132 lines
4.3 KiB
ReStructuredText
132 lines
4.3 KiB
ReStructuredText
.. highlightlang:: c
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.. _intobjects:
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Plain Integer Objects
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---------------------
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.. index:: object: integer
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.. ctype:: PyIntObject
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This subtype of :ctype:`PyObject` represents a Python integer object.
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.. cvar:: PyTypeObject PyInt_Type
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.. index:: single: IntType (in modules types)
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This instance of :ctype:`PyTypeObject` represents the Python plain integer type.
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This is the same object as ``int`` and ``types.IntType``.
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.. cfunction:: int PyInt_Check(PyObject *o)
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Return true if *o* is of type :cdata:`PyInt_Type` or a subtype of
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:cdata:`PyInt_Type`.
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.. versionchanged:: 2.2
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Allowed subtypes to be accepted.
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.. cfunction:: int PyInt_CheckExact(PyObject *o)
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Return true if *o* is of type :cdata:`PyInt_Type`, but not a subtype of
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:cdata:`PyInt_Type`.
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.. versionadded:: 2.2
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.. cfunction:: PyObject* PyInt_FromString(char *str, char **pend, int base)
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Return a new :ctype:`PyIntObject` or :ctype:`PyLongObject` based on the string
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value in *str*, which is interpreted according to the radix in *base*. If
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*pend* is non-*NULL*, ``*pend`` will point to the first character in *str* which
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follows the representation of the number. If *base* is ``0``, the radix will be
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determined based on the leading characters of *str*: if *str* starts with
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``'0x'`` or ``'0X'``, radix 16 will be used; if *str* starts with ``'0'``, radix
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8 will be used; otherwise radix 10 will be used. If *base* is not ``0``, it
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must be between ``2`` and ``36``, inclusive. Leading spaces are ignored. If
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there are no digits, :exc:`ValueError` will be raised. If the string represents
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a number too large to be contained within the machine's :ctype:`long int` type
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and overflow warnings are being suppressed, a :ctype:`PyLongObject` will be
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returned. If overflow warnings are not being suppressed, *NULL* will be
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returned in this case.
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.. cfunction:: PyObject* PyInt_FromLong(long ival)
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Create a new integer object with a value of *ival*.
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The current implementation keeps an array of integer objects for all integers
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between ``-5`` and ``256``, when you create an int in that range you actually
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just get back a reference to the existing object. So it should be possible to
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change the value of ``1``. I suspect the behaviour of Python in this case is
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undefined. :-)
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.. cfunction:: PyObject* PyInt_FromSsize_t(Py_ssize_t ival)
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Create a new integer object with a value of *ival*. If the value exceeds
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``LONG_MAX``, a long integer object is returned.
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.. versionadded:: 2.5
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.. cfunction:: long PyInt_AsLong(PyObject *io)
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Will first attempt to cast the object to a :ctype:`PyIntObject`, if it is not
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already one, and then return its value. If there is an error, ``-1`` is
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returned, and the caller should check ``PyErr_Occurred()`` to find out whether
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there was an error, or whether the value just happened to be -1.
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.. cfunction:: long PyInt_AS_LONG(PyObject *io)
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Return the value of the object *io*. No error checking is performed.
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.. cfunction:: unsigned long PyInt_AsUnsignedLongMask(PyObject *io)
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Will first attempt to cast the object to a :ctype:`PyIntObject` or
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:ctype:`PyLongObject`, if it is not already one, and then return its value as
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unsigned long. This function does not check for overflow.
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.. versionadded:: 2.3
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.. cfunction:: unsigned PY_LONG_LONG PyInt_AsUnsignedLongLongMask(PyObject *io)
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Will first attempt to cast the object to a :ctype:`PyIntObject` or
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:ctype:`PyLongObject`, if it is not already one, and then return its value as
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unsigned long long, without checking for overflow.
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.. versionadded:: 2.3
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.. cfunction:: Py_ssize_t PyInt_AsSsize_t(PyObject *io)
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Will first attempt to cast the object to a :ctype:`PyIntObject` or
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:ctype:`PyLongObject`, if it is not already one, and then return its value as
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:ctype:`Py_ssize_t`.
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.. versionadded:: 2.5
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.. cfunction:: long PyInt_GetMax()
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.. index:: single: LONG_MAX
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Return the system's idea of the largest integer it can handle
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(:const:`LONG_MAX`, as defined in the system header files).
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.. cfunction:: void PyInt_CompactFreeList(size_t *bc, size_t *bf, size_t *sum)
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Compact the integer free list. *bc* is the number of allocated blocks before
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blocks are freed, *bf* is the number of freed blocks and *sum* is the number
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of remaining objects in the blocks.
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.. versionadded:: 2.6
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