Allocating Objects on the HeapΒΆ
-
PyObject *_PyObject_New(PyTypeObject *type)ΒΆ
- Return value: New reference.
-
PyVarObject *_PyObject_NewVar(PyTypeObject *type, Py_ssize_t size)ΒΆ
- Return value: New reference.
-
PyObject *PyObject_Init(PyObject *op, PyTypeObject *type)ΒΆ
- Return value: Borrowed reference. Part of the Stable ABI.
Initialize a newly allocated object op with its type and initial reference. Returns the initialized object. Other fields of the object are not initialized. Despite its name, this function is unrelated to the objectβs
__init__()
method (tp_init
slot). Specifically, this function does not call the objectβs__init__()
method.In general, consider this function to be a low-level routine. Use
tp_alloc
where possible. For implementingtp_alloc
for your type, preferPyType_GenericAlloc()
orPyObject_New()
.Note
This function only initializes the objectβs memory corresponding to the initial
PyObject
structure. It does not zero the rest.
-
PyVarObject *PyObject_InitVar(PyVarObject *op, PyTypeObject *type, Py_ssize_t size)ΒΆ
- Return value: Borrowed reference. Part of the Stable ABI.
This does everything
PyObject_Init()
does, and also initializes the length information for a variable-size object.Note
This function only initializes some of the objectβs memory. It does not zero the rest.
-
PyObject_New(TYPE, typeobj)ΒΆ
Allocates a new Python object using the C structure type TYPE and the Python type object typeobj (
PyTypeObject*
) by callingPyObject_Malloc()
to allocate memory and initializing it likePyObject_Init()
. The caller will own the only reference to the object (i.e. its reference count will be one).Avoid calling this directly to allocate memory for an object; call the typeβs
tp_alloc
slot instead.When populating a typeβs
tp_alloc
slot,PyType_GenericAlloc()
is preferred over a custom function that simply calls this macro.This macro does not call
tp_alloc
,tp_new
(__new__()
), ortp_init
(__init__()
).This cannot be used for objects with
Py_TPFLAGS_HAVE_GC
set intp_flags
; usePyObject_GC_New
instead.Memory allocated by this macro must be freed with
PyObject_Free()
(usually called via the objectβstp_free
slot).Note
The returned memory is not guaranteed to have been completely zeroed before it was initialized.
Note
This macro does not construct a fully initialized object of the given type; it merely allocates memory and prepares it for further initialization by
tp_init
. To construct a fully initialized object, call typeobj instead. For example:PyObject *foo = PyObject_CallNoArgs((PyObject *)&PyFoo_Type);
-
PyObject_NewVar(TYPE, typeobj, size)ΒΆ
Like
PyObject_New
except:It allocates enough memory for the TYPE structure plus size (
Py_ssize_t
) fields of the size given by thetp_itemsize
field of typeobj.The memory is initialized like
PyObject_InitVar()
.
This is useful for implementing objects like tuples, which are able to determine their size at construction time. Embedding the array of fields into the same allocation decreases the number of allocations, improving the memory management efficiency.
Avoid calling this directly to allocate memory for an object; call the typeβs
tp_alloc
slot instead.When populating a typeβs
tp_alloc
slot,PyType_GenericAlloc()
is preferred over a custom function that simply calls this macro.This cannot be used for objects with
Py_TPFLAGS_HAVE_GC
set intp_flags
; usePyObject_GC_NewVar
instead.Memory allocated by this function must be freed with
PyObject_Free()
(usually called via the objectβstp_free
slot).Note
The returned memory is not guaranteed to have been completely zeroed before it was initialized.
Note
This macro does not construct a fully initialized object of the given type; it merely allocates memory and prepares it for further initialization by
tp_init
. To construct a fully initialized object, call typeobj instead. For example:PyObject *list_instance = PyObject_CallNoArgs((PyObject *)&PyList_Type);
-
void PyObject_Del(void *op)ΒΆ
Same as
PyObject_Free()
.
-
PyObject _Py_NoneStructΒΆ
Object which is visible in Python as
None
. This should only be accessed using thePy_None
macro, which evaluates to a pointer to this object.
See also
- Module Objects
To allocate and create extension modules.