* xmenu.c (dialog_selection_callback) [!USE_GTK]: Cast to intptr_t,
[bpt/emacs.git] / src / buffer.h
1 /* Header file for the buffer manipulation primitives.
2
3 Copyright (C) 1985-1986, 1993-1995, 1997-2011
4 Free Software Foundation, Inc.
5
6 This file is part of GNU Emacs.
7
8 GNU Emacs is free software: you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation, either version 3 of the License, or
11 (at your option) any later version.
12
13 GNU Emacs is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
20
21
22 /* Accessing the parameters of the current buffer. */
23
24 /* These macros come in pairs, one for the char position
25 and one for the byte position. */
26
27 /* Position of beginning of buffer. */
28 #define BEG (1)
29 #define BEG_BYTE (BEG)
30
31 /* Position of beginning of accessible range of buffer. */
32 #define BEGV (current_buffer->begv)
33 #define BEGV_BYTE (current_buffer->begv_byte)
34
35 /* Position of point in buffer. The "+ 0" makes this
36 not an l-value, so you can't assign to it. Use SET_PT instead. */
37 #define PT (current_buffer->pt + 0)
38 #define PT_BYTE (current_buffer->pt_byte + 0)
39
40 /* Position of gap in buffer. */
41 #define GPT (current_buffer->text->gpt)
42 #define GPT_BYTE (current_buffer->text->gpt_byte)
43
44 /* Position of end of accessible range of buffer. */
45 #define ZV (current_buffer->zv)
46 #define ZV_BYTE (current_buffer->zv_byte)
47
48 /* Position of end of buffer. */
49 #define Z (current_buffer->text->z)
50 #define Z_BYTE (current_buffer->text->z_byte)
51
52 /* Macros for the addresses of places in the buffer. */
53
54 /* Address of beginning of buffer. */
55 #define BEG_ADDR (current_buffer->text->beg)
56
57 /* Address of beginning of accessible range of buffer. */
58 #define BEGV_ADDR (BYTE_POS_ADDR (current_buffer->begv_byte))
59
60 /* Address of point in buffer. */
61 #define PT_ADDR (BYTE_POS_ADDR (current_buffer->pt_byte))
62
63 /* Address of beginning of gap in buffer. */
64 #define GPT_ADDR (current_buffer->text->beg + current_buffer->text->gpt_byte - BEG_BYTE)
65
66 /* Address of end of gap in buffer. */
67 #define GAP_END_ADDR (current_buffer->text->beg + current_buffer->text->gpt_byte + current_buffer->text->gap_size - BEG_BYTE)
68
69 /* Address of end of accessible range of buffer. */
70 #define ZV_ADDR (BYTE_POS_ADDR (current_buffer->zv_byte))
71
72 /* Address of end of buffer. */
73 #define Z_ADDR (current_buffer->text->beg + current_buffer->text->gap_size + current_buffer->text->z_byte - BEG_BYTE)
74
75 /* Size of gap. */
76 #define GAP_SIZE (current_buffer->text->gap_size)
77
78 /* Is the current buffer narrowed? */
79 #define NARROWED ((BEGV != BEG) || (ZV != Z))
80
81 /* Modification count. */
82 #define MODIFF (current_buffer->text->modiff)
83
84 /* Character modification count. */
85 #define CHARS_MODIFF (current_buffer->text->chars_modiff)
86
87 /* Overlay modification count. */
88 #define OVERLAY_MODIFF (current_buffer->text->overlay_modiff)
89
90 /* Modification count as of last visit or save. */
91 #define SAVE_MODIFF (current_buffer->text->save_modiff)
92
93 /* BUFFER_CEILING_OF (resp. BUFFER_FLOOR_OF), when applied to n, return
94 the max (resp. min) p such that
95
96 BYTE_POS_ADDR (p) - BYTE_POS_ADDR (n) == p - n */
97
98 #define BUFFER_CEILING_OF(BYTEPOS) \
99 (((BYTEPOS) < GPT_BYTE && GPT < ZV ? GPT_BYTE : ZV_BYTE) - 1)
100 #define BUFFER_FLOOR_OF(BYTEPOS) \
101 (BEGV <= GPT && GPT_BYTE <= (BYTEPOS) ? GPT_BYTE : BEGV_BYTE)
102 \f
103 /* Similar macros to operate on a specified buffer.
104 Note that many of these evaluate the buffer argument more than once. */
105
106 /* Position of beginning of buffer. */
107 #define BUF_BEG(buf) (BEG)
108 #define BUF_BEG_BYTE(buf) (BEG_BYTE)
109
110 /* The BUF_BEGV[_BYTE], BUF_ZV[_BYTE], and BUF_PT[_BYTE] macros cannot
111 be used for assignment; use SET_BUF_* macros below for that. */
112
113 /* Position of beginning of accessible range of buffer. */
114 #define BUF_BEGV(buf) \
115 (buf == current_buffer ? BEGV \
116 : NILP (BVAR (buf, begv_marker)) ? buf->begv \
117 : marker_position (BVAR (buf, begv_marker)))
118
119 #define BUF_BEGV_BYTE(buf) \
120 (buf == current_buffer ? BEGV_BYTE \
121 : NILP (BVAR (buf, begv_marker)) ? buf->begv_byte \
122 : marker_byte_position (BVAR (buf, begv_marker)))
123
124 /* Position of point in buffer. */
125 #define BUF_PT(buf) \
126 (buf == current_buffer ? PT \
127 : NILP (BVAR (buf, pt_marker)) ? buf->pt \
128 : marker_position (BVAR (buf, pt_marker)))
129
130 #define BUF_PT_BYTE(buf) \
131 (buf == current_buffer ? PT_BYTE \
132 : NILP (BVAR (buf, pt_marker)) ? buf->pt_byte \
