Mercurial > hg > xemacs-beta
annotate src/number.c @ 4742:4cf435fcebbc
Make #'letf not error if handed a #'values form.
lisp/ChangeLog addition:
2009-11-14 Aidan Kehoe <kehoea@parhasard.net>
* cl-macs.el (letf):
Check whether arguments to #'values are bound, and make them
unbound after evaluating BODY; document the limitations of this
macro.
tests/ChangeLog addition:
2009-11-14 Aidan Kehoe <kehoea@parhasard.net>
* automated/lisp-tests.el:
Don't call Known-Bug-Expect-Failure now that the particular letf
bug it tickled is fixed.
| author | Aidan Kehoe <kehoea@parhasard.net> |
|---|---|
| date | Sat, 14 Nov 2009 11:43:09 +0000 |
| parents | b5e1d4f6b66f |
| children | 2fc0e2f18322 e0db3c197671 |
| rev | line source |
|---|---|
| 1983 | 1 /* Numeric types for XEmacs. |
| 2 Copyright (C) 2004 Jerry James. | |
| 3 | |
| 4 This file is part of XEmacs. | |
| 5 | |
| 6 XEmacs is free software; you can redistribute it and/or modify it | |
| 7 under the terms of the GNU General Public License as published by the | |
| 8 Free Software Foundation; either version 2, or (at your option) any | |
| 9 later version. | |
| 10 | |
| 11 XEmacs is distributed in the hope that it will be useful, but WITHOUT | |
| 12 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or | |
| 13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License | |
| 14 for more details. | |
| 15 | |
| 16 You should have received a copy of the GNU General Public License | |
| 17 along with XEmacs; see the file COPYING. If not, write to | |
| 18 the Free Software Foundation, Inc., 59 Temple Place - Suite 330, | |
| 19 Boston, MA 02111-1307, USA. */ | |
| 20 | |
| 21 /* Synched up with: Not in FSF. */ | |
| 22 | |
| 23 #include <config.h> | |
| 24 #include <limits.h> | |
| 25 #include "lisp.h" | |
| 26 | |
| 2595 | 27 #ifdef HAVE_BIGFLOAT |
| 28 #define USED_IF_BIGFLOAT(decl) decl | |
| 29 #else | |
| 30 #define USED_IF_BIGFLOAT(decl) UNUSED (decl) | |
| 31 #endif | |
| 32 | |
| 2001 | 33 Lisp_Object Qrationalp, Qfloatingp, Qrealp; |
| 1983 | 34 Lisp_Object Vdefault_float_precision; |
| 35 Fixnum Vmost_negative_fixnum, Vmost_positive_fixnum; | |
| 36 static Lisp_Object Qunsupported_type; | |
| 37 static Lisp_Object Vbigfloat_max_prec; | |
| 38 static int number_initialized; | |
| 39 | |
| 40 #ifdef HAVE_BIGNUM | |
| 41 bignum scratch_bignum, scratch_bignum2; | |
| 42 #endif | |
| 43 #ifdef HAVE_RATIO | |
|
4678
b5e1d4f6b66f
Make #'floor, #'ceiling, #'round, #'truncate conform to Common Lisp.
Aidan Kehoe <kehoea@parhasard.net>
parents:
3391
diff
changeset
|
44 ratio scratch_ratio, scratch_ratio2; |
| 1983 | 45 #endif |
| 46 #ifdef HAVE_BIGFLOAT | |
| 47 bigfloat scratch_bigfloat, scratch_bigfloat2; | |
| 48 #endif | |
| 49 | |
| 50 /********************************* Bignums **********************************/ | |
| 51 #ifdef HAVE_BIGNUM | |
| 52 static void | |
| 2286 | 53 bignum_print (Lisp_Object obj, Lisp_Object printcharfun, |
| 54 int UNUSED (escapeflag)) | |
| 1983 | 55 { |
| 56 CIbyte *bstr = bignum_to_string (XBIGNUM_DATA (obj), 10); | |
| 57 write_c_string (printcharfun, bstr); | |
| 58 xfree (bstr, CIbyte *); | |
| 59 } | |
| 60 | |
| 61 static int | |
| 2286 | 62 bignum_equal (Lisp_Object obj1, Lisp_Object obj2, int UNUSED (depth)) |
| 1983 | 63 { |
| 64 return bignum_eql (XBIGNUM_DATA (obj1), XBIGNUM_DATA (obj2)); | |
| 65 } | |
| 66 | |
| 67 static Hashcode | |
| 2286 | 68 bignum_hash (Lisp_Object obj, int UNUSED (depth)) |
| 1983 | 69 { |
| 70 return bignum_hashcode (XBIGNUM_DATA (obj)); | |
| 71 } | |
| 72 | |
| 2551 | 73 static void |
| 74 bignum_convert (const void *object, void **data, Bytecount *size) | |
| 75 { | |
| 76 CIbyte *bstr = bignum_to_string (*(bignum *)object, 10); | |
| 77 *data = bstr; | |
| 78 *size = strlen(bstr)+1; | |
| 79 } | |
| 80 | |
| 81 static void | |
| 82 bignum_convfree (const void * UNUSED (object), void *data, | |
| 83 Bytecount UNUSED (size)) | |
| 84 { | |
| 85 xfree (data, void *); | |
