mpdecimal.h 41 KB

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  1. /*
  2. * Copyright (c) 2008-2020 Stefan Krah. All rights reserved.
  3. *
  4. * Redistribution and use in source and binary forms, with or without
  5. * modification, are permitted provided that the following conditions
  6. * are met:
  7. *
  8. * 1. Redistributions of source code must retain the above copyright
  9. * notice, this list of conditions and the following disclaimer.
  10. *
  11. * 2. Redistributions in binary form must reproduce the above copyright
  12. * notice, this list of conditions and the following disclaimer in the
  13. * documentation and/or other materials provided with the distribution.
  14. *
  15. * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS "AS IS" AND
  16. * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  17. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  18. * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
  19. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  20. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
  21. * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  22. * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
  23. * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
  24. * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
  25. * SUCH DAMAGE.
  26. */
  27. #ifndef LIBMPDEC_MPDECIMAL_H_
  28. #define LIBMPDEC_MPDECIMAL_H_
  29. #ifndef _MSC_VER
  30. #include "pyconfig.h"
  31. #endif
  32. #ifdef __cplusplus
  33. #include <cinttypes>
  34. #include <climits>
  35. #include <cstdint>
  36. #include <cstdio>
  37. #include <cstdlib>
  38. #define MPD_UINT8_C(x) (static_cast<uint8_t>(x))
  39. extern "C" {
  40. #else
  41. #include <inttypes.h>
  42. #include <limits.h>
  43. #include <stdint.h>
  44. #include <stdio.h>
  45. #include <stdlib.h>
  46. #define MPD_UINT8_C(x) ((uint8_t)x)
  47. #endif
  48. #if (defined(__linux__) || defined(__FreeBSD__) || defined(__APPLE__)) && \
  49. defined(__GNUC__) && __GNUC__ >= 4 && !defined(__INTEL_COMPILER)
  50. #define MPD_PRAGMA(x) _Pragma(x)
  51. #define MPD_HIDE_SYMBOLS_START "GCC visibility push(hidden)"
  52. #define MPD_HIDE_SYMBOLS_END "GCC visibility pop"
  53. #else
  54. #define MPD_PRAGMA(x)
  55. #define MPD_HIDE_SYMBOLS_START
  56. #define MPD_HIDE_SYMBOLS_END
  57. #endif
  58. #if defined(_MSC_VER)
  59. #define EXTINLINE extern inline
  60. #else
  61. #define EXTINLINE
  62. #endif
  63. /* This header file is internal for the purpose of building _decimal.so.
  64. * All symbols should have local scope in the DSO. */
  65. MPD_PRAGMA(MPD_HIDE_SYMBOLS_START)
  66. /******************************************************************************/
  67. /* Version */
  68. /******************************************************************************/
  69. #define MPD_MAJOR_VERSION 2
  70. #define MPD_MINOR_VERSION 5
  71. #define MPD_MICRO_VERSION 1
  72. #define MPD_VERSION "2.5.1"
  73. #define MPD_VERSION_HEX ((MPD_MAJOR_VERSION << 24) | \
  74. (MPD_MINOR_VERSION << 16) | \
  75. (MPD_MICRO_VERSION << 8))
  76. const char *mpd_version(void);
  77. /******************************************************************************/
  78. /* Configuration */
  79. /******************************************************************************/
  80. #if 1
  81. #if defined(CONFIG_64) || defined(CONFIG_32)
  82. #error "cannot use CONFIG_64 or CONFIG_32 with UNIVERSAL."
  83. #endif
  84. #if defined(__powerpc64__) || defined(_M_AMD64) || defined(__aarch64__)
  85. #define CONFIG_64
  86. #define ANSI
  87. #elif defined(__powerpc__)
  88. #define CONFIG_32
  89. #define ANSI
  90. #elif defined(__i386__) || defined(_M_IX86)
  91. #define CONFIG_32
  92. #define ANSI
  93. #elif defined(__x86_64__)
  94. #define CONFIG_64
  95. #define ASM
  96. #elif defined(__arm64__)
  97. #define CONFIG_64
  98. #define ANSI
  99. #else
  100. #error "unknown architecture for universal build."
  101. #endif
  102. #endif
  103. /* BEGIN CONFIG_64 */
  104. #if defined(CONFIG_64)
  105. /* types for modular and base arithmetic */
  106. #define MPD_UINT_MAX UINT64_MAX
  107. #define MPD_BITS_PER_UINT 64
  108. typedef uint64_t mpd_uint_t; /* unsigned mod type */
  109. #define MPD_SIZE_MAX SIZE_MAX
  110. typedef size_t mpd_size_t; /* unsigned size type */
  111. /* type for exp, digits, len, prec */
  112. #define MPD_SSIZE_MAX INT64_MAX
  113. #define MPD_SSIZE_MIN INT64_MIN
  114. typedef int64_t mpd_ssize_t;
  115. #define _mpd_strtossize strtoll
  116. /* decimal arithmetic */
  117. #define MPD_RADIX 10000000000000000000ULL /* 10**19 */
  118. #define MPD_RDIGITS 19
  119. #define MPD_MAX_POW10 19
  120. #define MPD_EXPDIGITS 19 /* MPD_EXPDIGITS <= MPD_RDIGITS+1 */
  121. #define MPD_MAXTRANSFORM_2N 4294967296ULL /* 2**32 */
  122. #define MPD_MAX_PREC 999999999999999999LL
  123. #define MPD_MAX_PREC_LOG2 64
  124. #define MPD_ELIMIT 1000000000000000000LL
  125. #define MPD_MAX_EMAX 999999999999999999LL /* ELIMIT-1 */
  126. #define MPD_MIN_EMIN (-999999999999999999LL) /* -EMAX */
  127. #define MPD_MIN_ETINY (MPD_MIN_EMIN-(MPD_MAX_PREC-1))
  128. #define MPD_EXP_INF 2000000000000000001LL
  129. #define MPD_EXP_CLAMP (-4000000000000000001LL)
  130. #define MPD_MAXIMPORT 105263157894736842L /* ceil((2*MPD_MAX_PREC)/MPD_RDIGITS) */
