/usr/include/python2.6
NameSizeModeActions
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/floatobject.h (5060B)
/* Float object interface */ /* PyFloatObject represents a (double precision) floating point number. */ #ifndef Py_FLOATOBJECT_H #define Py_FLOATOBJECT_H #ifdef __cplusplus extern "C" { #endif typedef struct { PyObject_HEAD double ob_fval; } PyFloatObject; PyAPI_DATA(PyTypeObject) PyFloat_Type; #define PyFloat_Check(op) PyObject_TypeCheck(op, &PyFloat_Type) #define PyFloat_CheckExact(op) (Py_TYPE(op) == &PyFloat_Type) #ifdef Py_NAN #define Py_RETURN_NAN return PyFloat_FromDouble(Py_NAN) #endif #define Py_RETURN_INF(sign) do \ if (copysign(1., sign) == 1.) { \ return PyFloat_FromDouble(Py_HUGE_VAL); \ } else { \ return PyFloat_FromDouble(-Py_HUGE_VAL); \ } while(0) PyAPI_FUNC(double) PyFloat_GetMax(void); PyAPI_FUNC(double) PyFloat_GetMin(void); PyAPI_FUNC(PyObject *) PyFloat_GetInfo(void); /* Return Python float from string PyObject. Second argument ignored on input, and, if non-NULL, NULL is stored into *junk (this tried to serve a purpose once but can't be made to work as intended). */ PyAPI_FUNC(PyObject *) PyFloat_FromString(PyObject*, char** junk); /* Return Python float from C double. */ PyAPI_FUNC(PyObject *) PyFloat_FromDouble(double); /* Extract C double from Python float. The macro version trades safety for speed. */ PyAPI_FUNC(double) PyFloat_AsDouble(PyObject *); #define PyFloat_AS_DOUBLE(op) (((PyFloatObject *)(op))->ob_fval) /* Write repr(v) into the char buffer argument, followed by null byte. The buffer must be "big enough"; >= 100 is very safe. PyFloat_AsReprString(buf, x) strives to print enough digits so that PyFloat_FromString(buf) then reproduces x exactly. */ PyAPI_FUNC(void) PyFloat_AsReprString(char*, PyFloatObject *v); /* Write str(v) into the char buffer argument, followed by null byte. The buffer must be "big enough"; >= 100 is very safe. Note that it's unusual to be able to get back the float you started with from PyFloat_AsString's result -- use PyFloat_AsReprString() if you want to preserve precision across conversions. */ PyAPI_FUNC(void) PyFloat_AsString(char*, PyFloatObject *v); /* _PyFloat_{Pack,Unpack}{4,8} * * The struct and pickle (at least) modules need an efficient platform- * independent way to store floating-point values as byte strings. * The Pack routines produce a string from a C double, and the Unpack * routines produce a C double from such a string. The suffix (4 or 8) * specifies the number of bytes in the string. * * On platforms that appear to use (see _PyFloat_Init()) IEEE-754 formats * these functions work by copying bits. On other platforms, the formats the * 4- byte format is identical to the IEEE-754 single precision format, and * the 8-byte format to the IEEE-754 double precision format, although the * packing of INFs and NaNs (if such things exist on the platform) isn't * handled correctly, and attempting to unpack a string containing an IEEE * INF or NaN will raise an exception. * * On non-IEEE platforms with more precision, or larger dynamic range, than * 754 supports, not all values can be packed; on non-IEEE platforms with less * precision, or smaller dynamic range, not all values can be unpacked. What * happens in such cases is partly accidental (alas). */ /* The pack routines write 4 or 8 bytes, starting at p. le is a bool * argument, true if you want the string in little-endian format (exponent * last, at p+3 or p+7), false if you want big-endian format (exponent * first, at p). * Return value: 0 if all is OK, -1 if error (and an exception is * set, most likely OverflowError). * There are two problems on non-IEEE platforms: * 1): What this does is undefined if x is a NaN or infinity. * 2): -0.0 and +0.0 produce the same string. */ PyAPI_FUNC(int) _PyFloat_Pack4(double x, unsigned char *p, int le); PyAPI_FUNC(int) _PyFloat_Pack8(double x, unsigned char *p, int le); /* Used to get the important decimal digits of a double */ PyAPI_FUNC(int) _PyFloat_Digits(char *buf, double v, int *signum); PyAPI_FUNC(void) _PyFloat_DigitsInit(void); /* The unpack routines read 4 or 8 bytes, starting at p. le is a bool * argument, true if the string is in little-endian format (exponent * last, at p+3 or p+7), false if big-endian (exponent first, at p). * Return value: The unpacked double. On error, this is -1.0 and * PyErr_Occurred() is true (and an exception is set, most likely * OverflowError). Note that on a non-IEEE platform this will refuse * to unpack a string that represents a NaN or infinity. */ PyAPI_FUNC(double) _PyFloat_Unpack4(const unsigned char *p, int le); PyAPI_FUNC(double) _PyFloat_Unpack8(const unsigned char *p, int le); /* free list api */ PyAPI_FUNC(int) PyFloat_ClearFreeList(void); /* Format the object based on the format_spec, as defined in PEP 3101 (Advanced String Formatting). */ PyAPI_FUNC(PyObject *) _PyFloat_FormatAdvanced(PyObject *obj, char *format_spec, Py_ssize_t format_spec_len); #ifdef __cplusplus } #endif #endif /* !Py_FLOATOBJECT_H */