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1 /* Simple bitmaps.
2 Copyright (C) 1999, 2000, 2002, 2003 Free Software Foundation, Inc.
3
4 This file is part of GCC.
5
6 GCC is free software; you can redistribute it and/or modify it under
7 the terms of the GNU General Public License as published by the Free
8 Software Foundation; either version 2, or (at your option) any later
9 version.
10
11 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
12 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 GCC; see the file COPYING. If not, write to the Free
18 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
19 02111-1307, USA. */
20
21 #include "config.h"
22 #include "system.h"
23 #include "coretypes.h"
24 #include "tm.h"
25 #include "rtl.h"
26 #include "flags.h"
27 #include "hard-reg-set.h"
28 #include "basic-block.h"
29
30 /* Bitmap manipulation routines. */
31
32 /* Allocate a simple bitmap of N_ELMS bits. */
33
34 sbitmap
35 sbitmap_alloc (unsigned int n_elms)
36 {
37 unsigned int bytes, size, amt;
38 sbitmap bmap;
39
40 size = SBITMAP_SET_SIZE (n_elms);
41 bytes = size * sizeof (SBITMAP_ELT_TYPE);
42 amt = (sizeof (struct simple_bitmap_def)
43 + bytes - sizeof (SBITMAP_ELT_TYPE));
44 bmap = xmalloc (amt);
45 bmap->n_bits = n_elms;
46 bmap->size = size;
47 bmap->bytes = bytes;
48 return bmap;
49 }
50
51 /* Resize a simple bitmap BMAP to N_ELMS bits. If increasing the
52 size of BMAP, clear the new bits to zero if the DEF argument
53 is zero, and set them to one otherwise. */
54
55 sbitmap
56 sbitmap_resize (sbitmap bmap, unsigned int n_elms, int def)
57 {
58 unsigned int bytes, size, amt;
59 unsigned int last_bit;
60
61 size = SBITMAP_SET_SIZE (n_elms);
62 bytes = size * sizeof (SBITMAP_ELT_TYPE);
63 if (bytes > bmap->bytes)
64 {
65 amt = (sizeof (struct simple_bitmap_def)
66 + bytes - sizeof (SBITMAP_ELT_TYPE));
67 bmap = xrealloc (bmap, amt);
68 }
69
70 if (n_elms > bmap->n_bits)
71 {
72 if (def)
73 {
74 memset (bmap->elms + bmap->size, -1, bytes - bmap->bytes);
75
76 /* Set the new bits if the original last element. */
77 last_bit = bmap->n_bits % SBITMAP_ELT_BITS;
78 if (last_bit)
79 bmap->elms[bmap->size - 1]
80 |= ~((SBITMAP_ELT_TYPE)-1 >> (SBITMAP_ELT_BITS - last_bit));
81
82 /* Clear the unused bit in the new last element. */
83 last_bit = n_elms % SBITMAP_ELT_BITS;
84 if (last_bit)
85 bmap->elms[size - 1]
86 &= (SBITMAP_ELT_TYPE)-1 >> (SBITMAP_ELT_BITS - last_bit);
87 }
88 else
89 memset (bmap->elms + bmap->size, 0, bytes - bmap->bytes);
90 }
91 else if (n_elms < bmap->n_bits)
92 {
93 /* Clear the surplus bits in the last word. */
94 last_bit = n_elms % SBITMAP_ELT_BITS;
95 if (last_bit)
96 bmap->elms[size - 1]
97 &= (SBITMAP_ELT_TYPE)-1 >> (SBITMAP_ELT_BITS - last_bit);
98 }
99
100 bmap->n_bits = n_elms;
101 bmap->size = size;
102 bmap->bytes = bytes;
103 return bmap;
104 }
105
106 /* Re-allocate a simple bitmap of N_ELMS bits. New storage is uninitialized. */
107
108 sbitmap
109 sbitmap_realloc (sbitmap src, unsigned int n_elms)
110 {
111 unsigned int bytes, size, amt;
112 sbitmap bmap;
113
114 size = SBITMAP_SET_SIZE (n_elms);
115 bytes = size * sizeof (SBITMAP_ELT_TYPE);
