Added internal C function to extract from values object
[bpt/guile.git] / libguile / numbers.h
CommitLineData
0f2d19dd
JB
1/* classes: h_files */
2
3c9a524f
DH
3#ifndef SCM_NUMBERS_H
4#define SCM_NUMBERS_H
dee01b01 5
cff5fa33 6/* Copyright (C) 1995,1996,1998,2000,2001,2002,2003,2004,2005, 2006, 2008, 2009, 2010, 2011 Free Software Foundation, Inc.
dee01b01 7 *
73be1d9e 8 * This library is free software; you can redistribute it and/or
53befeb7
NJ
9 * modify it under the terms of the GNU Lesser General Public License
10 * as published by the Free Software Foundation; either version 3 of
11 * the License, or (at your option) any later version.
dee01b01 12 *
53befeb7
NJ
13 * This library is distributed in the hope that it will be useful, but
14 * WITHOUT ANY WARRANTY; without even the implied warranty of
73be1d9e
MV
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 * Lesser General Public License for more details.
dee01b01 17 *
73be1d9e
MV
18 * You should have received a copy of the GNU Lesser General Public
19 * License along with this library; if not, write to the Free Software
53befeb7
NJ
20 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
21 * 02110-1301 USA
73be1d9e 22 */
d3a6bc94 23
0f2d19dd
JB
24\f
25
cd036260
MV
26#include <gmp.h>
27
b4309c3c 28#include "libguile/__scm.h"
34f74fe1
MD
29#include "libguile/print.h"
30
889975e5
MG
31#ifndef SCM_T_WCHAR_DEFINED
32typedef scm_t_int32 scm_t_wchar;
33#define SCM_T_WCHAR_DEFINED
34#endif /* SCM_T_WCHAR_DEFINED */
35
0f2d19dd
JB
36\f
37
14282d0f 38/* Immediate Numbers, also known as fixnums
0f2d19dd 39 *
14282d0f 40 * Inums are exact integer data that fits within an SCM word. */
0f2d19dd 41
c0060c95
MV
42/* SCM_T_SIGNED_MAX is (- (expt 2 n) 1),
43 * SCM_MOST_POSITIVE_FIXNUM should be (- (expt 2 (- n 2)) 1)
44 * which is the same as (/ (- (expt 2 n) 4) 4)
45 */
46
004c0902 47#define SCM_I_FIXNUM_BIT (SCM_LONG_BIT - 2)
c0060c95 48#define SCM_MOST_POSITIVE_FIXNUM ((SCM_T_SIGNED_BITS_MAX-3)/4)
004c0902 49#define SCM_MOST_NEGATIVE_FIXNUM (-SCM_MOST_POSITIVE_FIXNUM-1)
5c75b29f 50
56100716
DH
51/* SCM_SRS is signed right shift */
52#if (-1 == (((-1) << 2) + 2) >> 2)
14282d0f 53# define SCM_SRS(x, y) ((x) >> (y))
0f2d19dd 54#else
14282d0f 55# define SCM_SRS(x, y) ((x) < 0 ? ~((~(x)) >> (y)) : ((x) >> (y)))
56100716 56#endif /* (-1 == (((-1) << 2) + 2) >> 2) */
0f2d19dd
JB
57
58
3aa13a05
MV
59#define SCM_I_INUMP(x) (2 & SCM_UNPACK (x))
60#define SCM_I_NINUMP(x) (!SCM_I_INUMP (x))
5a572ca1 61#define SCM_I_MAKINUM(x) \
5d7d39ff 62 (SCM_PACK ((((scm_t_signed_bits) (x)) << 2) + scm_tc2_int))
3aa13a05 63#define SCM_I_INUM(x) (SCM_SRS ((scm_t_signed_bits) SCM_UNPACK (x), 2))
0f2d19dd 64
894a712b
DH
65/* SCM_FIXABLE is true if its long argument can be encoded in an SCM_INUM. */
