numbers.h 20 KB

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  1. /* classes: h_files */
  2. #ifndef SCM_NUMBERS_H
  3. #define SCM_NUMBERS_H
  4. /* Copyright (C) 1995,1996,1998,2000,2001,2002,2003,2004,2005, 2006,
  5. * 2008, 2009, 2010, 2011, 2013, 2014 Free Software Foundation, Inc.
  6. *
  7. * This library is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU Lesser General Public License
  9. * as published by the Free Software Foundation; either version 3 of
  10. * the License, or (at your option) any later version.
  11. *
  12. * This library is distributed in the hope that it will be useful, but
  13. * WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * Lesser General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU Lesser General Public
  18. * License along with this library; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
  20. * 02110-1301 USA
  21. */
  22. #include <gmp.h>
  23. #include "libguile/__scm.h"
  24. #include "libguile/print.h"
  25. #ifndef SCM_T_WCHAR_DEFINED
  26. typedef scm_t_int32 scm_t_wchar;
  27. #define SCM_T_WCHAR_DEFINED
  28. #endif /* SCM_T_WCHAR_DEFINED */
  29. /* Immediate Numbers, also known as fixnums
  30. *
  31. * Inums are exact integer data that fits within an SCM word. */
  32. /* SCM_T_SIGNED_MAX is (- (expt 2 n) 1),
  33. * SCM_MOST_POSITIVE_FIXNUM should be (- (expt 2 (- n 2)) 1)
  34. * which is the same as (/ (- (expt 2 n) 4) 4)
  35. */
  36. #define SCM_I_FIXNUM_BIT (SCM_LONG_BIT - 2)
  37. #define SCM_MOST_POSITIVE_FIXNUM ((SCM_T_SIGNED_BITS_MAX-3)/4)
  38. #define SCM_MOST_NEGATIVE_FIXNUM (-SCM_MOST_POSITIVE_FIXNUM-1)
  39. /* SCM_SRS (X, Y) is signed right shift, defined as floor (X / 2^Y),
  40. where Y must be non-negative and less than the width in bits of X.
  41. It's common for >> to do this, but the C standards do not specify
  42. what happens when X is negative.
  43. NOTE: X must not perform side effects. */
  44. #if (-1 >> 2 == -1) && (-4 >> 2 == -1) && (-5 >> 2 == -2) && (-8 >> 2 == -2)
  45. # define SCM_SRS(x, y) ((x) >> (y))
  46. #else
  47. # define SCM_SRS(x, y) \
  48. ((x) < 0 \
  49. ? -1 - (scm_t_signed_bits) (~(scm_t_bits)(x) >> (y)) \
  50. : ((x) >> (y)))
  51. #endif
  52. /* The first implementation of SCM_I_INUM below depends on behavior that
  53. is specified by GNU C but not by C standards, namely that when
  54. casting to a signed integer of width N, the value is reduced modulo
  55. 2^N to be within range of the type. The second implementation below
  56. should be portable to all conforming C implementations, but may be
  57. less efficient if the compiler is not sufficiently clever.