133 : marker_byte_position (BVAR (buf, pt_marker)))
134
135 /* Position of end of accessible range of buffer. */
136 #define BUF_ZV(buf) \
137 (buf == current_buffer ? ZV \
138 : NILP (BVAR (buf, zv_marker)) ? buf->zv \
139 : marker_position (BVAR (buf, zv_marker)))
140
141 #define BUF_ZV_BYTE(buf) \
142 (buf == current_buffer ? ZV_BYTE \
143 : NILP (BVAR (buf, zv_marker)) ? buf->zv_byte \
144 : marker_byte_position (BVAR (buf, zv_marker)))
145
146 /* Position of gap in buffer. */
147 #define BUF_GPT(buf) ((buf)->text->gpt)
148 #define BUF_GPT_BYTE(buf) ((buf)->text->gpt_byte)
149
150 /* Position of end of buffer. */
151 #define BUF_Z(buf) ((buf)->text->z)
152 #define BUF_Z_BYTE(buf) ((buf)->text->z_byte)
153
154 /* Address of beginning of buffer. */
155 #define BUF_BEG_ADDR(buf) ((buf)->text->beg)
156
157 /* Address of beginning of gap of buffer. */
158 #define BUF_GPT_ADDR(buf) ((buf)->text->beg + (buf)->text->gpt_byte - BEG_BYTE)
159
160 /* Address of end of buffer. */
161 #define BUF_Z_ADDR(buf) ((buf)->text->beg + (buf)->text->gap_size + (buf)->text->z_byte - BEG_BYTE)
162
163 /* Address of end of gap in buffer. */
164 #define BUF_GAP_END_ADDR(buf) ((buf)->text->beg + (buf)->text->gpt_byte + (buf)->text->gap_size - BEG_BYTE)
165
166 /* Size of gap. */
167 #define BUF_GAP_SIZE(buf) ((buf)->text->gap_size)
168
169 /* Is this buffer narrowed? */
170 #define BUF_NARROWED(buf) ((BUF_BEGV (buf) != BUF_BEG (buf)) \
171 || (BUF_ZV (buf) != BUF_Z (buf)))
172
173 /* Modification count. */
174 #define BUF_MODIFF(buf) ((buf)->text->modiff)
175
176 /* Character modification count. */
177 #define BUF_CHARS_MODIFF(buf) ((buf)->text->chars_modiff)
178
179 /* Modification count as of last visit or save. */
180 #define BUF_SAVE_MODIFF(buf) ((buf)->text->save_modiff)
181
182 /* Overlay modification count. */
183 #define BUF_OVERLAY_MODIFF(buf) ((buf)->text->overlay_modiff)
184
185 /* Modification count as of last auto-save. */
186 /* FIXME: should we move this into ->text->auto_save_modiff? */
187 #define BUF_AUTOSAVE_MODIFF(buf) ((buf)->auto_save_modified)
188
189 /* Interval tree of buffer. */
190 #define BUF_INTERVALS(buf) ((buf)->text->intervals)
191
192 /* Marker chain of buffer. */
193 #define BUF_MARKERS(buf) ((buf)->text->markers)
194
195 #define BUF_UNCHANGED_MODIFIED(buf) \
196 ((buf)->text->unchanged_modified)
197
198 #define BUF_OVERLAY_UNCHANGED_MODIFIED(buf) \
199 ((buf)->text->overlay_unchanged_modified)
200 #define BUF_BEG_UNCHANGED(buf) ((buf)->text->beg_unchanged)
201 #define BUF_END_UNCHANGED(buf) ((buf)->text->end_unchanged)
202
203 #define UNCHANGED_MODIFIED \
204 BUF_UNCHANGED_MODIFIED (current_buffer)
205 #define OVERLAY_UNCHANGED_MODIFIED \
206 BUF_OVERLAY_UNCHANGED_MODIFIED (current_buffer)
207 #define BEG_UNCHANGED BUF_BEG_UNCHANGED (current_buffer)
208 #define END_UNCHANGED BUF_END_UNCHANGED (current_buffer)
209
210 /* Compute how many characters at the top and bottom of BUF are
211 unchanged when the range START..END is modified. This computation
212 must be done each time BUF is modified. */
213
214 #define BUF_COMPUTE_UNCHANGED(buf, start, end) \
215 do \
216 { \
217 if (BUF_UNCHANGED_MODIFIED (buf) == BUF_MODIFF (buf) \
218 && (BUF_OVERLAY_UNCHANGED_MODIFIED (buf) \
219 == BUF_OVERLAY_MODIFF (buf))) \
220 { \
221 BUF_BEG_UNCHANGED (buf) = (start) - BUF_BEG (buf); \
222 BUF_END_UNCHANGED (buf) = BUF_Z (buf) - (end); \
223 } \
224 else \
225 { \
226 if (BUF_Z (buf) - (end) < BUF_END_UNCHANGED (buf)) \
227 BUF_END_UNCHANGED (buf) = BUF_Z (buf) - (end); \
228 if ((start) - BUF_BEG (buf) < BUF_BEG_UNCHANGED (buf)) \
229 BUF_BEG_UNCHANGED (buf) = (start) - BUF_BEG (buf); \
230 } \
231 } \
232 while (0)
233
234 \f
235 /* Macros to set PT in the current buffer, or another buffer. */
236
237 #define SET_PT(position) (set_point (position))
238 #define TEMP_SET_PT(position) (temp_set_point (current_buffer, (position)))
239
240 #define SET_PT_BOTH(position, byte) (set_point_both (position, byte))
241 #define TEMP_SET_PT_BOTH(position, byte) \
242 (temp_set_point_both (current_buffer, (position), (byte)))
243
244 #define BUF_TEMP_SET_PT(buffer, position) \
245 (temp_set_point ((buffer), (position)))
246
247 extern void set_point (EMACS_INT);
248 extern void temp_set_point (struct buffer *, EMACS_INT);
249 extern void set_point_both (EMACS_INT, EMACS_INT);
250 extern void temp_set_point_both (struct buffer *,
251 EMACS_INT, EMACS_INT);
252 extern void enlarge_buffer_text (struct buffer *, EMACS_INT);
253
254 \f
255 /* Macros for setting the BEGV, ZV or PT of a given buffer.
256
257 The ..._BOTH macros take both a charpos and a bytepos,
258 which must correspond to each other.
