Handle --with-x-toolkit. Produce lwlib/Makefile.
[bpt/emacs.git] / src / lisp.h
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3cfe6dfd 1/* Fundamental definitions for GNU Emacs Lisp interpreter.
c6c5df7f 2 Copyright (C) 1985, 1986, 1987, 1993 Free Software Foundation, Inc.
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3
4This file is part of GNU Emacs.
5
6GNU Emacs is free software; you can redistribute it and/or modify
7it under the terms of the GNU General Public License as published by
4746118a 8the Free Software Foundation; either version 2, or (at your option)
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9any later version.
10
11GNU Emacs is distributed in the hope that it will be useful,
12but WITHOUT ANY WARRANTY; without even the implied warranty of
13MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14GNU General Public License for more details.
15
16You should have received a copy of the GNU General Public License
17along with GNU Emacs; see the file COPYING. If not, write to
18the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. */
19
20
21/* Define the fundamental Lisp data structures */
22
23/* This is the set of Lisp data types */
24
25enum Lisp_Type
26 {
27 /* Integer. XINT(obj) is the integer value. */
28 Lisp_Int,
29
30 /* Symbol. XSYMBOL (object) points to a struct Lisp_Symbol. */
31 Lisp_Symbol,
32
33 /* Marker (buffer ptr). XMARKER(object) points to a struct Lisp_Marker. */
34 Lisp_Marker,
35
36 /* String. XSTRING (object) points to a struct Lisp_String.
37 The length of the string, and its contents, are stored therein. */
38 Lisp_String,
39
40 /* Vector of Lisp objects. XVECTOR(object) points to a struct Lisp_Vector.
41 The length of the vector, and its contents, are stored therein. */
42 Lisp_Vector,
43
44 /* Cons. XCONS (object) points to a struct Lisp_Cons. */
45 Lisp_Cons,
46
47 /* Byte-compiled function. A vector of 4 to 6 elements which are the
48 arglist, bytecode-string, constant vector, stack size,
49 (optional) doc string, and (optional) interactive spec. */
50 Lisp_Compiled,
51
52 /* Editor buffer. XBUFFER(obj) points to a struct buffer. */
53 Lisp_Buffer,
54
55 /* Built-in function. XSUBR(obj) points to a struct Lisp_Subr
56 which describes how to call the function, and its documentation,
57 as well as pointing to the code. */
58 Lisp_Subr,
59
60 /* Internal value return by subroutines of read.
61 The user never sees this data type.
62 Its value is just a number. */
63 Lisp_Internal,
64
65 /* Forwarding pointer to an int variable.
66 This is allowed only in the value cell of a symbol,
67 and it means that the symbol's value really lives in the
68 specified int variable.
69 XINTPTR(obj) points to the int variable. */
70 Lisp_Intfwd,
71
72 /* Boolean forwarding pointer to an int variable.
73 This is like Lisp_Intfwd except that the ostensible
74 "value" of the symbol is t if the int variable is nonzero,
75 nil if it is zero. XINTPTR(obj) points to the int variable. */
76 Lisp_Boolfwd,
77
78 /* Object describing a connection to a subprocess.
79 It points to storage of type struct Lisp_Process */
80 Lisp_Process,
81
82 /* Forwarding pointer to a Lisp_Object variable.
83 This is allowed only in the value cell of a symbol,
84 and it means that the symbol's value really lives in the
85 specified variable.
86 XOBJFWD(obj) points to the Lisp_Object variable. */
87 Lisp_Objfwd,
88
f1b76ec0 89#ifdef MULTI_FRAME
ff11dfa1 90 /* Pointer to a vector-like object describing a display frame
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91 on which Emacs can display a window hierarchy. We don't define
92 this unless MULTI_FRAME is defined; this helps the compiler catch
93 code that won't work on a non-MULTI_FRAME configuration. */
ff11dfa1 94 Lisp_Frame,
f1b76ec0 95#endif
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96
97 /* Used when a FILE * value needs to be passed
98 in an argument of type Lisp_Object.
99 You must do *(FILE **) XPNTR(obj) to get the value.
100 The user will never see this data type. */
101 Lisp_Internal_Stream,
102
103 /* Used in a symbol value cell when the symbol's value is per-buffer.
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104 The actual contents are a cons cell which starts a list like this:
105 (REALVALUE BUFFER CURRENT-ALIST-ELEMENT . DEFAULT-VALUE).
106
107 BUFFER is the last buffer for which this symbol's value was
108 made up to date.
109
110 CURRENT-ALIST-ELEMENT is a pointer to an element of BUFFER's
111 local_var_alist, that being the element whose car is this
112 variable. Or it can be a pointer to the
113 (CURRENT-ALIST-ELEMENT . DEFAULT-VALUE),
114 if BUFFER does not have an element in its alist for this
115 variable (that is, if BUFFER sees the default value of this
116 variable).
117
118 If we want to examine or set the value and BUFFER is current,
119 we just examine or set REALVALUE. If BUFFER is not current, we
120 store the current REALVALUE value into CURRENT-ALIST-ELEMENT,
121 then find the appropriate alist element for the buffer now
122 current and set up CURRENT-ALIST-ELEMENT. Then we set
123 REALVALUE out of that element, and store into BUFFER.
124
125 If we are setting the variable and the current buffer does not
126 have an alist entry for this variable, an alist entry is
127 created.
128
129 Note that REALVALUE can be a forwarding pointer. Each time it
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130 is examined or set, forwarding must be done. Each time we
131 switch buffers, buffer-local variables which forward into C
132 variables are swapped immediately, so the C code can assume
133 that they are always up to date. */
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134 Lisp_Buffer_Local_Value,
135
136 /* Like Lisp_Buffer_Local_Value with one difference:
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137 merely setting the variable while some buffer is current
138 does not cause that buffer to have its own local value of this variable.
139 Only make-local-variable does that. */
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140 Lisp_Some_Buffer_Local_Value,
141
142
143 /* Like Lisp_Objfwd except that value lives in a slot
144 in the current buffer. Value is byte index of slot within buffer */
145 Lisp_Buffer_Objfwd,
146
147 /* In symbol value cell, means var is unbound.
148 In symbol function cell, means function name is undefined. */
149 Lisp_Void,
150
151 /* Window used for Emacs display.
152 Data inside looks like a Lisp_Vector. */
153 Lisp_Window,
154
155 /* Used by save,set,restore-window-configuration */
20280af7 156 Lisp_Window_Configuration,
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157
158#ifdef LISP_FLOAT_TYPE
20280af7 159 Lisp_Float,
3cfe6dfd 160#endif /* LISP_FLOAT_TYPE */
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161
162 /* The overlay type.
