Remove pointless FOR-RELEASE note
[bpt/emacs.git] / src / lisp.h
CommitLineData
3cfe6dfd 1/* Fundamental definitions for GNU Emacs Lisp interpreter.
e2017fe2 2
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3Copyright (C) 1985-1987, 1993-1995, 1997-2014 Free Software Foundation,
4Inc.
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5
6This file is part of GNU Emacs.
7
b9b1cc14 8GNU Emacs is free software: you can redistribute it and/or modify
3cfe6dfd 9it under the terms of the GNU General Public License as published by
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10the Free Software Foundation, either version 3 of the License, or
11(at your option) any later version.
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12
13GNU Emacs is distributed in the hope that it will be useful,
14but WITHOUT ANY WARRANTY; without even the implied warranty of
15MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16GNU General Public License for more details.
17
18You should have received a copy of the GNU General Public License
b9b1cc14 19along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
3cfe6dfd 20
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21#ifndef EMACS_LISP_H
22#define EMACS_LISP_H
23
0328b6de 24#include <setjmp.h>
e32a5799 25#include <stdalign.h>
6a8033e1 26#include <stdarg.h>
89887d67 27#include <stddef.h>
4d7e6e51 28#include <float.h>
8ac068ac 29#include <inttypes.h>
dd3482fe 30#include <limits.h>
6a8033e1 31
be44ca6c 32#include <intprops.h>
b9ff995e 33#include <verify.h>
be44ca6c 34
f162bcc3 35INLINE_HEADER_BEGIN
f162bcc3 36
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37/* Define a TYPE constant ID as an externally visible name. Use like this:
38
39 DEFINE_GDB_SYMBOL_BEGIN (TYPE, ID)
40 #define ID something
41 DEFINE_GDB_SYMBOL_END (ID)
42
43 This hack is for the benefit of compilers that do not make macro
44 definitions visible to the debugger. It's used for symbols that
45 .gdbinit needs, symbols whose values may not fit in 'int' (where an
46 enum would suffice). */
0f679e86 47#if defined MAIN_PROGRAM
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48# define DEFINE_GDB_SYMBOL_BEGIN(type, id) type const id EXTERNALLY_VISIBLE
49# define DEFINE_GDB_SYMBOL_END(id) = id;
50#else
51# define DEFINE_GDB_SYMBOL_BEGIN(type, id)
52# define DEFINE_GDB_SYMBOL_END(val)
53#endif
54
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55/* The ubiquitous max and min macros. */
56#undef min
57#undef max
58#define max(a, b) ((a) > (b) ? (a) : (b))
59#define min(a, b) ((a) < (b) ? (a) : (b))
60
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61/* EMACS_INT - signed integer wide enough to hold an Emacs value
62 EMACS_INT_MAX - maximum value of EMACS_INT; can be used in #if
63 pI - printf length modifier for EMACS_INT
64 EMACS_UINT - unsigned variant of EMACS_INT */
71f88e00 65#ifndef EMACS_INT_MAX
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66# if INTPTR_MAX <= 0
67# error "INTPTR_MAX misconfigured"
68# elif INTPTR_MAX <= INT_MAX && !defined WIDE_EMACS_INT
69typedef int EMACS_INT;
70typedef unsigned int EMACS_UINT;
71# define EMACS_INT_MAX INT_MAX
72# define pI ""
73# elif INTPTR_MAX <= LONG_MAX && !defined WIDE_EMACS_INT
71f88e00 74typedef long int EMACS_INT;
2d9783e0 75typedef unsigned long EMACS_UINT;
34374650 76# define EMACS_INT_MAX LONG_MAX
47be4ab5 77# define pI "l"
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78# elif INTPTR_MAX <= LLONG_MAX
79typedef long long int EMACS_INT;
80typedef unsigned long long int EMACS_UINT;
81# define EMACS_INT_MAX LLONG_MAX
82# define pI "ll"
47be4ab5 83# else
b00cdd96 84# error "INTPTR_MAX too large"
47be4ab5 85# endif
68c45bf0 86#endif
34374650 87
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88/* Number of bits to put in each character in the internal representation
89 of bool vectors. This should not vary across implementations. */
90enum { BOOL_VECTOR_BITS_PER_CHAR =
91#define BOOL_VECTOR_BITS_PER_CHAR 8
92 BOOL_VECTOR_BITS_PER_CHAR
93};
94
87c4314d 95/* An unsigned integer type representing a fixed-length bit sequence,
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96 suitable for words in a Lisp bool vector. Normally it is size_t
97 for speed, but it is unsigned char on weird platforms. */
2cf00efc 98#if BOOL_VECTOR_BITS_PER_CHAR == CHAR_BIT
87c4314d 99typedef size_t bits_word;
2cf00efc 100# define BITS_WORD_MAX SIZE_MAX
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101enum { BITS_PER_BITS_WORD = CHAR_BIT * sizeof (bits_word) };
102#else
103typedef unsigned char bits_word;
2cf00efc 104# define BITS_WORD_MAX ((1u << BOOL_VECTOR_BITS_PER_CHAR) - 1)
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105enum { BITS_PER_BITS_WORD = BOOL_VECTOR_BITS_PER_CHAR };
106#endif
2cf00efc 107verify (BITS_WORD_MAX >> (BITS_PER_BITS_WORD - 1) == 1);
87c4314d 108
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109/* Number of bits in some machine integer types. */
110enum
111 {
112 BITS_PER_CHAR = CHAR_BIT,
113 BITS_PER_SHORT = CHAR_BIT * sizeof (short),
114 BITS_PER_INT = CHAR_BIT * sizeof (int),
115 BITS_PER_LONG = CHAR_BIT * sizeof (long int),
116 BITS_PER_EMACS_INT = CHAR_BIT * sizeof (EMACS_INT)
117 };
ce99fd65 118
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119/* printmax_t and uprintmax_t are types for printing large integers.
120 These are the widest integers that are supported for printing.
121 pMd etc. are conversions for printing them.
122 On C99 hosts, there's no problem, as even the widest integers work.
123 Fall back on EMACS_INT on pre-C99 hosts. */
124#ifdef PRIdMAX
125typedef intmax_t printmax_t;
126typedef uintmax_t uprintmax_t;
127# define pMd PRIdMAX
128# define pMu PRIuMAX
129#else
130typedef EMACS_INT printmax_t;
131typedef EMACS_UINT uprintmax_t;
132# define pMd pI"d"
133# define pMu pI"u"
134#endif
135
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136/* Use pD to format ptrdiff_t values, which suffice for indexes into
137 buffers and strings. Emacs never allocates objects larger than
138 PTRDIFF_MAX bytes, as they cause problems with pointer subtraction.
139 In C99, pD can always be "t"; configure it here for the sake of
140 pre-C99 libraries such as glibc 2.0 and Solaris 8. */
141#if PTRDIFF_MAX == INT_MAX
142# define pD ""
143#elif PTRDIFF_MAX == LONG_MAX
144# define pD "l"
145#elif PTRDIFF_MAX == LLONG_MAX
146# define pD "ll"
147#else
148# define pD "t"
149#endif
150
e0b8c689 151/* Extra internal type checking? */
c6129d7e 152
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153/* Define Emacs versions of <assert.h>'s 'assert (COND)' and <verify.h>'s
154 'assume (COND)'. COND should be free of side effects, as it may or
155 may not be evaluated.
156
157 'eassert (COND)' checks COND at runtime if ENABLE_CHECKING is
158 defined and suppress_checking is false, and does nothing otherwise.
159 Emacs dies if COND is checked and is false. The suppress_checking
160 variable is initialized to 0 in alloc.c. Set it to 1 using a
161 debugger to temporarily disable aborting on detected internal
162 inconsistencies or error conditions.
163
164 In some cases, a good compiler may be able to optimize away the
165 eassert macro even if ENABLE_CHECKING is true, e.g., if XSTRING (x)
166 uses eassert to test STRINGP (x), but a particular use of XSTRING
167 is invoked only after testing that STRINGP (x) is true, making the
168 test redundant.
169
170 eassume is like eassert except that it also causes the compiler to
171 assume that COND is true afterwards, regardless of whether runtime
172 checking is enabled. This can improve performance in some cases,
173 though it can degrade performance in others. It's often suboptimal
174 for COND to call external functions or access volatile storage. */
175
310fbfa8 176#ifndef ENABLE_CHECKING
96c06863 177# define eassert(cond) ((void) (false && (cond))) /* Check COND compiles. */
b9ff995e 178# define eassume(cond) assume (cond)
310fbfa8 179#else /* ENABLE_CHECKING */
c6129d7e 180
845ca893 181extern _Noreturn void die (const char *, const char *, int);
244ed907 182
fce31d69 183extern bool suppress_checking EXTERNALLY_VISIBLE;
244ed907 184
310fbfa8 185# define eassert(cond) \
5013fc08 186 (suppress_checking || (cond) \
0d5d3029 187 ? (void) 0 \
5013fc08 188 : die (# cond, __FILE__, __LINE__))
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189# define eassume(cond) \
190 (suppress_checking \
191 ? assume (cond) \
192 : (cond) \
193 ? (void) 0 \
194 : die (# cond, __FILE__, __LINE__))
3694b4ab 195#endif /* ENABLE_CHECKING */
3e0b94e7 196
b9466edb 197\f
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198/* Use the configure flag --enable-check-lisp-object-type to make
199 Lisp_Object use a struct type instead of the default int. The flag
200 causes CHECK_LISP_OBJECT_TYPE to be defined. */
b86cfd28 201
b9466edb 202/***** Select the tagging scheme. *****/
646b5f55 203/* The following option controls the tagging scheme:
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204 - USE_LSB_TAG means that we can assume the least 3 bits of pointers are
205 always 0, and we can thus use them to hold tag bits, without
206 restricting our addressing space.
207
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208 If ! USE_LSB_TAG, then use the top 3 bits for tagging, thus
209 restricting our possible address range.
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210
211 USE_LSB_TAG not only requires the least 3 bits of pointers returned by
212 malloc to be 0 but also needs to be able to impose a mult-of-8 alignment
213 on the few static Lisp_Objects used: all the defsubr as well
214 as the two special buffers buffer_defaults and buffer_local_symbols. */
215
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216enum Lisp_Bits
217 {
218 /* Number of bits in a Lisp_Object tag. This can be used in #if,
219 and for GDB's sake also as a regular symbol. */
220 GCTYPEBITS =
8c9afb46 221#define GCTYPEBITS 3
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222 GCTYPEBITS,
223
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224 /* 2**GCTYPEBITS. This must be a macro that expands to a literal
225 integer constant, for MSVC. */
e32a5799 226#define GCALIGNMENT 8
e32a5799 227
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228 /* Number of bits in a Lisp_Object value, not counting the tag. */
229 VALBITS = BITS_PER_EMACS_INT - GCTYPEBITS,
1781b9e9 230
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231 /* Number of bits in a Lisp fixnum tag. */
232 INTTYPEBITS = GCTYPEBITS - 1,
233
234 /* Number of bits in a Lisp fixnum value, not counting the tag. */
235 FIXNUM_BITS = VALBITS + 1
236 };
34374650 237
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238#if GCALIGNMENT != 1 << GCTYPEBITS
239# error "GCALIGNMENT and GCTYPEBITS are inconsistent"
240#endif
241
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242/* The maximum value that can be stored in a EMACS_INT, assuming all
243 bits other than the type bits contribute to a nonnegative signed value.
244 This can be used in #if, e.g., '#if VAL_MAX < UINTPTR_MAX' below. */
245#define VAL_MAX (EMACS_INT_MAX >> (GCTYPEBITS - 1))
310f5bd4 246
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247/* Unless otherwise specified, use USE_LSB_TAG on systems where: */
248#ifndef USE_LSB_TAG
249/* 1. We know malloc returns a multiple of 8. */
250# if (defined GNU_MALLOC || defined DOUG_LEA_MALLOC || defined __GLIBC__ \
251 || defined DARWIN_OS || defined __sun)
252/* 2. We can specify multiple-of-8 alignment on static variables. */
e32a5799 253# ifdef alignas
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254/* 3. Pointers-as-ints exceed VAL_MAX.
255 On hosts where pointers-as-ints do not exceed VAL_MAX, USE_LSB_TAG is:
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256 a. unnecessary, because the top bits of an EMACS_INT are unused, and
257 b. slower, because it typically requires extra masking.
96c06863 258 So, default USE_LSB_TAG to true only on hosts where it might be useful. */
bfe3e0a2 259# if VAL_MAX < UINTPTR_MAX
96c06863 260# define USE_LSB_TAG true
bfe3e0a2 261# endif
310f5bd4 262# endif
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263# endif
264#endif
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265#ifdef USE_LSB_TAG
266# undef USE_LSB_TAG
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267enum enum_USE_LSB_TAG { USE_LSB_TAG = true };
268# define USE_LSB_TAG true
5eceb8fb 269#else
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270enum enum_USE_LSB_TAG { USE_LSB_TAG = false };
271# define USE_LSB_TAG false
bfe3e0a2 272#endif
b9466edb 273
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274#ifndef alignas
275# define alignas(alignment) /* empty */
bfe3e0a2 276# if USE_LSB_TAG
e32a5799 277# error "USE_LSB_TAG requires alignas"
b9466edb 278# endif
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279#endif
280
e0b8c689 281
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282/* Some operations are so commonly executed that they are implemented
283 as macros, not functions, because otherwise runtime performance would
284 suffer too much when compiling with GCC without optimization.
285 There's no need to inline everything, just the operations that
286 would otherwise cause a serious performance problem.
287
288 For each such operation OP, define a macro lisp_h_OP that contains
5ebb1ee6 289 the operation's implementation. That way, OP can be implemented
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290 via a macro definition like this:
291
292 #define OP(x) lisp_h_OP (x)
293
294 and/or via a function definition like this:
295
296 LISP_MACRO_DEFUN (OP, Lisp_Object, (Lisp_Object x), (x))
297
298 which macro-expands to this:
299
300 Lisp_Object (OP) (Lisp_Object x) { return lisp_h_OP (x); }
301
302 without worrying about the implementations diverging, since
303 lisp_h_OP defines the actual implementation. The lisp_h_OP macros
304 are intended to be private to this include file, and should not be
305 used elsewhere.
306
307 FIXME: Remove the lisp_h_OP macros, and define just the inline OP
308 functions, once most developers have access to GCC 4.8 or later and
309 can use "gcc -Og" to debug. Maybe in the year 2016. See
310 Bug#11935.
311
312 Commentary for these macros can be found near their corresponding
313 functions, below. */
314
315#if CHECK_LISP_OBJECT_TYPE
316# define lisp_h_XLI(o) ((o).i)
317# define lisp_h_XIL(i) ((Lisp_Object) { i })
318#else
319# define lisp_h_XLI(o) (o)
320# define lisp_h_XIL(i) (i)
321#endif
322#define lisp_h_CHECK_LIST_CONS(x, y) CHECK_TYPE (CONSP (x), Qlistp, y)
323#define lisp_h_CHECK_NUMBER(x) CHECK_TYPE (INTEGERP (x), Qintegerp, x)
324#define lisp_h_CHECK_SYMBOL(x) CHECK_TYPE (SYMBOLP (x), Qsymbolp, x)
325#define lisp_h_CHECK_TYPE(ok, Qxxxp, x) \
326 ((ok) ? (void) 0 : (void) wrong_type_argument (Qxxxp, x))
327#define lisp_h_CONSP(x) (XTYPE (x) == Lisp_Cons)
328#define lisp_h_EQ(x, y) (XLI (x) == XLI (y))
329#define lisp_h_FLOATP(x) (XTYPE (x) == Lisp_Float)
330#define lisp_h_INTEGERP(x) ((XTYPE (x) & ~Lisp_Int1) == 0)
331#define lisp_h_MARKERP(x) (MISCP (x) && XMISCTYPE (x) == Lisp_Misc_Marker)
332#define lisp_h_MISCP(x) (XTYPE (x) == Lisp_Misc)
333#define lisp_h_NILP(x) EQ (x, Qnil)
334#define lisp_h_SET_SYMBOL_VAL(sym, v) \
335 (eassert ((sym)->redirect == SYMBOL_PLAINVAL), (sym)->val.value = (v))
336#define lisp_h_SYMBOL_CONSTANT_P(sym) (XSYMBOL (sym)->constant)
337#define lisp_h_SYMBOL_VAL(sym) \
338 (eassert ((sym)->redirect == SYMBOL_PLAINVAL), (sym)->val.value)
339#define lisp_h_SYMBOLP(x) (XTYPE (x) == Lisp_Symbol)
340#define lisp_h_VECTORLIKEP(x) (XTYPE (x) == Lisp_Vectorlike)
341#define lisp_h_XCAR(c) XCONS (c)->car
342#define lisp_h_XCDR(c) XCONS (c)->u.cdr
343#define lisp_h_XCONS(a) \
344 (eassert (CONSP (a)), (struct Lisp_Cons *) XUNTAG (a, Lisp_Cons))
345#define lisp_h_XHASH(a) XUINT (a)
346#define lisp_h_XPNTR(a) \
13a5993b 347 ((void *) (intptr_t) ((XLI (a) & VALMASK) | (DATA_SEG_BITS & ~VALMASK)))
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348#define lisp_h_XSYMBOL(a) \
349 (eassert (SYMBOLP (a)), (struct Lisp_Symbol *) XUNTAG (a, Lisp_Symbol))
350#ifndef GC_CHECK_CONS_LIST
351# define lisp_h_check_cons_list() ((void) 0)
352#endif
353#if USE_LSB_TAG
354# define lisp_h_make_number(n) XIL ((EMACS_INT) (n) << INTTYPEBITS)
355# define lisp_h_XFASTINT(a) XINT (a)
356# define lisp_h_XINT(a) (XLI (a) >> INTTYPEBITS)
357# define lisp_h_XTYPE(a) ((enum Lisp_Type) (XLI (a) & ~VALMASK))
358# define lisp_h_XUNTAG(a, type) ((void *) (XLI (a) - (type)))
359#endif
360
361/* When compiling via gcc -O0, define the key operations as macros, as
362 Emacs is too slow otherwise. To disable this optimization, compile
96c06863 363 with -DINLINING=false. */
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364#if (defined __NO_INLINE__ \
365 && ! defined __OPTIMIZE__ && ! defined __OPTIMIZE_SIZE__ \
366 && ! (defined INLINING && ! INLINING))
367# define XLI(o) lisp_h_XLI (o)
368# define XIL(i) lisp_h_XIL (i)
369# define CHECK_LIST_CONS(x, y) lisp_h_CHECK_LIST_CONS (x, y)
370# define CHECK_NUMBER(x) lisp_h_CHECK_NUMBER (x)
371# define CHECK_SYMBOL(x) lisp_h_CHECK_SYMBOL (x)
372# define CHECK_TYPE(ok, Qxxxp, x) lisp_h_CHECK_TYPE (ok, Qxxxp, x)
373# define CONSP(x) lisp_h_CONSP (x)
374# define EQ(x, y) lisp_h_EQ (x, y)
375# define FLOATP(x) lisp_h_FLOATP (x)
376# define INTEGERP(x) lisp_h_INTEGERP (x)
377# define MARKERP(x) lisp_h_MARKERP (x)
378# define MISCP(x) lisp_h_MISCP (x)
379# define NILP(x) lisp_h_NILP (x)
380# define SET_SYMBOL_VAL(sym, v) lisp_h_SET_SYMBOL_VAL (sym, v)
381# define SYMBOL_CONSTANT_P(sym) lisp_h_SYMBOL_CONSTANT_P (sym)
382# define SYMBOL_VAL(sym) lisp_h_SYMBOL_VAL (sym)
383# define SYMBOLP(x) lisp_h_SYMBOLP (x)
384# define VECTORLIKEP(x) lisp_h_VECTORLIKEP (x)
385# define XCAR(c) lisp_h_XCAR (c)
386# define XCDR(c) lisp_h_XCDR (c)
387# define XCONS(a) lisp_h_XCONS (a)
388# define XHASH(a) lisp_h_XHASH (a)
389# define XPNTR(a) lisp_h_XPNTR (a)
390# define XSYMBOL(a) lisp_h_XSYMBOL (a)
391# ifndef GC_CHECK_CONS_LIST
392# define check_cons_list() lisp_h_check_cons_list ()
393# endif
394# if USE_LSB_TAG
395# define make_number(n) lisp_h_make_number (n)
396# define XFASTINT(a) lisp_h_XFASTINT (a)
397# define XINT(a) lisp_h_XINT (a)
398# define XTYPE(a) lisp_h_XTYPE (a)
399# define XUNTAG(a, type) lisp_h_XUNTAG (a, type)
400# endif
401#endif
402
403/* Define NAME as a lisp.h inline function that returns TYPE and has
404 arguments declared as ARGDECLS and passed as ARGS. ARGDECLS and
405 ARGS should be parenthesized. Implement the function by calling
406 lisp_h_NAME ARGS. */
407#define LISP_MACRO_DEFUN(name, type, argdecls, args) \
00382e8b 408 INLINE type (name) argdecls { return lisp_h_##name args; }
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409
410/* like LISP_MACRO_DEFUN, except NAME returns void. */
411#define LISP_MACRO_DEFUN_VOID(name, argdecls, args) \
00382e8b 412 INLINE void (name) argdecls { lisp_h_##name args; }
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413
414
99a3d506 415/* Define the fundamental Lisp data structures. */
3cfe6dfd 416
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417/* This is the set of Lisp data types. If you want to define a new
418 data type, read the comments after Lisp_Fwd_Type definition
419 below. */
3cfe6dfd 420
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421/* Lisp integers use 2 tags, to give them one extra bit, thus
422 extending their range from, e.g., -2^28..2^28-1 to -2^29..2^29-1. */
eff1c190 423#define INTMASK (EMACS_INT_MAX >> (INTTYPEBITS - 1))
2b570124 424#define case_Lisp_Int case Lisp_Int0: case Lisp_Int1
2de9f71c 425
29abe551 426/* Idea stolen from GDB. Pedantic GCC complains about enum bitfields,
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427 MSVC doesn't support them, and xlc and Oracle Studio c99 complain
428 vociferously about them. */
429#if (defined __STRICT_ANSI__ || defined _MSC_VER || defined __IBMC__ \
430 || (defined __SUNPRO_C && __STDC__))
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431#define ENUM_BF(TYPE) unsigned int
432#else
433#define ENUM_BF(TYPE) enum TYPE
434#endif
435
436
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437enum Lisp_Type
438 {
99a3d506 439 /* Integer. XINT (obj) is the integer value. */
2de9f71c 440 Lisp_Int0 = 0,
d5040d2d 441 Lisp_Int1 = USE_LSB_TAG ? 1 << INTTYPEBITS : 1,
3cfe6dfd 442
99a3d506 443 /* Symbol. XSYMBOL (object) points to a struct Lisp_Symbol. */
2de9f71c 444 Lisp_Symbol = 2,
3cfe6dfd 445
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446 /* Miscellaneous. XMISC (object) points to a union Lisp_Misc,
447 whose first member indicates the subtype. */
2de9f71c 448 Lisp_Misc = 3,
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449
450 /* String. XSTRING (object) points to a struct Lisp_String.
99a3d506 451 The length of the string, and its contents, are stored therein. */
d5040d2d 452 Lisp_String = USE_LSB_TAG ? 1 : 1 << INTTYPEBITS,
3cfe6dfd 453
b5088f80 454 /* Vector of Lisp objects, or something resembling it.
7c06ac2b 455 XVECTOR (object) points to a struct Lisp_Vector, which contains
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456 the size and contents. The size field also contains the type
457 information, if it's not a real vector object. */
2de9f71c 458 Lisp_Vectorlike = 5,
3cfe6dfd 459
99a3d506 460 /* Cons. XCONS (object) points to a struct Lisp_Cons. */
2de9f71c 461 Lisp_Cons = 6,
4d1207f6 462
29abe551 463 Lisp_Float = 7
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464 };
465
a32fa736 466/* This is the set of data types that share a common structure.
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467 The first member of the structure is a type code from this set.
468 The enum values are arbitrary, but we'll use large numbers to make it
469 more likely that we'll spot the error if a random word in memory is
470 mistakenly interpreted as a Lisp_Misc. */
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471enum Lisp_Misc_Type
472 {
c98adc1b 473 Lisp_Misc_Free = 0x5eab,
84d1833e 474 Lisp_Misc_Marker,
99a3d506 475 Lisp_Misc_Overlay,
222151aa 476 Lisp_Misc_Save_Value,
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477 /* Currently floats are not a misc type,
478 but let's define this in case we want to change that. */
479 Lisp_Misc_Float,
480 /* This is not a type code. It is for range checking. */
481 Lisp_Misc_Limit
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482 };
483
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484/* These are the types of forwarding objects used in the value slot
485 of symbols for special built-in variables whose value is stored in
486 C variables. */
487enum Lisp_Fwd_Type
488 {
489 Lisp_Fwd_Int, /* Fwd to a C `int' variable. */
490 Lisp_Fwd_Bool, /* Fwd to a C boolean var. */
491 Lisp_Fwd_Obj, /* Fwd to a C Lisp_Object variable. */
492 Lisp_Fwd_Buffer_Obj, /* Fwd to a Lisp_Object field of buffers. */
29abe551 493 Lisp_Fwd_Kboard_Obj /* Fwd to a Lisp_Object field of kboards. */
ce5b453a
SM
494 };
495
c95a4266
EZ
496/* If you want to define a new Lisp data type, here are some
497 instructions. See the thread at
498 http://lists.gnu.org/archive/html/emacs-devel/2012-10/msg00561.html
499 for more info.
500
501 First, there are already a couple of Lisp types that can be used if
502 your new type does not need to be exposed to Lisp programs nor
503 displayed to users. These are Lisp_Save_Value, a Lisp_Misc
791ef5f8 504 subtype; and PVEC_OTHER, a kind of vectorlike object. The former
c95a4266 505 is suitable for temporarily stashing away pointers and integers in
1396ac86 506 a Lisp object. The latter is useful for vector-like Lisp objects
c95a4266
EZ
507 that need to be used as part of other objects, but which are never
508 shown to users or Lisp code (search for PVEC_OTHER in xterm.c for
509 an example).
510
511 These two types don't look pretty when printed, so they are
512 unsuitable for Lisp objects that can be exposed to users.
513
514 To define a new data type, add one more Lisp_Misc subtype or one
515 more pseudovector subtype. Pseudovectors are more suitable for
516 objects with several slots that need to support fast random access,
791ef5f8 517 while Lisp_Misc types are for everything else. A pseudovector object
c95a4266
EZ
518 provides one or more slots for Lisp objects, followed by struct
519 members that are accessible only from C. A Lisp_Misc object is a
520 wrapper for a C struct that can contain anything you like.
521
8847a0de
DA
522 Explicit freeing is discouraged for Lisp objects in general. But if
523 you really need to exploit this, use Lisp_Misc (check free_misc in
524 alloc.c to see why). There is no way to free a vectorlike object.
525
c95a4266
EZ
526 To add a new pseudovector type, extend the pvec_type enumeration;
527 to add a new Lisp_Misc, extend the Lisp_Misc_Type enumeration.
528
529 For a Lisp_Misc, you will also need to add your entry to union
530 Lisp_Misc (but make sure the first word has the same structure as
531 the others, starting with a 16-bit member of the Lisp_Misc_Type
532 enumeration and a 1-bit GC markbit) and make sure the overall size
533 of the union is not increased by your addition.
534
8847a0de
DA
535 For a new pseudovector, it's highly desirable to limit the size
536 of your data type by VBLOCK_BYTES_MAX bytes (defined in alloc.c).
537 Otherwise you will need to change sweep_vectors (also in alloc.c).
538
c95a4266
EZ
539 Then you will need to add switch branches in print.c (in
540 print_object, to print your object, and possibly also in
541 print_preprocess) and to alloc.c, to mark your object (in
542 mark_object) and to free it (in gc_sweep). The latter is also the
543 right place to call any code specific to your data type that needs
544 to run when the object is recycled -- e.g., free any additional
545 resources allocated for it that are not Lisp objects. You can even
546 make a pointer to the function that frees the resources a slot in
547 your object -- this way, the same object could be used to represent
548 several disparate C structures. */
549
646b5f55 550#ifdef CHECK_LISP_OBJECT_TYPE
3cfe6dfd 551
646b5f55
AS
552typedef struct { EMACS_INT i; } Lisp_Object;
553
bfe3e0a2 554#define LISP_INITIALLY_ZERO {0}
f3fbd155 555
4706125e 556#undef CHECK_LISP_OBJECT_TYPE
96c06863 557enum CHECK_LISP_OBJECT_TYPE { CHECK_LISP_OBJECT_TYPE = true };
646b5f55 558#else /* CHECK_LISP_OBJECT_TYPE */
3cfe6dfd 559
646b5f55 560/* If a struct type is not wanted, define Lisp_Object as just a number. */
3cfe6dfd 561
c003141f 562typedef EMACS_INT Lisp_Object;
bfe3e0a2 563#define LISP_INITIALLY_ZERO 0
96c06863 564enum CHECK_LISP_OBJECT_TYPE { CHECK_LISP_OBJECT_TYPE = false };
646b5f55 565#endif /* CHECK_LISP_OBJECT_TYPE */
3cfe6dfd 566
84575e67
PE
567/* Convert a Lisp_Object to the corresponding EMACS_INT and vice versa.