259
260 The macros without ..._BOTH take just a charpos,
261 and compute the bytepos from it. */
262
263 #define SET_BUF_BEGV(buf, charpos) \
264 ((buf)->begv_byte = buf_charpos_to_bytepos ((buf), (charpos)), \
265 (buf)->begv = (charpos))
266
267 #define SET_BUF_ZV(buf, charpos) \
268 ((buf)->zv_byte = buf_charpos_to_bytepos ((buf), (charpos)), \
269 (buf)->zv = (charpos))
270
271 #define SET_BUF_BEGV_BOTH(buf, charpos, byte) \
272 ((buf)->begv = (charpos), \
273 (buf)->begv_byte = (byte))
274
275 #define SET_BUF_ZV_BOTH(buf, charpos, byte) \
276 ((buf)->zv = (charpos), \
277 (buf)->zv_byte = (byte))
278
279 #define SET_BUF_PT_BOTH(buf, charpos, byte) \
280 ((buf)->pt = (charpos), \
281 (buf)->pt_byte = (byte))
282 \f
283 /* Macros to access a character or byte in the current buffer,
284 or convert between a byte position and an address.
285 These macros do not check that the position is in range. */
286
287 /* Access a Lisp position value in POS,
288 and store the charpos in CHARPOS and the bytepos in BYTEPOS. */
289
290 #define DECODE_POSITION(charpos, bytepos, pos) \
291 do \
292 { \
293 Lisp_Object __pos = (pos); \
294 if (NUMBERP (__pos)) \
295 { \
296 charpos = __pos; \
297 bytepos = buf_charpos_to_bytepos (current_buffer, __pos); \
298 } \
299 else if (MARKERP (__pos)) \
300 { \
301 charpos = marker_position (__pos); \
302 bytepos = marker_byte_position (__pos); \
303 } \
304 else \
305 wrong_type_argument (Qinteger_or_marker_p, __pos); \
306 } \
307 while (0)
308
309 /* Maximum number of bytes in a buffer.
310 A buffer cannot contain more bytes than a 1-origin fixnum can represent,
311 nor can it be so large that C pointer arithmetic stops working. */
312 #define BUF_BYTES_MAX min (MOST_POSITIVE_FIXNUM - 1, min (SIZE_MAX, PTRDIFF_MAX))
313
314 /* Return the address of byte position N in current buffer. */
315
316 #define BYTE_POS_ADDR(n) \
317 (((n) >= GPT_BYTE ? GAP_SIZE : 0) + (n) + BEG_ADDR - BEG_BYTE)
318
319 /* Return the address of char position N. */
320
321 #define CHAR_POS_ADDR(n) \
322 (((n) >= GPT ? GAP_SIZE : 0) \
323 + buf_charpos_to_bytepos (current_buffer, n) \
324 + BEG_ADDR - BEG_BYTE)
325
326 /* Convert a character position to a byte position. */
327
328 #define CHAR_TO_BYTE(charpos) \
329 (buf_charpos_to_bytepos (current_buffer, charpos))
330
331 /* Convert a byte position to a character position. */
332
333 #define BYTE_TO_CHAR(bytepos) \
334 (buf_bytepos_to_charpos (current_buffer, bytepos))
335
336 /* Convert PTR, the address of a byte in the buffer, into a byte position. */
337
338 #define PTR_BYTE_POS(ptr) \
339 ((ptr) - (current_buffer)->text->beg \
340 - (ptr - (current_buffer)->text->beg <= (size_t) (GPT_BYTE - BEG_BYTE) ? 0 : GAP_SIZE) \
341 + BEG_BYTE)
342
343 /* Return character at byte position POS. */
344
345 #define FETCH_CHAR(pos) \
346 (!NILP (BVAR (current_buffer, enable_multibyte_characters)) \
347 ? FETCH_MULTIBYTE_CHAR ((pos)) \
348 : FETCH_BYTE ((pos)))
349
350 /* Return the byte at byte position N. */
351
352 #define FETCH_BYTE(n) *(BYTE_POS_ADDR ((n)))
353
354 /* Variables used locally in FETCH_MULTIBYTE_CHAR. */
355 extern unsigned char *_fetch_multibyte_char_p;
356
357 /* Return character code of multi-byte form at byte position POS. If POS
358 doesn't point the head of valid multi-byte form, only the byte at
359 POS is returned. No range checking. */
360
361 #define FETCH_MULTIBYTE_CHAR(pos) \
362 (_fetch_multibyte_char_p = (((pos) >= GPT_BYTE ? GAP_SIZE : 0) \
363 + (pos) + BEG_ADDR - BEG_BYTE), \
364 STRING_CHAR (_fetch_multibyte_char_p))
365
366 /* Return character at byte position POS. If the current buffer is unibyte
367 and the character is not ASCII, make the returning character
368 multibyte. */
369
370 #define FETCH_CHAR_AS_MULTIBYTE(pos) \
371 (!NILP (BVAR (current_buffer, enable_multibyte_characters)) \
372 ? FETCH_MULTIBYTE_CHAR ((pos)) \
373 : UNIBYTE_TO_CHAR (FETCH_BYTE ((pos))))
374
375 \f
376 /* Macros for accessing a character or byte,
377 or converting between byte positions and addresses,
378 in a specified buffer. */
379
380 /* Return the address of character at byte position POS in buffer BUF.
381 Note that both arguments can be computed more than once. */
382
383 #define BUF_BYTE_ADDRESS(buf, pos) \
384 ((buf)->text->beg + (pos) - BEG_BYTE \
385 + ((pos) >= (buf)->text->gpt_byte ? (buf)->text->gap_size : 0))
386
387 /* Return the address of character at char position POS in buffer BUF.
