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933 lines
26 KiB
D
933 lines
26 KiB
D
/**
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* D header file for C99.
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*
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* Copyright: Copyright Sean Kelly 2005 - 2009.
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* License: <a href="http://www.boost.org/LICENSE_1_0.txt>Boost License 1.0</a>.
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* Authors: Sean Kelly
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* Standards: ISO/IEC 9899:1999 (E)
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*
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* Copyright Sean Kelly 2005 - 2009.
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* Distributed under the Boost Software License, Version 1.0.
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* (See accompanying file LICENSE_1_0.txt or copy at
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* http://www.boost.org/LICENSE_1_0.txt)
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*/
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module core.stdc.math;
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private import core.stdc.config;
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extern (C):
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alias float float_t;
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alias double double_t;
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enum double HUGE_VAL = double.infinity;
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enum double HUGE_VALF = float.infinity;
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enum double HUGE_VALL = real.infinity;
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enum float INFINITY = float.infinity;
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enum float NAN = float.nan;
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enum int FP_ILOGB0 = int.min;
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enum int FP_ILOGBNAN = int.min;
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enum int MATH_ERRNO = 1;
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enum int MATH_ERREXCEPT = 2;
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enum int math_errhandling = MATH_ERRNO | MATH_ERREXCEPT;
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version( none )
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{
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//
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// these functions are all macros in C
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//
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//int fpclassify(real-floating x);
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int fpclassify(float x);
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int fpclassify(double x);
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int fpclassify(real x);
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//int isfinite(real-floating x);
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int isfinite(float x);
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int isfinite(double x);
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int isfinite(real x);
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//int isinf(real-floating x);
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int isinf(float x);
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int isinf(double x);
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int isinf(real x);
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//int isnan(real-floating x);
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int isnan(float x);
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int isnan(double x);
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int isnan(real x);
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//int isnormal(real-floating x);
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int isnormal(float x);
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int isnormal(double x);
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int isnormal(real x);
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//int signbit(real-floating x);
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int signbit(float x);
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int signbit(double x);
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int signbit(real x);
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//int isgreater(real-floating x, real-floating y);
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int isgreater(float x, float y);
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int isgreater(double x, double y);
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int isgreater(real x, real y);
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//int isgreaterequal(real-floating x, real-floating y);
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int isgreaterequal(float x, float y);
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int isgreaterequal(double x, double y);
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int isgreaterequal(real x, real y);
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//int isless(real-floating x, real-floating y);
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int isless(float x, float y);
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int isless(double x, double y);
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int isless(real x, real y);
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//int islessequal(real-floating x, real-floating y);
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int islessequal(float x, float y);
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int islessequal(double x, double y);
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int islessequal(real x, real y);
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//int islessgreater(real-floating x, real-floating y);
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int islessgreater(float x, float y);
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int islessgreater(double x, double y);
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int islessgreater(real x, real y);
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//int isunordered(real-floating x, real-floating y);