163 An overlay values is actually a retagged cons, the first in a
164 list of the form
165 ((START . END) nil . PLIST)
166 where START and END are markers in the overlay's buffer, and
167 PLIST is the overlay's property list. */
168 Lisp_Overlay
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169 };
170
171#ifndef NO_UNION_TYPE
172
c451d7b1 173#ifndef WORDS_BIG_ENDIAN
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174
175/* Definition of Lisp_Object for little-endian machines. */
176
177typedef
178union Lisp_Object
179 {
180 /* Used for comparing two Lisp_Objects;
181 also, positive integers can be accessed fast this way. */
182 int i;
183
184 struct
185 {
186 int val: 24;
187 char type;
188 } s;
189 struct
190 {
191 unsigned int val: 24;
192 char type;
193 } u;
194 struct
195 {
196 unsigned int val: 24;
197 enum Lisp_Type type: 7;
198 /* The markbit is not really part of the value of a Lisp_Object,
199 and is always zero except during garbage collection. */
200 unsigned int markbit: 1;
201 } gu;
202 }
203Lisp_Object;
204
c451d7b1 205#else /* If WORDS_BIG_ENDIAN */
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206
207typedef
208union Lisp_Object
209 {
210 /* Used for comparing two Lisp_Objects;
211 also, positive integers can be accessed fast this way. */
212 int i;
213
214 struct
215 {
216 char type;
217 int val: 24;
218 } s;
219 struct
220 {
221 char type;
222 unsigned int val: 24;
223 } u;
224 struct
225 {
226 /* The markbit is not really part of the value of a Lisp_Object,
227 and is always zero except during garbage collection. */
228 unsigned int markbit: 1;
229 enum Lisp_Type type: 7;
230 unsigned int val: 24;
231 } gu;
232 }
233Lisp_Object;
234
c451d7b1 235#endif /* WORDS_BIG_ENDIAN */
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236
237#endif /* NO_UNION_TYPE */
238
239
240/* If union type is not wanted, define Lisp_Object as just a number
241 and define the macros below to extract fields by shifting */
242
243#ifdef NO_UNION_TYPE
244
245#define Lisp_Object int
246
247/* These values are overridden by the m- file on some machines. */
248#ifndef VALBITS
249#define VALBITS 24
250#endif
251
252#ifndef GCTYPEBITS
253#define GCTYPEBITS 7
254#endif
255
256#ifndef VALMASK
257#define VALMASK ((1<<VALBITS) - 1)
258#endif
259#define GCTYPEMASK ((1<<GCTYPEBITS) - 1)
260#define MARKBIT (1 << (VALBITS + GCTYPEBITS))
261
262#endif /* NO_UNION_TYPE */
263\f
264/* These macros extract various sorts of values from a Lisp_Object.
265 For example, if tem is a Lisp_Object whose type is Lisp_Cons,
266 XCONS (tem) is the struct Lisp_Cons * pointing to the memory for that cons. */
267
268#ifdef NO_UNION_TYPE
269
270/* One need to override this if there must be high bits set in data space
271 (doing the result of the below & ((1 << (GCTYPE + 1)) - 1) would work
272 on all machines, but would penalise machines which don't need it)
273 */
274#ifndef XTYPE
275#define XTYPE(a) ((enum Lisp_Type) ((a) >> VALBITS))
276#endif
277
278#ifndef XSETTYPE
279#define XSETTYPE(a, b) ((a) = XUINT (a) | ((int)(b) << VALBITS))
280#endif
281
282/* Use XFASTINT for fast retrieval and storage of integers known
283 to be positive. This takes advantage of the fact that Lisp_Int is 0. */
284#define XFASTINT(a) (a)
285
286/* Extract the value of a Lisp_Object as a signed integer. */
287
288#ifndef XINT /* Some machines need to do this differently. */
e065a56e 289#define XINT(a) (((a) << (INTBITS-VALBITS)) >> (INTBITS-VALBITS))
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290#endif
291
292/* Extract the value as an unsigned integer. This is a basis
293 for extracting it as a pointer to a structure in storage. */
294
295#ifndef XUINT
296#define XUINT(a) ((a) & VALMASK)
297#endif
298
299#ifndef XPNTR
300#ifdef HAVE_SHM
301/* In this representation, data is found in two widely separated segments. */
29eab336 302extern int pure_size;
3cfe6dfd 303#define XPNTR(a) \
29eab336 304 (XUINT (a) | (XUINT (a) > pure_size ? DATA_SEG_BITS : PURE_SEG_BITS))
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305#else /* not HAVE_SHM */
306#ifdef DATA_SEG_BITS
307/* This case is used for the rt-pc.
308 In the diffs I was given, it checked for ptr = 0
309 and did not adjust it in that case.
310 But I don't think that zero should ever be found
311 in a Lisp object whose data type says it points to something. */
312#define XPNTR(a) (XUINT (a) | DATA_SEG_BITS)
313#else
314#define XPNTR(a) XUINT (a)
315#endif
316#endif /* not HAVE_SHM */
317#endif /* no XPNTR */
318
319#ifndef XSETINT
320#define XSETINT(a, b) ((a) = ((a) & ~VALMASK) | ((b) & VALMASK))
321#endif
322
323#ifndef XSETUINT
324#define XSETUINT(a, b) XSETINT (a, b)
325#endif
326
327#ifndef XSETPNTR
328#define XSETPNTR(a, b) XSETINT (a, b)
329#endif
330
331#ifndef XSET
332#define XSET(var, type, ptr) \
333 ((var) = ((int)(type) << VALBITS) + ((int) (ptr) & VALMASK))
334#endif
335
336/* During garbage collection, XGCTYPE must be used for extracting types
337 so that the mark bit is ignored. XMARKBIT accesses the markbit.
338 Markbits are used only in particular slots of particular structure types.
339 Other markbits are always zero.
340 Outside of garbage collection, all mark bits are always zero. */
341
342#ifndef XGCTYPE
343#define XGCTYPE(a) ((enum Lisp_Type) (((a) >> VALBITS) & GCTYPEMASK))
344#endif
345
346#if VALBITS + GCTYPEBITS == INTBITS - 1
347/* Make XMARKBIT faster if mark bit is sign bit. */
348#ifndef XMARKBIT
349#define XMARKBIT(a) ((a) < 0)
350#endif
351#endif /* markbit is sign bit */
352
353#ifndef XMARKBIT
354#define XMARKBIT(a) ((a) & MARKBIT)
355#endif
356
357#ifndef XSETMARKBIT
358#define XSETMARKBIT(a,b) ((a) = ((a) & ~MARKBIT) | ((b) ? MARKBIT : 0))
359#endif
360
361#ifndef XMARK
362#define XMARK(a) ((a) |= MARKBIT)
363#endif
364
365#ifndef XUNMARK
366#define XUNMARK(a) ((a) &= ~MARKBIT)
367#endif
368
369#endif /* NO_UNION_TYPE */
370
371#ifndef NO_UNION_TYPE
372
373#define XTYPE(a) ((enum Lisp_Type) (a).u.type)
374#define XSETTYPE(a, b) ((a).u.type = (char) (b))
375
376/* Use XFASTINT for fast retrieval and storage of integers known
377 to be positive. This takes advantage of the fact that Lisp_Int is 0. */
378#define XFASTINT(a) ((a).i)
379
380#ifdef EXPLICIT_SIGN_EXTEND
381/* Make sure we sign-extend; compilers have been known to fail to do so. */
382#define XINT(a) (((a).i << 8) >> 8)
383#else
384#define XINT(a) ((a).s.val)
385#endif /* EXPLICIT_SIGN_EXTEND */
386
387#define XUINT(a) ((a).u.val)
388#define XPNTR(a) ((a).u.val)
389#define XSETINT(a, b) ((a).s.val = (int) (b))
390#define XSETUINT(a, b) ((a).s.val = (int) (b))
391#define XSETPNTR(a, b) ((a).s.val = (int) (b))
392
393#define XSET(var, vartype, ptr) \
394 (((var).s.type = ((char) (vartype))), ((var).s.val = ((int) (ptr))))
395
396/* During garbage collection, XGCTYPE must be used for extracting types
397 so that the mark bit is ignored. XMARKBIT access the markbit.
