# coding: utf-8 """ Groupe PSA Connected Car - WEB API B2C *PSA B2C Connected Car API* # Introduction This is the description of the *Groupe PSA Connected Car V2 API*. The speccification is is based on **OpenAPI Specification version 3** and can be displayed via [ReDoc](https://github.com/Rebilly/ReDoc)a or [Swagger](http://swagger.io). This API allows applications to fetch data from the connected Vehicles data platform. # Authentication PSA Connected Car APIs uses the [OAuth 2.0](https://tools.ietf.org/html/rfc6749) protocol for authentication and Authorization. any application require a valid [Access Token](https://tools.ietf.org/html/rfc6749#section-1.4) to access to user data. # Errors Error codes returned by all REST APIs comply with the standard. Nevertheless, PSA Services (callers) need to have more complete data structures (even when the answer is not Http-OK) to better detail the type of error by providing application code, message and a debugging code(for investigation purposes). The http code of the response is managed by the protocol itself (in the header). **Errors are returned as a generic error response:** * ```xError``` object model. # noqa: E501 OpenAPI spec version: 4.0 Generated by: https://github.com/swagger-api/swagger-codegen.git """ import pprint import re # noqa: F401 import six class Position(object): """NOTE: This class is auto generated by the swagger code generator program. Do not edit the class manually. """ """ Attributes: swagger_types (dict): The key is attribute name and the value is attribute type. attribute_map (dict): The key is attribute name and the value is json key in definition. """ swagger_types = { 'type': 'str', 'geometry': 'Point', 'properties': 'PositionProperties' } attribute_map = { 'type': 'type', 'geometry': 'geometry', 'properties': 'properties' } def __init__(self, type='Feature', geometry=None, properties=None): # noqa: E501 """Position - a model defined in Swagger""" # noqa: E501 self._type = None self._geometry = None self._properties = None self.discriminator = None if type is not None: self.type = type if geometry is not None: self.geometry = geometry if properties is not None: self.properties = properties @property def type(self): """Gets the type of this Position. # noqa: E501 :return: The type of this Position. # noqa: E501 :rtype: str """ return self._type @type.setter def type(self, type): """Sets the type of this Position. :param type: The type of this Position. # noqa: E501 :type: str """ allowed_values = ["Feature"] # noqa: E501 if type not in allowed_values: raise ValueError( "Invalid value for `type` ({0}), must be one of {1}" # noqa: E501 .format(type, allowed_values) ) self._type = type @property def geometry(self): """Gets the geometry of this Position. # noqa: E501 :return: The geometry of this Position. # noqa: E501 :rtype: Point """ return self._geometry @geometry.setter def geometry(self, geometry): """Sets the geometry of this Position. :param geometry: The geometry of this Position. # noqa: E501 :type: Point """ self._geometry = geometry @property def properties(self): """Gets the properties of this Position. # noqa: E501 :return: The properties of this Position. # noqa: E501 :rtype: PositionProperties """ return self._properties @properties.setter def properties(self, properties): """Sets the properties of this Position. :param properties: The properties of this Position. # noqa: E501 :type: PositionProperties """ self._properties = properties def to_dict(self): """Returns the model properties as a dict""" result = {} for attr, _ in six.iteritems(self.swagger_types): value = getattr(self, attr) if isinstance(value, list): result[attr] = list(map( lambda x: x.to_dict() if hasattr(x, "to_dict") else x, value )) elif hasattr(value, "to_dict"): result[attr] = value.to_dict() elif isinstance(value, dict): result[attr] = dict(map( lambda item: (item[0], item[1].to_dict()) if hasattr(item[1], "to_dict") else item, value.items() )) else: result[attr] = value if issubclass(Position, dict): for key, value in self.items(): result[key] = value return result def to_str(self): """Returns the string representation of the model""" return pprint.pformat(self.to_dict()) def __repr__(self): """For `print` and `pprint`""" return self.to_str() def __eq__(self, other): """Returns true if both objects are equal""" if not isinstance(other, Position): return False return self.__dict__ == other.__dict__ def __ne__(self, other): """Returns true if both objects are not equal""" return not self == other