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Final bits of docs for ModelSerializer fields API
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@ -457,7 +457,7 @@ To do so, open the Django shell, using `python manage.py shell`, then import the
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name = CharField(allow_blank=True, max_length=100, required=False)
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owner = PrimaryKeyRelatedField(queryset=User.objects.all())
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## Specifying which fields should be included
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## Specifying which fields to include
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If you only want a subset of the default fields to be used in a model serializer, you can do so using `fields` or `exclude` options, just as you would with a `ModelForm`.
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@ -499,7 +499,7 @@ You can add extra fields to a `ModelSerializer` or override the default fields b
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Extra fields can correspond to any property or callable on the model.
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## Specifying which fields should be read-only
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## Specifying read only fields
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You may wish to specify multiple fields as read-only. Instead of adding each field explicitly with the `read_only=True` attribute, you may use the shortcut Meta option, `read_only_fields`.
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@ -528,7 +528,7 @@ Please review the [Validators Documentation](/api-guide/validators/) for details
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---
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## Specifying additional keyword arguments for fields.
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## Additional keyword arguments
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There is also a shortcut allowing you to specify arbitrary additional keyword arguments on fields, using the `extra_kwargs` option. Similarly to `read_only_fields` this means you do not need to explicitly declare the field on the serializer.
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@ -567,31 +567,62 @@ The inner `Meta` class on serializers is not inherited from parent classes by de
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Typically we would recommend *not* using inheritance on inner Meta classes, but instead declaring all options explicitly.
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## Advanced `ModelSerializer` usage
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## Customizing field mappings
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The ModelSerializer class also exposes an API that you can override in order to alter how serializer fields are automatically determined when instantiating the serializer.
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#### `.serializer_field_mapping`
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Normally if a `ModelSerializer` does not generate the fields you need by default the you should either add them to the class explicitly, or simply use a regular `Serializer` class instead. However in some cases you may want to create a new base class that defines how the serializer fields are created for any given model.
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### `.serializer_field_mapping`
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A mapping of Django model classes to REST framework serializer classes. You can override this mapping to alter the default serializer classes that should be used for each model class.
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#### `.serializer_relational_field`
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### `.serializer_relational_field`
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This property should be the serializer field class, that is used for relational fields by default. For `ModelSerializer` this defaults to `PrimaryKeyRelatedField`. For `HyperlinkedModelSerializer` this defaults to `HyperlinkedRelatedField`.
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#### The build field methods
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### The field_class and field_kwargs API
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#### `build_standard_field(**kwargs)`
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The following methods are called to determine the class and keyword arguments for each field that should be automatically included on the serializer. Each of these methods should return a two tuple of `(field_class, field_kwargs)`.
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#### `build_relational_field(**kwargs)`
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### `.build_standard_field(self, field_name, model_field)`
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#### `build_nested_field(**kwargs)`
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Called to generate a serializer field that maps to a standard model field.
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#### `build_property_field(**kwargs)`
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The default implementation returns a serializer class based on the `serializer_field_mapping` attribute.
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#### `build_url_field(**kwargs)`
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### `.build_relational_field(self, field_name, relation_info)`
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#### `build_unknown_field(**kwargs)`
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Called to generate a serializer field that maps to a relational model field.
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The default implementation returns a serializer class based on the `serializer_relational_field` attribute.
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The `relation_info` argument is a named tuple, that contains `model_field`, `related_model`, `to_many` and `has_through_model` properties.
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### `.build_nested_field(self, field_name, relation_info, nested_depth)`
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Called to generate a serializer field that maps to a relational model field, when the `depth` option has been set.
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The default implementation dynamically creates a nested serializer class based on either `ModelSerializer` or `HyperlinkedModelSerializer`.
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The `nested_depth` will be the value of the `depth` option, minus one.
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The `relation_info` argument is a named tuple, that contains `model_field`, `related_model`, `to_many` and `has_through_model` properties.
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### `.build_property_field(self, field_name, model_class)`
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Called to generate a serializer field that maps to a property or zero-argument method on the model class.
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The default implementation returns a `ReadOnlyField` class.
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### `.build_url_field(self, field_name, model_class)`
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Called to generate a serializer field for the serializer's own `url` field. The default implementation returns a `HyperlinkedIdentityField` class.
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### `.build_unknown_field(self, field_name, model_class)`
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Called when the field name did not map to any model field or model property.
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The default implementation raises an error, although subclasses may customize this behavior.
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---
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@ -239,6 +239,10 @@ body a:hover{
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}
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}
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h1 code, h2 code, h3 code, h4 code, h5 code {
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color: #333;
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}
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/* sticky footer and footer */
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html, body {
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height: 100%;
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@ -802,10 +802,25 @@ class ModelSerializer(Serializer):
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Return the dict of field names -> field instances that should be
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used for `self.fields` when instantiating the serializer.