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int isunordered(float x, float y);
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int isunordered(double x, double y);
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int isunordered(real x, real y);
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}
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version( DigitalMars ) version( Windows )
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version = DigitalMarsWin32;
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version( DigitalMarsWin32 )
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{
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enum
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{
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FP_NANS = 0,
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FP_NANQ = 1,
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FP_INFINITE = 2,
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FP_NORMAL = 3,
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FP_SUBNORMAL = 4,
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FP_ZERO = 5,
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FP_NAN = FP_NANQ,
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FP_EMPTY = 6,
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FP_UNSUPPORTED = 7,
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}
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enum
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{
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FP_FAST_FMA = 0,
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FP_FAST_FMAF = 0,
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FP_FAST_FMAL = 0,
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}
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uint __fpclassify_f(float x);
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uint __fpclassify_d(double x);
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uint __fpclassify_ld(real x);
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extern (D)
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{
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//int fpclassify(real-floating x);
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int fpclassify(float x) { return __fpclassify_f(x); }
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int fpclassify(double x) { return __fpclassify_d(x); }
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int fpclassify(real x)
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{
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return (real.sizeof == double.sizeof)
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? __fpclassify_d(x)
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: __fpclassify_ld(x);
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}
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//int isfinite(real-floating x);
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int isfinite(float x) { return fpclassify(x) >= FP_NORMAL; }
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int isfinite(double x) { return fpclassify(x) >= FP_NORMAL; }
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int isfinite(real x) { return fpclassify(x) >= FP_NORMAL; }
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//int isinf(real-floating x);
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int isinf(float x) { return fpclassify(x) == FP_INFINITE; }
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int isinf(double x) { return fpclassify(x) == FP_INFINITE; }
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int isinf(real x) { return fpclassify(x) == FP_INFINITE; }
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//int isnan(real-floating x);
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int isnan(float x) { return fpclassify(x) <= FP_NANQ; }
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int isnan(double x) { return fpclassify(x) <= FP_NANQ; }
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int isnan(real x) { return fpclassify(x) <= FP_NANQ; }
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//int isnormal(real-floating x);
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int isnormal(float x) { return fpclassify(x) == FP_NORMAL; }
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int isnormal(double x) { return fpclassify(x) == FP_NORMAL; }
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int isnormal(real x) { return fpclassify(x) == FP_NORMAL; }
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//int signbit(real-floating x);
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int signbit(float x) { return (cast(short*)&(x))[1] & 0x8000; }
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int signbit(double x) { return (cast(short*)&(x))[3] & 0x8000; }
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int signbit(real x)
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{
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return (real.sizeof == double.sizeof)
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? (cast(short*)&(x))[3] & 0x8000
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: (cast(short*)&(x))[4] & 0x8000;
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}
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}
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}
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else version( linux )
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{
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enum
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{
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FP_NAN,
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FP_INFINITE,
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FP_ZERO,
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FP_SUBNORMAL,
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FP_NORMAL,
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}
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enum
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{
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FP_FAST_FMA = 0,
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FP_FAST_FMAF = 0,
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FP_FAST_FMAL = 0,
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}
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int __fpclassifyf(float x);
