Reordered some dispatch sequences.
[bpt/guile.git] / libguile / numbers.h
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1/* classes: h_files */
2
3#ifndef NUMBERSH
4#define NUMBERSH
7a58e59f 5/* Copyright (C) 1995, 1996, 1998, 2000 Free Software Foundation, Inc.
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6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2, or (at your option)
10 * any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
18 * along with this software; see the file COPYING. If not, write to
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19 * the Free Software Foundation, Inc., 59 Temple Place, Suite 330,
20 * Boston, MA 02111-1307 USA
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21 *
22 * As a special exception, the Free Software Foundation gives permission
23 * for additional uses of the text contained in its release of GUILE.
24 *
25 * The exception is that, if you link the GUILE library with other files
26 * to produce an executable, this does not by itself cause the
27 * resulting executable to be covered by the GNU General Public License.
28 * Your use of that executable is in no way restricted on account of
29 * linking the GUILE library code into it.
30 *
31 * This exception does not however invalidate any other reasons why
32 * the executable file might be covered by the GNU General Public License.
33 *
34 * This exception applies only to the code released by the
35 * Free Software Foundation under the name GUILE. If you copy
36 * code from other Free Software Foundation releases into a copy of
37 * GUILE, as the General Public License permits, the exception does
38 * not apply to the code that you add in this way. To avoid misleading
39 * anyone as to the status of such modified files, you must delete
40 * this exception notice from them.
41 *
42 * If you write modifications of your own for GUILE, it is your choice
43 * whether to permit this exception to apply to your modifications.
82892bed 44 * If you do not wish that, delete this exception notice. */
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45
46/* Software engineering face-lift by Greg J. Badros, 11-Dec-1999,
47 gjb@cs.washington.edu, http://www.cs.washington.edu/homes/gjb */
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48\f
49
b4309c3c 50#include "libguile/__scm.h"
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51#include "libguile/print.h"
52
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53\f
54
55
56/* Immediate Numbers
57 *
58 * Inums are exact integer data that fits within an SCM word.
59 *
60 * SCM_INUMP applies only to values known to be Scheme objects.
61 * In particular, SCM_INUMP (SCM_CAR (x)) is valid only if x is known
62 * to be a SCM_CONSP. If x is only known to be a SCM_NIMP,
63 * SCM_INUMP (SCM_CAR (x)) can give wrong answers.
64 */
65
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66#define SCM_INUMP(x) (2 & SCM_UNPACK (x))
67#define SCM_NINUMP(x) (!SCM_INUMP (x))
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68
69#ifdef __TURBOC__
70/* shifts of more than one are done by a library call, single shifts are
71 * performed in registers
72 */
f2961ccd 73# define SCM_MAKINUM(x) (SCM_PACK ((((x) << 1) << 1) + 2L))
0f2d19dd 74#else
f2961ccd 75# define SCM_MAKINUM(x) (SCM_PACK (((x) << 2) + 2L))
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76#endif /* def __TURBOC__ */
77
78
79/* SCM_SRS is signed right shift */
c209c88e 80/* SCM_INUM makes a C int from an SCM immediate number. */
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81/* Turbo C++ v1.0 has a bug with right shifts of signed longs!
82 * It is believed to be fixed in Turbo C++ v1.01
83 */
84#if (-1==(((-1)<<2)+2)>>2) && (__TURBOC__ != 0x295)
7a58e59f 85# define SCM_SRS(x, y) ((x) >> y)
0f2d19dd 86# ifdef __TURBOC__
f1267706 87# define SCM_INUM(x) ((SCM_UNPACK (x) >>1) >>1)
0f2d19dd 88# else
f1267706 89# define SCM_INUM(x) SCM_SRS (SCM_UNPACK (x), 2)
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90# endif /* def __TURBOC__ */
91#else
7a58e59f 92# define SCM_SRS(x, y)\
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93 ((SCM_UNPACK (x) < 0) ? ~( (~SCM_UNPACK (x)) >> y) : (SCM_UNPACK (x) >> y))
94# define SCM_INUM(x) SCM_SRS (SCM_UNPACK (x), 2)
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95#endif /* (-1==(((-1)<<2)+2)>>2) && (__TURBOC__ != 0x295) */
96
97
98/* A name for 0.