116 amt = (sizeof (struct simple_bitmap_def)
117 + bytes - sizeof (SBITMAP_ELT_TYPE));
118
119 if (src->bytes >= bytes)
120 {
121 src->n_bits = n_elms;
122 return src;
123 }
124
125 bmap = (sbitmap) xrealloc (src, amt);
126 bmap->n_bits = n_elms;
127 bmap->size = size;
128 bmap->bytes = bytes;
129 return bmap;
130 }
131
132 /* Allocate a vector of N_VECS bitmaps of N_ELMS bits. */
133
134 sbitmap *
135 sbitmap_vector_alloc (unsigned int n_vecs, unsigned int n_elms)
136 {
137 unsigned int i, bytes, offset, elm_bytes, size, amt, vector_bytes;
138 sbitmap *bitmap_vector;
139
140 size = SBITMAP_SET_SIZE (n_elms);
141 bytes = size * sizeof (SBITMAP_ELT_TYPE);
142 elm_bytes = (sizeof (struct simple_bitmap_def)
143 + bytes - sizeof (SBITMAP_ELT_TYPE));
144 vector_bytes = n_vecs * sizeof (sbitmap *);
145
146 /* Round up `vector_bytes' to account for the alignment requirements
147 of an sbitmap. One could allocate the vector-table and set of sbitmaps
148 separately, but that requires maintaining two pointers or creating
149 a cover struct to hold both pointers (so our result is still just
150 one pointer). Neither is a bad idea, but this is simpler for now. */
151 {
152 /* Based on DEFAULT_ALIGNMENT computation in obstack.c. */
153 struct { char x; SBITMAP_ELT_TYPE y; } align;
154 int alignment = (char *) & align.y - & align.x;
155 vector_bytes = (vector_bytes + alignment - 1) & ~ (alignment - 1);
156 }
157
158 amt = vector_bytes + (n_vecs * elm_bytes);
159 bitmap_vector = xmalloc (amt);
160
161 for (i = 0, offset = vector_bytes; i < n_vecs; i++, offset += elm_bytes)
162 {
163 sbitmap b = (sbitmap) ((char *) bitmap_vector + offset);
164
165 bitmap_vector[i] = b;
166 b->n_bits = n_elms;
167 b->size = size;
168 b->bytes = bytes;
169 }
170
171 return bitmap_vector;
172 }
173
174 /* Copy sbitmap SRC to DST. */
175
176 void
177 sbitmap_copy (sbitmap dst, sbitmap src)
178 {
179 memcpy (dst->elms, src->elms, sizeof (SBITMAP_ELT_TYPE) * dst->size);
180 }
181
182 /* Determine if a == b. */
183 int
184 sbitmap_equal (sbitmap a, sbitmap b)
185 {
186 return !memcmp (a->elms, b->elms, sizeof (SBITMAP_ELT_TYPE) * a->size);
187 }
188
189 /* Zero all elements in a bitmap. */
190
191 void
192 sbitmap_zero (sbitmap bmap)
193 {
194 memset (bmap->elms, 0, bmap->bytes);
195 }
196
197 /* Set all elements in a bitmap to ones. */
198
199 void
200 sbitmap_ones (sbitmap bmap)
201 {
202 unsigned int last_bit;
203
204 memset (bmap->elms, -1, bmap->bytes);
205
206 last_bit = bmap->n_bits % SBITMAP_ELT_BITS;
207 if (last_bit)
208 bmap->elms[bmap->size - 1]
209 = (SBITMAP_ELT_TYPE)-1 >> (SBITMAP_ELT_BITS - last_bit);
210 }
211
212 /* Zero a vector of N_VECS bitmaps. */
213
214 void
215 sbitmap_vector_zero (sbitmap *bmap, unsigned int n_vecs)
216 {
217 unsigned int i;
218
219 for (i = 0; i < n_vecs; i++)
220 sbitmap_zero (bmap[i]);
221 }
222
223 /* Set a vector of N_VECS bitmaps to ones. */
224
225 void
226 sbitmap_vector_ones (sbitmap *bmap, unsigned int n_vecs)
227 {
228 unsigned int i;
229
230 for (i = 0; i < n_vecs; i++)
231 sbitmap_ones (bmap[i]);
232 }
233
234 /* Set DST to be A union (B - C).