66#define SCM_POSFIXABLE(n) ((n) <= SCM_MOST_POSITIVE_FIXNUM)
67#define SCM_NEGFIXABLE(n) ((n) >= SCM_MOST_NEGATIVE_FIXNUM)
14282d0f 68#define SCM_FIXABLE(n) (SCM_POSFIXABLE (n) && SCM_NEGFIXABLE (n))
894a712b
DH
69
70
cff5fa33
MW
71#define SCM_INUM0 (SCM_I_MAKINUM (0)) /* A name for 0 */
72#define SCM_INUM1 (SCM_I_MAKINUM (1)) /* A name for 1 */
73
0f2d19dd 74
c0060c95 75/* SCM_MAXEXP is the maximum double precision exponent
88eb6852
MD
76 * SCM_FLTMAX is less than or scm_equal the largest single precision float
77 */
78
f0ad7455
RB
79#if SCM_HAVE_STDC_HEADERS
80# ifndef GO32
1e498fbd
SJ
81# include <float.h>
82# ifdef __MINGW32__
83# define copysign _copysign
1e498fbd
SJ
84# define finite _finite
85# endif /* __MINGW32__ */
f0ad7455 86# endif /* ndef GO32 */
88eb6852 87#endif /* def STDC_HEADERS */
f0ad7455 88
88eb6852 89#ifdef DBL_MAX_10_EXP
f0ad7455 90# define SCM_MAXEXP DBL_MAX_10_EXP
88eb6852 91#else
f0ad7455 92# define SCM_MAXEXP 308 /* IEEE doubles */
88eb6852 93#endif /* def DBL_MAX_10_EXP */
f0ad7455 94
88eb6852 95#ifdef FLT_MAX
f0ad7455 96# define SCM_FLTMAX FLT_MAX
88eb6852 97#else
f0ad7455 98# define SCM_FLTMAX 1e+23
88eb6852
MD
99#endif /* def FLT_MAX */
100
0f2d19dd 101
2881e77b
MV
102/* SCM_INTBUFLEN is the maximum number of characters neccessary for
103 * the printed or scm_string representation of an scm_t_intmax in
104 * radix 2. The buffer passed to scm_iint2str and scm_iuint2str must
105 * be of this size, for example.
0f2d19dd 106 */
2881e77b 107#define SCM_INTBUFLEN (5 + SCM_CHAR_BIT*sizeof(scm_t_intmax))
0f2d19dd
JB
108
109\f
110
111/* Numbers
112 */
113
534c55a9
DH
114
115/* Note that scm_tc16_real and scm_tc16_complex are given tc16-codes that only
116 * differ in one bit: This way, checking if an object is an inexact number can
117 * be done quickly (using the TYP16S macro). */
118
f03314f9
DH
119/* Number subtype 1 to 3 (note the dependency on the predicates SCM_INEXACTP
120 * and SCM_NUMP) */
534c55a9
DH
121#define scm_tc16_big (scm_tc7_number + 1 * 256L)
122#define scm_tc16_real (scm_tc7_number + 2 * 256L)
123#define scm_tc16_complex (scm_tc7_number + 3 * 256L)
f92e85f7 124#define scm_tc16_fraction (scm_tc7_number + 4 * 256L)
534c55a9 125
f03314f9
DH
126#define SCM_INEXACTP(x) \
127 (!SCM_IMP (x) && (0xfeff & SCM_CELL_TYPE (x)) == scm_tc16_real)
0d5e3480
DH
128#define SCM_REALP(x) (!SCM_IMP (x) && SCM_TYP16 (x) == scm_tc16_real)
129#define SCM_COMPLEXP(x) (!SCM_IMP (x) && SCM_TYP16 (x) == scm_tc16_complex)
88eb6852 130
92c2555f 131#define SCM_REAL_VALUE(x) (((scm_t_double *) SCM2PTR (x))->real)
03604fcf
LC
132#define SCM_COMPLEX_REAL(x) (((scm_t_complex *) SCM2PTR (x))->real)
133#define SCM_COMPLEX_IMAG(x) (((scm_t_complex *) SCM2PTR (x))->imag)
0f2d19dd 134