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int __fpclassify(double x);
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int __fpclassifyl(real x);
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int __finitef(float x);
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int __finite(double x);
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int __finitel(real x);
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int __isinff(float x);
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int __isinf(double x);
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int __isinfl(real x);
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int __isnanf(float x);
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int __isnan(double x);
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int __isnanl(real x);
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int __signbitf(float x);
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int __signbit(double x);
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int __signbitl(real x);
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extern (D)
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{
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//int fpclassify(real-floating x);
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int fpclassify(float x) { return __fpclassifyf(x); }
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int fpclassify(double x) { return __fpclassify(x); }
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int fpclassify(real x)
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{
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return (real.sizeof == double.sizeof)
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? __fpclassify(x)
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: __fpclassifyl(x);
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}
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//int isfinite(real-floating x);
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int isfinite(float x) { return __finitef(x); }
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int isfinite(double x) { return __finite(x); }
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int isfinite(real x)
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{
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return (real.sizeof == double.sizeof)
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? __finite(x)
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: __finitel(x);
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}
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//int isinf(real-floating x);
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int isinf(float x) { return __isinff(x); }
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int isinf(double x) { return __isinf(x); }
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int isinf(real x)
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{
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return (real.sizeof == double.sizeof)
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? __isinf(x)
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: __isinfl(x);
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}
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//int isnan(real-floating x);
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int isnan(float x) { return __isnanf(x); }
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int isnan(double x) { return __isnan(x); }
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int isnan(real x)
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{
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return (real.sizeof == double.sizeof)
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? __isnan(x)
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: __isnanl(x);
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}
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//int isnormal(real-floating x);
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int isnormal(float x) { return fpclassify(x) == FP_NORMAL; }
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int isnormal(double x) { return fpclassify(x) == FP_NORMAL; }
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int isnormal(real x) { return fpclassify(x) == FP_NORMAL; }
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//int signbit(real-floating x);
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int signbit(float x) { return __signbitf(x); }
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int signbit(double x) { return __signbit(x); }
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int signbit(real x)
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{
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return (real.sizeof == double.sizeof)
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? __signbit(x)
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: __signbitl(x);
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}
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}
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}
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else version( OSX )
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{
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enum
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{
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FP_NAN = 1,
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FP_INFINITE = 2,
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FP_ZERO = 3,
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FP_NORMAL = 4,
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FP_SUBNORMAL = 5,
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FP_SUPERNORMAL = 6,
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}
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enum
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{
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FP_FAST_FMA = 0,
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FP_FAST_FMAF = 0,
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FP_FAST_FMAL = 0,
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}
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int __fpclassifyf(float x);
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int __fpclassifyd(double x);
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int __fpclassify(real x);
