Combine MQTT and IOT into IOTMQ

Combined MQTT and IOT into IOTMQ
Updated tests - now with 99% coverage for __init__
This commit is contained in:
Brian Martin
2019-02-18 17:44:41 -05:00
parent 9919baad27
commit 597129dda0
8 changed files with 559 additions and 532 deletions
+189 -207
View File
@@ -140,8 +140,8 @@ class EcoVacsAPI:
PORTAL_URL_FORMAT = 'https://portal-{continent}.ecouser.net/api' PORTAL_URL_FORMAT = 'https://portal-{continent}.ecouser.net/api'
USERSAPI = 'users/user.do' USERSAPI = 'users/user.do'
IOTDEVMANAGERAPI = 'iot/devmanager.do' # IOT Device Manager - This provides control of "IOT" products via API, no longer XMPP 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, which is assumed should use IOT API 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' REALM = 'ecouser.net'
@@ -236,17 +236,9 @@ class EcoVacsAPI:
params = {} params = {}
params.update(args) params.update(args)
url = (EcoVacsAPI.PORTAL_URL_FORMAT + "/" + api).format(continent=self.continent, **self.meta) url = (EcoVacsAPI.PORTAL_URL_FORMAT + "/" + api).format(continent=self.continent, **self.meta)
response = None
if not api == self.IOTDEVMANAGERAPI: response = requests.post(url, json=params, verify=verify_ssl)
response = requests.post(url, json=params, verify=verify_ssl)
else:
try: #IOT Device 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 {} failed with ReadTimeout".format(function))
return {}
json = response.json() json = response.json()
_LOGGER.debug("got {}".format(json)) _LOGGER.debug("got {}".format(json))
@@ -254,22 +246,6 @@ class EcoVacsAPI:
if json['result'] == 'ok': if json['result'] == 'ok':
return json return json
if api == self.IOTDEVMANAGERAPI:
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 {} failed with {}".format(function, json))
return {}
else:
#TODO - Not sure if we want to raise an error yet, just return empty for now
_LOGGER.error("call to {} failed with {}".format(function, json))
return {}
#raise RuntimeError(
#"failure {} ({}) for call {} and parameters {}".format(json['error'], json['errno'], function, params))
if api.startswith(self.PRODUCTAPI): if api.startswith(self.PRODUCTAPI):
if json['code'] == 0: if json['code'] == 0:
return json return json
@@ -288,8 +264,6 @@ class EcoVacsAPI:
'token': self.auth_code} 'token': self.auth_code}
, verify_ssl=self.verify_ssl) , verify_ssl=self.verify_ssl)
def getdevices(self): def getdevices(self):
return self.__call_portal_api(self.USERSAPI,'GetDeviceList', { return self.__call_portal_api(self.USERSAPI,'GetDeviceList', {
'userid': self.uid, 'userid': self.uid,
@@ -315,15 +289,33 @@ class EcoVacsAPI:
}, verify_ssl=self.verify_ssl)['data'] }, verify_ssl=self.verify_ssl)['data']
def SetIOTDevices(self, devices, iotproducts): 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 for device in devices: #Check if the device is part of iotProducts
device['iot_product'] = False
for iotProduct in iotproducts: for iotProduct in iotproducts:
if device['class'] in iotProduct['classid']: if device['class'] in iotProduct['classid']:
device['iot'] = True device['iot_product'] = True
return devices
def SetIOTMQDevices(self, devices):
#Added for devices that utilize MQTT instead of XMPP for communication
#At this time the list is updated manually, so far only the D900 has been seen to use this
#These items were found in the Android app source by searching for "new IOTMqDevice("
iotmqdevices = [
'ls1ok3', #D900 / DE5G
# Possibly the Atmobot AA30 - qqy0di
# Possibly the Slim4 - wbueya
]
for device in devices:
device['iotmq'] = False
if device['class'] in iotmqdevices: #Check if the device is part of the list
device['iotmq'] = True
return devices return devices
def devices(self): def devices(self):
return self.SetIOTDevices(self.getdevices(), self.getiotProducts()) return self.SetIOTMQDevices(self.getdevices())
@staticmethod @staticmethod
def md5(text): def md5(text):
@@ -397,44 +389,39 @@ class VacBot():
self.errorEvents = EventEmitter() self.errorEvents = EventEmitter()
#Set none for clients to start #Set none for clients to start
self.mqtt = None
self.iot = None
self.xmpp = None self.xmpp = None
self.iotmq = None
if vacuum['iot']: if not vacuum['iotmq']:
self.iot = EcoVacsIOT(user, domain, resource, secret, continent, vacuum, verify_ssl=verify_ssl)
self.iot.subscribe_to_ctls(self._handle_ctl)
self.mqtt = EcoVacsMQTT(user, domain, resource, secret, continent, vacuum, server_address)
self.mqtt.subscribe_to_ctls(self._handle_ctl)
#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:
self.xmpp = EcoVacsXMPP(user, domain, resource, secret, continent, vacuum, server_address) self.xmpp = EcoVacsXMPP(user, domain, resource, secret, continent, vacuum, server_address)
#Uncomment line to allow unencrypted plain auth #Uncomment line to allow unencrypted plain auth
#self.xmpp['feature_mechanisms'].unencrypted_plain = True #self.xmpp['feature_mechanisms'].unencrypted_plain = True
self.xmpp.subscribe_to_ctls(self._handle_ctl) self.xmpp.subscribe_to_ctls(self._handle_ctl)
else:
self.iotmq = EcoVacsIOTMQ(user, domain, resource, secret, continent, vacuum, server_address, verify_ssl=verify_ssl)
self.iotmq.subscribe_to_ctls(self._handle_ctl)
#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): def connect_and_wait_until_ready(self):
if not self.vacuum['iot']: if not self.vacuum['iotmq']:
self.xmpp.connect_and_wait_until_ready() self.xmpp.connect_and_wait_until_ready()
self.xmpp.schedule('Ping', 30, lambda: self.send_ping(), repeat=True) self.xmpp.schedule('Ping', 30, lambda: self.send_ping(), repeat=True)
else: else:
self.mqtt.connect_and_wait_until_ready() self.iotmq.connect_and_wait_until_ready()
self.mqtt.schedule(30, self.send_ping) self.iotmq.schedule(30, self.send_ping)
#self.xmpp.connect_and_wait_until_ready() #self.xmpp.connect_and_wait_until_ready()
if self._monitor: if self._monitor:
# Do a first ping, which will also fetch initial statuses if the ping succeeds # Do a first ping, which will also fetch initial statuses if the ping succeeds
self.send_ping() self.send_ping()
if not self.vacuum['iot']: if not self.vacuum['iotmq']:
self.xmpp.schedule('Components', 3600, lambda: self.refresh_components(), repeat=True) self.xmpp.schedule('Components', 3600, lambda: self.refresh_components(), repeat=True)
else: else:
self.mqtt.schedule(3600,self.refresh_components) self.iotmq.schedule(3600,self.refresh_components)
def _handle_ctl(self, ctl): def _handle_ctl(self, ctl):
method = '_handle_' + ctl['event'] method = '_handle_' + ctl['event']
@@ -472,7 +459,7 @@ class VacBot():
type = event['type'] type = event['type']
try: try:
type = CLEAN_MODE_FROM_ECOVACS[type] type = CLEAN_MODE_FROM_ECOVACS[type]
if self.vacuum['iot']: #Was able to parse additional status from the IOT, may apply to XMPP too if self.vacuum['iotmq']: #Was able to parse additional status from the IOTMQ, may apply to XMPP too
statustype = event['st'] statustype = event['st']
statustype = CLEAN_ACTION_FROM_ECOVACS[statustype] statustype = CLEAN_ACTION_FROM_ECOVACS[statustype]
if statustype == CLEAN_ACTION_STOP or statustype == CLEAN_ACTION_PAUSE: if statustype == CLEAN_ACTION_STOP or statustype == CLEAN_ACTION_PAUSE:
@@ -533,10 +520,10 @@ class VacBot():
_LOGGER.debug("*** charge_status = " + self.charge_status) _LOGGER.debug("*** charge_status = " + self.charge_status)
def _vacuum_address(self): def _vacuum_address(self):
if self.vacuum['iot']: if not self.vacuum['iotmq']:
return self.vacuum['did']
else:
return self.vacuum['did'] + '@' + self.vacuum['class'] + '.ecorobot.net/atom' return self.vacuum['did'] + '@' + self.vacuum['class'] + '.ecorobot.net/atom'
