mirror of
git://sourceware.org/git/glibc.git
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1997-04-15 03:14 Ulrich Drepper <drepper@cygnus.com> * wcsmbs/wcsstr.c: Add weak alias wcswcs for Unix98 compliance. * math/Makefile (libm-calls): Add s_sincos and s_cproj. * math/mathcalls.h: Add prototype for sincos. * sysdeps/i386/fpu/__math.h: Warn about restriction on arguments to inlined sin and cos function. Define functions new in ISO C 9X when __USE_ISOC9X is defined. Add optimized version of finite. Rewrite sincos function to handle too large arguments. * sysdeps/libm-i387/s_cos.S: Better code alignment. * sysdeps/libm-i387/s_cosl.S: Likewise. * sysdeps/libm-i387/s_sin.S: Likewise. * sysdeps/libm-i387/s_sinl.S: Likewise. * sysdeps/libm-i387/s_finite.S: Yet better code. * sysdeps/libm-i387/s_finitef.S: Likewise. * sysdeps/libm-i387/s_sincos.S: New file. * sysdeps/libm-i387/s_sincosf.S: New file. * sysdeps/libm-i387/s_sincosl.S: New file. * sysdeps/libm-ieee754/s_sincos.c: New file. * sysdeps/libm-ieee754/s_sincosf.c: New file. * sysdeps/libm-ieee754/s_sincosl.c: New file. * sysdeps/libm-ieee754/s_ccosh.c: Change to use sincos function. * sysdeps/libm-ieee754/s_ccoshf.c: Likewise. * sysdeps/libm-ieee754/s_ccoshl.c: Likewise. * sysdeps/libm-ieee754/s_cexp.c: Likewise. * sysdeps/libm-ieee754/s_cexpf.c: Likewise. * sysdeps/libm-ieee754/s_cexpl.c: Likewise. * sysdeps/libm-ieee754/s_csinh.c: Likewise. * sysdeps/libm-ieee754/s_csinhf.c: Likewise. * sysdeps/libm-ieee754/s_csinhl.c: Likewise. * sysdeps/libm-ieee754/s_ctan.c: Likewise. * sysdeps/libm-ieee754/s_ctanf.c: Likewise. * sysdeps/libm-ieee754/s_ctanl.c: Likewise. * sysdeps/libm-ieee754/s_ctanh.c: Likewise. * sysdeps/libm-ieee754/s_ctanhf.c: Likewise. * sysdeps/libm-ieee754/s_ctanhl.c: Likewise. * sysdeps/libm-ieee754/s_cosl.c: Correct check for range. * sysdeps/libm-ieee754/s_sinl.c: Likewise. * sysdeps/libm-ieee754/s_roundtol.c: Fix typos. * sysdeps/libm-ieee754/s_roundtoll.c: Likewise. * nis/Makefile (services): Mention nisplus before compat. * nis/nis_call.c (__do_niscall): Change type of variable server_len to prevent warning. * nis/nss_compat/compat-grp.c (getgrent_next_file_plusgroup): Add cast to prevent warning. * nis/nss_compat/compat-pwd.c (getpwent_next_file_plususer): Likewise. * nis/nss_compat/compat-spwd.c (getspent_next_file_plususer): Likewise. * nis/nss_nisplus/nisplus-hosts.c (_nss_nisplus_parse_hostent): Change type of variable `i' to prevent warning. * nis/nss_nisplus/nisplus-network.c (_nss_nisplus_parse_netent): Likewise. * nis/nss_nisplus/nisplus-proto.c (_nss_nisplus_parse_protoent): Likewise. * nis/nss_nisplus/nisplus-rpc.c (_nss_nisplus_parse_rpcent): Likewise. * nis/nss_nisplus/nisplus-service.c (_nss_nisplus_parse_servent): Likewise. * sysdeps/generic/Dist: Remove old math implementation files. * sysdeps/generic/mathimpl.h: Removed. * sysdeps/generic/trig.h: Removed. * sysdeps/generic/sincos.c: Removed. * sysdeps/generic/asincos.c: Removed. * sysdeps/generic/exp__E.c: Removed. * sysdeps/generic/log__L.c: Removed. 1997-04-13 17:18 Wolfram Gloger <wmglo@dent.med.uni-muenchen.de> * malloc/malloc.c (fREe): Small optimization. Before returning, add fast check whether the heap containing top can go away. 1997-04-11 16:46 Wolfram Gloger <wmglo@dent.med.uni-muenchen.de> * malloc/malloc.c (mALLOc, rEALLOc, cALLOc, mEMALIGn): When failing to allocate a new chunk, also try the main_arena. It may be that we are only running out of mmapped regions, and other arenas cannot be enlarged sufficiently. (new_heap, malloc_extend_top): Handle top_pad more consistently, i.e. only in new_heap(). 1997-04-13 21:10 Philip Blundell <pjb27@cl.cam.ac.uk> * sysdeps/posix/Makefile: Don't try to build and run mk-stdiolim if cross-compiling. * configure.in: Recognise "...linuxaout" OS names and turn off ELF. * configure.in: Add ARM support. * sysdeps/arm/Implies: New file. * sysdeps/arm/__longjmp.S: New file. * sysdeps/arm/bsd-_setjmp: New file. * sysdeps/arm/bsd-setjmp: New file. * sysdeps/arm/bytesex.h: New file. * sysdeps/arm/fpu_control.h: New file. * sysdeps/arm/jmp_buf.h: New file. * sysdeps/arm/setjmp.h: New file. * sysdeps/arm/sysdep.h: New file. * sysdeps/unix/arm/config.h: New file. 1997-04-14 04:03 Ulrich Drepper <drepper@cygnus.com> * sysdeps/libm-ieee754/s_cproj.c: New file. * sysdeps/libm-ieee754/s_cprojf.c: New file. * sysdeps/libm-ieee754/s_cprojl.c: New file.
