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[bpt/guile.git] / libguile / ramap.c
CommitLineData
e4b265d8 1/* Copyright (C) 1996,1998,2000,2001 Free Software Foundation, Inc.
0f2d19dd 2 *
73be1d9e
MV
3 * This library is free software; you can redistribute it and/or
4 * modify it under the terms of the GNU Lesser General Public
5 * License as published by the Free Software Foundation; either
6 * version 2.1 of the License, or (at your option) any later version.
0f2d19dd 7 *
73be1d9e
MV
8 * This library is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11 * Lesser General Public License for more details.
0f2d19dd 12 *
73be1d9e
MV
13 * You should have received a copy of the GNU Lesser General Public
14 * License along with this library; if not, write to the Free Software
15 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
16 */
1bbd0b84 17
1bbd0b84 18
c209c88e
GB
19/*
20 HWN:FIXME::
21 Someone should rename this to arraymap.c; that would reflect the
22 contents better. */
0f2d19dd
JB
23\f
24
25
26\f
27
a0599745 28#include "libguile/_scm.h"
405aaef9 29#include "libguile/strings.h"
a0599745
MD
30#include "libguile/unif.h"
31#include "libguile/smob.h"
32#include "libguile/chars.h"
33#include "libguile/eq.h"
34#include "libguile/eval.h"
35#include "libguile/feature.h"
36#include "libguile/root.h"
37#include "libguile/vectors.h"
38
39#include "libguile/validate.h"
40#include "libguile/ramap.h"
0f2d19dd
JB
41\f
42
0f2d19dd
JB
43typedef struct
44{
45 char *name;
46 SCM sproc;
47 int (*vproc) ();
48} ra_iproc;
49
ad310508
MD
50
51/* These tables are a kluge that will not scale well when more
52 * vectorized subrs are added. It is tempting to steal some bits from
53 * the SCM_CAR of all subrs (like those selected by SCM_SMOBNUM) to hold an
54 * offset into a table of vectorized subrs.
55 */
56
57static ra_iproc ra_rpsubrs[] =
58{
59 {"=", SCM_UNDEFINED, scm_ra_eqp},
60 {"<", SCM_UNDEFINED, scm_ra_lessp},
61 {"<=", SCM_UNDEFINED, scm_ra_leqp},
62 {">", SCM_UNDEFINED, scm_ra_grp},
63 {">=", SCM_UNDEFINED, scm_ra_greqp},
64 {0, 0, 0}
65};
66
67static ra_iproc ra_asubrs[] =
68{
69 {"+", SCM_UNDEFINED, scm_ra_sum},
70 {"-", SCM_UNDEFINED, scm_ra_difference},
71 {"*", SCM_UNDEFINED, scm_ra_product},
72 {"/", SCM_UNDEFINED, scm_ra_divide},
73 {0, 0, 0}
74};
75
0f2d19dd 76
0f2d19dd
JB
77
78/* Fast, recycling scm_vector ref */
79#define RVREF(ra, i, e) (e = scm_cvref(ra, i, e))
80
81/* #define RVREF(ra, i, e) (scm_cvref(ra, i, SCM_UNDEFINED)) to turn off */
82
83/* IVDEP means "ignore scm_vector dependencies", meaning we guarantee that
84 elements of scm_vector operands are not aliased */
85#ifdef _UNICOS
86#define IVDEP(test, line) if (test) {_Pragma("ivdep"); line} else {line}
87#else
88#define IVDEP(test, line) line
89#endif
90
91\f
92
93/* inds must be a uvect or ivect, no check. */
94
1cc91f1b 95
c209c88e
GB
96
97/*
98 Yes, this is really ugly, but it prevents multiple code
99 */
100#define BINARY_ELTS_CODE(OPERATOR, type) \
101do { type *v0 = (type*)SCM_VELTS (ra0);\
102 type *v1 = (type*)SCM_VELTS (ra1);\
103 IVDEP (ra0 != ra1, \
104 for (; n-- > 0; i0 += inc0, i1 += inc1) \
105 v0[i0] OPERATOR v1[i1];) \
c209c88e
GB
106} while (0)
107
108/* This macro is used for all but binary division and
109 multiplication of complex numbers -- see the expanded
110 version in the functions later in this file */
111#define BINARY_PAIR_ELTS_CODE(OPERATOR, type) \
112do { type (*v0)[2] = (type (*)[2]) SCM_VELTS (ra0);\
113 type (*v1)[2] = (type (*)[2]) SCM_VELTS (ra1);\
114 IVDEP (ra0 != ra1, \
115 for (; n-- > 0; i0 += inc0, i1 += inc1) {\
116 v0[i0][0] OPERATOR v1[i1][0]; \
117 v0[i0][1] OPERATOR v1[i1][1]; \
118 }) \
c209c88e
GB
119} while (0)
120
121#define UNARY_ELTS_CODE(OPERATOR, type) \
122 do { type *v0 = (type *) SCM_VELTS (ra0);\
123 for (; n-- > 0; i0 += inc0) \
124 v0[i0] OPERATOR v0[i0];\
c209c88e
GB
125 } while (0)
126
127
128/* This macro is used for all but unary divison
129 of complex numbers -- see the expanded version in the
130 function later in this file. */
131#define UNARY_PAIR_ELTS_CODE(OPERATOR, type) \
132 do { type (*v0)[2] = (type (*)[2]) SCM_VELTS (ra0);\
133 for (; n-- > 0; i0 += inc0) {\
134 v0[i0][0] OPERATOR v0[i0][0];\
135 v0[i0][1] OPERATOR v0[i0][1];\
136 }\
137 break;\
138 } while (0)
139
c014a02e 140static unsigned long
1bbd0b84 141cind (SCM ra, SCM inds)
0f2d19dd 142{
c014a02e 143 unsigned long i;
0f2d19dd 144 int k;
c014a02e 145 long *ve = (long*) SCM_VELTS (inds);
0f2d19dd
JB
146 if (!SCM_ARRAYP (ra))
147 return *ve;
148 i = SCM_ARRAY_BASE (ra);
149 for (k = 0; k < SCM_ARRAY_NDIM (ra); k++)
150 i += (ve[k] - SCM_ARRAY_DIMS (ra)[k].lbnd) * SCM_ARRAY_DIMS (ra)[k].inc;
151 return i;
152}
153
154
155/* Checker for scm_array mapping functions:
156 return values: 4 --> shapes, increments, and bases are the same;
157 3 --> shapes and increments are the same;
158 2 --> shapes are the same;
159 1 --> ras are at least as big as ra0;
160 0 --> no match.
161 */
1cc91f1b 162
0f2d19dd 163int
6e8d25a6 164scm_ra_matchp (SCM ra0, SCM ras)
0f2d19dd
JB
165{
166 SCM ra1;
92c2555f
MV
167 scm_t_array_dim dims;
168 scm_t_array_dim *s0 = &dims;
169 scm_t_array_dim *s1;
c014a02e 170 unsigned long bas0 = 0;
0f2d19dd
JB
171 int i, ndim = 1;
172 int exact = 2 /* 4 */ ; /* Don't care about values >2 (yet?) */
ff467021 173 if (SCM_IMP (ra0)) return 0;
0f2d19dd 174 switch (SCM_TYP7 (ra0))
c209c88e
GB
175 {
176 default:
177 return 0;
178 case scm_tc7_vector:
179 case scm_tc7_wvect:
180 case scm_tc7_string:
181 case scm_tc7_byvect:
182 case scm_tc7_bvect:
183 case scm_tc7_uvect:
184 case scm_tc7_ivect:
185 case scm_tc7_svect:
473d94b4 186#if SCM_SIZEOF_LONG_LONG != 0
c209c88e 187 case scm_tc7_llvect:
05f92e0f 188#endif
c209c88e
GB
189 case scm_tc7_fvect:
190 case scm_tc7_dvect:
191 case scm_tc7_cvect:
192 s0->lbnd = 0;
193 s0->inc = 1;
b226e5f6 194 s0->ubnd = SCM_INUM (scm_uniform_vector_length (ra0)) - 1;
c209c88e
GB
195 break;
196 case scm_tc7_smob:
197 if (!SCM_ARRAYP (ra0))
198 return 0;
199 ndim = SCM_ARRAY_NDIM (ra0);
200 s0 = SCM_ARRAY_DIMS (ra0);
201 bas0 = SCM_ARRAY_BASE (ra0);
202 break;
203 }
368cf54d 204 while (SCM_NIMP (ras))
c209c88e
GB
205 {
206 ra1 = SCM_CAR (ras);
207 if (SCM_IMP (ra1))
208 return 0;
209 switch SCM_TYP7
210 (ra1)
211 {
212 default:
213 return 0;
214 case scm_tc7_vector:
215 case scm_tc7_wvect:
216 case scm_tc7_string:
217 case scm_tc7_byvect:
218 case scm_tc7_bvect:
219 case scm_tc7_uvect:
220 case scm_tc7_ivect:
221 case scm_tc7_svect:
473d94b4 222#if SCM_SIZEOF_LONG_LONG != 0
c209c88e 223 case scm_tc7_llvect:
05f92e0f 224#endif
c209c88e
GB
225 case scm_tc7_fvect:
226 case scm_tc7_dvect:
227 case scm_tc7_cvect:
b226e5f6 228 {
c014a02e 229 unsigned long int length;
b226e5f6
DH
230
231 if (1 != ndim)
232 return 0;
233
234 length = SCM_INUM (scm_uniform_vector_length (ra1));
235
236 switch (exact)
237 {
238 case 4:
239 if (0 != bas0)
240 exact = 3;
241 case 3:
242 if (1 != s0->inc)
243 exact = 2;
244 case 2:
245 if ((0 == s0->lbnd) && (s0->ubnd == length - 1))
246 break;
247 exact = 1;
248 case 1:
249 if (s0->lbnd < 0 || s0->ubnd >= length)
250 return 0;
251 }
252 break;
253 }
c209c88e
GB
254 case scm_tc7_smob:
255 if (!SCM_ARRAYP (ra1) || ndim != SCM_ARRAY_NDIM (ra1))
256 return 0;
257 s1 = SCM_ARRAY_DIMS (ra1);
258 if (bas0 != SCM_ARRAY_BASE (ra1))
259 exact = 3;
260 for (i = 0; i < ndim; i++)
261 switch (exact)
262 {
263 case 4:
264 case 3:
265 if (s0[i].inc != s1[i].inc)
266 exact = 2;
267 case 2:
268 if (s0[i].lbnd == s1[i].lbnd && s0[i].ubnd == s1[i].ubnd)
269 break;
270 exact = 1;
271 default:
272 if (s0[i].lbnd < s1[i].lbnd || s0[i].ubnd > s1[i].ubnd)
273 return (s0[i].lbnd <= s0[i].ubnd ? 0 : 1);
274 }
275 break;
276 }
277 ras = SCM_CDR (ras);
278 }
0f2d19dd
JB
279 return exact;
280}
281
1bbd0b84
GB
282/* array mapper: apply cproc to each dimension of the given arrays?.
283 int (*cproc) (); procedure to call on unrolled arrays?
5c11cc9d 284 cproc (dest, source list) or
1bbd0b84
GB
285 cproc (dest, data, source list).