  58. NOTE: X must not perform side effects. */
  59. #ifdef __GNUC__
  60. # define SCM_I_INUM(x) (SCM_SRS ((scm_t_signed_bits) SCM_UNPACK (x), 2))
  61. #else
  62. # define SCM_I_INUM(x) \
  63. (SCM_UNPACK (x) > LONG_MAX \
  64. ? -1 - (scm_t_signed_bits) (~SCM_UNPACK (x) >> 2) \
  65. : (scm_t_signed_bits) (SCM_UNPACK (x) >> 2))
  66. #endif
  67. #define SCM_I_INUMP(x) (2 & SCM_UNPACK (x))
  68. #define SCM_I_NINUMP(x) (!SCM_I_INUMP (x))
  69. #define SCM_I_MAKINUM(x) \
  70. (SCM_PACK ((((scm_t_bits) (x)) << 2) + scm_tc2_int))
  71. /* SCM_FIXABLE is true if its long argument can be encoded in an SCM_INUM. */
  72. #define SCM_POSFIXABLE(n) ((n) <= SCM_MOST_POSITIVE_FIXNUM)
  73. #define SCM_NEGFIXABLE(n) ((n) >= SCM_MOST_NEGATIVE_FIXNUM)
  74. #define SCM_FIXABLE(n) (SCM_POSFIXABLE (n) && SCM_NEGFIXABLE (n))
  75. #define SCM_INUM0 (SCM_I_MAKINUM (0)) /* A name for 0 */
  76. #define SCM_INUM1 (SCM_I_MAKINUM (1)) /* A name for 1 */
  77. /* SCM_MAXEXP is the maximum double precision exponent
  78. * SCM_FLTMAX is less than or scm_equal the largest single precision float
  79. */
  80. #if SCM_HAVE_STDC_HEADERS
  81. # ifndef GO32
  82. # include <float.h>
  83. # ifdef __MINGW32__
  84. # define copysign _copysign
  85. # define finite _finite
  86. # endif /* __MINGW32__ */
  87. # endif /* ndef GO32 */
  88. #endif /* def STDC_HEADERS */
  89. #ifdef DBL_MAX_10_EXP
  90. # define SCM_MAXEXP DBL_MAX_10_EXP
  91. #else
  92. # define SCM_MAXEXP 308 /* IEEE doubles */
  93. #endif /* def DBL_MAX_10_EXP */
  94. #ifdef FLT_MAX
  95. # define SCM_FLTMAX FLT_MAX
  96. #else
  97. # define SCM_FLTMAX 1e+23
  98. #endif /* def FLT_MAX */
  99. /* SCM_INTBUFLEN is the maximum number of characters neccessary for
  100. * the printed or scm_string representation of an scm_t_intmax in
  101. * radix 2. The buffer passed to scm_iint2str and scm_iuint2str must
  102. * be of this size, for example.
  103. */
  104. #define SCM_INTBUFLEN (5 + SCM_CHAR_BIT*sizeof(scm_t_intmax))
  105. /* Numbers
  106. */
  107. /* Note that scm_tc16_real and scm_tc16_complex are given tc16-codes that only
  108. * differ in one bit: This way, checking if an object is an inexact number can
  109. * be done quickly (using the TYP16S macro). */
  110. /* Number subtype 1 to 3 (note the dependency on the predicates SCM_INEXACTP
  111. * and SCM_NUMP) */
  112. #define scm_tc16_big (scm_tc7_number + 1 * 256L)
  113. #define scm_tc16_real (scm_tc7_number + 2 * 256L)
  114. #define scm_tc16_complex (scm_tc7_number + 3 * 256L)
  115. #define scm_tc16_fraction (scm_tc7_number + 4 * 256L)
  116. #define SCM_INEXACTP(x) \
  117. (!SCM_IMP (x) && (0xfeff & SCM_CELL_TYPE (x)) == scm_tc16_real)
  118. #define SCM_REALP(x) (SCM_HAS_TYP16 (x, scm_tc16_real))
  119. #define SCM_COMPLEXP(x) (SCM_HAS_TYP16 (x, scm_tc16_complex))