| 86 } | |
| 87 | |
| 88 static void * | |
| 89 bignum_deconvert (void *object, void *data, Bytecount UNUSED (size)) | |
| 90 { | |
| 91 bignum *b = (bignum *) object; | |
| 92 bignum_init(*b); | |
| 93 bignum_set_string(*b, (const char *) data, 10); | |
| 94 return object; | |
| 95 } | |
| 96 | |
| 97 static const struct opaque_convert_functions bignum_opc = { | |
| 98 bignum_convert, | |
| 99 bignum_convfree, | |
| 100 bignum_deconvert | |
| 101 }; | |
| 102 | |
| 1983 | 103 static const struct memory_description bignum_description[] = { |
| 2551 | 104 { XD_OPAQUE_DATA_CONVERTIBLE, offsetof (Lisp_Bignum, data), |
| 105 0, { &bignum_opc }, XD_FLAG_NO_KKCC }, | |
| 1983 | 106 { XD_END } |
| 107 }; | |
| 108 | |
| 2551 | 109 DEFINE_BASIC_LRECORD_IMPLEMENTATION ("bignum", bignum, 1, 0, bignum_print, |
| 2061 | 110 0, bignum_equal, bignum_hash, |
| 111 bignum_description, Lisp_Bignum); | |
| 1983 | 112 |
| 2092 | 113 #endif /* HAVE_BIGNUM */ |
| 1983 | 114 |
| 115 Lisp_Object Qbignump; | |
| 116 | |
| 117 DEFUN ("bignump", Fbignump, 1, 1, 0, /* | |
| 118 Return t if OBJECT is a bignum, nil otherwise. | |
| 119 */ | |
| 120 (object)) | |
| 121 { | |
| 122 return BIGNUMP (object) ? Qt : Qnil; | |
| 123 } | |
| 124 | |
| 125 | |
| 126 /********************************* Integers *********************************/ | |
| 127 DEFUN ("integerp", Fintegerp, 1, 1, 0, /* | |
| 128 Return t if OBJECT is an integer, nil otherwise. | |
| 129 */ | |
| 130 (object)) | |
| 131 { | |
| 132 return INTEGERP (object) ? Qt : Qnil; | |
| 133 } | |
| 134 | |
| 135 DEFUN ("evenp", Fevenp, 1, 1, 0, /* | |
| 136 Return t if INTEGER is even, nil otherwise. | |
| 137 */ | |
| 138 (integer)) | |
| 139 { | |
| 140 CONCHECK_INTEGER (integer); | |
| 1996 | 141 return (BIGNUMP (integer) |
| 142 ? bignum_evenp (XBIGNUM_DATA (integer)) | |
| 143 : XTYPE (integer) == Lisp_Type_Int_Even) ? Qt : Qnil; | |
| 1983 | 144 } |
| 145 | |
| 2019 | 146 DEFUN ("oddp", Foddp, 1, 1, 0, /* |
| 1983 | 147 Return t if INTEGER is odd, nil otherwise. |
| 148 */ | |
| 149 (integer)) | |
| 150 { | |
| 151 CONCHECK_INTEGER (integer); | |
| 1996 | 152 return (BIGNUMP (integer) |
| 153 ? bignum_oddp (XBIGNUM_DATA (integer)) | |
| 154 : XTYPE (integer) == Lisp_Type_Int_Odd) ? Qt : Qnil; | |
| 1983 | 155 } |
| 156 | |
| 157 | |
| 158 /********************************** Ratios **********************************/ | |
| 159 #ifdef HAVE_RATIO | |
| 160 static void | |
| 2286 | 161 ratio_print (Lisp_Object obj, Lisp_Object printcharfun, |
| 162 int UNUSED (escapeflag)) | |
| 1983 | 163 { |
| 164 CIbyte *rstr = ratio_to_string (XRATIO_DATA (obj), 10); | |
| 165 write_c_string (printcharfun, rstr); | |
| 166 xfree (rstr, CIbyte *); | |
| 167 } | |
| 168 | |
| 169 static int | |
| 2286 | 170 ratio_equal (Lisp_Object obj1, Lisp_Object obj2, int UNUSED (depth)) |
| 1983 | 171 { |
| 172 return ratio_eql (XRATIO_DATA (obj1), XRATIO_DATA (obj2)); | |
| 173 } | |
| 174 | |
| 175 static Hashcode | |
| 2286 | 176 ratio_hash (Lisp_Object obj, int UNUSED (depth)) |
| 1983 | 177 { |
| 178 return ratio_hashcode (XRATIO_DATA (obj)); | |
| 179 } | |
| 180 | |
| 181 static const struct memory_description ratio_description[] = { | |
| 182 { XD_OPAQUE_PTR, offsetof (Lisp_Ratio, data) }, | |
| 183 { XD_END } | |
| 184 }; | |
| 185 | |
| 2061 | 186 DEFINE_BASIC_LRECORD_IMPLEMENTATION ("ratio", ratio, 0, 0, ratio_print, |
| 187 0, ratio_equal, ratio_hash, | |
| 188 ratio_description, Lisp_Ratio); | |
| 1983 | 189 |
| 2092 | 190 #endif /* HAVE_RATIO */ |
| 1983 | 191 |
| 192 Lisp_Object Qratiop; | |
| 193 | |
| 194 DEFUN ("ratiop", Fratiop, 1, 1, 0, /* | |
| 195 Return t if OBJECT is a ratio, nil otherwise. | |
| 196 */ | |
| 197 (object)) | |
| 198 { | |
| 199 return RATIOP (object) ? Qt : Qnil; | |
| 200 } | |
| 201 | |
| 202 | |
| 203 /******************************** Rationals *********************************/ | |
| 204 DEFUN ("rationalp", Frationalp, 1, 1, 0, /* | |
