2 Copyright (C) 1999-2017 Free Software Foundation, Inc.
4 This file is part of GCC.
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 3, or (at your option) any later
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
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING3. If not see
18 <http://www.gnu.org/licenses/>. */
22 #include "coretypes.h"
25 typedef SBITMAP_ELT_TYPE
*sbitmap_ptr
;
26 typedef const SBITMAP_ELT_TYPE
*const_sbitmap_ptr
;
28 /* Return the size in bytes of a bitmap MAP. */
30 static inline unsigned int sbitmap_size_bytes (const_sbitmap map
)
32 return map
->size
* sizeof (SBITMAP_ELT_TYPE
);
36 /* Bitmap manipulation routines. */
38 /* Allocate a simple bitmap of N_ELMS bits. */
41 sbitmap_alloc (unsigned int n_elms
)
43 unsigned int bytes
, size
, amt
;
46 size
= SBITMAP_SET_SIZE (n_elms
);
47 bytes
= size
* sizeof (SBITMAP_ELT_TYPE
);
48 amt
= (sizeof (struct simple_bitmap_def
)
49 + bytes
- sizeof (SBITMAP_ELT_TYPE
));
50 bmap
= (sbitmap
) xmalloc (amt
);
51 bmap
->n_bits
= n_elms
;
56 /* Resize a simple bitmap BMAP to N_ELMS bits. If increasing the
57 size of BMAP, clear the new bits to zero if the DEF argument
58 is zero, and set them to one otherwise. */
61 sbitmap_resize (sbitmap bmap
, unsigned int n_elms
, int def
)
63 unsigned int bytes
, size
, amt
;
64 unsigned int last_bit
;
66 size
= SBITMAP_SET_SIZE (n_elms
);
67 bytes
= size
* sizeof (SBITMAP_ELT_TYPE
);
68 if (bytes
> sbitmap_size_bytes (bmap
))
70 amt
= (sizeof (struct simple_bitmap_def
)
71 + bytes
- sizeof (SBITMAP_ELT_TYPE
));
72 bmap
= (sbitmap
) xrealloc (bmap
, amt
);
75 if (n_elms
> bmap
->n_bits
)
79 memset (bmap
->elms
+ bmap
->size
, -1,
80 bytes
- sbitmap_size_bytes (bmap
));
82 /* Set the new bits if the original last element. */
83 last_bit
= bmap
->n_bits
% SBITMAP_ELT_BITS
;
85 bmap
->elms
[bmap
->size
- 1]
86 |= ~((SBITMAP_ELT_TYPE
)-1 >> (SBITMAP_ELT_BITS
- last_bit
));
88 /* Clear the unused bit in the new last element. */
89 last_bit
= n_elms
% SBITMAP_ELT_BITS
;
92 &= (SBITMAP_ELT_TYPE
)-1 >> (SBITMAP_ELT_BITS
- last_bit
);
95 memset (bmap
->elms
+ bmap
->size
, 0, bytes
- sbitmap_size_bytes (bmap
));
97 else if (n_elms
< bmap
->n_bits
)
99 /* Clear the surplus bits in the last word. */
100 last_bit
= n_elms
% SBITMAP_ELT_BITS
;
103 &= (SBITMAP_ELT_TYPE
)-1 >> (SBITMAP_ELT_BITS
- last_bit
);
106 bmap
->n_bits
= n_elms
;
111 /* Re-allocate a simple bitmap of N_ELMS bits. New storage is uninitialized. */
114 sbitmap_realloc (sbitmap src
, unsigned int n_elms
)
116 unsigned int bytes
, size
, amt
;
119 size
= SBITMAP_SET_SIZE (n_elms
);
120 bytes
= size
* sizeof (SBITMAP_ELT_TYPE
);
121 amt
= (sizeof (struct simple_bitmap_def
)
122 + bytes
- sizeof (SBITMAP_ELT_TYPE
));
124 if (sbitmap_size_bytes (src
) >= bytes
)
126 src
->n_bits
= n_elms
;
130 bmap
= (sbitmap
) xrealloc (src
, amt
);
131 bmap
->n_bits
= n_elms
;
