0
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1 /* Fundamental definitions for XEmacs Lisp interpreter.
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2 Copyright (C) 1985-1987, 1992-1995 Free Software Foundation, Inc.
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3 Copyright (C) 1993-1996 Richard Mlynarik.
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4 Copyright (C) 1995, 1996 Ben Wing.
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5
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6 This file is part of XEmacs.
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7
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8 XEmacs is free software; you can redistribute it and/or modify it
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9 under the terms of the GNU General Public License as published by the
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10 Free Software Foundation; either version 2, or (at your option) any
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11 later version.
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12
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13 XEmacs is distributed in the hope that it will be useful, but WITHOUT
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14 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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16 for more details.
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17
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18 You should have received a copy of the GNU General Public License
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19 along with XEmacs; see the file COPYING. If not, write to
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20 the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
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21 Boston, MA 02111-1307, USA. */
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22
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23 /* Synched up with: FSF 19.30. */
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24
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412
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25 #ifndef _XEMACS_LISP_H_
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26 #define _XEMACS_LISP_H_
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27
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28 /************************************************************************/
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380
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29 /* general definitions */
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30 /************************************************************************/
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31
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32 /* We include the following generally useful header files so that you
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33 don't have to worry about prototypes when using the standard C
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34 library functions and macros. These files shouldn't be excessively
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35 large so they shouldn't cause that much of a slowdown. */
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36
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37 #include <stdlib.h>
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38 #include <string.h> /* primarily for memcpy, etc. */
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39 #include <stdio.h> /* NULL, etc. */
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40 #include <ctype.h>
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41 #include <stdarg.h>
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420
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42 #include <stddef.h> /* offsetof */
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412
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43
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44 #ifdef __lucid
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45 # include <sysent.h>
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46 #endif
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47
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272
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48 /* ---- Dynamic arrays ---- */
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49
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50 #define Dynarr_declare(type) \
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51 type *base; \
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52 int elsize; \
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53 int cur; \
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54 int largest; \
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55 int max
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56
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57 typedef struct dynarr
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58 {
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59 Dynarr_declare (void);
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60 } Dynarr;
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61
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62 void *Dynarr_newf (int elsize);
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63 void Dynarr_resize (void *dy, int size);
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412
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64 void Dynarr_insert_many (void *d, CONST void *el, int len, int start);
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272
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65 void Dynarr_delete_many (void *d, int start, int len);
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66 void Dynarr_free (void *d);
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67
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412
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68 #define Dynarr_new(type) ((type##_dynarr *) Dynarr_newf (sizeof(type)))
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272
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69 #define Dynarr_at(d, pos) ((d)->base[pos])
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70 #define Dynarr_atp(d, pos) (&Dynarr_at (d, pos))
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71 #define Dynarr_length(d) ((d)->cur)
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72 #define Dynarr_largest(d) ((d)->largest)
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73 #define Dynarr_reset(d) ((d)->cur = 0)
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74 #define Dynarr_add_many(d, el, len) Dynarr_insert_many (d, el, len, (d)->cur)
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75 #define Dynarr_insert_many_at_start(d, el, len) \
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76 Dynarr_insert_many (d, el, len, 0)
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412
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77 #define Dynarr_add_literal_string(d, s) Dynarr_add_many (d, s, sizeof(s) - 1)
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272
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78 #define Dynarr_add_lisp_string(d, s) do { \
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412
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79 struct Lisp_String *dyna_ls_s = XSTRING (s); \
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272
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80 Dynarr_add_many (d, (char *) string_data (dyna_ls_s), \
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81 string_length (dyna_ls_s)); \
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82 } while (0)
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83
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84 #define Dynarr_add(d, el) ( \
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85 (d)->cur >= (d)->max ? Dynarr_resize ((d), (d)->cur+1) : (void) 0, \
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86 ((d)->base)[(d)->cur++] = (el), \
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87 (d)->cur > (d)->largest ? (d)->largest = (d)->cur : (int) 0)
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88
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89 /* The following defines will get you into real trouble if you aren't
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90 careful. But they can save a lot of execution time when used wisely. */
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91 #define Dynarr_increment(d) ((d)->cur++)
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92 #define Dynarr_set_size(d, n) ((d)->cur = n)
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93
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412
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94 /* Minimum size in elements for dynamic array when resized; default is 32 */
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95 extern int Dynarr_min_size;
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96
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272
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97 #ifdef MEMORY_USAGE_STATS
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98 struct overhead_stats;
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99 size_t Dynarr_memory_usage (void *d, struct overhead_stats *stats);
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100 #endif
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101
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102 #include "symsinit.h" /* compiler warning suppression */
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103
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104 /* Also define min() and max(). (Some compilers put them in strange
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105 places that won't be referenced by the above include files, such
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106 as 'macros.h' under Solaris.) */
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107
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108 #ifndef min
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199
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109 #define min(a,b) (((a) <= (b)) ? (a) : (b))
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110 #endif
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111 #ifndef max
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199
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112 #define max(a,b) (((a) > (b)) ? (a) : (b))
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113 #endif
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114
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185
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115 /* Memory allocation */
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412
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116 void malloc_warning (CONST char *);
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185
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117 void *xmalloc (size_t size);
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118 void *xmalloc_and_zero (size_t size);
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119 void *xrealloc (void *, size_t size);
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412
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120 char *xstrdup (CONST char *);
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121 /* generally useful */
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412
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122 #define countof(x) ((int) (sizeof(x)/sizeof(x[0])))
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123 #define slot_offset(type, slot_name) \
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124 ((unsigned) (((char *) (&(((type *)0)->slot_name))) - ((char *)0)))
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185
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125 #define xnew(type) ((type *) xmalloc (sizeof (type)))
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126 #define xnew_array(type, len) ((type *) xmalloc ((len) * sizeof (type)))
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127 #define xnew_and_zero(type) ((type *) xmalloc_and_zero (sizeof (type)))
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412
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128 #define xzero(lvalue) ((void) memset (&(lvalue), 0, sizeof (lvalue)))
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185
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129 #define xnew_array_and_zero(type, len) ((type *) xmalloc_and_zero ((len) * sizeof (type)))
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130 #define XREALLOC_ARRAY(ptr, type, len) ((void) (ptr = (type *) xrealloc (ptr, (len) * sizeof (type))))
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131 #define alloca_array(type, len) ((type *) alloca ((len) * sizeof (type)))
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132
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133 /* also generally useful if you want to avoid arbitrary size limits
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134 but don't need a full dynamic array. Assumes that BASEVAR points
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135 to a malloced array of TYPE objects (or possibly a NULL pointer,
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136 if SIZEVAR is 0), with the total size stored in SIZEVAR. This
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137 macro will realloc BASEVAR as necessary so that it can hold at
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138 least NEEDED_SIZE objects. The reallocing is done by doubling,
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139 which ensures constant amortized time per element. */
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412
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140 #define DO_REALLOC(basevar, sizevar, needed_size, type) do \
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141 { \
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142 /* Avoid side-effectualness. */ \
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143 /* Dammit! Macros suffer from dynamic scope! */ \
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144 /* We demand inline functions! */ \
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272
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145 size_t do_realloc_needed_size = (needed_size); \
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412
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146 size_t do_realloc_newsize = 0; \
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147 while ((sizevar) < (do_realloc_needed_size)) { \
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148 do_realloc_newsize = 2*(sizevar); \
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149 if (do_realloc_newsize < 32) \
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150 do_realloc_newsize = 32; \
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151 (sizevar) = do_realloc_newsize; \
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152 } \
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153 if (do_realloc_newsize) \
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154 XREALLOC_ARRAY (basevar, type, do_realloc_newsize); \
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0
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155 } while (0)
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156
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157 #ifdef ERROR_CHECK_MALLOC
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185
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158 void xfree_1 (void *);
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272
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159 #define xfree(lvalue) do \
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160 { \
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161 void **xfree_ptr = (void **) &(lvalue); \
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162 xfree_1 (*xfree_ptr); \
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163 *xfree_ptr = (void *) 0xDEADBEEF; \
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0
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164 } while (0)
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165 #else
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185
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166 void xfree (void *);
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412
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167 #define xfree_1 xfree
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185
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168 #endif /* ERROR_CHECK_MALLOC */
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169
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170 #ifndef PRINTF_ARGS
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171 # if defined (__GNUC__) && (__GNUC__ >= 2)
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172 # define PRINTF_ARGS(string_index,first_to_check) \
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173 __attribute__ ((format (printf, string_index, first_to_check)))
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174 # else
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175 # define PRINTF_ARGS(string_index,first_to_check)
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176 # endif /* GNUC */
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177 #endif
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178
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179 #ifndef DOESNT_RETURN
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180 # if defined __GNUC__
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181 # if ((__GNUC__ > 2) || (__GNUC__ == 2) && (__GNUC_MINOR__ >= 5))
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412
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182 # define DOESNT_RETURN void volatile
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183 # define DECLARE_DOESNT_RETURN(decl) \
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412
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184 extern void volatile decl __attribute__ ((noreturn))
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380
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185 # define DECLARE_DOESNT_RETURN_GCC_ATTRIBUTE_SYNTAX_SUCKS(decl,str,idx) \
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0
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186 /* Should be able to state multiple independent __attribute__s, but \
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187 the losing syntax doesn't work that way, and screws losing cpp */ \
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412
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188 extern void volatile decl \
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189 __attribute__ ((noreturn, format (printf, str, idx)))
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190 # else
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191 # define DOESNT_RETURN void volatile
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192 # define DECLARE_DOESNT_RETURN(decl) extern void volatile decl
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380
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193 # define DECLARE_DOESNT_RETURN_GCC_ATTRIBUTE_SYNTAX_SUCKS(decl,str,idx) \
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194 extern void volatile decl PRINTF_ARGS(str,idx)
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195 # endif /* GNUC 2.5 */
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196 # else
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197 # define DOESNT_RETURN void
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198 # define DECLARE_DOESNT_RETURN(decl) extern void decl
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380
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199 # define DECLARE_DOESNT_RETURN_GCC_ATTRIBUTE_SYNTAX_SUCKS(decl,str,idx) \
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200 extern void decl PRINTF_ARGS(str,idx)
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201 # endif /* GNUC */
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202 #endif
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203
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204 #ifndef ALIGNOF
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205 # if defined (__GNUC__) && (__GNUC__ >= 2)
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412
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206 # define ALIGNOF(x) __alignof (x)
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207 # else
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208 # define ALIGNOF(x) sizeof (x)
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209 # endif
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210 #endif
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211
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212 #define ALIGN_SIZE(len, unit) \
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213 ((((len) + (unit) - 1) / (unit)) * (unit))
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214
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215 /* #### Yuck, this is kind of evil */
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80
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216 #define ALIGN_PTR(ptr, unit) \
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217 ((void *) ALIGN_SIZE ((long) (ptr), unit))
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218
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219 #ifndef DO_NOTHING
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220 #define DO_NOTHING do {} while (0)
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221 #endif
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222
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272
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223 #ifndef DECLARE_NOTHING
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224 #define DECLARE_NOTHING struct nosuchstruct
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225 #endif
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226
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0
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227 /* We define assert iff USE_ASSERTIONS or DEBUG_XEMACS is defined.
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272
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228 Otherwise we define it to be empty. Quantify has shown that the
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229 time the assert checks take is measurable so let's not include them
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230 in production binaries. */
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231
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232 #ifdef USE_ASSERTIONS
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233 /* Highly dubious kludge */
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234 /* (thanks, Jamie, I feel better now -- ben) */
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412
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235 DECLARE_DOESNT_RETURN (assert_failed (CONST char *, int, CONST char *));
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70
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236 # define abort() (assert_failed (__FILE__, __LINE__, "abort()"))
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237 # define assert(x) ((x) ? (void) 0 : assert_failed (__FILE__, __LINE__, #x))
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238 #else
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239 # ifdef DEBUG_XEMACS
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240 # define assert(x) ((x) ? (void) 0 : (void) abort ())
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241 # else
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242 # define assert(x)
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243 # endif
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244 #endif
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245
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201
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246 /*#ifdef DEBUG_XEMACS*/
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247 #define REGISTER
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201
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248 #define register
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249 /*#else*/
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250 /*#define REGISTER register*/
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251 /*#endif*/
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252
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424
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253
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254 /* EMACS_INT is the underlying integral type into which a Lisp_Object must fit.
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255 In particular, it must be large enough to contain a pointer.
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256 config.h can override this, e.g. to use `long long' for bigger lisp ints. */
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257
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258 #ifndef SIZEOF_EMACS_INT
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259 # define SIZEOF_EMACS_INT SIZEOF_VOID_P
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260 #endif
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261
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262 #ifndef EMACS_INT
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263 # if SIZEOF_EMACS_INT == SIZEOF_LONG
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264 # define EMACS_INT long
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265 # elif SIZEOF_EMACS_INT == SIZEOF_INT
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266 # define EMACS_INT int
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267 # elif SIZEOF_EMACS_INT == SIZEOF_LONG_LONG
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268 # define EMACS_INT long long
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269 # else
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270 # error Unable to determine suitable type for EMACS_INT
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271 # endif
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272 #endif
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273
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274 #ifndef EMACS_UINT
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275 # define EMACS_UINT unsigned EMACS_INT
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276 #endif
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277
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278 #define BITS_PER_EMACS_INT (SIZEOF_EMACS_INT * BITS_PER_CHAR)
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279
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0
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280
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281 /************************************************************************/
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380
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282 /* typedefs */
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0
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283 /************************************************************************/
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284
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285 /* We put typedefs here so that prototype declarations don't choke.
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286 Note that we don't actually declare the structures here (except
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287 maybe for simple structures like Dynarrs); that keeps them private
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288 to the routines that actually use them. */
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289
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290 /* The data representing the text in a buffer is logically a set
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291 of Bufbytes, declared as follows. */
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292
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293 typedef unsigned char Bufbyte;
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294
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295 /* The data representing a string in "external" format (simple
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296 binary format) is logically a set of Extbytes, declared as follows. */
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297
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298 typedef unsigned char Extbyte;
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299
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300 /* To the user, a buffer is made up of characters, declared as follows.
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301 In the non-Mule world, characters and Bufbytes are equivalent.
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302 In the Mule world, a character requires (typically) 1 to 4
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303 Bufbytes for its representation in a buffer. */
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304
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305 typedef int Emchar;
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306
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307 /* Different ways of referring to a position in a buffer. We use
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308 the typedefs in preference to 'int' to make it clearer what
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309 sort of position is being used. See extents.c for a description
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310 of the different positions. We put them here instead of in
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311 buffer.h (where they rightfully belong) to avoid syntax errors
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312 in function prototypes. */
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313
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424
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314 typedef EMACS_INT Bufpos;
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315 typedef EMACS_INT Bytind;
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316 typedef EMACS_INT Memind;
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0
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317
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318 /* Counts of bytes or chars */
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319
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424
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320 typedef EMACS_INT Bytecount;
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321 typedef EMACS_INT Charcount;
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0
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322
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323 /* Length in bytes of a string in external format */
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424
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324 typedef EMACS_INT Extcount;
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325
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326 typedef struct lstream Lstream;
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327
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328 typedef unsigned int face_index;
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185
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329
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330 typedef struct
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331 {
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332 Dynarr_declare (struct face_cachel);
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333 } face_cachel_dynarr;
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334
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335 typedef unsigned int glyph_index;
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185
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336
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272
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337 /* This is shared by process.h, events.h and others in future.
