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[CRT]
Update / improve math.h a bit svn path=/trunk/; revision=67722
This commit is contained in:
parent
0c72efe8f1
commit
b2135ede32
3 changed files with 268 additions and 174 deletions
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@ -1,6 +1,7 @@
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//Standard C++ math declarations
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#pragma once
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#define _CMATH_
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#include <math.h>
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#define _CRT_OBSOLETE(_NewItem)
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#endif
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#ifndef _CRT_JIT_INTRINSIC
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#define _CRT_JIT_INTRINSIC
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#endif
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/** Constants ****************************************************************/
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/**
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* This file has no copyright assigned and is placed in the Public Domain.
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* This file is part of the w64 mingw-runtime package.
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* No warranty is given; refer to the file DISCLAIMER within this package.
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*/
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#ifndef _INC_MATH
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#define _INC_MATH
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#include "crtdefs.h"
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struct _exception;
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#pragma pack(push,_CRT_PACKING)
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#ifdef __cplusplus
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extern "C" {
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#endif
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#if defined(__GNUC__)
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/* Some 3rd party code needs the declaration of C99 functions */
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#include "mingw_math.h"
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#endif
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typedef float float_t;
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typedef double double_t;
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#ifndef _EXCEPTION_DEFINED
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#define _EXCEPTION_DEFINED
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struct _complex {
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double x,y;
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};
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#endif
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#if !__STDC__ && !defined(__cplusplus)
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#define complex _complex
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#endif /* __STDC__ */
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#endif /* _COMPLEX_DEFINED */
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#define _DOMAIN 1
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#define _SING 2
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#define _UNDERFLOW 4
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#define _TLOSS 5
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#define _PLOSS 6
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#define EDOM 33
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#define ERANGE 34
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_CRTIMP extern double _HUGE;
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_CRTIMP extern double const _HUGE;
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#define HUGE_VAL _HUGE
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#ifndef _HUGE_ENUF
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#define _HUGE_ENUF 1e+300
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#endif
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#define INFINITY ((float)(_HUGE_ENUF * _HUGE_ENUF))
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#define HUGE_VALD ((double)INFINITY)
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#define HUGE_VALF ((float)INFINITY)
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#define HUGE_VALL ((long double)INFINITY)
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#define NAN ((float)(INFINITY * 0.0F))
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#define _DENORM (-2)
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#define _FINITE (-1)
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#define _INFCODE 1
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#define _NANCODE 2
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#define FP_INFINITE _INFCODE
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#define FP_NAN _NANCODE
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#define FP_NORMAL _FINITE
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#define FP_SUBNORMAL _DENORM
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#define FP_ZERO 0
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#ifndef __cplusplus
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#define _matherrl _matherr
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#endif