  131. #define MPD_IEEE_CONTEXT_MAX_BITS 512 /* 16*(log2(MPD_MAX_EMAX / 3)-3) */
  132. /* conversion specifiers */
  133. #define PRI_mpd_uint_t PRIu64
  134. #define PRI_mpd_ssize_t PRIi64
  135. /* END CONFIG_64 */
  136. /* BEGIN CONFIG_32 */
  137. #elif defined(CONFIG_32)
  138. /* types for modular and base arithmetic */
  139. #define MPD_UINT_MAX UINT32_MAX
  140. #define MPD_BITS_PER_UINT 32
  141. typedef uint32_t mpd_uint_t; /* unsigned mod type */
  142. #ifndef LEGACY_COMPILER
  143. #define MPD_UUINT_MAX UINT64_MAX
  144. typedef uint64_t mpd_uuint_t; /* double width unsigned mod type */
  145. #endif
  146. #define MPD_SIZE_MAX SIZE_MAX
  147. typedef size_t mpd_size_t; /* unsigned size type */
  148. /* type for dec->len, dec->exp, ctx->prec */
  149. #define MPD_SSIZE_MAX INT32_MAX
  150. #define MPD_SSIZE_MIN INT32_MIN
  151. typedef int32_t mpd_ssize_t;
  152. #define _mpd_strtossize strtol
  153. /* decimal arithmetic */
  154. #define MPD_RADIX 1000000000UL /* 10**9 */
  155. #define MPD_RDIGITS 9
  156. #define MPD_MAX_POW10 9
  157. #define MPD_EXPDIGITS 10 /* MPD_EXPDIGITS <= MPD_RDIGITS+1 */
  158. #define MPD_MAXTRANSFORM_2N 33554432UL /* 2**25 */
  159. #define MPD_MAX_PREC 425000000L
  160. #define MPD_MAX_PREC_LOG2 32
  161. #define MPD_ELIMIT 425000001L
  162. #define MPD_MAX_EMAX 425000000L /* ELIMIT-1 */
  163. #define MPD_MIN_EMIN (-425000000L) /* -EMAX */
  164. #define MPD_MIN_ETINY (MPD_MIN_EMIN-(MPD_MAX_PREC-1))
  165. #define MPD_EXP_INF 1000000001L /* allows for emax=999999999 in the tests */
  166. #define MPD_EXP_CLAMP (-2000000001L) /* allows for emin=-999999999 in the tests */
  167. #define MPD_MAXIMPORT 94444445L /* ceil((2*MPD_MAX_PREC)/MPD_RDIGITS) */
  168. #define MPD_IEEE_CONTEXT_MAX_BITS 256 /* 16*(log2(MPD_MAX_EMAX / 3)-3) */
  169. /* conversion specifiers */
  170. #define PRI_mpd_uint_t PRIu32
  171. #define PRI_mpd_ssize_t PRIi32
  172. /* END CONFIG_32 */
  173. #else
  174. #error "define CONFIG_64 or CONFIG_32"
  175. #endif
  176. /* END CONFIG */
  177. #if MPD_SIZE_MAX != MPD_UINT_MAX
  178. #error "unsupported platform: need mpd_size_t == mpd_uint_t"
  179. #endif
  180. /******************************************************************************/
  181. /* Context */
  182. /******************************************************************************/
  183. enum {
  184. MPD_ROUND_UP, /* round away from 0 */
  185. MPD_ROUND_DOWN, /* round toward 0 (truncate) */
  186. MPD_ROUND_CEILING, /* round toward +infinity */
  187. MPD_ROUND_FLOOR, /* round toward -infinity */
  188. MPD_ROUND_HALF_UP, /* 0.5 is rounded up */
  189. MPD_ROUND_HALF_DOWN, /* 0.5 is rounded down */
  190. MPD_ROUND_HALF_EVEN, /* 0.5 is rounded to even */
  191. MPD_ROUND_05UP, /* round zero or five away from 0 */
  192. MPD_ROUND_TRUNC, /* truncate, but set infinity */
  193. MPD_ROUND_GUARD
  194. };
  195. enum { MPD_CLAMP_DEFAULT, MPD_CLAMP_IEEE_754, MPD_CLAMP_GUARD };
  196. extern const char * const mpd_round_string[MPD_ROUND_GUARD];
  197. extern const char * const mpd_clamp_string[MPD_CLAMP_GUARD];
  198. typedef struct mpd_context_t {
  199. mpd_ssize_t prec; /* precision */
  200. mpd_ssize_t emax; /* max positive exp */
  201. mpd_ssize_t emin; /* min negative exp */
  202. uint32_t traps; /* status events that should be trapped */
  203. uint32_t status; /* status flags */
  204. uint32_t newtrap; /* set by mpd_addstatus_raise() */
  205. int round; /* rounding mode */
  206. int clamp; /* clamp mode */
  207. int allcr; /* all functions correctly rounded */
  208. } mpd_context_t;
  209. /* Status flags */
  210. #define MPD_Clamped 0x00000001U
  211. #define MPD_Conversion_syntax 0x00000002U
  212. #define MPD_Division_by_zero 0x00000004U
  213. #define MPD_Division_impossible 0x00000008U
  214. #define MPD_Division_undefined 0x00000010U
  215. #define MPD_Fpu_error 0x00000020U
  216. #define MPD_Inexact 0x00000040U
  217. #define MPD_Invalid_context 0x00000080U
  218. #define MPD_Invalid_operation 0x00000100U
  219. #define MPD_Malloc_error 0x00000200U
  220. #define MPD_Not_implemented 0x00000400U
  221. #define MPD_Overflow 0x00000800U
  222. #define MPD_Rounded 0x00001000U
  223. #define MPD_Subnormal 0x00002000U
  224. #define MPD_Underflow 0x00004000U
  225. #define MPD_Max_status (0x00008000U-1U)
  226. /* Conditions that result in an IEEE 754 exception */
  227. #define MPD_IEEE_Invalid_operation (MPD_Conversion_syntax | \
  228. MPD_Division_impossible | \
  229. MPD_Division_undefined | \
  230. MPD_Fpu_error | \
  231. MPD_Invalid_context | \
  232. MPD_Invalid_operation | \
  233. MPD_Malloc_error) \
  234. /* Errors that require the result of an operation to be set to NaN */
  235. #define MPD_Errors (MPD_IEEE_Invalid_operation | \
  236. MPD_Division_by_zero)
  237. /* Default traps */
  238. #define MPD_Traps (MPD_IEEE_Invalid_operation | \
  239. MPD_Division_by_zero | \
  240. MPD_Overflow | \
  241. MPD_Underflow)
  242. /* Official name */
  243. #define MPD_Insufficient_storage MPD_Malloc_error
  244. /* IEEE 754 interchange format contexts */
  245. #define MPD_DECIMAL32 32
  246. #define MPD_DECIMAL64 64
  247. #define MPD_DECIMAL128 128
  248. #define MPD_MINALLOC_MIN 2
  249. #define MPD_MINALLOC_MAX 64
  250. extern mpd_ssize_t MPD_MINALLOC;
  251. extern void (* mpd_traphandler)(mpd_context_t *);
