11 * Some optimisations for set/frozenset instantiation.
13 * Support for C++ unordered_set and unordered_map.
18 * Access to attributes of optimised builtin methods (e.g.
19 ``[].append.__name__``) could fail to compile.
21 * Memory leak when extension subtypes add a memory view as attribute
22 to those of the parent type without having Python object attributes
23 or a user provided dealloc method.
25 * Compiler crash on readonly properties in "binding" mode.
27 * Auto-encoding with ``c_string_encoding=ascii`` failed in Py3.3.
29 * Crash when subtyping freelist enabled Cython extension types with
30 Python classes that use ``__slots__``.
32 * Freelist usage is restricted to CPython to avoid problems with other
33 Python implementations.
35 * Memory leak in memory views when copying overlapping, contiguous slices.
37 * Format checking when requesting non-contiguous buffers from
38 ``cython.array`` objects was disabled in Py3.
40 * C++ destructor calls in extension types could fail to compile in clang.
42 * Buffer format validation failed for sequences of strings in structs.
44 * Docstrings on extension type attributes in .pxd files were rejected.
53 * Build error under recent MacOS-X versions where ``isspace()`` could not be
56 * List/Tuple literals multiplied by more than one factor were only multiplied
57 by the last factor instead of all.
59 * Lookups of special methods (specifically for context managers) could fail
62 * Local variables were erroneously appended to the signature introspection
63 of Cython implemented functions with keyword-only arguments under Python 3.
65 * In-place assignments to variables with inferred Python builtin/extension
66 types could fail with type errors if the result value type was incompatible
67 with the type of the previous value.
69 * The C code generation order of cdef classes, closures, helper code,
70 etc. was not deterministic, thus leading to high code churn.
72 * Type inference could fail to deduce C enum types.
74 * Type inference could deduce unsafe or inefficient types from integer
75 assignments within a mix of inferred Python variables and integer
86 * Support for CPython 3.4.
88 * Support for calling C++ template functions.
90 * ``yield`` is supported in ``finally`` clauses.
92 * The C code generated for finally blocks is duplicated for each exit
93 case to allow for better optimisations by the C compiler.
95 * Cython tries to undo the Python optimisationism of assigning a bound
96 method to a local variable when it can generate better code for the
99 * Constant Python float values are cached.
101 * String equality comparisons can use faster type specific code in
102 more cases than before.
104 * String/Unicode formatting using the '%' operator uses a faster
107 * ``bytearray`` has become a known type and supports coercion from and
108 to C strings. Indexing, slicing and decoding is optimised. Note that
109 this may have an impact on existing code due to type inference.
111 * Using ``cdef basestring stringvar`` and function arguments typed as
112 ``basestring`` is now meaningful and allows assigning exactly
113 ``str`` and ``unicode`` objects, but no subtypes of these types.
115 * Support for the ``__debug__`` builtin.
117 * Assertions in Cython compiled modules are disabled if the running
118 Python interpreter was started with the "-O" option.
120 * Some types that Cython provides internally, such as functions and
121 generators, are now shared across modules if more than one Cython
122 implemented module is imported.
124 * The type inference algorithm works more fine granular by taking the
125 results of the control flow analysis into account.
127 * A new script in ``bin/cythonize`` provides a command line frontend
128 to the cythonize() compilation function (including distutils build).
130 * The new extension type decorator ``@cython.no_gc_clear`` prevents
131 objects from being cleared during cyclic garbage collection, thus
132 making sure that object attributes are kept alive until deallocation.
134 * During cyclic garbage collection, attributes of extension types that
135 cannot create reference cycles due to their type (e.g. strings) are
136 no longer considered for traversal or clearing. This can reduce the
137 processing overhead when searching for or cleaning up reference cycles.
139 * Package compilation (i.e. ``__init__.py`` files) now works, starting
142 * The cython-mode.el script for Emacs was updated. Patch by Ivan Andrus.
144 * An option common_utility_include_dir was added to cythonize() to save
145 oft-used utility code once in a separate directory rather than as
146 part of each generated file.
148 * ``unraisable_tracebacks`` directive added to control printing of
149 tracebacks of unraisable exceptions.
154 * Abstract Python classes that subtyped a Cython extension type
155 failed to raise an exception on instantiation, and thus ended
156 up being instantiated.