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#ifndef _CRT_ABS_DEFINED
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#define _CRT_ABS_DEFINED
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int __cdecl abs(_In_ int x);
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long __cdecl labs(_In_ long x);
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_Check_return_ int __cdecl abs(_In_ int x);
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_Check_return_ long __cdecl labs(_In_ long x);
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_Check_return_ long long __cdecl llabs(_In_ long long x);
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#endif
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double __cdecl acos(_In_ double x);
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double __cdecl asin(_In_ double x);
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double __cdecl atan(_In_ double x);
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double __cdecl atan2(_In_ double y, _In_ double x);
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double __cdecl cos(_In_ double x);
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double __cdecl cosh(_In_ double x);
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double __cdecl exp(_In_ double x);
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double __cdecl fabs(_In_ double x);
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double __cdecl fmod(_In_ double x, _In_ double y);
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double __cdecl log(_In_ double x);
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double __cdecl log10(_In_ double x);
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double __cdecl pow(_In_ double x, double y);
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double __cdecl sin(_In_ double x);
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double __cdecl sinh(_In_ double x);
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double __cdecl sqrt(_In_ double x);
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double __cdecl tan(_In_ double x);
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double __cdecl tanh(_In_ double x);
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_Check_return_ double __cdecl acos(_In_ double x);
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_Check_return_ double __cdecl asin(_In_ double x);
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_Check_return_ double __cdecl atan(_In_ double x);
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_Check_return_ double __cdecl atan2(_In_ double y, _In_ double x);
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_Check_return_ double __cdecl cos(_In_ double x);
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_Check_return_ double __cdecl cosh(_In_ double x);
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_Check_return_ double __cdecl exp(_In_ double x);
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_Check_return_ _CRT_JIT_INTRINSIC double __cdecl fabs(_In_ double x);
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_Check_return_ double __cdecl fmod(_In_ double x, _In_ double y);
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_Check_return_ double __cdecl log(_In_ double x);
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_Check_return_ double __cdecl log10(_In_ double x);
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_Check_return_ double __cdecl pow(_In_ double x, double y);
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_Check_return_ double __cdecl sin(_In_ double x);
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_Check_return_ double __cdecl sinh(_In_ double x);
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_Check_return_ _CRT_JIT_INTRINSIC double __cdecl sqrt(_In_ double x);
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_Check_return_ double __cdecl tan(_In_ double x);
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_Check_return_ double __cdecl tanh(_In_ double x);
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#ifndef _CRT_MATHERR_DEFINED
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#define _CRT_MATHERR_DEFINED
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int __cdecl _matherr(_Inout_ struct _exception *except);
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int __CRTDECL _matherr(_Inout_ struct _exception *except);
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#endif
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#ifndef _CRT_ATOF_DEFINED
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#define _CRT_ATOF_DEFINED
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_Check_return_
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_CRTIMP
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double
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__cdecl
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atof(
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_In_z_ const char *str);
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_Check_return_
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_CRTIMP
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double
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__cdecl
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_atof_l(
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_In_z_ const char *str,
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_In_opt_ _locale_t locale);
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_Check_return_ _CRTIMP double __cdecl atof(_In_z_ const char *str);