d3e7e88d 135/* Each bignum is just an mpz_t stored in a double cell starting at word 1. */
fba8fdc0 136#define SCM_I_BIG_MPZ(x) (*((mpz_t *) (SCM_CELL_OBJECT_LOC((x),1))))
d3e7e88d 137#define SCM_BIGP(x) (!SCM_IMP (x) && SCM_TYP16 (x) == scm_tc16_big)
0f2d19dd 138
3aa13a05 139#define SCM_NUMBERP(x) (SCM_I_INUMP(x) || SCM_NUMP(x))
d3e7e88d 140#define SCM_NUMP(x) (!SCM_IMP(x) \
f92e85f7
MV
141 && (((0xfcff & SCM_CELL_TYPE (x)) == scm_tc7_number) \
142 || ((0xfbff & SCM_CELL_TYPE (x)) == scm_tc7_number)))
143/* 0xfcff (#b1100) for 0 free, 1 big, 2 real, 3 complex, then 0xfbff (#b1011) for 4 fraction */
144
145#define SCM_FRACTIONP(x) (!SCM_IMP (x) && SCM_TYP16 (x) == scm_tc16_fraction)
651f07f8
DH
146#define SCM_FRACTION_NUMERATOR(x) (SCM_CELL_OBJECT_1 (x))
147#define SCM_FRACTION_DENOMINATOR(x) (SCM_CELL_OBJECT_2 (x))
88eb6852 148
0f2d19dd
JB
149\f
150
92c2555f 151typedef struct scm_t_double
0f2d19dd
JB
152{
153 SCM type;
88eb6852
MD
154 SCM pad;
155 double real;
92c2555f 156} scm_t_double;
0f2d19dd 157
92c2555f 158typedef struct scm_t_complex
0f2d19dd 159{
03604fcf
LC
160 SCM type;
161 SCM pad;
88eb6852
MD
162 double real;
163 double imag;
92c2555f 164} scm_t_complex;
0f2d19dd 165
904a78f1 166
0f2d19dd 167\f
0f2d19dd 168
33b001fd
MV
169SCM_API SCM scm_exact_p (SCM x);
170SCM_API SCM scm_odd_p (SCM n);
171SCM_API SCM scm_even_p (SCM n);
2519490c
MW
172SCM_API SCM scm_finite_p (SCM x);
173SCM_API SCM scm_inf_p (SCM x);
174SCM_API SCM scm_nan_p (SCM x);
232898d9
MV
175SCM_API SCM scm_inf (void);
176SCM_API SCM scm_nan (void);
33b001fd
MV
177SCM_API SCM scm_abs (SCM x);
178SCM_API SCM scm_quotient (SCM x, SCM y);
179SCM_API SCM scm_remainder (SCM x, SCM y);
180SCM_API SCM scm_modulo (SCM x, SCM y);
ac6ce16b 181SCM_API SCM scm_euclidean_divide (SCM x, SCM y);
ff62c168
MW
182SCM_API SCM scm_euclidean_quotient (SCM x, SCM y);
183SCM_API SCM scm_euclidean_remainder (SCM x, SCM y);
ac6ce16b 184SCM_API SCM scm_centered_divide (SCM x, SCM y);
ff62c168
MW
185SCM_API SCM scm_centered_quotient (SCM x, SCM y);
186SCM_API SCM scm_centered_remainder (SCM x, SCM y);
33b001fd
MV
187SCM_API SCM scm_gcd (SCM x, SCM y);
188SCM_API SCM scm_lcm (SCM n1, SCM n2);
189SCM_API SCM scm_logand (SCM n1, SCM n2);
190SCM_API SCM scm_logior (SCM n1, SCM n2);
191SCM_API SCM scm_logxor (SCM n1, SCM n2);
192SCM_API SCM scm_logtest (SCM n1, SCM n2);
193SCM_API SCM scm_logbit_p (SCM n1, SCM n2);
194SCM_API SCM scm_lognot (SCM n);
d885e204 195SCM_API SCM scm_modulo_expt (SCM n, SCM k, SCM m);
33b001fd
MV
196SCM_API SCM scm_integer_expt (SCM z1, SCM z2);
197SCM_API SCM scm_ash (SCM n, SCM cnt);
198SCM_API SCM scm_bit_extract (SCM n, SCM start, SCM end);
199SCM_API SCM scm_logcount (SCM n);
200SCM_API SCM scm_integer_length (SCM n);
1be6b49c 201
78d3deb1
AW
202SCM_INTERNAL SCM scm_i_gcd (SCM x, SCM y, SCM rest);