388 Note that both arguments can be computed more than once. */
389
390 #define BUF_CHAR_ADDRESS(buf, pos) \
391 ((buf)->text->beg + buf_charpos_to_bytepos ((buf), (pos)) - BEG_BYTE \
392 + ((pos) >= (buf)->text->gpt ? (buf)->text->gap_size : 0))
393
394 /* Convert PTR, the address of a char in buffer BUF,
395 into a character position. */
396
397 #define BUF_PTR_BYTE_POS(buf, ptr) \
398 ((ptr) - (buf)->text->beg \
399 - (ptr - (buf)->text->beg <= (unsigned) (BUF_GPT_BYTE ((buf)) - BEG_BYTE)\
400 ? 0 : BUF_GAP_SIZE ((buf))) \
401 + BEG_BYTE)
402
403 /* Return the character at byte position POS in buffer BUF. */
404
405 #define BUF_FETCH_CHAR(buf, pos) \
406 (!NILP (buf->enable_multibyte_characters) \
407 ? BUF_FETCH_MULTIBYTE_CHAR ((buf), (pos)) \
408 : BUF_FETCH_BYTE ((buf), (pos)))
409
410 /* Return the byte at byte position N in buffer BUF. */
411
412 #define BUF_FETCH_BYTE(buf, n) \
413 *(BUF_BYTE_ADDRESS ((buf), (n)))
414
415 /* Return character code of multi-byte form at byte position POS in BUF.
416 If POS doesn't point the head of valid multi-byte form, only the byte at
417 POS is returned. No range checking. */
418
419 #define BUF_FETCH_MULTIBYTE_CHAR(buf, pos) \
420 (_fetch_multibyte_char_p \
421 = (((pos) >= BUF_GPT_BYTE (buf) ? BUF_GAP_SIZE (buf) : 0) \
422 + (pos) + BUF_BEG_ADDR (buf) - BEG_BYTE), \
423 STRING_CHAR (_fetch_multibyte_char_p))
424 \f
425 /* Define the actual buffer data structures. */
426
427 /* This data structure describes the actual text contents of a buffer.
428 It is shared between indirect buffers and their base buffer. */
429
430 struct buffer_text
431 {
432 /* Actual address of buffer contents. If REL_ALLOC is defined,
433 this address might change when blocks are relocated which can
434 e.g. happen when malloc is called. So, don't pass a pointer
435 into a buffer's text to functions that malloc. */
436 unsigned char *beg;
437
438 EMACS_INT gpt; /* Char pos of gap in buffer. */
439 EMACS_INT z; /* Char pos of end of buffer. */
440 EMACS_INT gpt_byte; /* Byte pos of gap in buffer. */
441 EMACS_INT z_byte; /* Byte pos of end of buffer. */
442 EMACS_INT gap_size; /* Size of buffer's gap. */
443 int modiff; /* This counts buffer-modification events
444 for this buffer. It is incremented for
445 each such event, and never otherwise
446 changed. */
447 int chars_modiff; /* This is modified with character change
448 events for this buffer. It is set to
449 modiff for each such event, and never
450 otherwise changed. */
451 int save_modiff; /* Previous value of modiff, as of last
452 time buffer visited or saved a file. */
453
454 int overlay_modiff; /* Counts modifications to overlays. */
455
456 /* Minimum value of GPT - BEG since last redisplay that finished. */
457 EMACS_INT beg_unchanged;
458
459 /* Minimum value of Z - GPT since last redisplay that finished. */
460 EMACS_INT end_unchanged;
461
462 /* MODIFF as of last redisplay that finished; if it matches MODIFF,
463 beg_unchanged and end_unchanged contain no useful information. */
464 int unchanged_modified;
465
466 /* BUF_OVERLAY_MODIFF of current buffer, as of last redisplay that
467 finished; if it matches BUF_OVERLAY_MODIFF, beg_unchanged and
468 end_unchanged contain no useful information. */
469 int overlay_unchanged_modified;
470
471 /* Properties of this buffer's text. */
472 INTERVAL intervals;
473
474 /* The markers that refer to this buffer.
475 This is actually a single marker ---
476 successive elements in its marker `chain'
477 are the other markers referring to this buffer.
478 This is a singly linked unordered list, which means that it's
479 very cheap to add a marker to the list and it's also very cheap
480 to move a marker within a buffer. */
481 struct Lisp_Marker *markers;
482
483 /* Usually 0. Temporarily set to 1 in decode_coding_gap to
484 prevent Fgarbage_collect from shrinking the gap and losing
485 not-yet-decoded bytes. */
486 int inhibit_shrinking;
487 };
488
489 /* Lisp fields in struct buffer are hidden from most code and accessed
490 via the BVAR macro, below. Only select pieces of code, like the GC,
491 are allowed to use BUFFER_INTERNAL_FIELD. */
492 #define BUFFER_INTERNAL_FIELD(field) field ## _
493
494 /* Most code should use this macro to access Lisp fields in struct
495 buffer. */
496 #define BVAR(buf, field) ((buf)->BUFFER_INTERNAL_FIELD (field))
497
498 /* This is the structure that the buffer Lisp object points to. */
499
500 struct buffer
501 {
502 /* Everything before the `name' slot must be of a non-Lisp_Object type,
503 and every slot after `name' must be a Lisp_Object.
504
505 Check out mark_buffer (alloc.c) to see why. */
506
507 /* HEADER.NEXT is the next buffer, in chain of all buffers,
508 including killed buffers.
509 This chain is used only for garbage collection, in order to
510 collect killed buffers properly.
511 Note that vectors and most pseudovectors are all on one chain,
512 but buffers are on a separate chain of their own. */
513 struct vectorlike_header header;
514
515 /* This structure holds the coordinates of the buffer contents
516 in ordinary buffers. In indirect buffers, this is not used. */
517 struct buffer_text own_text;
518
519 /* This points to the `struct buffer_text' that used for this buffer.
520 In an ordinary buffer, this is the own_text field above.
521 In an indirect buffer, this is the own_text field of another buffer. */
522 struct buffer_text *text;
523
524 /* Char position of point in buffer. */
525 EMACS_INT pt;
526 /* Byte position of point in buffer. */
527 EMACS_INT pt_byte;
528 /* Char position of beginning of accessible range. */
529 EMACS_INT begv;
530 /* Byte position of beginning of accessible range. */
531 EMACS_INT begv_byte;
532 /* Char position of end of accessible range. */
533 EMACS_INT zv;
534 /* Byte position of end of accessible range. */
535 EMACS_INT zv_byte;
536
537 /* In an indirect buffer, this points to the base buffer.