551 lines
12 KiB
C
551 lines
12 KiB
C
/* Inline math functions for i387.
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Copyright (C) 1995, 1996, 1997 Free Software Foundation, Inc.
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This file is part of the GNU C Library.
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Contributed by John C. Bowman <bowman@ipp-garching.mpg.de>, 1995.
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The GNU C Library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Library General Public License as
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published by the Free Software Foundation; either version 2 of the
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License, or (at your option) any later version.
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The GNU C Library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Library General Public License for more details.
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You should have received a copy of the GNU Library General Public
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License along with the GNU C Library; see the file COPYING.LIB. If not,
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write to the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
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Boston, MA 02111-1307, USA. */
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#ifndef __MATH_H
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#define __MATH_H 1
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#if defined __GNUG__ && \
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(__GNUC__ < 2 || (__GNUC__ == 2 && __GNUC_MINOR__ <= 7))
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/* gcc 2.7.2 and 2.7.2.1 have problems with inlining `long double'
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functions so we disable this now. */
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#undef __NO_MATH_INLINES
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#define __NO_MATH_INLINES
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#endif
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#ifdef __GNUC__
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#ifndef __NO_MATH_INLINES
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#ifdef __cplusplus
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#define __MATH_INLINE __inline
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#else
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#define __MATH_INLINE extern __inline
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#endif
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__MATH_INLINE double cos (double);
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__MATH_INLINE double sin (double);
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__MATH_INLINE double __expm1 (double __x);
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__MATH_INLINE double
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__expm1 (double __x)
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{
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register double __value, __exponent, __temp;
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__asm __volatile__
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("fldl2e # e^x - 1 = 2^(x * log2(e)) - 1\n\t"
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"fmul %%st(1) # x * log2(e)\n\t"
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"fstl %%st(1)\n\t"
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"frndint # int(x * log2(e))\n\t"
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"fxch\n\t"
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"fsub %%st(1) # fract(x * log2(e))\n\t"
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"f2xm1 # 2^(fract(x * log2(e))) - 1\n\t"
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"fscale # 2^(x * log2(e)) - 2^(int(x * log2(e)))\n\t"
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: "=t" (__value), "=u" (__exponent) : "0" (__x));
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__asm __volatile__
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("fscale # 2^int(x * log2(e))\n\t"
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: "=t" (__temp) : "0" (1.0), "u" (__exponent));
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__temp -= 1.0;
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return __temp + __value;
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}
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__MATH_INLINE double __sgn1 (double __x);
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__MATH_INLINE double
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__sgn1 (double __x)
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{
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return __x >= 0.0 ? 1.0 : -1.0;
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}
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__MATH_INLINE double sqrt (double __x);
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__MATH_INLINE double
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sqrt (double __x)
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{
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register double __value;
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__asm __volatile__
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("fsqrt"
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: "=t" (__value) : "0" (__x));
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return __value;
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}
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__MATH_INLINE double fabs (double __x);
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__MATH_INLINE double
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fabs (double __x)
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{
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register double __value;
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__asm __volatile__
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("fabs"
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: "=t" (__value) : "0" (__x));
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return __value;
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}
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/* The argument range of this inline version is limited. */
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__MATH_INLINE double sin (double __x);
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__MATH_INLINE double
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sin (double __x)
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{
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register double __value;
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__asm __volatile__
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("fsin"
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: "=t" (__value) : "0" (__x));
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return __value;
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}
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/* The argument range of this inline version is limited. */
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__MATH_INLINE double cos (double __x);
