acl_name}",\n f" permit tcp host {device.ip} host {mgmt_ip} eq 443",\n f" permit tcp host {device.ip} host {mgmt_ip} eq 8765",\n ]\n else:\n return [\n f"ip access-list extended {acl_name}",\n f" no permit tcp host {device.ip} host {mgmt_ip}",\n ]\n\n@app.get("/api/devices")\ndef get_devices():\n """Return saved device list plus live DHCP leases and ARP from switch."""\n saved = _load_devices()\n live_leases = []\n try:\n arp_raw = read_cmd("show arp")\n live_leases = _parse_arp_table(arp_raw)\n try:\n dhcp_raw = read_cmd("show ip dhcp-server leases")\n dhcp_leases = _parse_dhcp_leases(dhcp_raw)\n lease_ips = {l["ip"] for l in dhcp_leases}\n live_leases = dhcp_leases + [e for e in live_leases if e["ip"] not in lease_ips]\n except Exception:\n pass # DHCP server may not be enabled\n except Exception as e:\n log.warning(f"Could not pull ARP from switch: {e}")\n return {\n "saved": saved,\n "live": live_leases,\n "mgmt_ip": SWITCH_HOST,\n }\n\n@app.post("/api/devices/save")\ndef save_device(body: DeviceUpdate):\n """Save or update a device entry (upsert by MAC address)."""\n require_session(body.token)\n devices = _load_devices()\n existing = next((i for i, d in enumerate(devices) if d["mac"] == body.device.mac), None)\n device_dict = body.device.dict()\n if existing is not None:\n devices[existing] = device_dict\n else:\n devices.append(device_dict)\n _save_devices(devices)\n log.info(f"Device saved: {body.device.name} ({body.device.mac})")\n return {"success": True, "devices": devices}\n\n@app.post("/api/devices/delete")\ndef delete_device(body: DeviceDelete):\n """Remove a device from the saved list by MAC address."""\n require_session(body.token)\n devices = [d for d in _load_devices() if d["mac"] != body.mac]\n _save_devices(devices)\n return {"success": True}\n\n@app.post("/api/devices/push-reservation")\ndef push_reservation(body: DeviceUpdate):\n """\n Push a DHCP static reservation for this device.\n\n Routes to OPNsense if configured (preferred — no license required).\n Falls back to switch DHCP CLI only if OPNsense is not configured, which\n requires Advanced License on the switch.\n """\n require_session(body.token)\n device = body.device\n cfg = _load_opnsense_cfg()\n\n if cfg.get("key"):\n # Derive OPNsense interface from stored VLAN→interface map\n vmap = _load_vlan_if_map()\n iface = vmap.get(str(device.vlan), "")\n try:\n result = _opnsense_request(cfg, "dhcpv4/reservations/addReservation", "POST", {\n "reservation": {\n "interface": iface,\n "mac": device.mac,\n "ipaddr": device.ip,\n "hostname": device.name,\n "descr": f"Added by switch-manager",\n }\n })\n _opnsense_request(cfg, "dhcpv4/service/reconfigure", "POST")\n log.info(f"OPNsense DHCP reservation pushed: {device.name} ({device.mac}) → {device.ip}")\n return {"success": True, "target": "opnsense", "result": result}\n except ValueError as e:\n raise HTTPException(400, str(e))\n else:\n # Switch DHCP — requires Advanced License\n cmds = _build_dhcp_reservation_cmds(device)\n danger = check_danger(cmds)\n if danger["has_hard_block"]:\n raise HTTPException(400, {"message": "Blocked", "blocked": danger["hard_blocked"]})\n log.info(f"Switch DHCP reservation pushed: {device.name}")\n result = push_one_by_one(cmds)\n result["target"] = "switch"\n return result\n\n@app.post("/api/devices/push-pinhole")\ndef push_pinhole(body: PinholeRequest):\n """\n Add or remove a management-access firewall pinhole for a device.\n\n Uses OPNsense firewall API if configured. Rule UUIDs are stored locally\n so the same device can be cleanly de-pinholed later.\n """\n require_session(body.token)\n cfg = _load_opnsense_cfg()\n if not cfg.get("key"):\n raise HTTPException(503, "OPNsense not configured — connect it under DHCP settings")\n\n devices = _load_devices()\n device = next((DeviceEntry(**d) for d in devices if d["mac"] == body.mac), None)\n if not device:\n raise HTTPException(404, "Device not found — save it first")\n\n import socket\n try:\n mgmt_ip = socket.gethostbyname(socket.gethostname())\n except Exception:\n mgmt_ip = SWITCH_HOST.rsplit(\'.\', 1)[0] + \'.50\'\n\n pinholes = _load_pinholes()\n\n if body.allow:\n # Look up OPNsense interface for device VLAN\n vmap = _load_vlan_if_map()\n iface = vmap.get(str(device.vlan), "")\n try:\n r = _opnsense_request(cfg, "firewall/filter/addRule", "POST", {\n "rule": {\n "enabled": "1",\n "action": "pass",\n "interface": iface,\n "direction": "in",\n "ipprotocol": "inet",\n "protocol": "tcp",\n "source": {"address": device.ip},\n "destination": {"address": mgmt_ip, "port": "8765"},\n "descr": f"switch-manager pinhole {device.name}",\n }\n })\n _opnsense_request(cfg, "firewall/filter/apply", "POST")\n pinholes[device.mac] = r.get("uuid", "")\n _save_pinholes(pinholes)\n log.info(f"Pinhole allow: {device.name} ({device.ip}) → {mgmt_ip}:8765")\n return {"success": True, "action": "allow", "uuid": r.get("uuid", "")}\n except ValueError as e:\n raise HTTPException(400, str(e))\n else:\n uuid = pinholes.get(device.mac, "")\n if not uuid:\n raise HTTPException(404, "No pinhole rule found for this device")\n try:\n _opnsense_request(cfg, f"firewall/filter/delRule/{uuid}", "POST")\n _opnsense_request(cfg, "firewall/filter/apply", "POST")\n pinholes.pop(device.mac, None)\n _save_pinholes(pinholes)\n log.info(f"Pinhole removed: {device.name} ({device.ip})")\n return {"success": True, "action": "deny", "uuid": uuid}\n except ValueError as e:\n raise HTTPException(400, str(e))\n\n# ══════════════════════════════════════════════════════════════════════\n# WIREGUARD PEER MANAGEMENT\n# ══════════════════════════════════════════════════════════════════════\n\nWG_CLIENT_DIR_API = _Path("/etc/switch-manager/clients")\nWG_CONF_PATH = _Path("/etc/wireguard/wg0.conf")\n\nclass WGClientRequest(BaseModel):\n token: str\n name: str\n\nclass WGRevokeRequest(BaseModel):\n token: str\n name: str\n\ndef _wg_genkey_api():\n """Generate a WireGuard private/public keypair using the system wg tool."""\n import subprocess as _sp\n priv = _sp.run(["wg","genkey"], capture_output=True, text=True).stdout.strip()\n pub = _sp.run(["wg","pubkey"], input=priv, capture_output=True, text=True).stdout.strip()\n return priv, pub\n\ndef _wg_status() -> dict:\n """Return parsed WireGuard interface status including connected peers."""\n import subprocess as _sp\n try:\n raw = _sp.run(["wg","show"], capture_output=True, text=True).stdout\n peers = []\n current = {}\n for line in raw.splitlines():\n line = line.strip()\n if line.startswith("peer:"):\n if current: peers.append(current)\n current = {"public_key": line.split(":",1)[1].strip()}\n elif line.startswith("endpoint:"):\n current["endpoint"] = line.split(":",1)[1].strip()\n elif line.startswith("latest handshake:"):\n current["last_handshake"] = line.split(":",1)[1].strip()\n elif line.startswith("transfer:"):\n current["transfer"] = line.split(":",1)[1].strip()\n elif line.startswith("allowed ips:"):\n current["allowed_ips"] = line.split(":",1)[1].strip()\n if current: peers.append(current)\n\n # Match peers to named client files\n named = {}\n if WG_CLIENT_DIR_API.exists():\n for f in WG_CLIENT_DIR_API.glob("*.conf"):\n txt = f.read_text()\n import re\n m = re.search(r\'PublicKey\\s*=\\s*(\\S+)\', txt)\n if m: named[m.group(1)] = f.stem\n\n for p in peers:\n p["name"] = named.get(p.get("public_key",""), "unknown")\n\n return {"running": True, "peers": peers}\n except Exception as e:\n return {"running": False, "error": str(e), "peers": []}\n\n@app.get("/api/wireguard/status")\ndef wg_status():\n return _wg_status()\n\n@app.get("/api/wireguard/clients")\ndef wg_clients():\n clients = []\n if WG_CLIENT_DIR_API.exists():\n for f in sorted(WG_CLIENT_DIR_API.glob("*.conf")):\n clients.append({"name": f.stem, "file": str(f)})\n return {"clients": clients}\n\n@app.post("/api/wireguard/add-client")\ndef wg_add_client(body: WGClientRequest):\n require_session(body.token)\n if not WG_CONF_PATH.exists():\n raise HTTPException(503, "WireGuard not configured on this machine")\n\n import re, subprocess as _sp, socket\n\n # Next available IP\n conf_text = WG_CONF_PATH.read_text()\n used = set()\n for m in re.finditer(r\'AllowedIPs\\s*=\\s*(\\S+)\', conf_text):\n used.add(m.group(1).split(\'/\')[0])\n\n subnet = "10.99.0"\n num = 2\n while f"{subnet}.{num}" in used and num < 254: num += 1\n client_ip = f"{subnet}.{num}"\n\n # Server public key\n server_pub_path = _Path("/etc/switch-manager/wg_server_public")\n if not server_pub_path.exists():\n raise HTTPException(503, "Server public key not found")\n server_pub = server_pub_path.read_text().strip()\n\n # Client keys\n c_priv, c_pub = _wg_genkey_api()\n\n # Peer entry in server config\n peer = f"\\n[Peer]\\n# {body.name}\\nPublicKey = {c_pub}\\nAllowedIPs = {client_ip}/32\\n"\n with open(WG_CONF_PATH, \'a\') as f:\n f.write(peer)\n\n # Reload live\n _sp.run(["wg","addconf","wg0","/dev/stdin"],\n input=f"[Peer]\\nPublicKey = {c_pub}\\nAllowedIPs = {client_ip}/32\\n",\n capture_output=True, text=True)\n\n # Public IP for endpoint\n try:\n pub_ip = _sp.run(["curl","-s","--max-time","5","https://api.ipify.org"],\n capture_output=True, text=True).stdout.strip()\n except Exception:\n pub_ip = socket.gethostbyname(socket.gethostname())\n\n # Get management IP from switch config\n mgmt_subnet = \'.\'.join(SWITCH_HOST.split(\'.\')[:3]) + \'.0/24\'\n\n client_conf = (\n f"[Interface]\\nPrivateKey = {c_priv}\\nAddress = {client_ip}/24\\n"\n f"DNS = {subnet}.1\\n\\n"\n f"[Peer]\\nPublicKey = {server_pub}\\n"\n f"Endpoint = {pub_ip}:51820\\n"\n f"AllowedIPs = {mgmt_subnet}, {subnet}.0/24\\n"\n f"PersistentKeepalive = 25\\n"\n )\n\n WG_CLIENT_DIR_API.mkdir(exist_ok=True)\n client_file = WG_CLIENT_DIR_API / f"{body.name}.conf"\n client_file.write_text(client_conf)\n client_file.chmod(0o600)\n\n log.info(f"WireGuard client added: {body.name} → {client_ip}")\n return {\n "success": True,\n "name": body.name,\n "client_ip": client_ip,\n "config": client_conf,\n "file": str(client_file),\n }\n\n@app.post("/api/wireguard/revoke-client")\ndef wg_revoke_client(body: WGRevokeRequest):\n require_session(body.token)\n import re, subprocess as _sp\n\n client_file = WG_CLIENT_DIR_API / f"{body.name}.conf"\n if not client_file.exists():\n raise HTTPException(404, f"Client \'{body.name}\' not found")\n\n # Get client public key\n txt = client_file.read_text()\n m = re.search(r\'\\[Peer\\].*?PublicKey\\s*=\\s*(\\S+)\', txt, re.DOTALL)\n client_pub = m.group(1) if m else None\n\n # Remove from server config\n if WG_CONF_PATH.exists():\n conf = WG_CONF_PATH.read_text()\n # Remove the [Peer] block for this client\n cleaned = re.sub(\n rf\'\\n\\[Peer\\]\\n# {re.escape(body.name)}\\n.*?(?=\\n\\[Peer\\]|\\Z)\',\n \'\', conf, flags=re.DOTALL\n )\n WG_CONF_PATH.write_text(cleaned)\n\n # Remove live peer\n if client_pub:\n _sp.run(["wg","set","wg0","peer",client_pub,"remove"],\n capture_output=True, text=True)\n\n # Delete client file\n client_file.unlink()\n log.info(f"WireGuard client revoked: {body.name}")\n return {"success": True}\n\n@app.get("/api/wireguard/client-qr/{name}")\ndef wg_client_qr(name: str):\n """Return client config as text for QR generation in frontend."""\n client_file = WG_CLIENT_DIR_API / f"{name}.conf"\n if not client_file.exists():\n raise HTTPException(404, f"Client \'{name}\' not found")\n return {"name": name, "config": client_file.read_text()}\n\n# ══════════════════════════════════════════════════════════════════════\n# DHCP MANAGEMENT — SWITCH + OPNSENSE UNIFIED VIEW\n# ══════════════════════════════════════════════════════════════════════\n\nimport urllib.request as _urlreq\nimport urllib.error as _urlerr\nimport ssl as _ssl\nimport base64 as _b64\n\nOPNSENSE_FILE = _Path("/etc/switch-manager/opnsense.json")\nVLAN_IF_MAP_FILE = _Path("/etc/switch-manager/vlan-if-map.json")\nPINHOLE_FILE = _Path("/etc/switch-manager/pinholes.json")\n\ndef _load_vlan_if_map() -> dict:\n """Return {vlan_id_str: opnsense_if_name} e.g. {"20": "opt2"}."""\n if VLAN_IF_MAP_FILE.exists():\n try: return _json.loads(VLAN_IF_MAP_FILE.read_text())\n except: pass\n return {}\n\ndef _save_vlan_if_map(m: dict):\n VLAN_IF_MAP_FILE.write_text(_json.dumps(m, indent=2))\n\ndef _load_pinholes() -> dict:\n """Return {mac: rule_uuid} for OPNsense firewall pinholes."""\n if PINHOLE_FILE.exists():\n try: return _json.loads(PINHOLE_FILE.read_text())\n except: pass\n return {}\n\ndef _save_pinholes(m: dict):\n PINHOLE_FILE.write_text(_json.dumps(m, indent=2))\n PINHOLE_FILE.chmod(0o600)\n\ndef _load_opnsense_cfg() -> dict:\n """Load saved OPNsense API credentials from opnsense.json, returning {} if absent."""\n if OPNSENSE_FILE.exists():\n try: return _json.loads(OPNSENSE_FILE.read_text())\n except: pass\n return {}\n\ndef _save_opnsense_cfg(cfg: dict):\n """Persist OPNsense API credentials to opnsense.json (chmod 600 — contains secrets)."""\n OPNSENSE_FILE.write_text(_json.dumps(cfg, indent=2))\n OPNSENSE_FILE.chmod(0o600)\n\ndef _opnsense_request(cfg: dict, path: str, method="GET", body=None) -> dict:\n """Make an authenticated request to the OPNsense API."""\n host = cfg.get("host","")\n key = cfg.get("key","")\n secret = cfg.get("secret","")\n if not host or not key or not secret:\n raise ValueError("OPNsense not configured")\n url = f"https://{host}/api/{path}"\n creds = _b64.b64encode(f"{key}:{secret}".encode()).decode()\n ctx = _ssl.create_default_context()\n ctx.check_hostname = False\n ctx.verify_mode = _ssl.CERT_NONE\n headers = {\n "Authorization": f"Basic {creds}",\n "Content-Type": "application/json",\n }\n data = _json.dumps(body).encode() if body else None\n req = _urlreq.Request(url, data=data, headers=headers, method=method)\n try:\n with _urlreq.urlopen(req, timeout=5, context=ctx) as r:\n return _json.loads(r.read().decode())\n except _urlerr.HTTPError as e:\n raise ValueError(f"OPNsense API error {e.code}: {e.reason}")\n except Exception as e:\n raise ValueError(f"OPNsense unreachable: {e}")\n\ndef _detect_opnsense_host(gateway_ip: str) -> str | None:\n """Try to reach OPNsense API at the gateway IP."""