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Size
Permission
Date
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Python-ast.h
20.36
KB
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2019-11-01 23:03
Python.h
2.84
KB
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2019-11-01 23:02
abstract.h
42.79
KB
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2019-11-01 23:02
accu.h
1016
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2019-11-01 23:02
asdl.h
1.16
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2019-11-01 23:02
ast.h
477
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2019-11-01 23:02
bitset.h
792
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2019-11-01 23:02
bltinmodule.h
264
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2019-11-01 23:02
boolobject.h
886
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2019-11-01 23:02
bytearrayobject.h
2.06
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2019-11-01 23:02
bytes_methods.h
1.99
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2019-11-01 23:02
bytesobject.h
4.87
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2019-11-01 23:02
cellobject.h
701
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2019-11-01 23:02
ceval.h
7.46
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2019-11-01 23:02
classobject.h
1.63
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2019-11-01 23:02
code.h
5.14
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2019-11-01 23:02
codecs.h
6.54
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2019-11-01 23:02
compile.h
2.11
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2019-11-01 23:02
complexobject.h
1.76
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2019-11-01 23:02
datetime.h
8.34
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2019-11-01 23:02
descrobject.h
2.84
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2019-11-01 23:02
dictobject.h
6.19
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2019-11-01 23:02
dtoa.h
458
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2019-11-01 23:02
dynamic_annotations.h
21.94
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2019-11-01 23:02
enumobject.h
253
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2019-11-01 23:02
errcode.h
1.46
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2019-11-01 23:02
eval.h
597
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2019-11-01 23:02
fileobject.h
1.48
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2019-11-01 23:02
fileutils.h
2.81
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2019-11-01 23:02
floatobject.h
4.53
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2019-11-01 23:02
frameobject.h
3.45
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2019-11-01 23:02
funcobject.h
3.68
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2019-11-01 23:02
genobject.h
2.61
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2019-11-01 23:02
graminit.h
1.9
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2019-11-01 23:02
grammar.h
2
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2019-11-01 23:02
import.h
3.81
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2019-11-01 23:02
intrcheck.h
460
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2019-11-01 23:02
iterobject.h
567
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2019-11-01 23:02
listobject.h
2.83
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2019-11-01 23:02
longintrepr.h
3.9
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2019-11-01 23:02
longobject.h
8.09
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2019-11-01 23:02
marshal.h
803
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2019-11-01 23:02
memoryobject.h
2.63
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2019-11-01 23:02
metagrammar.h
253
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2019-11-01 23:02
methodobject.h
3.29
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2019-11-01 23:02
modsupport.h
5.91
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2019-11-01 23:02
moduleobject.h
2.09
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2019-11-01 23:02
namespaceobject.h
297
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2019-11-01 23:02
node.h
1007
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2019-11-01 23:02
object.h
39.07
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2019-11-01 23:02
objimpl.h
13.65
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2019-11-01 23:02
odictobject.h
1.3
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2019-11-01 23:02
opcode.h
4.81
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2019-11-01 23:02
osdefs.h
691
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2019-11-01 23:02
parsetok.h
2.82
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2019-11-01 23:02
patchlevel.h
1.1
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2019-11-01 23:02
pgen.h
253
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2019-11-01 23:02
pgenheaders.h
1.12
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2019-11-01 23:02
