�&ǐk�@'bJ�h�ۊL'}T� :��'2�Z#$��n�a��� �>a��`��_3d�Qpt�/�P -��#5�,�M��� �pA:©�q�����NW��ډ�A���� �9nʺج���� �TSM��{J6?7��r�@�\����D��� �׶���s�f�TJj?"��D��`?��̒� b�#�%�C*v�$�{�$����5Ծ�F�s��y�e/8��h-�f�̰&(����Gj�L:U� 2�� ����v�_k����Y��gp,�k�WF�R������_C�R��N@���R�@�ߔ?A�w9���F("iNa-S���Q�o�3tDMLh*�#4k�T/iQ��Y*�G��m����)��8�hBm/�I�,g�ﯖ���Z��}�Cz�q@´��d.����L�ŕ�,��1�Z�܌�: ̪���F+J-'��c�tvJ8��]Q-��b��y �6;*J`r_�d ��'�G ~p��)'�C,�%F��E(��2�k�����lР�z�!�=t ��_�0��f7��� ;�p�|�U �%= 0x03030000 /* New in 3.3 */ PyAPI_FUNC(int) PyState_AddModule(PyObject*, struct PyModuleDef*); PyAPI_FUNC(int) PyState_RemoveModule(struct PyModuleDef*); #endif PyAPI_FUNC(PyObject*) PyState_FindModule(struct PyModuleDef*); #ifndef Py_LIMITED_API PyAPI_FUNC(void) _PyState_ClearModules(void); #endif PyAPI_FUNC(PyThreadState *) PyThreadState_New(PyInterpreterState *); #ifndef Py_LIMITED_API PyAPI_FUNC(PyThreadState *) _PyThreadState_Prealloc(PyInterpreterState *); PyAPI_FUNC(void) _PyThreadState_Init(PyThreadState *); #endif /* !Py_LIMITED_API */ PyAPI_FUNC(void) PyThreadState_Clear(PyThreadState *); PyAPI_FUNC(void) PyThreadState_Delete(PyThreadState *); #ifndef Py_LIMITED_API PyAPI_FUNC(void) _PyThreadState_DeleteExcept(PyThreadState *tstate); #endif /* !Py_LIMITED_API */ #ifdef WITH_THREAD PyAPI_FUNC(void) PyThreadState_DeleteCurrent(void); #ifndef Py_LIMITED_API PyAPI_FUNC(void) _PyGILState_Reinit(void); #endif /* !Py_LIMITED_API */ #endif /* Return the current thread state. The global interpreter lock must be held. * When the current thread state is NULL, this issues a fatal error (so that * the caller needn't check for NULL). */ PyAPI_FUNC(PyThreadState *) PyThreadState_Get(void); #ifndef Py_LIMITED_API /* Similar to PyThreadState_Get(), but don't issue a fatal error * if it is NULL. */ PyAPI_FUNC(PyThreadState *) _PyThreadState_UncheckedGet(void); #endif /* !Py_LIMITED_API */ PyAPI_FUNC(PyThreadState *) PyThreadState_Swap(PyThreadState *); PyAPI_FUNC(PyObject *) PyThreadState_GetDict(void); PyAPI_FUNC(int) PyThreadState_SetAsyncExc(long, PyObject *); /* Variable and macro for in-line access to current thread state */ /* Assuming the current thread holds the GIL, this is the PyThreadState for the current thread. */ #ifdef Py_BUILD_CORE PyAPI_DATA(_Py_atomic_address) _PyThreadState_Current; # define PyThreadState_GET() \ ((PyThreadState*)_Py_atomic_load_relaxed(&_PyThreadState_Current)) #else # define PyThreadState_GET() PyThreadState_Get() #endif typedef enum {PyGILState_LOCKED, PyGILState_UNLOCKED} PyGILState_STATE; #ifdef WITH_THREAD /* Ensure that the current thread is ready to call the Python C API, regardless of the current state of Python, or of its thread lock. This may be called as many times as desired by a thread so long as each call is matched with a call to PyGILState_Release(). In general, other thread-state APIs may be used between _Ensure() and _Release() calls, so long as the thread-state is restored to its previous state before the Release(). For example, normal use of the Py_BEGIN_ALLOW_THREADS/ Py_END_ALLOW_THREADS macros are acceptable. The return value is an opaque "handle" to the thread state when PyGILState_Ensure() was called, and must be passed to PyGILState_Release() to ensure Python is left in the same state. Even though recursive calls are allowed, these handles can *not* be shared - each unique call to PyGILState_Ensure must save the handle for its call to PyGILState_Release. When the function returns, the current thread will hold the GIL. Failure is a fatal error. */ PyAPI_FUNC(PyGILState_STATE) PyGILState_Ensure(void); /* Release any resources previously acquired. After this call, Python's state will be the same as it was prior to the corresponding PyGILState_Ensure() call (but generally this state will be unknown to the caller, hence the use of the GILState API.) Every call to PyGILState_Ensure must be matched by a call to PyGILState_Release on the same thread. */ PyAPI_FUNC(void) PyGILState_Release(PyGILState_STATE); /* Helper/diagnostic function - get the current thread state for this thread. May return NULL if no GILState API has been used on the current thread. Note that the main thread always has such a thread-state, even if no auto-thread-state call has been made on the main thread. */ PyAPI_FUNC(PyThreadState *) PyGILState_GetThisThreadState(void); #ifndef Py_LIMITED_API /* Issue #26558: Flag to disable PyGILState_Check(). If set to non-zero, PyGILState_Check() always return 1. */ PyAPI_DATA(int) _PyGILState_check_enabled; /* Helper/diagnostic function - return 1 if the current thread currently holds the GIL, 0 otherwise. The function returns 1 if _PyGILState_check_enabled is non-zero. */ PyAPI_FUNC(int) PyGILState_Check(void); /* Unsafe function to get the single PyInterpreterState used by this process' GILState implementation. Return NULL before _PyGILState_Init() is called and after _PyGILState_Fini() is called. */ PyAPI_FUNC(PyInterpreterState *) _PyGILState_GetInterpreterStateUnsafe(void); #endif #endif /* #ifdef WITH_THREAD */ /* The implementation of sys._current_frames() Returns a dict mapping thread id to that thread's current frame. */ #ifndef Py_LIMITED_API PyAPI_FUNC(PyObject *) _PyThread_CurrentFrames(void); #endif /* Routines for advanced debuggers, requested by David Beazley. Don't use unless you know what you are doing! */ #ifndef Py_LIMITED_API PyAPI_FUNC(PyInterpreterState *) PyInterpreterState_Head(void); PyAPI_FUNC(PyInterpreterState *) PyInterpreterState_Next(PyInterpreterState *); PyAPI_FUNC(PyThreadState *) PyInterpreterState_ThreadHead(PyInterpreterState *); PyAPI_FUNC(PyThreadState *) PyThreadState_Next(PyThreadState *); typedef struct _frame *(*PyThreadFrameGetter)(PyThreadState *self_); #endif /* hook for PyEval_GetFrame(), requested for Psyco */ #ifndef Py_LIMITED_API PyAPI_DATA(PyThreadFrameGetter) _PyThreadState_GetFrame; #endif #ifdef __cplusplus } #endif #endif /* !Py_PYSTATE_H */