Files
ha_ecovacs_bumper/custom_components/ecovacs/sucksbumper.py
T
bittles 724e167114 change ping schedule from 30s to 300s
decrease calls to robot, see if this is contributing to battery use
2023-01-02 22:56:34 -05:00

1320 lines
55 KiB
Python

import hashlib
import logging
import time
from base64 import b64decode, b64encode
from collections import OrderedDict
from threading import Event
import threading
import sched
import random
import ssl
import requests
import stringcase
import os
from sleekxmppfs import ClientXMPP, Callback, MatchXPath
from sleekxmppfs.xmlstream import ET
from sleekxmppfs.exceptions import XMPPError
from paho.mqtt.client import Client as ClientMQTT
from paho.mqtt import publish as MQTTPublish
from paho.mqtt import subscribe as MQTTSubscribe
_LOGGER = logging.getLogger(__name__)
# These consts define all of the vocabulary used by this library when presenting various states and components.
# Applications implementing this library should import these rather than hard-code the strings, for future-proofing.
CLEAN_MODE_AUTO = 'auto'
CLEAN_MODE_EDGE = 'edge'
CLEAN_MODE_SPOT = 'spot'
CLEAN_MODE_SPOT_AREA = 'spot_area'
CLEAN_MODE_SINGLE_ROOM = 'single_room'
CLEAN_MODE_STOP = 'stop'
CLEAN_ACTION_START = 'start'
CLEAN_ACTION_PAUSE = 'pause'
CLEAN_ACTION_RESUME = 'resume'
CLEAN_ACTION_STOP = 'stop'
FAN_SPEED_NORMAL = 'normal'
FAN_SPEED_HIGH = 'high'
CHARGE_MODE_RETURN = 'return'
CHARGE_MODE_RETURNING = 'returning'
CHARGE_MODE_CHARGING = 'charging'
CHARGE_MODE_IDLE = 'idle'
COMPONENT_SIDE_BRUSH = 'side_brush'
COMPONENT_MAIN_BRUSH = 'main_brush'
COMPONENT_FILTER = 'filter'
VACUUM_STATUS_OFFLINE = 'offline'
CLEANING_STATES = {CLEAN_MODE_AUTO, CLEAN_MODE_EDGE, CLEAN_MODE_SPOT, CLEAN_MODE_SPOT_AREA, CLEAN_MODE_SINGLE_ROOM}
CHARGING_STATES = {CHARGE_MODE_CHARGING}
# These dictionaries convert to and from Sucks's consts (which closely match what the UI and manuals use)
# to and from what the Ecovacs API uses (which are sometimes very oddly named and have random capitalization.)
CLEAN_MODE_TO_ECOVACS = {
CLEAN_MODE_AUTO: 'auto',
CLEAN_MODE_EDGE: 'border',
CLEAN_MODE_SPOT: 'spot',
CLEAN_MODE_SPOT_AREA: 'SpotArea',
CLEAN_MODE_SINGLE_ROOM: 'singleroom',
CLEAN_MODE_STOP: 'stop'
}
CLEAN_ACTION_TO_ECOVACS = {
CLEAN_ACTION_START: 's',
CLEAN_ACTION_PAUSE: 'p',
CLEAN_ACTION_RESUME: 'r',
CLEAN_ACTION_STOP: 'h',
}
CLEAN_ACTION_FROM_ECOVACS = {
's': CLEAN_ACTION_START,
'p': CLEAN_ACTION_PAUSE,
'r': CLEAN_ACTION_RESUME,
'h': CLEAN_ACTION_STOP,
}
CLEAN_MODE_FROM_ECOVACS = {
'auto': CLEAN_MODE_AUTO,
'border': CLEAN_MODE_EDGE,
'spot': CLEAN_MODE_SPOT,
'spot_area': CLEAN_MODE_SPOT_AREA,
'SpotArea': CLEAN_MODE_SPOT_AREA,
'singleroom': CLEAN_MODE_SINGLE_ROOM,
'stop': CLEAN_MODE_STOP,
'going': CHARGE_MODE_RETURNING,
}
FAN_SPEED_TO_ECOVACS = {
FAN_SPEED_NORMAL: 'standard',
FAN_SPEED_HIGH: 'strong'
}
FAN_SPEED_FROM_ECOVACS = {
'standard': FAN_SPEED_NORMAL,
'strong': FAN_SPEED_HIGH,
}
CHARGE_MODE_TO_ECOVACS = {
CHARGE_MODE_RETURN: 'go',
CHARGE_MODE_RETURNING: 'Going',
CHARGE_MODE_CHARGING: 'SlotCharging',
CHARGE_MODE_IDLE: 'Idle',
}
CHARGE_MODE_FROM_ECOVACS = {
'going': CHARGE_MODE_RETURNING,
# 'Going': CHARGE_MODE_RETURNING,
'slot_charging': CHARGE_MODE_CHARGING,
# 'SlotCharging': CHARGE_MODE_CHARGING,
'idle': CHARGE_MODE_IDLE,
# 'Idle': CHARGE_MODE_IDLE,
}
COMPONENT_TO_ECOVACS = {
COMPONENT_MAIN_BRUSH: 'Brush',
COMPONENT_SIDE_BRUSH: 'SideBrush',
COMPONENT_FILTER: 'DustCaseHeap',
}
COMPONENT_FROM_ECOVACS = {
'brush': COMPONENT_MAIN_BRUSH,
# 'Brush': COMPONENT_MAIN_BRUSH,
'side_brush': COMPONENT_SIDE_BRUSH,
# 'SideBrush': COMPONENT_SIDE_BRUSH,
'dust_case_heap': COMPONENT_FILTER,
# 'DustCaseHeap': COMPONENT_FILTER,
}
def str_to_bool_or_cert(s):
if s == 'True' or s == True:
return True
elif s == 'False' or s == False:
return False
else:
if not s == None:
if os.path.exists(s): # User could provide a path to a CA Cert as well, which is useful for Bumper
if os.path.isfile(s):
return s
else:
raise ValueError("Certificate path provided is not a file - {}".format(s))
raise ValueError("Cannot covert {} to a bool or certificate path".format(s))
class EcoVacsAPI:
CLIENT_KEY = "eJUWrzRv34qFSaYk"
SECRET = "Cyu5jcR4zyK6QEPn1hdIGXB5QIDAQABMA0GC"
PUBLIC_KEY = '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'
MAIN_URL_FORMAT = 'https://eco-{country}-api.ecovacs.com/v1/private/{country}/{lang}/{deviceId}/{appCode}/{appVersion}/{channel}/{deviceType}'
USER_URL_FORMAT = 'https://users-{continent}.ecouser.net:8000/user.do'
PORTAL_URL_FORMAT = 'https://portal-{continent}.ecouser.net/api'
USERSAPI = 'users/user.do'
IOTDEVMANAGERAPI = 'iot/devmanager.do' # IOT Device Manager - This provides control of "IOT" products via RestAPI, some bots use this instead of XMPP
PRODUCTAPI = 'pim/product' # Leaving this open, the only endpoint known currently is "Product IOT Map" - pim/product/getProductIotMap - This provides a list of "IOT" products. Not sure what this provides the app.
