/
opt
/
imh
/
python3.13
/
include
/
python3.13
/
/opt/imh/python3.13/include/python3.13
mkdir
upload
Name
Size
Mode
Actions
cpython/
-
0755
rm
internal/
-
0755
rm
abstract.h
32754
0644
edit
dl
rm
bltinmodule.h
264
0644
edit
dl
rm
boolobject.h
1605
0644
edit
dl
rm
bytearrayobject.h
1466
0644
edit
dl
rm
bytesobject.h
2569
0644
edit
dl
rm
ceval.h
5119
0644
edit
dl
rm
codecs.h
5435
0644
edit
dl
rm
compile.h
448
0644
edit
dl
rm
complexobject.h
728
0644
edit
dl
rm
critical_section.h
314
0644
edit
dl
rm
datetime.h
9769
0644
edit
dl
rm
descrobject.h
3080
0644
edit
dl
rm
dictobject.h
4381
0644
edit
dl
rm
dynamic_annotations.h
22471
0644
edit
dl
rm
enumobject.h
253
0644
edit
dl
rm
errcode.h
1974
0644
edit
dl
rm
exports.h
4595
0644
edit
dl
rm
fileobject.h
1357
0644
edit
dl
rm
fileutils.h
1419
0644
edit
dl
rm
floatobject.h
1532
0644
edit
dl
rm
frameobject.h
336
0644
edit
dl
rm
genericaliasobject.h
334
0644
edit
dl
rm
import.h
3235
0644
edit
dl
rm
intrcheck.h
535
0644
edit
dl
rm
iterobject.h
525
0644
edit
dl
rm
listobject.h
1918
0644
edit
dl
rm
lock.h
242
0644
edit
dl
rm
longobject.h
3893
0644
edit
dl
rm
marshal.h
827
0644
edit
dl
rm
memoryobject.h
1081
0644
edit
dl
rm
methodobject.h
5340
0644
edit
dl
rm
modsupport.h
5636
0644
edit
dl
rm
moduleobject.h
3679
0644
edit
dl
rm
monitoring.h
331
0644
edit
dl
rm
object.h
47639
0644
edit
dl
rm
objimpl.h
8380
0644
edit
dl
rm
opcode.h
1539
0644
edit
dl
rm
opcode_ids.h
11845
0644
edit
dl
rm
osdefs.h
848
0644
edit
dl
rm
osmodule.h
291
0644
edit
dl
rm
patchlevel.h
1299
0644
edit
dl
rm
pyatomic.h
257
0644
edit
dl
rm
pybuffer.h
5282
0644
edit
dl
rm
pycapsule.h
1726
0644
edit
dl
rm
pyconfig.h
58656
0644
edit
dl
rm
pydtrace.h
2404
0644
edit
dl
rm
pyerrors.h
12968
0644
edit
dl
rm
pyexpat.h
2572
0644
edit
dl
rm
pyframe.h
551
0644
edit
dl
rm
pyhash.h
1656
0644
edit
dl
rm
pylifecycle.h
2412
0644
edit
dl
rm
pymacconfig.h
2497
0644
edit
dl
rm
pymacro.h
7355
0644
edit
dl
rm
pymath.h
1688
0644
edit
dl
rm
pymem.h
4438
0644
edit
dl
rm
pyport.h
20294
0644
edit
dl
rm
pystate.h
4634
0644
edit
dl
rm
pystats.h
596
0644
edit
dl
rm
pystrcmp.h
436
0644
edit
dl
rm
pystrtod.h
1247
0644
edit
dl
rm
Python.h
4038
0644
edit
dl
rm
pythonrun.h
1313
0644
edit
dl
rm
pythread.h
4002
0644
edit
dl
rm
pytypedefs.h
851
0644
edit
dl
rm
py_curses.h
3509
0644
edit
dl
rm
rangeobject.h
630
0644
edit
dl
rm
setobject.h
1557
0644
edit
dl
rm
sliceobject.h
2662
0644
edit
dl
rm
structmember.h
1645
0644
edit
dl
rm
structseq.h
1308
0644
edit
dl
rm
sysmodule.h
1251
0644
edit
dl
rm
traceback.h
585
0644
edit
dl
rm
tupleobject.h
1615
0644
edit
dl
rm
typeslots.h
2342
0644
edit
dl
rm
unicodeobject.h
35421
0644
edit
dl
rm
warnings.h
1129
0644
edit
dl
rm
weakrefobject.h
1391
0644
edit
dl
rm
Edit:
/opt/imh/python3.13/include/python3.13/pymem.h
(4438B)
// The PyMem_ family: low-level memory allocation interfaces. // See objimpl.h for the PyObject_ memory family. #ifndef Py_PYMEM_H #define Py_PYMEM_H #ifdef __cplusplus extern "C" { #endif /* BEWARE: Each interface exports both functions and macros. Extension modules should use the functions, to ensure binary compatibility across Python versions. Because the Python implementation is free to change internal details, and the macros may (or may not) expose details for speed, if you do use the macros you must recompile your extensions with each Python release. Never mix calls to PyMem_ with calls to the platform malloc/realloc/ calloc/free. For example, on Windows different DLLs may end up using different heaps, and if you use