mirror of
https://github.com/encode/django-rest-framework.git
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538 lines
19 KiB
Python
538 lines
19 KiB
Python
# coding: utf-8
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from __future__ import unicode_literals
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from collections import OrderedDict
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from django.core.exceptions import ImproperlyConfigured, ObjectDoesNotExist
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from django.db.models import Manager
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from django.db.models.query import QuerySet
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from django.urls import NoReverseMatch, Resolver404, get_script_prefix, resolve
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from django.utils import six
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from django.utils.encoding import (
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python_2_unicode_compatible, smart_text, uri_to_iri
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)
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from django.utils.six.moves.urllib import parse as urlparse
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from django.utils.translation import ugettext_lazy as _
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from rest_framework.fields import (
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Field, empty, get_attribute, is_simple_callable, iter_options
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)
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from rest_framework.reverse import reverse
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from rest_framework.settings import api_settings
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from rest_framework.utils import html
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def method_overridden(method_name, klass, instance):
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"""
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Determine if a method has been overridden.
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"""
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method = getattr(klass, method_name)
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default_method = getattr(method, '__func__', method) # Python 3 compat
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return default_method is not getattr(instance, method_name).__func__
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class Hyperlink(six.text_type):
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"""
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A string like object that additionally has an associated name.
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We use this for hyperlinked URLs that may render as a named link
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in some contexts, or render as a plain URL in others.
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"""
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def __new__(self, url, obj):
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ret = six.text_type.__new__(self, url)
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ret.obj = obj
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return ret
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def __getnewargs__(self):
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return(str(self), self.name,)
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@property
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def name(self):
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# This ensures that we only called `__str__` lazily,
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# as in some cases calling __str__ on a model instances *might*
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# involve a database lookup.
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return six.text_type(self.obj)
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is_hyperlink = True
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@python_2_unicode_compatible
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class PKOnlyObject(object):
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"""
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This is a mock object, used for when we only need the pk of the object
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instance, but still want to return an object with a .pk attribute,
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in order to keep the same interface as a regular model instance.
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"""
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def __init__(self, pk):
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self.pk = pk
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def __str__(self):
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return "%s" % self.pk
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# We assume that 'validators' are intended for the child serializer,
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# rather than the parent serializer.
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MANY_RELATION_KWARGS = (
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'read_only', 'write_only', 'required', 'default', 'initial', 'source',
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'label', 'help_text', 'style', 'error_messages', 'allow_empty',
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'html_cutoff', 'html_cutoff_text'
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)
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class RelatedField(Field):
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queryset = None
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html_cutoff = None
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html_cutoff_text = None
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def __init__(self, **kwargs):
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self.queryset = kwargs.pop('queryset', self.queryset)
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cutoff_from_settings = api_settings.HTML_SELECT_CUTOFF
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if cutoff_from_settings is not None:
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cutoff_from_settings = int(cutoff_from_settings)
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self.html_cutoff = kwargs.pop('html_cutoff', cutoff_from_settings)
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self.html_cutoff_text = kwargs.pop(
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'html_cutoff_text',
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self.html_cutoff_text or _(api_settings.HTML_SELECT_CUTOFF_TEXT)
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)
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if not method_overridden('get_queryset', RelatedField, self):
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assert self.queryset is not None or kwargs.get('read_only', None), (
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'Relational field must provide a `queryset` argument, '
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'override `get_queryset`, or set read_only=`True`.'
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)
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assert not (self.queryset is not None and kwargs.get('read_only', None)), (
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'Relational fields should not provide a `queryset` argument, '
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'when setting read_only=`True`.'
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)
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kwargs.pop('many', None)
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kwargs.pop('allow_empty', None)
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super(RelatedField, self).__init__(**kwargs)
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def __new__(cls, *args, **kwargs):
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# We override this method in order to automagically create
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# `ManyRelatedField` classes instead when `many=True` is set.
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if kwargs.pop('many', False):
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return cls.many_init(*args, **kwargs)
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return super(RelatedField, cls).__new__(cls, *args, **kwargs)
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@classmethod
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def many_init(cls, *args, **kwargs):
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"""
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This method handles creating a parent `ManyRelatedField` instance
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when the `many=True` keyword argument is passed.
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Typically you won't need to override this method.