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__MATH_INLINE double
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cos (double __x)
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{
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register double __value;
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__asm __volatile__
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("fcos"
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: "=t" (__value): "0" (__x));
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return __value;
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}
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__MATH_INLINE double tan (double __x);
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__MATH_INLINE double
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tan (double __x)
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{
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register double __value;
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register double __value2 __attribute__ ((unused));
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__asm __volatile__
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("fptan"
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: "=t" (__value2), "=u" (__value) : "0" (__x));
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return __value;
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}
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__MATH_INLINE double atan2 (double __y, double __x);
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__MATH_INLINE double
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atan2 (double __y, double __x)
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{
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register double __value;
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__asm __volatile__
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("fpatan\n\t"
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"fldl %%st(0)"
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: "=t" (__value) : "0" (__x), "u" (__y));
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return __value;
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}
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__MATH_INLINE double asin (double __x);
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__MATH_INLINE double
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asin (double __x)
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{
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return atan2 (__x, sqrt (1.0 - __x * __x));
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}
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__MATH_INLINE double acos (double __x);
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__MATH_INLINE double
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acos (double __x)
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{
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return atan2 (sqrt (1.0 - __x * __x), __x);
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}
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__MATH_INLINE double atan (double __x);
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__MATH_INLINE double
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atan (double __x)
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{
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register double __value;
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__asm __volatile__
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("fld1\n\t"
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"fpatan"
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: "=t" (__value) : "0" (__x));
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return __value;
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}
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__MATH_INLINE double exp (double __x);
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__MATH_INLINE double
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exp (double __x)
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{
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register double __value, __exponent;
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__asm __volatile__
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("fldl2e # e^x = 2^(x * log2(e))\n\t"
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"fmul %%st(1) # x * log2(e)\n\t"
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"fstl %%st(1)\n\t"
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"frndint # int(x * log2(e))\n\t"
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"fxch\n\t"
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"fsub %%st(1) # fract(x * log2(e))\n\t"
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"f2xm1 # 2^(fract(x * log2(e))) - 1\n\t"
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: "=t" (__value), "=u" (__exponent) : "0" (__x));
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__value += 1.0;
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__asm __volatile__
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("fscale"
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: "=t" (__value) : "0" (__value), "u" (__exponent));
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return __value;
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}
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__MATH_INLINE double sinh (double __x);
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__MATH_INLINE double
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sinh (double __x)
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{
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register double __exm1 = __expm1 (fabs (__x));
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return 0.5 * (__exm1 / (__exm1 + 1.0) + __exm1) * __sgn1 (__x);
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}
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__MATH_INLINE double cosh (double __x);
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__MATH_INLINE double
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cosh (double __x)
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{
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register double __ex = exp (__x);
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return 0.5 * (__ex + 1.0 / __ex);
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}
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__MATH_INLINE double tanh (double __x);
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__MATH_INLINE double
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tanh (double __x)
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{
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register double __exm1 = __expm1 (-fabs (__x + __x));
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return __exm1 / (__exm1 + 2.0) * __sgn1 (-__x);
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}
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__MATH_INLINE double log (double __x);
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__MATH_INLINE double
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log (double __x)
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{
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register double __value;