538 In an ordinary buffer, it is 0. */
539 struct buffer *base_buffer;
540
541 /* A non-zero value in slot IDX means that per-buffer variable
542 with index IDX has a local value in this buffer. The index IDX
543 for a buffer-local variable is stored in that variable's slot
544 in buffer_local_flags as a Lisp integer. If the index is -1,
545 this means the variable is always local in all buffers. */
546 #define MAX_PER_BUFFER_VARS 50
547 char local_flags[MAX_PER_BUFFER_VARS];
548
549 /* Set to the modtime of the visited file when read or written.
550 -1 means visited file was nonexistent.
551 0 means visited file modtime unknown; in no case complain
552 about any mismatch on next save attempt. */
553 time_t modtime;
554 /* Size of the file when modtime was set. This is used to detect the
555 case where the file grew while we were reading it, so the modtime
556 is still the same (since it's rounded up to seconds) but we're actually
557 not up-to-date. -1 means the size is unknown. Only meaningful if
558 modtime is actually set. */
559 EMACS_INT modtime_size;
560 /* The value of text->modiff at the last auto-save. */
561 int auto_save_modified;
562 /* The value of text->modiff at the last display error.
563 Redisplay of this buffer is inhibited until it changes again. */
564 int display_error_modiff;
565 /* The time at which we detected a failure to auto-save,
566 Or -1 if we didn't have a failure. */
567 int auto_save_failure_time;
568 /* Position in buffer at which display started
569 the last time this buffer was displayed. */
570 EMACS_INT last_window_start;
571
572 /* Set nonzero whenever the narrowing is changed in this buffer. */
573 int clip_changed;
574
575 /* If the long line scan cache is enabled (i.e. the buffer-local
576 variable cache-long-line-scans is non-nil), newline_cache
577 points to the newline cache, and width_run_cache points to the
578 width run cache.
579
580 The newline cache records which stretches of the buffer are
581 known *not* to contain newlines, so that they can be skipped
582 quickly when we search for newlines.
583
584 The width run cache records which stretches of the buffer are
585 known to contain characters whose widths are all the same. If
586 the width run cache maps a character to a value > 0, that value is
587 the character's width; if it maps a character to zero, we don't
588 know what its width is. This allows compute_motion to process
589 such regions very quickly, using algebra instead of inspecting
590 each character. See also width_table, below. */
591 struct region_cache *newline_cache;
592 struct region_cache *width_run_cache;
593
594 /* Non-zero means don't use redisplay optimizations for
595 displaying this buffer. */
596 unsigned prevent_redisplay_optimizations_p : 1;
597
598 /* List of overlays that end at or before the current center,
599 in order of end-position. */
600 struct Lisp_Overlay *overlays_before;
601
602 /* List of overlays that end after the current center,
603 in order of start-position. */
604 struct Lisp_Overlay *overlays_after;
605
606 /* Position where the overlay lists are centered. */
607 EMACS_INT overlay_center;
608
609 /* Everything from here down must be a Lisp_Object. */
610 /* buffer-local Lisp variables start at `undo_list',
611 tho only the ones from `name' on are GC'd normally. */
612
613 /* Changes in the buffer are recorded here for undo.
614 t means don't record anything.
615 This information belongs to the base buffer of an indirect buffer,
616 But we can't store it in the struct buffer_text
617 because local variables have to be right in the struct buffer.
618 So we copy it around in set_buffer_internal.
619 This comes before `name' because it is marked in a special way. */
620 Lisp_Object BUFFER_INTERNAL_FIELD (undo_list);
621
622 /* The name of this buffer. */
623 Lisp_Object BUFFER_INTERNAL_FIELD (name);
624
625 /* The name of the file visited in this buffer, or nil. */
626 Lisp_Object BUFFER_INTERNAL_FIELD (filename);
627 /* Dir for expanding relative file names. */
628 Lisp_Object BUFFER_INTERNAL_FIELD (directory);
629 /* True if this buffer has been backed up (if you write to the
630 visited file and it hasn't been backed up, then a backup will
631 be made). */
632 /* This isn't really used by the C code, so could be deleted. */
633 Lisp_Object BUFFER_INTERNAL_FIELD (backed_up);
634 /* Length of file when last read or saved.
635 -1 means auto saving turned off because buffer shrank a lot.
636 -2 means don't turn off auto saving if buffer shrinks.
637 (That value is used with buffer-swap-text.)
638 This is not in the struct buffer_text
639 because it's not used in indirect buffers at all. */
640 Lisp_Object BUFFER_INTERNAL_FIELD (save_length);
641 /* File name used for auto-saving this buffer.
642 This is not in the struct buffer_text
643 because it's not used in indirect buffers at all. */
644 Lisp_Object BUFFER_INTERNAL_FIELD (auto_save_file_name);
645
646 /* Non-nil if buffer read-only. */
647 Lisp_Object BUFFER_INTERNAL_FIELD (read_only);
648 /* "The mark". This is a marker which may
649 point into this buffer or may point nowhere. */
650 Lisp_Object BUFFER_INTERNAL_FIELD (mark);
651
652 /* Alist of elements (SYMBOL . VALUE-IN-THIS-BUFFER) for all
653 per-buffer variables of this buffer. For locally unbound
654 symbols, just the symbol appears as the element. */
655 Lisp_Object BUFFER_INTERNAL_FIELD (local_var_alist);
656
657 /* Symbol naming major mode (eg, lisp-mode). */
658 Lisp_Object BUFFER_INTERNAL_FIELD (major_mode);
659 /* Pretty name of major mode (eg, "Lisp"). */
660 Lisp_Object BUFFER_INTERNAL_FIELD (mode_name);
661 /* Mode line element that controls format of mode line. */
662 Lisp_Object BUFFER_INTERNAL_FIELD (mode_line_format);
663
664 /* Analogous to mode_line_format for the line displayed at the top
665 of windows. Nil means don't display that line. */
666 Lisp_Object BUFFER_INTERNAL_FIELD (header_line_format);
667
668 /* Keys that are bound local to this buffer. */
669 Lisp_Object BUFFER_INTERNAL_FIELD (keymap);
670 /* This buffer's local abbrev table. */
671 Lisp_Object BUFFER_INTERNAL_FIELD (abbrev_table);
672 /* This buffer's syntax table. */
673 Lisp_Object BUFFER_INTERNAL_FIELD (syntax_table);
674 /* This buffer's category table. */
675 Lisp_Object BUFFER_INTERNAL_FIELD (category_table);
676
677 /* Values of several buffer-local variables. */
678 /* tab-width is buffer-local so that redisplay can find it
679 in buffers that are not current. */
680 Lisp_Object BUFFER_INTERNAL_FIELD (case_fold_search);
681 Lisp_Object BUFFER_INTERNAL_FIELD (tab_width);
682 Lisp_Object BUFFER_INTERNAL_FIELD (fill_column);
683 Lisp_Object BUFFER_INTERNAL_FIELD (left_margin);
684 /* Function to call when insert space past fill column. */
685 Lisp_Object BUFFER_INTERNAL_FIELD (auto_fill_function);
686
687 /* Case table for case-conversion in this buffer.