else:
return self.vacuum['did'] #IOTMQ only uses the did
@property @property
def is_charging(self) -> bool: def is_charging(self) -> bool:
@@ -548,10 +535,10 @@ class VacBot():
def send_ping(self): def send_ping(self):
try: try:
if not self.vacuum['iot']: if not self.vacuum['iotmq']:
self.xmpp.send_ping(self._vacuum_address()) self.xmpp.send_ping(self._vacuum_address())
elif self.vacuum['iot']: elif self.vacuum['iotmq']:
if not self.mqtt.send_ping(): if not self.iotmq.send_ping():
raise RuntimeError() raise RuntimeError()
#self.xmpp.send_ping(EcoVacsAPI.REALM) #IOT vacuums are using the realm instead #self.xmpp.send_ping(EcoVacsAPI.REALM) #IOT vacuums are using the realm instead
@@ -612,26 +599,23 @@ class VacBot():
self.refresh_components() self.refresh_components()
def send_command(self, action): def send_command(self, action):
if not self.vacuum['iot']: if not self.vacuum['iotmq']:
self.xmpp.send_command(action.to_xml(), self._vacuum_address()) self.xmpp.send_command(action.to_xml(), self._vacuum_address())
else: else:
#IOT issues commands via restAPI, and listens on MQTT for status updates #IOTMQ issues commands via RestAPI, and listens on MQTT for status updates
self.iot.send_command(action, self._vacuum_address()) #IOT devices need the full action for additional parsing self.iotmq.send_command(action, self._vacuum_address()) #IOTMQ devices need the full action for additional parsing
def run(self, action): def run(self, action):
self.send_command(action) self.send_command(action)
def disconnect(self, wait=False): def disconnect(self, wait=False):
if not self.vacuum['iot']: if not self.vacuum['iotmq']:
self.xmpp.disconnect(wait=wait) self.xmpp.disconnect(wait=wait)
else: else:
self.mqtt._disconnect() self.iotmq._disconnect()
#self.xmpp.disconnect(wait=wait) #self.xmpp.disconnect(wait=wait)
#This is used by EcoVacsIOTMQ and EcoVacsXMPP for _ctl_to_dict
#This is used by EcoVacsIOT, EcoVacsXMPP, and EcoVacsMQTT for _ctl_to_dict
def RepresentsInt(stringvar): def RepresentsInt(stringvar):
try: try:
int(stringvar) int(stringvar)
@@ -639,117 +623,19 @@ def RepresentsInt(stringvar):
except ValueError: except ValueError:
return False return False
class EcoVacsIOT(): class EcoVacsIOTMQ(ClientMQTT):
def __init__(self, user, domain, resource, secret, continent, vacuum, verify_ssl=True): def __init__(self, user, domain, resource, secret, continent, vacuum, server_address=None, verify_ssl=True):
self.uid = user
self.domain = domain
self.resource = resource
self.secret = secret
self.continent = continent
self.vacuum = vacuum
self.api = EcoVacsAPI
self.api.continent = continent
self.api.meta = {}
self.ctl_subscribers = []
self.ready_flag = Event()
self.verify_ssl = str_to_bool(verify_ssl)
#TODO: Determine what to do with IOT connect and wait, or scrap
# def connect_and_wait_until_ready(self):
# self.connect(EcoVacsAPI._EcoVacsAPI__call_portal_api())
# self.process()
# self.wait_until_ready()
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(action,
self.api._EcoVacsAPI__call_portal_api(self.api, self.api.IOTDEVMANAGERAPI,'',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.uid,
'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 subscribe_to_ctls(self, function):
self.ctl_subscribers.append(function)
def _handle_ctl(self, action, message):
if not message == {}:
resp = self._ctl_to_dict(action, message['resp'])
if resp is not None:
for s in self.ctl_subscribers:
s(resp)
def _ctl_to_dict(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 IOT 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
class EcoVacsMQTT(ClientMQTT):
def __init__(self, user, domain, resource, secret, continent, vacuum, server_address=None ):
ClientMQTT.__init__(self) ClientMQTT.__init__(self)
self.ctl_subscribers = [] self.ctl_subscribers = []
self.user = user self.user = user
self.domain = str(domain).split(".")[0] #MQTT is using domain without tld extension self.domain = str(domain).split(".")[0] #MQTT is using domain without tld extension
self.resource = resource self.resource = resource
self.secret = secret
self.continent = continent self.continent = continent
self.vacuum = vacuum self.vacuum = vacuum
self.scheduler = sched.scheduler(time.time, time.sleep) self.scheduler = sched.scheduler(time.time, time.sleep)
self.scheduler_thread = threading.Thread(target=self.scheduler.run, daemon=True, name="mqtt_schedule_thread") self.scheduler_thread = threading.Thread(target=self.scheduler.run, daemon=True, name="mqtt_schedule_thread")
self.verify_ssl = str_to_bool(verify_ssl)
if server_address is None: if server_address is None:
self.hostname = ('mq-{}.ecouser.net'.format(self.continent)) self.hostname = ('mq-{}.ecouser.net'.format(self.continent))
@@ -768,6 +654,28 @@ class EcoVacsMQTT(ClientMQTT):
self.ready_flag = Event() 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 subscribe_to_ctls_mqtt(self, function):
# self.ctl_subscribers.append(function)
def _disconnect(self): def _disconnect(self):
self.disconnect() #disconnect mqtt connection self.disconnect() #disconnect mqtt connection
self.scheduler.empty() #Clear schedule queue self.scheduler.empty() #Clear schedule queue
@@ -799,18 +707,121 @@ class EcoVacsMQTT(ClientMQTT):
#def on_log(self, client, userdata, level, buf): #This is very noisy and verbose #def on_log(self, client, userdata, level, buf): #This is very noisy and verbose
# _LOGGER.debug("EcoVacsMQTT Log: {} ".format(buf)) # _LOGGER.debug("EcoVacsMQTT Log: {} ".format(buf))
def subscribe_to_ctls(self, function): def send_ping(self):
self.ctl_subscribers.append(function) _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 _handle_ctl(self, client, userdata, message): 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")))) #_LOGGER.debug("EcoVacs MQTT Received Message on Topic: {} - Message: {}".format(message.topic, str(message.payload.decode("utf-8"))))
as_dict = self._ctl_to_dict(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: if as_dict is not None:
for s in self.ctl_subscribers: for s in self.ctl_subscribers:
s(as_dict) s(as_dict)
def _ctl_to_dict_mqtt(self, topic, xmlstring):
def _ctl_to_dict(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 #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 xml = ET.fromstring(xmlstring) #Convert from string to xml (like IOT rest calls), other than this it is similar to XMPP
@@ -849,34 +860,6 @@ class EcoVacsMQTT(ClientMQTT):
return result return result
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 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
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()
class EcoVacsXMPP(ClientXMPP): class EcoVacsXMPP(ClientXMPP):
def __init__(self, user, domain, resource, secret, continent, vacuum, server_address=None ): def __init__(self, user, domain, resource, secret, continent, vacuum, server_address=None ):
ClientXMPP.__init__(self, user + '@' + domain, '0/' + resource + '/' + secret) ClientXMPP.__init__(self, user + '@' + domain, '0/' + resource + '/' + secret)
@@ -952,7 +935,7 @@ class EcoVacsXMPP(ClientXMPP):
return q return q
def _my_address(self): def _my_address(self):
if not self.vacuum['iot']: if not self.vacuum['iotmq']:
return self.user + '@' + self.domain + '/' + self.boundjid.resource return self.user + '@' + self.domain + '/' + self.boundjid.resource
else: else:
return self.user + '@' + self.domain + '/' + self.resource return self.user + '@' + self.domain + '/' + self.resource
@@ -965,7 +948,6 @@ class EcoVacsXMPP(ClientXMPP):
