Skip to main content

Geolocation is a simple and clever application which uses google maps api. This application allows you to easily and quickly get information about given localisation. Application returns such information as: country, city, route/street, street number, lat and lng,travel distance and time for a matrix of origins and destinations.

Project description

https://travis-ci.org/slawek87/geolocation-python.svg?branch=master https://badge.fury.io/py/geolocation-python.svg

What is Geolocation 0.2.2?

Geolocation is a simple and clever application which uses google maps api.

  1. Geocode Module allows you to easily and quickly get information about given location.

Geocode Module returns such information as:
  • country,

  • country short form,

  • city,

  • route/street,

  • street number,

  • postal code,

  • formatted address,

  • administrative areas,

  • lat,

  • lng.

  1. Distance Module allows you to get information about travel distance and time for a matrix of origins and destinations.

Distance Module returns such information as:
  • origin address,

  • destination address,

  • duration,

  • distance: kilometers, meters, miles.

Python2 or Python3?

Both!. Currently it supports python 2.7, 3.3 and 3.4.

What do You need?

To use this application you need to have Google API key.

Google Maps Documentation

  1. Open APIs console.

https://github.com/iknowledge-io/geolocation-python/blob/geolocation-0.2.0/docs/images/geocode-1.png?raw=true
  1. Turn On Geocode API.

https://github.com/iknowledge-io/geolocation-python/blob/geolocation-0.2.0/docs/images/geocode-2.png?raw=true
  1. Turn On Distance Matrix API.

https://github.com/iknowledge-io/geolocation-python/blob/geolocation-0.2.0/docs/images/distance-1.png?raw=true
  1. Get your API Key.

https://github.com/iknowledge-io/geolocation-python/blob/geolocation-0.2.0/docs/images/geocode-3.png?raw=true

How to install it?

pip install geolocation-python

How to use Geocode Module?

# -- coding: utf-8 --

from geolocation.main import GoogleMaps from geolocation.distance_matrix.client import DistanceMatrixApiClient

address = “New York City Wall Street 12”

google_maps = GoogleMaps(api_key=’your_google_maps_key’)

location = google_maps.search(location=address) # sends search to Google Maps.

print(location.all()) # returns all locations.

my_location = location.first() # returns only first location.

print(my_location.city) print(my_location.route) print(my_location.street_number) print(my_location.postal_code)

for administrative_area in my_location.administrative_area:
print(“{}: {} ({})”.format(administrative_area.area_type,

administrative_area.name, administrative_area.short_name))

print(my_location.country) print(my_location.country_shortcut)

print(my_location.formatted_address)

print(my_location.lat) print(my_location.lng)

# reverse geocode

lat = 40.7060008 lng = -74.0088189

my_location = google_maps.search(lat=lat, lng=lng).first()

How to use Distance Module?

Mode parameter — specifies the mode of transport to use when calculating directions.

Valid values are: * driving (default) indicates standard driving directions using the road network. * walking requests walking directions via pedestrian paths & sidewalks (where available). * bicycling requests bicycling directions via bicycle paths & preferred streets (currently only available in the US and some Canadian cities). * transit requests distance calculation via public transit routes (where available).

Avoid parameter - Directions may be calculated that adhere to certain restrictions. Restrictions are indicated by use of the avoid parameter, and an argument to that parameter indicating the restriction to avoid.

The following restrictions are supported:
  • avoid=tolls

  • avoid=highways

  • avoid=ferries

    # -- coding: utf-8 --

    from geolocation.main import GoogleMaps from geolocation.distance_matrix.client import DistanceMatrixApiClient

    origins = [‘rybnik’, ‘oslo’] destinations = [‘zagrzeb’]

    google_maps = GoogleMaps(api_key=’your_google_maps_key’)

    items = google_maps.distance(origins, destinations).all() # default mode parameter is DistanceMatrixApiClient.MODE_DRIVING.

    for item in items:

    print(‘origin: %s’ % item.origin)

    print(‘destination: %s’ % item.destination)

    print(‘km: %s’ % item.distance.kilometers)

    print(‘m: %s’ % item.distance.meters)

    print(‘miles: %s’ % item.distance.miles)

    print(‘duration: %s’ % item.duration) # returns string.

    print(‘duration datetime: %s’ % item.duration.datetime) # returns datetime.

    # you can also get items from duration, returns int() values. print(‘duration days: %s’ % item.duration.days)

    print(‘duration hours: %s’ % item.duration.hours)

    print(‘duration minutes: %s’ % item.duration.minutes)

    print(‘duration seconds: %s’ % item.duration.seconds)

Mode Bicycling:

items = google_maps.distance(origins, destinations, DistanceMatrixApiClient.MODE_BICYCLING).all()

for item in items:

print(‘origin: %s’ % item.origin)

print(‘destination: %s’ % item.destination)

print(‘km: %s’ % item.distance.kilometers)

print(‘m: %s’ % item.distance.meters)

print(‘miles: %s’ % item.distance.miles)

print(‘duration: %s’ % item.duration)

Mode Walking:

items = google_maps.distance(origins, destinations, DistanceMatrixApiClient.MODE_WALKING).all()

for item in items:

print(‘origin: %s’ % item.origin)

print(‘destination: %s’ % item.destination)

print(‘km: %s’ % item.distance.kilometers)

print(‘m: %s’ % item.distance.meters)

print(‘miles: %s’ % item.distance.miles)

print(‘duration: %s’ % item.duration)

Mode Transit:

items = google_maps.distance(origins, destinations, DistanceMatrixApiClient.MODE_TRANSIT).all()

for item in items:

print(‘origin: %s’ % item.origin)

print(‘destination: %s’ % item.destination)

print(‘km: %s’ % item.distance.kilometers)

print(‘m: %s’ % item.distance.meters)

print(‘miles: %s’ % item.distance.miles)

print(‘duration: %s’ % item.duration)

Mode Highway:

items = google_maps.distance(origins, destinations, avoid=DistanceMatrixApiClient.AVOID_HIGHWAYS).all()

for item in items:

print(‘origin: %s’ % item.origin)

print(‘destination: %s’ % item.destination)

print(‘km: %s’ % item.distance.kilometers)

print(‘m: %s’ % item.distance.meters)

print(‘miles: %s’ % item.distance.miles)

print(‘duration: %s’ % item.duration)

Avoid Ferries:

items = google_maps.distance(origins, destinations, avoid=DistanceMatrixApiClient.AVOID_FERRIES).all()

for item in items:

print(‘origin: %s’ % item.origin)

print(‘destination: %s’ % item.destination)

print(‘km: %s’ % item.distance.kilometers)

print(‘m: %s’ % item.distance.meters)

print(‘miles: %s’ % item.distance.miles)

print(‘duration: %s’ % item.duration)

Avoid Tolls:

items = google_maps.distance(origins, destinations, avoid=DistanceMatrixApiClient.AVOID_TOLLS).all()

for item in items:

print(‘origin: %s’ % item.origin)

print(‘destination: %s’ % item.destination)

print(‘km: %s’ % item.distance.kilometers)

print(‘m: %s’ % item.distance.meters)

print(‘miles: %s’ % item.distance.miles)

print(‘duration: %s’ % item.duration)

More examples you should find here .

Project details


Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distribution

geolocation-python-0.2.2.tar.gz (8.4 kB view hashes)

Uploaded Source

Supported by

AWS AWS Cloud computing and Security Sponsor Datadog Datadog Monitoring Fastly Fastly CDN Google Google Download Analytics Microsoft Microsoft PSF Sponsor Pingdom Pingdom Monitoring Sentry Sentry Error logging StatusPage StatusPage Status page