688 This char-table maps each char into its lower-case version. */
689 Lisp_Object BUFFER_INTERNAL_FIELD (downcase_table);
690 /* Char-table mapping each char to its upper-case version. */
691 Lisp_Object BUFFER_INTERNAL_FIELD (upcase_table);
692 /* Char-table for conversion for case-folding search. */
693 Lisp_Object BUFFER_INTERNAL_FIELD (case_canon_table);
694 /* Char-table of equivalences for case-folding search. */
695 Lisp_Object BUFFER_INTERNAL_FIELD (case_eqv_table);
696
697 /* Non-nil means do not display continuation lines. */
698 Lisp_Object BUFFER_INTERNAL_FIELD (truncate_lines);
699 /* Non-nil means to use word wrapping when displaying continuation lines. */
700 Lisp_Object BUFFER_INTERNAL_FIELD (word_wrap);
701 /* Non-nil means display ctl chars with uparrow. */
702 Lisp_Object BUFFER_INTERNAL_FIELD (ctl_arrow);
703 /* Non-nil means reorder bidirectional text for display in the
704 visual order. */
705 Lisp_Object BUFFER_INTERNAL_FIELD (bidi_display_reordering);
706 /* If non-nil, specifies which direction of text to force in all the
707 paragraphs of the buffer. Nil means determine paragraph
708 direction dynamically for each paragraph. */
709 Lisp_Object BUFFER_INTERNAL_FIELD (bidi_paragraph_direction);
710 /* Non-nil means do selective display;
711 see doc string in syms_of_buffer (buffer.c) for details. */
712 Lisp_Object BUFFER_INTERNAL_FIELD (selective_display);
713 #ifndef old
714 /* Non-nil means show ... at end of line followed by invisible lines. */
715 Lisp_Object BUFFER_INTERNAL_FIELD (selective_display_ellipses);
716 #endif
717 /* Alist of (FUNCTION . STRING) for each minor mode enabled in buffer. */
718 Lisp_Object BUFFER_INTERNAL_FIELD (minor_modes);
719 /* t if "self-insertion" should overwrite; `binary' if it should also
720 overwrite newlines and tabs - for editing executables and the like. */
721 Lisp_Object BUFFER_INTERNAL_FIELD (overwrite_mode);
722 /* non-nil means abbrev mode is on. Expand abbrevs automatically. */
723 Lisp_Object BUFFER_INTERNAL_FIELD (abbrev_mode);
724 /* Display table to use for text in this buffer. */
725 Lisp_Object BUFFER_INTERNAL_FIELD (display_table);
726 /* t means the mark and region are currently active. */
727 Lisp_Object BUFFER_INTERNAL_FIELD (mark_active);
728
729 /* Non-nil means the buffer contents are regarded as multi-byte
730 form of characters, not a binary code. */
731 Lisp_Object BUFFER_INTERNAL_FIELD (enable_multibyte_characters);
732
733 /* Coding system to be used for encoding the buffer contents on
734 saving. */
735 Lisp_Object BUFFER_INTERNAL_FIELD (buffer_file_coding_system);
736
737 /* List of symbols naming the file format used for visited file. */
738 Lisp_Object BUFFER_INTERNAL_FIELD (file_format);
739
740 /* List of symbols naming the file format used for auto-save file. */
741 Lisp_Object BUFFER_INTERNAL_FIELD (auto_save_file_format);
742
743 /* True if the newline position cache and width run cache are
744 enabled. See search.c and indent.c. */
745 Lisp_Object BUFFER_INTERNAL_FIELD (cache_long_line_scans);
746
747 /* If the width run cache is enabled, this table contains the
748 character widths width_run_cache (see above) assumes. When we
749 do a thorough redisplay, we compare this against the buffer's
750 current display table to see whether the display table has
751 affected the widths of any characters. If it has, we
752 invalidate the width run cache, and re-initialize width_table. */
753 Lisp_Object BUFFER_INTERNAL_FIELD (width_table);
754
755 /* In an indirect buffer, or a buffer that is the base of an
756 indirect buffer, this holds a marker that records
757 PT for this buffer when the buffer is not current. */
758 Lisp_Object BUFFER_INTERNAL_FIELD (pt_marker);
759
760 /* In an indirect buffer, or a buffer that is the base of an
761 indirect buffer, this holds a marker that records
762 BEGV for this buffer when the buffer is not current. */
763 Lisp_Object BUFFER_INTERNAL_FIELD (begv_marker);
764
765 /* In an indirect buffer, or a buffer that is the base of an
766 indirect buffer, this holds a marker that records
767 ZV for this buffer when the buffer is not current. */
768 Lisp_Object BUFFER_INTERNAL_FIELD (zv_marker);
769
770 /* This holds the point value before the last scroll operation.
771 Explicitly setting point sets this to nil. */
772 Lisp_Object BUFFER_INTERNAL_FIELD (point_before_scroll);
773
774 /* Truename of the visited file, or nil. */
775 Lisp_Object BUFFER_INTERNAL_FIELD (file_truename);
776
777 /* Invisibility spec of this buffer.
778 t => any non-nil `invisible' property means invisible.
