Annotation of OpenXM_contrib/gmp/mpfr/tests/texceptions.c, Revision 1.1.1.1
1.1 ohara 1: /* Test file for exceptions.
2:
3: Copyright 2001 Free Software Foundation.
4:
5: This file is part of the MPFR Library.
6:
7: The MPFR Library is free software; you can redistribute it and/or modify
8: it under the terms of the GNU Lesser General Public License as published by
9: the Free Software Foundation; either version 2.1 of the License, or (at your
10: option) any later version.
11:
12: The MPFR Library is distributed in the hope that it will be useful, but
13: WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
14: or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public
15: License for more details.
16:
17: You should have received a copy of the GNU Lesser General Public License
18: along with the MPFR Library; see the file COPYING.LIB. If not, write to
19: the Free Software Foundation, Inc., 59 Temple Place - Suite 330, Boston,
20: MA 02111-1307, USA. */
21:
22: #include <stdio.h>
23: #include <stdlib.h>
24: #include "gmp.h"
25: #include "mpfr.h"
26:
27: void mpfr_set_double_range _PROTO((void));
28:
29: void
30: mpfr_set_double_range (void)
31: {
32: mpfr_set_default_prec (53);
33:
34: /* in double precision format, the unbiased exponent is between 0 and
35: 2047, where 0 is used for subnormal numbers, and 2047 for special
36: numbers (infinities, NaN), and the bias is 1023, thus "normal" numbers
37: have an exponent between -1022 and 1023, corresponding to numbers
38: between 2^(-1022) and previous(2^(1024)).
39: (The smallest subnormal number is 0.(0^51)1*2^(-1022)= 2^(-1074).)
40:
41: The smallest normal power of two is 1.0*2^(-1022).
42: The largest normal power of two is 2^1023.
43: (We have to add one for mpfr since mantissa are between 1/2 and 1.)
44: */
45:
46: mpfr_set_emin (-1021);
47: mpfr_set_emax (1024);
48: }
49:
50: int
51: main (int argc, char *argv[])
52: {
53: mpfr_t x, y;
54: mp_exp_t emin, emax;
55:
56: mpfr_init (x);
57: mpfr_init (y);
58:
59: emin = mpfr_get_emin ();
60: emax = mpfr_get_emax ();
61: if (emin >= emax)
62: {
63: fprintf (stderr, "Error: emin >= emax\n");
64: exit (1);
65: }
66:
67: mpfr_set_ui (x, 1, GMP_RNDN);
68: mpfr_mul_2exp (x, x, 1024, GMP_RNDN);
69: mpfr_set_double_range ();
70: mpfr_check_range (x, GMP_RNDN);
71: if (!mpfr_inf_p (x) || (mpfr_sgn(x) <= 0))
72: {
73: fprintf (stderr, "Error: 2^1024 rounded to nearest should give +Inf\n");
74: exit (1);
75: }
76:
77: mpfr_set_emax (1025);
78: mpfr_set_ui (x, 1, GMP_RNDN);
79: mpfr_mul_2exp (x, x, 1024, GMP_RNDN);
80: mpfr_set_double_range ();
81: mpfr_check_range (x, GMP_RNDD);
82: if (!mpfr_number_p (x))
83: {
84: fprintf (stderr, "Error: 2^1024 rounded down should give a normal number\n");
85: exit (1);
86: }
87:
88: mpfr_set_ui (x, 1, GMP_RNDN);
89: mpfr_mul_2exp (x, x, 1023, GMP_RNDN);
90: mpfr_add (x, x, x, GMP_RNDN);
91: if (!mpfr_inf_p (x) || (mpfr_sgn(x) <= 0))
92: {
93: fprintf (stderr, "Error: x+x rounded to nearest for x=2^1023 should give +Inf\n");
94: printf ("emax = %ld\n", mpfr_get_emax ());
95: printf ("got "); mpfr_print_binary (x); putchar ('\n');
96: exit (1);
97: }
98:
99: mpfr_set_ui (x, 1, GMP_RNDN);
100: mpfr_mul_2exp (x, x, 1023, GMP_RNDN);
101: mpfr_add (x, x, x, GMP_RNDD);
102: if (!mpfr_number_p (x))
103: {
104: fprintf (stderr, "Error: x+x rounded down for x=2^1023 should give a normal number\n");
105: exit (1);
106: }
107:
108: mpfr_set_ui (x, 1, GMP_RNDN);
109: mpfr_div_2exp (x, x, 1022, GMP_RNDN);
110: mpfr_set_str_raw (y, "1.1e-1022"); /* y = 3/2*x */
111: mpfr_sub (y, y, x, GMP_RNDZ);
112: if (mpfr_cmp_ui (y, 0))
113: {
114: fprintf (stderr, "Error: y-x rounded to zero should give 0 for y=3/2*2^(-1022), x=2^(-1022)\n");
115: printf ("y="); mpfr_print_binary (y); putchar ('\n');
116: exit (1);
117: }
118:
119: mpfr_clear (x);
120: mpfr_clear (y);
121:
122: return 0;
123: }
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