596 lines
14 KiB
Markdown
596 lines
14 KiB
Markdown
<a name="relations.querysetproxy"></a>
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# relations.querysetproxy
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<a name="relations.querysetproxy.QuerysetProxy"></a>
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## QuerysetProxy Objects
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```python
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class QuerysetProxy(ormar.QuerySetProtocol)
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```
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Exposes QuerySet methods on relations, but also handles creating and removing
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of through Models for m2m relations.
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<a name="relations.querysetproxy.QuerysetProxy.__init__"></a>
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#### \_\_init\_\_
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```python
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| __init__(relation: "Relation", type_: "RelationType", qryset: "QuerySet" = None) -> None
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```
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<a name="relations.querysetproxy.QuerysetProxy.queryset"></a>
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#### queryset
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```python
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| @property
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| queryset() -> "QuerySet"
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```
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Returns queryset if it's set, AttributeError otherwise.
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**Returns**:
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`(QuerySet)`: QuerySet
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<a name="relations.querysetproxy.QuerysetProxy.queryset"></a>
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#### queryset
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```python
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| @queryset.setter
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| queryset(value: "QuerySet") -> None
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```
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Set's the queryset. Initialized in RelationProxy.
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**Arguments**:
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- `value (QuerySet)`: QuerySet
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<a name="relations.querysetproxy.QuerysetProxy._assign_child_to_parent"></a>
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#### \_assign\_child\_to\_parent
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```python
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| _assign_child_to_parent(child: Optional["T"]) -> None
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```
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Registers child in parents RelationManager.
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**Arguments**:
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- `child (Model)`: child to register on parent side.
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<a name="relations.querysetproxy.QuerysetProxy._register_related"></a>
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#### \_register\_related
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```python
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| _register_related(child: Union["T", Sequence[Optional["T"]]]) -> None
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```
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Registers child/ children in parents RelationManager.
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**Arguments**:
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- `child (Union[Model,List[Model]])`: child or list of children models to register.
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<a name="relations.querysetproxy.QuerysetProxy._clean_items_on_load"></a>
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#### \_clean\_items\_on\_load
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```python
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| _clean_items_on_load() -> None
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```
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Cleans the current list of the related models.
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<a name="relations.querysetproxy.QuerysetProxy.create_through_instance"></a>
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#### create\_through\_instance
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```python
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| async create_through_instance(child: "T") -> None
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```
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Crete a through model instance in the database for m2m relations.
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**Arguments**:
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- `child (Model)`: child model instance
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<a name="relations.querysetproxy.QuerysetProxy.delete_through_instance"></a>
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#### delete\_through\_instance
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```python
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| async delete_through_instance(child: "T") -> None
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```
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Removes through model instance from the database for m2m relations.
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**Arguments**:
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- `child (Model)`: child model instance
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<a name="relations.querysetproxy.QuerysetProxy.exists"></a>
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#### exists
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```python
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| async exists() -> bool
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```
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Returns a bool value to confirm if there are rows matching the given criteria
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(applied with `filter` and `exclude` if set).
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Actual call delegated to QuerySet.
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**Returns**:
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`(bool)`: result of the check
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<a name="relations.querysetproxy.QuerysetProxy.count"></a>
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#### count
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```python
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| async count() -> int
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```
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Returns number of rows matching the given criteria
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(applied with `filter` and `exclude` if set before).
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Actual call delegated to QuerySet.
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**Returns**:
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`(int)`: number of rows
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<a name="relations.querysetproxy.QuerysetProxy.clear"></a>
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#### clear
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```python
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| async clear(keep_reversed: bool = True) -> int
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```
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Removes all related models from given relation.
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Removes all through models for m2m relation.
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For reverse FK relations keep_reversed flag marks if the reversed models
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should be kept or deleted from the database too (False means that models
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will be deleted, and not only removed from relation).
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**Arguments**:
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- `keep_reversed (bool)`: flag if reverse models in reverse FK should be deleted
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or not, keep_reversed=False deletes them from database.
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**Returns**:
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`(int)`: number of deleted models
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<a name="relations.querysetproxy.QuerysetProxy.first"></a>
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#### first
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```python
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| async first(**kwargs: Any) -> "Model"
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```
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Gets the first row from the db ordered by primary key column ascending.
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Actual call delegated to QuerySet.
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List of related models is cleared before the call.
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**Arguments**:
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- `kwargs ()`:
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**Returns**:
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`(_asyncio.Future)`:
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<a name="relations.querysetproxy.QuerysetProxy.get"></a>
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#### get
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```python
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| async get(**kwargs: Any) -> "Model"
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```
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Get's the first row from the db meeting the criteria set by kwargs.
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If no criteria set it will return the last row in db sorted by pk.
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Passing a criteria is actually calling filter(**kwargs) method described below.
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Actual call delegated to QuerySet.
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List of related models is cleared before the call.
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**Raises**:
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- `NoMatch`: if no rows are returned
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- `MultipleMatches`: if more than 1 row is returned.