REALM = 'ecouser.net'
def __init__(self, device_id, account_id, password_hash, country, continent, verify_ssl=True):
self.meta = {
'country': country,
'lang': 'en',
'deviceId': device_id,
'appCode': 'i_eco_e',
#'appCode': 'i_eco_a' - iphone
'appVersion': '1.3.5',
#'appVersion': '1.4.6' - iphone
'channel': 'c_googleplay',
#'channel': 'c_iphone', - iphone
'deviceType': '1'
#'deviceType': '2' - iphone
}
self.verify_ssl = str_to_bool_or_cert(verify_ssl)
_LOGGER.debug("Setting up EcoVacsAPI")
self.resource = device_id[0:8]
self.country = country
self.continent = continent
login_info = self.__call_main_api('user/login',
('account', self.encrypt(account_id)),
('password', self.encrypt(password_hash)))
self.uid = login_info['uid']
self.login_access_token = login_info['accessToken']
self.auth_code = self.__call_main_api('user/getAuthCode',
('uid', self.uid),
('accessToken', self.login_access_token))['authCode']
login_response = self.__call_login_by_it_token()
self.user_access_token = login_response['token']
if login_response['userId'] != self.uid:
logging.debug("Switching to shorter UID " + login_response['userId'])
self.uid = login_response['userId']
logging.debug("EcoVacsAPI connection complete")
def __sign(self, params):
result = params.copy()
result['authTimespan'] = int(time.time() * 1000)
result['authTimeZone'] = 'GMT-8'
sign_on = self.meta.copy()
sign_on.update(result)
sign_on_text = EcoVacsAPI.CLIENT_KEY + ''.join(
[k + '=' + str(sign_on[k]) for k in sorted(sign_on.keys())]) + EcoVacsAPI.SECRET
result['authAppkey'] = EcoVacsAPI.CLIENT_KEY
result['authSign'] = self.md5(sign_on_text)
return result
def __call_main_api(self, function, *args):
_LOGGER.debug("calling main api {} with {}".format(function, args))
params = OrderedDict(args)
params['requestId'] = self.md5(time.time())
url = (EcoVacsAPI.MAIN_URL_FORMAT + "/" + function).format(**self.meta)
api_response = requests.get(url, self.__sign(params), verify=self.verify_ssl)
json = api_response.json()
_LOGGER.debug("got {}".format(json))
if json['code'] == '0000':
return json['data']
elif json['code'] == '1005':
_LOGGER.warning("incorrect email or password")
raise ValueError("incorrect email or password")
else:
_LOGGER.error("call to {} failed with {}".format(function, json))
raise RuntimeError("failure code {} ({}) for call {} and parameters {}".format(
json['code'], json['msg'], function, args))
def __call_user_api(self, function, args):
_LOGGER.debug("calling user api {} with {}".format(function, args))
params = {'todo': function}
params.update(args)
response = requests.post(EcoVacsAPI.USER_URL_FORMAT.format(continent=self.continent), json=params, verify=self.verify_ssl)
json = response.json()
_LOGGER.debug("got {}".format(json))
if json['result'] == 'ok':
return json
else:
_LOGGER.error("call to {} failed with {}".format(function, json))
raise RuntimeError(
"failure {} ({}) for call {} and parameters {}".format(json['error'], json['errno'], function, params))
def __call_portal_api(self, api, function, args, verify_ssl=True, **kwargs):
if api == self.USERSAPI:
params = {'todo': function}
params.update(args)
else:
params = {}
params.update(args)
_LOGGER.debug("calling portal api {} function {} with {}".format(api, function, params))
continent = self.continent
if 'continent' in kwargs:
continent = kwargs.get('continent')
url = (EcoVacsAPI.PORTAL_URL_FORMAT + "/" + api).format(continent=continent, **self.meta)
response = requests.post(url, json=params, verify=verify_ssl)
json = response.json()
_LOGGER.debug("got {}".format(json))
if api == self.USERSAPI:
if json['result'] == 'ok':
return json
elif json['result'] == 'fail':
if json['error'] == 'set token error.': # If it is a set token error try again
if not 'set_token' in kwargs:
_LOGGER.debug("loginByItToken set token error, trying again (2/3)")
return self.__call_portal_api(self.USERSAPI, function, args, verify_ssl=verify_ssl, set_token=1)
elif kwargs.get('set_token') == 1:
_LOGGER.debug("loginByItToken set token error, trying again with ww (3/3)")
return self.__call_portal_api(self.USERSAPI, function, args, verify_ssl=verify_ssl, set_token=2, continent="ww")
else:
_LOGGER.debug("loginByItToken set token error, failed after 3 attempts")
if api.startswith(self.PRODUCTAPI):
if json['code'] == 0:
return json
else:
_LOGGER.error("call to {} failed with {}".format(function, json))
raise RuntimeError(
"failure {} ({}) for call {} and parameters {}".format(json['error'], json['errno'], function, params))
def __call_login_by_it_token(self):
return self.__call_portal_api(self.USERSAPI,'loginByItToken',
{'country': self.meta['country'].upper(),
'resource': self.resource,
'realm': EcoVacsAPI.REALM,
'userId': self.uid,
'token': self.auth_code}
, verify_ssl=self.verify_ssl)
def getdevices(self):
return self.__call_portal_api(self.USERSAPI,'GetDeviceList', {
'userid': self.uid,
'auth': {
'with': 'users',
'userid': self.uid,
'realm': EcoVacsAPI.REALM,
'token': self.user_access_token,
'resource': self.resource