136 /* Allocate a vector of N_VECS bitmaps of N_ELMS bits. */
139 sbitmap_vector_alloc (unsigned int n_vecs
, unsigned int n_elms
)
141 unsigned int i
, bytes
, offset
, elm_bytes
, size
, amt
, vector_bytes
;
142 sbitmap
*bitmap_vector
;
144 size
= SBITMAP_SET_SIZE (n_elms
);
145 bytes
= size
* sizeof (SBITMAP_ELT_TYPE
);
146 elm_bytes
= (sizeof (struct simple_bitmap_def
)
147 + bytes
- sizeof (SBITMAP_ELT_TYPE
));
148 vector_bytes
= n_vecs
* sizeof (sbitmap
*);
150 /* Round up `vector_bytes' to account for the alignment requirements
151 of an sbitmap. One could allocate the vector-table and set of sbitmaps
152 separately, but that requires maintaining two pointers or creating
153 a cover struct to hold both pointers (so our result is still just
154 one pointer). Neither is a bad idea, but this is simpler for now. */
156 /* Based on DEFAULT_ALIGNMENT computation in obstack.c. */
157 struct { char x
; SBITMAP_ELT_TYPE y
; } align
;
158 int alignment
= (char *) & align
.y
- & align
.x
;
159 vector_bytes
= (vector_bytes
+ alignment
- 1) & ~ (alignment
- 1);
162 amt
= vector_bytes
+ (n_vecs
* elm_bytes
);
163 bitmap_vector
= (sbitmap
*) xmalloc (amt
);
165 for (i
= 0, offset
= vector_bytes
; i
< n_vecs
; i
++, offset
+= elm_bytes
)
167 sbitmap b
= (sbitmap
) ((char *) bitmap_vector
+ offset
);
169 bitmap_vector
[i
] = b
;
174 return bitmap_vector
;
177 /* Copy sbitmap SRC to DST. */
180 bitmap_copy (sbitmap dst
, const_sbitmap src
)
182 memcpy (dst
->elms
, src
->elms
, sizeof (SBITMAP_ELT_TYPE
) * dst
->size
);
185 /* Determine if a == b. */
187 bitmap_equal_p (const_sbitmap a
, const_sbitmap b
)
189 return !memcmp (a
->elms
, b
->elms
, sizeof (SBITMAP_ELT_TYPE
) * a
->size
);
192 /* Return true if the bitmap is empty. */
195 bitmap_empty_p (const_sbitmap bmap
)
198 for (i
=0; i
<bmap
->size
; i
++)
205 /* Clear COUNT bits from START in BMAP. */
208 bitmap_clear_range (sbitmap bmap
, unsigned int start
, unsigned int count
)
213 unsigned int start_word
= start
/ SBITMAP_ELT_BITS
;
214 unsigned int start_bitno
= start
% SBITMAP_ELT_BITS
;
216 /* Clearing less than a full word, starting at the beginning of a word. */
217 if (start_bitno
== 0 && count
< SBITMAP_ELT_BITS
)
219 SBITMAP_ELT_TYPE mask
= ((SBITMAP_ELT_TYPE
)1 << count
) - 1;
220 bmap
->elms
[start_word
] &= ~mask
;
224 unsigned int end_word
= (start
+ count
) / SBITMAP_ELT_BITS
;
225 unsigned int end_bitno
= (start
+ count
) % SBITMAP_ELT_BITS
;
227 /* Clearing starts somewhere in the middle of the first word. Clear up to
228 the end of the first word or the end of the requested region, whichever
230 if (start_bitno
!= 0)
232 unsigned int nbits
= ((start_word
== end_word
)
233 ? end_bitno
- start_bitno
234 : SBITMAP_ELT_BITS
- start_bitno
);
235 SBITMAP_ELT_TYPE mask
= ((SBITMAP_ELT_TYPE
)1 << nbits
) - 1;
236 mask
<<= start_bitno
;
237 bmap
->elms
[start_word
] &= ~mask
;
245 /* Now clear words at a time until we hit a partial word. */