779 A list => `invisible' property means invisible
780 if it is memq in that list. */
781 Lisp_Object BUFFER_INTERNAL_FIELD (invisibility_spec);
782
783 /* This is the last window that was selected with this buffer in it,
784 or nil if that window no longer displays this buffer. */
785 Lisp_Object BUFFER_INTERNAL_FIELD (last_selected_window);
786
787 /* Incremented each time the buffer is displayed in a window. */
788 Lisp_Object BUFFER_INTERNAL_FIELD (display_count);
789
790 /* Widths of left and right marginal areas for windows displaying
791 this buffer. */
792 Lisp_Object BUFFER_INTERNAL_FIELD (left_margin_cols), BUFFER_INTERNAL_FIELD (right_margin_cols);
793
794 /* Widths of left and right fringe areas for windows displaying
795 this buffer. */
796 Lisp_Object BUFFER_INTERNAL_FIELD (left_fringe_width), BUFFER_INTERNAL_FIELD (right_fringe_width);
797
798 /* Non-nil means fringes are drawn outside display margins;
799 othersize draw them between margin areas and text. */
800 Lisp_Object BUFFER_INTERNAL_FIELD (fringes_outside_margins);
801
802 /* Width and type of scroll bar areas for windows displaying
803 this buffer. */
804 Lisp_Object BUFFER_INTERNAL_FIELD (scroll_bar_width), BUFFER_INTERNAL_FIELD (vertical_scroll_bar_type);
805
806 /* Non-nil means indicate lines not displaying text (in a style
807 like vi). */
808 Lisp_Object BUFFER_INTERNAL_FIELD (indicate_empty_lines);
809
810 /* Non-nil means indicate buffer boundaries and scrolling. */
811 Lisp_Object BUFFER_INTERNAL_FIELD (indicate_buffer_boundaries);
812
813 /* Logical to physical fringe bitmap mappings. */
814 Lisp_Object BUFFER_INTERNAL_FIELD (fringe_indicator_alist);
815
816 /* Logical to physical cursor bitmap mappings. */
817 Lisp_Object BUFFER_INTERNAL_FIELD (fringe_cursor_alist);
818
819 /* Time stamp updated each time this buffer is displayed in a window. */
820 Lisp_Object BUFFER_INTERNAL_FIELD (display_time);
821
822 /* If scrolling the display because point is below the bottom of a
823 window showing this buffer, try to choose a window start so
824 that point ends up this number of lines from the top of the
825 window. Nil means that scrolling method isn't used. */
826 Lisp_Object BUFFER_INTERNAL_FIELD (scroll_up_aggressively);
827
828 /* If scrolling the display because point is above the top of a
829 window showing this buffer, try to choose a window start so
830 that point ends up this number of lines from the bottom of the
831 window. Nil means that scrolling method isn't used. */
832 Lisp_Object BUFFER_INTERNAL_FIELD (scroll_down_aggressively);
833
834 /* Desired cursor type in this buffer. See the doc string of
835 per-buffer variable `cursor-type'. */
836 Lisp_Object BUFFER_INTERNAL_FIELD (cursor_type);
837
838 /* An integer > 0 means put that number of pixels below text lines
839 in the display of this buffer. */
840 Lisp_Object BUFFER_INTERNAL_FIELD (extra_line_spacing);
841
842 /* *Cursor type to display in non-selected windows.
843 t means to use hollow box cursor.
844 See `cursor-type' for other values. */
845 Lisp_Object BUFFER_INTERNAL_FIELD (cursor_in_non_selected_windows);
846 };
847
848 \f
849 /* This points to the current buffer. */
850
851 extern struct buffer *current_buffer;
852
853 /* This structure holds the default values of the buffer-local variables
854 that have special slots in each buffer.
855 The default value occupies the same slot in this structure
856 as an individual buffer's value occupies in that buffer.
857 Setting the default value also goes through the alist of buffers
858 and stores into each buffer that does not say it has a local value. */
859
860 extern struct buffer buffer_defaults;
861
862 /* This structure marks which slots in a buffer have corresponding
863 default values in buffer_defaults.
864 Each such slot has a nonzero value in this structure.
865 The value has only one nonzero bit.
866
867 When a buffer has its own local value for a slot,
868 the entry for that slot (found in the same slot in this structure)
869 is turned on in the buffer's local_flags array.
870
871 If a slot in this structure is zero, then even though there may
872 be a Lisp-level local variable for the slot, it has no default value,
873 and the corresponding slot in buffer_defaults is not used. */
874
875
876 extern struct buffer buffer_local_flags;
877
878 /* For each buffer slot, this points to the Lisp symbol name
879 for that slot in the current buffer. It is 0 for slots
880 that don't have such names. */
881
882 extern struct buffer buffer_local_symbols;
883 \f
884 extern void delete_all_overlays (struct buffer *);
885 extern void reset_buffer (struct buffer *);
886 extern void evaporate_overlays (EMACS_INT);
887 extern int overlays_at (EMACS_INT pos, int extend, Lisp_Object **vec_ptr,
888 int *len_ptr, EMACS_INT *next_ptr,
889 EMACS_INT *prev_ptr, int change_req);
890 extern int sort_overlays (Lisp_Object *, int, struct window *);
891 extern void recenter_overlay_lists (struct buffer *, EMACS_INT);
892 extern EMACS_INT overlay_strings (EMACS_INT, struct window *, unsigned char **);
893 extern void validate_region (Lisp_Object *, Lisp_Object *);
894 extern void set_buffer_internal (struct buffer *);
895 extern void set_buffer_internal_1 (struct buffer *);
896 extern void set_buffer_temp (struct buffer *);
897 extern void record_buffer (Lisp_Object);
898 extern void buffer_slot_type_mismatch (Lisp_Object, int) NO_RETURN;
899 extern void fix_overlays_before (struct buffer *, EMACS_INT, EMACS_INT);
900 extern void mmap_set_vars (int);
901
902 /* Get overlays at POSN into array OVERLAYS with NOVERLAYS elements.