}
}, verify_ssl=self.verify_ssl)['devices']
def getiotProducts(self):
return self.__call_portal_api(self.PRODUCTAPI + '/getProductIotMap','', {
'channel': '',
'auth': {
'with': 'users',
'userid': self.uid,
'realm': EcoVacsAPI.REALM,
'token': self.user_access_token,
'resource': self.resource
}
}, verify_ssl=self.verify_ssl)['data']
def SetIOTDevices(self, devices, iotproducts):
#Originally added for D900, and not actively used in code now - Not sure what the app checks the items in this list for
for device in devices: #Check if the device is part of iotProducts
device['iot_product'] = False
for iotProduct in iotproducts:
if device['class'] in iotProduct['classid']:
device['iot_product'] = True
return devices
def SetIOTMQDevices(self, devices):
#Added for devices that utilize MQTT instead of XMPP for communication
for device in devices:
device['iotmq'] = False
if device['company'] == 'eco-ng': #Check if the device is part of the list
device['iotmq'] = True
return devices
def devices(self):
return self.SetIOTMQDevices(self.getdevices())
@staticmethod
def md5(text):
return hashlib.md5(bytes(str(text), 'utf8')).hexdigest()
@staticmethod
def encrypt(text):
from Crypto.PublicKey import RSA
from Crypto.Cipher import PKCS1_v1_5
key = RSA.import_key(b64decode(EcoVacsAPI.PUBLIC_KEY))
cipher = PKCS1_v1_5.new(key)
result = cipher.encrypt(bytes(text, 'utf8'))
return str(b64encode(result), 'utf8')
class EventEmitter(object):
"""A very simple event emitting system."""
def __init__(self):
self._subscribers = []
def subscribe(self, callback):
listener = EventListener(self, callback)
self._subscribers.append(listener)
return listener
def unsubscribe(self, listener):
self._subscribers.remove(listener)
def notify(self, event):
for subscriber in self._subscribers:
subscriber.callback(event)
class EventListener(object):
"""Object that allows event consumers to easily unsubscribe from events."""
def __init__(self, emitter, callback):
self._emitter = emitter
self.callback = callback
def unsubscribe(self):
self._emitter.unsubscribe(self)
class VacBot():
# switched verify and monitor just to be consistent
def __init__(self, user, domain, resource, secret, vacuum, continent, server_address=None, verify_ssl=True, monitor=False):
self.vacuum = vacuum
self.server_address = server_address
# If True, the VacBot object will handle keeping track of all statuses,
# including the initial request for statuses, and new requests after the
# VacBot returns from being offline. It will also cause it to regularly
# request component lifespans
self._monitor = monitor
self._failed_pings = 0
# These three are representations of the vacuum state as reported by the API
self.clean_status = None
self.charge_status = None
self.battery_status = None
# This is an aggregate state managed by the sucks library, combining the clean and charge events to a single state
self.vacuum_status = None
self.fan_speed = None
# Populated by component Lifespan reports
self.components = {}
self.statusEvents = EventEmitter()
self.batteryEvents = EventEmitter()
self.lifespanEvents = EventEmitter()
self.errorEvents = EventEmitter()
#Set none for clients to start
self.xmpp = None
self.iotmq = None
if not vacuum['iotmq']:
# _LOGGER.info("connecting to xmpp******************")
# if server is defined then use bmartins init example for using sucks library in his docs; couldnt get this to work in hass with code he had here though, maybe not referencing everything right in component init
#if self.server_address is not None:
# _LOGGER.info("connecting to bumper xmpp******************")
# vacuum = {"did": "none", "class": "none"}
# # super().__init__("sucks", "ecouser.net", "", "", vacuum, "")
# self.xmpp = EcoVacsXMPP("sucks", "ecouser.net", "", "", "", vacuum, server_address)
# self.xmpp.subscribe_to_ctls(self._handle_ctl)
## should work with ecovacs servers but 1) havent tested with my changes and 2) havent tested with bmartins changes
#else:
# _LOGGER.info("connecting to NOT bumper xmpp******************")
self.xmpp = EcoVacsXMPP(user, domain, resource, secret, continent, vacuum, server_address)
#Uncomment line to allow unencrypted plain auth
#self.xmpp['feature_mechanisms'].unencrypted_plain = True
self.xmpp.subscribe_to_ctls(self._handle_ctl)
else:
# _LOGGER.info("connecting to mqtt******************")
#if self.server_address is not None:
# _LOGGER.info("connecting to bumper mqtt******************")
# vacuum = {"did": "none", "class": "none"}
# self.iotmq = EcoVacsIOTMQ("sucks", "ecouser.net", "", "", "", vacuum, server_address, verify_ssl=verify_ssl)
# self.iotmq.subscribe_to_ctls(self._handle_ctl)
#else:
# _LOGGER.info("connecting to NOT bumper mqtt******************")
self.iotmq = EcoVacsIOTMQ(user, domain, resource, secret, continent, vacuum, server_address, verify_ssl=verify_ssl)
self.iotmq.subscribe_to_ctls(self._handle_ctl)
#The app still connects to XMPP as well, but only issues ping commands.
#Everything works without XMPP, so leaving the below commented out.