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int __isfinitef(float x);
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int __isfinited(double x);
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int __isfinite(real x);
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int __isinff(float x);
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int __isinfd(double x);
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int __isinf(real x);
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int __isnanf(float x);
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int __isnand(double x);
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int __isnan(real x);
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int __signbitf(float x);
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int __signbitd(double x);
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int __signbitl(real x);
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extern (D)
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{
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//int fpclassify(real-floating x);
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int fpclassify(float x) { return __fpclassifyf(x); }
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int fpclassify(double x) { return __fpclassifyd(x); }
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int fpclassify(real x)
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{
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return (real.sizeof == double.sizeof)
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? __fpclassifyd(x)
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: __fpclassify(x);
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}
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//int isfinite(real-floating x);
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int isfinite(float x) { return __isfinitef(x); }
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int isfinite(double x) { return __isfinited(x); }
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int isfinite(real x)
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{
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return (real.sizeof == double.sizeof)
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? __isfinited(x)
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: __isfinite(x);
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}
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//int isinf(real-floating x);
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int isinf(float x) { return __isinff(x); }
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int isinf(double x) { return __isinfd(x); }
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int isinf(real x)
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{
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return (real.sizeof == double.sizeof)
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? __isinfd(x)
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: __isinf(x);
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}
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//int isnan(real-floating x);
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int isnan(float x) { return __isnanf(x); }
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int isnan(double x) { return __isnand(x); }
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int isnan(real x)
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{
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return (real.sizeof == double.sizeof)
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? __isnand(x)
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: __isnan(x);
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}
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//int isnormal(real-floating x);
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int isnormal(float x) { return fpclassify(x) == FP_NORMAL; }
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int isnormal(double x) { return fpclassify(x) == FP_NORMAL; }
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int isnormal(real x) { return fpclassify(x) == FP_NORMAL; }
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//int signbit(real-floating x);
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int signbit(float x) { return __signbitf(x); }
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int signbit(double x) { return __signbitd(x); }
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int signbit(real x)
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{
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return (real.sizeof == double.sizeof)
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? __signbitd(x)
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: __signbitl(x);
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}
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}
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}
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else version( freebsd )
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{
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enum
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{
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FP_INFINITE = 0x01,
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FP_NAN = 0x02,
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FP_NORMAL = 0x04,
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FP_SUBNORMAL = 0x08,
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FP_ZERO = 0x10,
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}
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enum
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{
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FP_FAST_FMA = 0,
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FP_FAST_FMAF = 0,
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FP_FAST_FMAL = 0,
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}
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int __fpclassifyd(double);
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int __fpclassifyf(float);
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int __fpclassifyl(real);
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int __isfinitef(float);
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int __isfinite(double);