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Note that we're over-cautious in passing most arguments to both parent
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and child classes in order to try to cover the general case. If you're
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overriding this method you'll probably want something much simpler, eg:
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@classmethod
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def many_init(cls, *args, **kwargs):
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kwargs['child'] = cls()
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return CustomManyRelatedField(*args, **kwargs)
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"""
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list_kwargs = {'child_relation': cls(*args, **kwargs)}
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for key in kwargs:
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if key in MANY_RELATION_KWARGS:
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list_kwargs[key] = kwargs[key]
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return ManyRelatedField(**list_kwargs)
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def run_validation(self, data=empty):
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# We force empty strings to None values for relational fields.
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if data == '':
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data = None
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return super(RelatedField, self).run_validation(data)
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def get_queryset(self):
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queryset = self.queryset
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if isinstance(queryset, (QuerySet, Manager)):
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# Ensure queryset is re-evaluated whenever used.
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# Note that actually a `Manager` class may also be used as the
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# queryset argument. This occurs on ModelSerializer fields,
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# as it allows us to generate a more expressive 'repr' output
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# for the field.
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# Eg: 'MyRelationship(queryset=ExampleModel.objects.all())'
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queryset = queryset.all()
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return queryset
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def use_pk_only_optimization(self):
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return False
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def get_attribute(self, instance):
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if self.use_pk_only_optimization() and self.source_attrs:
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# Optimized case, return a mock object only containing the pk attribute.
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try:
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attribute_instance = get_attribute(instance, self.source_attrs[:-1])
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value = attribute_instance.serializable_value(self.source_attrs[-1])
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if is_simple_callable(value):
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# Handle edge case where the relationship `source` argument
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# points to a `get_relationship()` method on the model
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value = value().pk
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return PKOnlyObject(pk=value)
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except AttributeError:
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pass
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# Standard case, return the object instance.
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return super(RelatedField, self).get_attribute(instance)
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def get_choices(self, cutoff=None):
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queryset = self.get_queryset()
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if queryset is None:
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# Ensure that field.choices returns something sensible
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# even when accessed with a read-only field.
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return {}
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if cutoff is not None:
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queryset = queryset[:cutoff]
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return OrderedDict([
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(
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self.to_representation(item),
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self.display_value(item)
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)
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for item in queryset
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])
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@property
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def choices(self):
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return self.get_choices()
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@property
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def grouped_choices(self):
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return self.choices
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def iter_options(self):
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return iter_options(
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self.get_choices(cutoff=self.html_cutoff),
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cutoff=self.html_cutoff,
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cutoff_text=self.html_cutoff_text
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)
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def display_value(self, instance):
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return six.text_type(instance)
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class StringRelatedField(RelatedField):
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"""
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A read only field that represents its targets using their
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plain string representation.
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"""
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def __init__(self, **kwargs):
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kwargs['read_only'] = True
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super(StringRelatedField, self).__init__(**kwargs)
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def to_representation(self, value):
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return six.text_type(value)
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class PrimaryKeyRelatedField(RelatedField):
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default_error_messages = {
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'required': _('This field is required.'),
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'does_not_exist': _('Invalid pk "{pk_value}" - object does not exist.'),
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'incorrect_type': _('Incorrect type. Expected pk value, received {data_type}.'),
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}
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def __init__(self, **kwargs):
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self.pk_field = kwargs.pop('pk_field', None)
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super(PrimaryKeyRelatedField, self).__init__(**kwargs)
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def use_pk_only_optimization(self):
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return True
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def to_internal_value(self, data):
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if self.pk_field is not None:
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data = self.pk_field.to_internal_value(data)
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try:
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return self.get_queryset().get(pk=data)
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except ObjectDoesNotExist:
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self.fail('does_not_exist', pk_value=data)
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except (TypeError, ValueError):
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self.fail('incorrect_type', data_type=type(data).__name__)
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def to_representation(self, value):
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if self.pk_field is not None:
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return self.pk_field.to_representation(value.pk)
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return value.pk
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class HyperlinkedRelatedField(RelatedField):
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lookup_field = 'pk'
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view_name = None
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default_error_messages = {
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'required': _('This field is required.'),
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'no_match': _('Invalid hyperlink - No URL match.'),
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'incorrect_match': _('Invalid hyperlink - Incorrect URL match.'),
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'does_not_exist': _('Invalid hyperlink - Object does not exist.'),
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'incorrect_type': _('Incorrect type. Expected URL string, received {data_type}.'),
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}
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def __init__(self, view_name=None, **kwargs):
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if view_name is not None:
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self.view_name = view_name
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assert self.view_name is not None, 'The `view_name` argument is required.'
