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This PR does a few related things to dump_devinfo: - Store the raw discovery result in the fixture. - Consolidate redaction logic so it's not duplicated in dump_devinfo. - Update existing fixtures to: - Store raw discovery result under `result` - Use `SCRUBBED_CHILD_DEVICE_ID` everywhere - Have correct values as per the consolidated redactors.
188 lines
6.0 KiB
Python
Executable File
188 lines
6.0 KiB
Python
Executable File
"""Module for the IOT legacy IOT KASA protocol."""
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from __future__ import annotations
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import asyncio
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import logging
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from collections.abc import Callable
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from pprint import pformat as pf
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from typing import TYPE_CHECKING, Any
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from ..deviceconfig import DeviceConfig
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from ..exceptions import (
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AuthenticationError,
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KasaException,
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TimeoutError,
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_ConnectionError,
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_RetryableError,
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)
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from ..json import dumps as json_dumps
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from ..transports import XorEncryption, XorTransport
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from .protocol import BaseProtocol, mask_mac, redact_data
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if TYPE_CHECKING:
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from ..transports import BaseTransport
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_LOGGER = logging.getLogger(__name__)
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def _mask_children(children: list[dict[str, Any]]) -> list[dict[str, Any]]:
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def mask_child(child: dict[str, Any], index: int) -> dict[str, Any]:
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result = {
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**child,
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"id": f"SCRUBBED_CHILD_DEVICE_ID_{index+1}",
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}
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# Will leave empty aliases as blank
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if child.get("alias"):
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result["alias"] = f"#MASKED_NAME# {index + 1}"
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return result
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return [mask_child(child, index) for index, child in enumerate(children)]
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REDACTORS: dict[str, Callable[[Any], Any] | None] = {
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"latitude": lambda x: 0,
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"longitude": lambda x: 0,
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"latitude_i": lambda x: 0,
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"longitude_i": lambda x: 0,
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"deviceId": lambda x: "REDACTED_" + x[9::],
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"children": _mask_children,
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"alias": lambda x: "#MASKED_NAME#" if x else "",
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"mac": mask_mac,
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"mic_mac": mask_mac,
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"ssid": lambda x: "#MASKED_SSID#" if x else "",
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"oemId": lambda x: "REDACTED_" + x[9::],
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"username": lambda _: "user@example.com", # cnCloud
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"hwId": lambda x: "REDACTED_" + x[9::],
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}
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class IotProtocol(BaseProtocol):
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"""Class for the legacy TPLink IOT KASA Protocol."""
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BACKOFF_SECONDS_AFTER_TIMEOUT = 1
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def __init__(
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self,
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*,
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transport: BaseTransport,
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) -> None:
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"""Create a protocol object."""
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super().__init__(transport=transport)
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self._query_lock = asyncio.Lock()
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self._redact_data = True
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async def query(self, request: str | dict, retry_count: int = 3) -> dict:
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"""Query the device retrying for retry_count on failure."""
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if isinstance(request, dict):
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request = json_dumps(request)
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assert isinstance(request, str) # noqa: S101
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async with self._query_lock:
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return await self._query(request, retry_count)
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async def _query(self, request: str, retry_count: int = 3) -> dict:
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for retry in range(retry_count + 1):
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try:
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return await self._execute_query(request, retry)
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except _ConnectionError as sdex:
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if retry >= retry_count:
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_LOGGER.debug("Giving up on %s after %s retries", self._host, retry)
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raise sdex
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continue
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except AuthenticationError as auex:
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await self._transport.reset()
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_LOGGER.debug(
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"Unable to authenticate with %s, not retrying", self._host
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)
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raise auex
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except _RetryableError as ex:
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await self._transport.reset()
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if retry >= retry_count:
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_LOGGER.debug("Giving up on %s after %s retries", self._host, retry)
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raise ex
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continue
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except TimeoutError as ex:
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await self._transport.reset()
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if retry >= retry_count:
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_LOGGER.debug("Giving up on %s after %s retries", self._host, retry)
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raise ex
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await asyncio.sleep(self.BACKOFF_SECONDS_AFTER_TIMEOUT)
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continue
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except KasaException as ex:
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await self._transport.reset()
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_LOGGER.debug(
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"Unable to query the device: %s, not retrying: %s",
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self._host,
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ex,
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)
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raise ex
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# make mypy happy, this should never be reached..
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raise KasaException("Query reached somehow to unreachable")
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async def _execute_query(self, request: str, retry_count: int) -> dict:
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debug_enabled = _LOGGER.isEnabledFor(logging.DEBUG)
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if debug_enabled:
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_LOGGER.debug(
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"%s >> %s",
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self._host,
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request,
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)
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resp = await self._transport.send(request)
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if debug_enabled:
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data = redact_data(resp, REDACTORS) if self._redact_data else resp
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_LOGGER.debug(
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"%s << %s",
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self._host,
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pf(data),
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)
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return resp
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async def close(self) -> None:
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"""Close the underlying transport."""
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await self._transport.close()
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class _deprecated_TPLinkSmartHomeProtocol(IotProtocol):
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def __init__(
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self,
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host: str | None = None,
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*,
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port: int | None = None,
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timeout: int | None = None,
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transport: BaseTransport | None = None,
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) -> None:
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"""Create a protocol object."""
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if not host and not transport:
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raise KasaException("host or transport must be supplied")
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if not transport:
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config = DeviceConfig(
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host=host, # type: ignore[arg-type]
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port_override=port,
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timeout=timeout or XorTransport.DEFAULT_TIMEOUT,
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)
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transport = XorTransport(config=config)
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super().__init__(transport=transport)
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@staticmethod
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def encrypt(request: str) -> bytes:
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"""Encrypt a request for a TP-Link Smart Home Device.
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:param request: plaintext request data
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:return: ciphertext to be send over wire, in bytes
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"""
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return XorEncryption.encrypt(request)
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@staticmethod
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def decrypt(ciphertext: bytes) -> str:
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"""Decrypt a response of a TP-Link Smart Home Device.
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:param ciphertext: encrypted response data
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:return: plaintext response
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"""
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return XorEncryption.decrypt(ciphertext)
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