PyMem_Malloc you'll get the memory from the heap used by the Python DLL; it could be a disaster if you free()'ed that directly in your own extension. Using PyMem_Free instead ensures Python can return the memory to the proper heap. As another example, in a debug build (Py_DEBUG macro), Python wraps all calls to all PyMem_ and PyObject_ memory functions in special debugging wrappers that add additional debugging info to dynamic memory blocks. The system routines have no idea what to do with that stuff, and the Python wrappers have no idea what to do with raw blocks obtained directly by the system routines then. The GIL must be held when using these APIs. */ /* * Raw memory interface * ==================== */ /* Functions Functions supplying platform-independent semantics for malloc/realloc/ free. These functions make sure that allocating 0 bytes returns a distinct non-NULL pointer (whenever possible -- if we're flat out of memory, NULL may be returned), even if the platform malloc and realloc don't. Returned pointers must be checked for NULL explicitly. No action is performed on failure (no exception is set, no warning is printed, etc). */ PyAPI_FUNC(void *) PyMem_Malloc(size_t size); PyAPI_FUNC(void *) PyMem_Calloc(size_t nelem, size_t elsize); PyAPI_FUNC(void *) PyMem_Realloc(void *ptr, size_t new_size); PyAPI_FUNC(void) PyMem_Free(void *ptr); /* * Type-oriented memory interface * ============================== * * Allocate memory for n objects of the given type. Returns a new pointer * or NULL if the request was too large or memory allocation failed. Use * these macros rather than doing the multiplication yourself so that proper * overflow checking is always done. */ #define PyMem_New(type, n) \ ( ((size_t)(n) > PY_SSIZE_T_MAX / sizeof(type)) ? NULL : \ ( (type *) PyMem_Malloc((n) * sizeof(type)) ) ) /* * The value of (p) is always clobbered by this macro regardless of success. * The caller MUST check if (p) is NULL afterwards and deal with the memory * error if so. This means the original value of (p) MUST be saved for the * caller's memory error handler to not lose track of it. */ #define PyMem_Resize(p, type, n) \ ( (p) = ((size_t)(n) > PY_SSIZE_T_MAX / sizeof(type)) ? NULL : \ (type *) PyMem_Realloc((p), (n) * sizeof(type)) ) // Deprecated aliases only kept for backward compatibility. // PyMem_Del and PyMem_DEL are defined with no parameter to be able to use // them as function pointers (ex: dealloc = PyMem_Del). #define PyMem_MALLOC(n) PyMem_Malloc((n)) #define PyMem_NEW(type, n) PyMem_New(type, (n)) #define PyMem_REALLOC(p, n) PyMem_Realloc((p), (n)) #define PyMem_RESIZE(p, type, n) PyMem_Resize((p), type, (n)) #define PyMem_FREE(p) PyMem_Free((p)) #define PyMem_Del(p) PyMem_Free((p)) #define PyMem_DEL(p) PyMem_Free((p)) #if !defined(Py_LIMITED_API) || Py_LIMITED_API+0 >= 0x030d0000 // Memory allocator which doesn't require the GIL to be held. // Usually, it's just a thin wrapper to functions of the standard C library: // malloc(), calloc(), realloc() and free(). The difference is that // tracemalloc can track these memory allocations. PyAPI_FUNC(void *) PyMem_RawMalloc(size_t size); PyAPI_FUNC(void *) PyMem_RawCalloc(size_t nelem, size_t elsize); PyAPI_FUNC(void *) PyMem_RawRealloc(void *ptr, size_t new_size); PyAPI_FUNC(void) PyMem_RawFree(void *ptr); #endif #ifndef Py_LIMITED_API # define Py_CPYTHON_PYMEM_H # include "cpython/pymem.h" # undef Py_CPYTHON_PYMEM_H #endif #ifdef __cplusplus } #endif #endif // !Py_PYMEM_H
Save
cmd:
run