Make lisp_time_argument work on all systems.
[bpt/emacs.git] / src / lisp.h
1 /* Fundamental definitions for GNU Emacs Lisp interpreter.
2 Copyright (C) 1985, 1986, 1987, 1993, 1994, 1995, 1997, 1998, 1999, 2000,
3 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010
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 #ifndef EMACS_LISP_H
22 #define EMACS_LISP_H
23
24 #include <stdarg.h>
25 #include <stddef.h>
26
27 /* Use the configure flag --enable-checking[=LIST] to enable various
28 types of run time checks for Lisp objects. */
29
30 #ifdef GC_CHECK_CONS_LIST
31 #define CHECK_CONS_LIST() check_cons_list()
32 #else
33 #define CHECK_CONS_LIST() ((void)0)
34 #endif
35
36 /* These are default choices for the types to use. */
37 #ifdef _LP64
38 #ifndef EMACS_INT
39 #define EMACS_INT long
40 #define BITS_PER_EMACS_INT BITS_PER_LONG
41 #endif
42 #ifndef EMACS_UINT
43 #define EMACS_UINT unsigned long
44 #endif
45 #else /* not _LP64 */
46 #ifndef EMACS_INT
47 #define EMACS_INT int
48 #define BITS_PER_EMACS_INT BITS_PER_INT
49 #endif
50 #ifndef EMACS_UINT
51 #define EMACS_UINT unsigned int
52 #endif
53 #endif
54
55 /* Extra internal type checking? */
56 extern int suppress_checking;
57 extern void die (const char *, const char *, int) NO_RETURN;
58
59 #ifdef ENABLE_CHECKING
60
61 /* The suppress_checking variable is initialized to 0 in alloc.c. Set
62 it to 1 using a debugger to temporarily disable aborting on
63 detected internal inconsistencies or error conditions.
64
65 Testing suppress_checking after the supplied condition ensures that
66 the side effects produced by CHECK will be consistent, independent
67 of whether ENABLE_CHECKING is defined, or whether the checks are
68 suppressed at run time.
69
70 In some cases, a good compiler may be able to optimize away the
71 CHECK macro altogether, e.g., if XSTRING (x) uses CHECK to test
72 STRINGP (x), but a particular use of XSTRING is invoked only after
73 testing that STRINGP (x) is true, making the test redundant. */
74
75 #define CHECK(check,msg) (((check) || suppress_checking \
76 ? (void) 0 \
77 : die ((msg), __FILE__, __LINE__)), \
78 0)
79 #else
80
81 /* Produce same side effects and result, but don't complain. */
82 #define CHECK(check,msg) ((check),0)
83
84 #endif
85
86 /* Define an Emacs version of "assert", since some system ones are
87 flaky. */
88 #ifndef ENABLE_CHECKING
89 #define eassert(X) (void) 0
90 #else /* ENABLE_CHECKING */
91 #if defined (__GNUC__) && __GNUC__ >= 2 && defined (__STDC__)
92 #define eassert(cond) CHECK(cond,"assertion failed: " #cond)
93 #else
94 #define eassert(cond) CHECK(cond,"assertion failed")
95 #endif
96 #endif /* ENABLE_CHECKING */
97 \f
98 /* Use the configure flag --enable-use-lisp-union-type to make
99 Lisp_Object use a union type instead of the default int. The flag
100 causes USE_LISP_UNION_TYPE to be defined. */
101
102 /***** Select the tagging scheme. *****/
103 /* There are basically two options that control the tagging scheme:
104 - USE_LISP_UNION_TYPE says that Lisp_Object should be a union instead
105 of an integer.
106 - USE_LSB_TAG means that we can assume the least 3 bits of pointers are
107 always 0, and we can thus use them to hold tag bits, without
108 restricting our addressing space.
109
110 If USE_LSB_TAG is not set, then we use the top 3 bits for tagging, thus
111 restricting our possible address range. Currently USE_LSB_TAG is not
112 allowed together with a union. This is not due to any fundamental
113 technical (or political ;-) problem: nobody wrote the code to do it yet.
114
115 USE_LSB_TAG not only requires the least 3 bits of pointers returned by
116 malloc to be 0 but also needs to be able to impose a mult-of-8 alignment
117 on the few static Lisp_Objects used: all the defsubr as well
118 as the two special buffers buffer_defaults and buffer_local_symbols. */
119
120 /* First, try and define DECL_ALIGN(type,var) which declares a static
121 variable VAR of type TYPE with the added requirement that it be
122 TYPEBITS-aligned. */
123 #ifndef NO_DECL_ALIGN
124 # ifndef DECL_ALIGN
125 /* What compiler directive should we use for non-gcc compilers? -stef */
126 # if defined (__GNUC__)
127 # define DECL_ALIGN(type, var) \
128 type __attribute__ ((__aligned__ (1 << GCTYPEBITS))) var
129 # endif
130 # endif
131 #endif
132
133 /* Let's USE_LSB_TAG on systems where we know malloc returns mult-of-8. */
134 #if defined GNU_MALLOC || defined DOUG_LEA_MALLOC || defined __GLIBC__ || defined DARWIN_OS
135 /* We also need to be able to specify mult-of-8 alignment on static vars. */
136 # if defined DECL_ALIGN
137 # define USE_LSB_TAG
138 # endif
139 #endif
140
141 /* If we cannot use 8-byte alignment, make DECL_ALIGN a no-op. */
142 #ifndef DECL_ALIGN
143 # ifdef USE_LSB_TAG
144 # error "USE_LSB_TAG used without defining DECL_ALIGN"
145 # endif
146 # define DECL_ALIGN(type, var) type var
147 #endif
148
149
150 /* Define the fundamental Lisp data structures. */
151
152 /* If USE_2_TAGBITS_FOR_INTS is defined, then Lisp integers use
153 2 tags, to give them one extra bit, thus extending their range from
154 e.g -2^28..2^28-1 to -2^29..2^29-1. */
155 #define USE_2_TAGS_FOR_INTS
156
157 /* Making it work for the union case is too much trouble. */
158 #ifdef USE_LISP_UNION_TYPE
159 # undef USE_2_TAGS_FOR_INTS
160 #endif
161
162 /* This is the set of Lisp data types. */
163
164 #if !defined USE_2_TAGS_FOR_INTS
165 # define LISP_INT_TAG Lisp_Int
166 # define case_Lisp_Int case Lisp_Int
167 # define LISP_STRING_TAG 4
168 # define LISP_INT_TAG_P(x) ((x) == Lisp_Int)
169 #else
170 # define LISP_INT_TAG Lisp_Int0
171 # define case_Lisp_Int case Lisp_Int0: case Lisp_Int1
172 # ifdef USE_LSB_TAG
173 # define LISP_INT1_TAG 4
174 # define LISP_STRING_TAG 1
175 # define LISP_INT_TAG_P(x) (((x) & 3) == 0)
176 # else
177 # define LISP_INT1_TAG 1
178 # define LISP_STRING_TAG 4
179 # define LISP_INT_TAG_P(x) (((x) & 6) == 0)
180 # endif
181 #endif
182
183 enum Lisp_Type
184 {
185 /* Integer. XINT (obj) is the integer value. */
186 #ifdef USE_2_TAGS_FOR_INTS
187 Lisp_Int0 = 0,
188 Lisp_Int1 = LISP_INT1_TAG,
189 #else
190 Lisp_Int = 0,
191 #endif
192
193 /* Symbol. XSYMBOL (object) points to a struct Lisp_Symbol. */
194 Lisp_Symbol = 2,
195
196 /* Miscellaneous. XMISC (object) points to a union Lisp_Misc,
197 whose first member indicates the subtype. */
198 Lisp_Misc = 3,
199
200 /* String. XSTRING (object) points to a struct Lisp_String.
201 The length of the string, and its contents, are stored therein. */
202 Lisp_String = LISP_STRING_TAG,
203
204 /* Vector of Lisp objects, or something resembling it.
205 XVECTOR (object) points to a struct Lisp_Vector, which contains
206 the size and contents. The size field also contains the type
207 information, if it's not a real vector object. */
208 Lisp_Vectorlike = 5,
209
210 /* Cons. XCONS (object) points to a struct Lisp_Cons. */
211 Lisp_Cons = 6,
212
213 Lisp_Float = 7,
214 };
215
216 /* This is the set of data types that share a common structure.
217 The first member of the structure is a type code from this set.
218 The enum values are arbitrary, but we'll use large numbers to make it
219 more likely that we'll spot the error if a random word in memory is
220 mistakenly interpreted as a Lisp_Misc. */
221 enum Lisp_Misc_Type
222 {
223 Lisp_Misc_Free = 0x5eab,
224 Lisp_Misc_Marker,
225 Lisp_Misc_Overlay,
226 Lisp_Misc_Save_Value,
227 /* Currently floats are not a misc type,
228 but let's define this in case we want to change that. */
229 Lisp_Misc_Float,
230 /* This is not a type code. It is for range checking. */
231 Lisp_Misc_Limit
232 };
233
234 /* These are the types of forwarding objects used in the value slot
235 of symbols for special built-in variables whose value is stored in
236 C variables. */
237 enum Lisp_Fwd_Type
238 {
239 Lisp_Fwd_Int, /* Fwd to a C `int' variable. */
240 Lisp_Fwd_Bool, /* Fwd to a C boolean var. */
241 Lisp_Fwd_Obj, /* Fwd to a C Lisp_Object variable. */
242 Lisp_Fwd_Buffer_Obj, /* Fwd to a Lisp_Object field of buffers. */
243 Lisp_Fwd_Kboard_Obj, /* Fwd to a Lisp_Object field of kboards. */
244 };
245
246 #ifndef GCTYPEBITS
247 #define GCTYPEBITS 3
248 #endif
249
250 /* These values are overridden by the m- file on some machines. */
251 #ifndef VALBITS
252 #define VALBITS (BITS_PER_EMACS_INT - GCTYPEBITS)
253 #endif
254
255 #ifdef USE_LISP_UNION_TYPE
256
257 #ifndef WORDS_BIG_ENDIAN
258
259 /* Definition of Lisp_Object for little-endian machines. */
260
261 typedef
262 union Lisp_Object
263 {
264 /* Used for comparing two Lisp_Objects;
265 also, positive integers can be accessed fast this way. */
266 EMACS_UINT i;
267
268 struct
269 {
270 EMACS_INT val : VALBITS;
271 enum Lisp_Type type : GCTYPEBITS;
272 } s;
273 struct
274 {
275 EMACS_UINT val : VALBITS;
276 enum Lisp_Type type : GCTYPEBITS;
277 } u;
278 }
279 Lisp_Object;
280
281 #else /* If WORDS_BIG_ENDIAN */
282
283 typedef
284 union Lisp_Object
285 {
286 /* Used for comparing two Lisp_Objects;
287 also, positive integers can be accessed fast this way. */
288 EMACS_UINT i;
289
290 struct
291 {
292 enum Lisp_Type type : GCTYPEBITS;
293 EMACS_INT val : VALBITS;
294 } s;
295 struct
296 {
297 enum Lisp_Type type : GCTYPEBITS;
298 EMACS_UINT val : VALBITS;
299 } u;
300 }
301 Lisp_Object;
302
303 #endif /* WORDS_BIG_ENDIAN */
304
305 #ifdef __GNUC__
306 static __inline__ Lisp_Object
307 LISP_MAKE_RVALUE (Lisp_Object o)
308 {
309 return o;
310 }
311 #else
312 /* This is more portable to pre-C99 non-GCC compilers, but for
313 backwards compatibility GCC still accepts an old GNU extension
314 which caused this to only generate a warning. */
315 #define LISP_MAKE_RVALUE(o) (0 ? (o) : (o))
316 #endif
317
318 #else /* USE_LISP_UNION_TYPE */
319
320 /* If union type is not wanted, define Lisp_Object as just a number. */
321
322 typedef EMACS_INT Lisp_Object;
323 #define LISP_MAKE_RVALUE(o) (0+(o))
324 #endif /* USE_LISP_UNION_TYPE */
325
326 /* In the size word of a vector, this bit means the vector has been marked. */
327
328 #define ARRAY_MARK_FLAG ((EMACS_UINT) 1 << (BITS_PER_EMACS_INT - 1))
329
330 /* In the size word of a struct Lisp_Vector, this bit means it's really
331 some other vector-like object. */
332 #define PSEUDOVECTOR_FLAG ((ARRAY_MARK_FLAG >> 1))
333
334 /* In a pseudovector, the size field actually contains a word with one
335 PSEUDOVECTOR_FLAG bit set, and exactly one of the following bits to
336 indicate the actual type.
337 We use a bitset, even tho only one of the bits can be set at any
338 particular time just so as to be able to use micro-optimizations such as
339 testing membership of a particular subset of pseudovectors in Fequal.
340 It is not crucial, but there are plenty of bits here, so why not do it? */
341 enum pvec_type
342 {
343 PVEC_NORMAL_VECTOR = 0,
344 PVEC_PROCESS = 0x200,
345 PVEC_FRAME = 0x400,
346 PVEC_COMPILED = 0x800,
347 PVEC_WINDOW = 0x1000,
348 PVEC_WINDOW_CONFIGURATION = 0x2000,
349 PVEC_SUBR = 0x4000,
350 PVEC_CHAR_TABLE = 0x8000,
351 PVEC_BOOL_VECTOR = 0x10000,
352 PVEC_BUFFER = 0x20000,
353 PVEC_HASH_TABLE = 0x40000,
354 PVEC_TERMINAL = 0x80000,
355 PVEC_SUB_CHAR_TABLE = 0x100000,
356 PVEC_FONT = 0x200000,
357 PVEC_OTHER = 0x400000,
358 PVEC_TYPE_MASK = 0x7ffe00
359
360 #if 0 /* This is used to make the value of PSEUDOVECTOR_FLAG available to
361 GDB. It doesn't work on OS Alpha. Moved to a variable in
362 emacs.c. */
363 PVEC_FLAG = PSEUDOVECTOR_FLAG
364 #endif
365 };
366
367 /* For convenience, we also store the number of elements in these bits.
368 Note that this size is not necessarily the memory-footprint size, but
369 only the number of Lisp_Object fields (that need to be traced by the GC).
370 The distinction is used e.g. by Lisp_Process which places extra
371 non-Lisp_Object fields at the end of the structure. */
372 #define PSEUDOVECTOR_SIZE_MASK 0x1ff
373
374 /* Number of bits to put in each character in the internal representation
375 of bool vectors. This should not vary across implementations. */
376 #define BOOL_VECTOR_BITS_PER_CHAR 8
377 \f
378 /* These macros extract various sorts of values from a Lisp_Object.
379 For example, if tem is a Lisp_Object whose type is Lisp_Cons,
380 XCONS (tem) is the struct Lisp_Cons * pointing to the memory for that cons. */
381
382 #ifndef USE_LISP_UNION_TYPE
383
384 /* Return a perfect hash of the Lisp_Object representation. */
385 #define XHASH(a) (a)
386
387 #ifdef USE_LSB_TAG
388
389 #define TYPEMASK ((((EMACS_INT) 1) << GCTYPEBITS) - 1)
390 #define XTYPE(a) ((enum Lisp_Type) (((EMACS_UINT) (a)) & TYPEMASK))
391 #ifdef USE_2_TAGS_FOR_INTS
392 # define XINT(a) (((EMACS_INT) (a)) >> (GCTYPEBITS - 1))
393 # define XUINT(a) (((EMACS_UINT) (a)) >> (GCTYPEBITS - 1))
394 # define make_number(N) (((EMACS_INT) (N)) << (GCTYPEBITS - 1))
395 #else
396 # define XINT(a) (((EMACS_INT) (a)) >> GCTYPEBITS)
397 # define XUINT(a) (((EMACS_UINT) (a)) >> GCTYPEBITS)
398 # define make_number(N) (((EMACS_INT) (N)) << GCTYPEBITS)
399 #endif
400 #define XSET(var, type, ptr) \
401 (eassert (XTYPE (ptr) == 0), /* Check alignment. */ \
402 (var) = ((EMACS_INT) (type)) | ((EMACS_INT) (ptr)))
403
404 #define XPNTR(a) ((EMACS_INT) ((a) & ~TYPEMASK))
405
406 #else /* not USE_LSB_TAG */
407
408 #define VALMASK ((((EMACS_INT) 1) << VALBITS) - 1)
409
410 /* One need to override this if there must be high bits set in data space
411 (doing the result of the below & ((1 << (GCTYPE + 1)) - 1) would work
412 on all machines, but would penalize machines which don't need it)
413 */
414 #define XTYPE(a) ((enum Lisp_Type) (((EMACS_UINT) (a)) >> VALBITS))
415
416 /* For integers known to be positive, XFASTINT provides fast retrieval
417 and XSETFASTINT provides fast storage. This takes advantage of the
418 fact that Lisp_Int is 0. */
419 #define XFASTINT(a) ((a) + 0)
420 #define XSETFASTINT(a, b) ((a) = (b))
421
422 /* Extract the value of a Lisp_Object as a (un)signed integer. */
423
424 #ifdef USE_2_TAGS_FOR_INTS
425 # define XINT(a) ((((EMACS_INT) (a)) << (GCTYPEBITS - 1)) >> (GCTYPEBITS - 1))
426 # define XUINT(a) ((EMACS_UINT) ((a) & (1 + (VALMASK << 1))))
427 # define make_number(N) ((((EMACS_INT) (N)) & (1 + (VALMASK << 1))))
428 #else
429 # define XINT(a) ((((EMACS_INT) (a)) << (BITS_PER_EMACS_INT - VALBITS)) \
430 >> (BITS_PER_EMACS_INT - VALBITS))
431 # define XUINT(a) ((EMACS_UINT) ((a) & VALMASK))
432 # define make_number(N) \
433 ((((EMACS_INT) (N)) & VALMASK) | ((EMACS_INT) Lisp_Int) << VALBITS)
434 #endif
435
436 #define XSET(var, type, ptr) \
437 ((var) = ((EMACS_INT)(type) << VALBITS) + ((EMACS_INT) (ptr) & VALMASK))
438
439 #define XPNTR(a) ((EMACS_UINT) ((a) & VALMASK))
440
441 #endif /* not USE_LSB_TAG */
442
443 #else /* USE_LISP_UNION_TYPE */
444
445 #ifdef USE_2_TAGS_FOR_INTS
446 # error "USE_2_TAGS_FOR_INTS is not supported with USE_LISP_UNION_TYPE"
447 #endif
448
449 #define XHASH(a) ((a).i)
450
451 #define XTYPE(a) ((enum Lisp_Type) (a).u.type)
452
453 #ifdef EXPLICIT_SIGN_EXTEND
454 /* Make sure we sign-extend; compilers have been known to fail to do so.
455 We additionally cast to EMACS_INT since it seems that some compilers
456 have been known to fail to do so, even though the bitfield is declared
457 as EMACS_INT already. */
458 #define XINT(a) ((((EMACS_INT) (a).s.val) << (BITS_PER_EMACS_INT - VALBITS)) \
459 >> (BITS_PER_EMACS_INT - VALBITS))
460 #else
461 #define XINT(a) ((a).s.val)
462 #endif /* EXPLICIT_SIGN_EXTEND */
463
464 #define XUINT(a) ((a).u.val)
465
466 #ifdef USE_LSB_TAG
467
468 # define XSET(var, vartype, ptr) \
469 (eassert ((((EMACS_UINT) (ptr)) & ((1 << GCTYPEBITS) - 1)) == 0), \
470 (var).u.val = ((EMACS_UINT) (ptr)) >> GCTYPEBITS, \
471 (var).u.type = ((char) (vartype)))
472
473 /* Some versions of gcc seem to consider the bitfield width when issuing
474 the "cast to pointer from integer of different size" warning, so the
475 cast is here to widen the value back to its natural size. */
476 # define XPNTR(v) ((EMACS_INT)((v).s.val) << GCTYPEBITS)
477
478 #else /* !USE_LSB_TAG */
479
480 /* For integers known to be positive, XFASTINT provides fast retrieval
481 and XSETFASTINT provides fast storage. This takes advantage of the
482 fact that Lisp_Int is 0. */
483 # define XFASTINT(a) ((a).i + 0)
484 # define XSETFASTINT(a, b) ((a).i = (b))
485
486 # define XSET(var, vartype, ptr) \
487 (((var).s.val = ((EMACS_INT) (ptr))), ((var).s.type = ((char) (vartype))))
488
489 #endif /* !USE_LSB_TAG */
490
491 #if __GNUC__ >= 2 && defined (__OPTIMIZE__)
492 #define make_number(N) \
493 (__extension__ ({ Lisp_Object _l; _l.s.val = (N); _l.s.type = Lisp_Int; _l; }))
494 #else
495 extern Lisp_Object make_number (EMACS_INT);
496 #endif
497
498 #endif /* USE_LISP_UNION_TYPE */
499
500 /* For integers known to be positive, XFASTINT sometimes provides
501 faster retrieval and XSETFASTINT provides faster storage.
502 If not, fallback on the non-accelerated path. */
503 #ifndef XFASTINT
504 # define XFASTINT(a) (XINT (a))
505 # define XSETFASTINT(a, b) (XSETINT (a, b))
506 #endif
507
508 #define EQ(x, y) (XHASH (x) == XHASH (y))
509
510 #ifndef XPNTR
511 #ifdef HAVE_SHM
512 /* In this representation, data is found in two widely separated segments. */
513 extern size_t pure_size;
514 #define XPNTR(a) \
515 (XUINT (a) | (XUINT (a) > pure_size ? DATA_SEG_BITS : PURE_SEG_BITS))
516 #else /* not HAVE_SHM */
517 #ifdef DATA_SEG_BITS
518 /* This case is used for the rt-pc.
519 In the diffs I was given, it checked for ptr = 0
520 and did not adjust it in that case.