  120. #define SCM_REAL_VALUE(x) (((scm_t_double *) SCM2PTR (x))->real)
  121. #define SCM_COMPLEX_REAL(x) (((scm_t_complex *) SCM2PTR (x))->real)
  122. #define SCM_COMPLEX_IMAG(x) (((scm_t_complex *) SCM2PTR (x))->imag)
  123. /* Each bignum is just an mpz_t stored in a double cell starting at word 1. */
  124. #define SCM_I_BIG_MPZ(x) (*((mpz_t *) (SCM_CELL_OBJECT_LOC((x),1))))
  125. #define SCM_BIGP(x) (SCM_HAS_TYP16 (x, scm_tc16_big))
  126. #define SCM_NUMBERP(x) (SCM_I_INUMP(x) || SCM_NUMP(x))
  127. #define SCM_NUMP(x) (SCM_HAS_TYP7 (x, scm_tc7_number))
  128. #define SCM_FRACTIONP(x) (SCM_HAS_TYP16 (x, scm_tc16_fraction))
  129. #define SCM_FRACTION_NUMERATOR(x) (SCM_CELL_OBJECT_1 (x))
  130. #define SCM_FRACTION_DENOMINATOR(x) (SCM_CELL_OBJECT_2 (x))
  131. typedef struct scm_t_double
  132. {
  133. SCM type;
  134. SCM pad;
  135. double real;
  136. } scm_t_double;
  137. typedef struct scm_t_complex
  138. {
  139. SCM type;
  140. SCM pad;
  141. double real;
  142. double imag;
  143. } scm_t_complex;
  144. SCM_API SCM scm_exact_p (SCM x);
  145. SCM_API int scm_is_exact (SCM x);
  146. SCM_API SCM scm_odd_p (SCM n);
  147. SCM_API SCM scm_even_p (SCM n);
  148. SCM_API SCM scm_finite_p (SCM x);
  149. SCM_API SCM scm_inf_p (SCM x);
  150. SCM_API SCM scm_nan_p (SCM x);
  151. SCM_API SCM scm_inf (void);
  152. SCM_API SCM scm_nan (void);
  153. SCM_API SCM scm_abs (SCM x);
  154. SCM_API SCM scm_quotient (SCM x, SCM y);
  155. SCM_API SCM scm_remainder (SCM x, SCM y);
  156. SCM_API SCM scm_modulo (SCM x, SCM y);
  157. SCM_API void scm_euclidean_divide (SCM x, SCM y, SCM *q, SCM *r);
  158. SCM_API SCM scm_euclidean_quotient (SCM x, SCM y);
  159. SCM_API SCM scm_euclidean_remainder (SCM x, SCM y);
  160. SCM_API void scm_floor_divide (SCM x, SCM y, SCM *q, SCM *r);
  161. SCM_API SCM scm_floor_quotient (SCM x, SCM y);
  162. SCM_API SCM scm_floor_remainder (SCM x, SCM y);
  163. SCM_API void scm_ceiling_divide (SCM x, SCM y, SCM *q, SCM *r);
  164. SCM_API SCM scm_ceiling_quotient (SCM x, SCM y);
  165. SCM_API SCM scm_ceiling_remainder (SCM x, SCM y);
  166. SCM_API void scm_truncate_divide (SCM x, SCM y, SCM *q, SCM *r);
  167. SCM_API SCM scm_truncate_quotient (SCM x, SCM y);
  168. SCM_API SCM scm_truncate_remainder (SCM x, SCM y);
  169. SCM_API void scm_centered_divide (SCM x, SCM y, SCM *q, SCM *r);
  170. SCM_API SCM scm_centered_quotient (SCM x, SCM y);
  171. SCM_API SCM scm_centered_remainder (SCM x, SCM y);
  172. SCM_API void scm_round_divide (SCM x, SCM y, SCM *q, SCM *r);
  173. SCM_API SCM scm_round_quotient (SCM x, SCM y);
  174. SCM_API SCM scm_round_remainder (SCM x, SCM y);
  175. SCM_API SCM scm_gcd (SCM x, SCM y);
  176. SCM_API SCM scm_lcm (SCM n1, SCM n2);
  177. SCM_API SCM scm_logand (SCM n1, SCM n2);
