/* Test file for mpfr_cmp_ui and mpfr_cmp_si.
Copyright 1999, 2001-2018 Free Software Foundation, Inc.
Contributed by the AriC and Caramba projects, INRIA.
This file is part of the GNU MPFR Library.
The GNU MPFR Library is free software; you can redistribute it and/or modify
it under the terms of the GNU Lesser General Public License as published by
the Free Software Foundation; either version 3 of the License, or (at your
option) any later version.
The GNU MPFR Library is distributed in the hope that it will be useful, but
WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public
License for more details.
You should have received a copy of the GNU Lesser General Public License
along with the GNU MPFR Library; see the file COPYING.LESSER. If not, see
http://www.gnu.org/licenses/ or write to the Free Software Foundation, Inc.,
51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA. */
#ifdef TCMP_UI_CHECK_NAN
mpfr_clear_erangeflag ();
c = mpfr_cmp_si (x, TCMP_UI_CHECK_NAN);
if (c != 0 || !mpfr_erangeflag_p ())
{
printf ("NaN error on %d (1)\n", TCMP_UI_CHECK_NAN);
exit (1);
}
mpfr_clear_erangeflag ();
c = (mpfr_cmp_si) (x, TCMP_UI_CHECK_NAN);
if (c != 0 || !mpfr_erangeflag_p ())
{
printf ("NaN error on %d (2)\n", TCMP_UI_CHECK_NAN);
exit (1);
}
if (TCMP_UI_CHECK_NAN >= 0)
{
mpfr_clear_erangeflag ();
c = mpfr_cmp_ui (x, TCMP_UI_CHECK_NAN);
if (c != 0 || !mpfr_erangeflag_p ())
{
printf ("NaN error on %d (3)\n", TCMP_UI_CHECK_NAN);
exit (1);
}
mpfr_clear_erangeflag ();
c = (mpfr_cmp_ui) (x, TCMP_UI_CHECK_NAN);
if (c != 0 || !mpfr_erangeflag_p ())
{
printf ("NaN error on %d (4)\n", TCMP_UI_CHECK_NAN);
exit (1);
}
}
#else
#include "mpfr-test.h"
static void
check_nan (void)
{
mpfr_t x;
int c, i;
mpfr_init (x);
mpfr_set_nan (x);
/* We need constants to completely test the macros. */
#undef TCMP_UI_CHECK_NAN
#define TCMP_UI_CHECK_NAN -17
#include "tcmp_ui.c"
#undef TCMP_UI_CHECK_NAN
#define TCMP_UI_CHECK_NAN 0
#include "tcmp_ui.c"
#undef TCMP_UI_CHECK_NAN
#define TCMP_UI_CHECK_NAN 17
#include "tcmp_ui.c"
for (i = -17; i <= 17; i += 17)
{
#undef TCMP_UI_CHECK_NAN
#define TCMP_UI_CHECK_NAN i
#include "tcmp_ui.c"
}
mpfr_clear (x);
}
/* Since mpfr_cmp_ui and mpfr_cmp_si are also implemented by a macro
with __builtin_constant_p for GCC, check that side effects are
handled correctly. */
static void
check_macros (void)
{
mpfr_t x;
int c;