  252. void mpd_dflt_traphandler(mpd_context_t *);
  253. void mpd_setminalloc(mpd_ssize_t n);
  254. void mpd_init(mpd_context_t *ctx, mpd_ssize_t prec);
  255. void mpd_maxcontext(mpd_context_t *ctx);
  256. void mpd_defaultcontext(mpd_context_t *ctx);
  257. void mpd_basiccontext(mpd_context_t *ctx);
  258. int mpd_ieee_context(mpd_context_t *ctx, int bits);
  259. mpd_ssize_t mpd_getprec(const mpd_context_t *ctx);
  260. mpd_ssize_t mpd_getemax(const mpd_context_t *ctx);
  261. mpd_ssize_t mpd_getemin(const mpd_context_t *ctx);
  262. int mpd_getround(const mpd_context_t *ctx);
  263. uint32_t mpd_gettraps(const mpd_context_t *ctx);
  264. uint32_t mpd_getstatus(const mpd_context_t *ctx);
  265. int mpd_getclamp(const mpd_context_t *ctx);
  266. int mpd_getcr(const mpd_context_t *ctx);
  267. int mpd_qsetprec(mpd_context_t *ctx, mpd_ssize_t prec);
  268. int mpd_qsetemax(mpd_context_t *ctx, mpd_ssize_t emax);
  269. int mpd_qsetemin(mpd_context_t *ctx, mpd_ssize_t emin);
  270. int mpd_qsetround(mpd_context_t *ctx, int newround);
  271. int mpd_qsettraps(mpd_context_t *ctx, uint32_t flags);
  272. int mpd_qsetstatus(mpd_context_t *ctx, uint32_t flags);
  273. int mpd_qsetclamp(mpd_context_t *ctx, int c);
  274. int mpd_qsetcr(mpd_context_t *ctx, int c);
  275. void mpd_addstatus_raise(mpd_context_t *ctx, uint32_t flags);
  276. /******************************************************************************/
  277. /* Decimal Arithmetic */
  278. /******************************************************************************/
  279. /* mpd_t flags */
  280. #define MPD_POS MPD_UINT8_C(0)
  281. #define MPD_NEG MPD_UINT8_C(1)
  282. #define MPD_INF MPD_UINT8_C(2)
  283. #define MPD_NAN MPD_UINT8_C(4)
  284. #define MPD_SNAN MPD_UINT8_C(8)
  285. #define MPD_SPECIAL (MPD_INF|MPD_NAN|MPD_SNAN)
  286. #define MPD_STATIC MPD_UINT8_C(16)
  287. #define MPD_STATIC_DATA MPD_UINT8_C(32)
  288. #define MPD_SHARED_DATA MPD_UINT8_C(64)
  289. #define MPD_CONST_DATA MPD_UINT8_C(128)
  290. #define MPD_DATAFLAGS (MPD_STATIC_DATA|MPD_SHARED_DATA|MPD_CONST_DATA)
  291. /* mpd_t */
  292. typedef struct mpd_t {
  293. uint8_t flags;
  294. mpd_ssize_t exp;
  295. mpd_ssize_t digits;
  296. mpd_ssize_t len;
  297. mpd_ssize_t alloc;
  298. mpd_uint_t *data;
  299. } mpd_t;
  300. /******************************************************************************/
  301. /* Triple */
  302. /******************************************************************************/
  303. /* status cases for getting a triple */
  304. enum mpd_triple_class {
  305. MPD_TRIPLE_NORMAL,
  306. MPD_TRIPLE_INF,
  307. MPD_TRIPLE_QNAN,
  308. MPD_TRIPLE_SNAN,
  309. MPD_TRIPLE_ERROR,
  310. };
  311. typedef struct {
  312. enum mpd_triple_class tag;
  313. uint8_t sign;
  314. uint64_t hi;
  315. uint64_t lo;
  316. int64_t exp;
  317. } mpd_uint128_triple_t;
  318. int mpd_from_uint128_triple(mpd_t *result, const mpd_uint128_triple_t *triple, uint32_t *status);
  319. mpd_uint128_triple_t mpd_as_uint128_triple(const mpd_t *a);
  320. /******************************************************************************/
  321. /* Quiet, thread-safe functions */
  322. /******************************************************************************/
  323. /* format specification */
  324. typedef struct mpd_spec_t {
  325. mpd_ssize_t min_width; /* minimum field width */
  326. mpd_ssize_t prec; /* fraction digits or significant digits */
  327. char type; /* conversion specifier */
  328. char align; /* alignment */
  329. char sign; /* sign printing/alignment */
  330. char fill[5]; /* fill character */
  331. const char *dot; /* decimal point */
  332. const char *sep; /* thousands separator */
  333. const char *grouping; /* grouping of digits */
  334. } mpd_spec_t;
  335. /* output to a string */
  336. char *mpd_to_sci(const mpd_t *dec, int fmt);
  337. char *mpd_to_eng(const mpd_t *dec, int fmt);
  338. mpd_ssize_t mpd_to_sci_size(char **res, const mpd_t *dec, int fmt);
  339. mpd_ssize_t mpd_to_eng_size(char **res, const mpd_t *dec, int fmt);
  340. int mpd_validate_lconv(mpd_spec_t *spec);
  341. int mpd_parse_fmt_str(mpd_spec_t *spec, const char *fmt, int caps);
  342. char *mpd_qformat_spec(const mpd_t *dec, const mpd_spec_t *spec, const mpd_context_t *ctx, uint32_t *status);
  343. char *mpd_qformat(const mpd_t *dec, const char *fmt, const mpd_context_t *ctx, uint32_t *status);
  344. #define MPD_NUM_FLAGS 15
  345. #define MPD_MAX_FLAG_STRING 208
  346. #define MPD_MAX_FLAG_LIST (MPD_MAX_FLAG_STRING+18)
  347. #define MPD_MAX_SIGNAL_LIST 121
  348. int mpd_snprint_flags(char *dest, int nmemb, uint32_t flags);
  349. int mpd_lsnprint_flags(char *dest, int nmemb, uint32_t flags, const char *flag_string[]);
  350. int mpd_lsnprint_signals(char *dest, int nmemb, uint32_t flags, const char *signal_string[]);
  351. /* output to a file */
  352. void mpd_fprint(FILE *file, const mpd_t *dec);
  353. void mpd_print(const mpd_t *dec);
  354. /* assignment from a string */
  355. void mpd_qset_string(mpd_t *dec, const char *s, const mpd_context_t *ctx, uint32_t *status);
  356. void mpd_qset_string_exact(mpd_t *dec, const char *s, uint32_t *status);
  357. /* set to NaN with error flags */
  358. void mpd_seterror(mpd_t *result, uint32_t flags, uint32_t *status);
  359. /* set a special with sign and type */