286 SCM data; data to give to cproc or unbound.
287 SCM ra0; destination array.
288 SCM lra; list of source arrays.
289 const char *what; caller, for error reporting. */
290int
291scm_ramapc (int (*cproc)(), SCM data, SCM ra0, SCM lra, const char *what)
0f2d19dd
JB
292{
293 SCM inds, z;
294 SCM vra0, ra1, vra1;
295 SCM lvra, *plvra;
c014a02e 296 long *vinds;
0f2d19dd
JB
297 int k, kmax;
298 switch (scm_ra_matchp (ra0, lra))
299 {
300 default:
301 case 0:
9cf5d9b7 302 scm_misc_error (what, "array shape mismatch: ~S", scm_list_1 (ra0));
0f2d19dd
JB
303 case 2:
304 case 3:
305 case 4: /* Try unrolling arrays */
306 kmax = (SCM_ARRAYP (ra0) ? SCM_ARRAY_NDIM (ra0) - 1 : 0);
307 if (kmax < 0)
308 goto gencase;
309 vra0 = scm_array_contents (ra0, SCM_UNDEFINED);
ff467021 310 if (SCM_IMP (vra0)) goto gencase;
0f2d19dd
JB
311 if (!SCM_ARRAYP (vra0))
312 {
c014a02e 313 unsigned long int length = SCM_INUM (scm_uniform_vector_length (vra0));
0f2d19dd
JB
314 vra1 = scm_make_ra (1);
315 SCM_ARRAY_BASE (vra1) = 0;
316 SCM_ARRAY_DIMS (vra1)->lbnd = 0;
b226e5f6 317 SCM_ARRAY_DIMS (vra1)->ubnd = length - 1;
0f2d19dd
JB
318 SCM_ARRAY_DIMS (vra1)->inc = 1;
319 SCM_ARRAY_V (vra1) = vra0;
320 vra0 = vra1;
321 }
322 lvra = SCM_EOL;
323 plvra = &lvra;
324 for (z = lra; SCM_NIMP (z); z = SCM_CDR (z))
325 {
326 ra1 = SCM_CAR (z);
327 vra1 = scm_make_ra (1);
328 SCM_ARRAY_DIMS (vra1)->lbnd = SCM_ARRAY_DIMS (vra0)->lbnd;
329 SCM_ARRAY_DIMS (vra1)->ubnd = SCM_ARRAY_DIMS (vra0)->ubnd;
330 if (!SCM_ARRAYP (ra1))
331 {
332 SCM_ARRAY_BASE (vra1) = 0;
333 SCM_ARRAY_DIMS (vra1)->inc = 1;
334 SCM_ARRAY_V (vra1) = ra1;
335 }
336 else if (!SCM_ARRAY_CONTP (ra1))
337 goto gencase;
338 else
339 {
340 SCM_ARRAY_BASE (vra1) = SCM_ARRAY_BASE (ra1);
341 SCM_ARRAY_DIMS (vra1)->inc = SCM_ARRAY_DIMS (ra1)[kmax].inc;
342 SCM_ARRAY_V (vra1) = SCM_ARRAY_V (ra1);
343 }
344 *plvra = scm_cons (vra1, SCM_EOL);
25d8012c 345 plvra = SCM_CDRLOC (*plvra);
0f2d19dd
JB
346 }
347 return (SCM_UNBNDP (data) ? cproc(vra0, lvra) : cproc(vra0, data, lvra));
348 case 1:
349 gencase: /* Have to loop over all dimensions. */
c209c88e
GB
350 vra0 = scm_make_ra (1);
351 if (SCM_ARRAYP (ra0))
352 {
353 kmax = SCM_ARRAY_NDIM (ra0) - 1;
354 if (kmax < 0)
0f2d19dd 355 {
c209c88e
GB
356 SCM_ARRAY_DIMS (vra0)->lbnd = 0;
357 SCM_ARRAY_DIMS (vra0)->ubnd = 0;
358 SCM_ARRAY_DIMS (vra0)->inc = 1;
0f2d19dd 359 }
c209c88e
GB
360 else
361 {
362 SCM_ARRAY_DIMS (vra0)->lbnd = SCM_ARRAY_DIMS (ra0)[kmax].lbnd;
363 SCM_ARRAY_DIMS (vra0)->ubnd = SCM_ARRAY_DIMS (ra0)[kmax].ubnd;
364 SCM_ARRAY_DIMS (vra0)->inc = SCM_ARRAY_DIMS (ra0)[kmax].inc;
365 }
366 SCM_ARRAY_BASE (vra0) = SCM_ARRAY_BASE (ra0);
367 SCM_ARRAY_V (vra0) = SCM_ARRAY_V (ra0);
368 }
369 else
370 {
c014a02e 371 unsigned long int length = SCM_INUM (scm_uniform_vector_length (ra0));
c209c88e
GB
372 kmax = 0;
373 SCM_ARRAY_DIMS (vra0)->lbnd = 0;
b226e5f6 374 SCM_ARRAY_DIMS (vra0)->ubnd = length - 1;
c209c88e
GB
375 SCM_ARRAY_DIMS (vra0)->inc = 1;
376 SCM_ARRAY_BASE (vra0) = 0;
377 SCM_ARRAY_V (vra0) = ra0;
378 ra0 = vra0;
379 }
380 lvra = SCM_EOL;
381 plvra = &lvra;
382 for (z = lra; SCM_NIMP (z); z = SCM_CDR (z))
383 {
384 ra1 = SCM_CAR (z);
385 vra1 = scm_make_ra (1);
386 SCM_ARRAY_DIMS (vra1)->lbnd = SCM_ARRAY_DIMS (vra0)->lbnd;
387 SCM_ARRAY_DIMS (vra1)->ubnd = SCM_ARRAY_DIMS (vra0)->ubnd;
388 if (SCM_ARRAYP (ra1))
389 {
390 if (kmax >= 0)
391 SCM_ARRAY_DIMS (vra1)->inc = SCM_ARRAY_DIMS (ra1)[kmax].inc;
392 SCM_ARRAY_V (vra1) = SCM_ARRAY_V (ra1);
393 }
394 else
395 {
396 SCM_ARRAY_DIMS (vra1)->inc = 1;
397 SCM_ARRAY_V (vra1) = ra1;
398 }
399 *plvra = scm_cons (vra1, SCM_EOL);
400 plvra = SCM_CDRLOC (*plvra);
401 }
402 inds = scm_make_uve (SCM_ARRAY_NDIM (ra0), SCM_MAKINUM (-1L));
c014a02e 403 vinds = (long *) SCM_VELTS (inds);
c209c88e
GB
404 for (k = 0; k <= kmax; k++)
405 vinds[k] = SCM_ARRAY_DIMS (ra0)[k].lbnd;
406 k = kmax;
407 do
408 {
409 if (k == kmax)
410 {
411 SCM y = lra;
412 SCM_ARRAY_BASE (vra0) = cind (ra0, inds);
413 for (z = lvra; SCM_NIMP (z); z = SCM_CDR (z), y = SCM_CDR (y))
414 SCM_ARRAY_BASE (SCM_CAR (z)) = cind (SCM_CAR (y), inds);
415 if (0 == (SCM_UNBNDP (data) ? cproc(vra0, lvra) : cproc(vra0, data, lvra)))
416 return 0;
417 k--;
418 continue;
419 }
420 if (vinds[k] < SCM_ARRAY_DIMS (ra0)[k].ubnd)
421 {
422 vinds[k]++;
423 k++;
424 continue;
425 }
426 vinds[k] = SCM_ARRAY_DIMS (ra0)[k].lbnd - 1;
427 k--;
428 }
429 while (k >= 0);
430 return 1;
0f2d19dd
JB
431 }
432}
433
434
3b3b36dd 435SCM_DEFINE (scm_array_fill_x, "array-fill!", 2, 0, 0,
c209c88e 436 (SCM ra, SCM fill),
8f85c0c6 437 "Store @var{fill} in every element of @var{array}. The value returned\n"
b380b885 438 "is unspecified.")
1bbd0b84 439#define FUNC_NAME s_scm_array_fill_x
ad310508 440{
c209c88e 441 scm_ramapc (scm_array_fill_int, fill, ra, SCM_EOL, FUNC_NAME);
ad310508
MD
442 return SCM_UNSPECIFIED;
443}
1bbd0b84 444#undef FUNC_NAME
ad310508 445
5c11cc9d
GH
446/* to be used as cproc in scm_ramapc to fill an array dimension with
447 "fill". */
0f2d19dd 448int
e81d98ec 449scm_array_fill_int (SCM ra, SCM fill, SCM ignore SCM_UNUSED)
1bbd0b84 450#define FUNC_NAME s_scm_array_fill_x
0f2d19dd 451{
c014a02e
ML
452 unsigned long i;
453 unsigned long n = SCM_ARRAY_DIMS (ra)->ubnd - SCM_ARRAY_DIMS (ra)->lbnd + 1;
454 long inc = SCM_ARRAY_DIMS (ra)->inc;
455 unsigned long base = SCM_ARRAY_BASE (ra);
5c11cc9d 456
0f2d19dd 457 ra = SCM_ARRAY_V (ra);
5c11cc9d
GH
458 switch SCM_TYP7 (ra)
459 {
460 default:
461 for (i = base; n--; i += inc)
462 scm_array_set_x (ra, fill, SCM_MAKINUM (i));
463 break;
464 case scm_tc7_vector:
465 case scm_tc7_wvect:
466 for (i = base; n--; i += inc)
34d19ef6 467 SCM_VECTOR_SET (ra, i, fill);
5c11cc9d
GH
468 break;
469 case scm_tc7_string:
7866a09b 470 SCM_ASRTGO (SCM_CHARP (fill), badarg2);
5c11cc9d 471 for (i = base; n--; i += inc)
405aaef9 472 SCM_STRING_CHARS (ra)[i] = SCM_CHAR (fill);
5c11cc9d
GH
473 break;
474 case scm_tc7_byvect:
7866a09b
GB
475 if (SCM_CHARP (fill))
476 fill = SCM_MAKINUM ((char) SCM_CHAR (fill));
5c11cc9d
GH
477 SCM_ASRTGO (SCM_INUMP (fill)
478 && -128 <= SCM_INUM (fill) && SCM_INUM (fill) < 128,
479 badarg2);
480 for (i = base; n--; i += inc)
405aaef9 481 ((char *) SCM_UVECTOR_BASE (ra))[i] = SCM_INUM (fill);
5c11cc9d
GH
482 break;
483 case scm_tc7_bvect:
1bbd0b84 484 { /* scope */
c014a02e
ML
485 long *ve = (long *) SCM_VELTS (ra);
486 if (1 == inc && (n >= SCM_LONG_BIT || n == SCM_BITVECTOR_LENGTH (ra)))
5c11cc9d 487 {
c014a02e 488 i = base / SCM_LONG_BIT;
4260a7fc 489 if (SCM_FALSEP (fill))
5c11cc9d 490 {
c014a02e
ML
491 if (base % SCM_LONG_BIT) /* leading partial word */
492 ve[i++] &= ~(~0L << (base % SCM_LONG_BIT));
493 for (; i < (base + n) / SCM_LONG_BIT; i++)
5c11cc9d 494 ve[i] = 0L;
c014a02e
ML
495 if ((base + n) % SCM_LONG_BIT) /* trailing partial word */
496 ve[i] &= (~0L << ((base + n) % SCM_LONG_BIT));
5c11cc9d 497 }
9a09deb1 498 else if (SCM_EQ_P (fill, SCM_BOOL_T))
5c11cc9d 499 {
c014a02e
ML
500 if (base % SCM_LONG_BIT)
501 ve[i++] |= ~0L << (base % SCM_LONG_BIT);
502 for (; i < (base + n) / SCM_LONG_BIT; i++)
5c11cc9d 503 ve[i] = ~0L;
c014a02e
ML
504 if ((base + n) % SCM_LONG_BIT)
505 ve[i] |= ~(~0L << ((base + n) % SCM_LONG_BIT));
5c11cc9d
GH
506 }
507 else
276dd677 508 badarg2:SCM_WRONG_TYPE_ARG (2, fill);
5c11cc9d
GH
509 }
510 else
511 {
4260a7fc 512 if (SCM_FALSEP (fill))
5c11cc9d 513 for (i = base; n--; i += inc)
c014a02e 514 ve[i / SCM_LONG_BIT] &= ~(1L << (i % SCM_LONG_BIT));
9a09deb1 515 else if (SCM_EQ_P (fill, SCM_BOOL_T))
5c11cc9d 516 for (i = base; n--; i += inc)
c014a02e 517 ve[i / SCM_LONG_BIT] |= (1L << (i % SCM_LONG_BIT));
5c11cc9d
GH
518 else
519 goto badarg2;
520 }
521 break;
522 }
523 case scm_tc7_uvect:
1bbd0b84 524 { /* scope */
e4b265d8 525 unsigned long f = SCM_NUM2ULONG (2, fill);
e1c7d601 526 unsigned long *ve = (unsigned long *) SCM_VELTS (ra);
5c11cc9d 527
0f2d19dd 528 for (i = base; n--; i += inc)
5c11cc9d 529 ve[i] = f;
0f2d19dd 530 break;
5c11cc9d
GH
531 }
532 case scm_tc7_ivect:
1bbd0b84 533 { /* scope */
e4b265d8 534 long f = SCM_NUM2LONG (2, fill);
5c11cc9d
GH
535 long *ve = (long *) SCM_VELTS (ra);
536
0f2d19dd 537 for (i = base; n--; i += inc)
5c11cc9d 538 ve[i] = f;
0f2d19dd 539 break;
5c11cc9d
GH
540 }