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_Check_return_ _CRTIMP double __cdecl _atof_l(_In_z_ const char *str, _In_opt_ _locale_t locale); // vista+
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#endif /* _CRT_ATOF_DEFINED */
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#ifndef _SIGN_DEFINED
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#define _SIGN_DEFINED
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_Check_return_ _CRTIMP double __cdecl _copysign(_In_ double x, _In_ double sgn);
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_Check_return_ _CRTIMP double __cdecl _chgsign(_In_ double x);
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_Check_return_ _CRTIMP double __cdecl _copysign(_In_ double x, _In_ double sgn);
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_Check_return_ _CRTIMP double __cdecl _chgsign(_In_ double x);
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#endif
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_CRTIMP double __cdecl _cabs(_In_ struct _complex a);
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_CRTIMP double __cdecl ceil(_In_ double x);
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_CRTIMP double __cdecl floor(_In_ double x);
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_CRTIMP double __cdecl frexp(_In_ double x, _Out_ int *y);
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_CRTIMP double __cdecl _hypot(_In_ double x, _In_ double y);
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_CRTIMP double __cdecl _j0(_In_ double x);
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_CRTIMP double __cdecl _j1(_In_ double x);
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_CRTIMP double __cdecl _jn(_In_ int x, _In_ double y);
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_CRTIMP double __cdecl ldexp(_In_ double x, _In_ int y);
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_CRTIMP double __cdecl modf(_In_ double x, _Out_ double *y);
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_CRTIMP double __cdecl _y0(_In_ double x);
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_CRTIMP double __cdecl _y1(_In_ double x);
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_CRTIMP double __cdecl _yn(_In_ int x, _In_ double y);
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_CRTIMP float __cdecl _hypotf(_In_ float x, _In_ float y);
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_Check_return_ _CRTIMP double __cdecl _cabs(_In_ struct _complex a);
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_Check_return_ _CRTIMP double __cdecl _hypot(_In_ double x, _In_ double y);
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_Check_return_ _CRTIMP double __cdecl _j0(_In_ double x);
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_Check_return_ _CRTIMP double __cdecl _j1(_In_ double x);
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_Check_return_ _CRTIMP double __cdecl _jn(_In_ int x, _In_ double y);
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_Check_return_ _CRTIMP double __cdecl _nextafter(_In_ double x, _In_ double y);
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_Check_return_ _CRTIMP double __cdecl _y0(_In_ double x);
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_Check_return_ _CRTIMP double __cdecl _y1(_In_ double x);
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_Check_return_ _CRTIMP double __cdecl _yn(_In_ int x, _In_ double y);
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_Check_return_ _CRTIMP double __cdecl ceil(_In_ double x);
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_Check_return_ _CRTIMP double __cdecl floor(_In_ double x);
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_Check_return_ _CRTIMP double __cdecl frexp(_In_ double x, _Out_ int *y);
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_Check_return_ _CRTIMP double __cdecl ldexp(_In_ double x, _In_ int y);
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_Check_return_ _CRTIMP double __cdecl modf(_In_ double x, _Out_ double *y);
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#if defined(__i386__) || defined(_M_IX86)
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_CRTIMP int __cdecl _set_SSE2_enable(_In_ int flag);
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_Check_return_ _CRTIMP int __cdecl _set_SSE2_enable(_In_ int flag);
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#endif
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#if defined(__x86_64) || defined(_M_AMD64)
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_CRTIMP float __cdecl _copysignf(_In_ float x, _In_ float sgn);
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_CRTIMP float __cdecl _chgsignf(_In_ float x);
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_CRTIMP float __cdecl _logbf(_In_ float x);
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_CRTIMP float __cdecl _nextafterf(_In_ float x, _In_ float y);
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_CRTIMP int __cdecl _finitef(_In_ float x);
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_CRTIMP int __cdecl _isnanf(_In_ float x);
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_CRTIMP int __cdecl _fpclassf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl _nextafterf(_In_ float x, _In_ float y);
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_Check_return_ _CRTIMP int __cdecl _isnanf(_In_ float x);
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_Check_return_ _CRTIMP int __cdecl _fpclassf(_In_ float x);
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#endif
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#if defined(__x86_64) || defined(_M_AMD64) || \