568 At the machine level, these operations are no-ops. */
569LISP_MACRO_DEFUN (XLI, EMACS_INT, (Lisp_Object o), (o))
570LISP_MACRO_DEFUN (XIL, Lisp_Object, (EMACS_INT i), (i))
571
d311d28c 572/* In the size word of a vector, this bit means the vector has been marked. */
846d69ac 573
bb9937df 574DEFINE_GDB_SYMBOL_BEGIN (ptrdiff_t, ARRAY_MARK_FLAG)
79ea6c20 575#define ARRAY_MARK_FLAG PTRDIFF_MIN
bb9937df 576DEFINE_GDB_SYMBOL_END (ARRAY_MARK_FLAG)
846d69ac 577
b5088f80
KH
578/* In the size word of a struct Lisp_Vector, this bit means it's really
579 some other vector-like object. */
bb9937df 580DEFINE_GDB_SYMBOL_BEGIN (ptrdiff_t, PSEUDOVECTOR_FLAG)
f162bcc3 581#define PSEUDOVECTOR_FLAG (PTRDIFF_MAX - PTRDIFF_MAX / 2)
bb9937df 582DEFINE_GDB_SYMBOL_END (PSEUDOVECTOR_FLAG)
b5088f80 583
303a5c93 584/* In a pseudovector, the size field actually contains a word with one
6aea7528
DA
585 PSEUDOVECTOR_FLAG bit set, and one of the following values extracted
586 with PVEC_TYPE_MASK to indicate the actual type. */
99a3d506
RS
587enum pvec_type
588{
6aea7528 589 PVEC_NORMAL_VECTOR,
ee28be33
SM
590 PVEC_FREE,
591 PVEC_PROCESS,
592 PVEC_FRAME,
593 PVEC_WINDOW,
594 PVEC_BOOL_VECTOR,
595 PVEC_BUFFER,
596 PVEC_HASH_TABLE,
597 PVEC_TERMINAL,
598 PVEC_WINDOW_CONFIGURATION,
599 PVEC_SUBR,
600 PVEC_OTHER,
914adc42
DA
601 /* These should be last, check internal_equal to see why. */
602 PVEC_COMPILED,
603 PVEC_CHAR_TABLE,
604 PVEC_SUB_CHAR_TABLE,
605 PVEC_FONT /* Should be last because it's used for range checking. */
99a3d506 606};
b5088f80 607
4706125e
PE
608/* DATA_SEG_BITS forces extra bits to be or'd in with any pointers
609 which were stored in a Lisp_Object. */
610#ifndef DATA_SEG_BITS
611# define DATA_SEG_BITS 0
612#endif
613enum { gdb_DATA_SEG_BITS = DATA_SEG_BITS };
614#undef DATA_SEG_BITS
615
616enum More_Lisp_Bits
1781b9e9 617 {
4706125e
PE
618 DATA_SEG_BITS = gdb_DATA_SEG_BITS,
619
620 /* For convenience, we also store the number of elements in these bits.
621 Note that this size is not necessarily the memory-footprint size, but
622 only the number of Lisp_Object fields (that need to be traced by GC).
623 The distinction is used, e.g., by Lisp_Process, which places extra
624 non-Lisp_Object fields at the end of the structure. */
914adc42 625 PSEUDOVECTOR_SIZE_BITS = 12,
1781b9e9 626 PSEUDOVECTOR_SIZE_MASK = (1 << PSEUDOVECTOR_SIZE_BITS) - 1,
914adc42
DA
627
628 /* To calculate the memory footprint of the pseudovector, it's useful
629 to store the size of non-Lisp area in word_size units here. */
630 PSEUDOVECTOR_REST_BITS = 12,
04a2d0d3 631 PSEUDOVECTOR_REST_MASK = (((1 << PSEUDOVECTOR_REST_BITS) - 1)
914adc42
DA
632 << PSEUDOVECTOR_SIZE_BITS),
633
634 /* Used to extract pseudovector subtype information. */
635 PSEUDOVECTOR_AREA_BITS = PSEUDOVECTOR_SIZE_BITS + PSEUDOVECTOR_REST_BITS,
56a0e352 636 PVEC_TYPE_MASK = 0x3f << PSEUDOVECTOR_AREA_BITS
4706125e 637 };
3cfe6dfd 638\f
84575e67 639/* These functions extract various sorts of values from a Lisp_Object.
bb9937df
PE
640 For example, if tem is a Lisp_Object whose type is Lisp_Cons,
641 XCONS (tem) is the struct Lisp_Cons * pointing to the memory for
642 that cons. */
3cfe6dfd 643
bb9937df 644DEFINE_GDB_SYMBOL_BEGIN (EMACS_INT, VALMASK)
84575e67 645#define VALMASK (USE_LSB_TAG ? - (1 << GCTYPEBITS) : VAL_MAX)
bb9937df 646DEFINE_GDB_SYMBOL_END (VALMASK)
6b61353c 647
84575e67
PE
648/* Largest and smallest representable fixnum values. These are the C
649 values. They are macros for use in static initializers. */
650#define MOST_POSITIVE_FIXNUM (EMACS_INT_MAX >> INTTYPEBITS)
651#define MOST_NEGATIVE_FIXNUM (-1 - MOST_POSITIVE_FIXNUM)
6b61353c 652
84575e67
PE
653/* Extract the pointer hidden within A. */
654LISP_MACRO_DEFUN (XPNTR, void *, (Lisp_Object a), (a))
6b61353c 655
84575e67 656#if USE_LSB_TAG
6b61353c 657
84575e67
PE
658LISP_MACRO_DEFUN (make_number, Lisp_Object, (EMACS_INT n), (n))
659LISP_MACRO_DEFUN (XINT, EMACS_INT, (Lisp_Object a), (a))
660LISP_MACRO_DEFUN (XFASTINT, EMACS_INT, (Lisp_Object a), (a))
661LISP_MACRO_DEFUN (XTYPE, enum Lisp_Type, (Lisp_Object a), (a))
662LISP_MACRO_DEFUN (XUNTAG, void *, (Lisp_Object a, int type), (a, type))
6b61353c 663
84575e67 664#else /* ! USE_LSB_TAG */
3cfe6dfd 665
84575e67
PE
666/* Although compiled only if ! USE_LSB_TAG, the following functions
667 also work when USE_LSB_TAG; this is to aid future maintenance when
668 the lisp_h_* macros are eventually removed. */
3cfe6dfd 669
84575e67
PE
670/* Make a Lisp integer representing the value of the low order
671 bits of N. */
00382e8b 672INLINE Lisp_Object
84575e67
PE
673make_number (EMACS_INT n)
674{
675 return XIL (USE_LSB_TAG ? n << INTTYPEBITS : n & INTMASK);
676}
3cfe6dfd 677
84575e67 678/* Extract A's value as a signed integer. */
00382e8b 679INLINE EMACS_INT
84575e67
PE
680XINT (Lisp_Object a)
681{
682 EMACS_INT i = XLI (a);
683 return (USE_LSB_TAG ? i : i << INTTYPEBITS) >> INTTYPEBITS;
684}
3cfe6dfd 685
84575e67
PE
686/* Like XINT (A), but may be faster. A must be nonnegative.
687 If ! USE_LSB_TAG, this takes advantage of the fact that Lisp
688 integers have zero-bits in their tags. */
00382e8b 689INLINE EMACS_INT
84575e67
PE
690XFASTINT (Lisp_Object a)
691{
692 EMACS_INT n = USE_LSB_TAG ? XINT (a) : XLI (a);
693 eassert (0 <= n);
694 return n;
695}
b7acde90 696
84575e67 697/* Extract A's type. */
00382e8b 698INLINE enum Lisp_Type
84575e67
PE
699XTYPE (Lisp_Object a)
700{
701 EMACS_UINT i = XLI (a);
702 return USE_LSB_TAG ? i & ~VALMASK : i >> VALBITS;
703}
b7acde90 704
84575e67 705/* Extract A's pointer value, assuming A's type is TYPE. */
00382e8b 706INLINE void *
84575e67
PE
707XUNTAG (Lisp_Object a, int type)
708{
709 if (USE_LSB_TAG)
710 {
711 intptr_t i = XLI (a) - type;
712 return (void *) i;
713 }
714 return XPNTR (a);
715}
3cfe6dfd 716
84575e67 717#endif /* ! USE_LSB_TAG */
61ddb1b9 718
84575e67 719/* Extract A's value as an unsigned integer. */
00382e8b 720INLINE EMACS_UINT
84575e67
PE
721XUINT (Lisp_Object a)
722{
723 EMACS_UINT i = XLI (a);
724 return USE_LSB_TAG ? i >> INTTYPEBITS : i & INTMASK;
725}
b349d111 726
84575e67
PE
727/* Return A's (Lisp-integer sized) hash. Happens to be like XUINT
728 right now, but XUINT should only be applied to objects we know are
729 integers. */
730LISP_MACRO_DEFUN (XHASH, EMACS_INT, (Lisp_Object a), (a))
b263a6b0 731
84575e67 732/* Like make_number (N), but may be faster. N must be in nonnegative range. */
00382e8b 733INLINE Lisp_Object
84575e67
PE
734make_natnum (EMACS_INT n)
735{
736 eassert (0 <= n && n <= MOST_POSITIVE_FIXNUM);
737 return USE_LSB_TAG ? make_number (n) : XIL (n);
738}
b9466edb 739
84575e67
PE
740/* Return true if X and Y are the same object. */
741LISP_MACRO_DEFUN (EQ, bool, (Lisp_Object x, Lisp_Object y), (x, y))
0de4bb68 742
96c06863 743/* Value is true if I doesn't fit into a Lisp fixnum. It is
987c9327 744 written this way so that it also works if I is of unsigned
2e6578fb 745 type or if I is a NaN. */
dc8e8b07
GM
746
747#define FIXNUM_OVERFLOW_P(i) \
7216e43b 748 (! ((0 <= (i) || MOST_NEGATIVE_FIXNUM <= (i)) && (i) <= MOST_POSITIVE_FIXNUM))
dc8e8b07 749
00382e8b 750INLINE ptrdiff_t
d311d28c
PE
751clip_to_bounds (ptrdiff_t lower, EMACS_INT num, ptrdiff_t upper)
752{
753 return num < lower ? lower : num <= upper ? num : upper;
754}
84575e67
PE
755\f
756/* Forward declarations. */
757
758/* Defined in this file. */
759union Lisp_Fwd;
00382e8b
PE
760INLINE bool BOOL_VECTOR_P (Lisp_Object);
761INLINE bool BUFFER_OBJFWDP (union Lisp_Fwd *);
762INLINE bool BUFFERP (Lisp_Object);
763INLINE bool CHAR_TABLE_P (Lisp_Object);
764INLINE Lisp_Object CHAR_TABLE_REF_ASCII (Lisp_Object, ptrdiff_t);
765INLINE bool (CONSP) (Lisp_Object);
766INLINE bool (FLOATP) (Lisp_Object);
767INLINE bool functionp (Lisp_Object);
768INLINE bool (INTEGERP) (Lisp_Object);
769INLINE bool (MARKERP) (Lisp_Object);
770INLINE bool (MISCP) (Lisp_Object);
771INLINE bool (NILP) (Lisp_Object);
772INLINE bool OVERLAYP (Lisp_Object);
773INLINE bool PROCESSP (Lisp_Object);
774INLINE bool PSEUDOVECTORP (Lisp_Object, int);
775INLINE bool SAVE_VALUEP (Lisp_Object);
776INLINE void set_sub_char_table_contents (Lisp_Object, ptrdiff_t,
84575e67 777 Lisp_Object);
00382e8b
PE
778INLINE bool STRINGP (Lisp_Object);
779INLINE bool SUB_CHAR_TABLE_P (Lisp_Object);
780INLINE bool SUBRP (Lisp_Object);
781INLINE bool (SYMBOLP) (Lisp_Object);
782INLINE bool (VECTORLIKEP) (Lisp_Object);
783INLINE bool WINDOWP (Lisp_Object);
784INLINE struct Lisp_Save_Value *XSAVE_VALUE (Lisp_Object);
d311d28c 785
84575e67
PE
786/* Defined in chartab.c. */
787extern Lisp_Object char_table_ref (Lisp_Object, int);
788extern void char_table_set (Lisp_Object, int, Lisp_Object);
789extern int char_table_translate (Lisp_Object, int);
790
791/* Defined in data.c. */
792extern Lisp_Object Qarrayp, Qbufferp, Qbuffer_or_string_p, Qchar_table_p;
793extern Lisp_Object Qconsp, Qfloatp, Qintegerp, Qlambda, Qlistp, Qmarkerp, Qnil;
df5b4930 794extern Lisp_Object Qnumberp, Qstringp, Qsymbolp, Qt, Qvectorp;
3e0b94e7 795extern Lisp_Object Qbool_vector_p;
84575e67 796extern Lisp_Object Qvector_or_char_table_p, Qwholenump;
8f3a2c26 797extern Lisp_Object Qwindow;
84575e67
PE
798extern Lisp_Object Ffboundp (Lisp_Object);
799extern _Noreturn Lisp_Object wrong_type_argument (Lisp_Object, Lisp_Object);
800
801/* Defined in emacs.c. */
802extern bool initialized;
803
804/* Defined in eval.c. */
805extern Lisp_Object Qautoload;
806
807/* Defined in floatfns.c. */
808extern double extract_float (Lisp_Object);
809
810/* Defined in process.c. */
811extern Lisp_Object Qprocessp;
812
813/* Defined in window.c. */
814extern Lisp_Object Qwindowp;
815
816/* Defined in xdisp.c. */
817extern Lisp_Object Qimage;
7b1123d8 818\f
84575e67 819
99a3d506 820/* Extract a value or address from a Lisp_Object. */
3cfe6dfd 821
84575e67 822LISP_MACRO_DEFUN (XCONS, struct Lisp_Cons *, (Lisp_Object a), (a))
7c06ac2b 823
00382e8b 824INLINE struct Lisp_Vector *
84575e67
PE
825XVECTOR (Lisp_Object a)
826{
827 eassert (VECTORLIKEP (a));
828 return XUNTAG (a, Lisp_Vectorlike);
829}
c9f6631c 830
00382e8b 831INLINE struct Lisp_String *
84575e67
PE
832XSTRING (Lisp_Object a)
833{
834 eassert (STRINGP (a));
835 return XUNTAG (a, Lisp_String);
836}
ce5b453a 837
84575e67 838LISP_MACRO_DEFUN (XSYMBOL, struct Lisp_Symbol *, (Lisp_Object a), (a))
ce5b453a 839
00382e8b 840INLINE struct Lisp_Float *
84575e67
PE
841XFLOAT (Lisp_Object a)
842{
843 eassert (FLOATP (a));
844 return XUNTAG (a, Lisp_Float);
845}
3cfe6dfd 846
7c06ac2b 847/* Pseudovector types. */
84575e67 848
00382e8b 849INLINE struct Lisp_Process *
84575e67
PE
850XPROCESS (Lisp_Object a)
851{
852 eassert (PROCESSP (a));
853 return XUNTAG (a, Lisp_Vectorlike);
854}
855
00382e8b 856INLINE struct window *
84575e67
PE
857XWINDOW (Lisp_Object a)
858{
859 eassert (WINDOWP (a));
860 return XUNTAG (a, Lisp_Vectorlike);
861}
862
00382e8b 863INLINE struct terminal *
84575e67
PE
864XTERMINAL (Lisp_Object a)
865{
866 return XUNTAG (a, Lisp_Vectorlike);
867}
868
00382e8b 869INLINE struct Lisp_Subr *
84575e67
PE
870XSUBR (Lisp_Object a)
871{
872 eassert (SUBRP (a));
873 return XUNTAG (a, Lisp_Vectorlike);
874}
875
00382e8b 876INLINE struct buffer *
84575e67
PE
877XBUFFER (Lisp_Object a)
878{
879 eassert (BUFFERP (a));
880 return XUNTAG (a, Lisp_Vectorlike);
881}
882
00382e8b 883INLINE struct Lisp_Char_Table *
84575e67
PE
884XCHAR_TABLE (Lisp_Object a)
885{
886 eassert (CHAR_TABLE_P (a));
887 return XUNTAG (a, Lisp_Vectorlike);
888}
889
00382e8b 890INLINE struct Lisp_Sub_Char_Table *
84575e67
PE
891XSUB_CHAR_TABLE (Lisp_Object a)
892{
893 eassert (SUB_CHAR_TABLE_P (a));
894 return XUNTAG (a, Lisp_Vectorlike);
895}
896
00382e8b 897INLINE struct Lisp_Bool_Vector *
84575e67
PE
898XBOOL_VECTOR (Lisp_Object a)
899{
900 eassert (BOOL_VECTOR_P (a));
901 return XUNTAG (a, Lisp_Vectorlike);
902}
99a3d506 903
99a3d506 904/* Construct a Lisp_Object from a value or address. */
7c06ac2b 905
00382e8b 906INLINE Lisp_Object
84575e67
PE
907make_lisp_ptr (void *ptr, enum Lisp_Type type)
908{
909 EMACS_UINT utype = type;
910 EMACS_UINT typebits = USE_LSB_TAG ? type : utype << VALBITS;
911 Lisp_Object a = XIL (typebits | (uintptr_t) ptr);
912 eassert (XTYPE (a) == type && XUNTAG (a, type) == ptr);
913 return a;
914}
915
00382e8b 916INLINE Lisp_Object
84575e67
PE
917make_lisp_proc (struct Lisp_Process *p)
918{
919 return make_lisp_ptr (p, Lisp_Vectorlike);
920}
921
ff55dfe8 922#define XSETINT(a, b) ((a) = make_number (b))
84575e67 923#define XSETFASTINT(a, b) ((a) = make_natnum (b))
ff55dfe8
PE
924#define XSETCONS(a, b) ((a) = make_lisp_ptr (b, Lisp_Cons))
925#define XSETVECTOR(a, b) ((a) = make_lisp_ptr (b, Lisp_Vectorlike))
926#define XSETSTRING(a, b) ((a) = make_lisp_ptr (b, Lisp_String))
927#define XSETSYMBOL(a, b) ((a) = make_lisp_ptr (b, Lisp_Symbol))
928#define XSETFLOAT(a, b) ((a) = make_lisp_ptr (b, Lisp_Float))
ff55dfe8 929#define XSETMISC(a, b) ((a) = make_lisp_ptr (b, Lisp_Misc))
7c06ac2b
RS
930
931/* Pseudovector types. */
c9f6631c 932
914adc42
DA
933#define XSETPVECTYPE(v, code) \
934 ((v)->header.size |= PSEUDOVECTOR_FLAG | ((code) << PSEUDOVECTOR_AREA_BITS))
935#define XSETPVECTYPESIZE(v, code, lispsize, restsize) \
ee28be33 936 ((v)->header.size = (PSEUDOVECTOR_FLAG \
914adc42
DA
937 | ((code) << PSEUDOVECTOR_AREA_BITS) \
938 | ((restsize) << PSEUDOVECTOR_SIZE_BITS) \
939 | (lispsize)))
aa0b0087
PE
940
941/* The cast to struct vectorlike_header * avoids aliasing issues. */
7c06ac2b 942#define XSETPSEUDOVECTOR(a, b, code) \
7555c33f
SM
943 XSETTYPED_PSEUDOVECTOR (a, b, \
944 (((struct vectorlike_header *) \
945 XUNTAG (a, Lisp_Vectorlike)) \
946 ->size), \
947 code)
eab3844f 948#define XSETTYPED_PSEUDOVECTOR(a, b, size, code) \
beb9f745 949 (XSETVECTOR (a, b), \
eab3844f 950 eassert ((size & (PSEUDOVECTOR_FLAG | PVEC_TYPE_MASK)) \
914adc42 951 == (PSEUDOVECTOR_FLAG | (code << PSEUDOVECTOR_AREA_BITS))))
aa0b0087 952
7c06ac2b
RS
953#define XSETWINDOW_CONFIGURATION(a, b) \
954 (XSETPSEUDOVECTOR (a, b, PVEC_WINDOW_CONFIGURATION))
955#define XSETPROCESS(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_PROCESS))
956#define XSETWINDOW(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_WINDOW))
49e49fb5 957#define XSETTERMINAL(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_TERMINAL))
914adc42 958#define XSETSUBR(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_SUBR))
7c06ac2b 959#define XSETCOMPILED(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_COMPILED))
99a3d506 960#define XSETBUFFER(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_BUFFER))
608ff985
RS
961#define XSETCHAR_TABLE(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_CHAR_TABLE))
962#define XSETBOOL_VECTOR(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_BOOL_VECTOR))
1842abb2 963#define XSETSUB_CHAR_TABLE(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_SUB_CHAR_TABLE))
c9f6631c 964
c8a39089
KS
965/* Type checking. */
966
84575e67
PE
967LISP_MACRO_DEFUN_VOID (CHECK_TYPE, (int ok, Lisp_Object Qxxxp, Lisp_Object x),
968 (ok, Qxxxp, x))
c8a39089 969
c644523b 970/* Deprecated and will be removed soon. */
e34f7f79
DA
971
972#define INTERNAL_FIELD(field) field ## _
c8a39089 973
5f6bf5fe 974/* See the macros in intervals.h. */
e221eae3
JA
975
976typedef struct interval *INTERVAL;
977
3cfe6dfd
JB
978struct Lisp_Cons
979 {
d8a05828 980 /* Car of this cons cell. */
c644523b 981 Lisp_Object car;
d8a05828 982
3a623fee
AS
983 union
984 {
d8a05828 985 /* Cdr of this cons cell. */
c644523b 986 Lisp_Object cdr;
d8a05828
DA
987
988 /* Used to chain conses on a free list. */
3a623fee
AS
989 struct Lisp_Cons *chain;
990 } u;
3cfe6dfd
JB
991 };
992
b7acde90 993/* Take the car or cdr of something known to be a cons cell. */
84575e67 994/* The _addr functions shouldn't be used outside of the minimal set
f3fbd155
KR
995 of code that has to know what a cons cell looks like. Other code not
996 part of the basic lisp implementation should assume that the car and cdr
84575e67 997 fields are not accessible. (What if we want to switch to
f3fbd155
KR
998 a copying collector someday? Cached cons cell field addresses may be
999 invalidated at arbitrary points.) */
00382e8b 1000INLINE Lisp_Object *
84575e67
PE
1001xcar_addr (Lisp_Object c)
1002{
1003 return &XCONS (c)->car;
1004}
00382e8b 1005INLINE Lisp_Object *
84575e67
PE
1006xcdr_addr (Lisp_Object c)
1007{
1008 return &XCONS (c)->u.cdr;
1009}
b7acde90 1010
f3fbd155 1011/* Use these from normal code. */
84575e67
PE
1012LISP_MACRO_DEFUN (XCAR, Lisp_Object, (Lisp_Object c), (c))
1013LISP_MACRO_DEFUN (XCDR, Lisp_Object, (Lisp_Object c), (c))
f3fbd155
KR
1014
1015/* Use these to set the fields of a cons cell.
1016
1017 Note that both arguments may refer to the same object, so 'n'
84575e67 1018 should not be read after 'c' is first modified. */
00382e8b 1019INLINE void
84575e67
PE
1020XSETCAR (Lisp_Object c, Lisp_Object n)
1021{
1022 *xcar_addr (c) = n;
1023}
00382e8b 1024INLINE void
84575e67
PE
1025XSETCDR (Lisp_Object c, Lisp_Object n)
1026{
1027 *xcdr_addr (c) = n;
1028}
f3fbd155 1029
b7acde90 1030/* Take the car or cdr of something whose type is not known. */
00382e8b 1031INLINE Lisp_Object
84575e67
PE
1032CAR (Lisp_Object c)
1033{
1034 return (CONSP (c) ? XCAR (c)
1035 : NILP (c) ? Qnil
1036 : wrong_type_argument (Qlistp, c));
1037}
00382e8b 1038INLINE Lisp_Object
84575e67
PE
1039CDR (Lisp_Object c)
1040{
1041 return (CONSP (c) ? XCDR (c)
1042 : NILP (c) ? Qnil
1043 : wrong_type_argument (Qlistp, c));
1044}
b7acde90 1045
c8a39089 1046/* Take the car or cdr of something whose type is not known. */
00382e8b 1047INLINE Lisp_Object
84575e67
PE
1048CAR_SAFE (Lisp_Object c)
1049{
1050 return CONSP (c) ? XCAR (c) : Qnil;
1051}
00382e8b 1052INLINE Lisp_Object
84575e67
PE
1053CDR_SAFE (Lisp_Object c)
1054{
1055 return CONSP (c) ? XCDR (c) : Qnil;
1056}
35f464a7 1057
84575e67 1058/* In a string or vector, the sign bit of the `size' is the gc mark bit. */
35f464a7 1059
84575e67
PE
1060struct Lisp_String
1061 {
1062 ptrdiff_t size;
1063 ptrdiff_t size_byte;
1064 INTERVAL intervals; /* Text properties in this string. */
1065 unsigned char *data;
1066 };
d8fc7ce4 1067
84575e67 1068/* True if STR is a multibyte string. */
00382e8b 1069INLINE bool
84575e67
PE
1070STRING_MULTIBYTE (Lisp_Object str)
1071{
1072 return 0 <= XSTRING (str)->size_byte;
1073}
35f464a7 1074
c9d624c6
PE
1075/* An upper bound on the number of bytes in a Lisp string, not
1076 counting the terminating null. This a tight enough bound to
1077 prevent integer overflow errors that would otherwise occur during
1078 string size calculations. A string cannot contain more bytes than
1079 a fixnum can represent, nor can it be so long that C pointer
1080 arithmetic stops working on the string plus its terminating null.
1081 Although the actual size limit (see STRING_BYTES_MAX in alloc.c)
1082 may be a bit smaller than STRING_BYTES_BOUND, calculating it here
1083 would expose alloc.c internal details that we'd rather keep
03a660a6
PE
1084 private.
1085
7b1123d8
PE
1086 This is a macro for use in static initializers. The cast to
1087 ptrdiff_t ensures that the macro is signed. */
c9d624c6 1088#define STRING_BYTES_BOUND \
88fb40b4 1089 ((ptrdiff_t) min (MOST_POSITIVE_FIXNUM, min (SIZE_MAX, PTRDIFF_MAX) - 1))
d1f3d2af 1090
491c2516 1091/* Mark STR as a unibyte string. */
96c06863
PE
1092#define STRING_SET_UNIBYTE(STR) \
1093 do { \
1094 if (EQ (STR, empty_multibyte_string)) \
1095 (STR) = empty_unibyte_string; \
1096 else \
1097 XSTRING (STR)->size_byte = -1; \
1098 } while (false)
491c2516 1099
94ef4d69
KH
1100/* Mark STR as a multibyte string. Assure that STR contains only
1101 ASCII characters in advance. */
96c06863
PE
1102#define STRING_SET_MULTIBYTE(STR) \
1103 do { \
1104 if (EQ (STR, empty_unibyte_string)) \
1105 (STR) = empty_multibyte_string; \
1106 else \
1107 XSTRING (STR)->size_byte = XSTRING (STR)->size; \
1108 } while (false)
94ef4d69 1109
84575e67 1110/* Convenience functions for dealing with Lisp strings. */
3cfe6dfd 1111
00382e8b 1112INLINE unsigned char *
84575e67
PE
1113SDATA (Lisp_Object string)
1114{
1115 return XSTRING (string)->data;
1116}
00382e8b 1117INLINE char *
84575e67
PE
1118SSDATA (Lisp_Object string)
1119{
1120 /* Avoid "differ in sign" warnings. */
1121 return (char *) SDATA (string);
1122}
00382e8b 1123INLINE unsigned char
84575e67
PE
1124SREF (Lisp_Object string, ptrdiff_t index)
1125{
1126 return SDATA (string)[index];
1127}
00382e8b 1128INLINE void
84575e67
PE
1129SSET (Lisp_Object string, ptrdiff_t index, unsigned char new)
1130{
1131 SDATA (string)[index] = new;
1132}
00382e8b 1133INLINE ptrdiff_t
84575e67
PE
1134SCHARS (Lisp_Object string)
1135{
1136 return XSTRING (string)->size;
1137}
fbe9e0b9
PE
1138
1139#ifdef GC_CHECK_STRING_BYTES
1140extern ptrdiff_t string_bytes (struct Lisp_String *);
1141#endif
00382e8b 1142INLINE ptrdiff_t
84575e67
PE
1143STRING_BYTES (struct Lisp_String *s)
1144{
1145#ifdef GC_CHECK_STRING_BYTES
84575e67
PE
1146 return string_bytes (s);
1147#else
1148 return s->size_byte < 0 ? s->size : s->size_byte;
1149#endif
1150}
fbe9e0b9 1151
00382e8b 1152INLINE ptrdiff_t
84575e67
PE
1153SBYTES (Lisp_Object string)
1154{
1155 return STRING_BYTES (XSTRING (string));
1156}
00382e8b 1157INLINE void
84575e67
PE
1158STRING_SET_CHARS (Lisp_Object string, ptrdiff_t newsize)
1159{
1160 XSTRING (string)->size = newsize;
1161}
00382e8b 1162INLINE void
84575e67
PE
1163STRING_COPYIN (Lisp_Object string, ptrdiff_t index, char const *new,
1164 ptrdiff_t count)
1165{
1166 memcpy (SDATA (string) + index, new, count);
1167}
3cfe6dfd 1168
aa0b0087 1169/* Header of vector-like objects. This documents the layout constraints on
914adc42 1170 vectors and pseudovectors (objects of PVEC_xxx subtype). It also prevents
84575e67
PE
1171 compilers from being fooled by Emacs's type punning: XSETPSEUDOVECTOR
1172 and PSEUDOVECTORP cast their pointers to struct vectorlike_header *,
aa0b0087
PE
1173 because when two such pointers potentially alias, a compiler won't
1174 incorrectly reorder loads and stores to their size fields. See
df5b4930 1175 Bug#8546. */
b102ceb1 1176struct vectorlike_header
3cfe6dfd 1177 {
914adc42 1178 /* The only field contains various pieces of information:
ee28be33
SM
1179 - The MSB (ARRAY_MARK_FLAG) holds the gcmarkbit.
1180 - The next bit (PSEUDOVECTOR_FLAG) indicates whether this is a plain
1181 vector (0) or a pseudovector (1).