235 DST = A | (B & ~C).
236 Returns true if any change is made. */
237
238 bool
239 sbitmap_union_of_diff_cg (sbitmap dst, sbitmap a, sbitmap b, sbitmap c)
240 {
241 unsigned int i, n = dst->size;
242 sbitmap_ptr dstp = dst->elms;
243 sbitmap_ptr ap = a->elms;
244 sbitmap_ptr bp = b->elms;
245 sbitmap_ptr cp = c->elms;
246 SBITMAP_ELT_TYPE changed = 0;
247
248 for (i = 0; i < n; i++)
249 {
250 SBITMAP_ELT_TYPE tmp = *ap++ | (*bp++ & ~*cp++);
251 changed |= *dstp ^ tmp;
252 *dstp++ = tmp;
253 }
254
255 return changed != 0;
256 }
257
258 void
259 sbitmap_union_of_diff (sbitmap dst, sbitmap a, sbitmap b, sbitmap c)
260 {
261 unsigned int i, n = dst->size;
262 sbitmap_ptr dstp = dst->elms;
263 sbitmap_ptr ap = a->elms;
264 sbitmap_ptr bp = b->elms;
265 sbitmap_ptr cp = c->elms;
266
267 for (i = 0; i < n; i++)
268 *dstp++ = *ap++ | (*bp++ & ~*cp++);
269 }
270
271 /* Set bitmap DST to the bitwise negation of the bitmap SRC. */
272
273 void
274 sbitmap_not (sbitmap dst, sbitmap src)
275 {
276 unsigned int i, n = dst->size;
277 sbitmap_ptr dstp = dst->elms;
278 sbitmap_ptr srcp = src->elms;
279 unsigned int last_bit;
280
281 for (i = 0; i < n; i++)
282 *dstp++ = ~*srcp++;
283
284 /* Zero all bits past n_bits, by ANDing dst with sbitmap_ones. */
285 last_bit = src->n_bits % SBITMAP_ELT_BITS;
286 if (last_bit)
287 dst->elms[n-1] = dst->elms[n-1]
288 & ((SBITMAP_ELT_TYPE)-1 >> (SBITMAP_ELT_BITS - last_bit));
289 }
290
291 /* Set the bits in DST to be the difference between the bits
292 in A and the bits in B. i.e. dst = a & (~b). */
293
294 void
295 sbitmap_difference (sbitmap dst, sbitmap a, sbitmap b)
296 {
297 unsigned int i, dst_size = dst->size;
298 unsigned int min_size = dst->size;
299 sbitmap_ptr dstp = dst->elms;
300 sbitmap_ptr ap = a->elms;
301 sbitmap_ptr bp = b->elms;
302
303 /* A should be at least as large as DEST, to have a defined source. */
304 if (a->size < dst_size)
305 abort ();
306 /* If minuend is smaller, we simply pretend it to be zero bits, i.e.
307 only copy the subtrahend into dest. */
308 if (b->size < min_size)
309 min_size = b->size;
310 for (i = 0; i < min_size; i++)
311 *dstp++ = *ap++ & (~*bp++);
312 /* Now fill the rest of dest from A, if B was too short.
313 This makes sense only when destination and A differ. */
314 if (dst != a && i != dst_size)
315 for (; i < dst_size; i++)
316 *dstp++ = *ap++;
317 }
318
319 /* Set DST to be (A and B).
320 Return nonzero if any change is made. */
321
322 bool
323 sbitmap_a_and_b_cg (sbitmap dst, sbitmap a, sbitmap b)
324 {
325 unsigned int i, n = dst->size;
326 sbitmap_ptr dstp = dst->elms;
327 sbitmap_ptr ap = a->elms;
328 sbitmap_ptr bp = b->elms;
329 SBITMAP_ELT_TYPE changed = 0;
330
331 for (i = 0; i < n; i++)
332 {
333 SBITMAP_ELT_TYPE tmp = *ap++ & *bp++;
334 changed |= *dstp ^ tmp;
335 *dstp++ = tmp;
336 }
337
338 return changed != 0;
339 }
340
341 void
342 sbitmap_a_and_b (sbitmap dst, sbitmap a, sbitmap b)
343 {
344 unsigned int i, n = dst->size;
345 sbitmap_ptr dstp = dst->elms;
346 sbitmap_ptr ap = a->elms;
347 sbitmap_ptr bp = b->elms;
348
349 for (i = 0; i < n; i++)
350 *dstp++ = *ap++ & *bp++;
351 }
352
353 /* Set DST to be (A xor B)).