521 But I don't think that zero should ever be found
522 in a Lisp object whose data type says it points to something. */
523 #define XPNTR(a) (XUINT (a) | DATA_SEG_BITS)
524 #else
525 /* Some versions of gcc seem to consider the bitfield width when
526 issuing the "cast to pointer from integer of different size"
527 warning, so the cast is here to widen the value back to its natural
528 size. */
529 #define XPNTR(a) ((EMACS_INT) XUINT (a))
530 #endif
531 #endif /* not HAVE_SHM */
532 #endif /* no XPNTR */
533
534 /* Largest and smallest representable fixnum values. These are the C
535 values. */
536
537 #ifdef USE_2_TAGS_FOR_INTS
538 # define MOST_NEGATIVE_FIXNUM - ((EMACS_INT) 1 << VALBITS)
539 # define MOST_POSITIVE_FIXNUM (((EMACS_INT) 1 << VALBITS) - 1)
540 /* Mask indicating the significant bits of a Lisp_Int.
541 I.e. (x & INTMASK) == XUINT (make_number (x)). */
542 # define INTMASK ((((EMACS_INT) 1) << (VALBITS + 1)) - 1)
543 #else
544 # define MOST_NEGATIVE_FIXNUM - ((EMACS_INT) 1 << (VALBITS - 1))
545 # define MOST_POSITIVE_FIXNUM (((EMACS_INT) 1 << (VALBITS - 1)) - 1)
546 /* Mask indicating the significant bits of a Lisp_Int.
547 I.e. (x & INTMASK) == XUINT (make_number (x)). */
548 # define INTMASK ((((EMACS_INT) 1) << VALBITS) - 1)
549 #endif
550
551 /* Value is non-zero if I doesn't fit into a Lisp fixnum. It is
552 written this way so that it also works if I is of unsigned
553 type. */
554
555 #define FIXNUM_OVERFLOW_P(i) \
556 ((i) > MOST_POSITIVE_FIXNUM \
557 || ((i) < 0 && (i) < MOST_NEGATIVE_FIXNUM))
558
559 /* Extract a value or address from a Lisp_Object. */
560
561 #define XCONS(a) (eassert (CONSP(a)),(struct Lisp_Cons *) XPNTR(a))
562 #define XVECTOR(a) (eassert (VECTORLIKEP(a)),(struct Lisp_Vector *) XPNTR(a))
563 #define XSTRING(a) (eassert (STRINGP(a)),(struct Lisp_String *) XPNTR(a))
564 #define XSYMBOL(a) (eassert (SYMBOLP(a)),(struct Lisp_Symbol *) XPNTR(a))
565 #define XFLOAT(a) (eassert (FLOATP(a)),(struct Lisp_Float *) XPNTR(a))
566
567 /* Misc types. */
568
569 #define XMISC(a) ((union Lisp_Misc *) XPNTR(a))
570 #define XMISCANY(a) (eassert (MISCP (a)), &(XMISC(a)->u_any))
571 #define XMISCTYPE(a) (XMISCANY (a)->type)
572 #define XMARKER(a) (eassert (MARKERP (a)), &(XMISC(a)->u_marker))
573 #define XOVERLAY(a) (eassert (OVERLAYP (a)), &(XMISC(a)->u_overlay))
574 #define XSAVE_VALUE(a) (eassert (SAVE_VALUEP (a)), &(XMISC(a)->u_save_value))
575
576 /* Forwarding object types. */
577
578 #define XFWDTYPE(a) (a->u_intfwd.type)
579 #define XINTFWD(a) (eassert (INTFWDP (a)), &((a)->u_intfwd))
580 #define XBOOLFWD(a) (eassert (BOOLFWDP (a)), &((a)->u_boolfwd))
581 #define XOBJFWD(a) (eassert (OBJFWDP (a)), &((a)->u_objfwd))
582 #define XBUFFER_OBJFWD(a) \
583 (eassert (BUFFER_OBJFWDP (a)), &((a)->u_buffer_objfwd))
584 #define XKBOARD_OBJFWD(a) \
585 (eassert (KBOARD_OBJFWDP (a)), &((a)->u_kboard_objfwd))
586
587 /* Pseudovector types. */
588
589 #define XPROCESS(a) (eassert (PROCESSP(a)),(struct Lisp_Process *) XPNTR(a))
590 #define XWINDOW(a) (eassert (WINDOWP(a)),(struct window *) XPNTR(a))
591 #define XTERMINAL(a) (eassert (TERMINALP(a)),(struct terminal *) XPNTR(a))
592 #define XSUBR(a) (eassert (SUBRP(a)),(struct Lisp_Subr *) XPNTR(a))
593 #define XBUFFER(a) (eassert (BUFFERP(a)),(struct buffer *) XPNTR(a))
594 #define XCHAR_TABLE(a) (eassert (CHAR_TABLE_P (a)), (struct Lisp_Char_Table *) XPNTR(a))
595 #define XSUB_CHAR_TABLE(a) (eassert (SUB_CHAR_TABLE_P (a)), (struct Lisp_Sub_Char_Table *) XPNTR(a))
596 #define XBOOL_VECTOR(a) (eassert (BOOL_VECTOR_P (a)), (struct Lisp_Bool_Vector *) XPNTR(a))
597
598 /* Construct a Lisp_Object from a value or address. */
599
600 #define XSETINT(a, b) (a) = make_number (b)
601 #define XSETCONS(a, b) XSET (a, Lisp_Cons, b)
602 #define XSETVECTOR(a, b) XSET (a, Lisp_Vectorlike, b)
603 #define XSETSTRING(a, b) XSET (a, Lisp_String, b)
604 #define XSETSYMBOL(a, b) XSET (a, Lisp_Symbol, b)
605 #define XSETFLOAT(a, b) XSET (a, Lisp_Float, b)
606
607 /* Misc types. */
608
609 #define XSETMISC(a, b) XSET (a, Lisp_Misc, b)
610 #define XSETMARKER(a, b) (XSETMISC (a, b), XMISCTYPE (a) = Lisp_Misc_Marker)
611
612 /* Pseudovector types. */
613
614 #define XSETPVECTYPE(v,code) ((v)->size |= PSEUDOVECTOR_FLAG | (code))
615 #define XSETPSEUDOVECTOR(a, b, code) \
616 (XSETVECTOR (a, b), \
617 eassert ((XVECTOR (a)->size & (PSEUDOVECTOR_FLAG | PVEC_TYPE_MASK)) \
618 == (PSEUDOVECTOR_FLAG | (code))))
619 #define XSETWINDOW_CONFIGURATION(a, b) \
620 (XSETPSEUDOVECTOR (a, b, PVEC_WINDOW_CONFIGURATION))
621 #define XSETPROCESS(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_PROCESS))
622 #define XSETWINDOW(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_WINDOW))
623 #define XSETTERMINAL(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_TERMINAL))
624 #define XSETSUBR(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_SUBR))
625 #define XSETCOMPILED(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_COMPILED))
626 #define XSETBUFFER(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_BUFFER))
627 #define XSETCHAR_TABLE(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_CHAR_TABLE))
628 #define XSETBOOL_VECTOR(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_BOOL_VECTOR))
629 #define XSETSUB_CHAR_TABLE(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_SUB_CHAR_TABLE))
630
631 /* Convenience macros for dealing with Lisp arrays. */
632
633 #define AREF(ARRAY, IDX) XVECTOR ((ARRAY))->contents[IDX]
634 #define ASIZE(ARRAY) XVECTOR ((ARRAY))->size
635 /* The IDX==IDX tries to detect when the macro argument is side-effecting. */
636 #define ASET(ARRAY, IDX, VAL) \
637 (eassert ((IDX) == (IDX)), \
638 eassert ((IDX) >= 0 && (IDX) < ASIZE (ARRAY)), \
639 AREF ((ARRAY), (IDX)) = (VAL))
640
641 /* Convenience macros for dealing with Lisp strings. */
642
643 #define SDATA(string) (XSTRING (string)->data + 0)
644 #define SREF(string, index) (SDATA (string)[index] + 0)
645 #define SSET(string, index, new) (SDATA (string)[index] = (new))
646 #define SCHARS(string) (XSTRING (string)->size + 0)
647 #define SBYTES(string) (STRING_BYTES (XSTRING (string)) + 0)
648
649 #define STRING_SET_CHARS(string, newsize) \
650 (XSTRING (string)->size = (newsize))
651
652 #define STRING_COPYIN(string, index, new, count) \
653 memcpy (SDATA (string) + index, new, count)
654
655 /* Type checking. */
656
657 #define CHECK_TYPE(ok, Qxxxp, x) \
658 do { if (!(ok)) wrong_type_argument (Qxxxp, (x)); } while (0)
659
660
661 \f
662 /* See the macros in intervals.h. */
663
664 typedef struct interval *INTERVAL;
665
666 /* Complain if object is not string or buffer type */
667 #define CHECK_STRING_OR_BUFFER(x) \
668 CHECK_TYPE (STRINGP (x) || BUFFERP (x), Qbuffer_or_string_p, x)
669
670 \f
671 /* In a cons, the markbit of the car is the gc mark bit */
672
673 struct Lisp_Cons
674 {
675 /* Please do not use the names of these elements in code other
676 than the core lisp implementation. Use XCAR and XCDR below. */
677 #ifdef HIDE_LISP_IMPLEMENTATION
678 Lisp_Object car_;
679 union
680 {
681 Lisp_Object cdr_;
682 struct Lisp_Cons *chain;
683 } u;
684 #else
685 Lisp_Object car;
686 union
687 {
688 Lisp_Object cdr;
689 struct Lisp_Cons *chain;
690 } u;
691 #endif
692 };
693
694 /* Take the car or cdr of something known to be a cons cell. */
695 /* The _AS_LVALUE macros shouldn't be used outside of the minimal set
696 of code that has to know what a cons cell looks like. Other code not
697 part of the basic lisp implementation should assume that the car and cdr
698 fields are not accessible as lvalues. (What if we want to switch to
699 a copying collector someday? Cached cons cell field addresses may be
700 invalidated at arbitrary points.) */
701 #ifdef HIDE_LISP_IMPLEMENTATION
702 #define XCAR_AS_LVALUE(c) (XCONS ((c))->car_)
703 #define XCDR_AS_LVALUE(c) (XCONS ((c))->u.cdr_)
704 #else
705 #define XCAR_AS_LVALUE(c) (XCONS ((c))->car)
706 #define XCDR_AS_LVALUE(c) (XCONS ((c))->u.cdr)
707 #endif
708
709 /* Use these from normal code. */
710 #define XCAR(c) LISP_MAKE_RVALUE(XCAR_AS_LVALUE(c))
711 #define XCDR(c) LISP_MAKE_RVALUE(XCDR_AS_LVALUE(c))
712
713 /* Use these to set the fields of a cons cell.
714
715 Note that both arguments may refer to the same object, so 'n'
716 should not be read after 'c' is first modified. Also, neither
717 argument should be evaluated more than once; side effects are
718 especially common in the second argument. */
719 #define XSETCAR(c,n) (XCAR_AS_LVALUE(c) = (n))
720 #define XSETCDR(c,n) (XCDR_AS_LVALUE(c) = (n))
721
722 /* Take the car or cdr of something whose type is not known. */
723 #define CAR(c) \
724 (CONSP ((c)) ? XCAR ((c)) \
725 : NILP ((c)) ? Qnil \
726 : wrong_type_argument (Qlistp, (c)))
727
728 #define CDR(c) \
729 (CONSP ((c)) ? XCDR ((c)) \
730 : NILP ((c)) ? Qnil \
731 : wrong_type_argument (Qlistp, (c)))
732
733 /* Take the car or cdr of something whose type is not known. */
734 #define CAR_SAFE(c) \
735 (CONSP ((c)) ? XCAR ((c)) : Qnil)
736
737 #define CDR_SAFE(c) \
738 (CONSP ((c)) ? XCDR ((c)) : Qnil)
739
740 /* Nonzero if STR is a multibyte string. */
741 #define STRING_MULTIBYTE(STR) \
742 (XSTRING (STR)->size_byte >= 0)
743
744 /* Return the length in bytes of STR. */
745
746 #ifdef GC_CHECK_STRING_BYTES
747
748 struct Lisp_String;
749 extern int string_bytes (struct Lisp_String *);
750 #define STRING_BYTES(S) string_bytes ((S))
751
752 #else /* not GC_CHECK_STRING_BYTES */
753
754 #define STRING_BYTES(STR) \
755 ((STR)->size_byte < 0 ? (STR)->size : (STR)->size_byte)
756
757 #endif /* not GC_CHECK_STRING_BYTES */
758
759 /* Mark STR as a unibyte string. */
760 #define STRING_SET_UNIBYTE(STR) \
761 do { if (EQ (STR, empty_multibyte_string)) \
762 (STR) = empty_unibyte_string; \
763 else XSTRING (STR)->size_byte = -1; } while (0)
764
765 /* Mark STR as a multibyte string. Assure that STR contains only
766 ASCII characters in advance. */
767 #define STRING_SET_MULTIBYTE(STR) \
768 do { if (EQ (STR, empty_unibyte_string)) \
769 (STR) = empty_multibyte_string; \
770 else XSTRING (STR)->size_byte = XSTRING (STR)->size; } while (0)
771
772 /* Get text properties. */
773 #define STRING_INTERVALS(STR) (XSTRING (STR)->intervals + 0)
774
775 /* Set text properties. */
776 #define STRING_SET_INTERVALS(STR, INT) (XSTRING (STR)->intervals = (INT))
777
778 /* In a string or vector, the sign bit of the `size' is the gc mark bit */
779
780 struct Lisp_String
781 {
782 EMACS_INT size;
783 EMACS_INT size_byte;
784 INTERVAL intervals; /* text properties in this string */
785 unsigned char *data;
786 };
787
788 struct Lisp_Vector
789 {
790 EMACS_UINT size;
791 struct Lisp_Vector *next;
792 Lisp_Object contents[1];
793 };
794
795 /* If a struct is made to look like a vector, this macro returns the length
796 of the shortest vector that would hold that struct. */
797 #define VECSIZE(type) ((sizeof (type) \
798 - offsetof (struct Lisp_Vector, contents[0]) \
799 + sizeof(Lisp_Object) - 1) /* round up */ \
800 / sizeof (Lisp_Object))
801
802 /* Like VECSIZE, but used when the pseudo-vector has non-Lisp_Object fields
803 at the end and we need to compute the number of Lisp_Object fields (the
804 ones that the GC needs to trace). */
805 #define PSEUDOVECSIZE(type, nonlispfield) \
806 ((offsetof(type, nonlispfield) - offsetof(struct Lisp_Vector, contents[0])) \
807 / sizeof (Lisp_Object))
808
809 /* A char-table is a kind of vectorlike, with contents are like a
810 vector but with a few other slots. For some purposes, it makes
811 sense to handle a char-table with type struct Lisp_Vector. An
812 element of a char table can be any Lisp objects, but if it is a sub
813 char-table, we treat it a table that contains information of a
814 specific range of characters. A sub char-table has the same
815 structure as a vector. A sub char table appears only in an element
816 of a char-table, and there's no way to access it directly from
817 Emacs Lisp program. */
818
819 /* This is the number of slots that every char table must have. This
820 counts the ordinary slots and the top, defalt, parent, and purpose
821 slots. */
822 #define CHAR_TABLE_STANDARD_SLOTS (VECSIZE (struct Lisp_Char_Table) - 1)
823
824 /* Return the number of "extra" slots in the char table CT. */
825
826 #define CHAR_TABLE_EXTRA_SLOTS(CT) \
827 (((CT)->size & PSEUDOVECTOR_SIZE_MASK) - CHAR_TABLE_STANDARD_SLOTS)
828
829 #ifdef __GNUC__
830
831 #define CHAR_TABLE_REF_ASCII(CT, IDX) \
832 ({struct Lisp_Char_Table *_tbl = NULL; \
833 Lisp_Object _val; \
834 do { \
835 _tbl = _tbl ? XCHAR_TABLE (_tbl->parent) : XCHAR_TABLE (CT); \
836 _val = (! SUB_CHAR_TABLE_P (_tbl->ascii) ? _tbl->ascii \
837 : XSUB_CHAR_TABLE (_tbl->ascii)->contents[IDX]); \
838 if (NILP (_val)) \
839 _val = _tbl->defalt; \
840 } while (NILP (_val) && ! NILP (_tbl->parent)); \
841 _val; })
842
843 #else /* not __GNUC__ */
844
845 #define CHAR_TABLE_REF_ASCII(CT, IDX) \
846 (! NILP (XCHAR_TABLE (CT)->ascii) \
847 ? (! SUB_CHAR_TABLE_P (XCHAR_TABLE (CT)->ascii) \
848 ? XCHAR_TABLE (CT)->ascii \
849 : ! NILP (XSUB_CHAR_TABLE (XCHAR_TABLE (CT)->ascii)->contents[IDX]) \
850 ? XSUB_CHAR_TABLE (XCHAR_TABLE (CT)->ascii)->contents[IDX] \
851 : char_table_ref ((CT), (IDX))) \
852 : char_table_ref ((CT), (IDX)))
853
854 #endif /* not __GNUC__ */
855
856 /* Almost equivalent to Faref (CT, IDX) with optimization for ASCII
857 characters. Do not check validity of CT. */
858 #define CHAR_TABLE_REF(CT, IDX) \
859 (ASCII_CHAR_P (IDX) ? CHAR_TABLE_REF_ASCII ((CT), (IDX)) \
860 : char_table_ref ((CT), (IDX)))
861
862 /* Almost equivalent to Faref (CT, IDX). However, if the result is
863 not a character, return IDX.
864
865 For these characters, do not check validity of CT
866 and do not follow parent. */
867 #define CHAR_TABLE_TRANSLATE(CT, IDX) \
868 char_table_translate (CT, IDX)
869
870 /* Equivalent to Faset (CT, IDX, VAL) with optimization for ASCII and
871 8-bit European characters. Do not check validity of CT. */
872 #define CHAR_TABLE_SET(CT, IDX, VAL) \
873 (((IDX) >= 0 && ASCII_CHAR_P (IDX) \
874 && SUB_CHAR_TABLE_P (XCHAR_TABLE (CT)->ascii)) \
875 ? XSUB_CHAR_TABLE (XCHAR_TABLE (CT)->ascii)->contents[IDX] = VAL \
876 : char_table_set (CT, IDX, VAL))
877
878 #define CHARTAB_SIZE_BITS_0 6
879 #define CHARTAB_SIZE_BITS_1 4
880 #define CHARTAB_SIZE_BITS_2 5
881 #define CHARTAB_SIZE_BITS_3 7
882
883 extern const int chartab_size[4];
884
885 struct Lisp_Sub_Char_Table;
886
887 struct Lisp_Char_Table
888 {
889 /* This is the vector's size field, which also holds the
890 pseudovector type information. It holds the size, too.
891 The size counts the defalt, parent, purpose, ascii,
892 contents, and extras slots. */
893 EMACS_UINT size;
894 struct Lisp_Vector *next;
895
896 /* This holds a default value,
897 which is used whenever the value for a specific character is nil. */
898 Lisp_Object defalt;
899
900 /* This points to another char table, which we inherit from when the
901 value for a specific character is nil. The `defalt' slot takes
902 precedence over this. */
903 Lisp_Object parent;
904
905 /* This is a symbol which says what kind of use this char-table is
906 meant for. */
907 Lisp_Object purpose;
908
909 /* The bottom sub char-table for characters of the range 0..127. It
910 is nil if none of ASCII character has a specific value. */
911 Lisp_Object ascii;
912
913 Lisp_Object contents[(1 << CHARTAB_SIZE_BITS_0)];
914
915 /* These hold additional data. It is a vector. */
916 Lisp_Object extras[1];
917 };
918
919 struct Lisp_Sub_Char_Table
920 {
921 /* This is the vector's size field, which also holds the
922 pseudovector type information. It holds the size, too. */
923 EMACS_INT size;
924 struct Lisp_Vector *next;
925
926 /* Depth of this sub char-table. It should be 1, 2, or 3. A sub
927 char-table of depth 1 contains 16 elements, and each element
928 covers 4096 (128*32) characters. A sub char-table of depth 2
929 contains 32 elements, and each element covers 128 characters. A
930 sub char-table of depth 3 contains 128 elements, and each element
931 is for one character. */
932 Lisp_Object depth;
933
934 /* Minimum character covered by the sub char-table. */
935 Lisp_Object min_char;
936
937 Lisp_Object contents[1];
938 };
939
940 /* A boolvector is a kind of vectorlike, with contents are like a string. */
941 struct Lisp_Bool_Vector
942 {
943 /* This is the vector's size field. It doesn't have the real size,
944 just the subtype information. */
945 EMACS_UINT vector_size;
946 struct Lisp_Vector *next;
947 /* This is the size in bits. */
948 EMACS_UINT size;
949 /* This contains the actual bits, packed into bytes. */
950 unsigned char data[1];
951 };
952
953 /* This structure describes a built-in function.
954 It is generated by the DEFUN macro only.
955 defsubr makes it into a Lisp object.
956
957 This type is treated in most respects as a pseudovector,
958 but since we never dynamically allocate or free them,
959 we don't need a next-vector field. */
960
961 struct Lisp_Subr
962 {
963 EMACS_UINT size;
964 union {
965 Lisp_Object (*a0) (void);
966 Lisp_Object (*a1) (Lisp_Object);
967 Lisp_Object (*a2) (Lisp_Object, Lisp_Object);
968 Lisp_Object (*a3) (Lisp_Object, Lisp_Object, Lisp_Object);
969 Lisp_Object (*a4) (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
970 Lisp_Object (*a5) (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
971 Lisp_Object (*a6) (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
972 Lisp_Object (*a7) (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
973 Lisp_Object (*a8) (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
974 Lisp_Object (*aUNEVALLED) (Lisp_Object args);
975 Lisp_Object (*aMANY) (int, Lisp_Object *);
976 } function;
977 short min_args, max_args;
978 const char *symbol_name;
979 const char *intspec;
980 const char *doc;
981 };
982
983 \f
984 /***********************************************************************
985 Symbols
986 ***********************************************************************/
987
988 /* Interned state of a symbol. */
989
990 enum symbol_interned
991 {
992 SYMBOL_UNINTERNED = 0,
993 SYMBOL_INTERNED = 1,
994 SYMBOL_INTERNED_IN_INITIAL_OBARRAY = 2
995 };
996
997 enum symbol_redirect
998 {
999 SYMBOL_PLAINVAL = 4,
1000 SYMBOL_VARALIAS = 1,
1001 SYMBOL_LOCALIZED = 2,
1002 SYMBOL_FORWARDED = 3
1003 };
1004
1005 /* In a symbol, the markbit of the plist is used as the gc mark bit */
1006
1007 struct Lisp_Symbol
1008 {
1009 unsigned gcmarkbit : 1;
1010
1011 /* Indicates where the value can be found:
1012 0 : it's a plain var, the value is in the `value' field.