99 */
b82c6ce0 100#define SCM_INUM0 (SCM_MAKINUM (0))
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101
102
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103/* SCM_MAXEXP is the maximum double precision expontent
104 * SCM_FLTMAX is less than or scm_equal the largest single precision float
105 */
106
107#ifdef STDC_HEADERS
108#ifndef GO32
109#include <float.h>
110#endif /* ndef GO32 */
111#endif /* def STDC_HEADERS */
112#ifdef DBL_MAX_10_EXP
113#define SCM_MAXEXP DBL_MAX_10_EXP
114#else
115#define SCM_MAXEXP 308 /* IEEE doubles */
116#endif /* def DBL_MAX_10_EXP */
117#ifdef FLT_MAX
118#define SCM_FLTMAX FLT_MAX
119#else
120#define SCM_FLTMAX 1e+23
121#endif /* def FLT_MAX */
122
0f2d19dd 123
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124/* SCM_INTBUFLEN is the maximum number of characters neccessary for the
125 * printed or scm_string representation of an exact immediate.
126 */
127
128#ifndef SCM_CHAR_BIT
129# define SCM_CHAR_BIT 8
130#endif /* ndef SCM_CHAR_BIT */
131#ifndef SCM_LONG_BIT
132# define SCM_LONG_BIT (SCM_CHAR_BIT*sizeof(long)/sizeof(char))
133#endif /* ndef SCM_LONG_BIT */
134#define SCM_INTBUFLEN (5+SCM_LONG_BIT)
135
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136
137\f
138
139/* Numbers
140 */
141
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142#define SCM_SLOPPY_INEXACTP(x) (SCM_TYP16S (x) == scm_tc16_real)
143#define SCM_SLOPPY_REALP(x) (SCM_TYP16 (x) == scm_tc16_real)
144#define SCM_SLOPPY_COMPLEXP(x) (SCM_TYP16 (x) == scm_tc16_complex)
145#define SCM_INEXACTP(x) (SCM_NIMP (x) && SCM_TYP16S (x) == scm_tc16_real)
146#define SCM_REALP(x) (SCM_NIMP (x) && SCM_TYP16 (x) == scm_tc16_real)
147#define SCM_COMPLEXP(x) (SCM_NIMP (x) && SCM_TYP16 (x) == scm_tc16_complex)
148
88eb6852 149#define SCM_REAL_VALUE(x) (((scm_double_t *) SCM2PTR (x))->real)
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150#define SCM_COMPLEX_REAL(x) (((scm_complex_t *) SCM_CELL_WORD_1 (x))->real)
151#define SCM_COMPLEX_IMAG(x) (((scm_complex_t *) SCM_CELL_WORD_1 (x))->imag)
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152
153/* Define SCM_BIGDIG to an integer type whose size is smaller than long if
154 * you want bignums. SCM_BIGRAD is one greater than the biggest SCM_BIGDIG.
155 *
156 * Define SCM_DIGSTOOBIG if the digits equivalent to a long won't fit in a long.
157 */
158#ifdef BIGNUMS
159# ifdef _UNICOS
160# define SCM_DIGSTOOBIG
161# if (1L << 31) <= SCM_USHRT_MAX
162# define SCM_BIGDIG unsigned short
163# else
164# define SCM_BIGDIG unsigned int
165# endif /* (1L << 31) <= USHRT_MAX */
166# define SCM_BITSPERDIG 32
167# else
168# define SCM_BIGDIG unsigned short
169# define SCM_BITSPERDIG (sizeof(SCM_BIGDIG)*SCM_CHAR_BIT)
170# endif /* def _UNICOS */
171
172# define SCM_BIGRAD (1L << SCM_BITSPERDIG)
173# define SCM_DIGSPERLONG ((scm_sizet)((sizeof(long)*SCM_CHAR_BIT+SCM_BITSPERDIG-1)/SCM_BITSPERDIG))
0f2d19dd 174# define SCM_BIGUP(x) ((unsigned long)(x) << SCM_BITSPERDIG)
08b5b88c 175# define SCM_LONGLONGBIGUP(x) ((ulong_long)(x) << SCM_BITSPERDIG)
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176# define SCM_BIGDN(x) ((x) >> SCM_BITSPERDIG)
177# define SCM_BIGLO(x) ((x) & (SCM_BIGRAD-1))
178#endif /* def BIGNUMS */
179
180#ifndef SCM_BIGDIG
181/* Definition is not really used but helps various function
182 * prototypes to compile with conditionalization.