354 Return nonzero if any change is made. */
355
356 bool
357 sbitmap_a_xor_b_cg (sbitmap dst, sbitmap a, sbitmap b)
358 {
359 unsigned int i, n = dst->size;
360 sbitmap_ptr dstp = dst->elms;
361 sbitmap_ptr ap = a->elms;
362 sbitmap_ptr bp = b->elms;
363 SBITMAP_ELT_TYPE changed = 0;
364
365 for (i = 0; i < n; i++)
366 {
367 SBITMAP_ELT_TYPE tmp = *ap++ ^ *bp++;
368 changed |= *dstp ^ tmp;
369 *dstp++ = tmp;
370 }
371
372 return changed != 0;
373 }
374
375 void
376 sbitmap_a_xor_b (sbitmap dst, sbitmap a, sbitmap b)
377 {
378 unsigned int i, n = dst->size;
379 sbitmap_ptr dstp = dst->elms;
380 sbitmap_ptr ap = a->elms;
381 sbitmap_ptr bp = b->elms;
382
383 for (i = 0; i < n; i++)
384 *dstp++ = *ap++ ^ *bp++;
385 }
386
387 /* Set DST to be (A or B)).
388 Return nonzero if any change is made. */
389
390 bool
391 sbitmap_a_or_b_cg (sbitmap dst, sbitmap a, sbitmap b)
392 {
393 unsigned int i, n = dst->size;
394 sbitmap_ptr dstp = dst->elms;
395 sbitmap_ptr ap = a->elms;
396 sbitmap_ptr bp = b->elms;
397 SBITMAP_ELT_TYPE changed = 0;
398
399 for (i = 0; i < n; i++)
400 {
401 SBITMAP_ELT_TYPE tmp = *ap++ | *bp++;
402 changed |= *dstp ^ tmp;
403 *dstp++ = tmp;
404 }
405
406 return changed != 0;
407 }
408
409 void
410 sbitmap_a_or_b (sbitmap dst, sbitmap a, sbitmap b)
411 {
412 unsigned int i, n = dst->size;
413 sbitmap_ptr dstp = dst->elms;
414 sbitmap_ptr ap = a->elms;
415 sbitmap_ptr bp = b->elms;
416
417 for (i = 0; i < n; i++)
418 *dstp++ = *ap++ | *bp++;
419 }
420
421 /* Return nonzero if A is a subset of B. */
422
423 bool
424 sbitmap_a_subset_b_p (sbitmap a, sbitmap b)
425 {
426 unsigned int i, n = a->size;
427 sbitmap_ptr ap, bp;
428
429 for (ap = a->elms, bp = b->elms, i = 0; i < n; i++, ap++, bp++)
430 if ((*ap | *bp) != *bp)
431 return false;
432
433 return true;
434 }
435
436 /* Set DST to be (A or (B and C)).
437 Return nonzero if any change is made. */
438
439 bool
440 sbitmap_a_or_b_and_c_cg (sbitmap dst, sbitmap a, sbitmap b, sbitmap c)
441 {
442 unsigned int i, n = dst->size;
443 sbitmap_ptr dstp = dst->elms;
444 sbitmap_ptr ap = a->elms;
445 sbitmap_ptr bp = b->elms;
446 sbitmap_ptr cp = c->elms;
447 SBITMAP_ELT_TYPE changed = 0;
448
449 for (i = 0; i < n; i++)
450 {
451 SBITMAP_ELT_TYPE tmp = *ap++ | (*bp++ & *cp++);
452 changed |= *dstp ^ tmp;
453 *dstp++ = tmp;
454 }
455
456 return changed != 0;
457 }
458
459 void
460 sbitmap_a_or_b_and_c (sbitmap dst, sbitmap a, sbitmap b, sbitmap c)
461 {
462 unsigned int i, n = dst->size;
463 sbitmap_ptr dstp = dst->elms;
464 sbitmap_ptr ap = a->elms;
465 sbitmap_ptr bp = b->elms;
466 sbitmap_ptr cp = c->elms;
467
468 for (i = 0; i < n; i++)
469 *dstp++ = *ap++ | (*bp++ & *cp++);
470 }
471
472 /* Set DST to be (A and (B or C)).