541 case scm_tc7_svect:
542 SCM_ASRTGO (SCM_INUMP (fill), badarg2);
1bbd0b84 543 { /* scope */
5c11cc9d
GH
544 short f = SCM_INUM (fill);
545 short *ve = (short *) SCM_VELTS (ra);
546
547 if (f != SCM_INUM (fill))
1bbd0b84 548 SCM_OUT_OF_RANGE (2, fill);
0f2d19dd 549 for (i = base; n--; i += inc)
5c11cc9d 550 ve[i] = f;
0f2d19dd 551 break;
5c11cc9d 552 }
473d94b4 553#if SCM_SIZEOF_LONG_LONG != 0
5c11cc9d 554 case scm_tc7_llvect:
1bbd0b84 555 { /* scope */
e4b265d8 556 long long f = SCM_NUM2LONG_LONG (2, fill);
5c11cc9d
GH
557 long long *ve = (long long *) SCM_VELTS (ra);
558
b1d24656 559 for (i = base; n--; i += inc)
5c11cc9d 560 ve[i] = f;
b1d24656 561 break;
5c11cc9d 562 }
05f92e0f 563#endif
5c11cc9d 564 case scm_tc7_fvect:
1bbd0b84 565 { /* scope */
5c11cc9d 566 float f, *ve = (float *) SCM_VELTS (ra);
0c95b57d 567 SCM_ASRTGO (SCM_REALP (fill), badarg2);
eb42e2f0 568 f = SCM_REAL_VALUE (fill);
5c11cc9d
GH
569 for (i = base; n--; i += inc)
570 ve[i] = f;
571 break;
572 }
5c11cc9d 573 case scm_tc7_dvect:
1bbd0b84 574 { /* scope */
5c11cc9d 575 double f, *ve = (double *) SCM_VELTS (ra);
0c95b57d 576 SCM_ASRTGO (SCM_REALP (fill), badarg2);
eb42e2f0 577 f = SCM_REAL_VALUE (fill);
5c11cc9d
GH
578 for (i = base; n--; i += inc)
579 ve[i] = f;
580 break;
581 }
582 case scm_tc7_cvect:
1bbd0b84 583 { /* scope */
5c11cc9d
GH
584 double fr, fi;
585 double (*ve)[2] = (double (*)[2]) SCM_VELTS (ra);
eb42e2f0
DH
586 SCM_ASRTGO (SCM_INEXACTP (fill), badarg2);
587 if (SCM_REALP (fill)) {
588 fr = SCM_REAL_VALUE (fill);
589 fi = 0.0;
590 } else {
591 fr = SCM_COMPLEX_REAL (fill);
592 fi = SCM_COMPLEX_IMAG (fill);
593 }
5c11cc9d
GH
594 for (i = base; n--; i += inc)
595 {
596 ve[i][0] = fr;
597 ve[i][1] = fi;
598 }
599 break;
0f2d19dd 600 }
5c11cc9d 601 }
0f2d19dd
JB
602 return 1;
603}
1bbd0b84 604#undef FUNC_NAME
0f2d19dd 605
0f2d19dd 606
c209c88e 607
0f2d19dd 608static int
1bbd0b84 609racp (SCM src, SCM dst)
0f2d19dd 610{
c014a02e
ML
611 long n = (SCM_ARRAY_DIMS (src)->ubnd - SCM_ARRAY_DIMS (src)->lbnd + 1);
612 long inc_d, inc_s = SCM_ARRAY_DIMS (src)->inc;
613 unsigned long i_d, i_s = SCM_ARRAY_BASE (src);
0f2d19dd
JB
614 dst = SCM_CAR (dst);
615 inc_d = SCM_ARRAY_DIMS (dst)->inc;
616 i_d = SCM_ARRAY_BASE (dst);
617 src = SCM_ARRAY_V (src);
618 dst = SCM_ARRAY_V (dst);
c209c88e 619
405aaef9 620 switch SCM_TYP7 (dst)
c209c88e
GB
621 {
622 default:
623 gencase:
624 case scm_tc7_vector:
625 case scm_tc7_wvect:
95f5b0f5 626
c209c88e 627 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
5e4a4d09
MD
628 scm_array_set_x (dst,
629 scm_cvref (src, i_s, SCM_UNDEFINED),
630 SCM_MAKINUM (i_d));
c209c88e
GB
631 break;
632 case scm_tc7_string:
405aaef9
DH
633 if (SCM_TYP7 (src) != scm_tc7_string)
634 goto gencase;
635 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
636 SCM_STRING_CHARS (dst)[i_d] = SCM_STRING_CHARS (src)[i_s];
637 break;
c209c88e 638 case scm_tc7_byvect:
405aaef9 639 if (SCM_TYP7 (src) != scm_tc7_byvect)
c209c88e
GB
640 goto gencase;
641 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
5e4a4d09
MD
642 ((char *) SCM_UVECTOR_BASE (dst))[i_d]
643 = ((char *) SCM_UVECTOR_BASE (src))[i_s];
c209c88e
GB
644 break;
645 case scm_tc7_bvect:
405aaef9 646 if (SCM_TYP7 (src) != scm_tc7_bvect)
c209c88e 647 goto gencase;
c014a02e 648 if (1 == inc_d && 1 == inc_s && i_s % SCM_LONG_BIT == i_d % SCM_LONG_BIT && n >= SCM_LONG_BIT)
c209c88e 649 {
c014a02e
ML
650 long *sv = (long *) SCM_VELTS (src);
651 long *dv = (long *) SCM_VELTS (dst);
652 sv += i_s / SCM_LONG_BIT;
653 dv += i_d / SCM_LONG_BIT;
654 if (i_s % SCM_LONG_BIT)
c209c88e 655 { /* leading partial word */
c014a02e 656 *dv = (*dv & ~(~0L << (i_s % SCM_LONG_BIT))) | (*sv & (~0L << (i_s % SCM_LONG_BIT)));
c209c88e
GB
657 dv++;
658 sv++;
c014a02e 659 n -= SCM_LONG_BIT - (i_s % SCM_LONG_BIT);
c209c88e 660 }
5e4a4d09 661 IVDEP (src != dst,
c014a02e 662 for (; n >= SCM_LONG_BIT; n -= SCM_LONG_BIT, sv++, dv++)
5e4a4d09 663 *dv = *sv;)
c209c88e
GB
664 if (n) /* trailing partial word */
665 *dv = (*dv & (~0L << n)) | (*sv & ~(~0L << n));
666 }
667 else
668 {
669 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
670 if (SCM_BITVEC_REF(src, i_s))
671 SCM_BITVEC_SET(dst, i_d);
672 else
673 SCM_BITVEC_CLR(dst, i_d);
674 }
675 break;
676 case scm_tc7_uvect:
677 if (scm_tc7_uvect != SCM_TYP7 (src))
678 goto gencase;
679 else
680 {
681 long *d = (long *) SCM_VELTS (dst), *s = (long *) SCM_VELTS (src);
5e4a4d09 682 IVDEP (src != dst,
c209c88e 683 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
5e4a4d09 684 d[i_d] = s[i_s];)
c209c88e
GB
685 break;
686 }
687 case scm_tc7_ivect:
688 if (scm_tc7_uvect != SCM_TYP7 (src) && scm_tc7_ivect != SCM_TYP7 (src))
689 goto gencase;
690 else
691 {
692 long *d = (long *) SCM_VELTS (dst), *s = (long *) SCM_VELTS (src);
5e4a4d09
MD
693 IVDEP (src != dst,
694 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
695 d[i_d] = s[i_s];)
696 break;
c209c88e 697 }
c209c88e
GB
698 case scm_tc7_fvect:
699 {
700 float *d = (float *) SCM_VELTS (dst);
701 float *s = (float *) SCM_VELTS (src);
702 switch SCM_TYP7
703 (src)
0f2d19dd 704 {
c209c88e
GB
705 default:
706 goto gencase;
707 case scm_tc7_ivect:
708 case scm_tc7_uvect:
5e4a4d09
MD
709 IVDEP (src != dst,
710 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
711 d[i_d] = ((long *) s)[i_s];)
c209c88e
GB
712 break;
713 case scm_tc7_fvect:
5e4a4d09
MD
714 IVDEP (src != dst,
715 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
716 d[i_d] = s[i_s];)
c209c88e
GB
717 break;
718 case scm_tc7_dvect:
5e4a4d09
MD
719 IVDEP (src !=dst,
720 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
721 d[i_d] = ((double *) s)[i_s];)
722 break;
0f2d19dd
JB
723 }
724 break;
c209c88e 725 }
c209c88e
GB
726 case scm_tc7_dvect:
727 {
728 double *d = (double *) SCM_VELTS (dst);
729 double *s = (double *) SCM_VELTS (src);
730 switch SCM_TYP7
731 (src)
0f2d19dd 732 {
c209c88e
GB
733 default:
734 goto gencase;
735 case scm_tc7_ivect:
736 case scm_tc7_uvect:
5e4a4d09
MD
737 IVDEP (src != dst,
738 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
739 d[i_d] = ((long *) s)[i_s];)
c209c88e
GB
740 break;
741 case scm_tc7_fvect:
5e4a4d09
MD
742 IVDEP (src != dst,
743 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
744 d[i_d] = ((float *) s)[i_s];)
c209c88e
GB
745 break;
746 case scm_tc7_dvect:
5e4a4d09
MD
747 IVDEP (src != dst,
748 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
749 d[i_d] = s[i_s];)
0f2d19dd
JB
750 break;
751 }
c209c88e
GB
752 break;
753 }
754 case scm_tc7_cvect:
755 {
756 double (*d)[2] = (double (*)[2]) SCM_VELTS (dst);
757 double (*s)[2] = (double (*)[2]) SCM_VELTS (src);
758 switch SCM_TYP7
759 (src)
0f2d19dd 760 {
c209c88e
GB
761 default:
762 goto gencase;
763 case scm_tc7_ivect:
764 case scm_tc7_uvect:
5e4a4d09
MD
765 IVDEP (src != dst,
766 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
767 {
768 d[i_d][0] = ((long *) s)[i_s];
769 d[i_d][1] = 0.0;
770 })
0f2d19dd 771 break;
c209c88e 772 case scm_tc7_fvect:
5e4a4d09
MD
773 IVDEP (src != dst,
774 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
775 {
776 d[i_d][0] = ((float *) s)[i_s];
777 d[i_d][1] = 0.0;
778 })
c209c88e
GB
779 break;
780 case scm_tc7_dvect:
5e4a4d09
MD
781 IVDEP (src != dst,
782 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
783 {
784 d[i_d][0] = ((double *) s)[i_s];
785 d[i_d][1] = 0.0;
786 })
c209c88e
GB
787 break;
788 case scm_tc7_cvect:
5e4a4d09
MD
789 IVDEP (src != dst,
790 for (; n-- > 0; i_s += inc_s, i_d += inc_d)
791 {
792 d[i_d][0] = s[i_s][0];
793 d[i_d][1] = s[i_s][1];
794 })
0f2d19dd 795 }
c209c88e 796 break;
0f2d19dd 797 }
c209c88e 798 }
0f2d19dd
JB
799 return 1;
800}
801
802
1bbd0b84 803SCM_REGISTER_PROC(s_array_copy_in_order_x, "array-copy-in-order!", 2, 0, 0, scm_array_copy_x);
1cc91f1b 804
1bbd0b84 805
3b3b36dd 806SCM_DEFINE (scm_array_copy_x, "array-copy!", 2, 0, 0,
c209c88e 807 (SCM src, SCM dst),
8f85c0c6
NJ
808 "@deffnx {Scheme Procedure} array-copy-in-order! src dst\n"
809 "Copy every element from vector or array @var{source} to the\n"
b380b885
MD
810 "corresponding element of @var{destination}. @var{destination} must have\n"
811 "the same rank as @var{source}, and be at least as large in each\n"
812 "dimension. The order is unspecified.")