#self.xmpp = EcoVacsXMPP(user, domain, resource, secret, continent, vacuum, server_address)
#Uncomment line to allow unencrypted plain auth
#self.xmpp['feature_mechanisms'].unencrypted_plain = True
#self.xmpp.subscribe_to_ctls(self._handle_ctl)
def connect_and_wait_until_ready(self):
# use bmartins exmaple if defining our own server, couldn't get this to work without defining, probably xmpp port but idk
# if self.server_address:
# _LOGGER.info("connecting to bumper ******************")
## self.xmpp.connect(self.server_address)
## self.xmpp.process()
# if not self.vacuum['iotmq']:
# _LOGGER.info("connecting to xmpp server for bumper ******************")
# self.xmpp.connect_and_wait_until_ready()
# self.xmpp.schedule('Ping', 300, lambda: self.send_ping(), repeat=True)
# else:
# _LOGGER.info("connecting to mqtt server for bumper ******************")
# self.iotmq.connect_and_wait_until_ready()
# self.iotmq.schedule(30, self.send_ping)
# # keep rest of bmartins fork intact
# else:
# _LOGGER.info("connecting to NOT bumper ******************")
if not self.vacuum['iotmq']:
# _LOGGER.info("connecting to NOT bumper, xmpp server ******************")
self.xmpp.connect_and_wait_until_ready()
self.xmpp.schedule('Ping', 300, lambda: self.send_ping(), repeat=True)
else:
# _LOGGER.info("connecting to NOT bumper, mqtt server ******************")
self.iotmq.connect_and_wait_until_ready()
self.iotmq.schedule(30, self.send_ping)
#self.xmpp.connect_and_wait_until_ready() #Leaving in case xmpp is given to iotmq in the future
if self._monitor:
# Do a first ping, which will also fetch initial statuses if the ping succeeds
self.send_ping()
if not self.vacuum['iotmq']:
self.xmpp.schedule('Components', 3600, lambda: self.refresh_components(), repeat=True)
else:
self.iotmq.schedule(3600,self.refresh_components)
def _handle_ctl(self, ctl):
# _LOGGER.debug("super handle_ctl called with ctl:")
# _LOGGER.debug(ctl)
method = '_handle_' + ctl['event']
# _LOGGER.debug("method assigned:")
# _LOGGER.debug(method)
if hasattr(self, method):
getattr(self, method)(ctl)
def _handle_error(self, event):
if 'error' in event:
error = event['error']
elif 'errs' in event:
error = event['errs']
if not error == '':
self.errorEvents.notify(error)
_LOGGER.debug("*** error = " + error)
def _handle_life_span(self, event):
# _LOGGER.debug("_handle_life_span called, event is: ")
# _LOGGER.debug(event)
# _LOGGER.debug("event shown now continue with handle life span")
type = event['type']
# _LOGGER.debug("type in handle life span: ")
# _LOGGER.debug(type)
# _LOGGER.debug("type shown now continue with handle life span")
try:
type = COMPONENT_FROM_ECOVACS[type]
except KeyError:
_LOGGER.warning("Unknown component type: '" + type + "'")
if 'val' in event:
lifespan = int(event['val']) / 100
_LOGGER.debug("**********Component " + type + " has lifespan of " + str(lifespan) + ".")
else:
lifespan = int(event['left']) / 60 #This works for a D901
self.components[type] = lifespan
lifespan_event = {'type': type, 'lifespan': lifespan}
self.lifespanEvents.notify(lifespan_event)
_LOGGER.debug("*** life_span " + type + " = " + str(lifespan))
def _handle_clean_report(self, event):
type = event['type']
try:
type = CLEAN_MODE_FROM_ECOVACS[type]
if self.vacuum['iotmq']: #Was able to parse additional status from the IOTMQ, may apply to XMPP too
statustype = event['st']
statustype = CLEAN_ACTION_FROM_ECOVACS[statustype]
if statustype == CLEAN_ACTION_STOP or statustype == CLEAN_ACTION_PAUSE:
type = statustype
except KeyError:
_LOGGER.warning("Unknown cleaning status '" + type + "'")
self.clean_status = type
self.vacuum_status = type
fan = event.get('speed', None)
if fan is not None:
try:
fan = FAN_SPEED_FROM_ECOVACS[fan]
except KeyError:
_LOGGER.warning("Unknown fan speed: '" + fan + "'")
self.fan_speed = fan
self.statusEvents.notify(self.vacuum_status)
if self.fan_speed:
_LOGGER.debug("*** clean_status = " + self.clean_status + " fan_speed = " + self.fan_speed)
else:
_LOGGER.debug("*** clean_status = " + self.clean_status + " fan_speed = None")
def _handle_battery_info(self, iq):
try:
self.battery_status = float(iq['power']) / 100
except ValueError:
_LOGGER.warning("couldn't parse battery status " + ET.tostring(iq))
else:
self.batteryEvents.notify(self.battery_status)
_LOGGER.debug("*** battery_status = {:.0%}".format(self.battery_status))
def _handle_charge_state(self, event):
if 'type' in event:
status = event['type']
elif 'errno' in event: #Handle error
if event['ret'] == 'fail' and event['errno'] == '8': #Already charging
status = 'slot_charging'
elif event['ret'] == 'fail' and event['errno'] == '5': #Busy with another command
status = 'idle'
elif event['ret'] == 'fail' and event['errno'] == '3': #Bot in stuck state, example dust bin out
status = 'idle'
else:
status = 'idle' #Fall back to Idle status
_LOGGER.error("Unknown charging status '" + event['errno'] + "'") #Log this so we can identify more errors
try:
status = CHARGE_MODE_FROM_ECOVACS[status]
except KeyError:
_LOGGER.warning("Unknown charging status '" + status + "'")
self.charge_status = status
if status != 'idle' or self.vacuum_status == 'charging':
# We have to ignore the idle messages, because all it means is that it's not
# currently charging, in which case the clean_status is a better indicator
# of what the vacuum is currently up to.
self.vacuum_status = status
self.statusEvents.notify(self.vacuum_status)
_LOGGER.debug("*** charge_status = " + self.charge_status)
def _vacuum_address(self):
if not self.vacuum['iotmq']:
return self.vacuum['did'] + '@' + self.vacuum['class'] + '.ecorobot.net/atom'
else:
return self.vacuum['did'] #IOTMQ only uses the did
@property
def is_charging(self) -> bool:
return self.vacuum_status in CHARGING_STATES
@property
def is_cleaning(self) -> bool:
return self.vacuum_status in CLEANING_STATES
def send_ping(self):
try:
if not self.vacuum['iotmq']:
self.xmpp.send_ping(self._vacuum_address())
elif self.vacuum['iotmq']:
if not self.iotmq.send_ping():
raise RuntimeError()
except XMPPError as err:
_LOGGER.warning("Ping did not reach VacBot. Will retry.")