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__asm __volatile__
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("fldln2\n\t"
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"fxch\n\t"
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"fyl2x"
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: "=t" (__value) : "0" (__x));
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return __value;
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}
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__MATH_INLINE double log10 (double __x);
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__MATH_INLINE double
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log10 (double __x)
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{
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register double __value;
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__asm __volatile__
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("fldlg2\n\t"
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"fxch\n\t"
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"fyl2x"
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: "=t" (__value) : "0" (__x));
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return __value;
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}
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__MATH_INLINE double __log2 (double __x);
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__MATH_INLINE double
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__log2 (double __x)
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{
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register double __value;
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__asm __volatile__
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("fld1\n\t"
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"fxch\n\t"
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"fyl2x"
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: "=t" (__value) : "0" (__x));
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return __value;
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}
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__MATH_INLINE double fmod (double __x, double __y);
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__MATH_INLINE double
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fmod (double __x, double __y)
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{
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register double __value;
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__asm __volatile__
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("1: fprem\n\t"
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"fstsw %%ax\n\t"
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"sahf\n\t"
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"jp 1b"
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: "=t" (__value) : "0" (__x), "u" (__y) : "ax", "cc");
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return __value;
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}
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__MATH_INLINE double ldexp (double __x, int __y);
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__MATH_INLINE double
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ldexp (double __x, int __y)
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{
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register double __value;
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__asm __volatile__
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("fscale"
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: "=t" (__value) : "0" (__x), "u" ((double) __y));
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return __value;
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}
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__MATH_INLINE double pow (double __x, double __y);
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__MATH_INLINE double
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pow (double __x, double __y)
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{
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register double __value, __exponent;
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long __p = (long) __y;
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if (__x == 0.0 && __y > 0.0)
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return 0.0;
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if (__y == (double) __p)
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{
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double __r = 1.0;
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if (__p == 0)
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return 1.0;
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if (__p < 0)
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{
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__p = -__p;
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__x = 1.0 / __x;
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}
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while (1)
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{
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if (__p & 1)
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__r *= __x;
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__p >>= 1;
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if (__p == 0)
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return __r;
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__x *= __x;
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}
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/* NOTREACHED */
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}
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__asm __volatile__
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("fmul %%st(1) # y * log2(x)\n\t"
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"fstl %%st(1)\n\t"
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"frndint # int(y * log2(x))\n\t"
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"fxch\n\t"
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"fsub %%st(1) # fract(y * log2(x))\n\t"
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"f2xm1 # 2^(fract(y * log2(x))) - 1\n\t"
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: "=t" (__value), "=u" (__exponent) : "0" (__log2 (__x)), "1" (__y));
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__value += 1.0;
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__asm __volatile__
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("fscale"
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: "=t" (__value) : "0" (__value), "u" (__exponent));
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return __value;
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}
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__MATH_INLINE double floor (double __x);
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__MATH_INLINE double
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floor (double __x)
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{
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register double __value;
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__volatile unsigned short int __cw, __cwtmp;