  178. SCM_API SCM scm_logior (SCM n1, SCM n2);
  179. SCM_API SCM scm_logxor (SCM n1, SCM n2);
  180. SCM_API SCM scm_logtest (SCM n1, SCM n2);
  181. SCM_API SCM scm_logbit_p (SCM n1, SCM n2);
  182. SCM_API SCM scm_lognot (SCM n);
  183. SCM_API SCM scm_modulo_expt (SCM n, SCM k, SCM m);
  184. SCM_API SCM scm_integer_expt (SCM z1, SCM z2);
  185. SCM_API SCM scm_ash (SCM n, SCM count);
  186. SCM_API SCM scm_round_ash (SCM n, SCM count);
  187. SCM_API SCM scm_bit_extract (SCM n, SCM start, SCM end);
  188. SCM_API SCM scm_logcount (SCM n);
  189. SCM_API SCM scm_integer_length (SCM n);
  190. SCM_INTERNAL SCM scm_i_euclidean_divide (SCM x, SCM y);
  191. SCM_INTERNAL SCM scm_i_floor_divide (SCM x, SCM y);
  192. SCM_INTERNAL SCM scm_i_ceiling_divide (SCM x, SCM y);
  193. SCM_INTERNAL SCM scm_i_truncate_divide (SCM x, SCM y);
  194. SCM_INTERNAL SCM scm_i_centered_divide (SCM x, SCM y);
  195. SCM_INTERNAL SCM scm_i_round_divide (SCM x, SCM y);
  196. SCM_INTERNAL SCM scm_i_gcd (SCM x, SCM y, SCM rest);
  197. SCM_INTERNAL SCM scm_i_lcm (SCM x, SCM y, SCM rest);
  198. SCM_INTERNAL SCM scm_i_logand (SCM x, SCM y, SCM rest);
  199. SCM_INTERNAL SCM scm_i_logior (SCM x, SCM y, SCM rest);
  200. SCM_INTERNAL SCM scm_i_logxor (SCM x, SCM y, SCM rest);
  201. SCM_API size_t scm_iint2str (scm_t_intmax num, int rad, char *p);
  202. SCM_API size_t scm_iuint2str (scm_t_uintmax num, int rad, char *p);
  203. SCM_API SCM scm_number_to_string (SCM x, SCM radix);
  204. SCM_API int scm_print_real (SCM sexp, SCM port, scm_print_state *pstate);
  205. SCM_API int scm_print_complex (SCM sexp, SCM port, scm_print_state *pstate);
  206. SCM_API int scm_bigprint (SCM exp, SCM port, scm_print_state *pstate);
  207. SCM_API SCM scm_c_locale_stringn_to_number (const char *mem, size_t len,
  208. unsigned int radix);
  209. SCM_INTERNAL SCM scm_i_string_to_number (SCM str, unsigned int radix);
  210. SCM_API SCM scm_string_to_number (SCM str, SCM radix);
  211. SCM_API SCM scm_bigequal (SCM x, SCM y);
  212. SCM_API SCM scm_real_equalp (SCM x, SCM y);
  213. SCM_API SCM scm_complex_equalp (SCM x, SCM y);
  214. SCM_API SCM scm_number_p (SCM x);
  215. SCM_API SCM scm_complex_p (SCM x);
  216. SCM_API SCM scm_real_p (SCM x);
  217. SCM_API SCM scm_rational_p (SCM z);
  218. SCM_API SCM scm_integer_p (SCM x);
  219. SCM_API SCM scm_exact_integer_p (SCM x);
  220. SCM_API SCM scm_inexact_p (SCM x);
  221. SCM_API int scm_is_inexact (SCM x);
  222. SCM_API SCM scm_num_eq_p (SCM x, SCM y);
  223. SCM_API SCM scm_less_p (SCM x, SCM y);
  224. SCM_API SCM scm_gr_p (SCM x, SCM y);
  225. SCM_API SCM scm_leq_p (SCM x, SCM y);
  226. SCM_API SCM scm_geq_p (SCM x, SCM y);
  227. SCM_API SCM scm_zero_p (SCM z);
  228. SCM_API SCM scm_positive_p (SCM x);