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int __isfinitel(real);
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int __isinff(float);
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int __isinfl(real);
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int __isnanl(real);
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int __isnormalf(float);
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int __isnormal(double);
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int __isnormall(real);
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int __signbit(double);
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int __signbitf(float);
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int __signbitl(real);
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extern (D)
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{
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//int fpclassify(real-floating x);
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int fpclassify(float x) { return __fpclassifyf(x); }
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int fpclassify(double x) { return __fpclassifyd(x); }
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int fpclassify(real x) { return __fpclassifyl(x); }
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//int isfinite(real-floating x);
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int isfinite(float x) { return __isfinitef(x); }
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int isfinite(double x) { return __isfinite(x); }
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int isfinite(real x) { return __isfinitel(x); }
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//int isinf(real-floating x);
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int isinf(float x) { return __isinff(x); }
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int isinf(double x) { return __isinfl(x); }
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int isinf(real x) { return __isinfl(x); }
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//int isnan(real-floating x);
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int isnan(float x) { return __isnanl(x); }
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int isnan(double x) { return __isnanl(x); }
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int isnan(real x) { return __isnanl(x); }
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//int isnormal(real-floating x);
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int isnormal(float x) { return __isnormalf(x); }
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int isnormal(double x) { return __isnormal(x); }
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int isnormal(real x) { return __isnormall(x); }
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//int signbit(real-floating x);
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int signbit(float x) { return __signbitf(x); }
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int signbit(double x) { return __signbit(x); }
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int signbit(real x) { return __signbit(x); }
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}
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}
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extern (D)
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{
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//int isgreater(real-floating x, real-floating y);
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int isgreater(float x, float y) { return !(x !> y); }
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int isgreater(double x, double y) { return !(x !> y); }
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int isgreater(real x, real y) { return !(x !> y); }
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//int isgreaterequal(real-floating x, real-floating y);
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int isgreaterequal(float x, float y) { return !(x !>= y); }
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int isgreaterequal(double x, double y) { return !(x !>= y); }
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int isgreaterequal(real x, real y) { return !(x !>= y); }
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//int isless(real-floating x, real-floating y);
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int isless(float x, float y) { return !(x !< y); }
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int isless(double x, double y) { return !(x !< y); }
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int isless(real x, real y) { return !(x !< y); }
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//int islessequal(real-floating x, real-floating y);
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int islessequal(float x, float y) { return !(x !<= y); }
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int islessequal(double x, double y) { return !(x !<= y); }
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int islessequal(real x, real y) { return !(x !<= y); }
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//int islessgreater(real-floating x, real-floating y);
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int islessgreater(float x, float y) { return !(x !<> y); }
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int islessgreater(double x, double y) { return !(x !<> y); }
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int islessgreater(real x, real y) { return !(x !<> y); }
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//int isunordered(real-floating x, real-floating y);
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int isunordered(float x, float y) { return (x !<>= y); }
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int isunordered(double x, double y) { return (x !<>= y); }
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int isunordered(real x, real y) { return (x !<>= y); }
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}
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|
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// NOTE: freebsd < 8-CURRENT doesn't appear to support *l, but we can
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// approximate.
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|
version( freebsd )
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|
{
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double acos(double x);
|
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float acosf(float x);