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defined(__arm__) || defined(_M_ARM) || \
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defined(__arm64__) || defined(_M_ARM64)
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_Check_return_ _CRTIMP int __cdecl _finitef(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl _logbf(_In_ float x);
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#endif /* _M_AMD64 || _M_ARM || _M_ARM64 */
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#if defined(__ia64__) || defined (_M_IA64)
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_CRTIMP float __cdecl fabsf(_In_ float x);
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_CRTIMP float __cdecl ldexpf(_In_ float x, _In_ int y);
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_CRTIMP long double __cdecl tanl(_In_ long double x);
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_Check_return_ _CRTIMP float __cdecl ldexpf(_In_ float x, _In_ int y);
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_Check_return_ _CRTIMP long double __cdecl tanl(_In_ long double x);
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#else
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__CRT_INLINE float __cdecl fabsf(_In_ float x) { return ((float)fabs((double)x)); }
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__CRT_INLINE float __cdecl ldexpf(_In_ float x, _In_ int expn) { return (float)ldexp(x, expn); }
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__CRT_INLINE long double tanl(_In_ long double x) { return (tan((double)x)); }
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_Check_return_ __CRT_INLINE float __CRTDECL ldexpf(_In_ float x, _In_ int y) { return (float)ldexp(x, y); }
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_Check_return_ __CRT_INLINE long double __CRTDECL tanl(_In_ long double x) { return (tan((double)x)); }
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#endif
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#if (_WIN32_WINNT >= 0x600) && \
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(defined(__x86_64) || defined(_M_AMD64) || \
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defined (__ia64__) || defined (_M_IA64))
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_CRTIMP float __cdecl acosf(_In_ float x);
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_CRTIMP float __cdecl asinf(_In_ float x);
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_CRTIMP float __cdecl atanf(_In_ float x);
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_CRTIMP float __cdecl atan2f(_In_ float x, _In_ float y);
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_CRTIMP float __cdecl ceilf(_In_ float x);
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_CRTIMP float __cdecl cosf(_In_ float x);
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_CRTIMP float __cdecl coshf(_In_ float x);
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_CRTIMP float __cdecl expf(_In_ float x);
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_CRTIMP float __cdecl floorf(_In_ float x);
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_CRTIMP float __cdecl fmodf(_In_ float x, _In_ float y);
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_CRTIMP float __cdecl logf(_In_ float x);
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_CRTIMP float __cdecl log10f(_In_ float x);
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_CRTIMP float __cdecl modff(_In_ float x, _Out_ float *y);
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_CRTIMP float __cdecl powf(_In_ float b, _In_ float e);
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_CRTIMP float __cdecl sinf(_In_ float x);
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_CRTIMP float __cdecl sinhf(_In_ float x);
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_CRTIMP float __cdecl sqrtf(_In_ float x);
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_CRTIMP float __cdecl tanf(_In_ float x);
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_CRTIMP float __cdecl tanhf(_In_ float x);
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#if defined(__ia64__) || defined(_M_IA64) || \
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defined(__arm__) || defined(_M_ARM) || \
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defined(__arm64__) || defined(_M_ARM64)
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_Check_return_ _CRT_JIT_INTRINSIC _CRTIMP float __cdecl fabsf(_In_ float x);
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#else
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_Check_return_ __CRT_INLINE float __CRTDECL fabsf(_In_ float x) { return ((float)fabs((double)x)); }
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#endif /* _M_IA64 || _M_ARM || _M_ARM64 */
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__CRT_INLINE float acosf(_In_ float x) { return ((float)acos((double)x)); }
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__CRT_INLINE float asinf(_In_ float x) { return ((float)asin((double)x)); }
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__CRT_INLINE float atanf(_In_ float x) { return ((float)atan((double)x)); }
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__CRT_INLINE float atan2f(_In_ float x, _In_ float y) { return ((float)atan2((double)x,(double)y)); }
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__CRT_INLINE float ceilf(_In_ float x) { return ((float)ceil((double)x)); }
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__CRT_INLINE float cosf(_In_ float x) { return ((float)cos((double)x)); }