  229. SCM_API SCM scm_negative_p (SCM x);
  230. SCM_API SCM scm_max (SCM x, SCM y);
  231. SCM_API SCM scm_min (SCM x, SCM y);
  232. SCM_API SCM scm_sum (SCM x, SCM y);
  233. SCM_API SCM scm_oneplus (SCM x);
  234. SCM_API SCM scm_difference (SCM x, SCM y);
  235. SCM_API SCM scm_oneminus (SCM x);
  236. SCM_API SCM scm_product (SCM x, SCM y);
  237. SCM_API SCM scm_divide (SCM x, SCM y);
  238. SCM_API SCM scm_floor (SCM x);
  239. SCM_API SCM scm_ceiling (SCM x);
  240. SCM_API double scm_c_truncate (double x);
  241. SCM_API double scm_c_round (double x);
  242. SCM_API SCM scm_truncate_number (SCM x);
  243. SCM_API SCM scm_round_number (SCM x);
  244. SCM_API SCM scm_expt (SCM z1, SCM z2);
  245. SCM_API SCM scm_sin (SCM z);
  246. SCM_API SCM scm_cos (SCM z);
  247. SCM_API SCM scm_tan (SCM z);
  248. SCM_API SCM scm_sinh (SCM z);
  249. SCM_API SCM scm_cosh (SCM z);
  250. SCM_API SCM scm_tanh (SCM z);
  251. SCM_API SCM scm_asin (SCM z);
  252. SCM_API SCM scm_acos (SCM z);
  253. SCM_API SCM scm_atan (SCM x, SCM y);
  254. SCM_API SCM scm_sys_asinh (SCM z);
  255. SCM_API SCM scm_sys_acosh (SCM z);
  256. SCM_API SCM scm_sys_atanh (SCM z);
  257. SCM_API SCM scm_make_rectangular (SCM z1, SCM z2);
  258. SCM_API SCM scm_make_polar (SCM z1, SCM z2);
  259. SCM_API SCM scm_real_part (SCM z);
  260. SCM_API SCM scm_imag_part (SCM z);
  261. SCM_API SCM scm_magnitude (SCM z);
  262. SCM_API SCM scm_angle (SCM z);
  263. SCM_API SCM scm_exact_to_inexact (SCM z);
  264. SCM_API SCM scm_inexact_to_exact (SCM z);
  265. SCM_API SCM scm_trunc (SCM x);
  266. SCM_API SCM scm_log (SCM z);
  267. SCM_API SCM scm_log10 (SCM z);
  268. SCM_API SCM scm_exp (SCM z);
  269. SCM_API SCM scm_sqrt (SCM z);
  270. SCM_API void scm_exact_integer_sqrt (SCM k, SCM *s, SCM *r);
  271. SCM_INTERNAL SCM scm_i_min (SCM x, SCM y, SCM rest);
  272. SCM_INTERNAL SCM scm_i_max (SCM x, SCM y, SCM rest);
  273. SCM_INTERNAL SCM scm_i_sum (SCM x, SCM y, SCM rest);
  274. SCM_INTERNAL SCM scm_i_difference (SCM x, SCM y, SCM rest);
  275. SCM_INTERNAL SCM scm_i_product (SCM x, SCM y, SCM rest);
  276. SCM_INTERNAL SCM scm_i_divide (SCM x, SCM y, SCM rest);
  277. SCM_INTERNAL SCM scm_i_exact_integer_sqrt (SCM k);
  278. /* bignum internal functions */
  279. SCM_INTERNAL SCM scm_i_mkbig (void);
  280. SCM_API /* FIXME: not internal */ SCM scm_i_normbig (SCM x);
  281. SCM_INTERNAL int scm_i_bigcmp (SCM a, SCM b);
  282. SCM_INTERNAL SCM scm_i_dbl2big (double d);
  283. SCM_INTERNAL SCM scm_i_dbl2num (double d);
  284. SCM_API /* FIXME: not internal */ double scm_i_big2dbl (SCM b);
  285. SCM_API /* FIXME: not internal */ SCM scm_i_long2big (long n);
  286. SCM_API /* FIXME: not internal */ SCM scm_i_ulong2big (unsigned long n);
  287. SCM_API /* FIXME: not internal */ SCM scm_i_clonebig (SCM src_big, int same_sign_p);