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263
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338 See events.h for description */
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339 typedef unsigned int USID;
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340
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185
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341 typedef struct
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0
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342 {
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343 Dynarr_declare (struct glyph_cachel);
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344 } glyph_cachel_dynarr;
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345
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346 struct buffer; /* "buffer.h" */
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347 struct console; /* "console.h" */
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348 struct device; /* "device.h" */
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349 struct extent_fragment;
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350 struct extent;
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185
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351 typedef struct extent *EXTENT;
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352 struct frame; /* "frame.h" */
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353 struct window; /* "window.h" */
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412
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354 struct Lisp_Event; /* "events.h" */
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355 typedef struct Lisp_Event Lisp_Event;
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356 struct Lisp_Face;
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357 typedef struct Lisp_Face Lisp_Face;
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358 struct Lisp_Process; /* "process.c" */
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359 typedef struct Lisp_Process Lisp_Process;
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0
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360 struct stat; /* <sys/stat.h> */
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412
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361 struct Lisp_Color_Instance;
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380
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362 typedef struct Lisp_Color_Instance Lisp_Color_Instance;
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412
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363 struct Lisp_Font_Instance;
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380
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364 typedef struct Lisp_Font_Instance Lisp_Font_Instance;
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412
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365 struct Lisp_Image_Instance;
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380
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366 typedef struct Lisp_Image_Instance Lisp_Image_Instance;
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418
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367 struct Lisp_Gui_Item;
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368 typedef struct Lisp_Gui_Item Lisp_Gui_Item;
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0
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369 struct display_line;
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424
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370 struct display_glyph_area;
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371 struct display_box;
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0
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372 struct redisplay_info;
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373 struct window_mirror;
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374 struct scrollbar_instance;
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375 struct font_metric_info;
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376 struct face_cachel;
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377 struct console_type_entry;
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378
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185
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379 typedef struct
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0
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380 {
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381 Dynarr_declare (Bufbyte);
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185
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382 } Bufbyte_dynarr;
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0
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383
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185
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384 typedef struct
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0
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385 {
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386 Dynarr_declare (Extbyte);
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185
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387 } Extbyte_dynarr;
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0
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388
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185
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389 typedef struct
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0
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390 {
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391 Dynarr_declare (Emchar);
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185
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392 } Emchar_dynarr;
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0
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393
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272
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394 typedef struct
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395 {
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396 Dynarr_declare (char);
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397 } char_dynarr;
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398
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185
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399 typedef unsigned char unsigned_char;
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400 typedef struct
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0
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401 {
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402 Dynarr_declare (unsigned char);
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403 } unsigned_char_dynarr;
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404
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265
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405 typedef unsigned long unsigned_long;
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406 typedef struct
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407 {
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408 Dynarr_declare (unsigned long);
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409 } unsigned_long_dynarr;
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410
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185
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411 typedef struct
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0
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412 {
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413 Dynarr_declare (int);
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414 } int_dynarr;
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415
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185
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416 typedef struct
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0
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417 {
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418 Dynarr_declare (Bufpos);
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185
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419 } Bufpos_dynarr;
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0
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420
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185
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421 typedef struct
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0
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422 {
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423 Dynarr_declare (Bytind);
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185
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424 } Bytind_dynarr;
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0
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425
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185
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426 typedef struct
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0
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427 {
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428 Dynarr_declare (Charcount);
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185
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429 } Charcount_dynarr;
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0
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430
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185
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431 typedef struct
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0
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432 {
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433 Dynarr_declare (Bytecount);
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185
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434 } Bytecount_dynarr;
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0
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435
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185
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436 typedef struct
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0
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437 {
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438 Dynarr_declare (struct console_type_entry);
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439 } console_type_entry_dynarr;
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|
440
|
412
|
441 /* Need to declare this here. */
|
|
442 enum external_data_format
|
|
443 {
|
|
444 /* Binary format. This is the simplest format and is what we
|
|
445 use in the absence of a more appropriate format. This converts
|
|
446 according to the `binary' coding system:
|
|
447
|
|
448 a) On input, bytes 0 - 255 are converted into characters 0 - 255.
|
|
449 b) On output, characters 0 - 255 are converted into bytes 0 - 255
|
|
450 and other characters are converted into `X'.
|
|
451 */
|
|
452 FORMAT_BINARY,
|
|
453
|
|
454 /* Format used for filenames. In the original Mule, this is
|
|
455 user-definable with the `pathname-coding-system' variable.
|
|
456 For the moment, we just use the `binary' coding system. */
|
|
457 FORMAT_FILENAME,
|
|
458
|
|
459 /* Format used for output to the terminal. This should be controlled
|
|
460 by the `terminal-coding-system' variable. Under kterm, this will
|
|
461 be some ISO2022 system. On some DOS machines, this is Shift-JIS. */
|
|
462 FORMAT_TERMINAL,
|
|
463
|
|
464 /* Format used for input from the terminal. This should be controlled
|
|
465 by the `keyboard-coding-system' variable. */
|
|
466 FORMAT_KEYBOARD,
|
|
467
|
|
468 /* Format used for the external Unix environment -- argv[], stuff
|
|
469 from getenv(), stuff from the /etc/passwd file, etc.
|
|
470
|
|
471 Perhaps should be the same as FORMAT_FILENAME. */
|
|
472 FORMAT_OS,
|
|
473
|
|
474 /* Compound-text format. This is the standard X format used for
|
|
475 data stored in properties, selections, and the like. This is
|
|
476 an 8-bit no-lock-shift ISO2022 coding system. */
|
|
477 FORMAT_CTEXT
|
|
478 };
|
|
479
|
|
480 #define FORMAT_NATIVE FORMAT_FILENAME
|
|
481
|
0
|
482 enum run_hooks_condition
|
|
483 {
|
|
484 RUN_HOOKS_TO_COMPLETION,
|
|
485 RUN_HOOKS_UNTIL_SUCCESS,
|
|
486 RUN_HOOKS_UNTIL_FAILURE
|
|
487 };
|
|
488
|
|
489 #ifdef HAVE_TOOLBARS
|
|
490 enum toolbar_pos
|
|
491 {
|
|
492 TOP_TOOLBAR,
|
|
493 BOTTOM_TOOLBAR,
|
|
494 LEFT_TOOLBAR,
|
|
495 RIGHT_TOOLBAR
|
|
496 };
|
|
497 #endif
|
|
498
|
424
|
499 enum edge_style
|
|
500 {
|
|
501 EDGE_ETCHED_IN,
|
|
502 EDGE_ETCHED_OUT,
|
|
503 EDGE_BEVEL_IN,
|
|
504 EDGE_BEVEL_OUT
|
|
505 };
|
|
506
|
0
|
507 #ifndef ERROR_CHECK_TYPECHECK
|
|
508
|
|
509 typedef enum error_behavior
|
|
510 {
|
|
511 ERROR_ME,
|
|
512 ERROR_ME_NOT,
|
|
513 ERROR_ME_WARN
|
|
514 } Error_behavior;
|
|
515
|
|
516 #define ERRB_EQ(a, b) ((a) == (b))
|
|
517
|
|
518 #else
|
|
519
|
|
520 /* By defining it like this, we provide strict type-checking
|
|
521 for code that lazily uses ints. */
|
|
522
|
|
523 typedef struct _error_behavior_struct_
|
|
524 {
|
|
525 int really_unlikely_name_to_have_accidentally_in_a_non_errb_structure;
|
|
526 } Error_behavior;
|
|
527
|
|
528 extern Error_behavior ERROR_ME;
|
|
529 extern Error_behavior ERROR_ME_NOT;
|
|
530 extern Error_behavior ERROR_ME_WARN;
|
|
531
|
|
532 #define ERRB_EQ(a, b) \
|
|
533 ((a).really_unlikely_name_to_have_accidentally_in_a_non_errb_structure == \
|
|
534 (b).really_unlikely_name_to_have_accidentally_in_a_non_errb_structure)
|
|
535
|
|
536 #endif
|
|
537
|
|
538 enum munge_me_out_the_door
|
|
539 {
|
|
540 MUNGE_ME_FUNCTION_KEY,
|
|
541 MUNGE_ME_KEY_TRANSLATION
|
|
542 };
|
|
543
|
|
544
|
|
545 /************************************************************************/
|
380
|
546 /* Definition of Lisp_Object data type */
|
0
|
547 /************************************************************************/
|
|
548
|
|
549 /* Define the fundamental Lisp data structures */
|
|
550
|
|
551 /* This is the set of Lisp data types */
|
|
552
|
207
|
553 enum Lisp_Type
|
|
554 {
|
|
555 Lisp_Type_Record,
|
|
556 Lisp_Type_Int_Even,
|
|
557 Lisp_Type_Char,
|
|
558 Lisp_Type_Int_Odd
|
|
559 };
|
|
560
|
|
561 #define POINTER_TYPE_P(type) ((type) == Lisp_Type_Record)
|
|
562
|
0
|
563 /* Overridden by m/next.h */
|
|
564 #ifndef ASSERT_VALID_POINTER
|
|
565 # define ASSERT_VALID_POINTER(pnt) (assert ((((EMACS_UINT) pnt) & 3) == 0))
|
|
566 #endif
|
|
567
|
398
|
568 #define GCMARKBITS 0
|
|
569 #define GCTYPEBITS 2
|
|
570 #define GCBITS 2
|
|
571 #define INT_GCBITS 1
|
0
|
572
|
272
|
573 #define INT_VALBITS (BITS_PER_EMACS_INT - INT_GCBITS)
|
|
574 #define VALBITS (BITS_PER_EMACS_INT - GCBITS)
|
412
|
575 #define EMACS_INT_MAX ((1UL << INT_VALBITS) -1UL)
|
272
|
576
|
|
577 #ifdef USE_UNION_TYPE
|
|
578 # include "lisp-union.h"
|
|
579 #else /* !USE_UNION_TYPE */
|
0
|
580 # include "lisp-disunion.h"
|
272
|
581 #endif /* !USE_UNION_TYPE */
|
|
582
|
424
|
583 #define XPNTR(x) ((void *) XPNTRVAL(x))
|
0
|
584
|
|
585 /* WARNING WARNING WARNING. You must ensure on your own that proper
|
|
586 GC protection is provided for the elements in this array. */
|
185
|
587 typedef struct
|
0
|
588 {
|
|
589 Dynarr_declare (Lisp_Object);
|
185
|
590 } Lisp_Object_dynarr;
|
0
|
591
|
|
592 /* Close your eyes now lest you vomit or spontaneously combust ... */
|
|
593
|
|
594 #define HACKEQ_UNSAFE(obj1, obj2) \
|
424
|
595 (EQ (obj1, obj2) || (!POINTER_TYPE_P (XTYPE (obj1)) \
|
|
596 && !POINTER_TYPE_P (XTYPE (obj2)) \
|
207
|
597 && XCHAR_OR_INT (obj1) == XCHAR_OR_INT (obj2)))
|
0
|
598
|
70
|
599 #ifdef DEBUG_XEMACS
|
|
600 extern int debug_issue_ebola_notices;
|
|
601 int eq_with_ebola_notice (Lisp_Object, Lisp_Object);
|
|
602 #define EQ_WITH_EBOLA_NOTICE(obj1, obj2) \
|
|
603 (debug_issue_ebola_notices ? eq_with_ebola_notice (obj1, obj2) \
|
|
604 : EQ (obj1, obj2))
|
|
605 #else
|
|
606 #define EQ_WITH_EBOLA_NOTICE(obj1, obj2) EQ (obj1, obj2)
|
|
607 #endif
|
0
|
608
|
|
609 /* OK, you can open them again */
|
272
|
610
|
0
|
611
|
|
612 /************************************************************************/
|
380
|
613 /* Definitions of basic Lisp objects */
|
0
|
614 /************************************************************************/
|
|
615
|
|
616 #include "lrecord.h"
|
|
617
|
380
|
618 /*********** unbound ***********/
|
0
|
619
|
|
620 /* Qunbound is a special Lisp_Object (actually of type
|
|
621 symbol-value-forward), that can never be visible to
|
|
622 the Lisp caller and thus can be used in the C code
|
|
623 to mean "no such value". */
|
|
624
|
|
625 #define UNBOUNDP(val) EQ (val, Qunbound)
|
173
|
626
|
0
|
627 /*********** cons ***********/
|
|
628
|
|
629 /* In a cons, the markbit of the car is the gc mark bit */
|
|
630
|
|
631 struct Lisp_Cons
|
|
632 {
|
207
|
633 struct lrecord_header lheader;
|
0
|
634 Lisp_Object car, cdr;
|
|
635 };
|
380
|
636 typedef struct Lisp_Cons Lisp_Cons;
|
0
|
637
|
|
638 #if 0 /* FSFmacs */
|
|
639 /* Like a cons, but records info on where the text lives that it was read from */
|
|
640 /* This is not really in use now */
|
|
641
|
|
642 struct Lisp_Buffer_Cons
|
|
643 {
|
|
644 Lisp_Object car, cdr;
|
|
645 struct buffer *buffer;
|
|
646 int bufpos;
|
|
647 };
|
|
648 #endif
|
|
649
|
380
|
650 DECLARE_LRECORD (cons, Lisp_Cons);
|
|
651 #define XCONS(x) XRECORD (x, cons, Lisp_Cons)
|
207
|
652 #define XSETCONS(x, p) XSETRECORD (x, p, cons)
|
|
653 #define CONSP(x) RECORDP (x, cons)
|
|
654 #define CHECK_CONS(x) CHECK_RECORD (x, cons)
|
|
655 #define CONCHECK_CONS(x) CONCHECK_RECORD (x, cons)
|
|
656
|
|
657 #define CONS_MARKED_P(c) MARKED_RECORD_HEADER_P(&((c)->lheader))
|
|
658 #define MARK_CONS(c) MARK_RECORD_HEADER (&((c)->lheader))
|
|
659
|
380
|
660 extern Lisp_Object Qnil;
|
|
661
|
0
|
662 #define NILP(x) EQ (x, Qnil)
|
|
663 #define XCAR(a) (XCONS (a)->car)
|
|
664 #define XCDR(a) (XCONS (a)->cdr)
|
272
|
665 #define LISTP(x) (CONSP(x) || NILP(x))
|
|
666
|
|
667 #define CHECK_LIST(x) do { \
|
|
668 if (!LISTP (x)) \
|
|
669 dead_wrong_type_argument (Qlistp, x); \
|
|
670 } while (0)
|
|
671
|
|
672 #define CONCHECK_LIST(x) do { \
|
|
673 if (!LISTP (x)) \
|
|
674 x = wrong_type_argument (Qlistp, x); \
|
|
675 } while (0)
|
0
|
676
|
|
677 /* For a list that's known to be in valid list format --
|
|
678 will abort() if the list is not in valid format */
|
380
|
679 #define LIST_LOOP(tail, list) \
|
|
680 for (tail = list; \
|
|
681 !NILP (tail); \
|
|
682 tail = XCDR (tail))
|
|
683
|
|
684 #define LIST_LOOP_2(elt, list) \
|
|
685 Lisp_Object tail##elt; \
|
|
686 LIST_LOOP_3(elt, list, tail##elt)
|
|
687
|
|
688 #define LIST_LOOP_3(elt, list, tail) \
|
|
689 for (tail = list; \
|
|
690 NILP (tail) ? \
|
|
691 0 : (elt = XCAR (tail), 1); \
|
|
692 tail = XCDR (tail))
|
|
693
|
|
694 #define GET_LIST_LENGTH(list, len) do { \
|
|
695 Lisp_Object GLL_tail; \
|
|
696 for (GLL_tail = list, len = 0; \
|
|
697 !NILP (GLL_tail); \
|
|
698 GLL_tail = XCDR (GLL_tail), ++len) \
|
|
699 DO_NOTHING; \
|
|
700 } while (0)
|
|
701
|
|
702 #define GET_EXTERNAL_LIST_LENGTH(list, len) \
|
|
703 do { \
|
|
704 Lisp_Object GELL_elt, GELL_tail; \
|
|
705 EXTERNAL_LIST_LOOP_4 (GELL_elt, list, GELL_tail, len) \
|
|
706 ; \
|
|
707 } while (0)
|
0
|
708
|
|
709 /* For a list that's known to be in valid list format, where we may
|
|
710 be deleting the current element out of the list --
|
|
711 will abort() if the list is not in valid format */
|
380
|
712 #define LIST_LOOP_DELETING(consvar, nextconsvar, list) \
|
|
713 for (consvar = list; \
|
|
714 !NILP (consvar) ? (nextconsvar = XCDR (consvar), 1) :0; \
|
0
|
715 consvar = nextconsvar)
|
|
716
|
380
|
717 /* Delete all elements of external list LIST
|
|
718 satisfying CONDITION, an expression referring to variable ELT */
|
|
719 #define EXTERNAL_LIST_LOOP_DELETE_IF(elt, list, condition) do { \
|
|
720 Lisp_Object prev_tail_##list = Qnil; \
|
|
721 Lisp_Object tail_##list; \
|
424
|
722 EMACS_INT len_##list; \
|
380
|
723 EXTERNAL_LIST_LOOP_4 (elt, list, tail_##list, len_##list) \
|
|
724 { \
|
|
725 if (condition) \
|
|
726 { \
|
|
727 if (NILP (prev_tail_##list)) \
|
|
728 list = XCDR (tail_##list); \
|
|
729 else \
|
|
730 XCDR (prev_tail_##list) = XCDR (tail_##list); \
|
|
731 /* Keep tortoise from ever passing hare. */ \
|
|
732 len_##list = 0; \
|
|
733 } \
|
|
734 else \
|
|
735 prev_tail_##list = tail_##list; \
|
|
736 } \
|
|
737 } while (0)
|
|
738
|
|
739 /* Delete all elements of true non-circular list LIST
|
|
740 satisfying CONDITION, an expression referring to variable ELT */
|
|
741 #define LIST_LOOP_DELETE_IF(elt, list, condition) do { \
|
|
742 Lisp_Object prev_tail_##list = Qnil; \
|
|
743 Lisp_Object tail_##list; \
|
|
744 LIST_LOOP_3 (elt, list, tail_##list) \
|
|
745 { \
|
|
746 if (condition) \
|
|
747 { \
|
|
748 if (NILP (prev_tail_##list)) \
|
|
749 list = XCDR (tail_##list); \
|
|
750 else \
|
|
751 XCDR (prev_tail_##list) = XCDR (tail_##list); \
|
|
752 } \
|
|
753 else \
|
|
754 prev_tail_##list = tail_##list; \
|
|
755 } \
|
|
756 } while (0)
|
|
757
|
0
|
758 /* For a list that may not be in valid list format --
|
|
759 will signal an error if the list is not in valid format */
|
380
|
760 #define EXTERNAL_LIST_LOOP(tail, list) \
|
|
761 for (tail = list; !NILP (tail); tail = XCDR (tail)) \
|
|
762 if (!CONSP (tail)) \
|
|
763 signal_malformed_list_error (list); \
|
0
|
764 else
|
|
765
|
380
|
766
|
|
767 /* The following macros are for traversing lisp lists.