| 205 Return t if OBJECT is a rational, nil otherwise. | |
| 206 */ | |
| 207 (object)) | |
| 208 { | |
| 209 return RATIONALP (object) ? Qt : Qnil; | |
| 210 } | |
| 211 | |
| 212 DEFUN ("numerator", Fnumerator, 1, 1, 0, /* | |
| 213 Return the numerator of the canonical form of RATIONAL. | |
| 214 If RATIONAL is an integer, RATIONAL is returned. | |
| 215 */ | |
| 216 (rational)) | |
| 217 { | |
| 218 CONCHECK_RATIONAL (rational); | |
| 219 #ifdef HAVE_RATIO | |
| 220 return RATIOP (rational) | |
| 221 ? make_bignum_bg (XRATIO_NUMERATOR (rational)) | |
| 222 : rational; | |
| 223 #else | |
| 224 return rational; | |
| 225 #endif | |
| 226 } | |
| 227 | |
| 228 DEFUN ("denominator", Fdenominator, 1, 1, 0, /* | |
| 229 Return the denominator of the canonical form of RATIONAL. | |
| 230 If RATIONAL is an integer, 1 is returned. | |
| 231 */ | |
| 232 (rational)) | |
| 233 { | |
| 234 CONCHECK_RATIONAL (rational); | |
| 235 #ifdef HAVE_RATIO | |
| 236 return RATIOP (rational) | |
| 237 ? make_bignum_bg (XRATIO_DENOMINATOR (rational)) | |
| 238 : make_int (1); | |
| 239 #else | |
| 240 return rational; | |
| 241 #endif | |
| 242 } | |
| 243 | |
| 244 | |
| 245 /******************************** Bigfloats *********************************/ | |
| 246 #ifdef HAVE_BIGFLOAT | |
| 247 static void | |
| 2286 | 248 bigfloat_print (Lisp_Object obj, Lisp_Object printcharfun, |
| 249 int UNUSED (escapeflag)) | |
| 1983 | 250 { |
| 251 CIbyte *fstr = bigfloat_to_string (XBIGFLOAT_DATA (obj), 10); | |
| 252 write_c_string (printcharfun, fstr); | |
| 253 xfree (fstr, CIbyte *); | |
| 254 } | |
| 255 | |
| 256 static int | |
| 2286 | 257 bigfloat_equal (Lisp_Object obj1, Lisp_Object obj2, int UNUSED (depth)) |
| 1983 | 258 { |
| 259 return bigfloat_eql (XBIGFLOAT_DATA (obj1), XBIGFLOAT_DATA (obj2)); | |
| 260 } | |
| 261 | |
| 262 static Hashcode | |
| 2286 | 263 bigfloat_hash (Lisp_Object obj, int UNUSED (depth)) |
| 1983 | 264 { |
| 265 return bigfloat_hashcode (XBIGFLOAT_DATA (obj)); | |
| 266 } | |
| 267 | |
| 268 static const struct memory_description bigfloat_description[] = { | |
| 269 { XD_OPAQUE_PTR, offsetof (Lisp_Bigfloat, bf) }, | |
| 270 { XD_END } | |
| 271 }; | |
| 272 | |
| 2061 | 273 DEFINE_BASIC_LRECORD_IMPLEMENTATION ("bigfloat", bigfloat, 1, 0, |
| 274 bigfloat_print, 0, | |
| 275 bigfloat_equal, bigfloat_hash, | |
| 276 bigfloat_description, Lisp_Bigfloat); | |
| 1983 | 277 |
| 2092 | 278 #endif /* HAVE_BIGFLOAT */ |
| 1983 | 279 |
| 280 Lisp_Object Qbigfloatp; | |
| 281 | |
| 282 DEFUN ("bigfloatp", Fbigfloatp, 1, 1, 0, /* | |
| 283 Return t if OBJECT is a bigfloat, nil otherwise. | |
| 284 */ | |
| 285 (object)) | |
| 286 { | |
| 287 return BIGFLOATP (object) ? Qt : Qnil; | |
| 288 } | |
| 289 | |
| 2092 | 290 DEFUN ("bigfloat-get-precision", Fbigfloat_get_precision, 1, 1, 0, /* |
| 291 Return the precision of bigfloat F as an integer. | |
| 292 */ | |
| 293 (f)) | |
| 294 { | |
| 295 CHECK_BIGFLOAT (f); | |
| 296 #ifdef HAVE_BIGNUM | |
| 297 bignum_set_ulong (scratch_bignum, XBIGFLOAT_GET_PREC (f)); | |
| 298 return Fcanonicalize_number (make_bignum_bg (scratch_bignum)); | |
| 299 #else | |
| 300 return make_int ((int) XBIGFLOAT_GET_PREC (f)); | |
| 301 #endif | |
| 302 } | |
| 303 | |
| 304 DEFUN ("bigfloat-set-precision", Fbigfloat_set_precision, 2, 2, 0, /* | |
| 305 Set the precision of F, a bigfloat, to PRECISION, a nonnegative integer. | |
| 306 The new precision of F is returned. Note that the return value may differ | |
| 307 from PRECISION if the underlying library is unable to support exactly | |
| 308 PRECISION bits of precision. | |
| 309 */ | |
| 310 (f, precision)) | |
| 311 { | |
| 312 unsigned long prec; | |
| 313 | |
| 314 CHECK_BIGFLOAT (f); | |
| 315 if (INTP (precision)) | |
| 316 { | |
| 317 prec = (XINT (precision) <= 0) ? 1UL : (unsigned long) XINT (precision); | |
| 318 } | |
| 319 #ifdef HAVE_BIGNUM | |
| 320 else if (BIGNUMP (precision)) | |
| 321 { | |