q.send() q.send()
def connect_and_wait_until_ready(self): def connect_and_wait_until_ready(self):
self.connect(self.server_address) self.connect(self.server_address)
self.process() self.process()
self.wait_until_ready() self.wait_until_ready()
@@ -1017,9 +999,9 @@ class VacBotCommand:
return rtnobject return rtnobject
class Clean(VacBotCommand): class Clean(VacBotCommand):
def __init__(self, mode='auto', speed='normal', iot=False, action='start',terminal=False, **kwargs): def __init__(self, mode='auto', speed='normal', iotmq=False, action='start',terminal=False, **kwargs):
if kwargs == {}: if kwargs == {}:
if not iot: if not iotmq:
super().__init__('Clean', {'clean': {'type': CLEAN_MODE_TO_ECOVACS[mode], 'speed': FAN_SPEED_TO_ECOVACS[speed]}}) super().__init__('Clean', {'clean': {'type': CLEAN_MODE_TO_ECOVACS[mode], 'speed': FAN_SPEED_TO_ECOVACS[speed]}})
else: else:
super().__init__('Clean', {'clean': {'type': CLEAN_MODE_TO_ECOVACS[mode], 'speed': FAN_SPEED_TO_ECOVACS[speed],'act': CLEAN_ACTION_TO_ECOVACS[action]}}) super().__init__('Clean', {'clean': {'type': CLEAN_MODE_TO_ECOVACS[mode], 'speed': FAN_SPEED_TO_ECOVACS[speed],'act': CLEAN_ACTION_TO_ECOVACS[action]}})
+1 -1
View File
@@ -49,7 +49,7 @@ def test_clean_command():
assert_equals(ElementTree.tostring(c.to_xml()), assert_equals(ElementTree.tostring(c.to_xml()),
b'<ctl td="Clean"><clean speed="strong" type="border" /></ctl>') # protocol has attribs in other order b'<ctl td="Clean"><clean speed="strong" type="border" /></ctl>') # protocol has attribs in other order
c = Clean(iot=True) c = Clean(iotmq=True)
assert_equals(ElementTree.tostring(c.to_xml()), assert_equals(ElementTree.tostring(c.to_xml()),
b'<ctl td="Clean"><clean act="s" speed="standard" type="auto" /></ctl>') # test for iot act is added b'<ctl td="Clean"><clean act="s" speed="standard" type="auto" /></ctl>') # test for iot act is added
+106 -13
View File
@@ -39,6 +39,23 @@ def test_main_api_setup():
assert_equals(api.auth_code, "5c28dac1ff580210e11292df57e87bef") assert_equals(api.auth_code, "5c28dac1ff580210e11292df57e87bef")
assert_equals(api.user_access_token, "jt5O7oDR3gPHdVKCeb8Czx8xw8mDXM6s") assert_equals(api.user_access_token, "jt5O7oDR3gPHdVKCeb8Czx8xw8mDXM6s")
#Test old user api endpoint
postdata = {'country': 'US',
'resource': "f8d99c4d",
'realm': EcoVacsAPI.REALM,
'userId': "2017102559f0ee63c588d",
'token': "jt5O7oDR3gPHdVKCeb8Czx8xw8mDXM6s"}
r = api._EcoVacsAPI__call_user_api("loginByItToken", postdata)
assert_equals(r3.call_count, 2)
# verify state
assert_equals(api.uid, "2017102559f0ee63c588d")
assert_equals(api.login_access_token, "7a375650b0b1efd780029284479c4e41")
assert_equals(api.auth_code, "5c28dac1ff580210e11292df57e87bef")
assert_equals(api.user_access_token, "jt5O7oDR3gPHdVKCeb8Czx8xw8mDXM6s")
def test_main_api_setup_with_alternate_uid(): def test_main_api_setup_with_alternate_uid():
# Under mysterious circumstances, for certain people the last call sometimes returns a different userId # Under mysterious circumstances, for certain people the last call sometimes returns a different userId
@@ -64,17 +81,31 @@ def test_main_api_setup_with_alternate_uid():
assert_equals(api.auth_code, "5c28dac1ff580210e11292df57e87bef") assert_equals(api.auth_code, "5c28dac1ff580210e11292df57e87bef")
assert_equals(api.user_access_token, "jt5O7oDR3gPHdVKCeb8Czx8xw8mDXM6s") assert_equals(api.user_access_token, "jt5O7oDR3gPHdVKCeb8Czx8xw8mDXM6s")
def test_main_api_errorcode():
with requests_mock.mock() as m:
r1 = m.get(compile('user/login'), #test with 0004 (invalid token)
text='{"time": 1511200804243, "code": "0004", "msg": "X", "data": null}')
assert_raises(RuntimeError, EcoVacsAPI, "long_device_id", "account_id", "password_hash", 'us', 'na') #Runtime error from code 0004
def test_main_api_badpassword():
with requests_mock.mock() as m:
r1 = m.get(compile('user/login'), #test with 1005 (incorrect email or password)
text='{"time": 1511200804243, "code": "1005", "msg": "X", "data": null}')
assert_raises(ValueError, EcoVacsAPI, "long_device_id", "account_id", "password_hash", 'us', 'na') #ValueError error from code 1005
def test_device_lookup(): def test_device_lookup():
api = make_api() api = make_api()
with requests_mock.mock() as m: with requests_mock.mock() as m:
device_id = 'E0000001234567890123'
#Not IOTMQ
device_id = 'E0000001234567890123'
device_class = '126'
r = m.post(compile('user.do'), r = m.post(compile('user.do'),
text='{"todo": "result", "devices": [{"did": "%s", "class": "126", "nick": "bob"}], "result": "ok"}' % device_id) text='{"todo": "result", "devices": [{"did": "%s", "class": "%s", "nick": "bob"}], "result": "ok"}' %(device_id, device_class))
r = m.post(compile('pim/product/getProductIotMap'),
text='{"code":0,"data":[{"classid":"dl8fht","product":{"_id":"5acb0fa87c295c0001876ecf","name":"DEEBOT 600 Series","icon":"5acc32067c295c0001876eea","UILogicId":"dl8fht","ota":false,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5acc32067c295c0001876eea"}},{"classid":"02uwxm","product":{"_id":"5ae1481e7ccd1a0001e1f69e","name":"DEEBOT OZMO Slim10 Series","icon":"5b1dddc48bc45700014035a1","UILogicId":"02uwxm","ota":false,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b1dddc48bc45700014035a1"}},{"classid":"y79a7u","product":{"_id":"5b04c0227ccd1a0001e1f6a8","name":"DEEBOT OZMO 900","icon":"5b04c0217ccd1a0001e1f6a7","UILogicId":"y79a7u","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b04c0217ccd1a0001e1f6a7"}},{"classid":"jr3pqa","product":{"_id":"5b43077b8bc457000140363e","name":"DEEBOT 711","icon":"5b5ac4cc8d5a56000111e769","UILogicId":"jr3pqa","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b5ac4cc8d5a56000111e769"}},{"classid":"uv242z","product":{"_id":"5b5149b4ac0b87000148c128","name":"DEEBOT 710","icon":"5b5ac4e45f21100001882bb9","UILogicId":"uv242z","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b5ac4e45f21100001882bb9"}},{"classid":"ls1ok3","product":{"_id":"5b6561060506b100015c8868","name":"DEEBOT 900 Series","icon":"5ba4a2cb6c2f120001c32839","UILogicId":"ls1ok3","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5ba4a2cb6c2f120001c32839"}}]}')
d = api.devices() d = api.devices()
assert_equals(r.call_count, 1) assert_equals(r.call_count, 1)
@@ -82,17 +113,12 @@ def test_device_lookup():
vacuum = d[0] vacuum = d[0]
assert_equals(vacuum['did'], device_id) assert_equals(vacuum['did'], device_id)
assert_equals(vacuum['class'], '126') assert_equals(vacuum['class'], '126')
assert_equals(vacuum['iotmq'], False)
def test_device_lookup_is_IOT(): #Is IOTMQ
api = make_api() device_class = 'ls1ok3' #D900
with requests_mock.mock() as m:
device_id = 'E0000001234567890123'
device_class = 'ls1ok3'
r = m.post(compile('user.do'), r = m.post(compile('user.do'),
text='{"todo": "result", "devices": [{"did": "%s", "class": "%s", "nick": "bob"}], "result": "ok"}' %(device_id, device_class)) text='{"todo": "result", "devices": [{"did": "%s", "class": "%s", "nick": "bob"}], "result": "ok"}' %(device_id, device_class))
r = m.post(compile('pim/product/getProductIotMap'),