158 * ``set.add(a_tuple)`` and ``set.discard(a_tuple)`` failed with a
161 * The PEP 3155 ``__qualname__`` was incorrect for nested classes and
162 inner classes/functions declared as ``global``.
164 * Several corner cases in the try-finally statement were fixed.
166 * The metaclass of a Python class was not inherited from its parent
167 class(es). It is now extracted from the list of base classes if not
168 provided explicitly using the Py3 ``metaclass`` keyword argument.
169 In Py2 compilation mode, a ``__metaclass__`` entry in the class
170 dict will still take precedence if not using Py3 metaclass syntax,
171 but only *after* creating the class dict (which may have been done
172 by a metaclass of a base class, see PEP 3115). It is generally
173 recommended to use the explicit Py3 syntax to define metaclasses
174 for Python types at compile time.
176 * The automatic C switch statement generation behaves more safely for
177 heterogeneous value types (e.g. mixing enum and char), allowing for
178 a slightly wider application and reducing corner cases. It now always
179 generates a 'default' clause to avoid C compiler warnings about
180 unmatched enum values.
182 * Fixed a bug where class hierarchies declared out-of-order could result
183 in broken generated code.
185 * Fixed a bug which prevented overriding const methods of C++ classes.
187 * Fixed a crash when converting Python objects to C++ strings fails.
192 * In Py3 compilation mode, Python2-style metaclasses declared by a
193 ``__metaclass__`` class dict entry are ignored.
195 * In Py3.4+, the Cython generator type uses ``tp_finalize()`` for safer
196 cleanup instead of ``tp_del()``.
208 * Some standard declarations were fixed or updated, including the previously
209 incorrect declaration of ``PyBuffer_FillInfo()`` and some missing bits in
212 * Heap allocated subtypes of ``type`` used the wrong base type struct at the
215 * Calling the unbound method dict.keys/value/items() in dict subtypes could
216 call the bound object method instead of the unbound supertype method.
218 * "yield" wasn't supported in "return" value expressions.
220 * Using the "bint" type in memory views lead to unexpected results.
223 * Assignments to global/closure variables could catch them in an illegal state
224 while deallocating the old value.
236 * Completely empty C-API structs for extension type slots (protocols like
237 number/mapping/sequence) are no longer generated into the C code.
239 * Docstrings that directly follow a public/readonly attribute declaration
240 in a cdef class will be used as docstring of the auto-generated property.
241 This fixes ticket 206.
243 * The automatic signature documentation tries to preserve more semantics
244 of default arguments and argument types. Specifically, ``bint`` arguments
245 now appear as type ``bool``.
247 * A warning is emitted when negative literal indices are found inside of
248 a code section that disables ``wraparound`` handling. This helps with
249 fixing invalid code that might fail in the face of future compiler
252 * Constant folding for boolean expressions (and/or) was improved.
254 * Added a build_dir option to cythonize() which allows one to place
255 the generated .c files outside the source tree.
260 * ``isinstance(X, type)`` failed to get optimised into a call to
261 ``PyType_Check()``, as done for other builtin types.
263 * A spurious "from datetime cimport *" was removed from the "cpython"
264 declaration package. This means that the "datetime" declarations
265 (added in 0.19) are no longer available directly from the "cpython"
266 namespace, but only from "cpython.datetime". This is the correct
267 way of doing it because the declarations refer to a standard library
268 module, not the core CPython C-API itself.
270 * The C code for extension types is now generated in topological order
271 instead of source code order to avoid C compiler errors about missing
272 declarations for subtypes that are defined before their parent.
274 * The ``memoryview`` type name no longer shows up in the module dict of
275 modules that use memory views. This fixes trac ticket 775.
277 * Regression in 0.19 that rejected valid C expressions from being used
278 in C array size declarations.
280 * In C++ mode, the C99-only keyword ``restrict`` could accidentally be
281 seen by the GNU C++ compiler. It is now specially handled for both
284 * Testing large (> int) C integer values for their truth value could fail
285 due to integer wrap-around.
297 * New directives ``c_string_type`` and ``c_string_encoding`` to more easily
298 and automatically convert between C strings and the different Python string
301 * The extension type flag ``Py_TPFLAGS_HAVE_VERSION_TAG`` is enabled by default
302 on extension types and can be disabled using the ``type_version_tag`` compiler
305 * EXPERIMENTAL support for simple Cython code level line tracing. Enabled by
306 the "linetrace" compiler directive.