1013 1 : it's a varalias, the value is really in the `alias' symbol.
1014 2 : it's a localized var, the value is in the `blv' object.
1015 3 : it's a forwarding variable, the value is in `forward'.
1016 */
1017 enum symbol_redirect redirect : 3;
1018
1019 /* Non-zero means symbol is constant, i.e. changing its value
1020 should signal an error. If the value is 3, then the var
1021 can be changed, but only by `defconst'. */
1022 unsigned constant : 2;
1023
1024 /* Interned state of the symbol. This is an enumerator from
1025 enum symbol_interned. */
1026 unsigned interned : 2;
1027
1028 /* The symbol's name, as a Lisp string.
1029
1030 The name "xname" is used to intentionally break code referring to
1031 the old field "name" of type pointer to struct Lisp_String. */
1032 Lisp_Object xname;
1033
1034 /* Value of the symbol or Qunbound if unbound. If this symbol is a
1035 defvaralias, `alias' contains the symbol for which it is an
1036 alias. Use the SYMBOL_VALUE and SET_SYMBOL_VALUE macros to get
1037 and set a symbol's value, to take defvaralias into account. */
1038 union {
1039 Lisp_Object value;
1040 struct Lisp_Symbol *alias;
1041 struct Lisp_Buffer_Local_Value *blv;
1042 union Lisp_Fwd *fwd;
1043 } val;
1044
1045 /* Function value of the symbol or Qunbound if not fboundp. */
1046 Lisp_Object function;
1047
1048 /* The symbol's property list. */
1049 Lisp_Object plist;
1050
1051 /* Next symbol in obarray bucket, if the symbol is interned. */
1052 struct Lisp_Symbol *next;
1053 };
1054
1055 /* Value is name of symbol. */
1056
1057 #define SYMBOL_VAL(sym) \
1058 (eassert ((sym)->redirect == SYMBOL_PLAINVAL), (sym)->val.value)
1059 #define SYMBOL_ALIAS(sym) \
1060 (eassert ((sym)->redirect == SYMBOL_VARALIAS), (sym)->val.alias)
1061 #define SYMBOL_BLV(sym) \
1062 (eassert ((sym)->redirect == SYMBOL_LOCALIZED), (sym)->val.blv)
1063 #define SYMBOL_FWD(sym) \
1064 (eassert ((sym)->redirect == SYMBOL_FORWARDED), (sym)->val.fwd)
1065 #define SET_SYMBOL_VAL(sym, v) \
1066 (eassert ((sym)->redirect == SYMBOL_PLAINVAL), (sym)->val.value = (v))
1067 #define SET_SYMBOL_ALIAS(sym, v) \
1068 (eassert ((sym)->redirect == SYMBOL_VARALIAS), (sym)->val.alias = (v))
1069 #define SET_SYMBOL_BLV(sym, v) \
1070 (eassert ((sym)->redirect == SYMBOL_LOCALIZED), (sym)->val.blv = (v))
1071 #define SET_SYMBOL_FWD(sym, v) \
1072 (eassert ((sym)->redirect == SYMBOL_FORWARDED), (sym)->val.fwd = (v))
1073
1074 #define SYMBOL_NAME(sym) \
1075 LISP_MAKE_RVALUE (XSYMBOL (sym)->xname)
1076
1077 /* Value is non-zero if SYM is an interned symbol. */
1078
1079 #define SYMBOL_INTERNED_P(sym) \
1080 (XSYMBOL (sym)->interned != SYMBOL_UNINTERNED)
1081
1082 /* Value is non-zero if SYM is interned in initial_obarray. */
1083
1084 #define SYMBOL_INTERNED_IN_INITIAL_OBARRAY_P(sym) \
1085 (XSYMBOL (sym)->interned == SYMBOL_INTERNED_IN_INITIAL_OBARRAY)
1086
1087 /* Value is non-zero if symbol is considered a constant, i.e. its
1088 value cannot be changed (there is an exception for keyword symbols,
1089 whose value can be set to the keyword symbol itself). */
1090
1091 #define SYMBOL_CONSTANT_P(sym) XSYMBOL (sym)->constant
1092
1093 \f
1094 /***********************************************************************
1095 Hash Tables
1096 ***********************************************************************/
1097
1098 /* The structure of a Lisp hash table. */
1099
1100 struct Lisp_Hash_Table
1101 {
1102 /* Vector fields. The hash table code doesn't refer to these. */
1103 EMACS_UINT size;
1104 struct Lisp_Vector *vec_next;
1105
1106 /* Function used to compare keys. */
1107 Lisp_Object test;
1108
1109 /* Nil if table is non-weak. Otherwise a symbol describing the
1110 weakness of the table. */
1111 Lisp_Object weak;
1112
1113 /* When the table is resized, and this is an integer, compute the
1114 new size by adding this to the old size. If a float, compute the
1115 new size by multiplying the old size with this factor. */
1116 Lisp_Object rehash_size;
1117
1118 /* Resize hash table when number of entries/ table size is >= this
1119 ratio, a float. */
1120 Lisp_Object rehash_threshold;
1121
1122 /* Vector of hash codes.. If hash[I] is nil, this means that that
1123 entry I is unused. */
1124 Lisp_Object hash;
1125
1126 /* Vector used to chain entries. If entry I is free, next[I] is the
1127 entry number of the next free item. If entry I is non-free,
1128 next[I] is the index of the next entry in the collision chain. */
1129 Lisp_Object next;
1130
1131 /* Index of first free entry in free list. */
1132 Lisp_Object next_free;
1133
1134 /* Bucket vector. A non-nil entry is the index of the first item in
1135 a collision chain. This vector's size can be larger than the
1136 hash table size to reduce collisions. */
1137 Lisp_Object index;
1138
1139 /* User-supplied hash function, or nil. */
1140 Lisp_Object user_hash_function;
1141
1142 /* User-supplied key comparison function, or nil. */
1143 Lisp_Object user_cmp_function;
1144
1145 /* Only the fields above are traced normally by the GC. The ones below
1146 `count' are special and are either ignored by the GC or traced in
1147 a special way (e.g. because of weakness). */
1148
1149 /* Number of key/value entries in the table. */
1150 unsigned int count;
1151
1152 /* Vector of keys and values. The key of item I is found at index
1153 2 * I, the value is found at index 2 * I + 1.
1154 This is gc_marked specially if the table is weak. */
1155 Lisp_Object key_and_value;
1156
1157 /* Next weak hash table if this is a weak hash table. The head
1158 of the list is in weak_hash_tables. */
1159 struct Lisp_Hash_Table *next_weak;
1160
1161 /* C function to compare two keys. */
1162 int (* cmpfn) (struct Lisp_Hash_Table *, Lisp_Object,
1163 unsigned, Lisp_Object, unsigned);
1164
1165 /* C function to compute hash code. */
1166 unsigned (* hashfn) (struct Lisp_Hash_Table *, Lisp_Object);
1167 };
1168
1169
1170 #define XHASH_TABLE(OBJ) \
1171 ((struct Lisp_Hash_Table *) XPNTR (OBJ))
1172
1173 #define XSET_HASH_TABLE(VAR, PTR) \
1174 (XSETPSEUDOVECTOR (VAR, PTR, PVEC_HASH_TABLE))
1175
1176 #define HASH_TABLE_P(OBJ) PSEUDOVECTORP (OBJ, PVEC_HASH_TABLE)
1177
1178 #define CHECK_HASH_TABLE(x) \
1179 CHECK_TYPE (HASH_TABLE_P (x), Qhash_table_p, x)
1180
1181 /* Value is the key part of entry IDX in hash table H. */
1182
1183 #define HASH_KEY(H, IDX) AREF ((H)->key_and_value, 2 * (IDX))
1184
1185 /* Value is the value part of entry IDX in hash table H. */
1186
1187 #define HASH_VALUE(H, IDX) AREF ((H)->key_and_value, 2 * (IDX) + 1)
1188
1189 /* Value is the index of the next entry following the one at IDX
1190 in hash table H. */
1191
1192 #define HASH_NEXT(H, IDX) AREF ((H)->next, (IDX))
1193
1194 /* Value is the hash code computed for entry IDX in hash table H. */
1195
1196 #define HASH_HASH(H, IDX) AREF ((H)->hash, (IDX))
1197
1198 /* Value is the index of the element in hash table H that is the
1199 start of the collision list at index IDX in the index vector of H. */
1200
1201 #define HASH_INDEX(H, IDX) AREF ((H)->index, (IDX))
1202
1203 /* Value is the size of hash table H. */
1204
1205 #define HASH_TABLE_SIZE(H) XVECTOR ((H)->next)->size
1206
1207 /* Default size for hash tables if not specified. */
1208
1209 #define DEFAULT_HASH_SIZE 65
1210
1211 /* Default threshold specifying when to resize a hash table. The
1212 value gives the ratio of current entries in the hash table and the
1213 size of the hash table. */
1214
1215 #define DEFAULT_REHASH_THRESHOLD 0.8
1216
1217 /* Default factor by which to increase the size of a hash table. */
1218
1219 #define DEFAULT_REHASH_SIZE 1.5
1220
1221 \f
1222 /* These structures are used for various misc types. */
1223
1224 struct Lisp_Misc_Any /* Supertype of all Misc types. */
1225 {
1226 enum Lisp_Misc_Type type : 16; /* = Lisp_Misc_??? */
1227 unsigned gcmarkbit : 1;
1228 int spacer : 15;
1229 /* Make it as long as "Lisp_Free without padding". */
1230 void *fill;
1231 };
1232
1233 struct Lisp_Marker
1234 {
1235 enum Lisp_Misc_Type type : 16; /* = Lisp_Misc_Marker */
1236 unsigned gcmarkbit : 1;
1237 int spacer : 13;
1238 /* This flag is temporarily used in the functions
1239 decode/encode_coding_object to record that the marker position
1240 must be adjusted after the conversion. */
1241 unsigned int need_adjustment : 1;
1242 /* 1 means normal insertion at the marker's position
1243 leaves the marker after the inserted text. */
1244 unsigned int insertion_type : 1;
1245 /* This is the buffer that the marker points into, or 0 if it points nowhere.
1246 Note: a chain of markers can contain markers pointing into different
1247 buffers (the chain is per buffer_text rather than per buffer, so it's
1248 shared between indirect buffers). */
1249 /* This is used for (other than NULL-checking):
1250 - Fmarker_buffer
1251 - Fset_marker: check eq(oldbuf, newbuf) to avoid unchain+rechain.
1252 - unchain_marker: to find the list from which to unchain.
1253 - Fkill_buffer: to only unchain the markers of current indirect buffer.
1254 */
1255 struct buffer *buffer;
1256
1257 /* The remaining fields are meaningless in a marker that
1258 does not point anywhere. */
1259
1260 /* For markers that point somewhere,
1261 this is used to chain of all the markers in a given buffer. */
1262 /* We could remove it and use an array in buffer_text instead.
1263 That would also allow to preserve it ordered. */
1264 struct Lisp_Marker *next;
1265 /* This is the char position where the marker points. */
1266 EMACS_INT charpos;
1267 /* This is the byte position.
1268 It's mostly used as a charpos<->bytepos cache (i.e. it's not directly
1269 used to implement the functionality of markers, but rather to (ab)use
1270 markers as a cache for char<->byte mappings). */
1271 EMACS_INT bytepos;
1272 };
1273
1274 /* Forwarding pointer to an int variable.
1275 This is allowed only in the value cell of a symbol,
1276 and it means that the symbol's value really lives in the
1277 specified int variable. */
1278 struct Lisp_Intfwd
1279 {
1280 enum Lisp_Fwd_Type type; /* = Lisp_Fwd_Int */
1281 EMACS_INT *intvar;
1282 };
1283
1284 /* Boolean forwarding pointer to an int variable.
1285 This is like Lisp_Intfwd except that the ostensible
1286 "value" of the symbol is t if the int variable is nonzero,
1287 nil if it is zero. */
1288 struct Lisp_Boolfwd
1289 {
1290 enum Lisp_Fwd_Type type; /* = Lisp_Fwd_Bool */
1291 int *boolvar;
1292 };
1293
1294 /* Forwarding pointer to a Lisp_Object variable.
1295 This is allowed only in the value cell of a symbol,
1296 and it means that the symbol's value really lives in the
1297 specified variable. */
1298 struct Lisp_Objfwd
1299 {
1300 enum Lisp_Fwd_Type type; /* = Lisp_Fwd_Obj */
1301 Lisp_Object *objvar;
1302 };
1303
1304 /* Like Lisp_Objfwd except that value lives in a slot in the
1305 current buffer. Value is byte index of slot within buffer. */
1306 struct Lisp_Buffer_Objfwd
1307 {
1308 enum Lisp_Fwd_Type type; /* = Lisp_Fwd_Buffer_Obj */
1309 int offset;
1310 Lisp_Object slottype; /* Qnil, Lisp_Int, Lisp_Symbol, or Lisp_String. */
1311 };
1312
1313 /* struct Lisp_Buffer_Local_Value is used in a symbol value cell when
1314 the symbol has buffer-local or frame-local bindings. (Exception:
1315 some buffer-local variables are built-in, with their values stored
1316 in the buffer structure itself. They are handled differently,
1317 using struct Lisp_Buffer_Objfwd.)
1318
1319 The `realvalue' slot holds the variable's current value, or a
1320 forwarding pointer to where that value is kept. This value is the
1321 one that corresponds to the loaded binding. To read or set the
1322 variable, you must first make sure the right binding is loaded;
1323 then you can access the value in (or through) `realvalue'.
1324
1325 `buffer' and `frame' are the buffer and frame for which the loaded
1326 binding was found. If those have changed, to make sure the right
1327 binding is loaded it is necessary to find which binding goes with
1328 the current buffer and selected frame, then load it. To load it,
1329 first unload the previous binding, then copy the value of the new
1330 binding into `realvalue' (or through it). Also update
1331 LOADED-BINDING to point to the newly loaded binding.
1332
1333 `local_if_set' indicates that merely setting the variable creates a
1334 local binding for the current buffer. Otherwise the latter, setting
1335 the variable does not do that; only make-local-variable does that. */
1336
1337 struct Lisp_Buffer_Local_Value
1338 {
1339 /* 1 means that merely setting the variable creates a local
1340 binding for the current buffer */
1341 unsigned int local_if_set : 1;
1342 /* 1 means this variable can have frame-local bindings, otherwise, it is
1343 can have buffer-local bindings. The two cannot be combined. */
1344 unsigned int frame_local : 1;
1345 /* 1 means that the binding now loaded was found.
1346 Presumably equivalent to (defcell!=valcell) */
1347 unsigned int found : 1;
1348 /* If non-NULL, a forwarding to the C var where it should also be set. */
1349 union Lisp_Fwd *fwd; /* Should never be (Buffer|Kboard)_Objfwd. */
1350 /* The buffer or frame for which the loaded binding was found. */
1351 Lisp_Object where;
1352 /* A cons cell that holds the default value. It has the form
1353 (SYMBOL . DEFAULT-VALUE). */
1354 Lisp_Object defcell;
1355 /* The cons cell from `where's parameter alist.
1356 It always has the form (SYMBOL . VALUE)
1357 Note that if `forward' is non-nil, VALUE may be out of date.
1358 Also if the currently loaded binding is the default binding, then
1359 this is `eq'ual to defcell. */
1360 Lisp_Object valcell;
1361 };
1362
1363 #define BLV_FOUND(blv) \
1364 (eassert ((blv)->found == !EQ ((blv)->defcell, (blv)->valcell)), (blv)->found)
1365 #define SET_BLV_FOUND(blv, v) \
1366 (eassert ((v) == !EQ ((blv)->defcell, (blv)->valcell)), (blv)->found = (v))
1367
1368 #define BLV_VALUE(blv) (XCDR ((blv)->valcell))
1369 #define SET_BLV_VALUE(blv, v) (XSETCDR ((blv)->valcell, v))
1370
1371 /* START and END are markers in the overlay's buffer, and
1372 PLIST is the overlay's property list. */
1373 struct Lisp_Overlay
1374 /* An overlay's real data content is:
1375 - plist
1376 - buffer
1377 - insertion type of both ends
1378 - start & start_byte
1379 - end & end_byte
1380 - next (singly linked list of overlays).
1381 - start_next and end_next (singly linked list of markers).
1382 I.e. 9words plus 2 bits, 3words of which are for external linked lists.
1383 */
1384 {
1385 enum Lisp_Misc_Type type : 16; /* = Lisp_Misc_Overlay */
1386 unsigned gcmarkbit : 1;
1387 int spacer : 15;
1388 struct Lisp_Overlay *next;
1389 Lisp_Object start, end, plist;
1390 };
1391
1392 /* Like Lisp_Objfwd except that value lives in a slot in the
1393 current kboard. */
1394 struct Lisp_Kboard_Objfwd
1395 {
1396 enum Lisp_Fwd_Type type; /* = Lisp_Fwd_Kboard_Obj */
1397 int offset;
1398 };
1399
1400 /* Hold a C pointer for later use.
1401 This type of object is used in the arg to record_unwind_protect. */
1402 struct Lisp_Save_Value
1403 {
1404 enum Lisp_Misc_Type type : 16; /* = Lisp_Misc_Save_Value */
1405 unsigned gcmarkbit : 1;
1406 int spacer : 14;
1407 /* If DOGC is set, POINTER is the address of a memory
1408 area containing INTEGER potential Lisp_Objects. */
1409 unsigned int dogc : 1;
1410 void *pointer;
1411 int integer;
1412 };
1413
1414
1415 /* A miscellaneous object, when it's on the free list. */
1416 struct Lisp_Free
1417 {
1418 enum Lisp_Misc_Type type : 16; /* = Lisp_Misc_Free */
1419 unsigned gcmarkbit : 1;
1420 int spacer : 15;
1421 union Lisp_Misc *chain;
1422 #ifdef USE_LSB_TAG
1423 /* Try to make sure that sizeof(Lisp_Misc) preserves TYPEBITS-alignment.
1424 This assumes that Lisp_Marker is the largest of the alternatives and
1425 that Lisp_Misc_Any has the same size as "Lisp_Free w/o padding". */
1426 char padding[((((sizeof (struct Lisp_Marker) - 1) >> GCTYPEBITS) + 1)
1427 << GCTYPEBITS) - sizeof (struct Lisp_Misc_Any)];
1428 #endif
1429 };
1430
1431 /* To get the type field of a union Lisp_Misc, use XMISCTYPE.
1432 It uses one of these struct subtypes to get the type field. */
1433
1434 union Lisp_Misc
1435 {
1436 struct Lisp_Misc_Any u_any; /* Supertype of all Misc types. */
1437 struct Lisp_Free u_free; /* Includes padding to force alignment. */
1438 struct Lisp_Marker u_marker; /* 5 */
1439 struct Lisp_Overlay u_overlay; /* 5 */
1440 struct Lisp_Save_Value u_save_value; /* 3 */
1441 };
1442
1443 union Lisp_Fwd
1444 {
1445 struct Lisp_Intfwd u_intfwd; /* 2 */
1446 struct Lisp_Boolfwd u_boolfwd; /* 2 */
1447 struct Lisp_Objfwd u_objfwd; /* 2 */
1448 struct Lisp_Buffer_Objfwd u_buffer_objfwd; /* 2 */
1449 struct Lisp_Kboard_Objfwd u_kboard_objfwd; /* 2 */
1450 };
1451 \f
1452 /* Lisp floating point type */
1453 struct Lisp_Float
1454 {
1455 union
1456 {
1457 #ifdef HIDE_LISP_IMPLEMENTATION
1458 double data_;
1459 #else
1460 double data;
1461 #endif
1462 struct Lisp_Float *chain;
1463 } u;
1464 };
1465
1466 #ifdef HIDE_LISP_IMPLEMENTATION
1467 #define XFLOAT_DATA(f) (0 ? XFLOAT (f)->u.data_ : XFLOAT (f)->u.data_)
1468 #else
1469 #define XFLOAT_DATA(f) (0 ? XFLOAT (f)->u.data : XFLOAT (f)->u.data)
1470 /* This should be used only in alloc.c, which always disables
1471 HIDE_LISP_IMPLEMENTATION. */
1472 #define XFLOAT_INIT(f,n) (XFLOAT (f)->u.data = (n))
1473 #endif
1474
1475 /* A character, declared with the following typedef, is a member
1476 of some character set associated with the current buffer. */
1477 #ifndef _UCHAR_T /* Protect against something in ctab.h on AIX. */
1478 #define _UCHAR_T
1479 typedef unsigned char UCHAR;
1480 #endif
1481
1482 /* Meanings of slots in a Lisp_Compiled: */
1483
1484 #define COMPILED_ARGLIST 0
1485 #define COMPILED_BYTECODE 1
1486 #define COMPILED_CONSTANTS 2
1487 #define COMPILED_STACK_DEPTH 3
1488 #define COMPILED_DOC_STRING 4
1489 #define COMPILED_INTERACTIVE 5
1490
1491 /* Flag bits in a character. These also get used in termhooks.h.
1492 Richard Stallman <rms@gnu.ai.mit.edu> thinks that MULE
1493 (MUlti-Lingual Emacs) might need 22 bits for the character value
1494 itself, so we probably shouldn't use any bits lower than 0x0400000. */
1495 #define CHAR_ALT (0x0400000)
1496 #define CHAR_SUPER (0x0800000)
1497 #define CHAR_HYPER (0x1000000)
1498 #define CHAR_SHIFT (0x2000000)
1499 #define CHAR_CTL (0x4000000)
1500 #define CHAR_META (0x8000000)
1501
1502 #define CHAR_MODIFIER_MASK \
1503 (CHAR_ALT | CHAR_SUPER | CHAR_HYPER | CHAR_SHIFT | CHAR_CTL | CHAR_META)
1504
1505
1506 /* Actually, the current Emacs uses 22 bits for the character value
1507 itself. */
1508 #define CHARACTERBITS 22
1509
1510 /* The maximum byte size consumed by push_key_description.
