hass-core/homeassistant/components/sensor/teksavvy.py
Otto Winter 678f284015 Upgrade pylint to 1.8.2 (#12274)
* Upgrade pylint to 1.8.1

* Fix no-else-return

* Fix bad-whitespace

* Fix too-many-nested-blocks

* Fix raising-format-tuple

See https://github.com/PyCQA/pylint/blob/master/doc/whatsnew/1.8.rst

* Fix len-as-condition

* Fix logging-not-lazy

Not sure about that TEMP_CELSIUS though, but internally it's probably just like if you concatenated any other (variable) string

* Fix stop-iteration-return

* Fix useless-super-delegation

* Fix trailing-comma-tuple

Both of these seem to simply be bugs:
 * Nest: The value of self._humidity never seems to be used anywhere
 * Dovado: The called API method seems to expect a "normal" number

* Fix redefined-argument-from-local

* Fix consider-using-enumerate

* Fix wrong-import-order

* Fix arguments-differ

* Fix missed no-else-return

* Fix no-member and related

* Fix signatures-differ

* Revert "Upgrade pylint to 1.8.1"

This reverts commit af78aa00f125a7d34add97b9d50c14db48412211.

* Fix arguments-differ

* except for device_tracker

* Cleanup

* Fix test using positional argument

* Fix line too long

I forgot to run flake8 - shame on me... 🙃

* Fix bad-option-value for 1.6.5

* Fix arguments-differ for device_tracker

* Upgrade pylint to 1.8.2

* 👕 Fix missed no-member
2018-02-11 09:20:28 -08:00

159 lines
5.6 KiB
Python

"""
Support for TekSavvy Bandwidth Monitor.
For more details about this platform, please refer to the documentation at
https://home-assistant.io/components/sensor.teksavvy/
"""
from datetime import timedelta
import logging
import asyncio
import async_timeout
import voluptuous as vol
from homeassistant.components.sensor import PLATFORM_SCHEMA
from homeassistant.const import (
CONF_API_KEY, CONF_MONITORED_VARIABLES, CONF_NAME)
from homeassistant.helpers.aiohttp_client import async_get_clientsession
import homeassistant.helpers.config_validation as cv
from homeassistant.helpers.entity import Entity
from homeassistant.util import Throttle
_LOGGER = logging.getLogger(__name__)
DEFAULT_NAME = 'TekSavvy'
CONF_TOTAL_BANDWIDTH = 'total_bandwidth'
GIGABYTES = 'GB' # type: str
PERCENT = '%' # type: str
MIN_TIME_BETWEEN_UPDATES = timedelta(hours=1)
REQUEST_TIMEOUT = 5 # seconds
SENSOR_TYPES = {
'usage': ['Usage', PERCENT, 'mdi:percent'],
'usage_gb': ['Usage', GIGABYTES, 'mdi:download'],
'limit': ['Data limit', GIGABYTES, 'mdi:download'],
'onpeak_download': ['On Peak Download', GIGABYTES, 'mdi:download'],
'onpeak_upload': ['On Peak Upload ', GIGABYTES, 'mdi:upload'],
'onpeak_total': ['On Peak Total', GIGABYTES, 'mdi:download'],
'offpeak_download': ['Off Peak download', GIGABYTES, 'mdi:download'],
'offpeak_upload': ['Off Peak Upload', GIGABYTES, 'mdi:upload'],
'offpeak_total': ['Off Peak Total', GIGABYTES, 'mdi:download'],
'onpeak_remaining': ['Remaining', GIGABYTES, 'mdi:download']
}
API_HA_MAP = (
('OnPeakDownload', 'onpeak_download'),
('OnPeakUpload', 'onpeak_upload'),
('OffPeakDownload', 'offpeak_download'),
('OffPeakUpload', 'offpeak_upload'))
PLATFORM_SCHEMA = PLATFORM_SCHEMA.extend({
vol.Required(CONF_MONITORED_VARIABLES):
vol.All(cv.ensure_list, [vol.In(SENSOR_TYPES)]),
vol.Required(CONF_API_KEY): cv.string,