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self.lookup_field = kwargs.pop('lookup_field', self.lookup_field)
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self.lookup_url_kwarg = kwargs.pop('lookup_url_kwarg', self.lookup_field)
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self.format = kwargs.pop('format', None)
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# We include this simply for dependency injection in tests.
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# We can't add it as a class attributes or it would expect an
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# implicit `self` argument to be passed.
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self.reverse = reverse
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super(HyperlinkedRelatedField, self).__init__(**kwargs)
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def use_pk_only_optimization(self):
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return self.lookup_field == 'pk'
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def get_object(self, view_name, view_args, view_kwargs):
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"""
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Return the object corresponding to a matched URL.
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Takes the matched URL conf arguments, and should return an
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object instance, or raise an `ObjectDoesNotExist` exception.
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"""
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lookup_value = view_kwargs[self.lookup_url_kwarg]
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lookup_kwargs = {self.lookup_field: lookup_value}
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return self.get_queryset().get(**lookup_kwargs)
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def get_url(self, obj, view_name, request, format):
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"""
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Given an object, return the URL that hyperlinks to the object.
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May raise a `NoReverseMatch` if the `view_name` and `lookup_field`
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attributes are not configured to correctly match the URL conf.
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"""
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# Unsaved objects will not yet have a valid URL.
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if hasattr(obj, 'pk') and obj.pk in (None, ''):
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return None
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lookup_value = getattr(obj, self.lookup_field)
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kwargs = {self.lookup_url_kwarg: lookup_value}
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return self.reverse(view_name, kwargs=kwargs, request=request, format=format)
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def to_internal_value(self, data):
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request = self.context.get('request', None)
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try:
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http_prefix = data.startswith(('http:', 'https:'))
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except AttributeError:
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self.fail('incorrect_type', data_type=type(data).__name__)
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if http_prefix:
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# If needed convert absolute URLs to relative path
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data = urlparse.urlparse(data).path
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prefix = get_script_prefix()
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if data.startswith(prefix):
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data = '/' + data[len(prefix):]
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data = uri_to_iri(data)
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try:
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match = resolve(data)
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except Resolver404:
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self.fail('no_match')
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try:
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expected_viewname = request.versioning_scheme.get_versioned_viewname(
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self.view_name, request
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)
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except AttributeError:
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expected_viewname = self.view_name
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if match.view_name != expected_viewname:
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self.fail('incorrect_match')
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try:
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return self.get_object(match.view_name, match.args, match.kwargs)
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except (ObjectDoesNotExist, TypeError, ValueError):
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self.fail('does_not_exist')
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def to_representation(self, value):
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assert 'request' in self.context, (
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"`%s` requires the request in the serializer"
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" context. Add `context={'request': request}` when instantiating "
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"the serializer." % self.__class__.__name__
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)
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request = self.context['request']
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format = self.context.get('format', None)
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# By default use whatever format is given for the current context
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# unless the target is a different type to the source.
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#
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# Eg. Consider a HyperlinkedIdentityField pointing from a json
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# representation to an html property of that representation...
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#
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# '/snippets/1/' should link to '/snippets/1/highlight/'
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# ...but...
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# '/snippets/1/.json' should link to '/snippets/1/highlight/.html'
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if format and self.format and self.format != format:
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format = self.format
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# Return the hyperlink, or error if incorrectly configured.
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try:
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url = self.get_url(value, self.view_name, request, format)
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except NoReverseMatch:
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msg = (
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'Could not resolve URL for hyperlinked relationship using '
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'view name "%s". You may have failed to include the related '
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'model in your API, or incorrectly configured the '
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'`lookup_field` attribute on this field.'
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)
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if value in ('', None):
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value_string = {'': 'the empty string', None: 'None'}[value]
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msg += (
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" WARNING: The value of the field on the model instance "
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"was %s, which may be why it didn't match any "
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"entries in your URL conf." % value_string
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)
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raise ImproperlyConfigured(msg % self.view_name)
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if url is None:
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return None
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return Hyperlink(url, value)
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class HyperlinkedIdentityField(HyperlinkedRelatedField):
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"""
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A read-only field that represents the identity URL for an object, itself.
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This is in contrast to `HyperlinkedRelatedField` which represents the
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URL of relationships to other objects.
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"""
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def __init__(self, view_name=None, **kwargs):
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assert view_name is not None, 'The `view_name` argument is required.'