\n try:\n ctx = _ssl.create_default_context()\n ctx.check_hostname = False\n ctx.verify_mode = _ssl.CERT_NONE\n url = f"https://{gateway_ip}/api/core/firmware/status"\n req = _urlreq.Request(url, headers={"User-Agent":"switch-manager/1"})\n _urlreq.urlopen(req, timeout=3, context=ctx)\n return gateway_ip\n except Exception:\n return None\n\nOPNSENSE_KNOWN_HOSTS = _Path("/etc/switch-manager/opnsense_known_hosts")\nOPNSENSE_SSH_KEY = _Path("/etc/switch-manager/opnsense_key")\nUNBOUND_ETC = "/var/unbound/etc"\n\ndef _opnsense_ssh_run(cfg: dict, cmd: str, timeout: int = 30) -> tuple:\n """Run a shell command on OPNsense via SSH. Returns (stdout, stderr, exit_code).\n\n Uses exec_command() which bypasses the OPNsense console menu — the menu\n only appears for interactive login sessions, not for exec_command calls.\n """\n host = cfg.get("host", "")\n ssh_user = cfg.get("ssh_user", "root")\n key_path = cfg.get("ssh_key_path", "")\n if not host or not key_path:\n raise ValueError("OPNsense SSH not configured — set host and ssh_key_path")\n client = paramiko.SSHClient()\n if OPNSENSE_KNOWN_HOSTS.exists():\n client.load_host_keys(str(OPNSENSE_KNOWN_HOSTS))\n else:\n client.set_missing_host_key_policy(paramiko.AutoAddPolicy())\n try:\n client.connect(\n hostname=host,\n username=ssh_user,\n key_filename=key_path,\n timeout=10,\n look_for_keys=False,\n allow_agent=False,\n )\n _, stdout, stderr = client.exec_command(cmd, timeout=timeout)\n exit_code = stdout.channel.recv_exit_status()\n return stdout.read().decode(), stderr.read().decode(), exit_code\n finally:\n client.close()\n\ndef _opnsense_sftp_write(cfg: dict, remote_path: str, content: str):\n """Write a file on OPNsense via SFTP (avoids shell quoting issues)."""\n host = cfg.get("host", "")\n ssh_user = cfg.get("ssh_user", "root")\n key_path = cfg.get("ssh_key_path", "")\n if not host or not key_path:\n raise ValueError("OPNsense SSH not configured")\n client = paramiko.SSHClient()\n if OPNSENSE_KNOWN_HOSTS.exists():\n client.load_host_keys(str(OPNSENSE_KNOWN_HOSTS))\n else:\n client.set_missing_host_key_policy(paramiko.AutoAddPolicy())\n try:\n client.connect(\n hostname=host,\n username=ssh_user,\n key_filename=key_path,\n timeout=10,\n look_for_keys=False,\n allow_agent=False,\n )\n sftp = client.open_sftp()\n with sftp.open(remote_path, "w") as f:\n f.write(content)\n sftp.close()\n finally:\n client.close()\n\ndef _opnsense_ssh_test(cfg: dict) -> dict:\n """Test SSH connectivity to OPNsense. Returns {ok, version, error}."""\n try:\n out, err, code = _opnsense_ssh_run(cfg, "uname -sr")\n return {"ok": code == 0, "version": out.strip(), "error": err.strip() if code != 0 else ""}\n except Exception as e:\n return {"ok": False, "version": "", "error": str(e)}\n\ndef _get_opnsense_reservations(cfg: dict) -> list:\n """Fetch DHCP static mappings from OPNsense."""\n try:\n data = _opnsense_request(cfg, "dhcpv4/leases/searchReservation")\n rows = data.get("rows", [])\n return [\n {\n "ip": r.get("ipaddr",""),\n "mac": r.get("mac","").lower(),\n "hostname": r.get("hostname",""),\n "descr": r.get("descr",""),\n "if": r.get("if",""),\n "source": "opnsense",\n "uuid": r.get("uuid",""),\n }\n for r in rows if r.get("mac")\n ]\n except Exception as e:\n log.warning(f"OPNsense reservations fetch failed: {e}")\n return []\n\ndef _get_opnsense_leases(cfg: dict) -> list:\n """Fetch active DHCP leases from OPNsense."""\n try:\n data = _opnsense_request(cfg, "dhcpv4/leases/searchLease")\n rows = data.get("rows", [])\n return [\n {\n "ip": r.get("address",""),\n "mac": r.get("mac","").lower(),\n "hostname": r.get("hostname",""),\n "state": r.get("state",""),\n "if": r.get("if",""),\n "source": "opnsense_lease",\n }\n for r in rows if r.get("mac")\n ]\n except Exception as e:\n log.warning(f"OPNsense leases fetch failed: {e}")\n return []\n\ndef _get_switch_reservations() -> list:\n """Fetch DHCP static bindings from ERS 59100GTS-PWR+.\n\n Requires ip dhcp-server to be enabled on the switch.\n Returns empty list if DHCP server is not enabled/licensed.\n """\n import re as _re\n try:\n raw = read_cmd("show ip dhcp-server static-binding")\n bindings = []\n current = {}\n for line in raw.splitlines():\n m = _re.match(r\'\\s*IP Address:\\s*(\\S+)\', line)\n if m:\n if current: bindings.append(current)\n current = {"ip": m.group(1), "mac":"", "hostname":"", "source":"switch"}\n m2 = _re.match(r\'\\s*MAC Address:\\s*(\\S+)\', line)\n if m2 and current:\n current["mac"] = m2.group(1).lower().replace(\'-\',\':\')\n m3 = _re.match(r\'\\s*Client Name:\\s*(\\S+)\', line)\n if m3 and current:\n current["hostname"] = m3.group(1)\n if current and current.get("ip"):\n bindings.append(current)\n return bindings\n except Exception as e:\n log.warning(f"Switch DHCP reservation fetch failed: {e}")\n return []\n\ndef _get_switch_dhcp_status() -> dict:\n """Check if switch DHCP server is running and which VLANs it serves.\n\n Requires ip dhcp-server to be enabled on the switch.\n """\n import re as _re\n try:\n raw = read_cmd("show ip dhcp-server")\n running = "enabled" in raw.lower() or "active" in raw.lower()\n vlans = _re.findall(r\'VLAN\\s+(\\d+)\', raw, _re.I)\n return {"running": running, "vlans": list(set(vlans))}\n except Exception:\n return {"running": False, "vlans": []}\n\ndef _find_conflicts(switch_res: list, opnsense_res: list) -> list:\n """\n Find same MAC in both switch and OPNsense.\n Flag if IPs differ (conflict) or same (duplicate — harmless but messy).\n """\n switch_by_mac = {r["mac"]: r for r in switch_res if r.get("mac")}\n conflicts = []\n for r in opnsense_res:\n mac = r.get("mac","")\n if mac and mac in switch_by_mac:\n sw = switch_by_mac[mac]\n conflicts.append({\n "mac": mac,\n "hostname": r.get("hostname") or sw.get("hostname",""),\n "switch_ip": sw["ip"],\n "opnsense_ip": r["ip"],\n "ip_conflict": sw["ip"] != r["ip"],\n "opnsense_uuid": r.get("uuid",""),\n })\n return conflicts\n\n# ── OPNsense config models ─────────────────────────────────────────────────\n\nclass OPNsenseConfig(BaseModel):\n host: str\n key: str\n secret: str\n\nclass OPNsenseSSHConfig(BaseModel):\n ssh_key_path: str\n ssh_user: str = "root"\n pin_host_key: bool = True\n\nclass OPNsenseReservationPush(BaseModel):\n token: str\n mac: str\n ip: str\n hostname: str\n descr: Optional[str] = ""\n iface: Optional[str] = "lan"\n\nclass SyncRequest(BaseModel):\n token: str\n mac: str\n direction: str # "to_switch" | "to_opnsense" | "remove_switch" | "remove_opnsense"\n\n\n# ── DHCP endpoints ─────────────────────────────────────────────────────────\n\n@app.get("/api/dhcp/overview")\ndef dhcp_overview():\n """\n Unified DHCP view:\n - Switch static bindings + active leases\n - OPNsense reservations + leases (if configured)\n - Conflicts (same MAC, different IP)\n - Which DHCP server is active per VLAN\n """\n switch_res = _get_switch_reservations()\n switch_leases = []\n switch_status = _get_switch_dhcp_status()\n\n # Discover devices via DHCP leases + ARP\n try:\n arp_raw = read_cmd("show arp")\n switch_leases = _parse_arp_table(arp_raw)\n try:\n dhcp_raw = read_cmd("show ip dhcp-server leases")\n dhcp_leases = _parse_dhcp_leases(dhcp_raw)\n lease_ips = {l["ip"] for l in dhcp_leases}\n # Merge ARP entries not already in leases\n switch_leases = dhcp_leases + [e for e in switch_leases if e["ip"] not in lease_ips]\n except Exception:\n pass # DHCP server may not be enabled\n except Exception as e:\n log.warning(f"Switch ARP fetch failed: {e}")\n\n cfg = _load_opnsense_cfg()\n opnsense_res = _get_opnsense_reservations(cfg) if cfg.get("key") else []\n opnsense_leases = _get_opnsense_leases(cfg) if cfg.get("key") else []\n conflicts = _find_conflicts(switch_res, opnsense_res)\n\n opnsense_ifaces = list({r.get("if","") for r in opnsense_res + opnsense_leases if r.get("if")})\n\n return {\n "switch": {\n "status": switch_status,\n "reservations": switch_res,\n "leases": switch_leases,\n },\n "opnsense": {\n "configured": bool(cfg.get("key")),\n "host": cfg.get("host",""),\n "reservations": opnsense_res,\n "leases": opnsense_leases,\n "interfaces": opnsense_ifaces,\n },\n "conflicts": conflicts,\n "has_conflicts": len(conflicts) > 0,\n }\n\n@app.get("/api/dhcp/detect-opnsense")\ndef detect_opnsense_endpoint():\n """Auto-detect OPNsense at the gateway IP."""\n import re as _re\n try:\n route = read_cmd("show ip route")\n # Look for default route: DST=0.0.0.0, MASK=0.0.0.0 — NEXT column is gateway\n m = _re.search(r\'^0\\.0\\.0\\.0\\s+0\\.0\\.0\\.0\\s+(\\d+\\.\\d+\\.\\d+\\.\\d+)\', route, _re.MULTILINE)\n gateway = m.group(1) if m else None\n except Exception:\n gateway = None\n\n if not gateway:\n # Try from switch management IP\n parts = SWITCH_HOST.split(\'.\')\n parts[-1] = \'1\'\n gateway = \'.\'.join(parts)\n\n host = _detect_opnsense_host(gateway)\n return {\n "detected": host is not None,\n "host": host,\n "gateway": gateway,\n "configured": bool(_load_opnsense_cfg().get("key")),\n }\n\n@app.post("/api/dhcp/configure-opnsense")\ndef configure_opnsense(body: OPNsenseConfig):\n """Save OPNsense API credentials. Tests connectivity first."""\n cfg = {"host": body.host, "key": body.key, "secret": body.secret}\n try:\n result = _opnsense_request(cfg, "core/firmware/status")\n _save_opnsense_cfg(cfg)\n log.info(f"OPNsense configured: {body.host}")\n return {"success": True, "version": result.get("product_version","unknown")}\n except ValueError as e:\n raise HTTPException(400, str(e))\n\n@app.delete("/api/dhcp/configure-opnsense")\ndef remove_opnsense_config():\n """Remove OPNsense API credentials."""\n if OPNSENSE_FILE.exists():\n OPNSENSE_FILE.unlink()\n return {"success": True}\n\n@app.post("/api/dhcp/push-to-opnsense")\ndef push_reservation_to_opnsense(body: OPNsenseReservationPush):\n """Create a DHCP static mapping in OPNsense."""\n require_session(body.token)\n cfg = _load_opnsense_cfg()\n if not cfg.get("key"):\n raise HTTPException(503, "OPNsense not configured")\n try:\n result = _opnsense_request(cfg, "dhcpv4/reservations/addReservation", "POST", {\n "reservation": {\n "interface": body.iface,\n "mac": body.mac,\n "ipaddr": body.ip,\n "hostname": body.hostname,\n "descr": body.descr or f"Added by switch-manager",\n }\n })\n # Apply changes\n _opnsense_request(cfg, "dhcpv4/service/reconfigure", "POST")\n log.info(f"OPNsense reservation pushed: {body.mac} → {body.ip}")\n return {"success": True, "result": result}\n except ValueError as e:\n raise HTTPException(400, str(e))\n\n@app.post("/api/dhcp/sync")\ndef sync_reservation(body: SyncRequest):\n """\n Sync a reservation between switch and OPNsense.\n Directions:\n to_switch — copy OPNsense reservation to switch\n to_opnsense — copy switch reservation to OPNsense\n remove_switch — remove from switch only\n remove_opnsense — remove from OPNsense only\n """\n require_session(body.token)\n cfg = _load_opnsense_cfg()\n overview = dhcp_overview()\n\n # Find the device in both sources\n sw_res = next((r for r in overview["switch"]["reservations"] if r["mac"]==body.mac), None)\n ops_res = next((r for r in overview["opnsense"]["reservations"] if r["mac"]==body.mac), None)\n\n if body.direction == "to_switch":\n if not ops_res:\n raise HTTPException(404, "OPNsense reservation not found")\n cmds = _build_dhcp_reservation_cmds(type(\'D\',(),{\n "ip": ops_res["ip"], "mac": ops_res["mac"], "name": ops_res.get("hostname","")\n })())\n return push_one_by_one(cmds)\n\n elif body.direction == "to_opnsense":\n if not sw_res:\n raise HTTPException(404, "Switch reservation not found")\n if not cfg.get("key"):\n raise HTTPException(503, "OPNsense not configured")\n result = _opnsense_request(cfg, "dhcpv4/reservations/addReservation", "POST", {\n "reservation": {\n "mac": sw_res["mac"], "ipaddr": sw_res["ip"],\n "hostname": sw_res.get("hostname",""), "descr": "Synced from switch",\n "interface": "lan",\n }\n })\n _opnsense_request(cfg, "dhcpv4/service/reconfigure", "POST")\n return {"success": True, "result": result}\n\n elif body.direction == "remove_switch":\n if not sw_res:\n raise HTTPException(404, "Switch reservation not found")\n return push_one_by_one([f"no ip dhcp-server static-binding {sw_res[\'ip\']}"])\n\n elif body.direction == "remove_opnsense":\n if not ops_res or not ops_res.get("uuid"):\n raise HTTPException(404, "OPNsense reservation not found or missing UUID")\n if not cfg.get("key"):\n raise HTTPException(503, "OPNsense not configured")\n _opnsense_request(cfg, f"dhcpv4/reservations/delReservation/{ops_res[\'uuid\']}", "DELETE")\n _opnsense_request(cfg, "dhcpv4/service/reconfigure", "POST")\n return {"success": True}\n\n raise HTTPException(400, f"Unknown direction: {body.direction}")\n\n# ══════════════════════════════════════════════════════════════════════\n# CONTROL D / ctrld DNS MANAGEMENT\n# ══════════════════════════════════════════════════════════════════════\n\nCTRLD_FILE = _Path("/etc/switch-manager/ctrld.json")\n# NOTE: /usr/local/bin/ctrld is the Linux default path.\n# On OPNsense (FreeBSD) ctrld installs to /usr/local/sbin/ctrld.\n# For local-mode installs this path is checked at runtime, so it\'s fine.\n# For OPNsense mode the binary runs on the router, not here — the path is irrelevant.\nCTRLD_BIN = _Path("/usr/local/bin/ctrld")\n\ndef _load_ctrld_cfg() -> dict:\n """Load saved ctrld configuration (mode, vlan_profiles) from ctrld.json."""\n if CTRLD_FILE.exists():\n try: return _json.loads(CTRLD_FILE.read_text())\n except: pass\n return {}\n\ndef _save_ctrld_cfg(cfg: dict):\n """Persist ctrld configuration to ctrld.json (chmod 600 — contains Resolver IDs)."""\n CTRLD_FILE.write_text(_json.dumps(cfg, indent=2))\n CTRLD_FILE.chmod(0o600)\n\ndef _ctrld_status() -> dict:\n """Check if ctrld is running and which mode."""