| 322 prec = bignum_fits_ulong_p (XBIGNUM_DATA (precision)) | |
| 323 ? bignum_to_ulong (XBIGNUM_DATA (precision)) | |
| 324 : UINT_MAX; | |
| 325 } | |
| 326 #endif | |
| 327 else | |
| 328 { | |
| 329 dead_wrong_type_argument (Qintegerp, f); | |
| 330 return Qnil; | |
| 331 } | |
| 332 | |
| 333 XBIGFLOAT_SET_PREC (f, prec); | |
| 334 return Fbigfloat_get_precision (f); | |
| 335 } | |
| 336 | |
| 1983 | 337 static int |
| 2286 | 338 default_float_precision_changed (Lisp_Object UNUSED (sym), Lisp_Object *val, |
| 339 Lisp_Object UNUSED (in_object), | |
| 340 int UNUSED (flags)) | |
| 1983 | 341 { |
| 342 unsigned long prec; | |
| 343 | |
| 344 CONCHECK_INTEGER (*val); | |
| 345 #ifdef HAVE_BIGFLOAT | |
| 346 if (INTP (*val)) | |
| 347 prec = XINT (*val); | |
| 348 else | |
| 349 { | |
| 350 if (!bignum_fits_ulong_p (XBIGNUM_DATA (*val))) | |
| 351 args_out_of_range_3 (*val, Qzero, Vbigfloat_max_prec); | |
| 352 prec = bignum_to_ulong (XBIGNUM_DATA (*val)); | |
| 353 } | |
| 354 if (prec != 0UL) | |
| 355 bigfloat_set_default_prec (prec); | |
| 356 #endif | |
| 357 return 0; | |
| 358 } | |
| 359 | |
| 360 | |
| 361 /********************************* Floating *********************************/ | |
| 362 Lisp_Object | |
| 363 make_floating (double d) | |
| 364 { | |
| 365 #ifdef HAVE_BIGFLOAT | |
| 366 if (ZEROP (Vdefault_float_precision)) | |
| 367 #endif | |
| 368 return make_float (d); | |
| 369 #ifdef HAVE_BIGFLOAT | |
| 370 else | |
| 371 return make_bigfloat (d, 0UL); | |
| 372 #endif | |
| 373 } | |
| 374 | |
| 375 DEFUN ("floatingp", Ffloatingp, 1, 1, 0, /* | |
| 376 Return t if OBJECT is a floating point number of any kind, nil otherwise. | |
| 377 */ | |
| 378 (object)) | |
| 379 { | |
| 380 return FLOATINGP (object) ? Qt : Qnil; | |
| 381 } | |
| 382 | |
| 383 | |
| 384 /********************************** Reals ***********************************/ | |
| 385 DEFUN ("realp", Frealp, 1, 1, 0, /* | |
| 386 Return t if OBJECT is a real, nil otherwise. | |
| 387 */ | |
| 388 (object)) | |
| 389 { | |
| 390 return REALP (object) ? Qt : Qnil; | |
| 391 } | |
| 392 | |
| 393 | |
| 394 /********************************* Numbers **********************************/ | |
| 395 DEFUN ("canonicalize-number", Fcanonicalize_number, 1, 1, 0, /* | |
| 396 Return the canonical form of NUMBER. | |
| 397 */ | |
| 398 (number)) | |
| 399 { | |
| 400 /* The tests should go in order from larger, more expressive, or more | |
| 401 complex types to smaller, less expressive, or simpler types so that a | |
| 402 number can cascade all the way down to the simplest type if | |
| 403 appropriate. */ | |
| 404 #ifdef HAVE_RATIO | |
| 405 if (RATIOP (number) && | |
| 406 bignum_fits_long_p (XRATIO_DENOMINATOR (number)) && | |
| 407 bignum_to_long (XRATIO_DENOMINATOR (number)) == 1L) | |
| 408 number = make_bignum_bg (XRATIO_NUMERATOR (number)); | |
| 409 #endif | |
| 410 #ifdef HAVE_BIGNUM | |
| 3391 | 411 if (BIGNUMP (number) && bignum_fits_emacs_int_p (XBIGNUM_DATA (number))) |
| 1983 | 412 { |
| 3391 | 413 EMACS_INT n = bignum_to_emacs_int (XBIGNUM_DATA (number)); |
| 1983 | 414 if (NUMBER_FITS_IN_AN_EMACS_INT (n)) |
| 415 number = make_int (n); | |
| 416 } | |
| 417 #endif | |
| 418 return number; | |
| 419 } | |
| 420 | |
| 421 enum number_type | |
| 422 get_number_type (Lisp_Object arg) | |
| 423 { | |
| 424 if (INTP (arg)) | |
| 425 return FIXNUM_T; | |
| 426 #ifdef HAVE_BIGNUM | |
| 427 if (BIGNUMP (arg)) | |
| 428 return BIGNUM_T; | |
| 429 #endif | |
| 430 #ifdef HAVE_RATIO | |
| 431 if (RATIOP (arg)) | |
| 432 return RATIO_T; | |
| 433 #endif | |
| 434 if (FLOATP (arg)) | |
| 435 return FLOAT_T; | |
| 436 #ifdef HAVE_BIGFLOAT | |
| 437 if (BIGFLOATP (arg)) | |
| 438 return BIGFLOAT_T; | |
| 439 #endif | |
| 440 /* Catch unintentional bad uses of this function */ | |
| 2500 | 441 ABORT (); |
| 1995 | 442 /* NOTREACHED */ |
| 443 return FIXNUM_T; | |
| 1983 | 444 } |
| 445 | |