  288. /* ratio functions */
  289. SCM_API SCM scm_rationalize (SCM x, SCM err);
  290. SCM_API SCM scm_numerator (SCM z);
  291. SCM_API SCM scm_denominator (SCM z);
  292. /* fraction internal functions */
  293. SCM_INTERNAL double scm_i_fraction2double (SCM z);
  294. SCM_INTERNAL SCM scm_i_fraction_equalp (SCM x, SCM y);
  295. SCM_INTERNAL int scm_i_print_fraction (SCM sexp, SCM port, scm_print_state *pstate);
  296. /* general internal functions */
  297. SCM_INTERNAL void scm_i_print_double (double val, SCM port);
  298. SCM_INTERNAL void scm_i_print_complex (double real, double imag, SCM port);
  299. /* conversion functions for integers */
  300. SCM_API int scm_is_integer (SCM val);
  301. SCM_API int scm_is_exact_integer (SCM val);
  302. SCM_API int scm_is_signed_integer (SCM val,
  303. scm_t_intmax min, scm_t_intmax max);
  304. SCM_API int scm_is_unsigned_integer (SCM val,
  305. scm_t_uintmax min, scm_t_uintmax max);
  306. SCM_API SCM scm_from_signed_integer (scm_t_intmax val);
  307. SCM_API SCM scm_from_unsigned_integer (scm_t_uintmax val);
  308. SCM_API scm_t_intmax scm_to_signed_integer (SCM val,
  309. scm_t_intmax min,
  310. scm_t_intmax max);
  311. SCM_API scm_t_uintmax scm_to_unsigned_integer (SCM val,
  312. scm_t_uintmax min,
  313. scm_t_uintmax max);
  314. SCM_API scm_t_int8 scm_to_int8 (SCM x);
  315. SCM_API SCM scm_from_int8 (scm_t_int8 x);
  316. SCM_API scm_t_uint8 scm_to_uint8 (SCM x);
  317. SCM_API SCM scm_from_uint8 (scm_t_uint8 x);
  318. SCM_API scm_t_int16 scm_to_int16 (SCM x);
  319. SCM_API SCM scm_from_int16 (scm_t_int16 x);
  320. SCM_API scm_t_uint16 scm_to_uint16 (SCM x);
  321. SCM_API SCM scm_from_uint16 (scm_t_uint16 x);
  322. SCM_API scm_t_int32 scm_to_int32 (SCM x);
  323. SCM_API SCM scm_from_int32 (scm_t_int32 x);
  324. SCM_API scm_t_uint32 scm_to_uint32 (SCM x);
  325. SCM_API SCM scm_from_uint32 (scm_t_uint32 x);
  326. SCM_API scm_t_wchar scm_to_wchar (SCM x);
  327. SCM_API SCM scm_from_wchar (scm_t_wchar x);
  328. SCM_API scm_t_int64 scm_to_int64 (SCM x);
  329. SCM_API SCM scm_from_int64 (scm_t_int64 x);
  330. SCM_API scm_t_uint64 scm_to_uint64 (SCM x);
  331. SCM_API SCM scm_from_uint64 (scm_t_uint64 x);
  332. SCM_API void scm_to_mpz (SCM x, mpz_t rop);
  333. SCM_API SCM scm_from_mpz (mpz_t rop);
  334. /* The conversion functions for other types are aliased to the
  335. appropriate ones from above. We pick the right one based on the
  336. size of the type.
  337. Not each and every possibility is covered by the code below, and
  338. while it is trivial to complete the tests, it might be better to
  339. just test for the 'sane' possibilities. When one of the tests
  340. below fails, chances are good that some silent assumption somewhere
  341. else will also fail.