1182 - If PSEUDOVECTOR_FLAG is 0, the rest holds the size (number
1183 of slots) of the vector.
914adc42
DA
1184 - If PSEUDOVECTOR_FLAG is 1, the rest is subdivided into three fields:
1185 - a) pseudovector subtype held in PVEC_TYPE_MASK field;
1186 - b) number of Lisp_Objects slots at the beginning of the object
1187 held in PSEUDOVECTOR_SIZE_MASK field. These objects are always
1188 traced by the GC;
1189 - c) size of the rest fields held in PSEUDOVECTOR_REST_MASK and
1190 measured in word_size units. Rest fields may also include
1191 Lisp_Objects, but these objects usually needs some special treatment
1192 during GC.
1193 There are some exceptions. For PVEC_FREE, b) is always zero. For
1194 PVEC_BOOL_VECTOR and PVEC_SUBR, both b) and c) are always zero.
1195 Current layout limits the pseudovectors to 63 PVEC_xxx subtypes,
1196 4095 Lisp_Objects in GC-ed area and 4095 word-sized other slots. */
d311d28c 1197 ptrdiff_t size;
eab3844f
PE
1198 };
1199
91f2d272 1200/* A regular vector is just a header plus an array of Lisp_Objects. */
663e2b3f 1201
eab3844f
PE
1202struct Lisp_Vector
1203 {
b102ceb1 1204 struct vectorlike_header header;
91f2d272
PE
1205 Lisp_Object contents[FLEXIBLE_ARRAY_MEMBER];
1206 };
0a858ebf 1207
91f2d272
PE
1208/* C11 prohibits alignof (struct Lisp_Vector), so compute it manually. */
1209enum
1210 {
1211 ALIGNOF_STRUCT_LISP_VECTOR
1212 = alignof (union { struct vectorlike_header a; Lisp_Object b; })
3cfe6dfd
JB
1213 };
1214
91f2d272 1215/* A boolvector is a kind of vectorlike, with contents like a string. */
663e2b3f
DA
1216
1217struct Lisp_Bool_Vector
1218 {
1219 /* HEADER.SIZE is the vector's size field. It doesn't have the real size,
1220 just the subtype information. */
1221 struct vectorlike_header header;
1222 /* This is the size in bits. */
1223 EMACS_INT size;
2cf00efc 1224 /* The actual bits, packed into bytes.
75360f19 1225 Zeros fill out the last word if needed.
2cf00efc
PE
1226 The bits are in little-endian order in the bytes, and
1227 the bytes are in little-endian order in the words. */
df5b4930 1228 bits_word data[FLEXIBLE_ARRAY_MEMBER];
663e2b3f
DA
1229 };
1230
1c0a7493
PE
1231INLINE EMACS_INT
1232bool_vector_size (Lisp_Object a)
1233{
1234 EMACS_INT size = XBOOL_VECTOR (a)->size;
1235 eassume (0 <= size);
1236 return size;
1237}
1238
df5b4930
PE
1239INLINE bits_word *
1240bool_vector_data (Lisp_Object a)
1241{
1242 return XBOOL_VECTOR (a)->data;
1243}
1244
1245INLINE unsigned char *
1246bool_vector_uchar_data (Lisp_Object a)
1247{
1248 return (unsigned char *) bool_vector_data (a);
1249}
1250
2cf00efc 1251/* The number of data words and bytes in a bool vector with SIZE bits. */
df5b4930
PE
1252
1253INLINE EMACS_INT
1254bool_vector_words (EMACS_INT size)
1255{
1256 eassume (0 <= size && size <= EMACS_INT_MAX - (BITS_PER_BITS_WORD - 1));
1257 return (size + BITS_PER_BITS_WORD - 1) / BITS_PER_BITS_WORD;
1258}
1259
2cf00efc
PE
1260INLINE EMACS_INT
1261bool_vector_bytes (EMACS_INT size)
1262{
1263 eassume (0 <= size && size <= EMACS_INT_MAX - (BITS_PER_BITS_WORD - 1));
1264 return (size + BOOL_VECTOR_BITS_PER_CHAR - 1) / BOOL_VECTOR_BITS_PER_CHAR;
1265}
1266
df5b4930
PE
1267/* True if A's Ith bit is set. */
1268
1269INLINE bool
1270bool_vector_bitref (Lisp_Object a, EMACS_INT i)
1271{
1272 eassume (0 <= i && i < bool_vector_size (a));
1273 return !! (bool_vector_uchar_data (a)[i / BOOL_VECTOR_BITS_PER_CHAR]
1274 & (1 << (i % BOOL_VECTOR_BITS_PER_CHAR)));
1275}
1276
1277INLINE Lisp_Object
1278bool_vector_ref (Lisp_Object a, EMACS_INT i)
1279{
1280 return bool_vector_bitref (a, i) ? Qt : Qnil;
1281}
1282
1283/* Set A's Ith bit to B. */
1284
1285INLINE void
1286bool_vector_set (Lisp_Object a, EMACS_INT i, bool b)
1287{
1288 unsigned char *addr;
1289
1290 eassume (0 <= i && i < bool_vector_size (a));
1291 addr = &bool_vector_uchar_data (a)[i / BOOL_VECTOR_BITS_PER_CHAR];
1292
1293 if (b)
1294 *addr |= 1 << (i % BOOL_VECTOR_BITS_PER_CHAR);
1295 else
1296 *addr &= ~ (1 << (i % BOOL_VECTOR_BITS_PER_CHAR));
1297}
1298
663e2b3f
DA
1299/* Some handy constants for calculating sizes
1300 and offsets, mostly of vectorlike objects. */
1301
1302enum
1303 {
91f2d272 1304 header_size = offsetof (struct Lisp_Vector, contents),
663e2b3f
DA
1305 bool_header_size = offsetof (struct Lisp_Bool_Vector, data),
1306 word_size = sizeof (Lisp_Object)
1307 };
1308
84575e67
PE
1309/* Conveniences for dealing with Lisp arrays. */
1310
00382e8b 1311INLINE Lisp_Object
84575e67
PE
1312AREF (Lisp_Object array, ptrdiff_t idx)
1313{
91f2d272 1314 return XVECTOR (array)->contents[idx];
84575e67
PE
1315}
1316
00382e8b 1317INLINE Lisp_Object *
84575e67
PE
1318aref_addr (Lisp_Object array, ptrdiff_t idx)
1319{
91f2d272 1320 return & XVECTOR (array)->contents[idx];
84575e67
PE
1321}
1322
00382e8b 1323INLINE ptrdiff_t
84575e67
PE
1324ASIZE (Lisp_Object array)
1325{
1326 return XVECTOR (array)->header.size;
1327}
1328
00382e8b 1329INLINE void
84575e67
PE
1330ASET (Lisp_Object array, ptrdiff_t idx, Lisp_Object val)
1331{
1332 eassert (0 <= idx && idx < ASIZE (array));
91f2d272 1333 XVECTOR (array)->contents[idx] = val;
84575e67
PE
1334}
1335
00382e8b 1336INLINE void
84575e67
PE
1337gc_aset (Lisp_Object array, ptrdiff_t idx, Lisp_Object val)
1338{
1339 /* Like ASET, but also can be used in the garbage collector:
1340 sweep_weak_table calls set_hash_key etc. while the table is marked. */
1341 eassert (0 <= idx && idx < (ASIZE (array) & ~ARRAY_MARK_FLAG));
91f2d272 1342 XVECTOR (array)->contents[idx] = val;
84575e67
PE
1343}
1344
94225242 1345/* If a struct is made to look like a vector, this macro returns the length
4115d3f7 1346 of the shortest vector that would hold that struct. */
663e2b3f
DA
1347
1348#define VECSIZE(type) \
1349 ((sizeof (type) - header_size + word_size - 1) / word_size)
94225242 1350
d0ebe33a
SM
1351/* Like VECSIZE, but used when the pseudo-vector has non-Lisp_Object fields
1352 at the end and we need to compute the number of Lisp_Object fields (the
1353 ones that the GC needs to trace). */
663e2b3f
DA
1354
1355#define PSEUDOVECSIZE(type, nonlispfield) \
1356 ((offsetof (type, nonlispfield) - header_size) / word_size)
d0ebe33a 1357
ea204efb
PE
1358/* Compute A OP B, using the unsigned comparison operator OP. A and B
1359 should be integer expressions. This is not the same as
53964682 1360 mathematical comparison; for example, UNSIGNED_CMP (0, <, -1)
96c06863 1361 returns true. For efficiency, prefer plain unsigned comparison if A
ea204efb
PE
1362 and B's sizes both fit (after integer promotion). */
1363#define UNSIGNED_CMP(a, op, b) \
1364 (max (sizeof ((a) + 0), sizeof ((b) + 0)) <= sizeof (unsigned) \
1365 ? ((a) + (unsigned) 0) op ((b) + (unsigned) 0) \
1366 : ((a) + (uintmax_t) 0) op ((b) + (uintmax_t) 0))
1367
96c06863 1368/* True iff C is an ASCII character. */
ea204efb 1369#define ASCII_CHAR_P(c) UNSIGNED_CMP (c, <, 0x80)
15206ed9 1370
84575e67
PE
1371/* A char-table is a kind of vectorlike, with contents are like a
1372 vector but with a few other slots. For some purposes, it makes
1373 sense to handle a char-table with type struct Lisp_Vector. An
1374 element of a char table can be any Lisp objects, but if it is a sub
1375 char-table, we treat it a table that contains information of a
1376 specific range of characters. A sub char-table has the same
1377 structure as a vector. A sub char table appears only in an element
1378 of a char-table, and there's no way to access it directly from
1379 Emacs Lisp program. */
1842abb2 1380
03a660a6
PE
1381enum CHARTAB_SIZE_BITS
1382 {
1383 CHARTAB_SIZE_BITS_0 = 6,
1384 CHARTAB_SIZE_BITS_1 = 4,
1385 CHARTAB_SIZE_BITS_2 = 5,
1386 CHARTAB_SIZE_BITS_3 = 7
1387 };
1842abb2
KH
1388
1389extern const int chartab_size[4];
1390
608ff985
RS
1391struct Lisp_Char_Table
1392 {
eab3844f 1393 /* HEADER.SIZE is the vector's size field, which also holds the
608ff985 1394 pseudovector type information. It holds the size, too.
c73bd236
MB
1395 The size counts the defalt, parent, purpose, ascii,
1396 contents, and extras slots. */
b102ceb1 1397 struct vectorlike_header header;
1842abb2 1398
608ff985
RS
1399 /* This holds a default value,
1400 which is used whenever the value for a specific character is nil. */
1401 Lisp_Object defalt;
ea724a01 1402
8f924df7
KH
1403 /* This points to another char table, which we inherit from when the
1404 value for a specific character is nil. The `defalt' slot takes
1405 precedence over this. */
608ff985 1406 Lisp_Object parent;
1842abb2 1407
8f924df7
KH
1408 /* This is a symbol which says what kind of use this char-table is
1409 meant for. */
7f73dc9d 1410 Lisp_Object purpose;
1842abb2 1411
8f924df7
KH
1412 /* The bottom sub char-table for characters of the range 0..127. It
1413 is nil if none of ASCII character has a specific value. */
1414 Lisp_Object ascii;
1842abb2 1415
8f924df7 1416 Lisp_Object contents[(1 << CHARTAB_SIZE_BITS_0)];
1842abb2 1417
8f924df7 1418 /* These hold additional data. It is a vector. */
fbe9e0b9 1419 Lisp_Object extras[FLEXIBLE_ARRAY_MEMBER];
608ff985
RS
1420 };
1421
1842abb2 1422struct Lisp_Sub_Char_Table
8f924df7 1423 {
eab3844f 1424 /* HEADER.SIZE is the vector's size field, which also holds the
8f924df7 1425 pseudovector type information. It holds the size, too. */
b102ceb1 1426 struct vectorlike_header header;
1842abb2 1427
8f924df7 1428 /* Depth of this sub char-table. It should be 1, 2, or 3. A sub
78edd3b7 1429 char-table of depth 1 contains 16 elements, and each element
8f924df7
KH
1430 covers 4096 (128*32) characters. A sub char-table of depth 2
1431 contains 32 elements, and each element covers 128 characters. A
1432 sub char-table of depth 3 contains 128 elements, and each element
1433 is for one character. */
1434 Lisp_Object depth;
1842abb2 1435
8f924df7
KH
1436 /* Minimum character covered by the sub char-table. */
1437 Lisp_Object min_char;
1842abb2 1438
34dabdb7 1439 /* Use set_sub_char_table_contents to set this. */
fbe9e0b9 1440 Lisp_Object contents[FLEXIBLE_ARRAY_MEMBER];
8f924df7 1441 };
608ff985 1442
00382e8b 1443INLINE Lisp_Object
84575e67
PE
1444CHAR_TABLE_REF_ASCII (Lisp_Object ct, ptrdiff_t idx)
1445{
1446 struct Lisp_Char_Table *tbl = NULL;
1447 Lisp_Object val;
1448 do
1449 {
1450 tbl = tbl ? XCHAR_TABLE (tbl->parent) : XCHAR_TABLE (ct);
1451 val = (! SUB_CHAR_TABLE_P (tbl->ascii) ? tbl->ascii
1452 : XSUB_CHAR_TABLE (tbl->ascii)->contents[idx]);
1453 if (NILP (val))
1454 val = tbl->defalt;
1455 }
1456 while (NILP (val) && ! NILP (tbl->parent));
1457
1458 return val;
1459}
1460
1461/* Almost equivalent to Faref (CT, IDX) with optimization for ASCII
1462 characters. Do not check validity of CT. */
00382e8b 1463INLINE Lisp_Object
84575e67
PE
1464CHAR_TABLE_REF (Lisp_Object ct, int idx)
1465{
1466 return (ASCII_CHAR_P (idx)
1467 ? CHAR_TABLE_REF_ASCII (ct, idx)
1468 : char_table_ref (ct, idx));
1469}
1470
1471/* Equivalent to Faset (CT, IDX, VAL) with optimization for ASCII and
1472 8-bit European characters. Do not check validity of CT. */
00382e8b 1473INLINE void
84575e67
PE
1474CHAR_TABLE_SET (Lisp_Object ct, int idx, Lisp_Object val)
1475{
1476 if (ASCII_CHAR_P (idx) && SUB_CHAR_TABLE_P (XCHAR_TABLE (ct)->ascii))
1477 set_sub_char_table_contents (XCHAR_TABLE (ct)->ascii, idx, val);
1478 else
1479 char_table_set (ct, idx, val);
1480}
1481
7c06ac2b
RS
1482/* This structure describes a built-in function.
1483 It is generated by the DEFUN macro only.
914adc42 1484 defsubr makes it into a Lisp object. */
e98227af 1485
3cfe6dfd
JB
1486struct Lisp_Subr
1487 {
914adc42 1488 struct vectorlike_header header;
c0f2f16b
DN
1489 union {
1490 Lisp_Object (*a0) (void);
1491 Lisp_Object (*a1) (Lisp_Object);
1492 Lisp_Object (*a2) (Lisp_Object, Lisp_Object);
1493 Lisp_Object (*a3) (Lisp_Object, Lisp_Object, Lisp_Object);
1494 Lisp_Object (*a4) (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
1495 Lisp_Object (*a5) (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
1496 Lisp_Object (*a6) (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
1497 Lisp_Object (*a7) (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
1498 Lisp_Object (*a8) (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
d5273788 1499 Lisp_Object (*aUNEVALLED) (Lisp_Object args);
f66c7cf8 1500 Lisp_Object (*aMANY) (ptrdiff_t, Lisp_Object *);
c0f2f16b 1501 } function;
3cfe6dfd 1502 short min_args, max_args;
5e2327cf 1503 const char *symbol_name;
89dc303e
DN
1504 const char *intspec;
1505 const char *doc;
3cfe6dfd 1506 };
5010d3b8 1507
03a660a6
PE
1508/* This is the number of slots that every char table must have. This
1509 counts the ordinary slots and the top, defalt, parent, and purpose
1510 slots. */
1511enum CHAR_TABLE_STANDARD_SLOTS
1512 {
fbe9e0b9 1513 CHAR_TABLE_STANDARD_SLOTS = PSEUDOVECSIZE (struct Lisp_Char_Table, extras)
03a660a6
PE
1514 };
1515
1516/* Return the number of "extra" slots in the char table CT. */
1517
00382e8b 1518INLINE int
84575e67
PE
1519CHAR_TABLE_EXTRA_SLOTS (struct Lisp_Char_Table *ct)
1520{
1521 return ((ct->header.size & PSEUDOVECTOR_SIZE_MASK)
1522 - CHAR_TABLE_STANDARD_SLOTS);
1523}
03a660a6 1524
5010d3b8 1525\f
a32fa736
GM
1526/***********************************************************************
1527 Symbols
1528 ***********************************************************************/
1529
1530/* Interned state of a symbol. */
1531
1532enum symbol_interned
1533{
1534 SYMBOL_UNINTERNED = 0,
1535 SYMBOL_INTERNED = 1,
1536 SYMBOL_INTERNED_IN_INITIAL_OBARRAY = 2
1537};
1538
ce5b453a
SM
1539enum symbol_redirect
1540{
1541 SYMBOL_PLAINVAL = 4,
1542 SYMBOL_VARALIAS = 1,
1543 SYMBOL_LOCALIZED = 2,
9aba6043 1544 SYMBOL_FORWARDED = 3
ce5b453a
SM
1545};
1546
a32fa736
GM
1547struct Lisp_Symbol
1548{
96c06863 1549 bool_bf gcmarkbit : 1;
a84f89d5 1550
ce5b453a
SM
1551 /* Indicates where the value can be found:
1552 0 : it's a plain var, the value is in the `value' field.
1553 1 : it's a varalias, the value is really in the `alias' symbol.
1554 2 : it's a localized var, the value is in the `blv' object.
9aba6043 1555 3 : it's a forwarding variable, the value is in `forward'. */
a6fc3b5c 1556 ENUM_BF (symbol_redirect) redirect : 3;
a32fa736
GM
1557
1558 /* Non-zero means symbol is constant, i.e. changing its value
ce5b453a
SM
1559 should signal an error. If the value is 3, then the var
1560 can be changed, but only by `defconst'. */
1561 unsigned constant : 2;
a32fa736
GM
1562
1563 /* Interned state of the symbol. This is an enumerator from
1564 enum symbol_interned. */
1565 unsigned interned : 2;
1e973bc7 1566
96c06863 1567 /* True means that this variable has been explicitly declared
b9598260 1568 special (with `defvar' etc), and shouldn't be lexically bound. */
96c06863 1569 bool_bf declared_special : 1;
a32fa736 1570
e3b83880
SM
1571 /* True if pointed to from purespace and hence can't be GC'd. */
1572 bool_bf pinned : 1;
1573
c644523b
DA
1574 /* The symbol's name, as a Lisp string. */
1575 Lisp_Object name;
a32fa736 1576
9aba6043
SM
1577 /* Value of the symbol or Qunbound if unbound. Which alternative of the
1578 union is used depends on the `redirect' field above. */
ce5b453a 1579 union {
c644523b 1580 Lisp_Object value;
ce5b453a
SM
1581 struct Lisp_Symbol *alias;
1582 struct Lisp_Buffer_Local_Value *blv;
1583 union Lisp_Fwd *fwd;
1584 } val;
a32fa736 1585
eadf1faa 1586 /* Function value of the symbol or Qnil if not fboundp. */
c644523b 1587 Lisp_Object function;
a32fa736
GM
1588
1589 /* The symbol's property list. */
c644523b 1590 Lisp_Object plist;
e2c0561e 1591
a32fa736
GM
1592 /* Next symbol in obarray bucket, if the symbol is interned. */
1593 struct Lisp_Symbol *next;
1594};
1595
74d70085
KR
1596/* Value is name of symbol. */
1597
84575e67 1598LISP_MACRO_DEFUN (SYMBOL_VAL, Lisp_Object, (struct Lisp_Symbol *sym), (sym))
ce5b453a 1599
00382e8b 1600INLINE struct Lisp_Symbol *
84575e67
PE
1601SYMBOL_ALIAS (struct Lisp_Symbol *sym)
1602{
1603 eassert (sym->redirect == SYMBOL_VARALIAS);
1604 return sym->val.alias;
1605}
00382e8b 1606INLINE struct Lisp_Buffer_Local_Value *
84575e67
PE
1607SYMBOL_BLV (struct Lisp_Symbol *sym)
1608{
1609 eassert (sym->redirect == SYMBOL_LOCALIZED);
1610 return sym->val.blv;
1611}
00382e8b 1612INLINE union Lisp_Fwd *
84575e67
PE
1613SYMBOL_FWD (struct Lisp_Symbol *sym)
1614{
1615 eassert (sym->redirect == SYMBOL_FORWARDED);
1616 return sym->val.fwd;
1617}
74d70085 1618
84575e67
PE
1619LISP_MACRO_DEFUN_VOID (SET_SYMBOL_VAL,
1620 (struct Lisp_Symbol *sym, Lisp_Object v), (sym, v))
a32fa736 1621
00382e8b 1622INLINE void
84575e67
PE
1623SET_SYMBOL_ALIAS (struct Lisp_Symbol *sym, struct Lisp_Symbol *v)
1624{
1625 eassert (sym->redirect == SYMBOL_VARALIAS);
1626 sym->val.alias = v;
1627}
00382e8b 1628INLINE void
84575e67
PE
1629SET_SYMBOL_BLV (struct Lisp_Symbol *sym, struct Lisp_Buffer_Local_Value *v)
1630{
1631 eassert (sym->redirect == SYMBOL_LOCALIZED);
1632 sym->val.blv = v;
1633}
00382e8b 1634INLINE void
84575e67
PE
1635SET_SYMBOL_FWD (struct Lisp_Symbol *sym, union Lisp_Fwd *v)
1636{
1637 eassert (sym->redirect == SYMBOL_FORWARDED);
1638 sym->val.fwd = v;
1639}
1640
00382e8b 1641INLINE Lisp_Object
84575e67
PE
1642SYMBOL_NAME (Lisp_Object sym)
1643{
1644 return XSYMBOL (sym)->name;
1645}
1646
1647/* Value is true if SYM is an interned symbol. */
1648
00382e8b 1649INLINE bool
84575e67
PE
1650SYMBOL_INTERNED_P (Lisp_Object sym)
1651{
1652 return XSYMBOL (sym)->interned != SYMBOL_UNINTERNED;
1653}
a32fa736 1654
84575e67 1655/* Value is true if SYM is interned in initial_obarray. */
a32fa736 1656
00382e8b 1657INLINE bool
84575e67
PE
1658SYMBOL_INTERNED_IN_INITIAL_OBARRAY_P (Lisp_Object sym)
1659{
1660 return XSYMBOL (sym)->interned == SYMBOL_INTERNED_IN_INITIAL_OBARRAY;
1661}
a32fa736
GM
1662
1663/* Value is non-zero if symbol is considered a constant, i.e. its
1664 value cannot be changed (there is an exception for keyword symbols,
1665 whose value can be set to the keyword symbol itself). */
1666
84575e67 1667LISP_MACRO_DEFUN (SYMBOL_CONSTANT_P, int, (Lisp_Object sym), (sym))
a32fa736 1668
c644523b 1669#define DEFSYM(sym, name) \
96c06863 1670 do { (sym) = intern_c_string ((name)); staticpro (&(sym)); } while (false)
cd3520a4 1671
a32fa736 1672\f
5010d3b8
GM
1673/***********************************************************************
1674 Hash Tables
1675 ***********************************************************************/
1676
1677/* The structure of a Lisp hash table. */
1678
b7432bb2
SM
1679struct hash_table_test
1680{
1681 /* Name of the function used to compare keys. */
1682 Lisp_Object name;
1683
1684 /* User-supplied hash function, or nil. */
1685 Lisp_Object user_hash_function;
1686
1687 /* User-supplied key comparison function, or nil. */
1688 Lisp_Object user_cmp_function;
1689
1690 /* C function to compare two keys. */
1691 bool (*cmpfn) (struct hash_table_test *t, Lisp_Object, Lisp_Object);
1692
1693 /* C function to compute hash code. */
1694 EMACS_UINT (*hashfn) (struct hash_table_test *t, Lisp_Object);
1695};
1696
5010d3b8
GM
1697struct Lisp_Hash_Table
1698{
eab3844f 1699 /* This is for Lisp; the hash table code does not refer to it. */
b102ceb1 1700 struct vectorlike_header header;
e2c0561e 1701
5010d3b8
GM
1702 /* Nil if table is non-weak. Otherwise a symbol describing the
1703 weakness of the table. */
1704 Lisp_Object weak;
e2c0561e 1705
5010d3b8
GM
1706 /* When the table is resized, and this is an integer, compute the
1707 new size by adding this to the old size. If a float, compute the
1708 new size by multiplying the old size with this factor. */
1709 Lisp_Object rehash_size;
1710
1711 /* Resize hash table when number of entries/ table size is >= this
1712 ratio, a float. */
1713 Lisp_Object rehash_threshold;
1714
5833dd93
EZ
1715 /* Vector of hash codes. If hash[I] is nil, this means that the
1716 I-th entry is unused. */
5010d3b8
GM
1717 Lisp_Object hash;
1718
1719 /* Vector used to chain entries. If entry I is free, next[I] is the
1720 entry number of the next free item. If entry I is non-free,
1721 next[I] is the index of the next entry in the collision chain. */
1722 Lisp_Object next;
1723
1724 /* Index of first free entry in free list. */
1725 Lisp_Object next_free;
1726
1727 /* Bucket vector. A non-nil entry is the index of the first item in
1728 a collision chain. This vector's size can be larger than the
1729 hash table size to reduce collisions. */
1730 Lisp_Object index;
1731
878f97ff 1732 /* Only the fields above are traced normally by the GC. The ones below
78edd3b7 1733 `count' are special and are either ignored by the GC or traced in
878f97ff
SM
1734 a special way (e.g. because of weakness). */
1735
1736 /* Number of key/value entries in the table. */
d311d28c 1737 ptrdiff_t count;
878f97ff
SM
1738
1739 /* Vector of keys and values. The key of item I is found at index
1740 2 * I, the value is found at index 2 * I + 1.
1741 This is gc_marked specially if the table is weak. */
1742 Lisp_Object key_and_value;
1743
b7432bb2
SM
1744 /* The comparison and hash functions. */
1745 struct hash_table_test test;
1746
6c661ec9
SM
1747 /* Next weak hash table if this is a weak hash table. The head
1748 of the list is in weak_hash_tables. */
1749 struct Lisp_Hash_Table *next_weak;
5010d3b8
GM
1750};
1751
1752
00382e8b 1753INLINE struct Lisp_Hash_Table *
84575e67
PE
1754XHASH_TABLE (Lisp_Object a)
1755{
1756 return XUNTAG (a, Lisp_Vectorlike);
1757}
5010d3b8
GM
1758
1759#define XSET_HASH_TABLE(VAR, PTR) \
1760 (XSETPSEUDOVECTOR (VAR, PTR, PVEC_HASH_TABLE))
1761
00382e8b 1762INLINE bool
84575e67
PE
1763HASH_TABLE_P (Lisp_Object a)
1764{
1765 return PSEUDOVECTORP (a, PVEC_HASH_TABLE);
1766}
5010d3b8 1767
141788b5 1768/* Value is the key part of entry IDX in hash table H. */
00382e8b 1769INLINE Lisp_Object
84575e67
PE
1770HASH_KEY (struct Lisp_Hash_Table *h, ptrdiff_t idx)
1771{
1772 return AREF (h->key_and_value, 2 * idx);
1773}
141788b5
SM
1774
1775/* Value is the value part of entry IDX in hash table H. */
00382e8b 1776INLINE Lisp_Object
84575e67
PE
1777HASH_VALUE (struct Lisp_Hash_Table *h, ptrdiff_t idx)
1778{
1779 return AREF (h->key_and_value, 2 * idx + 1);
1780}
141788b5
SM
1781
1782/* Value is the index of the next entry following the one at IDX
1783 in hash table H. */
00382e8b 1784INLINE Lisp_Object
84575e67
PE
1785HASH_NEXT (struct Lisp_Hash_Table *h, ptrdiff_t idx)
1786{
1787 return AREF (h->next, idx);
1788}
141788b5
SM
1789
1790/* Value is the hash code computed for entry IDX in hash table H. */
00382e8b 1791INLINE Lisp_Object
84575e67
PE
1792HASH_HASH (struct Lisp_Hash_Table *h, ptrdiff_t idx)
1793{
1794 return AREF (h->hash, idx);
1795}
141788b5
SM
1796
1797/* Value is the index of the element in hash table H that is the
1798 start of the collision list at index IDX in the index vector of H. */
00382e8b 1799INLINE Lisp_Object
84575e67
PE
1800HASH_INDEX (struct Lisp_Hash_Table *h, ptrdiff_t idx)
1801{
1802 return AREF (h->index, idx);
1803}
141788b5
SM
1804
1805/* Value is the size of hash table H. */
00382e8b 1806INLINE ptrdiff_t
84575e67
PE
1807HASH_TABLE_SIZE (struct Lisp_Hash_Table *h)
1808{
1809 return ASIZE (h->next);
1810}
141788b5 1811
5010d3b8
GM
1812/* Default size for hash tables if not specified. */
1813
03a660a6 1814enum DEFAULT_HASH_SIZE { DEFAULT_HASH_SIZE = 65 };
5010d3b8
GM
1815
1816/* Default threshold specifying when to resize a hash table. The
1817 value gives the ratio of current entries in the hash table and the
1818 size of the hash table. */
1819
185ee146 1820static double const DEFAULT_REHASH_THRESHOLD = 0.8;
5010d3b8
GM
1821
1822/* Default factor by which to increase the size of a hash table. */
1823
185ee146 1824static double const DEFAULT_REHASH_SIZE = 1.5;
5010d3b8 1825
04a2d0d3
PE
1826/* Combine two integers X and Y for hashing. The result might not fit
1827 into a Lisp integer. */
1828
00382e8b 1829INLINE EMACS_UINT
04a2d0d3
PE
1830sxhash_combine (EMACS_UINT x, EMACS_UINT y)
1831{
1832 return (x << 4) + (x >> (BITS_PER_EMACS_INT - 4)) + y;
1833}
1834
eff1c190
PE
1835/* Hash X, returning a value that fits into a fixnum. */
1836
00382e8b 1837INLINE EMACS_UINT
eff1c190
PE
1838SXHASH_REDUCE (EMACS_UINT x)
1839{
1840 return (x ^ x >> (BITS_PER_EMACS_INT - FIXNUM_BITS)) & INTMASK;
1841}
1842
7c06ac2b
RS
1843/* These structures are used for various misc types. */
1844
67ee9f6e
SM
1845struct Lisp_Misc_Any /* Supertype of all Misc types. */
1846{
a6fc3b5c 1847 ENUM_BF (Lisp_Misc_Type) type : 16; /* = Lisp_Misc_??? */
96c06863 1848 bool_bf gcmarkbit : 1;
91f2d272 1849 unsigned spacer : 15;
67ee9f6e
SM
1850};
1851
3cfe6dfd 1852struct Lisp_Marker
308e97d0 1853{
a6fc3b5c 1854 ENUM_BF (Lisp_Misc_Type) type : 16; /* = Lisp_Misc_Marker */
96c06863 1855 bool_bf gcmarkbit : 1;
91f2d272 1856 unsigned spacer : 13;
9bb13d08
KH
1857 /* This flag is temporarily used in the functions
1858 decode/encode_coding_object to record that the marker position
1859 must be adjusted after the conversion. */
96c06863
PE
1860 bool_bf need_adjustment : 1;
1861 /* True means normal insertion at the marker's position
308e97d0 1862 leaves the marker after the inserted text. */
96c06863 1863 bool_bf insertion_type : 1;
b9466edb
SM
1864 /* This is the buffer that the marker points into, or 0 if it points nowhere.
