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nexedi
cython
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33f19029
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33f19029
authored
May 14, 2018
by
scoder
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May 14, 2018
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Merge pull request #2255 from gabrieldemarmiesse/reworked_types
Improved "Types" section.
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bb54f5e0
fab0d8b3
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docs/src/userguide/language_basics.rst
docs/src/userguide/language_basics.rst
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docs/src/userguide/language_basics.rst
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33f19029
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@@ -153,10 +153,20 @@ Note that Cython uses array access for pointer dereferencing, as ``*x`` is not v
whereas ``x[0]`` is.
Also, the Python types ``list``, ``dict``, ``tuple``, etc. may be used for
static typing, as well as any user defined extension types. The Python types
int, long, and float are not available for static typing and instead interpreted as C
``int``, ``long``, and ``float`` respectively, as statically typing variables with these Python
static typing, as well as any user defined :ref:`extension-types`.
For example::
cdef list foo = []
This requires an *exact* match of the class, it does not allow
subclasses. This allows Cython to optimize code by accessing
internals of the builtin class.
For this kind of typing, Cython uses internally a C variable of type ``PyObject*``.
The Python types int, long, and float are not available for static
typing and instead interpreted as C ``int``, ``long``, and ``float``
respectively, as statically typing variables with these Python
types has zero advantages.
While these C types can be vastly faster, they have C semantics.
Specifically, the integer types overflow
and the C ``float`` type only has 32 bits of precision
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@@ -165,6 +175,12 @@ and is typically what one wants).
If you want to use these numeric Python types simply omit the
type declaration and let them be objects.
It is also possible to declare :ref:`extension-types` (declared with ``cdef class``).
This does allow subclasses. This typing is mostly used to access
``cdef`` methods and attributes of the extension type.
The C code uses a variable which is a pointer to a structure of the
specific type, something like ``struct MyExtensionTypeObject*``.
Grouping multiple C declarations
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