183 */
184# define SCM_BIGDIG unsigned short
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185#endif /* ndef SCM_BIGDIG */
186
7a710745 187#define SCM_NUMBERP(x) (SCM_INUMP(x) || SCM_NUMP(x))
88eb6852 188#define SCM_NUMP(x) \
7a710745 189 (SCM_NIMP(x) && (0xfcff & SCM_UNPACK (SCM_CAR(x))) == scm_tc7_smob)
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190#define SCM_BIGP(x) SCM_SMOB_PREDICATE (scm_tc16_big, x)
191#define SCM_BIGSIGNFLAG 0x10000L
192#define SCM_BIGSIZEFIELD 17
193#define SCM_BIGSIGN(x) (SCM_UNPACK_CAR (x) & SCM_BIGSIGNFLAG)
1ff2fa6e 194#define SCM_BDIGITS(x) ((SCM_BIGDIG *) SCM_UNPACK (SCM_CDR (x)))
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195#define SCM_NUMDIGS(x) ((scm_sizet) (SCM_UNPACK_CAR (x) >> SCM_BIGSIZEFIELD))
196#define SCM_SETNUMDIGS(x, v, sign) \
4260a7fc 197 SCM_SET_CELL_WORD_0 (x, \
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198 scm_tc16_big \
199 | ((sign) ? SCM_BIGSIGNFLAG : 0) \
f81e080b 200 | (((v) + 0L) << SCM_BIGSIZEFIELD))
88eb6852 201
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202\f
203
88eb6852 204typedef struct scm_double_t
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205{
206 SCM type;
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207 SCM pad;
208 double real;
209} scm_double_t;
0f2d19dd 210
88eb6852 211typedef struct scm_complex_t
0f2d19dd 212{
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213 double real;
214 double imag;
215} scm_complex_t;
0f2d19dd 216
0f2d19dd 217\f
0f2d19dd 218
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219extern SCM scm_exact_p (SCM x);
220extern SCM scm_odd_p (SCM n);
221extern SCM scm_even_p (SCM n);
222extern SCM scm_abs (SCM x);
223extern SCM scm_quotient (SCM x, SCM y);
224extern SCM scm_remainder (SCM x, SCM y);
225extern SCM scm_modulo (SCM x, SCM y);
226extern SCM scm_gcd (SCM x, SCM y);
227extern SCM scm_lcm (SCM n1, SCM n2);
228extern SCM scm_logand (SCM n1, SCM n2);
229extern SCM scm_logior (SCM n1, SCM n2);
230extern SCM scm_logxor (SCM n1, SCM n2);
231extern SCM scm_logtest (SCM n1, SCM n2);
232extern SCM scm_logbit_p (SCM n1, SCM n2);
233extern SCM scm_lognot (SCM n);
234extern SCM scm_integer_expt (SCM z1, SCM z2);
235extern SCM scm_ash (SCM n, SCM cnt);
236extern SCM scm_bit_extract (SCM n, SCM start, SCM end);
237extern SCM scm_logcount (SCM n);
238extern SCM scm_integer_length (SCM n);
239extern SCM scm_mkbig (scm_sizet nlen, int sign);
240extern SCM scm_big2inum (SCM b, scm_sizet l);
241extern SCM scm_adjbig (SCM b, scm_sizet nlen);
242extern SCM scm_normbig (SCM b);
243extern SCM scm_copybig (SCM b, int sign);
244extern SCM scm_long2big (long n);
245extern SCM scm_long_long2big (long_long n);
246extern SCM scm_2ulong2big (unsigned long * np);
247extern SCM scm_ulong2big (unsigned long n);
248extern int scm_bigcomp (SCM x, SCM y);
249extern long scm_pseudolong (long x);
250extern void scm_longdigs (long x, SCM_BIGDIG digs[]);
251extern SCM scm_addbig (SCM_BIGDIG *x, scm_sizet nx, int xsgn, SCM bigy, int sgny);
252extern SCM scm_mulbig (SCM_BIGDIG *x, scm_sizet nx, SCM_BIGDIG *y, scm_sizet ny, int sgn);
253extern unsigned int scm_divbigdig (SCM_BIGDIG *ds, scm_sizet h, SCM_BIGDIG div);
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254extern scm_sizet scm_iint2str (long num, int rad, char *p);
255extern SCM scm_number_to_string (SCM x, SCM radix);
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256extern int scm_print_real (SCM sexp, SCM port, scm_print_state *pstate);
257extern int scm_print_complex (SCM sexp, SCM port, scm_print_state *pstate);
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258extern int scm_bigprint (SCM exp, SCM port, scm_print_state *pstate);
259extern SCM scm_istr2int (char *str, long len, long radix);
260extern SCM scm_istr2flo (char *str, long len, long radix);