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real acosl(real x) { return acos(x); }
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double asin(double x);
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float asinf(float x);
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real asinl(real x) { return asin(x); }
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double atan(double x);
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float atanf(float x);
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real atanl(real x) { return atan(x); }
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double atan2(double y, double x);
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float atan2f(float y, float x);
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real atan2l(real y, real x) { return atan2(y, x); }
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double cos(double x);
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float cosf(float x);
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real cosl(real x) { return cos(x); }
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double sin(double x);
|
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float sinf(float x);
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real sinl(real x) { return sin(x); }
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double tan(double x);
|
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float tanf(float x);
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real tanl(real x) { return tan(x); }
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|
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double acosh(double x);
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float acoshf(float x);
|
|
real acoshl(real x) { return acosh(x); }
|
|
|
|
double asinh(double x);
|
|
float asinhf(float x);
|
|
real asinhl(real x) { return asinh(x); }
|
|
|
|
double atanh(double x);
|
|
float atanhf(float x);
|
|
real atanhl(real x) { return atanh(x); }
|
|
|
|
double cosh(double x);
|
|
float coshf(float x);
|
|
real coshl(real x) { return cosh(x); }
|
|
|
|
double sinh(double x);
|
|
float sinhf(float x);
|
|
real sinhl(real x) { return sinh(x); }
|
|
|
|
double tanh(double x);
|
|
float tanhf(float x);
|
|
real tanhl(real x) { return tanh(x); }
|
|
|
|
double exp(double x);
|
|
float expf(float x);
|
|
real expl(real x) { return exp(x); }
|
|
|
|
double exp2(double x);
|
|
float exp2f(float x);
|
|
real exp2l(real x) { return exp2(x); }
|
|
|
|
double expm1(double x);
|
|
float expm1f(float x);
|
|
real expm1l(real x) { return expm1(x); }
|
|
|
|
double frexp(double value, int* exp);
|
|
float frexpf(float value, int* exp);
|
|
real frexpl(real value, int* exp) { return frexp(value, exp); }
|
|
|
|
int ilogb(double x);
|
|
int ilogbf(float x);
|
|
int ilogbl(real x) { return ilogb(x); }
|
|
|
|
double ldexp(double x, int exp);
|
|
float ldexpf(float x, int exp);
|
|
real ldexpl(real x, int exp) { return ldexp(x, exp); }
|
|
|
|
double log(double x);
|
|
float logf(float x);
|
|
real logl(real x) { return log(x); }
|
|
|
|
double log10(double x);
|
|
float log10f(float x);
|
|
real log10l(real x) { return log10(x); }
|
|
|
|
double log1p(double x);
|
|
float log1pf(float x);
|
|
real log1pl(real x) { return log1p(x); }
|
|
|
|
private enum real ONE_LN2 = 1 / 0x1.62e42fefa39ef358p-1L;
|
|
double log2(double x) { return log(x) * ONE_LN2; }
|
|
float log2f(float x) { return logf(x) * ONE_LN2; }
|
|
real log2l(real x) { return logl(x) * ONE_LN2; }
|
|
|
|
double logb(double x);
|
|
float logbf(float x);
|
|
real logbl(real x) { return logb(x); }
|
|
|
|
double modf(double value, double* iptr);
|
|
float modff(float value, float* iptr);
|
|
//real modfl(real value, real *iptr); // nontrivial conversion
|
|
|
|
double scalbn(double x, int n);
|
|
float scalbnf(float x, int n);
|
|
real scalbnl(real x, int n) { return scalbn(x, n); }
|
|
|
|
double scalbln(double x, c_long n);
|
|
float scalblnf(float x, c_long n);
|
|
real scalblnl(real x, c_long n) { return scalbln(x, n); }
|
|
|
|
|
|
double cbrt(double x);
|
|
float cbrtf(float x);
|
|
real cbrtl(real x) { return cbrt(x); }
|
|
|
|
double fabs(double x);
|
|
float fabsf(float x);
|
|
real fabsl(real x) { return fabs(x); }
|
|
|
|
double hypot(double x, double y);
|
|
float hypotf(float x, float y);
|
|
real hypotl(real x, real y) { return hypot(x, y); }
|
|
|
|
double pow(double x, double y);
|
|
float powf(float x, float y);
|
|
real powl(real x, real y) { return pow(x, y); }
|
|
|
|
double sqrt(double x);
|
|
float sqrtf(float x);
|
|
real sqrtl(real x) { return sqrt(x); }
|
|
|
|
double erf(double x);
|
|
float erff(float x);
|
|
real erfl(real x) { return erf(x); }
|
|
|
|
double erfc(double x);
|
|
float erfcf(float x);
|
|
real erfcl(real x) { return erfc(x); }
|
|
|
|
double lgamma(double x);
|
|
float lgammaf(float x);
|
|
real lgammal(real x) { return lgamma(x); }
|
|
|
|
double tgamma(double x);
|
|
float tgammaf(float x);
|
|
real tgammal(real x) { return tgamma(x); }
|
|
|
|
double ceil(double x);
|
|
float ceilf(float x);
|
|
real ceill(real x) { return ceil(x); }
|
|
|
|
double floor(double x);
|
|
float floorf(float x);
|
|
real floorl(real x) { return floor(x); }
|
|
|
|
double nearbyint(double x);
|
|
float nearbyintf(float x);
|
|
real nearbyintl(real x) { return nearbyint(x); }
|
|
|
|
double rint(double x);
|
|
float rintf(float x);
|
|
real rintl(real x) { return rint(x); }
|
|
|
|
c_long lrint(double x);
|
|
c_long lrintf(float x);
|
|
c_long lrintl(real x) { return lrint(x); }
|
|
|
|
long llrint(double x);
|
|
long llrintf(float x);
|
|
long llrintl(real x) { return llrint(x); }
|
|
|
|
double round(double x);
|
|
float roundf(float x);
|
|
real roundl(real x) { return round(x); }
|
|
|
|
c_long lround(double x);
|
|
c_long lroundf(float x);
|
|
c_long lroundl(real x) { return lround(x); }
|
|
|
|
long llround(double x);
|
|
long llroundf(float x);
|
|
long llroundl(real x) { return llround(x); }
|
|
|
|
double trunc(double x);
|
|
float truncf(float x);
|
|
real truncl(real x) { return trunc(x); }
|
|
|
|
double fmod(double x, double y);
|
|
float fmodf(float x, float y);
|
|
real fmodl(real x, real y) { return fmod(x, y); }
|
|
|
|
double remainder(double x, double y);
|
|
float remainderf(float x, float y);
|
|
real remainderl(real x, real y) { return remainder(x, y); }
|
|
|
|
double remquo(double x, double y, int* quo);
|
|
float remquof(float x, float y, int* quo);