203SCM_INTERNAL SCM scm_i_lcm (SCM x, SCM y, SCM rest);
204SCM_INTERNAL SCM scm_i_logand (SCM x, SCM y, SCM rest);
205SCM_INTERNAL SCM scm_i_logior (SCM x, SCM y, SCM rest);
206SCM_INTERNAL SCM scm_i_logxor (SCM x, SCM y, SCM rest);
207
2881e77b
MV
208SCM_API size_t scm_iint2str (scm_t_intmax num, int rad, char *p);
209SCM_API size_t scm_iuint2str (scm_t_uintmax num, int rad, char *p);
33b001fd
MV
210SCM_API SCM scm_number_to_string (SCM x, SCM radix);
211SCM_API int scm_print_real (SCM sexp, SCM port, scm_print_state *pstate);
212SCM_API int scm_print_complex (SCM sexp, SCM port, scm_print_state *pstate);
213SCM_API int scm_bigprint (SCM exp, SCM port, scm_print_state *pstate);
2b829bbb
KR
214SCM_API SCM scm_c_locale_stringn_to_number (const char *mem, size_t len,
215 unsigned int radix);
3f47e526 216SCM_INTERNAL SCM scm_i_string_to_number (SCM str, unsigned int radix);
33b001fd 217SCM_API SCM scm_string_to_number (SCM str, SCM radix);
33b001fd
MV
218SCM_API SCM scm_bigequal (SCM x, SCM y);
219SCM_API SCM scm_real_equalp (SCM x, SCM y);
220SCM_API SCM scm_complex_equalp (SCM x, SCM y);
221SCM_API SCM scm_number_p (SCM x);
8507ec80 222SCM_API SCM scm_complex_p (SCM x);
33b001fd 223SCM_API SCM scm_real_p (SCM x);
8507ec80 224SCM_API SCM scm_rational_p (SCM z);
33b001fd
MV
225SCM_API SCM scm_integer_p (SCM x);
226SCM_API SCM scm_inexact_p (SCM x);
227SCM_API SCM scm_num_eq_p (SCM x, SCM y);
228SCM_API SCM scm_less_p (SCM x, SCM y);
229SCM_API SCM scm_gr_p (SCM x, SCM y);
230SCM_API SCM scm_leq_p (SCM x, SCM y);
231SCM_API SCM scm_geq_p (SCM x, SCM y);
232SCM_API SCM scm_zero_p (SCM z);
233SCM_API SCM scm_positive_p (SCM x);
234SCM_API SCM scm_negative_p (SCM x);
235SCM_API SCM scm_max (SCM x, SCM y);
236SCM_API SCM scm_min (SCM x, SCM y);
237SCM_API SCM scm_sum (SCM x, SCM y);
40882e3d 238SCM_API SCM scm_oneplus (SCM x);
33b001fd 239SCM_API SCM scm_difference (SCM x, SCM y);
40882e3d 240SCM_API SCM scm_oneminus (SCM x);
33b001fd 241SCM_API SCM scm_product (SCM x, SCM y);
33b001fd 242SCM_API SCM scm_divide (SCM x, SCM y);
f92e85f7
MV
243SCM_API SCM scm_floor (SCM x);
244SCM_API SCM scm_ceiling (SCM x);
3101f40f
MV
245SCM_API double scm_c_truncate (double x);
246SCM_API double scm_c_round (double x);
f92e85f7
MV
247SCM_API SCM scm_truncate_number (SCM x);
248SCM_API SCM scm_round_number (SCM x);
6fc4d012 249SCM_API SCM scm_expt (SCM z1, SCM z2);
ad79736c
AW
250SCM_API SCM scm_sin (SCM z);
251SCM_API SCM scm_cos (SCM z);
252SCM_API SCM scm_tan (SCM z);
253SCM_API SCM scm_sinh (SCM z);
254SCM_API SCM scm_cosh (SCM z);
255SCM_API SCM scm_tanh (SCM z);
256SCM_API SCM scm_asin (SCM z);
257SCM_API SCM scm_acos (SCM z);
258SCM_API SCM scm_atan (SCM x, SCM y);
259SCM_API SCM scm_sys_asinh (SCM z);