  360. void mpd_setspecial(mpd_t *result, uint8_t sign, uint8_t type);
  361. /* set coefficient to zero or all nines */
  362. void mpd_zerocoeff(mpd_t *result);
  363. void mpd_qmaxcoeff(mpd_t *result, const mpd_context_t *ctx, uint32_t *status);
  364. /* quietly assign a C integer type to an mpd_t */
  365. void mpd_qset_ssize(mpd_t *result, mpd_ssize_t a, const mpd_context_t *ctx, uint32_t *status);
  366. void mpd_qset_i32(mpd_t *result, int32_t a, const mpd_context_t *ctx, uint32_t *status);
  367. void mpd_qset_uint(mpd_t *result, mpd_uint_t a, const mpd_context_t *ctx, uint32_t *status);
  368. void mpd_qset_u32(mpd_t *result, uint32_t a, const mpd_context_t *ctx, uint32_t *status);
  369. #ifndef LEGACY_COMPILER
  370. void mpd_qset_i64(mpd_t *result, int64_t a, const mpd_context_t *ctx, uint32_t *status);
  371. void mpd_qset_u64(mpd_t *result, uint64_t a, const mpd_context_t *ctx, uint32_t *status);
  372. void mpd_qset_i64_exact(mpd_t *result, int64_t a, uint32_t *status);
  373. void mpd_qset_u64_exact(mpd_t *result, uint64_t a, uint32_t *status);
  374. #endif
  375. /* quietly assign a C integer type to an mpd_t with a static coefficient */
  376. void mpd_qsset_ssize(mpd_t *result, mpd_ssize_t a, const mpd_context_t *ctx, uint32_t *status);
  377. void mpd_qsset_i32(mpd_t *result, int32_t a, const mpd_context_t *ctx, uint32_t *status);
  378. void mpd_qsset_uint(mpd_t *result, mpd_uint_t a, const mpd_context_t *ctx, uint32_t *status);
  379. void mpd_qsset_u32(mpd_t *result, uint32_t a, const mpd_context_t *ctx, uint32_t *status);
  380. /* quietly get a C integer type from an mpd_t */
  381. mpd_ssize_t mpd_qget_ssize(const mpd_t *dec, uint32_t *status);
  382. mpd_uint_t mpd_qget_uint(const mpd_t *dec, uint32_t *status);
  383. mpd_uint_t mpd_qabs_uint(const mpd_t *dec, uint32_t *status);
  384. int32_t mpd_qget_i32(const mpd_t *dec, uint32_t *status);
  385. uint32_t mpd_qget_u32(const mpd_t *dec, uint32_t *status);
  386. #ifndef LEGACY_COMPILER
  387. int64_t mpd_qget_i64(const mpd_t *dec, uint32_t *status);
  388. uint64_t mpd_qget_u64(const mpd_t *dec, uint32_t *status);
  389. #endif
  390. /* quiet functions */
  391. int mpd_qcheck_nan(mpd_t *nanresult, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  392. int mpd_qcheck_nans(mpd_t *nanresult, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  393. void mpd_qfinalize(mpd_t *result, const mpd_context_t *ctx, uint32_t *status);
  394. const char *mpd_class(const mpd_t *a, const mpd_context_t *ctx);
  395. int mpd_qcopy(mpd_t *result, const mpd_t *a, uint32_t *status);
  396. int mpd_qcopy_cxx(mpd_t *result, const mpd_t *a);
  397. mpd_t *mpd_qncopy(const mpd_t *a);
  398. int mpd_qcopy_abs(mpd_t *result, const mpd_t *a, uint32_t *status);
  399. int mpd_qcopy_negate(mpd_t *result, const mpd_t *a, uint32_t *status);
  400. int mpd_qcopy_sign(mpd_t *result, const mpd_t *a, const mpd_t *b, uint32_t *status);
  401. void mpd_qand(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  402. void mpd_qinvert(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  403. void mpd_qlogb(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  404. void mpd_qor(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  405. void mpd_qscaleb(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  406. void mpd_qxor(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  407. int mpd_same_quantum(const mpd_t *a, const mpd_t *b);
  408. void mpd_qrotate(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  409. int mpd_qshiftl(mpd_t *result, const mpd_t *a, mpd_ssize_t n, uint32_t *status);
  410. mpd_uint_t mpd_qshiftr(mpd_t *result, const mpd_t *a, mpd_ssize_t n, uint32_t *status);
  411. mpd_uint_t mpd_qshiftr_inplace(mpd_t *result, mpd_ssize_t n);
  412. void mpd_qshift(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  413. void mpd_qshiftn(mpd_t *result, const mpd_t *a, mpd_ssize_t n, const mpd_context_t *ctx, uint32_t *status);
  414. int mpd_qcmp(const mpd_t *a, const mpd_t *b, uint32_t *status);
  415. int mpd_qcompare(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  416. int mpd_qcompare_signal(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  417. int mpd_cmp_total(const mpd_t *a, const mpd_t *b);
  418. int mpd_cmp_total_mag(const mpd_t *a, const mpd_t *b);
  419. int mpd_compare_total(mpd_t *result, const mpd_t *a, const mpd_t *b);
  420. int mpd_compare_total_mag(mpd_t *result, const mpd_t *a, const mpd_t *b);
  421. void mpd_qround_to_intx(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  422. void mpd_qround_to_int(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  423. void mpd_qtrunc(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  424. void mpd_qfloor(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  425. void mpd_qceil(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  426. void mpd_qabs(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  427. void mpd_qmax(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  428. void mpd_qmax_mag(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  429. void mpd_qmin(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  430. void mpd_qmin_mag(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  431. void mpd_qminus(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  432. void mpd_qplus(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  433. void mpd_qnext_minus(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  434. void mpd_qnext_plus(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  435. void mpd_qnext_toward(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  436. void mpd_qquantize(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  437. void mpd_qrescale(mpd_t *result, const mpd_t *a, mpd_ssize_t exp, const mpd_context_t *ctx, uint32_t *status);