398 Markbits are used only in particular slots of particular structure types.
399 Other markbits are always zero.
400 Outside of garbage collection, all mark bits are always zero. */
401
402#define XGCTYPE(a) ((a).gu.type)
403#define XMARKBIT(a) ((a).gu.markbit)
404#define XSETMARKBIT(a,b) (XMARKBIT(a) = (b))
405#define XMARK(a) (XMARKBIT(a) = 1)
406#define XUNMARK(a) (XMARKBIT(a) = 0)
407
408#endif /* NO_UNION_TYPE */
409
410
411#define XCONS(a) ((struct Lisp_Cons *) XPNTR(a))
412#define XBUFFER(a) ((struct buffer *) XPNTR(a))
413#define XVECTOR(a) ((struct Lisp_Vector *) XPNTR(a))
414#define XSUBR(a) ((struct Lisp_Subr *) XPNTR(a))
415#define XSTRING(a) ((struct Lisp_String *) XPNTR(a))
416#define XSYMBOL(a) ((struct Lisp_Symbol *) XPNTR(a))
417#define XFUNCTION(a) ((Lisp_Object (*)()) XPNTR(a))
418#define XMARKER(a) ((struct Lisp_Marker *) XPNTR(a))
419#define XOBJFWD(a) ((Lisp_Object *) XPNTR(a))
420#define XINTPTR(a) ((int *) XPNTR(a))
421#define XWINDOW(a) ((struct window *) XPNTR(a))
422#define XPROCESS(a) ((struct Lisp_Process *) XPNTR(a))
423#define XFLOAT(a) ((struct Lisp_Float *) XPNTR(a))
424
425#define XSETCONS(a, b) XSETPNTR(a, (int) (b))
426#define XSETBUFFER(a, b) XSETPNTR(a, (int) (b))
427#define XSETVECTOR(a, b) XSETPNTR(a, (int) (b))
428#define XSETSUBR(a, b) XSETPNTR(a, (int) (b))
429#define XSETSTRING(a, b) XSETPNTR(a, (int) (b))
430#define XSETSYMBOL(a, b) XSETPNTR(a, (int) (b))
431#define XSETFUNCTION(a, b) XSETPNTR(a, (int) (b))
432#define XSETMARKER(a, b) XSETPNTR(a, (int) (b))
433#define XSETOBJFWD(a, b) XSETPNTR(a, (int) (b))
434#define XSETINTPTR(a, b) XSETPNTR(a, (int) (b))
435#define XSETWINDOW(a, b) XSETPNTR(a, (int) (b))
436#define XSETPROCESS(a, b) XSETPNTR(a, (int) (b))
437#define XSETFLOAT(a, b) XSETPNTR(a, (int) (b))
438\f
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439#ifdef USE_TEXT_PROPERTIES
440/* Basic data type for use of intervals. See the macros in intervals.h */
441
442struct interval
443{
444 /* The first group of entries deal with the tree structure. */
445
446 unsigned int total_length; /* Length of myself and both children. */
447 unsigned int position; /* Cache of interval's character position */
448 struct interval *left; /* Intervals which precede me. */
449 struct interval *right; /* Intervals which succeed me. */
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450
451 /* Parent in the tree, or the Lisp_Object containing this interval tree.
452
453 The mark bit on the root interval of an interval tree says
454 whether we have started (and possibly finished) marking the
455 tree. If GC comes across an interval tree whose root's parent
456 field has its markbit set, it leaves the tree alone.
457
458 You'd think we could store this information in the parent object
459 somewhere (after all, that should be visited once and then
460 ignored too, right?), but strings are GC'd strangely. */
461 struct interval *parent;
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462
463 /* The remaining components are `properties' of the interval.
464 The first four are duplicates for things which can be on the list,
465 for purposes of speed. */
466
467 unsigned char write_protect; /* Non-zero means can't modify. */
468 unsigned char visible; /* Zero means don't display. */
cde20f41 469 unsigned char front_sticky; /* Non-zero means text inserted just
e221eae3 470 before this interval goes into it. */
cde20f41 471 unsigned char rear_sticky; /* Likewise for just after it. */
e221eae3 472
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473 /* Properties of this interval.
474 The mark bit on this field says whether this particular interval
475 tree node has been visited. Since intervals should never be
476 shared, GC aborts if it seems to have visited an interval twice. */
477 Lisp_Object plist;
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478};
479
480typedef struct interval *INTERVAL;
481
482/* Complain if object is not string or buffer type */
483#define CHECK_STRING_OR_BUFFER(x, i) \
484 { if (XTYPE ((x)) != Lisp_String && XTYPE ((x)) != Lisp_Buffer) \
485 x = wrong_type_argument (Qbuffer_or_string_p, (x)); }
486
487/* Macro used to conditionally compile intervals into certain data
488 structures. See, e.g., struct Lisp_String below. */
489#define DECLARE_INTERVALS INTERVAL intervals;
490
eb8c3be9 491/* Macro used to conditionally compile interval initialization into
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492 certain code. See, e.g., alloc.c. */
493#define INITIALIZE_INTERVAL(ptr,val) ptr->intervals = val
494
495#else /* No text properties */
496
497/* If no intervals are used, make the above definitions go away. */
498
499#define CHECK_STRING_OR_BUFFER(x, i)
500
501#define INTERVAL
502#define DECLARE_INTERVALS
503#define INITIALIZE_INTERVAL(ptr,val)
504
505#endif /* USE_TEXT_PROPERTIES */
506\f
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507/* In a cons, the markbit of the car is the gc mark bit */
508
509struct Lisp_Cons
510 {
511 Lisp_Object car, cdr;
512 };
513
514/* Like a cons, but records info on where the text lives that it was read from */
515/* This is not really in use now */
516
517struct Lisp_Buffer_Cons
518 {
519 Lisp_Object car, cdr;
520 struct buffer *buffer;
521 int bufpos;
522 };
523
524/* In a string or vector, the sign bit of the `size' is the gc mark bit */
525
526struct Lisp_String
527 {
528 int size;
e221eae3 529 DECLARE_INTERVALS /* `data' field must be last. */
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530 unsigned char data[1];
531 };
532
533struct Lisp_Vector
534 {
535 int size;
536 struct Lisp_Vector *next;
537 Lisp_Object contents[1];
538 };
539
540/* In a symbol, the markbit of the plist is used as the gc mark bit */
541
542struct Lisp_Symbol
543 {
544 struct Lisp_String *name;
545 Lisp_Object value;
546 Lisp_Object function;
547 Lisp_Object plist;
548 struct Lisp_Symbol *next; /* -> next symbol in this obarray bucket */
549 };
550
551struct Lisp_Subr
552 {
553 Lisp_Object (*function) ();
554 short min_args, max_args;
555 char *symbol_name;
556 char *prompt;
557 char *doc;
558 };
559
560/* In a marker, the markbit of the chain field is used as the gc mark bit */
561
562struct Lisp_Marker
563 {
564 struct buffer *buffer;
565 Lisp_Object chain;
566 int bufpos;
567 int modified;
568 };
569
570#ifdef LISP_FLOAT_TYPE
571/* Optional Lisp floating point type */
572struct Lisp_Float
573 {
574 Lisp_Object type; /* essentially used for mark-bit
575 and chaining when on free-list */
576 double data;
577 };
578#endif /* LISP_FLOAT_TYPE */
579
580/* A character, declared with the following typedef, is a member
581 of some character set associated with the current buffer. */
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582#ifndef _UCHAR_T /* Protect against something in ctab.h on AIX. */
583#define _UCHAR_T
3cfe6dfd 584typedef unsigned char UCHAR;
b2ba7b00 585#endif
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586
587/* Meanings of slots in a Lisp_Compiled: */
588
589#define COMPILED_ARGLIST 0
590#define COMPILED_BYTECODE 1
591#define COMPILED_CONSTANTS 2
592#define COMPILED_STACK_DEPTH 3
593#define COMPILED_DOC_STRING 4
594#define COMPILED_INTERACTIVE 5
88dbfee5 595
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596/* Flag bits in a character. These also get used in termhooks.h.