260SCM_API SCM scm_sys_acosh (SCM z);
261SCM_API SCM scm_sys_atanh (SCM z);
33b001fd
MV
262SCM_API SCM scm_make_rectangular (SCM z1, SCM z2);
263SCM_API SCM scm_make_polar (SCM z1, SCM z2);
264SCM_API SCM scm_real_part (SCM z);
265SCM_API SCM scm_imag_part (SCM z);
266SCM_API SCM scm_magnitude (SCM z);
267SCM_API SCM scm_angle (SCM z);
268SCM_API SCM scm_exact_to_inexact (SCM z);
269SCM_API SCM scm_inexact_to_exact (SCM z);
270SCM_API SCM scm_trunc (SCM x);
8ab3d8a0
KR
271SCM_API SCM scm_log (SCM z);
272SCM_API SCM scm_log10 (SCM z);
273SCM_API SCM scm_exp (SCM z);
274SCM_API SCM scm_sqrt (SCM z);
33b001fd 275
78d3deb1
AW
276SCM_INTERNAL SCM scm_i_min (SCM x, SCM y, SCM rest);
277SCM_INTERNAL SCM scm_i_max (SCM x, SCM y, SCM rest);
278SCM_INTERNAL SCM scm_i_sum (SCM x, SCM y, SCM rest);
279SCM_INTERNAL SCM scm_i_difference (SCM x, SCM y, SCM rest);
280SCM_INTERNAL SCM scm_i_product (SCM x, SCM y, SCM rest);
281SCM_INTERNAL SCM scm_i_divide (SCM x, SCM y, SCM rest);
282
d3e7e88d 283/* bignum internal functions */
102dbb6f
LC
284SCM_INTERNAL SCM scm_i_mkbig (void);
285SCM_API /* FIXME: not internal */ SCM scm_i_normbig (SCM x);
286SCM_INTERNAL int scm_i_bigcmp (SCM a, SCM b);
287SCM_INTERNAL SCM scm_i_dbl2big (double d);
288SCM_INTERNAL SCM scm_i_dbl2num (double d);
289SCM_API /* FIXME: not internal */ double scm_i_big2dbl (SCM b);
290SCM_API /* FIXME: not internal */ SCM scm_i_long2big (long n);
291SCM_API /* FIXME: not internal */ SCM scm_i_ulong2big (unsigned long n);
292SCM_API /* FIXME: not internal */ SCM scm_i_clonebig (SCM src_big, int same_sign_p);
d3e7e88d 293
f92e85f7 294/* ratio functions */
f92e85f7
MV
295SCM_API SCM scm_rationalize (SCM x, SCM err);
296SCM_API SCM scm_numerator (SCM z);
297SCM_API SCM scm_denominator (SCM z);
f92e85f7
MV
298
299/* fraction internal functions */
102dbb6f
LC
300SCM_INTERNAL double scm_i_fraction2double (SCM z);
301SCM_INTERNAL SCM scm_i_fraction_equalp (SCM x, SCM y);
302SCM_INTERNAL int scm_i_print_fraction (SCM sexp, SCM port, scm_print_state *pstate);
f92e85f7 303
b479fe9a 304/* general internal functions */
102dbb6f
LC
305SCM_INTERNAL void scm_i_print_double (double val, SCM port);
306SCM_INTERNAL void scm_i_print_complex (double real, double imag, SCM port);
b479fe9a 307
d1b5b400 308/* conversion functions for integers */
73e4de09
MV
309
310SCM_API int scm_is_integer (SCM val);
311SCM_API int scm_is_signed_integer (SCM val,
312 scm_t_intmax min, scm_t_intmax max);
313SCM_API int scm_is_unsigned_integer (SCM val,
314 scm_t_uintmax min, scm_t_uintmax max);
315
316SCM_API SCM scm_from_signed_integer (scm_t_intmax val);
317SCM_API SCM scm_from_unsigned_integer (scm_t_uintmax val);
318
319SCM_API scm_t_intmax scm_to_signed_integer (SCM val,
320 scm_t_intmax min,
321 scm_t_intmax max);
