Live proof: ecobee answers unicast mDNS with PTR only (_hap._tcp.local -> "Main Floor._hap._tcp.local"), so the old replace-on-probe wiped learned records every cycle. Merge by (name, type) instead. CONFIG_PATH now env-overridable for tests. Details: https://projects.knownelement.com/issues/619#note-5 💘 Generated with Crush Assisted-by: Crush:glm-5.2
213 lines
7.1 KiB
Python
213 lines
7.1 KiB
Python
#!/usr/bin/env python3
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"""mdns-hap-bridge: unicast-probe HomeKit devices, replay records via multicast.
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Why: WiFi-side HomeKit accessories (ecobee, locks) are invisible to multicast
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browsers on the wired segment (AP-side multicast filtering, see #619). They DO
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answer unicast mDNS queries. This daemon probes configured devices and
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re-announces their records on the LAN so Home Assistant's zeroconf/HomeKit
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Controller discovers them normally.
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Design notes:
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- Runs on the pfv-bms HAOS host (docker --restart=always), host network.
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- Config: /usr/local/etc/hap-bridge.conf — {"devices": ["192.168.1.212", ...]}
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- Record fidelity: PTR/SRV names are captured as text and re-encoded WITHOUT
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compression pointers (a raw replay would carry dangling pointers into the
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original packet); TXT replayed verbatim; A/AAAA raw.
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- SO_REUSEADDR + multicast group membership: coexists with host avahi.
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- Answers multicast queries for _hap._tcp.local and announces periodically.
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- Stdlib only. [#619]
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"""
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import json
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import os
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import logging
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import socket
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import struct
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import threading
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import time
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CONFIG_PATH = os.environ.get("CONFIG_PATH", "/usr/local/etc/hap-bridge.conf")
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MDNS_GROUP = "224.0.0.251"
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MDNS_PORT = 5353
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REFRESH_INTERVAL = 60
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REPLAY_INTERVAL = 30
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SERVICE = "_hap._tcp.local"
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logging.basicConfig(level=logging.INFO, format="%(asctime)s %(levelname)s %(message)s")
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log = logging.getLogger("hap-bridge")
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def read_name(data, off):
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parts = []
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while True:
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length = data[off]
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if length == 0:
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off += 1
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break
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if length & 0xC0:
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ptr = struct.unpack(">H", data[off:off + 2])[0] & 0x3FFF
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parts.append(read_name(data, ptr)[0])
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off += 2
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break
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parts.append(data[off + 1:off + 1 + length].decode("latin1"))
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off += 1 + length
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return ".".join(parts), off
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def encode_name(name):
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out = b""
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for part in name.split("."):
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out += bytes([len(part)]) + part.encode("latin1")
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return out + b"\x00"
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def decode_rr_header(data, off):
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"""Return (rtype, rclass, ttl, rdata_len) for the RR header at offset."""
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return struct.unpack(">HHIH", data[off:off + 10])
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def merge_records(prev_recs, new_recs):
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"""Union record sets by (name, type); new records replace same-key old ones.
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Devices often answer a multi-question probe with partial record sets
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(ecobee returns only the PTR, #619); accumulate across probes so a thin
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response never discards previously learned SRV/TXT/A records.
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"""
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merged = {(r["name"], r["type"]): r for r in prev_recs}
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for r in new_recs:
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merged[(r["name"], r["type"])] = r
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return list(merged.values())
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def probe_device(ip, timeout=2.0):
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"""Return normalized records from a device's mDNS response."""
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qname = encode_name(SERVICE)
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packet = struct.pack(">HHHHHH", 0x4242, 0, 3, 0, 0, 0)
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packet += b"".join(qname + struct.pack(">HH", t, 1) for t in (12, 33, 16))
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s = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
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s.settimeout(timeout)
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try:
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s.sendto(packet, (ip, MDNS_PORT))
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while True:
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data, _ = s.recvfrom(16384)
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if not (data[2] & 0x80):
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continue
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qd = struct.unpack(">H", data[4:6])[0]
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an = struct.unpack(">H", data[6:8])[0]
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ns = struct.unpack(">H", data[8:10])[0]
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off = 12
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for _ in range(qd):
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_, off = read_name(data, off)
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off += 4
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records = []
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for _ in range(an + ns):
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name, name_end = read_name(data, off)
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rtype, _rclass, ttl, rlen = decode_rr_header(data, name_end)
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rec = {"name": name, "type": rtype, "ttl": min(ttl, 4500)}
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if rtype == 12: # PTR
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rec["ptr_target"] = read_name(data, name_end + 10)[0]
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elif rtype == 33: # SRV
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pri, weight, port = struct.unpack(">HHH", data[name_end + 10:name_end + 16])
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rec.update({
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"srv_prio": pri,
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"srv_weight": weight,
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"srv_port": port,
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"srv_target": read_name(data, name_end + 16)[0],
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})
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else: # TXT / A / AAAA / anything self-contained
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rec["rdata_hex"] = data[name_end + 10:name_end + 10 + rlen].hex()
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records.append(rec)
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off = name_end + 10 + rlen
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return records
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except (socket.timeout, OSError):
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return []
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finally:
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s.close()
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def encode_record(rec):
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if rec["type"] == 12:
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rdata = encode_name(rec["ptr_target"])
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elif rec["type"] == 33:
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rdata = struct.pack(">HHH", rec["srv_prio"], rec["srv_weight"], rec["srv_port"])
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rdata += encode_name(rec["srv_target"])
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else:
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rdata = bytes.fromhex(rec["rdata_hex"])
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wire = encode_name(rec["name"])
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wire += struct.pack(">HHIH", rec["type"], 1, rec["ttl"], len(rdata))
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return wire + rdata
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def build_packet(records):
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header = struct.pack(">HHHHHH", 0, 0x8400, 0, len(records), 0, 0)
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return header + b"".join(encode_record(r) for r in records)
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def load_config():
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with open(CONFIG_PATH) as f:
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return json.load(f).get("devices", [])
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def main():
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devices = load_config()
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log.info("starting; devices: %s", devices)
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sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
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sock.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1)
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sock.bind(("", MDNS_PORT))
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mreq = socket.inet_aton(MDNS_GROUP) + socket.inet_aton("0.0.0.0")
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sock.setsockopt(socket.IPPROTO_IP, socket.IP_ADD_MEMBERSHIP, mreq)
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state = {}
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lock = threading.Lock()
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def refresh():
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for ip in devices:
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recs = probe_device(ip)
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with lock:
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if recs:
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state[ip] = merge_records(state.get(ip, []), recs)
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log.info("probe %s: %s", ip, f"{len(recs)} records" if recs else "no response")
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def replay():
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with lock:
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snapshot = list(state.values())
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for recs in snapshot:
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try:
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sock.sendto(build_packet(recs), (MDNS_GROUP, MDNS_PORT))
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except OSError as exc:
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log.error("replay failed: %s", exc)
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log.info("replayed %d device(s)", len(snapshot))
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def responder():
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while True:
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try:
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data, _addr = sock.recvfrom(4096)
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except OSError:
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continue
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if data[2] & 0x80:
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continue
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qd = struct.unpack(">H", data[4:6])[0]
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off = 12
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wants = False
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try:
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for _ in range(qd):
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name, off = read_name(data, off)
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if SERVICE in name:
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wants = True
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off += 4
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except (IndexError, struct.error):
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continue
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if wants:
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replay()
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threading.Thread(target=responder, daemon=True).start()
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while True:
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refresh()
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replay()
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time.sleep(REPLAY_INTERVAL)
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if __name__ == "__main__":
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main()
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