1865 Note: a chain of markers can contain markers pointing into different
1866 buffers (the chain is per buffer_text rather than per buffer, so it's
1867 shared between indirect buffers). */
1868 /* This is used for (other than NULL-checking):
1869 - Fmarker_buffer
1870 - Fset_marker: check eq(oldbuf, newbuf) to avoid unchain+rechain.
1871 - unchain_marker: to find the list from which to unchain.
ce5b453a 1872 - Fkill_buffer: to only unchain the markers of current indirect buffer.
b9466edb 1873 */
308e97d0 1874 struct buffer *buffer;
4ed24bf3
RS
1875
1876 /* The remaining fields are meaningless in a marker that
1877 does not point anywhere. */
1878
1879 /* For markers that point somewhere,
1880 this is used to chain of all the markers in a given buffer. */
d6aa1876
SM
1881 /* We could remove it and use an array in buffer_text instead.
1882 That would also allow to preserve it ordered. */
c0ac2f4a 1883 struct Lisp_Marker *next;
4ed24bf3 1884 /* This is the char position where the marker points. */
d311d28c 1885 ptrdiff_t charpos;
ce5b453a
SM
1886 /* This is the byte position.
1887 It's mostly used as a charpos<->bytepos cache (i.e. it's not directly
1888 used to implement the functionality of markers, but rather to (ab)use
1889 markers as a cache for char<->byte mappings). */
d311d28c 1890 ptrdiff_t bytepos;
308e97d0 1891};
3cfe6dfd 1892
7555c33f
SM
1893/* START and END are markers in the overlay's buffer, and
1894 PLIST is the overlay's property list. */
1895struct Lisp_Overlay
fa691a83
DA
1896/* An overlay's real data content is:
1897 - plist
1898 - buffer (really there are two buffer pointers, one per marker,
1899 and both points to the same buffer)
1900 - insertion type of both ends (per-marker fields)
1901 - start & start byte (of start marker)
1902 - end & end byte (of end marker)
1903 - next (singly linked list of overlays)
1904 - next fields of start and end markers (singly linked list of markers).
1905 I.e. 9words plus 2 bits, 3words of which are for external linked lists.
1906*/
7555c33f
SM
1907 {
1908 ENUM_BF (Lisp_Misc_Type) type : 16; /* = Lisp_Misc_Overlay */
96c06863 1909 bool_bf gcmarkbit : 1;
91f2d272 1910 unsigned spacer : 15;
7555c33f 1911 struct Lisp_Overlay *next;
c644523b
DA
1912 Lisp_Object start;
1913 Lisp_Object end;
1914 Lisp_Object plist;
7555c33f
SM
1915 };
1916
73ebd38f
DA
1917/* Types of data which may be saved in a Lisp_Save_Value. */
1918
1919enum
1920 {
1921 SAVE_UNUSED,
1922 SAVE_INTEGER,
52a9bcae 1923 SAVE_FUNCPOINTER,
73ebd38f
DA
1924 SAVE_POINTER,
1925 SAVE_OBJECT
1926 };
1927
7b1123d8 1928/* Number of bits needed to store one of the above values. */
52a9bcae 1929enum { SAVE_SLOT_BITS = 3 };
7b1123d8
PE
1930
1931/* Number of slots in a save value where save_type is nonzero. */
1932enum { SAVE_VALUE_SLOTS = 4 };
1933
1934/* Bit-width and values for struct Lisp_Save_Value's save_type member. */
1935
1936enum { SAVE_TYPE_BITS = SAVE_VALUE_SLOTS * SAVE_SLOT_BITS + 1 };
1937
1938enum Lisp_Save_Type
1939 {
1940 SAVE_TYPE_INT_INT = SAVE_INTEGER + (SAVE_INTEGER << SAVE_SLOT_BITS),
1941 SAVE_TYPE_INT_INT_INT
1942 = (SAVE_INTEGER + (SAVE_TYPE_INT_INT << SAVE_SLOT_BITS)),
1943 SAVE_TYPE_OBJ_OBJ = SAVE_OBJECT + (SAVE_OBJECT << SAVE_SLOT_BITS),
1944 SAVE_TYPE_OBJ_OBJ_OBJ = SAVE_OBJECT + (SAVE_TYPE_OBJ_OBJ << SAVE_SLOT_BITS),
1945 SAVE_TYPE_OBJ_OBJ_OBJ_OBJ
1946 = SAVE_OBJECT + (SAVE_TYPE_OBJ_OBJ_OBJ << SAVE_SLOT_BITS),
1947 SAVE_TYPE_PTR_INT = SAVE_POINTER + (SAVE_INTEGER << SAVE_SLOT_BITS),
1948 SAVE_TYPE_PTR_OBJ = SAVE_POINTER + (SAVE_OBJECT << SAVE_SLOT_BITS),
1949 SAVE_TYPE_PTR_PTR = SAVE_POINTER + (SAVE_POINTER << SAVE_SLOT_BITS),
52a9bcae
PE
1950 SAVE_TYPE_FUNCPTR_PTR_OBJ
1951 = SAVE_FUNCPOINTER + (SAVE_TYPE_PTR_OBJ << SAVE_SLOT_BITS),
7b1123d8
PE
1952
1953 /* This has an extra bit indicating it's raw memory. */
1954 SAVE_TYPE_MEMORY = SAVE_TYPE_PTR_INT + (1 << (SAVE_TYPE_BITS - 1))
1955 };
1956
468afbac
DA
1957/* Special object used to hold a different values for later use.
1958
1959 This is mostly used to package C integers and pointers to call
27e498e6 1960 record_unwind_protect when two or more values need to be saved.
1396ac86 1961 For example:
468afbac
DA
1962
1963 ...
1964 struct my_data *md = get_my_data ();
1396ac86
PE
1965 ptrdiff_t mi = get_my_integer ();
1966 record_unwind_protect (my_unwind, make_save_ptr_int (md, mi));
468afbac
DA
1967 ...
1968
1969 Lisp_Object my_unwind (Lisp_Object arg)
1970 {
1971 struct my_data *md = XSAVE_POINTER (arg, 0);
1396ac86 1972 ptrdiff_t mi = XSAVE_INTEGER (arg, 1);
468afbac
DA
1973 ...
1974 }
1975
1976 If ENABLE_CHECKING is in effect, XSAVE_xxx macros do type checking of the
1977 saved objects and raise eassert if type of the saved object doesn't match
1978 the type which is extracted. In the example above, XSAVE_INTEGER (arg, 2)
1396ac86
PE
1979 and XSAVE_OBJECT (arg, 0) are wrong because nothing was saved in slot 2 and
1980 slot 0 is a pointer. */
73ebd38f 1981
52a9bcae
PE
1982typedef void (*voidfuncptr) (void);
1983
7555c33f
SM
1984struct Lisp_Save_Value
1985 {
1986 ENUM_BF (Lisp_Misc_Type) type : 16; /* = Lisp_Misc_Save_Value */
96c06863 1987 bool_bf gcmarkbit : 1;
91f2d272 1988 unsigned spacer : 32 - (16 + 1 + SAVE_TYPE_BITS);
7b1123d8 1989
1396ac86
PE
1990 /* V->data may hold up to SAVE_VALUE_SLOTS entries. The type of
1991 V's data entries are determined by V->save_type. E.g., if
1992 V->save_type == SAVE_TYPE_PTR_OBJ, V->data[0] is a pointer,
1993 V->data[1] is an integer, and V's other data entries are unused.
7b1123d8 1994
1396ac86
PE
1995 If V->save_type == SAVE_TYPE_MEMORY, V->data[0].pointer is the address of
1996 a memory area containing V->data[1].integer potential Lisp_Objects. */
7b1123d8 1997 ENUM_BF (Lisp_Save_Type) save_type : SAVE_TYPE_BITS;
73ebd38f
DA
1998 union {
1999 void *pointer;
52a9bcae 2000 voidfuncptr funcpointer;
73ebd38f
DA
2001 ptrdiff_t integer;
2002 Lisp_Object object;
7b1123d8 2003 } data[SAVE_VALUE_SLOTS];
7555c33f
SM
2004 };
2005
84575e67 2006/* Return the type of V's Nth saved value. */
00382e8b 2007INLINE int
84575e67
PE
2008save_type (struct Lisp_Save_Value *v, int n)
2009{
2010 eassert (0 <= n && n < SAVE_VALUE_SLOTS);
2011 return (v->save_type >> (SAVE_SLOT_BITS * n) & ((1 << SAVE_SLOT_BITS) - 1));
2012}
2013
2014/* Get and set the Nth saved pointer. */
2015
00382e8b 2016INLINE void *
84575e67
PE
2017XSAVE_POINTER (Lisp_Object obj, int n)
2018{
2019 eassert (save_type (XSAVE_VALUE (obj), n) == SAVE_POINTER);
52a9bcae 2020 return XSAVE_VALUE (obj)->data[n].pointer;
84575e67 2021}
00382e8b 2022INLINE void
84575e67
PE
2023set_save_pointer (Lisp_Object obj, int n, void *val)
2024{
2025 eassert (save_type (XSAVE_VALUE (obj), n) == SAVE_POINTER);
2026 XSAVE_VALUE (obj)->data[n].pointer = val;
2027}
00382e8b 2028INLINE voidfuncptr
52a9bcae
PE
2029XSAVE_FUNCPOINTER (Lisp_Object obj, int n)
2030{
2031 eassert (save_type (XSAVE_VALUE (obj), n) == SAVE_FUNCPOINTER);
2032 return XSAVE_VALUE (obj)->data[n].funcpointer;
2033}
84575e67
PE
2034
2035/* Likewise for the saved integer. */
2036
00382e8b 2037INLINE ptrdiff_t
84575e67
PE
2038XSAVE_INTEGER (Lisp_Object obj, int n)
2039{
2040 eassert (save_type (XSAVE_VALUE (obj), n) == SAVE_INTEGER);
2041 return XSAVE_VALUE (obj)->data[n].integer;
2042}
00382e8b 2043INLINE void
84575e67
PE
2044set_save_integer (Lisp_Object obj, int n, ptrdiff_t val)
2045{
2046 eassert (save_type (XSAVE_VALUE (obj), n) == SAVE_INTEGER);
2047 XSAVE_VALUE (obj)->data[n].integer = val;
2048}
2049
2050/* Extract Nth saved object. */
2051
00382e8b 2052INLINE Lisp_Object
84575e67
PE
2053XSAVE_OBJECT (Lisp_Object obj, int n)
2054{
2055 eassert (save_type (XSAVE_VALUE (obj), n) == SAVE_OBJECT);
2056 return XSAVE_VALUE (obj)->data[n].object;
2057}
2058
7555c33f
SM
2059/* A miscellaneous object, when it's on the free list. */
2060struct Lisp_Free
2061 {
2062 ENUM_BF (Lisp_Misc_Type) type : 16; /* = Lisp_Misc_Free */
96c06863 2063 bool_bf gcmarkbit : 1;
91f2d272 2064 unsigned spacer : 15;
7555c33f
SM
2065 union Lisp_Misc *chain;
2066 };
2067
2068/* To get the type field of a union Lisp_Misc, use XMISCTYPE.
2069 It uses one of these struct subtypes to get the type field. */
2070
2071union Lisp_Misc
2072 {
2073 struct Lisp_Misc_Any u_any; /* Supertype of all Misc types. */
2074 struct Lisp_Free u_free;
2075 struct Lisp_Marker u_marker;
2076 struct Lisp_Overlay u_overlay;
2077 struct Lisp_Save_Value u_save_value;
2078 };
2079
00382e8b 2080INLINE union Lisp_Misc *
84575e67
PE
2081XMISC (Lisp_Object a)
2082{
2083 return XUNTAG (a, Lisp_Misc);
2084}
2085
00382e8b 2086INLINE struct Lisp_Misc_Any *
84575e67
PE
2087XMISCANY (Lisp_Object a)
2088{
2089 eassert (MISCP (a));
2090 return & XMISC (a)->u_any;
2091}
2092
00382e8b 2093INLINE enum Lisp_Misc_Type
84575e67
PE
2094XMISCTYPE (Lisp_Object a)
2095{
2096 return XMISCANY (a)->type;
2097}
2098
00382e8b 2099INLINE struct Lisp_Marker *
84575e67
PE
2100XMARKER (Lisp_Object a)
2101{
2102 eassert (MARKERP (a));
2103 return & XMISC (a)->u_marker;
2104}
2105
00382e8b 2106INLINE struct Lisp_Overlay *
84575e67
PE
2107XOVERLAY (Lisp_Object a)
2108{
2109 eassert (OVERLAYP (a));
2110 return & XMISC (a)->u_overlay;
2111}
2112
00382e8b 2113INLINE struct Lisp_Save_Value *
84575e67
PE
2114XSAVE_VALUE (Lisp_Object a)
2115{
2116 eassert (SAVE_VALUEP (a));
2117 return & XMISC (a)->u_save_value;
2118}
2119\f
ee4c9ce4
KH
2120/* Forwarding pointer to an int variable.
2121 This is allowed only in the value cell of a symbol,
2122 and it means that the symbol's value really lives in the
2123 specified int variable. */
2124struct Lisp_Intfwd
84d1833e 2125 {
ce5b453a 2126 enum Lisp_Fwd_Type type; /* = Lisp_Fwd_Int */
31ade731 2127 EMACS_INT *intvar;
ee4c9ce4
KH
2128 };
2129
2130/* Boolean forwarding pointer to an int variable.
2131 This is like Lisp_Intfwd except that the ostensible
96c06863
PE
2132 "value" of the symbol is t if the bool variable is true,
2133 nil if it is false. */
ee4c9ce4
KH
2134struct Lisp_Boolfwd
2135 {
ce5b453a 2136 enum Lisp_Fwd_Type type; /* = Lisp_Fwd_Bool */
f5d9e83a 2137 bool *boolvar;
ee4c9ce4
KH
2138 };
2139
2140/* Forwarding pointer to a Lisp_Object variable.
2141 This is allowed only in the value cell of a symbol,
2142 and it means that the symbol's value really lives in the
2143 specified variable. */
2144struct Lisp_Objfwd
2145 {
ce5b453a 2146 enum Lisp_Fwd_Type type; /* = Lisp_Fwd_Obj */
ee4c9ce4
KH
2147 Lisp_Object *objvar;
2148 };
2149
2150/* Like Lisp_Objfwd except that value lives in a slot in the
2151 current buffer. Value is byte index of slot within buffer. */
2152struct Lisp_Buffer_Objfwd
2153 {
ce5b453a 2154 enum Lisp_Fwd_Type type; /* = Lisp_Fwd_Buffer_Obj */
ee4c9ce4 2155 int offset;
58cc0a01
DA
2156 /* One of Qnil, Qintegerp, Qsymbolp, Qstringp, Qfloatp or Qnumberp. */
2157 Lisp_Object predicate;
84d1833e
KH
2158 };
2159
65d0110b
RS
2160/* struct Lisp_Buffer_Local_Value is used in a symbol value cell when
2161 the symbol has buffer-local or frame-local bindings. (Exception:
2162 some buffer-local variables are built-in, with their values stored
2163 in the buffer structure itself. They are handled differently,
2164 using struct Lisp_Buffer_Objfwd.)
2165
2166 The `realvalue' slot holds the variable's current value, or a
2167 forwarding pointer to where that value is kept. This value is the
2168 one that corresponds to the loaded binding. To read or set the
2169 variable, you must first make sure the right binding is loaded;
2170 then you can access the value in (or through) `realvalue'.
e2c0561e 2171
65d0110b
RS
2172 `buffer' and `frame' are the buffer and frame for which the loaded
2173 binding was found. If those have changed, to make sure the right
2174 binding is loaded it is necessary to find which binding goes with
2175 the current buffer and selected frame, then load it. To load it,
2176 first unload the previous binding, then copy the value of the new
2177 binding into `realvalue' (or through it). Also update
2178 LOADED-BINDING to point to the newly loaded binding.
7d65f1c2 2179
78edd3b7
JB
2180 `local_if_set' indicates that merely setting the variable creates a
2181 local binding for the current buffer. Otherwise the latter, setting
2182 the variable does not do that; only make-local-variable does that. */
65d0110b 2183
7d65f1c2
KH
2184struct Lisp_Buffer_Local_Value
2185 {
96c06863 2186 /* True means that merely setting the variable creates a local
7555c33f 2187 binding for the current buffer. */
96c06863
PE
2188 bool_bf local_if_set : 1;
2189 /* True means this variable can have frame-local bindings, otherwise, it is
ce5b453a 2190 can have buffer-local bindings. The two cannot be combined. */
96c06863
PE
2191 bool_bf frame_local : 1;
2192 /* True means that the binding now loaded was found.
7555c33f 2193 Presumably equivalent to (defcell!=valcell). */
96c06863 2194 bool_bf found : 1;
ce5b453a
SM
2195 /* If non-NULL, a forwarding to the C var where it should also be set. */
2196 union Lisp_Fwd *fwd; /* Should never be (Buffer|Kboard)_Objfwd. */
2197 /* The buffer or frame for which the loaded binding was found. */
2198 Lisp_Object where;
2199 /* A cons cell that holds the default value. It has the form
2200 (SYMBOL . DEFAULT-VALUE). */
2201 Lisp_Object defcell;
2202 /* The cons cell from `where's parameter alist.
2203 It always has the form (SYMBOL . VALUE)
2204 Note that if `forward' is non-nil, VALUE may be out of date.
2205 Also if the currently loaded binding is the default binding, then
2206 this is `eq'ual to defcell. */
2207 Lisp_Object valcell;
7d65f1c2
KH
2208 };
2209
f334de0e 2210/* Like Lisp_Objfwd except that value lives in a slot in the
32462604
KH
2211 current kboard. */
2212struct Lisp_Kboard_Objfwd
f334de0e 2213 {
ce5b453a 2214 enum Lisp_Fwd_Type type; /* = Lisp_Fwd_Kboard_Obj */
f334de0e
KH
2215 int offset;
2216 };
2217
ce5b453a
SM
2218union Lisp_Fwd
2219 {
d55c12ed
AS
2220 struct Lisp_Intfwd u_intfwd;
2221 struct Lisp_Boolfwd u_boolfwd;
2222 struct Lisp_Objfwd u_objfwd;
2223 struct Lisp_Buffer_Objfwd u_buffer_objfwd;
2224 struct Lisp_Kboard_Objfwd u_kboard_objfwd;
84d1833e 2225 };
84575e67 2226
00382e8b 2227INLINE enum Lisp_Fwd_Type
84575e67
PE
2228XFWDTYPE (union Lisp_Fwd *a)
2229{
2230 return a->u_intfwd.type;
2231}
2232
00382e8b 2233INLINE struct Lisp_Buffer_Objfwd *
84575e67
PE
2234XBUFFER_OBJFWD (union Lisp_Fwd *a)
2235{
2236 eassert (BUFFER_OBJFWDP (a));
2237 return &a->u_buffer_objfwd;
2238}
7c06ac2b 2239\f
7555c33f 2240/* Lisp floating point type. */
3cfe6dfd
JB
2241struct Lisp_Float
2242 {
3a623fee
AS
2243 union
2244 {
3a623fee 2245 double data;
3a623fee
AS
2246 struct Lisp_Float *chain;
2247 } u;
3cfe6dfd 2248 };
8f34f70a 2249
00382e8b 2250INLINE double
84575e67
PE
2251XFLOAT_DATA (Lisp_Object f)
2252{
2253 return XFLOAT (f)->u.data;
2254}
3cfe6dfd 2255
4d7e6e51
PE
2256/* Most hosts nowadays use IEEE floating point, so they use IEC 60559
2257 representations, have infinities and NaNs, and do not trap on
2258 exceptions. Define IEEE_FLOATING_POINT if this host is one of the
2259 typical ones. The C11 macro __STDC_IEC_559__ is close to what is
2260 wanted here, but is not quite right because Emacs does not require
2261 all the features of C11 Annex F (and does not require C11 at all,
2262 for that matter). */
84575e67
PE
2263enum
2264 {
2265 IEEE_FLOATING_POINT
2266 = (FLT_RADIX == 2 && FLT_MANT_DIG == 24
2267 && FLT_MIN_EXP == -125 && FLT_MAX_EXP == 128)
2268 };
4d7e6e51 2269
3cfe6dfd 2270/* A character, declared with the following typedef, is a member
99a3d506 2271 of some character set associated with the current buffer. */
b2ba7b00
RS
2272#ifndef _UCHAR_T /* Protect against something in ctab.h on AIX. */
2273#define _UCHAR_T
3cfe6dfd 2274typedef unsigned char UCHAR;
b2ba7b00 2275#endif
3cfe6dfd
JB
2276
2277/* Meanings of slots in a Lisp_Compiled: */
2278
03a660a6
PE
2279enum Lisp_Compiled
2280 {
2281 COMPILED_ARGLIST = 0,
2282 COMPILED_BYTECODE = 1,
2283 COMPILED_CONSTANTS = 2,
2284 COMPILED_STACK_DEPTH = 3,
2285 COMPILED_DOC_STRING = 4,
2286 COMPILED_INTERACTIVE = 5
2287 };
88dbfee5 2288
d03f79ef
JB
2289/* Flag bits in a character. These also get used in termhooks.h.