473 Return nonzero if any change is made. */
474
475 bool
476 sbitmap_a_and_b_or_c_cg (sbitmap dst, sbitmap a, sbitmap b, sbitmap c)
477 {
478 unsigned int i, n = dst->size;
479 sbitmap_ptr dstp = dst->elms;
480 sbitmap_ptr ap = a->elms;
481 sbitmap_ptr bp = b->elms;
482 sbitmap_ptr cp = c->elms;
483 SBITMAP_ELT_TYPE changed = 0;
484
485 for (i = 0; i < n; i++)
486 {
487 SBITMAP_ELT_TYPE tmp = *ap++ & (*bp++ | *cp++);
488 changed |= *dstp ^ tmp;
489 *dstp++ = tmp;
490 }
491
492 return changed != 0;
493 }
494
495 void
496 sbitmap_a_and_b_or_c (sbitmap dst, sbitmap a, sbitmap b, sbitmap c)
497 {
498 unsigned int i, n = dst->size;
499 sbitmap_ptr dstp = dst->elms;
500 sbitmap_ptr ap = a->elms;
501 sbitmap_ptr bp = b->elms;
502 sbitmap_ptr cp = c->elms;
503
504 for (i = 0; i < n; i++)
505 *dstp++ = *ap++ & (*bp++ | *cp++);
506 }
507
508 #ifdef IN_GCC
509 /* Set the bitmap DST to the intersection of SRC of successors of
510 block number BB, using the new flow graph structures. */
511
512 void
513 sbitmap_intersection_of_succs (sbitmap dst, sbitmap *src, int bb)
514 {
515 basic_block b = BASIC_BLOCK (bb);
516 unsigned int set_size = dst->size;
517 edge e;
518
519 for (e = b->succ; e != 0; e = e->succ_next)
520 {
521 if (e->dest == EXIT_BLOCK_PTR)
522 continue;
523
524 sbitmap_copy (dst, src[e->dest->index]);
525 break;
526 }
527
528 if (e == 0)
529 sbitmap_ones (dst);
530 else
531 for (e = e->succ_next; e != 0; e = e->succ_next)
532 {
533 unsigned int i;
534 sbitmap_ptr p, r;
535
536 if (e->dest == EXIT_BLOCK_PTR)
537 continue;
538
539 p = src[e->dest->index]->elms;
540 r = dst->elms;
541 for (i = 0; i < set_size; i++)
542 *r++ &= *p++;
543 }
544 }
545
546 /* Set the bitmap DST to the intersection of SRC of predecessors of
547 block number BB, using the new flow graph structures. */
548
549 void
550 sbitmap_intersection_of_preds (sbitmap dst, sbitmap *src, int bb)
551 {
552 basic_block b = BASIC_BLOCK (bb);
553 unsigned int set_size = dst->size;
554 edge e;
555
556 for (e = b->pred; e != 0; e = e->pred_next)
557 {
558 if (e->src == ENTRY_BLOCK_PTR)
559 continue;
560
561 sbitmap_copy (dst, src[e->src->index]);
562 break;
563 }
564
565 if (e == 0)
566 sbitmap_ones (dst);
567 else
568 for (e = e->pred_next; e != 0; e = e->pred_next)
569 {
570 unsigned int i;
571 sbitmap_ptr p, r;
572
573 if (e->src == ENTRY_BLOCK_PTR)
574 continue;
575
576 p = src[e->src->index]->elms;
577 r = dst->elms;
578 for (i = 0; i < set_size; i++)
579 *r++ &= *p++;
580 }
581 }
582
583 /* Set the bitmap DST to the union of SRC of successors of
584 block number BB, using the new flow graph structures. */
585
586 void
587 sbitmap_union_of_succs (sbitmap dst, sbitmap *src, int bb)
588 {
589 basic_block b = BASIC_BLOCK (bb);
590 unsigned int set_size = dst->size;
591 edge e;
592
593 for (e = b->succ; e != 0; e = e->succ_next)
594 {
595 if (e->dest == EXIT_BLOCK_PTR)
596 continue;
597
598 sbitmap_copy (dst, src[e->dest->index]);
599 break;
600 }
601
602 if (e == 0)
603 sbitmap_zero (dst);
604 else
605 for (e = e->succ_next; e != 0; e = e->succ_next)
606 {
607 unsigned int i;
608 sbitmap_ptr p, r;
609
610 if (e->dest == EXIT_BLOCK_PTR)
611 continue;
612