\n import subprocess as _sp\n try:\n r = _sp.run([str(CTRLD_BIN), "status"],\n capture_output=True, text=True, timeout=5)\n running = r.returncode == 0\n return {\n "installed": CTRLD_BIN.exists(),\n "running": running,\n "output": r.stdout.strip() or r.stderr.strip(),\n }\n except Exception as e:\n return {\n "installed": CTRLD_BIN.exists(),\n "running": False,\n "output": str(e),\n }\n\ndef _ctrld_config_path() -> _Path:\n """Find ctrld config file location."""\n candidates = [\n _Path("/etc/controld/ctrld.toml"),\n _Path("/usr/local/etc/controld/ctrld.toml"),\n _Path.home() / ".config" / "controld" / "ctrld.toml",\n ]\n for p in candidates:\n if p.exists(): return p\n return candidates[0] # default for new install\n\ndef _build_ctrld_toml(vlan_profiles: list, ctrld_port: int = 5354,\n deploy_mode: str = "router") -> str:\n """\n Build a ctrld.toml using flat dotted-key section headers.\n\n Confirmed working architecture on OPNsense (verified after reboot):\n Clients → Unbound (:53) → [Query Forwarding] → ctrld (127.0.0.1:5354) → ControlD\n\n Unbound stays on port 53 — never moved. ctrld binds to localhost only\n on port 5354 so it cannot conflict with Unbound at startup. Unbound\'s\n Query Forwarding sends all external queries through ctrld. Local DNS\n (host overrides, local zones) is handled entirely by Unbound before any\n query reaches ctrld, so no split-horizon rules are needed here.\n\n deploy_mode="router" — single listener on 127.0.0.1:ctrld_port.\n Unbound forwards upstream queries here via Query Forwarding.\n Per-VLAN policy differentiation is handled by Unbound (forward different\n domains to different ctrld instances on different ports if needed).\n\n deploy_mode="proxy" — single listener on 0.0.0.0:ctrld_port.\n Use when ctrld runs on a management host (not the router) and clients\n point directly at ctrld — CIDR-based policy routing applies.\n\n Flat header rule: never write a parent [listener] / [network] / [upstream]\n before the dotted subtables — Go\'s TOML v2 panics on table redefinition.\n """\n BOOTSTRAP = "76.76.2.0"\n\n active = [vp for vp in vlan_profiles\n if vp.get("resolver_id", "").strip() or vp.get("endpoint_url", "").strip()]\n\n lines = [\n "# ctrld configuration — generated by Avaya 59100GTS-PWR+ Switch Manager",\n "# Architecture: Unbound (:53) → Query Forwarding → ctrld (127.0.0.1:{}) → ControlD".format(ctrld_port),\n "# Docs: https://docs.controld.com/docs/ctrld",\n "",\n "[service]",\n " log_level = \\\'info\\\'",\n " log_path = \\\'/tmp/ctrld.log\\\'",\n "",\n ]\n\n # ── Upstream sections ─────────────────────────────────────────────────────\n for i, vp in enumerate(active):\n vid = vp["vlan_id"]\n name = vp.get("name", f"VLAN{vid}")\n protocol = (vp.get("protocol") or "doh3").strip()\n rid = vp.get("resolver_id", "").strip()\n endpoint = (\n vp.get("endpoint_url", "").strip()\n or f"https://dns.controld.com/{rid}"\n )\n lines += [\n f"# VLAN {vid} — {name}",\n f"[upstream.{i}]",\n f" name = \\\'VLAN {vid} {name}\\\'",\n f" type = \\\'{protocol}\\\'",\n f" endpoint = \\\'{endpoint}\\\'",\n f" bootstrap_ip = \\\'{BOOTSTRAP}\\\'",\n f" timeout = 5000",\n "",\n ]\n\n # ── ROUTER MODE: localhost listener, Unbound forwards here ───────────────\n if deploy_mode == "router":\n # Single listener on localhost — Unbound\'s Query Forwarding points here.\n # No per-VLAN listeners needed: Unbound handles all local resolution\n # before queries arrive; ctrld just proxies external queries upstream.\n lines += [\n "# Listens on localhost only — Unbound Query Forwarding sends external queries here",\n "[listener.0]",\n f" ip = \\\'127.0.0.1\\\'",\n f" port = {ctrld_port}",\n "",\n " [listener.0.policy]",\n " name = \\\'Default Policy\\\'",\n " networks = []",\n " rules = []",\n ]\n if active:\n lines[-1] = f" default = [\\\'upstream.0\\\']"\n lines.append("")\n\n # ── PROXY MODE: 0.0.0.0 listener + CIDR network policies ─────────────────\n else:\n lines += [\n "[listener.0]",\n f" ip = \\\'0.0.0.0\\\'",\n f" port = {ctrld_port}",\n "",\n " [listener.0.policy]",\n " name = \\\'VLAN Policy\\\'",\n ]\n\n if active:\n net_entries = [\n " { " + f"\\\'network.{i}\\\' = [\\\'upstream.{i}\\\']" + " },"\n for i in range(len(active))\n ]\n lines += [" networks = ["] + net_entries + [" ]"]\n else:\n lines += [" networks = []"]\n\n lines += [" rules = []", ""]\n\n # Network sections for CIDR routing\n for i, vp in enumerate(active):\n vid = vp["vlan_id"]\n name = vp.get("name", f"VLAN{vid}")\n subnet = vp.get("subnet", f"192.168.{vid}.0/24")\n lines += [\n f"# VLAN {vid} — {name}",\n f"[network.{i}]",\n f" name = \\\'{name}\\\'",\n f" cidrs = [\\\'{subnet}\\\']",\n "",\n ]\n\n return "\\n".join(lines)\n\n\n\n# ── ctrld API models ─────────────────────────────────────────────────────────\n\nclass CtrldVlanProfile(BaseModel):\n vlan_id: int\n name: str\n subnet: str\n resolver_id: str # ControlD Resolver ID (path suffix)\n endpoint_url: Optional[str] = "" # full URL — overrides resolver_id if set\n protocol: Optional[str] = "doh3" # doh3 | doh | dot | doq | legacy\n gateway: Optional[str] = "" # VLAN gateway IP on the router (e.g. "192.168.10.1")\n # Required for router-mode multi-listener TOML\n\nclass CtrldConfig(BaseModel):\n mode: str # "local" | "opnsense" | "manual"\n deploy_mode: Optional[str] = "router" # "router" (OPNsense, localhost) | "proxy" (management host, 0.0.0.0)\n vlan_profiles: list[CtrldVlanProfile]\n opnsense_host: Optional[str] = ""\n ctrld_port: Optional[int] = 5354 # port ctrld listens on (Unbound Query Forwarding points here)\n local_domain: Optional[str] = "lan" # local domain handled by Unbound (not forwarded to ctrld)\n\nclass CtrldInstallRequest(BaseModel):\n token: str\n config: CtrldConfig\n\nclass CtrldUpdateProfile(BaseModel):\n token: str\n vlan_profiles: list[CtrldVlanProfile]\n\n# ── ctrld endpoints ───────────────────────────────────────────────────────────\n\n@app.get("/api/ctrld/status")\ndef ctrld_status():\n """Return ctrld installation and running status."""\n cfg = _load_ctrld_cfg()\n status = _ctrld_status()\n return {\n **status,\n "configured": bool(cfg.get("mode")),\n "mode": cfg.get("mode",""),\n "vlan_profiles": cfg.get("vlan_profiles",[]),\n "opnsense_host": cfg.get("opnsense_host",""),\n "config_path": str(_ctrld_config_path()),\n "docs_url": "https://docs.controld.com/docs/ctrld",\n }\n\ndef _validate_doh_endpoint(endpoint_url: str) -> dict:\n """\n Test a DoH endpoint using a plain HTTPS GET query (RFC 8484).\n\n Works for both DoH and DoH3 endpoints — ControlD and most public resolvers\n serve DoH over HTTPS/2 at the same URL they use for DoH3, so a successful\n HTTP response proves the URL is live and well-formed before ctrld ever\n touches it.\n\n Sends: GET {url}?dns=\n Expects: 200, Content-Type: application/dns-message\n\n Returns: {ok, latency_ms, status_code, error}\n """\n import struct, base64, time, urllib.request, urllib.error\n\n # Build a minimal DNS A query for "ping.controld.com" in wire format\n def _make_query(domain: str = "ping.controld.com") -> bytes:\n hdr = struct.pack(">HHHHHH", 0x1234, 0x0100, 1, 0, 0, 0)\n qname = b""\n for label in domain.rstrip(".").split("."):\n qname += bytes([len(label)]) + label.encode()\n qname += b"\\x00"\n qtype = struct.pack(">HH", 1, 1) # A IN\n return hdr + qname + qtype\n\n dns_bytes = _make_query()\n dns_b64 = base64.urlsafe_b64encode(dns_bytes).rstrip(b"=").decode()\n test_url = f"{endpoint_url.rstrip(\'/\')}?dns={dns_b64}"\n t0 = time.monotonic()\n\n try:\n req = urllib.request.Request(\n test_url,\n headers={"Accept": "application/dns-message"},\n )\n with urllib.request.urlopen(req, timeout=8) as resp:\n latency_ms = int((time.monotonic() - t0) * 1000)\n ct = resp.headers.get("Content-Type", "")\n body = resp.read(12) # just enough to check it\'s a DNS response\n ok = resp.status == 200 and "dns-message" in ct\n return {\n "ok": ok,\n "latency_ms": latency_ms,\n "status_code": resp.status,\n "error": "" if ok else f"Unexpected Content-Type: {ct}",\n }\n except urllib.error.HTTPError as e:\n latency_ms = int((time.monotonic() - t0) * 1000)\n return {"ok": False, "latency_ms": latency_ms,\n "status_code": e.code, "error": str(e)}\n except Exception as e:\n latency_ms = int((time.monotonic() - t0) * 1000)\n return {"ok": False, "latency_ms": latency_ms,\n "status_code": 0, "error": str(e)}\n\n\nclass CtrldValidateRequest(BaseModel):\n vlan_profiles: list[CtrldVlanProfile]\n\n\n@app.post("/api/ctrld/validate-endpoints")\ndef ctrld_validate_endpoints(body: CtrldValidateRequest):\n """\n Test each profile\'s DoH/DoH3 endpoint URL before writing any config.\n Returns per-profile results plus an overall ok flag.\n Intended to be called from the UI before calling save-config.\n """\n results = []\n for vp in body.vlan_profiles:\n p = vp.dict()\n url = (p.get("endpoint_url") or "").strip()\n rid = (p.get("resolver_id") or "").strip()\n if not url and rid:\n url = f"https://dns.controld.com/{rid}"\n if not url:\n results.append({\n "vlan_id": p["vlan_id"],\n "name": p.get("name", ""),\n "ok": False,\n "error": "No endpoint URL or resolver_id provided",\n })\n continue\n probe = _validate_doh_endpoint(url)\n results.append({\n "vlan_id": p["vlan_id"],\n "name": p.get("name", ""),\n "url": url,\n **probe,\n })\n\n # Also validate the generated TOML can be parsed (catches structural issues)\n toml_ok = True\n toml_error = ""\n try:\n import sys\n if sys.version_info >= (3, 11):\n import tomllib\n tomllib.loads(_build_ctrld_toml([p.dict() for p in body.vlan_profiles]))\n # tomllib not available in 3.10 — skip structural check\n except Exception as e:\n toml_ok = False\n toml_error = str(e)\n\n return {\n "all_ok": all(r["ok"] for r in results) and toml_ok,\n "results": results,\n "toml_ok": toml_ok,\n "toml_error": toml_error,\n "toml_preview": _build_ctrld_toml([p.dict() for p in body.vlan_profiles]),\n }\n\n\n@app.get("/api/ctrld/toml-preview")\ndef ctrld_toml_preview():\n """Generate and return the ctrld.toml without installing it."""\n cfg = _load_ctrld_cfg()\n profiles = cfg.get("vlan_profiles", [])\n deploy_mode = cfg.get("deploy_mode", "router")\n ctrld_port = cfg.get("ctrld_port", 5354)\n if not profiles:\n raise HTTPException(400, "No VLAN profiles configured yet")\n toml = _build_ctrld_toml(profiles, ctrld_port=ctrld_port, deploy_mode=deploy_mode)\n return {"toml": toml, "deploy_mode": deploy_mode, "ctrld_port": ctrld_port}\n\n@app.post("/api/ctrld/save-config")\ndef ctrld_save_config(body: CtrldInstallRequest):\n """\n Save ctrld configuration.\n Validates all endpoints before writing anything — returns 400 with per-profile\n probe results if any endpoint is unreachable so the user can fix it first.\n For \'local\' mode: installs ctrld on this machine, writes config, starts service.\n For \'opnsense\' mode: generates the SSH install command.\n For \'manual\' mode: saves config for reference, generates toml only.\n """\n require_session(body.token)\n\n profiles = [p.dict() for p in body.config.vlan_profiles]\n\n # ── Endpoint validation — block on failure ────────────────────────────────\n validation = ctrld_validate_endpoints(\n CtrldValidateRequest(vlan_profiles=body.config.vlan_profiles)\n )\n if not validation["all_ok"]:\n raise HTTPException(400, {\n "message": "One or more DNS endpoints failed validation — fix before saving",\n "results": validation["results"],\n "toml_error": validation.get("toml_error", ""),\n })\n\n deploy_mode = body.config.deploy_mode or "router"\n ctrld_port = body.config.ctrld_port or 5354\n local_domain = body.config.local_domain or "lan"\n cfg_dict = {\n "mode": body.config.mode,\n "deploy_mode": deploy_mode,\n "vlan_profiles": profiles,\n "opnsense_host": body.config.opnsense_host,\n "ctrld_port": ctrld_port,\n "local_domain": local_domain,\n }\n _save_ctrld_cfg(cfg_dict)\n\n toml = _build_ctrld_toml(profiles, ctrld_port=ctrld_port, deploy_mode=deploy_mode)\n\n if body.config.mode == "local":\n return _ctrld_install_local(toml, profiles)\n elif body.config.mode == "opnsense":\n return _ctrld_generate_opnsense_cmd(\n body.config.opnsense_host, profiles, deploy_mode,\n ctrld_port=ctrld_port, local_domain=local_domain,\n )\n else:\n # Manual — just return the toml and instructions\n return {\n "success": True,\n "mode": "manual",\n "toml": toml,\n "message": "Config saved. Install ctrld manually and use the toml below.",\n "install_cmd": "sh -c \'sh -c \\"$(curl -sL https://api.controld.com/dl)\\"\'",\n "config_path": str(_ctrld_config_path()),\n }\n\ndef _fix_port53_conflict() -> dict:\n """\n Detect and fix systemd-resolved holding port 53 (common on Ubuntu/Debian).\n\n systemd-resolved\'s stub listener binds 127.0.0.53:53 and sometimes 0.0.0.0:53,\n which blocks ctrld from binding port 53. The right fix is to disable only the\n stub listener — NOT the service itself (the service still handles /etc/resolv.conf\n and local hostname resolution).\n\n Returns a dict with keys: needed (bool), fixed (bool), message (str).\n """\n import subprocess as _sp\n\n # Check if systemd-resolved is running and holding port 53\n try:\n ss_out = _sp.run(\n ["ss", "-tlnp", "sport", "=", ":53"],\n capture_output=True, text=True, timeout=5\n ).stdout\n if "systemd-resolve" not in ss_out and "resolved" not in ss_out:\n return {"needed": False, "fixed": False,\n "message": "No port 53 conflict detected"}\n except Exception:\n return {"needed": False, "fixed": False,\n "message": "Could not check port 53 status (ss not available)"}\n\n log.info("systemd-resolved is holding port 53 — disabling stub listener")\n\n resolved_conf = _Path("/etc/systemd/resolved.conf")\n try:\n current = resolved_conf.read_text() if resolved_conf.exists() else ""\n except Exception as e:\n return {"needed": True, "fixed": False,\n "message": f"Cannot read {resolved_conf}: {e}"}\n\n # Already fixed?