mpfr_init2 (x, 32);
c = 0;
mpfr_set_ui (x, 17, MPFR_RNDN);
if (mpfr_cmp_ui (x, 17) != 0)
{
printf ("Error 1 on mpfr_cmp_ui(x,17) in check_macros\n");
exit (1);
}
if (mpfr_cmp_ui (x, (c++, 17)) != 0)
{
printf ("Error 2 on mpfr_cmp_ui(x,17) in check_macros\n");
exit (1);
}
if (c != 1)
{
printf ("Error 3 on mpfr_cmp_ui(x,17) in check_macros\n"
"(c = %d instead of 1)\n", c);
exit (1);
}
if (mpfr_cmp_si (x, 17) != 0)
{
printf ("Error 1 on mpfr_cmp_si(x,17) in check_macros\n");
exit (1);
}
if (mpfr_cmp_si (x, (c++, 17)) != 0)
{
printf ("Error 2 on mpfr_cmp_si(x,17) in check_macros\n");
exit (1);
}
if (c != 2)
{
printf ("Error 3 on mpfr_cmp_si(x,17) in check_macros\n"
"(c = %d instead of 2)\n", c);
exit (1);
}
c = 0;
mpfr_set_ui (x, 0, MPFR_RNDN);
if (mpfr_cmp_ui (x, 0) != 0)
{
printf ("Error 1 on mpfr_cmp_ui(x,0) in check_macros\n");
exit (1);
}
if (mpfr_cmp_ui (x, (c++, 0)) != 0)
{
printf ("Error 2 on mpfr_cmp_ui(x,0) in check_macros\n");
exit (1);
}
if (c != 1)
{
printf ("Error 3 on mpfr_cmp_ui(x,0) in check_macros\n"
"(c = %d instead of 1)\n", c);
exit (1);
}
if (mpfr_cmp_si (x, 0) != 0)
{
printf ("Error 1 on mpfr_cmp_si(x,0) in check_macros\n");
exit (1);
}
if (mpfr_cmp_si (x, (c++, 0)) != 0)
{
printf ("Error 2 on mpfr_cmp_si(x,0) in check_macros\n");
exit (1);
}
if (c != 2)
{
printf ("Error 3 on mpfr_cmp_si(x,0) in check_macros\n"
"(c = %d instead of 2)\n", c);
exit (1);
}
mpfr_clear (x);
}
/* Bug in r7114 */
static void
test_macros (void)
{
mpfr_t x[3];
mpfr_ptr p;
mpfr_inits (x[0], x[1], x[2], (mpfr_ptr) 0);
mpfr_set_ui (x[0], 0, MPFR_RNDN);
p = x[0];
if (mpfr_cmp_ui (p++, 0) != 0)
{
printf ("Error in mpfr_cmp_ui macro: result should be 0.\n");
exit (1);
}
if (p != x[1])
{
printf ("Error in mpfr_cmp_ui macro: p - x[0] = %d (expecting 1)\n",
(int) (p - x[0]));
exit (1);
}
p = x[0];
if (mpfr_cmp_si (p++, 0) != 0)
{
printf ("Error in mpfr_cmp_si macro: result should be 0.\n");
exit (1);
}
if (p != x[1])
{
printf ("Error in mpfr_cmp_si macro: p - x[0] = %d (expecting 1)\n",
(int) (p - x[0]));
exit (1);
}
mpfr_clears (x[0], x[1], x[2], (mpfr_ptr) 0);
}
int
main (void)
{
mpfr_t x;
unsigned long i;
long s;
tests_start_mpfr ();
mpfr_init(x);
/* tests for cmp_ui */
mpfr_set_ui (x, 3, MPFR_RNDZ);
if ((mpfr_cmp_ui) (x, i = 3) != 0)
{
printf ("Error in mpfr_cmp_ui(3.0, 3)\n");
exit (1);
}
if (mpfr_cmp_ui (x, i = 2) <= 0)
{
printf ("Error in mpfr_cmp_ui(3.0,2)\n");