246 unsigned int nwords
= (end_word
- start_word
);
249 memset (&bmap
->elms
[start_word
], 0, nwords
* sizeof (SBITMAP_ELT_TYPE
));
250 count
-= nwords
* sizeof (SBITMAP_ELT_TYPE
) * BITS_PER_UNIT
;
251 start_word
+= nwords
;
257 /* Now handle residuals in the last word. */
258 SBITMAP_ELT_TYPE mask
= ((SBITMAP_ELT_TYPE
)1 << count
) - 1;
259 bmap
->elms
[start_word
] &= ~mask
;
262 /* Set COUNT bits from START in BMAP. */
264 bitmap_set_range (sbitmap bmap
, unsigned int start
, unsigned int count
)
269 unsigned int start_word
= start
/ SBITMAP_ELT_BITS
;
270 unsigned int start_bitno
= start
% SBITMAP_ELT_BITS
;
272 /* Setting less than a full word, starting at the beginning of a word. */
273 if (start_bitno
== 0 && count
< SBITMAP_ELT_BITS
)
275 SBITMAP_ELT_TYPE mask
= ((SBITMAP_ELT_TYPE
)1 << count
) - 1;
276 bmap
->elms
[start_word
] |= mask
;
280 unsigned int end_word
= (start
+ count
) / SBITMAP_ELT_BITS
;
281 unsigned int end_bitno
= (start
+ count
) % SBITMAP_ELT_BITS
;
283 /* Setting starts somewhere in the middle of the first word. Set up to
284 the end of the first word or the end of the requested region, whichever
286 if (start_bitno
!= 0)
288 unsigned int nbits
= ((start_word
== end_word
)
289 ? end_bitno
- start_bitno
290 : SBITMAP_ELT_BITS
- start_bitno
);
291 SBITMAP_ELT_TYPE mask
= ((SBITMAP_ELT_TYPE
)1 << nbits
) - 1;
292 mask
<<= start_bitno
;
293 bmap
->elms
[start_word
] |= mask
;
301 /* Now set words at a time until we hit a partial word. */
302 unsigned int nwords
= (end_word
- start_word
);
305 memset (&bmap
->elms
[start_word
], 0xff,
306 nwords
* sizeof (SBITMAP_ELT_TYPE
));
307 count
-= nwords
* sizeof (SBITMAP_ELT_TYPE
) * BITS_PER_UNIT
;
308 start_word
+= nwords
;
314 /* Now handle residuals in the last word. */
315 SBITMAP_ELT_TYPE mask
= ((SBITMAP_ELT_TYPE
)1 << count
) - 1;
316 bmap
->elms
[start_word
] |= mask
;
319 #if GCC_VERSION < 3400
320 /* Table of number of set bits in a character, indexed by value of char. */
321 static const unsigned char popcount_table
[] =
323 0,1,1,2,1,2,2,3,1,2,2,3,2,3,3,4,1,2,2,3,2,3,3,4,2,3,3,4,3,4,4,5,
324 1,2,2,3,2,3,3,4,2,3,3,4,3,4,4,5,2,3,3,4,3,4,4,5,3,4,4,5,4,5,5,6,
325 1,2,2,3,2,3,3,4,2,3,3,4,3,4,4,5,2,3,3,4,3,4,4,5,3,4,4,5,4,5,5,6,
326 2,3,3,4,3,4,4,5,3,4,4,5,4,5,5,6,3,4,4,5,4,5,5,6,4,5,5,6,5,6,6,7,
327 1,2,2,3,2,3,3,4,2,3,3,4,3,4,4,5,2,3,3,4,3,4,4,5,3,4,4,5,4,5,5,6,
328 2,3,3,4,3,4,4,5,3,4,4,5,4,5,5,6,3,4,4,5,4,5,5,6,4,5,5,6,5,6,6,7,
329 2,3,3,4,3,4,4,5,3,4,4,5,4,5,5,6,3,4,4,5,4,5,5,6,4,5,5,6,5,6,6,7,
330 3,4,4,5,4,5,5,6,4,5,5,6,5,6,6,7,4,5,5,6,5,6,6,7,5,6,6,7,6,7,7,8,
334 sbitmap_popcount (SBITMAP_ELT_TYPE a
)
336 unsigned long ret
= 0;
339 /* Just do this the table way for now */
340 for (i
= 0; i
< HOST_BITS_PER_WIDEST_FAST_INT
; i
+= 8)
341 ret
+= popcount_table
[(a
>> i
) & 0xff];
346 /* Count and return the number of bits set in the bitmap BMAP. */