  438. void mpd_qrescale_fmt(mpd_t *result, const mpd_t *a, mpd_ssize_t exp, const mpd_context_t *ctx, uint32_t *status);
  439. void mpd_qreduce(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  440. void mpd_qadd(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  441. void mpd_qadd_ssize(mpd_t *result, const mpd_t *a, mpd_ssize_t b, const mpd_context_t *ctx, uint32_t *status);
  442. void mpd_qadd_i32(mpd_t *result, const mpd_t *a, int32_t b, const mpd_context_t *ctx, uint32_t *status);
  443. void mpd_qadd_uint(mpd_t *result, const mpd_t *a, mpd_uint_t b, const mpd_context_t *ctx, uint32_t *status);
  444. void mpd_qadd_u32(mpd_t *result, const mpd_t *a, uint32_t b, const mpd_context_t *ctx, uint32_t *status);
  445. void mpd_qsub(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  446. void mpd_qsub_ssize(mpd_t *result, const mpd_t *a, mpd_ssize_t b, const mpd_context_t *ctx, uint32_t *status);
  447. void mpd_qsub_i32(mpd_t *result, const mpd_t *a, int32_t b, const mpd_context_t *ctx, uint32_t *status);
  448. void mpd_qsub_uint(mpd_t *result, const mpd_t *a, mpd_uint_t b, const mpd_context_t *ctx, uint32_t *status);
  449. void mpd_qsub_u32(mpd_t *result, const mpd_t *a, uint32_t b, const mpd_context_t *ctx, uint32_t *status);
  450. void mpd_qmul(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  451. void mpd_qmul_ssize(mpd_t *result, const mpd_t *a, mpd_ssize_t b, const mpd_context_t *ctx, uint32_t *status);
  452. void mpd_qmul_i32(mpd_t *result, const mpd_t *a, int32_t b, const mpd_context_t *ctx, uint32_t *status);
  453. void mpd_qmul_uint(mpd_t *result, const mpd_t *a, mpd_uint_t b, const mpd_context_t *ctx, uint32_t *status);
  454. void mpd_qmul_u32(mpd_t *result, const mpd_t *a, uint32_t b, const mpd_context_t *ctx, uint32_t *status);
  455. void mpd_qfma(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_t *c, const mpd_context_t *ctx, uint32_t *status);
  456. void mpd_qdiv(mpd_t *q, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  457. void mpd_qdiv_ssize(mpd_t *result, const mpd_t *a, mpd_ssize_t b, const mpd_context_t *ctx, uint32_t *status);
  458. void mpd_qdiv_i32(mpd_t *result, const mpd_t *a, int32_t b, const mpd_context_t *ctx, uint32_t *status);
  459. void mpd_qdiv_uint(mpd_t *result, const mpd_t *a, mpd_uint_t b, const mpd_context_t *ctx, uint32_t *status);
  460. void mpd_qdiv_u32(mpd_t *result, const mpd_t *a, uint32_t b, const mpd_context_t *ctx, uint32_t *status);
  461. void mpd_qdivint(mpd_t *q, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  462. void mpd_qrem(mpd_t *r, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  463. void mpd_qrem_near(mpd_t *r, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  464. void mpd_qdivmod(mpd_t *q, mpd_t *r, const mpd_t *a, const mpd_t *b, const mpd_context_t *ctx, uint32_t *status);
  465. void mpd_qpow(mpd_t *result, const mpd_t *base, const mpd_t *exp, const mpd_context_t *ctx, uint32_t *status);
  466. void mpd_qpowmod(mpd_t *result, const mpd_t *base, const mpd_t *exp, const mpd_t *mod, const mpd_context_t *ctx, uint32_t *status);
  467. void mpd_qexp(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  468. void mpd_qln10(mpd_t *result, mpd_ssize_t prec, uint32_t *status);
  469. void mpd_qln(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  470. void mpd_qlog10(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  471. void mpd_qsqrt(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  472. void mpd_qinvroot(mpd_t *result, const mpd_t *a, const mpd_context_t *ctx, uint32_t *status);
  473. #ifndef LEGACY_COMPILER
  474. void mpd_qadd_i64(mpd_t *result, const mpd_t *a, int64_t b, const mpd_context_t *ctx, uint32_t *status);
  475. void mpd_qadd_u64(mpd_t *result, const mpd_t *a, uint64_t b, const mpd_context_t *ctx, uint32_t *status);
  476. void mpd_qsub_i64(mpd_t *result, const mpd_t *a, int64_t b, const mpd_context_t *ctx, uint32_t *status);
  477. void mpd_qsub_u64(mpd_t *result, const mpd_t *a, uint64_t b, const mpd_context_t *ctx, uint32_t *status);
  478. void mpd_qmul_i64(mpd_t *result, const mpd_t *a, int64_t b, const mpd_context_t *ctx, uint32_t *status);
  479. void mpd_qmul_u64(mpd_t *result, const mpd_t *a, uint64_t b, const mpd_context_t *ctx, uint32_t *status);
  480. void mpd_qdiv_i64(mpd_t *result, const mpd_t *a, int64_t b, const mpd_context_t *ctx, uint32_t *status);
  481. void mpd_qdiv_u64(mpd_t *result, const mpd_t *a, uint64_t b, const mpd_context_t *ctx, uint32_t *status);
  482. #endif
  483. size_t mpd_sizeinbase(const mpd_t *a, uint32_t base);
  484. void mpd_qimport_u16(mpd_t *result, const uint16_t *srcdata, size_t srclen,
  485. uint8_t srcsign, uint32_t srcbase,
  486. const mpd_context_t *ctx, uint32_t *status);
  487. void mpd_qimport_u32(mpd_t *result, const uint32_t *srcdata, size_t srclen,
  488. uint8_t srcsign, uint32_t srcbase,