1bbd0b84 813#define FUNC_NAME s_scm_array_copy_x
0f2d19dd 814{
c209c88e 815 scm_ramapc (racp, SCM_UNDEFINED, src, scm_cons (dst, SCM_EOL), FUNC_NAME);
0f2d19dd
JB
816 return SCM_UNSPECIFIED;
817}
1bbd0b84 818#undef FUNC_NAME
0f2d19dd
JB
819
820/* Functions callable by ARRAY-MAP! */
821
1cc91f1b 822
0f2d19dd 823int
1bbd0b84 824scm_ra_eqp (SCM ra0, SCM ras)
0f2d19dd
JB
825{
826 SCM ra1 = SCM_CAR (ras), ra2 = SCM_CAR (SCM_CDR (ras));
c014a02e
ML
827 long n = SCM_ARRAY_DIMS (ra0)->ubnd - SCM_ARRAY_DIMS (ra0)->lbnd + 1;
828 unsigned long i0 = SCM_ARRAY_BASE (ra0), i1 = SCM_ARRAY_BASE (ra1), i2 = SCM_ARRAY_BASE (ra2);
829 long inc0 = SCM_ARRAY_DIMS (ra0)->inc;
830 long inc1 = SCM_ARRAY_DIMS (ra1)->inc;
831 long inc2 = SCM_ARRAY_DIMS (ra1)->inc;
0f2d19dd
JB
832 ra0 = SCM_ARRAY_V (ra0);
833 ra1 = SCM_ARRAY_V (ra1);
834 ra2 = SCM_ARRAY_V (ra2);
835 switch (SCM_TYP7 (ra1) == SCM_TYP7 (ra2) ? SCM_TYP7 (ra1) : 0)
836 {
837 default:
838 {
839 SCM e1 = SCM_UNDEFINED, e2 = SCM_UNDEFINED;
840 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
c209c88e
GB
841 if (SCM_BITVEC_REF (ra0, i0))
842 if (SCM_FALSEP(scm_eq_p (RVREF (ra1, i1, e1), RVREF (ra2, i2, e2))))
843 SCM_BITVEC_CLR (ra0, i0);
0f2d19dd
JB
844 break;
845 }
846 case scm_tc7_uvect:
fee7ef83
DH
847 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
848 if (SCM_BITVEC_REF (ra0, i0))
849 if (((unsigned long *) SCM_VELTS (ra1))[i1] != ((unsigned long *) SCM_VELTS (ra2))[i2])
850 SCM_BITVEC_CLR (ra0, i0);
851 break;
0f2d19dd
JB
852 case scm_tc7_ivect:
853 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
c209c88e 854 if (SCM_BITVEC_REF (ra0, i0))
fee7ef83 855 if (((signed long *) SCM_VELTS (ra1))[i1] != ((signed long *) SCM_VELTS (ra2))[i2])
c209c88e 856 SCM_BITVEC_CLR (ra0, i0);
0f2d19dd 857 break;
0f2d19dd
JB
858 case scm_tc7_fvect:
859 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
c209c88e
GB
860 if (SCM_BITVEC_REF (ra0, i0))
861 if (((float *) SCM_VELTS (ra1))[i1] != ((float *) SCM_VELTS (ra2))[i2])
862 SCM_BITVEC_CLR (ra0, i0);
0f2d19dd 863 break;
0f2d19dd
JB
864 case scm_tc7_dvect:
865 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
c209c88e
GB
866 if (SCM_BITVEC_REF (ra0, i0))
867 if (((double *) SCM_VELTS (ra1))[i1] != ((double *) SCM_VELTS (ra2))[i2])
868 SCM_BITVEC_CLR (ra0, i0);
0f2d19dd
JB
869 break;
870 case scm_tc7_cvect:
871 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
c209c88e
GB
872 if (SCM_BITVEC_REF (ra0, i0))
873 if (((double *) SCM_VELTS (ra1))[2 * i1] != ((double *) SCM_VELTS (ra2))[2 * i2] ||
874 ((double *) SCM_VELTS (ra1))[2 * i1 + 1] != ((double *) SCM_VELTS (ra2))[2 * i2 + 1])
875 SCM_BITVEC_CLR (ra0, i0);
0f2d19dd 876 break;
0f2d19dd
JB
877 }
878 return 1;
879}
880
881/* opt 0 means <, nonzero means >= */
1cc91f1b 882
0f2d19dd 883static int
34d19ef6 884ra_compare (SCM ra0, SCM ra1, SCM ra2, int opt)
0f2d19dd 885{
c014a02e
ML
886 long n = SCM_ARRAY_DIMS (ra0)->ubnd - SCM_ARRAY_DIMS (ra0)->lbnd + 1;
887 unsigned long i0 = SCM_ARRAY_BASE (ra0), i1 = SCM_ARRAY_BASE (ra1), i2 = SCM_ARRAY_BASE (ra2);
888 long inc0 = SCM_ARRAY_DIMS (ra0)->inc;
889 long inc1 = SCM_ARRAY_DIMS (ra1)->inc;
890 long inc2 = SCM_ARRAY_DIMS (ra1)->inc;
0f2d19dd
JB
891 ra0 = SCM_ARRAY_V (ra0);
892 ra1 = SCM_ARRAY_V (ra1);
893 ra2 = SCM_ARRAY_V (ra2);
894 switch (SCM_TYP7 (ra1) == SCM_TYP7 (ra2) ? SCM_TYP7 (ra1) : 0)
895 {
896 default:
897 {
898 SCM e1 = SCM_UNDEFINED, e2 = SCM_UNDEFINED;
899 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
c209c88e
GB
900 if (SCM_BITVEC_REF (ra0, i0))
901 if (opt ?
902 SCM_NFALSEP (scm_less_p (RVREF (ra1, i1, e1), RVREF (ra2, i2, e2))) :
903 SCM_FALSEP (scm_less_p (RVREF (ra1, i1, e1), RVREF (ra2, i2, e2))))
904 SCM_BITVEC_CLR (ra0, i0);
0f2d19dd
JB
905 break;
906 }
907 case scm_tc7_uvect:
fee7ef83
DH
908 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
909 {
910 if (SCM_BITVEC_REF (ra0, i0))
911 if (opt ?
912 ((unsigned long *) SCM_VELTS (ra1))[i1] < ((unsigned long *) SCM_VELTS (ra2))[i2] :
913 ((unsigned long *) SCM_VELTS (ra1))[i1] >= ((unsigned long *) SCM_VELTS (ra2))[i2])
914 SCM_BITVEC_CLR (ra0, i0);
915 }
916 break;
0f2d19dd
JB
917 case scm_tc7_ivect:
918 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
919 {
c209c88e
GB
920 if (SCM_BITVEC_REF (ra0, i0))
921 if (opt ?
fee7ef83
DH
922 ((signed long *) SCM_VELTS (ra1))[i1] < ((signed long *) SCM_VELTS (ra2))[i2] :
923 ((signed long *) SCM_VELTS (ra1))[i1] >= ((signed long *) SCM_VELTS (ra2))[i2])
c209c88e 924 SCM_BITVEC_CLR (ra0, i0);
0f2d19dd
JB
925 }
926 break;
0f2d19dd
JB
927 case scm_tc7_fvect:
928 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
c209c88e
GB
929 if (SCM_BITVEC_REF(ra0, i0))
930 if (opt ?
931 ((float *) SCM_VELTS (ra1))[i1] < ((float *) SCM_VELTS (ra2))[i2] :
932 ((float *) SCM_VELTS (ra1))[i1] >= ((float *) SCM_VELTS (ra2))[i2])
933 SCM_BITVEC_CLR (ra0, i0);
0f2d19dd 934 break;
0f2d19dd
JB
935 case scm_tc7_dvect:
936 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
c209c88e
GB
937 if (SCM_BITVEC_REF (ra0, i0))
938 if (opt ?
939 ((double *) SCM_VELTS (ra1))[i1] < ((double *) SCM_VELTS (ra2))[i2] :
940 ((double *) SCM_VELTS (ra1))[i1] >= ((double *) SCM_VELTS (ra2))[i2])
941 SCM_BITVEC_CLR (ra0, i0);
0f2d19dd 942 break;
0f2d19dd
JB
943 }
944 return 1;
945}
946
947
1cc91f1b 948
0f2d19dd 949int
1bbd0b84 950scm_ra_lessp (SCM ra0, SCM ras)
0f2d19dd
JB
951{
952 return ra_compare (ra0, SCM_CAR (ras), SCM_CAR (SCM_CDR (ras)), 0);
953}
954
1cc91f1b 955
0f2d19dd 956int
1bbd0b84 957scm_ra_leqp (SCM ra0, SCM ras)
0f2d19dd
JB
958{
959 return ra_compare (ra0, SCM_CAR (SCM_CDR (ras)), SCM_CAR (ras), 1);
960}
961
1cc91f1b 962
0f2d19dd 963int
1bbd0b84 964scm_ra_grp (SCM ra0, SCM ras)
0f2d19dd
JB
965{
966 return ra_compare (ra0, SCM_CAR (SCM_CDR (ras)), SCM_CAR (ras), 0);
967}
968
1cc91f1b 969
0f2d19dd 970int
1bbd0b84 971scm_ra_greqp (SCM ra0, SCM ras)
0f2d19dd
JB
972{
973 return ra_compare (ra0, SCM_CAR (ras), SCM_CAR (SCM_CDR (ras)), 1);
974}
975
976
0f2d19dd 977int
1bbd0b84 978scm_ra_sum (SCM ra0, SCM ras)
0f2d19dd 979{
c014a02e
ML
980 long n = SCM_ARRAY_DIMS (ra0)->ubnd - SCM_ARRAY_DIMS (ra0)->lbnd + 1;
981 unsigned long i0 = SCM_ARRAY_BASE (ra0);
982 long inc0 = SCM_ARRAY_DIMS (ra0)->inc;
0f2d19dd 983 ra0 = SCM_ARRAY_V (ra0);
9ff1720f 984 if (!SCM_NULLP(ras))
c209c88e
GB
985 {
986 SCM ra1 = SCM_CAR (ras);
c014a02e
ML
987 unsigned long i1 = SCM_ARRAY_BASE (ra1);
988 long inc1 = SCM_ARRAY_DIMS (ra1)->inc;
c209c88e
GB
989 ra1 = SCM_ARRAY_V (ra1);
990 switch (SCM_TYP7 (ra0) == SCM_TYP7 (ra1) ? SCM_TYP7 (ra0) : 0)
991 {
992 default:
0f2d19dd 993 {
c209c88e
GB
994 SCM e0 = SCM_UNDEFINED, e1 = SCM_UNDEFINED;
995 for (; n-- > 0; i0 += inc0, i1 += inc1)
996 scm_array_set_x (ra0, scm_sum (RVREF (ra0, i0, e0), RVREF (ra1, i1, e1)),
997 SCM_MAKINUM (i0));
998 break;
999 }
1000 case scm_tc7_uvect:
1001 case scm_tc7_ivect:
1002 BINARY_ELTS_CODE( +=, long);
c209c88e
GB
1003 case scm_tc7_fvect:
1004 BINARY_ELTS_CODE( +=, float);
c209c88e
GB
1005 case scm_tc7_dvect:
1006 BINARY_ELTS_CODE( +=, double);
1007 case scm_tc7_cvect:
1008 BINARY_PAIR_ELTS_CODE( +=, double);
c209c88e
GB
1009 }
1010 }
0f2d19dd
JB
1011 return 1;
1012}
1013
1014
1cc91f1b 1015
0f2d19dd 1016int
1bbd0b84 1017scm_ra_difference (SCM ra0, SCM ras)
0f2d19dd 1018{
c014a02e
ML
1019 long n = SCM_ARRAY_DIMS (ra0)->ubnd - SCM_ARRAY_DIMS (ra0)->lbnd + 1;
1020 unsigned long i0 = SCM_ARRAY_BASE (ra0);
1021 long inc0 = SCM_ARRAY_DIMS (ra0)->inc;
0f2d19dd 1022 ra0 = SCM_ARRAY_V (ra0);
ff467021 1023 if (SCM_NULLP (ras))
c209c88e
GB
1024 {
1025 switch (SCM_TYP7 (ra0))
1026 {
1027 default:
1028 {
1029 SCM e0 = SCM_UNDEFINED;
1030 for (; n-- > 0; i0 += inc0)
1031 scm_array_set_x (ra0,
1032 scm_difference (RVREF (ra0, i0, e0), SCM_UNDEFINED),
1033 SCM_MAKINUM (i0));
1034 break;
1035 }
c209c88e
GB
1036 case scm_tc7_fvect:
1037 UNARY_ELTS_CODE( = -, float);
c209c88e
GB
1038 case scm_tc7_dvect:
1039 UNARY_ELTS_CODE( = -, double);
1040 case scm_tc7_cvect:
1041 UNARY_PAIR_ELTS_CODE( = -, double);
c209c88e
GB
1042 }
1043 }
0f2d19dd
JB
1044 else
1045 {
1046 SCM ra1 = SCM_CAR (ras);
c014a02e
ML
1047 unsigned long i1 = SCM_ARRAY_BASE (ra1);
1048 long inc1 = SCM_ARRAY_DIMS (ra1)->inc;
0f2d19dd
JB
1049 ra1 = SCM_ARRAY_V (ra1);
1050 switch (SCM_TYP7 (ra0) == SCM_TYP7 (ra1) ? SCM_TYP7 (ra0) : 0)
1051 {
1052 default:
1053 {
1054 SCM e0 = SCM_UNDEFINED, e1 = SCM_UNDEFINED;
1055 for (; n-- > 0; i0 += inc0, i1 += inc1)
1056 scm_array_set_x (ra0, scm_difference (RVREF (ra0, i0, e0), RVREF (ra1, i1, e1)), SCM_MAKINUM (i0));
1057 break;
1058 }
0f2d19dd 1059 case scm_tc7_fvect:
c209c88e 1060 BINARY_ELTS_CODE( -=, float);
0f2d19dd 1061 case scm_tc7_dvect:
c209c88e 1062 BINARY_ELTS_CODE( -=, double);
0f2d19dd 1063 case scm_tc7_cvect:
c209c88e 1064 BINARY_PAIR_ELTS_CODE( -=, double);