\n if "DNSStubListener=no" in current:\n _sp.run(["systemctl", "restart", "systemd-resolved"], capture_output=True)\n return {"needed": True, "fixed": True,\n "message": "DNSStubListener=no already present — restarted systemd-resolved"}\n\n # Add the setting under [Resolve], creating the section if needed\n if "[Resolve]" in current:\n new_conf = current.rstrip() + "\\nDNSStubListener=no\\n"\n else:\n new_conf = current.rstrip() + "\\n[Resolve]\\nDNSStubListener=no\\n"\n\n try:\n resolved_conf.write_text(new_conf)\n except PermissionError:\n return {"needed": True, "fixed": False,\n "message": "Permission denied writing /etc/systemd/resolved.conf — run backend as root or with sudo"}\n\n restart = _sp.run(["systemctl", "restart", "systemd-resolved"],\n capture_output=True, text=True)\n if restart.returncode != 0:\n return {"needed": True, "fixed": False,\n "message": f"Added DNSStubListener=no but systemd-resolved restart failed: {restart.stderr}"}\n\n log.info("Port 53 conflict resolved — systemd-resolved stub listener disabled")\n return {"needed": True, "fixed": True,\n "message": "Disabled systemd-resolved stub listener (DNSStubListener=no) and restarted service"}\n\n\ndef _ctrld_install_local(toml: str, profiles: list) -> dict:\n """Download and install ctrld on this machine, write config, start service."""\n import subprocess as _sp, platform as _platform\n\n # Detect architecture\n arch = _platform.machine().lower()\n os_name = _platform.system().lower()\n\n if os_name != "linux":\n return {\n "success": False,\n "mode": "local",\n "message": f"Auto-install only supported on Linux. "\n f"Download ctrld from https://github.com/Control-D-Inc/ctrld/releases",\n "toml": toml,\n }\n\n # Use ctrld\'s own installer with the first profile\'s resolver ID\n first_rid = next((p["resolver_id"] for p in profiles if p.get("resolver_id")), None)\n if not first_rid:\n return {"success": False, "message": "No Resolver ID provided"}\n\n # Fix port 53 conflict BEFORE installing ctrld — on Ubuntu/Debian, systemd-resolved\n # holds port 53 and ctrld cannot bind. Disabling the stub listener is safe:\n # systemd-resolved keeps running for /etc/resolv.conf management.\n port53_fix = _fix_port53_conflict()\n log.info(f"Port 53 check: {port53_fix[\'message\']}")\n\n # Download the binary directly (more reliable than the shell installer for service control)\n log.info("Installing ctrld...")\n\n # Use the official installer\n install_result = _sp.run(\n f\'sh -c \\\'sh -c "$(curl -sL https://api.controld.com/dl)" -s {first_rid} forced\\\'\',\n shell=True, capture_output=True, text=True, timeout=120\n )\n\n if install_result.returncode != 0 and not CTRLD_BIN.exists():\n return {\n "success": False,\n "mode": "local",\n "message": f"Install failed: {install_result.stderr or install_result.stdout}",\n "toml": toml,\n "port53": port53_fix,\n }\n\n # Write our multi-VLAN config (overrides the default single-profile config)\n cfg_path = _ctrld_config_path()\n cfg_path.parent.mkdir(parents=True, exist_ok=True)\n cfg_path.write_text(toml)\n log.info(f"ctrld config written to {cfg_path}")\n\n # Restart ctrld to pick up new config\n _sp.run([str(CTRLD_BIN), "stop"], capture_output=True)\n _sp.run([str(CTRLD_BIN), "start"], capture_output=True)\n\n # Update DHCP on switch — set DNS option 6 per VLAN pool to this machine\'s IP\n import socket as _sock\n try:\n mgmt_ip = _sock.gethostbyname(_sock.gethostname())\n except Exception:\n mgmt_ip = "192.168.99.50"\n\n status = _ctrld_status()\n return {\n "success": status["running"],\n "mode": "local",\n "message": "ctrld installed and running" if status["running"] else "ctrld installed but may not be running — check logs",\n "dns_ip": mgmt_ip,\n "dhcp_action": f"Set DNS (option 6) to {mgmt_ip} on each VLAN pool in the DHCP tab",\n "toml": toml,\n "config_path": str(cfg_path),\n "docs": "https://docs.controld.com/docs/ctrld",\n "port53": port53_fix,\n }\n\ndef _ctrld_generate_opnsense_cmd(opnsense_host: str, profiles: list,\n deploy_mode: str = "router",\n ctrld_port: int = 5354,\n local_domain: str = "lan") -> dict:\n """\n Generate the SSH command + step-by-step instructions to install ctrld on OPNsense.\n\n Confirmed working architecture (verified after reboot — no manual intervention needed):\n Clients → Unbound (:53) → [Query Forwarding] → ctrld (127.0.0.1:5354) → ControlD\n\n Unbound stays on port 53. ctrld binds to 127.0.0.1:5354 so it cannot\n conflict with Unbound at startup regardless of service start order.\n Unbound\'s Query Forwarding sends external queries through ctrld.\n Local DNS (host overrides, custom zones) is answered by Unbound directly\n and never reaches ctrld.\n\n NOTE: Remove any \'home.arpa\' local-zone from Unbound if present — it is\n a common tutorial artifact that causes PTR/reverse DNS failures.\n """\n first_rid = next((p["resolver_id"] for p in profiles if p.get("resolver_id")), None)\n if not first_rid:\n return {"success": False, "message": "No Resolver ID provided"}\n\n install_cmd = (\n f"sh -c \'sh -c \\"$(curl -sL https://api.controld.com/dl)\\" "\n f"-s {first_rid} forced\'"\n )\n\n toml = _build_ctrld_toml(profiles, ctrld_port=ctrld_port, deploy_mode=deploy_mode)\n\n opnsense_cfg = "/usr/local/etc/controld/ctrld.toml"\n write_toml_cmd = f"cat > {opnsense_cfg} << \'CTRLDEOF\'\\n{toml}\\nCTRLDEOF"\n\n setup_steps = [\n "Architecture: Unbound (:53) → Query Forwarding → ctrld (127.0.0.1:{}) → ControlD".format(ctrld_port),\n "",\n "STEP 1 — Install ctrld on OPNsense (SSH or shell):",\n f" {install_cmd}",\n "",\n "STEP 2 — Write the ctrld.toml (ctrld listens on 127.0.0.1:{}, NOT port 53):".format(ctrld_port),\n f" {write_toml_cmd}",\n " Then restart ctrld: ctrld restart",\n "",\n "STEP 3 — Configure Unbound Query Forwarding (Unbound stays on port 53):",\n " OPNsense GUI → Services → Unbound DNS → Query Forwarding:",\n " • Enable Query Forwarding: checked",\n f" • Add forward zone: Domain=. (dot) Address=127.0.0.1 Port={ctrld_port}",\n " • Use TLS: No (ctrld handles DoH/DoT upstream; plain DNS locally is fine)",\n " • Click Apply / Save",\n "",\n "STEP 4 — Remove \'home.arpa\' local-zone from Unbound if present:",\n " OPNsense GUI → Services → Unbound DNS → Advanced → Custom options:",\n " Remove any line containing: local-zone: \\"home.arpa\\"",\n " (This is a tutorial artifact — it breaks reverse DNS / PTR lookups)",\n "",\n "STEP 5 — Verify (Unbound on :53 answers, ctrld proxies upstream):",\n " dig @192.168.1.1 google.com # external — goes through ctrld → ControlD",\n f" dig @192.168.1.1 myhost.{local_domain} # local — answered by Unbound directly",\n " dig @192.168.1.1 -x 192.168.1.1 # reverse PTR — answered by Unbound directly",\n ]\n\n return {\n "success": True,\n "mode": "opnsense",\n "message": "Unbound (:53) → Query Forwarding → ctrld (127.0.0.1:{}) — verified working after reboot".format(ctrld_port),\n "setup_steps": setup_steps,\n "architecture": "Unbound stays on :53. ctrld binds 127.0.0.1:{} only — no port conflict possible.".format(ctrld_port),\n "step1_install": install_cmd,\n "step1_ssh": f"ssh root@{opnsense_host or \'your-opnsense-ip\'} \'{install_cmd}\'",\n "step2_config": f"Write {opnsense_cfg} with the TOML below, then: ctrld restart",\n "step3_unbound": (\n f"Services → Unbound DNS → Query Forwarding: "\n f"Enable, add zone \'.\' → 127.0.0.1:{ctrld_port}, no TLS, Apply"\n ),\n "step4_cleanup": "Remove \'home.arpa\' local-zone from Unbound custom options if present",\n "step5_verify": "dig @router_ip google.com && dig @router_ip -x 192.168.1.1",\n "toml": toml,\n "toml_write_cmd": write_toml_cmd,\n "config_path": opnsense_cfg,\n "ctrld_port": ctrld_port,\n "local_domain": local_domain,\n "docs": "https://docs.controld.com/docs/routers-platform",\n }\n\n@app.post("/api/ctrld/update-profiles")\ndef ctrld_update_profiles(body: CtrldUpdateProfile):\n """Update VLAN profiles and regenerate/reload ctrld config."""\n require_session(body.token)\n cfg = _load_ctrld_cfg()\n cfg["vlan_profiles"] = [p.dict() for p in body.vlan_profiles]\n _save_ctrld_cfg(cfg)\n\n deploy_mode = cfg.get("deploy_mode", "router")\n ctrld_port = cfg.get("ctrld_port", 5354)\n toml = _build_ctrld_toml(cfg["vlan_profiles"], ctrld_port=ctrld_port, deploy_mode=deploy_mode)\n cfg_path = _ctrld_config_path()\n\n if cfg.get("mode") == "local" and cfg_path.exists():\n cfg_path.write_text(toml)\n import subprocess as _sp\n _sp.run([str(CTRLD_BIN), "stop"], capture_output=True)\n _sp.run([str(CTRLD_BIN), "start"], capture_output=True)\n return {"success": True, "message": "Profiles updated and ctrld reloaded", "toml": toml}\n\n return {"success": True, "message": "Profiles saved", "toml": toml,\n "note": "Restart ctrld manually to apply changes" if cfg.get("mode") == "opnsense" else ""}\n\n@app.delete("/api/ctrld/uninstall")\ndef ctrld_uninstall(token: str):\n """Stop ctrld, remove its binary, and delete saved config."""\n require_session(token)\n import subprocess as _sp\n if CTRLD_BIN.exists():\n _sp.run([str(CTRLD_BIN), "uninstall", "--cleanup"], capture_output=True)\n if CTRLD_FILE.exists():\n CTRLD_FILE.unlink()\n return {"success": True}\n\n\n# ── DNS enforcement ACL generation ──────────────────────────────────────────\n\nclass DnsEnforceRequest(BaseModel):\n """Request body for generating DNS enforcement ACLs."""\n token: str\n ctrld_ip: str # IP of the machine running ctrld (becomes the only allowed DNS target)\n vlan_ids: list[int] # VLANs to enforce (excludes VLAN 99 management)\n\n\ndef _build_dns_enforce_acls(ctrld_ip: str, vlans_info: list[dict]) -> list[str]:\n """\n Generate CLI commands for DNS enforcement ACLs on each VLAN interface.\n\n For each VLAN the ACL:\n - Permits UDP/TCP port 53 to ctrld_ip (allows DHCP-assigned DNS)\n - Denies UDP/TCP port 53 to anywhere (blocks direct DNS bypass e.g. 8.8.8.8)\n - Denies TCP port 853 to anywhere (blocks DNS-over-TLS bypass)\n - Permits everything else (internet still works)\n\n Without these rules a device can ignore DHCP-assigned DNS and use 8.8.8.8\n directly, bypassing all ctrld filtering entirely.\n\n vlans_info: list of { vlan_id: int, subnet: str } e.g. { vlan_id: 10, subnet: "192.168.10.0/24" }\n """\n # Validate ctrld IP — must be a bare IP address, no injection\n import ipaddress as _ip\n try:\n ctrld_addr = str(_ip.ip_address(ctrld_ip))\n except ValueError:\n raise ValueError(f"ctrld_ip: invalid IP address {repr(ctrld_ip)}")\n\n cmds = []\n for vi in vlans_info:\n vid = san_vid(vi["vlan_id"])\n subnet = vi.get("subnet", f"192.168.{vid}.0/24")\n\n # Parse subnet into network/wildcard for ERS ACL syntax\n try:\n net = _ip.ip_network(subnet, strict=False)\n net_str = str(net.network_address)\n wild = str(_ip.ip_address(int(net.hostmask)))\n except ValueError:\n net_str = f"192.168.{vid}.0"\n wild = "0.0.0.255"\n\n acl_name = f"DNS-ENFORCE-VLAN{vid}"\n cmds += [\n f"ip access-list extended {acl_name}",\n # 1 & 2: permit DNS to ctrld only (DHCP-assigned resolver)\n f" 1 permit udp {net_str} {wild} host {ctrld_addr} eq 53",\n f" 2 permit tcp {net_str} {wild} host {ctrld_addr} eq 53",\n # 3 & 4: deny DNS to anywhere else (block 8.8.8.8 and friends)\n f" 3 deny udp {net_str} {wild} any eq 53",\n f" 4 deny tcp {net_str} {wild} any eq 53",\n # 5: deny DNS-over-TLS (port 853) so devices can\'t use DoT as bypass\n f" 5 deny tcp {net_str} {wild} any eq 853",\n # 6: permit everything else — internet still works\n f" 6 permit ip any any",\n # Apply inbound on the VLAN interface\n f"interface vlan {vid}",\n f" ip access-group {acl_name} in",\n ]\n\n return cmds\n\n\n@app.post("/api/ctrld/dns-enforce-acls")\ndef ctrld_dns_enforce_acls(body: DnsEnforceRequest):\n """\n Generate DNS enforcement ACL commands for the requested VLANs.\n\n Returns the raw CLI commands for review — the caller then pushes them\n via the normal TOTP-gated push endpoint. This endpoint only generates;\n it does NOT push anything to the switch itself.\n """\n require_session(body.token)\n _require_advanced_license()\n\n # Refuse to touch VLAN 99 (management) — a broken ACL there = lockout\n safe_vlans = [v for v in body.vlan_ids if v != 99]\n if not safe_vlans:\n raise HTTPException(400, "No safe VLANs to enforce — VLAN 99 is excluded automatically")\n\n vlans_info = [{"vlan_id": v} for v in safe_vlans]\n try:\n cmds = _build_dns_enforce_acls(body.ctrld_ip, vlans_info)\n except ValueError as e:\n raise HTTPException(400, str(e))\n\n return {\n "success": True,\n "commands": cmds,\n "count": len(cmds),\n "note": "Review these commands then push via the Review & Push tab",\n "vlans": safe_vlans,\n "ctrld_ip": body.ctrld_ip,\n }\n\n\n# ── Local hostname resolution (dnsmasq) ──────────────────────────────────────\n\nLOCAL_HOSTNAMES_FILE = _Path("/etc/switch-manager/local-hostnames.json")\nDNSMASQ_CONF_PATH = _Path("/etc/switch-manager/dnsmasq.conf")\n\n\ndef _load_local_hostnames() -> list:\n """Load user-defined hostname→IP mappings for .lan resolution."""\n if LOCAL_HOSTNAMES_FILE.exists():\n try: return _json.loads(LOCAL_HOSTNAMES_FILE.read_text())\n except: pass\n return []\n\n\ndef _save_local_hostnames(entries: list):\n """Persist hostname→IP mappings (used to generate dnsmasq.conf)."""\n LOCAL_HOSTNAMES_FILE.write_text(_json.dumps(entries, indent=2))\n\n\ndef _generate_dnsmasq_conf(entries: list, mgmt_ip: str = "192.168.99.50") -> str:\n """\n Build a dnsmasq.conf for local .lan hostname resolution.\n\n dnsmasq runs on port 5353 inside Docker alongside the switch manager.\n ctrld.toml forwards *.lan and *.local queries to 127.0.0.1:5353.\n This keeps local names working even when all external DNS goes through ctrld.