308 * Cython implemented functions make their argument and return type annotations
309 available through the ``__annotations__`` attribute (PEP 3107).
311 * Access to non-cdef module globals and Python object attributes is faster.
313 * ``Py_UNICODE*`` coerces from and to Python unicode strings. This is
314 helpful when talking to Windows APIs, which use compatible wchar_t
315 arrays for strings. Note that the ``Py_UNICODE`` type is otherwise
316 deprecated as of CPython 3.3.
318 * ``isinstance(obj, basestring)`` is optimised. In Python 3 it only tests
319 for instances of ``str`` (i.e. Py2 ``unicode``).
321 * The ``basestring`` builtin is mapped to ``str`` (i.e. Py2 ``unicode``) when
322 compiling the generated C code under Python 3.
324 * Closures use freelists, which can speed up their creation quite substantially.
325 This is also visible for short running generator expressions, for example.
327 * A new class decorator ``@cython.freelist(N)`` creates a static freelist of N
328 instances for an extension type, thus avoiding the costly allocation step if
329 possible. This can speed up object instantiation by 20-30% in suitable
330 scenarios. Note that freelists are currently only supported for base types,
331 not for types that inherit from others.
333 * Fast extension type instantiation using the ``Type.__new__(Type)`` idiom has
334 gained support for passing arguments. It is also a bit faster for types defined
335 inside of the module.
337 * The Python2-only dict methods ``.iter*()`` and ``.view*()`` (requires Python 2.7)
338 are automatically mapped to the equivalent keys/values/items methods in Python 3
339 for typed dictionaries.
341 * Slicing unicode strings, lists and tuples is faster.
343 * list.append() is faster on average.
345 * ``raise Exception() from None`` suppresses the exception context in Py3.3.
347 * Py3 compatible ``exec(tuple)`` syntax is supported in Py2 code.
349 * Keyword arguments are supported for cdef functions.
351 * External C++ classes can be declared nogil. Patch by John Stumpo. This fixes
357 * 2-value slicing of unknown objects passes the correct slice when the ``getitem``
358 protocol is used instead of the ``getslice`` protocol (especially in Python 3),
359 i.e. ``None`` values for missing bounds instead of ``[0,maxsize]``. It is also
360 a bit faster in some cases, e.g. for constant bounds. This fixes trac ticket 636.
362 * Cascaded assignments of None values to extension type variables failed with
363 a ``TypeError`` at runtime.
365 * The ``__defaults__`` attribute was not writable for Cython implemented
368 * Default values of keyword-only arguments showed up in ``__defaults__`` instead
369 of ``__kwdefaults__`` (which was not implemented). Both are available for
370 Cython implemented functions now, as specified in Python 3.x.
372 * ``yield`` works inside of ``with gil`` sections. It previously lead to a crash.
373 This fixes trac ticket 803.
375 * Static methods without explicitly named positional arguments (e.g. having only
376 ``*args``) crashed when being called. This fixes trac ticket 804.
378 * ``dir()`` without arguments previously returned an unsorted list, which now
379 gets sorted as expected.
381 * ``dict.items()``, ``dict.keys()`` and ``dict.values()`` no longer return lists
384 * Exiting from an ``except-as`` clause now deletes the exception in Python 3 mode.
386 * The declarations of ``frexp()`` and ``ldexp()`` in ``math.pxd`` were incorrect.
398 * Named Unicode escapes ("\N{...}") are supported.
400 * Python functions/classes provide the special attribute "__qualname__"
401 as defined by PEP 3155.
403 * Added a directive ``overflowcheck`` which raises an OverflowException when
404 arithmetic with C ints overflow. This has a modest performance penalty, but
405 is much faster than using Python ints.
407 * Calls to nested Python functions are resolved at compile time.
409 * Type inference works across nested functions.
411 * ``py_bytes_string.decode(...)`` is optimised.
413 * C ``const`` declarations are supported in the language.
418 * Automatic C++ exception mapping didn't work in nogil functions (only in
419 "with nogil" blocks).
431 * Garbage collection triggered during deallocation of container classes could lead to a double-deallocation.