0f2d19dd
JB
1065 }
1066 }
1067 return 1;
1068}
1069
1070
1cc91f1b 1071
0f2d19dd 1072int
1bbd0b84 1073scm_ra_product (SCM ra0, SCM ras)
0f2d19dd 1074{
c014a02e
ML
1075 long n = SCM_ARRAY_DIMS (ra0)->ubnd - SCM_ARRAY_DIMS (ra0)->lbnd + 1;
1076 unsigned long i0 = SCM_ARRAY_BASE (ra0);
1077 long inc0 = SCM_ARRAY_DIMS (ra0)->inc;
0f2d19dd 1078 ra0 = SCM_ARRAY_V (ra0);
9ff1720f 1079 if (!SCM_NULLP (ras))
c209c88e
GB
1080 {
1081 SCM ra1 = SCM_CAR (ras);
c014a02e
ML
1082 unsigned long i1 = SCM_ARRAY_BASE (ra1);
1083 long inc1 = SCM_ARRAY_DIMS (ra1)->inc;
c209c88e
GB
1084 ra1 = SCM_ARRAY_V (ra1);
1085 switch (SCM_TYP7 (ra0) == SCM_TYP7 (ra1) ? SCM_TYP7 (ra0) : 0)
1086 {
1087 default:
0f2d19dd 1088 {
c209c88e
GB
1089 SCM e0 = SCM_UNDEFINED, e1 = SCM_UNDEFINED;
1090 for (; n-- > 0; i0 += inc0, i1 += inc1)
1091 scm_array_set_x (ra0, scm_product (RVREF (ra0, i0, e0), RVREF (ra1, i1, e1)),
1092 SCM_MAKINUM (i0));
1093 break;
1094 }
1095 case scm_tc7_uvect:
1096 case scm_tc7_ivect:
1097 BINARY_ELTS_CODE( *=, long);
c209c88e
GB
1098 case scm_tc7_fvect:
1099 BINARY_ELTS_CODE( *=, float);
c209c88e
GB
1100 case scm_tc7_dvect:
1101 BINARY_ELTS_CODE( *=, double);
1102 case scm_tc7_cvect:
1103 {
1104 double (*v0)[2] = (double (*)[2]) SCM_VELTS (ra0);
1105 register double r;
1106 double (*v1)[2] = (double (*)[2]) SCM_VELTS (ra1);
1107 IVDEP (ra0 != ra1,
1108 for (; n-- > 0; i0 += inc0, i1 += inc1)
1109 {
1110 r = v0[i0][0] * v1[i1][0] - v0[i0][1] * v1[i1][1];
1111 v0[i0][1] = v0[i0][0] * v1[i1][1] + v0[i0][1] * v1[i1][0];
1112 v0[i0][0] = r;
1113 }
1114 );
1115 break;
0f2d19dd 1116 }
c209c88e
GB
1117 }
1118 }
0f2d19dd
JB
1119 return 1;
1120}
1121
1cc91f1b 1122
0f2d19dd 1123int
1bbd0b84 1124scm_ra_divide (SCM ra0, SCM ras)
0f2d19dd 1125{
c014a02e
ML
1126 long n = SCM_ARRAY_DIMS (ra0)->ubnd - SCM_ARRAY_DIMS (ra0)->lbnd + 1;
1127 unsigned long i0 = SCM_ARRAY_BASE (ra0);
1128 long inc0 = SCM_ARRAY_DIMS (ra0)->inc;
0f2d19dd 1129 ra0 = SCM_ARRAY_V (ra0);
ff467021 1130 if (SCM_NULLP (ras))
c209c88e
GB
1131 {
1132 switch (SCM_TYP7 (ra0))
1133 {
1134 default:
1135 {
1136 SCM e0 = SCM_UNDEFINED;
1137 for (; n-- > 0; i0 += inc0)
1138 scm_array_set_x (ra0, scm_divide (RVREF (ra0, i0, e0), SCM_UNDEFINED), SCM_MAKINUM (i0));
1139 break;
1140 }
c209c88e
GB
1141 case scm_tc7_fvect:
1142 UNARY_ELTS_CODE( = 1.0 / , float);
c209c88e
GB
1143 case scm_tc7_dvect:
1144 UNARY_ELTS_CODE( = 1.0 / , double);
1145 case scm_tc7_cvect:
1146 {
1147 register double d;
1148 double (*v0)[2] = (double (*)[2]) SCM_VELTS (ra0);
1149 for (; n-- > 0; i0 += inc0)
0f2d19dd 1150 {
c209c88e
GB
1151 d = v0[i0][0] * v0[i0][0] + v0[i0][1] * v0[i0][1];
1152 v0[i0][0] /= d;
1153 v0[i0][1] /= -d;
0f2d19dd 1154 }
c209c88e
GB
1155 break;
1156 }
c209c88e
GB
1157 }
1158 }
0f2d19dd
JB
1159 else
1160 {
1161 SCM ra1 = SCM_CAR (ras);
c014a02e
ML
1162 unsigned long i1 = SCM_ARRAY_BASE (ra1);
1163 long inc1 = SCM_ARRAY_DIMS (ra1)->inc;
0f2d19dd
JB
1164 ra1 = SCM_ARRAY_V (ra1);
1165 switch (SCM_TYP7 (ra0) == SCM_TYP7 (ra1) ? SCM_TYP7 (ra0) : 0)
1166 {
1167 default:
1168 {
1169 SCM e0 = SCM_UNDEFINED, e1 = SCM_UNDEFINED;
1170 for (; n-- > 0; i0 += inc0, i1 += inc1)
1171 scm_array_set_x (ra0, scm_divide (RVREF (ra0, i0, e0), RVREF (ra1, i1, e1)), SCM_MAKINUM (i0));
1172 break;
1173 }
0f2d19dd 1174 case scm_tc7_fvect:
c209c88e 1175 BINARY_ELTS_CODE( /=, float);
0f2d19dd 1176 case scm_tc7_dvect:
c209c88e 1177 BINARY_ELTS_CODE( /=, double);
0f2d19dd
JB
1178 case scm_tc7_cvect:
1179 {
1180 register double d, r;
1181 double (*v0)[2] = (double (*)[2]) SCM_VELTS (ra0);
1182 double (*v1)[2] = (double (*)[2]) SCM_VELTS (ra1);
1183 IVDEP (ra0 != ra1,
1184 for (; n-- > 0; i0 += inc0, i1 += inc1)
c209c88e
GB
1185 {
1186 d = v1[i1][0] * v1[i1][0] + v1[i1][1] * v1[i1][1];
1187 r = (v0[i0][0] * v1[i1][0] + v0[i0][1] * v1[i1][1]) / d;
1188 v0[i0][1] = (v0[i0][1] * v1[i1][0] - v0[i0][0] * v1[i1][1]) / d;
1189 v0[i0][0] = r;
1190 }
0f2d19dd
JB
1191 )
1192 break;
1193 }
0f2d19dd
JB
1194 }
1195 }
1196 return 1;
1197}
1198
1cc91f1b 1199
0f2d19dd 1200int
1bbd0b84 1201scm_array_identity (SCM dst, SCM src)
0f2d19dd
JB
1202{
1203 return racp (SCM_CAR (src), scm_cons (dst, SCM_EOL));
1204}
1205
1206
1cc91f1b 1207
0f2d19dd 1208static int
34d19ef6 1209ramap (SCM ra0, SCM proc, SCM ras)
0f2d19dd 1210{
c014a02e
ML
1211 long i = SCM_ARRAY_DIMS (ra0)->lbnd;
1212 long inc = SCM_ARRAY_DIMS (ra0)->inc;
1213 long n = SCM_ARRAY_DIMS (ra0)->ubnd;
1214 long base = SCM_ARRAY_BASE (ra0) - i * inc;
0f2d19dd 1215 ra0 = SCM_ARRAY_V (ra0);
ff467021 1216 if (SCM_NULLP (ras))
c209c88e 1217 for (; i <= n; i++)
fdc28395 1218 scm_array_set_x (ra0, scm_call_0 (proc), SCM_MAKINUM (i * inc + base));
0f2d19dd
JB
1219 else
1220 {
1221 SCM ra1 = SCM_CAR (ras);
34d19ef6
HWN
1222 SCM args;
1223 SCM const *ve = &ras;
c014a02e
ML
1224 unsigned long k, i1 = SCM_ARRAY_BASE (ra1);
1225 long inc1 = SCM_ARRAY_DIMS (ra1)->inc;
0f2d19dd
JB
1226 ra1 = SCM_ARRAY_V (ra1);
1227 ras = SCM_CDR (ras);
ff467021 1228 if (SCM_NULLP(ras))
c209c88e 1229 ras = scm_nullvect;
0f2d19dd
JB
1230 else
1231 {
1232 ras = scm_vector (ras);
1233 ve = SCM_VELTS (ras);
1234 }
34d19ef6 1235
0f2d19dd
JB
1236 for (; i <= n; i++, i1 += inc1)
1237 {
1238 args = SCM_EOL;
b226e5f6 1239 for (k = SCM_INUM (scm_uniform_vector_length (ras)); k--;)
0f2d19dd
JB
1240 args = scm_cons (scm_uniform_vector_ref (ve[k], SCM_MAKINUM (i)), args);
1241 args = scm_cons (scm_cvref (ra1, i1, SCM_UNDEFINED), args);
fdc28395 1242 scm_array_set_x (ra0, scm_apply_0 (proc, args), SCM_MAKINUM (i * inc + base));
0f2d19dd
JB
1243 }
1244 }
1245 return 1;
1246}
1247
1cc91f1b 1248
0f2d19dd 1249static int
34d19ef6 1250ramap_cxr (SCM ra0, SCM proc, SCM ras)
0f2d19dd
JB
1251{
1252 SCM ra1 = SCM_CAR (ras);
1253 SCM e1 = SCM_UNDEFINED;
c014a02e
ML
1254 unsigned long i0 = SCM_ARRAY_BASE (ra0), i1 = SCM_ARRAY_BASE (ra1);
1255 long inc0 = SCM_ARRAY_DIMS (ra0)->inc, inc1 = SCM_ARRAY_DIMS (ra1)->inc;
1256 long n = SCM_ARRAY_DIMS (ra0)->ubnd - SCM_ARRAY_DIMS (ra1)->lbnd + 1;
0f2d19dd
JB
1257 ra0 = SCM_ARRAY_V (ra0);
1258 ra1 = SCM_ARRAY_V (ra1);
ff467021 1259 switch (SCM_TYP7 (ra0))
c209c88e
GB
1260 {
1261 default:
1262 gencase:
1263 for (; n-- > 0; i0 += inc0, i1 += inc1)
fdc28395 1264 scm_array_set_x (ra0, scm_call_1 (proc, RVREF (ra1, i1, e1)), SCM_MAKINUM (i0));
c209c88e 1265 break;
c209c88e
GB
1266 case scm_tc7_fvect:
1267 {
1268 float *dst = (float *) SCM_VELTS (ra0);
1269 switch (SCM_TYP7 (ra1))
1270 {
1271 default:
1272 goto gencase;
1273 case scm_tc7_fvect:
1274 for (; n-- > 0; i0 += inc0, i1 += inc1)
1275 dst[i0] = SCM_DSUBRF (proc) ((double) ((float *) SCM_VELTS (ra1))[i1]);
1276 break;
1277 case scm_tc7_uvect:
1278 case scm_tc7_ivect:
1279 for (; n-- > 0; i0 += inc0, i1 += inc1)
f1267706 1280 dst[i0] = SCM_DSUBRF (proc) (SCM_UNPACK (SCM_VELTS (ra1)[i1]));
c209c88e
GB
1281 break;
1282 }
1283 break;
1284 }
c209c88e
GB
1285 case scm_tc7_dvect:
1286 {
1287 double *dst = (double *) SCM_VELTS (ra0);
1288 switch (SCM_TYP7 (ra1))
1289 {
1290 default:
1291 goto gencase;
1292 case scm_tc7_dvect:
1293 for (; n-- > 0; i0 += inc0, i1 += inc1)
1294 dst[i0] = SCM_DSUBRF (proc) (((double *) SCM_VELTS (ra1))[i1]);
1295 break;
1296 case scm_tc7_uvect:
1297 case scm_tc7_ivect:
1298 for (; n-- > 0; i0 += inc0, i1 += inc1)
f1267706 1299 dst[i0] = SCM_DSUBRF (proc) (SCM_UNPACK (SCM_VELTS (ra1)[i1]));
c209c88e
GB
1300 break;
1301 }
1302 break;
0f2d19dd 1303 }
c209c88e 1304 }
0f2d19dd
JB
1305 return 1;
1306}
1307
1308
1cc91f1b 1309
0f2d19dd 1310static int
34d19ef6 1311ramap_rp (SCM ra0, SCM proc, SCM ras)
0f2d19dd
JB
1312{
1313 SCM ra1 = SCM_CAR (ras), ra2 = SCM_CAR (SCM_CDR (ras));
1314 SCM e1 = SCM_UNDEFINED, e2 = SCM_UNDEFINED;
c014a02e
ML
1315 long n = SCM_ARRAY_DIMS (ra0)->ubnd - SCM_ARRAY_DIMS (ra0)->lbnd + 1;
1316 unsigned long i0 = SCM_ARRAY_BASE (ra0), i1 = SCM_ARRAY_BASE (ra1), i2 = SCM_ARRAY_BASE (ra2);
1317 long inc0 = SCM_ARRAY_DIMS (ra0)->inc;
1318 long inc1 = SCM_ARRAY_DIMS (ra1)->inc;
1319 long inc2 = SCM_ARRAY_DIMS (ra1)->inc;
0f2d19dd
JB
1320 ra0 = SCM_ARRAY_V (ra0);
1321 ra1 = SCM_ARRAY_V (ra1);
1322 ra2 = SCM_ARRAY_V (ra2);
1323 switch (SCM_TYP7 (ra1) == SCM_TYP7 (ra2) ? SCM_TYP7 (ra1) : 0)
1324 {
1325 default:
1326 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
c209c88e
GB
1327 if (SCM_BITVEC_REF (ra0, i0))
1328 if (SCM_FALSEP (SCM_SUBRF (proc) (RVREF (ra1, i1, e1), RVREF (ra2, i2, e2))))
1329 SCM_BITVEC_CLR (ra0, i0);
0f2d19dd
JB
1330 break;
1331 case scm_tc7_uvect:
1332 case scm_tc7_ivect:
1333 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
c209c88e
GB
1334 if (SCM_BITVEC_REF (ra0, i0))
1335 {
f2961ccd
DH
1336 /* DIRK:FIXME:: There should be a way to access the elements
1337 of a cell as raw data. Further: How can we be sure that
1338 the values fit into an inum?