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__asm __volatile ("fnstcw %0" : "=m" (__cw));
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__cwtmp = (__cw & 0xf3ff) | 0x0400; /* rounding down */
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__asm __volatile ("fldcw %0" : : "m" (__cwtmp));
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__asm __volatile ("frndint" : "=t" (__value) : "0" (__x));
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__asm __volatile ("fldcw %0" : : "m" (__cw));
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return __value;
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}
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__MATH_INLINE double ceil (double __x);
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__MATH_INLINE double
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ceil (double __x)
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{
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register double __value;
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__volatile unsigned short int __cw, __cwtmp;
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__asm __volatile ("fnstcw %0" : "=m" (__cw));
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__cwtmp = (__cw & 0xf3ff) | 0x0800; /* rounding up */
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__asm __volatile ("fldcw %0" : : "m" (__cwtmp));
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__asm __volatile ("frndint" : "=t" (__value) : "0" (__x));
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__asm __volatile ("fldcw %0" : : "m" (__cw));
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return __value;
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}
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/* Optimized versions for some non-standardized functions. */
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#if defined __USE_ISOC9X || defined __USE_MISC
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__MATH_INLINE double hypot (double __x, double __y);
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__MATH_INLINE double
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hypot (double __x, double __y)
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{
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return sqrt (__x * __x + __y * __y);
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}
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__MATH_INLINE double log1p (double __x);
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__MATH_INLINE double
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log1p (double __x)
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{
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register double __value;
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if (fabs (__x) >= 1.0 - 0.5 * M_SQRT2)
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__value = log (1.0 + __x);
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else
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__asm __volatile__
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("fldln2\n\t"
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"fxch\n\t"
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"fyl2xp1"
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: "=t" (__value) : "0" (__x));
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return __value;
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}
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__MATH_INLINE double asinh (double __x);
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__MATH_INLINE double
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asinh (double __x)
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{
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register double __y = fabs (__x);
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return log1p ((__y * __y / (sqrt (__y * __y + 1.0) + 1.0) + __y)
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* __sgn1 (__x));
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}
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__MATH_INLINE double acosh (double __x);
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__MATH_INLINE double
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|
acosh (double __x)
|
|
{
|
|
return log (__x + sqrt (__x - 1.0) * sqrt (__x + 1.0));
|
|
}
|
|
|
|
__MATH_INLINE double atanh (double __x);
|
|
__MATH_INLINE double
|
|
atanh (double __x)
|
|
{
|
|
register double __y = fabs (__x);
|
|
|
|
return -0.5 * __log1p (-(__y + __y) / (1.0 + __y)) * __sgn1 (__x);
|
|
}
|
|
|
|
__MATH_INLINE double logb (double __x);
|
|
__MATH_INLINE double
|
|
logb (double __x)
|
|
{
|
|
register double __value;
|
|
__asm __volatile__
|
|
("fxtract\n\t"
|
|
: "=t" (__value) : "0" (__x));
|
|
|
|
return __value;
|
|
}
|
|
|
|
__MATH_INLINE double drem (double __x, double __y);
|
|
__MATH_INLINE double
|
|
drem (double __x, double __y)
|
|
{
|
|
register double __value;
|
|
__asm __volatile__
|
|
("1: fprem1\n\t"
|
|
"fstsw %%ax\n\t"
|
|
"sahf\n\t"
|
|
"jp 1b"
|
|
: "=t" (__value) : "0" (__x), "u" (__y) : "ax", "cc");
|
|
|
|
return __value;
|
|
}
|
|
|
|
/* This function is used in the `isfinite' macro. */
|
|
__MATH_INLINE int __finite (double __x);
|
|
__MATH_INLINE int
|
|
__finite (double __x)
|
|
{
|
|
register int __result;
|
|
__asm__ __volatile__
|
|
("orl $x0x800fffff, %0\n\t"
|
|
"incl %0\n\t"
|
|
"shrl $31, %0"
|
|
: "=q" (__result) : "0" (((int *) &__x)[1]));
|
|
return __result;
|
|
}
|
|
#endif
|
|
|
|
#ifdef __USE_MISC
|
|
__MATH_INLINE double coshm1 (double __x);
|
|
__MATH_INLINE double
|
|
coshm1 (double __x)
|
|
{
|
|
register double __exm1 = __expm1 (fabs (__x));
|
|
|
|
return 0.5 * (__exm1 / (__exm1 + 1.0)) * __exm1;
|
|
}
|
|
|
|
__MATH_INLINE double acosh1p (double __x);
|
|
__MATH_INLINE double
|
|
acosh1p (double __x)
|
|
{
|
|
return __log1p (__x + sqrt (__x) * sqrt (__x + 2.0));
|
|
}
|
|
|
|
__MATH_INLINE void sincos (double __x, double *__sinx, double *__cosx);
|
|
__MATH_INLINE void
|
|
sincos (double __x, double *__sinx, double *__cosx)
|
|
{
|
|
register double __cosr, __sinr;
|
|
__asm __volatile__
|
|
("fsincos\n\t"
|
|
"fnstsw %%ax\n\t"
|
|
"testl $0x400, %%eax\n\t"
|
|
"jz 1f\n\t"
|
|
"fldpi\n\t"
|
|
"fadd %%st(0)\n\t"
|
|
"fxch %%st(1)\n\t"
|
|
"2: fprem1\n\t"
|
|
"fnstsw %%ax\n\t"
|
|
"testl $0x400, %%eax\n\t"
|
|
"jnz 2b\n\t"
|
|
"fstp %%st(1)\n\t"
|
|
"fsincos\n\t"
|
|
"1:"
|
|
: "=t" (__cosr), "=u" (__sinr) : "0" (__x));
|
|
|
|
*__sinx = __sinr;
|
|
*__cosx = __cosr;
|
|
}
|
|
|
|
__MATH_INLINE double sgn (double __x);
|
|
__MATH_INLINE double
|
|
sgn (double __x)
|
|
{
|
|
return __x == 0.0 ? 0.0 : (__x > 0.0 ? 1.0 : -1.0);
|
|
}
|
|
|
|
__MATH_INLINE double pow2 (double __x);
|
|
__MATH_INLINE double
|
|
pow2 (double __x)
|
|
{
|
|
register double __value, __exponent;
|
|
long __p = (long) __x;
|
|
|
|
if (__x == (double) __p)
|
|
return ldexp (1.0, __p);
|
|
|
|
__asm __volatile__
|
|
("fldl %%st(0)\n\t"
|
|
"frndint # int(x)\n\t"
|
|
"fxch\n\t"
|
|
"fsub %%st(1) # fract(x)\n\t"
|
|
"f2xm1 # 2^(fract(x)) - 1\n\t"
|
|
: "=t" (__value), "=u" (__exponent) : "0" (__x));
|
|
__value += 1.0;
|
|
__asm __volatile__
|
|
("fscale"
|
|
: "=t" (__value) : "0" (__value), "u" (__exponent));
|
|
|
|
return __value;
|
|
}
|
|
|
|
#endif /* __USE_MISC */
|
|
|
|
#endif /* __NO_MATH_INLINES */
|
|
#endif /* __GNUC__ */
|
|
|
|
#endif /* __MATH_H */
|