2290 Richard Stallman <rms@gnu.ai.mit.edu> thinks that MULE
7c06ac2b
RS
2291 (MUlti-Lingual Emacs) might need 22 bits for the character value
2292 itself, so we probably shouldn't use any bits lower than 0x0400000. */
03a660a6
PE
2293enum char_bits
2294 {
2295 CHAR_ALT = 0x0400000,
2296 CHAR_SUPER = 0x0800000,
2297 CHAR_HYPER = 0x1000000,
2298 CHAR_SHIFT = 0x2000000,
2299 CHAR_CTL = 0x4000000,
2300 CHAR_META = 0x8000000,
2301
2302 CHAR_MODIFIER_MASK =
88fb40b4 2303 CHAR_ALT | CHAR_SUPER | CHAR_HYPER | CHAR_SHIFT | CHAR_CTL | CHAR_META,
03a660a6
PE
2304
2305 /* Actually, the current Emacs uses 22 bits for the character value
2306 itself. */
2307 CHARACTERBITS = 22
2308 };
3cfe6dfd 2309\f
e7032e7c 2310/* Data type checking. */
3cfe6dfd 2311
84575e67 2312LISP_MACRO_DEFUN (NILP, bool, (Lisp_Object x), (x))
3cfe6dfd 2313
00382e8b 2314INLINE bool
84575e67
PE
2315NUMBERP (Lisp_Object x)
2316{
2317 return INTEGERP (x) || FLOATP (x);
2318}
00382e8b 2319INLINE bool
84575e67
PE
2320NATNUMP (Lisp_Object x)
2321{
2322 return INTEGERP (x) && 0 <= XINT (x);
2323}
2324
00382e8b 2325INLINE bool
84575e67
PE
2326RANGED_INTEGERP (intmax_t lo, Lisp_Object x, intmax_t hi)
2327{
2328 return INTEGERP (x) && lo <= XINT (x) && XINT (x) <= hi;
2329}
4746118a 2330
ca9ce8f2 2331#define TYPE_RANGED_INTEGERP(type, x) \
84575e67
PE
2332 (INTEGERP (x) \
2333 && (TYPE_SIGNED (type) ? TYPE_MINIMUM (type) <= XINT (x) : 0 <= XINT (x)) \
2334 && XINT (x) <= TYPE_MAXIMUM (type))
2335
2336LISP_MACRO_DEFUN (CONSP, bool, (Lisp_Object x), (x))
2337LISP_MACRO_DEFUN (FLOATP, bool, (Lisp_Object x), (x))
2338LISP_MACRO_DEFUN (MISCP, bool, (Lisp_Object x), (x))
2339LISP_MACRO_DEFUN (SYMBOLP, bool, (Lisp_Object x), (x))
2340LISP_MACRO_DEFUN (INTEGERP, bool, (Lisp_Object x), (x))
2341LISP_MACRO_DEFUN (VECTORLIKEP, bool, (Lisp_Object x), (x))
2342LISP_MACRO_DEFUN (MARKERP, bool, (Lisp_Object x), (x))
2343
00382e8b 2344INLINE bool
84575e67
PE
2345STRINGP (Lisp_Object x)
2346{
2347 return XTYPE (x) == Lisp_String;
2348}
00382e8b 2349INLINE bool
84575e67
PE
2350VECTORP (Lisp_Object x)
2351{
2352 return VECTORLIKEP (x) && ! (ASIZE (x) & PSEUDOVECTOR_FLAG);
2353}
00382e8b 2354INLINE bool
84575e67
PE
2355OVERLAYP (Lisp_Object x)
2356{
2357 return MISCP (x) && XMISCTYPE (x) == Lisp_Misc_Overlay;
2358}
00382e8b 2359INLINE bool
84575e67
PE
2360SAVE_VALUEP (Lisp_Object x)
2361{
2362 return MISCP (x) && XMISCTYPE (x) == Lisp_Misc_Save_Value;
2363}
2364
00382e8b 2365INLINE bool
84575e67
PE
2366AUTOLOADP (Lisp_Object x)
2367{
2368 return CONSP (x) && EQ (Qautoload, XCAR (x));
2369}
7b1123d8 2370
00382e8b 2371INLINE bool
84575e67 2372BUFFER_OBJFWDP (union Lisp_Fwd *a)
7b1123d8 2373{
84575e67 2374 return XFWDTYPE (a) == Lisp_Fwd_Buffer_Obj;
7b1123d8 2375}
edfa9106 2376
00382e8b 2377INLINE bool
84575e67 2378PSEUDOVECTOR_TYPEP (struct vectorlike_header *a, int code)
717b8bcd 2379{
84575e67
PE
2380 return ((a->size & (PSEUDOVECTOR_FLAG | PVEC_TYPE_MASK))
2381 == (PSEUDOVECTOR_FLAG | (code << PSEUDOVECTOR_AREA_BITS)));
717b8bcd
SM
2382}
2383
84575e67 2384/* True if A is a pseudovector whose code is CODE. */
00382e8b 2385INLINE bool
84575e67 2386PSEUDOVECTORP (Lisp_Object a, int code)
717b8bcd 2387{
84575e67 2388 if (! VECTORLIKEP (a))
96c06863 2389 return false;
84575e67
PE
2390 else
2391 {
2392 /* Converting to struct vectorlike_header * avoids aliasing issues. */
2393 struct vectorlike_header *h = XUNTAG (a, Lisp_Vectorlike);
2394 return PSEUDOVECTOR_TYPEP (h, code);
2395 }
717b8bcd
SM
2396}
2397
717b8bcd 2398
84575e67
PE
2399/* Test for specific pseudovector types. */
2400
00382e8b 2401INLINE bool
84575e67 2402WINDOW_CONFIGURATIONP (Lisp_Object a)
717b8bcd 2403{
84575e67 2404 return PSEUDOVECTORP (a, PVEC_WINDOW_CONFIGURATION);
717b8bcd 2405}
84575e67 2406
00382e8b 2407INLINE bool
84575e67 2408PROCESSP (Lisp_Object a)
717b8bcd 2409{
84575e67 2410 return PSEUDOVECTORP (a, PVEC_PROCESS);
717b8bcd
SM
2411}
2412
00382e8b 2413INLINE bool
84575e67 2414WINDOWP (Lisp_Object a)
717b8bcd 2415{
84575e67 2416 return PSEUDOVECTORP (a, PVEC_WINDOW);
717b8bcd 2417}
84575e67 2418
00382e8b 2419INLINE bool
84575e67 2420TERMINALP (Lisp_Object a)
717b8bcd 2421{
84575e67 2422 return PSEUDOVECTORP (a, PVEC_TERMINAL);
717b8bcd
SM
2423}
2424
00382e8b 2425INLINE bool
84575e67 2426SUBRP (Lisp_Object a)
717b8bcd 2427{
84575e67 2428 return PSEUDOVECTORP (a, PVEC_SUBR);
717b8bcd
SM
2429}
2430
00382e8b 2431INLINE bool
84575e67
PE
2432COMPILEDP (Lisp_Object a)
2433{
2434 return PSEUDOVECTORP (a, PVEC_COMPILED);
2435}
32e5c58c 2436
00382e8b 2437INLINE bool
84575e67
PE
2438BUFFERP (Lisp_Object a)
2439{
2440 return PSEUDOVECTORP (a, PVEC_BUFFER);
2441}
7c06ac2b 2442
00382e8b 2443INLINE bool
84575e67
PE
2444CHAR_TABLE_P (Lisp_Object a)
2445{
2446 return PSEUDOVECTORP (a, PVEC_CHAR_TABLE);
2447}
ee28be33 2448
00382e8b 2449INLINE bool
84575e67
PE
2450SUB_CHAR_TABLE_P (Lisp_Object a)
2451{
2452 return PSEUDOVECTORP (a, PVEC_SUB_CHAR_TABLE);
2453}
eab3844f 2454
00382e8b 2455INLINE bool
84575e67
PE
2456BOOL_VECTOR_P (Lisp_Object a)
2457{
2458 return PSEUDOVECTORP (a, PVEC_BOOL_VECTOR);
2459}
7c06ac2b 2460
00382e8b 2461INLINE bool
84575e67
PE
2462FRAMEP (Lisp_Object a)
2463{
2464 return PSEUDOVECTORP (a, PVEC_FRAME);
2465}
ea724a01 2466
6b61353c 2467/* Test for image (image . spec) */
00382e8b 2468INLINE bool
84575e67
PE
2469IMAGEP (Lisp_Object x)
2470{
2471 return CONSP (x) && EQ (XCAR (x), Qimage);
2472}
6b61353c 2473
c8a39089 2474/* Array types. */
00382e8b 2475INLINE bool
84575e67
PE
2476ARRAYP (Lisp_Object x)
2477{
2478 return VECTORP (x) || STRINGP (x) || CHAR_TABLE_P (x) || BOOL_VECTOR_P (x);
2479}
7c06ac2b 2480\f
00382e8b 2481INLINE void
84575e67
PE
2482CHECK_LIST (Lisp_Object x)
2483{
2484 CHECK_TYPE (CONSP (x) || NILP (x), Qlistp, x);
2485}
3cfe6dfd 2486
84575e67
PE
2487LISP_MACRO_DEFUN_VOID (CHECK_LIST_CONS, (Lisp_Object x, Lisp_Object y), (x, y))
2488LISP_MACRO_DEFUN_VOID (CHECK_SYMBOL, (Lisp_Object x), (x))
2489LISP_MACRO_DEFUN_VOID (CHECK_NUMBER, (Lisp_Object x), (x))
3cfe6dfd 2490
00382e8b 2491INLINE void
84575e67
PE
2492CHECK_STRING (Lisp_Object x)
2493{
2494 CHECK_TYPE (STRINGP (x), Qstringp, x);
2495}
00382e8b 2496INLINE void
84575e67
PE
2497CHECK_STRING_CAR (Lisp_Object x)
2498{
2499 CHECK_TYPE (STRINGP (XCAR (x)), Qstringp, XCAR (x));
2500}
00382e8b 2501INLINE void
84575e67
PE
2502CHECK_CONS (Lisp_Object x)
2503{
2504 CHECK_TYPE (CONSP (x), Qconsp, x);
2505}
00382e8b 2506INLINE void
84575e67
PE
2507CHECK_VECTOR (Lisp_Object x)
2508{
2509 CHECK_TYPE (VECTORP (x), Qvectorp, x);
2510}
00382e8b 2511INLINE void
3e0b94e7
DC
2512CHECK_BOOL_VECTOR (Lisp_Object x)
2513{
2514 CHECK_TYPE (BOOL_VECTOR_P (x), Qbool_vector_p, x);
2515}
2516INLINE void
84575e67
PE
2517CHECK_VECTOR_OR_STRING (Lisp_Object x)
2518{
2519 CHECK_TYPE (VECTORP (x) || STRINGP (x), Qarrayp, x);
2520}
00382e8b 2521INLINE void
84575e67
PE
2522CHECK_ARRAY (Lisp_Object x, Lisp_Object Qxxxp)
2523{
2524 CHECK_TYPE (ARRAYP (x), Qxxxp, x);
2525}
00382e8b 2526INLINE void
84575e67
PE
2527CHECK_BUFFER (Lisp_Object x)
2528{
2529 CHECK_TYPE (BUFFERP (x), Qbufferp, x);
2530}
00382e8b 2531INLINE void
84575e67
PE
2532CHECK_WINDOW (Lisp_Object x)
2533{
2534 CHECK_TYPE (WINDOWP (x), Qwindowp, x);
2535}
bf6b4923 2536#ifdef subprocesses
00382e8b 2537INLINE void
84575e67
PE
2538CHECK_PROCESS (Lisp_Object x)
2539{
2540 CHECK_TYPE (PROCESSP (x), Qprocessp, x);
2541}
bf6b4923 2542#endif
00382e8b 2543INLINE void
84575e67
PE
2544CHECK_NATNUM (Lisp_Object x)
2545{
2546 CHECK_TYPE (NATNUMP (x), Qwholenump, x);
2547}
3cfe6dfd 2548
af5a5a98 2549#define CHECK_RANGED_INTEGER(x, lo, hi) \
d311d28c
PE
2550 do { \
2551 CHECK_NUMBER (x); \
2552 if (! ((lo) <= XINT (x) && XINT (x) <= (hi))) \
2553 args_out_of_range_3 \
2554 (x, \
2555 make_number ((lo) < 0 && (lo) < MOST_NEGATIVE_FIXNUM \
2556 ? MOST_NEGATIVE_FIXNUM \
2557 : (lo)), \
2558 make_number (min (hi, MOST_POSITIVE_FIXNUM))); \
96c06863 2559 } while (false)
d311d28c
PE
2560#define CHECK_TYPE_RANGED_INTEGER(type, x) \
2561 do { \
2562 if (TYPE_SIGNED (type)) \
af5a5a98 2563 CHECK_RANGED_INTEGER (x, TYPE_MINIMUM (type), TYPE_MAXIMUM (type)); \
d311d28c 2564 else \
af5a5a98 2565 CHECK_RANGED_INTEGER (x, 0, TYPE_MAXIMUM (type)); \
96c06863 2566 } while (false)
d311d28c 2567
96c06863
PE
2568#define CHECK_NUMBER_COERCE_MARKER(x) \
2569 do { \
2570 if (MARKERP ((x))) \
2571 XSETFASTINT (x, marker_position (x)); \
2572 else \
2573 CHECK_TYPE (INTEGERP (x), Qinteger_or_marker_p, x); \
2574 } while (false)
3cfe6dfd 2575
00382e8b 2576INLINE double
84575e67
PE
2577XFLOATINT (Lisp_Object n)
2578{
2579 return extract_float (n);
2580}
3cfe6dfd 2581
00382e8b 2582INLINE void
84575e67
PE
2583CHECK_NUMBER_OR_FLOAT (Lisp_Object x)
2584{
2585 CHECK_TYPE (FLOATP (x) || INTEGERP (x), Qnumberp, x);
2586}
3cfe6dfd 2587
96c06863
PE
2588#define CHECK_NUMBER_OR_FLOAT_COERCE_MARKER(x) \
2589 do { \
2590 if (MARKERP (x)) \
2591 XSETFASTINT (x, marker_position (x)); \
2592 else \
2593 CHECK_TYPE (INTEGERP (x) || FLOATP (x), Qnumber_or_marker_p, x); \
2594 } while (false)
3cfe6dfd 2595
f3fbd155
KR
2596/* Since we can't assign directly to the CAR or CDR fields of a cons
2597 cell, use these when checking that those fields contain numbers. */
00382e8b 2598INLINE void
84575e67
PE
2599CHECK_NUMBER_CAR (Lisp_Object x)
2600{
2601 Lisp_Object tmp = XCAR (x);
2602 CHECK_NUMBER (tmp);
2603 XSETCAR (x, tmp);
2604}
8f924df7 2605
00382e8b 2606INLINE void
84575e67
PE
2607CHECK_NUMBER_CDR (Lisp_Object x)
2608{
2609 Lisp_Object tmp = XCDR (x);
2610 CHECK_NUMBER (tmp);
2611 XSETCDR (x, tmp);
2612}
3cfe6dfd
JB
2613\f
2614/* Define a built-in function for calling from Lisp.
2615 `lname' should be the name to give the function in Lisp,
2616 as a null-terminated C string.
2617 `fnname' should be the name of the function in C.
2618 By convention, it starts with F.
2619 `sname' should be the name for the C constant structure
2620 that records information on this function for internal use.
2621 By convention, it should be the same as `fnname' but with S instead of F.
2622 It's too bad that C macros can't compute this from `fnname'.
2623 `minargs' should be a number, the minimum number of arguments allowed.
2624 `maxargs' should be a number, the maximum number of arguments allowed,
2625 or else MANY or UNEVALLED.
2626 MANY means pass a vector of evaluated arguments,
2627 in the form of an integer number-of-arguments
2628 followed by the address of a vector of Lisp_Objects
2629 which contains the argument values.
2630 UNEVALLED means pass the list of unevaluated arguments
4bca9161
MC
2631 `intspec' says how interactive arguments are to be fetched.
2632 If the string starts with a `(', `intspec' is evaluated and the resulting
2633 list is the list of arguments.
2634 If it's a string that doesn't start with `(', the value should follow
2635 the one of the doc string for `interactive'.
3cfe6dfd 2636 A null string means call interactively with no arguments.
eab9d423 2637 `doc' is documentation for the user. */
3cfe6dfd 2638
c451d7b1 2639/* This version of DEFUN declares a function prototype with the right
99a3d506 2640 arguments, so we can catch errors with maxargs at compile-time. */
a6fc3b5c
EZ
2641#ifdef _MSC_VER
2642#define DEFUN(lname, fnname, sname, minargs, maxargs, intspec, doc) \
2643 Lisp_Object fnname DEFUN_ARGS_ ## maxargs ; \
e32a5799 2644 static struct Lisp_Subr alignas (GCALIGNMENT) sname = \
914adc42
DA
2645 { { (PVEC_SUBR << PSEUDOVECTOR_AREA_BITS) \
2646 | (sizeof (struct Lisp_Subr) / sizeof (EMACS_INT)) }, \
a6fc3b5c
EZ
2647 { (Lisp_Object (__cdecl *)(void))fnname }, \
2648 minargs, maxargs, lname, intspec, 0}; \
2649 Lisp_Object fnname
2650#else /* not _MSC_VER */
29abe551
PE
2651# if __STDC_VERSION__ < 199901
2652# define DEFUN_FUNCTION_INIT(fnname, maxargs) (Lisp_Object (*) (void)) fnname
2653# else
2654# define DEFUN_FUNCTION_INIT(fnname, maxargs) .a ## maxargs = fnname
2655# endif
a6fc3b5c
EZ
2656#define DEFUN(lname, fnname, sname, minargs, maxargs, intspec, doc) \
2657 Lisp_Object fnname DEFUN_ARGS_ ## maxargs ; \
e32a5799 2658 static struct Lisp_Subr alignas (GCALIGNMENT) sname = \
914adc42 2659 { { PVEC_SUBR << PSEUDOVECTOR_AREA_BITS }, \
29abe551 2660 { DEFUN_FUNCTION_INIT (fnname, maxargs) }, \
a6fc3b5c
EZ
2661 minargs, maxargs, lname, intspec, 0}; \
2662 Lisp_Object fnname
2663#endif
c451d7b1
RS
2664
2665/* Note that the weird token-substitution semantics of ANSI C makes
99a3d506 2666 this work for MANY and UNEVALLED. */
f66c7cf8 2667#define DEFUN_ARGS_MANY (ptrdiff_t, Lisp_Object *)
c451d7b1
RS
2668#define DEFUN_ARGS_UNEVALLED (Lisp_Object)
2669#define DEFUN_ARGS_0 (void)
2670#define DEFUN_ARGS_1 (Lisp_Object)
2671#define DEFUN_ARGS_2 (Lisp_Object, Lisp_Object)
2672#define DEFUN_ARGS_3 (Lisp_Object, Lisp_Object, Lisp_Object)
2673#define DEFUN_ARGS_4 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object)
2674#define DEFUN_ARGS_5 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, \
2675 Lisp_Object)
2676#define DEFUN_ARGS_6 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, \
2677 Lisp_Object, Lisp_Object)
2678#define DEFUN_ARGS_7 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, \
2679 Lisp_Object, Lisp_Object, Lisp_Object)
5593f7e3
KH
2680#define DEFUN_ARGS_8 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, \
2681 Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object)
276680c4 2682
84575e67 2683/* True if OBJ is a Lisp function. */
00382e8b 2684INLINE bool
84575e67
PE
2685FUNCTIONP (Lisp_Object obj)
2686{
2687 return functionp (obj);
2688}
e2c0561e 2689
3cfe6dfd 2690/* defsubr (Sname);
d19b9aa8 2691 is how we define the symbol for function `name' at start-up time. */
383e0970 2692extern void defsubr (struct Lisp_Subr *);
3cfe6dfd 2693
03a660a6
PE
2694enum maxargs
2695 {
2696 MANY = -2,
2697 UNEVALLED = -1
2698 };
3cfe6dfd 2699
ce5b453a
SM
2700extern void defvar_lisp (struct Lisp_Objfwd *, const char *, Lisp_Object *);
2701extern void defvar_lisp_nopro (struct Lisp_Objfwd *, const char *, Lisp_Object *);
f5d9e83a 2702extern void defvar_bool (struct Lisp_Boolfwd *, const char *, bool *);
ce5b453a
SM
2703extern void defvar_int (struct Lisp_Intfwd *, const char *, EMACS_INT *);
2704extern void defvar_kboard (struct Lisp_Kboard_Objfwd *, const char *, int);
3cfe6dfd
JB
2705
2706/* Macros we use to define forwarded Lisp variables.
29208e82 2707 These are used in the syms_of_FILENAME functions.
51b59d79 2708
29208e82
TT
2709 An ordinary (not in buffer_defaults, per-buffer, or per-keyboard)
2710 lisp variable is actually a field in `struct emacs_globals'. The
2711 field's name begins with "f_", which is a convention enforced by
2712 these macros. Each such global has a corresponding #define in
2713 globals.h; the plain name should be used in the code.
2714
2715 E.g., the global "cons_cells_consed" is declared as "int
2716 f_cons_cells_consed" in globals.h, but there is a define:
2717
2718 #define cons_cells_consed globals.f_cons_cells_consed
2719
2720 All C code uses the `cons_cells_consed' name. This is all done
2721 this way to support indirection for multi-threaded Emacs. */
3cfe6dfd 2722
ce5b453a
SM
2723#define DEFVAR_LISP(lname, vname, doc) \
2724 do { \
2725 static struct Lisp_Objfwd o_fwd; \
29208e82 2726 defvar_lisp (&o_fwd, lname, &globals.f_ ## vname); \
96c06863 2727 } while (false)
ce5b453a
SM
2728#define DEFVAR_LISP_NOPRO(lname, vname, doc) \
2729 do { \
2730 static struct Lisp_Objfwd o_fwd; \
29208e82 2731 defvar_lisp_nopro (&o_fwd, lname, &globals.f_ ## vname); \
96c06863 2732 } while (false)
ce5b453a
SM
2733#define DEFVAR_BOOL(lname, vname, doc) \
2734 do { \
2735 static struct Lisp_Boolfwd b_fwd; \
29208e82 2736 defvar_bool (&b_fwd, lname, &globals.f_ ## vname); \
96c06863 2737 } while (false)
ce5b453a
SM
2738#define DEFVAR_INT(lname, vname, doc) \
2739 do { \
2740 static struct Lisp_Intfwd i_fwd; \
29208e82 2741 defvar_int (&i_fwd, lname, &globals.f_ ## vname); \
96c06863 2742 } while (false)
92d2947b 2743
422745d0
TT
2744#define DEFVAR_BUFFER_DEFAULTS(lname, vname, doc) \
2745 do { \
2746 static struct Lisp_Objfwd o_fwd; \
eb4916d7 2747 defvar_lisp_nopro (&o_fwd, lname, &BVAR (&buffer_defaults, vname)); \
96c06863 2748 } while (false)
422745d0 2749
ce5b453a
SM
2750#define DEFVAR_KBOARD(lname, vname, doc) \
2751 do { \
2752 static struct Lisp_Kboard_Objfwd ko_fwd; \
437b2cb4 2753 defvar_kboard (&ko_fwd, lname, offsetof (KBOARD, vname ## _)); \
96c06863 2754 } while (false)
0328b6de
PE
2755\f
2756/* Save and restore the instruction and environment pointers,
2757 without affecting the signal mask. */
2758
2759#ifdef HAVE__SETJMP
2760typedef jmp_buf sys_jmp_buf;
2761# define sys_setjmp(j) _setjmp (j)
2762# define sys_longjmp(j, v) _longjmp (j, v)
2763#elif defined HAVE_SIGSETJMP
2764typedef sigjmp_buf sys_jmp_buf;
2765# define sys_setjmp(j) sigsetjmp (j, 0)
2766# define sys_longjmp(j, v) siglongjmp (j, v)
2767#else
7105c8cb
EZ
2768/* A platform that uses neither _longjmp nor siglongjmp; assume
2769 longjmp does not affect the sigmask. */
0328b6de
PE
2770typedef jmp_buf sys_jmp_buf;
2771# define sys_setjmp(j) setjmp (j)
2772# define sys_longjmp(j, v) longjmp (j, v)
2773#endif
df7cd53b 2774
3cfe6dfd 2775\f
2f592f95
SM
2776/* Elisp uses several stacks:
2777 - the C stack.
2778 - the bytecode stack: used internally by the bytecode interpreter.
2779 Allocated from the C stack.
2780 - The specpdl stack: keeps track of active unwind-protect and
2781 dynamic-let-bindings. Allocated from the `specpdl' array, a manually
2782 managed stack.
adf2aa61
SM
2783 - The handler stack: keeps track of active catch tags and condition-case
2784 handlers. Allocated in a manually managed stack implemented by a
2785 doubly-linked list allocated via xmalloc and never freed. */
2f592f95 2786
78ca380c
JB
2787/* Structure for recording Lisp call stack for backtrace purposes. */
2788
2789/* The special binding stack holds the outer values of variables while
2790 they are bound by a function application or a let form, stores the
2f592f95 2791 code to be executed for unwind-protect forms.
78ca380c 2792
9349e5f7 2793 NOTE: The specbinding union is defined here, because SPECPDL_INDEX is
2f592f95 2794 used all over the place, needs to be fast, and needs to know the size of
9349e5f7 2795 union specbinding. But only eval.c should access it. */
5fd6e274 2796
2f592f95 2797enum specbind_tag {
27e498e6
PE
2798 SPECPDL_UNWIND, /* An unwind_protect function on Lisp_Object. */
2799 SPECPDL_UNWIND_PTR, /* Likewise, on void *. */
2800 SPECPDL_UNWIND_INT, /* Likewise, on int. */
2801 SPECPDL_UNWIND_VOID, /* Likewise, with no arg. */
2f592f95
SM
2802 SPECPDL_BACKTRACE, /* An element of the backtrace. */
2803 SPECPDL_LET, /* A plain and simple dynamic let-binding. */
2804 /* Tags greater than SPECPDL_LET must be "subkinds" of LET. */
2805 SPECPDL_LET_LOCAL, /* A buffer-local let-binding. */
2806 SPECPDL_LET_DEFAULT /* A global binding for a localized var. */
2807};
2808
9349e5f7 2809union specbinding
3cfe6dfd 2810 {
9349e5f7
PE
2811 ENUM_BF (specbind_tag) kind : CHAR_BIT;
2812 struct {
2813 ENUM_BF (specbind_tag) kind : CHAR_BIT;
27e498e6 2814 void (*func) (Lisp_Object);
9349e5f7 2815 Lisp_Object arg;
9349e5f7 2816 } unwind;
27e498e6
PE
2817 struct {
2818 ENUM_BF (specbind_tag) kind : CHAR_BIT;
2819 void (*func) (void *);
2820 void *arg;
2821 } unwind_ptr;
2822 struct {
2823 ENUM_BF (specbind_tag) kind : CHAR_BIT;
2824 void (*func) (int);
2825 int arg;
2826 } unwind_int;
2827 struct {
2828 ENUM_BF (specbind_tag) kind : CHAR_BIT;
2829 void (*func) (void);
2830 } unwind_void;
9349e5f7
PE
2831 struct {
2832 ENUM_BF (specbind_tag) kind : CHAR_BIT;
2833 /* `where' is not used in the case of SPECPDL_LET. */
2834 Lisp_Object symbol, old_value, where;
2835 } let;
2836 struct {
2837 ENUM_BF (specbind_tag) kind : CHAR_BIT;
96c06863 2838 bool_bf debug_on_exit : 1;
9349e5f7
PE
2839 Lisp_Object function;
2840 Lisp_Object *args;
2841 ptrdiff_t nargs;
2842 } bt;
3cfe6dfd
JB
2843 };
2844
9349e5f7
PE
2845extern union specbinding *specpdl;
2846extern union specbinding *specpdl_ptr;
d311d28c 2847extern ptrdiff_t specpdl_size;
3cfe6dfd 2848
00382e8b 2849INLINE ptrdiff_t
84575e67
PE
2850SPECPDL_INDEX (void)
2851{
2852 return specpdl_ptr - specpdl;
2853}
acb8dc44 2854
adf2aa61
SM
2855/* This structure helps implement the `catch/throw' and `condition-case/signal'
2856 control structures. A struct handler contains all the information needed to
2857 restore the state of the interpreter after a non-local jump.
50f2e553 2858
adf2aa61
SM
2859 handler structures are chained together in a doubly linked list; the `next'
2860 member points to the next outer catchtag and the `nextfree' member points in
2861 the other direction to the next inner element (which is typically the next
2862 free element since we mostly use it on the deepest handler).
3cfe6dfd 2863
adf2aa61 2864 A call like (throw TAG VAL) searches for a catchtag whose `tag_or_ch'
d7306fe6
DN
2865 member is TAG, and then unbinds to it. The `val' member is used to
2866 hold VAL while the stack is unwound; `val' is returned as the value
2867 of the catch form.
2868
2869 All the other members are concerned with restoring the interpreter
50f2e553 2870 state.
d7306fe6 2871
50f2e553 2872 Members are volatile if their values need to survive _longjmp when
adf2aa61
SM
2873 a 'struct handler' is a local variable. */
2874
2875enum handlertype { CATCHER, CONDITION_CASE };
2876
2877struct handler
d7306fe6 2878{
adf2aa61
SM
2879 enum handlertype type;
2880 Lisp_Object tag_or_ch;
2881 Lisp_Object val;
2882 struct handler *next;
2883 struct handler *nextfree;
2884
2885 /* The bytecode interpreter can have several handlers active at the same
2886 time, so when we longjmp to one of them, it needs to know which handler
2887 this was and what was the corresponding internal state. This is stored
2888 here, and when we longjmp we make sure that handlerlist points to the
2889 proper handler. */
2890 Lisp_Object *bytecode_top;
2891 int bytecode_dest;
2892
2893 /* Most global vars are reset to their value via the specpdl mechanism,
2894 but a few others are handled by storing their value here. */
96c06863 2895#if true /* GC_MARK_STACK == GC_MAKE_GCPROS_NOOPS, but defined later. */
d7306fe6 2896 struct gcpro *gcpro;
2f592f95 2897#endif
0328b6de 2898 sys_jmp_buf jmp;
d311d28c 2899 EMACS_INT lisp_eval_depth;
adf2aa61 2900 ptrdiff_t pdlcount;
d7306fe6
DN
2901 int poll_suppress_count;
2902 int interrupt_input_blocked;
2903 struct byte_stack *byte_stack;
2904};
2905
adf2aa61
SM
2906/* Fill in the components of c, and put it on the list. */
2907#define PUSH_HANDLER(c, tag_ch_val, handlertype) \
70de5e86 2908 if (handlerlist->nextfree) \
adf2aa61
SM
2909 (c) = handlerlist->nextfree; \
2910 else \
2911 { \
2912 (c) = xmalloc (sizeof (struct handler)); \
2913 (c)->nextfree = NULL; \
70de5e86 2914 handlerlist->nextfree = (c); \
adf2aa61
SM
2915 } \
2916 (c)->type = (handlertype); \
2917 (c)->tag_or_ch = (tag_ch_val); \
2918 (c)->val = Qnil; \
2919 (c)->next = handlerlist; \
2920 (c)->lisp_eval_depth = lisp_eval_depth; \
2921 (c)->pdlcount = SPECPDL_INDEX (); \
2922 (c)->poll_suppress_count = poll_suppress_count; \
2923 (c)->interrupt_input_blocked = interrupt_input_blocked;\
2924 (c)->gcpro = gcprolist; \
2925 (c)->byte_stack = byte_stack_list; \
2926 handlerlist = (c);
2927
2928
22bbbd42
RS
2929extern Lisp_Object memory_signal_data;
2930
3cfe6dfd
JB
2931/* An address near the bottom of the stack.
2932 Tells GC how to save a copy of the stack. */
2933extern char *stack_bottom;
2934
4742f524
RS
2935/* Check quit-flag and quit if it is non-nil.
2936 Typing C-g does not directly cause a quit; it only sets Vquit_flag.
2937 So the program needs to do QUIT at times when it is safe to quit.
2938 Every loop that might run for a long time or might not exit
2939 ought to do QUIT at least once, at a safe place.
2940 Unless that is impossible, of course.
2941 But it is very desirable to avoid creating loops where QUIT is impossible.
2942
96c06863 2943 Exception: if you set immediate_quit to true,
4742f524
RS
2944 then the handler that responds to the C-g does the quit itself.
2945 This is a good thing to do around a loop that has no side effects
6c07aac2
AS
2946 and (in particular) cannot call arbitrary Lisp code.
2947
2948 If quit-flag is set to `kill-emacs' the SIGINT handler has received
2949 a request to exit Emacs when it is safe to do. */
3cfe6dfd 2950
383e0970 2951extern void process_pending_signals (void);
88d69b7d 2952extern bool volatile pending_signals;
6b61353c 2953
7dbda6df 2954extern void process_quit_flag (void);
a69a6e61
GM
2955#define QUIT \
2956 do { \
2957 if (!NILP (Vquit_flag) && NILP (Vinhibit_quit)) \
6d5eb5b0 2958 process_quit_flag (); \
0caaedb1
PE
2959 else if (pending_signals) \
2960 process_pending_signals (); \
96c06863 2961 } while (false)
3cfe6dfd 2962
6b61353c 2963
96c06863 2964/* True if ought to quit now. */
3cfe6dfd 2965
efb859b4 2966#define QUITP (!NILP (Vquit_flag) && NILP (Vinhibit_quit))
3cfe6dfd 2967\f
31cd66f3
PE
2968extern Lisp_Object Vascii_downcase_table;
2969extern Lisp_Object Vascii_canon_table;
3cfe6dfd 2970\f
99a3d506 2971/* Structure for recording stack slots that need marking. */
3cfe6dfd 2972
78edd3b7
JB
2973/* This is a chain of structures, each of which points at a Lisp_Object
2974 variable whose value should be marked in garbage collection.
2975 Normally every link of the chain is an automatic variable of a function,
2976 and its `val' points to some argument or local variable of the function.
2977 On exit to the function, the chain is set back to the value it had on entry.
2978 This way, no link remains in the chain when the stack frame containing the
2979 link disappears.
3cfe6dfd 2980
78edd3b7
JB
2981 Every function that can call Feval must protect in this fashion all
2982 Lisp_Object variables whose contents will be used again. */
3cfe6dfd
JB
2983
2984extern struct gcpro *gcprolist;
2985
2986struct gcpro
834168ef
GM
2987{
2988 struct gcpro *next;
e2c0561e 2989
834168ef
GM
2990 /* Address of first protected variable. */
2991 volatile Lisp_Object *var;
e2c0561e 2992
834168ef 2993 /* Number of consecutive protected variables. */
f66c7cf8 2994 ptrdiff_t nvars;
e2c0561e 2995
4742f524 2996#ifdef DEBUG_GCPRO
834168ef 2997 int level;
4742f524 2998#endif
834168ef 2999};
3cfe6dfd 3000
1216f5e4
GM
3001/* Values of GC_MARK_STACK during compilation:
3002
3003 0 Use GCPRO as before
3004 1 Do the real thing, make GCPROs and UNGCPRO no-ops.
3005 2 Mark the stack, and check that everything GCPRO'd is
3006 marked.
3007 3 Mark using GCPRO's, mark stack last, and count how many
444b01bb 3008 dead objects are kept alive.
1216f5e4 3009
444b01bb
PE
3010 Formerly, method 0 was used. Currently, method 1 is used unless
3011 otherwise specified by hand when building, e.g.,
3012 "make CPPFLAGS='-DGC_MARK_STACK=GC_USE_GCPROS_AS_BEFORE'".