349 bitmap_count_bits (const_sbitmap bmap
)
351 unsigned int count
= 0;
352 for (unsigned int i
= 0; i
< bmap
->size
; i
++)
355 #if GCC_VERSION < 3400
356 count
+= sbitmap_popcount (bmap
->elms
[i
]);
358 # if HOST_BITS_PER_WIDEST_FAST_INT == HOST_BITS_PER_LONG
359 count
+= __builtin_popcountl (bmap
->elms
[i
]);
360 # elif HOST_BITS_PER_WIDEST_FAST_INT == HOST_BITS_PER_LONGLONG
361 count
+= __builtin_popcountll (bmap
->elms
[i
]);
363 count
+= __builtin_popcount (bmap
->elms
[i
]);
370 /* Zero all elements in a bitmap. */
373 bitmap_clear (sbitmap bmap
)
375 memset (bmap
->elms
, 0, sbitmap_size_bytes (bmap
));
378 /* Set all elements in a bitmap to ones. */
381 bitmap_ones (sbitmap bmap
)
383 unsigned int last_bit
;
385 memset (bmap
->elms
, -1, sbitmap_size_bytes (bmap
));
387 last_bit
= bmap
->n_bits
% SBITMAP_ELT_BITS
;
389 bmap
->elms
[bmap
->size
- 1]
390 = (SBITMAP_ELT_TYPE
)-1 >> (SBITMAP_ELT_BITS
- last_bit
);
393 /* Zero a vector of N_VECS bitmaps. */
396 bitmap_vector_clear (sbitmap
*bmap
, unsigned int n_vecs
)
400 for (i
= 0; i
< n_vecs
; i
++)
401 bitmap_clear (bmap
[i
]);
404 /* Set a vector of N_VECS bitmaps to ones. */
407 bitmap_vector_ones (sbitmap
*bmap
, unsigned int n_vecs
)
411 for (i
= 0; i
< n_vecs
; i
++)
412 bitmap_ones (bmap
[i
]);
415 /* Set DST to be A union (B - C).
417 Returns true if any change is made. */
420 bitmap_ior_and_compl (sbitmap dst
, const_sbitmap a
, const_sbitmap b
, const_sbitmap c
)
422 unsigned int i
, n
= dst
->size
;
423 sbitmap_ptr dstp
= dst
->elms
;
424 const_sbitmap_ptr ap
= a
->elms
;
425 const_sbitmap_ptr bp
= b
->elms
;
426 const_sbitmap_ptr cp
= c
->elms
;
427 SBITMAP_ELT_TYPE changed
= 0;
429 for (i
= 0; i
< n
; i
++)
431 const SBITMAP_ELT_TYPE tmp
= *ap
++ | (*bp
++ & ~*cp
++);
432 changed
|= *dstp
^ tmp
;
439 /* Set bitmap DST to the bitwise negation of the bitmap SRC. */
442 bitmap_not (sbitmap dst
, const_sbitmap src
)
444 unsigned int i
, n
= dst
->size
;
445 sbitmap_ptr dstp
= dst
->elms
;
446 const_sbitmap_ptr srcp
= src
->elms
;
447 unsigned int last_bit
;
449 for (i
= 0; i
< n
; i
++)
452 /* Zero all bits past n_bits, by ANDing dst with bitmap_ones. */
453 last_bit
= src
->n_bits
% SBITMAP_ELT_BITS
;
455 dst
->elms
[n
-1] = dst
->elms
[n
-1]
456 & ((SBITMAP_ELT_TYPE
)-1 >> (SBITMAP_ELT_BITS
- last_bit
));
459 /* Set the bits in DST to be the difference between the bits
460 in A and the bits in B. i.e. dst = a & (~b). */
463 bitmap_and_compl (sbitmap dst
, const_sbitmap a
, const_sbitmap b
)
465 unsigned int i
, dst_size
= dst
->size
;
466 unsigned int min_size
= dst
->size
;
467 sbitmap_ptr dstp
= dst
->elms
;
468 const_sbitmap_ptr ap
= a
->elms
;
469 const_sbitmap_ptr bp
= b
->elms
;
471 /* A should be at least as large as DEST, to have a defined source. */
472 gcc_assert (a
->size
>= dst_size
);
473 /* If minuend is smaller, we simply pretend it to be zero bits, i.e.