597 Richard Stallman <rms@gnu.ai.mit.edu> thinks that MULE
598 (MUlti-Lingual Emacs) might need 18 bits for the character value
599 itself, so we probably shouldn't use any bits lower than 0x040000. */
600#define CHAR_ALT (0x040000)
601#define CHAR_SUPER (0x080000)
602#define CHAR_HYPER (0x100000)
603#define CHAR_SHIFT (0x200000)
604#define CHAR_CTL (0x400000)
605#define CHAR_META (0x800000)
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606
607\f
608/* The glyph datatype, used to represent characters on the display. */
609
610/* The low eight bits are the character code, and the bits above them
611 are the numeric face ID. If FID is the face ID of a glyph on a
612 frame F, then F->display.x->faces[FID] contains the description of
613 that face. This is an int instead of a short, so we can support a
614 good bunch of face ID's; given that we have no mechanism for
615 tossing unused frame face ID's yet, we'll probably run out of 255
616 pretty quickly. */
617#define GLYPH unsigned int
618
619/* Given a character code and a face ID, return the appropriate glyph. */
620#define MAKE_GLYPH(char, face) ((char) | ((face) << 8))
621
622/* Return a glyph's character code. */
623#define GLYPH_CHAR(glyph) ((glyph) & 0xff)
624
625/* Return a glyph's face ID. */
52b1821d 626#define GLYPH_FACE(glyph) (((glyph) >> 8) & ((1 << 24) - 1))
703f2808 627
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628\f
629/* Data type checking */
630
efb859b4 631#define NILP(x) (XFASTINT (x) == XFASTINT (Qnil))
f498e3b2 632#define GC_NILP(x) GC_EQ (x, Qnil)
3cfe6dfd 633
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634#ifdef LISP_FLOAT_TYPE
635#define NUMBERP(x) (XTYPE (x) == Lisp_Int || XTYPE (x) == Lisp_Float)
636#else
637#define NUMBERP(x) (XTYPE (x) == Lisp_Int)
638#endif
639
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640#define INTEGERP(x) (XTYPE ((x)) == Lisp_Int)
641#define SYMBOLP(x) (XTYPE ((x)) == Lisp_Symbol)
642#define MARKERP(x) (XTYPE ((x)) == Lisp_Marker)
643#define STRINGP(x) (XTYPE ((x)) == Lisp_String)
644#define VECTORP(x) (XTYPE ((x)) == Lisp_Vector)
3cfe6dfd 645#define CONSP(x) (XTYPE ((x)) == Lisp_Cons)
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646#define COMPILEDP(x) (XTYPE ((x)) == Lisp_Compiled)
647#define BUFFERP(x) (XTYPE ((x)) == Lisp_Buffer)
648#define SUBRP(x) (XTYPE ((x)) == Lisp_Subr)
649#define PROCESSP(x) (XTYPE ((x)) == Lisp_Process)
650#define FRAMEP(x) (XTYPE ((x)) == Lisp_Frame)
651#define WINDOWP(x) (XTYPE ((x)) == Lisp_Window)
652#define WINDOW_CONFIGURATIONP(x) (XTYPE ((x)) == Lisp_Window_Configuration)
20280af7 653#ifdef LISP_FLOAT_TYPE
edfa9106 654#define FLOATP(x) (XTYPE ((x)) == Lisp_Float)
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655#else
656#define FLOATP(x) (0)
657#endif
658#define OVERLAYP(x) (XTYPE ((x)) == Lisp_Overlay)
edfa9106 659
3cfe6dfd 660#define EQ(x, y) (XFASTINT (x) == XFASTINT (y))
f498e3b2 661#define GC_EQ(x, y) (XGCTYPE (x) == XGCTYPE (y) && XPNTR (x) == XPNTR (y))
4746118a 662
3cfe6dfd 663#define CHECK_LIST(x, i) \
2ad18bfd 664 do { if ((XTYPE ((x)) != Lisp_Cons) && !NILP (x)) x = wrong_type_argument (Qlistp, (x)); } while (0)
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665
666#define CHECK_STRING(x, i) \
2ad18bfd 667 do { if (XTYPE ((x)) != Lisp_String) x = wrong_type_argument (Qstringp, (x)); } while (0)
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668
669#define CHECK_CONS(x, i) \
2ad18bfd 670 do { if (XTYPE ((x)) != Lisp_Cons) x = wrong_type_argument (Qconsp, (x)); } while (0)
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671
672#define CHECK_SYMBOL(x, i) \
2ad18bfd 673 do { if (XTYPE ((x)) != Lisp_Symbol) x = wrong_type_argument (Qsymbolp, (x)); } while (0)
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674
675#define CHECK_VECTOR(x, i) \
2ad18bfd 676 do { if (XTYPE ((x)) != Lisp_Vector) x = wrong_type_argument (Qvectorp, (x)); } while (0)
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677
678#define CHECK_BUFFER(x, i) \
2ad18bfd 679 do { if (XTYPE ((x)) != Lisp_Buffer) x = wrong_type_argument (Qbufferp, (x)); } while (0)
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680
681#define CHECK_WINDOW(x, i) \
2ad18bfd 682 do { if (XTYPE ((x)) != Lisp_Window) x = wrong_type_argument (Qwindowp, (x)); } while (0)
3cfe6dfd 683
03273ec5
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684/* This macro rejects windows on the interior of the window tree as
685 "dead", which is what we want; this is an argument-checking macro, and
686 the user should never get access to interior windows.
687
688 A window of any sort, leaf or interior, is dead iff the buffer,
689 vchild, and hchild members are all nil. */
690
691#define CHECK_LIVE_WINDOW(x, i) \
2ad18bfd 692 do { \
03273ec5
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693 if (XTYPE ((x)) != Lisp_Window \
694 || NILP (XWINDOW ((x))->buffer)) \
806b4d9b 695 x = wrong_type_argument (Qwindow_live_p, (x)); \
2ad18bfd 696 } while (0)
03273ec5 697
3cfe6dfd 698#define CHECK_PROCESS(x, i) \
2ad18bfd 699 do { if (XTYPE ((x)) != Lisp_Process) x = wrong_type_argument (Qprocessp, (x)); } while (0)
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700
701#define CHECK_NUMBER(x, i) \
2ad18bfd 702 do { if (XTYPE ((x)) != Lisp_Int) x = wrong_type_argument (Qintegerp, (x)); } while (0)
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703
704#define CHECK_NATNUM(x, i) \
2ad18bfd
JB
705 do { if (XTYPE ((x)) != Lisp_Int || XINT ((x)) < 0) \
706 x = wrong_type_argument (Qnatnump, (x)); } while (0)
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707
708#define CHECK_MARKER(x, i) \
2ad18bfd 709 do { if (XTYPE ((x)) != Lisp_Marker) x = wrong_type_argument (Qmarkerp, (x)); } while (0)
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710
711#define CHECK_NUMBER_COERCE_MARKER(x, i) \
2ad18bfd
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712 do { if (XTYPE ((x)) == Lisp_Marker) XFASTINT (x) = marker_position (x); \
713 else if (XTYPE ((x)) != Lisp_Int) x = wrong_type_argument (Qinteger_or_marker_p, (x)); } while (0)
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714
715#ifdef LISP_FLOAT_TYPE
716
717#ifndef DBL_DIG
718#define DBL_DIG 20
719#endif
720
721#define XFLOATINT(n) extract_float((n))
722
723#define CHECK_FLOAT(x, i) \
2ad18bfd
JB
724 do { if (XTYPE (x) != Lisp_Float) \
725 x = wrong_type_argument (Qfloatp, (x)); } while (0)
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726
727#define CHECK_NUMBER_OR_FLOAT(x, i) \
2ad18bfd
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728 do { if (XTYPE (x) != Lisp_Float && XTYPE (x) != Lisp_Int) \
729 x = wrong_type_argument (Qnumberp, (x)); } while (0)
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730
731#define CHECK_NUMBER_OR_FLOAT_COERCE_MARKER(x, i) \
2ad18bfd 732 do { if (XTYPE (x) == Lisp_Marker) XFASTINT (x) = marker_position (x); \
3cfe6dfd 733 else if (XTYPE (x) != Lisp_Int && XTYPE (x) != Lisp_Float) \
2ad18bfd 734 x = wrong_type_argument (Qnumber_or_marker_p, (x)); } while (0)
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735
736#else /* Not LISP_FLOAT_TYPE */
737
738#define CHECK_NUMBER_OR_FLOAT CHECK_NUMBER
739
740#define CHECK_NUMBER_OR_FLOAT_COERCE_MARKER CHECK_NUMBER_COERCE_MARKER
741
742#define XFLOATINT(n) XINT((n))
743#endif /* LISP_FLOAT_TYPE */
744
20280af7 745#define CHECK_OVERLAY(x, i) \
2ad18bfd 746 do { if (XTYPE ((x)) != Lisp_Overlay) x = wrong_type_argument (Qoverlayp, (x));} while (0)
20280af7 747
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JB
748/* Cast pointers to this type to compare them. Some machines want int. */
749#ifndef PNTR_COMPARISON_TYPE
750#define PNTR_COMPARISON_TYPE unsigned int
751#endif
752\f
753/* Define a built-in function for calling from Lisp.