1511 All callers should assure that at least this size of memory is
1512 allocated at the place pointed by the second argument.
1513
1514 There are 6 modifiers, each consumes 2 chars.
1515 The octal form of a character code consumes
1516 (1 + CHARACTERBITS / 3 + 1) chars (including backslash at the head).
1517 We need one more byte for string terminator `\0'. */
1518 #define KEY_DESCRIPTION_SIZE ((2 * 6) + 1 + (CHARACTERBITS / 3) + 1 + 1)
1519
1520 \f
1521 /* The glyph datatype, used to represent characters on the display.
1522 It consists of a char code and a face id. */
1523
1524 typedef struct {
1525 int ch;
1526 int face_id;
1527 } GLYPH;
1528
1529 /* Return a glyph's character code. */
1530 #define GLYPH_CHAR(glyph) ((glyph).ch)
1531
1532 /* Return a glyph's face ID. */
1533 #define GLYPH_FACE(glyph) ((glyph).face_id)
1534
1535 #define SET_GLYPH_CHAR(glyph, char) ((glyph).ch = (char))
1536 #define SET_GLYPH_FACE(glyph, face) ((glyph).face_id = (face))
1537 #define SET_GLYPH(glyph, char, face) ((glyph).ch = (char), (glyph).face_id = (face))
1538
1539 /* Return 1 if GLYPH contains valid character code. */
1540 #define GLYPH_CHAR_VALID_P(glyph) CHAR_VALID_P (GLYPH_CHAR (glyph), 1)
1541
1542
1543 /* Glyph Code from a display vector may either be an integer which
1544 encodes a char code in the lower CHARACTERBITS bits and a (very small)
1545 face-id in the upper bits, or it may be a cons (CHAR . FACE-ID). */
1546
1547 #define GLYPH_CODE_CHAR(gc) \
1548 (CONSP (gc) ? XINT (XCAR (gc)) : INTEGERP (gc) ? (XINT (gc) & ((1 << CHARACTERBITS)-1)) : 0)
1549
1550 #define GLYPH_CODE_FACE(gc) \
1551 (CONSP (gc) ? XINT (XCDR (gc)) : INTEGERP (gc) ? (XINT (gc) >> CHARACTERBITS) : DEFAULT_FACE_ID)
1552
1553 /* Return 1 if glyph code from display vector contains valid character code. */
1554 #define GLYPH_CODE_CHAR_VALID_P(gc) CHAR_VALID_P (GLYPH_CODE_CHAR (gc), 1)
1555
1556 #define GLYPH_CODE_P(gc) ((CONSP (gc) && INTEGERP (XCAR (gc)) && INTEGERP (XCDR (gc))) || INTEGERP (gc))
1557
1558 /* Only called when GLYPH_CODE_P (gc) is true. */
1559 #define SET_GLYPH_FROM_GLYPH_CODE(glyph, gc) \
1560 do \
1561 { \
1562 if (CONSP (gc)) \
1563 SET_GLYPH (glyph, XINT (XCAR (gc)), XINT (XCDR (gc))); \
1564 else \
1565 SET_GLYPH (glyph, (XINT (gc) & ((1 << CHARACTERBITS)-1)), \
1566 (XINT (gc) >> CHARACTERBITS)); \
1567 } \
1568 while (0)
1569
1570 /* The ID of the mode line highlighting face. */
1571 #define GLYPH_MODE_LINE_FACE 1
1572 \f
1573 /* Data type checking */
1574
1575 #define NILP(x) EQ (x, Qnil)
1576
1577 #define NUMBERP(x) (INTEGERP (x) || FLOATP (x))
1578 #define NATNUMP(x) (INTEGERP (x) && XINT (x) >= 0)
1579
1580 #define INTEGERP(x) (LISP_INT_TAG_P (XTYPE ((x))))
1581 #define SYMBOLP(x) (XTYPE ((x)) == Lisp_Symbol)
1582 #define MISCP(x) (XTYPE ((x)) == Lisp_Misc)
1583 #define VECTORLIKEP(x) (XTYPE ((x)) == Lisp_Vectorlike)
1584 #define STRINGP(x) (XTYPE ((x)) == Lisp_String)
1585 #define CONSP(x) (XTYPE ((x)) == Lisp_Cons)
1586
1587 #define FLOATP(x) (XTYPE ((x)) == Lisp_Float)
1588 #define VECTORP(x) (VECTORLIKEP (x) && !(XVECTOR (x)->size & PSEUDOVECTOR_FLAG))
1589 #define OVERLAYP(x) (MISCP (x) && XMISCTYPE (x) == Lisp_Misc_Overlay)
1590 #define MARKERP(x) (MISCP (x) && XMISCTYPE (x) == Lisp_Misc_Marker)
1591 #define SAVE_VALUEP(x) (MISCP (x) && XMISCTYPE (x) == Lisp_Misc_Save_Value)
1592
1593 #define INTFWDP(x) (XFWDTYPE (x) == Lisp_Fwd_Int)
1594 #define BOOLFWDP(x) (XFWDTYPE (x) == Lisp_Fwd_Bool)
1595 #define OBJFWDP(x) (XFWDTYPE (x) == Lisp_Fwd_Obj)
1596 #define BUFFER_OBJFWDP(x) (XFWDTYPE (x) == Lisp_Fwd_Buffer_Obj)
1597 #define KBOARD_OBJFWDP(x) (XFWDTYPE (x) == Lisp_Fwd_Kboard_Obj)
1598
1599 /* True if object X is a pseudovector whose code is CODE. */
1600 #define PSEUDOVECTORP(x, code) \
1601 (VECTORLIKEP (x) \
1602 && (((XVECTOR (x)->size & (PSEUDOVECTOR_FLAG | (code)))) \
1603 == (PSEUDOVECTOR_FLAG | (code))))
1604
1605 /* Test for specific pseudovector types. */
1606 #define WINDOW_CONFIGURATIONP(x) PSEUDOVECTORP (x, PVEC_WINDOW_CONFIGURATION)
1607 #define PROCESSP(x) PSEUDOVECTORP (x, PVEC_PROCESS)
1608 #define WINDOWP(x) PSEUDOVECTORP (x, PVEC_WINDOW)
1609 #define TERMINALP(x) PSEUDOVECTORP (x, PVEC_TERMINAL)
1610 #define SUBRP(x) PSEUDOVECTORP (x, PVEC_SUBR)
1611 #define COMPILEDP(x) PSEUDOVECTORP (x, PVEC_COMPILED)
1612 #define BUFFERP(x) PSEUDOVECTORP (x, PVEC_BUFFER)
1613 #define CHAR_TABLE_P(x) PSEUDOVECTORP (x, PVEC_CHAR_TABLE)
1614 #define SUB_CHAR_TABLE_P(x) PSEUDOVECTORP (x, PVEC_SUB_CHAR_TABLE)
1615 #define BOOL_VECTOR_P(x) PSEUDOVECTORP (x, PVEC_BOOL_VECTOR)
1616 #define FRAMEP(x) PSEUDOVECTORP (x, PVEC_FRAME)
1617
1618 /* Test for image (image . spec) */
1619 #define IMAGEP(x) (CONSP (x) && EQ (XCAR (x), Qimage))
1620
1621 /* Array types. */
1622
1623 #define ARRAYP(x) \
1624 (VECTORP (x) || STRINGP (x) || CHAR_TABLE_P (x) || BOOL_VECTOR_P (x))
1625 \f
1626 #define CHECK_LIST(x) \
1627 CHECK_TYPE (CONSP (x) || NILP (x), Qlistp, x)
1628
1629 #define CHECK_LIST_CONS(x, y) \
1630 CHECK_TYPE (CONSP (x), Qlistp, y)
1631
1632 #define CHECK_LIST_END(x, y) \
1633 CHECK_TYPE (NILP (x), Qlistp, y)
1634
1635 #define CHECK_STRING(x) \
1636 CHECK_TYPE (STRINGP (x), Qstringp, x)
1637
1638 #define CHECK_STRING_CAR(x) \
1639 CHECK_TYPE (STRINGP (XCAR (x)), Qstringp, XCAR (x))
1640
1641 #define CHECK_CONS(x) \
1642 CHECK_TYPE (CONSP (x), Qconsp, x)
1643
1644 #define CHECK_SYMBOL(x) \
1645 CHECK_TYPE (SYMBOLP (x), Qsymbolp, x)
1646
1647 #define CHECK_CHAR_TABLE(x) \
1648 CHECK_TYPE (CHAR_TABLE_P (x), Qchar_table_p, x)
1649
1650 #define CHECK_VECTOR(x) \
1651 CHECK_TYPE (VECTORP (x), Qvectorp, x)
1652
1653 #define CHECK_VECTOR_OR_STRING(x) \
1654 CHECK_TYPE (VECTORP (x) || STRINGP (x), Qarrayp, x)
1655
1656 #define CHECK_ARRAY(x, Qxxxp) \
1657 CHECK_TYPE (ARRAYP (x), Qxxxp, x)
1658
1659 #define CHECK_VECTOR_OR_CHAR_TABLE(x) \
1660 CHECK_TYPE (VECTORP (x) || CHAR_TABLE_P (x), Qvector_or_char_table_p, x)
1661
1662 #define CHECK_BUFFER(x) \
1663 CHECK_TYPE (BUFFERP (x), Qbufferp, x)
1664
1665 #define CHECK_WINDOW(x) \
1666 CHECK_TYPE (WINDOWP (x), Qwindowp, x)
1667
1668 #define CHECK_WINDOW_CONFIGURATION(x) \
1669 CHECK_TYPE (WINDOW_CONFIGURATIONP (x), Qwindow_configuration_p, x)
1670
1671 /* This macro rejects windows on the interior of the window tree as
1672 "dead", which is what we want; this is an argument-checking macro, and
1673 the user should never get access to interior windows.
1674
1675 A window of any sort, leaf or interior, is dead if the buffer,
1676 vchild, and hchild members are all nil. */
1677
1678 #define CHECK_LIVE_WINDOW(x) \
1679 CHECK_TYPE (WINDOWP (x) && !NILP (XWINDOW (x)->buffer), Qwindow_live_p, x)
1680
1681 #define CHECK_PROCESS(x) \
1682 CHECK_TYPE (PROCESSP (x), Qprocessp, x)
1683
1684 #define CHECK_SUBR(x) \
1685 CHECK_TYPE (SUBRP (x), Qsubrp, x)
1686
1687 #define CHECK_NUMBER(x) \
1688 CHECK_TYPE (INTEGERP (x), Qintegerp, x)
1689
1690 #define CHECK_NATNUM(x) \
1691 CHECK_TYPE (NATNUMP (x), Qwholenump, x)
1692
1693 #define CHECK_MARKER(x) \
1694 CHECK_TYPE (MARKERP (x), Qmarkerp, x)
1695
1696 #define CHECK_NUMBER_COERCE_MARKER(x) \
1697 do { if (MARKERP ((x))) XSETFASTINT (x, marker_position (x)); \
1698 else CHECK_TYPE (INTEGERP (x), Qinteger_or_marker_p, x); } while (0)
1699
1700 #define XFLOATINT(n) extract_float((n))
1701
1702 #define CHECK_FLOAT(x) \
1703 CHECK_TYPE (FLOATP (x), Qfloatp, x)
1704
1705 #define CHECK_NUMBER_OR_FLOAT(x) \
1706 CHECK_TYPE (FLOATP (x) || INTEGERP (x), Qnumberp, x)
1707
1708 #define CHECK_NUMBER_OR_FLOAT_COERCE_MARKER(x) \
1709 do { if (MARKERP (x)) XSETFASTINT (x, marker_position (x)); \
1710 else CHECK_TYPE (INTEGERP (x) || FLOATP (x), Qnumber_or_marker_p, x); } while (0)
1711
1712 #define CHECK_OVERLAY(x) \
1713 CHECK_TYPE (OVERLAYP (x), Qoverlayp, x)
1714
1715 /* Since we can't assign directly to the CAR or CDR fields of a cons
1716 cell, use these when checking that those fields contain numbers. */
1717 #define CHECK_NUMBER_CAR(x) \
1718 do { \
1719 Lisp_Object tmp = XCAR (x); \
1720 CHECK_NUMBER (tmp); \
1721 XSETCAR ((x), tmp); \
1722 } while (0)
1723
1724 #define CHECK_NUMBER_CDR(x) \
1725 do { \
1726 Lisp_Object tmp = XCDR (x); \
1727 CHECK_NUMBER (tmp); \
1728 XSETCDR ((x), tmp); \
1729 } while (0)
1730
1731 #define CHECK_NATNUM_CAR(x) \
1732 do { \
1733 Lisp_Object tmp = XCAR (x); \
1734 CHECK_NATNUM (tmp); \
1735 XSETCAR ((x), tmp); \
1736 } while (0)
1737
1738 #define CHECK_NATNUM_CDR(x) \
1739 do { \
1740 Lisp_Object tmp = XCDR (x); \
1741 CHECK_NATNUM (tmp); \
1742 XSETCDR ((x), tmp); \
1743 } while (0)
1744
1745 /* Cast pointers to this type to compare them. Some machines want int. */
1746 #define PNTR_COMPARISON_TYPE EMACS_UINT
1747 \f
1748 /* Define a built-in function for calling from Lisp.
1749 `lname' should be the name to give the function in Lisp,
1750 as a null-terminated C string.
1751 `fnname' should be the name of the function in C.
1752 By convention, it starts with F.
1753 `sname' should be the name for the C constant structure
1754 that records information on this function for internal use.
1755 By convention, it should be the same as `fnname' but with S instead of F.
1756 It's too bad that C macros can't compute this from `fnname'.
1757 `minargs' should be a number, the minimum number of arguments allowed.
1758 `maxargs' should be a number, the maximum number of arguments allowed,
1759 or else MANY or UNEVALLED.
1760 MANY means pass a vector of evaluated arguments,
1761 in the form of an integer number-of-arguments
1762 followed by the address of a vector of Lisp_Objects
1763 which contains the argument values.
1764 UNEVALLED means pass the list of unevaluated arguments
1765 `intspec' says how interactive arguments are to be fetched.
1766 If the string starts with a `(', `intspec' is evaluated and the resulting
1767 list is the list of arguments.
1768 If it's a string that doesn't start with `(', the value should follow
1769 the one of the doc string for `interactive'.
1770 A null string means call interactively with no arguments.
1771 `doc' is documentation for the user. */
1772
1773 /* This version of DEFUN declares a function prototype with the right
1774 arguments, so we can catch errors with maxargs at compile-time. */
1775 #define DEFUN(lname, fnname, sname, minargs, maxargs, intspec, doc) \
1776 Lisp_Object fnname DEFUN_ARGS_ ## maxargs ; \
1777 DECL_ALIGN (struct Lisp_Subr, sname) = \
1778 { PVEC_SUBR | (sizeof (struct Lisp_Subr) / sizeof (EMACS_INT)), \
1779 { .a ## maxargs = fnname }, \
1780 minargs, maxargs, lname, intspec, 0}; \
1781 Lisp_Object fnname
1782
1783 /* Note that the weird token-substitution semantics of ANSI C makes
1784 this work for MANY and UNEVALLED. */
1785 #define DEFUN_ARGS_MANY (int, Lisp_Object *)
1786 #define DEFUN_ARGS_UNEVALLED (Lisp_Object)
1787 #define DEFUN_ARGS_0 (void)
1788 #define DEFUN_ARGS_1 (Lisp_Object)
1789 #define DEFUN_ARGS_2 (Lisp_Object, Lisp_Object)
1790 #define DEFUN_ARGS_3 (Lisp_Object, Lisp_Object, Lisp_Object)
1791 #define DEFUN_ARGS_4 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object)
1792 #define DEFUN_ARGS_5 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, \
1793 Lisp_Object)
1794 #define DEFUN_ARGS_6 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, \
1795 Lisp_Object, Lisp_Object)
1796 #define DEFUN_ARGS_7 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, \
1797 Lisp_Object, Lisp_Object, Lisp_Object)
1798 #define DEFUN_ARGS_8 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, \
1799 Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object)
1800
1801 /* Non-zero if OBJ is a Lisp function. */
1802 #define FUNCTIONP(OBJ) \
1803 ((CONSP (OBJ) && EQ (XCAR (OBJ), Qlambda)) \
1804 || (SYMBOLP (OBJ) && !NILP (Ffboundp (OBJ))) \
1805 || COMPILEDP (OBJ) \
1806 || SUBRP (OBJ))
1807
1808 /* defsubr (Sname);
1809 is how we define the symbol for function `name' at start-up time. */
1810 extern void defsubr (struct Lisp_Subr *);
1811
1812 #define MANY -2
1813 #define UNEVALLED -1
1814
1815 extern void defvar_lisp (struct Lisp_Objfwd *, const char *, Lisp_Object *);
1816 extern void defvar_lisp_nopro (struct Lisp_Objfwd *, const char *, Lisp_Object *);
1817 extern void defvar_bool (struct Lisp_Boolfwd *, const char *, int *);
1818 extern void defvar_int (struct Lisp_Intfwd *, const char *, EMACS_INT *);
1819 extern void defvar_kboard (struct Lisp_Kboard_Objfwd *, const char *, int);
1820
1821 /* Macros we use to define forwarded Lisp variables.
1822 These are used in the syms_of_FILENAME functions. */
1823
1824 #define DEFVAR_LISP(lname, vname, doc) \
1825 do { \
1826 static struct Lisp_Objfwd o_fwd; \
1827 defvar_lisp (&o_fwd, lname, vname); \
1828 } while (0)
1829 #define DEFVAR_LISP_NOPRO(lname, vname, doc) \
1830 do { \
1831 static struct Lisp_Objfwd o_fwd; \
1832 defvar_lisp_nopro (&o_fwd, lname, vname); \
1833 } while (0)
1834 #define DEFVAR_BOOL(lname, vname, doc) \
1835 do { \
1836 static struct Lisp_Boolfwd b_fwd; \
1837 defvar_bool (&b_fwd, lname, vname); \
1838 } while (0)
1839 #define DEFVAR_INT(lname, vname, doc) \
1840 do { \
1841 static struct Lisp_Intfwd i_fwd; \
1842 defvar_int (&i_fwd, lname, vname); \
1843 } while (0)
1844
1845 #define DEFVAR_KBOARD(lname, vname, doc) \
1846 do { \
1847 static struct Lisp_Kboard_Objfwd ko_fwd; \
1848 defvar_kboard (&ko_fwd, \
1849 lname, \
1850 (int)((char *)(&current_kboard->vname) \
1851 - (char *)current_kboard)); \
1852 } while (0)
1853
1854
1855 \f
1856 /* Structure for recording Lisp call stack for backtrace purposes. */
1857
1858 /* The special binding stack holds the outer values of variables while
1859 they are bound by a function application or a let form, stores the
1860 code to be executed for Lisp unwind-protect forms, and stores the C
1861 functions to be called for record_unwind_protect.
1862
1863 If func is non-zero, undoing this binding applies func to old_value;
1864 This implements record_unwind_protect.
1865
1866 Otherwise, the element is a variable binding.
1867
1868 If the symbol field is a symbol, it is an ordinary variable binding.
1869
1870 Otherwise, it should be a structure (SYMBOL WHERE . CURRENT-BUFFER),
1871 which means having bound a local value while CURRENT-BUFFER was active.
1872 If WHERE is nil this means we saw the default value when binding SYMBOL.
1873 WHERE being a buffer or frame means we saw a buffer-local or frame-local
1874 value. Other values of WHERE mean an internal error. */
1875
1876 typedef Lisp_Object (*specbinding_func) (Lisp_Object);
1877
1878 struct specbinding
1879 {
1880 Lisp_Object symbol, old_value;
1881 specbinding_func func;
1882 Lisp_Object unused; /* Dividing by 16 is faster than by 12 */
1883 };
1884
1885 extern struct specbinding *specpdl;
1886 extern struct specbinding *specpdl_ptr;
1887 extern int specpdl_size;
1888
1889 extern EMACS_INT max_specpdl_size;
1890
1891 #define SPECPDL_INDEX() (specpdl_ptr - specpdl)
1892
1893 /* Everything needed to describe an active condition case. */
1894 struct handler
1895 {
1896 /* The handler clauses and variable from the condition-case form. */
1897 /* For a handler set up in Lisp code, this is always a list.
1898 For an internal handler set up by internal_condition_case*,
1899 this can instead be the symbol t or `error'.
1900 t: handle all conditions.
1901 error: handle all conditions, and errors can run the debugger
1902 or display a backtrace. */
1903 Lisp_Object handler;
1904 Lisp_Object var;
1905 /* Fsignal stores here the condition-case clause that applies,
1906 and Fcondition_case thus knows which clause to run. */
1907 Lisp_Object chosen_clause;
1908
1909 /* Used to effect the longjump out to the handler. */
1910 struct catchtag *tag;
1911
1912 /* The next enclosing handler. */
1913 struct handler *next;
1914 };
1915
1916 extern struct handler *handlerlist;
1917
1918 /* This structure helps implement the `catch' and `throw' control
1919 structure. A struct catchtag contains all the information needed
1920 to restore the state of the interpreter after a non-local jump.
1921
1922 Handlers for error conditions (represented by `struct handler'
1923 structures) just point to a catch tag to do the cleanup required
1924 for their jumps.
1925
1926 catchtag structures are chained together in the C calling stack;
1927 the `next' member points to the next outer catchtag.
1928
1929 A call like (throw TAG VAL) searches for a catchtag whose `tag'
1930 member is TAG, and then unbinds to it. The `val' member is used to
1931 hold VAL while the stack is unwound; `val' is returned as the value
1932 of the catch form.