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__CRT_INLINE float coshf(_In_ float x) { return ((float)cosh((double)x)); }
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__CRT_INLINE float expf(_In_ float x) { return ((float)exp((double)x)); }
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__CRT_INLINE float floorf(_In_ float x) { return ((float)floor((double)x)); }
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__CRT_INLINE float fmodf(_In_ float x, _In_ float y) { return ((float)fmod((double)x,(double)y)); }
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__CRT_INLINE float logf(_In_ float x) { return ((float)log((double)x)); }
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__CRT_INLINE float log10f(_In_ float x) { return ((float)log10((double)x)); }
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__CRT_INLINE float modff(_In_ float x, _Out_ float *y) {
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double _Di,_Df = modf((double)x,&_Di);
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*y = (float)_Di;
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return ((float)_Df);
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}
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__CRT_INLINE float powf(_In_ float x, _In_ float y) { return ((float)pow((double)x,(double)y)); }
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__CRT_INLINE float sinf(_In_ float x) { return ((float)sin((double)x)); }
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__CRT_INLINE float sinhf(_In_ float x) { return ((float)sinh((double)x)); }
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__CRT_INLINE float sqrtf(_In_ float x) { return ((float)sqrt((double)x)); }
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__CRT_INLINE float tanf(_In_ float x) { return ((float)tan((double)x)); }
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__CRT_INLINE float tanhf(_In_ float x) { return ((float)tanh((double)x)); }
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#if defined(_CRTBLD) || \
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defined(__x86_64) || defined(_M_AMD64) || \
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defined(__ia64__) || defined(_M_IA64) || \
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defined(__arm__) || defined(_M_ARM) || \
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defined(__arm64__) || defined(_M_ARM64)
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_Check_return_ _CRTIMP float __cdecl _chgsignf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl _copysignf(_In_ float x, _In_ float y);
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_Check_return_ _CRTIMP float __cdecl _hypotf(_In_ float x, _In_ float y);
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_Check_return_ _CRTIMP float __cdecl acosf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl asinf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl atanf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl atan2f(_In_ float x, _In_ float y);
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_Check_return_ _CRTIMP float __cdecl ceilf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl cosf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl coshf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl expf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl floorf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl fmodf(_In_ float x, _In_ float y);
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_Check_return_ _CRTIMP float __cdecl logf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl log10f(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl modff(_In_ float x, _Out_ float *y);
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_Check_return_ _CRTIMP float __cdecl powf(_In_ float b, _In_ float e);
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_Check_return_ _CRTIMP float __cdecl sinf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl sinhf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl sqrtf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl tanf(_In_ float x);
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_Check_return_ _CRTIMP float __cdecl tanhf(_In_ float x);
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#else
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#if defined(_MSC_VER) && (defined(_M_AMD64) || defined(_M_ARM))
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/* Make sure intrinsics don't get in our way */
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#pragma warning(suppress:4164) /* intrinsic not declared */
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#pragma function(acosf,asinf,atanf,atan2f,ceilf,cosf,coshf,expf,floorf,fmodf,logf,log10f,log10f,powf,sinf,sinhf,sqrtf,tanf,tanhf)
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#endif /* _MSC_VER */
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_Check_return_ __CRT_INLINE float _chgsignf(_In_ float x) { return (float)_chgsign((double)x); }
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_Check_return_ __CRT_INLINE float _copysignf(_In_ float x, _In_ float y) { return (float)_copysign((double)x, (double)y); }
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_Check_return_ __CRT_INLINE float _hypotf(_In_ float x, _In_ float y) { return (float)_hypot((double)x, (double)y); }
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_Check_return_ __CRT_INLINE float acosf(_In_ float x) { return (float)acos((double)x); }
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_Check_return_ __CRT_INLINE float asinf(_In_ float x) { return (float)asin((double)x); }