| 446 /* Convert NUMBER to type TYPE. If TYPE is BIGFLOAT_T then use the indicated | |
| 447 PRECISION; otherwise, PRECISION is ignored. */ | |
| 448 static Lisp_Object | |
| 449 internal_coerce_number (Lisp_Object number, enum number_type type, | |
| 2286 | 450 #ifdef HAVE_BIGFLOAT |
| 451 unsigned long precision | |
| 452 #else | |
| 453 unsigned long UNUSED (precision) | |
| 454 #endif | |
| 455 ) | |
| 1983 | 456 { |
| 457 enum number_type current_type; | |
| 458 | |
| 459 if (CHARP (number)) | |
| 460 number = make_int (XCHAR (number)); | |
| 461 else if (MARKERP (number)) | |
| 462 number = make_int (marker_position (number)); | |
| 463 | |
| 464 /* Note that CHECK_NUMBER ensures that NUMBER is a supported type. Hence, | |
| 2500 | 465 we ABORT() in the #else sections below, because it shouldn't be possible |
| 1983 | 466 to arrive there. */ |
| 467 CHECK_NUMBER (number); | |
| 468 current_type = get_number_type (number); | |
| 469 switch (current_type) | |
| 470 { | |
| 471 case FIXNUM_T: | |
| 472 switch (type) | |
| 473 { | |
| 474 case FIXNUM_T: | |
| 475 return number; | |
| 476 case BIGNUM_T: | |
| 477 #ifdef HAVE_BIGNUM | |
| 478 return make_bignum (XREALINT (number)); | |
| 479 #else | |
| 2500 | 480 ABORT (); |
| 1983 | 481 #endif /* HAVE_BIGNUM */ |
| 482 case RATIO_T: | |
| 483 #ifdef HAVE_RATIO | |
| 484 return make_ratio (XREALINT (number), 1UL); | |
| 485 #else | |
| 2500 | 486 ABORT (); |
| 1983 | 487 #endif /* HAVE_RATIO */ |
| 488 case FLOAT_T: | |
| 489 return make_float (XREALINT (number)); | |
| 490 case BIGFLOAT_T: | |
| 491 #ifdef HAVE_BIGFLOAT | |
| 492 return make_bigfloat (XREALINT (number), precision); | |
| 493 #else | |
| 2500 | 494 ABORT (); |
| 1983 | 495 #endif /* HAVE_BIGFLOAT */ |
| 496 } | |
| 497 case BIGNUM_T: | |
| 498 #ifdef HAVE_BIGNUM | |
| 499 switch (type) | |
| 500 { | |
| 501 case FIXNUM_T: | |
| 502 return make_int (bignum_to_long (XBIGNUM_DATA (number))); | |
| 503 case BIGNUM_T: | |
| 504 return number; | |
| 505 case RATIO_T: | |
| 506 #ifdef HAVE_RATIO | |
| 507 bignum_set_long (scratch_bignum, 1L); | |
| 508 return make_ratio_bg (XBIGNUM_DATA (number), scratch_bignum); | |
| 509 #else | |
| 2500 | 510 ABORT (); |
| 1983 | 511 #endif /* HAVE_RATIO */ |
| 512 case FLOAT_T: | |
| 513 return make_float (bignum_to_double (XBIGNUM_DATA (number))); | |
| 514 case BIGFLOAT_T: | |
| 515 #ifdef HAVE_BIGFLOAT | |
| 516 { | |
| 517 Lisp_Object temp; | |
| 518 temp = make_bigfloat (0.0, precision); | |
| 519 bigfloat_set_bignum (XBIGFLOAT_DATA (temp), XBIGNUM_DATA (number)); | |
| 520 return temp; | |
| 521 } | |
| 522 #else | |
| 2500 | 523 ABORT (); |
| 1983 | 524 #endif /* HAVE_BIGFLOAT */ |
| 525 } | |
| 526 #else | |
| 2500 | 527 ABORT (); |
| 1983 | 528 #endif /* HAVE_BIGNUM */ |
| 529 case RATIO_T: | |
| 530 #ifdef HAVE_RATIO | |
| 531 switch (type) | |
| 532 { | |
| 533 case FIXNUM_T: | |
| 534 bignum_div (scratch_bignum, XRATIO_NUMERATOR (number), | |
| 535 XRATIO_DENOMINATOR (number)); | |
| 536 return make_int (bignum_to_long (scratch_bignum)); | |
| 537 case BIGNUM_T: | |
| 538 bignum_div (scratch_bignum, XRATIO_NUMERATOR (number), | |
| 539 XRATIO_DENOMINATOR (number)); | |
| 540 return make_bignum_bg (scratch_bignum); | |
| 541 case RATIO_T: | |
| 542 return number; | |
| 543 case FLOAT_T: | |
| 544 return make_float (ratio_to_double (XRATIO_DATA (number))); | |
| 545 case BIGFLOAT_T: | |
| 546 #ifdef HAVE_BIGFLOAT | |
| 547 { | |
| 548 Lisp_Object temp; | |
| 549 temp = make_bigfloat (0.0, precision); | |
| 550 bigfloat_set_ratio (XBIGFLOAT_DATA (temp), XRATIO_DATA (number)); | |
| 551 return temp; | |
| 552 } | |
| 553 #else | |
| 2500 | 554 ABORT (); |
| 1983 | 555 #endif /* HAVE_BIGFLOAT */ |
| 556 } | |
| 557 #else | |
| 2500 | 558 ABORT (); |
| 1983 | 559 #endif /* HAVE_RATIO */ |
| 560 case FLOAT_T: | |
| 561 switch (type) | |
| 562 { | |
| 563 case FIXNUM_T: | |
|
4678
b5e1d4f6b66f
Make #'floor, #'ceiling, #'round, #'truncate conform to Common Lisp.