_LOGGER.debug("*** Error type: " + err.etype)
_LOGGER.debug("*** Error condition: " + err.condition)
self._failed_pings += 1
if self._failed_pings >= 4:
self.vacuum_status = 'offline'
self.statusEvents.notify(self.vacuum_status)
except RuntimeError as err:
_LOGGER.warning("Ping did not reach VacBot. Will retry.")
self._failed_pings += 1
if self._failed_pings >= 4:
self.vacuum_status = 'offline'
self.statusEvents.notify(self.vacuum_status)
else:
self._failed_pings = 0
if self._monitor:
# If we don't yet have a vacuum status, request initial statuses again now that the ping succeeded
if self.vacuum_status == 'offline' or self.vacuum_status is None:
self.request_all_statuses()
else:
# If we're not auto-monitoring the status, then just reset the status to None, which indicates unknown
if self.vacuum_status == 'offline':
self.vacuum_status = None
self.statusEvents.notify(self.vacuum_status)
def refresh_components(self):
try:
self.run(GetLifeSpan('main_brush'))
self.run(GetLifeSpan('side_brush'))
self.run(GetLifeSpan('filter'))
except XMPPError as err:
_LOGGER.warning("Component refresh requests failed to reach VacBot. Will try again later.")
_LOGGER.debug("*** Error type: " + err.etype)
_LOGGER.debug("*** Error condition: " + err.condition)
def refresh_statuses(self):
try:
self.run(GetCleanState())
self.run(GetChargeState())
self.run(GetBatteryState())
except XMPPError as err:
_LOGGER.warning("Initial status requests failed to reach VacBot. Will try again on next ping.")
_LOGGER.debug("*** Error type: " + err.etype)
_LOGGER.debug("*** Error condition: " + err.condition)
def request_all_statuses(self):
self.refresh_statuses()
self.refresh_components()
def send_command(self, action):
if not self.vacuum['iotmq']:
self.xmpp.send_command(action.to_xml(), self._vacuum_address())
else:
#IOTMQ issues commands via RestAPI, and listens on MQTT for status updates
self.iotmq.send_command(action, self._vacuum_address()) #IOTMQ devices need the full action for additional parsing
def run(self, action):
self.send_command(action)
def disconnect(self, wait=False):
if not self.vacuum['iotmq']:
self.xmpp.disconnect(wait=wait)
else:
self.iotmq._disconnect()
#self.xmpp.disconnect(wait=wait) #Leaving in case xmpp is added to iotmq in the future
#This is used by EcoVacsIOTMQ and EcoVacsXMPP for _ctl_to_dict
def RepresentsInt(stringvar):
try:
int(stringvar)
return True
except ValueError:
return False
class EcoVacsIOTMQ(ClientMQTT):
def __init__(self, user, domain, resource, secret, continent, vacuum, server_address=None, verify_ssl=True):
ClientMQTT.__init__(self)
self.ctl_subscribers = []
self.user = user
self.domain = str(domain).split(".")[0] #MQTT is using domain without tld extension
self.resource = resource
self.secret = secret
self.continent = continent
self.vacuum = vacuum
self.scheduler = sched.scheduler(time.time, time.sleep)
self.scheduler_thread = threading.Thread(target=self.scheduler.run, daemon=True, name="mqtt_schedule_thread")
self.verify_ssl = str_to_bool_or_cert(verify_ssl)
if server_address is None:
self.hostname = ('mq-{}.ecouser.net'.format(self.continent))
self.port = 8883
else:
saddress = server_address.split(":")
if len(saddress) > 1:
self.hostname = saddress[0]
if RepresentsInt(saddress[1]):
self.port = int(saddress[1])
else:
self.port = 8883
self._client_id = self.user + '@' + self.domain.split(".")[0] + '/' + self.resource
self.username_pw_set(self.user + '@' + self.domain, secret)
self.ready_flag = Event()
def connect_and_wait_until_ready(self):
#self._on_log = self.on_log #This provides more logging than needed, even for debug
self._on_message = self._handle_ctl_mqtt
self._on_connect = self.on_connect
#TODO: This is pretty insecure and accepts any cert, maybe actually check?
ssl_ctx = ssl.create_default_context()
ssl_ctx.check_hostname = False
ssl_ctx.verify_mode = ssl.CERT_NONE
self.tls_set_context(ssl_ctx)
self.tls_insecure_set(True)
self.connect(self.hostname, self.port)
self.loop_start()
self.wait_until_ready()
def subscribe_to_ctls(self, function):
self.ctl_subscribers.append(function)
def _disconnect(self):
self.disconnect() #disconnect mqtt connection
self.scheduler.empty() #Clear schedule queue
def _run_scheduled_func(self, timer_seconds, timer_function):
timer_function()
self.schedule(timer_seconds, timer_function)
def schedule(self, timer_seconds, timer_function):
self.scheduler.enter(timer_seconds, 1, self._run_scheduled_func,(timer_seconds, timer_function))
if not self.scheduler_thread.isAlive():
self.scheduler_thread.start()
def wait_until_ready(self):
self.ready_flag.wait()
def on_connect(self, client, userdata, flags, rc):
if rc != 0:
_LOGGER.error("EcoVacsMQTT - error connecting with MQTT Return {}".format(rc))
raise RuntimeError("EcoVacsMQTT - error connecting with MQTT Return {}".format(rc))
else:
_LOGGER.debug("EcoVacsMQTT - Connected with result code "+str(rc))
_LOGGER.debug("EcoVacsMQTT - Subscribing to all")
self.subscribe('iot/atr/+/' + self.vacuum['did'] + '/' + self.vacuum['class'] + '/' + self.vacuum['resource'] + '/+', qos=0)
self.ready_flag.set()
#def on_log(self, client, userdata, level, buf): #This is very noisy and verbose
# _LOGGER.debug("EcoVacsMQTT Log: {} ".format(buf))
def send_ping(self):
_LOGGER.debug("*** MQTT sending ping ***")
rc = self._send_simple_command(MQTTPublish.paho.PINGREQ)
if rc == MQTTPublish.paho.MQTT_ERR_SUCCESS:
return True
else:
return False
def send_command(self, action, recipient):
if action.name == "Clean": #For handling Clean when action not specified (i.e. CLI)
action.args['clean']['act'] = CLEAN_ACTION_TO_ECOVACS['start'] #Inject a start action
c = self._wrap_command(action, recipient)
_LOGGER.debug('Sending command {0}'.format(c))
self._handle_ctl_api(action,
self.__call_iotdevmanager_api(c ,verify_ssl=self.verify_ssl )
)
def _wrap_command(self, cmd, recipient):
#Remove the td from ctl xml for RestAPI
payloadxml = cmd.to_xml()
payloadxml.attrib.pop("td")
return {
'auth': {
'realm': EcoVacsAPI.REALM,
'resource': self.resource,
'token': self.secret,
'userid': self.user,
'with': 'users',
},
"cmdName": cmd.name,
"payload": ET.tostring(payloadxml).decode(),
