mirror of
https://github.com/python-kasa/python-kasa.git
synced 2024-12-23 11:43:34 +00:00
478 lines
15 KiB
Python
478 lines
15 KiB
Python
import copy
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import logging
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from ..deviceconfig import DeviceConfig
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from ..iotprotocol import IotProtocol
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from ..protocol import BaseTransport
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_LOGGER = logging.getLogger(__name__)
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def get_realtime(obj, x, *args):
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return {
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"current": 0.268587,
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"voltage": 125.836131,
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"power": 33.495623,
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"total": 0.199000,
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}
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def get_monthstat(obj, x, *args):
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if x["year"] < 2016:
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return {"month_list": []}
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return {
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"month_list": [
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{"year": 2016, "month": 11, "energy": 1.089000},
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{"year": 2016, "month": 12, "energy": 1.582000},
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]
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}
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def get_daystat(obj, x, *args):
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if x["year"] < 2016:
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return {"day_list": []}
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return {
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"day_list": [
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{"year": 2016, "month": 11, "day": 24, "energy": 0.026000},
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{"year": 2016, "month": 11, "day": 25, "energy": 0.109000},
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]
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}
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emeter_support = {
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"get_realtime": get_realtime,
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"get_monthstat": get_monthstat,
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"get_daystat": get_daystat,
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}
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def get_realtime_units(obj, x, *args):
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return {"power_mw": 10800}
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def get_monthstat_units(obj, x, *args):
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if x["year"] < 2016:
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return {"month_list": []}
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return {
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"month_list": [
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{"year": 2016, "month": 11, "energy_wh": 32},
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{"year": 2016, "month": 12, "energy_wh": 16},
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]
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}
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def get_daystat_units(obj, x, *args):
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if x["year"] < 2016:
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return {"day_list": []}
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return {
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"day_list": [
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{"year": 2016, "month": 11, "day": 24, "energy_wh": 20},
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{"year": 2016, "month": 11, "day": 25, "energy_wh": 32},
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]
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}
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emeter_units_support = {
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"get_realtime": get_realtime_units,
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"get_monthstat": get_monthstat_units,
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"get_daystat": get_daystat_units,
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}
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emeter_commands = {
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"emeter": emeter_support,
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"smartlife.iot.common.emeter": emeter_units_support,
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}
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def error(msg="default msg"):
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return {"err_code": -1323, "msg": msg}
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def success(res):
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if res:
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res.update({"err_code": 0})
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else:
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res = {"err_code": 0}
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return res
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# plugs and bulbs use a different module for time information,
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# so we define the contents here to avoid repeating ourselves
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TIME_MODULE = {
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"get_time": {
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"year": 2017,
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"month": 1,
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"mday": 2,
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"hour": 3,
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"min": 4,
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"sec": 5,
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},
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"get_timezone": {
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"zone_str": "test",
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"dst_offset": -1,
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"index": 12,
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"tz_str": "test2",
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},
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}
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CLOUD_MODULE = {
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"get_info": {
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"username": "",
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"server": "devs.tplinkcloud.com",
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"binded": 0,
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"cld_connection": 0,
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"illegalType": -1,
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"stopConnect": -1,
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"tcspStatus": -1,
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"fwDlPage": "",
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"tcspInfo": "",
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"fwNotifyType": 0,
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}
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}
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AMBIENT_MODULE = {
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"get_current_brt": {"value": 26, "err_code": 0},
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"get_config": {
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"devs": [
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{
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"hw_id": 0,
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"enable": 0,
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"dark_index": 1,
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"min_adc": 0,
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"max_adc": 2450,
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"level_array": [
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{"name": "cloudy", "adc": 490, "value": 20},
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{"name": "overcast", "adc": 294, "value": 12},
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{"name": "dawn", "adc": 222, "value": 9},
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{"name": "twilight", "adc": 222, "value": 9},
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{"name": "total darkness", "adc": 111, "value": 4},
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{"name": "custom", "adc": 2400, "value": 97},
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],
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}
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],
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"ver": "1.0",
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"err_code": 0,
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},
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}
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MOTION_MODULE = {
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"get_config": {
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"enable": 0,
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"version": "1.0",
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"trigger_index": 2,
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"cold_time": 60000,
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"min_adc": 0,
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"max_adc": 4095,
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"array": [80, 50, 20, 0],
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"err_code": 0,
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}
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}
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class FakeIotProtocol(IotProtocol):
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def __init__(self, info, fixture_name=None):
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super().__init__(
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transport=FakeIotTransport(info, fixture_name),
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)
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async def query(self, request, retry_count: int = 3):
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"""Implement query here so tests can still patch IotProtocol.query."""