261extern SCM scm_istring2number (char *str, long len, long radix);
262extern SCM scm_string_to_number (SCM str, SCM radix);
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263extern SCM scm_make_real (double x);
264extern SCM scm_make_complex (double x, double y);
7866a09b 265extern SCM scm_bigequal (SCM x, SCM y);
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266extern SCM scm_real_equalp (SCM x, SCM y);
267extern SCM scm_complex_equalp (SCM x, SCM y);
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268extern SCM scm_number_p (SCM x);
269extern SCM scm_real_p (SCM x);
270extern SCM scm_integer_p (SCM x);
271extern SCM scm_inexact_p (SCM x);
272extern SCM scm_num_eq_p (SCM x, SCM y);
273extern SCM scm_less_p (SCM x, SCM y);
274extern SCM scm_gr_p (SCM x, SCM y);
275extern SCM scm_leq_p (SCM x, SCM y);
276extern SCM scm_geq_p (SCM x, SCM y);
277extern SCM scm_zero_p (SCM z);
278extern SCM scm_positive_p (SCM x);
279extern SCM scm_negative_p (SCM x);
280extern SCM scm_max (SCM x, SCM y);
281extern SCM scm_min (SCM x, SCM y);
282extern SCM scm_sum (SCM x, SCM y);
283extern SCM scm_difference (SCM x, SCM y);
284extern SCM scm_product (SCM x, SCM y);
285extern double scm_num2dbl (SCM a, const char * why);
286extern SCM scm_divide (SCM x, SCM y);
287extern double scm_asinh (double x);
288extern double scm_acosh (double x);
289extern double scm_atanh (double x);
290extern double scm_truncate (double x);
291extern double scm_round (double x);
292extern double scm_exact_to_inexact (double z);
293extern SCM scm_sys_expt (SCM z1, SCM z2);
294extern SCM scm_sys_atan2 (SCM z1, SCM z2);
295extern SCM scm_make_rectangular (SCM z1, SCM z2);
296extern SCM scm_make_polar (SCM z1, SCM z2);
297extern SCM scm_real_part (SCM z);
298extern SCM scm_imag_part (SCM z);
299extern SCM scm_magnitude (SCM z);
300extern SCM scm_angle (SCM z);
301extern SCM scm_inexact_to_exact (SCM z);
302extern SCM scm_trunc (SCM x);
303extern SCM scm_dbl2big (double d);
304extern double scm_big2dbl (SCM b);
305extern SCM scm_long2num (long sl);
306extern SCM scm_long_long2num (long_long sl);
307extern SCM scm_ulong2num (unsigned long sl);
308extern long scm_num2long (SCM num, char *pos, const char *s_caller);
309extern long_long scm_num2long_long (SCM num, char *pos,
310 const char *s_caller);
311extern unsigned long scm_num2ulong (SCM num, char *pos,
312 const char *s_caller);
313extern void scm_init_numbers (void);
0f2d19dd 314
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315\f
316
317#if (SCM_DEBUG_DEPRECATED == 0)
318
319typedef struct scm_dblproc
320{
321 char *scm_string;
322 double (*cproc) ();
323} scm_dblproc;
324
325#define SCM_NEWREAL(z, x) do { z = scm_make_real (x); } while (0)
326#define SCM_NEWCOMPLEX(z, x, y) do { z = scm_make_complex (x, y); } while (0)
327#define SCM_POSFIXABLE(n) ((n) <= SCM_MOST_POSITIVE_FIXNUM)
328#define SCM_NEGFIXABLE(n) ((n) >= SCM_MOST_NEGATIVE_FIXNUM)
329#define SCM_UNEGFIXABLE(n) ((n) <= -SCM_MOST_NEGATIVE_FIXNUM)
330#define SCM_FIXABLE(n) (SCM_POSFIXABLE(n) && SCM_NEGFIXABLE(n))
331#define SCM_FLOBUFLEN (10+2*(sizeof(double)/sizeof(char)*SCM_CHAR_BIT*3+9)/10)
332#define SCM_INEXP(x) SCM_INEXACTP(x)
333#define SCM_CPLXP(x) SCM_COMPLEXP(x)
334#define SCM_REAL(x) (SCM_SLOPPY_REALP (x) ? SCM_REAL_VALUE (x) : SCM_COMPLEX_REAL (x))
335#define SCM_IMAG(x) (SCM_SLOPPY_REALP (x) ? 0.0 : SCM_COMPLEX_IMAG (x))
336#define SCM_REALPART(x) (SCM_SLOPPY_REALP (x) ? SCM_REAL_VALUE (x) : SCM_COMPLEX_REAL (x))
337#define scm_makdbl scm_make_complex
338#define SCM_SINGP(x) 0
339#define SCM_NUM2DBL(x) scm_num2dbl(x, "SCM_NUM2DBL")
340
341#ifndef SCM_BIGDIG
342# define SCM_NO_BIGDIG
343#endif
344
345#endif /* SCM_DEBUG_DEPRECATED == 0 */
346
0f2d19dd 347#endif /* NUMBERSH */
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348
349/*
350 Local Variables:
351 c-file-style: "gnu"
352 End:
353*/