text='{"code":0,"data":[{"classid":"dl8fht","product":{"_id":"5acb0fa87c295c0001876ecf","name":"DEEBOT 600 Series","icon":"5acc32067c295c0001876eea","UILogicId":"dl8fht","ota":false,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5acc32067c295c0001876eea"}},{"classid":"02uwxm","product":{"_id":"5ae1481e7ccd1a0001e1f69e","name":"DEEBOT OZMO Slim10 Series","icon":"5b1dddc48bc45700014035a1","UILogicId":"02uwxm","ota":false,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b1dddc48bc45700014035a1"}},{"classid":"y79a7u","product":{"_id":"5b04c0227ccd1a0001e1f6a8","name":"DEEBOT OZMO 900","icon":"5b04c0217ccd1a0001e1f6a7","UILogicId":"y79a7u","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b04c0217ccd1a0001e1f6a7"}},{"classid":"jr3pqa","product":{"_id":"5b43077b8bc457000140363e","name":"DEEBOT 711","icon":"5b5ac4cc8d5a56000111e769","UILogicId":"jr3pqa","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b5ac4cc8d5a56000111e769"}},{"classid":"uv242z","product":{"_id":"5b5149b4ac0b87000148c128","name":"DEEBOT 710","icon":"5b5ac4e45f21100001882bb9","UILogicId":"uv242z","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b5ac4e45f21100001882bb9"}},{"classid":"ls1ok3","product":{"_id":"5b6561060506b100015c8868","name":"DEEBOT 900 Series","icon":"5ba4a2cb6c2f120001c32839","UILogicId":"ls1ok3","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5ba4a2cb6c2f120001c32839"}}]}')
d = api.devices() d = api.devices()
assert_equals(r.call_count, 1) assert_equals(r.call_count, 1)
@@ -100,7 +126,74 @@ def test_device_lookup_is_IOT():
vacuum = d[0] vacuum = d[0]
assert_equals(vacuum['did'], device_id) assert_equals(vacuum['did'], device_id)
assert_equals(vacuum['class'], device_class) assert_equals(vacuum['class'], device_class)
assert_equals(vacuum['iot'], True) assert_equals(vacuum['iotmq'], True)
def test_device_lookup_IOTProduct():
api = make_api()
with requests_mock.mock() as m:
#Is IOTProduct
device_id = 'E0000001234567890123'
device_class = 'ls1ok3' #D900
r = m.post(compile('user.do'),
text='{"todo": "result", "devices": [{"did": "%s", "class": "%s", "nick": "bob"}], "result": "ok"}' %(device_id, device_class))
r = m.post(compile('pim/product/getProductIotMap'),
text='{"code":0,"data":[{"classid":"dl8fht","product":{"_id":"5acb0fa87c295c0001876ecf","name":"DEEBOT 600 Series","icon":"5acc32067c295c0001876eea","UILogicId":"dl8fht","ota":false,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5acc32067c295c0001876eea"}},{"classid":"02uwxm","product":{"_id":"5ae1481e7ccd1a0001e1f69e","name":"DEEBOT OZMO Slim10 Series","icon":"5b1dddc48bc45700014035a1","UILogicId":"02uwxm","ota":false,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b1dddc48bc45700014035a1"}},{"classid":"y79a7u","product":{"_id":"5b04c0227ccd1a0001e1f6a8","name":"DEEBOT OZMO 900","icon":"5b04c0217ccd1a0001e1f6a7","UILogicId":"y79a7u","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b04c0217ccd1a0001e1f6a7"}},{"classid":"jr3pqa","product":{"_id":"5b43077b8bc457000140363e","name":"DEEBOT 711","icon":"5b5ac4cc8d5a56000111e769","UILogicId":"jr3pqa","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b5ac4cc8d5a56000111e769"}},{"classid":"uv242z","product":{"_id":"5b5149b4ac0b87000148c128","name":"DEEBOT 710","icon":"5b5ac4e45f21100001882bb9","UILogicId":"uv242z","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b5ac4e45f21100001882bb9"}},{"classid":"ls1ok3","product":{"_id":"5b6561060506b100015c8868","name":"DEEBOT 900 Series","icon":"5ba4a2cb6c2f120001c32839","UILogicId":"ls1ok3","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5ba4a2cb6c2f120001c32839"}}]}')
d = api.devices()
d = api.SetIOTDevices(d, api.getiotProducts())
assert_equals(r.call_count, 1)
assert_equals(len(d), 1)
vacuum = d[0]
assert_equals(vacuum['did'], device_id)
assert_equals(vacuum['class'], device_class)
assert_equals(vacuum['iot_product'], True)
assert_equals(vacuum['iotmq'], True)
#Not IOTProduct
device_id = 'E0000001234567890123'
device_class = '126'
r = m.post(compile('user.do'),
text='{"todo": "result", "devices": [{"did": "%s", "class": "%s", "nick": "bob"}], "result": "ok"}' %(device_id, device_class))
r = m.post(compile('pim/product/getProductIotMap'),
text='{"code":0,"data":[{"classid":"dl8fht","product":{"_id":"5acb0fa87c295c0001876ecf","name":"DEEBOT 600 Series","icon":"5acc32067c295c0001876eea","UILogicId":"dl8fht","ota":false,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5acc32067c295c0001876eea"}},{"classid":"02uwxm","product":{"_id":"5ae1481e7ccd1a0001e1f69e","name":"DEEBOT OZMO Slim10 Series","icon":"5b1dddc48bc45700014035a1","UILogicId":"02uwxm","ota":false,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b1dddc48bc45700014035a1"}},{"classid":"y79a7u","product":{"_id":"5b04c0227ccd1a0001e1f6a8","name":"DEEBOT OZMO 900","icon":"5b04c0217ccd1a0001e1f6a7","UILogicId":"y79a7u","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b04c0217ccd1a0001e1f6a7"}},{"classid":"jr3pqa","product":{"_id":"5b43077b8bc457000140363e","name":"DEEBOT 711","icon":"5b5ac4cc8d5a56000111e769","UILogicId":"jr3pqa","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b5ac4cc8d5a56000111e769"}},{"classid":"uv242z","product":{"_id":"5b5149b4ac0b87000148c128","name":"DEEBOT 710","icon":"5b5ac4e45f21100001882bb9","UILogicId":"uv242z","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b5ac4e45f21100001882bb9"}},{"classid":"ls1ok3","product":{"_id":"5b6561060506b100015c8868","name":"DEEBOT 900 Series","icon":"5ba4a2cb6c2f120001c32839","UILogicId":"ls1ok3","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5ba4a2cb6c2f120001c32839"}}]}')
d = api.devices()
d = api.SetIOTDevices(d, api.getiotProducts())
assert_equals(r.call_count, 1)
assert_equals(len(d), 1)
vacuum = d[0]
assert_equals(vacuum['did'], device_id)
assert_equals(vacuum['class'], device_class)
assert_equals(vacuum['iot_product'], False)
assert_equals(vacuum['iotmq'], False)
def test_device_lookup_is_IOTProduct_not_IOTMQ():
api = make_api()
with requests_mock.mock() as m:
device_id = 'E0000001234567890123'
device_class = 'dl8fht' #D600
r = m.post(compile('user.do'),
text='{"todo": "result", "devices": [{"did": "%s", "class": "%s", "nick": "bob"}], "result": "ok"}' %(device_id, device_class))
r = m.post(compile('pim/product/getProductIotMap'),
text='{"code":0,"data":[{"classid":"dl8fht","product":{"_id":"5acb0fa87c295c0001876ecf","name":"DEEBOT 600 Series","icon":"5acc32067c295c0001876eea","UILogicId":"dl8fht","ota":false,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5acc32067c295c0001876eea"}},{"classid":"02uwxm","product":{"_id":"5ae1481e7ccd1a0001e1f69e","name":"DEEBOT OZMO Slim10 Series","icon":"5b1dddc48bc45700014035a1","UILogicId":"02uwxm","ota":false,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b1dddc48bc45700014035a1"}},{"classid":"y79a7u","product":{"_id":"5b04c0227ccd1a0001e1f6a8","name":"DEEBOT OZMO 900","icon":"5b04c0217ccd1a0001e1f6a7","UILogicId":"y79a7u","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b04c0217ccd1a0001e1f6a7"}},{"classid":"jr3pqa","product":{"_id":"5b43077b8bc457000140363e","name":"DEEBOT 711","icon":"5b5ac4cc8d5a56000111e769","UILogicId":"jr3pqa","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b5ac4cc8d5a56000111e769"}},{"classid":"uv242z","product":{"_id":"5b5149b4ac0b87000148c128","name":"DEEBOT 710","icon":"5b5ac4e45f21100001882bb9","UILogicId":"uv242z","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b5ac4e45f21100001882bb9"}},{"classid":"ls1ok3","product":{"_id":"5b6561060506b100015c8868","name":"DEEBOT 900 Series","icon":"5ba4a2cb6c2f120001c32839","UILogicId":"ls1ok3","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5ba4a2cb6c2f120001c32839"}}]}')
d = api.devices()
d = api.SetIOTDevices(d, api.getiotProducts())
assert_equals(r.call_count, 1)
assert_equals(len(d), 1)
vacuum = d[0]
assert_equals(vacuum['did'], device_id)
assert_equals(vacuum['class'], device_class)
assert_equals(vacuum['iot_product'], True)
assert_equals(vacuum['iotmq'], False)
def make_api(): def make_api():