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**Arguments**:
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- `kwargs (Any)`: fields names and proper value types
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**Returns**:
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`(Model)`: returned model
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<a name="relations.querysetproxy.QuerysetProxy.all"></a>
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#### all
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```python
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| async all(**kwargs: Any) -> Sequence[Optional["Model"]]
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```
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Returns all rows from a database for given model for set filter options.
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Passing kwargs is a shortcut and equals to calling `filter(**kwrags).all()`.
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If there are no rows meeting the criteria an empty list is returned.
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Actual call delegated to QuerySet.
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List of related models is cleared before the call.
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**Arguments**:
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- `kwargs (Any)`: fields names and proper value types
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**Returns**:
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`(List[Model])`: list of returned models
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<a name="relations.querysetproxy.QuerysetProxy.create"></a>
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#### create
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```python
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| async create(**kwargs: Any) -> "Model"
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```
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Creates the model instance, saves it in a database and returns the updates model
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(with pk populated if not passed and autoincrement is set).
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The allowed kwargs are `Model` fields names and proper value types.
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For m2m relation the through model is created automatically.
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Actual call delegated to QuerySet.
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**Arguments**:
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- `kwargs (Any)`: fields names and proper value types
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**Returns**:
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`(Model)`: created model
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<a name="relations.querysetproxy.QuerysetProxy.get_or_create"></a>
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#### get\_or\_create
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```python
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| async get_or_create(**kwargs: Any) -> "Model"
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```
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Combination of create and get methods.
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Tries to get a row meeting the criteria fro kwargs
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and if `NoMatch` exception is raised
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it creates a new one with given kwargs.
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**Arguments**:
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- `kwargs (Any)`: fields names and proper value types
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**Returns**:
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`(Model)`: returned or created Model
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<a name="relations.querysetproxy.QuerysetProxy.update_or_create"></a>
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#### update\_or\_create
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```python
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| async update_or_create(**kwargs: Any) -> "Model"
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```
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Updates the model, or in case there is no match in database creates a new one.
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Actual call delegated to QuerySet.
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**Arguments**:
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- `kwargs (Any)`: fields names and proper value types
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**Returns**:
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`(Model)`: updated or created model
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<a name="relations.querysetproxy.QuerysetProxy.filter"></a>
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#### filter
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```python
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| filter(**kwargs: Any) -> "QuerysetProxy"
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```
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Allows you to filter by any `Model` attribute/field
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as well as to fetch instances, with a filter across an FK relationship.
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You can use special filter suffix to change the filter operands:
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* exact - like `album__name__exact='Malibu'` (exact match)
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* iexact - like `album__name__iexact='malibu'` (exact match case insensitive)
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* contains - like `album__name__contains='Mal'` (sql like)
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* icontains - like `album__name__icontains='mal'` (sql like case insensitive)
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* in - like `album__name__in=['Malibu', 'Barclay']` (sql in)
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* gt - like `position__gt=3` (sql >)
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* gte - like `position__gte=3` (sql >=)
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* lt - like `position__lt=3` (sql <)
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* lte - like `position__lte=3` (sql <=)
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* startswith - like `album__name__startswith='Mal'` (exact start match)
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* istartswith - like `album__name__istartswith='mal'` (case insensitive)
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* endswith - like `album__name__endswith='ibu'` (exact end match)
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* iendswith - like `album__name__iendswith='IBU'` (case insensitive)
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Actual call delegated to QuerySet.
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**Arguments**:
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- `kwargs (Any)`: fields names and proper value types
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**Returns**:
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`(QuerysetProxy)`: filtered QuerysetProxy
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<a name="relations.querysetproxy.QuerysetProxy.exclude"></a>
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#### exclude
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```python
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| exclude(**kwargs: Any) -> "QuerysetProxy"
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```
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Works exactly the same as filter and all modifiers (suffixes) are the same,
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but returns a *not* condition.
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So if you use `filter(name='John')` which is `where name = 'John'` in SQL,
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the `exclude(name='John')` equals to `where name <> 'John'`
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Note that all conditions are joined so if you pass multiple values it
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becomes a union of conditions.
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`exclude(name='John', age>=35)` will become
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`where not (name='John' and age>=35)`
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Actual call delegated to QuerySet.
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**Arguments**:
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- `kwargs (Any)`: fields names and proper value types
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**Returns**:
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`(QuerysetProxy)`: filtered QuerysetProxy
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<a name="relations.querysetproxy.QuerysetProxy.select_related"></a>
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#### select\_related
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```python
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| select_related(related: Union[List, str]) -> "QuerysetProxy"
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```
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Allows to prefetch related models during the same query.
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**With `select_related` always only one query is run against the database**,
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meaning that one (sometimes complicated) join is generated and later nested
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models are processed in python.
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To fetch related model use `ForeignKey` names.
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To chain related `Models` relation use double underscores between names.
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Actual call delegated to QuerySet.
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**Arguments**:
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- `related (Union[List, str])`: list of relation field names, can be linked by '__' to nest
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**Returns**:
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`(QuerysetProxy)`: QuerysetProxy
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<a name="relations.querysetproxy.QuerysetProxy.prefetch_related"></a>
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#### prefetch\_related
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```python
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| prefetch_related(related: Union[List, str]) -> "QuerysetProxy"
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```
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Allows to prefetch related models during query - but opposite to
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`select_related` each subsequent model is fetched in a separate database query.