|
|
768 Signal an error if LIST is not properly acyclic and nil-terminated.
|
|
769
|
|
770 Use tortoise/hare algorithm to check for cycles, but only if it
|
|
771 looks like the list is getting too long. Not only is the hare
|
|
772 faster than the tortoise; it even gets a head start! */
|
|
773
|
|
774 /* Optimized and safe macros for looping over external lists. */
|
|
775 #define CIRCULAR_LIST_SUSPICION_LENGTH 1024
|
|
776
|
|
777 #define EXTERNAL_LIST_LOOP_1(list) \
|
|
778 Lisp_Object ELL1_elt, ELL1_hare, ELL1_tortoise; \
|
424
|
779 EMACS_INT ELL1_len; \
|
|
780 EXTERNAL_LIST_LOOP_6 (ELL1_elt, list, ELL1_len, ELL1_hare, \
|
|
781 ELL1_tortoise, CIRCULAR_LIST_SUSPICION_LENGTH)
|
380
|
782
|
|
783 #define EXTERNAL_LIST_LOOP_2(elt, list) \
|
|
784 Lisp_Object hare_##elt, tortoise_##elt; \
|
424
|
785 EMACS_INT len_##elt; \
|
|
786 EXTERNAL_LIST_LOOP_6 (elt, list, len_##elt, hare_##elt, \
|
|
787 tortoise_##elt, CIRCULAR_LIST_SUSPICION_LENGTH)
|
380
|
788
|
|
789 #define EXTERNAL_LIST_LOOP_3(elt, list, tail) \
|
|
790 Lisp_Object tortoise_##elt; \
|
424
|
791 EMACS_INT len_##elt; \
|
|
792 EXTERNAL_LIST_LOOP_6 (elt, list, len_##elt, tail, \
|
|
793 tortoise_##elt, CIRCULAR_LIST_SUSPICION_LENGTH)
|
380
|
794
|
|
795 #define EXTERNAL_LIST_LOOP_4(elt, list, tail, len) \
|
|
796 Lisp_Object tortoise_##elt; \
|
424
|
797 EXTERNAL_LIST_LOOP_6 (elt, list, len, tail, \
|
|
798 tortoise_##elt, CIRCULAR_LIST_SUSPICION_LENGTH)
|
380
|
799
|
|
800
|
|
801 #define EXTERNAL_LIST_LOOP_6(elt, list, len, hare, \
|
|
802 tortoise, suspicion_length) \
|
|
803 for (tortoise = hare = list, len = 0; \
|
|
804 \
|
|
805 (CONSP (hare) ? ((elt = XCAR (hare)), 1) : \
|
|
806 (NILP (hare) ? 0 : \
|
|
807 (signal_malformed_list_error (list), 0))); \
|
|
808 \
|
|
809 hare = XCDR (hare), \
|
|
810 ((++len < suspicion_length) ? \
|
|
811 ((void) 0) : \
|
|
812 (((len & 1) ? \
|
|
813 ((void) (tortoise = XCDR (tortoise))) : \
|
|
814 ((void) 0)) \
|
|
815 , \
|
|
816 (EQ (hare, tortoise) ? \
|
|
817 ((void) signal_circular_list_error (list)) : \
|
|
818 ((void) 0)))))
|
|
819
|
|
820
|
|
821
|
|
822 /* Optimized and safe macros for looping over external alists. */
|
424
|
823 #define EXTERNAL_ALIST_LOOP_4(elt, elt_car, elt_cdr, list) \
|
|
824 Lisp_Object hare_##elt, tortoise_##elt; \
|
|
825 EMACS_INT len_##elt; \
|
|
826 EXTERNAL_ALIST_LOOP_8 (elt, elt_car, elt_cdr, list, \
|
|
827 len_##elt, hare_##elt, tortoise_##elt, \
|
380
|
828 CIRCULAR_LIST_SUSPICION_LENGTH)
|
|
829
|
|
830 #define EXTERNAL_ALIST_LOOP_5(elt, elt_car, elt_cdr, list, tail) \
|
|
831 Lisp_Object tortoise_##elt; \
|
424
|
832 EMACS_INT len_##elt; \
|
|
833 EXTERNAL_ALIST_LOOP_8 (elt, elt_car, elt_cdr, list, \
|
|
834 len_##elt, tail, tortoise_##elt, \
|
|
835 CIRCULAR_LIST_SUSPICION_LENGTH) \
|
380
|
836
|
|
837 #define EXTERNAL_ALIST_LOOP_6(elt, elt_car, elt_cdr, list, tail, len) \
|
|
838 Lisp_Object tortoise_##elt; \
|
424
|
839 EXTERNAL_ALIST_LOOP_8 (elt, elt_car, elt_cdr, list, \
|
|
840 len, tail, tortoise_##elt, \
|
|
841 CIRCULAR_LIST_SUSPICION_LENGTH)
|
380
|
842
|
|
843
|
|
844 #define EXTERNAL_ALIST_LOOP_8(elt, elt_car, elt_cdr, list, len, hare, \
|
|
845 tortoise, suspicion_length) \
|
424
|
846 EXTERNAL_LIST_LOOP_6 (elt, list, len, hare, tortoise, suspicion_length) \
|
380
|
847 if (CONSP (elt) ? (elt_car = XCAR (elt), elt_cdr = XCDR (elt), 0) :1) \
|
|
848 continue; \
|
|
849 else
|
|
850
|
|
851
|
|
852 /* Optimized and safe macros for looping over external property lists. */
|
|
853 #define EXTERNAL_PROPERTY_LIST_LOOP_3(key, value, list) \
|
|
854 Lisp_Object key, value, hare_##key, tortoise_##key; \
|
424
|
855 EMACS_INT len_##key; \
|
|
856 EXTERNAL_PROPERTY_LIST_LOOP_7 (key, value, list, len_##key, hare_##key, \
|
380
|
857 tortoise_##key, CIRCULAR_LIST_SUSPICION_LENGTH)
|
|
858
|
|
859 #define EXTERNAL_PROPERTY_LIST_LOOP_4(key, value, list, tail) \
|
|
860 Lisp_Object key, value, tail, tortoise_##key; \
|
424
|
861 EMACS_INT len_##key; \
|
|
862 EXTERNAL_PROPERTY_LIST_LOOP_7 (key, value, list, len_##key, tail, \
|
380
|
863 tortoise_##key, CIRCULAR_LIST_SUSPICION_LENGTH)
|
|
864
|
|
865 #define EXTERNAL_PROPERTY_LIST_LOOP_5(key, value, list, tail, len) \
|
|
866 Lisp_Object key, value, tail, tortoise_##key; \
|
424
|
867 EMACS_INT len; \
|
|
868 EXTERNAL_PROPERTY_LIST_LOOP_7 (key, value, list, len, tail, \
|
380
|
869 tortoise_##key, CIRCULAR_LIST_SUSPICION_LENGTH)
|
|
870
|
|
871
|
|
872 #define EXTERNAL_PROPERTY_LIST_LOOP_7(key, value, list, len, hare, \
|
|
873 tortoise, suspicion_length) \
|
|
874 for (tortoise = hare = list, len = 0; \
|
|
875 \
|
|
876 ((CONSP (hare) && \
|
|
877 (key = XCAR (hare), \
|
|
878 hare = XCDR (hare), \
|
|
879 CONSP (hare))) ? \
|
|
880 (value = XCAR (hare), 1) : \
|
|
881 (NILP (hare) ? 0 : \
|
|
882 (signal_malformed_property_list_error (list), 0))); \
|
|
883 \
|
|
884 hare = XCDR (hare), \
|
|
885 ((++len < suspicion_length) ? \
|
|
886 ((void) 0) : \
|
|
887 (((len & 1) ? \
|
|
888 ((void) (tortoise = XCDR (XCDR (tortoise)))) : \
|
|
889 ((void) 0)) \
|
|
890 , \
|
|
891 (EQ (hare, tortoise) ? \
|
|
892 ((void) signal_circular_property_list_error (list)) : \
|
|
893 ((void) 0)))))
|
|
894
|
|
895 /* For a property list (alternating keywords/values) that may not be
|
|
896 in valid list format -- will signal an error if the list is not in
|
|
897 valid format. CONSVAR is used to keep track of the iterations
|
|
898 without modifying PLIST.
|
|
899
|
|
900 We have to be tricky to still keep the same C format.*/
|
|
901 #define EXTERNAL_PROPERTY_LIST_LOOP(tail, key, value, plist) \
|
|
902 for (tail = plist; \
|
|
903 (CONSP (tail) && CONSP (XCDR (tail)) ? \
|
|
904 (key = XCAR (tail), value = XCAR (XCDR (tail))) : \
|
|
905 (key = Qunbound, value = Qunbound)), \
|
|
906 !NILP (tail); \
|
|
907 tail = XCDR (XCDR (tail))) \
|
|
908 if (UNBOUNDP (key)) \
|
|
909 Fsignal (Qmalformed_property_list, list1 (plist)); \
|
|
910 else
|
|
911
|
|
912 #define PROPERTY_LIST_LOOP(tail, key, value, plist) \
|
|
913 for (tail = plist; \
|
|
914 NILP (tail) ? 0 : \
|
|
915 (key = XCAR (tail), tail = XCDR (tail), \
|
|
916 value = XCAR (tail), tail = XCDR (tail), 1); \
|
|
917 )
|
|
918
|
|
919 /* Return 1 if LIST is properly acyclic and nil-terminated, else 0. */
|
412
|
920 INLINE int TRUE_LIST_P (Lisp_Object object);
|
|
921 INLINE int
|
272
|
922 TRUE_LIST_P (Lisp_Object object)
|
|
923 {
|
380
|
924 Lisp_Object hare, tortoise;
|
424
|
925 EMACS_INT len;
|
380
|
926
|
|
927 for (hare = tortoise = object, len = 0;
|
|
928 CONSP (hare);
|
|
929 hare = XCDR (hare), len++)
|
|
930 {
|
|
931 if (len < CIRCULAR_LIST_SUSPICION_LENGTH)
|
|
932 continue;
|
|
933
|
|
934 if (len & 1)
|
|
935 tortoise = XCDR (tortoise);
|
|
936 else if (EQ (hare, tortoise))
|
|
937 return 0;
|
|
938 }
|
|
939
|
|
940 return NILP (hare);
|
272
|
941 }
|
|
942
|
380
|
943 /* Signal an error if LIST is not properly acyclic and nil-terminated. */
|
|
944 #define CHECK_TRUE_LIST(list) do { \
|
|
945 Lisp_Object CTL_list = (list); \
|
|
946 Lisp_Object CTL_hare, CTL_tortoise; \
|
424
|
947 EMACS_INT CTL_len; \
|
380
|
948 \
|
|
949 for (CTL_hare = CTL_tortoise = CTL_list, CTL_len = 0; \
|
|
950 CONSP (CTL_hare); \
|
|
951 CTL_hare = XCDR (CTL_hare), CTL_len++) \
|
|
952 { \
|
|
953 if (CTL_len < CIRCULAR_LIST_SUSPICION_LENGTH) \
|
|
954 continue; \
|
|
955 \
|
|
956 if (CTL_len & 1) \
|
|
957 CTL_tortoise = XCDR (CTL_tortoise); \
|
|
958 else if (EQ (CTL_hare, CTL_tortoise)) \
|
|
959 Fsignal (Qcircular_list, list1 (CTL_list)); \
|
|
960 } \
|
|
961 \
|
|
962 if (! NILP (CTL_hare)) \
|
|
963 signal_malformed_list_error (CTL_list); \
|
272
|
964 } while (0)
|
|
965
|
0
|
966 /*********** string ***********/
|
|
967
|
|
968 struct Lisp_String
|
|
969 {
|
|
970 struct lrecord_header lheader;
|
380
|
971 Bytecount size;
|
|
972 Bufbyte *data;
|
0
|
973 Lisp_Object plist;
|
|
974 };
|
380
|
975 typedef struct Lisp_String Lisp_String;
|
0
|
976
|
380
|
977 DECLARE_LRECORD (string, Lisp_String);
|
|
978 #define XSTRING(x) XRECORD (x, string, Lisp_String)
|
0
|
979 #define XSETSTRING(x, p) XSETRECORD (x, p, string)
|
|
980 #define STRINGP(x) RECORDP (x, string)
|
|
981 #define CHECK_STRING(x) CHECK_RECORD (x, string)
|
|
982 #define CONCHECK_STRING(x) CONCHECK_RECORD (x, string)
|
|
983
|
70
|
984 #ifdef MULE
|
|
985
|
412
|
986 Charcount bytecount_to_charcount (CONST Bufbyte *ptr, Bytecount len);
|
|
987 Bytecount charcount_to_bytecount (CONST Bufbyte *ptr, Charcount len);
|
70
|
988
|
|
989 #else /* not MULE */
|
0
|
990
|
|
991 # define bytecount_to_charcount(ptr, len) (len)
|
|
992 # define charcount_to_bytecount(ptr, len) (len)
|
|
993
|
70
|
994 #endif /* not MULE */
|
|
995
|
380
|
996 #define string_length(s) ((s)->size)
|
14
|
997 #define XSTRING_LENGTH(s) string_length (XSTRING (s))
|
272
|
998 #define XSTRING_CHAR_LENGTH(s) string_char_length (XSTRING (s))
|
380
|
999 #define string_data(s) ((s)->data + 0)
|
14
|
1000 #define XSTRING_DATA(s) string_data (XSTRING (s))
|
380
|
1001 #define string_byte(s, i) ((s)->data[i] + 0)
|
14
|
1002 #define XSTRING_BYTE(s, i) string_byte (XSTRING (s), i)
|
380
|
1003 #define string_byte_addr(s, i) (&((s)->data[i]))
|
|
1004 #define set_string_length(s, len) ((void) ((s)->size = (len)))
|
|
1005 #define set_string_data(s, ptr) ((void) ((s)->data = (ptr)))
|
412
|
1006 #define set_string_byte(s, i, c) ((void) ((s)->data[i] = (c)))
|
380
|
1007
|
|
1008 void resize_string (Lisp_String *s, Bytecount pos, Bytecount delta);
|
0
|
1009
|
70
|
1010 #ifdef MULE
|
|
1011
|
412
|
1012 INLINE Charcount string_char_length (Lisp_String *s);
|
|
1013 INLINE Charcount
|
380
|
1014 string_char_length (Lisp_String *s)
|
70
|
1015 {
|
|
1016 return bytecount_to_charcount (string_data (s), string_length (s));
|
|
1017 }
|
|
1018
|
|
1019 # define string_char(s, i) charptr_emchar_n (string_data (s), i)
|
|
1020 # define string_char_addr(s, i) charptr_n_addr (string_data (s), i)
|
380
|
1021 void set_string_char (Lisp_String *s, Charcount i, Emchar c);
|
70
|
1022
|
|
1023 #else /* not MULE */
|
|
1024
|
0
|
1025 # define string_char_length(s) string_length (s)
|
|
1026 # define string_char(s, i) ((Emchar) string_byte (s, i))
|
|
1027 # define string_char_addr(s, i) string_byte_addr (s, i)
|
412
|
1028 # define set_string_char(s, i, c) set_string_byte (s, i, c)
|
0
|
1029
|
70
|
1030 #endif /* not MULE */
|
0
|
1031
|
|
1032 /*********** vector ***********/
|
|
1033
|
|
1034 struct Lisp_Vector
|
|
1035 {
|
207
|
1036 struct lcrecord_header header;
|
0
|
1037 long size;
|
|
1038 /* next is now chained through v->contents[size], terminated by Qzero.
|
2
|
1039 This means that pure vectors don't need a "next" */
|
0
|
1040 /* struct Lisp_Vector *next; */
|
|
1041 Lisp_Object contents[1];
|
|
1042 };
|
380
|
1043 typedef struct Lisp_Vector Lisp_Vector;
|
0
|
1044
|
380
|
1045 DECLARE_LRECORD (vector, Lisp_Vector);
|
|
1046 #define XVECTOR(x) XRECORD (x, vector, Lisp_Vector)
|
0
|
1047 #define XSETVECTOR(x, p) XSETRECORD (x, p, vector)
|
|
1048 #define VECTORP(x) RECORDP (x, vector)
|
|
1049 #define CHECK_VECTOR(x) CHECK_RECORD (x, vector)
|
|
1050 #define CONCHECK_VECTOR(x) CONCHECK_RECORD (x, vector)
|
|
1051
|
|
1052 #define vector_length(v) ((v)->size)
|
173
|
1053 #define XVECTOR_LENGTH(s) vector_length (XVECTOR (s))
|
0
|
1054 #define vector_data(v) ((v)->contents)
|
173
|
1055 #define XVECTOR_DATA(s) vector_data (XVECTOR (s))
|
|
1056
|
0
|
1057 /*********** bit vector ***********/
|
|
1058
|
|
1059 #if (LONGBITS < 16)
|
14
|
1060 #error What the hell?!
|
0
|
1061 #elif (LONGBITS < 32)
|
|
1062 # define LONGBITS_LOG2 4
|
|
1063 # define LONGBITS_POWER_OF_2 16
|
|
1064 #elif (LONGBITS < 64)
|
|
1065 # define LONGBITS_LOG2 5
|
|
1066 # define LONGBITS_POWER_OF_2 32
|
|
1067 #elif (LONGBITS < 128)
|
|
1068 # define LONGBITS_LOG2 6
|
|
1069 # define LONGBITS_POWER_OF_2 64
|
|
1070 #else
|
|
1071 #error You really have 128-bit integers?!