-137
View File
@@ -1,137 +0,0 @@
from re import compile
import requests_mock
import requests
from nose.tools import *
from sucks import *
from tests.test_ecovacs_api import make_api
# There are few tests for the IOT stuff here because it's relatively complicated to test given
# the library's design and its multithreaded nature and lack of explicit testing support.
def test_is_iot():
x = make_ecovacs_iot()
assert_equal(x.vacuum['iot'], True)
def test_wrap_command():
x = make_ecovacs_iot()
c = x._wrap_command(Charge(), 'E0000000001234567890')
assert_equal(c['cmdName'], Charge().name)
assert_equal(c['toId'], 'E0000000001234567890')
assert_equal(c['payload'], '<ctl><charge type="go" /></ctl>')
def test_iotapi_response():
x = make_ecovacs_iot()
api = make_api()
x.api = api
with requests_mock.mock() as m:
#Test GetCleanState
resp = {"ret":"ok","resp":"<ctl ret='ok'><clean type='auto' speed='standard' st='h' t='1159' a='15' s='0' tr=''/></ctl>","id":"Qgxa"}
r1 = m.post(compile('iot/devmanager.do'),
json=resp)
cmd = VacBotCommand("GetCleanState")
c = x._wrap_command(cmd, x.vacuum['did'])
rtnval = api._EcoVacsAPI__call_portal_api(api.IOTDEVMANAGERAPI, '', c)
assert_equal(rtnval, {'ret':'ok','resp':"<ctl ret='ok'><clean type='auto' speed='standard' st='h' t='1159' a='15' s='0' tr=''/></ctl>",'id':'Qgxa'})
#Test Timeout
r2 = m.post(compile('iot/devmanager.do'),exc=requests.exceptions.ReadTimeout)
cmd = VacBotCommand("GetCleanState")
c = x._wrap_command(cmd, x.vacuum['did'])
rtnval = api._EcoVacsAPI__call_portal_api(api.IOTDEVMANAGERAPI, '', c)
assert_equal(rtnval, {}) #Right now it sends back a blank object
def test_send_command():
from unittest.mock import MagicMock
x = make_ecovacs_iot()
x._handle_ctl = MagicMock()
x.api._EcoVacsAPI__call_portal_api = MagicMock()
x.send_command(Clean(iot=True), '123')
def test_subscribe_to_ctls():
response = None
def save_response(value):
nonlocal response
response = value
x = make_ecovacs_iot()
x.subscribe_to_ctls(save_response)
message = {}
message['resp'] = '<ctl td="CleanReport"> <clean type="auto" /> </ctl>'
x.subscribe_to_ctls(save_response)
x._handle_ctl("Clean", message)
assert_dict_equal(response, {'event': 'clean_report', 'type': 'auto'})
def test_xml_to_dict():
x = make_ecovacs_iot()
message = {}
cmd = VacBotCommand("Clean")
message['resp'] = "<ctl ret='ok'><clean type='auto' speed='standard' st='h' t='1159' a='15' s='0' tr=''/></ctl>"
assert_dict_equal(
x._ctl_to_dict(cmd,message['resp']),
{'event': 'clean_report', 'type': 'auto', 'speed': 'standard', 'st':'h','t':'1159','a':'15','s':'0','tr':''})
cmd = VacBotCommand("Clean")
message['resp'] = "<ctl ret='ok'><clean type='auto' speed='strong' st='h' t='1159' a='15' s='0' tr=''/></ctl>"
assert_dict_equal(
x._ctl_to_dict(cmd,message['resp']),
{'event': 'clean_report', 'type': 'auto', 'speed': 'strong', 'st':'h','t':'1159','a':'15','s':'0','tr':''})
cmd = VacBotCommand("GetBatteryInfo")
message['resp'] = "<ctl ret='ok'><battery power='82'/></ctl>"
assert_dict_equal(
x._ctl_to_dict(cmd,message['resp']),
{'event': 'battery_info', 'power': '82'})
cmd = VacBotCommand("GetLifeSpan")
message['resp'] = "<ctl ret='ok' type='Brush' left='9876' total='18000'/>"
assert_dict_equal(
x._ctl_to_dict(cmd,message['resp']),
{'event': 'life_span','ret':'ok', 'type': 'brush', 'left': '9876', 'total': '18000'})
cmd = VacBotCommand("Charge")
message['resp'] = "<ctl ts='1547823651958' td='ChargeState'><charge type='Going' h='' r='a' s='' g='0'/></ctl>"
assert_dict_equal(
x._ctl_to_dict(cmd,message['resp']),
{'type': 'going', 'h': '', 'r': 'a', 's': '', 'g': '0', 'event': 'charge_state'})
cmd = VacBotCommand("GetTestCommand")
message['resp'] = "<ctl td='TestCommand'><test type='command'/></ctl>"
assert_dict_equal(
x._ctl_to_dict(cmd,message['resp']),
{'type': 'command', 'event': 'test_command'}) #Test action.name.replace Get
cmd = VacBotCommand("Charge")
message['resp'] = "<ctl ret='fail' errno='8'/>"
assert_dict_equal(
x._ctl_to_dict(cmd,message['resp']),
{'event': 'charge_state','ret':'fail', 'errno': '8'}) #Test fail from charge command
def make_ecovacs_iot():
eapi = make_api()
with requests_mock.mock() as m:
device_resource = 'test_resource'
device_class = 'ls1ok3' #this is for a D900 series
r = m.post(compile('user.do'),
text='{"todo": "result", "devices": [{"did": "E0000000001234567890", "class": "%s", "nick": "bob"}], "result": "ok"}' % (device_class))
r = m.post(compile('pim/product/getProductIotMap'),
text='{"code":0,"data":[{"classid":"dl8fht","product":{"_id":"5acb0fa87c295c0001876ecf","name":"DEEBOT 600 Series","icon":"5acc32067c295c0001876eea","UILogicId":"dl8fht","ota":false,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5acc32067c295c0001876eea"}},{"classid":"02uwxm","product":{"_id":"5ae1481e7ccd1a0001e1f69e","name":"DEEBOT OZMO Slim10 Series","icon":"5b1dddc48bc45700014035a1","UILogicId":"02uwxm","ota":false,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b1dddc48bc45700014035a1"}},{"classid":"y79a7u","product":{"_id":"5b04c0227ccd1a0001e1f6a8","name":"DEEBOT OZMO 900","icon":"5b04c0217ccd1a0001e1f6a7","UILogicId":"y79a7u","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b04c0217ccd1a0001e1f6a7"}},{"classid":"jr3pqa","product":{"_id":"5b43077b8bc457000140363e","name":"DEEBOT 711","icon":"5b5ac4cc8d5a56000111e769","UILogicId":"jr3pqa","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b5ac4cc8d5a56000111e769"}},{"classid":"uv242z","product":{"_id":"5b5149b4ac0b87000148c128","name":"DEEBOT 710","icon":"5b5ac4e45f21100001882bb9","UILogicId":"uv242z","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5b5ac4e45f21100001882bb9"}},{"classid":"ls1ok3","product":{"_id":"5b6561060506b100015c8868","name":"DEEBOT 900 Series","icon":"5ba4a2cb6c2f120001c32839","UILogicId":"ls1ok3","ota":true,"iconUrl":"https://portal-ww.ecouser.net/api/pim/file/get/5ba4a2cb6c2f120001c32839"}}]}')
d = eapi.devices()
eiotvacuum = d[0]
eiotvacuum['resource'] = device_resource
return EcoVacsIOT('20170101abcdefabcdefa', 'ecouser.net', 'abcdef12', 'base64base64base64base64base64ba', 'na', eiotvacuum)