443 * During final interpreter cleanup (with types cleanup enabled at compile time), extension types that inherit from base types over more than one level that were cimported from other modules could lead to a crash.
445 * Weak-reference support in extension types (with a ``cdef __weakref__`` attribute) generated incorrect deallocation code.
447 * In CPython 3.3, converting a Unicode character to the Py_UNICODE type could fail to raise an overflow for non-BMP characters that do not fit into a wchar_t on the current platform.
449 * Negative C integer constants lost their longness suffix in the generated C code.
461 * ``cythonize()`` gained a best effort compile mode that can be used to simply ignore .py files that fail to compile.
466 * Replacing an object reference with the value of one of its cdef attributes could generate incorrect C code that accessed the object after deleting its last reference.
468 * C-to-Python type coercions during cascaded comparisons could generate invalid C code, specifically when using the 'in' operator.
470 * "obj[1,]" passed a single integer into the item getter instead of a tuple.
472 * Cyclic imports at module init time did not work in Py3.
474 * The names of C++ destructors for template classes were built incorrectly.
476 * In pure mode, type casts in Cython syntax and the C ampersand operator are now rejected. Use the pure mode replacements instead.
478 * In pure mode, C type names and the sizeof() function are no longer recognised as such and can be used as normal Python names.
480 * The extended C level support for the CPython array type was declared too late to be used by user defined classes.
482 * C++ class nesting was broken.
484 * Better checking for required nullary constructors for stack-allocated C++ instances.
486 * Remove module docstring in no-docstring mode.
488 * Fix specialization for varargs function signatures.
490 * Fix several compiler crashes.
495 * An experimental distutils script for compiling the CPython standard library was added as Tools/cystdlib.py.
507 * A reference leak was fixed in the new dict iteration code when the loop target was not a plain variable but an unpacked tuple.
509 * Memory views did not handle the special case of a NULL buffer strides value, as allowed by PEP3118.
521 * Alpha quality support for compiling and running Cython generated extension modules in PyPy (through cpyext). Note that this requires at least PyPy 1.9 and in many cases also adaptations in user code, especially to avoid borrowed references when no owned reference is being held directly in C space (a reference in a Python list or dict is not enough, for example). See the documentation on porting Cython code to PyPy.
523 * "yield from" is supported (PEP 380) and a couple of minor problems with generators were fixed.
525 * C++ STL container classes automatically coerce from and to the equivalent Python container types on typed assignments and casts. Note that the data in the containers is copied during this conversion.
527 * C++ iterators can now be iterated over using "for x in cpp_container" whenever cpp_container has begin() and end() methods returning objects satisfying the iterator pattern (that is, it can be incremented, dereferenced, and compared (for non-equality)).
529 * cdef classes can now have C++ class members (provided a zero-argument constructor exists)
531 * A new cpython.array standard cimport file allows to efficiently talk to the stdlib array.array data type in Python 2. Since CPython does not export an official C-API for this module, it receives special casing by the compiler in order to avoid setup overhead on user side. In Python 3, both buffers and memory views on the array type already worked out of the box with earlier versions of Cython due to the native support for the buffer interface in the Py3 array module.
533 * Fast dict iteration is now enabled optimistically also for untyped variables when the common iteration methods are used.
535 * The unicode string processing code was adapted for the upcoming CPython 3.3 (PEP 393, new Unicode buffer layout).
537 * Buffer arguments and memory view arguments in Python functions can be declared "not None" to raise a TypeError on None input.
539 * c(p)def functions in pure mode can specify their return type with "@cython.returns()".
541 * Automatic dispatch for fused functions with memoryview arguments
543 * Support newaxis indexing for memoryviews
545 * Support decorators for fused functions
550 * Old-style Py2 imports did not work reliably in Python 3.x and were broken in Python 3.3. Regardless of this fix, it's generally best to be explicit about relative and global imports in Cython code because old-style imports have a higher overhead. To this end, "from __future__ import absolute_import" is supported in Python/Cython 2.x code now (previous versions of Cython already used it when compiling Python 3 code).
552 * Stricter constraints on the "inline" and "final" modifiers. If your code does not compile due to this change, chances are these modifiers were previously being ignored by the compiler and can be removed without any performance regression.
554 * Exceptions are always instantiated while raising them (as in Python), instead of risking to instantiate them in potentially unsafe situations when they need to be handled or otherwise processed.