|
|
1072 #endif
|
|
1073
|
|
1074 struct Lisp_Bit_Vector
|
|
1075 {
|
|
1076 struct lrecord_header lheader;
|
|
1077 Lisp_Object next;
|
380
|
1078 size_t size;
|
377
|
1079 unsigned long bits[1];
|
0
|
1080 };
|
380
|
1081 typedef struct Lisp_Bit_Vector Lisp_Bit_Vector;
|
|
1082
|
|
1083 DECLARE_LRECORD (bit_vector, Lisp_Bit_Vector);
|
|
1084 #define XBIT_VECTOR(x) XRECORD (x, bit_vector, Lisp_Bit_Vector)
|
0
|
1085 #define XSETBIT_VECTOR(x, p) XSETRECORD (x, p, bit_vector)
|
|
1086 #define BIT_VECTORP(x) RECORDP (x, bit_vector)
|
|
1087 #define CHECK_BIT_VECTOR(x) CHECK_RECORD (x, bit_vector)
|
|
1088 #define CONCHECK_BIT_VECTOR(x) CONCHECK_RECORD (x, bit_vector)
|
|
1089
|
|
1090 #define BITP(x) (INTP (x) && (XINT (x) == 0 || XINT (x) == 1))
|
|
1091
|
272
|
1092 #define CHECK_BIT(x) do { \
|
|
1093 if (!BITP (x)) \
|
|
1094 dead_wrong_type_argument (Qbitp, x);\
|
|
1095 } while (0)
|
|
1096
|
|
1097 #define CONCHECK_BIT(x) do { \
|
|
1098 if (!BITP (x)) \
|
|
1099 x = wrong_type_argument (Qbitp, x); \
|
|
1100 } while (0)
|
0
|
1101
|
|
1102 #define bit_vector_length(v) ((v)->size)
|
|
1103 #define bit_vector_next(v) ((v)->next)
|
|
1104
|
424
|
1105 INLINE int bit_vector_bit (Lisp_Bit_Vector *v, size_t n);
|
412
|
1106 INLINE int
|
424
|
1107 bit_vector_bit (Lisp_Bit_Vector *v, size_t n)
|
0
|
1108 {
|
424
|
1109 return ((v->bits[n >> LONGBITS_LOG2] >> (n & (LONGBITS_POWER_OF_2 - 1)))
|
0
|
1110 & 1);
|
|
1111 }
|
|
1112
|
424
|
1113 INLINE void set_bit_vector_bit (Lisp_Bit_Vector *v, size_t n, int value);
|
412
|
1114 INLINE void
|
424
|
1115 set_bit_vector_bit (Lisp_Bit_Vector *v, size_t n, int value)
|
0
|
1116 {
|
|
1117 if (value)
|
424
|
1118 v->bits[n >> LONGBITS_LOG2] |= (1UL << (n & (LONGBITS_POWER_OF_2 - 1)));
|
0
|
1119 else
|
424
|
1120 v->bits[n >> LONGBITS_LOG2] &= ~(1UL << (n & (LONGBITS_POWER_OF_2 - 1)));
|
0
|
1121 }
|
|
1122
|
|
1123 /* Number of longs required to hold LEN bits */
|
|
1124 #define BIT_VECTOR_LONG_STORAGE(len) \
|
412
|
1125 ((len + LONGBITS_POWER_OF_2 - 1) >> LONGBITS_LOG2)
|
0
|
1126
|
|
1127
|
|
1128 /*********** symbol ***********/
|
|
1129
|
|
1130 struct Lisp_Symbol
|
|
1131 {
|
|
1132 struct lrecord_header lheader;
|
|
1133 /* next symbol in this obarray bucket */
|
412
|
1134 struct Lisp_Symbol *next;
|
|
1135 struct Lisp_String *name;
|
0
|
1136 Lisp_Object value;
|
|
1137 Lisp_Object function;
|
|
1138 Lisp_Object plist;
|
|
1139 };
|
412
|
1140 typedef struct Lisp_Symbol Lisp_Symbol;
|
398
|
1141
|
|
1142 #define SYMBOL_IS_KEYWORD(sym) \
|
|
1143 ((string_byte (symbol_name (XSYMBOL (sym)), 0) == ':') \
|
|
1144 && EQ (sym, oblookup (Vobarray, \
|
|
1145 string_data (symbol_name (XSYMBOL (sym))), \
|
|
1146 string_length (symbol_name (XSYMBOL (sym))))))
|
0
|
1147 #define KEYWORDP(obj) (SYMBOLP (obj) && SYMBOL_IS_KEYWORD (obj))
|
|
1148
|
380
|
1149 DECLARE_LRECORD (symbol, Lisp_Symbol);
|
|
1150 #define XSYMBOL(x) XRECORD (x, symbol, Lisp_Symbol)
|
0
|
1151 #define XSETSYMBOL(x, p) XSETRECORD (x, p, symbol)
|
|
1152 #define SYMBOLP(x) RECORDP (x, symbol)
|
|
1153 #define CHECK_SYMBOL(x) CHECK_RECORD (x, symbol)
|
|
1154 #define CONCHECK_SYMBOL(x) CONCHECK_RECORD (x, symbol)
|
|
1155
|
|
1156 #define symbol_next(s) ((s)->next)
|
|
1157 #define symbol_name(s) ((s)->name)
|
|
1158 #define symbol_value(s) ((s)->value)
|
|
1159 #define symbol_function(s) ((s)->function)
|
|
1160 #define symbol_plist(s) ((s)->plist)
|
|
1161
|
|
1162 /*********** subr ***********/
|
|
1163
|
280
|
1164 typedef Lisp_Object (*lisp_fn_t) (void);
|
84
|
1165
|
0
|
1166 struct Lisp_Subr
|
|
1167 {
|
|
1168 struct lrecord_header lheader;
|
412
|
1169 short min_args, max_args;
|
|
1170 CONST char *prompt;
|
|
1171 CONST char *doc;
|
|
1172 CONST char *name;
|
74
|
1173 lisp_fn_t subr_fn;
|
0
|
1174 };
|
380
|
1175 typedef struct Lisp_Subr Lisp_Subr;
|
|
1176
|
|
1177 DECLARE_LRECORD (subr, Lisp_Subr);
|
|
1178 #define XSUBR(x) XRECORD (x, subr, Lisp_Subr)
|
0
|
1179 #define XSETSUBR(x, p) XSETRECORD (x, p, subr)
|
|
1180 #define SUBRP(x) RECORDP (x, subr)
|
|
1181 #define CHECK_SUBR(x) CHECK_RECORD (x, subr)
|
|
1182 #define CONCHECK_SUBR(x) CONCHECK_RECORD (x, subr)
|
|
1183
|
412
|
1184 #define subr_function(subr) (subr)->subr_fn
|
|
1185 #define subr_name(subr) (subr)->name
|
0
|
1186
|
|
1187 /*********** marker ***********/
|
|
1188
|
|
1189 struct Lisp_Marker
|
|
1190 {
|
|
1191 struct lrecord_header lheader;
|
412
|
1192 struct Lisp_Marker *next, *prev;
|
0
|
1193 struct buffer *buffer;
|
|
1194 Memind memind;
|
|
1195 char insertion_type;
|
|
1196 };
|
412
|
1197 typedef struct Lisp_Marker Lisp_Marker;
|
380
|
1198
|
|
1199 DECLARE_LRECORD (marker, Lisp_Marker);
|
|
1200 #define XMARKER(x) XRECORD (x, marker, Lisp_Marker)
|
0
|
1201 #define XSETMARKER(x, p) XSETRECORD (x, p, marker)
|
|
1202 #define MARKERP(x) RECORDP (x, marker)
|
|
1203 #define CHECK_MARKER(x) CHECK_RECORD (x, marker)
|
|
1204 #define CONCHECK_MARKER(x) CONCHECK_RECORD (x, marker)
|
|
1205
|
|
1206 /* The second check was looking for GCed markers still in use */
|
|
1207 /* if (INTP (XMARKER (x)->lheader.next.v)) abort (); */
|
|
1208
|
|
1209 #define marker_next(m) ((m)->next)
|
|
1210 #define marker_prev(m) ((m)->prev)
|
|
1211
|
|
1212 /*********** char ***********/
|
|
1213
|
185
|
1214 #define CHARP(x) (XTYPE (x) == Lisp_Type_Char)
|
0
|
1215
|
|
1216 #ifdef ERROR_CHECK_TYPECHECK
|
|
1217
|
412
|
1218 INLINE Emchar XCHAR (Lisp_Object obj);
|
|
1219 INLINE Emchar
|
0
|
1220 XCHAR (Lisp_Object obj)
|
|
1221 {
|
70
|
1222 assert (CHARP (obj));
|
207
|
1223 return XCHARVAL (obj);
|
0
|
1224 }
|
|
1225
|
|
1226 #else
|
|
1227
|
412
|
1228 #define XCHAR(x) XCHARVAL (x)
|
0
|
1229
|
|
1230 #endif
|
|
1231
|
185
|
1232 #define CHECK_CHAR(x) CHECK_NONRECORD (x, Lisp_Type_Char, Qcharacterp)
|
|
1233 #define CONCHECK_CHAR(x) CONCHECK_NONRECORD (x, Lisp_Type_Char, Qcharacterp)
|
0
|
1234
|
|
1235
|
|
1236 /*********** float ***********/
|
|
1237
|
|
1238 #ifdef LISP_FLOAT_TYPE
|
|
1239
|
380
|
1240 /* Note: the 'unused_next_' field exists only to ensure that the
|
290
|
1241 `next' pointer fits within the structure, for the purposes of the
|
|
1242 free list. This makes a difference in the unlikely case of
|
|
1243 sizeof(double) being smaller than sizeof(void *). */
|
282
|
1244
|
0
|
1245 struct Lisp_Float
|
|
1246 {
|
|
1247 struct lrecord_header lheader;
|
380
|
1248 union { double d; struct Lisp_Float *unused_next_; } data;
|
0
|
1249 };
|
380
|
1250 typedef struct Lisp_Float Lisp_Float;
|
|
1251
|
|
1252 DECLARE_LRECORD (float, Lisp_Float);
|
|
1253 #define XFLOAT(x) XRECORD (x, float, Lisp_Float)
|
0
|
1254 #define XSETFLOAT(x, p) XSETRECORD (x, p, float)
|
|
1255 #define FLOATP(x) RECORDP (x, float)
|
|
1256 #define CHECK_FLOAT(x) CHECK_RECORD (x, float)
|
|
1257 #define CONCHECK_FLOAT(x) CONCHECK_RECORD (x, float)
|
|
1258
|
282
|
1259 #define float_data(f) ((f)->data.d)
|
380
|
1260 #define XFLOAT_DATA(x) float_data (XFLOAT (x))
|
0
|
1261
|
|
1262 #define XFLOATINT(n) extract_float (n)
|
|
1263
|
272
|
1264 #define CHECK_INT_OR_FLOAT(x) do { \
|
|
1265 if (!INT_OR_FLOATP (x)) \
|
|
1266 dead_wrong_type_argument (Qnumberp, x); \
|
|
1267 } while (0)
|
|
1268
|
|
1269 #define CONCHECK_INT_OR_FLOAT(x) do { \
|
|
1270 if (!INT_OR_FLOATP (x)) \
|
|
1271 x = wrong_type_argument (Qnumberp, x); \
|
|
1272 } while (0)
|
0
|
1273
|
|
1274 # define INT_OR_FLOATP(x) (INTP (x) || FLOATP (x))
|
|
1275
|
|
1276 #else /* not LISP_FLOAT_TYPE */
|
|
1277
|
|
1278 #define XFLOAT(x) --- error! No float support. ---
|
|
1279 #define XSETFLOAT(x, p) --- error! No float support. ---
|
|
1280 #define FLOATP(x) 0
|
|
1281 #define CHECK_FLOAT(x) --- error! No float support. ---
|
|
1282 #define CONCHECK_FLOAT(x) --- error! No float support. ---
|
|
1283
|
|
1284 #define XFLOATINT(n) XINT(n)
|
|
1285 #define CHECK_INT_OR_FLOAT CHECK_INT
|
|
1286 #define CONCHECK_INT_OR_FLOAT CONCHECK_INT
|
424
|
1287 #define INT_OR_FLOATP(x) INTP (x)
|
0
|
1288
|
|
1289 #endif /* not LISP_FLOAT_TYPE */
|
|
1290
|
272
|
1291 /*********** int ***********/
|
|
1292
|
0
|
1293 #define ZEROP(x) EQ (x, Qzero)
|
|
1294
|
|
1295 #ifdef ERROR_CHECK_TYPECHECK
|
|
1296
|
412
|
1297 INLINE EMACS_INT XINT (Lisp_Object obj);
|
|
1298 INLINE EMACS_INT
|
0
|
1299 XINT (Lisp_Object obj)
|
|
1300 {
|
|
1301 assert (INTP (obj));
|
|
1302 return XREALINT (obj);
|
|
1303 }
|
|
1304
|
412
|
1305 INLINE EMACS_INT XCHAR_OR_INT (Lisp_Object obj);
|
|
1306 INLINE EMACS_INT
|
207
|
1307 XCHAR_OR_INT (Lisp_Object obj)
|
|
1308 {
|
|
1309 assert (INTP (obj) || CHARP (obj));
|
|
1310 return CHARP (obj) ? XCHAR (obj) : XINT (obj);
|
|
1311 }
|
|
1312
|
272
|
1313 #else /* no error checking */
|
|
1314
|
|
1315 #define XINT(obj) XREALINT (obj)
|
|
1316 #define XCHAR_OR_INT(obj) (CHARP (obj) ? XCHAR (obj) : XINT (obj))
|
|
1317
|
|
1318 #endif /* no error checking */
|
|
1319
|
|
1320 #define CHECK_INT(x) do { \
|
|
1321 if (!INTP (x)) \
|
|
1322 dead_wrong_type_argument (Qintegerp, x); \
|
|
1323 } while (0)
|
|
1324
|
|
1325 #define CONCHECK_INT(x) do { \
|
|
1326 if (!INTP (x)) \
|
|
1327 x = wrong_type_argument (Qintegerp, x); \
|
|
1328 } while (0)
|
0
|
1329
|
|
1330 #define NATNUMP(x) (INTP (x) && XINT (x) >= 0)
|
|
1331
|
272
|
1332 #define CHECK_NATNUM(x) do { \
|
|
1333 if (!NATNUMP (x)) \
|
|
1334 dead_wrong_type_argument (Qnatnump, x); \
|
|
1335 } while (0)
|
|
1336
|
|
1337 #define CONCHECK_NATNUM(x) do { \
|
|
1338 if (!NATNUMP (x)) \
|
|
1339 x = wrong_type_argument (Qnatnump, x); \
|
|
1340 } while (0)
|
0
|
1341
|
|
1342 /* next three always continuable because they coerce their arguments. */
|
272
|
1343 #define CHECK_INT_COERCE_CHAR(x) do { \
|
|
1344 if (INTP (x)) \
|
185
|
1345 ; \
|
|
1346 else if (CHARP (x)) \
|
|
1347 x = make_int (XCHAR (x)); \
|
|
1348 else \
|
|
1349 x = wrong_type_argument (Qinteger_or_char_p, x); \
|
16
|
1350 } while (0)
|
0
|
1351
|
272
|
1352 #define CHECK_INT_COERCE_MARKER(x) do { \
|
|
1353 if (INTP (x)) \
|
185
|
1354 ; \
|
|
1355 else if (MARKERP (x)) \
|
|
1356 x = make_int (marker_position (x)); \
|
|
1357 else \
|
|
1358 x = wrong_type_argument (Qinteger_or_marker_p, x); \
|
16
|
1359 } while (0)
|
0
|
1360
|
272
|
1361 #define CHECK_INT_COERCE_CHAR_OR_MARKER(x) do { \
|
|
1362 if (INTP (x)) \
|
185
|
1363 ; \
|
|
1364 else if (CHARP (x)) \
|
|
1365 x = make_int (XCHAR (x)); \
|
|
1366 else if (MARKERP (x)) \
|
|
1367 x = make_int (marker_position (x)); \
|
|
1368 else \
|
|
1369 x = wrong_type_argument (Qinteger_char_or_marker_p, x); \
|
16
|
1370 } while (0)
|
0
|
1371
|
380
|
1372
|
398
|
1373 /*********** readonly objects ***********/
|
412
|
1374
|
398
|
1375 #define CHECK_C_WRITEABLE(obj) \
|
|
1376 do { if (c_readonly (obj)) c_write_error (obj); } while (0)
|
|
1377
|
|
1378 #define CHECK_LISP_WRITEABLE(obj) \
|
|
1379 do { if (lisp_readonly (obj)) lisp_write_error (obj); } while (0)
|
|
1380
|
|
1381 #define C_READONLY(obj) (C_READONLY_RECORD_HEADER_P(XRECORD_LHEADER (obj)))
|
|
1382 #define LISP_READONLY(obj) (LISP_READONLY_RECORD_HEADER_P(XRECORD_LHEADER (obj)))
|
0
|
1383
|
|
1384 /*********** structures ***********/
|
|
1385
|
185
|
1386 typedef struct structure_keyword_entry structure_keyword_entry;
|
0
|
1387 struct structure_keyword_entry
|
|
1388 {
|
|
1389 Lisp_Object keyword;
|
|
1390 int (*validate) (Lisp_Object keyword, Lisp_Object value,
|
|
1391 Error_behavior errb);
|
|
1392 };
|
|
1393
|
185
|
1394 typedef struct
|
0
|
1395 {
|
185
|
1396 Dynarr_declare (structure_keyword_entry);
|
|
1397 } structure_keyword_entry_dynarr;
|
0
|
1398
|
185
|
1399 typedef struct structure_type structure_type;
|
0
|
1400 struct structure_type
|
|
1401 {
|
|
1402 Lisp_Object type;
|
185
|
1403 structure_keyword_entry_dynarr *keywords;
|
0
|
1404 int (*validate) (Lisp_Object data, Error_behavior errb);
|
|
1405 Lisp_Object (*instantiate) (Lisp_Object data);
|
|
1406 };
|
|
1407
|
185
|
1408 typedef struct
|
0
|
1409 {
|
185
|
1410 Dynarr_declare (structure_type);
|
|
1411 } structure_type_dynarr;
|
0
|
1412
|
|
1413 struct structure_type *define_structure_type (Lisp_Object type,
|
|
1414 int (*validate)
|
|
1415 (Lisp_Object data,
|
|
1416 Error_behavior errb),
|
|
1417 Lisp_Object (*instantiate)
|
|
1418 (Lisp_Object data));
|
|
1419 void define_structure_type_keyword (struct structure_type *st,
|
|
1420 Lisp_Object keyword,
|
|
1421 int (*validate) (Lisp_Object keyword,
|
|
1422 Lisp_Object value,
|
|
1423 Error_behavior errb));
|
|
1424
|
|
1425 /*********** weak lists ***********/
|
|
1426
|
|
1427 enum weak_list_type
|
|
1428 {
|
|
1429 /* element disappears if it's unmarked. */
|
|
1430 WEAK_LIST_SIMPLE,
|
|
1431 /* element disappears if it's a cons and either its car or
|
|
1432 cdr is unmarked. */
|
|
1433 WEAK_LIST_ASSOC,
|
|
1434 /* element disappears if it's a cons and its car is unmarked. */
|
|
1435 WEAK_LIST_KEY_ASSOC,
|
|
1436 /* element disappears if it's a cons and its cdr is unmarked. */
|
412
|
1437 WEAK_LIST_VALUE_ASSOC
|
0
|
1438 };
|
|
1439
|
|
1440 struct weak_list
|
|
1441 {
|
|
1442 struct lcrecord_header header;
|
|
1443 Lisp_Object list; /* don't mark through this! */
|
|
1444 enum weak_list_type type;
|
|
1445 Lisp_Object next_weak; /* don't mark through this! */
|
|
1446 };
|
|
1447
|
|
1448 DECLARE_LRECORD (weak_list, struct weak_list);
|
|
1449 #define XWEAK_LIST(x) XRECORD (x, weak_list, struct weak_list)
|
|
1450 #define XSETWEAK_LIST(x, p) XSETRECORD (x, p, weak_list)
|
|
1451 #define WEAK_LISTP(x) RECORDP (x, weak_list)
|
|
1452 #define CHECK_WEAK_LIST(x) CHECK_RECORD (x, weak_list)
|
|
1453 #define CONCHECK_WEAK_LIST(x) CONCHECK_RECORD (x, weak_list)
|
|
1454
|
|
1455 #define weak_list_list(w) ((w)->list)
|
|
1456 #define XWEAK_LIST_LIST(w) (XWEAK_LIST (w)->list)
|
|
1457
|
|
1458 Lisp_Object make_weak_list (enum weak_list_type type);
|
|
1459 /* The following two are only called by the garbage collector */
|
424
|
1460 int finish_marking_weak_lists (void);
|
|
1461 void prune_weak_lists (void);
|
0
|
1462
|
|
1463 /*********** lcrecord lists ***********/
|
|
1464
|
|
1465 struct lcrecord_list
|
|
1466 {
|
|
1467 struct lcrecord_header header;
|
|
1468 Lisp_Object free;
|
272
|
1469 size_t size;
|
412
|
1470 CONST struct lrecord_implementation *implementation;
|
0
|
1471 };
|
|
1472
|
|
1473 DECLARE_LRECORD (lcrecord_list, struct lcrecord_list);
|
|
1474 #define XLCRECORD_LIST(x) XRECORD (x, lcrecord_list, struct lcrecord_list)
|
|
1475 #define XSETLCRECORD_LIST(x, p) XSETRECORD (x, p, lcrecord_list)
|
|
1476 #define LCRECORD_LISTP(x) RECORDP (x, lcrecord_list)
|
|
1477 /* #define CHECK_LCRECORD_LIST(x) CHECK_RECORD (x, lcrecord_list)
|
|
1478 Lcrecord lists should never escape to the Lisp level, so
|
|
1479 functions should not be doing this. */
|
|
1480
|
272
|
1481 Lisp_Object make_lcrecord_list (size_t size,
|
412
|
1482 CONST struct lrecord_implementation
|
0
|
1483 *implementation);
|
|
1484 Lisp_Object allocate_managed_lcrecord (Lisp_Object lcrecord_list);
|
|
1485 void free_managed_lcrecord (Lisp_Object lcrecord_list, Lisp_Object lcrecord);
|
|
1486
|
|
1487
|
|
1488 /************************************************************************/
|
380
|
1489 /* Definitions of primitive Lisp functions and variables */
|
0
|
1490 /************************************************************************/
|
|
1491
|
16
|
1492
|
|
1493 /* DEFUN - Define a built-in Lisp-visible C function or `subr'.