  342. */
  343. #if SCM_SIZEOF_CHAR == 1
  344. #define scm_to_schar scm_to_int8
  345. #define scm_from_schar scm_from_int8
  346. #define scm_to_uchar scm_to_uint8
  347. #define scm_from_uchar scm_from_uint8
  348. #if CHAR_MIN == 0
  349. #define scm_to_char scm_to_uint8
  350. #define scm_from_char scm_from_uint8
  351. #else
  352. #define scm_to_char scm_to_int8
  353. #define scm_from_char scm_from_int8
  354. #endif
  355. #else
  356. #error sizeof(char) is not 1.
  357. #endif
  358. #if SCM_SIZEOF_SHORT == 1
  359. #define scm_to_short scm_to_int8
  360. #define scm_from_short scm_from_int8
  361. #define scm_to_ushort scm_to_uint8
  362. #define scm_from_ushort scm_from_uint8
  363. #else
  364. #if SCM_SIZEOF_SHORT == 2
  365. #define scm_to_short scm_to_int16
  366. #define scm_from_short scm_from_int16
  367. #define scm_to_ushort scm_to_uint16
  368. #define scm_from_ushort scm_from_uint16
  369. #else
  370. #if SCM_SIZEOF_SHORT == 4
  371. #define scm_to_short scm_to_int32
  372. #define scm_from_short scm_from_int32
  373. #define scm_to_ushort scm_to_uint32
  374. #define scm_from_ushort scm_from_uint32
  375. #else
  376. #error sizeof(short) is not 1, 2, or 4.
  377. #endif
  378. #endif
  379. #endif
  380. #if SCM_SIZEOF_INT == 4
  381. #define scm_to_int scm_to_int32
  382. #define scm_from_int scm_from_int32
  383. #define scm_to_uint scm_to_uint32
  384. #define scm_from_uint scm_from_uint32
  385. #else
  386. #if SCM_SIZEOF_INT == 8
  387. #define scm_to_int scm_to_int64
  388. #define scm_from_int scm_from_int64
  389. #define scm_to_uint scm_to_uint64
  390. #define scm_from_uint scm_from_uint64
  391. #else
  392. #error sizeof(int) is not 4 or 8.
  393. #endif
  394. #endif
  395. #if SCM_SIZEOF_LONG == 4
  396. #define scm_to_long scm_to_int32
  397. #define scm_from_long scm_from_int32
  398. #define scm_to_ulong scm_to_uint32
  399. #define scm_from_ulong scm_from_uint32
  400. #else
  401. #if SCM_SIZEOF_LONG == 8
  402. #define scm_to_long scm_to_int64
  403. #define scm_from_long scm_from_int64
  404. #define scm_to_ulong scm_to_uint64
  405. #define scm_from_ulong scm_from_uint64
  406. #else
  407. #error sizeof(long) is not 4 or 8.
  408. #endif
  409. #endif
  410. #if SCM_SIZEOF_INTMAX == 4
  411. #define scm_to_intmax scm_to_int32
  412. #define scm_from_intmax scm_from_int32
  413. #define scm_to_uintmax scm_to_uint32
  414. #define scm_from_uintmax scm_from_uint32
  415. #else
  416. #if SCM_SIZEOF_INTMAX == 8
  417. #define scm_to_intmax scm_to_int64
  418. #define scm_from_intmax scm_from_int64
  419. #define scm_to_uintmax scm_to_uint64
  420. #define scm_from_uintmax scm_from_uint64
  421. #else
  422. #error sizeof(scm_t_intmax) is not 4 or 8.
  423. #endif
  424. #endif
  425. #if SCM_SIZEOF_LONG_LONG == 0
  426. #else
  427. #if SCM_SIZEOF_LONG_LONG == 8
  428. #define scm_to_long_long scm_to_int64
  429. #define scm_from_long_long scm_from_int64
  430. #define scm_to_ulong_long scm_to_uint64
  431. #define scm_from_ulong_long scm_from_uint64
  432. #else
  433. #error sizeof(long long) is not 8.