Aidan Kehoe <kehoea@parhasard.net>
parents:
3391
diff
changeset
|
564 return Ftruncate (number, Qnil); |
| 1983 | 565 case BIGNUM_T: |
| 566 #ifdef HAVE_BIGNUM | |
| 567 bignum_set_double (scratch_bignum, XFLOAT_DATA (number)); | |
| 568 return make_bignum_bg (scratch_bignum); | |
| 569 #else | |
| 2500 | 570 ABORT (); |
| 1983 | 571 #endif /* HAVE_BIGNUM */ |
| 572 case RATIO_T: | |
| 573 #ifdef HAVE_RATIO | |
| 574 ratio_set_double (scratch_ratio, XFLOAT_DATA (number)); | |
| 575 return make_ratio_rt (scratch_ratio); | |
| 576 #else | |
| 2500 | 577 ABORT (); |
| 1983 | 578 #endif /* HAVE_RATIO */ |
| 579 case FLOAT_T: | |
| 580 return number; | |
| 581 case BIGFLOAT_T: | |
| 582 #ifdef HAVE_BIGFLOAT | |
| 583 bigfloat_set_prec (scratch_bigfloat, precision); | |
| 584 bigfloat_set_double (scratch_bigfloat, XFLOAT_DATA (number)); | |
| 585 return make_bigfloat_bf (scratch_bigfloat); | |
| 586 #else | |
| 2500 | 587 ABORT (); |
| 1983 | 588 #endif /* HAVE_BIGFLOAT */ |
| 589 } | |
| 590 case BIGFLOAT_T: | |
| 591 #ifdef HAVE_BIGFLOAT | |
| 592 switch (type) | |
| 593 { | |
| 594 case FIXNUM_T: | |
| 595 return make_int (bigfloat_to_long (XBIGFLOAT_DATA (number))); | |
| 596 case BIGNUM_T: | |
| 597 #ifdef HAVE_BIGNUM | |
| 598 bignum_set_bigfloat (scratch_bignum, XBIGFLOAT_DATA (number)); | |
| 599 return make_bignum_bg (scratch_bignum); | |
| 600 #else | |
| 2500 | 601 ABORT (); |
| 1983 | 602 #endif /* HAVE_BIGNUM */ |
| 603 case RATIO_T: | |
| 604 #ifdef HAVE_RATIO | |
| 605 ratio_set_bigfloat (scratch_ratio, XBIGFLOAT_DATA (number)); | |
| 606 return make_ratio_rt (scratch_ratio); | |
| 607 #else | |
| 2500 | 608 ABORT (); |
| 1983 | 609 #endif |
| 610 case FLOAT_T: | |
| 611 return make_float (bigfloat_to_double (XBIGFLOAT_DATA (number))); | |
| 612 case BIGFLOAT_T: | |
| 613 /* FIXME: Do we need to change the precision? */ | |
| 614 return number; | |
| 615 } | |
| 616 #else | |
| 2500 | 617 ABORT (); |
| 1983 | 618 #endif /* HAVE_BIGFLOAT */ |
| 619 } | |
| 2500 | 620 ABORT (); |
| 1995 | 621 /* NOTREACHED */ |
| 622 return Qzero; | |
| 1983 | 623 } |
| 624 | |
| 625 /* This function promotes its arguments as necessary to make them both the | |
| 626 same type. It destructively modifies its arguments to do so. Characters | |
| 627 and markers are ALWAYS converted to integers. */ | |
| 628 enum number_type | |
| 629 promote_args (Lisp_Object *arg1, Lisp_Object *arg2) | |
| 630 { | |
| 631 enum number_type type1, type2; | |
| 632 | |
| 633 if (CHARP (*arg1)) | |
| 634 *arg1 = make_int (XCHAR (*arg1)); | |
| 635 else if (MARKERP (*arg1)) | |
| 636 *arg1 = make_int (marker_position (*arg1)); | |
| 637 if (CHARP (*arg2)) | |
| 638 *arg2 = make_int (XCHAR (*arg2)); | |
| 639 else if (MARKERP (*arg2)) | |
| 640 *arg2 = make_int (marker_position (*arg2)); | |
| 641 | |
| 642 CHECK_NUMBER (*arg1); | |
| 643 CHECK_NUMBER (*arg2); | |
| 644 | |
| 645 type1 = get_number_type (*arg1); | |
| 646 type2 = get_number_type (*arg2); | |
| 647 | |
| 648 if (type1 < type2) | |
| 649 { | |
| 650 *arg1 = internal_coerce_number (*arg1, type2, | |
| 651 #ifdef HAVE_BIGFLOAT | |
| 652 type2 == BIGFLOAT_T | |
| 653 ? XBIGFLOAT_GET_PREC (*arg2) : | |
| 654 #endif | |
| 655 0UL); | |
| 656 return type2; | |
| 657 } | |
| 658 | |
| 659 if (type2 < type1) | |
| 660 { | |
| 661 *arg2 = internal_coerce_number (*arg2, type1, | |
| 662 #ifdef HAVE_BIGFLOAT | |
| 663 type1 == BIGFLOAT_T | |
| 664 ? XBIGFLOAT_GET_PREC (*arg1) : | |
| 665 #endif | |