3013 Methods 2 and 3 are present mainly to debug the transition from 0 to 1. */
1216f5e4
GM
3014
3015#define GC_USE_GCPROS_AS_BEFORE 0
3016#define GC_MAKE_GCPROS_NOOPS 1
3017#define GC_MARK_STACK_CHECK_GCPROS 2
3018#define GC_USE_GCPROS_CHECK_ZOMBIES 3
3019
3020#ifndef GC_MARK_STACK
b948ce8b 3021#define GC_MARK_STACK GC_MAKE_GCPROS_NOOPS
1216f5e4
GM
3022#endif
3023
b286858c
SM
3024/* Whether we do the stack marking manually. */
3025#define BYTE_MARK_STACK !(GC_MARK_STACK == GC_MAKE_GCPROS_NOOPS \
3026 || GC_MARK_STACK == GC_MARK_STACK_CHECK_GCPROS)
3027
3028
1216f5e4
GM
3029#if GC_MARK_STACK == GC_MAKE_GCPROS_NOOPS
3030
9f0443f9 3031/* Do something silly with gcproN vars just so gcc shuts up. */
656c33dc 3032/* You get warnings from MIPSPro... */
9f0443f9 3033
dbf31225
PE
3034#define GCPRO1(varname) ((void) gcpro1)
3035#define GCPRO2(varname1, varname2) ((void) gcpro2, (void) gcpro1)
3036#define GCPRO3(varname1, varname2, varname3) \
3037 ((void) gcpro3, (void) gcpro2, (void) gcpro1)
3038#define GCPRO4(varname1, varname2, varname3, varname4) \
3039 ((void) gcpro4, (void) gcpro3, (void) gcpro2, (void) gcpro1)
3040#define GCPRO5(varname1, varname2, varname3, varname4, varname5) \
3041 ((void) gcpro5, (void) gcpro4, (void) gcpro3, (void) gcpro2, (void) gcpro1)
3042#define GCPRO6(varname1, varname2, varname3, varname4, varname5, varname6) \
3043 ((void) gcpro6, (void) gcpro5, (void) gcpro4, (void) gcpro3, (void) gcpro2, \
3044 (void) gcpro1)
518c40a2 3045#define GCPRO7(a, b, c, d, e, f, g) (GCPRO6 (a, b, c, d, e, f), (void) gcpro7)
dbf31225 3046#define UNGCPRO ((void) 0)
1216f5e4
GM
3047
3048#else /* GC_MARK_STACK != GC_MAKE_GCPROS_NOOPS */
3049
4742f524
RS
3050#ifndef DEBUG_GCPRO
3051
dbf31225
PE
3052#define GCPRO1(varname) \
3053 {gcpro1.next = gcprolist; gcpro1.var = &varname; gcpro1.nvars = 1; \
3054 gcprolist = &gcpro1; }
3055
3056#define GCPRO2(varname1, varname2) \
3057 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
3058 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
3059 gcprolist = &gcpro2; }
3060
3061#define GCPRO3(varname1, varname2, varname3) \
3062 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
3063 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
3064 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
3065 gcprolist = &gcpro3; }
3066
3067#define GCPRO4(varname1, varname2, varname3, varname4) \
3068 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
3069 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
3070 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
3071 gcpro4.next = &gcpro3; gcpro4.var = &varname4; gcpro4.nvars = 1; \
3072 gcprolist = &gcpro4; }
3073
3074#define GCPRO5(varname1, varname2, varname3, varname4, varname5) \
3075 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
3076 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
3077 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
3078 gcpro4.next = &gcpro3; gcpro4.var = &varname4; gcpro4.nvars = 1; \
3079 gcpro5.next = &gcpro4; gcpro5.var = &varname5; gcpro5.nvars = 1; \
3080 gcprolist = &gcpro5; }
3081
3082#define GCPRO6(varname1, varname2, varname3, varname4, varname5, varname6) \
3083 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
3084 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
3085 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
3086 gcpro4.next = &gcpro3; gcpro4.var = &varname4; gcpro4.nvars = 1; \
3087 gcpro5.next = &gcpro4; gcpro5.var = &varname5; gcpro5.nvars = 1; \
3088 gcpro6.next = &gcpro5; gcpro6.var = &varname6; gcpro6.nvars = 1; \
3089 gcprolist = &gcpro6; }
3090
518c40a2
PE
3091#define GCPRO7(a, b, c, d, e, f, g) \
3092 {gcpro1.next = gcprolist; gcpro1.var = &(a); gcpro1.nvars = 1; \
3093 gcpro2.next = &gcpro1; gcpro2.var = &(b); gcpro2.nvars = 1; \
3094 gcpro3.next = &gcpro2; gcpro3.var = &(c); gcpro3.nvars = 1; \
3095 gcpro4.next = &gcpro3; gcpro4.var = &(d); gcpro4.nvars = 1; \
3096 gcpro5.next = &gcpro4; gcpro5.var = &(e); gcpro5.nvars = 1; \
3097 gcpro6.next = &gcpro5; gcpro6.var = &(f); gcpro6.nvars = 1; \
3098 gcpro7.next = &gcpro6; gcpro7.var = &(g); gcpro7.nvars = 1; \
3099 gcprolist = &gcpro7; }
3100
dbf31225 3101#define UNGCPRO (gcprolist = gcpro1.next)
3cfe6dfd 3102
4742f524 3103#else
e98227af 3104
4742f524
RS
3105extern int gcpro_level;
3106
dbf31225
PE
3107#define GCPRO1(varname) \
3108 {gcpro1.next = gcprolist; gcpro1.var = &varname; gcpro1.nvars = 1; \
3109 gcpro1.level = gcpro_level++; \
3110 gcprolist = &gcpro1; }
3111
3112#define GCPRO2(varname1, varname2) \
3113 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
3114 gcpro1.level = gcpro_level; \
3115 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
3116 gcpro2.level = gcpro_level++; \
3117 gcprolist = &gcpro2; }
3118
3119#define GCPRO3(varname1, varname2, varname3) \
3120 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
3121 gcpro1.level = gcpro_level; \
3122 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
3123 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
3124 gcpro3.level = gcpro_level++; \
3125 gcprolist = &gcpro3; }
3126
3127#define GCPRO4(varname1, varname2, varname3, varname4) \
3128 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
3129 gcpro1.level = gcpro_level; \
3130 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
3131 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
3132 gcpro4.next = &gcpro3; gcpro4.var = &varname4; gcpro4.nvars = 1; \
3133 gcpro4.level = gcpro_level++; \
3134 gcprolist = &gcpro4; }
3135
3136#define GCPRO5(varname1, varname2, varname3, varname4, varname5) \
3137 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
3138 gcpro1.level = gcpro_level; \
3139 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
3140 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
3141 gcpro4.next = &gcpro3; gcpro4.var = &varname4; gcpro4.nvars = 1; \
3142 gcpro5.next = &gcpro4; gcpro5.var = &varname5; gcpro5.nvars = 1; \
3143 gcpro5.level = gcpro_level++; \
3144 gcprolist = &gcpro5; }
3145
3146#define GCPRO6(varname1, varname2, varname3, varname4, varname5, varname6) \
3147 {gcpro1.next = gcprolist; gcpro1.var = &varname1; gcpro1.nvars = 1; \
3148 gcpro1.level = gcpro_level; \
3149 gcpro2.next = &gcpro1; gcpro2.var = &varname2; gcpro2.nvars = 1; \
3150 gcpro3.next = &gcpro2; gcpro3.var = &varname3; gcpro3.nvars = 1; \
3151 gcpro4.next = &gcpro3; gcpro4.var = &varname4; gcpro4.nvars = 1; \
3152 gcpro5.next = &gcpro4; gcpro5.var = &varname5; gcpro5.nvars = 1; \
3153 gcpro6.next = &gcpro5; gcpro6.var = &varname6; gcpro6.nvars = 1; \
3154 gcpro6.level = gcpro_level++; \
3155 gcprolist = &gcpro6; }
3156
518c40a2
PE
3157#define GCPRO7(a, b, c, d, e, f, g) \
3158 {gcpro1.next = gcprolist; gcpro1.var = &(a); gcpro1.nvars = 1; \
3159 gcpro1.level = gcpro_level; \
3160 gcpro2.next = &gcpro1; gcpro2.var = &(b); gcpro2.nvars = 1; \
3161 gcpro3.next = &gcpro2; gcpro3.var = &(c); gcpro3.nvars = 1; \
3162 gcpro4.next = &gcpro3; gcpro4.var = &(d); gcpro4.nvars = 1; \
3163 gcpro5.next = &gcpro4; gcpro5.var = &(e); gcpro5.nvars = 1; \
3164 gcpro6.next = &gcpro5; gcpro6.var = &(f); gcpro6.nvars = 1; \
3165 gcpro7.next = &gcpro6; gcpro7.var = &(g); gcpro7.nvars = 1; \
3166 gcpro7.level = gcpro_level++; \
3167 gcprolist = &gcpro7; }
3168
dbf31225 3169#define UNGCPRO \
96c06863
PE
3170 (--gcpro_level != gcpro1.level \
3171 ? emacs_abort () \
3172 : (void) (gcprolist = gcpro1.next))
4742f524
RS
3173
3174#endif /* DEBUG_GCPRO */
1216f5e4
GM
3175#endif /* GC_MARK_STACK != GC_MAKE_GCPROS_NOOPS */
3176
3cfe6dfd 3177
5db82c9d 3178/* Evaluate expr, UNGCPRO, and then return the value of expr. */
c47b8d02 3179#define RETURN_UNGCPRO(expr) \
96c06863 3180 do \
c47b8d02
RS
3181 { \
3182 Lisp_Object ret_ungc_val; \
3183 ret_ungc_val = (expr); \
3184 UNGCPRO; \
3185 return ret_ungc_val; \
3186 } \
96c06863 3187 while (false)
4742f524
RS
3188
3189/* Call staticpro (&var) to protect static variable `var'. */
3190
383e0970 3191void staticpro (Lisp_Object *);
3cfe6dfd 3192\f
2f69f2ec
RS
3193/* Declare a Lisp-callable function. The MAXARGS parameter has the same
3194 meaning as in the DEFUN macro, and is used to construct a prototype. */
2f69f2ec
RS
3195/* We can use the same trick as in the DEFUN macro to generate the
3196 appropriate prototype. */
3197#define EXFUN(fnname, maxargs) \
3198 extern Lisp_Object fnname DEFUN_ARGS_ ## maxargs
2f69f2ec 3199
84575e67
PE
3200#include "globals.h"
3201
526a2be7
AS
3202/* Forward declarations for prototypes. */
3203struct window;
3204struct frame;
2f69f2ec 3205
086ca913
DA
3206/* Copy COUNT Lisp_Objects from ARGS to contents of V starting from OFFSET. */
3207
00382e8b 3208INLINE void
086ca913
DA
3209vcopy (Lisp_Object v, ptrdiff_t offset, Lisp_Object *args, ptrdiff_t count)
3210{
7216e43b 3211 eassert (0 <= offset && 0 <= count && offset + count <= ASIZE (v));
91f2d272 3212 memcpy (XVECTOR (v)->contents + offset, args, count * sizeof *args);
086ca913
DA
3213}
3214
3215/* Functions to modify hash tables. */
3216
00382e8b 3217INLINE void
e83064be 3218set_hash_key_slot (struct Lisp_Hash_Table *h, ptrdiff_t idx, Lisp_Object val)
4939150c 3219{
8834c57a 3220 gc_aset (h->key_and_value, 2 * idx, val);
4939150c
PE
3221}
3222
00382e8b 3223INLINE void
e83064be 3224set_hash_value_slot (struct Lisp_Hash_Table *h, ptrdiff_t idx, Lisp_Object val)
4939150c 3225{
8834c57a 3226 gc_aset (h->key_and_value, 2 * idx + 1, val);
4939150c
PE
3227}
3228
c644523b
DA
3229/* Use these functions to set Lisp_Object
3230 or pointer slots of struct Lisp_Symbol. */
3231
00382e8b 3232INLINE void
c644523b
DA
3233set_symbol_function (Lisp_Object sym, Lisp_Object function)
3234{
3235 XSYMBOL (sym)->function = function;
3236}
3237
00382e8b 3238INLINE void
c644523b
DA
3239set_symbol_plist (Lisp_Object sym, Lisp_Object plist)
3240{
3241 XSYMBOL (sym)->plist = plist;
3242}
3243
00382e8b 3244INLINE void
c644523b
DA
3245set_symbol_next (Lisp_Object sym, struct Lisp_Symbol *next)
3246{
3247 XSYMBOL (sym)->next = next;
3248}
3249
a04e2c62
DA
3250/* Buffer-local (also frame-local) variable access functions. */
3251
00382e8b 3252INLINE int
a04e2c62
DA
3253blv_found (struct Lisp_Buffer_Local_Value *blv)
3254{
3255 eassert (blv->found == !EQ (blv->defcell, blv->valcell));
3256 return blv->found;
3257}
3258
c644523b
DA
3259/* Set overlay's property list. */
3260
00382e8b 3261INLINE void
c644523b
DA
3262set_overlay_plist (Lisp_Object overlay, Lisp_Object plist)
3263{
3264 XOVERLAY (overlay)->plist = plist;
3265}
3266
ad8c997f
DA
3267/* Get text properties of S. */
3268
00382e8b 3269INLINE INTERVAL
0c94c8d6 3270string_intervals (Lisp_Object s)
ad8c997f
DA
3271{
3272 return XSTRING (s)->intervals;
3273}
3274
3275/* Set text properties of S to I. */
3276
00382e8b 3277INLINE void
0c94c8d6 3278set_string_intervals (Lisp_Object s, INTERVAL i)
ad8c997f
DA
3279{
3280 XSTRING (s)->intervals = i;
3281}
3282
742af32f
PE
3283/* Set a Lisp slot in TABLE to VAL. Most code should use this instead
3284 of setting slots directly. */
3285
00382e8b 3286INLINE void
742af32f
PE
3287set_char_table_defalt (Lisp_Object table, Lisp_Object val)
3288{
3289 XCHAR_TABLE (table)->defalt = val;
3290}
00382e8b 3291INLINE void
742af32f
PE
3292set_char_table_purpose (Lisp_Object table, Lisp_Object val)
3293{
3294 XCHAR_TABLE (table)->purpose = val;
3295}
3296
a098c930
DA
3297/* Set different slots in (sub)character tables. */
3298
00382e8b 3299INLINE void
34dabdb7 3300set_char_table_extras (Lisp_Object table, ptrdiff_t idx, Lisp_Object val)
a098c930
DA
3301{
3302 eassert (0 <= idx && idx < CHAR_TABLE_EXTRA_SLOTS (XCHAR_TABLE (table)));
3303 XCHAR_TABLE (table)->extras[idx] = val;
3304}
3305
00382e8b 3306INLINE void
34dabdb7 3307set_char_table_contents (Lisp_Object table, ptrdiff_t idx, Lisp_Object val)
a098c930
DA
3308{
3309 eassert (0 <= idx && idx < (1 << CHARTAB_SIZE_BITS_0));
3310 XCHAR_TABLE (table)->contents[idx] = val;
3311}
3312
00382e8b 3313INLINE void
34dabdb7 3314set_sub_char_table_contents (Lisp_Object table, ptrdiff_t idx, Lisp_Object val)
a098c930
DA
3315{
3316 XSUB_CHAR_TABLE (table)->contents[idx] = val;
3317}
3318
f6d62986 3319/* Defined in data.c. */
955cbe7b 3320extern Lisp_Object Qnil, Qt, Qquote, Qlambda, Qunbound;
3cfe6dfd 3321extern Lisp_Object Qerror_conditions, Qerror_message, Qtop_level;
955cbe7b 3322extern Lisp_Object Qerror, Qquit, Qargs_out_of_range;
3cfe6dfd 3323extern Lisp_Object Qvoid_variable, Qvoid_function;
955cbe7b 3324extern Lisp_Object Qinvalid_read_syntax;
3cfe6dfd 3325extern Lisp_Object Qinvalid_function, Qwrong_number_of_arguments, Qno_catch;
71873e2b 3326extern Lisp_Object Quser_error, Qend_of_file, Qarith_error, Qmark_inactive;
3cfe6dfd 3327extern Lisp_Object Qbeginning_of_buffer, Qend_of_buffer, Qbuffer_read_only;
6b61353c 3328extern Lisp_Object Qtext_read_only;
e6cba650 3329extern Lisp_Object Qinteractive_form;
99f3388e 3330extern Lisp_Object Qcircular_list;
955cbe7b 3331extern Lisp_Object Qintegerp, Qwholenump, Qsymbolp, Qlistp, Qconsp;
3cfe6dfd 3332extern Lisp_Object Qstringp, Qarrayp, Qsequencep, Qbufferp;
6b61353c 3333extern Lisp_Object Qchar_or_string_p, Qmarkerp, Qinteger_or_marker_p, Qvectorp;
cde20f41 3334extern Lisp_Object Qbuffer_or_string_p;
955cbe7b 3335extern Lisp_Object Qfboundp;
6b61353c
KH
3336extern Lisp_Object Qchar_table_p, Qvector_or_char_table_p;
3337
3cfe6dfd
JB
3338extern Lisp_Object Qcdr;
3339
c990426a 3340extern Lisp_Object Qrange_error, Qoverflow_error;
3cfe6dfd 3341
6b61353c
KH
3342extern Lisp_Object Qfloatp;
3343extern Lisp_Object Qnumberp, Qnumber_or_marker_p;
3344
b52d6985 3345extern Lisp_Object Qbuffer, Qinteger, Qsymbol;
3cfe6dfd 3346
a35ebb81
CY
3347extern Lisp_Object Qfont_spec, Qfont_entity, Qfont_object;
3348
5994c183
PE
3349EXFUN (Fbyteorder, 0) ATTRIBUTE_CONST;
3350
e7032e7c 3351/* Defined in data.c. */
383e0970 3352extern Lisp_Object indirect_function (Lisp_Object);
383e0970 3353extern Lisp_Object find_symbol_value (Lisp_Object);
ebb99847
BR
3354enum Arith_Comparison {
3355 ARITH_EQUAL,
3356 ARITH_NOTEQUAL,
3357 ARITH_LESS,
3358 ARITH_GRTR,
3359 ARITH_LESS_OR_EQUAL,
3360 ARITH_GRTR_OR_EQUAL
3361};
3362extern Lisp_Object arithcompare (Lisp_Object num1, Lisp_Object num2,
3363 enum Arith_Comparison comparison);
2f69f2ec 3364
be44ca6c
PE
3365/* Convert the integer I to an Emacs representation, either the integer
3366 itself, or a cons of two or three integers, or if all else fails a float.
3367 I should not have side effects. */
3368#define INTEGER_TO_CONS(i) \
3369 (! FIXNUM_OVERFLOW_P (i) \
3370 ? make_number (i) \
3371 : ! ((FIXNUM_OVERFLOW_P (INTMAX_MIN >> 16) \
3372 || FIXNUM_OVERFLOW_P (UINTMAX_MAX >> 16)) \
3373 && FIXNUM_OVERFLOW_P ((i) >> 16)) \
3374 ? Fcons (make_number ((i) >> 16), make_number ((i) & 0xffff)) \
3375 : ! ((FIXNUM_OVERFLOW_P (INTMAX_MIN >> 16 >> 24) \
3376 || FIXNUM_OVERFLOW_P (UINTMAX_MAX >> 16 >> 24)) \
3377 && FIXNUM_OVERFLOW_P ((i) >> 16 >> 24)) \
3378 ? Fcons (make_number ((i) >> 16 >> 24), \
3379 Fcons (make_number ((i) >> 16 & 0xffffff), \
3380 make_number ((i) & 0xffff))) \
3381 : make_float (i))
3382
3383/* Convert the Emacs representation CONS back to an integer of type
3384 TYPE, storing the result the variable VAR. Signal an error if CONS
3385 is not a valid representation or is out of range for TYPE. */
3386#define CONS_TO_INTEGER(cons, type, var) \
3387 (TYPE_SIGNED (type) \
3388 ? ((var) = cons_to_signed (cons, TYPE_MINIMUM (type), TYPE_MAXIMUM (type))) \
3389 : ((var) = cons_to_unsigned (cons, TYPE_MAXIMUM (type))))
3390extern intmax_t cons_to_signed (Lisp_Object, intmax_t, intmax_t);
3391extern uintmax_t cons_to_unsigned (Lisp_Object, uintmax_t);
3392
ad97b375 3393extern struct Lisp_Symbol *indirect_variable (struct Lisp_Symbol *);
845ca893
PE
3394extern _Noreturn void args_out_of_range (Lisp_Object, Lisp_Object);
3395extern _Noreturn void args_out_of_range_3 (Lisp_Object, Lisp_Object,
3396 Lisp_Object);
3397extern _Noreturn Lisp_Object wrong_type_argument (Lisp_Object, Lisp_Object);
ce5b453a 3398extern Lisp_Object do_symval_forwarding (union Lisp_Fwd *);
de1339b0 3399extern void set_internal (Lisp_Object, Lisp_Object, Lisp_Object, bool);
383e0970 3400extern void syms_of_data (void);
383e0970 3401extern void swap_in_global_binding (struct Lisp_Symbol *);
3cfe6dfd 3402
a37e10f9 3403/* Defined in cmds.c */
383e0970
J
3404extern void syms_of_cmds (void);
3405extern void keys_of_cmds (void);
a37e10f9 3406
e7032e7c 3407/* Defined in coding.c. */
2f7c71a1 3408extern Lisp_Object Qcharset;
d311d28c 3409extern Lisp_Object detect_coding_system (const unsigned char *, ptrdiff_t,
f10fe38f 3410 ptrdiff_t, bool, bool, Lisp_Object);
383e0970
J
3411extern void init_coding (void);
3412extern void init_coding_once (void);
3413extern void syms_of_coding (void);
1842abb2 3414
e7032e7c 3415/* Defined in character.c. */
5994c183 3416EXFUN (Fmax_char, 0) ATTRIBUTE_CONST;
d311d28c
PE
3417extern ptrdiff_t chars_in_text (const unsigned char *, ptrdiff_t);
3418extern ptrdiff_t multibyte_chars_in_text (const unsigned char *, ptrdiff_t);
5994c183
PE
3419extern int multibyte_char_to_unibyte (int) ATTRIBUTE_CONST;
3420extern int multibyte_char_to_unibyte_safe (int) ATTRIBUTE_CONST;
2f7c71a1
AS
3421extern void syms_of_character (void);
3422
e7032e7c 3423/* Defined in charset.c. */
383e0970
J
3424extern void init_charset (void);
3425extern void init_charset_once (void);
3426extern void syms_of_charset (void);
8f924df7
KH
3427/* Structure forward declarations. */
3428struct charset;
5e741a41 3429
e7032e7c 3430/* Defined in composite.c. */
383e0970 3431extern void syms_of_composite (void);
5e741a41 3432
e7032e7c 3433/* Defined in syntax.c. */
383e0970
J
3434extern void init_syntax_once (void);
3435extern void syms_of_syntax (void);
a37e10f9 3436
e7032e7c 3437/* Defined in fns.c. */
99f3388e 3438extern Lisp_Object QCrehash_size, QCrehash_threshold;
ca9ce8f2 3439enum { NEXT_ALMOST_PRIME_LIMIT = 11 };
5994c183
PE
3440EXFUN (Fidentity, 1) ATTRIBUTE_CONST;
3441extern EMACS_INT next_almost_prime (EMACS_INT) ATTRIBUTE_CONST;
d311d28c 3442extern Lisp_Object larger_vector (Lisp_Object, ptrdiff_t, ptrdiff_t);
383e0970 3443extern void sweep_weak_hash_tables (void);
e6cba650 3444extern Lisp_Object Qcursor_in_echo_area;
3cfe6dfd 3445extern Lisp_Object Qstring_lessp;
53371430 3446extern Lisp_Object QCsize, QCtest, QCweakness, Qequal, Qeq;
3cc5a532 3447EMACS_UINT hash_string (char const *, ptrdiff_t);
0de4bb68 3448EMACS_UINT sxhash (Lisp_Object, int);
b7432bb2
SM
3449Lisp_Object make_hash_table (struct hash_table_test, Lisp_Object, Lisp_Object,
3450 Lisp_Object, Lisp_Object);
d3411f89
PE
3451ptrdiff_t hash_lookup (struct Lisp_Hash_Table *, Lisp_Object, EMACS_UINT *);
3452ptrdiff_t hash_put (struct Lisp_Hash_Table *, Lisp_Object, Lisp_Object,
0de4bb68 3453 EMACS_UINT);
53371430 3454extern struct hash_table_test hashtest_eql, hashtest_equal;
404dbd37 3455
d311d28c
PE
3456extern Lisp_Object substring_both (Lisp_Object, ptrdiff_t, ptrdiff_t,
3457 ptrdiff_t, ptrdiff_t);
6318cde0 3458extern Lisp_Object merge (Lisp_Object, Lisp_Object, Lisp_Object);
383e0970 3459extern Lisp_Object do_yes_or_no_p (Lisp_Object);
383e0970
J
3460extern Lisp_Object concat2 (Lisp_Object, Lisp_Object);
3461extern Lisp_Object concat3 (Lisp_Object, Lisp_Object, Lisp_Object);
3462extern Lisp_Object nconc2 (Lisp_Object, Lisp_Object);
3463extern Lisp_Object assq_no_quit (Lisp_Object, Lisp_Object);
3464extern Lisp_Object assoc_no_quit (Lisp_Object, Lisp_Object);
3465extern void clear_string_char_byte_cache (void);
d311d28c
PE
3466extern ptrdiff_t string_char_to_byte (Lisp_Object, ptrdiff_t);
3467extern ptrdiff_t string_byte_to_char (Lisp_Object, ptrdiff_t);
383e0970
J
3468extern Lisp_Object string_to_multibyte (Lisp_Object);
3469extern Lisp_Object string_make_unibyte (Lisp_Object);
383e0970 3470extern void syms_of_fns (void);
2f69f2ec 3471
e7032e7c 3472/* Defined in floatfns.c. */
383e0970 3473extern double extract_float (Lisp_Object);
383e0970 3474extern void syms_of_floatfns (void);
3d608a86 3475extern Lisp_Object fmod_float (Lisp_Object x, Lisp_Object y);
3cfe6dfd 3476
e7032e7c 3477/* Defined in fringe.c. */
383e0970
J
3478extern void syms_of_fringe (void);
3479extern void init_fringe (void);
524c7aa6
PE
3480#ifdef HAVE_WINDOW_SYSTEM
3481extern void mark_fringe_data (void);
383e0970 3482extern void init_fringe_once (void);
524c7aa6 3483#endif /* HAVE_WINDOW_SYSTEM */
6b61353c 3484
e7032e7c 3485/* Defined in image.c. */
955cbe7b
PE
3486extern Lisp_Object QCascent, QCmargin, QCrelief;
3487extern Lisp_Object QCconversion;
0766b489 3488extern int x_bitmap_mask (struct frame *, ptrdiff_t);
aa15c6bb 3489extern void reset_image_types (void);
383e0970 3490extern void syms_of_image (void);
6b61353c 3491
e7032e7c 3492/* Defined in insdel.c. */
b8b31967 3493extern Lisp_Object Qinhibit_modification_hooks;
d311d28c 3494extern void move_gap_both (ptrdiff_t, ptrdiff_t);
845ca893 3495extern _Noreturn void buffer_overflow (void);
d311d28c 3496extern void make_gap (ptrdiff_t);
eefd7278 3497extern void make_gap_1 (struct buffer *, ptrdiff_t);
d311d28c 3498extern ptrdiff_t copy_text (const unsigned char *, unsigned char *,
a08d4ba7 3499 ptrdiff_t, bool, bool);
ae19ba7c 3500extern int count_combining_before (const unsigned char *,
d311d28c 3501 ptrdiff_t, ptrdiff_t, ptrdiff_t);
ae19ba7c 3502extern int count_combining_after (const unsigned char *,
d311d28c
PE
3503 ptrdiff_t, ptrdiff_t, ptrdiff_t);
3504extern void insert (const char *, ptrdiff_t);
3505extern void insert_and_inherit (const char *, ptrdiff_t);
d311d28c 3506extern void insert_1_both (const char *, ptrdiff_t, ptrdiff_t,
a08d4ba7 3507 bool, bool, bool);
8a44e6d1 3508extern void insert_from_gap (ptrdiff_t, ptrdiff_t, bool text_at_gap_tail);
d311d28c 3509extern void insert_from_string (Lisp_Object, ptrdiff_t, ptrdiff_t,
a08d4ba7
PE
3510 ptrdiff_t, ptrdiff_t, bool);
3511extern void insert_from_buffer (struct buffer *, ptrdiff_t, ptrdiff_t, bool);
ae19ba7c
SM
3512extern void insert_char (int);
3513extern void insert_string (const char *);
d311d28c
PE
3514extern void insert_before_markers (const char *, ptrdiff_t);
3515extern void insert_before_markers_and_inherit (const char *, ptrdiff_t);
3516extern void insert_from_string_before_markers (Lisp_Object, ptrdiff_t,
3517 ptrdiff_t, ptrdiff_t,
a08d4ba7 3518 ptrdiff_t, bool);
d311d28c 3519extern void del_range (ptrdiff_t, ptrdiff_t);
a08d4ba7
PE
3520extern Lisp_Object del_range_1 (ptrdiff_t, ptrdiff_t, bool, bool);
3521extern void del_range_byte (ptrdiff_t, ptrdiff_t, bool);
3522extern void del_range_both (ptrdiff_t, ptrdiff_t, ptrdiff_t, ptrdiff_t, bool);
d311d28c 3523extern Lisp_Object del_range_2 (ptrdiff_t, ptrdiff_t,
a08d4ba7 3524 ptrdiff_t, ptrdiff_t, bool);
00012b86 3525extern void modify_text (ptrdiff_t, ptrdiff_t);
d311d28c 3526extern void prepare_to_modify_buffer (ptrdiff_t, ptrdiff_t, ptrdiff_t *);
00012b86 3527extern void prepare_to_modify_buffer_1 (ptrdiff_t, ptrdiff_t, ptrdiff_t *);
37c790b3 3528extern void invalidate_buffer_caches (struct buffer *, ptrdiff_t, ptrdiff_t);
d311d28c
PE
3529extern void signal_after_change (ptrdiff_t, ptrdiff_t, ptrdiff_t);
3530extern void adjust_after_insert (ptrdiff_t, ptrdiff_t, ptrdiff_t,
3531 ptrdiff_t, ptrdiff_t);
3532extern void adjust_markers_for_delete (ptrdiff_t, ptrdiff_t,
3533 ptrdiff_t, ptrdiff_t);
a08d4ba7 3534extern void replace_range (ptrdiff_t, ptrdiff_t, Lisp_Object, bool, bool, bool);
d311d28c 3535extern void replace_range_2 (ptrdiff_t, ptrdiff_t, ptrdiff_t, ptrdiff_t,
a08d4ba7 3536 const char *, ptrdiff_t, ptrdiff_t, bool);
ae19ba7c 3537extern void syms_of_insdel (void);
c98adc1b 3538
e7032e7c 3539/* Defined in dispnew.c. */
9e4bf381
PE
3540#if (defined PROFILING \
3541 && (defined __FreeBSD__ || defined GNU_LINUX || defined __MINGW32__))
845ca893 3542_Noreturn void __executable_start (void);
9e4bf381 3543#endif
7684e57b 3544extern Lisp_Object Vwindow_system;
59ea14cd 3545extern Lisp_Object sit_for (Lisp_Object, bool, int);
383e0970
J
3546extern void init_display (void);
3547extern void syms_of_display (void);
1747fb16 3548
e7032e7c 3549/* Defined in xdisp.c. */
c6ae41f3 3550extern Lisp_Object Qinhibit_point_motion_hooks;
016c7a15 3551extern Lisp_Object Qinhibit_redisplay, Qdisplay;
99f3388e 3552extern Lisp_Object Qmenu_bar_update_hook;
29208e82 3553extern Lisp_Object Qwindow_scroll_functions;
99f3388e 3554extern Lisp_Object Qoverriding_local_map, Qoverriding_terminal_local_map;
8a52f00a 3555extern Lisp_Object Qimage, Qtext, Qboth, Qboth_horiz, Qtext_image_horiz;
89dc303e 3556extern Lisp_Object Qspace, Qcenter, QCalign_to;
99f3388e
DN
3557extern Lisp_Object Qbar, Qhbar, Qbox, Qhollow;
3558extern Lisp_Object Qleft_margin, Qright_margin;
89dc303e 3559extern Lisp_Object QCdata, QCfile;
99f3388e 3560extern Lisp_Object QCmap;
e6cba650 3561extern Lisp_Object Qrisky_local_variable;
e08813d0 3562extern bool noninteractive_need_newline;
986113df 3563extern Lisp_Object echo_area_buffer[2];
89dc303e 3564extern void add_to_log (const char *, Lisp_Object, Lisp_Object);
383e0970
J
3565extern void check_message_stack (void);
3566extern void setup_echo_area_for_printing (int);
fce31d69 3567extern bool push_message (void);
27e498e6 3568extern void pop_message_unwind (void);
383e0970 3569extern Lisp_Object restore_message_unwind (Lisp_Object);
383e0970
J
3570extern void restore_message (void);
3571extern Lisp_Object current_message (void);
44ad1cf7 3572extern void clear_message (bool, bool);
1e973bc7 3573extern void message (const char *, ...) ATTRIBUTE_FORMAT_PRINTF (1, 2);
a8fe7202
AS
3574extern void message1 (const char *);
3575extern void message1_nolog (const char *);
b09cca6a
SM
3576extern void message3 (Lisp_Object);
3577extern void message3_nolog (Lisp_Object);
0063fdb1 3578extern void message_dolog (const char *, ptrdiff_t, bool, bool);
a8fe7202 3579extern void message_with_string (const char *, Lisp_Object, int);
383e0970
J
3580extern void message_log_maybe_newline (void);
3581extern void update_echo_area (void);
d311d28c 3582extern void truncate_echo_area (ptrdiff_t);
383e0970 3583extern void redisplay (void);
383e0970 3584extern void redisplay_preserve_echo_area (int);
c4bf5bc3 3585
383e0970
J
3586void set_frame_cursor_types (struct frame *, Lisp_Object);
3587extern void syms_of_xdisp (void);
3588extern void init_xdisp (void);
3589extern Lisp_Object safe_eval (Lisp_Object);
d311d28c 3590extern int pos_visible_p (struct window *, ptrdiff_t, int *,
383e0970 3591 int *, int *, int *, int *, int *);
c98adc1b 3592
e7032e7c 3593/* Defined in xsettings.c. */
383e0970 3594extern void syms_of_xsettings (void);
637fa988 3595
15b0ced5 3596/* Defined in vm-limit.c. */
261cb4bb 3597extern void memory_warnings (void *, void (*warnfun) (const char *));
9043c90a 3598
e7032e7c 3599/* Defined in alloc.c. */
383e0970 3600extern void check_pure_size (void);
73ebd38f 3601extern void free_misc (Lisp_Object);
413d18e7 3602extern void allocate_string_data (struct Lisp_String *, EMACS_INT, EMACS_INT);
a8fe7202 3603extern void malloc_warning (const char *);
845ca893
PE
3604extern _Noreturn void memory_full (size_t);
3605extern _Noreturn void buffer_memory_full (ptrdiff_t);
fce31d69 3606extern bool survives_gc_p (Lisp_Object);
383e0970 3607extern void mark_object (Lisp_Object);
69003fd8 3608#if defined REL_ALLOC && !defined SYSTEM_MALLOC
84dfc8a7 3609extern void refill_memory_reserve (void);
69003fd8 3610#endif
50c77428 3611extern const char *pending_malloc_warning;
9730daca 3612extern Lisp_Object zero_vector;
89dc303e 3613extern Lisp_Object *stack_base;
dac616ff
DA
3614extern EMACS_INT consing_since_gc;
3615extern EMACS_INT gc_relative_threshold;
3616extern EMACS_INT memory_full_cons_threshold;
2f7c71a1
AS
3617extern Lisp_Object list1 (Lisp_Object);
3618extern Lisp_Object list2 (Lisp_Object, Lisp_Object);
3619extern Lisp_Object list3 (Lisp_Object, Lisp_Object, Lisp_Object);
3620extern Lisp_Object list4 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
3621extern Lisp_Object list5 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object,
3622 Lisp_Object);
3438fe21 3623enum constype {CONSTYPE_HEAP, CONSTYPE_PURE};
694b6c97 3624extern Lisp_Object listn (enum constype, ptrdiff_t, Lisp_Object, ...);
3de717bd
DA
3625
3626/* Build a frequently used 2/3/4-integer lists. */
3627
00382e8b 3628INLINE Lisp_Object
3de717bd
DA
3629list2i (EMACS_INT x, EMACS_INT y)
3630{
3631 return list2 (make_number (x), make_number (y));
3632}
3633
00382e8b 3634INLINE Lisp_Object
3de717bd
DA
3635list3i (EMACS_INT x, EMACS_INT y, EMACS_INT w)
3636{
3637 return list3 (make_number (x), make_number (y), make_number (w));
3638}
3639
00382e8b 3640INLINE Lisp_Object
3de717bd
DA
3641list4i (EMACS_INT x, EMACS_INT y, EMACS_INT w, EMACS_INT h)
3642{
3643 return list4 (make_number (x), make_number (y),
3644 make_number (w), make_number (h));
3645}
3646
2cf00efc
PE
3647extern Lisp_Object make_uninit_bool_vector (EMACS_INT);
3648extern Lisp_Object bool_vector_fill (Lisp_Object, Lisp_Object);
845ca893 3649extern _Noreturn void string_overflow (void);
d311d28c 3650extern Lisp_Object make_string (const char *, ptrdiff_t);
26bccfae
PE
3651extern Lisp_Object make_formatted_string (char *, const char *, ...)