754 `lname' should be the name to give the function in Lisp,
755 as a null-terminated C string.
756 `fnname' should be the name of the function in C.
757 By convention, it starts with F.
758 `sname' should be the name for the C constant structure
759 that records information on this function for internal use.
760 By convention, it should be the same as `fnname' but with S instead of F.
761 It's too bad that C macros can't compute this from `fnname'.
762 `minargs' should be a number, the minimum number of arguments allowed.
763 `maxargs' should be a number, the maximum number of arguments allowed,
764 or else MANY or UNEVALLED.
765 MANY means pass a vector of evaluated arguments,
766 in the form of an integer number-of-arguments
767 followed by the address of a vector of Lisp_Objects
768 which contains the argument values.
769 UNEVALLED means pass the list of unevaluated arguments
770 `prompt' says how to read arguments for an interactive call.
771 This can be zero or a C string.
772 Zero means that interactive calls are not allowed.
773 A string is interpreted in a hairy way:
774 it should contain one line for each argument to be read, terminated by \n.
775 The first character of the line controls the type of parsing:
776 s -- read a string.
777 S -- read a symbol.
778 k -- read a key sequence and return it as a string.
779 a -- read a function name (symbol) with completion.
780 C -- read a command name (symbol) with completion.
781 v -- read a variable name (symbol) with completion.
782 b -- read a buffer name (a string) with completion.
783 B -- buffer name, may be existing buffer or may not be.
784 f -- read a file name, file must exist.
785 F -- read a file name, file need not exist.
786 n -- read a number.
787 c -- read a character and return it as a number.
788 p -- use the numeric value of the prefix argument.
789 P -- use raw value of prefix - can be nil, -, (NUMBER) or NUMBER.
790 x -- read a Lisp object from the minibuffer.
791 X -- read a Lisp form from the minibuffer and use its value.
792 A null string means call interactively with no arguments.
793 `doc' is documentation for the user.
794*/
795
c451d7b1 796#ifndef __STDC__
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797#define DEFUN(lname, fnname, sname, minargs, maxargs, prompt, doc) \
798 Lisp_Object fnname (); \
799 struct Lisp_Subr sname = {fnname, minargs, maxargs, lname, prompt, 0}; \
800 Lisp_Object fnname
801
c451d7b1
RS
802#else
803
804/* This version of DEFUN declares a function prototype with the right
805 arguments, so we can catch errors with maxargs at compile-time. */
806#define DEFUN(lname, fnname, sname, minargs, maxargs, prompt, doc) \
807 Lisp_Object fnname DEFUN_ARGS_ ## maxargs ; \
808 struct Lisp_Subr sname = {fnname, minargs, maxargs, lname, prompt, 0}; \
809 Lisp_Object fnname
810
811/* Note that the weird token-substitution semantics of ANSI C makes
812 this work for MANY and UNEVALLED. */
813#define DEFUN_ARGS_MANY (int, Lisp_Object *)
814#define DEFUN_ARGS_UNEVALLED (Lisp_Object)
815#define DEFUN_ARGS_0 (void)
816#define DEFUN_ARGS_1 (Lisp_Object)
817#define DEFUN_ARGS_2 (Lisp_Object, Lisp_Object)
818#define DEFUN_ARGS_3 (Lisp_Object, Lisp_Object, Lisp_Object)
819#define DEFUN_ARGS_4 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object)
820#define DEFUN_ARGS_5 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, \
821 Lisp_Object)
822#define DEFUN_ARGS_6 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, \
823 Lisp_Object, Lisp_Object)
824#define DEFUN_ARGS_7 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, \
825 Lisp_Object, Lisp_Object, Lisp_Object)
826#endif
827
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JB
828/* defsubr (Sname);
829 is how we define the symbol for function `name' at start-up time. */
830extern void defsubr ();
831
832#define MANY -2
833#define UNEVALLED -1
834
835extern void defvar_lisp ();
836extern void defvar_bool ();
837extern void defvar_int ();
838
839/* Macros we use to define forwarded Lisp variables.
840 These are used in the syms_of_FILENAME functions. */
841
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842#define DEFVAR_LISP(lname, vname, doc) defvar_lisp (lname, vname)
843#define DEFVAR_LISP_NOPRO(lname, vname, doc) defvar_lisp_nopro (lname, vname)
844#define DEFVAR_BOOL(lname, vname, doc) defvar_bool (lname, vname)
845#define DEFVAR_INT(lname, vname, doc) defvar_int (lname, vname)
ef15f270
JB
846#define DEFVAR_PER_BUFFER(lname, vname, type, doc) \
847 defvar_per_buffer (lname, vname, type, 0)
3cfe6dfd 848\f
78ca380c
JB
849/* Structure for recording Lisp call stack for backtrace purposes. */
850
851/* The special binding stack holds the outer values of variables while
852 they are bound by a function application or a let form, stores the
853 code to be executed for Lisp unwind-protect forms, and stores the C
854 functions to be called for record_unwind_protect.
855
856 If func is non-zero, undoing this binding applies func to old_value;
857 This implements record_unwind_protect.
858 If func is zero and symbol is nil, undoing this binding evaluates
859 the list of forms in old_value; this implements Lisp's unwind-protect
860 form.
861 Otherwise, undoing this binding stores old_value as symbol's value; this
862 undoes the bindings made by a let form or function call. */
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JB
863struct specbinding
864 {
865 Lisp_Object symbol, old_value;
866 Lisp_Object (*func) ();
867 Lisp_Object unused; /* Dividing by 16 is faster than by 12 */
868 };
869
870extern struct specbinding *specpdl;
871extern struct specbinding *specpdl_ptr;
872extern int specpdl_size;
873
78ca380c 874/* Everything needed to describe an active condition case. */
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875struct handler
876 {
78ca380c 877 /* The handler clauses and variable from the condition-case form. */
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JB
878 Lisp_Object handler;
879 Lisp_Object var;
78ca380c
JB
880
881 /* Used to effect the longjump out to the handler. */
3cfe6dfd 882 struct catchtag *tag;
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JB
883
884 /* The next enclosing handler. */
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885 struct handler *next;
886 };
887
888extern struct handler *handlerlist;
889
890extern struct catchtag *catchlist;
891extern struct backtrace *backtrace_list;
892
893/* An address near the bottom of the stack.
894 Tells GC how to save a copy of the stack. */
895extern char *stack_bottom;
896
897/* Check quit-flag and quit if it is non-nil. */
898
899#define QUIT \
efb859b4 900 if (!NILP (Vquit_flag) && NILP (Vinhibit_quit)) \
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JB
901 { Vquit_flag = Qnil; Fsignal (Qquit, Qnil); }
902
903/* Nonzero if ought to quit now. */
904
efb859b4 905#define QUITP (!NILP (Vquit_flag) && NILP (Vinhibit_quit))
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JB
906\f
907/* 1 if CH is upper case. */
908
7b15897a
JB
909#define UPPERCASEP(CH) \
910 (XSTRING (current_buffer->downcase_table)->data[CH] != (CH))
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JB
911
912/* 1 if CH is lower case. */
913
914#define LOWERCASEP(CH) \
7b15897a
JB
915 (!UPPERCASEP (CH) \
916 && XSTRING (current_buffer->upcase_table)->data[CH] != (CH))
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JB
917
918/* 1 if CH is neither upper nor lower case. */
919
920#define NOCASEP(CH) (XSTRING (current_buffer->upcase_table)->data[CH] == (CH))
921
922/* Upcase a character, or make no change if that cannot be done. */
923
7b15897a
JB
924#define UPCASE(CH) \
925 (XSTRING (current_buffer->downcase_table)->data[CH] == (CH) \
926 ? UPCASE1 (CH) : (CH))
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927
928/* Upcase a character known to be not upper case. */
929
930#define UPCASE1(CH) (XSTRING (current_buffer->upcase_table)->data[CH])
931
932/* Downcase a character, or make no change if that cannot be done. */
933
934#define DOWNCASE(CH) (XSTRING (current_buffer->downcase_table)->data[CH])
935
936/* Current buffer's map from characters to lower-case characters. */
937
938#define DOWNCASE_TABLE XSTRING (current_buffer->downcase_table)->data
939
940/* Table mapping each char to the next char with the same lowercase version.