| 666 0UL); | |
| 667 return type1; | |
| 668 } | |
| 669 | |
| 670 /* No conversion necessary */ | |
| 671 return type1; | |
| 672 } | |
| 673 | |
| 674 DEFUN ("coerce-number", Fcoerce_number, 2, 3, 0, /* | |
| 675 Convert NUMBER to the indicated type, possibly losing information. | |
| 676 Do not call this function. Use `coerce' instead. | |
| 677 | |
| 3025 | 678 TYPE is one of the symbols `fixnum', `integer', `ratio', `float', or |
| 679 `bigfloat'. Not all of these types may be supported. | |
| 1983 | 680 |
| 681 PRECISION is the number of bits of precision to use when converting to | |
| 682 bigfloat; it is ignored otherwise. If nil, the default precision is used. | |
| 683 | |
| 684 Note that some conversions lose information. No error is signaled in such | |
| 685 cases; the information is silently lost. | |
| 686 */ | |
| 2595 | 687 (number, type, USED_IF_BIGFLOAT (precision))) |
| 1983 | 688 { |
| 689 CHECK_SYMBOL (type); | |
| 690 if (EQ (type, Qfixnum)) | |
| 691 return internal_coerce_number (number, FIXNUM_T, 0UL); | |
| 692 else if (EQ (type, Qinteger)) | |
| 693 { | |
| 694 /* If bignums are available, we always convert to one first, then | |
| 695 downgrade to a fixnum if possible. */ | |
| 696 #ifdef HAVE_BIGNUM | |
| 697 return Fcanonicalize_number | |
| 698 (internal_coerce_number (number, BIGNUM_T, 0UL)); | |
| 699 #else | |
| 700 return internal_coerce_number (number, FIXNUM_T, 0UL); | |
| 701 #endif | |
| 702 } | |
| 703 #ifdef HAVE_RATIO | |
| 704 else if (EQ (type, Qratio)) | |
| 705 return internal_coerce_number (number, RATIO_T, 0UL); | |
| 706 #endif | |
| 707 else if (EQ (type, Qfloat)) | |
| 708 return internal_coerce_number (number, FLOAT_T, 0UL); | |
| 709 #ifdef HAVE_BIGFLOAT | |
| 710 else if (EQ (type, Qbigfloat)) | |
| 711 { | |
| 712 unsigned long prec; | |
| 713 | |
| 714 if (NILP (precision)) | |
| 715 prec = bigfloat_get_default_prec (); | |
| 716 else | |
| 717 { | |
| 718 CHECK_INTEGER (precision); | |
| 719 #ifdef HAVE_BIGNUM | |
| 720 if (INTP (precision)) | |
| 721 #endif /* HAVE_BIGNUM */ | |
| 722 prec = (unsigned long) XREALINT (precision); | |
| 723 #ifdef HAVE_BIGNUM | |
| 724 else | |
| 725 { | |
| 726 if (!bignum_fits_ulong_p (XBIGNUM_DATA (precision))) | |
| 727 args_out_of_range (precision, Vbigfloat_max_prec); | |
| 728 prec = bignum_to_ulong (XBIGNUM_DATA (precision)); | |
| 729 } | |
| 730 #endif /* HAVE_BIGNUM */ | |
| 731 } | |
| 732 return internal_coerce_number (number, BIGFLOAT_T, prec); | |
| 733 } | |
| 734 #endif /* HAVE_BIGFLOAT */ | |
| 735 | |
| 736 Fsignal (Qunsupported_type, type); | |
| 737 /* NOTREACHED */ | |
| 738 return Qnil; | |
| 739 } | |
| 740 | |
| 741 | |
| 742 void | |
| 743 syms_of_number (void) | |
| 744 { | |
| 745 #ifdef HAVE_BIGNUM | |
| 746 INIT_LRECORD_IMPLEMENTATION (bignum); | |
| 747 #endif | |
| 748 #ifdef HAVE_RATIO | |
| 749 INIT_LRECORD_IMPLEMENTATION (ratio); | |
| 750 #endif | |
| 751 #ifdef HAVE_BIGFLOAT | |
| 752 INIT_LRECORD_IMPLEMENTATION (bigfloat); | |
| 753 #endif | |
| 754 | |
| 755 /* Type predicates */ | |
| 756 DEFSYMBOL (Qrationalp); | |
| 757 DEFSYMBOL (Qfloatingp); | |
| 758 DEFSYMBOL (Qrealp); | |
| 759 DEFSYMBOL (Qbignump); | |
| 760 DEFSYMBOL (Qratiop); | |
| 761 DEFSYMBOL (Qbigfloatp); | |
| 762 | |
| 763 /* Functions */ | |
| 764 DEFSUBR (Fbignump); | |
| 765 DEFSUBR (Fintegerp); | |
| 766 DEFSUBR (Fevenp); | |
| 767 DEFSUBR (Foddp); | |
| 768 DEFSUBR (Fratiop); | |
| 769 DEFSUBR (Frationalp); | |