|
0
|
1494 `lname' should be the name to give the function in Lisp,
|
|
1495 as a null-terminated C string.
|
16
|
1496 `Fname' should be the C equivalent of `lname', using only characters
|
|
1497 valid in a C identifier, with an "F" prepended.
|
20
|
1498 The name of the C constant structure that records information
|
|
1499 on this function for internal use is "S" concatenated with Fname.
|
380
|
1500 `min_args' should be a number, the minimum number of arguments allowed.
|
|
1501 `max_args' should be a number, the maximum number of arguments allowed,
|
0
|
1502 or else MANY or UNEVALLED.
|
|
1503 MANY means pass a vector of evaluated arguments,
|
|
1504 in the form of an integer number-of-arguments
|
|
1505 followed by the address of a vector of Lisp_Objects
|
|
1506 which contains the argument values.
|
16
|
1507 UNEVALLED means pass the list of unevaluated arguments.
|
0
|
1508 `prompt' says how to read arguments for an interactive call.
|
|
1509 See the doc string for `interactive'.
|
|
1510 A null string means call interactively with no arguments.
|
16
|
1511 `arglist' are the comma-separated arguments (always Lisp_Objects) for
|
|
1512 the function.
|
|
1513 The docstring for the function is placed as a "C" comment between
|
|
1514 the prompt and the `args' argument. make-docfile reads the
|
272
|
1515 comment and creates the DOC file from it.
|
0
|
1516 */
|
|
1517
|
272
|
1518 #define EXFUN_0 void
|
|
1519 #define EXFUN_1 Lisp_Object
|
|
1520 #define EXFUN_2 Lisp_Object,Lisp_Object
|
|
1521 #define EXFUN_3 Lisp_Object,Lisp_Object,Lisp_Object
|
|
1522 #define EXFUN_4 Lisp_Object,Lisp_Object,Lisp_Object,Lisp_Object
|
|
1523 #define EXFUN_5 Lisp_Object,Lisp_Object,Lisp_Object,Lisp_Object,Lisp_Object
|
|
1524 #define EXFUN_6 Lisp_Object,Lisp_Object,Lisp_Object,Lisp_Object,Lisp_Object, \
|
|
1525 Lisp_Object
|
|
1526 #define EXFUN_7 Lisp_Object,Lisp_Object,Lisp_Object,Lisp_Object,Lisp_Object, \
|
|
1527 Lisp_Object,Lisp_Object
|
|
1528 #define EXFUN_8 Lisp_Object,Lisp_Object,Lisp_Object,Lisp_Object,Lisp_Object, \
|
|
1529 Lisp_Object,Lisp_Object,Lisp_Object
|
|
1530 #define EXFUN_MANY int, Lisp_Object*
|
|
1531 #define EXFUN_UNEVALLED Lisp_Object
|
380
|
1532 #define EXFUN(sym, max_args) Lisp_Object sym (EXFUN_##max_args)
|
272
|
1533
|
|
1534 #define SUBR_MAX_ARGS 8
|
0
|
1535 #define MANY -2
|
|
1536 #define UNEVALLED -1
|
|
1537
|
|
1538 /* Can't be const, because then subr->doc is read-only and
|
16
|
1539 Snarf_documentation chokes */
|
20
|
1540
|
420
|
1541 #define subr_lheader_initializer { 0, 0, 0, 0 }
|
412
|
1542
|
380
|
1543 #define DEFUN(lname, Fname, min_args, max_args, prompt, arglist) \
|
|
1544 Lisp_Object Fname (EXFUN_##max_args); \
|
412
|
1545 static struct Lisp_Subr S##Fname = { subr_lheader_initializer, \
|
|
1546 min_args, max_args, prompt, 0, lname, (lisp_fn_t) Fname }; \
|
380
|
1547 Lisp_Object Fname (DEFUN_##max_args arglist)
|
20
|
1548
|
16
|
1549 /* Heavy ANSI C preprocessor hackery to get DEFUN to declare a
|
380
|
1550 prototype that matches max_args, and add the obligatory
|
16
|
1551 `Lisp_Object' type declaration to the formal C arguments. */
|
0
|
1552
|
20
|
1553 #define DEFUN_MANY(named_int, named_Lisp_Object) named_int, named_Lisp_Object
|
16
|
1554 #define DEFUN_UNEVALLED(args) Lisp_Object args
|
|
1555 #define DEFUN_0() void
|
272
|
1556 #define DEFUN_1(a) Lisp_Object a
|
|
1557 #define DEFUN_2(a,b) DEFUN_1(a), Lisp_Object b
|
|
1558 #define DEFUN_3(a,b,c) DEFUN_2(a,b), Lisp_Object c
|
|
1559 #define DEFUN_4(a,b,c,d) DEFUN_3(a,b,c), Lisp_Object d
|
|
1560 #define DEFUN_5(a,b,c,d,e) DEFUN_4(a,b,c,d), Lisp_Object e
|
|
1561 #define DEFUN_6(a,b,c,d,e,f) DEFUN_5(a,b,c,d,e), Lisp_Object f
|
|
1562 #define DEFUN_7(a,b,c,d,e,f,g) DEFUN_6(a,b,c,d,e,f), Lisp_Object g
|
|
1563 #define DEFUN_8(a,b,c,d,e,f,g,h) DEFUN_7(a,b,c,d,e,f,g),Lisp_Object h
|
84
|
1564
|
380
|
1565 /* WARNING: If you add defines here for higher values of max_args,
|
|
1566 make sure to also fix the clauses in PRIMITIVE_FUNCALL(),
|
16
|
1567 and change the define of SUBR_MAX_ARGS above. */
|
0
|
1568
|
|
1569 #include "symeval.h"
|
|
1570
|
380
|
1571 /* `specpdl' is the special binding/unwind-protect stack.
|
|
1572
|
|
1573 Knuth says (see the Jargon File):
|
|
1574 At MIT, `pdl' [abbreviation for `Push Down List'] used to
|
|
1575 be a more common synonym for `stack'.
|
|
1576 Everywhere else `stack' seems to be the preferred term.
|
|
1577
|
|
1578 specpdl_depth is the current depth of `specpdl'.
|
|
1579 Save this for use later as arg to `unbind_to'. */
|
|
1580 extern int specpdl_depth_counter;
|
|
1581 #define specpdl_depth() specpdl_depth_counter
|
0
|
1582
|
|
1583
|
|
1584 /************************************************************************/
|
380
|
1585 /* Checking for QUIT */
|
0
|
1586 /************************************************************************/
|
|
1587
|
|
1588 /* Asynchronous events set something_happened, and then are processed
|
|
1589 within the QUIT macro. At this point, we are guaranteed to not be in
|
|
1590 any sensitive code. */
|
|
1591
|
|
1592 extern volatile int something_happened;
|
|
1593 int check_what_happened (void);
|
|
1594
|
|
1595 extern volatile int quit_check_signal_happened;
|
|
1596 extern volatile int quit_check_signal_tick_count;
|
|
1597 int check_quit (void);
|
|
1598
|
|
1599 void signal_quit (void);
|
|
1600
|
|
1601 /* Nonzero if ought to quit now. */
|
272
|
1602 #define QUITP \
|
|
1603 ((quit_check_signal_happened ? check_quit () : 0), \
|
|
1604 (!NILP (Vquit_flag) && (NILP (Vinhibit_quit) \
|
84
|
1605 || EQ (Vquit_flag, Qcritical))))
|
0
|
1606
|
|
1607 /* QUIT used to call QUITP, but there are some places where QUITP
|
|
1608 is called directly, and check_what_happened() should only be called
|
|
1609 when Emacs is actually ready to quit because it could do things
|
|
1610 like switch threads. */
|
272
|
1611 #define INTERNAL_QUITP \
|
|
1612 ((something_happened ? check_what_happened () : 0), \
|
|
1613 (!NILP (Vquit_flag) && \
|
0
|
1614 (NILP (Vinhibit_quit) || EQ (Vquit_flag, Qcritical))))
|
|
1615
|
272
|
1616 #define INTERNAL_REALLY_QUITP \
|
|
1617 (check_what_happened (), \
|
|
1618 (!NILP (Vquit_flag) && \
|
0
|
1619 (NILP (Vinhibit_quit) || EQ (Vquit_flag, Qcritical))))
|
|
1620
|
|
1621 /* Check quit-flag and quit if it is non-nil. Also do any other things
|
|
1622 that might have gotten queued until it was safe. */
|
16
|
1623 #define QUIT do { if (INTERNAL_QUITP) signal_quit (); } while (0)
|
0
|
1624
|
16
|
1625 #define REALLY_QUIT do { if (INTERNAL_REALLY_QUITP) signal_quit (); } while (0)
|
0
|
1626
|
|
1627
|
|
1628 /************************************************************************/
|
380
|
1629 /* hashing */
|
0
|
1630 /************************************************************************/
|
|
1631
|
16
|
1632 /* #### for a 64-bit machine, we should substitute a prime just over 2^32 */
|
|
1633 #define GOOD_HASH 65599 /* prime number just over 2^16; Dragon book, p. 435 */
|
|
1634 #define HASH2(a,b) (GOOD_HASH * (a) + (b))
|
|
1635 #define HASH3(a,b,c) (GOOD_HASH * HASH2 (a,b) + (c))
|
|
1636 #define HASH4(a,b,c,d) (GOOD_HASH * HASH3 (a,b,c) + (d))
|
|
1637 #define HASH5(a,b,c,d,e) (GOOD_HASH * HASH4 (a,b,c,d) + (e))
|
|
1638 #define HASH6(a,b,c,d,e,f) (GOOD_HASH * HASH5 (a,b,c,d,e) + (f))
|
|
1639 #define HASH7(a,b,c,d,e,f,g) (GOOD_HASH * HASH6 (a,b,c,d,e,f) + (g))
|
|
1640 #define HASH8(a,b,c,d,e,f,g,h) (GOOD_HASH * HASH7 (a,b,c,d,e,f,g) + (h))
|
|
1641 #define HASH9(a,b,c,d,e,f,g,h,i) (GOOD_HASH * HASH8 (a,b,c,d,e,f,g,h) + (i))
|
0
|
1642
|
|
1643 #define LISP_HASH(obj) ((unsigned long) LISP_TO_VOID (obj))
|
412
|
1644 unsigned long string_hash (CONST void *xv);
|
|
1645 unsigned long memory_hash (CONST void *xv, size_t size);
|
0
|
1646 unsigned long internal_hash (Lisp_Object obj, int depth);
|
|
1647 unsigned long internal_array_hash (Lisp_Object *arr, int size, int depth);
|
|
1648
|
|
1649
|
|
1650 /************************************************************************/
|
380
|
1651 /* String translation */
|
0
|
1652 /************************************************************************/
|
|
1653
|
|
1654 #ifdef I18N3
|
|
1655 #ifdef HAVE_LIBINTL_H
|
|
1656 #include <libintl.h>
|
|
1657 #else
|
412
|
1658 char *dgettext (CONST char *, CONST char *);
|
|
1659 char *gettext (CONST char *);
|
|
1660 char *textdomain (CONST char *);
|
|
1661 char *bindtextdomain (CONST char *, CONST char *);
|
0
|
1662 #endif /* HAVE_LIBINTL_H */
|
|
1663
|
|
1664 #define GETTEXT(x) gettext(x)
|
|
1665 #define LISP_GETTEXT(x) Fgettext (x)
|
|
1666 #else /* !I18N3 */
|
|
1667 #define GETTEXT(x) (x)
|
|
1668 #define LISP_GETTEXT(x) (x)
|
|
1669 #endif /* !I18N3 */
|
|
1670
|
|
1671 /* DEFER_GETTEXT is used to identify strings which are translated when
|
|
1672 they are referenced instead of when they are defined.
|
|
1673 These include Qerror_messages and initialized arrays of strings.
|
|
1674 */
|
|
1675 #define DEFER_GETTEXT(x) (x)
|
|
1676
|
|
1677
|
|
1678 /************************************************************************/
|
380
|
1679 /* Garbage collection / GC-protection */
|
0
|
1680 /************************************************************************/
|
|
1681
|
|
1682 /* number of bytes of structure consed since last GC */
|
|
1683
|
|
1684 extern EMACS_INT consing_since_gc;
|
|
1685
|
|
1686 /* threshold for doing another gc */
|
|
1687
|
|
1688 extern EMACS_INT gc_cons_threshold;
|
|
1689
|
|
1690 /* Structure for recording stack slots that need marking */
|
|
1691
|
|
1692 /* This is a chain of structures, each of which points at a Lisp_Object
|
|
1693 variable whose value should be marked in garbage collection.