941 This mapping is a no-op only for characters that don't have case. */
942#define UPCASE_TABLE XSTRING (current_buffer->upcase_table)->data
943
944extern Lisp_Object Vascii_downcase_table, Vascii_upcase_table;
945\f
946/* number of bytes of structure consed since last GC */
947
948extern int consing_since_gc;
949
950/* threshold for doing another gc */
951
952extern int gc_cons_threshold;
953
954/* Structure for recording stack slots that need marking */
955
956/* This is a chain of structures, each of which points at a Lisp_Object variable
957 whose value should be marked in garbage collection.
958 Normally every link of the chain is an automatic variable of a function,
959 and its `val' points to some argument or local variable of the function.
960 On exit to the function, the chain is set back to the value it had on entry.
e5f55f07
BF
961 This way, no link remains in the chain when the stack frame containing the
962 link disappears.
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963
964 Every function that can call Feval must protect in this fashion all
965 Lisp_Object variables whose contents will be used again. */
966
967extern struct gcpro *gcprolist;
968
969struct gcpro
970 {
971 struct gcpro *next;
972 Lisp_Object *var; /* Address of first protected variable */
973 int nvars; /* Number of consecutive protected variables */
974 };
975
976#define GCPRO1(varname) \
977 {gcpro1.next = gcprolist; gcpro1.var = &varname; gcpro1.nvars = 1; \
978 gcprolist = &gcpro1; }
979
980#define GCPRO2(varname1, varname2) \
981 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
982 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
983 gcprolist = &gcpro2; }
984
985#define GCPRO3(varname1, varname2, varname3) \
986 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
987 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
988 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
989 gcprolist = &gcpro3; }
990
991#define GCPRO4(varname1, varname2, varname3, varname4) \
992 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
993 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
994 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
995 gcpro4.next = &gcpro3; gcpro4.var = &varname4; gcpro4.nvars = 1; \
996 gcprolist = &gcpro4; }
997
998/* Call staticpro (&var) to protect static variable `var'. */
999
1000void staticpro();
1001
1002#define UNGCPRO (gcprolist = gcpro1.next)
1003
f498e3b2
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1004/* Evaluate expr, UNGCPRO, and then return the value of expr. I used
1005 to have a `do ... while' clause around this to make it interact
1006 with semicolons correctly, but this makes some compilers complain
1007 that the while is never reached. */
3cfe6dfd 1008#define RETURN_UNGCPRO(expr) \
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JB
1009 { \
1010 Lisp_Object ret_ungc_val; \
1011 ret_ungc_val = (expr); \
1012 UNGCPRO; \
1013 return ret_ungc_val; \
1014 } \
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1015\f
1016/* Defined in data.c */
1017extern Lisp_Object Qnil, Qt, Qquote, Qlambda, Qsubr, Qunbound;
1018extern Lisp_Object Qerror_conditions, Qerror_message, Qtop_level;
1019extern Lisp_Object Qerror, Qquit, Qwrong_type_argument, Qargs_out_of_range;
1020extern Lisp_Object Qvoid_variable, Qvoid_function;
1021extern Lisp_Object Qsetting_constant, Qinvalid_read_syntax;
1022extern Lisp_Object Qinvalid_function, Qwrong_number_of_arguments, Qno_catch;
1023extern Lisp_Object Qend_of_file, Qarith_error;
1024extern Lisp_Object Qbeginning_of_buffer, Qend_of_buffer, Qbuffer_read_only;
83125cd7 1025extern Lisp_Object Qmark_inactive;
3cfe6dfd 1026
59b4254d
JB
1027extern Lisp_Object Qrange_error, Qdomain_error, Qsingularity_error;
1028extern Lisp_Object Qoverflow_error, Qunderflow_error;
623ed1b0 1029
4de86b16 1030extern Lisp_Object Qintegerp, Qnumberp, Qnatnump, Qsymbolp, Qlistp, Qconsp;
3cfe6dfd
JB
1031extern Lisp_Object Qstringp, Qarrayp, Qsequencep, Qbufferp;
1032extern Lisp_Object Qchar_or_string_p, Qmarkerp, Qvectorp;
4de86b16
RS
1033extern Lisp_Object Qinteger_or_marker_p, Qnumber_or_marker_p;
1034extern Lisp_Object Qboundp, Qfboundp;
cde20f41 1035extern Lisp_Object Qbuffer_or_string_p;
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JB
1036extern Lisp_Object Qcdr;
1037
1038#ifdef LISP_FLOAT_TYPE
1039extern Lisp_Object Qfloatp, Qinteger_or_floatp, Qinteger_or_float_or_marker_p;
1040#endif /* LISP_FLOAT_TYPE */
1041
ff11dfa1 1042extern Lisp_Object Qframep;
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JB
1043
1044extern Lisp_Object Feq (), Fnull (), Flistp (), Fconsp (), Fatom (), Fnlistp ();
1045extern Lisp_Object Fintegerp (), Fnatnump (), Fsymbolp ();
1046extern Lisp_Object Fvectorp (), Fstringp (), Farrayp (), Fsequencep ();
1047extern Lisp_Object Fbufferp (), Fmarkerp (), Fsubrp (), Fchar_or_string_p ();
1048extern Lisp_Object Finteger_or_marker_p ();
1049#ifdef LISP_FLOAT_TYPE
1050extern Lisp_Object Ffloatp(), Finteger_or_floatp();
1051extern Lisp_Object Finteger_or_float_or_marker_p(), Ftruncate();
1052#endif /* LISP_FLOAT_TYPE */
1053
1054extern Lisp_Object Fcar (), Fcar_safe(), Fcdr (), Fcdr_safe();
1055extern Lisp_Object Fsetcar (), Fsetcdr ();
1056extern Lisp_Object Fboundp (), Ffboundp (), Fmakunbound (), Ffmakunbound ();
1057extern Lisp_Object Fsymbol_function (), Fsymbol_plist (), Fsymbol_name ();
ffd56f97 1058extern Lisp_Object indirect_function (), Findirect_function ();
3cfe6dfd 1059extern Lisp_Object Ffset (), Fsetplist ();
760cbdd3 1060extern Lisp_Object Fsymbol_value (), find_symbol_value (), Fset ();
d20c2151 1061extern Lisp_Object Fdefault_value (), Fset_default (), Fdefault_boundp ();
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JB
1062
1063extern Lisp_Object Faref (), Faset (), Farray_length ();
1064
f2980264 1065extern Lisp_Object Fstring_to_number (), Fnumber_to_string ();
c6cd5420
JB
1066extern Lisp_Object Feqlsign (), Fgtr (), Flss (), Fgeq (), Fleq ();
1067extern Lisp_Object Fneq (), Fzerop ();
1068extern Lisp_Object Fplus (), Fminus (), Ftimes (), Fquo (), Frem ();
1069extern Lisp_Object Fmax (), Fmin ();
1070extern Lisp_Object Flogand (), Flogior (), Flogxor (), Flognot ();
1071extern Lisp_Object Flsh (), Fash ();
1072
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JB
1073extern Lisp_Object Fadd1 (), Fsub1 ();
1074
1075extern Lisp_Object make_number ();
51cf3e31
JB
1076extern Lisp_Object long_to_cons ();
1077extern unsigned long cons_to_long ();
3cfe6dfd
JB
1078extern void args_out_of_range ();
1079extern void args_out_of_range_3 ();