| 770 DEFSUBR (Fnumerator); | |
| 771 DEFSUBR (Fdenominator); | |
| 772 DEFSUBR (Fbigfloatp); | |
| 2092 | 773 DEFSUBR (Fbigfloat_get_precision); |
| 774 DEFSUBR (Fbigfloat_set_precision); | |
| 2001 | 775 DEFSUBR (Ffloatingp); |
| 1983 | 776 DEFSUBR (Frealp); |
| 777 DEFSUBR (Fcanonicalize_number); | |
| 778 DEFSUBR (Fcoerce_number); | |
| 779 | |
| 780 /* Errors */ | |
| 781 DEFERROR_STANDARD (Qunsupported_type, Qwrong_type_argument); | |
| 782 } | |
| 783 | |
| 784 void | |
| 785 vars_of_number (void) | |
| 786 { | |
| 2051 | 787 /* These variables are Lisp variables rather than number variables so that |
| 788 we can put bignums in them. */ | |
| 1983 | 789 DEFVAR_LISP_MAGIC ("default-float-precision", &Vdefault_float_precision, /* |
| 790 The default floating-point precision for newly created floating point values. | |
| 2092 | 791 This should be 0 to create Lisp float types, or an unsigned integer no greater |
| 792 than `bigfloat-maximum-precision' to create Lisp bigfloat types with the | |
| 793 indicated precision. | |
| 1983 | 794 */ default_float_precision_changed); |
| 795 Vdefault_float_precision = make_int (0); | |
| 796 | |
| 2092 | 797 DEFVAR_CONST_LISP ("bigfloat-maximum-precision", &Vbigfloat_max_prec /* |
| 1983 | 798 The maximum number of bits of precision a bigfloat can have. |
| 2092 | 799 This is determined by the underlying library used to implement bigfloats. |
| 1983 | 800 */); |
| 801 | |
| 2061 | 802 #ifdef HAVE_BIGFLOAT |
| 803 #ifdef HAVE_BIGNUM | |
| 804 Vbigfloat_max_prec = make_bignum (0L); | |
| 805 bignum_set_ulong (XBIGNUM_DATA (Vbigfloat_max_prec), ULONG_MAX); | |
| 2051 | 806 #else |
| 2061 | 807 Vbigfloat_max_prec = make_int (EMACS_INT_MAX); |
| 808 #endif | |
| 809 #else | |
| 2051 | 810 Vbigfloat_max_prec = make_int (0); |
| 811 #endif /* HAVE_BIGFLOAT */ | |
| 812 | |
| 1983 | 813 DEFVAR_CONST_INT ("most-negative-fixnum", &Vmost_negative_fixnum /* |
| 814 The fixnum closest in value to negative infinity. | |
| 815 */); | |
| 816 Vmost_negative_fixnum = EMACS_INT_MIN; | |
| 817 | |
| 818 DEFVAR_CONST_INT ("most-positive-fixnum", &Vmost_positive_fixnum /* | |
| 819 The fixnum closest in value to positive infinity. | |
| 820 */); | |
| 821 Vmost_positive_fixnum = EMACS_INT_MAX; | |
| 822 | |
| 823 Fprovide (intern ("number-types")); | |
| 824 #ifdef HAVE_BIGNUM | |
| 825 Fprovide (intern ("bignum")); | |
| 826 #endif | |
| 827 #ifdef HAVE_RATIO | |
| 828 Fprovide (intern ("ratio")); | |
| 829 #endif | |
| 830 #ifdef HAVE_BIGFLOAT | |
| 831 Fprovide (intern ("bigfloat")); | |
| 832 #endif | |
| 833 } | |
| 834 | |
| 835 void | |
| 836 init_number (void) | |
| 837 { | |
| 838 if (!number_initialized) | |
| 839 { | |
| 840 number_initialized = 1; | |
| 841 | |
| 842 #ifdef WITH_GMP | |
| 843 init_number_gmp (); | |
| 844 #endif | |
| 845 #ifdef WITH_MP | |
| 846 init_number_mp (); | |
| 847 #endif | |
| 848 | |
| 849 #ifdef HAVE_BIGNUM | |
| 850 bignum_init (scratch_bignum); | |
| 851 bignum_init (scratch_bignum2); | |
| 852 #endif | |
| 853 | |
| 854 #ifdef HAVE_RATIO | |
| 855 ratio_init (scratch_ratio); | |
|
4678
b5e1d4f6b66f
Make #'floor, #'ceiling, #'round, #'truncate conform to Common Lisp.
Aidan Kehoe <kehoea@parhasard.net>
parents:
3391
diff
changeset
|
856 ratio_init (scratch_ratio2); |
| 1983 | 857 #endif |
| 858 | |
| 859 #ifdef HAVE_BIGFLOAT | |
| 860 bigfloat_init (scratch_bigfloat); | |
| 861 bigfloat_init (scratch_bigfloat2); | |
| 862 #endif | |
| 863 } | |
| 864 } |