  489. const mpd_context_t *ctx, uint32_t *status);
  490. size_t mpd_qexport_u16(uint16_t **rdata, size_t rlen, uint32_t base,
  491. const mpd_t *src, uint32_t *status);
  492. size_t mpd_qexport_u32(uint32_t **rdata, size_t rlen, uint32_t base,
  493. const mpd_t *src, uint32_t *status);
  494. /******************************************************************************/
  495. /* Signalling functions */
  496. /******************************************************************************/
  497. char *mpd_format(const mpd_t *dec, const char *fmt, mpd_context_t *ctx);
  498. void mpd_import_u16(mpd_t *result, const uint16_t *srcdata, size_t srclen, uint8_t srcsign, uint32_t base, mpd_context_t *ctx);
  499. void mpd_import_u32(mpd_t *result, const uint32_t *srcdata, size_t srclen, uint8_t srcsign, uint32_t base, mpd_context_t *ctx);
  500. size_t mpd_export_u16(uint16_t **rdata, size_t rlen, uint32_t base, const mpd_t *src, mpd_context_t *ctx);
  501. size_t mpd_export_u32(uint32_t **rdata, size_t rlen, uint32_t base, const mpd_t *src, mpd_context_t *ctx);
  502. void mpd_finalize(mpd_t *result, mpd_context_t *ctx);
  503. int mpd_check_nan(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  504. int mpd_check_nans(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  505. void mpd_set_string(mpd_t *result, const char *s, mpd_context_t *ctx);
  506. void mpd_maxcoeff(mpd_t *result, mpd_context_t *ctx);
  507. void mpd_sset_ssize(mpd_t *result, mpd_ssize_t a, mpd_context_t *ctx);
  508. void mpd_sset_i32(mpd_t *result, int32_t a, mpd_context_t *ctx);
  509. void mpd_sset_uint(mpd_t *result, mpd_uint_t a, mpd_context_t *ctx);
  510. void mpd_sset_u32(mpd_t *result, uint32_t a, mpd_context_t *ctx);
  511. void mpd_set_ssize(mpd_t *result, mpd_ssize_t a, mpd_context_t *ctx);
  512. void mpd_set_i32(mpd_t *result, int32_t a, mpd_context_t *ctx);
  513. void mpd_set_uint(mpd_t *result, mpd_uint_t a, mpd_context_t *ctx);
  514. void mpd_set_u32(mpd_t *result, uint32_t a, mpd_context_t *ctx);
  515. #ifndef LEGACY_COMPILER
  516. void mpd_set_i64(mpd_t *result, int64_t a, mpd_context_t *ctx);
  517. void mpd_set_u64(mpd_t *result, uint64_t a, mpd_context_t *ctx);
  518. #endif
  519. mpd_ssize_t mpd_get_ssize(const mpd_t *a, mpd_context_t *ctx);
  520. mpd_uint_t mpd_get_uint(const mpd_t *a, mpd_context_t *ctx);
  521. mpd_uint_t mpd_abs_uint(const mpd_t *a, mpd_context_t *ctx);
  522. int32_t mpd_get_i32(const mpd_t *a, mpd_context_t *ctx);
  523. uint32_t mpd_get_u32(const mpd_t *a, mpd_context_t *ctx);
  524. #ifndef LEGACY_COMPILER
  525. int64_t mpd_get_i64(const mpd_t *a, mpd_context_t *ctx);
  526. uint64_t mpd_get_u64(const mpd_t *a, mpd_context_t *ctx);
  527. #endif
  528. void mpd_and(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  529. void mpd_copy(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  530. void mpd_canonical(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  531. void mpd_copy_abs(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  532. void mpd_copy_negate(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  533. void mpd_copy_sign(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  534. void mpd_invert(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  535. void mpd_logb(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  536. void mpd_or(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  537. void mpd_rotate(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  538. void mpd_scaleb(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  539. void mpd_shiftl(mpd_t *result, const mpd_t *a, mpd_ssize_t n, mpd_context_t *ctx);
  540. mpd_uint_t mpd_shiftr(mpd_t *result, const mpd_t *a, mpd_ssize_t n, mpd_context_t *ctx);
  541. void mpd_shiftn(mpd_t *result, const mpd_t *a, mpd_ssize_t n, mpd_context_t *ctx);
  542. void mpd_shift(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  543. void mpd_xor(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  544. void mpd_abs(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  545. int mpd_cmp(const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  546. int mpd_compare(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  547. int mpd_compare_signal(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  548. void mpd_add(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  549. void mpd_add_ssize(mpd_t *result, const mpd_t *a, mpd_ssize_t b, mpd_context_t *ctx);
  550. void mpd_add_i32(mpd_t *result, const mpd_t *a, int32_t b, mpd_context_t *ctx);
  551. void mpd_add_uint(mpd_t *result, const mpd_t *a, mpd_uint_t b, mpd_context_t *ctx);
  552. void mpd_add_u32(mpd_t *result, const mpd_t *a, uint32_t b, mpd_context_t *ctx);
  553. void mpd_sub(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  554. void mpd_sub_ssize(mpd_t *result, const mpd_t *a, mpd_ssize_t b, mpd_context_t *ctx);
  555. void mpd_sub_i32(mpd_t *result, const mpd_t *a, int32_t b, mpd_context_t *ctx);
  556. void mpd_sub_uint(mpd_t *result, const mpd_t *a, mpd_uint_t b, mpd_context_t *ctx);
  557. void mpd_sub_u32(mpd_t *result, const mpd_t *a, uint32_t b, mpd_context_t *ctx);
  558. void mpd_div(mpd_t *q, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  559. void mpd_div_ssize(mpd_t *result, const mpd_t *a, mpd_ssize_t b, mpd_context_t *ctx);