1339 */
1ff2fa6e
DH
1340 SCM n1 = SCM_MAKINUM (((long *) SCM_UNPACK (SCM_CDR (ra1)))[i1]);
1341 SCM n2 = SCM_MAKINUM (((long *) SCM_UNPACK (SCM_CDR (ra2)))[i2]);
d81f6fe1 1342 if (SCM_FALSEP (SCM_SUBRF (proc) (n1, n2)))
c209c88e
GB
1343 SCM_BITVEC_CLR (ra0, i0);
1344 }
0f2d19dd 1345 break;
0f2d19dd
JB
1346 case scm_tc7_fvect:
1347 {
950cc72b 1348 SCM a1 = scm_make_real (1.0), a2 = scm_make_real (1.0);
0f2d19dd 1349 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
c209c88e
GB
1350 if (SCM_BITVEC_REF (ra0, i0))
1351 {
950cc72b
MD
1352 SCM_REAL_VALUE (a1) = ((float *) SCM_VELTS (ra1))[i1];
1353 SCM_REAL_VALUE (a2) = ((float *) SCM_VELTS (ra2))[i2];
c209c88e
GB
1354 if (SCM_FALSEP (SCM_SUBRF (proc) (a1, a2)))
1355 SCM_BITVEC_CLR (ra0, i0);
1356 }
0f2d19dd
JB
1357 break;
1358 }
0f2d19dd
JB
1359 case scm_tc7_dvect:
1360 {
f8de44c1
DH
1361 SCM a1 = scm_make_real (1.0 / 3.0);
1362 SCM a2 = scm_make_real (1.0 / 3.0);
0f2d19dd 1363 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
c209c88e
GB
1364 if (SCM_BITVEC_REF (ra0, i0))
1365 {
eb42e2f0
DH
1366 SCM_REAL_VALUE (a1) = ((double *) SCM_VELTS (ra1))[i1];
1367 SCM_REAL_VALUE (a2) = ((double *) SCM_VELTS (ra2))[i2];
c209c88e
GB
1368 if (SCM_FALSEP (SCM_SUBRF (proc) (a1, a2)))
1369 SCM_BITVEC_CLR (ra0, i0);
1370 }
0f2d19dd
JB
1371 break;
1372 }
1373 case scm_tc7_cvect:
1374 {
f8de44c1
DH
1375 SCM a1 = scm_make_complex (1.0, 1.0);
1376 SCM a2 = scm_make_complex (1.0, 1.0);
0f2d19dd 1377 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
c209c88e
GB
1378 if (SCM_BITVEC_REF (ra0, i0))
1379 {
950cc72b
MD
1380 SCM_COMPLEX_REAL (a1) = ((double *) SCM_VELTS (ra1))[2 * i1];
1381 SCM_COMPLEX_IMAG (a1) = ((double *) SCM_VELTS (ra1))[2 * i1 + 1];
1382 SCM_COMPLEX_REAL (a2) = ((double *) SCM_VELTS (ra2))[2 * i2];
1383 SCM_COMPLEX_IMAG (a2) = ((double *) SCM_VELTS (ra2))[2 * i2 + 1];
c209c88e
GB
1384 if (SCM_FALSEP (SCM_SUBRF (proc) (a1, a2)))
1385 SCM_BITVEC_CLR (ra0, i0);
1386 }
0f2d19dd
JB
1387 break;
1388 }
0f2d19dd
JB
1389 }
1390 return 1;
1391}
1392
1393
1cc91f1b 1394
0f2d19dd 1395static int
34d19ef6 1396ramap_1 (SCM ra0, SCM proc, SCM ras)
0f2d19dd
JB
1397{
1398 SCM ra1 = SCM_CAR (ras);
1399 SCM e1 = SCM_UNDEFINED;
c014a02e
ML
1400 long n = SCM_ARRAY_DIMS (ra0)->ubnd - SCM_ARRAY_DIMS (ra0)->lbnd + 1;
1401 unsigned long i0 = SCM_ARRAY_BASE (ra0), i1 = SCM_ARRAY_BASE (ra1);
1402 long inc0 = SCM_ARRAY_DIMS (ra0)->inc, inc1 = SCM_ARRAY_DIMS (ra1)->inc;
0f2d19dd
JB
1403 ra0 = SCM_ARRAY_V (ra0);
1404 ra1 = SCM_ARRAY_V (ra1);
95f5b0f5 1405 if (scm_tc7_vector == SCM_TYP7 (ra0) || scm_tc7_wvect == SCM_TYP7 (ra0))
0f2d19dd
JB
1406 for (; n-- > 0; i0 += inc0, i1 += inc1)
1407 scm_array_set_x (ra0, SCM_SUBRF (proc) (scm_cvref (ra1, i1, SCM_UNDEFINED)), SCM_MAKINUM (i0));
1408 else
1409 for (; n-- > 0; i0 += inc0, i1 += inc1)
1410 scm_array_set_x (ra0, SCM_SUBRF (proc) (RVREF (ra1, i1, e1)), SCM_MAKINUM (i0));
1411 return 1;
1412}
1413
1414
1cc91f1b 1415
0f2d19dd 1416static int
34d19ef6 1417ramap_2o (SCM ra0, SCM proc, SCM ras)
0f2d19dd
JB
1418{
1419 SCM ra1 = SCM_CAR (ras);
1420 SCM e1 = SCM_UNDEFINED;
c014a02e
ML
1421 long n = SCM_ARRAY_DIMS (ra0)->ubnd - SCM_ARRAY_DIMS (ra0)->lbnd + 1;
1422 unsigned long i0 = SCM_ARRAY_BASE (ra0), i1 = SCM_ARRAY_BASE (ra1);
1423 long inc0 = SCM_ARRAY_DIMS (ra0)->inc, inc1 = SCM_ARRAY_DIMS (ra1)->inc;
0f2d19dd
JB
1424 ra0 = SCM_ARRAY_V (ra0);
1425 ra1 = SCM_ARRAY_V (ra1);
1426 ras = SCM_CDR (ras);
ff467021 1427 if (SCM_NULLP (ras))
c209c88e
GB
1428 {
1429 if (scm_tc7_vector == SCM_TYP7 (ra0)
1430 || scm_tc7_wvect == SCM_TYP7 (ra0))
95f5b0f5 1431
c209c88e
GB
1432 for (; n-- > 0; i0 += inc0, i1 += inc1)
1433 scm_array_set_x (ra0, SCM_SUBRF (proc) (scm_cvref (ra1, i1, SCM_UNDEFINED), SCM_UNDEFINED),
1434 SCM_MAKINUM (i0));
1435 else
1436 for (; n-- > 0; i0 += inc0, i1 += inc1)
1437 scm_array_set_x (ra0, SCM_SUBRF (proc) (RVREF (ra1, i1, e1), SCM_UNDEFINED),
1438 SCM_MAKINUM (i0));
1439 }
0f2d19dd
JB
1440 else
1441 {
1442 SCM ra2 = SCM_CAR (ras);
1443 SCM e2 = SCM_UNDEFINED;
c014a02e
ML
1444 unsigned long i2 = SCM_ARRAY_BASE (ra2);
1445 long inc2 = SCM_ARRAY_DIMS (ra2)->inc;
0f2d19dd 1446 ra2 = SCM_ARRAY_V (ra2);
95f5b0f5 1447 if (scm_tc7_vector == SCM_TYP7 (ra0) || scm_tc7_wvect == SCM_TYP7 (ra0))
0f2d19dd
JB
1448 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
1449 scm_array_set_x (ra0,
c209c88e
GB
1450 SCM_SUBRF (proc) (scm_cvref (ra1, i1, SCM_UNDEFINED), scm_cvref (ra2, i2, SCM_UNDEFINED)),
1451 SCM_MAKINUM (i0));
0f2d19dd
JB
1452 else
1453 for (; n-- > 0; i0 += inc0, i1 += inc1, i2 += inc2)
1454 scm_array_set_x (ra0,
c209c88e
GB
1455 SCM_SUBRF (proc) (RVREF (ra1, i1, e1), RVREF (ra2, i2, e2)),
1456 SCM_MAKINUM (i0));
0f2d19dd
JB
1457 }
1458 return 1;
1459}
1460
1461
1cc91f1b 1462
0f2d19dd 1463static int
34d19ef6 1464ramap_a (SCM ra0, SCM proc, SCM ras)
0f2d19dd
JB
1465{
1466 SCM e0 = SCM_UNDEFINED, e1 = SCM_UNDEFINED;
c014a02e
ML
1467 long n = SCM_ARRAY_DIMS (ra0)->ubnd - SCM_ARRAY_DIMS (ra0)->lbnd + 1;
1468 unsigned long i0 = SCM_ARRAY_BASE (ra0);
1469 long inc0 = SCM_ARRAY_DIMS (ra0)->inc;
0f2d19dd 1470 ra0 = SCM_ARRAY_V (ra0);
ff467021 1471 if (SCM_NULLP (ras))
c209c88e
GB
1472 for (; n-- > 0; i0 += inc0)
1473 scm_array_set_x (ra0, SCM_SUBRF (proc) (RVREF (ra0, i0, e0), SCM_UNDEFINED), SCM_MAKINUM (i0));
0f2d19dd
JB
1474 else
1475 {
1476 SCM ra1 = SCM_CAR (ras);
c014a02e
ML
1477 unsigned long i1 = SCM_ARRAY_BASE (ra1);
1478 long inc1 = SCM_ARRAY_DIMS (ra1)->inc;
0f2d19dd
JB
1479 ra1 = SCM_ARRAY_V (ra1);
1480 for (; n-- > 0; i0 += inc0, i1 += inc1)
1481 scm_array_set_x (ra0, SCM_SUBRF (proc) (RVREF (ra0, i0, e0), RVREF (ra1, i1, e1)),
c209c88e 1482 SCM_MAKINUM (i0));
0f2d19dd
JB
1483 }
1484 return 1;
1485}
1486
f5f2dcff 1487
1bbd0b84 1488SCM_REGISTER_PROC(s_array_map_in_order_x, "array-map-in-order!", 2, 0, 1, scm_array_map_x);
1cc91f1b 1489
1bbd0b84 1490
3b3b36dd 1491SCM_DEFINE (scm_array_map_x, "array-map!", 2, 0, 1,
c209c88e 1492 (SCM ra0, SCM proc, SCM lra),
8f85c0c6 1493 "@deffnx {Scheme Procedure} array-map-in-order! ra0 proc . lra\n"
b380b885
MD
1494 "@var{array1}, @dots{} must have the same number of dimensions as\n"
1495 "@var{array0} and have a range for each index which includes the range\n"
1496 "for the corresponding index in @var{array0}. @var{proc} is applied to\n"
1497 "each tuple of elements of @var{array1} @dots{} and the result is stored\n"
1498 "as the corresponding element in @var{array0}. The value returned is\n"
1499 "unspecified. The order of application is unspecified.")
1bbd0b84 1500#define FUNC_NAME s_scm_array_map_x
0f2d19dd 1501{
34d19ef6 1502 SCM_VALIDATE_PROC (2, proc);
af45e3b0 1503 SCM_VALIDATE_REST_ARGUMENT (lra);
0f2d19dd 1504 switch (SCM_TYP7 (proc))
c209c88e
GB
1505 {
1506 default:
1507 gencase:
1508 scm_ramapc (ramap, proc, ra0, lra, FUNC_NAME);
1509 return SCM_UNSPECIFIED;
1510 case scm_tc7_subr_1:
1511 scm_ramapc (ramap_1, proc, ra0, lra, FUNC_NAME);
1512 return SCM_UNSPECIFIED;
1513 case scm_tc7_subr_2:
1514 case scm_tc7_subr_2o:
1515 scm_ramapc (ramap_2o, proc, ra0, lra, FUNC_NAME);
1516 return SCM_UNSPECIFIED;
1517 case scm_tc7_cxr:
1518 if (!SCM_SUBRF (proc))
1519 goto gencase;
1520 scm_ramapc (ramap_cxr, proc, ra0, lra, FUNC_NAME);
1521 return SCM_UNSPECIFIED;
1522 case scm_tc7_rpsubr:
0f2d19dd 1523 {
c209c88e
GB
1524 ra_iproc *p;
1525 if (SCM_FALSEP (scm_array_p (ra0, SCM_BOOL_T)))
0f2d19dd 1526 goto gencase;
c209c88e
GB
1527 scm_array_fill_x (ra0, SCM_BOOL_T);
1528 for (p = ra_rpsubrs; p->name; p++)
fee7ef83 1529 if (SCM_EQ_P (proc, p->sproc))
c209c88e 1530 {
9ff1720f 1531 while (!SCM_NULLP (lra) && !SCM_NULLP (SCM_CDR (lra)))
c209c88e
GB
1532 {
1533 scm_ramapc (p->vproc, SCM_UNDEFINED, ra0, lra, FUNC_NAME);
1534 lra = SCM_CDR (lra);
1535 }
1536 return SCM_UNSPECIFIED;
1537 }
9ff1720f 1538 while (!SCM_NULLP (lra) && !SCM_NULLP (SCM_CDR (lra)))
c209c88e
GB
1539 {
1540 scm_ramapc (ramap_rp, proc, ra0, lra, FUNC_NAME);
1541 lra = SCM_CDR (lra);
1542 }
0f2d19dd 1543 return SCM_UNSPECIFIED;
c209c88e
GB
1544 }
1545 case scm_tc7_asubr:
1546 if (SCM_NULLP (lra))
1547 {
1548 SCM prot, fill = SCM_SUBRF (proc) (SCM_UNDEFINED, SCM_UNDEFINED);
1549 if (SCM_INUMP(fill))
1550 {
1551 prot = scm_array_prototype (ra0);
eb42e2f0 1552 if (SCM_INEXACTP (prot))
f8de44c1 1553 fill = scm_make_real ((double) SCM_INUM (fill));
c209c88e
GB
1554 }
1555
1556 scm_array_fill_x (ra0, fill);
1557 }
1558 else
0f2d19dd 1559 {
c209c88e
GB
1560 SCM tail, ra1 = SCM_CAR (lra);
1561 SCM v0 = (SCM_ARRAYP (ra0) ? SCM_ARRAY_V (ra0) : ra0);
0f2d19dd 1562 ra_iproc *p;
c209c88e
GB
1563 /* Check to see if order might matter.
