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[/] [openrisc/] [trunk/] [gnu-old/] [gcc-4.2.2/] [gcc/] [fp-test.c] - Blame information for rev 816

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1 38 julius
/* fp-test.c - Check that all floating-point operations are available.
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   Copyright (C) 1995, 2000, 2003, 2007  Free Software Foundation, Inc.
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   Contributed by Ronald F. Guilmette <rfg@monkeys.com>.
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   This file is part of GCC.
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   GCC is free software; you can redistribute it and/or modify it
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   under the terms of the GNU General Public License as published by
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   the Free Software Foundation; either version 3, or (at your option)
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   any later version.
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   GCC is distributed in the hope that it will be useful, but WITHOUT
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   ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
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   or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public
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   License for more details.
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   You should have received a copy of the GNU General Public License
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   along with GCC; see the file COPYING3.  If not see
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   <http://www.gnu.org/licenses/>.  */
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/* This is a trivial test program which may be useful to people who are
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   porting the GCC or G++ compilers to a new system.  The intent here is
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   merely to check that all floating-point operations have been provided
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   by the port. (Note that I say ``provided'' rather than ``implemented''.)
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   To use this file, simply compile it (with GCC or G++) and then try to
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   link it in the normal way (also using GCC or G++ respectively).  If
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   all of the floating -point operations (including conversions) have
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   been provided, then this file will link without incident.  If however
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   one or more of the primitive floating-point operations have not been
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   properly provided, you will get link-time errors indicating which
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   floating-point operations are unavailable.
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   This file will typically be used when porting the GNU compilers to
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   some system which lacks floating-point hardware, and for which
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   software emulation routines (for FP ops) are needed in order to
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   complete the port.  */
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#if 0
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#include <math.h>
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#endif
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extern double acos (double);
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extern double asin (double);
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extern double atan (double);
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extern double atan2 (double, double);
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extern double cos (double);
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extern double sin (double);
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extern double tan (double);
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extern double cosh (double);
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extern double sinh (double);
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extern double tanh (double);
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extern double exp (double);
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extern double frexp (double, int *);
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extern double ldexp (double, int);
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extern double log (double);
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extern double log10 (double);
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extern double modf (double, double *);
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extern double pow (double, double);
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extern double sqrt (double);
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extern double ceil (double);
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extern double fabs (double);
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extern double floor (double);
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extern double fmod (double, double);
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int i1, i2 = 2;
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volatile signed char sc;
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volatile unsigned char uc;
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volatile signed short ss;
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volatile unsigned short us;
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volatile signed int si;
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volatile unsigned int ui;
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volatile signed long sl;
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volatile unsigned long ul;
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volatile float f1 = 1.0, f2 = 1.0, f3 = 1.0;
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volatile double d1 = 1.0, d2 = 1.0, d3 = 1.0;
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volatile long double D1 = 1.0, D2 = 1.0, D3 = 1.0;
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int
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main (void)
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{
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  /* TYPE: float */
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  f1 = -f2;
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  f1 = f2 + f3;
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  f1 = f2 - f3;
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  f1 = f2 * f3;
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  f1 = f2 / f3;
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  f1 += f2;
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  f1 -= f2;
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  f1 *= f2;
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  f1 /= f2;
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  si = f1 == f2;
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  si = f1 != f2;
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  si = f1 > f2;
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  si = f1 < f2;
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  si = f1 >= f2;
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  si = f1 <= f2;
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  si = __builtin_isgreater (f1, f2);
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  si = __builtin_isgreaterequal (f1, f2);
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  si = __builtin_isless (f1, f2);
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  si = __builtin_islessequal (f1, f2);
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  si = __builtin_islessgreater (f1, f2);
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  si = __builtin_isunordered (f1, f2);
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  sc = f1;
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  uc = f1;
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  ss = f1;
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  us = f1;
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  si = f1;
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  ui = f1;
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  sl = f1;
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  ul = f1;
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  d1 = f1;
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  D1 = f1;
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  f1 = sc;
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  f1 = uc;
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  f1 = ss;
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  f1 = us;
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  f1 = si;
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  f1 = ui;
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  f1 = sl;
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  f1 = ul;
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  f1 = d1;
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  f1 = D1;
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  d1 = -d2;
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  d1 = d2 + d3;
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  d1 = d2 - d3;
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  d1 = d2 * d3;
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  d1 = d2 / d3;
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  d1 += d2;
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  d1 -= d2;
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  d1 *= d2;
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  d1 /= d2;
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  si = d1 == d2;
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  si = d1 != d2;
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  si = d1 > d2;
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  si = d1 < d2;
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  si = d1 >= d2;
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  si = d1 <= d2;
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  si = __builtin_isgreater (d1, d2);
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  si = __builtin_isgreaterequal (d1, d2);
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  si = __builtin_isless (d1, d2);
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  si = __builtin_islessequal (d1, d2);
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  si = __builtin_islessgreater (d1, d2);
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  si = __builtin_isunordered (d1, d2);
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  sc = d1;
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  uc = d1;
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  ss = d1;
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  us = d1;
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  si = d1;
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  ui = d1;
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  sl = d1;
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  ul = d1;
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  f1 = d1;
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  D1 = d1;
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  d1 = sc;
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  d1 = uc;
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  d1 = ss;
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  d1 = us;
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  d1 = si;
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  d1 = ui;
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  d1 = sl;
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  d1 = ul;
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  d1 = f1;
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  d1 = D1;
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  D1 = -D2;
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  D1 = D2 + D3;
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  D1 = D2 - D3;
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  D1 = D2 * D3;
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  D1 = D2 / D3;
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  D1 += D2;
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  D1 -= D2;
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  D1 *= D2;
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  D1 /= D2;
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  si = D1 == D2;
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  si = D1 != D2;
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  si = D1 > D2;
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  si = D1 < D2;
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  si = D1 >= D2;
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  si = D1 <= D2;
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  si = __builtin_isgreater (D1, D2);
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  si = __builtin_isgreaterequal (D1, D2);
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  si = __builtin_isless (D1, D2);
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  si = __builtin_islessequal (D1, D2);
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  si = __builtin_islessgreater (D1, D2);
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  si = __builtin_isunordered (D1, D2);
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  sc = D1;
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  uc = D1;
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  ss = D1;
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  us = D1;
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  si = D1;
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  ui = D1;
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  sl = D1;
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  ul = D1;
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  f1 = D1;
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  d1 = D1;
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  D1 = sc;
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  D1 = uc;
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  D1 = ss;
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  D1 = us;
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  D1 = si;
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  D1 = ui;
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  D1 = sl;
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  D1 = ul;
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  D1 = f1;
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  D1 = d1;
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  d1 = acos (d2);
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  d1 = asin (d2);
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  d1 = atan (d2);
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  d1 = atan2 (d2, d3);
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  d1 = cos (d2);
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  d1 = sin (d2);
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  d1 = tan (d2);
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  d1 = cosh (d2);
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  d1 = sinh (d2);
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  d1 = tanh (d2);
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  d1 = exp (d2);
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  d1 = frexp (d2, &i1);
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  d1 = ldexp (d2, i2);
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  d1 = log (d2);
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  d1 = log10 (d2);
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  d1 = modf (d2, &d3);
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  d1 = pow (d2, d3);
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  d1 = sqrt (d2);
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  d1 = ceil (d2);
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  d1 = fabs (d2);
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  d1 = floor (d2);
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  d1 = fmod (d2, d3);
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  return 0;
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}

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