474 only copy the subtrahend into dest. */
475 if (b
->size
< min_size
)
477 for (i
= 0; i
< min_size
; i
++)
478 *dstp
++ = *ap
++ & (~*bp
++);
479 /* Now fill the rest of dest from A, if B was too short.
480 This makes sense only when destination and A differ. */
481 if (dst
!= a
&& i
!= dst_size
)
482 for (; i
< dst_size
; i
++)
486 /* Return true if there are any bits set in A are also set in B.
487 Return false otherwise. */
490 bitmap_intersect_p (const_sbitmap a
, const_sbitmap b
)
492 const_sbitmap_ptr ap
= a
->elms
;
493 const_sbitmap_ptr bp
= b
->elms
;
496 n
= MIN (a
->size
, b
->size
);
497 for (i
= 0; i
< n
; i
++)
498 if ((*ap
++ & *bp
++) != 0)
504 /* Set DST to be (A and B).
505 Return nonzero if any change is made. */
508 bitmap_and (sbitmap dst
, const_sbitmap a
, const_sbitmap b
)
510 unsigned int i
, n
= dst
->size
;
511 sbitmap_ptr dstp
= dst
->elms
;
512 const_sbitmap_ptr ap
= a
->elms
;
513 const_sbitmap_ptr bp
= b
->elms
;
514 SBITMAP_ELT_TYPE changed
= 0;
516 for (i
= 0; i
< n
; i
++)
518 const SBITMAP_ELT_TYPE tmp
= *ap
++ & *bp
++;
519 SBITMAP_ELT_TYPE wordchanged
= *dstp
^ tmp
;
521 changed
|= wordchanged
;
526 /* Set DST to be (A xor B)).
527 Return nonzero if any change is made. */
530 bitmap_xor (sbitmap dst
, const_sbitmap a
, const_sbitmap b
)
532 unsigned int i
, n
= dst
->size
;
533 sbitmap_ptr dstp
= dst
->elms
;
534 const_sbitmap_ptr ap
= a
->elms
;
535 const_sbitmap_ptr bp
= b
->elms
;
536 SBITMAP_ELT_TYPE changed
= 0;
538 for (i
= 0; i
< n
; i
++)
540 const SBITMAP_ELT_TYPE tmp
= *ap
++ ^ *bp
++;
541 SBITMAP_ELT_TYPE wordchanged
= *dstp
^ tmp
;
543 changed
|= wordchanged
;
548 /* Set DST to be (A or B)).
549 Return nonzero if any change is made. */
552 bitmap_ior (sbitmap dst
, const_sbitmap a
, const_sbitmap b
)
554 unsigned int i
, n
= dst
->size
;
555 sbitmap_ptr dstp
= dst
->elms
;
556 const_sbitmap_ptr ap
= a
->elms
;
557 const_sbitmap_ptr bp
= b
->elms
;
558 SBITMAP_ELT_TYPE changed
= 0;
560 for (i
= 0; i
< n
; i
++)
562 const SBITMAP_ELT_TYPE tmp
= *ap
++ | *bp
++;
563 SBITMAP_ELT_TYPE wordchanged
= *dstp
^ tmp
;
565 changed
|= wordchanged
;
570 /* Return nonzero if A is a subset of B. */
573 bitmap_subset_p (const_sbitmap a
, const_sbitmap b
)
575 unsigned int i
, n
= a
->size
;
576 const_sbitmap_ptr ap
, bp
;
578 for (ap
= a
->elms
, bp
= b
->elms
, i
= 0; i
< n
; i
++, ap
++, bp
++)
579 if ((*ap
| *bp
) != *bp
)
585 /* Set DST to be (A or (B and C)).
586 Return nonzero if any change is made. */
589 bitmap_or_and (sbitmap dst
, const_sbitmap a
, const_sbitmap b
, const_sbitmap c
)
591 unsigned int i
, n
= dst
->size
;
592 sbitmap_ptr dstp
= dst
->elms
;
593 const_sbitmap_ptr ap
= a
->elms
;
594 const_sbitmap_ptr bp
= b
->elms
;
595 const_sbitmap_ptr cp
= c
->elms
;
596 SBITMAP_ELT_TYPE changed
= 0;
598 for (i
= 0; i
< n
; i
++)
600 const SBITMAP_ELT_TYPE tmp
= *ap
++ | (*bp
++ & *cp
++);
601 changed
|= *dstp
^ tmp
;
608 /* Set DST to be (A and (B or C)).