"payloadType": "x",
"td": "q",
"toId": recipient,
"toRes": self.vacuum['resource'],
"toType": self.vacuum['class']
}
def __call_iotdevmanager_api(self, args, verify_ssl=True):
_LOGGER.debug("calling iotdevmanager api with {}".format(args))
params = {}
params.update(args)
url = (EcoVacsAPI.PORTAL_URL_FORMAT + "/iot/devmanager.do").format(continent=self.continent)
response = None
try: #The RestAPI sometimes doesnt provide a response depending on command, reduce timeout to 3 to accomodate and make requests faster
response = requests.post(url, json=params, timeout=3, verify=verify_ssl) #May think about having timeout as an arg that could be provided in the future
except requests.exceptions.ReadTimeout:
_LOGGER.debug("call to iotdevmanager failed with ReadTimeout")
return {}
json = response.json()
if json['ret'] == 'ok':
return json
elif json['ret'] == 'fail':
if 'debug' in json:
if json['debug'] == 'wait for response timed out':
#TODO - Maybe handle timeout for IOT better in the future
_LOGGER.error("call to iotdevmanager failed with {}".format(json))
return {}
else:
#TODO - Not sure if we want to raise an error yet, just return empty for now
_LOGGER.error("call to iotdevmanager failed with {}".format(json))
return {}
#raise RuntimeError(
#"failure {} ({}) for call {} and parameters {}".format(json['error'], json['errno'], function, params))
def _handle_ctl_api(self, action, message):
if not message == {}:
resp = self._ctl_to_dict_api(action, message['resp'])
if resp is not None:
for s in self.ctl_subscribers:
s(resp)
def _ctl_to_dict_api(self, action, xmlstring):
xml = ET.fromstring(xmlstring)
xmlchild = xml.getchildren()
if len(xmlchild) > 0:
result = xmlchild[0].attrib.copy()
#Fix for difference in XMPP vs API response
#Depending on the report will use the tag and add "report" to fit the mold of sucks library
if xmlchild[0].tag == "clean":
result['event'] = "CleanReport"
elif xmlchild[0].tag == "charge":
result['event'] = "ChargeState"
elif xmlchild[0].tag == "battery":
result['event'] = "BatteryInfo"
else: #Default back to replacing Get from the api cmdName
result['event'] = action.name.replace("Get","",1)
else:
result = xml.attrib.copy()
result['event'] = action.name.replace("Get","",1)
if 'ret' in result: #Handle errors as needed
if result['ret'] == 'fail':
if action.name == "Charge": #So far only seen this with Charge, when already docked
result['event'] = "ChargeState"
for key in result:
if not RepresentsInt(result[key]): #Fix to handle negative int values
result[key] = stringcase.snakecase(result[key])
return result
def _handle_ctl_mqtt(self, client, userdata, message):
#_LOGGER.debug("EcoVacs MQTT Received Message on Topic: {} - Message: {}".format(message.topic, str(message.payload.decode("utf-8"))))
as_dict = self._ctl_to_dict_mqtt(message.topic, str(message.payload.decode("utf-8")))
if as_dict is not None:
for s in self.ctl_subscribers:
s(as_dict)
def _ctl_to_dict_mqtt(self, topic, xmlstring):
#I haven't seen the need to fall back to data within the topic (like we do with IOT rest call actions), but it is here in case of future need
xml = ET.fromstring(xmlstring) #Convert from string to xml (like IOT rest calls), other than this it is similar to XMPP
#Including changes from jasonarends @ 28da7c2 below
result = xml.attrib.copy()
if 'td' not in result:
# This happens for commands with no response data, such as PlaySound
# Handle response data with no 'td'
if 'type' in result: # single element with type and val
result['event'] = "LifeSpan" # seems to always be LifeSpan type
else:
if len(xml) > 0: # case where there is child element
if 'clean' in xml[0].tag:
result['event'] = "CleanReport"
elif 'charge' in xml[0].tag:
result['event'] = "ChargeState"
elif 'battery' in xml[0].tag:
result['event'] = "BatteryInfo"
else:
return
result.update(xml[0].attrib)
else: # for non-'type' result with no child element, e.g., result of PlaySound
return
else: # response includes 'td'
result['event'] = result.pop('td')
if xml:
result.update(xml[0].attrib)
for key in result:
#Check for RepresentInt to handle negative int values, and ',' for ignoring position updates
if not RepresentsInt(result[key]) and ',' not in result[key]:
result[key] = stringcase.snakecase(result[key])
return result
class EcoVacsXMPP(ClientXMPP):
def __init__(self, user, domain, resource, secret, continent, vacuum, server_address=None ):
ClientXMPP.__init__(self, "{}@{}/{}".format(user, domain,resource), '0/' + resource + '/' + secret) #Init with resource to bind it
self.user = user
self.domain = domain
self.resource = resource
self.continent = continent
self.vacuum = vacuum
self.credentials['authzid'] = user
if server_address is None:
self.server_address = ('msg-{}.ecouser.net'.format(self.continent), '5223')
else:
self.server_address = server_address
self.add_event_handler("session_start", self.session_start)
self.ctl_subscribers = []
self.ready_flag = Event()
def wait_until_ready(self):
self.ready_flag.wait()
def session_start(self, event):
_LOGGER.debug("----------------- starting session ----------------")
_LOGGER.debug("event = {}".format(event))
self.register_handler(Callback("general",
MatchXPath('{jabber:client}iq/{com:ctl}query/{com:ctl}'),
self._handle_ctl))
self.register_handler(Callback("Ping",
MatchXPath('{jabber:client}iq/{urn:xmpp:ping}ping/{urn:xmpp:ping}'),
self._handle_ping))
self.ready_flag.set()
def subscribe_to_ctls(self, function):
self.ctl_subscribers.append(function)
def _handle_ctl(self, message):
# _LOGGER.debug("message in handle_ctl is:")
# _LOGGER.debug(message)
# the_good_part = str(message.payload.decode("utf-8"))
# the_good_part = message.get_payload()[0][0]
the_good_part = message.get_payload()[0][0]
# _LOGGER.debug("the_good_part in handle_ctl is :")
# _LOGGER.debug(the_good_part)
# the_other_part = None
# try:
# the_other_part = message.get_payload()[0][0][0]
# _LOGGER.debug("Other payload found:")
# _LOGGER.debug(the_other_part)
# except IndexError:
# _LOGGER.debug("No extra payload")
as_dict = self._ctl_to_dict(the_good_part)
# _LOGGER.debug("handle ctl called with as_dict:")
# _LOGGER.debug(as_dict)
if as_dict is not None:
for s in self.ctl_subscribers:
s(as_dict)
# if as_dict is None:
# try:
# other_part = message.get_payload()[0][0][0]
# # _LOGGER.debug("handle_ctl called with get_payload()[0][0][0], the other part:")
# #_LOGGER.debug(other_part)
# other_dict = self._ctl_to_dict(other_part)
# #_LOGGER.debug("other dict in query:")
# #_LOGGER.debug(other_dict)
# if other_dict is not None:
# for s in self.ctl_subscribers:
# s(other_dict)
# except IndexError:
# _LOGGER.debug("No extra payload")
def _ctl_to_dict(self, xml):
#Including changes from jasonarends @ 28da7c2 below
result = xml.attrib.copy()
# _LOGGER.debug("result is:")
# _LOGGER.debug(result)
# if other_xml is not None:
# other_result = other_xml.attrib.copy()
# _LOGGER.debug("other result:")
# _LOGGER.debug(other_result)
# _LOGGER.debug(xml[0].tag)
if 'td' not in result:
# _LOGGER.debug("td not in result:")
# _LOGGER.debug(result)
# This happens for commands with no response data, such as PlaySound
# Handle response data with no 'td'
if 'type' in result: # single element with type and val
# _LOGGER.debug("type detected in result, result before event handling:")
# _LOGGER.debug(result)
result['event'] = "LifeSpan" # seems to always be LifeSpan type
# result['event'] = "life_span" # seems to always be LifeSpan type
# _LOGGER.debug("result after event LifeSpan handling:")
# _LOGGER.debug(result)
else:
if xml[0] is not None:
# if other_xml is not None: # case where there is child element
# _LOGGER.debug("child xml detected, [0] tag is")
# _LOGGER.debug(xml[0].tag)
if 'clean' in xml[0].tag:
# _LOGGER.debug("clean detected in xml[0].tag, result before event handling:")
# _LOGGER.debug(result)
result['event'] = "CleanReport"
# result['event'] = "clean_report"
# _LOGGER.debug("result after event clean handling:")
# _LOGGER.debug(result)
elif 'charge' in xml[0].tag:
# _LOGGER.debug("charge detected in xml[0].tag, result before event handling:")
# _LOGGER.debug(result)
result['event'] = "ChargeState"
# result['event'] = "charge_state"
# _LOGGER.debug("result after event charge handling:")
# _LOGGER.debug(result)
elif 'battery' in xml[0].tag:
# _LOGGER.debug("battery detected in xml[0].tag, result before event handling:")
# _LOGGER.debug(result)
result['event'] = "BatteryInfo"
# result['event'] = "battery_info"
# _LOGGER.debug("result after event battery handling:")
# _LOGGER.debug(result)
else:
# _LOGGER.warning("other payload detected but didn't catch on any checks, result is: ")
# _LOGGER.debug(result)
return
result.update(xml[0].attrib)
# _LOGGER.debug("result after xml update attrib:")
# _LOGGER.debug(result)
else: # for non-'type' result with no child element, e.g., result of PlaySound
# _LOGGER.warning("payload didn't catch on any checks, result is: ")
# _LOGGER.debug(result)
return
else: # response includes 'td'
# _LOGGER.debug("td detected in result, result before event handling:")
# _LOGGER.debug(result)
result['event'] = result.pop('td')
# _LOGGER.debug("result after event td handling:")
# _LOGGER.debug(result)
if xml:
result.update(xml[0].attrib)
# _LOGGER.debug("IF XML sub-check result after xml update attrib:")
# _LOGGER.debug(result)
for key in result:
#Check for RepresentInt to handle negative int values, and ',' for ignoring position updates
if not RepresentsInt(result[key]) and ',' not in result[key]:
result[key] = stringcase.snakecase(result[key])
return result
#
# result = xml.attrib.copy()
# other_result = other_xml.attrib.copy()
# _LOGGER.debug("result from xml is :")
# _LOGGER.debug(result)
# _LOGGER.debug("end of result")
# _LOGGER.debug("other_result from xml is :")
# _LOGGER.debug(other_result)
# _LOGGER.debug("end of other_result")
# if 'td' in result:
# result['event'] = result.pop('td')
# if xml:
# result.update(xml[0].attrib)
# for key in result:
# if not RepresentsInt(result[key]): #Fix to handle negative int values
# result[key] = stringcase.snakecase(result[key])
# _LOGGER.debug("td detected in result and result is:")
# _LOGGER.debug(result)
# _LOGGER.debug("end of td detect result")
# return result
# elif 'type' in result:
# result['event'] = result.pop('type')
# if 'errno' in result:
# if result['errno'] == '':
# result['errno'] = 'life_span'
# result['event'] = result.pop('errno')
# if xml:
# result.update(xml[0].attrib)
# else:
# result['event'] = result.pop('type')
# if xml:
# result.update(xml[0].attrib)
# for key in result:
# if not RepresentsInt(result[key]): #Fix to handle negative int values
# result[key] = stringcase.snakecase(result[key])
# _LOGGER.debug("type detected in result and result is:")
# _LOGGER.debug(result)
# _LOGGER.debug("end of type detect result")
# return result
# elif 'type' in other_result:
# if len(xmlchild) > 0:
# result = xmlchild[0].attrib.copy()
# #Fix for difference in XMPP vs API response
# #Depending on the report will use the tag and add "report" to fit the mold of sucks library
# if xmlchild[0].tag == "clean":
# result['event'] = "CleanReport"
# elif xmlchild[0].tag == "charge":
# result['event'] = "ChargeState"
# elif xmlchild[0].tag == "battery":
# result['event'] = "BatteryInfo"
# else:
# # This happens for commands with no response data, such as PlaySound
# _LOGGER.debug("neither type nor td in result:")
# _LOGGER.debug(result)
# _LOGGER.debug("end of no td or type detect result")
# return
def register_callback(self, userdata, message):
self.register_handler(Callback(kind,
MatchXPath('{jabber:client}iq/{com:ctl}query/{com:ctl}ctl[@td="' + kind + '"]'),
function))
def send_command(self, xml, recipient):
c = self._wrap_command(xml, recipient)
_LOGGER.debug('Sending command {0}'.format(c))
c.send()
def _wrap_command(self, ctl, recipient):
q = self.make_iq_query(xmlns=u'com:ctl', ito=recipient, ifrom=self._my_address())
q['type'] = 'set'
if not "id" in ctl.attrib:
ctl.attrib["id"] = self.getReqID() #If no ctl id provided, add an id to the ctl. This was required for the ozmo930 and shouldn't hurt others
for child in q.xml:
if child.tag.endswith('query'):
child.append(ctl)
return q
def getReqID(self, customid="0"): #Generate a somewhat random string for request id, with minium 8 chars. Works similar to ecovacs app.