  434. #endif
  435. #endif
  436. #if SCM_SIZEOF_SIZE_T == 4
  437. #define scm_to_ssize_t scm_to_int32
  438. #define scm_from_ssize_t scm_from_int32
  439. #define scm_to_size_t scm_to_uint32
  440. #define scm_from_size_t scm_from_uint32
  441. #else
  442. #if SCM_SIZEOF_SIZE_T == 8
  443. #define scm_to_ssize_t scm_to_int64
  444. #define scm_from_ssize_t scm_from_int64
  445. #define scm_to_size_t scm_to_uint64
  446. #define scm_from_size_t scm_from_uint64
  447. #else
  448. #error sizeof(size_t) is not 4 or 8.
  449. #endif
  450. #endif
  451. #if SCM_SIZEOF_SCM_T_PTRDIFF == 4
  452. #define scm_to_ptrdiff_t scm_to_int32
  453. #define scm_from_ptrdiff_t scm_from_int32
  454. #else
  455. #if SCM_SIZEOF_SCM_T_PTRDIFF == 8
  456. #define scm_to_ptrdiff_t scm_to_int64
  457. #define scm_from_ptrdiff_t scm_from_int64
  458. #else
  459. #error sizeof(scm_t_ptrdiff) is not 4 or 8.
  460. #endif
  461. #endif
  462. #if SCM_SIZEOF_INTPTR_T == 0
  463. /* No intptr_t; use size_t functions. */
  464. #define scm_to_intptr_t scm_to_ssize_t
  465. #define scm_from_intptr_t scm_from_ssize_t
  466. #elif SCM_SIZEOF_INTPTR_T == 4
  467. #define scm_to_intptr_t scm_to_int32
  468. #define scm_from_intptr_t scm_from_int32
  469. #elif SCM_SIZEOF_INTPTR_T == 8
  470. #define scm_to_intptr_t scm_to_int64
  471. #define scm_from_intptr_t scm_from_int64
  472. #else
  473. #error sizeof(intptr_t) is not 4 or 8.
  474. #endif
  475. #if SCM_SIZEOF_UINTPTR_T == 0
  476. /* No uintptr_t; use size_t functions. */
  477. #define scm_to_uintptr_t scm_to_size_t
  478. #define scm_from_uintptr_t scm_from_size_t
  479. #elif SCM_SIZEOF_UINTPTR_T == 4
  480. #define scm_to_uintptr_t scm_to_uint32
  481. #define scm_from_uintptr_t scm_from_uint32
  482. #elif SCM_SIZEOF_UINTPTR_T == 8
  483. #define scm_to_uintptr_t scm_to_uint64
  484. #define scm_from_uintptr_t scm_from_uint64
  485. #else
  486. #error sizeof(uintptr_t) is not 4 or 8.
  487. #endif
  488. /* conversion functions for double */
  489. SCM_API int scm_is_real (SCM val);
  490. SCM_API int scm_is_rational (SCM val);
  491. SCM_API double scm_to_double (SCM val);
  492. SCM_API SCM scm_from_double (double val);
  493. /* conversion functions for complex */
  494. SCM_API int scm_is_complex (SCM val);
  495. SCM_API SCM scm_c_make_rectangular (double re, double im);
  496. SCM_API SCM scm_c_make_polar (double mag, double ang);
  497. SCM_API double scm_c_real_part (SCM z);
  498. SCM_API double scm_c_imag_part (SCM z);
  499. SCM_API double scm_c_magnitude (SCM z);
  500. SCM_API double scm_c_angle (SCM z);
  501. SCM_API int scm_is_number (SCM val);
  502. /* If nonzero, tell gmp to use GC_malloc for its allocations. */
  503. SCM_API int scm_install_gmp_memory_functions;
  504. SCM_INTERNAL void scm_init_numbers (void);
  505. #endif /* SCM_NUMBERS_H */
  506. /*
  507. Local Variables:
  508. c-file-style: "gnu"
  509. End:
  510. */