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kwargs['read_only'] = True
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kwargs['source'] = '*'
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super(HyperlinkedIdentityField, self).__init__(view_name, **kwargs)
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def use_pk_only_optimization(self):
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# We have the complete object instance already. We don't need
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# to run the 'only get the pk for this relationship' code.
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return False
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class SlugRelatedField(RelatedField):
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"""
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A read-write field that represents the target of the relationship
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by a unique 'slug' attribute.
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"""
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default_error_messages = {
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'does_not_exist': _('Object with {slug_name}={value} does not exist.'),
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'invalid': _('Invalid value.'),
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}
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def __init__(self, slug_field=None, **kwargs):
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assert slug_field is not None, 'The `slug_field` argument is required.'
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self.slug_field = slug_field
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super(SlugRelatedField, self).__init__(**kwargs)
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def to_internal_value(self, data):
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try:
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return self.get_queryset().get(**{self.slug_field: data})
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except ObjectDoesNotExist:
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self.fail('does_not_exist', slug_name=self.slug_field, value=smart_text(data))
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except (TypeError, ValueError):
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self.fail('invalid')
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def to_representation(self, obj):
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return getattr(obj, self.slug_field)
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class ManyRelatedField(Field):
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"""
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Relationships with `many=True` transparently get coerced into instead being
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a ManyRelatedField with a child relationship.
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The `ManyRelatedField` class is responsible for handling iterating through
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the values and passing each one to the child relationship.
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This class is treated as private API.
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You shouldn't generally need to be using this class directly yourself,
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and should instead simply set 'many=True' on the relationship.
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"""
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initial = []
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default_empty_html = []
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default_error_messages = {
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'not_a_list': _('Expected a list of items but got type "{input_type}".'),
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'empty': _('This list may not be empty.')
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}
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html_cutoff = None
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html_cutoff_text = None
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def __init__(self, child_relation=None, *args, **kwargs):
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self.child_relation = child_relation
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self.allow_empty = kwargs.pop('allow_empty', True)
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cutoff_from_settings = api_settings.HTML_SELECT_CUTOFF
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if cutoff_from_settings is not None:
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cutoff_from_settings = int(cutoff_from_settings)
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self.html_cutoff = kwargs.pop('html_cutoff', cutoff_from_settings)
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self.html_cutoff_text = kwargs.pop(
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'html_cutoff_text',
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self.html_cutoff_text or _(api_settings.HTML_SELECT_CUTOFF_TEXT)
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)
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assert child_relation is not None, '`child_relation` is a required argument.'
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super(ManyRelatedField, self).__init__(*args, **kwargs)
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self.child_relation.bind(field_name='', parent=self)
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def get_value(self, dictionary):
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# We override the default field access in order to support
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# lists in HTML forms.
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if html.is_html_input(dictionary):
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# Don't return [] if the update is partial
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if self.field_name not in dictionary:
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if getattr(self.root, 'partial', False):
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return empty
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return dictionary.getlist(self.field_name)
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return dictionary.get(self.field_name, empty)
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def to_internal_value(self, data):
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if isinstance(data, type('')) or not hasattr(data, '__iter__'):
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self.fail('not_a_list', input_type=type(data).__name__)
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if not self.allow_empty and len(data) == 0:
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self.fail('empty')
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return [
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self.child_relation.to_internal_value(item)
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for item in data
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|
]
|
|
|
|
def get_attribute(self, instance):
|
|
# Can't have any relationships if not created
|
|
if hasattr(instance, 'pk') and instance.pk is None:
|
|
return []
|
|
|
|
relationship = get_attribute(instance, self.source_attrs)
|
|
return relationship.all() if hasattr(relationship, 'all') else relationship
|
|
|
|
def to_representation(self, iterable):
|
|
return [
|
|
self.child_relation.to_representation(value)
|
|
for value in iterable
|
|
]
|
|
|
|
def get_choices(self, cutoff=None):
|
|
return self.child_relation.get_choices(cutoff)
|
|
|
|
@property
|
|
def choices(self):
|
|
return self.get_choices()
|
|
|
|
@property
|
|
def grouped_choices(self):
|
|
return self.choices
|
|
|
|
def iter_options(self):
|
|
return iter_options(
|
|
self.get_choices(cutoff=self.html_cutoff),
|
|
cutoff=self.html_cutoff,
|
|
cutoff_text=self.html_cutoff_text
|
|
)
|