if customid != "0":
return "{}".format(customid) #return provided id as string
else:
rtnval = str(random.randint(1,50))
while len(str(rtnval)) <= 8:
rtnval = "{}{}".format(rtnval,random.randint(0,50))
return "{}".format(rtnval) #return as string
def _my_address(self):
if not self.vacuum['iotmq']:
return self.user + '@' + self.domain + '/' + self.boundjid.resource
else:
return self.user + '@' + self.domain + '/' + self.resource
def send_ping(self, to):
q = self.make_iq_get(ito=to, ifrom=self._my_address())
q.xml.append(ET.Element('ping', {'xmlns': 'urn:xmpp:ping'}))
_LOGGER.debug("*** sending ping ***")
q.send()
def _handle_ping(self, iq):
_LOGGER.debug("Pinged by %s", iq['from'])
iq.reply().send()
def connect_and_wait_until_ready(self):
self.connect(self.server_address)
self.process()
self.wait_until_ready()
class VacBotCommand:
ACTION = {
'forward': 'forward',
'backward': 'backward',
'left': 'SpinLeft',
'right': 'SpinRight',
'turn_around': 'TurnAround',
'stop': 'stop'
}
def __init__(self, name, args=None, **kwargs):
if args is None:
args = {}
self.name = name
self.args = args
def to_xml(self):
ctl = ET.Element('ctl', {'td': self.name})
for key, value in self.args.items():
if type(value) is dict:
inner = ET.Element(key, value)
ctl.append(inner)
elif type(value) is list:
for item in value:
ixml = self.listobject_to_xml(key, item)
ctl.append(ixml)
else:
ctl.set(key, value)
return ctl
def __str__(self, *args, **kwargs):
return self.command_name() + " command"
def command_name(self):
return self.__class__.__name__.lower()
def listobject_to_xml(self, tag, conv_object):
rtnobject = ET.Element(tag)
if type(conv_object) is dict:
for key, value in conv_object.items():
rtnobject.set(key, value)
else:
rtnobject.set(tag, conv_object)
return rtnobject
class Clean(VacBotCommand):
def __init__(self, mode='auto', speed='normal', iotmq=False, action='start',terminal=False, **kwargs):
if kwargs == {}:
#Looks like action is needed for some bots, shouldn't affect older models
super().__init__('Clean', {'clean': {'type': CLEAN_MODE_TO_ECOVACS[mode], 'speed': FAN_SPEED_TO_ECOVACS[speed],'act': CLEAN_ACTION_TO_ECOVACS[action]}})
else:
initcmd = {'type': CLEAN_MODE_TO_ECOVACS[mode], 'speed': FAN_SPEED_TO_ECOVACS[speed]}
for kkey, kvalue in kwargs.items():
initcmd[kkey] = kvalue
super().__init__('Clean', {'clean': initcmd})
class Edge(Clean):
def __init__(self):
super().__init__('edge', 'high')
class Spot(Clean):
def __init__(self):
super().__init__('spot', 'high')
class Stop(Clean):
def __init__(self):
super().__init__('stop', 'normal')
class SpotArea(Clean):
def __init__(self, action='start', area='', map_position='', cleanings='1'):
if area != '': #For cleaning specified area
super().__init__('spot_area', 'normal', act=CLEAN_ACTION_TO_ECOVACS[action], mid=area)
elif map_position != '': #For cleaning custom map area, and specify deep amount 1x/2x
super().__init__('spot_area' ,'normal',act=CLEAN_ACTION_TO_ECOVACS[action], p=map_position, deep=cleanings)
else:
#no valid entries
raise ValueError("must provide area or map_position for spotarea clean")
class Charge(VacBotCommand):
def __init__(self):
super().__init__('Charge', {'charge': {'type': CHARGE_MODE_TO_ECOVACS['return']}})
class Move(VacBotCommand):
def __init__(self, action):
super().__init__('Move', {'move': {'action': self.ACTION[action]}})
class PlaySound(VacBotCommand):
def __init__(self, sid="0"):
super().__init__('PlaySound', {'sid': sid})
class GetCleanState(VacBotCommand):
def __init__(self):
super().__init__('GetCleanState')
class GetChargeState(VacBotCommand):
def __init__(self):
super().__init__('GetChargeState')
class GetBatteryState(VacBotCommand):
def __init__(self):
super().__init__('GetBatteryInfo')
class GetLifeSpan(VacBotCommand):
def __init__(self, component):
# _LOGGER.debug("GetLifeSpan called by VacBot**************")
super().__init__('GetLifeSpan', {'type': COMPONENT_TO_ECOVACS[component]})
class SetTime(VacBotCommand):
def __init__(self, timestamp, timezone):
super().__init__('SetTime', {'time': {'t': timestamp, 'tz': timezone}})