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_Check_return_ __CRT_INLINE float atanf(_In_ float x) { return (float)atan((double)x); }
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_Check_return_ __CRT_INLINE float atan2f(_In_ float x, _In_ float y) { return (float)atan2((double)x,(double)y); }
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_Check_return_ __CRT_INLINE float ceilf(_In_ float x) { return (float)ceil((double)x); }
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_Check_return_ __CRT_INLINE float cosf(_In_ float x) { return (float)cos((double)x); }
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_Check_return_ __CRT_INLINE float coshf(_In_ float x) { return (float)cosh((double)x); }
|
||||
_Check_return_ __CRT_INLINE float expf(_In_ float x) { return (float)exp((double)x); }
|
||||
_Check_return_ __CRT_INLINE float floorf(_In_ float x) { return (float)floor((double)x); }
|
||||
_Check_return_ __CRT_INLINE float fmodf(_In_ float x, _In_ float y) { return (float)fmod((double)x,(double)y); }
|
||||
_Check_return_ __CRT_INLINE float logf(_In_ float x) { return (float)log((double)x); }
|
||||
_Check_return_ __CRT_INLINE float log10f(_In_ float x) { return (float)log10((double)x); }
|
||||
_Check_return_ __CRT_INLINE float modff(_In_ float x, _Out_ float *y) { double _Di,_Df = modf((double)x,&_Di); *y = (float)_Di; return (float)_Df; }
|
||||
_Check_return_ __CRT_INLINE float powf(_In_ float x, _In_ float y) { return (float)pow((double)x,(double)y); }
|
||||
_Check_return_ __CRT_INLINE float sinf(_In_ float x) { return (float)sin((double)x); }
|
||||
_Check_return_ __CRT_INLINE float sinhf(_In_ float x) { return (float)sinh((double)x); }
|
||||
_Check_return_ __CRT_INLINE float sqrtf(_In_ float x) { return (float)sqrt((double)x); }
|
||||
_Check_return_ __CRT_INLINE float tanf(_In_ float x) { return (float)tan((double)x); }
|
||||
_Check_return_ __CRT_INLINE float tanhf(_In_ float x) { return (float)tanh((double)x); }
|
||||
#endif
|
||||
_Check_return_ __CRT_INLINE double hypot(_In_ double x, _In_ double y) { return _hypot(x, y); }
|
||||
_Check_return_ __CRT_INLINE float hypotf(_In_ float x, _In_ float y) { return _hypotf(x, y); }
|
||||
_Check_return_ __CRT_INLINE float frexpf(_In_ float x, _Out_ int *y) { return ((float)frexp((double)x,y)); }
|
||||
|
||||
__CRT_INLINE long double acosl(_In_ long double x) { return (acos((double)x)); }
|
||||
__CRT_INLINE long double asinl(_In_ long double x) { return (asin((double)x)); }
|
||||
__CRT_INLINE long double atanl(_In_ long double x) { return (atan((double)x)); }
|
||||
__CRT_INLINE long double atan2l(_In_ long double y, _In_ long double x) { return (atan2((double)y, (double)x)); }
|
||||
__CRT_INLINE long double ceill(_In_ long double x) { return (ceil((double)x)); }
|
||||
__CRT_INLINE long double cosl(_In_ long double x) { return (cos((double)x)); }
|
||||
__CRT_INLINE long double coshl(_In_ long double x) { return (cosh((double)x)); }
|
||||
__CRT_INLINE long double expl(_In_ long double x) { return (exp((double)x)); }
|
||||
__CRT_INLINE long double floorl(_In_ long double x) { return (floor((double)x)); }
|
||||
__CRT_INLINE long double fmodl(_In_ long double x, _In_ long double y) { return (fmod((double)x, (double)y)); }
|
||||
__CRT_INLINE long double frexpl(_In_ long double x, _Out_ int *y) { return (frexp((double)x, y)); }
|
||||
__CRT_INLINE long double logl(_In_ long double x) { return (log((double)x)); }
|
||||
__CRT_INLINE long double log10l(_In_ long double x) { return (log10((double)x)); }
|
||||
__CRT_INLINE long double powl(_In_ long double x, _In_ long double y) { return (pow((double)x, (double)y)); }
|
||||
__CRT_INLINE long double sinl(_In_ long double x) { return (sin((double)x)); }
|
||||
__CRT_INLINE long double sinhl(_In_ long double x) { return (sinh((double)x)); }
|
||||
__CRT_INLINE long double sqrtl(_In_ long double x) { return (sqrt((double)x)); }
|
||||
__CRT_INLINE long double tanhl(_In_ long double x) {return (tanh((double)x)); }
|
||||
__CRT_INLINE long double __cdecl fabsl(_In_ long double x) { return fabs((double)x); }
|
||||
__CRT_INLINE long double _chgsignl(_In_ long double _Number) { return _chgsign((double)(_Number)); }
|
||||
__CRT_INLINE long double _copysignl(_In_ long double _Number, _In_ long double _Sign) { return _copysign((double)(_Number),(double)(_Sign)); }
|
||||
__CRT_INLINE long double _hypotl(_In_ long double x, _In_ long double y) { return _hypot((double)(x),(double)(y)); }
|
||||
__CRT_INLINE float frexpf(_In_ float x, _Out_ int *y) { return ((float)frexp((double)x,y)); }
|
||||
__CRT_INLINE long double ldexpl(_In_ long double x, _In_ int y) { return ldexp((double)x, y); }
|
||||
__CRT_INLINE long double modfl(_In_ long double x, _Out_ long double *y) {
|
||||
double _Di,_Df = modf((double)x,&_Di);
|
||||
*y = (long double)_Di;
|
||||
return (_Df);
|
||||
}
|
||||
/* long double equals double, so just use inline wrappers */
|
||||
_Check_return_ __CRT_INLINE long double acosl(_In_ long double x) { return (acos((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double asinl(_In_ long double x) { return (asin((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double atanl(_In_ long double x) { return (atan((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double atan2l(_In_ long double y, _In_ long double x) { return (atan2((double)y, (double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double ceill(_In_ long double x) { return (ceil((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double cosl(_In_ long double x) { return (cos((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double coshl(_In_ long double x) { return (cosh((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double expl(_In_ long double x) { return (exp((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double fabsl(_In_ long double x) { return fabs((double)x); }