322SCM_API scm_t_uintmax scm_to_unsigned_integer (SCM val,
323 scm_t_uintmax min,
324 scm_t_uintmax max);
325
bfd7932e
MV
326SCM_API scm_t_int8 scm_to_int8 (SCM x);
327SCM_API SCM scm_from_int8 (scm_t_int8 x);
328
329SCM_API scm_t_uint8 scm_to_uint8 (SCM x);
330SCM_API SCM scm_from_uint8 (scm_t_uint8 x);
331
332SCM_API scm_t_int16 scm_to_int16 (SCM x);
333SCM_API SCM scm_from_int16 (scm_t_int16 x);
334
335SCM_API scm_t_uint16 scm_to_uint16 (SCM x);
336SCM_API SCM scm_from_uint16 (scm_t_uint16 x);
337
338SCM_API scm_t_int32 scm_to_int32 (SCM x);
339SCM_API SCM scm_from_int32 (scm_t_int32 x);
340
341SCM_API scm_t_uint32 scm_to_uint32 (SCM x);
342SCM_API SCM scm_from_uint32 (scm_t_uint32 x);
343
904a78f1
MG
344SCM_API scm_t_wchar scm_to_wchar (SCM x);
345SCM_API SCM scm_from_wchar (scm_t_wchar x);
346
bfd7932e
MV
347SCM_API scm_t_int64 scm_to_int64 (SCM x);
348SCM_API SCM scm_from_int64 (scm_t_int64 x);
349
350SCM_API scm_t_uint64 scm_to_uint64 (SCM x);
351SCM_API SCM scm_from_uint64 (scm_t_uint64 x);
352
cd036260
MV
353SCM_API void scm_to_mpz (SCM x, mpz_t rop);
354SCM_API SCM scm_from_mpz (mpz_t rop);
355
356
d1b5b400
MV
357/* The conversion functions for other types are aliased to the
358 appropriate ones from above. We pick the right one based on the
359 size of the type.
360
361 Not each and every possibility is covered by the code below, and
362 while it is trivial to complete the tests, it might be better to
363 just test for the 'sane' possibilities. When one of the tests
364 below fails, chances are good that some silent assumption somewhere
365 else will also fail.
366*/
367
368#if SCM_SIZEOF_CHAR == 1
369#define scm_to_schar scm_to_int8
370#define scm_from_schar scm_from_int8
371#define scm_to_uchar scm_to_uint8
372#define scm_from_uchar scm_from_uint8
73e4de09 373#if CHAR_MIN == 0
d1b5b400
MV
374#define scm_to_char scm_to_uint8
375#define scm_from_char scm_from_uint8
73e4de09 376#else
d1b5b400
MV
377#define scm_to_char scm_to_int8
378#define scm_from_char scm_from_int8
73e4de09 379#endif
d1b5b400
MV
380#else
381#error sizeof(char) is not 1.
22008a78
MV
382#endif
383
d1b5b400
MV
384#if SCM_SIZEOF_SHORT == 1
385#define scm_to_short scm_to_int8
386#define scm_from_short scm_from_int8
387#define scm_to_ushort scm_to_uint8
388#define scm_from_ushort scm_from_uint8
389#else
390#if SCM_SIZEOF_SHORT == 2
391#define scm_to_short scm_to_int16
392#define scm_from_short scm_from_int16
393#define scm_to_ushort scm_to_uint16
394#define scm_from_ushort scm_from_uint16
395#else
396#if SCM_SIZEOF_SHORT == 4
397#define scm_to_short scm_to_int32
398#define scm_from_short scm_from_int32
399#define scm_to_ushort scm_to_uint32
400#define scm_from_ushort scm_from_uint32
73e4de09 401#else
d1b5b400
MV
402#error sizeof(short) is not 1, 2, or 4.