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**With `prefetch_related` always one query per Model is run against the
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database**, meaning that you will have multiple queries executed one
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after another.
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To fetch related model use `ForeignKey` names.
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To chain related `Models` relation use double underscores between names.
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Actual call delegated to QuerySet.
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**Arguments**:
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- `related (Union[List, str])`: list of relation field names, can be linked by '__' to nest
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**Returns**:
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`(QuerysetProxy)`: QuerysetProxy
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<a name="relations.querysetproxy.QuerysetProxy.limit"></a>
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#### limit
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```python
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| limit(limit_count: int) -> "QuerysetProxy"
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```
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You can limit the results to desired number of parent models.
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Actual call delegated to QuerySet.
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**Arguments**:
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- `limit_count (int)`: number of models to limit
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**Returns**:
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`(QuerysetProxy)`: QuerysetProxy
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<a name="relations.querysetproxy.QuerysetProxy.offset"></a>
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#### offset
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```python
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| offset(offset: int) -> "QuerysetProxy"
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```
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You can also offset the results by desired number of main models.
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Actual call delegated to QuerySet.
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**Arguments**:
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- `offset (int)`: numbers of models to offset
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**Returns**:
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`(QuerysetProxy)`: QuerysetProxy
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<a name="relations.querysetproxy.QuerysetProxy.fields"></a>
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#### fields
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```python
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| fields(columns: Union[List, str, Set, Dict]) -> "QuerysetProxy"
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```
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With `fields()` you can select subset of model columns to limit the data load.
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Note that `fields()` and `exclude_fields()` works both for main models
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(on normal queries like `get`, `all` etc.)
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as well as `select_related` and `prefetch_related`
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models (with nested notation).
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You can select specified fields by passing a `str, List[str], Set[str] or
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dict` with nested definition.
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To include related models use notation
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`{related_name}__{column}[__{optional_next} etc.]`.
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`fields()` can be called several times, building up the columns to select.
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If you include related models into `select_related()` call but you won't specify
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columns for those models in fields - implies a list of all fields for
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those nested models.
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Mandatory fields cannot be excluded as it will raise `ValidationError`,
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to exclude a field it has to be nullable.
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Pk column cannot be excluded - it's always auto added even if
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not explicitly included.
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You can also pass fields to include as dictionary or set.
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To mark a field as included in a dictionary use it's name as key
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and ellipsis as value.
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To traverse nested models use nested dictionaries.
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To include fields at last level instead of nested dictionary a set can be used.
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To include whole nested model specify model related field name and ellipsis.
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Actual call delegated to QuerySet.
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**Arguments**:
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- `columns (Union[List, str, Set, Dict])`: columns to include
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**Returns**:
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`(QuerysetProxy)`: QuerysetProxy
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<a name="relations.querysetproxy.QuerysetProxy.exclude_fields"></a>
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#### exclude\_fields
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```python
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| exclude_fields(columns: Union[List, str, Set, Dict]) -> "QuerysetProxy"
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```
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With `exclude_fields()` you can select subset of model columns that will
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be excluded to limit the data load.
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It's the opposite of `fields()` method so check documentation above
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to see what options are available.
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Especially check above how you can pass also nested dictionaries
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and sets as a mask to exclude fields from whole hierarchy.
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Note that `fields()` and `exclude_fields()` works both for main models
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(on normal queries like `get`, `all` etc.)
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as well as `select_related` and `prefetch_related` models
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(with nested notation).
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Mandatory fields cannot be excluded as it will raise `ValidationError`,
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to exclude a field it has to be nullable.
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Pk column cannot be excluded - it's always auto added even
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if explicitly excluded.
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Actual call delegated to QuerySet.
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**Arguments**:
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- `columns (Union[List, str, Set, Dict])`: columns to exclude
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**Returns**:
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`(QuerysetProxy)`: QuerysetProxy
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<a name="relations.querysetproxy.QuerysetProxy.order_by"></a>
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#### order\_by
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```python
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| order_by(columns: Union[List, str]) -> "QuerysetProxy"
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```
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With `order_by()` you can order the results from database based on your
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choice of fields.
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You can provide a string with field name or list of strings with fields names.
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Ordering in sql will be applied in order of names you provide in order_by.
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By default if you do not provide ordering `ormar` explicitly orders by
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all primary keys
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If you are sorting by nested models that causes that the result rows are
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unsorted by the main model `ormar` will combine those children rows into
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one main model.
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The main model will never duplicate in the result
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To order by main model field just provide a field name
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To sort on nested models separate field names with dunder '__'.
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You can sort this way across all relation types -> `ForeignKey`,
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reverse virtual FK and `ManyToMany` fields.
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To sort in descending order provide a hyphen in front of the field name
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Actual call delegated to QuerySet.
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**Arguments**:
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- `columns (Union[List, str])`: columns by which models should be sorted
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**Returns**:
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`(QuerysetProxy)`: QuerysetProxy
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