3652 ATTRIBUTE_FORMAT_PRINTF (2, 3);
d311d28c 3653extern Lisp_Object make_unibyte_string (const char *, ptrdiff_t);
d7ea76b4
DA
3654
3655/* Make unibyte string from C string when the length isn't known. */
3656
00382e8b 3657INLINE Lisp_Object
d7ea76b4
DA
3658build_unibyte_string (const char *str)
3659{
3660 return make_unibyte_string (str, strlen (str));
3661}
3662
d311d28c 3663extern Lisp_Object make_multibyte_string (const char *, ptrdiff_t, ptrdiff_t);
0c90b9ee 3664extern Lisp_Object make_event_array (ptrdiff_t, Lisp_Object *);
413d18e7
EZ
3665extern Lisp_Object make_uninit_string (EMACS_INT);
3666extern Lisp_Object make_uninit_multibyte_string (EMACS_INT, EMACS_INT);
d311d28c 3667extern Lisp_Object make_string_from_bytes (const char *, ptrdiff_t, ptrdiff_t);
14162469 3668extern Lisp_Object make_specified_string (const char *,
fce31d69
PE
3669 ptrdiff_t, ptrdiff_t, bool);
3670extern Lisp_Object make_pure_string (const char *, ptrdiff_t, ptrdiff_t, bool);
2a0213a6
DA
3671extern Lisp_Object make_pure_c_string (const char *, ptrdiff_t);
3672
3673/* Make a string allocated in pure space, use STR as string data. */
3674
00382e8b 3675INLINE Lisp_Object
2a0213a6
DA
3676build_pure_c_string (const char *str)
3677{
3678 return make_pure_c_string (str, strlen (str));
3679}
1130ecfc
DA
3680
3681/* Make a string from the data at STR, treating it as multibyte if the
3682 data warrants. */
3683
00382e8b 3684INLINE Lisp_Object
1130ecfc
DA
3685build_string (const char *str)
3686{
3687 return make_string (str, strlen (str));
3688}
3689
383e0970 3690extern Lisp_Object pure_cons (Lisp_Object, Lisp_Object);
3017f87f 3691extern void make_byte_code (struct Lisp_Vector *);
3d80c99f 3692extern Lisp_Object Qautomatic_gc;
7f73dc9d 3693extern Lisp_Object Qchar_table_extra_slots;
383e0970 3694extern struct Lisp_Vector *allocate_vector (EMACS_INT);
25721f5b 3695
8b17a8b9 3696/* Make an uninitialized vector for SIZE objects. NOTE: you must
25721f5b
DA
3697 be sure that GC cannot happen until the vector is completely
3698 initialized. E.g. the following code is likely to crash:
3699
3700 v = make_uninit_vector (3);
3701 ASET (v, 0, obj0);
3702 ASET (v, 1, Ffunction_can_gc ());
3703 ASET (v, 2, obj1); */
3704
00382e8b 3705INLINE Lisp_Object
25721f5b
DA
3706make_uninit_vector (ptrdiff_t size)
3707{
3708 Lisp_Object v;
3709 struct Lisp_Vector *p;
3710
3711 p = allocate_vector (size);
3712 XSETVECTOR (v, p);
3713 return v;
3714}
3715
914adc42 3716extern struct Lisp_Vector *allocate_pseudovector (int, int, enum pvec_type);
30f95089
SM
3717#define ALLOCATE_PSEUDOVECTOR(typ,field,tag) \
3718 ((typ*) \
3719 allocate_pseudovector \
3720 (VECSIZE (typ), PSEUDOVECSIZE (typ, field), tag))
383e0970
J
3721extern struct Lisp_Hash_Table *allocate_hash_table (void);
3722extern struct window *allocate_window (void);
3723extern struct frame *allocate_frame (void);
3724extern struct Lisp_Process *allocate_process (void);
3725extern struct terminal *allocate_terminal (void);
fce31d69
PE
3726extern bool gc_in_progress;
3727extern bool abort_on_gc;
383e0970
J
3728extern Lisp_Object make_float (double);
3729extern void display_malloc_warning (void);
d311d28c 3730extern ptrdiff_t inhibit_garbage_collection (void);
1396ac86
PE
3731extern Lisp_Object make_save_int_int_int (ptrdiff_t, ptrdiff_t, ptrdiff_t);
3732extern Lisp_Object make_save_obj_obj_obj_obj (Lisp_Object, Lisp_Object,
3733 Lisp_Object, Lisp_Object);
3734extern Lisp_Object make_save_ptr (void *);
3735extern Lisp_Object make_save_ptr_int (void *, ptrdiff_t);
3736extern Lisp_Object make_save_ptr_ptr (void *, void *);
3737extern Lisp_Object make_save_funcptr_ptr_obj (void (*) (void), void *,
3738 Lisp_Object);
3739extern Lisp_Object make_save_memory (Lisp_Object *, ptrdiff_t);
27e498e6 3740extern void free_save_value (Lisp_Object);
d7a7fda3 3741extern Lisp_Object build_overlay (Lisp_Object, Lisp_Object, Lisp_Object);
383e0970
J
3742extern void free_marker (Lisp_Object);
3743extern void free_cons (struct Lisp_Cons *);
3744extern void init_alloc_once (void);
3745extern void init_alloc (void);
3746extern void syms_of_alloc (void);
3747extern struct buffer * allocate_buffer (void);
3748extern int valid_lisp_object_p (Lisp_Object);
7e63e0c3
DA
3749#ifdef GC_CHECK_CONS_LIST
3750extern void check_cons_list (void);
3751#else
00382e8b 3752INLINE void (check_cons_list) (void) { lisp_h_check_cons_list (); }
7e63e0c3 3753#endif
3cfe6dfd 3754
a041960a 3755#ifdef REL_ALLOC
e7032e7c 3756/* Defined in ralloc.c. */
a041960a
PE
3757extern void *r_alloc (void **, size_t);
3758extern void r_alloc_free (void **);
3759extern void *r_re_alloc (void **, size_t);
3760extern void r_alloc_reset_variable (void **, void **);
57b81a9f 3761extern void r_alloc_inhibit_buffer_relocation (int);
a041960a
PE
3762#endif
3763
e7032e7c 3764/* Defined in chartab.c. */
383e0970 3765extern Lisp_Object copy_char_table (Lisp_Object);
383e0970
J
3766extern Lisp_Object char_table_ref (Lisp_Object, int);
3767extern Lisp_Object char_table_ref_and_range (Lisp_Object, int,
3768 int *, int *);
e757f1c6
PE
3769extern void char_table_set (Lisp_Object, int, Lisp_Object);
3770extern void char_table_set_range (Lisp_Object, int, int, Lisp_Object);
383e0970
J
3771extern int char_table_translate (Lisp_Object, int);
3772extern void map_char_table (void (*) (Lisp_Object, Lisp_Object,
3773 Lisp_Object),
3774 Lisp_Object, Lisp_Object, Lisp_Object);
e6cba650
DN
3775extern void map_char_table_for_charset (void (*c_function) (Lisp_Object, Lisp_Object),
3776 Lisp_Object, Lisp_Object,
3777 Lisp_Object, struct charset *,
3778 unsigned, unsigned);
5cc7f7af 3779extern Lisp_Object uniprop_table (Lisp_Object);
383e0970 3780extern void syms_of_chartab (void);
1842abb2 3781
e7032e7c 3782/* Defined in print.c. */
3cfe6dfd 3783extern Lisp_Object Vprin1_to_string_buffer;
42c8bc9b 3784extern void debug_print (Lisp_Object) EXTERNALLY_VISIBLE;
29208e82 3785extern Lisp_Object Qstandard_output;
9453ea7b 3786extern Lisp_Object Qexternal_debugging_output;
383e0970 3787extern void temp_output_buffer_setup (const char *);
29208e82 3788extern int print_level;
3cfe6dfd 3789extern Lisp_Object Qprint_escape_newlines;
a8fe7202 3790extern void write_string (const char *, int);
a8fe7202
AS
3791extern void print_error_message (Lisp_Object, Lisp_Object, const char *,
3792 Lisp_Object);
526a2be7 3793extern Lisp_Object internal_with_output_to_temp_buffer
383e0970 3794 (const char *, Lisp_Object (*) (Lisp_Object), Lisp_Object);
03a660a6 3795enum FLOAT_TO_STRING_BUFSIZE { FLOAT_TO_STRING_BUFSIZE = 350 };
99027bdd 3796extern int float_to_string (char *, double);
cf4bb06d 3797extern void init_print_once (void);
383e0970 3798extern void syms_of_print (void);
526a2be7 3799
e7032e7c 3800/* Defined in doprnt.c. */
c2d1e36d
PE
3801extern ptrdiff_t doprnt (char *, ptrdiff_t, const char *, const char *,
3802 va_list);
62f19c19
PE
3803extern ptrdiff_t esprintf (char *, char const *, ...)
3804 ATTRIBUTE_FORMAT_PRINTF (2, 3);
62f19c19
PE
3805extern ptrdiff_t exprintf (char **, ptrdiff_t *, char const *, ptrdiff_t,
3806 char const *, ...)
3807 ATTRIBUTE_FORMAT_PRINTF (5, 6);
3808extern ptrdiff_t evxprintf (char **, ptrdiff_t *, char const *, ptrdiff_t,
3809 char const *, va_list)
3810 ATTRIBUTE_FORMAT_PRINTF (5, 0);
e6c3da20 3811
ea6c7ae6 3812/* Defined in lread.c. */
3cfe6dfd 3813extern Lisp_Object Qvariable_documentation, Qstandard_input;
99f3388e 3814extern Lisp_Object Qbackquote, Qcomma, Qcomma_at, Qcomma_dot, Qfunction;
a411ac43 3815extern Lisp_Object Qlexical_binding;
383e0970 3816extern Lisp_Object check_obarray (Lisp_Object);
e8df9267
DA
3817extern Lisp_Object intern_1 (const char *, ptrdiff_t);
3818extern Lisp_Object intern_c_string_1 (const char *, ptrdiff_t);
d311d28c 3819extern Lisp_Object oblookup (Lisp_Object, const char *, ptrdiff_t, ptrdiff_t);
00382e8b 3820INLINE void
84575e67
PE
3821LOADHIST_ATTACH (Lisp_Object x)
3822{
3823 if (initialized)
3824 Vcurrent_load_list = Fcons (x, Vcurrent_load_list);
3825}
383e0970 3826extern int openp (Lisp_Object, Lisp_Object, Lisp_Object,
518c40a2 3827 Lisp_Object *, Lisp_Object, bool);
7cded46f 3828extern Lisp_Object string_to_number (char const *, int, bool);
383e0970
J
3829extern void map_obarray (Lisp_Object, void (*) (Lisp_Object, Lisp_Object),
3830 Lisp_Object);
a8fe7202 3831extern void dir_warning (const char *, Lisp_Object);
383e0970
J
3832extern void init_obarray (void);
3833extern void init_lread (void);
3834extern void syms_of_lread (void);
3cfe6dfd 3835
00382e8b 3836INLINE Lisp_Object
e8df9267
DA
3837intern (const char *str)
3838{
3839 return intern_1 (str, strlen (str));
3840}
3841
00382e8b 3842INLINE Lisp_Object
e8df9267
DA
3843intern_c_string (const char *str)
3844{
3845 return intern_c_string_1 (str, strlen (str));
3846}
3847
f6d62986 3848/* Defined in eval.c. */
61b108cc 3849extern Lisp_Object Qautoload, Qexit, Qinteractive, Qcommandp, Qmacro;
a411ac43 3850extern Lisp_Object Qinhibit_quit, Qinternal_interpreter_environment, Qclosure;
955cbe7b 3851extern Lisp_Object Qand_rest;
3cfe6dfd 3852extern Lisp_Object Vautoload_queue;
fab88cb7 3853extern Lisp_Object Vsignaling_function;
d1f55f16 3854extern Lisp_Object inhibit_lisp_code;
244ed907 3855extern struct handler *handlerlist;
adf2aa61 3856
f1b6e5fc
SM
3857/* To run a normal hook, use the appropriate function from the list below.
3858 The calling convention:
3859
846d69ac 3860 if (!NILP (Vrun_hooks))
f1b6e5fc
SM
3861 call1 (Vrun_hooks, Qmy_funny_hook);
3862
3863 should no longer be used. */
3cfe6dfd 3864extern Lisp_Object Vrun_hooks;
383e0970 3865extern void run_hook_with_args_2 (Lisp_Object, Lisp_Object, Lisp_Object);
f66c7cf8 3866extern Lisp_Object run_hook_with_args (ptrdiff_t nargs, Lisp_Object *args,
f6d62986 3867 Lisp_Object (*funcall)
f66c7cf8 3868 (ptrdiff_t nargs, Lisp_Object *args));
845ca893
PE
3869extern _Noreturn void xsignal (Lisp_Object, Lisp_Object);
3870extern _Noreturn void xsignal0 (Lisp_Object);
3871extern _Noreturn void xsignal1 (Lisp_Object, Lisp_Object);
3872extern _Noreturn void xsignal2 (Lisp_Object, Lisp_Object, Lisp_Object);
3873extern _Noreturn void xsignal3 (Lisp_Object, Lisp_Object, Lisp_Object,
3874 Lisp_Object);
3875extern _Noreturn void signal_error (const char *, Lisp_Object);
defb1411 3876extern Lisp_Object eval_sub (Lisp_Object form);
383e0970
J
3877extern Lisp_Object apply1 (Lisp_Object, Lisp_Object);
3878extern Lisp_Object call0 (Lisp_Object);
3879extern Lisp_Object call1 (Lisp_Object, Lisp_Object);
3880extern Lisp_Object call2 (Lisp_Object, Lisp_Object, Lisp_Object);
3881extern Lisp_Object call3 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
3882extern Lisp_Object call4 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
3883extern Lisp_Object call5 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
3884extern Lisp_Object call6 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
3885extern Lisp_Object call7 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
383e0970
J
3886extern Lisp_Object internal_catch (Lisp_Object, Lisp_Object (*) (Lisp_Object), Lisp_Object);
3887extern Lisp_Object internal_lisp_condition_case (Lisp_Object, Lisp_Object, Lisp_Object);
3888extern Lisp_Object internal_condition_case (Lisp_Object (*) (void), Lisp_Object, Lisp_Object (*) (Lisp_Object));
3889extern Lisp_Object internal_condition_case_1 (Lisp_Object (*) (Lisp_Object), Lisp_Object, Lisp_Object, Lisp_Object (*) (Lisp_Object));
3890extern Lisp_Object internal_condition_case_2 (Lisp_Object (*) (Lisp_Object, Lisp_Object), Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object (*) (Lisp_Object));
cc92c454
SM
3891extern Lisp_Object internal_condition_case_n
3892 (Lisp_Object (*) (ptrdiff_t, Lisp_Object *), ptrdiff_t, Lisp_Object *,
3893 Lisp_Object, Lisp_Object (*) (Lisp_Object, ptrdiff_t, Lisp_Object *));
383e0970 3894extern void specbind (Lisp_Object, Lisp_Object);
27e498e6 3895extern void record_unwind_protect (void (*) (Lisp_Object), Lisp_Object);
27e498e6 3896extern void record_unwind_protect_ptr (void (*) (void *), void *);
94fcd171 3897extern void record_unwind_protect_int (void (*) (int), int);
27e498e6 3898extern void record_unwind_protect_void (void (*) (void));
f4b1eb36 3899extern void record_unwind_protect_nothing (void);
a0931322 3900extern void clear_unwind_protect (ptrdiff_t);
94fcd171 3901extern void set_unwind_protect (ptrdiff_t, void (*) (Lisp_Object), Lisp_Object);
a0931322 3902extern void set_unwind_protect_ptr (ptrdiff_t, void (*) (void *), void *);
d311d28c 3903extern Lisp_Object unbind_to (ptrdiff_t, Lisp_Object);
845ca893
PE
3904extern _Noreturn void error (const char *, ...) ATTRIBUTE_FORMAT_PRINTF (1, 2);
3905extern _Noreturn void verror (const char *, va_list)
3906 ATTRIBUTE_FORMAT_PRINTF (1, 0);
27e498e6 3907extern void un_autoload (Lisp_Object);
7f7e0167 3908extern Lisp_Object call_debugger (Lisp_Object arg);
383e0970 3909extern void init_eval_once (void);
6cd7a139 3910extern Lisp_Object safe_call (ptrdiff_t, Lisp_Object, ...);
383e0970 3911extern Lisp_Object safe_call1 (Lisp_Object, Lisp_Object);
58555d81 3912extern Lisp_Object safe_call2 (Lisp_Object, Lisp_Object, Lisp_Object);
383e0970
J
3913extern void init_eval (void);
3914extern void syms_of_eval (void);
27e498e6 3915extern void unwind_body (Lisp_Object);
2f592f95
SM
3916extern void record_in_backtrace (Lisp_Object function,
3917 Lisp_Object *args, ptrdiff_t nargs);
3918extern void mark_specpdl (void);
3919extern void get_backtrace (Lisp_Object array);
3920Lisp_Object backtrace_top_function (void);
3921extern bool let_shadows_buffer_binding_p (struct Lisp_Symbol *symbol);
3922extern bool let_shadows_global_binding_p (Lisp_Object symbol);
3923
3cfe6dfd 3924
7abaf5cc 3925/* Defined in editfns.c. */
e6cba650 3926extern Lisp_Object Qfield;
383e0970 3927extern void insert1 (Lisp_Object);
a8fe7202 3928extern Lisp_Object format2 (const char *, Lisp_Object, Lisp_Object);
383e0970
J
3929extern Lisp_Object save_excursion_save (void);
3930extern Lisp_Object save_restriction_save (void);
27e498e6
PE
3931extern void save_excursion_restore (Lisp_Object);
3932extern void save_restriction_restore (Lisp_Object);
845ca893 3933extern _Noreturn void time_overflow (void);
a08d4ba7 3934extern Lisp_Object make_buffer_string (ptrdiff_t, ptrdiff_t, bool);
d311d28c 3935extern Lisp_Object make_buffer_string_both (ptrdiff_t, ptrdiff_t, ptrdiff_t,
a08d4ba7 3936 ptrdiff_t, bool);
383e0970
J
3937extern void init_editfns (void);
3938extern void syms_of_editfns (void);
a8fe7202 3939extern void set_time_zone_rule (const char *);
3cfe6dfd 3940
7abaf5cc 3941/* Defined in buffer.c. */
37ef52bb 3942extern bool mouse_face_overlay_overlaps (Lisp_Object);
845ca893 3943extern _Noreturn void nsberror (Lisp_Object);
d311d28c
PE
3944extern void adjust_overlays_for_insert (ptrdiff_t, ptrdiff_t);
3945extern void adjust_overlays_for_delete (ptrdiff_t, ptrdiff_t);
3946extern void fix_start_end_in_overlays (ptrdiff_t, ptrdiff_t);
37ef52bb 3947extern void report_overlay_modification (Lisp_Object, Lisp_Object, bool,
383e0970 3948 Lisp_Object, Lisp_Object, Lisp_Object);
37ef52bb 3949extern bool overlay_touches_p (ptrdiff_t);
9397e56f 3950extern Lisp_Object other_buffer_safely (Lisp_Object);
383e0970 3951extern Lisp_Object get_truename_buffer (Lisp_Object);
383e0970
J
3952extern void init_buffer_once (void);
3953extern void init_buffer (void);
3954extern void syms_of_buffer (void);
3955extern void keys_of_buffer (void);
3cfe6dfd 3956
7abaf5cc 3957/* Defined in marker.c. */
3cfe6dfd 3958
d311d28c
PE
3959extern ptrdiff_t marker_position (Lisp_Object);
3960extern ptrdiff_t marker_byte_position (Lisp_Object);
383e0970 3961extern void clear_charpos_cache (struct buffer *);
d311d28c
PE
3962extern ptrdiff_t buf_charpos_to_bytepos (struct buffer *, ptrdiff_t);
3963extern ptrdiff_t buf_bytepos_to_charpos (struct buffer *, ptrdiff_t);
eeaea515 3964extern void unchain_marker (struct Lisp_Marker *marker);
383e0970 3965extern Lisp_Object set_marker_restricted (Lisp_Object, Lisp_Object, Lisp_Object);
d311d28c 3966extern Lisp_Object set_marker_both (Lisp_Object, Lisp_Object, ptrdiff_t, ptrdiff_t);
383e0970 3967extern Lisp_Object set_marker_restricted_both (Lisp_Object, Lisp_Object,
eeaea515 3968 ptrdiff_t, ptrdiff_t);
657924ff 3969extern Lisp_Object build_marker (struct buffer *, ptrdiff_t, ptrdiff_t);
383e0970 3970extern void syms_of_marker (void);
3cfe6dfd 3971
e7032e7c 3972/* Defined in fileio.c. */
3cfe6dfd
JB
3973
3974extern Lisp_Object Qfile_error;
86dfb7a8 3975extern Lisp_Object Qfile_notify_error;
99f3388e 3976extern Lisp_Object Qfile_exists_p;
e6cba650
DN
3977extern Lisp_Object Qfile_directory_p;
3978extern Lisp_Object Qinsert_file_contents;
7684e57b 3979extern Lisp_Object Qfile_name_history;
383e0970 3980extern Lisp_Object expand_and_dir_to_file (Lisp_Object, Lisp_Object);
94fcd171
PE
3981extern Lisp_Object write_region (Lisp_Object, Lisp_Object, Lisp_Object,
3982 Lisp_Object, Lisp_Object, Lisp_Object,
3983 Lisp_Object, int);
e7032e7c 3984EXFUN (Fread_file_name, 6); /* Not a normal DEFUN. */
27e498e6 3985extern void close_file_unwind (int);
f4b1eb36 3986extern void fclose_unwind (void *);
27e498e6 3987extern void restore_point_unwind (Lisp_Object);
a773ed9a 3988extern _Noreturn void report_file_errno (const char *, Lisp_Object, int);
845ca893 3989extern _Noreturn void report_file_error (const char *, Lisp_Object);
7d80ea23 3990extern bool internal_delete_file (Lisp_Object);
8654f9d7 3991extern Lisp_Object emacs_readlinkat (int, const char *);
73dcdb9f
PE
3992extern bool file_directory_p (const char *);
3993extern bool file_accessible_directory_p (const char *);
9fe43ff6 3994extern void init_fileio (void);
383e0970 3995extern void syms_of_fileio (void);
f75d7a91 3996extern Lisp_Object make_temp_name (Lisp_Object, bool);
b86cfd28 3997extern Lisp_Object Qdelete_file;
3cfe6dfd 3998
e7032e7c 3999/* Defined in search.c. */
383e0970 4000extern void shrink_regexp_cache (void);
383e0970 4001extern void restore_search_regs (void);
383e0970 4002extern void record_unwind_save_match_data (void);
dbd37a95
PE
4003struct re_registers;
4004extern struct re_pattern_buffer *compile_pattern (Lisp_Object,
4005 struct re_registers *,
457882c2 4006 Lisp_Object, bool, bool);
d311d28c 4007extern ptrdiff_t fast_string_match (Lisp_Object, Lisp_Object);
d923b542
DA
4008extern ptrdiff_t fast_c_string_match_ignore_case (Lisp_Object, const char *,
4009 ptrdiff_t);
d311d28c
PE
4010extern ptrdiff_t fast_string_match_ignore_case (Lisp_Object, Lisp_Object);
4011extern ptrdiff_t fast_looking_at (Lisp_Object, ptrdiff_t, ptrdiff_t,
4012 ptrdiff_t, ptrdiff_t, Lisp_Object);
b5426561
DA
4013extern ptrdiff_t find_newline (ptrdiff_t, ptrdiff_t, ptrdiff_t, ptrdiff_t,
4014 ptrdiff_t, ptrdiff_t *, ptrdiff_t *, bool);
d2b36813
DA
4015extern ptrdiff_t scan_newline (ptrdiff_t, ptrdiff_t, ptrdiff_t, ptrdiff_t,
4016 ptrdiff_t, bool);
b5426561
DA
4017extern ptrdiff_t find_newline_no_quit (ptrdiff_t, ptrdiff_t,
4018 ptrdiff_t, ptrdiff_t *);
2a14a4f1
DA
4019extern ptrdiff_t find_before_next_newline (ptrdiff_t, ptrdiff_t,
4020 ptrdiff_t, ptrdiff_t *);
383e0970
J
4021extern void syms_of_search (void);
4022extern void clear_regexp_cache (void);
3cfe6dfd 4023
464d5a5e 4024/* Defined in minibuf.c. */
3cfe6dfd 4025
e6cba650 4026extern Lisp_Object Qcompletion_ignore_case;
99f3388e 4027extern Lisp_Object Vminibuffer_list;
3cfe6dfd 4028extern Lisp_Object last_minibuf_string;
62f19c19 4029extern Lisp_Object get_minibuffer (EMACS_INT);
383e0970
J
4030extern void init_minibuf_once (void);
4031extern void syms_of_minibuf (void);
3cfe6dfd 4032
464d5a5e 4033/* Defined in callint.c. */
3cfe6dfd 4034
29208e82 4035extern Lisp_Object Qminus, Qplus;
99f3388e 4036extern Lisp_Object Qwhen;
6e65b9cc 4037extern Lisp_Object Qmouse_leave_buffer_hook;
383e0970 4038extern void syms_of_callint (void);
3cfe6dfd 4039
464d5a5e 4040/* Defined in casefiddle.c. */
3cfe6dfd 4041
99f3388e 4042extern Lisp_Object Qidentity;
383e0970
J
4043extern void syms_of_casefiddle (void);
4044extern void keys_of_casefiddle (void);
3cfe6dfd 4045
464d5a5e 4046/* Defined in casetab.c. */
1747fb16 4047
383e0970
J
4048extern void init_casetab_once (void);
4049extern void syms_of_casetab (void);
1747fb16 4050
464d5a5e 4051/* Defined in keyboard.c. */
3cfe6dfd 4052
54cd1651 4053extern Lisp_Object echo_message_buffer;
417750de 4054extern struct kboard *echo_kboard;
383e0970 4055extern void cancel_echoing (void);
1425dcb6 4056extern Lisp_Object Qdisabled, QCfilter;
955cbe7b
PE