|
||||
_Check_return_ __CRT_INLINE long double floorl(_In_ long double x) { return (floor((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double fmodl(_In_ long double x, _In_ long double y) { return (fmod((double)x, (double)y)); }
|
||||
_Check_return_ __CRT_INLINE long double frexpl(_In_ long double x, _Out_ int *y) { return (frexp((double)x, y)); }
|
||||
_Check_return_ __CRT_INLINE long double hypotl(_In_ long double x, _In_ long double y) { return _hypot((double)x, (double)y); }
|
||||
_Check_return_ __CRT_INLINE long double logl(_In_ long double x) { return (log((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double log10l(_In_ long double x) { return (log10((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double powl(_In_ long double x, _In_ long double y) { return (pow((double)x, (double)y)); }
|
||||
_Check_return_ __CRT_INLINE long double sinl(_In_ long double x) { return (sin((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double sinhl(_In_ long double x) { return (sinh((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double sqrtl(_In_ long double x) { return (sqrt((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double tanhl(_In_ long double x) {return (tanh((double)x)); }
|
||||
_Check_return_ __CRT_INLINE long double _chgsignl(_In_ long double number) { return _chgsign((double)number); }
|
||||
_Check_return_ __CRT_INLINE long double _copysignl(_In_ long double number, _In_ long double sign) { return _copysign((double)number, (double)sign); }
|
||||
_Check_return_ __CRT_INLINE long double _hypotl(_In_ long double x, _In_ long double y) { return _hypot((double)x, (double)y); }
|
||||
_Check_return_ __CRT_INLINE long double ldexpl(_In_ long double x, _In_ int y) { return ldexp((double)x, y); }
|
||||
_Check_return_ __CRT_INLINE long double modfl(_In_ long double x, _Out_ long double *y) { return (long double)modf((double)x, (double *)y); }
|
||||
|
||||
#ifndef NO_OLDNAMES
|
||||
/* Support for some functions, not exported in MSVCRT */
|
||||
_Check_return_ __CRT_INLINE double round(_In_ double x) { return (x < 0) ? ceil(x - 0.5f) : floor(x + 0.5); }
|
||||
_Check_return_ __CRT_INLINE float roundf(_In_ float x) { return (x < 0) ? ceilf(x - 0.5f) : floorf(x + 0.5); }
|
||||
_Check_return_ __CRT_INLINE long double roundl(_In_ long double x) { return (x < 0) ? ceill(x - 0.5f) : floorl(x + 0.5); }
|
||||
_Check_return_ __CRT_INLINE long lround(_In_ double x) { return (long)((x < 0) ? (x - 0.5f) : (x + 0.5)); }
|
||||
_Check_return_ __CRT_INLINE long lroundf(_In_ float x) { return (long)((x < 0) ? (x - 0.5f) : (x + 0.5)); }
|
||||
_Check_return_ __CRT_INLINE long lroundl(_In_ long double x) { return (long)((x < 0) ? (x - 0.5f) : (x + 0.5)); }
|
||||
_Check_return_ __CRT_INLINE long long llround(_In_ double x) { return (long long)((x < 0) ? (x - 0.5f) : (x + 0.5)); }
|
||||
_Check_return_ __CRT_INLINE long long llroundf(_In_ float x) { return (long long)((x < 0) ? (x - 0.5f) : (x + 0.5)); }
|
||||
_Check_return_ __CRT_INLINE long long llroundl(_In_ long double x) { return (long long)((x < 0) ? (x - 0.5f) : (x + 0.5)); }
|
||||
_Check_return_ __CRT_INLINE double rint(_In_ double x) { return round(x); }
|
||||
_Check_return_ __CRT_INLINE float rintf(_In_ float x) { return roundf(x); }
|
||||
_Check_return_ __CRT_INLINE long double rintl(_In_ long double x) { return roundl(x); }
|
||||
_Check_return_ __CRT_INLINE long lrint(_In_ double x) { return (long)((x < 0) ? (x - 0.5f) : (x + 0.5)); }
|
||||
_Check_return_ __CRT_INLINE long lrintf(_In_ float x) { return (long)((x < 0) ? (x - 0.5f) : (x + 0.5)); }
|
||||
_Check_return_ __CRT_INLINE long lrintl(_In_ long double x) { return (long)((x < 0) ? (x - 0.5f) : (x + 0.5)); }
|
||||
_Check_return_ __CRT_INLINE long long llrint(_In_ double x) { return (long long)((x < 0) ? (x - 0.5f) : (x + 0.5)); }
|
||||
_Check_return_ __CRT_INLINE long long llrintf(_In_ float x) { return (long long)((x < 0) ? (x - 0.5f) : (x + 0.5)); }
|
||||
_Check_return_ __CRT_INLINE long long llrintl(_In_ long double x) { return (long long)((x < 0) ? (x - 0.5f) : (x + 0.5)); }
|
||||
|
||||
#ifndef NO_OLDNAMES /* !__STDC__ */
|
||||
|
||||
#define DOMAIN _DOMAIN
|
||||
#define SING _SING
|
||||
|
@ -238,35 +280,82 @@ extern "C" {
|
|||
#define TLOSS _TLOSS
|
||||
#define PLOSS _PLOSS
|
||||
#define matherr _matherr
|
||||
//_CRTIMP extern double HUGE;
|
||||
#define HUGE _HUGE
|
||||
// _CRTIMP double __cdecl cabs(struct _complex x);
|
||||
#define cabs _cabs
|
||||
//_CRT_NONSTDC_DEPRECATE(_cabs) _CRTIMP double __cdecl cabs(_In_ struct _complex x);
|
||||
#define cabs _cabs
|
||||
|
||||
_CRTIMP double __cdecl hypot(_In_ double x, _In_ double y);
|
||||
_CRTIMP double __cdecl j0(_In_ double x);
|
||||
_CRTIMP double __cdecl j1(_In_ double x);
|
||||
_CRTIMP double __cdecl jn(_In_ int x, _In_ double y);
|
||||
_CRTIMP double __cdecl y0(_In_ double x);
|
||||
_CRTIMP double __cdecl y1(_In_ double x);
|
||||
_CRTIMP double __cdecl yn(_In_ int x, _In_ double y);
|
||||
__CRT_INLINE float __cdecl hypotf(_In_ float x, _In_ float y) { return (float) hypot(x, y); }
|
||||
_CRT_NONSTDC_DEPRECATE(_j0) _CRTIMP double __cdecl j0(_In_ double x);
|
||||
_CRT_NONSTDC_DEPRECATE(_j1) _CRTIMP double __cdecl j1(_In_ double x);
|
||||
_CRT_NONSTDC_DEPRECATE(_jn) _CRTIMP double __cdecl jn(_In_ int x, _In_ double y);
|
||||
_CRT_NONSTDC_DEPRECATE(_y0) _CRTIMP double __cdecl y0(_In_ double x);
|
||||
