264 lines
8.9 KiB
ReStructuredText
264 lines
8.9 KiB
ReStructuredText
.. highlight:: c
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.. _typeobjects:
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Type Objects
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------------
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.. index:: object: type
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.. c:type:: PyTypeObject
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The C structure of the objects used to describe built-in types.
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.. c:var:: PyObject* PyType_Type
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This is the type object for type objects; it is the same object as
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:class:`type` in the Python layer.
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.. c:function:: int PyType_Check(PyObject *o)
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Return non-zero if the object *o* is a type object, including instances of
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types derived from the standard type object. Return 0 in all other cases.
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.. c:function:: int PyType_CheckExact(PyObject *o)
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Return non-zero if the object *o* is a type object, but not a subtype of the
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standard type object. Return 0 in all other cases.
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.. c:function:: unsigned int PyType_ClearCache()
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Clear the internal lookup cache. Return the current version tag.
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.. c:function:: unsigned long PyType_GetFlags(PyTypeObject* type)
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Return the :c:member:`~PyTypeObject.tp_flags` member of *type*. This function is primarily
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meant for use with `Py_LIMITED_API`; the individual flag bits are
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guaranteed to be stable across Python releases, but access to
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:c:member:`~PyTypeObject.tp_flags` itself is not part of the limited API.
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.. versionadded:: 3.2
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.. versionchanged:: 3.4
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The return type is now ``unsigned long`` rather than ``long``.
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.. c:function:: void PyType_Modified(PyTypeObject *type)
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Invalidate the internal lookup cache for the type and all of its
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subtypes. This function must be called after any manual
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modification of the attributes or base classes of the type.
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.. c:function:: int PyType_HasFeature(PyTypeObject *o, int feature)
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Return non-zero if the type object *o* sets the feature *feature*.
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Type features are denoted by single bit flags.
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.. c:function:: int PyType_IS_GC(PyTypeObject *o)
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Return true if the type object includes support for the cycle detector; this
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tests the type flag :const:`Py_TPFLAGS_HAVE_GC`.
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.. c:function:: int PyType_IsSubtype(PyTypeObject *a, PyTypeObject *b)
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Return true if *a* is a subtype of *b*.
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This function only checks for actual subtypes, which means that
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:meth:`~class.__subclasscheck__` is not called on *b*. Call
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:c:func:`PyObject_IsSubclass` to do the same check that :func:`issubclass`
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would do.
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.. c:function:: PyObject* PyType_GenericAlloc(PyTypeObject *type, Py_ssize_t nitems)
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Generic handler for the :c:member:`~PyTypeObject.tp_alloc` slot of a type object. Use
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Python's default memory allocation mechanism to allocate a new instance and
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initialize all its contents to ``NULL``.
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.. c:function:: PyObject* PyType_GenericNew(PyTypeObject *type, PyObject *args, PyObject *kwds)
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Generic handler for the :c:member:`~PyTypeObject.tp_new` slot of a type object. Create a
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new instance using the type's :c:member:`~PyTypeObject.tp_alloc` slot.
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.. c:function:: int PyType_Ready(PyTypeObject *type)
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Finalize a type object. This should be called on all type objects to finish
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their initialization. This function is responsible for adding inherited slots
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from a type's base class. Return ``0`` on success, or return ``-1`` and sets an
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exception on error.
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.. c:function:: void* PyType_GetSlot(PyTypeObject *type, int slot)
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Return the function pointer stored in the given slot. If the
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result is ``NULL``, this indicates that either the slot is ``NULL``,
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or that the function was called with invalid parameters.
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Callers will typically cast the result pointer into the appropriate
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function type.
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See :c:member:`PyType_Slot.slot` for possible values of the *slot* argument.
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An exception is raised if *type* is not a heap type.
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.. versionadded:: 3.4
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.. c:function:: PyObject* PyType_GetModule(PyTypeObject *type)
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Return the module object associated with the given type when the type was
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created using :c:func:`PyType_FromModuleAndSpec`.
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If no module is associated with the given type, sets :py:class:`TypeError`
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and returns ``NULL``.
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This function is usually used to get the module in which a method is defined.
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Note that in such a method, ``PyType_GetModule(Py_TYPE(self))``
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may not return the intended result.
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``Py_TYPE(self)`` may be a *subclass* of the intended class, and subclasses
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are not necessarily defined in the same module as their superclass.
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See :c:type:`PyCMethod` to get the class that defines the method.
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.. versionadded:: 3.9
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.. c:function:: void* PyType_GetModuleState(PyTypeObject *type)
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Return the state of the module object associated with the given type.
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This is a shortcut for calling :c:func:`PyModule_GetState()` on the result
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of :c:func:`PyType_GetModule`.
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If no module is associated with the given type, sets :py:class:`TypeError`
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and returns ``NULL``.
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If the *type* has an associated module but its state is ``NULL``,
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returns ``NULL`` without setting an exception.