\n\n entries: list of { name: str, ip: str }\n mgmt_ip: IP of the management computer (switch.mgmt.lan and management.lan point here)\n """\n import ipaddress as _ip\n\n lines = [\n "# dnsmasq — local .lan hostname resolution",\n "# Generated by Avaya 59100GTS-PWR+ Switch Manager",\n "# Listens on port 5353 (mapped from Docker container port 53)",\n "# ctrld forwards *.lan and *.local here",\n "",\n "port=53", # dnsmasq internal port (Docker maps host:5353 → container:53)\n "no-resolv", # don\'t use /etc/resolv.conf — this is a local-only resolver\n "no-hosts", # don\'t use /etc/hosts\n "domain-needed", # never forward bare names upstream\n "bogus-priv", # don\'t forward RFC1918 PTR queries upstream\n "",\n "# Management computer — always present",\n f"address=/switch.mgmt.lan/{mgmt_ip}",\n f"address=/management.lan/{mgmt_ip}",\n "",\n ]\n\n if entries:\n lines += ["# User-defined hostnames"]\n for e in entries:\n hostname = e.get("name","").strip()\n ip_addr = e.get("ip","").strip()\n if not hostname or not ip_addr:\n continue\n # Validate the IP — skip malformed entries\n try:\n _ip.ip_address(ip_addr)\n except ValueError:\n continue\n # Strip leading/trailing dots, sanitise hostname\n hostname = hostname.strip(".")\n if not hostname:\n continue\n lines.append(f"address=/{hostname}/{ip_addr}")\n\n return "\\n".join(lines) + "\\n"\n\n\ndef _generate_ctrld_split_horizon_block(local_domain: str = "lan",\n dnsmasq_port: int = 5353) -> str:\n """\n Generate an example ctrld.toml for split-horizon DNS with a local resolver.\n\n In the correct ctrld format, split-horizon is done by:\n 1. Adding [upstream.local] with type=\'legacy\' pointing to dnsmasq/Unbound\n 2. Adding rules in [listener.0.policy].rules that send *.lan → upstream.local\n\n Because the format uses indexed table sections ([network.N], [upstream.N]),\n you can\'t simply append a fragment — the full toml must be regenerated via\n _build_ctrld_toml(vlan_profiles). Note: on OPNsense, Unbound handles\n local resolution — ctrld does not need split-horizon rules at all.\n\n This function returns a plain-English example for display only.\n """\n port = dnsmasq_port\n domain = local_domain.strip(".")\n return "\\n".join([\n "# Add to your ctrld.toml — regenerate via DNS tab for correct indexing",\n "",\n "# In [listener.0.policy], add to the rules array:",\n f"# {{ \'*.{domain}\' = [\'upstream.local\'] }},",\n "# { \'*.local\' = [\'upstream.local\'] },",\n "",\n "# Add a new upstream section (increment index as needed):",\n "[upstream.local]",\n f" type = \'legacy\'",\n f" endpoint = \'127.0.0.1:{port}\'",\n f" timeout = 2000",\n "",\n f"# Then restart ctrld: ctrld restart",\n ])\n\n\nclass LocalHostnameEntry(BaseModel):\n name: str # e.g. "printer.lan"\n ip: str # e.g. "192.168.10.50"\n\n\nclass LocalHostnamesUpdate(BaseModel):\n token: str\n entries: list[LocalHostnameEntry]\n local_domain: Optional[str] = "lan"\n\n\n@app.get("/api/dns/local-hostnames")\ndef get_local_hostnames():\n """Return saved local hostname mappings and the generated dnsmasq.conf."""\n entries = _load_local_hostnames()\n import socket as _sock\n try:\n mgmt_ip = _sock.gethostbyname(_sock.gethostname())\n except Exception:\n mgmt_ip = "192.168.99.50"\n conf = _generate_dnsmasq_conf(entries, mgmt_ip)\n return {\n "entries": entries,\n "dnsmasq_conf": conf,\n "conf_path": str(DNSMASQ_CONF_PATH),\n }\n\n\n@app.post("/api/dns/local-hostnames")\ndef save_local_hostnames(body: LocalHostnamesUpdate):\n """\n Save local hostname mappings, write dnsmasq.conf, and return the updated\n ctrld.toml split-horizon block to append (user applies it via the DNS tab).\n """\n require_session(body.token)\n entries = [e.dict() for e in body.entries]\n _save_local_hostnames(entries)\n\n import socket as _sock\n try:\n mgmt_ip = _sock.gethostbyname(_sock.gethostname())\n except Exception:\n mgmt_ip = "192.168.99.50"\n\n conf = _generate_dnsmasq_conf(entries, mgmt_ip)\n DNSMASQ_CONF_PATH.parent.mkdir(parents=True, exist_ok=True)\n DNSMASQ_CONF_PATH.write_text(conf)\n\n # Regenerate ctrld.toml with split-horizon enabled (if ctrld is configured)\n ctrld_cfg = _load_ctrld_cfg()\n split_horizon_toml = None\n if ctrld_cfg.get("vlan_profiles"):\n split_horizon_toml = _build_ctrld_toml(\n ctrld_cfg["vlan_profiles"],\n ctrld_port=ctrld_cfg.get("ctrld_port", 5354),\n deploy_mode=ctrld_cfg.get("deploy_mode", "router"),\n )\n # Write new toml if running locally\n if ctrld_cfg.get("mode") == "local":\n cfg_path = _ctrld_config_path()\n if cfg_path.parent.exists():\n cfg_path.write_text(split_horizon_toml)\n\n split_horizon = _generate_ctrld_split_horizon_block(\n local_domain=body.local_domain or "lan"\n )\n\n return {\n "success": True,\n "entries": entries,\n "dnsmasq_conf": conf,\n "conf_path": str(DNSMASQ_CONF_PATH),\n "split_horizon": split_horizon,\n "full_toml": split_horizon_toml,\n "docker_compose_snippet": (\n " dnsmasq:\\n"\n " image: andyshinn/dnsmasq:latest\\n"\n " ports:\\n"\n " - \\"5353:53/udp\\"\\n"\n " - \\"5353:53/tcp\\"\\n"\n " volumes:\\n"\n " - /etc/switch-manager/dnsmasq.conf:/etc/dnsmasq.conf:ro\\n"\n " restart: unless-stopped\\n"\n " cap_add:\\n"\n " - NET_ADMIN\\n"\n ),\n "message": (\n f"Saved {len(entries)} hostname(s). "\n "Add the docker-compose snippet and split_horizon block to ctrld.toml, "\n "then run: docker compose up -d dnsmasq"\n ),\n }\n\n\n# ══════════════════════════════════════════════════════════════════════\n# OPNSENSE WIREGUARD — ROUTER-LEVEL VPN WITH PER-VLAN ACCESS CONTROL\n# ══════════════════════════════════════════════════════════════════════\n#\n# Moves WireGuard from the management computer onto OPNsense so any\n# device on any VLAN can VPN home without touching the management PC.\n# Each peer is granted access only to the VLANs you choose.\n#\n# Architecture:\n# OPNsense wg1 interface (10.99.2.0/24 — separate from local wg0)\n# Peer Alice → tunnel IP 10.99.2.2 → allowed VLAN 10 + VLAN 20\n# Peer Bob → tunnel IP 10.99.2.3 → allowed VLAN 10 only\n# Private keys are generated here and stored only on the mgmt PC.\n# OPNsense receives only the public key (standard WireGuard practice).\n\nOPN_WG_FILE = _Path("/etc/switch-manager/opnsense_wg.json")\n\n\ndef _load_opnsense_wg() -> dict:\n if OPN_WG_FILE.exists():\n try:\n return _json.loads(OPN_WG_FILE.read_text())\n except Exception:\n pass\n return {}\n\n\ndef _save_opnsense_wg(cfg: dict):\n OPN_WG_FILE.parent.mkdir(parents=True, exist_ok=True)\n OPN_WG_FILE.write_text(_json.dumps(cfg, indent=2))\n OPN_WG_FILE.chmod(0o600)\n\n\nclass OPNWGServerSetup(BaseModel):\n token: str\n server_name: str = "switch-mgmt-vpn"\n listen_port: int = 51820\n tunnel_subnet: str = "10.99.2.0/24"\n public_endpoint: str = "" # public IP or DDNS hostname for client configs\n\n\nclass OPNWGAddPeer(BaseModel):\n token: str\n name: str\n allowed_vlans: list # list of VLAN IDs: [10, 20, 30]\n vlan_subnets: dict # {10: "192.168.10.0/24", 20: "192.168.20.0/24", ...}\n\n\n@app.get("/api/opnsense/wireguard/status")\ndef opnsense_wg_status():\n """Check OPNsense WireGuard plugin, server, and peer state."""\n opn_cfg = _load_opnsense_cfg()\n if not opn_cfg:\n return {"opnsense_configured": False}\n\n wg = _load_opnsense_wg()\n\n # Probe for the WireGuard plugin — a 404 means the plugin isn\'t installed\n try:\n _opnsense_request(opn_cfg, "wireguard/server/searchServer")\n plugin_ok = True\n except ValueError as e:\n msg = str(e)\n # 404 → plugin absent; other errors → reachability / auth issue\n plugin_ok = False\n return {\n "opnsense_configured": True,\n "plugin_installed": False,\n "error": msg,\n "server": None,\n "peers": [],\n }\n\n # If we have a saved server UUID, fetch live info\n server_info = None\n if wg.get("server_uuid"):\n try:\n s = _opnsense_request(opn_cfg, f"wireguard/server/getServer/{wg[\'server_uuid\']}")\n srv = s.get("server", {})\n server_info = {\n "uuid": wg["server_uuid"],\n "name": srv.get("name", wg.get("server_name","")),\n "pubkey": srv.get("pubkey", wg.get("server_pubkey","")),\n "tunnel_ip": wg.get("server_tunnel_ip",""),\n "listen_port": wg.get("listen_port", 51820),\n "public_endpoint": wg.get("public_endpoint",""),\n }\n except Exception:\n # Server UUID no longer valid (e.g. OPNsense was reset)\n server_info = None\n\n # Merge OPNsense peer list with local metadata (which holds allowed_vlans)\n local_peers = {p["name"]: p for p in wg.get("peers", [])}\n opn_peers = []\n try:\n resp = _opnsense_request(opn_cfg, "wireguard/client/searchClient")\n opn_peers = resp.get("rows", [])\n except Exception:\n pass\n\n merged = []\n for p in opn_peers:\n name = p.get("name", "")\n loc = local_peers.get(name, {})\n merged.append({\n "uuid": p.get("uuid", ""),\n "name": name,\n "enabled": p.get("enabled", "0") == "1",\n "tunnel_ip": p.get("tunneladdress", ""),\n "allowed_vlans": loc.get("allowed_vlans", []),\n })\n\n return {\n "opnsense_configured": True,\n "plugin_installed": plugin_ok,\n "server": server_info,\n "peers": merged,\n }\n\n\n@app.post("/api/opnsense/wireguard/setup-server")\ndef opnsense_wg_setup_server(body: OPNWGServerSetup):\n """Create (or replace) a WireGuard server on OPNsense via its API."""\n require_session(body.token)\n opn_cfg = _load_opnsense_cfg()\n if not opn_cfg:\n raise HTTPException(400, "OPNsense not configured — connect it in the DHCP tab first")\n\n import ipaddress as _ip, time as _time\n\n try:\n net = _ip.ip_network(body.tunnel_subnet, strict=False)\n except Exception:\n raise HTTPException(400, "Invalid tunnel_subnet — use CIDR notation e.g. 10.99.2.0/24")\n\n server_tunnel_ip = f"{list(net.hosts())[0]}/{net.prefixlen}"\n\n wg = _load_opnsense_wg()\n\n # Tear down any pre-existing server so we start clean\n if wg.get("server_uuid"):\n try:\n _opnsense_request(opn_cfg,\n f"wireguard/server/delServer/{wg[\'server_uuid\']}", method="POST")\n except Exception:\n pass\n\n payload = {\n "server": {\n "enabled": "1",\n "name": body.server_name,\n "instance": "1", # creates wg1 — leaves wg0 (local) untouched\n "port": str(body.listen_port),\n "tunneladdress": server_tunnel_ip,\n "dns": "",\n "peers": "",\n }\n }\n try:\n result = _opnsense_request(opn_cfg, "wireguard/server/addServer",\n method="POST", body=payload)\n except Exception as e:\n raise HTTPException(500, f"OPNsense rejected server creation: {e}")\n\n server_uuid = result.get("uuid","")\n if not server_uuid:\n raise HTTPException(500, "OPNsense did not return a server UUID")\n\n # Apply so OPNsense generates the keypair, then read it back\n try:\n _opnsense_request(opn_cfg, "wireguard/service/reconfigure", method="POST")\n except Exception:\n pass\n\n _time.sleep(1.5) # give the daemon a moment to generate keys\n server_pubkey = ""\n try:\n s = _opnsense_request(opn_cfg, f"wireguard/server/getServer/{server_uuid}")\n server_pubkey = s.get("server", {}).get("pubkey", "")\n except Exception:\n pass\n\n wg = {\n "server_uuid": server_uuid,\n "server_name": body.server_name,\n "listen_port": body.listen_port,\n "tunnel_subnet": body.tunnel_subnet,\n "server_tunnel_ip": server_tunnel_ip,\n "server_pubkey": server_pubkey,\n "public_endpoint": body.public_endpoint,\n "peers": [],\n }\n _save_opnsense_wg(wg)\n\n log.info(f"OPNsense WG server created: {body.server_name} uuid={server_uuid}")\n return {\n "success": True,\n "server_uuid": server_uuid,\n "server_pubkey": server_pubkey,\n "server_tunnel_ip": server_tunnel_ip,\n "listen_port": body.listen_port,\n }\n\n\n@app.delete("/api/opnsense/wireguard/server")\ndef opnsense_wg_delete_server(token: str):\n """Remove the WireGuard server from OPNsense and clear local state."""\n require_session(token)\n opn_cfg = _load_opnsense_cfg()\n if not opn_cfg:\n raise HTTPException(400, "OPNsense not configured")\n wg = _load_opnsense_wg()\n if not wg.get("server_uuid"):\n raise HTTPException(404, "No server is configured")\n try:\n _opnsense_request(opn_cfg,\n f"wireguard/server/delServer/{wg[\'server_uuid\']}", method="POST")\n _opnsense_request(opn_cfg, "wireguard/service/reconfigure", method="POST")\n except Exception as e:\n raise HTTPException(500, f"Failed to delete server: {e}")\n _save_opnsense_wg({})\n return {"success": True}\n\n\n@app.post("/api/opnsense/wireguard/add-peer")\ndef opnsense_wg_add_peer(body: OPNWGAddPeer):\n """\n Generate a WireGuard keypair, register the peer on OPNsense,\n link it to the server, and return a ready-to-use .conf for the client.\n The private key is stored only on the management PC (never sent to OPNsense).\n """\n require_session(body.token)\n opn_cfg = _load_opnsense_cfg()\n if not opn_cfg:\n raise HTTPException(400, "OPNsense not configured")\n wg = _load_opnsense_wg()\n if not wg.get("server_uuid"):\n raise HTTPException(400, "Set up the WireGuard server on OPNsense first")\n\n import ipaddress as _ip, re as _re\n\n # ── Allocate next free IP in the tunnel subnet ────────────────────\n net = _ip.ip_network(wg["tunnel_subnet"], strict=False)\n hosts = list(net.hosts())\n used = set()\n # Reserve the server\'s own tunnel IP\n m = _re.match(r\'(\\S+)/\\d+\', wg.get("server_tunnel_ip", ""))\n if m:\n used.add(m.group(1))\n for p in wg.get("peers", []):\n m2 = _re.match(r\'(\\S+)/\\d+\', p.get("tunnel_ip", ""))\n if m2:\n used.add(m2.group(1))\n\n peer_ip_obj = next((h for h in hosts if str(h) not in used), None)\n if not peer_ip_obj:\n raise HTTPException(400, "Tunnel subnet is full — no IPs available for new peer")\n peer_ip = f"{peer_ip_obj}/{net.prefixlen}"\n\n # ── Build the AllowedIPs list from chosen VLANs ───────────────────\n vlan_cidrs = []\n for vid in body.allowed_vlans:\n subnet = (body.vlan_subnets.get(str(vid))\n or body.vlan_subnets.get(int(vid))\n or f"192.168.