exit (1);
}
if (mpfr_cmp_ui (x, i = 4) >= 0)
{
printf ("Error in mpfr_cmp_ui(3.0,4)\n");
exit (1);
}
mpfr_set_ui (x, 0, MPFR_RNDZ);
mpfr_neg (x, x, MPFR_RNDZ);
if (mpfr_cmp_ui (x, i = 0))
{
printf ("Error in mpfr_cmp_ui(0.0,0)\n");
exit (1);
}
mpfr_set_ui (x, 1, MPFR_RNDZ);
if (mpfr_cmp_ui (x, i = 0) == 0)
{
printf ("Error in mpfr_cmp_ui(1.0,0)\n");
exit (1);
}
mpfr_set_inf (x, 1);
if (mpfr_cmp_ui (x, 1) <= 0)
{
printf ("Error in mpfr_cmp_ui (Inf, 0)\n");
exit (1);
}
mpfr_set_inf (x, -1);
if (mpfr_cmp_ui (x, 1) >= 0)
{
printf ("Error in mpfr_cmp_ui (-Inf, 0)\n");
exit (1);
}
mpfr_set_si (x, -1, MPFR_RNDN);
MPFR_ASSERTN(mpfr_cmp_ui (x, 1) < 0);
MPFR_ASSERTN(mpfr_cmp_ui (x, 0) < 0);
mpfr_set_ui (x, 1, MPFR_RNDN);
MPFR_ASSERTN(mpfr_cmp_ui (x, 0) > 0);
/* tests for cmp_si */
(mpfr_set_si) (x, -3, MPFR_RNDZ);
if ((mpfr_cmp_si) (x, s = -3) != 0)
{
printf ("Error in mpfr_cmp_si(-3.0,-3)\n");
exit (1);
}
if (mpfr_cmp_si (x, s = -4) <= 0)
{
printf ("Error in mpfr_cmp_si(-3.0,-4)\n");
exit (1);
}
if (mpfr_cmp_si (x, s = 1) >= 0)
{
printf ("Error in mpfr_cmp_si(-3.0,1)\n");
exit (1);
}
mpfr_set_inf (x, 1);
if (mpfr_cmp_si (x, -1) <= 0)
{
printf ("Error in mpfr_cmp_si (Inf, 0)\n");
exit (1);
}
mpfr_set_inf (x, -1);
if (mpfr_cmp_si (x, -1) >= 0)
{
printf ("Error in mpfr_cmp_si (-Inf, 0)\n");
exit (1);
}
/* case b=0 */
mpfr_set_ui (x, 0, MPFR_RNDZ);
MPFR_ASSERTN(mpfr_cmp_si (x, 0) == 0);
MPFR_ASSERTN(mpfr_cmp_si (x, 1) < 0);
MPFR_ASSERTN(mpfr_cmp_si (x, -1) > 0);
/* case i=0 */
mpfr_set_ui (x, 1, MPFR_RNDZ);
MPFR_ASSERTN(mpfr_cmp_si (x, 0) > 0);
mpfr_set_ui (x, 0, MPFR_RNDZ);
MPFR_ASSERTN(mpfr_cmp_si (x, 0) == 0);
mpfr_neg (x, x, MPFR_RNDZ);
MPFR_ASSERTN(mpfr_cmp_si (x, 0) == 0);
mpfr_set_si (x, -1, MPFR_RNDZ);
MPFR_ASSERTN(mpfr_cmp_si (x, 0) < 0);
/* case large x */
mpfr_set_str_binary (x, "1E100");
MPFR_ASSERTN(mpfr_cmp_si (x, 0) > 0);
MPFR_ASSERTN(mpfr_cmp_si (x, 1) > 0);
MPFR_ASSERTN(mpfr_cmp_si (x, -1) > 0);
mpfr_set_str_binary (x, "-1E100");
MPFR_ASSERTN(mpfr_cmp_si (x, 0) < 0);
MPFR_ASSERTN(mpfr_cmp_si (x, 1) < 0);
MPFR_ASSERTN(mpfr_cmp_si (x, -1) < 0);
/* corner case */
mpfr_set_ui (x, 1, MPFR_RNDZ);
mpfr_mul_2exp (x, x, GMP_NUMB_BITS - 1, MPFR_RNDZ);
/* now EXP(x)=GMP_NUMB_BITS */
MPFR_ASSERTN(mpfr_cmp_si (x, 1) > 0);
mpfr_clear (x);
check_nan ();
check_macros ();
test_macros ();
tests_end_mpfr ();
return 0;
}
#endif