1933
1934 All the other members are concerned with restoring the interpreter
1935 state. */
1936
1937 struct catchtag
1938 {
1939 Lisp_Object tag;
1940 Lisp_Object val;
1941 struct catchtag *next;
1942 struct gcpro *gcpro;
1943 jmp_buf jmp;
1944 struct backtrace *backlist;
1945 struct handler *handlerlist;
1946 int lisp_eval_depth;
1947 int pdlcount;
1948 int poll_suppress_count;
1949 int interrupt_input_blocked;
1950 struct byte_stack *byte_stack;
1951 };
1952
1953 extern struct catchtag *catchlist;
1954 extern struct backtrace *backtrace_list;
1955
1956 extern Lisp_Object memory_signal_data;
1957
1958 /* An address near the bottom of the stack.
1959 Tells GC how to save a copy of the stack. */
1960 extern char *stack_bottom;
1961
1962 /* Check quit-flag and quit if it is non-nil.
1963 Typing C-g does not directly cause a quit; it only sets Vquit_flag.
1964 So the program needs to do QUIT at times when it is safe to quit.
1965 Every loop that might run for a long time or might not exit
1966 ought to do QUIT at least once, at a safe place.
1967 Unless that is impossible, of course.
1968 But it is very desirable to avoid creating loops where QUIT is impossible.
1969
1970 Exception: if you set immediate_quit to nonzero,
1971 then the handler that responds to the C-g does the quit itself.
1972 This is a good thing to do around a loop that has no side effects
1973 and (in particular) cannot call arbitrary Lisp code. */
1974
1975 #ifdef SYNC_INPUT
1976 extern void process_pending_signals (void);
1977 extern int pending_signals;
1978 #define ELSE_PENDING_SIGNALS \
1979 else if (pending_signals) \
1980 process_pending_signals ();
1981 #else /* not SYNC_INPUT */
1982 #define ELSE_PENDING_SIGNALS
1983 #endif /* not SYNC_INPUT */
1984
1985 #define QUIT \
1986 do { \
1987 if (!NILP (Vquit_flag) && NILP (Vinhibit_quit)) \
1988 { \
1989 Lisp_Object flag = Vquit_flag; \
1990 Vquit_flag = Qnil; \
1991 if (EQ (Vthrow_on_input, flag)) \
1992 Fthrow (Vthrow_on_input, Qt); \
1993 Fsignal (Qquit, Qnil); \
1994 } \
1995 ELSE_PENDING_SIGNALS \
1996 } while (0)
1997
1998
1999 /* Nonzero if ought to quit now. */
2000
2001 #define QUITP (!NILP (Vquit_flag) && NILP (Vinhibit_quit))
2002 \f
2003 /* Variables used locally in the following case handling macros. */
2004 extern int case_temp1;
2005 extern Lisp_Object case_temp2;
2006
2007 /* Current buffer's map from characters to lower-case characters. */
2008
2009 #define DOWNCASE_TABLE current_buffer->downcase_table
2010
2011 /* Current buffer's map from characters to upper-case characters. */
2012
2013 #define UPCASE_TABLE current_buffer->upcase_table
2014
2015 /* Downcase a character, or make no change if that cannot be done. */
2016
2017 #define DOWNCASE(CH) \
2018 ((case_temp1 = (CH), \
2019 case_temp2 = CHAR_TABLE_REF (DOWNCASE_TABLE, case_temp1), \
2020 NATNUMP (case_temp2)) \
2021 ? XFASTINT (case_temp2) : case_temp1)
2022
2023 /* 1 if CH is upper case. */
2024
2025 #define UPPERCASEP(CH) (DOWNCASE (CH) != (CH))
2026
2027 /* 1 if CH is neither upper nor lower case. */
2028
2029 #define NOCASEP(CH) (UPCASE1 (CH) == (CH))
2030
2031 /* 1 if CH is lower case. */
2032
2033 #define LOWERCASEP(CH) (!UPPERCASEP (CH) && !NOCASEP(CH))
2034
2035 /* Upcase a character, or make no change if that cannot be done. */
2036
2037 #define UPCASE(CH) (!UPPERCASEP (CH) ? UPCASE1 (CH) : (CH))
2038
2039 /* Upcase a character known to be not upper case. */
2040
2041 #define UPCASE1(CH) \
2042 ((case_temp1 = (CH), \
2043 case_temp2 = CHAR_TABLE_REF (UPCASE_TABLE, case_temp1), \
2044 NATNUMP (case_temp2)) \
2045 ? XFASTINT (case_temp2) : case_temp1)
2046
2047 extern Lisp_Object Vascii_downcase_table, Vascii_upcase_table;
2048 extern Lisp_Object Vascii_canon_table, Vascii_eqv_table;
2049 \f
2050 /* Number of bytes of structure consed since last GC. */
2051
2052 extern int consing_since_gc;
2053
2054 /* Thresholds for doing another gc. */
2055
2056 extern EMACS_INT gc_cons_threshold;
2057
2058 extern EMACS_INT gc_relative_threshold;
2059
2060 extern EMACS_INT memory_full_cons_threshold;
2061
2062 /* Structure for recording stack slots that need marking. */
2063
2064 /* This is a chain of structures, each of which points at a Lisp_Object
2065 variable whose value should be marked in garbage collection.
2066 Normally every link of the chain is an automatic variable of a function,
2067 and its `val' points to some argument or local variable of the function.
2068 On exit to the function, the chain is set back to the value it had on entry.
2069 This way, no link remains in the chain when the stack frame containing the
2070 link disappears.
2071
2072 Every function that can call Feval must protect in this fashion all
2073 Lisp_Object variables whose contents will be used again. */
2074
2075 extern struct gcpro *gcprolist;
2076
2077 struct gcpro
2078 {
2079 struct gcpro *next;
2080
2081 /* Address of first protected variable. */
2082 volatile Lisp_Object *var;
2083
2084 /* Number of consecutive protected variables. */
2085 int nvars;
2086
2087 #ifdef DEBUG_GCPRO
2088 int level;
2089 #endif
2090 };
2091
2092 /* Values of GC_MARK_STACK during compilation:
2093
2094 0 Use GCPRO as before
2095 1 Do the real thing, make GCPROs and UNGCPRO no-ops.
2096 2 Mark the stack, and check that everything GCPRO'd is
2097 marked.
2098 3 Mark using GCPRO's, mark stack last, and count how many
2099 dead objects are kept alive. */
2100
2101
2102 #define GC_USE_GCPROS_AS_BEFORE 0
2103 #define GC_MAKE_GCPROS_NOOPS 1
2104 #define GC_MARK_STACK_CHECK_GCPROS 2
2105 #define GC_USE_GCPROS_CHECK_ZOMBIES 3
2106
2107 #ifndef GC_MARK_STACK
2108 #define GC_MARK_STACK GC_USE_GCPROS_AS_BEFORE
2109 #endif
2110
2111 #if GC_MARK_STACK == GC_MAKE_GCPROS_NOOPS
2112
2113 /* Do something silly with gcproN vars just so gcc shuts up. */
2114 /* You get warnings from MIPSPro... */
2115
2116 #define GCPRO1(varname) ((void) gcpro1)
2117 #define GCPRO2(varname1, varname2)(((void) gcpro2, (void) gcpro1))
2118 #define GCPRO3(varname1, varname2, varname3) \
2119 (((void) gcpro3, (void) gcpro2, (void) gcpro1))
2120 #define GCPRO4(varname1, varname2, varname3, varname4) \
2121 (((void) gcpro4, (void) gcpro3, (void) gcpro2, (void) gcpro1))
2122 #define GCPRO5(varname1, varname2, varname3, varname4, varname5) \
2123 (((void) gcpro5, (void) gcpro4, (void) gcpro3, (void) gcpro2, (void) gcpro1))
2124 #define GCPRO6(varname1, varname2, varname3, varname4, varname5, varname6) \
2125 (((void) gcpro6, (void) gcpro5, (void) gcpro4, (void) gcpro3, (void) gcpro2, (void) gcpro1))
2126 #define UNGCPRO ((void) 0)
2127
2128 #else /* GC_MARK_STACK != GC_MAKE_GCPROS_NOOPS */
2129
2130 #ifndef DEBUG_GCPRO
2131
2132 #define GCPRO1(varname) \
2133 {gcpro1.next = gcprolist; gcpro1.var = &varname; gcpro1.nvars = 1; \
2134 gcprolist = &gcpro1; }
2135
2136 #define GCPRO2(varname1, varname2) \
2137 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
2138 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
2139 gcprolist = &gcpro2; }
2140
2141 #define GCPRO3(varname1, varname2, varname3) \
2142 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
2143 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
2144 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
2145 gcprolist = &gcpro3; }
2146
2147 #define GCPRO4(varname1, varname2, varname3, varname4) \
2148 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
2149 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
2150 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
2151 gcpro4.next = &gcpro3; gcpro4.var = &varname4; gcpro4.nvars = 1; \
2152 gcprolist = &gcpro4; }
2153
2154 #define GCPRO5(varname1, varname2, varname3, varname4, varname5) \
2155 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
2156 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
2157 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
2158 gcpro4.next = &gcpro3; gcpro4.var = &varname4; gcpro4.nvars = 1; \
2159 gcpro5.next = &gcpro4; gcpro5.var = &varname5; gcpro5.nvars = 1; \
2160 gcprolist = &gcpro5; }
2161
2162 #define GCPRO6(varname1, varname2, varname3, varname4, varname5, varname6) \
2163 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
2164 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
2165 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
2166 gcpro4.next = &gcpro3; gcpro4.var = &varname4; gcpro4.nvars = 1; \
2167 gcpro5.next = &gcpro4; gcpro5.var = &varname5; gcpro5.nvars = 1; \
2168 gcpro6.next = &gcpro5; gcpro6.var = &varname6; gcpro6.nvars = 1; \
2169 gcprolist = &gcpro6; }
2170
2171 #define UNGCPRO (gcprolist = gcpro1.next)
2172
2173 #else
2174
2175 extern int gcpro_level;
2176
2177 #define GCPRO1(varname) \
2178 {gcpro1.next = gcprolist; gcpro1.var = &varname; gcpro1.nvars = 1; \
2179 gcpro1.level = gcpro_level++; \
2180 gcprolist = &gcpro1; }
2181
2182 #define GCPRO2(varname1, varname2) \
2183 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
2184 gcpro1.level = gcpro_level; \
2185 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
2186 gcpro2.level = gcpro_level++; \
2187 gcprolist = &gcpro2; }
2188
2189 #define GCPRO3(varname1, varname2, varname3) \
2190 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
2191 gcpro1.level = gcpro_level; \
2192 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
2193 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
2194 gcpro3.level = gcpro_level++; \
2195 gcprolist = &gcpro3; }
2196
2197 #define GCPRO4(varname1, varname2, varname3, varname4) \
2198 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
2199 gcpro1.level = gcpro_level; \
2200 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
2201 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
2202 gcpro4.next = &gcpro3; gcpro4.var = &varname4; gcpro4.nvars = 1; \
2203 gcpro4.level = gcpro_level++; \
2204 gcprolist = &gcpro4; }
2205
2206 #define GCPRO5(varname1, varname2, varname3, varname4, varname5) \
2207 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
2208 gcpro1.level = gcpro_level; \
2209 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
2210 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
2211 gcpro4.next = &gcpro3; gcpro4.var = &varname4; gcpro4.nvars = 1; \
2212 gcpro5.next = &gcpro4; gcpro5.var = &varname5; gcpro5.nvars = 1; \
2213 gcpro5.level = gcpro_level++; \
2214 gcprolist = &gcpro5; }
2215
2216 #define GCPRO6(varname1, varname2, varname3, varname4, varname5, varname6) \
2217 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
2218 gcpro1.level = gcpro_level; \
2219 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
2220 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
2221 gcpro4.next = &gcpro3; gcpro4.var = &varname4; gcpro4.nvars = 1; \
2222 gcpro5.next = &gcpro4; gcpro5.var = &varname5; gcpro5.nvars = 1; \
2223 gcpro6.next = &gcpro5; gcpro6.var = &varname6; gcpro6.nvars = 1; \
2224 gcpro6.level = gcpro_level++; \
2225 gcprolist = &gcpro6; }
2226
2227 #define UNGCPRO \
2228 ((--gcpro_level != gcpro1.level) \
2229 ? (abort (), 0) \
2230 : ((gcprolist = gcpro1.next), 0))
2231
2232 #endif /* DEBUG_GCPRO */
2233 #endif /* GC_MARK_STACK != GC_MAKE_GCPROS_NOOPS */
2234
2235
2236 /* Evaluate expr, UNGCPRO, and then return the value of expr. */
2237 #define RETURN_UNGCPRO(expr) \
2238 do \
2239 { \
2240 Lisp_Object ret_ungc_val; \
2241 ret_ungc_val = (expr); \
2242 UNGCPRO; \
2243 return ret_ungc_val; \
2244 } \
2245 while (0)
2246
2247 /* Call staticpro (&var) to protect static variable `var'. */
2248
2249 void staticpro (Lisp_Object *);
2250 \f
2251 /* Declare a Lisp-callable function. The MAXARGS parameter has the same
2252 meaning as in the DEFUN macro, and is used to construct a prototype. */
2253 /* We can use the same trick as in the DEFUN macro to generate the
2254 appropriate prototype. */
2255 #define EXFUN(fnname, maxargs) \
2256 extern Lisp_Object fnname DEFUN_ARGS_ ## maxargs
2257
2258 /* Forward declarations for prototypes. */
2259 struct window;
2260 struct frame;
2261
2262 /* Defined in data.c */
2263 extern Lisp_Object Qnil, Qt, Qquote, Qlambda, Qsubr, Qunbound;
2264 extern Lisp_Object Qerror_conditions, Qerror_message, Qtop_level;
2265 extern Lisp_Object Qerror, Qquit, Qwrong_type_argument, Qargs_out_of_range;
2266 extern Lisp_Object Qvoid_variable, Qvoid_function;
2267 extern Lisp_Object Qsetting_constant, Qinvalid_read_syntax;
2268 extern Lisp_Object Qinvalid_function, Qwrong_number_of_arguments, Qno_catch;
2269 extern Lisp_Object Qend_of_file, Qarith_error, Qmark_inactive;
2270 extern Lisp_Object Qbeginning_of_buffer, Qend_of_buffer, Qbuffer_read_only;
2271 extern Lisp_Object Qtext_read_only;
2272 extern Lisp_Object Qinteractive_form;
2273
2274 extern Lisp_Object Qintegerp, Qnatnump, Qwholenump, Qsymbolp, Qlistp, Qconsp;
2275 extern Lisp_Object Qstringp, Qarrayp, Qsequencep, Qbufferp;
2276 extern Lisp_Object Qchar_or_string_p, Qmarkerp, Qinteger_or_marker_p, Qvectorp;
2277 extern Lisp_Object Qbuffer_or_string_p;
2278 extern Lisp_Object Qboundp, Qfboundp;
2279 extern Lisp_Object Qchar_table_p, Qvector_or_char_table_p;
2280
2281 extern Lisp_Object Qcdr;
2282
2283 extern Lisp_Object Qrange_error, Qdomain_error, Qsingularity_error;
2284 extern Lisp_Object Qoverflow_error, Qunderflow_error;
2285
2286 extern Lisp_Object Qfloatp;
2287 extern Lisp_Object Qnumberp, Qnumber_or_marker_p;
2288
2289 extern Lisp_Object Qinteger;
2290
2291 extern Lisp_Object Qfont_spec, Qfont_entity, Qfont_object;
2292
2293 extern void circular_list_error (Lisp_Object) NO_RETURN;
2294 EXFUN (Finteractive_form, 1);
2295 EXFUN (Fbyteorder, 0);
2296
2297 /* Defined in frame.c */
2298 extern Lisp_Object Qframep;
2299
2300 EXFUN (Feq, 2);
2301 EXFUN (Fnull, 1);
2302 EXFUN (Flistp, 1);
2303 EXFUN (Fconsp, 1);
2304 EXFUN (Fatom, 1);
2305 EXFUN (Fnlistp, 1);
2306 EXFUN (Fintegerp, 1);
2307 EXFUN (Fnatnump, 1);
2308 EXFUN (Fsymbolp, 1);
2309 EXFUN (Fvectorp, 1);
2310 EXFUN (Fstringp, 1);
2311 EXFUN (Fmultibyte_string_p, 1);
2312 EXFUN (Farrayp, 1);
2313 EXFUN (Fsequencep, 1);
2314 EXFUN (Fbufferp, 1);
2315 EXFUN (Fmarkerp, 1);
2316 EXFUN (Fsubrp, 1);
2317 EXFUN (Fchar_or_string_p, 1);
2318 EXFUN (Finteger_or_marker_p, 1);
2319 EXFUN (Ffloatp, 1);
2320 EXFUN (Finteger_or_floatp, 1);
2321 EXFUN (Finteger_or_float_or_marker_p, 1);
2322
2323 EXFUN (Fcar, 1);
2324 EXFUN (Fcar_safe, 1);
2325 EXFUN (Fcdr, 1);
2326 EXFUN (Fcdr_safe, 1);
2327 EXFUN (Fsetcar, 2);
2328 EXFUN (Fsetcdr, 2);
2329 EXFUN (Fboundp, 1);
2330 EXFUN (Ffboundp, 1);
2331 EXFUN (Fmakunbound, 1);
2332 EXFUN (Ffmakunbound, 1);
2333 EXFUN (Fsymbol_function, 1);
2334 EXFUN (Fsymbol_plist, 1);
2335 EXFUN (Fsymbol_name, 1);
2336 extern Lisp_Object indirect_function (Lisp_Object);
2337 EXFUN (Findirect_function, 2);
2338 EXFUN (Ffset, 2);
2339 EXFUN (Fsetplist, 2);
2340 EXFUN (Fsymbol_value, 1);
2341 extern Lisp_Object find_symbol_value (Lisp_Object);
2342 EXFUN (Fset, 2);
2343 EXFUN (Fdefault_value, 1);
2344 EXFUN (Fset_default, 2);
2345 EXFUN (Fdefault_boundp, 1);
2346 EXFUN (Fmake_local_variable, 1);
2347 EXFUN (Flocal_variable_p, 2);
2348 EXFUN (Flocal_variable_if_set_p, 2);
2349
2350 EXFUN (Faref, 2);
2351 EXFUN (Faset, 3);
2352
2353 EXFUN (Fstring_to_number, 2);
2354 EXFUN (Fnumber_to_string, 1);
2355 EXFUN (Feqlsign, 2);
2356 EXFUN (Fgtr, 2);
2357 EXFUN (Flss, 2);
2358 EXFUN (Fgeq, 2);
2359 EXFUN (Fleq, 2);
2360 EXFUN (Fneq, 2);
2361 EXFUN (Fzerop, 1);
2362 EXFUN (Fplus, MANY);
2363 EXFUN (Fminus, MANY);
2364 EXFUN (Ftimes, MANY);
2365 EXFUN (Fquo, MANY);
2366 EXFUN (Frem, 2);
2367 EXFUN (Fmax, MANY);
2368 EXFUN (Fmin, MANY);
2369 EXFUN (Flogand, MANY);
2370 EXFUN (Flogior, MANY);
2371 EXFUN (Flogxor, MANY);
2372 EXFUN (Flognot, 1);
2373 EXFUN (Flsh, 2);
2374 EXFUN (Fash, 2);
2375
2376 EXFUN (Fadd1, 1);
2377 EXFUN (Fsub1, 1);
2378 EXFUN (Fmake_variable_buffer_local, 1);
2379
2380 extern struct Lisp_Symbol *indirect_variable (struct Lisp_Symbol *);
2381 extern Lisp_Object long_to_cons (unsigned long);
2382 extern unsigned long cons_to_long (Lisp_Object);
2383 extern void args_out_of_range (Lisp_Object, Lisp_Object) NO_RETURN;
2384 extern void args_out_of_range_3 (Lisp_Object, Lisp_Object,
2385 Lisp_Object) NO_RETURN;
2386 extern Lisp_Object wrong_type_argument (Lisp_Object, Lisp_Object) NO_RETURN;
2387 extern Lisp_Object do_symval_forwarding (union Lisp_Fwd *);
2388 extern void set_internal (Lisp_Object, Lisp_Object, Lisp_Object, int);
2389 extern void syms_of_data (void);
2390 extern void init_data (void);
2391 extern void swap_in_global_binding (struct Lisp_Symbol *);
2392
2393 /* Defined in cmds.c */
2394 EXFUN (Fend_of_line, 1);
2395 EXFUN (Fforward_char, 1);
2396 EXFUN (Fforward_line, 1);
2397 extern void syms_of_cmds (void);
2398 extern void keys_of_cmds (void);
2399
2400 /* Defined in coding.c */
2401 EXFUN (Fcoding_system_p, 1);
2402 EXFUN (Fcoding_system_base, 1);
2403 EXFUN (Fcoding_system_eol_type, 1);
2404 EXFUN (Fcheck_coding_system, 1);
2405 EXFUN (Fcheck_coding_system, 1);
2406 EXFUN (Fread_coding_system, 2);
2407 EXFUN (Fread_non_nil_coding_system, 1);
2408 EXFUN (Ffind_operation_coding_system, MANY);
2409 EXFUN (Fupdate_coding_systems_internal, 0);
2410 EXFUN (Fencode_coding_string, 4);
2411 EXFUN (Fdecode_coding_string, 4);
2412 extern Lisp_Object detect_coding_system (const unsigned char *, EMACS_INT,
2413 EMACS_INT, int, int, Lisp_Object);
2414 extern void init_coding (void);
2415 extern void init_coding_once (void);
2416 extern void syms_of_coding (void);
2417
2418 /* Defined in character.c */
2419 extern void init_character_once (void);
2420 extern void syms_of_character (void);
2421 EXFUN (Funibyte_char_to_multibyte, 1);
2422
2423 /* Defined in charset.c */
2424 EXFUN (Fchar_bytes, 1);
2425 EXFUN (Fchar_width, 1);
2426 EXFUN (Fstring, MANY);
2427 extern EMACS_INT chars_in_text (const unsigned char *, EMACS_INT);
2428 extern EMACS_INT multibyte_chars_in_text (const unsigned char *, EMACS_INT);
2429 extern int multibyte_char_to_unibyte (int, Lisp_Object);
2430 extern int multibyte_char_to_unibyte_safe (int);
2431 extern Lisp_Object Qcharset;
2432 extern void init_charset (void);
2433 extern void init_charset_once (void);
2434 extern void syms_of_charset (void);
2435 /* Structure forward declarations. */
2436 struct charset;
2437
2438 /* Defined in composite.c */