+236
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@@ -0,0 +1,236 @@
from re import search
from nose.tools import *
import requests_mock
import requests
from sucks import *
import paho.mqtt
# There are few tests for the MQTT stuff here because it's relatively complicated to test given
# the library's design and its multithreaded nature and lack of explicit testing support.
def test_subscribe_to_ctls():
response = None
def save_response(value):
nonlocal response
response = value
x = make_ecovacs_iotmq()
x.subscribe_to_ctls(save_response)
#Test MQTT ctl
mqtt_message = paho.mqtt.client.MQTTMessage
mqtt_message.topic = 'iot/atr/CleanReport/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
mqtt_message.payload = b"<ctl ts='1547824270099' td='CleanReport'><clean type='auto' speed='standard' st='h' rsn='a' a='' l='' sts=''/></ctl>"
x._handle_ctl_mqtt('','',mqtt_message)
assert_dict_equal(response, {'event': 'clean_report', 'ts':'1547824270099','type': 'auto','speed':'standard', 'st':'h','rsn':'a', 'a':'', 'l':'', 'sts':''})
#Test API ctl
api_message = {}
api_message['resp'] = '<ctl td="CleanReport"> <clean type="auto" /> </ctl>'
x.subscribe_to_ctls(save_response)
x._handle_ctl_api("Clean", api_message)
assert_dict_equal(response, {'event': 'clean_report', 'type': 'auto'})
def test_is_iotmq():
x = make_ecovacs_iotmq()
assert_equal(x.vacuum['iotmq'], True)
def test_wrap_command():
x = make_ecovacs_iotmq()
c = x._wrap_command(Charge(), 'E0000000001234567890')
assert_equal(c['cmdName'], Charge().name)
assert_equal(c['toId'], 'E0000000001234567890')
assert_equal(c['payload'], '<ctl><charge type="go" /></ctl>')
def test_iotapi_response():
x = make_ecovacs_iotmq()
with requests_mock.mock() as m:
url = (EcoVacsAPI.PORTAL_URL_FORMAT + "/iot/devmanager.do").format(continent=x.continent)
#Test GetCleanState
resp = {"ret":"ok","resp":"<ctl ret='ok'><clean type='auto' speed='standard' st='h' t='1159' a='15' s='0' tr=''/></ctl>","id":"Qgxa"}
r1 = m.post(url, json=resp)
#r1 = m.post(compile('devmanager.do'), json=resp)
cmd = VacBotCommand("GetCleanState")
c = x._wrap_command(cmd, x.vacuum['did'])
rtnval = x._EcoVacsIOTMQ__call_iotdevmanager_api(c)
assert_equal(rtnval, {'ret':'ok','resp':"<ctl ret='ok'><clean type='auto' speed='standard' st='h' t='1159' a='15' s='0' tr=''/></ctl>",'id':'Qgxa'})
#Test Exception ReadTimeout
r2 = m.post(url, exc=requests.exceptions.ReadTimeout)
#r2 = m.post(compile('iot/devmanager.do'),exc=requests.exceptions.ReadTimeout)
cmd = VacBotCommand("GetCleanState")
c = x._wrap_command(cmd, x.vacuum['did'])
rtnval = x._EcoVacsIOTMQ__call_iotdevmanager_api(c)
assert_equal(rtnval, {}) #Right now it sends back a blank object
#Test Response Fail - Timeout
resp = {"ret":"fail","resp": None, "debug":"wait for response timed out" ,"id":"Qgxa"}
r2 = m.post(url, json=resp)
#r1 = m.post(compile('devmanager.do'), json=resp)
cmd = VacBotCommand("TestCommand")
c = x._wrap_command(cmd, x.vacuum['did'])
rtnval = x._EcoVacsIOTMQ__call_iotdevmanager_api(c)
assert_equal(rtnval, {})
#Test Response Fail - No debug
resp = {"ret":"fail","resp": None ,"id":"Qgxa"}
r2 = m.post(url, json=resp)
#r1 = m.post(compile('devmanager.do'), json=resp)
cmd = VacBotCommand("TestCommand")
c = x._wrap_command(cmd, x.vacuum['did'])
rtnval = x._EcoVacsIOTMQ__call_iotdevmanager_api(c)
assert_equal(rtnval, {})
def test_send_command():
from unittest.mock import MagicMock
x = make_ecovacs_iotmq()
x._handle_ctl_api = MagicMock()
EcoVacsIOTMQ._EcoVacsIOTMQ__call_iotdevmanager_api = MagicMock()
x.send_command(Clean(iotmq=True), '123')
def test_send_ping():
from unittest.mock import MagicMock
x = make_ecovacs_iotmq()
EcoVacsIOTMQ._send_simple_command = MagicMock(return_value=MQTTPublish.paho.MQTT_ERR_SUCCESS)
assert_true(x.send_ping()) #Test ping response success
EcoVacsIOTMQ._send_simple_command = MagicMock(return_value=MQTTPublish.paho.MQTT_ERR_NOT_FOUND)
assert_false(x.send_ping()) #Test ping response fail
def test_on_connect_rc_nonzero():
x = make_ecovacs_iotmq()
assert_raises(RuntimeError, x.on_connect, "client", "userdata", "flags", 1)
def test_xml_to_dict_mqtt():
x = make_ecovacs_iotmq()
test_topic = 'iot/atr/CleanReport/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict_mqtt(test_topic, "<ctl ts='1547824270099' td='CleanReport'><clean type='auto' speed='standard' st='h' rsn='a' a='' l='' sts=''/></ctl>"),
{'event': 'clean_report', 'ts':'1547824270099','type': 'auto','speed':'standard', 'st':'h','rsn':'a', 'a':'', 'l':'', 'sts':''})
assert_dict_equal(
x._ctl_to_dict_mqtt(test_topic, "<ctl ts='1547824270099' td='CleanReport'><clean type='auto' speed='strong' st='h' rsn='a' a='' l='' sts=''/></ctl>"),
{'event': 'clean_report', 'ts':'1547824270099','type': 'auto','speed':'strong', 'st':'h','rsn':'a', 'a':'', 'l':'', 'sts':''})
assert_dict_equal(
x._ctl_to_dict_mqtt(test_topic, "<ctl ts='1547824270099'><clean type='auto' speed='strong' st='h' rsn='a' a='' l='' sts=''/></ctl>"),
{'event': 'clean_report', 'ts':'1547824270099','type': 'auto','speed':'strong', 'st':'h','rsn':'a', 'a':'', 'l':'', 'sts':''}) #Test without td
test_topic = 'iot/atr/BatteryInfo/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict_mqtt(test_topic, "<ctl ts='1547823289924' td='BatteryInfo'><battery power='64'/></ctl>"),
{'event': 'battery_info', 'ts':'1547823289924', 'power': '64'})
assert_dict_equal(
x._ctl_to_dict_mqtt(test_topic, "<ctl ts='1547823289924'><battery power='64'/></ctl>"),
{'event': 'battery_info', 'ts':'1547823289924', 'power': '64'}) #Test without td
test_topic = 'iot/atr/SleepStatus/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict_mqtt(test_topic, "<ctl ts='1547823129670' td='SleepStatus' st='1'/>"),
{'event': 'sleep_status', 'ts':'1547823129670', 'st': '1'})
test_topic = 'iot/atr/errors/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict_mqtt(test_topic, "<ctl ts='1547822982581' td='errors' old='' new='102'/>"),
{'event': 'errors', 'ts':'1547822982581','old':'','new':'102'})
assert_dict_equal(
x._ctl_to_dict_mqtt(test_topic, "<ctl ts='1547822982581' td='errors' old='102' new=''/>"),
{'event': 'errors', 'ts':'1547822982581','old':'102','new':''})
test_topic = 'iot/atr/Pos/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict_mqtt(test_topic, "<ctl td='Pos' t='p' p='7,-10' a='-42' valid='0'/>"),
{'event': 'pos', 't':'p', 'p':'7,-10', 'a':'-42','valid':'0'})
test_topic = 'iot/atr/DustCaseST/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict_mqtt(test_topic, "<ctl ts='1547822871328' td='DustCaseST' st='1'/>"),
{'event': 'dust_case_s_t', 'ts':'1547822871328','st':'1'})
test_topic = 'iot/atr/MapSt/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict_mqtt(test_topic, "<ctl ts='1547823592934' td='MapSt' st='relocGoChgStart' method='' info=''/>"),
{'event': 'map_st', 'ts':'1547823592934', 'st':'reloc_go_chg_start', 'method':'', 'info':''})
test_topic = 'iot/atr/LifeSpan/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict_mqtt(test_topic, "<ctl ret='ok' type='Brush' left='9876' total='18000'/>"),
{'event': 'life_span','ret':'ok', 'type': 'brush', 'left': '9876', 'total': '18000'})
test_topic = 'iot/atr/CustomCommand/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict_mqtt(test_topic, '<ctl td="CustomCommand"><customtag customvar="customvalue1" /></ctl>'),
{'event': 'custom_command', 'customvar': 'customvalue1'})
def test_xml_to_dict_api():
x = make_ecovacs_iotmq()
message = {}
cmd = VacBotCommand("Clean")
message['resp'] = "<ctl ret='ok'><clean type='auto' speed='standard' st='h' t='1159' a='15' s='0' tr=''/></ctl>"
assert_dict_equal(
x._ctl_to_dict_api(cmd,message['resp']),
{'event': 'clean_report', 'type': 'auto', 'speed': 'standard', 'st':'h','t':'1159','a':'15','s':'0','tr':''})
cmd = VacBotCommand("Clean")
message['resp'] = "<ctl ret='ok'><clean type='auto' speed='strong' st='h' t='1159' a='15' s='0' tr=''/></ctl>"
assert_dict_equal(
x._ctl_to_dict_api(cmd,message['resp']),
{'event': 'clean_report', 'type': 'auto', 'speed': 'strong', 'st':'h','t':'1159','a':'15','s':'0','tr':''})
cmd = VacBotCommand("GetBatteryInfo")
message['resp'] = "<ctl ret='ok'><battery power='82'/></ctl>"
assert_dict_equal(
x._ctl_to_dict_api(cmd,message['resp']),
{'event': 'battery_info', 'power': '82'})
cmd = VacBotCommand("GetLifeSpan")
message['resp'] = "<ctl ret='ok' type='Brush' left='9876' total='18000'/>"
assert_dict_equal(
x._ctl_to_dict_api(cmd,message['resp']),
{'event': 'life_span','ret':'ok', 'type': 'brush', 'left': '9876', 'total': '18000'})
cmd = VacBotCommand("Charge")
message['resp'] = "<ctl ts='1547823651958' td='ChargeState'><charge type='Going' h='' r='a' s='' g='0'/></ctl>"
assert_dict_equal(
x._ctl_to_dict_api(cmd,message['resp']),
{'type': 'going', 'h': '', 'r': 'a', 's': '', 'g': '0', 'event': 'charge_state'})
cmd = VacBotCommand("GetTestCommand")
message['resp'] = "<ctl td='TestCommand'><test type='command'/></ctl>"
assert_dict_equal(
x._ctl_to_dict_api(cmd,message['resp']),
{'type': 'command', 'event': 'test_command'}) #Test action.name.replace Get
cmd = VacBotCommand("Charge")
message['resp'] = "<ctl ret='fail' errno='8'/>"
assert_dict_equal(
x._ctl_to_dict_api(cmd,message['resp']),
{'event': 'charge_state','ret':'fail', 'errno': '8'}) #Test fail from charge command
def test_bad_port():
bot = {"did": "E0000000001234567890", "class": "126","resource":"test_resource", "nick": "bob", "iotmq": True}
mqtt = EcoVacsIOTMQ('20170101abcdefabcdefa', 'ecouser.net', 'abcdef12', 'A1b2C3d4efghijklmNOPQrstuvwxyz12', 'na', bot, server_address='test.com:f123')
assert_equal(8883, mqtt.port)
def test_good_port():
bot = {"did": "E0000000001234567890", "class": "126","resource":"test_resource", "nick": "bob", "iotmq": True}
mqtt = EcoVacsIOTMQ('20170101abcdefabcdefa', 'ecouser.net', 'abcdef12', 'A1b2C3d4efghijklmNOPQrstuvwxyz12', 'na', bot, server_address='test.com:8000')
assert_equal(8000, mqtt.port)
def make_ecovacs_iotmq(bot=None):
if bot is None:
bot = {"did": "E0000000001234567890", "class": "126","resource":"test_resource", "nick": "bob", "iotmq": True}
return EcoVacsIOTMQ('20170101abcdefabcdefa', 'ecouser.net', 'abcdef12', 'A1b2C3d4efghijklmNOPQrstuvwxyz12', 'na', bot)