vol.Required(CONF_TOTAL_BANDWIDTH): cv.positive_int,
vol.Optional(CONF_NAME, default=DEFAULT_NAME): cv.string,
})
@asyncio.coroutine
def async_setup_platform(hass, config, async_add_devices, discovery_info=None):
"""Set up the sensor platform."""
websession = async_get_clientsession(hass)
apikey = config.get(CONF_API_KEY)
bandwidthcap = config.get(CONF_TOTAL_BANDWIDTH)
ts_data = TekSavvyData(hass.loop, websession, apikey, bandwidthcap)
ret = yield from ts_data.async_update()
if ret is False:
_LOGGER.error("Invalid Teksavvy API key: %s", apikey)
return
name = config.get(CONF_NAME)
sensors = []
for variable in config[CONF_MONITORED_VARIABLES]:
sensors.append(TekSavvySensor(ts_data, variable, name))
async_add_devices(sensors, True)
class TekSavvySensor(Entity):
"""Representation of TekSavvy Bandwidth sensor."""
def __init__(self, teksavvydata, sensor_type, name):
"""Initialize the sensor."""
self.client_name = name
self.type = sensor_type
self._name = SENSOR_TYPES[sensor_type][0]
self._unit_of_measurement = SENSOR_TYPES[sensor_type][1]
self._icon = SENSOR_TYPES[sensor_type][2]
self.teksavvydata = teksavvydata
self._state = None
@property
def name(self):
"""Return the name of the sensor."""
return '{} {}'.format(self.client_name, self._name)
@property
def state(self):
"""Return the state of the sensor."""
return self._state
@property
def unit_of_measurement(self):
"""Return the unit of measurement of this entity, if any."""
return self._unit_of_measurement
@property
def icon(self):
"""Icon to use in the frontend, if any."""
return self._icon
@asyncio.coroutine
def async_update(self):
"""Get the latest data from TekSavvy and update the state."""
yield from self.teksavvydata.async_update()
if self.type in self.teksavvydata.data:
self._state = round(self.teksavvydata.data[self.type], 2)
class TekSavvyData(object):
"""Get data from TekSavvy API."""
def __init__(self, loop, websession, api_key, bandwidth_cap):
"""Initialize the data object."""
self.loop = loop
self.websession = websession
self.api_key = api_key
self.bandwidth_cap = bandwidth_cap
self.data = {"limit": self.bandwidth_cap}
@asyncio.coroutine
@Throttle(MIN_TIME_BETWEEN_UPDATES)
def async_update(self):
"""Get the TekSavvy bandwidth data from the web service."""
headers = {"TekSavvy-APIKey": self.api_key}
_LOGGER.debug("Updating TekSavvy data")
url = "https://api.teksavvy.com/"\
"web/Usage/UsageSummaryRecords?$filter=IsCurrent%20eq%20true"
with async_timeout.timeout(REQUEST_TIMEOUT, loop=self.loop):
req = yield from self.websession.get(url, headers=headers)
if req.status != 200:
_LOGGER.error("Request failed with status: %u", req.status)
return False
data = yield from req.json()
for (api, ha_name) in API_HA_MAP:
self.data[ha_name] = float(data["value"][0][api])
on_peak_download = self.data["onpeak_download"]
on_peak_upload = self.data["onpeak_upload"]
off_peak_download = self.data["offpeak_download"]
off_peak_upload = self.data["offpeak_upload"]
limit = self.data["limit"]
self.data["usage"] = 100*on_peak_download/self.bandwidth_cap
self.data["usage_gb"] = on_peak_download
self.data["onpeak_total"] = on_peak_download + on_peak_upload
self.data["offpeak_total"] = off_peak_download + off_peak_upload
self.data["onpeak_remaining"] = limit - on_peak_download
return True