2439 extern void syms_of_composite (void);
2440
2441 /* Defined in syntax.c */
2442 EXFUN (Fforward_word, 1);
2443 EXFUN (Fskip_chars_forward, 2);
2444 EXFUN (Fskip_chars_backward, 2);
2445 EXFUN (Fsyntax_table_p, 1);
2446 EXFUN (Fsyntax_table, 0);
2447 EXFUN (Fset_syntax_table, 1);
2448 extern void init_syntax_once (void);
2449 extern void syms_of_syntax (void);
2450
2451 /* Defined in fns.c */
2452 extern int use_dialog_box;
2453 extern int use_file_dialog;
2454 extern int next_almost_prime (int);
2455 extern Lisp_Object larger_vector (Lisp_Object, int, Lisp_Object);
2456 extern void sweep_weak_hash_tables (void);
2457 extern Lisp_Object Qcursor_in_echo_area;
2458 extern Lisp_Object Qstring_lessp;
2459 extern Lisp_Object Vfeatures;
2460 extern Lisp_Object QCsize, QCtest, QCweakness, Qequal, Qeq;
2461 unsigned sxhash (Lisp_Object, int);
2462 Lisp_Object make_hash_table (Lisp_Object, Lisp_Object, Lisp_Object,
2463 Lisp_Object, Lisp_Object, Lisp_Object,
2464 Lisp_Object);
2465 Lisp_Object copy_hash_table (struct Lisp_Hash_Table *);
2466 int hash_lookup (struct Lisp_Hash_Table *, Lisp_Object, unsigned *);
2467 int hash_put (struct Lisp_Hash_Table *, Lisp_Object, Lisp_Object,
2468 unsigned);
2469 void hash_clear (struct Lisp_Hash_Table *);
2470 void init_weak_hash_tables (void);
2471 extern void init_fns (void);
2472 EXFUN (Fsxhash, 1);
2473 EXFUN (Fmake_hash_table, MANY);
2474 EXFUN (Fmakehash, 1);
2475 EXFUN (Fcopy_hash_table, 1);
2476 EXFUN (Fhash_table_count, 1);
2477 EXFUN (Fhash_table_rehash_size, 1);
2478 EXFUN (Fhash_table_rehash_threshold, 1);
2479 EXFUN (Fhash_table_size, 1);
2480 EXFUN (Fhash_table_test, 1);
2481 EXFUN (Fhash_table_weak, 1);
2482 EXFUN (Fhash_table_p, 1);
2483 EXFUN (Fclrhash, 1);
2484 EXFUN (Fgethash, 3);
2485 EXFUN (Fputhash, 3);
2486 EXFUN (Fremhash, 2);
2487 EXFUN (Fmaphash, 2);
2488 EXFUN (Fdefine_hash_table_test, 3);
2489
2490 EXFUN (Fidentity, 1);
2491 EXFUN (Frandom, 1);
2492 EXFUN (Flength, 1);
2493 EXFUN (Fsafe_length, 1);
2494 EXFUN (Fappend, MANY);
2495 EXFUN (Fconcat, MANY);
2496 EXFUN (Fvconcat, MANY);
2497 EXFUN (Fcopy_sequence, 1);
2498 EXFUN (Fstring_make_multibyte, 1);
2499 EXFUN (Fstring_make_unibyte, 1);
2500 EXFUN (Fstring_as_multibyte, 1);
2501 EXFUN (Fstring_as_unibyte, 1);
2502 EXFUN (Fstring_to_multibyte, 1);
2503 EXFUN (Fstring_to_unibyte, 1);
2504 EXFUN (Fsubstring, 3);
2505 extern Lisp_Object substring_both (Lisp_Object, int, int, int, int);
2506 EXFUN (Fnth, 2);
2507 EXFUN (Fnthcdr, 2);
2508 EXFUN (Fmemq, 2);
2509 EXFUN (Fassq, 2);
2510 EXFUN (Fassoc, 2);
2511 EXFUN (Felt, 2);
2512 EXFUN (Fmember, 2);
2513 EXFUN (Frassq, 2);
2514 EXFUN (Fdelq, 2);
2515 EXFUN (Fdelete, 2);
2516 EXFUN (Fsort, 2);
2517 EXFUN (Freverse, 1);
2518 EXFUN (Fnreverse, 1);
2519 EXFUN (Fget, 2);
2520 EXFUN (Fput, 3);
2521 EXFUN (Fequal, 2);
2522 EXFUN (Ffillarray, 2);
2523 EXFUN (Fnconc, MANY);
2524 EXFUN (Fmapcar, 2);
2525 EXFUN (Fmapconcat, 3);
2526 EXFUN (Fy_or_n_p, 1);
2527 extern Lisp_Object do_yes_or_no_p (Lisp_Object);
2528 EXFUN (Frequire, 3);
2529 EXFUN (Fprovide, 2);
2530 extern Lisp_Object concat2 (Lisp_Object, Lisp_Object);
2531 extern Lisp_Object concat3 (Lisp_Object, Lisp_Object, Lisp_Object);
2532 extern Lisp_Object nconc2 (Lisp_Object, Lisp_Object);
2533 extern Lisp_Object assq_no_quit (Lisp_Object, Lisp_Object);
2534 extern Lisp_Object assoc_no_quit (Lisp_Object, Lisp_Object);
2535 extern void clear_string_char_byte_cache (void);
2536 extern EMACS_INT string_char_to_byte (Lisp_Object, EMACS_INT);
2537 extern EMACS_INT string_byte_to_char (Lisp_Object, EMACS_INT);
2538 extern Lisp_Object string_make_multibyte (Lisp_Object);
2539 extern Lisp_Object string_to_multibyte (Lisp_Object);
2540 extern Lisp_Object string_make_unibyte (Lisp_Object);
2541 EXFUN (Fcopy_alist, 1);
2542 EXFUN (Fplist_get, 2);
2543 EXFUN (Fplist_put, 3);
2544 EXFUN (Fplist_member, 2);
2545 EXFUN (Frassoc, 2);
2546 EXFUN (Fstring_equal, 2);
2547 EXFUN (Fcompare_strings, 7);
2548 EXFUN (Fstring_lessp, 2);
2549 extern void syms_of_fns (void);
2550
2551 /* Defined in floatfns.c */
2552 extern double extract_float (Lisp_Object);
2553 EXFUN (Ffloat, 1);
2554 EXFUN (Ftruncate, 2);
2555 extern void init_floatfns (void);
2556 extern void syms_of_floatfns (void);
2557
2558 /* Defined in fringe.c */
2559 extern void syms_of_fringe (void);
2560 extern void init_fringe (void);
2561 extern void init_fringe_once (void);
2562
2563 /* Defined in image.c */
2564 extern Lisp_Object QCascent, QCmargin, QCrelief, Qcount, Qextension_data;
2565 extern Lisp_Object QCconversion, QCcolor_symbols, QCheuristic_mask;
2566 extern Lisp_Object QCindex, QCmatrix, QCcolor_adjustment, QCmask;
2567 EXFUN (Finit_image_library, 2);
2568 extern void syms_of_image (void);
2569 extern void init_image (void);
2570
2571 /* Defined in insdel.c */
2572 extern Lisp_Object Qinhibit_modification_hooks;
2573 extern void move_gap (EMACS_INT);
2574 extern void move_gap_both (EMACS_INT, EMACS_INT);
2575 extern void make_gap (EMACS_INT);
2576 extern EMACS_INT copy_text (const unsigned char *, unsigned char *,
2577 EMACS_INT, int, int);
2578 extern EMACS_INT count_size_as_multibyte (const unsigned char *, EMACS_INT);
2579 extern int count_combining_before (const unsigned char *,
2580 EMACS_INT, EMACS_INT, EMACS_INT);
2581 extern int count_combining_after (const unsigned char *,
2582 EMACS_INT, EMACS_INT, EMACS_INT);
2583 extern void insert (const unsigned char *, EMACS_INT);
2584 extern void insert_and_inherit (const unsigned char *, EMACS_INT);
2585 extern void insert_1 (const unsigned char *, EMACS_INT, int, int, int);
2586 extern void insert_1_both (const unsigned char *, EMACS_INT, EMACS_INT,
2587 int, int, int);
2588 extern void insert_from_gap (EMACS_INT, EMACS_INT);
2589 extern void insert_from_string (Lisp_Object, EMACS_INT, EMACS_INT,
2590 EMACS_INT, EMACS_INT, int);
2591 extern void insert_from_buffer (struct buffer *, EMACS_INT, EMACS_INT, int);
2592 extern void insert_char (int);
2593 extern void insert_string (const char *);
2594 extern void insert_before_markers (const unsigned char *, EMACS_INT);
2595 extern void insert_before_markers_and_inherit (const unsigned char *,
2596 EMACS_INT);
2597 extern void insert_from_string_before_markers (Lisp_Object, EMACS_INT,
2598 EMACS_INT, EMACS_INT,
2599 EMACS_INT, int);
2600 extern void del_range (EMACS_INT, EMACS_INT);
2601 extern Lisp_Object del_range_1 (EMACS_INT, EMACS_INT, int, int);
2602 extern void del_range_byte (EMACS_INT, EMACS_INT, int);
2603 extern void del_range_both (EMACS_INT, EMACS_INT, EMACS_INT, EMACS_INT, int);
2604 extern Lisp_Object del_range_2 (EMACS_INT, EMACS_INT,
2605 EMACS_INT, EMACS_INT, int);
2606 extern void modify_region (struct buffer *, EMACS_INT, EMACS_INT, int);
2607 extern void prepare_to_modify_buffer (EMACS_INT, EMACS_INT, EMACS_INT *);
2608 extern void signal_before_change (EMACS_INT, EMACS_INT, EMACS_INT *);
2609 extern void signal_after_change (EMACS_INT, EMACS_INT, EMACS_INT);
2610 extern void adjust_after_replace (EMACS_INT, EMACS_INT, Lisp_Object,
2611 EMACS_INT, EMACS_INT);
2612 extern void adjust_after_replace_noundo (EMACS_INT, EMACS_INT, EMACS_INT,
2613 EMACS_INT, EMACS_INT, EMACS_INT);
2614 extern void adjust_after_insert (EMACS_INT, EMACS_INT, EMACS_INT,
2615 EMACS_INT, EMACS_INT);
2616 extern void adjust_markers_for_delete (EMACS_INT, EMACS_INT,
2617 EMACS_INT, EMACS_INT);
2618 extern void replace_range (EMACS_INT, EMACS_INT, Lisp_Object, int, int, int);
2619 extern void replace_range_2 (EMACS_INT, EMACS_INT, EMACS_INT, EMACS_INT,
2620 const char *, EMACS_INT, EMACS_INT, int);
2621 extern void syms_of_insdel (void);
2622
2623 /* Defined in dispnew.c */
2624 extern Lisp_Object selected_frame;
2625 extern EMACS_INT baud_rate;
2626 EXFUN (Fding, 1);
2627 EXFUN (Fredraw_frame, 1);
2628 EXFUN (Fredraw_display, 0);
2629 EXFUN (Fsleep_for, 2);
2630 EXFUN (Fredisplay, 1);
2631 extern Lisp_Object sit_for (Lisp_Object, int, int);
2632 extern void init_display (void);
2633 extern void syms_of_display (void);
2634
2635 /* Defined in xdisp.c */
2636 extern Lisp_Object Qinhibit_point_motion_hooks;
2637 extern Lisp_Object Qinhibit_redisplay, Qdisplay;
2638 extern Lisp_Object Qinhibit_eval_during_redisplay;
2639 extern Lisp_Object Qmessage_truncate_lines;
2640 extern Lisp_Object Qimage, Qtext, Qboth, Qboth_horiz, Qtext_image_horiz;
2641 extern Lisp_Object Qspace, Qcenter, QCalign_to;
2642 extern Lisp_Object Vmessage_log_max;
2643 extern Lisp_Object QCdata, QCfile;
2644 extern Lisp_Object Qrisky_local_variable;
2645 extern int message_enable_multibyte;
2646 extern Lisp_Object echo_area_buffer[2];
2647 extern void add_to_log (const char *, Lisp_Object, Lisp_Object);
2648 extern void check_message_stack (void);
2649 extern void setup_echo_area_for_printing (int);
2650 extern int push_message (void);
2651 extern Lisp_Object pop_message_unwind (Lisp_Object);
2652 extern Lisp_Object restore_message_unwind (Lisp_Object);
2653 extern void pop_message (void);
2654 extern void restore_message (void);
2655 extern Lisp_Object current_message (void);
2656 extern void set_message (const char *s, Lisp_Object, int, int);
2657 extern void clear_message (int, int);
2658 extern void message (const char *, ...);
2659 extern void message_nolog (const char *, ...);
2660 extern void message1 (const char *);
2661 extern void message1_nolog (const char *);
2662 extern void message2 (const char *, int, int);
2663 extern void message2_nolog (const char *, int, int);
2664 extern void message3 (Lisp_Object, int, int);
2665 extern void message3_nolog (Lisp_Object, int, int);
2666 extern void message_dolog (const char *, int, int, int);
2667 extern void message_with_string (const char *, Lisp_Object, int);
2668 extern void message_log_maybe_newline (void);
2669 extern void update_echo_area (void);
2670 extern void truncate_echo_area (int);
2671 extern void redisplay (void);
2672 extern int check_point_in_composition
2673 (struct buffer *, int, struct buffer *, int);
2674 extern void redisplay_preserve_echo_area (int);
2675 extern void prepare_menu_bars (void);
2676
2677 void set_frame_cursor_types (struct frame *, Lisp_Object);
2678 extern void syms_of_xdisp (void);
2679 extern void init_xdisp (void);
2680 extern Lisp_Object safe_eval (Lisp_Object);
2681 extern int pos_visible_p (struct window *, int, int *,
2682 int *, int *, int *, int *, int *);
2683
2684 /* Defined in xsettings.c */
2685 extern void syms_of_xsettings (void);
2686
2687 /* Defined in vm-limit.c. */
2688 extern void memory_warnings (POINTER_TYPE *, void (*warnfun) (const char *));
2689
2690 /* Defined in alloc.c */
2691 extern void check_pure_size (void);
2692 extern void allocate_string_data (struct Lisp_String *, int, int);
2693 extern void reset_malloc_hooks (void);
2694 extern void uninterrupt_malloc (void);
2695 extern void malloc_warning (const char *);
2696 extern void memory_full (void) NO_RETURN;
2697 extern void buffer_memory_full (void) NO_RETURN;
2698 extern int survives_gc_p (Lisp_Object);
2699 extern void mark_object (Lisp_Object);
2700 extern Lisp_Object Vpurify_flag;
2701 extern Lisp_Object Vmemory_full;
2702 extern Lisp_Object *stack_base;
2703 EXFUN (Fcons, 2);
2704 EXFUN (list1, 1);
2705 EXFUN (list2, 2);
2706 EXFUN (list3, 3);
2707 EXFUN (list4, 4);
2708 EXFUN (list5, 5);
2709 EXFUN (Flist, MANY);
2710 EXFUN (Fmake_list, 2);
2711 extern Lisp_Object allocate_misc (void);
2712 EXFUN (Fmake_vector, 2);
2713 EXFUN (Fvector, MANY);
2714 EXFUN (Fmake_symbol, 1);
2715 EXFUN (Fmake_marker, 0);
2716 EXFUN (Fmake_string, 2);
2717 extern Lisp_Object build_string (const char *);
2718 extern Lisp_Object make_string (const char *, int);
2719 extern Lisp_Object make_unibyte_string (const char *, int);
2720 extern Lisp_Object make_multibyte_string (const char *, int, int);
2721 extern Lisp_Object make_event_array (int, Lisp_Object *);
2722 extern Lisp_Object make_uninit_string (int);
2723 extern Lisp_Object make_uninit_multibyte_string (int, int);
2724 extern Lisp_Object make_string_from_bytes (const char *, int, int);
2725 extern Lisp_Object make_specified_string (const char *, int, int, int);
2726 EXFUN (Fpurecopy, 1);
2727 extern Lisp_Object make_pure_string (const char *, int, int, int);
2728 extern Lisp_Object make_pure_c_string (const char *data);
2729 extern Lisp_Object pure_cons (Lisp_Object, Lisp_Object);
2730 extern Lisp_Object make_pure_vector (EMACS_INT);
2731 EXFUN (Fgarbage_collect, 0);
2732 EXFUN (Fmake_byte_code, MANY);
2733 EXFUN (Fmake_bool_vector, 2);
2734 extern Lisp_Object Qchar_table_extra_slots;
2735 extern struct Lisp_Vector *allocate_vector (EMACS_INT);
2736 extern struct Lisp_Vector *allocate_pseudovector (int memlen, int lisplen, EMACS_INT tag);
2737 #define ALLOCATE_PSEUDOVECTOR(typ,field,tag) \
2738 ((typ*) \
2739 allocate_pseudovector \
2740 (VECSIZE (typ), PSEUDOVECSIZE (typ, field), tag))
2741 extern struct Lisp_Hash_Table *allocate_hash_table (void);
2742 extern struct window *allocate_window (void);
2743 extern struct frame *allocate_frame (void);
2744 extern struct Lisp_Process *allocate_process (void);
2745 extern struct terminal *allocate_terminal (void);
2746 extern int gc_in_progress;
2747 extern int abort_on_gc;
2748 extern Lisp_Object make_float (double);
2749 extern void display_malloc_warning (void);
2750 extern int inhibit_garbage_collection (void);
2751 extern Lisp_Object make_save_value (void *, int);
2752 extern void free_misc (Lisp_Object);
2753 extern void free_marker (Lisp_Object);
2754 extern void free_cons (struct Lisp_Cons *);
2755 extern void init_alloc_once (void);
2756 extern void init_alloc (void);
2757 extern void syms_of_alloc (void);
2758 extern struct buffer * allocate_buffer (void);
2759 extern int valid_lisp_object_p (Lisp_Object);
2760
2761 /* Defined in chartab.c */
2762 EXFUN (Fmake_char_table, 2);
2763 EXFUN (Fchar_table_parent, 1);
2764 EXFUN (Fset_char_table_parent, 2);
2765 EXFUN (Fchar_table_extra_slot, 2);
2766 EXFUN (Fset_char_table_extra_slot, 3);
2767 EXFUN (Fchar_table_range, 2);
2768 EXFUN (Fset_char_table_range, 3);
2769 EXFUN (Fset_char_table_default, 3);
2770 EXFUN (Foptimize_char_table, 2);
2771 EXFUN (Fmap_char_table, 2);
2772 extern Lisp_Object copy_char_table (Lisp_Object);
2773 extern Lisp_Object sub_char_table_ref (Lisp_Object, int);
2774 extern Lisp_Object char_table_ref (Lisp_Object, int);
2775 extern Lisp_Object char_table_ref_and_range (Lisp_Object, int,
2776 int *, int *);
2777 extern Lisp_Object char_table_set (Lisp_Object, int, Lisp_Object);
2778 extern Lisp_Object char_table_set_range (Lisp_Object, int, int,
2779 Lisp_Object);
2780 extern int char_table_translate (Lisp_Object, int);
2781 extern void map_char_table (void (*) (Lisp_Object, Lisp_Object,
2782 Lisp_Object),
2783 Lisp_Object, Lisp_Object, Lisp_Object);
2784 extern void map_char_table_for_charset (void (*c_function) (Lisp_Object, Lisp_Object),
2785 Lisp_Object, Lisp_Object,
2786 Lisp_Object, struct charset *,
2787 unsigned, unsigned);
2788 extern void syms_of_chartab (void);
2789
2790 /* Defined in print.c */
2791 extern Lisp_Object Vprin1_to_string_buffer;
2792 extern Lisp_Object Vprint_level;
2793 extern void debug_print (Lisp_Object);
2794 EXFUN (Fprin1, 2);
2795 EXFUN (Fprin1_to_string, 2);
2796 EXFUN (Fprinc, 2);
2797 EXFUN (Fterpri, 1);
2798 EXFUN (Fprint, 2);
2799 EXFUN (Ferror_message_string, 1);
2800 extern Lisp_Object Vstandard_output, Qstandard_output;
2801 extern Lisp_Object Qexternal_debugging_output;
2802 extern void temp_output_buffer_setup (const char *);
2803 extern int print_level, print_escape_newlines;
2804 extern Lisp_Object Qprint_escape_newlines;
2805 extern void write_string (const char *, int);
2806 extern void write_string_1 (const char *, int, Lisp_Object);
2807 extern void print_error_message (Lisp_Object, Lisp_Object, const char *,
2808 Lisp_Object);
2809 extern Lisp_Object internal_with_output_to_temp_buffer
2810 (const char *, Lisp_Object (*) (Lisp_Object), Lisp_Object);
2811 extern void float_to_string (unsigned char *, double);
2812 extern void syms_of_print (void);
2813
2814 /* Defined in doprnt.c */
2815 extern int doprnt (char *, int, const char *, const char *, va_list);
2816
2817 /* Defined in lread.c */
2818 extern Lisp_Object Qvariable_documentation, Qstandard_input;
2819 extern Lisp_Object Qfunction;
2820 extern Lisp_Object Vobarray, initial_obarray, Vstandard_input;
2821 EXFUN (Fread, 1);
2822 EXFUN (Fread_from_string, 3);
2823 EXFUN (Fintern, 2);
2824 EXFUN (Fintern_soft, 2);
2825 EXFUN (Fload, 5);
2826 EXFUN (Fget_load_suffixes, 0);
2827 EXFUN (Fget_file_char, 0);
2828 EXFUN (Fread_char, 3);
2829 EXFUN (Fread_event, 3);
2830 extern Lisp_Object read_filtered_event (int, int, int, int, Lisp_Object);
2831 EXFUN (Feval_region, 4);
2832 extern Lisp_Object check_obarray (Lisp_Object);
2833 extern Lisp_Object intern (const char *);
2834 extern Lisp_Object intern_c_string (const char *);
2835 extern Lisp_Object make_symbol (const char *);
2836 extern Lisp_Object oblookup (Lisp_Object, const char *, int, int);
2837 #define LOADHIST_ATTACH(x) \
2838 do { \
2839 if (initialized) Vcurrent_load_list = Fcons (x, Vcurrent_load_list); \
2840 } while (0)
2841 extern Lisp_Object Vcurrent_load_list;
2842 extern Lisp_Object Vload_history, Vload_suffixes, Vload_file_rep_suffixes;
2843 extern int openp (Lisp_Object, Lisp_Object, Lisp_Object,
2844 Lisp_Object *, Lisp_Object);
2845 extern int isfloat_string (const char *, int);
2846 extern void map_obarray (Lisp_Object, void (*) (Lisp_Object, Lisp_Object),
2847 Lisp_Object);
2848 extern void dir_warning (const char *, Lisp_Object);
2849 extern void close_load_descs (void);
2850 extern void init_obarray (void);
2851 extern void init_lread (void);
2852 extern void syms_of_lread (void);
2853
2854 /* Defined in eval.c */
2855 extern Lisp_Object Qautoload, Qexit, Qinteractive, Qcommandp, Qdefun, Qmacro;
2856 extern Lisp_Object Vinhibit_quit, Qinhibit_quit, Vquit_flag;
2857 extern Lisp_Object Vautoload_queue;
2858 extern Lisp_Object Vdebug_on_error;
2859 extern Lisp_Object Vsignaling_function;
2860 extern int handling_signal;
2861 extern int debug_on_next_call;
2862 extern int interactive_p (int);
2863
2864 /* To run a normal hook, use the appropriate function from the list below.
