/usr/include/python2.6
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abstract.h446310644editdlrm
asdl.h10990644editdlrm
ast.h2300644editdlrm
bitset.h7920644editdlrm
boolobject.h9120644editdlrm
bufferobject.h9220644editdlrm
bytearrayobject.h19410644editdlrm
bytesobject.h14580644editdlrm
bytes_methods.h32690644editdlrm
cellobject.h6510644editdlrm
ceval.h51190644editdlrm
classobject.h29390644editdlrm
cobject.h18790644editdlrm
code.h35240644editdlrm
codecs.h50140644editdlrm
compile.h11570644editdlrm
complexobject.h15360644editdlrm
cStringIO.h20010644editdlrm
datetime.h86270644editdlrm
descrobject.h24800644editdlrm
dictobject.h59700644editdlrm
enumobject.h2530644editdlrm
errcode.h13630644editdlrm
eval.h5570644editdlrm
fileobject.h29180644editdlrm
floatobject.h50600644editdlrm
frameobject.h29230644editdlrm
funcobject.h29950644editdlrm
genobject.h8910644editdlrm
graminit.h19080644editdlrm
grammar.h20210644editdlrm
import.h22150644editdlrm
intobject.h27360644editdlrm
intrcheck.h2740644editdlrm
iterobject.h5220644editdlrm
listobject.h25130644editdlrm
longintrepr.h23180644editdlrm
longobject.h55840644editdlrm
marshal.h7130644editdlrm
metagrammar.h2530644editdlrm
methodobject.h32380644editdlrm
modsupport.h53690644editdlrm
moduleobject.h6090644editdlrm
node.h8900644editdlrm
object.h373940644editdlrm
objimpl.h130870644editdlrm
opcode.h43410644editdlrm
osdefs.h9420644editdlrm
parsetok.h17800644editdlrm
patchlevel.h14290644editdlrm
pgen.h2530644editdlrm
pgenheaders.h11440644editdlrm
pyarena.h26930644editdlrm
pyconfig-32.h312410644editdlrm
pyconfig-64.h312350644editdlrm
pyconfig.h1620644editdlrm
pyctype.h10720644editdlrm
pydebug.h13220644editdlrm
pydtrace.h13490644editdlrm
pyerrors.h117160644editdlrm
pyexpat.h19570644editdlrm
pyfpe.h84950644editdlrm
pygetopt.h3480644editdlrm
pymacconfig.h24850644editdlrm
pymactoolbox.h79430644editdlrm
pymath.h66140644editdlrm
pymem.h46820644editdlrm
pyport.h247780644editdlrm
pystate.h63330644editdlrm
pystrcmp.h4630644editdlrm
pystrtod.h3590644editdlrm
Python-ast.h200810644editdlrm
Python.h42940644editdlrm
pythonrun.h71080644editdlrm
pythread.h14470644editdlrm
py_curses.h43880644editdlrm
rangeobject.h6460644editdlrm
setobject.h30770644editdlrm
sliceobject.h13310644editdlrm
stringobject.h78760644editdlrm
structmember.h29010644editdlrm
structseq.h8620644editdlrm
symtable.h40580644editdlrm
sysmodule.h9160644editdlrm
timefuncs.h4420644editdlrm
token.h17100644editdlrm
traceback.h6970644editdlrm
tupleobject.h21230644editdlrm
ucnhash.h8610644editdlrm
unicodeobject.h523040644editdlrm
warnings.h6350644editdlrm
weakrefobject.h24280644editdlrm
Edit: /usr/include/python2.6/pymem.h (4682B)
/* The PyMem_ family: low-level memory allocation interfaces. See objimpl.h for the PyObject_ memory family. */ #ifndef Py_PYMEM_H #define Py_PYMEM_H #include "pyport.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 PYMALLOC_DEBUG mode, 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); PyAPI_FUNC(void *) PyMem_Realloc(void *, size_t); PyAPI_FUNC(void) PyMem_Free(void *); /* Starting from Python 1.6, the wrappers Py_{Malloc,Realloc,Free} are no longer supported. They used to call PyErr_NoMemory() on failure. */ /* Macros. */ #ifdef PYMALLOC_DEBUG /* Redirect all memory operations to Python's debugging allocator. */ #define PyMem_MALLOC PyObject_MALLOC #define PyMem_REALLOC PyObject_REALLOC #define PyMem_FREE PyObject_FREE #else /* ! PYMALLOC_DEBUG */ /* PyMem_MALLOC(0) means malloc(1). Some systems would return NULL for malloc(0), which would be treated as an error. Some platforms would return a pointer with no memory behind it, which would break pymalloc. To solve these problems, allocate an extra byte. */ /* Returns NULL to indicate error if a negative size or size larger than Py_ssize_t can represent is supplied. Helps prevents security holes. */ #define PyMem_MALLOC(n) (((n) < 0 || (n) > PY_SSIZE_T_MAX) ? NULL \ : malloc((n) ? (n) : 1)) #define PyMem_REALLOC(p, n) (((n) < 0 || (n) > PY_SSIZE_T_MAX) ? NULL \ : realloc((p), (n) ? (n) : 1)) #define PyMem_FREE free #endif /* PYMALLOC_DEBUG */ /* * 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)) ) ) #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)) ) #define PyMem_RESIZE(p, type, n) \ ( (p) = ((size_t)(n) > PY_SSIZE_T_MAX / sizeof(type)) ? NULL : \ (type *) PyMem_REALLOC((p), (n) * sizeof(type)) ) /* PyMem{Del,DEL} are left over from ancient days, and shouldn't be used * anymore. They're just confusing aliases for PyMem_{Free,FREE} now. */ #define PyMem_Del PyMem_Free #define PyMem_DEL PyMem_FREE #ifdef __cplusplus } #endif #endif /* !Py_PYMEM_H */