cosmopolitan/third_party/gdtoa/strtordd.c
Justine Tunney 0d748ad58e
Fix warnings
This change fixes Cosmopolitan so it has fewer opinions about compiler
warnings. The whole repository had to be cleaned up to be buildable in
-Werror -Wall mode. This lets us benefit from things like strict const
checking. Some actual bugs might have been caught too.
2023-09-01 20:50:18 -07:00

182 lines
6.3 KiB
C

/*-*- mode:c;indent-tabs-mode:t;c-basic-offset:8;tab-width:8;coding:utf-8 -*-│
│vi: set et ft=c ts=8 tw=8 fenc=utf-8 :vi│
╚──────────────────────────────────────────────────────────────────────────────╝
│ │
│ The author of this software is David M. Gay. │
│ Please send bug reports to David M. Gay <dmg@acm.org> │
│ or Justine Tunney <jtunney@gmail.com> │
│ │
│ Copyright (C) 1998, 1999 by Lucent Technologies │
│ All Rights Reserved │
│ │
│ Permission to use, copy, modify, and distribute this software and │
│ its documentation for any purpose and without fee is hereby │
│ granted, provided that the above copyright notice appear in all │
│ copies and that both that the copyright notice and this │
│ permission notice and warranty disclaimer appear in supporting │
│ documentation, and that the name of Lucent or any of its entities │
│ not be used in advertising or publicity pertaining to │
│ distribution of the software without specific, written prior │
│ permission. │
│ │
│ LUCENT DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE, │
│ INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS. │
│ IN NO EVENT SHALL LUCENT OR ANY OF ITS ENTITIES BE LIABLE FOR ANY │
│ SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES │
│ WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER │
│ IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, │
│ ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF │
│ THIS SOFTWARE. │
│ │
╚─────────────────────────────────────────────────────────────────────────────*/
#include "third_party/gdtoa/gdtoa.internal.h"
/* clang-format off */
extern ULong __gdtoa_NanDflt_d[2];
void
__gdtoa_ULtodd(ULong *L, ULong *bits, Long exp, int k)
{
int i, j;
switch(k & STRTOG_Retmask) {
case STRTOG_NoNumber:
case STRTOG_Zero:
L[0] = L[1] = L[2] = L[3] = 0;
break;
case STRTOG_Normal:
L[0] = (bits[1] >> 21 | bits[2] << 11) & (ULong)0xffffffffL;
L[1] = (bits[2] >> 21) | (bits[3] << 11 & 0xfffff)
| ((exp + 0x3ff + 105) << 20);
exp += 0x3ff + 52;
if (bits[1] &= 0x1fffff) {
i = hi0bits(bits[1]) - 11;
if (i >= exp) {
i = exp - 1;
exp = 0;
}
else
exp -= i;
if (i > 0) {
bits[1] = bits[1] << i | bits[0] >> (32-i);
bits[0] = bits[0] << i & (ULong)0xffffffffL;
}
}
else if (bits[0]) {
i = hi0bits(bits[0]) + 21;
if (i >= exp) {
i = exp - 1;
exp = 0;
}
else
exp -= i;
if (i < 32) {
bits[1] = bits[0] >> (32 - i);
bits[0] = bits[0] << i & (ULong)0xffffffffL;
}
else {
bits[1] = bits[0] << (i - 32);
bits[0] = 0;
}
}
else {
L[2] = L[3] = 0;
break;
}
L[2+0] = bits[0];
L[2+1] = (bits[1] & 0xfffff) | (exp << 20);
break;
case STRTOG_Denormal:
if (bits[3])
goto nearly_normal;
if (bits[2])
goto partly_normal;
if (bits[1] & 0xffe00000)
goto hardly_normal;
/* completely denormal */
L[2] = L[3] = 0;
L[0] = bits[0];
L[1] = bits[1];
break;
nearly_normal:
i = hi0bits(bits[3]) - 11; /* i >= 12 */
j = 32 - i;
L[1] = ((bits[3] << i | bits[2] >> j) & 0xfffff)
| ((65 - i) << 20);
L[0] = (bits[2] << i | bits[1] >> j) & 0xffffffffL;
L[2+1] = bits[1] & (((ULong)1L << j) - 1);
L[2+0] = bits[0];
break;
partly_normal:
i = hi0bits(bits[2]) - 11;
if (i < 0) {
j = -i;
i += 32;
L[1] = (bits[2] >> j & 0xfffff) | ((33 + j) << 20);
L[0] = (bits[2] << i | bits[1] >> j) & 0xffffffffL;
L[2+1] = bits[1] & (((ULong)1L << j) - 1);
L[2+0] = bits[0];
break;
}
if (i == 0) {
L[1] = (bits[2] & 0xfffff) | (33 << 20);
L[0] = bits[1];
L[2+1] = 0;
L[2+0] = bits[0];
break;
}
j = 32 - i;
L[1] = (((bits[2] << i) | (bits[1] >> j)) & 0xfffff)
| ((j + 1) << 20);
L[0] = (bits[1] << i | bits[0] >> j) & 0xffffffffL;
L[2+1] = 0;
L[2+0] = bits[0] & ((1L << j) - 1);
break;
hardly_normal:
j = 11 - hi0bits(bits[1]);
i = 32 - j;
L[1] = (bits[1] >> j & 0xfffff) | ((j + 1) << 20);
L[0] = (bits[1] << i | bits[0] >> j) & 0xffffffffL;
L[2+1] = 0;
L[2+0] = bits[0] & (((ULong)1L << j) - 1);
break;
case STRTOG_Infinite:
L[1] = L[2+1] = 0x7ff00000;
L[0] = L[2+0] = 0;
break;
case STRTOG_NaN:
L[1] = L[1+2] = __gdtoa_NanDflt_d[1];
L[0] = L[0+2] = __gdtoa_NanDflt_d[0];
break;
case STRTOG_NaNbits:
L[0] = (bits[1] >> 20 | bits[2] << 12) & (ULong)0xffffffffL;
L[1] = bits[2] >> 20 | bits[3] << 12;
L[1] |= (L[0] | L[1]) ? (ULong)0x7ff00000L : (ULong)0x7ff80000L;
L[2+0] = bits[0] & (ULong)0xffffffffL;
L[2+1] = bits[1] & 0xfffffL;
L[2+1] |= (L[2+0] | L[2+1]) ? (ULong)0x7ff00000L : (ULong)0x7ff80000L;
}
if (k & STRTOG_Neg) {
L[1] |= 0x80000000L;
L[2+1] |= 0x80000000L;
}
}
int
strtordd(const char *s, char **sp, int rounding, double *dd)
{
static const FPI fpi0 = { 106, 1-1023-53+1, 2046-1023-106+1, 1, 0, 0 /*unused*/ };
FPI fpi1;
const FPI *fpi;
ULong bits[4];
Long exp;
int k;
fpi = &fpi0;
if (rounding != FPI_Round_near) {
fpi1 = fpi0;
fpi1.rounding = rounding;
fpi = &fpi1;
}
k = strtodg(s, sp, fpi, &exp, bits);
__gdtoa_ULtodd((ULong*)dd, bits, exp, k);
return k;
}