📄 s_frexp.c
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//===========================================================================//// s_frexp.c//// Part of the standard mathematical function library////===========================================================================//####COPYRIGHTBEGIN####// // ------------------------------------------- // The contents of this file are subject to the Red Hat eCos Public License // Version 1.1 (the "License"); you may not use this file except in // compliance with the License. You may obtain a copy of the License at // http://www.redhat.com/ // // Software distributed under the License is distributed on an "AS IS" // basis, WITHOUT WARRANTY OF ANY KIND, either express or implied. See the // License for the specific language governing rights and limitations under // the License. // // The Original Code is eCos - Embedded Configurable Operating System, // released September 30, 1998. // // The Initial Developer of the Original Code is Red Hat. // Portions created by Red Hat are // Copyright (C) 1998, 1999, 2000 Red Hat, Inc. // All Rights Reserved. // ------------------------------------------- // //####COPYRIGHTEND####//===========================================================================//#####DESCRIPTIONBEGIN####//// Author(s): jlarmour// Contributors: jlarmour// Date: 1998-02-13// Purpose: // Description: // Usage: ////####DESCRIPTIONEND####////===========================================================================// CONFIGURATION#include <pkgconf/libm.h> // Configuration header// Include the Math library?#ifdef CYGPKG_LIBM // Derived from code with the following copyright/* @(#)s_frexp.c 1.4 95/01/18 *//* * ==================================================== * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved. * * Developed at SunSoft, a Sun Microsystems, Inc. business. * Permission to use, copy, modify, and distribute this * software is freely granted, provided that this notice * is preserved. * ==================================================== *//* * for non-zero x * x = frexp(arg,&exp); * return a double fp quantity x such that 0.5 <= |x| <1.0 * and the corresponding binary exponent "exp". That is * arg = x*2^exp. * If arg is inf, 0.0, or NaN, then frexp(arg,&exp) returns arg * with *exp=0. */#include "mathincl/fdlibm.h"static const doubletwo54 = 1.80143985094819840000e+16; /* 0x43500000, 0x00000000 */ double frexp(double x, int *eptr){ int hx, ix, lx; hx = CYG_LIBM_HI(x); ix = 0x7fffffff&hx; lx = CYG_LIBM_LO(x); *eptr = 0; if(ix>=0x7ff00000||((ix|lx)==0)) return x; /* 0,inf,nan */ if (ix<0x00100000) { /* subnormal */ x *= two54; hx = CYG_LIBM_HI(x); ix = hx&0x7fffffff; *eptr = -54; } *eptr += (ix>>20)-1022; hx = (hx&0x800fffff)|0x3fe00000; CYG_LIBM_HI(x) = hx; return x;}#endif // ifdef CYGPKG_LIBM // EOF s_frexp.c
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