-94
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@@ -1,94 +0,0 @@
from re import search
from nose.tools import *
from sucks import *
import paho.mqtt
# There are few tests for the MQTT stuff here because it's relatively complicated to test given
# the library's design and its multithreaded nature and lack of explicit testing support.
def test_subscribe_to_ctls():
response = None
def save_response(value):
nonlocal response
response = value
x = make_ecovacs_mqtt()
x.subscribe_to_ctls(save_response)
test_message = paho.mqtt.client.MQTTMessage
test_message.topic = 'iot/atr/CleanReport/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
test_message.payload = b"<ctl ts='1547824270099' td='CleanReport'><clean type='auto' speed='standard' st='h' rsn='a' a='' l='' sts=''/></ctl>"
x._handle_ctl('','',test_message)
assert_dict_equal(response, {'event': 'clean_report', 'ts':'1547824270099','type': 'auto','speed':'standard', 'st':'h','rsn':'a', 'a':'', 'l':'', 'sts':''})
def test_xml_to_dict():
x = make_ecovacs_mqtt()
test_topic = 'iot/atr/CleanReport/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict(test_topic, "<ctl ts='1547824270099' td='CleanReport'><clean type='auto' speed='standard' st='h' rsn='a' a='' l='' sts=''/></ctl>"),
{'event': 'clean_report', 'ts':'1547824270099','type': 'auto','speed':'standard', 'st':'h','rsn':'a', 'a':'', 'l':'', 'sts':''})
assert_dict_equal(
x._ctl_to_dict(test_topic, "<ctl ts='1547824270099' td='CleanReport'><clean type='auto' speed='strong' st='h' rsn='a' a='' l='' sts=''/></ctl>"),
{'event': 'clean_report', 'ts':'1547824270099','type': 'auto','speed':'strong', 'st':'h','rsn':'a', 'a':'', 'l':'', 'sts':''})
test_topic = 'iot/atr/BatteryInfo/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict(test_topic, "<ctl ts='1547823289924' td='BatteryInfo'><battery power='64'/></ctl>"),
{'event': 'battery_info', 'ts':'1547823289924', 'power': '64'})
test_topic = 'iot/atr/SleepStatus/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict(test_topic, "<ctl ts='1547823129670' td='SleepStatus' st='1'/>"),
{'event': 'sleep_status', 'ts':'1547823129670', 'st': '1'})
test_topic = 'iot/atr/errors/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict(test_topic, "<ctl ts='1547822982581' td='errors' old='' new='102'/>"),
{'event': 'errors', 'ts':'1547822982581','old':'','new':'102'})
assert_dict_equal(
x._ctl_to_dict(test_topic, "<ctl ts='1547822982581' td='errors' old='102' new=''/>"),
{'event': 'errors', 'ts':'1547822982581','old':'102','new':''})
test_topic = 'iot/atr/Pos/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict(test_topic, "<ctl td='Pos' t='p' p='7,-10' a='-42' valid='0'/>"),
{'event': 'pos', 't':'p', 'p':'7,-10', 'a':'-42','valid':'0'})
test_topic = 'iot/atr/DustCaseST/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict(test_topic, "<ctl ts='1547822871328' td='DustCaseST' st='1'/>"),
{'event': 'dust_case_s_t', 'ts':'1547822871328','st':'1'})
test_topic = 'iot/atr/MapSt/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
assert_dict_equal(
x._ctl_to_dict(test_topic, "<ctl ts='1547823592934' td='MapSt' st='relocGoChgStart' method='' info=''/>"),
{'event': 'map_st', 'ts':'1547823592934', 'st':'reloc_go_chg_start', 'method':'', 'info':''})
# #TODO: Find a way to check if string is b64 encoded
# test_topic = 'iot/atr/trace/%s/%s/%s/x'.format(x.vacuum['did'], x.vacuum['class'], x.vacuum['resource'])
# assert_dict_equal(
# x._ctl_to_dict(test_topic, "<ctl td='trace' trid='227975' tf='3' tt='4' tr='XQAABAAKAAAAAB4AMGAQCdAAAAA='/>"),
# {'event': 'trace', 'trid':'227975', 'tf':'4', 'tr':'XQAABAAKAAAAAB4AMGAQCdAAAAA='})
def test_bad_port():
bot = {"did": "E0000000001234567890", "class": "126","resource":"test_resource", "nick": "bob", "iot": True}
mqtt = EcoVacsMQTT('20170101abcdefabcdefa', 'ecouser.net', 'abcdef12', 'A1b2C3d4efghijklmNOPQrstuvwxyz12', 'na', bot, server_address='test.com:f123')
assert_equal(8883, mqtt.port)
def test_good_port():
bot = {"did": "E0000000001234567890", "class": "126","resource":"test_resource", "nick": "bob", "iot": True}
mqtt = EcoVacsMQTT('20170101abcdefabcdefa', 'ecouser.net', 'abcdef12', 'A1b2C3d4efghijklmNOPQrstuvwxyz12', 'na', bot, server_address='test.com:8000')
assert_equal(8000, mqtt.port)
def make_ecovacs_mqtt(bot=None):
if bot is None:
bot = {"did": "E0000000001234567890", "class": "126","resource":"test_resource", "nick": "bob", "iot": True}
return EcoVacsMQTT('20170101abcdefabcdefa', 'ecouser.net', 'abcdef12', 'A1b2C3d4efghijklmNOPQrstuvwxyz12', 'na', bot)
+8 -4
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@@ -31,7 +31,6 @@ def test_subscribe_to_ctls():
x._handle_ctl(query) x._handle_ctl(query)
assert_dict_equal(response, {'event': 'clean_report', 'type': 'auto'}) assert_dict_equal(response, {'event': 'clean_report', 'type': 'auto'})
def test_xml_to_dict(): def test_xml_to_dict():
x = make_ecovacs_xmpp() x = make_ecovacs_xmpp()
@@ -54,12 +53,17 @@ def test_xml_to_dict():
x._ctl_to_dict(make_ctl('<ctl td="LifeSpan" type="DustCaseHeap" val="-050" total="365"/>')), x._ctl_to_dict(make_ctl('<ctl td="LifeSpan" type="DustCaseHeap" val="-050" total="365"/>')),
{'event': 'life_span', 'type': 'dust_case_heap', 'val': '-050', 'total': '365'}) {'event': 'life_span', 'type': 'dust_case_heap', 'val': '-050', 'total': '365'})
assert_equals(x._ctl_to_dict(make_ctl('<ctl />')), None)
def make_ecovacs_xmpp(bot=None):
def make_ecovacs_xmpp(bot=None, server_address=None):
if bot is None: if bot is None:
bot = {"did": "E0000000001234567890", "class": "126", "nick": "bob", "iot": False} bot = {"did": "E0000000001234567890", "class": "126", "nick": "bob", "iotmq": False}
return EcoVacsXMPP('20170101abcdefabcdefa', 'ecouser.net', 'abcdef12', 'A1b2C3d4efghijklmNOPQrstuvwxyz12', 'na', bot) return EcoVacsXMPP('20170101abcdefabcdefa', 'ecouser.net', 'abcdef12', 'A1b2C3d4efghijklmNOPQrstuvwxyz12', 'na', bot, server_address=server_address)
def test_xmpp_customaddress():
x = make_ecovacs_xmpp(server_address="test.xmppserver.com")
assert_equals(x.server_address, "test.xmppserver.com")
def make_ctl(string): def make_ctl(string):
return ET.fromstring('<query xmlns="com:ctl">' + string + '</query>')[0] return ET.fromstring('<query xmlns="com:ctl">' + string + '</query>')[0]
+15 -72
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@@ -34,7 +34,7 @@ def test_handle_clean_report():
def test_not_iot_send_command_clean(): def test_not_iot_send_command_clean():