613 p = src[e->dest->index]->elms;
614 r = dst->elms;
615 for (i = 0; i < set_size; i++)
616 *r++ |= *p++;
617 }
618 }
619
620 /* Set the bitmap DST to the union of SRC of predecessors of
621 block number BB, using the new flow graph structures. */
622
623 void
624 sbitmap_union_of_preds (sbitmap dst, sbitmap *src, int bb)
625 {
626 basic_block b = BASIC_BLOCK (bb);
627 unsigned int set_size = dst->size;
628 edge e;
629
630 for (e = b->pred; e != 0; e = e->pred_next)
631 {
632 if (e->src== ENTRY_BLOCK_PTR)
633 continue;
634
635 sbitmap_copy (dst, src[e->src->index]);
636 break;
637 }
638
639 if (e == 0)
640 sbitmap_zero (dst);
641 else
642 for (e = e->pred_next; e != 0; e = e->pred_next)
643 {
644 unsigned int i;
645 sbitmap_ptr p, r;
646
647 if (e->src == ENTRY_BLOCK_PTR)
648 continue;
649
650 p = src[e->src->index]->elms;
651 r = dst->elms;
652 for (i = 0; i < set_size; i++)
653 *r++ |= *p++;
654 }
655 }
656 #endif
657
658 /* Return number of first bit set in the bitmap, -1 if none. */
659
660 int
661 sbitmap_first_set_bit (sbitmap bmap)
662 {
663 unsigned int n;
664
665 EXECUTE_IF_SET_IN_SBITMAP (bmap, 0, n, { return n; });
666 return -1;
667 }
668
669 /* Return number of last bit set in the bitmap, -1 if none. */
670
671 int
672 sbitmap_last_set_bit (sbitmap bmap)
673 {
674 int i;
675 SBITMAP_ELT_TYPE *ptr = bmap->elms;
676
677 for (i = bmap->size - 1; i >= 0; i--)
678 {
679 SBITMAP_ELT_TYPE word = ptr[i];
680
681 if (word != 0)
682 {
683 unsigned int index = (i + 1) * SBITMAP_ELT_BITS - 1;
684 SBITMAP_ELT_TYPE mask
685 = (SBITMAP_ELT_TYPE) 1 << (SBITMAP_ELT_BITS - 1);
686
687 while (1)
688 {
689 if ((word & mask) != 0)
690 return index;
691
692 mask >>= 1;
693 index--;
694 }
695 }
696 }
697
698 return -1;
699 }
700
701 void
702 dump_sbitmap (FILE *file, sbitmap bmap)
703 {
704 unsigned int i, n, j;
705 unsigned int set_size = bmap->size;
706 unsigned int total_bits = bmap->n_bits;
707
708 fprintf (file, " ");
709 for (i = n = 0; i < set_size && n < total_bits; i++)
710 for (j = 0; j < SBITMAP_ELT_BITS && n < total_bits; j++, n++)
711 {
712 if (n != 0 && n % 10 == 0)
713 fprintf (file, " ");
714
715 fprintf (file, "%d",
716 (bmap->elms[i] & ((SBITMAP_ELT_TYPE) 1 << j)) != 0);
717 }
718
719 fprintf (file, "\n");
720 }
721
722 void
723 dump_sbitmap_file (FILE *file, sbitmap bmap)
724 {
725 unsigned int i, pos;
726
727 fprintf (file, "n_bits = %d, set = {", bmap->n_bits);
728
729 for (pos = 30, i = 0; i < bmap->n_bits; i++)
730 if (TEST_BIT (bmap, i))
731 {
732 if (pos > 70)
733 {
734 fprintf (file, "\n ");
735 pos = 0;
736 }
737
738 fprintf (file, "%d ", i);
739 pos += 2 + (i >= 10) + (i >= 100) + (i >= 1000);
740 }
741
742 fprintf (file, "}\n");
743 }
744
745 void
746 debug_sbitmap (sbitmap bmap)
747 {
748 dump_sbitmap_file (stderr, bmap);
749 }
750
751 void
752 dump_sbitmap_vector (FILE *file, const char *title, const char *subtitle,
753 sbitmap *bmaps, int n_maps)
754 {
755 int bb;
756
757 fprintf (file, "%s\n", title);
758 for (bb = 0; bb < n_maps; bb++)
759 {
760 fprintf (file, "%s %d\n", subtitle, bb);
761 dump_sbitmap (file, bmaps[bb]);
762 }
763
764 fprintf (file, "\n");
765 }
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