  560. void mpd_div_i32(mpd_t *result, const mpd_t *a, int32_t b, mpd_context_t *ctx);
  561. void mpd_div_uint(mpd_t *result, const mpd_t *a, mpd_uint_t b, mpd_context_t *ctx);
  562. void mpd_div_u32(mpd_t *result, const mpd_t *a, uint32_t b, mpd_context_t *ctx);
  563. void mpd_divmod(mpd_t *q, mpd_t *r, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  564. void mpd_divint(mpd_t *q, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  565. void mpd_exp(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  566. void mpd_fma(mpd_t *result, const mpd_t *a, const mpd_t *b, const mpd_t *c, mpd_context_t *ctx);
  567. void mpd_ln(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  568. void mpd_log10(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  569. void mpd_max(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  570. void mpd_max_mag(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  571. void mpd_min(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  572. void mpd_min_mag(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  573. void mpd_minus(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  574. void mpd_mul(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  575. void mpd_mul_ssize(mpd_t *result, const mpd_t *a, mpd_ssize_t b, mpd_context_t *ctx);
  576. void mpd_mul_i32(mpd_t *result, const mpd_t *a, int32_t b, mpd_context_t *ctx);
  577. void mpd_mul_uint(mpd_t *result, const mpd_t *a, mpd_uint_t b, mpd_context_t *ctx);
  578. void mpd_mul_u32(mpd_t *result, const mpd_t *a, uint32_t b, mpd_context_t *ctx);
  579. void mpd_next_minus(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  580. void mpd_next_plus(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  581. void mpd_next_toward(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  582. void mpd_plus(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  583. void mpd_pow(mpd_t *result, const mpd_t *base, const mpd_t *exp, mpd_context_t *ctx);
  584. void mpd_powmod(mpd_t *result, const mpd_t *base, const mpd_t *exp, const mpd_t *mod, mpd_context_t *ctx);
  585. void mpd_quantize(mpd_t *result, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  586. void mpd_rescale(mpd_t *result, const mpd_t *a, mpd_ssize_t exp, mpd_context_t *ctx);
  587. void mpd_reduce(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  588. void mpd_rem(mpd_t *r, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  589. void mpd_rem_near(mpd_t *r, const mpd_t *a, const mpd_t *b, mpd_context_t *ctx);
  590. void mpd_round_to_intx(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  591. void mpd_round_to_int(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  592. void mpd_trunc(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  593. void mpd_floor(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  594. void mpd_ceil(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  595. void mpd_sqrt(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  596. void mpd_invroot(mpd_t *result, const mpd_t *a, mpd_context_t *ctx);
  597. #ifndef LEGACY_COMPILER
  598. void mpd_add_i64(mpd_t *result, const mpd_t *a, int64_t b, mpd_context_t *ctx);
  599. void mpd_add_u64(mpd_t *result, const mpd_t *a, uint64_t b, mpd_context_t *ctx);
  600. void mpd_sub_i64(mpd_t *result, const mpd_t *a, int64_t b, mpd_context_t *ctx);
  601. void mpd_sub_u64(mpd_t *result, const mpd_t *a, uint64_t b, mpd_context_t *ctx);
  602. void mpd_div_i64(mpd_t *result, const mpd_t *a, int64_t b, mpd_context_t *ctx);
  603. void mpd_div_u64(mpd_t *result, const mpd_t *a, uint64_t b, mpd_context_t *ctx);
  604. void mpd_mul_i64(mpd_t *result, const mpd_t *a, int64_t b, mpd_context_t *ctx);
  605. void mpd_mul_u64(mpd_t *result, const mpd_t *a, uint64_t b, mpd_context_t *ctx);
  606. #endif
  607. /******************************************************************************/
  608. /* Configuration specific */
  609. /******************************************************************************/
  610. #ifdef CONFIG_64
  611. void mpd_qsset_i64(mpd_t *result, int64_t a, const mpd_context_t *ctx, uint32_t *status);
  612. void mpd_qsset_u64(mpd_t *result, uint64_t a, const mpd_context_t *ctx, uint32_t *status);
  613. void mpd_sset_i64(mpd_t *result, int64_t a, mpd_context_t *ctx);
  614. void mpd_sset_u64(mpd_t *result, uint64_t a, mpd_context_t *ctx);
  615. #endif
  616. /******************************************************************************/
  617. /* Get attributes of a decimal */
  618. /******************************************************************************/
  619. EXTINLINE mpd_ssize_t mpd_adjexp(const mpd_t *dec);
  620. EXTINLINE mpd_ssize_t mpd_etiny(const mpd_context_t *ctx);
  621. EXTINLINE mpd_ssize_t mpd_etop(const mpd_context_t *ctx);
  622. EXTINLINE mpd_uint_t mpd_msword(const mpd_t *dec);
  623. EXTINLINE int mpd_word_digits(mpd_uint_t word);
  624. /* most significant digit of a word */
  625. EXTINLINE mpd_uint_t mpd_msd(mpd_uint_t word);
  626. /* least significant digit of a word */
  627. EXTINLINE mpd_uint_t mpd_lsd(mpd_uint_t word);
  628. /* coefficient size needed to store 'digits' */
  629. EXTINLINE mpd_ssize_t mpd_digits_to_size(mpd_ssize_t digits);
  630. /* number of digits in the exponent, undefined for MPD_SSIZE_MIN */
  631. EXTINLINE int mpd_exp_digits(mpd_ssize_t exp);