from unittest.mock import MagicMock from unittest.mock import MagicMock
v = a_vacbot(iot=False) v = a_vacbot(iotmq=False)
v.xmpp.send_command = MagicMock() v.xmpp.send_command = MagicMock()
v.send_command(VacBotCommand('Clean')) v.send_command(VacBotCommand('Clean'))
assert v.xmpp.send_command.called #test when iot is False it uses xmpp.send_command assert v.xmpp.send_command.called #test when iot is False it uses xmpp.send_command
@@ -42,10 +42,10 @@ def test_not_iot_send_command_clean():
def test_iot_send_command_clean(): def test_iot_send_command_clean():
from unittest.mock import MagicMock from unittest.mock import MagicMock
v = a_vacbot(iot=True) v = a_vacbot(iotmq=True)
v.iot.send_command = MagicMock() v.iotmq.send_command = MagicMock()
v.send_command(VacBotCommand('Clean')) v.send_command(VacBotCommand('Clean'))
assert v.iot.send_command.called #test when iot is True it uses iot.send_command assert v.iotmq.send_command.called #test when iot is True it uses iotmq.send_command
def test_handle_charge_state(): def test_handle_charge_state():
@@ -149,11 +149,11 @@ def test_is_cleaning():
v._handle_ctl({'event': 'charge_state', 'type': 'going'}) v._handle_ctl({'event': 'charge_state', 'type': 'going'})
assert_false(v.is_cleaning) assert_false(v.is_cleaning)
v = a_vacbot(iot=True) v = a_vacbot(iotmq=True)
v._handle_ctl({'event': 'clean_report', 'type': 'spot_area', 'speed':'normal','st':'h'}) v._handle_ctl({'event': 'clean_report', 'type': 'spot_area', 'speed':'normal','st':'h'})
assert_false(v.is_cleaning) #test iot and state paused assert_false(v.is_cleaning) #test iot and state paused
v = a_vacbot(iot=True) v = a_vacbot(iotmq=True)
v._handle_ctl({'event': 'clean_report', 'type': 'spot_area', 'speed':'normal','st':'r'}) v._handle_ctl({'event': 'clean_report', 'type': 'spot_area', 'speed':'normal','st':'r'})
assert_true(v.is_cleaning) #test iot and state running assert_true(v.is_cleaning) #test iot and state running
@@ -198,8 +198,8 @@ def test_send_ping_no_monitor():
assert_equals(None, v.vacuum_status) assert_equals(None, v.vacuum_status)
#Test MQTT Ping #Test MQTT Ping
v = a_vacbot(iot=True) v = a_vacbot(iotmq=True)
mock = v.mqtt.send_ping = Mock() mock = v.iotmq.send_ping = Mock()
v.send_ping() v.send_ping()
# On four failed pings, vacuum state gets set to 'offline' # On four failed pings, vacuum state gets set to 'offline'
@@ -246,9 +246,9 @@ def test_send_ping_with_monitor():
assert_equals(1, request_statuses_mock.call_count) assert_equals(1, request_statuses_mock.call_count)
#Test MQTT Ping #Test MQTT Ping
v = a_vacbot(iot=True, monitor=True) v = a_vacbot(iotmq=True, monitor=True)
ping_mock = v.mqtt.send_ping = Mock() ping_mock = v.iotmq.send_ping = Mock()
request_statuses_mock = v.request_all_statuses = Mock() request_statuses_mock = v.request_all_statuses = Mock()
# First ping should try to fetch statuses # First ping should try to fetch statuses
@@ -366,84 +366,27 @@ def test_handle_unknown_ctl():
# plus errors! # plus errors!
def test_bot_address(): def test_bot_address():
v = a_vacbot(bot={"did": "E0000000001234567890", "class": "126", "nick": "bob", "iot":False}) v = a_vacbot(bot={"did": "E0000000001234567890", "class": "126", "nick": "bob", "iotmq":False})
assert_equals('E0000000001234567890@126.ecorobot.net/atom', v._vacuum_address()) assert_equals('E0000000001234567890@126.ecorobot.net/atom', v._vacuum_address())
def test_bot_address_iot(): def test_bot_address_iot():
v = a_vacbot(bot={"did": "E0000000001234567890", "class": "126", "nick": "bob", "iot":True}) v = a_vacbot(bot={"did": "E0000000001234567890", "class": "126", "nick": "bob", "iotmq":True})
assert_equals('E0000000001234567890', v._vacuum_address()) assert_equals('E0000000001234567890', v._vacuum_address())
def test_model_variation(): def test_model_variation():
v = a_vacbot(bot={"did": "E0000000001234567890", "class": "141", "nick": "bob","iot":False}) v = a_vacbot(bot={"did": "E0000000001234567890", "class": "141", "nick": "bob","iotmq":False})
assert_equals('E0000000001234567890@141.ecorobot.net/atom', v._vacuum_address()) assert_equals('E0000000001234567890@141.ecorobot.net/atom', v._vacuum_address())
def a_vacbot(bot=None, iot=False, monitor=False): def a_vacbot(bot=None, iotmq=False, monitor=False):
if bot is None: if bot is None:
bot = {"did": "E0000000001234567890", "class": "126", "nick": "bob", "iot": iot} bot = {"did": "E0000000001234567890", "class": "126", "nick": "bob", "iotmq": iotmq}
return VacBot('20170101abcdefabcdefa', 'ecouser.net', 'abcdef12', 'A1b2C3d4efghijklmNOPQrstuvwxyz12', return VacBot('20170101abcdefabcdefa', 'ecouser.net', 'abcdef12', 'A1b2C3d4efghijklmNOPQrstuvwxyz12',
bot, 'na', monitor=monitor) bot, 'na', monitor=monitor)
def test_str_to_bool(): def test_str_to_bool():
assert_raises(ValueError, str_to_bool, None) #Value error if str_to_bool can't convert assert_raises(ValueError, str_to_bool, None) #Value error if str_to_bool can't convert
def test_connect_and_wait():
from unittest.mock import MagicMock
v = a_vacbot(iot=False, monitor=True)
v.xmpp.connect_and_wait_until_ready = MagicMock()
v.send_ping = MagicMock()
v.xmpp.schedule = MagicMock()
v.connect_and_wait_until_ready()
assert v.xmpp.schedule.called #test when iot is False it uses xmpp.schedule
v = a_vacbot(iot=True)
v.mqtt.connect_and_wait_until_ready = MagicMock()
v.send_ping = MagicMock()
v.mqtt.schedule = MagicMock()
v.connect_and_wait_until_ready()
assert v.mqtt.schedule.called #test when iot is True it uses mqtt.schedule
def test_run():
from unittest.mock import MagicMock
v = a_vacbot(iot=False)
v.send_command = MagicMock()
v.run(VacBotCommand('Clean'))
assert v.send_command.called
def test_disconnect():
from unittest.mock import MagicMock
v = a_vacbot(iot=False)
v.xmpp.disconnect = MagicMock()
v.disconnect()
assert v.xmpp.disconnect.called
v = a_vacbot(iot=True)
v.mqtt.disconnect = MagicMock()
v.disconnect()
assert v.mqtt.disconnect.called
def test_refresh_all():
from unittest.mock import MagicMock
v = a_vacbot(iot=False)
v.refresh_statuses = MagicMock()
v.refresh_components = MagicMock
v.request_all_statuses()
assert v.refresh_components.called and v.refresh_statuses.called
def test_refresh_statuses():
from unittest.mock import MagicMock
v = a_vacbot(iot=False)
v.run = MagicMock()
v.refresh_statuses()
assert v.run.called
def test_refresh_components():
from unittest.mock import MagicMock
v = a_vacbot(iot=False)
v.run = MagicMock()
v.refresh_components()
assert v.run.called