2865 The calling convention:
2866
2867 if (!NILP (Vrun_hooks))
2868 call1 (Vrun_hooks, Qmy_funny_hook);
2869
2870 should no longer be used. */
2871 extern Lisp_Object Vrun_hooks;
2872 EXFUN (Frun_hooks, MANY);
2873 EXFUN (Frun_hook_with_args, MANY);
2874 EXFUN (Frun_hook_with_args_until_success, MANY);
2875 EXFUN (Frun_hook_with_args_until_failure, MANY);
2876 extern Lisp_Object run_hook_list_with_args (Lisp_Object, int, Lisp_Object *);
2877 extern void run_hook_with_args_2 (Lisp_Object, Lisp_Object, Lisp_Object);
2878 EXFUN (Fand, UNEVALLED);
2879 EXFUN (For, UNEVALLED);
2880 EXFUN (Fif, UNEVALLED);
2881 EXFUN (Fprogn, UNEVALLED);
2882 EXFUN (Fprog1, UNEVALLED);
2883 EXFUN (Fprog2, UNEVALLED);
2884 EXFUN (Fsetq, UNEVALLED);
2885 EXFUN (Fquote, UNEVALLED);
2886 EXFUN (Fuser_variable_p, 1);
2887 EXFUN (Finteractive_p, 0);
2888 EXFUN (Fdefun, UNEVALLED);
2889 EXFUN (Flet, UNEVALLED);
2890 EXFUN (FletX, UNEVALLED);
2891 EXFUN (Fwhile, UNEVALLED);
2892 EXFUN (Fcatch, UNEVALLED);
2893 EXFUN (Fthrow, 2) NO_RETURN;
2894 EXFUN (Funwind_protect, UNEVALLED);
2895 EXFUN (Fcondition_case, UNEVALLED);
2896 EXFUN (Fsignal, 2);
2897 extern void xsignal (Lisp_Object, Lisp_Object) NO_RETURN;
2898 extern void xsignal0 (Lisp_Object) NO_RETURN;
2899 extern void xsignal1 (Lisp_Object, Lisp_Object) NO_RETURN;
2900 extern void xsignal2 (Lisp_Object, Lisp_Object, Lisp_Object) NO_RETURN;
2901 extern void xsignal3 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object) NO_RETURN;
2902 extern void signal_error (const char *, Lisp_Object) NO_RETURN;
2903 EXFUN (Fautoload, 5);
2904 EXFUN (Fcommandp, 2);
2905 EXFUN (Feval, 1);
2906 EXFUN (Fapply, MANY);
2907 EXFUN (Ffuncall, MANY);
2908 EXFUN (Fbacktrace, 0);
2909 extern Lisp_Object apply1 (Lisp_Object, Lisp_Object);
2910 extern Lisp_Object call0 (Lisp_Object);
2911 extern Lisp_Object call1 (Lisp_Object, Lisp_Object);
2912 extern Lisp_Object call2 (Lisp_Object, Lisp_Object, Lisp_Object);
2913 extern Lisp_Object call3 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
2914 extern Lisp_Object call4 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
2915 extern Lisp_Object call5 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
2916 extern Lisp_Object call6 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
2917 extern Lisp_Object call7 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
2918 EXFUN (Fdo_auto_save, 2);
2919 extern Lisp_Object apply_lambda (Lisp_Object, Lisp_Object, int);
2920 extern Lisp_Object internal_catch (Lisp_Object, Lisp_Object (*) (Lisp_Object), Lisp_Object);
2921 extern Lisp_Object internal_lisp_condition_case (Lisp_Object, Lisp_Object, Lisp_Object);
2922 extern Lisp_Object internal_condition_case (Lisp_Object (*) (void), Lisp_Object, Lisp_Object (*) (Lisp_Object));
2923 extern Lisp_Object internal_condition_case_1 (Lisp_Object (*) (Lisp_Object), Lisp_Object, Lisp_Object, Lisp_Object (*) (Lisp_Object));
2924 extern Lisp_Object internal_condition_case_2 (Lisp_Object (*) (Lisp_Object, Lisp_Object), Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object (*) (Lisp_Object));
2925 extern Lisp_Object internal_condition_case_n (Lisp_Object (*) (int, Lisp_Object *), int, Lisp_Object *, Lisp_Object, Lisp_Object (*) (Lisp_Object));
2926 extern void specbind (Lisp_Object, Lisp_Object);
2927 extern void record_unwind_protect (Lisp_Object (*) (Lisp_Object), Lisp_Object);
2928 extern Lisp_Object unbind_to (int, Lisp_Object);
2929 extern void error (const char *, ...) NO_RETURN;
2930 extern void verror (const char *, va_list) NO_RETURN;
2931 extern void do_autoload (Lisp_Object, Lisp_Object);
2932 extern Lisp_Object un_autoload (Lisp_Object);
2933 EXFUN (Ffetch_bytecode, 1);
2934 extern void init_eval_once (void);
2935 extern Lisp_Object safe_call (int, Lisp_Object *);
2936 extern Lisp_Object safe_call1 (Lisp_Object, Lisp_Object);
2937 extern Lisp_Object safe_call2 (Lisp_Object, Lisp_Object, Lisp_Object);
2938 extern void init_eval (void);
2939 extern void syms_of_eval (void);
2940
2941 /* Defined in editfns.c */
2942 extern Lisp_Object Qfield;
2943 extern Lisp_Object Vinhibit_field_text_motion;
2944 extern Lisp_Object Vuser_login_name;
2945 EXFUN (Fpropertize, MANY);
2946 EXFUN (Fcurrent_message, 0);
2947 EXFUN (Fgoto_char, 1);
2948 EXFUN (Fpoint_min_marker, 0);
2949 EXFUN (Fpoint_max_marker, 0);
2950 EXFUN (Fpoint_min, 0);
2951 EXFUN (Fpoint_max, 0);
2952 EXFUN (Fpoint, 0);
2953 EXFUN (Fpoint_marker, 0);
2954 EXFUN (Fmark_marker, 0);
2955 EXFUN (Fline_beginning_position, 1);
2956 EXFUN (Fline_end_position, 1);
2957 EXFUN (Ffollowing_char, 0);
2958 EXFUN (Fprevious_char, 0);
2959 EXFUN (Fchar_after, 1);
2960 EXFUN (Finsert, MANY);
2961 EXFUN (Finsert_and_inherit, MANY);
2962 EXFUN (Finsert_before_markers, MANY);
2963 EXFUN (Finsert_buffer_substring, 3);
2964 EXFUN (Finsert_char, 3);
2965 extern void insert1 (Lisp_Object);
2966 EXFUN (Feolp, 0);
2967 EXFUN (Feobp, 0);
2968 EXFUN (Fbolp, 0);
2969 EXFUN (Fbobp, 0);
2970 EXFUN (Fformat, MANY);
2971 EXFUN (Fmessage, MANY);
2972 extern Lisp_Object format2 (const char *, Lisp_Object, Lisp_Object);
2973 EXFUN (Fbuffer_substring, 2);
2974 EXFUN (Fbuffer_string, 0);
2975 extern Lisp_Object save_excursion_save (void);
2976 extern Lisp_Object save_restriction_save (void);
2977 extern Lisp_Object save_excursion_restore (Lisp_Object);
2978 extern Lisp_Object save_restriction_restore (Lisp_Object);
2979 EXFUN (Fchar_to_string, 1);
2980 EXFUN (Fdelete_region, 2);
2981 EXFUN (Fnarrow_to_region, 2);
2982 EXFUN (Fwiden, 0);
2983 EXFUN (Fuser_login_name, 1);
2984 EXFUN (Fsystem_name, 0);
2985 EXFUN (Fcurrent_time, 0);
2986 extern int clip_to_bounds (int, int, int);
2987 extern Lisp_Object make_buffer_string (int, int, int);
2988 extern Lisp_Object make_buffer_string_both (int, int, int, int, int);
2989 extern void init_editfns (void);
2990 extern void syms_of_editfns (void);
2991 EXFUN (Fconstrain_to_field, 5);
2992 EXFUN (Ffield_string, 1);
2993 EXFUN (Fdelete_field, 1);
2994 EXFUN (Ffield_beginning, 3);
2995 EXFUN (Ffield_end, 3);
2996 EXFUN (Ffield_string_no_properties, 1);
2997 extern void set_time_zone_rule (const char *);
2998
2999 /* Defined in buffer.c */
3000 extern int mouse_face_overlay_overlaps (Lisp_Object);
3001 extern void nsberror (Lisp_Object) NO_RETURN;
3002 EXFUN (Fset_buffer_multibyte, 1);
3003 EXFUN (Foverlay_start, 1);
3004 EXFUN (Foverlay_end, 1);
3005 EXFUN (Foverlay_buffer, 1);
3006 extern void adjust_overlays_for_insert (EMACS_INT, EMACS_INT);
3007 extern void adjust_overlays_for_delete (EMACS_INT, EMACS_INT);
3008 extern void fix_start_end_in_overlays (int, int);
3009 extern void report_overlay_modification (Lisp_Object, Lisp_Object, int,
3010 Lisp_Object, Lisp_Object, Lisp_Object);
3011 extern int overlay_touches_p (int);
3012 extern Lisp_Object Vbuffer_alist, Vinhibit_read_only;
3013 EXFUN (Fbuffer_list, 1);
3014 EXFUN (Fget_buffer, 1);
3015 EXFUN (Fget_buffer_create, 1);
3016 EXFUN (Fgenerate_new_buffer_name, 2);
3017 EXFUN (Fset_buffer, 1);
3018 EXFUN (set_buffer_if_live, 1);
3019 EXFUN (Fbarf_if_buffer_read_only, 0);
3020 EXFUN (Fcurrent_buffer, 0);
3021 EXFUN (Fswitch_to_buffer, 2);
3022 EXFUN (Fother_buffer, 3);
3023 EXFUN (Foverlay_get, 2);
3024 EXFUN (Fbuffer_modified_p, 1);
3025 EXFUN (Fset_buffer_modified_p, 1);
3026 EXFUN (Fkill_buffer, 1);
3027 EXFUN (Fkill_all_local_variables, 0);
3028 EXFUN (Fbuffer_disable_undo, 1);
3029 EXFUN (Fbuffer_enable_undo, 1);
3030 EXFUN (Ferase_buffer, 0);
3031 extern Lisp_Object Qoverlayp;
3032 extern Lisp_Object Qpriority, Qwindow, Qevaporate, Qbefore_string, Qafter_string;
3033 extern Lisp_Object get_truename_buffer (Lisp_Object);
3034 extern struct buffer *all_buffers;
3035 EXFUN (Fprevious_overlay_change, 1);
3036 EXFUN (Fbuffer_file_name, 1);
3037 extern void init_buffer_once (void);
3038 extern void init_buffer (void);
3039 extern void syms_of_buffer (void);
3040 extern void keys_of_buffer (void);
3041
3042 /* Defined in marker.c */
3043
3044 EXFUN (Fmarker_position, 1);
3045 EXFUN (Fmarker_buffer, 1);
3046 EXFUN (Fcopy_marker, 2);
3047 EXFUN (Fset_marker, 3);
3048 extern int marker_position (Lisp_Object);
3049 extern int marker_byte_position (Lisp_Object);
3050 extern void clear_charpos_cache (struct buffer *);
3051 extern int charpos_to_bytepos (int);
3052 extern int buf_charpos_to_bytepos (struct buffer *, int);
3053 extern int buf_bytepos_to_charpos (struct buffer *, int);
3054 extern void unchain_marker (struct Lisp_Marker *marker);
3055 extern Lisp_Object set_marker_restricted (Lisp_Object, Lisp_Object, Lisp_Object);
3056 extern Lisp_Object set_marker_both (Lisp_Object, Lisp_Object, int, int);
3057 extern Lisp_Object set_marker_restricted_both (Lisp_Object, Lisp_Object,
3058 int, int);
3059 extern void syms_of_marker (void);
3060
3061 /* Defined in fileio.c */
3062
3063 extern Lisp_Object Qfile_error;
3064 extern Lisp_Object Qfile_directory_p;
3065 extern Lisp_Object Qinsert_file_contents;
3066 EXFUN (Ffind_file_name_handler, 2);
3067 EXFUN (Ffile_name_as_directory, 1);
3068 EXFUN (Fmake_temp_name, 1);
3069 EXFUN (Fexpand_file_name, 2);
3070 EXFUN (Ffile_name_nondirectory, 1);
3071 EXFUN (Fsubstitute_in_file_name, 1);
3072 EXFUN (Ffile_symlink_p, 1);
3073 EXFUN (Fverify_visited_file_modtime, 1);
3074 EXFUN (Ffile_exists_p, 1);
3075 EXFUN (Ffile_name_absolute_p, 1);
3076 EXFUN (Fdirectory_file_name, 1);
3077 EXFUN (Ffile_name_directory, 1);
3078 extern Lisp_Object expand_and_dir_to_file (Lisp_Object, Lisp_Object);
3079 EXFUN (Ffile_accessible_directory_p, 1);
3080 EXFUN (Funhandled_file_name_directory, 1);
3081 EXFUN (Ffile_directory_p, 1);
3082 EXFUN (Fwrite_region, 7);
3083 EXFUN (Ffile_readable_p, 1);
3084 EXFUN (Ffile_executable_p, 1);
3085 EXFUN (Fread_file_name, 6);
3086 extern Lisp_Object close_file_unwind (Lisp_Object);
3087 extern Lisp_Object restore_point_unwind (Lisp_Object);
3088 extern void report_file_error (const char *, Lisp_Object) NO_RETURN;
3089 extern int internal_delete_file (Lisp_Object);
3090 extern void syms_of_fileio (void);
3091 extern Lisp_Object make_temp_name (Lisp_Object, int);
3092 EXFUN (Fmake_symbolic_link, 3);
3093 extern Lisp_Object Qdelete_file;
3094
3095 /* Defined in abbrev.c */
3096
3097 extern void syms_of_abbrev (void);
3098
3099 /* Defined in search.c */
3100 extern void shrink_regexp_cache (void);
3101 EXFUN (Fstring_match, 3);
3102 extern void restore_search_regs (void);
3103 EXFUN (Fmatch_data, 3);
3104 EXFUN (Fset_match_data, 2);
3105 EXFUN (Fmatch_beginning, 1);
3106 EXFUN (Fmatch_end, 1);
3107 extern void record_unwind_save_match_data (void);
3108 EXFUN (Flooking_at, 1);
3109 extern int fast_string_match (Lisp_Object, Lisp_Object);
3110 extern int fast_c_string_match_ignore_case (Lisp_Object, const char *);
3111 extern int fast_string_match_ignore_case (Lisp_Object, Lisp_Object);
3112 extern EMACS_INT fast_looking_at (Lisp_Object, EMACS_INT, EMACS_INT,
3113 EMACS_INT, EMACS_INT, Lisp_Object);
3114 extern int scan_buffer (int, EMACS_INT, EMACS_INT, int, int *, int);
3115 extern int scan_newline (EMACS_INT, EMACS_INT, EMACS_INT, EMACS_INT,
3116 int, int);
3117 extern int find_next_newline (EMACS_INT, int);
3118 extern int find_next_newline_no_quit (EMACS_INT, int);
3119 extern int find_before_next_newline (EMACS_INT, EMACS_INT, int);
3120 extern void syms_of_search (void);
3121 extern void clear_regexp_cache (void);
3122
3123 /* Defined in minibuf.c */
3124
3125 extern Lisp_Object Qcompletion_ignore_case;
3126 extern Lisp_Object Qcompletion_ignore_case;
3127 extern Lisp_Object Vcompletion_regexp_list;
3128 extern Lisp_Object Vhistory_length;
3129 extern Lisp_Object last_minibuf_string;
3130 extern int completion_ignore_case;
3131 extern int history_delete_duplicates;
3132 extern int minibuffer_auto_raise;
3133 extern void choose_minibuf_frame (void);
3134 EXFUN (Fcompleting_read, 8);
3135 EXFUN (Fread_from_minibuffer, 7);
3136 EXFUN (Fread_variable, 2);
3137 EXFUN (Fread_buffer, 3);
3138 EXFUN (Fread_minibuffer, 2);
3139 EXFUN (Feval_minibuffer, 2);
3140 EXFUN (Fread_string, 5);
3141 EXFUN (Fread_no_blanks_input, 3);
3142 EXFUN (Fassoc_string, 3);
3143 extern Lisp_Object get_minibuffer (int);
3144 extern void temp_echo_area_glyphs (Lisp_Object);
3145 extern void init_minibuf_once (void);
3146 extern void syms_of_minibuf (void);
3147
3148 /* Defined in callint.c */
3149
3150 extern Lisp_Object Qminus, Qplus, Vcurrent_prefix_arg;
3151 extern Lisp_Object Vcommand_history;
3152 extern Lisp_Object Vmark_even_if_inactive;
3153 extern Lisp_Object Qcall_interactively, Qmouse_leave_buffer_hook;
3154 EXFUN (Fcall_interactively, 3);
3155 EXFUN (Fprefix_numeric_value, 1);
3156 extern void syms_of_callint (void);
3157
3158 /* Defined in casefiddle.c */
3159
3160 EXFUN (Fdowncase, 1);
3161 EXFUN (Fupcase, 1);
3162 EXFUN (Fcapitalize, 1);
3163 EXFUN (Fupcase_region, 2);
3164 EXFUN (Fupcase_initials, 1);
3165 EXFUN (Fupcase_initials_region, 2);
3166 extern void syms_of_casefiddle (void);
3167 extern void keys_of_casefiddle (void);
3168
3169 /* Defined in casetab.c */
3170
3171 EXFUN (Fset_case_table, 1);
3172 EXFUN (Fset_standard_case_table, 1);
3173 extern void init_casetab_once (void);
3174 extern void syms_of_casetab (void);
3175
3176 /* Defined in keyboard.c */
3177
3178 extern int echoing;
3179 extern Lisp_Object echo_message_buffer;
3180 extern struct kboard *echo_kboard;
3181 extern void cancel_echoing (void);
3182 extern Lisp_Object Qdisabled, QCfilter;
3183 extern Lisp_Object Vtty_erase_char, Vhelp_form, Vtop_level;
3184 extern Lisp_Object Vthrow_on_input;
3185 extern int input_pending;
3186 EXFUN (Fdiscard_input, 0);
3187 EXFUN (Frecursive_edit, 0);
3188 EXFUN (Ftop_level, 0) NO_RETURN;
3189 EXFUN (Fexit_recursive_edit, 0) NO_RETURN;
3190 EXFUN (Fabort_recursive_edit, 0) NO_RETURN;
3191 EXFUN (Fcommand_execute, 4);
3192 EXFUN (Finput_pending_p, 0);
3193 extern Lisp_Object menu_bar_items (Lisp_Object);
3194 extern Lisp_Object tool_bar_items (Lisp_Object, int *);
3195 extern Lisp_Object Qvertical_scroll_bar;
3196 extern void discard_mouse_events (void);
3197 EXFUN (Fevent_convert_list, 1);
3198 EXFUN (Fread_key_sequence, 5);
3199 EXFUN (Fset_input_interrupt_mode, 1);
3200 EXFUN (Fset_output_flow_control, 2);
3201 EXFUN (Fset_input_meta_mode, 2);
3202 EXFUN (Fset_quit_char, 1);
3203 EXFUN (Fset_input_mode, 4);
3204 extern Lisp_Object pending_funcalls;
3205 extern int detect_input_pending (void);
3206 extern int detect_input_pending_ignore_squeezables (void);
3207 extern int detect_input_pending_run_timers (int);
3208 extern void safe_run_hooks (Lisp_Object);
3209 extern void cmd_error_internal (Lisp_Object, const char *);
3210 extern Lisp_Object command_loop_1 (void);
3211 extern Lisp_Object recursive_edit_1 (void);
3212 extern void record_auto_save (void);
3213 extern void init_keyboard (void);
3214 extern void syms_of_keyboard (void);
3215 extern void keys_of_keyboard (void);
3216 extern char *push_key_description (unsigned int, char *, int);
3217
3218
3219 /* Defined in indent.c */
3220 EXFUN (Fvertical_motion, 2);
3221 EXFUN (Findent_to, 2);
3222 EXFUN (Fcurrent_column, 0);
3223 EXFUN (Fmove_to_column, 2);
3224 extern double current_column (void);
3225 extern void invalidate_current_column (void);
3226 extern int indented_beyond_p (int, int, double);
3227 extern void syms_of_indent (void);
3228
3229 /* Defined in frame.c */
3230 #ifdef HAVE_WINDOW_SYSTEM
3231 extern Lisp_Object Vx_resource_name;
3232 extern Lisp_Object Vx_resource_class;
3233 #endif /* HAVE_WINDOW_SYSTEM */
3234 extern Lisp_Object Qonly;
3235 extern Lisp_Object Qvisible;
3236 extern void store_frame_param (struct frame *, Lisp_Object, Lisp_Object);
3237 extern void store_in_alist (Lisp_Object *, Lisp_Object, Lisp_Object);
3238 extern Lisp_Object do_switch_frame (Lisp_Object, int, int, Lisp_Object);
3239 extern Lisp_Object get_frame_param (struct frame *, Lisp_Object);
3240 extern Lisp_Object frame_buffer_predicate (Lisp_Object);
3241 EXFUN (Fframep, 1);
3242 EXFUN (Fselect_frame, 2);
3243 EXFUN (Fselected_frame, 0);
3244 EXFUN (Fwindow_frame, 1);
3245 EXFUN (Fframe_root_window, 1);
3246 EXFUN (Fframe_first_window, 1);
3247 EXFUN (Fframe_selected_window, 1);
3248 EXFUN (Fframe_list, 0);
3249 EXFUN (Fnext_frame, 2);
3250 EXFUN (Fdelete_frame, 2);
3251 EXFUN (Fset_mouse_position, 3);
3252 EXFUN (Fmake_frame_visible, 1);
3253 EXFUN (Fmake_frame_invisible, 2);
3254 EXFUN (Ficonify_frame, 1);