|
|
1694 Normally every link of the chain is an automatic variable of a function,
|
|
1695 and its `val' points to some argument or local variable of the function.
|
|
1696 On exit to the function, the chain is set back to the value it had on
|
|
1697 entry. This way, no link remains in the chain when the stack frame
|
173
|
1698 containing the link disappears.
|
0
|
1699
|
|
1700 Every function that can call Feval must protect in this fashion all
|
|
1701 Lisp_Object variables whose contents will be used again. */
|
|
1702
|
|
1703 extern struct gcpro *gcprolist;
|
|
1704
|
|
1705 struct gcpro
|
|
1706 {
|
|
1707 struct gcpro *next;
|
|
1708 Lisp_Object *var; /* Address of first protected variable */
|
|
1709 int nvars; /* Number of consecutive protected variables */
|
|
1710 };
|
|
1711
|
|
1712 /* Normally, you declare variables gcpro1, gcpro2, ... and use the
|
|
1713 GCPROn() macros. However, if you need to have nested gcpro's,
|
|
1714 declare ngcpro1, ngcpro2, ... and use NGCPROn(). If you need
|
|
1715 to nest another level, use nngcpro1, nngcpro2, ... and use
|
|
1716 NNGCPROn(). If you need to nest yet another level, create
|
|
1717 the appropriate macros. */
|
|
1718
|
|
1719 #ifdef DEBUG_GCPRO
|
|
1720
|
272
|
1721 void debug_gcpro1 (char *, int, struct gcpro *, Lisp_Object *);
|
|
1722 void debug_gcpro2 (char *, int, struct gcpro *, struct gcpro *,
|
|
1723 Lisp_Object *, Lisp_Object *);
|
|
1724 void debug_gcpro3 (char *, int, struct gcpro *, struct gcpro *, struct gcpro *,
|
|
1725 Lisp_Object *, Lisp_Object *, Lisp_Object *);
|
|
1726 void debug_gcpro4 (char *, int, struct gcpro *, struct gcpro *, struct gcpro *,
|
|
1727 struct gcpro *, Lisp_Object *, Lisp_Object *, Lisp_Object *,
|
|
1728 Lisp_Object *);
|
|
1729 void debug_gcpro5 (char *, int, struct gcpro *, struct gcpro *, struct gcpro *,
|
|
1730 struct gcpro *, struct gcpro *, Lisp_Object *, Lisp_Object *,
|
|
1731 Lisp_Object *, Lisp_Object *, Lisp_Object *);
|
|
1732 void debug_ungcpro(char *, int, struct gcpro *);
|
0
|
1733
|
|
1734 #define GCPRO1(v) \
|
|
1735 debug_gcpro1 (__FILE__, __LINE__,&gcpro1,&v)
|
|
1736 #define GCPRO2(v1,v2) \
|
|
1737 debug_gcpro2 (__FILE__, __LINE__,&gcpro1,&gcpro2,&v1,&v2)
|
|
1738 #define GCPRO3(v1,v2,v3) \
|
|
1739 debug_gcpro3 (__FILE__, __LINE__,&gcpro1,&gcpro2,&gcpro3,&v1,&v2,&v3)
|
|
1740 #define GCPRO4(v1,v2,v3,v4) \
|
|
1741 debug_gcpro4 (__FILE__, __LINE__,&gcpro1,&gcpro2,&gcpro3,&gcpro4,\
|
|
1742 &v1,&v2,&v3,&v4)
|
|
1743 #define GCPRO5(v1,v2,v3,v4,v5) \
|
|
1744 debug_gcpro5 (__FILE__, __LINE__,&gcpro1,&gcpro2,&gcpro3,&gcpro4,&gcpro5,\
|
|
1745 &v1,&v2,&v3,&v4,&v5)
|
|
1746 #define UNGCPRO \
|
|
1747 debug_ungcpro(__FILE__, __LINE__,&gcpro1)
|
|
1748
|
|
1749 #define NGCPRO1(v) \
|
|
1750 debug_gcpro1 (__FILE__, __LINE__,&ngcpro1,&v)
|
|
1751 #define NGCPRO2(v1,v2) \
|
|
1752 debug_gcpro2 (__FILE__, __LINE__,&ngcpro1,&ngcpro2,&v1,&v2)
|
|
1753 #define NGCPRO3(v1,v2,v3) \
|
|
1754 debug_gcpro3 (__FILE__, __LINE__,&ngcpro1,&ngcpro2,&ngcpro3,&v1,&v2,&v3)
|
|
1755 #define NGCPRO4(v1,v2,v3,v4) \
|
|
1756 debug_gcpro4 (__FILE__, __LINE__,&ngcpro1,&ngcpro2,&ngcpro3,&ngcpro4,\
|
|
1757 &v1,&v2,&v3,&v4)
|
|
1758 #define NGCPRO5(v1,v2,v3,v4,v5) \
|
|
1759 debug_gcpro5 (__FILE__, __LINE__,&ngcpro1,&ngcpro2,&ngcpro3,&ngcpro4,\
|
|
1760 &ngcpro5,&v1,&v2,&v3,&v4,&v5)
|
|
1761 #define NUNGCPRO \
|
|
1762 debug_ungcpro(__FILE__, __LINE__,&ngcpro1)
|
|
1763
|
|
1764 #define NNGCPRO1(v) \
|
|
1765 debug_gcpro1 (__FILE__, __LINE__,&nngcpro1,&v)
|
|
1766 #define NNGCPRO2(v1,v2) \
|
|
1767 debug_gcpro2 (__FILE__, __LINE__,&nngcpro1,&nngcpro2,&v1,&v2)
|
|
1768 #define NNGCPRO3(v1,v2,v3) \
|
|
1769 debug_gcpro3 (__FILE__, __LINE__,&nngcpro1,&nngcpro2,&nngcpro3,&v1,&v2,&v3)
|
|
1770 #define NNGCPRO4(v1,v2,v3,v4) \
|
|
1771 debug_gcpro4 (__FILE__, __LINE__,&nngcpro1,&nngcpro2,&nngcpro3,&nngcpro4,\
|
|
1772 &v1,&v2,&v3,&v4)
|
|
1773 #define NNGCPRO5(v1,v2,v3,v4,v5) \
|
|
1774 debug_gcpro5 (__FILE__, __LINE__,&nngcpro1,&nngcpro2,&nngcpro3,&nngcpro4,\
|
|
1775 &nngcpro5,&v1,&v2,&v3,&v4,&v5)
|
398
|
1776 #define NNUNGCPRO \
|
0
|
1777 debug_ungcpro(__FILE__, __LINE__,&nngcpro1)
|
|
1778
|
|
1779 #else /* ! DEBUG_GCPRO */
|
|
1780
|
380
|
1781 #define GCPRO1(var1) ((void) ( \
|
|
1782 gcpro1.next = gcprolist, gcpro1.var = &var1, gcpro1.nvars = 1, \
|
|
1783 gcprolist = &gcpro1 ))
|
|
1784
|
|
1785 #define GCPRO2(var1, var2) ((void) ( \
|
|
1786 gcpro1.next = gcprolist, gcpro1.var = &var1, gcpro1.nvars = 1, \
|
|
1787 gcpro2.next = &gcpro1, gcpro2.var = &var2, gcpro2.nvars = 1, \
|
|
1788 gcprolist = &gcpro2 ))
|
|
1789
|
|
1790 #define GCPRO3(var1, var2, var3) ((void) ( \
|
|
1791 gcpro1.next = gcprolist, gcpro1.var = &var1, gcpro1.nvars = 1, \
|
|
1792 gcpro2.next = &gcpro1, gcpro2.var = &var2, gcpro2.nvars = 1, \
|
|
1793 gcpro3.next = &gcpro2, gcpro3.var = &var3, gcpro3.nvars = 1, \
|
|
1794 gcprolist = &gcpro3 ))
|
|
1795
|
|
1796 #define GCPRO4(var1, var2, var3, var4) ((void) ( \
|
|
1797 gcpro1.next = gcprolist, gcpro1.var = &var1, gcpro1.nvars = 1, \
|
|
1798 gcpro2.next = &gcpro1, gcpro2.var = &var2, gcpro2.nvars = 1, \
|
|
1799 gcpro3.next = &gcpro2, gcpro3.var = &var3, gcpro3.nvars = 1, \
|
|
1800 gcpro4.next = &gcpro3, gcpro4.var = &var4, gcpro4.nvars = 1, \
|
|
1801 gcprolist = &gcpro4 ))
|
|
1802
|
424
|
1803 #define GCPRO5(var1, var2, var3, var4, var5) ((void) ( \
|
380
|
1804 gcpro1.next = gcprolist, gcpro1.var = &var1, gcpro1.nvars = 1, \
|
|
1805 gcpro2.next = &gcpro1, gcpro2.var = &var2, gcpro2.nvars = 1, \
|
|
1806 gcpro3.next = &gcpro2, gcpro3.var = &var3, gcpro3.nvars = 1, \
|
|
1807 gcpro4.next = &gcpro3, gcpro4.var = &var4, gcpro4.nvars = 1, \
|
|
1808 gcpro5.next = &gcpro4, gcpro5.var = &var5, gcpro5.nvars = 1, \
|
|
1809 gcprolist = &gcpro5 ))
|
|
1810
|
|
1811 #define UNGCPRO ((void) (gcprolist = gcpro1.next))
|
|
1812
|
|
1813 #define NGCPRO1(var1) ((void) ( \
|
|
1814 ngcpro1.next = gcprolist, ngcpro1.var = &var1, ngcpro1.nvars = 1, \
|
|
1815 gcprolist = &ngcpro1 ))
|
|
1816
|
|
1817 #define NGCPRO2(var1, var2) ((void) ( \
|
|
1818 ngcpro1.next = gcprolist, ngcpro1.var = &var1, ngcpro1.nvars = 1, \
|
|
1819 ngcpro2.next = &ngcpro1, ngcpro2.var = &var2, ngcpro2.nvars = 1, \
|
|
1820 gcprolist = &ngcpro2 ))
|
|
1821
|
|
1822 #define NGCPRO3(var1, var2, var3) ((void) ( \
|
|
1823 ngcpro1.next = gcprolist, ngcpro1.var = &var1, ngcpro1.nvars = 1, \
|
|
1824 ngcpro2.next = &ngcpro1, ngcpro2.var = &var2, ngcpro2.nvars = 1, \
|
|
1825 ngcpro3.next = &ngcpro2, ngcpro3.var = &var3, ngcpro3.nvars = 1, \
|
|
1826 gcprolist = &ngcpro3 ))
|
|
1827
|
|
1828 #define NGCPRO4(var1, var2, var3, var4) ((void) ( \
|
|
1829 ngcpro1.next = gcprolist, ngcpro1.var = &var1, ngcpro1.nvars = 1, \
|
|
1830 ngcpro2.next = &ngcpro1, ngcpro2.var = &var2, ngcpro2.nvars = 1, \
|
|
1831 ngcpro3.next = &ngcpro2, ngcpro3.var = &var3, ngcpro3.nvars = 1, \
|
|
1832 ngcpro4.next = &ngcpro3, ngcpro4.var = &var4, ngcpro4.nvars = 1, \
|
|
1833 gcprolist = &ngcpro4 ))
|
|
1834
|
424
|
1835 #define NGCPRO5(var1, var2, var3, var4, var5) ((void) ( \
|
380
|
1836 ngcpro1.next = gcprolist, ngcpro1.var = &var1, ngcpro1.nvars = 1, \
|
|
1837 ngcpro2.next = &ngcpro1, ngcpro2.var = &var2, ngcpro2.nvars = 1, \
|
|
1838 ngcpro3.next = &ngcpro2, ngcpro3.var = &var3, ngcpro3.nvars = 1, \
|
|
1839 ngcpro4.next = &ngcpro3, ngcpro4.var = &var4, ngcpro4.nvars = 1, \
|
|
1840 ngcpro5.next = &ngcpro4, ngcpro5.var = &var5, ngcpro5.nvars = 1, \
|
|
1841 gcprolist = &ngcpro5 ))
|
|
1842
|
|
1843 #define NUNGCPRO ((void) (gcprolist = ngcpro1.next))
|
|
1844
|
|
1845 #define NNGCPRO1(var1) ((void) ( \
|
|
1846 nngcpro1.next = gcprolist, nngcpro1.var = &var1, nngcpro1.nvars = 1, \
|
|
1847 gcprolist = &nngcpro1 ))
|
|
1848
|
|
1849 #define NNGCPRO2(var1, var2) ((void) ( \
|
|
1850 nngcpro1.next = gcprolist, nngcpro1.var = &var1, nngcpro1.nvars = 1, \
|
|
1851 nngcpro2.next = &nngcpro1, nngcpro2.var = &var2, nngcpro2.nvars = 1, \
|
|
1852 gcprolist = &nngcpro2 ))
|
|
1853
|
|
1854 #define NNGCPRO3(var1, var2, var3) ((void) ( \
|
|
1855 nngcpro1.next = gcprolist, nngcpro1.var = &var1, nngcpro1.nvars = 1, \
|
|
1856 nngcpro2.next = &nngcpro1, nngcpro2.var = &var2, nngcpro2.nvars = 1, \
|
|
1857 nngcpro3.next = &nngcpro2, nngcpro3.var = &var3, nngcpro3.nvars = 1, \
|
|
1858 gcprolist = &nngcpro3 ))
|
|
1859
|
|
1860 #define NNGCPRO4(var1, var2, var3, var4) ((void) ( \
|
|
1861 nngcpro1.next = gcprolist, nngcpro1.var = &var1, nngcpro1.nvars = 1, \
|
|
1862 nngcpro2.next = &nngcpro1, nngcpro2.var = &var2, nngcpro2.nvars = 1, \
|
|
1863 nngcpro3.next = &nngcpro2, nngcpro3.var = &var3, nngcpro3.nvars = 1, \
|
|
1864 nngcpro4.next = &nngcpro3, nngcpro4.var = &var4, nngcpro4.nvars = 1, \
|
|
1865 gcprolist = &nngcpro4 ))
|
|
1866
|
424
|
1867 #define NNGCPRO5(var1, var2, var3, var4, var5) ((void) ( \
|
380
|
1868 nngcpro1.next = gcprolist, nngcpro1.var = &var1, nngcpro1.nvars = 1, \
|
|
1869 nngcpro2.next = &nngcpro1, nngcpro2.var = &var2, nngcpro2.nvars = 1, \
|
|
1870 nngcpro3.next = &nngcpro2, nngcpro3.var = &var3, nngcpro3.nvars = 1, \
|
|
1871 nngcpro4.next = &nngcpro3, nngcpro4.var = &var4, nngcpro4.nvars = 1, \
|
|
1872 nngcpro5.next = &nngcpro4, nngcpro5.var = &var5, nngcpro5.nvars = 1, \
|
|
1873 gcprolist = &nngcpro5 ))
|
|
1874
|
|
1875 #define NNUNGCPRO ((void) (gcprolist = nngcpro1.next))
|
0
|
1876
|
|
1877 #endif /* ! DEBUG_GCPRO */
|
|
1878
|
|
1879 /* Another try to fix SunPro C compiler warnings */
|
|
1880 /* "end-of-loop code not reached" */
|
|
1881 /* "statement not reached */
|
|
1882 #ifdef __SUNPRO_C
|
380
|
1883 #define RETURN_SANS_WARNINGS if (1) return
|
0
|
1884 #define RETURN_NOT_REACHED(value)
|
|
1885 #else
|
380
|
1886 #define RETURN_SANS_WARNINGS return
|
0
|
1887 #define RETURN_NOT_REACHED(value) return value;
|
|
1888 #endif
|
|
1889
|
|
1890 /* Evaluate expr, UNGCPRO, and then return the value of expr. */
|
272
|
1891 #define RETURN_UNGCPRO(expr) do \
|
|
1892 { \
|
|
1893 Lisp_Object ret_ungc_val = (expr); \
|
|
1894 UNGCPRO; \
|
380
|
1895 RETURN_SANS_WARNINGS ret_ungc_val; \
|
0
|
1896 } while (0)
|
|
1897
|
|
1898 /* Evaluate expr, NUNGCPRO, UNGCPRO, and then return the value of expr. */
|
272
|
1899 #define RETURN_NUNGCPRO(expr) do \
|
|
1900 { \
|
|
1901 Lisp_Object ret_ungc_val = (expr); \
|
|
1902 NUNGCPRO; \
|
|
1903 UNGCPRO; \
|
380
|
1904 RETURN_SANS_WARNINGS ret_ungc_val; \
|
0
|
1905 } while (0)
|
|
1906
|
|
1907 /* Evaluate expr, NNUNGCPRO, NUNGCPRO, UNGCPRO, and then return the
|
|
1908 value of expr. */
|
272
|
1909 #define RETURN_NNUNGCPRO(expr) do \
|
|
1910 { \
|
|
1911 Lisp_Object ret_ungc_val = (expr); \
|
|
1912 NNUNGCPRO; \
|
|
1913 NUNGCPRO; \
|
|
1914 UNGCPRO; \
|
380
|
1915 RETURN_SANS_WARNINGS ret_ungc_val; \
|
0
|
1916 } while (0)
|
|
1917
|
|
1918 /* Evaluate expr, return it if it's not Qunbound. */
|
272
|
1919 #define RETURN_IF_NOT_UNBOUND(expr) do \
|
|
1920 { \
|
|
1921 Lisp_Object ret_nunb_val = (expr); \
|
|
1922 if (!UNBOUNDP (ret_nunb_val)) \
|
380
|
1923 RETURN_SANS_WARNINGS ret_nunb_val; \
|
0
|
1924 } while (0)
|
|
1925
|
|
1926 /* Call staticpro (&var) to protect static variable `var'. */
|
|
1927 void staticpro (Lisp_Object *);
|
|
1928
|
424
|
1929 /* Call staticpro_nodump (&var) to protect static variable `var'. */
|
|
1930 /* var will not be saved at dump time */
|
|
1931 void staticpro_nodump (Lisp_Object *);
|
|
1932
|
|
1933 /* Call dumpstruct(&var, &desc) to dump the structure pointed to by `var'. */
|
|
1934 void dumpstruct (void *, const struct struct_description *);
|
|
1935
|
|
1936 /* Call pdump_wire(&var) to ensure that var is properly updated after pdump. */
|
|
1937 void pdump_wire (Lisp_Object *);
|
|
1938
|
|
1939 /* Call pdump_wire(&var) to ensure that var is properly updated after
|
|
1940 pdump. var must point to a linked list of objects out of which
|
|
1941 some may not be dumped */
|
|
1942 void pdump_wire_list (Lisp_Object *);
|
|
1943
|
0
|
1944 /* Nonzero means Emacs has already been initialized.