_CRT_NONSTDC_DEPRECATE(_y1) _CRTIMP double __cdecl y1(_In_ double x);
|
||||
_CRT_NONSTDC_DEPRECATE(_yn) _CRTIMP double __cdecl yn(_In_ int x, _In_ double y);
|
||||
|
||||
#endif /* NO_OLDNAMES */
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#ifndef _CMATH_
|
||||
extern "C++" {
|
||||
template<class _Ty> inline _Ty _Pow_int(_Ty x,int y) {
|
||||
unsigned int _N;
|
||||
if(y >= 0) _N = (unsigned int)y;
|
||||
else _N = (unsigned int)(-y);
|
||||
for(_Ty _Z = _Ty(1);;x *= x) {
|
||||
if((_N & 1)!=0) _Z *= x;
|
||||
if((_N >>= 1)==0) return (y < 0 ? _Ty(1) / _Z : _Z);
|
||||
}
|
||||
}
|
||||
|
||||
//inline long abs(_In_ long x) { return labs(x); }
|
||||
_Check_return_ inline double abs(_In_ double x) throw() { return fabs(x); }
|
||||
|
||||
_Check_return_ inline float abs(_In_ float x) throw() { return fabsf(x); }
|
||||
_Check_return_ inline float acos(_In_ float x) throw() { return acosf(x); }
|
||||
_Check_return_ inline float asin(_In_ float x) throw() { return asinf(x); }
|
||||
_Check_return_ inline float atan(_In_ float x) throw() { return atanf(x); }
|
||||
_Check_return_ inline float atan2(_In_ float y, _In_ float x) throw() { return atan2f(y, x); }
|
||||
_Check_return_ inline float ceil(_In_ float x) throw() { return ceilf(x); }
|
||||
_Check_return_ inline float copysign(_In_ float x, _In_ float y) throw() { return _copysignf(x, y); }
|
||||
_Check_return_ inline float cos(_In_ float x) throw() { return cosf(x); }
|
||||
_Check_return_ inline float cosh(_In_ float x) throw() { return coshf(x); }
|
||||
_Check_return_ inline float exp(_In_ float x) throw() { return expf(x); }
|
||||
_Check_return_ inline float fabs(_In_ float x) throw() { return fabsf(x); }
|
||||
_Check_return_ inline float floor(_In_ float x) throw() { return floorf(x); }
|
||||
_Check_return_ inline float fmod(_In_ float x, _In_ float y) throw() { return fmodf(x, y); }
|
||||
_Check_return_ inline float frexp(_In_ float x, _Out_ int * y) throw() { return frexpf(x, y); }
|
||||
_Check_return_ inline float hypot(_In_ float x, _In_ float y) throw() { return _hypotf(x, y); }
|
||||
_Check_return_ inline float ldexp(_In_ float x, _In_ int y) throw() { return ldexpf(x, y); }
|
||||
_Check_return_ inline float log(_In_ float x) throw() { return logf(x); }
|
||||
_Check_return_ inline float log10(_In_ float x) throw() { return log10f(x); }
|
||||
_Check_return_ inline float modf(_In_ float x, _Out_ float * y) throw() { return modff(x, y); }
|
||||
_Check_return_ inline float pow(_In_ float x, _In_ float y) throw() { return powf(x, y); }
|
||||
_Check_return_ inline float sin(_In_ float x) throw() { return sinf(x); }
|
||||
_Check_return_ inline float sinh(_In_ float x) throw() { return sinhf(x); }
|
||||
_Check_return_ inline float sqrt(_In_ float x) throw() { return sqrtf(x); }
|
||||
_Check_return_ inline float tan(_In_ float x) throw() { return tanf(x); }
|
||||
_Check_return_ inline float tanh(_In_ float x) throw() { return tanhf(x); }
|
||||
|
||||
_Check_return_ inline long double abs(_In_ long double x) throw() { return fabsl(x); }
|
||||
_Check_return_ inline long double acos(_In_ long double x) throw() { return acosl(x); }
|
||||
_Check_return_ inline long double asin(_In_ long double x) throw() { return asinl(x); }
|
||||
_Check_return_ inline long double atan(_In_ long double x) throw() { return atanl(x); }
|
||||
_Check_return_ inline long double atan2(_In_ long double y, _In_ long double x) throw() { return atan2l(y, x); }
|
||||
_Check_return_ inline long double ceil(_In_ long double x) throw() { return ceill(x); }
|
||||
_Check_return_ inline long double copysign(_In_ long double x, _In_ long double y) throw() { return _copysignl(x, y); }
|
||||
_Check_return_ inline long double cos(_In_ long double x) throw() { return cosl(x); }
|
||||
_Check_return_ inline long double cosh(_In_ long double x) throw() { return coshl(x); }
|
||||
_Check_return_ inline long double exp(_In_ long double x) throw() { return expl(x); }
|
||||
_Check_return_ inline long double fabs(_In_ long double x) throw() { return fabsl(x); }
|
||||
_Check_return_ inline long double floor(_In_ long double x) throw() { return floorl(x); }
|
||||
_Check_return_ inline long double fmod(_In_ long double x, _In_ long double y) throw() { return fmodl(x, y); }
|
||||
_Check_return_ inline long double frexp(_In_ long double x, _Out_ int * y) throw() { return frexpl(x, y); }
|
||||
_Check_return_ inline long double hypot(_In_ long double x, _In_ long double y) throw() { return hypotl(x, y); }
|
||||
_Check_return_ inline long double ldexp(_In_ long double x, _In_ int y) throw() { return ldexpl(x, y); }
|
||||
_Check_return_ inline long double log(_In_ long double x) throw() { return logl(x); }
|
||||
_Check_return_ inline long double log10(_In_ long double x) throw() { return log10l(x); }
|
||||
_Check_return_ inline long double modf(_In_ long double x, _Out_ long double * y) throw() { return modfl(x, y); }
|
||||
_Check_return_ inline long double pow(_In_ long double x, _In_ long double y) throw() { return powl(x, y); }
|
||||
_Check_return_ inline long double sin(_In_ long double x) throw() { return sinl(x); }
|
||||
_Check_return_ inline long double sinh(_In_ long double x) throw() { return sinhl(x); }
|
||||
_Check_return_ inline long double sqrt(_In_ long double x) throw() { return sqrtl(x); }
|
||||
_Check_return_ inline long double tan(_In_ long double x) throw() { return tanl(x); }
|
||||
_Check_return_ inline long double tanh(_In_ long double x) throw() { return tanhl(x); }
|
||||
}
|
||||
#endif
|
||||
#endif /* !_CMATH_ */
|
||||
#endif /* __cplusplus */
|
||||
|
||||
#pragma pack(pop)
|
||||
|
||||
|
|
Loading…
Reference in a new issue