  632. EXTINLINE int mpd_iscanonical(const mpd_t *dec);
  633. EXTINLINE int mpd_isfinite(const mpd_t *dec);
  634. EXTINLINE int mpd_isinfinite(const mpd_t *dec);
  635. EXTINLINE int mpd_isinteger(const mpd_t *dec);
  636. EXTINLINE int mpd_isnan(const mpd_t *dec);
  637. EXTINLINE int mpd_isnegative(const mpd_t *dec);
  638. EXTINLINE int mpd_ispositive(const mpd_t *dec);
  639. EXTINLINE int mpd_isqnan(const mpd_t *dec);
  640. EXTINLINE int mpd_issigned(const mpd_t *dec);
  641. EXTINLINE int mpd_issnan(const mpd_t *dec);
  642. EXTINLINE int mpd_isspecial(const mpd_t *dec);
  643. EXTINLINE int mpd_iszero(const mpd_t *dec);
  644. /* undefined for special numbers */
  645. EXTINLINE int mpd_iszerocoeff(const mpd_t *dec);
  646. EXTINLINE int mpd_isnormal(const mpd_t *dec, const mpd_context_t *ctx);
  647. EXTINLINE int mpd_issubnormal(const mpd_t *dec, const mpd_context_t *ctx);
  648. /* odd word */
  649. EXTINLINE int mpd_isoddword(mpd_uint_t word);
  650. /* odd coefficient */
  651. EXTINLINE int mpd_isoddcoeff(const mpd_t *dec);
  652. /* odd decimal, only defined for integers */
  653. int mpd_isodd(const mpd_t *dec);
  654. /* even decimal, only defined for integers */
  655. int mpd_iseven(const mpd_t *dec);
  656. /* 0 if dec is positive, 1 if dec is negative */
  657. EXTINLINE uint8_t mpd_sign(const mpd_t *dec);
  658. /* 1 if dec is positive, -1 if dec is negative */
  659. EXTINLINE int mpd_arith_sign(const mpd_t *dec);
  660. EXTINLINE long mpd_radix(void);
  661. EXTINLINE int mpd_isdynamic(const mpd_t *dec);
  662. EXTINLINE int mpd_isstatic(const mpd_t *dec);
  663. EXTINLINE int mpd_isdynamic_data(const mpd_t *dec);
  664. EXTINLINE int mpd_isstatic_data(const mpd_t *dec);
  665. EXTINLINE int mpd_isshared_data(const mpd_t *dec);
  666. EXTINLINE int mpd_isconst_data(const mpd_t *dec);
  667. EXTINLINE mpd_ssize_t mpd_trail_zeros(const mpd_t *dec);
  668. /******************************************************************************/
  669. /* Set attributes of a decimal */
  670. /******************************************************************************/
  671. /* set number of decimal digits in the coefficient */
  672. EXTINLINE void mpd_setdigits(mpd_t *result);
  673. EXTINLINE void mpd_set_sign(mpd_t *result, uint8_t sign);
  674. /* copy sign from another decimal */
  675. EXTINLINE void mpd_signcpy(mpd_t *result, const mpd_t *a);
  676. EXTINLINE void mpd_set_infinity(mpd_t *result);
  677. EXTINLINE void mpd_set_qnan(mpd_t *result);
  678. EXTINLINE void mpd_set_snan(mpd_t *result);
  679. EXTINLINE void mpd_set_negative(mpd_t *result);
  680. EXTINLINE void mpd_set_positive(mpd_t *result);
  681. EXTINLINE void mpd_set_dynamic(mpd_t *result);
  682. EXTINLINE void mpd_set_static(mpd_t *result);
  683. EXTINLINE void mpd_set_dynamic_data(mpd_t *result);
  684. EXTINLINE void mpd_set_static_data(mpd_t *result);
  685. EXTINLINE void mpd_set_shared_data(mpd_t *result);
  686. EXTINLINE void mpd_set_const_data(mpd_t *result);
  687. EXTINLINE void mpd_clear_flags(mpd_t *result);
  688. EXTINLINE void mpd_set_flags(mpd_t *result, uint8_t flags);
  689. EXTINLINE void mpd_copy_flags(mpd_t *result, const mpd_t *a);
  690. /******************************************************************************/
  691. /* Error Macros */
  692. /******************************************************************************/
  693. #define mpd_err_fatal(...) \
  694. do {fprintf(stderr, "%s:%d: error: ", __FILE__, __LINE__); \
  695. fprintf(stderr, __VA_ARGS__); fputc('\n', stderr); \
  696. abort(); \
  697. } while (0)
  698. #define mpd_err_warn(...) \
  699. do {fprintf(stderr, "%s:%d: warning: ", __FILE__, __LINE__); \
  700. fprintf(stderr, __VA_ARGS__); fputc('\n', stderr); \
  701. } while (0)
  702. /******************************************************************************/
  703. /* Memory handling */
  704. /******************************************************************************/
  705. extern void *(* mpd_mallocfunc)(size_t size);
  706. extern void *(* mpd_callocfunc)(size_t nmemb, size_t size);
  707. extern void *(* mpd_reallocfunc)(void *ptr, size_t size);
  708. extern void (* mpd_free)(void *ptr);
  709. void *mpd_callocfunc_em(size_t nmemb, size_t size);
  710. void *mpd_alloc(mpd_size_t nmemb, mpd_size_t size);
  711. void *mpd_calloc(mpd_size_t nmemb, mpd_size_t size);
  712. void *mpd_realloc(void *ptr, mpd_size_t nmemb, mpd_size_t size, uint8_t *err);
  713. void *mpd_sh_alloc(mpd_size_t struct_size, mpd_size_t nmemb, mpd_size_t size);
  714. mpd_t *mpd_qnew(void);
  715. mpd_t *mpd_new(mpd_context_t *ctx);
  716. mpd_t *mpd_qnew_size(mpd_ssize_t nwords);
  717. EXTINLINE void mpd_del(mpd_t *dec);
  718. EXTINLINE void mpd_uint_zero(mpd_uint_t *dest, mpd_size_t len);
  719. EXTINLINE int mpd_qresize(mpd_t *result, mpd_ssize_t nwords, uint32_t *status);
  720. EXTINLINE int mpd_qresize_zero(mpd_t *result, mpd_ssize_t nwords, uint32_t *status);
  721. EXTINLINE void mpd_minalloc(mpd_t *result);
  722. int mpd_resize(mpd_t *result, mpd_ssize_t nwords, mpd_context_t *ctx);
  723. int mpd_resize_zero(mpd_t *result, mpd_ssize_t nwords, mpd_context_t *ctx);
  724. MPD_PRAGMA(MPD_HIDE_SYMBOLS_END) /* restore previous scope rules */
  725. #ifdef __cplusplus
  726. } /* END extern "C" */
  727. #endif
  728. #endif /* LIBMPDEC_MPDECIMAL_H_ */