py_curses.h
4.08
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2019-11-01 23:02
pyarena.h
2.68
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2019-11-01 23:02
pyatomic.h
7.94
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2019-11-01 23:02
pycapsule.h
1.69
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2019-11-01 23:02
pyconfig-64.h
42.8
KB
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2024-05-31 13:49
pyconfig.h
162
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2024-05-31 13:51
pyctype.h
1.29
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2019-11-01 23:02
pydebug.h
1.11
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2019-11-01 23:02
pyerrors.h
15.95
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2019-11-01 23:02
pyexpat.h
2.39
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2019-11-01 23:02
pyfpe.h
8.27
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2019-11-01 23:02
pygetopt.h
388
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2019-11-01 23:02
pyhash.h
4.17
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2019-11-01 23:02
pylifecycle.h
3.72
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2019-11-01 23:02
pymacconfig.h
2.92
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2019-11-01 23:02
pymacro.h
3.22
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2019-11-01 23:02
pymath.h
7.05
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2019-11-01 23:02
pymem.h
6.87
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2019-11-01 23:02
pyport.h
31.27
KB
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2019-11-01 23:02
pystate.h
9.27
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2019-11-01 23:02
pystrcmp.h
436
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2019-11-01 23:02
pystrhex.h
443
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2019-11-01 23:02
pystrtod.h
1.25
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2019-11-01 23:02
pythonrun.h
6.53
KB
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2019-11-01 23:02
pythread.h
2.96
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2019-11-01 23:02
pytime.h
6.5
KB
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2019-11-01 23:02
rangeobject.h
629
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2019-11-01 23:02
setobject.h
3.21
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2019-11-01 23:02
sliceobject.h
2.43
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2019-11-01 23:02
structmember.h
2.02
KB
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2019-11-01 23:02
structseq.h
1.32
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2019-11-01 23:02
symtable.h
4.75
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2019-11-01 23:02
sysmodule.h
1.32
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2019-11-01 23:02
token.h
1.9
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2019-11-01 23:02
traceback.h
2.16
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2019-11-01 23:02
tupleobject.h
2.39
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2019-11-01 23:02
typeslots.h
2.2
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2019-11-01 23:02
ucnhash.h
1.03
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2019-11-01 23:02
unicodeobject.h
77.34
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2019-11-01 23:02
warnings.h
1.39
KB
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2019-11-01 23:02
weakrefobject.h
2.8
KB
-rw-r--r--
2019-11-01 23:02
Save
Rename
#ifndef Py_PYMATH_H #define Py_PYMATH_H #include "pyconfig.h" /* include for defines */ /************************************************************************** Symbols and macros to supply platform-independent interfaces to mathematical functions and constants **************************************************************************/ /* Python provides implementations for copysign, round and hypot in * Python/pymath.c just in case your math library doesn't provide the * functions. * *Note: PC/pyconfig.h defines copysign as _copysign */ #ifndef HAVE_COPYSIGN extern double copysign(double, double); #endif #ifndef HAVE_ROUND extern double round(double); #endif #ifndef HAVE_HYPOT extern double hypot(double, double); #endif /* extra declarations */ #ifndef _MSC_VER #ifndef __STDC__ extern double fmod (double, double); extern double frexp (double, int *); extern double ldexp (double, int); extern double modf (double, double *); extern double pow(double, double); #endif /* __STDC__ */ #endif /* _MSC_VER */ /* High precision definition of pi and e (Euler) * The values are taken from libc6's math.h. */ #ifndef Py_MATH_PIl #define Py_MATH_PIl 3.1415926535897932384626433832795029L #endif #ifndef Py_MATH_PI #define Py_MATH_PI 3.14159265358979323846 #endif #ifndef Py_MATH_El #define Py_MATH_El 2.7182818284590452353602874713526625L #endif #ifndef Py_MATH_E #define Py_MATH_E 2.7182818284590452354 #endif /* On x86, Py_FORCE_DOUBLE forces a floating-point number out of an x87 FPU register and into a 64-bit memory location, rounding from extended precision to double precision in the process. On other platforms it does nothing. */ /* we take double rounding as evidence of x87 usage */ #ifndef Py_LIMITED_API #ifndef Py_FORCE_DOUBLE # ifdef X87_DOUBLE_ROUNDING PyAPI_FUNC(double) _Py_force_double(double); # define Py_FORCE_DOUBLE(X) (_Py_force_double(X)) # else # define Py_FORCE_DOUBLE(X) (X) # endif #endif #endif #ifndef Py_LIMITED_API #ifdef HAVE_GCC_ASM_FOR_X87 PyAPI_FUNC(unsigned short) _Py_get_387controlword(void); PyAPI_FUNC(void) _Py_set_387controlword(unsigned short); #endif #endif /* Py_IS_NAN(X) * Return 1 if float or double arg is a NaN, else 0. * Caution: * X is evaluated more than once. * This may not work on all platforms. Each platform has *some* * way to spell this, though -- override in pyconfig.h if you have * a platform where it doesn't work. * Note: PC/pyconfig.h defines Py_IS_NAN as _isnan */ #ifndef Py_IS_NAN #if defined HAVE_DECL_ISNAN && HAVE_DECL_ISNAN == 1 #define Py_IS_NAN(X) isnan(X) #else #define Py_IS_NAN(X) ((X) != (X)) #endif #endif /* Py_IS_INFINITY(X) * Return 1 if float or double arg is an infinity, else 0. * Caution: * X is evaluated more than once. * This implementation may set the underflow flag if |X| is very small; * it really can't be implemented correctly (& easily) before C99. * Override in pyconfig.h if you have a better spelling on your platform. * Py_FORCE_DOUBLE is used to avoid getting false negatives from a * non-infinite value v sitting in an 80-bit x87 register such that * v becomes infinite when spilled from the register to 64-bit memory. * Note: PC/pyconfig.h defines Py_IS_INFINITY as _isinf */ #ifndef Py_IS_INFINITY # if defined HAVE_DECL_ISINF && HAVE_DECL_ISINF == 1 # define Py_IS_INFINITY(X) isinf(X) # else # define Py_IS_INFINITY(X) ((X) && \ (Py_FORCE_DOUBLE(X)*0.5 == Py_FORCE_DOUBLE(X))) # endif #endif /* Py_IS_FINITE(X) * Return 1 if float or double arg is neither infinite nor NAN, else 0. * Some compilers (e.g. VisualStudio) have intrisics for this, so a special * macro for this particular test is useful * Note: PC/pyconfig.h defines Py_IS_FINITE as _finite */ #ifndef Py_IS_FINITE #if defined HAVE_DECL_ISFINITE && HAVE_DECL_ISFINITE == 1 #define Py_IS_FINITE(X) isfinite(X) #elif defined HAVE_FINITE #define Py_IS_FINITE(X) finite(X) #else #define Py_IS_FINITE(X) (!Py_IS_INFINITY(X) && !Py_IS_NAN(X)) #endif #endif /* HUGE_VAL is supposed to expand to a positive double infinity. Python * uses Py_HUGE_VAL instead because some platforms are broken in this * respect. We used to embed code in pyport.h to try to worm around that, * but different platforms are broken in conflicting ways. If you're on * a platform where HUGE_VAL is defined incorrectly, fiddle your Python * config to #define Py_HUGE_VAL to something that works on your platform. */ #ifndef Py_HUGE_VAL #define Py_HUGE_VAL HUGE_VAL #endif /* Py_NAN * A value that evaluates to a NaN. On IEEE 754 platforms INF*0 or * INF/INF works. Define Py_NO_NAN in pyconfig.h if your platform * doesn't support NaNs. */ #if !defined(Py_NAN) && !defined(Py_NO_NAN) #if !defined(__INTEL_COMPILER) #define Py_NAN (Py_HUGE_VAL * 0.) #else /* __INTEL_COMPILER */ #if defined(ICC_NAN_STRICT) #pragma float_control(push) #pragma float_control(precise, on) #pragma float_control(except, on) #if defined(_MSC_VER) __declspec(noinline) #else /* Linux */ __attribute__((noinline)) #endif /* _MSC_VER */ static double __icc_nan() { return sqrt(-1.0); } #pragma float_control (pop) #define Py_NAN __icc_nan() #else /* ICC_NAN_RELAXED as default for Intel Compiler */ static union { unsigned char buf[8]; double __icc_nan; } __nan_store = {0,0,0,0,0,0,0xf8,0x7f}; #define Py_NAN (__nan_store.__icc_nan) #endif /* ICC_NAN_STRICT */ #endif /* __INTEL_COMPILER */ #endif /* Py_OVERFLOWED(X) * Return 1 iff a libm function overflowed. Set errno to 0 before calling * a libm function, and invoke this macro after, passing the function * result. * Caution: * This isn't reliable. C99 no longer requires libm to set errno under * any exceptional condition, but does require +- HUGE_VAL return * values on overflow. A 754 box *probably* maps HUGE_VAL to a * double infinity, and we're cool if that's so, unless the input * was an infinity and an infinity is the expected result. A C89 * system sets errno to ERANGE, so we check for that too. We're * out of luck if a C99 754 box doesn't map HUGE_VAL to +Inf, or * if the returned result is a NaN, or if a C89 box returns HUGE_VAL * in non-overflow cases. * X is evaluated more than once. * Some platforms have better way to spell this, so expect some #ifdef'ery. * * OpenBSD uses 'isinf()' because a compiler bug on that platform causes * the longer macro version to be mis-compiled. This isn't optimal, and * should be removed once a newer compiler is available on that platform. * The system that had the failure was running OpenBSD 3.2 on Intel, with * gcc 2.95.3. * * According to Tim's checkin, the FreeBSD systems use isinf() to work * around a FPE bug on that platform. */ #if defined(__FreeBSD__) || defined(__OpenBSD__) #define Py_OVERFLOWED(X) isinf(X) #else #define Py_OVERFLOWED(X) ((X) != 0.0 && (errno == ERANGE || \ (X) == Py_HUGE_VAL || \ (X) == -Py_HUGE_VAL)) #endif #endif /* Py_PYMATH_H */