|
|
1945 Used during startup to detect startup of dumped Emacs. */
|
|
1946 extern int initialized;
|
|
1947
|
|
1948 #ifdef MEMORY_USAGE_STATS
|
|
1949
|
|
1950 /* This structure is used to keep statistics on the amount of memory
|
|
1951 in use.
|
|
1952
|
|
1953 WAS_REQUESTED stores the actual amount of memory that was requested
|
|
1954 of the allocation function. The *_OVERHEAD fields store the
|
|
1955 additional amount of memory that was grabbed by the functions to
|
|
1956 facilitate allocation, reallocation, etc. MALLOC_OVERHEAD is for
|
|
1957 memory allocated with malloc(); DYNARR_OVERHEAD is for dynamic
|
|
1958 arrays; GAP_OVERHEAD is for gap arrays. Note that for (e.g.)
|
|
1959 dynamic arrays, there is both MALLOC_OVERHEAD and DYNARR_OVERHEAD
|
|
1960 memory: The dynamic array allocates memory above and beyond what
|
|
1961 was asked of it, and when it in turns allocates memory using
|
|
1962 malloc(), malloc() allocates memory beyond what it was asked
|
|
1963 to allocate.
|
|
1964
|
|
1965 Functions that accept a structure of this sort do not initialize
|
|
1966 the fields to 0, and add any existing values to whatever was there
|
|
1967 before; this way, you can get a cumulative effect. */
|
|
1968
|
|
1969 struct overhead_stats
|
|
1970 {
|
|
1971 int was_requested;
|
|
1972 int malloc_overhead;
|
|
1973 int dynarr_overhead;
|
|
1974 int gap_overhead;
|
|
1975 };
|
|
1976
|
|
1977 #endif /* MEMORY_USAGE_STATS */
|
|
1978
|
|
1979 #ifndef DIRECTORY_SEP
|
|
1980 #define DIRECTORY_SEP '/'
|
|
1981 #endif
|
|
1982 #ifndef IS_DIRECTORY_SEP
|
380
|
1983 #define IS_DIRECTORY_SEP(c) ((c) == DIRECTORY_SEP)
|
0
|
1984 #endif
|
|
1985 #ifndef IS_DEVICE_SEP
|
|
1986 #ifndef DEVICE_SEP
|
380
|
1987 #define IS_DEVICE_SEP(c) 0
|
0
|
1988 #else
|
380
|
1989 #define IS_DEVICE_SEP(c) ((c) == DEVICE_SEP)
|
0
|
1990 #endif
|
|
1991 #endif
|
|
1992 #ifndef IS_ANY_SEP
|
424
|
1993 #define IS_ANY_SEP(c) IS_DIRECTORY_SEP (c)
|
0
|
1994 #endif
|
|
1995
|
165
|
1996 #ifdef HAVE_INTTYPES_H
|
|
1997 #include <inttypes.h>
|
|
1998 #elif SIZEOF_VOID_P == SIZEOF_INT
|
|
1999 typedef int intptr_t;
|
|
2000 typedef unsigned int uintptr_t;
|
|
2001 #elif SIZEOF_VOID_P == SIZEOF_LONG
|
|
2002 typedef long intptr_t;
|
|
2003 typedef unsigned long uintptr_t;
|
|
2004 #elif defined(SIZEOF_LONG_LONG) && SIZEOF_VOID_P == SIZEOF_LONG_LONG
|
|
2005 typedef long long intptr_t;
|
|
2006 typedef unsigned long long uintptr_t;
|
|
2007 #else
|
|
2008 /* Just pray. May break, may not. */
|
272
|
2009 typedef long intptr_t;
|
|
2010 typedef unsigned long uintptr_t;
|
|
2011 #endif
|
|
2012
|
|
2013 /* Defined in alloc.c */
|
|
2014 void release_breathing_space (void);
|
|
2015 Lisp_Object noseeum_cons (Lisp_Object, Lisp_Object);
|
382
|
2016 Lisp_Object make_vector (size_t, Lisp_Object);
|
272
|
2017 Lisp_Object vector1 (Lisp_Object);
|
|
2018 Lisp_Object vector2 (Lisp_Object, Lisp_Object);
|
|
2019 Lisp_Object vector3 (Lisp_Object, Lisp_Object, Lisp_Object);
|
382
|
2020 Lisp_Object make_bit_vector (size_t, Lisp_Object);
|
|
2021 Lisp_Object make_bit_vector_from_byte_vector (unsigned char *, size_t);
|
272
|
2022 Lisp_Object noseeum_make_marker (void);
|
|
2023 void garbage_collect_1 (void);
|
|
2024 Lisp_Object acons (Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2025 Lisp_Object cons3 (Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2026 Lisp_Object list1 (Lisp_Object);
|
|
2027 Lisp_Object list2 (Lisp_Object, Lisp_Object);
|
|
2028 Lisp_Object list3 (Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2029 Lisp_Object list4 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2030 Lisp_Object list5 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object,
|
|
2031 Lisp_Object);
|
|
2032 Lisp_Object list6 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object,
|
|
2033 Lisp_Object, Lisp_Object);
|
|
2034 DECLARE_DOESNT_RETURN (memory_full (void));
|
|
2035 void disksave_object_finalization (void);
|
|
2036 extern int purify_flag;
|
|
2037 extern int gc_currently_forbidden;
|
|
2038 Lisp_Object restore_gc_inhibit (Lisp_Object);
|
|
2039 extern EMACS_INT gc_generation_number[1];
|
398
|
2040 int c_readonly (Lisp_Object);
|
|
2041 int lisp_readonly (Lisp_Object);
|
412
|
2042 Lisp_Object build_string (CONST char *);
|
|
2043 Lisp_Object build_ext_string (CONST char *, enum external_data_format);
|
|
2044 Lisp_Object build_translated_string (CONST char *);
|
|
2045 Lisp_Object make_string (CONST Bufbyte *, Bytecount);
|
|
2046 Lisp_Object make_ext_string (CONST Extbyte *, EMACS_INT,
|
|
2047 enum external_data_format);
|
272
|
2048 Lisp_Object make_uninit_string (Bytecount);
|
|
2049 Lisp_Object make_float (double);
|
412
|
2050 Lisp_Object make_string_nocopy (CONST Bufbyte *, Bytecount);
|
380
|
2051 void free_cons (Lisp_Cons *);
|
272
|
2052 void free_list (Lisp_Object);
|
|
2053 void free_alist (Lisp_Object);
|
|
2054 void mark_conses_in_list (Lisp_Object);
|
380
|
2055 void free_marker (Lisp_Marker *);
|
272
|
2056 int object_dead_p (Lisp_Object);
|
424
|
2057 void mark_object (Lisp_Object obj);
|
|
2058 int marked_p (Lisp_Object obj);
|
272
|
2059
|
|
2060 #ifdef MEMORY_USAGE_STATS
|
|
2061 size_t malloced_storage_size (void *, size_t, struct overhead_stats *);
|
|
2062 size_t fixed_type_block_overhead (size_t);
|
|
2063 #endif
|
424
|
2064 #ifdef PDUMP
|
|
2065 void pdump (void);
|
|
2066 int pdump_load (void);
|
|
2067
|
|
2068 extern char *pdump_start, *pdump_end;
|
|
2069 #define DUMPEDP(adr) ((((char *)(adr)) < pdump_end) && (((char *)(adr)) >= pdump_start))
|
|
2070 #else
|
|
2071 #define DUMPEDP(adr) 0
|
|
2072 #endif
|
272
|
2073
|
|
2074 /* Defined in buffer.c */
|
|
2075 Lisp_Object make_buffer (struct buffer *);
|
|
2076 Lisp_Object get_truename_buffer (Lisp_Object);
|
|
2077 void switch_to_buffer (Lisp_Object, Lisp_Object);
|
|
2078 extern int find_file_compare_truenames;
|
|
2079 extern int find_file_use_truenames;
|
|
2080
|
|
2081 /* Defined in callproc.c */
|
412
|
2082 char *egetenv (CONST char *);
|
272
|
2083
|
|
2084 /* Defined in console.c */
|
|
2085 void stuff_buffered_input (Lisp_Object);
|
|
2086
|
|
2087 /* Defined in data.c */
|
398
|
2088 DECLARE_DOESNT_RETURN (c_write_error (Lisp_Object));
|
|
2089 DECLARE_DOESNT_RETURN (lisp_write_error (Lisp_Object));
|
272
|
2090 DECLARE_DOESNT_RETURN (args_out_of_range (Lisp_Object, Lisp_Object));
|
|
2091 DECLARE_DOESNT_RETURN (args_out_of_range_3 (Lisp_Object, Lisp_Object,
|
|
2092 Lisp_Object));
|
|
2093 Lisp_Object wrong_type_argument (Lisp_Object, Lisp_Object);
|
|
2094 DECLARE_DOESNT_RETURN (dead_wrong_type_argument (Lisp_Object, Lisp_Object));
|
424
|
2095 void check_int_range (EMACS_INT, EMACS_INT, EMACS_INT);
|
280
|
2096
|
|
2097 enum arith_comparison {
|
|
2098 arith_equal,
|
|
2099 arith_notequal,
|
|
2100 arith_less,
|
|
2101 arith_grtr,
|
|
2102 arith_less_or_equal,
|
|
2103 arith_grtr_or_equal };
|
|
2104 Lisp_Object arithcompare (Lisp_Object, Lisp_Object, enum arith_comparison);
|
|
2105
|
272
|
2106 Lisp_Object word_to_lisp (unsigned int);
|
|
2107 unsigned int lisp_to_word (Lisp_Object);
|
|
2108
|
|
2109 /* Defined in dired.c */
|
412
|
2110 Lisp_Object make_directory_hash_table (CONST char *);
|
272
|
2111 Lisp_Object wasteful_word_to_lisp (unsigned int);
|
|
2112
|
|
2113 /* Defined in doc.c */
|
|
2114 Lisp_Object unparesseuxify_doc_string (int, EMACS_INT, char *, Lisp_Object);
|
|
2115 Lisp_Object read_doc_string (Lisp_Object);
|
|
2116
|
|
2117 /* Defined in doprnt.c */
|
412
|
2118 Bytecount emacs_doprnt_c (Lisp_Object, CONST Bufbyte *, Lisp_Object,
|
272
|
2119 Bytecount, ...);
|
412
|
2120 Bytecount emacs_doprnt_va (Lisp_Object, CONST Bufbyte *, Lisp_Object,
|
272
|
2121 Bytecount, va_list);
|
412
|
2122 Bytecount emacs_doprnt_lisp (Lisp_Object, CONST Bufbyte *, Lisp_Object,
|
|
2123 Bytecount, int, CONST Lisp_Object *);
|
|
2124 Bytecount emacs_doprnt_lisp_2 (Lisp_Object, CONST Bufbyte *, Lisp_Object,
|
272
|
2125 Bytecount, int, ...);
|
412
|
2126 Lisp_Object emacs_doprnt_string_c (CONST Bufbyte *, Lisp_Object,
|
272
|
2127 Bytecount, ...);
|
412
|
2128 Lisp_Object emacs_doprnt_string_va (CONST Bufbyte *, Lisp_Object,
|
272
|
2129 Bytecount, va_list);
|
412
|
2130 Lisp_Object emacs_doprnt_string_lisp (CONST Bufbyte *, Lisp_Object,
|
|
2131 Bytecount, int, CONST Lisp_Object *);
|
|
2132 Lisp_Object emacs_doprnt_string_lisp_2 (CONST Bufbyte *, Lisp_Object,
|
272
|
2133 Bytecount, int, ...);
|
|
2134
|
|
2135 /* Defined in editfns.c */
|
288
|
2136 void uncache_home_directory (void);
|
412
|
2137 char *get_home_directory (void);
|
|
2138 char *user_login_name (int *);
|
272
|
2139 Bufpos bufpos_clip_to_bounds (Bufpos, Bufpos, Bufpos);
|
|
2140 Bytind bytind_clip_to_bounds (Bytind, Bytind, Bytind);
|
|
2141 void buffer_insert1 (struct buffer *, Lisp_Object);
|
424
|
2142 Lisp_Object make_string_from_buffer (struct buffer *, Bufpos, Charcount);
|
|
2143 Lisp_Object make_string_from_buffer_no_extents (struct buffer *, Bufpos, Charcount);
|
272
|
2144 Lisp_Object save_excursion_save (void);
|
|
2145 Lisp_Object save_restriction_save (void);
|
|
2146 Lisp_Object save_excursion_restore (Lisp_Object);
|
|
2147 Lisp_Object save_restriction_restore (Lisp_Object);
|
|
2148
|
|
2149 /* Defined in emacsfns.c */
|
|
2150 Lisp_Object save_current_buffer_restore (Lisp_Object);
|
|
2151
|
|
2152 /* Defined in emacs.c */
|
412
|
2153 DECLARE_DOESNT_RETURN_GCC_ATTRIBUTE_SYNTAX_SUCKS (fatal (CONST char *,
|
272
|
2154 ...), 1, 2);
|
412
|
2155 int stderr_out (CONST char *, ...) PRINTF_ARGS (1, 2);
|
|
2156 int stdout_out (CONST char *, ...) PRINTF_ARGS (1, 2);
|
272
|
2157 SIGTYPE fatal_error_signal (int);
|
|
2158 Lisp_Object make_arg_list (int, char **);
|
|
2159 void make_argc_argv (Lisp_Object, int *, char ***);
|
|
2160 void free_argc_argv (char **);
|
412
|
2161 Lisp_Object decode_env_path (CONST char *, CONST char *);
|
|
2162 Lisp_Object decode_path (CONST char *);
|
272
|
2163 /* Nonzero means don't do interactive redisplay and don't change tty modes */
|
412
|
2164 extern int noninteractive;
|
272
|
2165 extern int preparing_for_armageddon;
|
|
2166 extern int emacs_priority;
|
|
2167 extern int running_asynch_code;
|
|
2168 extern int suppress_early_error_handler_backtrace;
|
|
2169
|
|
2170 /* Defined in eval.c */
|
|
2171 DECLARE_DOESNT_RETURN (signal_error (Lisp_Object, Lisp_Object));
|
|
2172 void maybe_signal_error (Lisp_Object, Lisp_Object, Lisp_Object, Error_behavior);
|
|
2173 Lisp_Object maybe_signal_continuable_error (Lisp_Object, Lisp_Object,
|
|
2174 Lisp_Object, Error_behavior);
|
412
|
2175 DECLARE_DOESNT_RETURN_GCC_ATTRIBUTE_SYNTAX_SUCKS (error (CONST char *,
|
272
|
2176 ...), 1, 2);
|
412
|
2177 void maybe_error (Lisp_Object, Error_behavior, CONST char *,
|
272
|
2178 ...) PRINTF_ARGS (3, 4);
|
412
|
2179 Lisp_Object continuable_error (CONST char *, ...) PRINTF_ARGS (1, 2);
|
272
|
2180 Lisp_Object maybe_continuable_error (Lisp_Object, Error_behavior,
|
412
|
2181 CONST char *, ...) PRINTF_ARGS (3, 4);
|
|
2182 DECLARE_DOESNT_RETURN (signal_simple_error (CONST char *, Lisp_Object));
|
|
2183 void maybe_signal_simple_error (CONST char *, Lisp_Object,
|
272
|
2184 Lisp_Object, Error_behavior);
|
412
|
2185 Lisp_Object signal_simple_continuable_error (CONST char *, Lisp_Object);
|
|
2186 Lisp_Object maybe_signal_simple_continuable_error (CONST char *, Lisp_Object,
|
272
|
2187 Lisp_Object, Error_behavior);
|
380
|
2188 DECLARE_DOESNT_RETURN_GCC_ATTRIBUTE_SYNTAX_SUCKS (error_with_frob
|
412
|
2189 (Lisp_Object, CONST char *,
|
272
|
2190 ...), 2, 3);
|
|
2191 void maybe_error_with_frob (Lisp_Object, Lisp_Object, Error_behavior,
|
412
|
2192 CONST char *, ...) PRINTF_ARGS (4, 5);
|
|
2193 Lisp_Object continuable_error_with_frob (Lisp_Object, CONST char *,
|
272
|
2194 ...) PRINTF_ARGS (2, 3);
|
|
2195 Lisp_Object maybe_continuable_error_with_frob
|
412
|
2196 (Lisp_Object, Lisp_Object, Error_behavior, CONST char *, ...) PRINTF_ARGS (4, 5);
|
|
2197 DECLARE_DOESNT_RETURN (signal_simple_error_2 (CONST char *,
|
272
|
2198 Lisp_Object, Lisp_Object));
|
412
|
2199 void maybe_signal_simple_error_2 (CONST char *, Lisp_Object, Lisp_Object,
|
272
|
2200 Lisp_Object, Error_behavior);
|
412
|
2201 Lisp_Object signal_simple_continuable_error_2 (CONST char *,
|
272
|
2202 Lisp_Object, Lisp_Object);
|
412
|
2203 Lisp_Object maybe_signal_simple_continuable_error_2 (CONST char *, Lisp_Object,
|
272
|
2204 Lisp_Object, Lisp_Object,
|
|
2205 Error_behavior);
|
412
|
2206 void signal_malformed_list_error (Lisp_Object);
|
|
2207 void signal_malformed_property_list_error (Lisp_Object);
|
|
2208 void signal_circular_list_error (Lisp_Object);
|
|
2209 void signal_circular_property_list_error (Lisp_Object);