556 * locals() properly ignores names that do not have Python compatible types (including automatically inferred types).
558 * Some garbage collection issues of memory views were fixed.
560 * numpy.pxd compiles in Python 3 mode.
562 * Several C compiler warnings were fixed.
564 * Several bugs related to memoryviews and fused types were fixed.
566 * Several bug-fixes and improvements related to cythonize(), including ccache-style caching.
571 * libc.string provides a convenience declaration for const uchar in addition to const char.
573 * User declared char* types are now recognised as such and auto-coerce to and from Python bytes strings.
575 * callable() and next() compile to more efficient C code.
577 * list.append() is faster on average.
579 * Modules generated by @cython.inline() are written into the directory pointed to by the environment variable CYTHON_CACHE_DIR if set.
588 * Enhancements to Cython's function type (support for weak references, default arguments, code objects, dynamic attributes, classmethods, staticmethods, and more)
590 * Fused Types - Template-like support for functions and methods CEP 522 (docs)
592 * Typed views on memory - Support for efficient direct and indirect buffers (indexing, slicing, transposing, ...) CEP 517 (docs)
594 * super() without arguments
596 * Final cdef methods (which translate into direct calls on known instances)
601 * fix alignment handling for record types in buffer support
606 * support default arguments for closures
608 * search sys.path for pxd files
610 * support C++ template casting
612 * faster traceback building and faster generator termination
614 * support inplace operators on indexed buffers
616 * allow nested prange sections
638 * Generators (yield) - Cython has full support for generators, generator expressions and PEP 342 coroutines.
640 * The nonlocal keyword is supported.
642 * Re-acquiring the gil: with gil - works as expected within a nogil context.
644 * OpenMP support: prange.
646 * Control flow analysis prunes dead code and emits warnings and errors about uninitialised variables.
648 * Debugger command cy set to assign values of expressions to Cython variables and cy exec counterpart $cy_eval().
650 * Exception chaining PEP 3134.
652 * Relative imports PEP 328.
654 * Improved pure syntax including cython.cclass, cython.cfunc, and cython.ccall.
656 * The with statement has its own dedicated and faster C implementation.
660 * Boundschecking directives implemented for builtin Python sequence types.
662 * Several updates and additions to the shipped standard library .pxd files.
664 * Forward declaration of types is no longer required for circular references.
672 * Uninitialized variables are no longer initialized to None and accessing them has the same semantics as standard Python.
674 * globals() now returns a read-only dict of the Cython module's globals, rather than the globals of the first non-Cython module in the stack
676 * Many C++ exceptions are now special cased to give closer Python counterparts. This means that except+ functions that formerly raised generic RuntimeErrors may raise something else such as ArithmeticError.
678 * The inlined generator expressions (introduced in Cython 0.13) were disabled in favour of full generator expression support. This breaks code that previously used them inside of cdef functions (usage in def functions continues to work) and induces a performance regression for cases that continue to work but that were previously inlined. We hope to reinstate this feature in the near future.
687 * The gdb debugging support was extended to include all major Cython features, including closures.
689 * raise MemoryError() is now safe to use as Cython replaces it with the correct C-API call.
697 * Decorators on special methods of cdef classes now raise a compile time error rather than being ignored.
699 * In Python 3 language level mode (-3 option), the 'str' type is now mapped to 'unicode', so that cdef str s declares a Unicode string even when running in Python 2.
708 * Python classes can now be nested and receive a proper closure at definition time.
710 * Redefinition is supported for Python functions, even within the same scope.
712 * Lambda expressions are supported in class bodies and at the module level.
714 * Metaclasses are supported for Python classes, both in Python 2 and Python 3 syntax. The Python 3 syntax (using a keyword argument in the type declaration) is preferred and optimised at compile time.
716 * "final" extension classes prevent inheritance in Python space. This feature is available through the new "cython.final" decorator. In the future, these classes may receive further optimisations.
718 * "internal" extension classes do not show up in the module dictionary. This feature is available through the new "cython.internal" decorator.
720 * Extension type inheritance from builtin types, such as "cdef class MyUnicode(unicode)", now works without further external type redeclarations (which are also strongly discouraged now and continue to issue a warning).