1080extern Lisp_Object wrong_type_argument ();
1081#ifdef LISP_FLOAT_TYPE
1082extern Lisp_Object Ffloat_to_int(), Fint_to_float();
1083extern double extract_float();
d20c2151
JB
1084extern Lisp_Object make_float ();
1085extern Lisp_Object Ffloat ();
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JB
1086#endif /* LISP_FLOAT_TYPE */
1087
1088/* Defined in fns.c */
1089extern Lisp_Object Qstring_lessp;
1090extern Lisp_Object Vfeatures;
1091extern Lisp_Object Fidentity (), Frandom ();
1092extern Lisp_Object Flength ();
1093extern Lisp_Object Fappend (), Fconcat (), Fvconcat (), Fcopy_sequence ();
1094extern Lisp_Object Fsubstring ();
d20c2151 1095extern Lisp_Object Fnth (), Fnthcdr (), Fmemq (), Fassq (), Fassoc ();
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JB
1096extern Lisp_Object Frassq (), Fdelq (), Fsort ();
1097extern Lisp_Object Freverse (), Fnreverse (), Fget (), Fput (), Fequal ();
1098extern Lisp_Object Ffillarray (), Fnconc (), Fmapcar (), Fmapconcat ();
1099extern Lisp_Object Fy_or_n_p (), do_yes_or_no_p ();
1100extern Lisp_Object Ffeaturep (), Frequire () , Fprovide ();
1101extern Lisp_Object concat2 (), nconc2 ();
1102extern Lisp_Object assq_no_quit ();
d20c2151 1103extern Lisp_Object Fcopy_alist ();
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JB
1104
1105/* Defined in alloc.c */
1106extern Lisp_Object Vpurify_flag;
1107extern Lisp_Object Fcons (), Flist(), Fmake_list ();
1108extern Lisp_Object Fmake_vector (), Fvector (), Fmake_symbol (), Fmake_marker ();
1109extern Lisp_Object Fmake_string (), build_string (), make_string ();
88dbfee5 1110extern Lisp_Object make_event_array (), make_uninit_string ();
3cfe6dfd
JB
1111extern Lisp_Object Fpurecopy (), make_pure_string ();
1112extern Lisp_Object pure_cons (), make_pure_vector ();
1113extern Lisp_Object Fgarbage_collect ();
d20c2151 1114extern Lisp_Object Fmake_byte_code ();
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JB
1115
1116/* Defined in print.c */
1117extern Lisp_Object Vprin1_to_string_buffer;
1118extern Lisp_Object Fprin1 (), Fprin1_to_string (), Fprinc ();
1119extern Lisp_Object Fterpri (), Fprint ();
1120extern Lisp_Object Vstandard_output, Qstandard_output;
9453ea7b 1121extern Lisp_Object Qexternal_debugging_output;
3cfe6dfd
JB
1122extern void temp_output_buffer_setup (), temp_output_buffer_show ();
1123extern int print_level, print_escape_newlines;
1124extern Lisp_Object Qprint_escape_newlines;
1125
1126/* Defined in lread.c */
1127extern Lisp_Object Qvariable_documentation, Qstandard_input;
1128extern Lisp_Object Vobarray, Vstandard_input;
1129extern Lisp_Object Fread (), Fread_from_string ();
1130extern Lisp_Object Fintern (), Fintern_soft (), Fload ();
1131extern Lisp_Object Fget_file_char (), Fread_char ();
59b4254d 1132extern Lisp_Object read_filtered_event ();
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JB
1133extern Lisp_Object Feval_current_buffer (), Feval_region ();
1134extern Lisp_Object intern (), oblookup ();
c5e3de70
RS
1135#define LOADHIST_ATTACH(x) \
1136 if (initialized) Vcurrent_load_list = Fcons (x, Vcurrent_load_list)
1137extern Lisp_Object Vcurrent_load_list;
1138extern Lisp_Object Vload_history;
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JB
1139
1140/* Defined in eval.c */
1141extern Lisp_Object Qautoload, Qexit, Qinteractive, Qcommandp, Qdefun, Qmacro;
ad236261 1142extern Lisp_Object Vinhibit_quit, Qinhibit_quit, Vquit_flag;
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JB
1143extern Lisp_Object Vmocklisp_arguments, Qmocklisp, Qmocklisp_arguments;
1144extern Lisp_Object Vautoload_queue;
1145extern Lisp_Object Vrun_hooks;
1146extern Lisp_Object Fand (), For (), Fif (), Fprogn (), Fprog1 (), Fprog2 ();
1147extern Lisp_Object Fsetq (), Fquote ();
1148extern Lisp_Object Fuser_variable_p (), Finteractive_p ();
1149extern Lisp_Object Fdefun (), Flet (), FletX (), Fwhile ();
1150extern Lisp_Object Fcatch (), Fthrow (), Funwind_protect ();
1151extern Lisp_Object Fcondition_case (), Fsignal ();
1152extern Lisp_Object Ffunction_type (), Fautoload (), Fcommandp ();
1153extern Lisp_Object Feval (), Fapply (), Ffuncall ();
1154extern Lisp_Object Fglobal_set (), Fglobal_value (), Fbacktrace ();
1155extern Lisp_Object apply1 (), call0 (), call1 (), call2 (), call3 ();
1156extern Lisp_Object apply_lambda ();
1157extern Lisp_Object internal_catch ();
1158extern Lisp_Object internal_condition_case ();
1159extern Lisp_Object unbind_to ();
1160extern void error ();
1161extern Lisp_Object un_autoload ();
1162
1163/* Defined in editfns.c */
1164extern Lisp_Object Vprefix_arg, Qminus, Vcurrent_prefix_arg;
1165extern Lisp_Object Fgoto_char ();
1166extern Lisp_Object Fpoint_min_marker (), Fpoint_max_marker ();
1167extern Lisp_Object Fpoint_min (), Fpoint_max ();
1168extern Lisp_Object Fpoint (), Fpoint_marker (), Fmark_marker ();
760cbdd3
JB
1169extern Lisp_Object Ffollowing_char (), Fprevious_char (), Fchar_after ();
1170extern Lisp_Object Finsert ();
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JB
1171extern Lisp_Object Feolp (), Feobp (), Fbolp (), Fbobp ();
1172extern Lisp_Object Fformat (), format1 ();
ffd56f97
JB
1173extern Lisp_Object make_buffer_string (), Fbuffer_substring ();
1174extern Lisp_Object Fbuffer_string ();
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JB
1175extern Lisp_Object Fstring_equal (), Fstring_lessp (), Fbuffer_substring_lessp ();
1176extern Lisp_Object save_excursion_save (), save_restriction_save ();
1177extern Lisp_Object save_excursion_restore (), save_restriction_restore ();
1178extern Lisp_Object Fchar_to_string ();
1179
1180/* defined in buffer.c */
628300ba 1181extern Lisp_Object Vbuffer_alist, Vinhibit_read_only;
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JB
1182extern Lisp_Object Fget_buffer (), Fget_buffer_create (), Fset_buffer ();
1183extern Lisp_Object Fbarf_if_buffer_read_only ();
1184extern Lisp_Object Fcurrent_buffer (), Fswitch_to_buffer (), Fpop_to_buffer ();
1185extern Lisp_Object Fother_buffer ();
20280af7 1186extern Lisp_Object Qoverlayp;
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JB
1187extern struct buffer *all_buffers;
1188
1189/* defined in marker.c */
1190
1191extern Lisp_Object Fmarker_position (), Fmarker_buffer ();
1192extern Lisp_Object Fcopy_marker ();
1193
1194/* Defined in fileio.c */
1195
1196extern Lisp_Object Qfile_error;
997bf68d 1197extern Lisp_Object Ffind_file_name_handler ();
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JB
1198extern Lisp_Object Ffile_name_as_directory ();
1199extern Lisp_Object Fexpand_file_name (), Ffile_name_nondirectory ();
