Annotation of OpenXM_contrib/gmp/mpf/div.c, Revision 1.1.1.3
1.1 maekawa 1: /* mpf_div -- Divide two floats.
2:
1.1.1.3 ! ohara 3: Copyright 1993, 1994, 1996, 2000, 2001, 2002 Free Software Foundation, Inc.
1.1 maekawa 4:
5: This file is part of the GNU MP Library.
6:
7: The GNU MP Library is free software; you can redistribute it and/or modify
1.1.1.2 maekawa 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
1.1 maekawa 10: option) any later version.
11:
12: The GNU MP Library is distributed in the hope that it will be useful, but
13: WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
1.1.1.2 maekawa 14: or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public
1.1 maekawa 15: License for more details.
16:
1.1.1.2 maekawa 17: You should have received a copy of the GNU Lesser General Public License
1.1 maekawa 18: along with the GNU MP 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 "gmp.h"
23: #include "gmp-impl.h"
24: #include "longlong.h"
25:
26: void
27: mpf_div (mpf_ptr r, mpf_srcptr u, mpf_srcptr v)
28: {
29: mp_srcptr up, vp;
30: mp_ptr rp, tp, rtp;
31: mp_size_t usize, vsize;
32: mp_size_t rsize, tsize;
33: mp_size_t sign_quotient;
34: mp_size_t prec;
35: mp_limb_t q_limb;
36: mp_exp_t rexp;
37: TMP_DECL (marker);
38:
39: usize = u->_mp_size;
40: vsize = v->_mp_size;
41: sign_quotient = usize ^ vsize;
42: usize = ABS (usize);
43: vsize = ABS (vsize);
44: prec = r->_mp_prec;
45:
46: if (vsize == 0)
1.1.1.2 maekawa 47: DIVIDE_BY_ZERO;
48:
1.1 maekawa 49: if (usize == 0)
50: {
51: r->_mp_size = 0;
52: r->_mp_exp = 0;
53: return;
54: }
55:
56: TMP_MARK (marker);
57: rexp = u->_mp_exp - v->_mp_exp;
58:
59: rp = r->_mp_d;
60: up = u->_mp_d;
61: vp = v->_mp_d;
62:
63: if (vsize > prec)
64: {
65: vp += vsize - prec;
66: vsize = prec;
67: }
68:
69: tsize = vsize + prec;
70: tp = (mp_ptr) TMP_ALLOC ((tsize + 1) * BYTES_PER_MP_LIMB);
71:
72: if (usize > tsize)
73: {
74: up += usize - tsize;
75: usize = tsize;
76: rtp = tp;
77: }
78: else
79: {
80: MPN_ZERO (tp, tsize - usize);
81: rtp = tp + (tsize - usize);
82: }
83:
84:
85: /* Normalize the divisor and the dividend. */
1.1.1.3 ! ohara 86: if ((vp[vsize-1] & GMP_NUMB_HIGHBIT) == 0)
1.1 maekawa 87: {
88: mp_ptr tmp;
89: mp_limb_t nlimb;
1.1.1.3 ! ohara 90: unsigned normalization_steps;
! 91:
! 92: count_leading_zeros (normalization_steps, vp[vsize - 1]);
! 93: normalization_steps -= GMP_NAIL_BITS;
1.1 maekawa 94:
95: /* Shift up the divisor setting the most significant bit of
96: the most significant limb. Use temporary storage not to clobber
97: the original contents of the divisor. */
98: tmp = (mp_ptr) TMP_ALLOC (vsize * BYTES_PER_MP_LIMB);
99: mpn_lshift (tmp, vp, vsize, normalization_steps);
100: vp = tmp;
101:
102: /* Shift up the dividend, possibly introducing a new most
103: significant word. Move the shifted dividend in the remainder
104: at the same time. */
105: nlimb = mpn_lshift (rtp, up, usize, normalization_steps);
106: if (nlimb != 0)
107: {
108: rtp[usize] = nlimb;
109: tsize++;
110: rexp++;
111: }
112: }
113: else
114: {
115: /* The divisor is already normalized, as required.
116: Copy it to temporary space if it overlaps with the quotient. */
117: if (vp - rp <= tsize - vsize)
118: {
119: mp_ptr tmp = (mp_ptr) TMP_ALLOC (vsize * BYTES_PER_MP_LIMB);
120: MPN_COPY (tmp, vp, vsize);
121: vp = (mp_srcptr) tmp;
122: }
123:
124: /* Move the dividend to the remainder. */
125: MPN_COPY (rtp, up, usize);
126: }
127:
128: q_limb = mpn_divmod (rp, tp, tsize, vp, vsize);
129: rsize = tsize - vsize;
130: if (q_limb)
131: {
132: rp[rsize] = q_limb;
133: rsize++;
134: rexp++;
135: }
136:
137: r->_mp_size = sign_quotient >= 0 ? rsize : -rsize;
138: r->_mp_exp = rexp;
139: TMP_FREE (marker);
140: }
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