3255 EXFUN (Fframe_visible_p, 1);
3256 EXFUN (Fvisible_frame_list, 0);
3257 EXFUN (Fframe_parameter, 2);
3258 EXFUN (Fframe_parameters, 1);
3259 EXFUN (Fmodify_frame_parameters, 2);
3260 EXFUN (Fset_frame_height, 3);
3261 EXFUN (Fset_frame_width, 3);
3262 EXFUN (Fset_frame_size, 3);
3263 EXFUN (Fset_frame_position, 3);
3264 EXFUN (Fraise_frame, 1);
3265 EXFUN (Fredirect_frame_focus, 2);
3266 EXFUN (Fset_frame_selected_window, 3);
3267 extern Lisp_Object frame_buffer_list (Lisp_Object);
3268 extern void frames_discard_buffer (Lisp_Object);
3269 extern void set_frame_buffer_list (Lisp_Object, Lisp_Object);
3270 extern void frames_bury_buffer (Lisp_Object);
3271 extern void syms_of_frame (void);
3272
3273 /* Defined in emacs.c */
3274 #if defined(HAVE_X_WINDOWS) || defined(HAVE_NS)
3275 extern int display_arg;
3276 #endif
3277 extern Lisp_Object decode_env_path (const char *, const char *);
3278 extern Lisp_Object Vinvocation_name, Vinvocation_directory;
3279 extern Lisp_Object Vbefore_init_time, Vafter_init_time;
3280 extern Lisp_Object Vinstallation_directory;
3281 extern Lisp_Object empty_unibyte_string, empty_multibyte_string;
3282 extern Lisp_Object Qfile_name_handler_alist;
3283 EXFUN (Fkill_emacs, 1) NO_RETURN;
3284 #if HAVE_SETLOCALE
3285 void fixup_locale (void);
3286 void synchronize_system_messages_locale (void);
3287 void synchronize_system_time_locale (void);
3288 #else
3289 #define setlocale(category, locale)
3290 #define fixup_locale()
3291 #define synchronize_system_messages_locale()
3292 #define synchronize_system_time_locale()
3293 #endif
3294 void shut_down_emacs (int, int, Lisp_Object);
3295 /* Nonzero means don't do interactive redisplay and don't change tty modes. */
3296 extern int noninteractive;
3297
3298 /* Nonzero means don't load X resources or Windows Registry settings. */
3299 extern int inhibit_x_resources;
3300
3301 /* Pipe used to send exit notification to the daemon parent at
3302 startup. */
3303 extern int daemon_pipe[2];
3304 #define IS_DAEMON (daemon_pipe[1] != 0)
3305
3306 /* Nonzero means don't do use window-system-specific display code. */
3307 extern int inhibit_window_system;
3308 /* Nonzero means that a filter or a sentinel is running. */
3309 extern int running_asynch_code;
3310
3311 /* Defined in process.c */
3312 extern Lisp_Object QCtype, Qlocal;
3313 EXFUN (Fget_process, 1);
3314 EXFUN (Fget_buffer_process, 1);
3315 EXFUN (Fprocessp, 1);
3316 EXFUN (Fprocess_status, 1);
3317 EXFUN (Fkill_process, 2);
3318 EXFUN (Fprocess_send_eof, 1);
3319 EXFUN (Fwaiting_for_user_input_p, 0);
3320 extern Lisp_Object Qprocessp;
3321 extern void kill_buffer_processes (Lisp_Object);
3322 extern int wait_reading_process_output (int, int, int, int,
3323 Lisp_Object,
3324 struct Lisp_Process *,
3325 int);
3326 extern void add_keyboard_wait_descriptor (int);
3327 extern void delete_keyboard_wait_descriptor (int);
3328 extern void add_gpm_wait_descriptor (int);
3329 extern void delete_gpm_wait_descriptor (int);
3330 extern void close_process_descs (void);
3331 extern void init_process (void);
3332 extern void syms_of_process (void);
3333 extern void setup_process_coding_systems (Lisp_Object);
3334
3335 /* Defined in callproc.c */
3336 extern Lisp_Object Vexec_path, Vexec_suffixes,
3337 Vexec_directory, Vdata_directory;
3338 extern Lisp_Object Vdoc_directory;
3339 EXFUN (Fcall_process, MANY);
3340 extern int child_setup (int, int, int, char **, int, Lisp_Object);
3341 extern void init_callproc_1 (void);
3342 extern void init_callproc (void);
3343 extern void set_initial_environment (void);
3344 extern void syms_of_callproc (void);
3345
3346 /* Defined in doc.c */
3347 extern Lisp_Object Vdoc_file_name;
3348 EXFUN (Fsubstitute_command_keys, 1);
3349 EXFUN (Fdocumentation, 2);
3350 EXFUN (Fdocumentation_property, 3);
3351 extern Lisp_Object read_doc_string (Lisp_Object);
3352 extern Lisp_Object get_doc_string (Lisp_Object, int, int);
3353 extern void syms_of_doc (void);
3354 extern int read_bytecode_char (int);
3355
3356 /* Defined in bytecode.c */
3357 extern Lisp_Object Qbytecode;
3358 EXFUN (Fbyte_code, 3);
3359 extern void syms_of_bytecode (void);
3360 extern struct byte_stack *byte_stack_list;
3361 extern void mark_byte_stack (void);
3362 extern void unmark_byte_stack (void);
3363
3364 /* Defined in macros.c */
3365 extern Lisp_Object Qexecute_kbd_macro;
3366 EXFUN (Fexecute_kbd_macro, 3);
3367 EXFUN (Fcancel_kbd_macro_events, 0);
3368 extern void init_macros (void);
3369 extern void syms_of_macros (void);
3370
3371 /* Defined in undo.c */
3372 extern Lisp_Object Qapply;
3373 extern Lisp_Object Qinhibit_read_only;
3374 EXFUN (Fundo_boundary, 0);
3375 extern void truncate_undo_list (struct buffer *);
3376 extern void record_marker_adjustment (Lisp_Object, int);
3377 extern void record_insert (int, int);
3378 extern void record_delete (int, Lisp_Object);
3379 extern void record_first_change (void);
3380 extern void record_change (int, int);
3381 extern void record_property_change (int, int, Lisp_Object, Lisp_Object,
3382 Lisp_Object);
3383 extern void syms_of_undo (void);
3384 extern Lisp_Object Vundo_outer_limit;
3385
3386 /* Defined in textprop.c */
3387 extern Lisp_Object Qfont, Qmouse_face;
3388 extern Lisp_Object Qinsert_in_front_hooks, Qinsert_behind_hooks;
3389 extern Lisp_Object Qfront_sticky, Qrear_nonsticky;
3390 extern Lisp_Object Qminibuffer_prompt;
3391
3392 EXFUN (Fnext_single_property_change, 4);
3393 EXFUN (Fnext_single_char_property_change, 4);
3394 EXFUN (Fprevious_single_property_change, 4);
3395 EXFUN (Fget_text_property, 3);
3396 EXFUN (Fput_text_property, 5);
3397 EXFUN (Fget_text_property, 3);
3398 EXFUN (Fprevious_char_property_change, 2);
3399 EXFUN (Fnext_char_property_change, 2);
3400 extern void report_interval_modification (Lisp_Object, Lisp_Object);
3401 extern Lisp_Object next_single_char_property_change (Lisp_Object,
3402 Lisp_Object,
3403 Lisp_Object,
3404 Lisp_Object);
3405
3406 /* Defined in menu.c */
3407 extern void syms_of_menu (void);
3408
3409 /* Defined in xmenu.c */
3410 EXFUN (Fx_popup_menu, 2);
3411 EXFUN (Fx_popup_dialog, 3);
3412 extern void syms_of_xmenu (void);
3413
3414 /* Defined in termchar.h */
3415 struct tty_display_info;
3416
3417 /* Defined in termhooks.h */
3418 struct terminal;
3419
3420 /* Defined in sysdep.c */
3421 #ifndef HAVE_GET_CURRENT_DIR_NAME
3422 extern char *get_current_dir_name (void);
3423 #endif
3424 extern void stuff_char (char c);
3425 extern void init_sigio (int);
3426 extern void sys_subshell (void);
3427 extern void sys_suspend (void);
3428 extern void discard_tty_input (void);
3429 extern void init_sys_modes (struct tty_display_info *);
3430 extern void reset_sys_modes (struct tty_display_info *);
3431 extern void init_all_sys_modes (void);
3432 extern void reset_all_sys_modes (void);
3433 extern void wait_for_termination (int);
3434 extern void flush_pending_output (int);
3435 extern void child_setup_tty (int);
3436 extern void setup_pty (int);
3437 extern int set_window_size (int, int, int);
3438 extern void create_process (Lisp_Object, char **, Lisp_Object);
3439 extern int emacs_open (const char *, int, int);
3440 extern int emacs_close (int);
3441 extern int emacs_read (int, char *, unsigned int);
3442 extern int emacs_write (int, const char *, unsigned int);
3443 #ifndef HAVE_MEMSET
3444 extern void *memset (void *, int, size_t);
3445 #endif
3446 #ifndef HAVE_MEMCPY
3447 extern void *memcpy (void *, void *, size_t);
3448 #endif
3449 #ifndef HAVE_MEMMOVE
3450 extern void *memmove (void *, void *, size_t);
3451 #endif
3452 #ifndef HAVE_MEMCMP
3453 extern int memcmp (void *, void *, size_t);
3454 #endif
3455
3456 /* Defined in filelock.c */
3457 extern Lisp_Object Vtemporary_file_directory;
3458 EXFUN (Funlock_buffer, 0);
3459 EXFUN (Ffile_locked_p, 1);
3460 extern void unlock_all_files (void);
3461 extern void lock_file (Lisp_Object);
3462 extern void unlock_file (Lisp_Object);
3463 extern void unlock_buffer (struct buffer *);
3464 extern void syms_of_filelock (void);
3465 extern void init_filelock (void);
3466
3467 /* Defined in sound.c */
3468 extern void syms_of_sound (void);
3469 extern void init_sound (void);
3470
3471 /* Defined in category.c */
3472 extern void init_category_once (void);
3473 extern Lisp_Object char_category_set (int);
3474 extern void syms_of_category (void);
3475
3476 /* Defined in ccl.c */
3477 extern void syms_of_ccl (void);
3478
3479 /* Defined in dired.c */
3480 EXFUN (Ffile_attributes, 2);
3481 extern void syms_of_dired (void);
3482 extern Lisp_Object directory_files_internal (Lisp_Object, Lisp_Object,
3483 Lisp_Object, Lisp_Object,
3484 int, Lisp_Object);
3485
3486 /* Defined in term.c */
3487 extern int *char_ins_del_vector;
3488 extern void syms_of_term (void);
3489 extern void fatal (const char *msgid, ...) NO_RETURN;
3490
3491 /* Defined in terminal.c */
3492 EXFUN (Fframe_terminal, 1);
3493 EXFUN (Fdelete_terminal, 2);
3494 extern void syms_of_terminal (void);
3495
3496 /* Defined in font.c */
3497 extern void syms_of_font (void);
3498 extern void init_font (void);
3499
3500 #ifdef HAVE_WINDOW_SYSTEM
3501 /* Defined in fontset.c */
3502 extern void syms_of_fontset (void);
3503 EXFUN (Fset_fontset_font, 5);
3504 EXFUN (Fnew_fontset, 2);
3505
3506 /* Defined in xfns.c, w32fns.c, or macfns.c */
3507 EXFUN (Fxw_display_color_p, 1);
3508 EXFUN (Fx_file_dialog, 5);
3509 EXFUN (Fx_focus_frame, 1);
3510 #endif
3511
3512 /* Defined in xfaces.c */
3513 extern Lisp_Object Qface;
3514 extern Lisp_Object Qnormal;
3515 extern Lisp_Object QCfamily, QCweight, QCslant, QCwidth;
3516 extern Lisp_Object QCheight, QCsize, QCname, QCwidth, QCforeground, QCbackground;
3517 EXFUN (Fclear_face_cache, 1);
3518 EXFUN (Fx_load_color_file, 1);
3519 extern void syms_of_xfaces (void);
3520
3521 #ifndef HAVE_GETLOADAVG
3522 /* Defined in getloadavg.c */
3523 extern int getloadavg (double *, int);
3524 #endif
3525
3526 #ifdef HAVE_X_WINDOWS
3527 /* Defined in xfns.c */
3528 extern void syms_of_xfns (void);
3529
3530 /* Defined in xsmfns.c */
3531 extern void syms_of_xsmfns (void);
3532
3533 /* Defined in xselect.c */
3534 EXFUN (Fx_send_client_event, 6);
3535 extern void syms_of_xselect (void);
3536
3537 /* Defined in xterm.c */
3538 extern void syms_of_xterm (void);
3539 #endif /* HAVE_X_WINDOWS */
3540
3541 #ifdef HAVE_WINDOW_SYSTEM
3542 /* Defined in xterm.c, nsterm.m, w32term.c */
3543 extern char *x_get_keysym_name (int);
3544 #endif /* HAVE_WINDOW_SYSTEM */
3545
3546 #ifdef MSDOS
3547 /* Defined in msdos.c */
3548 EXFUN (Fmsdos_downcase_filename, 1);
3549 #endif
3550
3551 #ifdef HAVE_MENUS
3552 /* Defined in (x|w32)fns.c, nsfns.m... */
3553 extern int have_menus_p (void);
3554 #endif
3555
3556 #ifdef HAVE_DBUS
3557 /* Defined in dbusbind.c */
3558 int xd_pending_messages (void);
3559 void xd_read_queued_messages (void);
3560 void syms_of_dbusbind (void);
3561 #endif
3562 \f
3563 /* Nonzero means Emacs has already been initialized.
3564 Used during startup to detect startup of dumped Emacs. */
3565 extern int initialized;
3566
3567 extern int immediate_quit; /* Nonzero means ^G can quit instantly */
3568
3569 extern POINTER_TYPE *xmalloc (size_t);
3570 extern POINTER_TYPE *xrealloc (POINTER_TYPE *, size_t);
3571 extern void xfree (POINTER_TYPE *);
3572
3573 extern char *xstrdup (const char *);
3574
3575 extern char *egetenv (const char *);
3576
3577 /* Set up the name of the machine we're running on. */
3578 extern void init_system_name (void);
3579
3580 /* Some systems (e.g., NT) use a different path separator than Unix,
3581 in addition to a device separator. Set the path separator
3582 to '/', and don't test for a device separator in IS_ANY_SEP. */
3583
3584 #define DIRECTORY_SEP '/'
3585 #ifndef IS_DIRECTORY_SEP
3586 #define IS_DIRECTORY_SEP(_c_) ((_c_) == DIRECTORY_SEP)
3587 #endif
3588 #ifndef IS_DEVICE_SEP
3589 #ifndef DEVICE_SEP
3590 #define IS_DEVICE_SEP(_c_) 0
3591 #else
3592 #define IS_DEVICE_SEP(_c_) ((_c_) == DEVICE_SEP)
3593 #endif
3594 #endif
3595 #ifndef IS_ANY_SEP
3596 #define IS_ANY_SEP(_c_) (IS_DIRECTORY_SEP (_c_))
3597 #endif
3598
3599 #define SWITCH_ENUM_CAST(x) (x)
3600
3601 /* Loop over Lisp list LIST. Signal an error if LIST is not a proper
3602 list, or if it contains circles.
3603
3604 HARE and TORTOISE should be the names of Lisp_Object variables, and
3605 N should be the name of an EMACS_INT variable declared in the
3606 function where the macro is used. Each nested loop should use
3607 its own variables.
3608
3609 In the loop body, HARE is set to each cons of LIST, and N is the
3610 length of the list processed so far. */
3611
3612 #define LIST_END_P(list, obj) \
3613 (NILP (obj) \
3614 ? 1 \
3615 : (CONSP (obj) \
3616 ? 0 \
3617 : (wrong_type_argument (Qlistp, (list))), 1))
3618
3619 #define FOREACH(hare, list, tortoise, n) \
3620 for (tortoise = hare = (list), n = 0; \
3621 !LIST_END_P (list, hare); \
3622 (hare = XCDR (hare), ++n, \
3623 ((n & 1) != 0 \
3624 ? (tortoise = XCDR (tortoise), \
3625 (EQ (hare, tortoise) \
3626 && (circular_list_error ((list)), 1))) \
3627 : 0)))
3628
3629 /* The ubiquitous min and max macros. */
3630
3631 #ifdef max
3632 #undef max
3633 #undef min
3634 #endif
3635 #define min(a, b) ((a) < (b) ? (a) : (b))
3636 #define max(a, b) ((a) > (b) ? (a) : (b))
3637
3638 /* We used to use `abs', but that clashes with system headers on some
3639 platforms, and using a name reserved by Standard C is a bad idea
3640 anyway. */
3641 #if !defined(eabs)
3642 #define eabs(x) ((x) < 0 ? -(x) : (x))
3643 #endif
3644
3645 /* Return a fixnum or float, depending on whether VAL fits in a Lisp
3646 fixnum. */
3647
3648 #define make_fixnum_or_float(val) \
3649 (FIXNUM_OVERFLOW_P (val) \
3650 ? make_float (val) \
3651 : make_number ((EMACS_INT)(val)))
3652
3653
3654 /* Checks the `cycle check' variable CHECK to see if it indicates that
3655 EL is part of a cycle; CHECK must be either Qnil or a value returned
3656 by an earlier use of CYCLE_CHECK. SUSPICIOUS is the number of
3657 elements after which a cycle might be suspected; after that many
3658 elements, this macro begins consing in order to keep more precise
3659 track of elements.
3660
3661 Returns nil if a cycle was detected, otherwise a new value for CHECK
3662 that includes EL.
3663
3664 CHECK is evaluated multiple times, EL and SUSPICIOUS 0 or 1 times, so
3665 the caller should make sure that's ok. */
3666
3667 #define CYCLE_CHECK(check, el, suspicious) \
3668 (NILP (check) \
3669 ? make_number (0) \
3670 : (INTEGERP (check) \
3671 ? (XFASTINT (check) < (suspicious) \
3672 ? make_number (XFASTINT (check) + 1) \
3673 : Fcons (el, Qnil)) \
3674 : (!NILP (Fmemq ((el), (check))) \
3675 ? Qnil \
3676 : Fcons ((el), (check)))))
3677
3678
3679 /* SAFE_ALLOCA normally allocates memory on the stack, but if size is
3680 larger than MAX_ALLOCA, use xmalloc to avoid overflowing the stack. */
3681
3682 #define MAX_ALLOCA 16*1024
3683
3684 extern Lisp_Object safe_alloca_unwind (Lisp_Object);
3685
3686 #define USE_SAFE_ALLOCA \
3687 int sa_count = SPECPDL_INDEX (), sa_must_free = 0
3688
3689 /* SAFE_ALLOCA allocates a simple buffer. */
3690
3691 #define SAFE_ALLOCA(buf, type, size) \
3692 do { \
3693 if ((size) < MAX_ALLOCA) \
3694 buf = (type) alloca (size); \
3695 else \
3696 { \
3697 buf = (type) xmalloc (size); \
3698 sa_must_free++; \
3699 record_unwind_protect (safe_alloca_unwind, \
3700 make_save_value (buf, 0)); \
3701 } \
3702 } while (0)
3703
3704 /* SAFE_FREE frees xmalloced memory and enables GC as needed. */
3705
3706 #define SAFE_FREE() \
3707 do { \
3708 if (sa_must_free) { \
3709 sa_must_free = 0; \
3710 unbind_to (sa_count, Qnil); \
3711 } \
3712 } while (0)
3713
3714
3715 /* SAFE_ALLOCA_LISP allocates an array of Lisp_Objects. */
3716
3717 #define SAFE_ALLOCA_LISP(buf, nelt) \
3718 do { \
3719 int size_ = (nelt) * sizeof (Lisp_Object); \
3720 if (size_ < MAX_ALLOCA) \
3721 buf = (Lisp_Object *) alloca (size_); \
3722 else \
3723 { \
3724 Lisp_Object arg_; \
3725 buf = (Lisp_Object *) xmalloc (size_); \
3726 arg_ = make_save_value (buf, nelt); \
3727 XSAVE_VALUE (arg_)->dogc = 1; \
3728 sa_must_free++; \
3729 record_unwind_protect (safe_alloca_unwind, arg_); \
3730 } \
3731 } while (0)
3732
3733
3734 #endif /* EMACS_LISP_H */
3735
3736 /* arch-tag: 9b2ed020-70eb-47ac-94ee-e1c2a5107d5e
3737 (do not change this comment) */