|
|
real remquol(real x, real y, int* quo) { return remquo(x, y, quo); }
|
|
|
|
double copysign(double x, double y);
|
|
float copysignf(float x, float y);
|
|
real copysignl(real x, real y) { return copysign(x, y); }
|
|
|
|
// double nan(char* tagp);
|
|
// float nanf(char* tagp);
|
|
// real nanl(char* tagp);
|
|
|
|
double nextafter(double x, double y);
|
|
float nextafterf(float x, float y);
|
|
real nextafterl(real x, real y) { return nextafter(x, y); }
|
|
|
|
double nexttoward(double x, real y);
|
|
float nexttowardf(float x, real y);
|
|
real nexttowardl(real x, real y) { return nexttoward(x, y); }
|
|
|
|
double fdim(double x, double y);
|
|
float fdimf(float x, float y);
|
|
real fdiml(real x, real y) { return fdim(x, y); }
|
|
|
|
double fmax(double x, double y);
|
|
float fmaxf(float x, float y);
|
|
real fmaxl(real x, real y) { return fmax(x, y); }
|
|
|
|
double fmin(double x, double y);
|
|
float fminf(float x, float y);
|
|
real fminl(real x, real y) { return fmin(x, y); }
|
|
|
|
double fma(double x, double y, double z);
|
|
float fmaf(float x, float y, float z);
|
|
real fmal(real x, real y, real z) { return fma(x, y, z); }
|
|
}
|
|
else
|
|
{
|
|
double acos(double x);
|
|
float acosf(float x);
|
|
real acosl(real x);
|
|
|
|
double asin(double x);
|
|
float asinf(float x);
|
|
real asinl(real x);
|
|
|
|
double atan(double x);
|
|
float atanf(float x);
|
|
real atanl(real x);
|
|
|
|
double atan2(double y, double x);
|
|
float atan2f(float y, float x);
|
|
real atan2l(real y, real x);
|
|
|
|
double cos(double x);
|
|
float cosf(float x);
|
|
real cosl(real x);
|
|
|
|
double sin(double x);
|
|
float sinf(float x);
|
|
real sinl(real x);
|
|
|
|
double tan(double x);
|
|
float tanf(float x);
|
|
real tanl(real x);
|
|
|
|
double acosh(double x);
|
|
float acoshf(float x);
|
|
real acoshl(real x);
|
|
|
|
double asinh(double x);
|
|
float asinhf(float x);
|
|
real asinhl(real x);
|
|
|
|
double atanh(double x);
|
|
float atanhf(float x);
|
|
real atanhl(real x);
|
|
|
|
double cosh(double x);
|
|
float coshf(float x);
|
|
real coshl(real x);
|
|
|
|
double sinh(double x);
|
|
float sinhf(float x);
|
|
real sinhl(real x);
|
|
|
|
double tanh(double x);
|
|
float tanhf(float x);
|
|
real tanhl(real x);
|
|
|
|
double exp(double x);
|
|
float expf(float x);
|
|
real expl(real x);
|
|
|
|
double exp2(double x);
|
|
float exp2f(float x);
|
|
real exp2l(real x);
|
|
|
|
double expm1(double x);
|
|
float expm1f(float x);
|
|
real expm1l(real x);
|
|
|
|
double frexp(double value, int* exp);
|
|
float frexpf(float value, int* exp);
|
|
real frexpl(real value, int* exp);
|
|
|
|
int ilogb(double x);
|
|
int ilogbf(float x);
|
|
int ilogbl(real x);
|
|
|
|
double ldexp(double x, int exp);
|
|
float ldexpf(float x, int exp);
|
|
real ldexpl(real x, int exp);
|
|
|
|
double log(double x);
|
|
float logf(float x);
|
|
real logl(real x);
|
|
|
|
double log10(double x);
|
|
float log10f(float x);
|
|
real log10l(real x);
|
|
|
|
double log1p(double x);
|
|
float log1pf(float x);
|
|
real log1pl(real x);
|
|
|
|
double log2(double x);
|
|
float log2f(float x);
|
|
real log2l(real x);
|
|
|
|
double logb(double x);
|
|
float logbf(float x);
|
|
real logbl(real x);
|
|
|
|
double modf(double value, double* iptr);
|
|
float modff(float value, float* iptr);
|
|
real modfl(real value, real *iptr);
|
|
|
|
double scalbn(double x, int n);
|
|
float scalbnf(float x, int n);
|
|
real scalbnl(real x, int n);
|
|
|
|
double scalbln(double x, c_long n);
|
|
float scalblnf(float x, c_long n);
|
|
real scalblnl(real x, c_long n);
|
|
|
|
double cbrt(double x);
|
|
float cbrtf(float x);
|
|
real cbrtl(real x);
|
|
|
|
double fabs(double x);
|
|
float fabsf(float x);
|
|
real fabsl(real x);
|
|
|
|
double hypot(double x, double y);
|
|
float hypotf(float x, float y);
|
|
real hypotl(real x, real y);
|
|
|
|
double pow(double x, double y);
|
|
float powf(float x, float y);
|
|
real powl(real x, real y);
|
|
|
|
double sqrt(double x);
|
|
float sqrtf(float x);
|
|
real sqrtl(real x);
|
|
|
|
double erf(double x);
|
|
float erff(float x);
|
|
real erfl(real x);
|
|
|
|
double erfc(double x);
|
|
float erfcf(float x);
|
|
real erfcl(real x);
|
|
|
|
double lgamma(double x);
|
|
float lgammaf(float x);
|
|
real lgammal(real x);
|
|
|
|
double tgamma(double x);
|
|
float tgammaf(float x);
|
|
real tgammal(real x);
|
|
|
|
double ceil(double x);
|
|
float ceilf(float x);
|
|
real ceill(real x);
|
|
|
|
double floor(double x);
|
|
float floorf(float x);
|
|
real floorl(real x);
|
|
|
|
double nearbyint(double x);
|
|
float nearbyintf(float x);
|
|
real nearbyintl(real x);
|
|
|
|
double rint(double x);
|
|
float rintf(float x);
|
|
real rintl(real x);
|
|
|
|
c_long lrint(double x);
|
|
c_long lrintf(float x);
|
|
c_long lrintl(real x);
|
|
|
|
long llrint(double x);
|
|
long llrintf(float x);
|
|
long llrintl(real x);
|
|
|
|
double round(double x);
|
|
float roundf(float x);
|
|
real roundl(real x);
|
|
|
|
c_long lround(double x);
|
|
c_long lroundf(float x);
|
|
c_long lroundl(real x);
|
|
|
|
long llround(double x);
|
|
long llroundf(float x);
|
|
long llroundl(real x);
|
|
|
|
double trunc(double x);
|
|
float truncf(float x);
|
|
real truncl(real x);
|
|
|
|
double fmod(double x, double y);
|
|
float fmodf(float x, float y);
|
|
real fmodl(real x, real y);
|
|
|
|
double remainder(double x, double y);
|
|
float remainderf(float x, float y);
|
|
real remainderl(real x, real y);
|
|
|
|
double remquo(double x, double y, int* quo);
|
|
float remquof(float x, float y, int* quo);
|
|
real remquol(real x, real y, int* quo);
|
|
|
|
double copysign(double x, double y);
|
|
float copysignf(float x, float y);
|
|
real copysignl(real x, real y);
|
|
|
|
double nan(char* tagp);
|
|
float nanf(char* tagp);
|
|
real nanl(char* tagp);
|
|
|
|
double nextafter(double x, double y);
|
|
float nextafterf(float x, float y);
|
|
real nextafterl(real x, real y);
|
|
|
|
double nexttoward(double x, real y);
|
|
float nexttowardf(float x, real y);
|
|
real nexttowardl(real x, real y);
|
|
|
|
double fdim(double x, double y);
|
|
float fdimf(float x, float y);
|
|
real fdiml(real x, real y);
|
|
|
|
double fmax(double x, double y);
|
|
float fmaxf(float x, float y);
|
|
real fmaxl(real x, real y);
|
|
|
|
double fmin(double x, double y);
|
|
float fminf(float x, float y);
|
|
real fminl(real x, real y);
|
|
|
|
double fma(double x, double y, double z);
|
|
float fmaf(float x, float y, float z);
|
|
real fmal(real x, real y, real z);
|
|
} |