903 If NEXTP is non-NULL, return next overlay there.
904 See overlay_at arg CHANGE_REQ for meaning of CHRQ arg. */
905
906 #define GET_OVERLAYS_AT(posn, overlays, noverlays, nextp, chrq) \
907 do { \
908 int maxlen = 40; \
909 overlays = (Lisp_Object *) alloca (maxlen * sizeof (Lisp_Object)); \
910 noverlays = overlays_at (posn, 0, &overlays, &maxlen, \
911 nextp, NULL, chrq); \
912 if (noverlays > maxlen) \
913 { \
914 maxlen = noverlays; \
915 overlays = (Lisp_Object *) alloca (maxlen * sizeof (Lisp_Object)); \
916 noverlays = overlays_at (posn, 0, &overlays, &maxlen, \
917 nextp, NULL, chrq); \
918 } \
919 } while (0)
920
921 EXFUN (Fbuffer_live_p, 1);
922 EXFUN (Fbuffer_name, 1);
923 EXFUN (Fnext_overlay_change, 1);
924 EXFUN (Fbuffer_local_value, 2);
925
926 extern Lisp_Object Qbefore_change_functions;
927 extern Lisp_Object Qafter_change_functions;
928 extern Lisp_Object Qfirst_change_hook;
929
930 \f
931 /* Overlays */
932
933 /* 1 if the OV is an overlay object. */
934
935 #define OVERLAY_VALID(OV) (OVERLAYP (OV))
936
937 /* Return the marker that stands for where OV starts in the buffer. */
938
939 #define OVERLAY_START(OV) (XOVERLAY (OV)->start)
940
941 /* Return the marker that stands for where OV ends in the buffer. */
942
943 #define OVERLAY_END(OV) (XOVERLAY (OV)->end)
944
945 /* Return the plist of overlay OV. */
946
947 #define OVERLAY_PLIST(OV) XOVERLAY ((OV))->plist
948
949 /* Return the actual buffer position for the marker P.
950 We assume you know which buffer it's pointing into. */
951
952 #define OVERLAY_POSITION(P) \
953 (MARKERP (P) ? marker_position (P) : (abort (), 0))
954
955 \f
956 /***********************************************************************
957 Buffer-local Variables
958 ***********************************************************************/
959
960 /* Number of per-buffer variables used. */
961
962 extern int last_per_buffer_idx;
963
964 /* Return the offset in bytes of member VAR of struct buffer
965 from the start of a buffer structure. */
966
967 #define PER_BUFFER_VAR_OFFSET(VAR) \
968 offsetof (struct buffer, BUFFER_INTERNAL_FIELD (VAR))
969
970 /* Return the index of buffer-local variable VAR. Each per-buffer
971 variable has an index > 0 associated with it, except when it always
972 has buffer-local values, in which case the index is -1. If this is
973 0, this is a bug and means that the slot of VAR in
974 buffer_local_flags wasn't intiialized. */
975
976 #define PER_BUFFER_VAR_IDX(VAR) \
977 PER_BUFFER_IDX (PER_BUFFER_VAR_OFFSET (VAR))
978
979 /* Value is non-zero if the variable with index IDX has a local value
980 in buffer B. */
981
982 #define PER_BUFFER_VALUE_P(B, IDX) \
983 (((IDX) < 0 || IDX >= last_per_buffer_idx) \
984 ? (abort (), 0) \
985 : ((B)->local_flags[IDX] != 0))
986
987 /* Set whether per-buffer variable with index IDX has a buffer-local
988 value in buffer B. VAL zero means it hasn't. */
989
990 #define SET_PER_BUFFER_VALUE_P(B, IDX, VAL) \
991 do { \
992 if ((IDX) < 0 || (IDX) >= last_per_buffer_idx) \
993 abort (); \
994 (B)->local_flags[IDX] = (VAL); \
995 } while (0)
996
997 /* Return the index value of the per-buffer variable at offset OFFSET
998 in the buffer structure.
999
1000 If the slot OFFSET has a corresponding default value in
1001 buffer_defaults, the index value is positive and has only one
1002 nonzero bit. When a buffer has its own local value for a slot, the
1003 bit for that slot (found in the same slot in this structure) is
1004 turned on in the buffer's local_flags array.
1005
1006 If the index value is -1, even though there may be a
1007 DEFVAR_PER_BUFFER for the slot, there is no default value for it;
1008 and the corresponding slot in buffer_defaults is not used.
1009
1010 If the index value is -2, then there is no DEFVAR_PER_BUFFER for
1011 the slot, but there is a default value which is copied into each
1012 new buffer.
1013
1014 If a slot in this structure corresponding to a DEFVAR_PER_BUFFER is
1015 zero, that is a bug */
1016
1017
1018 #define PER_BUFFER_IDX(OFFSET) \
1019 XINT (*(Lisp_Object *)((OFFSET) + (char *) &buffer_local_flags))
1020
1021 /* Return the default value of the per-buffer variable at offset
1022 OFFSET in the buffer structure. */
1023
1024 #define PER_BUFFER_DEFAULT(OFFSET) \
1025 (*(Lisp_Object *)((OFFSET) + (char *) &buffer_defaults))
1026
1027 /* Return the buffer-local value of the per-buffer variable at offset
1028 OFFSET in the buffer structure. */
1029
1030 #define PER_BUFFER_VALUE(BUFFER, OFFSET) \
1031 (*(Lisp_Object *)((OFFSET) + (char *) (BUFFER)))
1032 \f
1033 /* Downcase a character C, or make no change if that cannot be done. */
1034 static inline int
1035 downcase (int c)
1036 {
1037 Lisp_Object downcase_table = BVAR (current_buffer, downcase_table);
1038 Lisp_Object down = CHAR_TABLE_REF (downcase_table, c);
1039 return NATNUMP (down) ? XFASTINT (down) : c;
1040 }
1041
1042 /* 1 if C is upper case. */
1043 static inline int uppercasep (int c) { return downcase (c) != c; }
1044
1045 /* Upcase a character C known to be not upper case. */
1046 static inline int
1047 upcase1 (int c)
1048 {
1049 Lisp_Object upcase_table = BVAR (current_buffer, upcase_table);
1050 Lisp_Object up = CHAR_TABLE_REF (upcase_table, c);
1051 return NATNUMP (up) ? XFASTINT (up) : c;
1052 }
1053
1054 /* 1 if C is lower case. */
1055 static inline int lowercasep (int c)
1056 { return !uppercasep (c) && upcase1 (c) != c; }
1057
1058 /* Upcase a character C, or make no change if that cannot be done. */
1059 static inline int upcase (int c) { return uppercasep (c) ? c : upcase1 (c); }