609 Return nonzero if any change is made. */
612 bitmap_and_or (sbitmap dst
, const_sbitmap a
, const_sbitmap b
, const_sbitmap c
)
614 unsigned int i
, n
= dst
->size
;
615 sbitmap_ptr dstp
= dst
->elms
;
616 const_sbitmap_ptr ap
= a
->elms
;
617 const_sbitmap_ptr bp
= b
->elms
;
618 const_sbitmap_ptr cp
= c
->elms
;
619 SBITMAP_ELT_TYPE changed
= 0;
621 for (i
= 0; i
< n
; i
++)
623 const SBITMAP_ELT_TYPE tmp
= *ap
++ & (*bp
++ | *cp
++);
624 changed
|= *dstp
^ tmp
;
631 /* Return number of first bit set in the bitmap, -1 if none. */
634 bitmap_first_set_bit (const_sbitmap bmap
)
637 sbitmap_iterator sbi
;
639 EXECUTE_IF_SET_IN_BITMAP (bmap
, 0, n
, sbi
)
644 /* Return number of last bit set in the bitmap, -1 if none. */
647 bitmap_last_set_bit (const_sbitmap bmap
)
650 const SBITMAP_ELT_TYPE
*const ptr
= bmap
->elms
;
652 for (i
= bmap
->size
- 1; i
>= 0; i
--)
654 const SBITMAP_ELT_TYPE word
= ptr
[i
];
658 unsigned int index
= (i
+ 1) * SBITMAP_ELT_BITS
- 1;
659 SBITMAP_ELT_TYPE mask
660 = (SBITMAP_ELT_TYPE
) 1 << (SBITMAP_ELT_BITS
- 1);
664 if ((word
& mask
) != 0)
677 dump_bitmap (FILE *file
, const_sbitmap bmap
)
679 unsigned int i
, n
, j
;
680 unsigned int set_size
= bmap
->size
;
681 unsigned int total_bits
= bmap
->n_bits
;
684 for (i
= n
= 0; i
< set_size
&& n
< total_bits
; i
++)
685 for (j
= 0; j
< SBITMAP_ELT_BITS
&& n
< total_bits
; j
++, n
++)
687 if (n
!= 0 && n
% 10 == 0)
691 (bmap
->elms
[i
] & ((SBITMAP_ELT_TYPE
) 1 << j
)) != 0);
694 fprintf (file
, "\n");
698 debug_raw (simple_bitmap_def
&ref
)
700 dump_bitmap (stderr
, &ref
);
704 debug_raw (simple_bitmap_def
*ptr
)
709 fprintf (stderr
, "<nil>\n");
713 dump_bitmap_file (FILE *file
, const_sbitmap bmap
)
717 fprintf (file
, "n_bits = %d, set = {", bmap
->n_bits
);
719 for (pos
= 30, i
= 0; i
< bmap
->n_bits
; i
++)
720 if (bitmap_bit_p (bmap
, i
))
724 fprintf (file
, "\n ");
728 fprintf (file
, "%d ", i
);
729 pos
+= 2 + (i
>= 10) + (i
>= 100) + (i
>= 1000);
732 fprintf (file
, "}\n");
736 debug_bitmap (const_sbitmap bmap
)
738 dump_bitmap_file (stderr
, bmap
);
742 debug (simple_bitmap_def
&ref
)
744 dump_bitmap_file (stderr
, &ref
);
748 debug (simple_bitmap_def
*ptr
)
753 fprintf (stderr
, "<nil>\n");
757 dump_bitmap_vector (FILE *file
, const char *title
, const char *subtitle
,
758 sbitmap
*bmaps
, int n_maps
)
762 fprintf (file
, "%s\n", title
);
763 for (i
= 0; i
< n_maps
; i
++)
765 fprintf (file
, "%s %d\n", subtitle
, i
);
766 dump_bitmap (file
, bmaps
[i
]);
769 fprintf (file
, "\n");