403#endif
404#endif
73e4de09
MV
405#endif
406
d1b5b400
MV
407#if SCM_SIZEOF_INT == 4
408#define scm_to_int scm_to_int32
409#define scm_from_int scm_from_int32
410#define scm_to_uint scm_to_uint32
411#define scm_from_uint scm_from_uint32
412#else
413#if SCM_SIZEOF_INT == 8
414#define scm_to_int scm_to_int64
415#define scm_from_int scm_from_int64
416#define scm_to_uint scm_to_uint64
417#define scm_from_uint scm_from_uint64
418#else
419#error sizeof(int) is not 4 or 8.
420#endif
421#endif
73e4de09 422
d1b5b400
MV
423#if SCM_SIZEOF_LONG == 4
424#define scm_to_long scm_to_int32
425#define scm_from_long scm_from_int32
426#define scm_to_ulong scm_to_uint32
427#define scm_from_ulong scm_from_uint32
428#else
429#if SCM_SIZEOF_LONG == 8
430#define scm_to_long scm_to_int64
431#define scm_from_long scm_from_int64
432#define scm_to_ulong scm_to_uint64
433#define scm_from_ulong scm_from_uint64
434#else
435#error sizeof(long) is not 4 or 8.
436#endif
437#endif
73e4de09 438
d1b5b400
MV
439#if SCM_SIZEOF_INTMAX == 4
440#define scm_to_intmax scm_to_int32
441#define scm_from_intmax scm_from_int32
442#define scm_to_uintmax scm_to_uint32
443#define scm_from_uintmax scm_from_uint32
444#else
445#if SCM_SIZEOF_INTMAX == 8
446#define scm_to_intmax scm_to_int64
447#define scm_from_intmax scm_from_int64
448#define scm_to_uintmax scm_to_uint64
449#define scm_from_uintmax scm_from_uint64
450#else
55f26379 451#error sizeof(scm_t_intmax) is not 4 or 8.
d1b5b400
MV
452#endif
453#endif
73e4de09 454
d1b5b400
MV
455#if SCM_SIZEOF_LONG_LONG == 0
456#else
457#if SCM_SIZEOF_LONG_LONG == 8
458#define scm_to_long_long scm_to_int64
459#define scm_from_long_long scm_from_int64
460#define scm_to_ulong_long scm_to_uint64
461#define scm_from_ulong_long scm_from_uint64
462#else
463#error sizeof(long long) is not 8.
464#endif
465#endif
73e4de09 466
d1b5b400
MV
467#if SCM_SIZEOF_SIZE_T == 4
468#define scm_to_ssize_t scm_to_int32
469#define scm_from_ssize_t scm_from_int32
470#define scm_to_size_t scm_to_uint32
471#define scm_from_size_t scm_from_uint32
472#else
473#if SCM_SIZEOF_SIZE_T == 8
474#define scm_to_ssize_t scm_to_int64
475#define scm_from_ssize_t scm_from_int64
476#define scm_to_size_t scm_to_uint64
477#define scm_from_size_t scm_from_uint64
478#else
479#error sizeof(size_t) is not 4 or 8.
480#endif
22008a78
MV
481#endif
482
8507ec80 483/* conversion functions for double */
22008a78 484
73e4de09 485SCM_API int scm_is_real (SCM val);
55f26379 486SCM_API int scm_is_rational (SCM val);
73e4de09
MV
487SCM_API double scm_to_double (SCM val);
488SCM_API SCM scm_from_double (double val);
489
8507ec80
MV
490/* conversion functions for complex */
491
492SCM_API int scm_is_complex (SCM val);
493SCM_API SCM scm_c_make_rectangular (double re, double im);
494SCM_API SCM scm_c_make_polar (double mag, double ang);
495SCM_API double scm_c_real_part (SCM z);
496SCM_API double scm_c_imag_part (SCM z);
497SCM_API double scm_c_magnitude (SCM z);
498SCM_API double scm_c_angle (SCM z);
499
500SCM_API int scm_is_number (SCM val);
501
102dbb6f 502SCM_INTERNAL void scm_init_numbers (void);
0f2d19dd 503
3c9a524f 504#endif /* SCM_NUMBERS_H */
89e00824
ML
505
506/*
507 Local Variables:
508 c-file-style: "gnu"
509 End:
510*/