1564 This might be an argument for a separate
1565 SERIAL-ARRAY-MAP! */
fee7ef83
DH
1566 if (SCM_EQ_P (v0, ra1)
1567 || (SCM_ARRAYP (ra1) && SCM_EQ_P (v0, SCM_ARRAY_V (ra1))))
1568 if (!SCM_EQ_P (ra0, ra1)
1569 || (SCM_ARRAYP(ra0) && !SCM_ARRAY_CONTP(ra0)))
c209c88e 1570 goto gencase;
9ff1720f 1571 for (tail = SCM_CDR (lra); !SCM_NULLP (tail); tail = SCM_CDR (tail))
c209c88e
GB
1572 {
1573 ra1 = SCM_CAR (tail);
fee7ef83
DH
1574 if (SCM_EQ_P (v0, ra1)
1575 || (SCM_ARRAYP (ra1) && SCM_EQ_P (v0, SCM_ARRAY_V (ra1))))
c209c88e
GB
1576 goto gencase;
1577 }
1578 for (p = ra_asubrs; p->name; p++)
fee7ef83 1579 if (SCM_EQ_P (proc, p->sproc))
0f2d19dd 1580 {
fee7ef83 1581 if (!SCM_EQ_P (ra0, SCM_CAR (lra)))
c209c88e
GB
1582 scm_ramapc (scm_array_identity, SCM_UNDEFINED, ra0, scm_cons (SCM_CAR (lra), SCM_EOL), FUNC_NAME);
1583 lra = SCM_CDR (lra);
1584 while (1)
0f2d19dd 1585 {
c209c88e
GB
1586 scm_ramapc (p->vproc, SCM_UNDEFINED, ra0, lra, FUNC_NAME);
1587 if (SCM_IMP (lra) || SCM_IMP (SCM_CDR (lra)))
1588 return SCM_UNSPECIFIED;
0f2d19dd
JB
1589 lra = SCM_CDR (lra);
1590 }
0f2d19dd 1591 }
c209c88e
GB
1592 scm_ramapc (ramap_2o, proc, ra0, lra, FUNC_NAME);
1593 lra = SCM_CDR (lra);
1594 if (SCM_NIMP (lra))
1595 for (lra = SCM_CDR (lra); SCM_NIMP (lra); lra = SCM_CDR (lra))
1596 scm_ramapc (ramap_a, proc, ra0, lra, FUNC_NAME);
0f2d19dd 1597 }
c209c88e
GB
1598 return SCM_UNSPECIFIED;
1599 }
0f2d19dd 1600}
1bbd0b84 1601#undef FUNC_NAME
0f2d19dd 1602
1cc91f1b 1603
0f2d19dd 1604static int
34d19ef6 1605rafe (SCM ra0, SCM proc, SCM ras)
0f2d19dd 1606{
c014a02e
ML
1607 long i = SCM_ARRAY_DIMS (ra0)->lbnd;
1608 unsigned long i0 = SCM_ARRAY_BASE (ra0);
1609 long inc0 = SCM_ARRAY_DIMS (ra0)->inc;
1610 long n = SCM_ARRAY_DIMS (ra0)->ubnd;
0f2d19dd 1611 ra0 = SCM_ARRAY_V (ra0);
ff467021 1612 if (SCM_NULLP (ras))
c209c88e 1613 for (; i <= n; i++, i0 += inc0)
fdc28395 1614 scm_call_1 (proc, scm_cvref (ra0, i0, SCM_UNDEFINED));
0f2d19dd
JB
1615 else
1616 {
1617 SCM ra1 = SCM_CAR (ras);
34d19ef6
HWN
1618 SCM args;
1619 SCM const*ve = &ras;
c014a02e
ML
1620 unsigned long k, i1 = SCM_ARRAY_BASE (ra1);
1621 long inc1 = SCM_ARRAY_DIMS (ra1)->inc;
0f2d19dd
JB
1622 ra1 = SCM_ARRAY_V (ra1);
1623 ras = SCM_CDR (ras);
ff467021 1624 if (SCM_NULLP(ras))
c209c88e 1625 ras = scm_nullvect;
0f2d19dd
JB
1626 else
1627 {
1628 ras = scm_vector (ras);
1629 ve = SCM_VELTS (ras);
1630 }
1631 for (; i <= n; i++, i0 += inc0, i1 += inc1)
1632 {
1633 args = SCM_EOL;
b226e5f6 1634 for (k = SCM_INUM (scm_uniform_vector_length (ras)); k--;)
0f2d19dd
JB
1635 args = scm_cons (scm_uniform_vector_ref (ve[k], SCM_MAKINUM (i)), args);
1636 args = scm_cons2 (scm_cvref (ra0, i0, SCM_UNDEFINED), scm_cvref (ra1, i1, SCM_UNDEFINED), args);
fdc28395 1637 scm_apply_0 (proc, args);
0f2d19dd
JB
1638 }
1639 }
1640 return 1;
1641}
1642
1643
3b3b36dd 1644SCM_DEFINE (scm_array_for_each, "array-for-each", 2, 0, 1,
c209c88e 1645 (SCM proc, SCM ra0, SCM lra),
8f85c0c6 1646 "Apply @var{proc} to each tuple of elements of @var{array0} @dots{}\n"
b380b885 1647 "in row-major order. The value returned is unspecified.")
1bbd0b84 1648#define FUNC_NAME s_scm_array_for_each
0f2d19dd 1649{
34d19ef6 1650 SCM_VALIDATE_PROC (1, proc);
af45e3b0 1651 SCM_VALIDATE_REST_ARGUMENT (lra);
c209c88e 1652 scm_ramapc (rafe, proc, ra0, lra, FUNC_NAME);
0f2d19dd
JB
1653 return SCM_UNSPECIFIED;
1654}
1bbd0b84 1655#undef FUNC_NAME
0f2d19dd 1656
3b3b36dd 1657SCM_DEFINE (scm_array_index_map_x, "array-index-map!", 2, 0, 0,
c209c88e 1658 (SCM ra, SCM proc),
8f85c0c6 1659 "Apply @var{proc} to the indices of each element of @var{array} in\n"
b380b885
MD
1660 "turn, storing the result in the corresponding element. The value\n"
1661 "returned and the order of application are unspecified.\n\n"
1662 "One can implement @var{array-indexes} as\n"
1e6808ea 1663 "@lisp\n"
b380b885
MD
1664 "(define (array-indexes array)\n"
1665 " (let ((ra (apply make-array #f (array-shape array))))\n"
1666 " (array-index-map! ra (lambda x x))\n"
1667 " ra))\n"
1e6808ea 1668 "@end lisp\n"
b380b885 1669 "Another example:\n"
1e6808ea 1670 "@lisp\n"
b380b885
MD
1671 "(define (apl:index-generator n)\n"
1672 " (let ((v (make-uniform-vector n 1)))\n"
1673 " (array-index-map! v (lambda (i) i))\n"
1674 " v))\n"
1e6808ea 1675 "@end lisp")
1bbd0b84 1676#define FUNC_NAME s_scm_array_index_map_x
0f2d19dd 1677{
c014a02e 1678 unsigned long i;
34d19ef6
HWN
1679 SCM_VALIDATE_NIM (1, ra);
1680 SCM_VALIDATE_PROC (2, proc);
e42c09cc
RS
1681 switch (SCM_TYP7(ra))
1682 {
1683 default:
276dd677 1684 badarg:SCM_WRONG_TYPE_ARG (1, ra);
e42c09cc
RS
1685 case scm_tc7_vector:
1686 case scm_tc7_wvect:
0f2d19dd 1687 {
b226e5f6 1688 for (i = 0; i < SCM_VECTOR_LENGTH (ra); i++)
34d19ef6 1689 SCM_VECTOR_SET(ra, i, scm_call_1 (proc, SCM_MAKINUM (i)));
e42c09cc
RS
1690 return SCM_UNSPECIFIED;
1691 }
1692 case scm_tc7_string:
1693 case scm_tc7_byvect:
1694 case scm_tc7_bvect:
1695 case scm_tc7_uvect:
1696 case scm_tc7_ivect:
05f92e0f 1697 case scm_tc7_svect:
473d94b4 1698#if SCM_SIZEOF_LONG_LONG != 0
05f92e0f
JB
1699 case scm_tc7_llvect:
1700#endif
e42c09cc
RS
1701 case scm_tc7_fvect:
1702 case scm_tc7_dvect:
1703 case scm_tc7_cvect:
b226e5f6 1704 {
c014a02e 1705 unsigned long int length = SCM_INUM (scm_uniform_vector_length (ra));
b226e5f6 1706 for (i = 0; i < length; i++)
fdc28395 1707 scm_array_set_x (ra, scm_call_1 (proc, SCM_MAKINUM (i)),
b226e5f6
DH
1708 SCM_MAKINUM (i));
1709 return SCM_UNSPECIFIED;
1710 }
e42c09cc
RS
1711 case scm_tc7_smob:
1712 SCM_ASRTGO (SCM_ARRAYP (ra), badarg);
1713 {
1714 SCM args = SCM_EOL;
1715 SCM inds = scm_make_uve (SCM_ARRAY_NDIM (ra), SCM_MAKINUM (-1L));
c014a02e 1716 long *vinds = (long *) SCM_VELTS (inds);
e42c09cc
RS
1717 int j, k, kmax = SCM_ARRAY_NDIM (ra) - 1;
1718 if (kmax < 0)
fdc28395 1719 return scm_array_set_x (ra, scm_call_0 (proc), SCM_EOL);
e42c09cc
RS
1720 for (k = 0; k <= kmax; k++)
1721 vinds[k] = SCM_ARRAY_DIMS (ra)[k].lbnd;
1722 k = kmax;
1723 do
1724 {
1725 if (k == kmax)
1726 {
1727 vinds[k] = SCM_ARRAY_DIMS (ra)[k].lbnd;
1728 i = cind (ra, inds);
1729 for (; vinds[k] <= SCM_ARRAY_DIMS (ra)[k].ubnd; vinds[k]++)
1730 {
1731 for (j = kmax + 1, args = SCM_EOL; j--;)
1732 args = scm_cons (SCM_MAKINUM (vinds[j]), args);
1733 scm_array_set_x (SCM_ARRAY_V (ra),
fdc28395 1734 scm_apply_0 (proc, args),
e42c09cc
RS
1735 SCM_MAKINUM (i));
1736 i += SCM_ARRAY_DIMS (ra)[k].inc;
1737 }
1738 k--;
1739 continue;
1740 }
1741 if (vinds[k] < SCM_ARRAY_DIMS (ra)[k].ubnd)
1742 {
1743 vinds[k]++;
1744 k++;
1745 continue;
1746 }
1747 vinds[k] = SCM_ARRAY_DIMS (ra)[k].lbnd - 1;
1748 k--;
1749 }
1750 while (k >= 0);
0f2d19dd 1751 return SCM_UNSPECIFIED;
0f2d19dd 1752 }
e42c09cc 1753 }
0f2d19dd 1754}
1bbd0b84 1755#undef FUNC_NAME
0f2d19dd 1756
1cc91f1b 1757
0f2d19dd 1758static int
34d19ef6 1759raeql_1 (SCM ra0, SCM as_equal, SCM ra1)
0f2d19dd
JB
1760{
1761 SCM e0 = SCM_UNDEFINED, e1 = SCM_UNDEFINED;
c014a02e
ML
1762 unsigned long i0 = 0, i1 = 0;
1763 long inc0 = 1, inc1 = 1;
1764 unsigned long n;
0f2d19dd 1765 ra1 = SCM_CAR (ra1);
ff467021 1766 if (SCM_ARRAYP(ra0))
c209c88e
GB
1767 {
1768 n = SCM_ARRAY_DIMS (ra0)->ubnd - SCM_ARRAY_DIMS (ra0)->lbnd + 1;
1769 i0 = SCM_ARRAY_BASE (ra0);
1770 inc0 = SCM_ARRAY_DIMS (ra0)->inc;
1771 ra0 = SCM_ARRAY_V (ra0);
1772 }
e466c6a2
MV
1773 else
1774 n = SCM_INUM (scm_uniform_vector_length (ra0));
ff467021 1775 if (SCM_ARRAYP (ra1))
c209c88e
GB
1776 {
1777 i1 = SCM_ARRAY_BASE (ra1);
1778 inc1 = SCM_ARRAY_DIMS (ra1)->inc;
1779 ra1 = SCM_ARRAY_V (ra1);
1780 }
1781 switch (SCM_TYP7 (ra0))
1782 {
1783 case scm_tc7_vector:
1784 case scm_tc7_wvect:
1785 default:
1786 for (; n--; i0 += inc0, i1 += inc1)
1787 {
1788 if (SCM_FALSEP (as_equal))
1789 {
1790 if (SCM_FALSEP (scm_array_equal_p (RVREF (ra0, i0, e0), RVREF (ra1, i1, e1))))
1791 return 0;
1792 }
1793 else if (SCM_FALSEP (scm_equal_p (RVREF (ra0, i0, e0), RVREF (ra1, i1, e1))))
1794 return 0;
1795 }
1796 return 1;
1797 case scm_tc7_string:
405aaef9
DH
1798 {
1799 char *v0 = SCM_STRING_CHARS (ra0) + i0;
1800 char *v1 = SCM_STRING_CHARS (ra1) + i1;
1801 for (; n--; v0 += inc0, v1 += inc1)
1802 if (*v0 != *v1)
1803 return 0;
1804 return 1;
1805 }
c209c88e 1806 case scm_tc7_byvect:
0f2d19dd 1807 {
405aaef9
DH
1808 char *v0 = ((char *) SCM_UVECTOR_BASE (ra0)) + i0;
1809 char *v1 = ((char *) SCM_UVECTOR_BASE (ra1)) + i1;
c209c88e
GB
1810 for (; n--; v0 += inc0, v1 += inc1)
1811 if (*v0 != *v1)
1812 return 0;
1813 return 1;
0f2d19dd 1814 }
c209c88e
GB
1815 case scm_tc7_bvect:
1816 for (; n--; i0 += inc0, i1 += inc1)
1817 if (SCM_BITVEC_REF (ra0, i0) != SCM_BITVEC_REF (ra1, i1))
1818 return 0;
1819 return 1;
1820 case scm_tc7_uvect:
1821 case scm_tc7_ivect:
0f2d19dd 1822 {
c209c88e
GB
1823 long *v0 = (long *) SCM_VELTS (ra0) + i0;
1824 long *v1 = (long *) SCM_VELTS (ra1) + i1;
1825 for (; n--; v0 += inc0, v1 += inc1)
1826 if (*v0 != *v1)
1827 return 0;
0f2d19dd 1828 return 1;
c209c88e
GB
1829 }
1830 case scm_tc7_svect:
1831 {
1832 short *v0 = (short *) SCM_VELTS (ra0) + i0;
1833 short *v1 = (short *) SCM_VELTS (ra1) + i1;
1834 for (; n--; v0 += inc0, v1 += inc1)
1835 if (*v0 != *v1)
0f2d19dd
JB
1836 return 0;
1837 return 1;
c209c88e 1838 }
473d94b4 1839#if SCM_SIZEOF_LONG_LONG != 0
c209c88e
GB
1840 case scm_tc7_llvect:
1841 {
1842 long long *v0 = (long long *) SCM_VELTS (ra0) + i0;
1843 long long *v1 = (long long *) SCM_VELTS (ra1) + i1;
1844 for (; n--; v0 += inc0, v1 += inc1)
1845 if (*v0 != *v1)
1846 return 0;
1847 return 1;
1848 }
05f92e0f 1849#endif
c209c88e
GB
1850 case scm_tc7_fvect:
1851 {
1852 float *v0 = (float *) SCM_VELTS (ra0) + i0;
1853 float *v1 = (float *) SCM_VELTS (ra1) + i1;
1854 for (; n--; v0 += inc0, v1 += inc1)
1855 if (*v0 != *v1)
1856 return 0;
1857 return 1;
1858 }
c209c88e
GB
1859 case scm_tc7_dvect:
1860 {
1861 double *v0 = (double *) SCM_VELTS (ra0) + i0;
1862 double *v1 = (double *) SCM_VELTS (ra1) + i1;
1863 for (; n--; v0 += inc0, v1 += inc1)
1864 if (*v0 != *v1)
1865 return 0;
1866 return 1;
1867 }
1868 case scm_tc7_cvect:
1869 {
1870 double (*v0)[2] = (double (*)[2]) SCM_VELTS (ra0) + i0;
1871 double (*v1)[2] = (double (*)[2]) SCM_VELTS (ra1) + i1;
1872 for (; n--; v0 += inc0, v1 += inc1)
1873 {
1874 if ((*v0)[0] != (*v1)[0])
0f2d19dd 1875 return 0;
c209c88e
GB
1876 if ((*v0)[1] != (*v1)[1])
1877 return 0;
1878 }
1879 return 1;
0f2d19dd 1880 }
c209c88e 1881 }
0f2d19dd
JB
1882}
1883
1884
1cc91f1b 1885
0f2d19dd 1886static int
34d19ef6 1887raeql (SCM ra0, SCM as_equal, SCM ra1)
0f2d19dd
JB
1888{
1889 SCM v0 = ra0, v1 = ra1;
92c2555f
MV
1890 scm_t_array_dim dim0, dim1;
1891 scm_t_array_dim *s0 = &dim0, *s1 = &dim1;
c014a02e 1892 unsigned long bas0 = 0, bas1 = 0;
0f2d19dd 1893 int k, unroll = 1, vlen = 1, ndim = 1;
ff467021 1894 if (SCM_ARRAYP (ra0))
c209c88e
GB
1895 {
1896 ndim = SCM_ARRAY_NDIM (ra0);
1897 s0 = SCM_ARRAY_DIMS (ra0);
1898 bas0 = SCM_ARRAY_BASE (ra0);
1899 v0 = SCM_ARRAY_V (ra0);
1900 }
0f2d19dd
JB
1901 else
1902 {
1903 s0->inc = 1;
1904 s0->lbnd = 0;
b226e5f6 1905 s0->ubnd = SCM_INUM (scm_uniform_vector_length (v0)) - 1;
0f2d19dd
JB
1906 unroll = 0;
1907 }
ff467021 1908 if (SCM_ARRAYP (ra1))
c209c88e
GB
1909 {
1910 if (ndim != SCM_ARRAY_NDIM (ra1))
1911 return 0;
1912 s1 = SCM_ARRAY_DIMS (ra1);
1913 bas1 = SCM_ARRAY_BASE (ra1);
1914 v1 = SCM_ARRAY_V (ra1);
1915 }
0f2d19dd
JB
1916 else
1917 {
c209c88e
GB
1918 /*
1919 Huh ? Schizophrenic return type. --hwn
1920 */
0f2d19dd 1921 if (1 != ndim)
c209c88e 1922 return 0;
0f2d19dd
JB
1923 s1->inc = 1;
1924 s1->lbnd = 0;
b226e5f6 1925 s1->ubnd = SCM_INUM (scm_uniform_vector_length (v1)) - 1;
0f2d19dd
JB
1926 unroll = 0;
1927 }
1928 if (SCM_TYP7 (v0) != SCM_TYP7 (v1))
1929 return 0;
1930 for (k = ndim; k--;)
1931 {
1932 if (s0[k].lbnd != s1[k].lbnd || s0[k].ubnd != s1[k].ubnd)
1933 return 0;
1934 if (unroll)
1935 {
1936 unroll = (s0[k].inc == s1[k].inc);
1937 vlen *= s0[k].ubnd - s1[k].lbnd + 1;
1938 }
1939 }
fee7ef83 1940 if (unroll && bas0 == bas1 && SCM_EQ_P (v0, v1))
c209c88e 1941 return 1;
0f2d19dd
JB
1942 return scm_ramapc (raeql_1, as_equal, ra0, scm_cons (ra1, SCM_EOL), "");
1943}
1944
1cc91f1b 1945
0f2d19dd 1946SCM
1bbd0b84 1947scm_raequal (SCM ra0, SCM ra1)
0f2d19dd 1948{
156dcb09 1949 return SCM_BOOL(raeql (ra0, SCM_BOOL_T, ra1));
0f2d19dd
JB
1950}
1951
4079f87e 1952#if 0
c3ee7520
GB
1953/* GJB:FIXME:: Why not use SCM_DEFINE1 for array-equal? */
1954SCM_DEFINE1 (scm_array_equal_p, "array-equal?", scm_tc7_rpsubr,
c209c88e 1955 (SCM ra0, SCM ra1),
1e6808ea
MG
1956 "Return @code{#t} iff all arguments are arrays with the same\n"
1957 "shape, the same type, and have corresponding elements which are\n"
1958 "either @code{equal?} or @code{array-equal?}. This function\n"
1959 "differs from @code{equal?} in that a one dimensional shared\n"
1960 "array may be @var{array-equal?} but not @var{equal?} to a\n"
1961 "vector or uniform vector.")
4079f87e 1962#define FUNC_NAME s_scm_array_equal_p
0f981281
GB
1963{
1964}
4079f87e
GB
1965#undef FUNC_NAME
1966#endif
1967
0f2d19dd
JB
1968static char s_array_equal_p[] = "array-equal?";
1969
1cc91f1b 1970
0f2d19dd 1971SCM
1bbd0b84 1972scm_array_equal_p (SCM ra0, SCM ra1)
0f2d19dd
JB
1973{
1974 if (SCM_IMP (ra0) || SCM_IMP (ra1))
c209c88e 1975 callequal:return scm_equal_p (ra0, ra1);
ff467021 1976 switch (SCM_TYP7(ra0))
c209c88e
GB
1977 {
1978 default:
1979 goto callequal;
1980 case scm_tc7_bvect:
1981 case scm_tc7_string:
1982 case scm_tc7_byvect:
1983 case scm_tc7_uvect:
1984 case scm_tc7_ivect:
1985 case scm_tc7_fvect:
1986 case scm_tc7_dvect:
1987 case scm_tc7_cvect:
1988 case scm_tc7_vector:
1989 case scm_tc7_wvect:
1990 break;
1991 case scm_tc7_smob:
1992 if (!SCM_ARRAYP (ra0))
0f2d19dd 1993 goto callequal;
c209c88e 1994 }
ff467021 1995 switch (SCM_TYP7 (ra1))
c209c88e
GB
1996 {
1997 default:
1998 goto callequal;
1999 case scm_tc7_bvect:
2000 case scm_tc7_string:
2001 case scm_tc7_byvect:
2002 case scm_tc7_uvect:
2003 case scm_tc7_ivect:
2004 case scm_tc7_fvect:
2005 case scm_tc7_dvect:
2006 case scm_tc7_cvect:
2007 case scm_tc7_vector:
2008 case scm_tc7_wvect:
2009 break;
2010 case scm_tc7_smob:
2011 if (!SCM_ARRAYP (ra1))
0f2d19dd 2012 goto callequal;
c209c88e 2013 }
156dcb09 2014 return SCM_BOOL(raeql (ra0, SCM_BOOL_F, ra1));
0f2d19dd
JB
2015}
2016
2017
1cc91f1b 2018static void
1bbd0b84 2019init_raprocs (ra_iproc *subra)
0f2d19dd
JB
2020{
2021 for (; subra->name; subra++)
86d31dfe
MV
2022 {
2023 SCM sym = scm_str2symbol (subra->name);
2024 SCM var =
2025 scm_sym2var (sym, scm_current_module_lookup_closure (), SCM_BOOL_F);
2026 if (var != SCM_BOOL_F)
2027 subra->sproc = SCM_VARIABLE_REF (var);
2028 else
2029 subra->sproc = SCM_BOOL_F;
2030 }
0f2d19dd
JB
2031}
2032
1cc91f1b 2033
0f2d19dd
JB
2034void
2035scm_init_ramap ()
0f2d19dd
JB
2036{
2037 init_raprocs (ra_rpsubrs);
2038 init_raprocs (ra_asubrs);
9a441ddb 2039 scm_c_define_subr (s_array_equal_p, scm_tc7_rpsubr, scm_array_equal_p);
7a7f7c53 2040 scm_smobs[SCM_TC2SMOBNUM (scm_tc16_array)].equalp = scm_raequal;
a0599745 2041#include "libguile/ramap.x"
1bbd0b84 2042 scm_add_feature (s_scm_array_for_each);
0f2d19dd 2043}
89e00824
ML
2044
2045/*
2046 Local Variables:
2047 c-file-style: "gnu"
2048 End:
2049*/