Mercurial > hg > xemacs-beta
view src/number-mp.h @ 5602:c9e5612f5424
Support the MP library on recent FreeBSD, have it pass relevant tests.
src/ChangeLog addition:
2011-11-26 Aidan Kehoe <kehoea@parhasard.net>
* number-mp.c (bignum_to_string):
Don't overwrite the accumulator we've just set up for this
function.
* number-mp.c (BIGNUM_TO_TYPE):
mp_itom() doesn't necessarily do what this code used to think with
negative numbers, it can treat them as unsigned ints. Subtract
numbers from bignum_zero instead of multiplying them by -1 to
convert them to their negative equivalents.
* number-mp.c (bignum_to_int):
* number-mp.c (bignum_to_uint):
* number-mp.c (bignum_to_long):
* number-mp.c (bignum_to_ulong):
* number-mp.c (bignum_to_double):
Use the changed BIGNUM_TO_TYPE() in these functions.
* number-mp.c (bignum_ceil):
* number-mp.c (bignum_floor):
In these functions, be more careful about rounding to positive and
negative infinity, respectively. Don't use the sign of QUOTIENT
when working out out whether to add or subtract one, rather use
the sign QUOTIENT would have if arbitrary-precision division were
done.
* number-mp.h:
* number-mp.h (MP_GCD):
Wrap #include <mp.h> in BEGIN_C_DECLS/END_C_DECLS.
* number.c (Fbigfloat_get_precision):
* number.c (Fbigfloat_set_precision):
Don't attempt to call XBIGFLOAT_GET_PREC if this build doesn't
support big floats.
author | Aidan Kehoe <kehoea@parhasard.net> |
---|---|
date | Sat, 26 Nov 2011 17:59:14 +0000 |
parents | 2aa9cd456ae7 |
children | 3192994c49ca |
line wrap: on
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/* Definitions of numeric types for XEmacs using the MP library. Copyright (C) 2004 Jerry James. This file is part of XEmacs. XEmacs is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. XEmacs 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 General Public License for more details. You should have received a copy of the GNU General Public License along with XEmacs. If not, see <http://www.gnu.org/licenses/>. */ /* Synched up with: Not in FSF. */ /* This library defines the following types: bignum = MINT The MP library does not include support for ratios or bigfloats. */ #ifndef INCLUDED_number_mp_h_ #define INCLUDED_number_mp_h_ /* BSD MP libraries without MP_PREFIX define a function named pow in mp.h that has a different prototype from the one in math.h. We don't use that function anyway, so we do this for safety purposes. However, this means that number-mp.h must always be included before math.h. */ #define pow mp_pow BEGIN_C_DECLS #include <mp.h> END_C_DECLS #undef pow #ifdef MP_PREFIX #define MP_GCD mp_gcd #define MP_ITOM mp_itom #define MP_MADD mp_madd #define MP_MCMP mp_mcmp #define MP_MDIV mp_mdiv #define MP_MFREE mp_mfree #define MP_MSUB mp_msub #define MP_MULT mp_mult #define MP_SDIV mp_sdiv #ifdef HAVE_MP_MOVE #define MP_MOVE(x,y) mp_move (x, y) #else #define MP_MOVE(x,y) mp_madd (x, bignum_zero, y) #endif #else #define MP_GCD gcd #define MP_ITOM itom #define MP_MADD madd #define MP_MCMP mcmp #define MP_MDIV mdiv #define MP_MFREE mfree #define MP_MSUB msub #define MP_MULT mult #define MP_SDIV sdiv #ifdef HAVE_MP_MOVE #define MP_MOVE(x,y) move (x, y) #else #define MP_MOVE(x,y) madd (x, bignum_zero, y) #endif #endif typedef MINT *bignum; extern void init_number_mp(void); /********************************* Bignums **********************************/ #define HAVE_BIGNUM 1 extern MINT *bignum_zero, *intern_bignum; extern MINT *bignum_min_int, *bignum_max_int, *bignum_max_uint; extern MINT *bignum_min_long, *bignum_max_long, *bignum_max_ulong; extern short div_rem; /***** Bignum: basic functions *****/ #define bignum_init(b) (b = MP_ITOM (0)) #define bignum_fini(b) MP_MFREE (b) #define bignum_hashcode(b) bignum_to_uint (b) #define bignum_sign(b) MP_MCMP (b, bignum_zero) #define bignum_evenp(b) (MP_SDIV (b, 2, intern_bignum, &div_rem), \ div_rem == 0) #define bignum_oddp(b) (MP_SDIV (b, 2, intern_bignum, &div_rem), \ div_rem != 0) /***** Bignum: size *****/ #define bignum_fits_int_p(b) (MP_MCMP (b, bignum_min_int) >= 0 && \ MP_MCMP (b, bignum_max_int) <= 0) #define bignum_fits_uint_p(b) (MP_MCMP (b, bignum_zero) >= 0 && \ MP_MCMP (b, bignum_max_uint) <= 0) #define bignum_fits_long_p(b) (MP_MCMP (b, bignum_min_long) >= 0 && \ MP_MCMP (b, bignum_max_long) <= 0) #define bignum_fits_ulong_p(b) (MP_MCMP (b, bignum_zero) >= 0 && \ MP_MCMP (b, bignum_max_ulong) <= 0) /***** Bignum: conversions *****/ extern char *bignum_to_string(bignum, int); extern int bignum_to_int(bignum); extern unsigned int bignum_to_uint(bignum); extern long bignum_to_long(bignum); extern unsigned long bignum_to_ulong(bignum); extern double bignum_to_double(bignum); /***** Bignum: converting assignments *****/ #define bignum_set(b1, b2) MP_MOVE (b2, b1) extern int bignum_set_string(bignum, const char *, int); extern void bignum_set_long(bignum, long); extern void bignum_set_ulong(bignum, unsigned long); extern void bignum_set_double(bignum, double); /***** Bignum: comparisons *****/ #define bignum_cmp(b1,b2) MP_MCMP (b1, b2) #define bignum_lt(b1,b2) (MP_MCMP (b1, b2) < 0) #define bignum_le(b1,b2) (MP_MCMP (b1, b2) <= 0) #define bignum_eql(b1,b2) (MP_MCMP (b1, b2) == 0) #define bignum_ge(b1,b2) (MP_MCMP (b1, b2) >= 0) #define bignum_gt(b1,b2) (MP_MCMP (b1, b2) > 0) /***** Bignum: arithmetic *****/ #define bignum_neg(b,b2) MP_MSUB (bignum_zero, b2, b) #define bignum_abs(b,b2) (MP_MCMP (b2, bignum_zero) < 0 \ ? MP_MSUB (bignum_zero, b2, b) \ : MP_MADD (bignum_zero, b2, b)) #define bignum_add(b,b1,b2) MP_MADD (b1, b2, b) #define bignum_sub(b,b1,b2) MP_MSUB (b1, b2, b) #define bignum_mul(b,b1,b2) MP_MULT (b1, b2, b) extern int bignum_divisible_p(bignum, bignum); #define bignum_div(b,b1,b2) MP_MDIV (b1, b2, b, intern_bignum) extern void bignum_ceil(bignum, bignum, bignum); extern void bignum_floor(bignum, bignum, bignum); #define bignum_mod(b,b1,b2) MP_MDIV (b1, b2, intern_bignum, b) extern void bignum_pow(bignum, bignum, unsigned long); #define bignum_gcd(res,b1,b2) MP_GCD (b1, b2, res) extern void bignum_lcm(bignum, bignum, bignum); /***** Bignum: bit manipulations *****/ extern void bignum_and(bignum, bignum, bignum); extern void bignum_ior(bignum, bignum, bignum); extern void bignum_xor(bignum, bignum, bignum); extern void bignum_not(bignum, bignum); extern void bignum_setbit(bignum, unsigned long); extern void bignum_clrbit(bignum, unsigned long); extern int bignum_testbit(bignum, unsigned long); extern void bignum_lshift(bignum, bignum, unsigned long); extern void bignum_rshift(bignum, bignum, unsigned long); /***** Bignum: random numbers *****/ extern void bignum_random_seed(unsigned long); extern void bignum_random(bignum, bignum); #endif /* INCLUDED_number_mp_h_ */