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resp_dict = await self._query(request, retry_count)
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return resp_dict
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class FakeIotTransport(BaseTransport):
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def __init__(self, info, fixture_name=None):
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super().__init__(config=DeviceConfig("127.0.0.123"))
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info = copy.deepcopy(info)
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self.discovery_data = info
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self.fixture_name = fixture_name
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self.writer = None
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self.reader = None
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proto = copy.deepcopy(FakeIotTransport.baseproto)
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for target in info:
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# print("target %s" % target)
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if target != "discovery_result":
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for cmd in info[target]:
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# print("initializing tgt %s cmd %s" % (target, cmd))
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proto[target][cmd] = info[target][cmd]
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# if we have emeter support, we need to add the missing pieces
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for module in ["emeter", "smartlife.iot.common.emeter"]:
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if (
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module in info
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and "err_code" in info[module]
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and info[module]["err_code"] != 0
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):
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proto[module] = info[module]
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else:
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for etype in ["get_realtime", "get_daystat", "get_monthstat"]:
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if (
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module in info and etype in info[module]
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): # if the fixture has the data, use it
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# print("got %s %s from fixture: %s" % (module, etype, info[module][etype]))
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proto[module][etype] = info[module][etype]
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else: # otherwise fall back to the static one
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dummy_data = emeter_commands[module][etype]
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# print("got %s %s from dummy: %s" % (module, etype, dummy_data))
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proto[module][etype] = dummy_data
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# print("initialized: %s" % proto[module])
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self.proto = proto
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@property
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def default_port(self) -> int:
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return 9999
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@property
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def credentials_hash(self) -> None:
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return None
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def set_alias(self, x, child_ids=None):
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if child_ids is None:
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child_ids = []
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_LOGGER.debug("Setting alias to %s, child_ids: %s", x["alias"], child_ids)
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if child_ids:
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for child in self.proto["system"]["get_sysinfo"]["children"]:
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if child["id"] in child_ids:
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child["alias"] = x["alias"]
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else:
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self.proto["system"]["get_sysinfo"]["alias"] = x["alias"]
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def set_relay_state(self, x, child_ids=None):
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if child_ids is None:
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child_ids = []
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_LOGGER.debug("Setting relay state to %s", x["state"])
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if not child_ids and "children" in self.proto["system"]["get_sysinfo"]:
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for child in self.proto["system"]["get_sysinfo"]["children"]:
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child_ids.append(child["id"])
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_LOGGER.info("child_ids: %s", child_ids)
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if child_ids:
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for child in self.proto["system"]["get_sysinfo"]["children"]:
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if child["id"] in child_ids:
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_LOGGER.info("Found %s, turning to %s", child, x["state"])
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child["state"] = x["state"]
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else:
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self.proto["system"]["get_sysinfo"]["relay_state"] = x["state"]
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def set_led_off(self, x, *args):
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_LOGGER.debug("Setting led off to %s", x)
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self.proto["system"]["get_sysinfo"]["led_off"] = x["off"]
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def set_mac(self, x, *args):
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_LOGGER.debug("Setting mac to %s", x)
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self.proto["system"]["get_sysinfo"]["mac"] = x["mac"]
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def set_hs220_brightness(self, x, *args):
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_LOGGER.debug("Setting brightness to %s", x)
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self.proto["system"]["get_sysinfo"]["brightness"] = x["brightness"]
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def set_hs220_dimmer_transition(self, x, *args):
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_LOGGER.debug("Setting dimmer transition to %s", x)
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brightness = x["brightness"]
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if brightness == 0:
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self.proto["system"]["get_sysinfo"]["relay_state"] = 0
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else:
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self.proto["system"]["get_sysinfo"]["relay_state"] = 1
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self.proto["system"]["get_sysinfo"]["brightness"] = x["brightness"]
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def set_lighting_effect(self, effect, *args):
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_LOGGER.debug("Setting light effect to %s", effect)
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self.proto["system"]["get_sysinfo"]["lighting_effect_state"] = dict(effect)
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def transition_light_state(self, state_changes, *args):
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# Setting the light state on a device will turn off any active lighting effects.
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# Unless it's just the brightness in which case it will update the brightness for
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# the lighting effect
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if lighting_effect_state := self.proto["system"]["get_sysinfo"].get(
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"lighting_effect_state"
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):
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if (
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"hue" in state_changes
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or "saturation" in state_changes
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or "color_temp" in state_changes
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):
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lighting_effect_state["enable"] = 0
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elif (
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lighting_effect_state["enable"] == 1
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and state_changes.get("on_off") != 0
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and (brightness := state_changes.get("brightness"))
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):
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lighting_effect_state["brightness"] = brightness
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return
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_LOGGER.debug("Setting light state to %s", state_changes)
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light_state = self.proto["system"]["get_sysinfo"]["light_state"]
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_LOGGER.debug("Current light state: %s", light_state)
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new_state = light_state
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# turn on requested, if we were off, use the dft_on_state as a base
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if state_changes["on_off"] == 1 and not light_state["on_off"]:
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_LOGGER.debug("Bulb was off, using dft_on_state")
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new_state = light_state["dft_on_state"]
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# override the existing settings
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new_state.update(state_changes)
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if (
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not state_changes["on_off"] and "dft_on_state" not in light_state
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): # if not already off, pack the data inside dft_on_state
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_LOGGER.debug(
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"Bulb was on and turn_off was requested, saving to dft_on_state"
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)
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new_state = {"dft_on_state": light_state, "on_off": 0}
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_LOGGER.debug("New light state: %s", new_state)
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self.proto["system"]["get_sysinfo"]["light_state"] = new_state
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def set_preferred_state(self, new_state, *args):
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"""Implement set_preferred_state."""