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"""
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assert hasattr(self, 'Meta'), (
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'Class {serializer_class} missing "Meta" attribute'.format(
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serializer_class=self.__class__.__name__
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)
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)
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assert hasattr(self.Meta, 'model'), (
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'Class {serializer_class} missing "Meta.model" attribute'.format(
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serializer_class=self.__class__.__name__
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)
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)
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declared_fields = copy.deepcopy(self._declared_fields)
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model = getattr(self.Meta, 'model')
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depth = getattr(self.Meta, 'depth', 0)
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if depth is not None:
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assert depth >= 0, "'depth' may not be negative."
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assert depth <= 10, "'depth' may not be greater than 10."
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# Retrieve metadata about fields & relationships on the model class.
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info = model_meta.get_field_info(model)
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field_names = self.get_field_names(declared_fields, info)
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@ -817,27 +832,32 @@ class ModelSerializer(Serializer):
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field_names, declared_fields, extra_kwargs
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)
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# Now determine the fields that should be included on the serializer.
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ret = OrderedDict()
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# Determine the fields that should be included on the serializer.
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fields = OrderedDict()
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for field_name in field_names:
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# If the field is explicitly declared on the class then use that.
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if field_name in declared_fields:
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# Field is explicitly declared on the class, use that.
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ret[field_name] = declared_fields[field_name]
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fields[field_name] = declared_fields[field_name]
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continue
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# Determine the serializer field class and keyword arguments.
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field_cls, kwargs = self.build_field(field_name, info, model, depth)
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field_class, field_kwargs = self.build_field(
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field_name, info, model, depth
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)
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# Populate any kwargs defined in `Meta.extra_kwargs`
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kwargs = self.build_field_kwargs(kwargs, extra_kwargs, field_name)
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# Include any kwargs defined in `Meta.extra_kwargs`
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field_kwargs = self.build_field_kwargs(
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field_kwargs, extra_kwargs, field_name
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)
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# Create the serializer field.
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ret[field_name] = field_cls(**kwargs)
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fields[field_name] = field_class(**field_kwargs)
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# Add in any hidden fields.
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ret.update(hidden_fields)
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fields.update(hidden_fields)
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return ret
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return fields
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# Methods for determining the set of field names to include...
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@ -916,108 +936,105 @@ class ModelSerializer(Serializer):
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# Methods for constructing serializer fields...
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def build_field(self, field_name, info, model, nested_depth):
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def build_field(self, field_name, info, model_class, nested_depth):
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"""
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Return a two tuple of (cls, kwargs) to build a serializer field with.
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"""
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if field_name in info.fields_and_pk:
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return self.build_standard_field(field_name, info, model)
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model_field = info.fields_and_pk[field_name]
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return self.build_standard_field(field_name, model_field)
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elif field_name in info.relations:
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relation_info = info.relations[field_name]
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if not nested_depth:
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return self.build_relational_field(field_name, info, model)
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return self.build_relational_field(field_name, relation_info)
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else:
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return self.build_nested_field(field_name, info, model, nested_depth)
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return self.build_nested_field(field_name, relation_info, nested_depth)
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elif hasattr(model, field_name):
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return self.build_property_field(field_name, info, model)
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elif hasattr(model_class, field_name):
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return self.build_property_field(field_name, model_class)
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elif field_name == api_settings.URL_FIELD_NAME:
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return self.build_url_field(field_name, info, model)
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return self.build_url_field(field_name, model_class)
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return self.build_unknown_field(field_name, info, model)
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return self.build_unknown_field(field_name, model_class)
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def build_standard_field(self, field_name, info, model):
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def build_standard_field(self, field_name, model_field):
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"""
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Create regular model fields.
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"""
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field_mapping = ClassLookupDict(self.serializer_field_mapping)
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model_field = info.fields_and_pk[field_name]
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field_cls = field_mapping[model_field]
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kwargs = get_field_kwargs(field_name, model_field)
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field_class = field_mapping[model_field]
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field_kwargs = get_field_kwargs(field_name, model_field)
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if 'choices' in kwargs:
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if 'choices' in field_kwargs:
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# Fields with choices get coerced into `ChoiceField`
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# instead of using their regular typed field.
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field_cls = ChoiceField
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if not issubclass(field_cls, ModelField):
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field_class = ChoiceField
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if not issubclass(field_class, ModelField):
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# `model_field` is only valid for the fallback case of
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# `ModelField`, which is used when no other typed field
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# matched to the model field.
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kwargs.pop('model_field', None)
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if not issubclass(field_cls, CharField) and not issubclass(field_cls, ChoiceField):
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field_kwargs.pop('model_field', None)
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if not issubclass(field_class, CharField) and not issubclass(field_class, ChoiceField):
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# `allow_blank` is only valid for textual fields.
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kwargs.pop('allow_blank', None)
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field_kwargs.pop('allow_blank', None)
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return field_cls, kwargs
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return field_class, field_kwargs
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def build_relational_field(self, field_name, info, model):
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def build_relational_field(self, field_name, relation_info):
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"""
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Create fields for forward and reverse relationships.