{vid}.0/24")\n vlan_cidrs.append(subnet)\n # Always include the tunnel subnet so the client can reach the server\n allowed_ips = ", ".join([str(net)] + vlan_cidrs) if vlan_cidrs else str(net)\n\n # ── Generate keypair (private key stays on mgmt PC only) ─────────\n c_priv, c_pub = _wg_genkey_api()\n\n # ── Register peer (client) on OPNsense ───────────────────────────\n peer_payload = {\n "client": {\n "enabled": "1",\n "name": body.name,\n "pubkey": c_pub,\n "psk": "",\n "tunneladdress": peer_ip,\n "serveraddress": "",\n "serverport": "",\n "keepalive": "25",\n }\n }\n try:\n result = _opnsense_request(opn_cfg, "wireguard/client/addClient",\n method="POST", body=peer_payload)\n except Exception as e:\n raise HTTPException(500, f"OPNsense rejected peer creation: {e}")\n\n peer_uuid = result.get("uuid", "")\n if not peer_uuid:\n raise HTTPException(500, "OPNsense did not return a peer UUID")\n\n # ── Link peer to server (append to server\'s peers list) ──────────\n try:\n s = _opnsense_request(opn_cfg,\n f"wireguard/server/getServer/{wg[\'server_uuid\']}")\n srv = s.get("server", {})\n existing = srv.get("peers", "")\n new_peers = f"{existing},{peer_uuid}" if existing else peer_uuid\n _opnsense_request(opn_cfg,\n f"wireguard/server/setServer/{wg[\'server_uuid\']}", method="POST",\n body={"server": {**srv, "peers": new_peers}})\n except Exception as e:\n log.warning(f"Could not link peer to server (peer still registered): {e}")\n\n # Apply config\n try:\n _opnsense_request(opn_cfg, "wireguard/service/reconfigure", method="POST")\n except Exception:\n pass\n\n # ── Build client .conf ────────────────────────────────────────────\n server_pubkey = wg.get("server_pubkey", "")\n endpoint_host = wg.get("public_endpoint", "") or ""\n endpoint_port = wg.get("listen_port", 51820)\n tunnel_gw = wg.get("server_tunnel_ip", "").split("/")[0]\n\n client_conf = (\n f"[Interface]\\n"\n f"PrivateKey = {c_priv}\\n"\n f"Address = {peer_ip}\\n"\n f"DNS = {tunnel_gw}\\n\\n"\n f"[Peer]\\n"\n f"PublicKey = {server_pubkey or \'\'}\\n"\n f"Endpoint = {endpoint_host}:{endpoint_port}\\n"\n f"AllowedIPs = {allowed_ips}\\n"\n f"PersistentKeepalive = 25\\n"\n )\n\n # ── Persist peer metadata locally ────────────────────────────────\n peer_meta = {\n "uuid": peer_uuid,\n "name": body.name,\n "pub_key": c_pub,\n "priv_key": c_priv, # NEVER sent to OPNsense\n "tunnel_ip": peer_ip,\n "allowed_vlans": body.allowed_vlans,\n "allowed_ips": allowed_ips,\n "config": client_conf,\n }\n peers = [p for p in wg.get("peers", []) if p.get("name") != body.name]\n peers.append(peer_meta)\n wg["peers"] = peers\n _save_opnsense_wg(wg)\n\n log.info(f"OPNsense WG peer added: {body.name} → {peer_ip} VLANs={body.allowed_vlans}")\n return {\n "success": True,\n "uuid": peer_uuid,\n "name": body.name,\n "tunnel_ip": peer_ip,\n "allowed_vlans": body.allowed_vlans,\n "config": client_conf,\n }\n\n\n@app.delete("/api/opnsense/wireguard/peer/{uuid}")\ndef opnsense_wg_remove_peer(uuid: str, token: str):\n """Remove a peer from OPNsense and from local metadata."""\n require_session(token)\n opn_cfg = _load_opnsense_cfg()\n if not opn_cfg:\n raise HTTPException(400, "OPNsense not configured")\n wg = _load_opnsense_wg()\n\n # Remove from OPNsense\n try:\n _opnsense_request(opn_cfg,\n f"wireguard/client/delClient/{uuid}", method="POST")\n except Exception as e:\n raise HTTPException(500, f"Failed to remove peer from OPNsense: {e}")\n\n # Unlink from server peers list\n if wg.get("server_uuid"):\n try:\n s = _opnsense_request(opn_cfg,\n f"wireguard/server/getServer/{wg[\'server_uuid\']}")\n srv = s.get("server", {})\n existing = srv.get("peers", "")\n updated = ",".join(p for p in existing.split(",") if p and p != uuid)\n _opnsense_request(opn_cfg,\n f"wireguard/server/setServer/{wg[\'server_uuid\']}", method="POST",\n body={"server": {**srv, "peers": updated}})\n except Exception:\n pass\n\n # Apply\n try:\n _opnsense_request(opn_cfg, "wireguard/service/reconfigure", method="POST")\n except Exception:\n pass\n\n wg["peers"] = [p for p in wg.get("peers", []) if p.get("uuid") != uuid]\n _save_opnsense_wg(wg)\n return {"success": True}\n\n\n@app.get("/api/opnsense/wireguard/peer-config/{name}")\ndef opnsense_wg_peer_config(name: str):\n """Return the saved .conf text for a named peer (includes private key)."""\n wg = _load_opnsense_wg()\n peer = next((p for p in wg.get("peers", []) if p["name"] == name), None)\n if not peer:\n raise HTTPException(404, f"Peer \'{name}\' not found in local store")\n return {"name": name, "config": peer.get("config", "")}\n\n\n# ══════════════════════════════════════════════════════════════════════\n# OPNSENSE SSH SHELL ACCESS + UNBOUND MANAGEMENT\n# ══════════════════════════════════════════════════════════════════════\n# SSH via exec_command() bypasses the OPNsense console menu automatically —\n# the menu only appears for interactive login sessions.\n\n@app.post("/api/opnsense/ssh/generate-key")\ndef opnsense_ssh_generate_key():\n """Generate an ed25519 key pair for SSH access to OPNsense."""\n import subprocess as _sp2\n key = OPNSENSE_SSH_KEY\n if key.exists():\n pub = key.with_suffix(".pub")\n return {\n "generated": False,\n "key_path": str(key),\n "public_key": pub.read_text().strip() if pub.exists() else "",\n "note": "Key already exists — use existing or delete to regenerate",\n }\n key.parent.mkdir(parents=True, exist_ok=True)\n r = _sp2.run(\n ["ssh-keygen", "-t", "ed25519", "-f", str(key), "-N", "", "-C", "switch-manager@opnsense"],\n capture_output=True, text=True,\n )\n if r.returncode != 0:\n raise HTTPException(500, f"ssh-keygen failed: {r.stderr}")\n key.chmod(0o600)\n pub = key.with_suffix(".pub")\n return {\n "generated": True,\n "key_path": str(key),\n "public_key": pub.read_text().strip(),\n "note": "Add this public key to OPNsense: System → Access → Users → root → Authorized Keys",\n }\n\n@app.post("/api/opnsense/configure-ssh")\ndef configure_opnsense_ssh(body: OPNsenseSSHConfig):\n """Save SSH key path and test connectivity. Pins the host key if pin_host_key=True."""\n cfg = _load_opnsense_cfg()\n if not cfg.get("host"):\n raise HTTPException(400, "OPNsense API must be configured first (needs host)")\n cfg["ssh_key_path"] = body.ssh_key_path\n cfg["ssh_user"] = body.ssh_user\n if body.pin_host_key:\n # Connect with AutoAdd to capture and pin the host key\n client = paramiko.SSHClient()\n client.set_missing_host_key_policy(paramiko.AutoAddPolicy())\n try:\n client.connect(\n hostname=cfg["host"],\n username=cfg["ssh_user"],\n key_filename=cfg["ssh_key_path"],\n timeout=10,\n look_for_keys=False,\n allow_agent=False,\n )\n OPNSENSE_KNOWN_HOSTS.parent.mkdir(parents=True, exist_ok=True)\n client.save_host_keys(str(OPNSENSE_KNOWN_HOSTS))\n OPNSENSE_KNOWN_HOSTS.chmod(0o600)\n client.close()\n except Exception as e:\n raise HTTPException(400, f"SSH connect failed: {e}")\n result = _opnsense_ssh_test(cfg)\n if not result["ok"]:\n raise HTTPException(400, f"SSH test failed: {result[\'error\']}")\n _save_opnsense_cfg(cfg)\n log.info(f"OPNsense SSH configured: {cfg[\'host\']} user={body.ssh_user}")\n return {"success": True, "version": result["version"]}\n\n@app.get("/api/opnsense/ssh-status")\ndef opnsense_ssh_status():\n """Check SSH connectivity to OPNsense."""\n cfg = _load_opnsense_cfg()\n if not cfg.get("ssh_key_path"):\n return {"configured": False, "connected": False, "error": "SSH not configured"}\n result = _opnsense_ssh_test(cfg)\n return {\n "configured": True,\n "connected": result["ok"],\n "version": result.get("version", ""),\n "error": result.get("error", ""),\n "key_path": cfg.get("ssh_key_path", ""),\n "ssh_user": cfg.get("ssh_user", "root"),\n }\n\n@app.post("/api/opnsense/ssh/run")\ndef opnsense_ssh_run(body: dict):\n """Run a shell command on OPNsense. Requires TOTP session for write commands."""\n import re as _re2\n cmd = body.get("cmd", "").strip()\n token = body.get("token", "")\n if not cmd:\n raise HTTPException(400, "cmd required")\n # Read-only commands (no token needed); anything else needs auth\n readonly = bool(_re2.match(r\'^(cat|ls|uname|drill|dig|unbound-control\\s+status|service\\s+unbound\\s+status)\', cmd))\n if not readonly:\n require_session(token)\n cfg = _load_opnsense_cfg()\n if not cfg.get("ssh_key_path"):\n raise HTTPException(503, "OPNsense SSH not configured")\n out, err, code = _opnsense_ssh_run(cfg, cmd)\n return {"stdout": out, "stderr": err, "exit_code": code, "ok": code == 0}\n\n@app.get("/api/opnsense/unbound/status")\ndef opnsense_unbound_status():\n """Read Unbound config files and test for .lan DNS leak."""\n cfg = _load_opnsense_cfg()\n if not cfg.get("ssh_key_path"):\n raise HTTPException(503, "OPNsense SSH not configured")\n result = {}\n # Read each relevant config file\n for fname in ("local-lan-zone.conf", "forward_to_ctrld.conf", "dot.conf"):\n out, _, code = _opnsense_ssh_run(cfg, f"cat {UNBOUND_ETC}/{fname} 2>/dev/null")\n result[fname] = out.strip() if code == 0 else None\n # Test for .lan leak — check if SOA answer comes from ControlD\n out, _, _ = _opnsense_ssh_run(cfg, "drill @127.0.0.1 nonexistent.lan 2>/dev/null")\n result["lan_leak_test_raw"] = out.strip()\n result["lan_leak_detected"] = "controld" in out.lower()\n result["lan_handled_locally"] = "lan." in out.lower() and "controld" not in out.lower()\n # Unbound running?\n out, _, code = _opnsense_ssh_run(cfg, "unbound-control status 2>/dev/null | head -2")\n result["unbound_running"] = code == 0\n result["unbound_status"] = out.strip()\n return result\n\n@app.post("/api/opnsense/unbound/reload")\ndef opnsense_unbound_reload():\n """Reload Unbound on OPNsense to apply config changes."""\n cfg = _load_opnsense_cfg()\n if not cfg.get("ssh_key_path"):\n raise HTTPException(503, "OPNsense SSH not configured")\n out, err, code = _opnsense_ssh_run(cfg, "unbound-control reload 2>&1")\n if code != 0:\n raise HTTPException(500, f"unbound-control reload failed: {err or out}")\n return {"success": True, "output": out.strip()}\n\n@app.post("/api/opnsense/unbound/fix-lan-zone")\ndef opnsense_unbound_fix_lan_zone():\n """\n Ensure .lan queries are handled locally and never forwarded to ControlD.\n\n Writes local-lan-zone.conf with the correct static zone declaration,\n reloads Unbound, and runs a leak test to confirm the fix works.\n """\n cfg = _load_opnsense_cfg()\n if not cfg.get("ssh_key_path"):\n raise HTTPException(503, "OPNsense SSH not configured")\n steps = []\n errors = []\n # Write the correct local-lan-zone.conf via SFTP\n lan_zone_conf = \'local-zone: "lan." static\\n\'\n try:\n _opnsense_sftp_write(cfg, f"{UNBOUND_ETC}/local-lan-zone.conf", lan_zone_conf)\n steps.append("Wrote local-lan-zone.conf: local-zone \\"lan.\\" static")\n except Exception as e:\n errors.append(f"Write local-lan-zone.conf: {e}")\n raise HTTPException(500, "; ".join(errors))\n # Verify unbound-checkconf before reloading\n out, err, code = _opnsense_ssh_run(cfg, "unbound-checkconf 2>&1")\n if code != 0:\n errors.append(f"unbound-checkconf: {err or out}")\n raise HTTPException(500, "; ".join(errors))\n steps.append("unbound-checkconf: OK")\n # Reload\n out, err, code = _opnsense_ssh_run(cfg, "unbound-control reload 2>&1")\n if code != 0:\n errors.append(f"unbound-control reload: {err or out}")\n raise HTTPException(500, "; ".join(errors))\n steps.append("Unbound reloaded")\n # Leak test (give Unbound a moment to come back up)\n import time as _time2\n _time2.sleep(1)\n out, _, _ = _opnsense_ssh_run(cfg, "drill @127.0.0.1 nonexistent.lan 2>/dev/null")\n leak = "controld" in out.lower()\n if leak:\n steps.append("DNS test: LEAK STILL DETECTED — check dot.conf for conflicting forward-zones")\n else:\n steps.append("DNS test: PASS — nonexistent.lan answered locally (no ControlD leak)")\n return {\n "success": not leak,\n "steps": steps,\n "leak_detected": leak,\n "dns_test_output": out.strip(),\n }\n\n@app.post("/api/opnsense/unbound/write-forward-ctrld")\ndef opnsense_unbound_write_forward_ctrld(body: dict):\n """\n Write forward_to_ctrld.conf with the correct forward-zone for ctrld.\n\n Body: {token, ctrld_port (default 5354), enabled (default true)}\n Reloads Unbound after writing.\n """\n require_session(body.get("token", ""))\n cfg = _load_opnsense_cfg()\n if not cfg.get("ssh_key_path"):\n raise HTTPException(503, "OPNsense SSH not configured")\n port = int(body.get("ctrld_port", 5354))\n enabled = body.get("enabled", True)\n if enabled:\n content = (\n "forward-zone:\\n"\n f" name: \\".\\"\\n"\n f" forward-addr: 127.0.0.1@{port}\\n"\n )\n else:\n content = (\n "# forward-zone disabled\\n"\n "# forward-zone:\\n"\n f"# name: \\".\\"\\n"\n f"# forward-addr: 127.0.0.1@{port}\\n"\n )\n try:\n _opnsense_sftp_write(cfg, f"{UNBOUND_ETC}/forward_to_ctrld.conf", content)\n except Exception as e:\n raise HTTPException(500, f"Write failed: {e}")\n out, err, code = _opnsense_ssh_run(cfg, "unbound-checkconf 2>&1")\n if code != 0:\n raise HTTPException(500, f"unbound-checkconf failed after write: {err or out}")\n _opnsense_ssh_run(cfg, "unbound-control reload 2>&1")\n return {"success": True, "content": content, "enabled": enabled, "port": port}\n' JSX_SRC = 'import { useState, useCallback, useEffect, useRef } from "react";\n\nconst FONT = `@import url(\'https://fonts.googleapis.com/css2?family=Share+Tech+Mono&family=Barlow:wght@300;400;500;600;700&display=swap\');`;\nconst VLAN_COLORS = ["#00e5ff","#00e676","#ffea00","#ff6d00","#d500f9","#ff1744","#76ff03","#2979ff","#ff4081","#18ffff"];\n\nconst DEFAULT_VLANS = [\n { id: 1, name: "Management", color: VLAN_COLORS[0] },\n { id: 10, name: "Staff", color: VLAN_COLORS[1] },\n { id: 20, name: "Servers", color: VLAN_COLORS[2] },\n { id: 30, name: "IoT", color: VLAN_COLORS[3] },\n { id: 40, name: "Guest", color: VLAN_COLORS[4] },\n { id: 50, name: "Cameras", color: VLAN_COLORS[5] },\n];\n\nconst mkPort = n => ({\n id: n, mode: "access", accessVlan: 1, taggedVlans: [],\n nativeVlan: 1, poe: true, poeLimit: 30000, description: "",\n});\nconst DEFAULT_PORTS = Array.from({ length: 52 }, (_, i) => mkPort(i + 1));\nDEFAULT_PORTS.forEach((p, i) => {\n if (i >= 48) {\n p.mode = "trunk"; p.taggedVlans = [1,10,20,30,40,50];\n p.poe = false; p.description = `SFP+ Uplink ${i-47}`;\n }\n});\n\nconst VISITOR_ID = Math.random().toString(36).slice(2);\n\n// ── CLI Generator with explanations ────────────────────────────────────────\n// Each entry: { cmd: string, explain: string, group: string }\nfunction generateAnnotatedCLI({ ports, vlans, acls, hostname }) {\n const entries = [];\n const h = hostname || "ERS-5952";\n\n const add = (cmd, explain, group) => entries.push({ cmd, explain, group });\n\n add(`hostname ${h}`, `Set switch hostname to "${h}"`, "System");\n\n vlans.forEach(v => {\n add(`vlan create ${v.id} name "${v.name}" type port`,\n `Create VLAN ${v.id} named "${v.name}" — port-based VLAN`, "VLANs");\n });\n\n ports.forEach(p => {\n const iface = p.id <= 48 ? `FastEthernet ${p.id}` : `GigabitEthernet ${p.id}`;\n const portLabel = p.description ? `port ${p.id} (${p.description})` : `port ${p.id}`;\n const vlanName = vlans.find(v => v.id === p.accessVlan)?.name || `VLAN ${p.accessVlan}`;\n const group = `Port ${p.id}${p.description ? ` — ${p.description}` : ""}`;\n\n if (p.description) {\n add(`interface ${iface}`, `Select ${portLabel} for configuration`, group);\n add(` name "${p.description}"`, `Label ${portLabel} as "${p.description}"`, group);\n }\n\n if (p.mode === "disabled") {\n add(`interface ${iface}`, `Select ${portLabel}`, group);\n add(` shutdown`, `Disable ${portLabel} — no traffic will pass`, group);\n } else if (p.mode === "access") {\n add(`vlan members add ${p.accessVlan} ${p.id}`,\n `Assign ${portLabel} to ${vlanName} (VLAN ${p.accessVlan})`, group);\n add(`vlan pvid ${p.id} ${p.accessVlan}`,\n `Set ${portLabel} untagged VLAN to ${vlanName} — devices here join ${vlanName}`, group);\n } else if (p.mode === "trunk") {\n const tagged = p.taggedVlans;\n const names = tagged.map(id => vlans.find(v=>v.id===id)?.name || `VLAN ${id}`).join(", ");\n if (tagged.length) {\n add(`vlan members add ${tagged.join(",")} ${p.id}`,\n `Add ${portLabel} to VLANs: ${names}`, group);\n add(`vlan tagging ${tagged.join(",")} ${p.id}`,\n `Tag traffic on ${portLabel} for VLANs: ${names} — used for uplinks and inter-switch connections`, group);\n }\n const nativeName = vlans.find(v=>v.id===p.nativeVlan)?.name || `VLAN ${p.nativeVlan}`;\n add(`vlan pvid ${p.id} ${p.nativeVlan}`,\n `Set ${portLabel} native (untagged) VLAN to ${nativeName}`, group);\n }\n\n if (p.id <= 48) {\n add(`interface ${iface}`, `Select ${portLabel} for PoE configuration`, group);\n if (!p.poe) {\n add(` no poe enable`, `Disable Power over Ethernet on ${portLabel}`, group);\n } else {\n add(` poe enable`, `Enable Power over Ethernet on ${portLabel}`, group);\n add(` poe poe-limit ${p.poeLimit}`,\n `Limit PoE draw on ${portLabel} to ${(p.poeLimit/1000).toFixed(1)}W — protects switch power budget`, group);\n }\n }\n });\n\n acls.forEach(acl => {\n const vlanName = vlans.find(v=>v.id===acl.applyVlan)?.name || `VLAN ${acl.applyVlan}`;\n const group = `ACL: ${acl.name}`;\n add(`ip access-list extended ${acl.name}`,\n `Create access control list named "${acl.name}"`, group);\n acl.rules.forEach((r, i) => {\n const src = r.srcAny ? "any source" : `source ${r.src}`;\n const dst = r.dstAny ? "any destination" : `destination ${r.dst}`;\n const port = r.port ? ` on port ${r.port}` : "";\n add(` ${i+1} ${r.action} ${r.proto} ${r.srcAny?"any":`${r.src} ${r.srcMask||"0.0.0.255"}`} ${r.dstAny?"any":`${r.dst} ${r.dstMask||"0.0.0.255"}`}${r.port?` eq ${r.port}`:""}`,\n `Rule ${i+1}: ${r.action.toUpperCase()} ${r.proto.toUpperCase()} from ${src} to ${dst}${port}`, group);\n });\n add(`interface vlan ${acl.applyVlan}`,\n `Select ${vlanName} interface to apply the ACL`, group);\n add(` ip access-group ${acl.name} ${acl.direction}`,\n `Apply "${acl.name}" to ${vlanName} — filter traffic going ${acl.direction === "in" ? "INTO" : "OUT OF"} this VLAN`, group);\n });\n\n return entries;\n}\n\nfunction entriesToCLI(entries, hostname) {\n const lines = [\n `! ERS 5952 — ${hostname || "ERS-5952"}`,\n "enable", "configure terminal", "",\n ];\n entries.forEach(e => lines.push(e.cmd));\n lines.push("", "end", "copy running-config nvram:config.cfg");\n return lines.join("\\n");\n}\n\n// ── API ─────────────────────────────────────────────────────────────────────\nconst API = async (path, opts = {}) => {\n const r = await fetch(`/api${path}`, {\n headers: { "Content-Type": "application/json" },\n ...opts,\n body: opts.body ? JSON.stringify(opts.body) : undefined,\n });\n const data = await r.json().catch(() => ({}));\n if (!r.ok) throw new Error(data.detail?.message || data.detail || `HTTP ${r.status}`);\n return data;\n};\n\n// ══════════════════════════════════════════════════════════════════════════════\n// CSS\n// ══════════════════════════════════════════════════════════════════════════════\nconst css = `\n${FONT}\n*,*::before,*::after{box-sizing:border-box;margin:0;padding:0}\n:root{\n --bg:#0a0c10;--sf:#111318;--b1:#1e2230;--b2:#2a2f42;\n --ac:#00e5ff;--ac2:#0077ff;--tx:#c8d0e0;--dm:#5a6070;\n --err:#ff1744;--ok:#00e676;--warn:#ffea00;--warn2:#ff6d00;\n --mono:\'Share Tech Mono\',monospace;--sans:\'Barlow\',sans-serif;\n}\nbody{background:var(--bg);color:var(--tx);font-family:var(--sans);font-size:13px;line-height:1.5;min-height:100vh}\n.app{display:flex;flex-direction:column;min-height:100vh}\n\n/* banner */\n.conn-banner{display:flex;align-items:center;gap:10px;padding:8px 20px;font-size:12px;font-family:var(--mono);border-bottom:1px solid;transition:all .4s}\n.conn-banner.connecting{background:rgba(255,234,0,.06);border-color:rgba(255,234,0,.2);color:var(--warn)}\n.conn-banner.connected{background:rgba(0,230,118,.06);border-color:rgba(0,230,118,.2);color:var(--ok)}\n.conn-banner.error{background:rgba(255,23,68,.06);border-color:rgba(255,23,68,.2);color:var(--err)}\n.conn-banner.hidden{display:none}\n.conn-spin{width:12px;height:12px;border:2px solid currentColor;border-top-color:transparent;border-radius:50%;animation:spin .8s linear infinite;flex-shrink:0}\n@keyframes spin{to{transform:rotate(360deg)}}\n.conn-dot{width:8px;height:8px;border-radius:50%;background:currentColor;flex-shrink:0}\n\n/* topbar */\n.topbar{display:flex;align-items:center;gap:14px;padding:10px 20px;background:var(--sf);border-bottom:1px solid var(--b1);position:sticky;top:0;z-index:100;flex-wrap:wrap}\n.logo{font-family:var(--mono);font-size:14px;color:var(--ac);letter-spacing:2px}\n.logo-sub{font-size:10px;color:var(--dm);font-family:var(--mono)}\n.sp{flex:1}\n.ti{background:var(--bg);border:1px solid var(--b2);color:var(--tx);padding:4px 8px;font-family:var(--mono);font-size:12px;border-radius:3px;width:130px}\n.ti:focus{outline:none;border-color:var(--ac)}\n.tl{font-size:11px;color:var(--dm)}\n\n/* session */\n.sess-btn{display:flex;align-items:center;gap:8px;padding:5px 12px;border-radius:4px;border:1px solid;font-size:11px;font-weight:700;letter-spacing:1px;text-transform:uppercase;cursor:pointer;font-family:var(--sans);transition:all .15s}\n.sess-btn.locked{border-color:var(--b2);color:var(--dm);background:transparent}\n.sess-btn.locked:hover{border-color:var(--ac);color:var(--ac)}\n.sess-btn.unlocked{border-color:var(--ok);color:var(--ok);background:rgba(0,230,118,.08)}\n.sess-btn.unlocked:hover{background:rgba(255,23,68,.1);border-color:var(--err);color:var(--err)}\n.sess-timer{font-family:var(--mono);font-size:12px;letter-spacing:1px}\n\n/* settings icon */\n.settings-btn{background:none;border:1px solid var(--b2);color:var(--dm);border-radius:4px;padding:5px 9px;cursor:pointer;font-size:14px;transition:all .15s;line-height:1}\n.settings-btn:hover{border-color:var(--ac);color:var(--ac)}\n\n/* settings panel */\n.settings-overlay{position:fixed;inset:0;background:rgba(0,0,0,.6);z-index:150;display:flex;align-items:flex-start;justify-content:flex-end}\n.settings-panel{background:var(--sf);border-left:1px solid var(--b2);width:320px;min-height:100vh;padding:20px}\n.settings-panel h2{font-family:var(--mono);font-size:13px;color:var(--ac);letter-spacing:2px;margin-bottom:16px}\n.settings-section{margin-bottom:20px;padding-bottom:20px;border-bottom:1px solid var(--b1)}\n.settings-section:last-child{border-bottom:none}\n.settings-section h3{font-size:10px;font-weight:700;letter-spacing:2px;text-transform:uppercase;color:var(--dm);margin-bottom:10px}\n.setting-row{display:flex;align-items:center;justify-content:space-between;padding:6px 0}\n.setting-label{font-size:12px}\n.setting-sub{font-size:11px;color:var(--dm);margin-top:2px}\n\n/* poll pill */\n.poll-pill{display:flex;align-items:center;gap:5px;font-size:10px;color:var(--dm);font-family:var(--mono);padding:3px 8px;border:1px solid var(--b1);border-radius:20px}\n.dot{width:6px;height:6px;border-radius:50%}\n.dot.ok{background:var(--ok)}.dot.warn{background:var(--warn)}.dot.err{background:var(--err)}.dot.idle{background:var(--dm)}\n\n/* tabs */\n.tabs{display:flex;gap:2px;padding:0 20px;background:var(--sf);border-bottom:1px solid var(--b1)}\n.tab{padding:10px 18px;font-size:12px;font-weight:600;letter-spacing:1px;text-transform:uppercase;cursor:pointer;border-bottom:2px solid transparent;color:var(--dm);transition:all .15s;background:none;border-top:none;border-left:none;border-right:none;font-family:var(--sans)}\n.tab:hover{color:var(--tx)}.tab.active{color:var(--ac);border-bottom-color:var(--ac)}\n\n/* main */\n.main{flex:1;padding:20px;display:flex;gap:16px;align-items:flex-start}\n\n/* panel */\n.panel{background:var(--sf);border:1px solid var(--b1);border-radius:6px;overflow:hidden}\n.ph{padding:10px 14px;border-bottom:1px solid var(--b1);font-size:11px;font-weight:700;letter-spacing:2px;text-transform:uppercase;color:var(--ac);font-family:var(--mono);display:flex;align-items:center;gap:8px}\n.pb{padding:14px}\n\n/* chassis */\n.chassis{background:#0d0f14;border:1px solid var(--b2);border-radius:8px;padding:16px;margin-bottom:12px}\n.cl{font-family:var(--mono);font-size:10px;color:var(--dm);letter-spacing:3px;text-transform:uppercase;margin-bottom:10px}\n.pgrid{display:grid;grid-template-columns:repeat(24,1fr);gap:4px}\n.pgrid-sfp{display:grid;grid-template-columns:repeat(4,1fr);gap:4px;margin-top:8px;padding-top:8px;border-top:1px solid var(--b1);width:calc(4*(100%/24)+3*4px)}\n.port{aspect-ratio:1;border-radius:3px;border:1px solid transparent;cursor:pointer;display:flex;align-items:center;justify-content:center;font-family:var(--mono);font-size:8px;font-weight:700;transition:all .1s;position:relative}\n.port:hover{filter:brightness(1.3);transform:scale(1.1);z-index:2}\n.port.sel{border-color:white!important;box-shadow:0 0 0 2px white;z-index:3}\n.poe-dot{position:absolute;top:1px;right:1px;width:4px;height:4px;border-radius:50%;background:var(--ok)}\n.legend{display:flex;flex-wrap:wrap;gap:8px;padding:10px 14px;border-top:1px solid var(--b1)}\n.li{display:flex;align-items:center;gap:5px;font-size:11px;color:var(--dm)}\n.ld{width:10px;height:10px;border-radius:2px}\n\n/* fields */\n.field{margin-bottom:12px}\n.field label{display:block;font-size:10px;font-weight:700;letter-spacing:1.5px;text-transform:uppercase;color:var(--dm);margin-bottom:4px}\n.field input,.field select{width:100%;background:var(--bg);border:1px solid var(--b2);color:var(--tx);padding:6px 8px;font-family:var(--mono);font-size:12px;border-radius:3px}\n.field input:focus,.field select:focus{outline:none;border-color:var(--ac)}\n.field select option{background:var(--bg)}\n.rgrp{display:flex;gap:6px}\n.rbtn{flex:1;padding:5px;text-align:center;border:1px solid var(--b2);border-radius:3px;cursor:pointer;font-size:11px;font-weight:600;letter-spacing:1px;text-transform:uppercase;transition:all .1s;background:none;color:var(--dm);font-family:var(--sans)}\n.rbtn:hover{border-color:var(--ac);color:var(--ac)}\n.rbtn.ra{background:var(--ac);border-color:var(--ac);color:#000}\n.rbtn.rt{background:var(--ac2);border-color:var(--ac2);color:#fff}\n.rbtn.rd{background:var(--err);border-color:var(--err);color:#fff}\n.trow{display:flex;align-items:center;justify-content:space-between;padding:6px 0}\n.tog{width:36px;height:20px;background:var(--b2);border-radius:10px;cursor:pointer;position:relative;transition:background .2s;border:none}\n.tog.on{background:var(--ok)}\n.tog::after{content:\'\';position:absolute;top:3px;left:3px;width:14px;height:14px;background:#fff;border-radius:50%;transition:transform .2s}\n.tog.on::after{transform:translateX(16px)}\n.vtags{display:flex;flex-wrap:wrap;gap:4px;padding:6px;background:var(--bg);border:1px solid var(--b2);border-radius:3px;min-height:34px}\n.vtag{padding:2px 7px;border-radius:2px;font-family:var(--mono);font-size:11px;cursor:pointer;font-weight:700;transition:opacity .1s}\n.vtag.von{opacity:1}.vtag.voff{opacity:.25}\n\n/* buttons */\n.btn{padding:7px 14px;border-radius:3px;border:none;cursor:pointer;font-size:11px;font-weight:700;letter-spacing:1.5px;text-transform:uppercase;font-family:var(--sans);transition:all .1s;white-space:nowrap}\n.bp{background:var(--ac);color:#000}.bp:hover{background:#33ecff}\n.bd{background:var(--err);color:#fff}.bd:hover{background:#ff4569}\n.bg{background:transparent;border:1px solid var(--b2);color:var(--tx)}.bg:hover{border-color:var(--ac);color:var(--ac)}\n.bs{background:var(--ok);color:#000}.bs:hover{background:#33eb91}\n.bw{background:var(--warn);color:#000}.bw:hover{filter:brightness(1.1)}\n.btn:disabled{opacity:.4;cursor:not-allowed}\n.btn-row{display:flex;gap:6px;margin-top:12px;flex-wrap:wrap}\n\n/* vlan table */\n.vtbl{width:100%;border-collapse:collapse}\n.vtbl th{text-align:left;padding:6px 10px;font-size:10px;letter-spacing:2px;text-transform:uppercase;color:var(--dm);border-bottom:1px solid var(--b1)}\n.vtbl td{padding:8px 10px;border-bottom:1px solid var(--b1);font-family:var(--mono);font-size:12px}\n.vtbl tr:last-child td{border-bottom:none}\n.vtbl tr:hover td{background:rgba(255,255,255,.02)}\n.sw{width:16px;height:16px;border-radius:3px;display:inline-block;vertical-align:middle}\n.ii{background:var(--bg);border:1px solid var(--b2);color:var(--tx);padding:3px 6px;font-family:var(--mono);font-size:12px;border-radius:3px;width:100%}\n.ii:focus{outline:none;border-color:var(--ac)}\n\n/* acl */\n.acl-card{background:var(--bg);border:1px solid var(--b2);border-radius:5px;overflow:hidden;margin-bottom:10px}\n.acl-hd{padding:8px 12px;display:flex;align-items:center;gap:8px;background:rgba(255,255,255,.03);border-bottom:1px solid var(--b1)}\n.acl-nm{font-family:var(--mono);font-size:13px;color:var(--ac);flex:1}\n.acl-rules{padding:8px 12px}\n.acl-rule{display:grid;grid-template-columns:60px 50px 1fr 1fr 60px 24px;gap:6px;align-items:center;margin-bottom:6px;font-size:11px}\n.acl-rule select,.acl-rule