2010-09-29 01:59:51 +02:00
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.. highlightlang:: c
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.. _memoryview-objects:
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.. index::
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object: memoryview
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MemoryView objects
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------------------
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A :class:`memoryview` object exposes the C level :ref:`buffer interface
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<bufferobjects>` as a Python object which can then be passed around like
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any other object.
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2010-10-06 12:11:56 +02:00
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.. c:function:: PyObject *PyMemoryView_FromObject(PyObject *obj)
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Create a memoryview object from an object that provides the buffer interface.
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If *obj* supports writable buffer exports, the memoryview object will be
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readable and writable, otherwise it will be read-only.
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2010-09-29 01:59:51 +02:00
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2010-10-06 12:11:56 +02:00
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.. c:function:: PyObject *PyMemoryView_FromBuffer(Py_buffer *view)
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Create a memoryview object wrapping the given buffer structure *view*.
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The memoryview object then owns the buffer represented by *view*, which
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means you shouldn't try to call :c:func:`PyBuffer_Release` yourself: it
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will be done on deallocation of the memoryview object.
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2010-10-06 12:11:56 +02:00
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.. c:function:: PyObject *PyMemoryView_GetContiguous(PyObject *obj, int buffertype, char order)
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Create a memoryview object to a contiguous chunk of memory (in either
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'C' or 'F'ortran *order*) from an object that defines the buffer
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interface. If memory is contiguous, the memoryview object points to the
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original memory. Otherwise, a copy is made and the memoryview points to a
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new bytes object.
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2010-10-06 12:11:56 +02:00
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.. c:function:: int PyMemoryView_Check(PyObject *obj)
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Return true if the object *obj* is a memoryview object. It is not
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currently allowed to create subclasses of :class:`memoryview`.
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2010-10-06 12:11:56 +02:00
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.. c:function:: Py_buffer *PyMemoryView_GET_BUFFER(PyObject *obj)
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Return a pointer to the buffer structure wrapped by the given
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memoryview object. The object **must** be a memoryview instance;
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this macro doesn't check its type, you must do it yourself or you
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will risk crashes.
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