722 * GDB support. http://docs.cython.org/src/userguide/debugging.html
724 * A new build system with support for inline distutils directives, correct dependency tracking, and parallel compilation. http://wiki.cython.org/enhancements/distutils_preprocessing
726 * Support for dynamic compilation at runtime via the new cython.inline function and cython.compile decorator. http://wiki.cython.org/enhancements/inline
728 * "nogil" blocks are supported when compiling pure Python code by writing "with cython.nogil".
730 * Iterating over arbitrary pointer types is now supported, as is an optimized version of the in operator, e.g. x in ptr[a:b].
735 * In parallel assignments, the right side was evaluated in reverse order in 0.13. This could result in errors if it had side effects (e.g. function calls).
737 * In some cases, methods of builtin types would raise a SystemError instead of an AttributeError when called on None.
742 * Constant tuples are now cached over the lifetime of an extension module, just like CPython does. Constant argument tuples of Python function calls are also cached.
744 * Closures have tightened to include exactly the names used in the inner functions and classes. Previously, they held the complete locals of the defining function.
746 * The builtin "next()" function in Python 2.6 and later is now implemented internally and therefore available in all Python versions. This makes it the preferred and portable way of manually advancing an iterator.
748 * In addition to the previously supported inlined generator expressions in 0.13, "sorted(genexpr)" can now be used as well. Typing issues were fixed in "sum(genexpr)" that could lead to invalid C code being generated. Other known issues with inlined generator expressions were also fixed that make upgrading to 0.14 a strong recommendation for code that uses them. Note that general generators and generator expressions continue to be not supported.
750 * Inplace arithmetic operators now respect the cdivision directive and are supported for complex types.
752 * Typing a variable as type "complex" previously gave it the Python object type. It now uses the appropriate C/C++ double complex type. A side-effect is that assignments and typed function parameters now accept anything that Python can coerce to a complex, including integers and floats, and not only complex instances.
754 * Large integer literals pass through the compiler in a safer way. To prevent truncation in C code, non 32-bit literals are turned into Python objects if not used in a C context. This context can either be given by a clear C literal suffix such as "UL" or "LL" (or "L" in Python 3 code), or it can be an assignment to a typed variable or a typed function argument, in which case it is up to the user to take care of a sufficiently large value space of the target.
756 * Python functions are declared in the order they appear in the file, rather than all being created at module creation time. This is consistent with Python and needed to support, for example, conditional or repeated declarations of functions. In the face of circular imports this may cause code to break, so a new --disable-function-redefinition flag was added to revert to the old behavior. This flag will be removed in a future release, so should only be used as a stopgap until old code can be fixed.
765 * Closures are fully supported for Python functions. Cython supports inner functions and lambda expressions. Generators and generator expressions are not supported in this release.
767 * Proper C++ support. Cython knows about C++ classes, templates and overloaded function signatures, so that Cython code can interact with them in a straight forward way.
769 * Type inference is enabled by default for safe C types (e.g. double, bint, C++ classes) and known extension types. This reduces the need for explicit type declarations and can improve the performance of untyped code in some cases. There is also a verbose compile mode for testing the impact on user code.
771 * Cython's for-in-loop can iterate over C arrays and sliced pointers. The type of the loop variable will be inferred automatically in this case.
773 * The Py_UNICODE integer type for Unicode code points is fully supported, including for-loops and 'in' tests on unicode strings. It coerces from and to single character unicode strings. Note that untyped for-loop variables will automatically be inferred as Py_UNICODE when iterating over a unicode string. In most cases, this will be much more efficient than yielding sliced string objects, but can also have a negative performance impact when the variable is used in a Python context multiple times, so that it needs to coerce to a unicode string object more than once. If this happens, typing the loop variable as unicode or object will help.
775 * The built-in functions any(), all(), sum(), list(), set() and dict() are inlined as plain for loops when called on generator expressions. Note that generator expressions are not generally supported apart from this feature. Also, tuple(genexpr) is not currently supported - use tuple([listcomp]) instead.
777 * More shipped standard library declarations. The python_* and stdlib/stdio .pxd files have been deprecated in favor of clib.* and cpython[.*] and may get removed in a future release.
779 * Pure Python mode no longer disallows non-Python keywords like 'cdef', 'include' or 'cimport'. It also no longer recognises syntax extensions like the for-from loop.
781 * Parsing has improved for Python 3 syntax in Python code, although not all features are correctly supported. The missing Python 3 features are being worked on for the next release.