input{background:var(--sf);border:1px solid var(--b2);color:var(--tx);padding:3px 5px;font-family:var(--mono);font-size:11px;border-radius:3px;width:100%}\n\n/* ── ANNOTATED CLI TABLE ── */\n.cli-table{width:100%;border-collapse:collapse;font-size:12px;margin-bottom:12px}\n.cli-table th{text-align:left;padding:6px 10px;font-size:10px;letter-spacing:2px;text-transform:uppercase;color:var(--dm);border-bottom:1px solid var(--b1);font-family:var(--sans)}\n.cli-group-header td{padding:8px 10px 4px;font-size:10px;font-weight:700;letter-spacing:2px;text-transform:uppercase;color:var(--ac);font-family:var(--mono);border-top:1px solid var(--b1);background:rgba(0,229,255,.04)}\n.cli-row{transition:background .1s}\n.cli-row:hover{background:rgba(255,255,255,.03)}\n.cli-row td{padding:5px 10px;border-bottom:1px solid rgba(255,255,255,.03);vertical-align:top}\n.cli-cmd{font-family:var(--mono);color:var(--tx);white-space:pre}\n.cli-explain{color:var(--dm);font-size:11px;padding-left:8px}\n.cli-row.pending td{opacity:.5}\n.cli-row.running td .cli-cmd{color:var(--warn)}\n.cli-row.running td .cli-explain{color:var(--warn)}\n.cli-row.success td .cli-cmd{color:var(--ok)}\n.cli-row.success td .cli-explain{color:#3a6040}\n.cli-row.failed td .cli-cmd{color:var(--err)}\n.cli-row.failed td .cli-explain{color:#6a2030}\n.cli-row.waiting td{opacity:.35}\n.cli-status{width:20px;text-align:center;font-size:13px}\n.cli-err-out{font-family:var(--mono);font-size:10px;color:var(--warn);padding:3px 10px 5px;background:rgba(255,23,68,.05);border-bottom:1px solid var(--b1)}\n\n/* raw cli textarea (cli mode) */\n.cli-raw{width:100%;background:#060809;border:1px solid var(--b1);color:#a0b0c0;padding:14px;font-family:var(--mono);font-size:12px;line-height:1.7;border-radius:4px;min-height:300px;resize:vertical}\n.cli-raw:focus{outline:none;border-color:var(--ac)}\n\n/* totp modal */\n.modal-bg{position:fixed;inset:0;background:rgba(0,0,0,.75);z-index:200;display:flex;align-items:center;justify-content:center}\n.modal{background:var(--sf);border:1px solid var(--b2);border-radius:8px;padding:28px;width:360px;text-align:center}\n.modal h2{font-family:var(--mono);color:var(--ac);font-size:14px;letter-spacing:2px;margin-bottom:8px}\n.modal p{font-size:12px;color:var(--dm);margin-bottom:20px;line-height:1.7}\n.totp-in{width:100%;background:var(--bg);border:2px solid var(--b2);color:var(--tx);padding:12px;font-family:var(--mono);font-size:28px;letter-spacing:10px;border-radius:4px;text-align:center;margin-bottom:12px}\n.totp-in:focus{outline:none;border-color:var(--ac)}\n\n/* danger */\n.hard-box{background:rgba(255,23,68,.07);border:1px solid rgba(255,23,68,.3);border-radius:4px;padding:10px 14px;margin-bottom:10px}\n.hard-box h4{color:var(--err);font-size:11px;font-weight:700;letter-spacing:1px;text-transform:uppercase;margin-bottom:6px}\n.warn-box{background:rgba(255,234,0,.07);border:1px solid rgba(255,234,0,.3);border-radius:4px;padding:10px 14px;margin-bottom:10px}\n.warn-box h4{color:var(--warn);font-size:11px;font-weight:700;letter-spacing:1px;text-transform:uppercase;margin-bottom:6px}\n.danger-item{font-size:11px;margin-bottom:5px}\n.danger-cmd{font-family:var(--mono);color:var(--tx)}\n.danger-why{font-size:10px;color:var(--dm);margin-top:1px}\n\n/* push mode choice */\n.push-choice{display:flex;gap:10px;margin-bottom:14px}\n.push-choice-btn{flex:1;padding:10px 12px;border-radius:5px;border:1px solid var(--b2);background:var(--bg);color:var(--tx);cursor:pointer;text-align:left;transition:all .15s;font-family:var(--sans)}\n.push-choice-btn:hover{border-color:var(--ac)}\n.push-choice-btn.chosen{border-color:var(--ac);background:rgba(0,229,255,.06)}\n.push-choice-btn h4{font-size:12px;font-weight:700;margin-bottom:3px;color:var(--ac)}\n.push-choice-btn p{font-size:11px;color:var(--dm);line-height:1.4}\n\n/* push summary bar */\n.push-summary{display:flex;align-items:center;gap:12px;padding:8px 12px;border-radius:4px;font-size:12px;font-family:var(--mono);margin-bottom:10px}\n.push-summary.ok{background:rgba(0,230,118,.08);border:1px solid rgba(0,230,118,.2);color:var(--ok)}\n.push-summary.fail{background:rgba(255,23,68,.08);border:1px solid rgba(255,23,68,.2);color:var(--err)}\n.push-summary.running{background:rgba(255,234,0,.05);border:1px solid rgba(255,234,0,.15);color:var(--warn)}\n\n\n/* ── Device Access ── */\n.device-card{background:var(--bg);border:1px solid var(--b2);border-radius:4px;padding:10px 12px;margin-bottom:8px}\n.device-badges{display:flex;gap:6px;margin-top:6px;flex-wrap:wrap}\n/* misc */\n.sect{font-size:10px;font-weight:700;letter-spacing:2px;text-transform:uppercase;color:var(--dm);margin-bottom:10px;padding-bottom:6px;border-bottom:1px solid var(--b1)}\n.empty{text-align:center;padding:40px 20px;color:var(--dm);font-size:12px}\n.badge{padding:1px 6px;border-radius:10px;font-size:10px;font-family:var(--mono);font-weight:700}\n.poe-bar-wrap{height:4px;background:var(--b2);border-radius:2px;margin-top:4px;overflow:hidden}\n.poe-bar{height:100%;border-radius:2px;background:var(--ok);transition:width .3s}\n`;\n\n// ══════════════════════════════════════════════════════════════════════════════\n// CONNECTION BANNER\n// ══════════════════════════════════════════════════════════════════════════════\nfunction ConnBanner({ state, info }) {\n if (state === "hidden") return null;\n return (\n
\n {state === "connecting" && }\n {state !== "connecting" && }\n \n {state === "connecting" && "Connecting to switch..."}\n {state === "connected" && (info || "Connected")}\n {state === "error" && (info || "Switch unreachable — retrying...")}\n \n
\n );\n}\n\n// ══════════════════════════════════════════════════════════════════════════════\n// TOTP MODAL\n// ══════════════════════════════════════════════════════════════════════════════\nfunction TotpModal({ onSuccess, onCancel, commandCount }) {\n const [code, setCode] = useState("");\n const [error, setError] = useState("");\n const [loading, setLoading] = useState(false);\n\n const verify = async () => {\n if (code.length !== 6) return;\n setLoading(true); setError("");\n try {\n const data = await API("/auth/verify", { method: "POST", body: { code } });\n onSuccess(data.token);\n } catch(e) {\n setError(e.message); setCode("");\n } finally { setLoading(false); }\n };\n\n return (\n
\n
e.stopPropagation()}>\n

◈ AUTHENTICATE

\n

\n Enter your 6-digit TOTP code to authorize this push.
\n {commandCount} command{commandCount!==1?"s":""} ready to send.
\n Session locks automatically when push completes.\n

\n setCode(e.target.value.replace(/\\D/g,"").slice(0,6))}\n onKeyDown={e => e.key==="Enter" && verify()}\n placeholder="000000" autoFocus maxLength={6}/>\n {error &&
{error}
}\n
\n \n \n
\n
\n
\n );\n}\n\n// ══════════════════════════════════════════════════════════════════════════════\n// SESSION BUTTON — shows "Authenticate to Push" only, no timer\n// Session is scoped to one push batch, lock happens automatically after push\n// ══════════════════════════════════════════════════════════════════════════════\nfunction SessionBtn({ session, onUnlock }) {\n if (session) {\n return (\n
\n 🔓 Session Active\n
\n );\n }\n return (\n \n );\n}\n\n// ══════════════════════════════════════════════════════════════════════════════\n// SETTINGS PANEL\n// ══════════════════════════════════════════════════════════════════════════════\nfunction SettingsPanel({ settings, setSettings, onClose }) {\n return (\n
\n
e.stopPropagation()}>\n
\n

◈ SETTINGS

\n \n
\n\n
\n

Interface

\n
\n
\n
CLI Mode
\n
Advanced — type raw ERS commands directly
\n
\n
\n
\n\n
\n

Push Behaviour

\n
\n
\n
Default push mode
\n
Batch or step-by-step
\n
\n \n
\n
\n\n
\n

About

\n
\n ERS 5952 Switch Manager
\n Runs on your management computer on VLAN 99.
\n SSH key lives on the management computer only.
\n You never write CLI commands.
\n README.md has full documentation.\n
\n
\n
\n
\n );\n}\n\n// ══════════════════════════════════════════════════════════════════════════════\n// ANNOTATED CLI TABLE — the main inspect view\n// ══════════════════════════════════════════════════════════════════════════════\nfunction AnnotatedCLITable({ entries, pushState, currentIdx, pushMode, onConfirmOne }) {\n // Group entries by group field\n const groups = [];\n let lastGroup = null;\n entries.forEach((e, i) => {\n if (e.group !== lastGroup) {\n groups.push({ label: e.group, entries: [] });\n lastGroup = e.group;\n }\n groups[groups.length-1].entries.push({ ...e, globalIdx: i });\n });\n\n const getRowState = (globalIdx) => {\n if (!pushState) return "pending";\n if (globalIdx < currentIdx) return "success";\n if (globalIdx === currentIdx) return "running";\n return "waiting";\n };\n\n const getRowResult = (globalIdx) => {\n if (!pushState?.results) return null;\n return pushState.results.find(r => r.index === globalIdx);\n };\n\n return (\n \n \n \n \n \n \n {pushMode === "step" && !pushState?.done && }\n \n \n \n {groups.map((grp, gi) => (\n <>\n \n \n \n {grp.entries.map((e, ei) => {\n const rowState = getRowState(e.globalIdx);\n const result = getRowResult(e.globalIdx);\n const isCurrentStep = pushMode === "step" && pushState && !pushState.done && e.globalIdx === currentIdx;\n return (\n <>\n \n \n \n \n {pushMode === "step" && !pushState?.done && (\n \n )}\n \n {result && !result.success && result.output && (\n \n \n \n )}\n \n );\n })}\n \n ))}\n \n
CommandWhat it does
{grp.label}
\n {rowState === "success" && "✓"}\n {rowState === "failed" && "✗"}\n {rowState === "running" && }\n {(rowState === "pending" || rowState === "waiting") && "·"}\n {e.cmd}{e.explain}\n {isCurrentStep && (\n \n )}\n
\n Switch error: {result.output}\n
\n );\n}\n\n// ══════════════════════════════════════════════════════════════════════════════\n// CLI & PUSH TAB\n// ══════════════════════════════════════════════════════════════════════════════\nfunction CliTab({ ports, vlans, acls, hostname, session, setSession, onNeedAuth, backendOk, settings }) {\n const annotated = generateAnnotatedCLI({ ports, vlans, acls, hostname });\n const pushCommands = annotated.map(e => e.cmd).filter(c => {\n const t = c.trim();\n return t && !t.startsWith("!");\n });\n\n const [stage, setStage] = useState("idle"); // idle|checking|danger|choosePushMode|pushing|done\n const [dangerResult, setDangerResult] = useState(null);\n const [pushMode, setPushMode] = useState(settings.defaultPushMode || "batch");\n const [pushState, setPushState] = useState(null);\n const [currentIdx, setCurrentIdx] = useState(0);\n const [rawCli, setRawCli] = useState("");\n\n // Reset when ports/vlans/acls change\n useEffect(() => { setStage("idle"); setPushState(null); setCurrentIdx(0); }, [ports, vlans, acls]);\n\n const handleReviewPush = async () => {\n setStage("checking");\n try {\n const check = await API("/check/danger", { method:"POST", body:{ commands: pushCommands } });\n setDangerResult(check);\n setStage("danger");\n } catch(e) {\n setDangerResult({ error: e.message }); setStage("danger");\n }\n };\n\n const proceedToChoose = () => setStage("choosePushMode");\n\n const startPush = async (mode, token) => {\n const t = token || session?.token;\n if (!t) { onNeedAuth(); return; }\n setPushMode(mode);\n setStage("pushing");\n setCurrentIdx(0);\n setPushState({ results: [], done: false });\n\n if (mode === "batch") {\n await executeBatch(t);\n }\n // step mode is driven by onConfirmOne\n };\n\n const executeBatch = async (token) => {\n try {\n const result = await API("/switch/push", {\n method:"POST",\n body: { token, commands: pushCommands }\n });\n setPushState({ ...result, done: true });\n setCurrentIdx(result.commands_sent || pushCommands.length);\n setStage("done");\n setSession(null); // lock session after push completes\n } catch(e) {\n setPushState({ success:false, error:e.message, results:[], commands_sent:0, done:true });\n setStage("done");\n setSession(null);\n }\n };\n\n const onConfirmOne = async (idx) => {\n if (!session?.token) { onNeedAuth(); return; }\n const cmd = pushCommands[idx];\n try {\n const result = await API("/switch/push", {\n method:"POST",\n body: { token: session.token, commands: [cmd] }\n });\n const r = result.results?.[0] || { index: idx, command: cmd, success: result.success, output: result.error || "", skipped: false };\n r.index = idx;\n setPushState(prev => {\n const results = [...(prev?.results||[]), r];\n if (!result.success) {\n setStage("done");\n setSession(null);\n return { ...prev, results, done: true, success: false, error: result.error };\n }\n const nextIdx = idx + 1;\n setCurrentIdx(nextIdx);\n if (nextIdx >= pushCommands.length) {\n // Save config\n API("/switch/push", { method:"POST", body:{ token: session.token, commands:["copy running-config nvram:config.cfg"] } })\n .catch(() => {});\n setStage("done");\n setSession(null);\n return { ...prev, results, done:true, success:true, saved:true };\n }\n return { ...prev, results };\n });\n } catch(e) {\n setStage("done"); setSession(null);\n setPushState(prev => ({ ...prev, done:true, success:false, error:e.message }));\n }\n };\n\n const handleRawPush = async () => {\n if (!session?.token) { onNeedAuth(); return; }\n const cmds = rawCli.split("\\n").filter(l => l.trim() && !l.trim().startsWith("!"));\n try {\n setStage("pushing");\n const result = await API("/switch/push", { method:"POST", body:{ token:session.token, commands:cmds } });\n setPushState({ ...result, done:true });\n setStage("done");\n setSession(null);\n } catch(e) {\n setPushState({ success:false, error:e.message, results:[], done:true });\n setStage("done"); setSession(null);\n }\n };\n\n const fullCLI = entriesToCLI(annotated, hostname);\n const cmdCount = pushCommands.length;\n\n // ── CLI Mode (raw text) ──\n if (settings.cliMode) {\n return (\n
\n
\n
◈ CLI Mode — Advanced\n Danger check and allowlist still apply\n
\n
\n
\n Type or paste ERS CLI commands. Do not include enable, configure terminal, end, or copy — these are added automatically.\n
\n