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.. versionadded:: 3.9
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Creating Heap-Allocated Types
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.............................
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The following functions and structs are used to create
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:ref:`heap types <heap-types>`.
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.. c:function:: PyObject* PyType_FromModuleAndSpec(PyObject *module, PyType_Spec *spec, PyObject *bases)
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Creates and returns a heap type object from the *spec*
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(:const:`Py_TPFLAGS_HEAPTYPE`).
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If *bases* is a tuple, the created heap type contains all types contained
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in it as base types.
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If *bases* is ``NULL``, the *Py_tp_base* slot is used instead.
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If that also is ``NULL``, the new type derives from :class:`object`.
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The *module* argument can be used to record the module in which the new
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class is defined. It must be a module object or ``NULL``.
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If not ``NULL``, the module is associated with the new type and can later be
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retreived with :c:func:`PyType_GetModule`.
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The associated module is not inherited by subclasses; it must be specified
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for each class individually.
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This function calls :c:func:`PyType_Ready` on the new type.
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.. versionadded:: 3.9
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.. c:function:: PyObject* PyType_FromSpecWithBases(PyType_Spec *spec, PyObject *bases)
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Equivalent to ``PyType_FromModuleAndSpec(NULL, spec, bases)``.
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.. versionadded:: 3.3
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.. c:function:: PyObject* PyType_FromSpec(PyType_Spec *spec)
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Equivalent to ``PyType_FromSpecWithBases(spec, NULL)``.
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.. c:type:: PyType_Spec
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Structure defining a type's behavior.
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.. c:member:: const char* PyType_Spec.name
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Name of the type, used to set :c:member:`PyTypeObject.tp_name`.
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.. c:member:: int PyType_Spec.basicsize
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.. c:member:: int PyType_Spec.itemsize
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Size of the instance in bytes, used to set
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:c:member:`PyTypeObject.tp_basicsize` and
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:c:member:`PyTypeObject.tp_itemsize`.
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.. c:member:: int PyType_Spec.flags
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Type flags, used to set :c:member:`PyTypeObject.tp_flags`.
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If the ``Py_TPFLAGS_HEAPTYPE`` flag is not set,
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:c:func:`PyType_FromSpecWithBases` sets it automatically.
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.. c:member:: PyType_Slot *PyType_Spec.slots
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Array of :c:type:`PyType_Slot` structures.
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Terminated by the special slot value ``{0, NULL}``.
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.. c:type:: PyType_Slot
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Structure defining optional functionality of a type, containing a slot ID
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and a value pointer.
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.. c:member:: int PyType_Slot.slot
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A slot ID.
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Slot IDs are named like the field names of the structures
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:c:type:`PyTypeObject`, :c:type:`PyNumberMethods`,
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:c:type:`PySequenceMethods`, :c:type:`PyMappingMethods` and
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:c:type:`PyAsyncMethods` with an added ``Py_`` prefix.
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For example, use:
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* ``Py_tp_dealloc`` to set :c:member:`PyTypeObject.tp_dealloc`
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* ``Py_nb_add`` to set :c:member:`PyNumberMethods.nb_add`
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* ``Py_sq_length`` to set :c:member:`PySequenceMethods.sq_length`
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The following fields cannot be set at all using :c:type:`PyType_Spec` and
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:c:type:`PyType_Slot`:
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* :c:member:`~PyTypeObject.tp_dict`
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* :c:member:`~PyTypeObject.tp_mro`
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* :c:member:`~PyTypeObject.tp_cache`
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* :c:member:`~PyTypeObject.tp_subclasses`
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* :c:member:`~PyTypeObject.tp_weaklist`
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* :c:member:`~PyTypeObject.tp_vectorcall`
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* :c:member:`~PyTypeObject.tp_weaklistoffset`
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(see :ref:`PyMemberDef <pymemberdef-offsets>`)
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* :c:member:`~PyTypeObject.tp_dictoffset`
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(see :ref:`PyMemberDef <pymemberdef-offsets>`)
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* :c:member:`~PyTypeObject.tp_vectorcall_offset`
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(see :ref:`PyMemberDef <pymemberdef-offsets>`)
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The following fields cannot be set using :c:type:`PyType_Spec` and
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:c:type:`PyType_Slot` under the limited API:
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* :c:member:`~PyBufferProcs.bf_getbuffer`
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* :c:member:`~PyBufferProcs.bf_releasebuffer`
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Setting :c:data:`Py_tp_bases` may be problematic on some platforms.
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To avoid issues, use the *bases* argument of
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:py:func:`PyType_FromSpecWithBases` instead.
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.. versionchanged:: 3.9
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Slots in :c:type:`PyBufferProcs` in may be set in the unlimited API.
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.. c:member:: void *PyType_Slot.pfunc
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The desired value of the slot. In most cases, this is a pointer
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to a function.
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May not be ``NULL``.
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