783 * from __future__ import print_function is supported in Python 2.6 and later. Note that there is currently no emulation for earlier Python versions, so code that uses print() with this future import will require at least Python 2.6.
785 * New compiler directive language_level (valid values: 2 or 3) with corresponding command line options -2 and -3 requests source code compatibility with Python 2.x or Python 3.x respectively. Language level 3 currently enforces unicode literals for unprefixed string literals, enables the print function (requires Python 2.6 or later) and keeps loop variables in list comprehensions from leaking.
787 * Loop variables in set/dict comprehensions no longer leak into the surrounding scope (following Python 2.7). List comprehensions are unchanged in language level 2.
797 * The availability of type inference by default means that Cython will also infer the type of pointers on assignments. Previously, code like this::
802 would convert the char* to a Python bytes string and assign that. This is no longer the case and no coercion will happen in the example above. The correct way of doing this is through an explicit cast or by typing the target variable, i.e.
807 untyped_variable1 = <bytes>s
808 untyped_variable2 = <object>s
810 cdef object py_object = s
811 cdef bytes bytes_string = s
813 * bool is no longer a valid type name by default. The problem is that it's not clear whether bool should refer to the Python type or the C++ type, and expecting one and finding the other has already led to several hard-to-find bugs. Both types are available for importing: you can use from cpython cimport bool for the Python bool type, and from libcpp cimport bool for the C++ type. bool is still a valid object by default, so one can still write bool(x).
815 * ``__getsegcount__`` is now correctly typed to take a ``Py_size_t*`` rather than an ``int*``.
824 * Type inference improvements.
826 * There have been several bug fixes and improvements to the type inferencer.
828 * Notably, there is now a "safe" mode enabled by setting the infer_types directive to None. (The None here refers to the "default" mode, which will be the default in 0.13.) This safe mode limits inference to Python object types and C doubles, which should speed up execution without affecting any semantics such as integer overflow behavior like infer_types=True might. There is also an infer_types.verbose option which allows one to see what types are inferred.
830 * The boundscheck directive works for lists and tuples as well as buffers.
832 * len(s) and s.decode("encoding") are efficiently supported for char* s.
834 * Cython's INLINE macro has been renamed to CYTHON_INLINE to reduce conflict and has better support for the MSVC compiler on Windows. It is no longer clobbered if externally defined.
836 * Revision history is now omitted from the source package, resulting in a 85% size reduction. Running make repo will download the history and turn the directory into a complete Mercurial working repository.
838 * Cython modules don't need to be recompiled when the size of an external type grows. (A warning, rather than an error, is produced.) This should be helpful for binary distributions relying on NumPy.
843 * Several other bugs and minor improvements have been made. This release should be fully backwards compatible with 0.12.
855 * Type inference with the infer_types directive
857 * Seamless C++ complex support
859 * Fast extension type instantiation using the normal Python meme obj = MyType.__new__(MyType)
861 * Improved support for Py3.1
863 * Cython now runs under Python 3.x using the 2to3 tool
865 * unittest support for doctests in Cython modules
867 * Optimised handling of C strings (char*): for c in cstring[2:50] and cstring.decode()
869 * Looping over c pointers: for i in intptr[:50].
871 * pyximport improvements
873 * cython_freeze improvements
883 * Many other optimisation, e.g. enumerate() loops, parallel swap assignments (a,b = b,a), and unicode.encode()
885 * More complete numpy.pxd
894 * There's now native complex floating point support! C99 complex will be used if complex.h is included, otherwise explicit complex arithmetic working on all C compilers is used. [Robert Bradshaw]
898 cdef double complex a = 1 + 0.3j
899 cdef np.ndarray[np.complex128_t, ndim=2] arr = \
900 np.zeros(10, np.complex128)
902 * Cython can now generate a main()-method for embedding of the Python interpreter into an executable (see #289) [Robert Bradshaw]
904 * @wraparound directive (another way to disable arr[idx] for negative idx) [Dag Sverre Seljebotn]
906 * Correct support for NumPy record dtypes with different alignments, and "cdef packed struct" support [Dag Sverre Seljebotn]
908 * @callspec directive, allowing custom calling convention macros [Lisandro Dalcin]
916 * Bug fixes and smaller improvements. For the full list, see [1].