4057extern Lisp_Object Qup, Qdown, Qbottom;
4058extern Lisp_Object Qtop;
464d5a5e 4059extern Lisp_Object last_undo_boundary;
9fa1de30 4060extern bool input_pending;
383e0970
J
4061extern Lisp_Object menu_bar_items (Lisp_Object);
4062extern Lisp_Object tool_bar_items (Lisp_Object, int *);
383e0970 4063extern void discard_mouse_events (void);
4d7e6e51
PE
4064#ifdef USABLE_SIGIO
4065void handle_input_available_signal (int);
4066#endif
58555d81 4067extern Lisp_Object pending_funcalls;
9fa1de30
PE
4068extern bool detect_input_pending (void);
4069extern bool detect_input_pending_ignore_squeezables (void);
4070extern bool detect_input_pending_run_timers (bool);
383e0970 4071extern void safe_run_hooks (Lisp_Object);
a8fe7202 4072extern void cmd_error_internal (Lisp_Object, const char *);
383e0970 4073extern Lisp_Object command_loop_1 (void);
3b158d11 4074extern Lisp_Object read_menu_command (void);
383e0970
J
4075extern Lisp_Object recursive_edit_1 (void);
4076extern void record_auto_save (void);
4752793e 4077extern void force_auto_save_soon (void);
383e0970
J
4078extern void init_keyboard (void);
4079extern void syms_of_keyboard (void);
4080extern void keys_of_keyboard (void);
3cfe6dfd 4081
464d5a5e 4082/* Defined in indent.c. */
d311d28c 4083extern ptrdiff_t current_column (void);
383e0970 4084extern void invalidate_current_column (void);
578098f3 4085extern bool indented_beyond_p (ptrdiff_t, ptrdiff_t, EMACS_INT);
383e0970 4086extern void syms_of_indent (void);
3cfe6dfd 4087
464d5a5e 4088/* Defined in frame.c. */
9fb0c957 4089extern Lisp_Object Qonly, Qnone;
362fb47a 4090extern Lisp_Object Qvisible;
880e6158 4091extern void set_frame_param (struct frame *, Lisp_Object, Lisp_Object);
383e0970
J
4092extern void store_frame_param (struct frame *, Lisp_Object, Lisp_Object);
4093extern void store_in_alist (Lisp_Object *, Lisp_Object, Lisp_Object);
4094extern Lisp_Object do_switch_frame (Lisp_Object, int, int, Lisp_Object);
336fe071 4095#if HAVE_NS || HAVE_NTGUI
383e0970 4096extern Lisp_Object get_frame_param (struct frame *, Lisp_Object);
81626931 4097#endif
383e0970 4098extern void frames_discard_buffer (Lisp_Object);
383e0970 4099extern void syms_of_frame (void);
3cfe6dfd 4100
464d5a5e 4101/* Defined in emacs.c. */
99f3388e
DN
4102extern char **initial_argv;
4103extern int initial_argc;
5e617bc2 4104#if defined (HAVE_X_WINDOWS) || defined (HAVE_NS)
1882aa38 4105extern bool display_arg;
89dc303e 4106#endif
17e0445b 4107extern Lisp_Object decode_env_path (const char *, const char *, bool);
2c668b9a 4108extern Lisp_Object empty_unibyte_string, empty_multibyte_string;
e6cba650 4109extern Lisp_Object Qfile_name_handler_alist;
4d7e6e51 4110extern _Noreturn void terminate_due_to_signal (int, int);
6c07aac2 4111extern Lisp_Object Qkill_emacs;
aa15c6bb
JB
4112#ifdef WINDOWSNT
4113extern Lisp_Object Vlibrary_cache;
4114#endif
68c45bf0 4115#if HAVE_SETLOCALE
383e0970
J
4116void fixup_locale (void);
4117void synchronize_system_messages_locale (void);
4118void synchronize_system_time_locale (void);
68c45bf0 4119#else
00382e8b
PE
4120INLINE void fixup_locale (void) {}
4121INLINE void synchronize_system_messages_locale (void) {}
4122INLINE void synchronize_system_time_locale (void) {}
68c45bf0 4123#endif
1882aa38 4124extern void shut_down_emacs (int, Lisp_Object);
ff808935 4125
1882aa38
PE
4126/* True means don't do interactive redisplay and don't change tty modes. */
4127extern bool noninteractive;
4128
4129/* True means remove site-lisp directories from load-path. */
4130extern bool no_site_lisp;
66b7b0fe 4131
ff808935
DN
4132/* Pipe used to send exit notification to the daemon parent at
4133 startup. */
4134extern int daemon_pipe[2];
4135#define IS_DAEMON (daemon_pipe[1] != 0)
4136
1882aa38
PE
4137/* True if handling a fatal error already. */
4138extern bool fatal_error_in_progress;
4139
4140/* True means don't do use window-system-specific display code. */
4141extern bool inhibit_window_system;
4142/* True means that a filter or a sentinel is running. */
4143extern bool running_asynch_code;
3cfe6dfd 4144
6c60eb9f 4145/* Defined in process.c. */
89dc303e 4146extern Lisp_Object QCtype, Qlocal;
383e0970 4147extern void kill_buffer_processes (Lisp_Object);
0bce5d9e
PE
4148extern bool wait_reading_process_output (intmax_t, int, int, bool,
4149 Lisp_Object,
4150 struct Lisp_Process *,
4151 int);
f1dd8073
PE
4152/* Max value for the first argument of wait_reading_process_output. */
4153#if __GNUC__ == 3 || (__GNUC__ == 4 && __GNUC_MINOR__ <= 5)
4154/* Work around a bug in GCC 3.4.2, known to be fixed in GCC 4.6.3.
4155 The bug merely causes a bogus warning, but the warning is annoying. */
4156# define WAIT_READING_MAX min (TYPE_MAXIMUM (time_t), INTMAX_MAX)
4157#else
4158# define WAIT_READING_MAX INTMAX_MAX
4159#endif
383e0970
J
4160extern void add_keyboard_wait_descriptor (int);
4161extern void delete_keyboard_wait_descriptor (int);
4475bec4 4162#ifdef HAVE_GPM
383e0970
J
4163extern void add_gpm_wait_descriptor (int);
4164extern void delete_gpm_wait_descriptor (int);
4475bec4 4165#endif
b82da769 4166extern void init_process_emacs (void);
383e0970
J
4167extern void syms_of_process (void);
4168extern void setup_process_coding_systems (Lisp_Object);
3cfe6dfd 4169
4ebbdd67 4170/* Defined in callproc.c. */
6bd8c144 4171#ifndef DOS_NT
845ca893 4172 _Noreturn
6bd8c144 4173#endif
2f221583 4174extern int child_setup (int, int, int, char **, bool, Lisp_Object);
383e0970
J
4175extern void init_callproc_1 (void);
4176extern void init_callproc (void);
4177extern void set_initial_environment (void);
4178extern void syms_of_callproc (void);
3cfe6dfd 4179
e7032e7c 4180/* Defined in doc.c. */
99f3388e 4181extern Lisp_Object Qfunction_documentation;
383e0970 4182extern Lisp_Object read_doc_string (Lisp_Object);
a08d4ba7 4183extern Lisp_Object get_doc_string (Lisp_Object, bool, bool);
383e0970 4184extern void syms_of_doc (void);
a08d4ba7 4185extern int read_bytecode_char (bool);
3cfe6dfd 4186
e7032e7c 4187/* Defined in bytecode.c. */
383e0970 4188extern void syms_of_bytecode (void);
35c7a974 4189extern struct byte_stack *byte_stack_list;
244ed907 4190#if BYTE_MARK_STACK
383e0970 4191extern void mark_byte_stack (void);
b286858c 4192#endif
383e0970 4193extern void unmark_byte_stack (void);
0ee81a0c 4194extern Lisp_Object exec_byte_code (Lisp_Object, Lisp_Object, Lisp_Object,
f66c7cf8 4195 Lisp_Object, ptrdiff_t, Lisp_Object *);
3cfe6dfd 4196
e7032e7c 4197/* Defined in macros.c. */
383e0970
J
4198extern void init_macros (void);
4199extern void syms_of_macros (void);
3cfe6dfd 4200
e7032e7c 4201/* Defined in undo.c. */
89dc303e 4202extern Lisp_Object Qapply;
a387611b 4203extern Lisp_Object Qinhibit_read_only;
383e0970 4204extern void truncate_undo_list (struct buffer *);
d311d28c 4205extern void record_insert (ptrdiff_t, ptrdiff_t);
37ea8275 4206extern void record_delete (ptrdiff_t, Lisp_Object, bool);
383e0970 4207extern void record_first_change (void);
d311d28c
PE
4208extern void record_change (ptrdiff_t, ptrdiff_t);
4209extern void record_property_change (ptrdiff_t, ptrdiff_t,
c8a66ab8 4210 Lisp_Object, Lisp_Object,
383e0970
J
4211 Lisp_Object);
4212extern void syms_of_undo (void);
e7032e7c 4213/* Defined in textprop.c. */
5f6bf5fe 4214extern Lisp_Object Qfont, Qmouse_face;
c2d8811c 4215extern Lisp_Object Qinsert_in_front_hooks, Qinsert_behind_hooks;
e6cba650
DN
4216extern Lisp_Object Qfront_sticky, Qrear_nonsticky;
4217extern Lisp_Object Qminibuffer_prompt;
4218
383e0970 4219extern void report_interval_modification (Lisp_Object, Lisp_Object);
8537f1cb 4220
e7032e7c 4221/* Defined in menu.c. */
383e0970 4222extern void syms_of_menu (void);
febcacdd 4223
e7032e7c 4224/* Defined in xmenu.c. */
383e0970 4225extern void syms_of_xmenu (void);
526a2be7 4226
e7032e7c 4227/* Defined in termchar.h. */
28d7d09f
KL
4228struct tty_display_info;
4229
e7032e7c 4230/* Defined in termhooks.h. */
6ed8eeff 4231struct terminal;
28d440ab 4232
e7032e7c 4233/* Defined in sysdep.c. */
2412f586 4234#ifndef HAVE_GET_CURRENT_DIR_NAME
383e0970 4235extern char *get_current_dir_name (void);
2b94e598 4236#endif
383e0970 4237extern void stuff_char (char c);
322aea6d 4238extern void init_foreground_group (void);
383e0970
J
4239extern void init_sigio (int);
4240extern void sys_subshell (void);
4241extern void sys_suspend (void);
4242extern void discard_tty_input (void);
b8956427
PE
4243extern void block_tty_out_signal (void);
4244extern void unblock_tty_out_signal (void);
383e0970
J
4245extern void init_sys_modes (struct tty_display_info *);
4246extern void reset_sys_modes (struct tty_display_info *);
4247extern void init_all_sys_modes (void);
4248extern void reset_all_sys_modes (void);
383e0970
J
4249extern void child_setup_tty (int);
4250extern void setup_pty (int);
4251extern int set_window_size (int, int, int);
ede49d71 4252extern EMACS_INT get_random (void);
0e23ef9d
PE
4253extern void seed_random (void *, ptrdiff_t);
4254extern void init_random (void);
cf29dd84 4255extern void emacs_backtrace (int);
1088b922 4256extern _Noreturn void emacs_abort (void) NO_INLINE;
383e0970 4257extern int emacs_open (const char *, int, int);
c7ddc792 4258extern int emacs_pipe (int[2]);
383e0970 4259extern int emacs_close (int);
223752d7
PE
4260extern ptrdiff_t emacs_read (int, void *, ptrdiff_t);
4261extern ptrdiff_t emacs_write (int, void const *, ptrdiff_t);
4262extern ptrdiff_t emacs_write_sig (int, void const *, ptrdiff_t);
4ebbdd67 4263extern void emacs_perror (char const *);
526a2be7 4264
383e0970
J
4265extern void unlock_all_files (void);
4266extern void lock_file (Lisp_Object);
4267extern void unlock_file (Lisp_Object);
4268extern void unlock_buffer (struct buffer *);
4269extern void syms_of_filelock (void);
15b0ced5 4270
e7032e7c 4271/* Defined in sound.c. */
383e0970 4272extern void syms_of_sound (void);
46abf440 4273
e7032e7c 4274/* Defined in category.c. */
383e0970
J
4275extern void init_category_once (void);
4276extern Lisp_Object char_category_set (int);
4277extern void syms_of_category (void);
46abf440 4278
e7032e7c 4279/* Defined in ccl.c. */
383e0970 4280extern void syms_of_ccl (void);
46abf440 4281
e7032e7c 4282/* Defined in dired.c. */
383e0970
J
4283extern void syms_of_dired (void);
4284extern Lisp_Object directory_files_internal (Lisp_Object, Lisp_Object,
4285 Lisp_Object, Lisp_Object,
86ec63ba 4286 bool, Lisp_Object);
46abf440 4287
e7032e7c 4288/* Defined in term.c. */
e6cba650 4289extern int *char_ins_del_vector;
383e0970 4290extern void syms_of_term (void);
845ca893
PE
4291extern _Noreturn void fatal (const char *msgid, ...)
4292 ATTRIBUTE_FORMAT_PRINTF (1, 2);
46abf440 4293
e7032e7c 4294/* Defined in terminal.c. */
383e0970 4295extern void syms_of_terminal (void);
ed8dad6b 4296
e7032e7c 4297/* Defined in font.c. */
383e0970
J
4298extern void syms_of_font (void);
4299extern void init_font (void);
b86cfd28 4300
4f48f1ab 4301#ifdef HAVE_WINDOW_SYSTEM
e7032e7c 4302/* Defined in fontset.c. */
383e0970 4303extern void syms_of_fontset (void);
4f48f1ab 4304
e7032e7c 4305/* Defined in xfns.c, w32fns.c, or macfns.c. */
99f3388e 4306extern Lisp_Object Qfont_param;
46abf440
AS
4307#endif
4308
c9628c79
MA
4309/* Defined in gfilenotify.c */
4310#ifdef HAVE_GFILENOTIFY
90db8702 4311extern void globals_of_gfilenotify (void);
c9628c79 4312extern void syms_of_gfilenotify (void);
477f1e50
EZ
4313#endif
4314
81606b10
RS
4315/* Defined in inotify.c */
4316#ifdef HAVE_INOTIFY
4317extern void syms_of_inotify (void);
4318#endif
4319
c9628c79
MA
4320#ifdef HAVE_W32NOTIFY
4321/* Defined on w32notify.c. */
4322extern void syms_of_w32notify (void);
4323#endif
4324
e7032e7c 4325/* Defined in xfaces.c. */
955cbe7b
PE
4326extern Lisp_Object Qdefault, Qtool_bar, Qfringe;
4327extern Lisp_Object Qheader_line, Qscroll_bar, Qcursor;
4328extern Lisp_Object Qmode_line_inactive;
e6cba650 4329extern Lisp_Object Qface;
89dc303e 4330extern Lisp_Object Qnormal;
0e9c8657
JB
4331extern Lisp_Object QCfamily, QCweight, QCslant;
4332extern Lisp_Object QCheight, QCname, QCwidth, QCforeground, QCbackground;
a411ac43
PE
4333extern Lisp_Object Qextra_light, Qlight, Qsemi_light, Qsemi_bold;
4334extern Lisp_Object Qbold, Qextra_bold, Qultra_bold;
4335extern Lisp_Object Qoblique, Qitalic;
99f3388e 4336extern Lisp_Object Vface_alternative_font_family_alist;
99f3388e 4337extern Lisp_Object Vface_alternative_font_registry_alist;
383e0970 4338extern void syms_of_xfaces (void);
46abf440
AS
4339
4340#ifdef HAVE_X_WINDOWS
e7032e7c 4341/* Defined in xfns.c. */
383e0970 4342extern void syms_of_xfns (void);
46abf440 4343
e7032e7c 4344/* Defined in xsmfns.c. */
383e0970 4345extern void syms_of_xsmfns (void);
e02207d4 4346
e7032e7c 4347/* Defined in xselect.c. */
383e0970 4348extern void syms_of_xselect (void);
46abf440 4349
e7032e7c 4350/* Defined in xterm.c. */
383e0970 4351extern void syms_of_xterm (void);
4f48f1ab 4352#endif /* HAVE_X_WINDOWS */
4baa6f88 4353
7af07b96 4354#ifdef HAVE_WINDOW_SYSTEM
e7032e7c 4355/* Defined in xterm.c, nsterm.m, w32term.c. */
7af07b96
AS
4356extern char *x_get_keysym_name (int);
4357#endif /* HAVE_WINDOW_SYSTEM */
4358
381408e2 4359#ifdef HAVE_LIBXML2
e7032e7c 4360/* Defined in xml.c. */
381408e2 4361extern void syms_of_xml (void);
9078ead6 4362extern void xml_cleanup_parser (void);
381408e2
LMI
4363#endif
4364
313546eb
LMI
4365#ifdef HAVE_ZLIB
4366/* Defined in decompress.c. */
4367extern void syms_of_decompress (void);
4368#endif
4369
b86cfd28 4370#ifdef HAVE_DBUS
e7032e7c 4371/* Defined in dbusbind.c. */
383e0970 4372void syms_of_dbusbind (void);
b86cfd28 4373#endif
36e053eb 4374
ad942b63
SM
4375
4376/* Defined in profiler.c. */
6521894d 4377extern bool profiler_memory_running;
c2d7786e 4378extern void malloc_probe (size_t);
c2d7786e
TM
4379extern void syms_of_profiler (void);
4380
ad942b63 4381
36e053eb 4382#ifdef DOS_NT
e7032e7c 4383/* Defined in msdos.c, w32.c. */
36e053eb
DN
4384extern char *emacs_root_dir (void);
4385#endif /* DOS_NT */
83925baa 4386\f
1882aa38 4387/* True means Emacs has already been initialized.
3cfe6dfd 4388 Used during startup to detect startup of dumped Emacs. */
1882aa38 4389extern bool initialized;
3cfe6dfd 4390
9fa1de30
PE
4391/* True means ^G can quit instantly. */
4392extern bool immediate_quit;
3cfe6dfd 4393
261cb4bb 4394extern void *xmalloc (size_t);
23f86fce 4395extern void *xzalloc (size_t);
261cb4bb
PE
4396extern void *xrealloc (void *, size_t);
4397extern void xfree (void *);
0065d054
PE
4398extern void *xnmalloc (ptrdiff_t, ptrdiff_t);
4399extern void *xnrealloc (void *, ptrdiff_t, ptrdiff_t);
4400extern void *xpalloc (void *, ptrdiff_t *, ptrdiff_t, ptrdiff_t, ptrdiff_t);
074b6efe 4401
383e0970 4402extern char *xstrdup (const char *);
5b71542d 4403extern char *xlispstrdup (Lisp_Object);
8268febf 4404extern void dupstring (char **, char const *);
5745a7df 4405extern void xputenv (const char *);
3cfe6dfd 4406
a8fe7202 4407extern char *egetenv (const char *);
e98227af 4408
5b71542d
DA
4409/* Copy Lisp string to temporary (allocated on stack) C string. */
4410
4411#define xlispstrdupa(string) \
4412 memcpy (alloca (SBYTES (string) + 1), \
4413 SSDATA (string), SBYTES (string) + 1)
4414
5d6be39f 4415/* Set up the name of the machine we're running on. */
383e0970 4416extern void init_system_name (void);
881a5a80 4417
d7a0a7c9
PE
4418/* Return the absolute value of X. X should be a signed integer
4419 expression without side effects, and X's absolute value should not
4420 exceed the maximum for its promoted type. This is called 'eabs'
4421 because 'abs' is reserved by the C standard. */
555b10b0 4422#define eabs(x) ((x) < 0 ? -(x) : (x))
096e8667 4423
53ede3f4
GM
4424/* Return a fixnum or float, depending on whether VAL fits in a Lisp
4425 fixnum. */
4426
4427#define make_fixnum_or_float(val) \
cbeff735 4428 (FIXNUM_OVERFLOW_P (val) ? make_float (val) : make_number (val))
6b61353c 4429
79518a8d
KS
4430/* SAFE_ALLOCA normally allocates memory on the stack, but if size is
4431 larger than MAX_ALLOCA, use xmalloc to avoid overflowing the stack. */
4432
e7032e7c 4433enum MAX_ALLOCA { MAX_ALLOCA = 16 * 1024 };
79518a8d 4434
98c6f1e3 4435extern void *record_xmalloc (size_t);
79518a8d
KS
4436
4437#define USE_SAFE_ALLOCA \
96c06863 4438 ptrdiff_t sa_count = SPECPDL_INDEX (); bool sa_must_free = false
79518a8d 4439
a9e6bacc
KS
4440/* SAFE_ALLOCA allocates a simple buffer. */
4441
98c6f1e3
PE
4442#define SAFE_ALLOCA(size) ((size) < MAX_ALLOCA \
4443 ? alloca (size) \
96c06863 4444 : (sa_must_free = true, record_xmalloc (size)))
79518a8d 4445
0065d054
PE
4446/* SAFE_NALLOCA sets BUF to a newly allocated array of MULTIPLIER *
4447 NITEMS items, each of the same type as *BUF. MULTIPLIER must
4448 positive. The code is tuned for MULTIPLIER being a constant. */
4449
468afbac
DA
4450#define SAFE_NALLOCA(buf, multiplier, nitems) \
4451 do { \
4452 if ((nitems) <= MAX_ALLOCA / sizeof *(buf) / (multiplier)) \
4453 (buf) = alloca (sizeof *(buf) * (multiplier) * (nitems)); \
4454 else \
0065d054
PE
4455 { \
4456 (buf) = xnmalloc (nitems, sizeof *(buf) * (multiplier)); \
96c06863 4457 sa_must_free = true; \
27e498e6 4458 record_unwind_protect_ptr (xfree, buf); \
0065d054 4459 } \
96c06863 4460 } while (false)
0065d054 4461
a9e6bacc
KS
4462/* SAFE_FREE frees xmalloced memory and enables GC as needed. */
4463
c33188d9 4464#define SAFE_FREE() \
79518a8d 4465 do { \
c33188d9 4466 if (sa_must_free) { \
96c06863 4467 sa_must_free = false; \
79518a8d 4468 unbind_to (sa_count, Qnil); \
c33188d9 4469 } \
96c06863 4470 } while (false)
79518a8d
KS
4471
4472
5f5d6c62
KS
4473/* SAFE_ALLOCA_LISP allocates an array of Lisp_Objects. */
4474
663e2b3f
DA
4475#define SAFE_ALLOCA_LISP(buf, nelt) \
4476 do { \
4477 if ((nelt) < MAX_ALLOCA / word_size) \
96c06863 4478 (buf) = alloca ((nelt) * word_size); \
663e2b3f
DA
4479 else if ((nelt) < min (PTRDIFF_MAX, SIZE_MAX) / word_size) \
4480 { \
4481 Lisp_Object arg_; \
96c06863 4482 (buf) = xmalloc ((nelt) * word_size); \
1396ac86 4483 arg_ = make_save_memory (buf, nelt); \
96c06863 4484 sa_must_free = true; \
27e498e6 4485 record_unwind_protect (free_save_value, arg_); \
663e2b3f
DA
4486 } \
4487 else \
4488 memory_full (SIZE_MAX); \
96c06863 4489 } while (false)
5f5d6c62 4490
105324ce
SM
4491/* Loop over all tails of a list, checking for cycles.
4492 FIXME: Make tortoise and n internal declarations.
4493 FIXME: Unroll the loop body so we don't need `n'. */
4494#define FOR_EACH_TAIL(hare, list, tortoise, n) \
96c06863 4495 for ((tortoise) = (hare) = (list), (n) = true; \
105324ce 4496 CONSP (hare); \
96c06863
PE
4497 (hare = XCDR (hare), (n) = !(n), \
4498 ((n) \
4499 ? (EQ (hare, tortoise) \
4500 ? xsignal1 (Qcircular_list, list) \
4501 : (void) 0) \
105324ce
SM
4502 /* Move tortoise before the next iteration, in case */ \
4503 /* the next iteration does an Fsetcdr. */ \
96c06863 4504 : (void) ((tortoise) = XCDR (tortoise)))))
105324ce 4505
d5a1acfa
DA
4506/* Do a `for' loop over alist values. */
4507
4508#define FOR_EACH_ALIST_VALUE(head_var, list_var, value_var) \
96c06863
PE
4509 for ((list_var) = (head_var); \
4510 (CONSP (list_var) && ((value_var) = XCDR (XCAR (list_var)), true)); \
4511 (list_var) = XCDR (list_var))
79518a8d 4512
dac616ff
DA
4513/* Check whether it's time for GC, and run it if so. */
4514
00382e8b 4515INLINE void
dac616ff
DA
4516maybe_gc (void)
4517{
4518 if ((consing_since_gc > gc_cons_threshold
4519 && consing_since_gc > gc_relative_threshold)
4520 || (!NILP (Vmemory_full)
4521 && consing_since_gc > memory_full_cons_threshold))
4522 Fgarbage_collect ();
4523}
4524
00382e8b 4525INLINE bool
e1f29348
BR
4526functionp (Lisp_Object object)
4527{
4528 if (SYMBOLP (object) && !NILP (Ffboundp (object)))
4529 {
4530 object = Findirect_function (object, Qt);
4531
4532 if (CONSP (object) && EQ (XCAR (object), Qautoload))
4533 {
4534 /* Autoloaded symbols are functions, except if they load
4535 macros or keymaps. */
4536 int i;
4537 for (i = 0; i < 4 && CONSP (object); i++)
4538 object = XCDR (object);
4539
4540 return ! (CONSP (object) && !NILP (XCAR (object)));
4541 }
4542 }
4543
4544 if (SUBRP (object))
4545 return XSUBR (object)->max_args != UNEVALLED;
4546 else if (COMPILEDP (object))
96c06863 4547 return true;
e1f29348
BR
4548 else if (CONSP (object))
4549 {
4550 Lisp_Object car = XCAR (object);
4551 return EQ (car, Qlambda) || EQ (car, Qclosure);
4552 }
4553 else
96c06863 4554 return false;
e1f29348
BR
4555}
4556
f162bcc3
PE
4557INLINE_HEADER_END
4558
6b61353c 4559#endif /* EMACS_LISP_H */