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self.proto["system"]["get_sysinfo"]["preferred_state"][new_state["index"]] = (
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new_state
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)
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def light_state(self, x, *args):
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light_state = self.proto["system"]["get_sysinfo"]["light_state"]
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# Our tests have light state off, so we simply return the dft_on_state when device is on.
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_LOGGER.debug("reporting light state: %s", light_state)
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# TODO: hack to go around KL430 fixture differences
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if light_state["on_off"] and "dft_on_state" in light_state:
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return light_state["dft_on_state"]
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else:
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return light_state
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def set_time(self, new_state: dict, *args):
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"""Implement set_time."""
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mods = [
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v
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for k, v in self.proto.items()
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if k in {"time", "smartlife.iot.common.timesetting"}
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]
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index = new_state.pop("index", None)
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for mod in mods:
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mod["get_time"] = new_state
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if index is not None:
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mod["get_timezone"]["index"] = index
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baseproto = {
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"system": {
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"set_relay_state": set_relay_state,
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"set_dev_alias": set_alias,
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"set_led_off": set_led_off,
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"get_dev_icon": {"icon": None, "hash": None},
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"set_mac_addr": set_mac,
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"get_sysinfo": None,
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},
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"emeter": {
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"get_realtime": None,
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"get_daystat": None,
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"get_monthstat": None,
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"erase_emeter_state": None,
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},
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"smartlife.iot.common.emeter": {
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"get_realtime": None,
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"get_daystat": None,
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"get_monthstat": None,
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"erase_emeter_state": None,
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},
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"smartlife.iot.smartbulb.lightingservice": {
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"get_light_state": light_state,
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"transition_light_state": transition_light_state,
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"set_preferred_state": set_preferred_state,
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},
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"smartlife.iot.lighting_effect": {
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"set_lighting_effect": set_lighting_effect,
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},
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# lightstrip follows the same payloads but uses different module & method
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"smartlife.iot.lightStrip": {
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"set_light_state": transition_light_state,
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"get_light_state": light_state,
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"set_preferred_state": set_preferred_state,
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},
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"smartlife.iot.common.system": {
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"set_dev_alias": set_alias,
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},
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"time": {**TIME_MODULE, "set_time": set_time, "set_timezone": set_time},
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"smartlife.iot.common.timesetting": {
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**TIME_MODULE,
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"set_time": set_time,
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"set_timezone": set_time,
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},
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# HS220 brightness, different setter and getter
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"smartlife.iot.dimmer": {
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"set_brightness": set_hs220_brightness,
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"set_dimmer_transition": set_hs220_dimmer_transition,
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},
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"smartlife.iot.LAS": AMBIENT_MODULE,
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"smartlife.iot.PIR": MOTION_MODULE,
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"cnCloud": CLOUD_MODULE,
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"smartlife.iot.common.cloud": CLOUD_MODULE,
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}
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async def send(self, request, port=9999):
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proto = self.proto
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# collect child ids from context
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try:
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child_ids = request["context"]["child_ids"]
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request.pop("context", None)
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except KeyError:
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child_ids = []
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def get_response_for_module(target):
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if target not in proto:
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return error(msg="target not found")
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if "err_code" in proto[target] and proto[target]["err_code"] != 0:
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return {target: proto[target]}
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def get_response_for_command(cmd):
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if cmd not in proto[target]:
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return error(msg=f"command {cmd} not found")
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params = request[target][cmd]
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_LOGGER.debug(
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"Going to execute %s.%s (params: %s).. ", target, cmd, params
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)
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if callable(proto[target][cmd]):
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res = proto[target][cmd](self, params, child_ids)
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_LOGGER.debug("[callable] %s.%s: %s", target, cmd, res)
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return success(res)
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elif isinstance(proto[target][cmd], dict):
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res = proto[target][cmd]
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_LOGGER.debug("[static] %s.%s: %s", target, cmd, res)
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return success(res)
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else:
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raise NotImplementedError(f"target {target} cmd {cmd}")
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from collections import defaultdict
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cmd_responses = defaultdict(dict)
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for cmd in request[target]:
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cmd_responses[target][cmd] = get_response_for_command(cmd)
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return cmd_responses
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response = {}
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for target in request:
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response.update(get_response_for_module(target))
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return copy.deepcopy(response)
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async def close(self) -> None:
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pass
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async def reset(self) -> None:
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pass
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