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"""
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relation_info = info.relations[field_name]
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field_cls = self.serializer_related_class
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kwargs = get_relation_kwargs(field_name, relation_info)
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field_class = self.serializer_related_class
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field_kwargs = get_relation_kwargs(field_name, relation_info)
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# `view_name` is only valid for hyperlinked relationships.
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if not issubclass(field_cls, HyperlinkedRelatedField):
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kwargs.pop('view_name', None)
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if not issubclass(field_class, HyperlinkedRelatedField):
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field_kwargs.pop('view_name', None)
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return field_cls, kwargs
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return field_class, field_kwargs
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def build_nested_field(self, field_name, info, model, nested_depth):
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def build_nested_field(self, field_name, relation_info, nested_depth):
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"""
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Create nested fields for forward and reverse relationships.
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"""
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relation_info = info.relations[field_name]
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class NestedSerializer(ModelSerializer):
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class Meta:
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model = relation_info.related
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depth = nested_depth - 1
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model = relation_info.related_model
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depth = nested_depth
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field_cls = NestedSerializer
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kwargs = get_nested_relation_kwargs(relation_info)
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field_class = NestedSerializer
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field_kwargs = get_nested_relation_kwargs(relation_info)
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return field_cls, kwargs
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return field_class, field_kwargs
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def build_property_field(self, field_name, info, model):
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def build_property_field(self, field_name, model_class):
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"""
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Create a read only field for model methods and properties.
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"""
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field_cls = ReadOnlyField
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kwargs = {}
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field_class = ReadOnlyField
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field_kwargs = {}
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return field_cls, kwargs
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return field_class, field_kwargs
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def build_url_field(self, field_name, info, model):
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def build_url_field(self, field_name, model_class):
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"""
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Create a field representing the object's own URL.
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"""
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field_cls = HyperlinkedIdentityField
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kwargs = get_url_kwargs(model)
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field_class = HyperlinkedIdentityField
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field_kwargs = get_url_kwargs(model_class)
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return field_cls, kwargs
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return field_class, field_kwargs
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def build_unknown_field(self, field_name, info, model):
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def build_unknown_field(self, field_name, model_class):
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"""
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Raise an error on any unknown fields.
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"""
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raise ImproperlyConfigured(
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'Field name `%s` is not valid for model `%s`.' %
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(field_name, model.__class__.__name__)
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(field_name, model_class.__name__)
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)
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def build_field_kwargs(self, kwargs, extra_kwargs, field_name):
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@ -1318,17 +1335,16 @@ class HyperlinkedModelSerializer(ModelSerializer):
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list(model_info.forward_relations.keys())
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)
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def build_nested_field(self, field_name, info, model, nested_depth):
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def build_nested_field(self, field_name, relation_info, nested_depth):
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"""
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Create nested fields for forward and reverse relationships.
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"""
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relation_info = info.relations[field_name]
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class NestedSerializer(HyperlinkedModelSerializer):
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class Meta:
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model = relation_info.related
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model = relation_info.related_model
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depth = nested_depth - 1
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field_cls = NestedSerializer
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kwargs = get_nested_relation_kwargs(relation_info)
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return field_cls, kwargs
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field_class = NestedSerializer
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field_kwargs = get_nested_relation_kwargs(relation_info)
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return field_class, field_kwargs
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@ -24,7 +24,7 @@ FieldInfo = namedtuple('FieldResult', [
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RelationInfo = namedtuple('RelationInfo', [
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'model_field',
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'related',
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'related_model',
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'to_many',
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'has_through_model'
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])
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for field in [field for field in opts.fields if field.serialize and field.rel]:
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forward_relations[field.name] = RelationInfo(
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model_field=field,
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related=_resolve_model(field.rel.to),
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related_model=_resolve_model(field.rel.to),
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to_many=False,
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has_through_model=False
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)
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for field in [field for field in opts.many_to_many if field.serialize]:
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forward_relations[field.name] = RelationInfo(
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model_field=field,
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related=_resolve_model(field.rel.to),
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related_model=_resolve_model(field.rel.to),
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to_many=True,
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has_through_model=(
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not field.rel.through._meta.auto_created
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accessor_name = relation.get_accessor_name()
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reverse_relations[accessor_name] = RelationInfo(
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model_field=None,
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related=relation.model,
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related_model=relation.model,
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to_many=relation.field.rel.multiple,
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has_through_model=False
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)
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accessor_name = relation.get_accessor_name()
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reverse_relations[accessor_name] = RelationInfo(
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model_field=None,
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related=relation.model,
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related_model=relation.model,
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to_many=True,
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has_through_model=(
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(getattr(relation.field.rel, 'through', None) is not None)
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@ -206,7 +206,7 @@ class TestRegularFieldMappings(TestCase):
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with self.assertRaises(ImproperlyConfigured) as excinfo:
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TestSerializer().fields
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expected = 'Field name `invalid` is not valid for model `ModelBase`.'
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expected = 'Field name `invalid` is not valid for model `RegularFieldsModel`.'
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assert str(excinfo.exception) == expected
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def test_missing_field(self):
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