1200extern Lisp_Object Fsubstitute_in_file_name ();
1201extern Lisp_Object Ffile_symlink_p ();
d20c2151
JB
1202extern Lisp_Object Fverify_visited_file_modtime ();
1203extern Lisp_Object Ffile_exists_p ();
1204extern Lisp_Object Fdirectory_file_name ();
1205extern Lisp_Object Ffile_name_directory ();
1206extern Lisp_Object expand_and_dir_to_file ();
1207extern Lisp_Object Ffile_accessible_directory_p ();
3cfe6dfd
JB
1208
1209/* Defined in abbrev.c */
1210
1211extern Lisp_Object Vfundamental_mode_abbrev_table;
1212
1213/* defined in search.c */
1214extern Lisp_Object Fstring_match ();
1215extern Lisp_Object Fscan_buffer ();
1216
1217/* defined in minibuf.c */
1218
1219extern Lisp_Object last_minibuf_string;
1220extern Lisp_Object read_minibuf (), Fcompleting_read ();
1221extern Lisp_Object Fread_from_minibuffer ();
1222extern Lisp_Object Fread_variable (), Fread_buffer (), Fread_key_sequence ();
1223extern Lisp_Object Fread_minibuffer (), Feval_minibuffer ();
1224extern Lisp_Object Fread_string (), Fread_file_name ();
1225extern Lisp_Object Fread_no_blanks_input ();
1226
1227/* Defined in callint.c */
1228
1229extern Lisp_Object Vcommand_history;
1230extern Lisp_Object Qcall_interactively;
1231extern Lisp_Object Fcall_interactively ();
1232extern Lisp_Object Fprefix_numeric_value ();
1233
1234/* defined in casefiddle.c */
1235
1236extern Lisp_Object Fdowncase (), Fupcase (), Fcapitalize ();
1237
1238/* defined in keyboard.c */
1239
1240extern Lisp_Object Qdisabled;
1241extern Lisp_Object Vhelp_form, Vtop_level;
1242extern Lisp_Object Fdiscard_input (), Frecursive_edit ();
1243extern Lisp_Object Fcommand_execute (), Finput_pending_p ();
f498e3b2 1244extern Lisp_Object Qvertical_scroll_bar;
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JB
1245
1246/* defined in keymap.c */
1247
c451d7b1 1248extern Lisp_Object Qkeymap, Qmenu_bar;
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JB
1249extern Lisp_Object current_global_map;
1250extern Lisp_Object Fkey_description (), Fsingle_key_description ();
1251extern Lisp_Object Fwhere_is_internal ();
1252extern Lisp_Object access_keymap (), store_in_keymap ();
1253extern Lisp_Object get_keyelt (), get_keymap();
1254
1255/* defined in indent.c */
1256extern Lisp_Object Fvertical_motion (), Findent_to (), Fcurrent_column ();
1257
1258/* defined in window.c */
afd0d237 1259extern Lisp_Object Qwindowp, Qwindow_live_p;
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JB
1260extern Lisp_Object Fget_buffer_window ();
1261extern Lisp_Object Fsave_window_excursion ();
1262extern Lisp_Object Fset_window_configuration (), Fcurrent_window_configuration ();
9453ea7b
JB
1263extern Lisp_Object Fcoordinates_in_window_p ();
1264extern Lisp_Object Fwindow_at ();
02213e82 1265extern int window_internal_height (), window_internal_width ();
3cfe6dfd 1266
ff11dfa1
JB
1267/* defined in frame.c */
1268extern Lisp_Object Fframep ();
1269extern Lisp_Object Fselect_frame ();
1270extern Lisp_Object Ffocus_frame ();
1271extern Lisp_Object Funfocus_frame ();
1272extern Lisp_Object Fselected_frame ();
1273extern Lisp_Object Fwindow_frame ();
1274extern Lisp_Object Fframe_root_window ();
1275extern Lisp_Object Fframe_selected_window ();
1276extern Lisp_Object Fframe_list ();
1277extern Lisp_Object Fnext_frame ();
1278extern Lisp_Object Fdelete_frame ();
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JB
1279extern Lisp_Object Fread_mouse_position ();
1280extern Lisp_Object Fset_mouse_position ();
ff11dfa1
JB
1281extern Lisp_Object Fmake_frame_visible ();
1282extern Lisp_Object Fmake_frame_invisible ();
1283extern Lisp_Object Ficonify_frame ();
1284extern Lisp_Object Fdeiconify_frame ();
1285extern Lisp_Object Fframe_visible_p ();
1286extern Lisp_Object Fvisible_frame_list ();
1287extern Lisp_Object Fframe_parameters ();
1288extern Lisp_Object Fmodify_frame_parameters ();
1289extern Lisp_Object Fframe_pixel_size ();
1290extern Lisp_Object Fframe_height ();
1291extern Lisp_Object Fframe_width ();
1292extern Lisp_Object Fset_frame_height ();
1293extern Lisp_Object Fset_frame_width ();
1294extern Lisp_Object Fset_frame_size ();
1295extern Lisp_Object Fset_frame_position ();
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JB
1296#ifndef HAVE_X11
1297extern Lisp_Object Frubber_band_rectangle ();
1298#endif /* HAVE_X11 */
1299
1300/* defined in emacs.c */
1301extern Lisp_Object decode_env_path ();
3530d534 1302extern Lisp_Object Vinvocation_name, Vinvocation_directory;
d0068e25 1303void shut_down_emacs ( /* int signal, int no_x, Lisp_Object stuff */ );
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JB
1304/* Nonzero means don't do interactive redisplay and don't change tty modes */
1305extern int noninteractive;
1306/* Nonzero means don't do use window-system-specific display code */
1307extern int inhibit_window_system;
1308
1309/* defined in process.c */
1310extern Lisp_Object Fget_process (), Fget_buffer_process (), Fprocessp ();
1311extern Lisp_Object Fprocess_status (), Fkill_process ();
1312
1313/* defined in callproc.c */
9453ea7b 1314extern Lisp_Object Vexec_path, Vexec_directory, Vdata_directory;
3cfe6dfd 1315
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JB
1316/* defined in doc.c */
1317extern Lisp_Object Vdoc_file_name;
1318extern Lisp_Object Fsubstitute_command_keys ();
1319extern Lisp_Object Fdocumentation (), Fdocumentation_property ();
1320
1321/* defined in bytecode.c */
1322extern Lisp_Object Qbytecode;
d20c2151 1323extern Lisp_Object Fbyte_code ();
3cfe6dfd
JB
1324
1325/* defined in macros.c */
1326extern Lisp_Object Qexecute_kbd_macro;
1327extern Lisp_Object Fexecute_kbd_macro ();
1328
d20c2151
JB
1329/* defined in undo.c */
1330extern Lisp_Object Fundo_boundary ();
1331extern Lisp_Object truncate_undo_list ();
1332
8537f1cb 1333/* defined in textprop.c */
c2d8811c
RS
1334extern Lisp_Object Qmodification_hooks;
1335extern Lisp_Object Qinsert_in_front_hooks, Qinsert_behind_hooks;
55253957
RS
1336extern Lisp_Object Fnext_property_change ();
1337extern Lisp_Object Fnext_single_property_change ();
8537f1cb 1338
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JB
1339/* Nonzero means Emacs has already been initialized.
1340 Used during startup to detect startup of dumped Emacs. */
1341extern int initialized;
1342
1343extern int immediate_quit; /* Nonzero means ^G can quit instantly */
1344
1345extern void debugger ();
1346
339747e4 1347extern char *getenv (), *ctime (), *getwd ();
3cfe6dfd 1348extern long *xmalloc (), *xrealloc ();
9ac0d9e0 1349extern void xfree ();
3cfe6dfd 1350
efb859b4 1351extern char *egetenv ();
c5e3de70 1352