|
|
2210 void signal_void_function_error (Lisp_Object);
|
272
|
2211 Lisp_Object run_hook_with_args_in_buffer (struct buffer *, int, Lisp_Object *,
|
|
2212 enum run_hooks_condition);
|
|
2213 Lisp_Object run_hook_with_args (int, Lisp_Object *, enum run_hooks_condition);
|
|
2214 void va_run_hook_with_args (Lisp_Object, int, ...);
|
|
2215 void va_run_hook_with_args_in_buffer (struct buffer *, Lisp_Object, int, ...);
|
|
2216 Lisp_Object run_hook (Lisp_Object);
|
|
2217 Lisp_Object apply1 (Lisp_Object, Lisp_Object);
|
|
2218 Lisp_Object call0 (Lisp_Object);
|
|
2219 Lisp_Object call1 (Lisp_Object, Lisp_Object);
|
|
2220 Lisp_Object call2 (Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2221 Lisp_Object call3 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2222 Lisp_Object call4 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object,
|
|
2223 Lisp_Object);
|
|
2224 Lisp_Object call5 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object,
|
|
2225 Lisp_Object, Lisp_Object);
|
|
2226 Lisp_Object call6 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object,
|
|
2227 Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2228 Lisp_Object call7 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object,
|
|
2229 Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2230 Lisp_Object call8 (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object,
|
|
2231 Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object,
|
|
2232 Lisp_Object);
|
|
2233 Lisp_Object call0_in_buffer (struct buffer *, Lisp_Object);
|
|
2234 Lisp_Object call1_in_buffer (struct buffer *, Lisp_Object, Lisp_Object);
|
|
2235 Lisp_Object call2_in_buffer (struct buffer *, Lisp_Object, Lisp_Object,
|
|
2236 Lisp_Object);
|
|
2237 Lisp_Object call3_in_buffer (struct buffer *, Lisp_Object, Lisp_Object,
|
|
2238 Lisp_Object, Lisp_Object);
|
|
2239 Lisp_Object call4_in_buffer (struct buffer *, Lisp_Object, Lisp_Object,
|
|
2240 Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2241 Lisp_Object call5_in_buffer (struct buffer *, Lisp_Object, Lisp_Object,
|
|
2242 Lisp_Object, Lisp_Object, Lisp_Object,
|
|
2243 Lisp_Object);
|
|
2244 Lisp_Object call6_in_buffer (struct buffer *, Lisp_Object, Lisp_Object,
|
|
2245 Lisp_Object, Lisp_Object, Lisp_Object,
|
|
2246 Lisp_Object, Lisp_Object);
|
|
2247 Lisp_Object eval_in_buffer (struct buffer *, Lisp_Object);
|
|
2248 Lisp_Object call0_with_handler (Lisp_Object, Lisp_Object);
|
|
2249 Lisp_Object call1_with_handler (Lisp_Object, Lisp_Object, Lisp_Object);
|
412
|
2250 Lisp_Object eval_in_buffer_trapping_errors (CONST char *, struct buffer *,
|
272
|
2251 Lisp_Object);
|
412
|
2252 Lisp_Object run_hook_trapping_errors (CONST char *, Lisp_Object);
|
|
2253 Lisp_Object safe_run_hook_trapping_errors (CONST char *, Lisp_Object, int);
|
|
2254 Lisp_Object call0_trapping_errors (CONST char *, Lisp_Object);
|
|
2255 Lisp_Object call1_trapping_errors (CONST char *, Lisp_Object, Lisp_Object);
|
|
2256 Lisp_Object call2_trapping_errors (CONST char *,
|
272
|
2257 Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2258 Lisp_Object call_with_suspended_errors (lisp_fn_t, volatile Lisp_Object, Lisp_Object,
|
|
2259 Error_behavior, int, ...);
|
|
2260 /* C Code should be using internal_catch, record_unwind_p, condition_case_1 */
|
|
2261 Lisp_Object internal_catch (Lisp_Object, Lisp_Object (*) (Lisp_Object),
|
|
2262 Lisp_Object, int * volatile);
|
|
2263 Lisp_Object condition_case_1 (Lisp_Object,
|
|
2264 Lisp_Object (*) (Lisp_Object),
|
|
2265 Lisp_Object,
|
|
2266 Lisp_Object (*) (Lisp_Object, Lisp_Object),
|
|
2267 Lisp_Object);
|
|
2268 Lisp_Object condition_case_3 (Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2269 Lisp_Object unbind_to (int, Lisp_Object);
|
|
2270 void specbind (Lisp_Object, Lisp_Object);
|
|
2271 void record_unwind_protect (Lisp_Object (*) (Lisp_Object), Lisp_Object);
|
|
2272 void do_autoload (Lisp_Object, Lisp_Object);
|
|
2273 Lisp_Object un_autoload (Lisp_Object);
|
|
2274 void warn_when_safe_lispobj (Lisp_Object, Lisp_Object, Lisp_Object);
|
412
|
2275 void warn_when_safe (Lisp_Object, Lisp_Object, CONST char *,
|
272
|
2276 ...) PRINTF_ARGS (3, 4);
|
|
2277
|
|
2278
|
|
2279 /* Defined in event-stream.c */
|
|
2280 void wait_delaying_user_input (int (*) (void *), void *);
|
|
2281 int detect_input_pending (void);
|
|
2282 void reset_this_command_keys (Lisp_Object, int);
|
|
2283 Lisp_Object enqueue_misc_user_event (Lisp_Object, Lisp_Object, Lisp_Object);
|
284
|
2284 Lisp_Object enqueue_misc_user_event_pos (Lisp_Object, Lisp_Object,
|
|
2285 Lisp_Object, int, int, int, int);
|
272
|
2286
|
|
2287 /* Defined in event-Xt.c */
|
|
2288 void signal_special_Xt_user_event (Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2289
|
|
2290
|
|
2291 /* Defined in events.c */
|
|
2292 void clear_event_resource (void);
|
|
2293 Lisp_Object allocate_event (void);
|
412
|
2294 int event_to_character (Lisp_Event *, int, int, int);
|
272
|
2295
|
|
2296 /* Defined in fileio.c */
|
|
2297 void record_auto_save (void);
|
|
2298 void force_auto_save_soon (void);
|
412
|
2299 DECLARE_DOESNT_RETURN (report_file_error (CONST char *, Lisp_Object));
|
|
2300 void maybe_report_file_error (CONST char *, Lisp_Object,
|
272
|
2301 Lisp_Object, Error_behavior);
|
412
|
2302 DECLARE_DOESNT_RETURN (signal_file_error (CONST char *, Lisp_Object));
|
|
2303 void maybe_signal_file_error (CONST char *, Lisp_Object,
|
272
|
2304 Lisp_Object, Error_behavior);
|
412
|
2305 DECLARE_DOESNT_RETURN (signal_double_file_error (CONST char *, CONST char *,
|
272
|
2306 Lisp_Object));
|
412
|
2307 void maybe_signal_double_file_error (CONST char *, CONST char *,
|
272
|
2308 Lisp_Object, Lisp_Object, Error_behavior);
|
412
|
2309 DECLARE_DOESNT_RETURN (signal_double_file_error_2 (CONST char *, CONST char *,
|
272
|
2310 Lisp_Object, Lisp_Object));
|
412
|
2311 void maybe_signal_double_file_error_2 (CONST char *, CONST char *,
|
272
|
2312 Lisp_Object, Lisp_Object, Lisp_Object,
|
|
2313 Error_behavior);
|
|
2314 Lisp_Object lisp_strerror (int);
|
|
2315 Lisp_Object expand_and_dir_to_file (Lisp_Object, Lisp_Object);
|
412
|
2316 int read_allowing_quit (int, void *, size_t);
|
|
2317 int write_allowing_quit (int, CONST void *, size_t);
|
272
|
2318 int internal_delete_file (Lisp_Object);
|
|
2319
|
|
2320 /* Defined in filelock.c */
|
|
2321 void lock_file (Lisp_Object);
|
|
2322 void unlock_file (Lisp_Object);
|
|
2323 void unlock_all_files (void);
|
|
2324 void unlock_buffer (struct buffer *);
|
|
2325
|
|
2326 /* Defined in filemode.c */
|
|
2327 void filemodestring (struct stat *, char *);
|
|
2328
|
|
2329 /* Defined in floatfns.c */
|
|
2330 double extract_float (Lisp_Object);
|
|
2331
|
|
2332 /* Defined in fns.c */
|
|
2333 Lisp_Object list_sort (Lisp_Object, Lisp_Object,
|
|
2334 int (*) (Lisp_Object, Lisp_Object, Lisp_Object));
|
|
2335 Lisp_Object merge (Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2336
|
|
2337 void bump_string_modiff (Lisp_Object);
|
|
2338 Lisp_Object memq_no_quit (Lisp_Object, Lisp_Object);
|
|
2339 Lisp_Object assoc_no_quit (Lisp_Object, Lisp_Object);
|
|
2340 Lisp_Object assq_no_quit (Lisp_Object, Lisp_Object);
|
|
2341 Lisp_Object rassq_no_quit (Lisp_Object, Lisp_Object);
|
|
2342 Lisp_Object delq_no_quit (Lisp_Object, Lisp_Object);
|
|
2343 Lisp_Object delq_no_quit_and_free_cons (Lisp_Object, Lisp_Object);
|
|
2344 Lisp_Object remassoc_no_quit (Lisp_Object, Lisp_Object);
|
|
2345 Lisp_Object remassq_no_quit (Lisp_Object, Lisp_Object);
|
|
2346 Lisp_Object remrassq_no_quit (Lisp_Object, Lisp_Object);
|
|
2347
|
|
2348 int plists_differ (Lisp_Object, Lisp_Object, int, int, int);
|
|
2349 Lisp_Object internal_plist_get (Lisp_Object, Lisp_Object);
|
|
2350 void internal_plist_put (Lisp_Object *, Lisp_Object, Lisp_Object);
|
|
2351 int internal_remprop (Lisp_Object *, Lisp_Object);
|
|
2352 Lisp_Object external_plist_get (Lisp_Object *, Lisp_Object,
|
|
2353 int, Error_behavior);
|
|
2354 void external_plist_put (Lisp_Object *, Lisp_Object,
|
|
2355 Lisp_Object, int, Error_behavior);
|
|
2356 int external_remprop (Lisp_Object *, Lisp_Object, int, Error_behavior);
|
|
2357 int internal_equal (Lisp_Object, Lisp_Object, int);
|
|
2358 Lisp_Object concat2 (Lisp_Object, Lisp_Object);
|
|
2359 Lisp_Object concat3 (Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2360 Lisp_Object vconcat2 (Lisp_Object, Lisp_Object);
|
|
2361 Lisp_Object vconcat3 (Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2362 Lisp_Object nconc2 (Lisp_Object, Lisp_Object);
|
380
|
2363 Lisp_Object bytecode_nconc2 (Lisp_Object *);
|
412
|
2364 void check_losing_bytecode (CONST char *, Lisp_Object);
|
272
|
2365
|
|
2366 /* Defined in getloadavg.c */
|
|
2367 int getloadavg (double[], int);
|
|
2368
|
|
2369 /* Defined in glyphs.c */
|
|
2370 Error_behavior decode_error_behavior_flag (Lisp_Object);
|
|
2371 Lisp_Object encode_error_behavior_flag (Error_behavior);
|
|
2372
|
|
2373 /* Defined in indent.c */
|
|
2374 int bi_spaces_at_point (struct buffer *, Bytind);
|
|
2375 int column_at_point (struct buffer *, Bufpos, int);
|
424
|
2376 int string_column_at_point (struct Lisp_String *, Bufpos, int);
|
272
|
2377 int current_column (struct buffer *);
|
|
2378 void invalidate_current_column (void);
|
|
2379 Bufpos vmotion (struct window *, Bufpos, int, int *);
|
288
|
2380 Bufpos vmotion_pixels (Lisp_Object, Bufpos, int, int, int *);
|
272
|
2381
|
|
2382 /* Defined in keymap.c */
|
|
2383 void where_is_to_char (Lisp_Object, char *);
|
|
2384
|
|
2385 /* Defined in lread.c */
|
|
2386 void ebolify_bytecode_constants (Lisp_Object);
|
|
2387 void close_load_descs (void);
|
398
|
2388 int locate_file (Lisp_Object, Lisp_Object, Lisp_Object, Lisp_Object *, int);
|
|
2389 EXFUN (Flocate_file_clear_hashing, 1);
|
412
|
2390 int isfloat_string (CONST char *);
|
272
|
2391
|
|
2392 /* Well, I've decided to enable this. -- ben */
|
|
2393 /* And I've decided to make it work right. -- sb */
|
|
2394 #define LOADHIST
|
|
2395 /* Define the following symbol to enable load history of dumped files */
|
|
2396 #define LOADHIST_DUMPED
|
|
2397 /* Define the following symbol to enable load history of C source */
|
|
2398 #define LOADHIST_BUILTIN
|
|
2399
|
|
2400 #ifdef LOADHIST /* this is just a stupid idea */
|
|
2401 #define LOADHIST_ATTACH(x) \
|
|
2402 do { if (initialized) Vcurrent_load_list = Fcons (x, Vcurrent_load_list); } \
|
|
2403 while (0)
|
|
2404 #else /*! LOADHIST */
|
|
2405 # define LOADHIST_ATTACH(x)
|
|
2406 #endif /*! LOADHIST */
|
|
2407
|
|
2408 /* Defined in marker.c */
|
|
2409 Bytind bi_marker_position (Lisp_Object);
|
|
2410 Bufpos marker_position (Lisp_Object);
|
|
2411 void set_bi_marker_position (Lisp_Object, Bytind);
|
|
2412 void set_marker_position (Lisp_Object, Bufpos);
|
|
2413 void unchain_marker (Lisp_Object);
|
|
2414 Lisp_Object noseeum_copy_marker (Lisp_Object, Lisp_Object);
|
|
2415 Lisp_Object set_marker_restricted (Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2416 #ifdef MEMORY_USAGE_STATS
|
|
2417 int compute_buffer_marker_usage (struct buffer *, struct overhead_stats *);
|
165
|
2418 #endif
|
|
2419
|
272
|
2420 /* Defined in menubar.c */
|
|
2421 extern int popup_menu_up_p;
|
|
2422 extern int menubar_show_keybindings;
|
|
2423 extern int popup_menu_titles;
|
|
2424
|
|
2425 /* Defined in minibuf.c */
|
|
2426 extern int minibuf_level;
|
412
|
2427 Charcount scmp_1 (CONST Bufbyte *, CONST Bufbyte *, Charcount, int);
|
272
|
2428 #define scmp(s1, s2, len) scmp_1 (s1, s2, len, completion_ignore_case)
|
|
2429 extern int completion_ignore_case;
|
412
|
2430 int regexp_ignore_completion_p (CONST Bufbyte *, Lisp_Object,
|
272
|
2431 Bytecount, Bytecount);
|
|
2432 Lisp_Object clear_echo_area (struct frame *, Lisp_Object, int);
|
|
2433 Lisp_Object clear_echo_area_from_print (struct frame *, Lisp_Object, int);
|
412
|
2434 void echo_area_append (struct frame *, CONST Bufbyte *, Lisp_Object,
|
272
|
2435 Bytecount, Bytecount, Lisp_Object);
|
412
|
2436 void echo_area_message (struct frame *, CONST Bufbyte *, Lisp_Object,
|
272
|
2437 Bytecount, Bytecount, Lisp_Object);
|
|
2438 Lisp_Object echo_area_status (struct frame *);
|
|
2439 int echo_area_active (struct frame *);
|
|
2440 Lisp_Object echo_area_contents (struct frame *);
|
412
|
2441 void message_internal (CONST Bufbyte *, Lisp_Object, Bytecount, Bytecount);
|
|
2442 void message_append_internal (CONST Bufbyte *, Lisp_Object,
|
272
|
2443 Bytecount, Bytecount);
|
412
|
2444 void message (CONST char *, ...) PRINTF_ARGS (1, 2);
|
|
2445 void message_append (CONST char *, ...) PRINTF_ARGS (1, 2);
|
|
2446 void message_no_translate (CONST char *, ...) PRINTF_ARGS (1, 2);
|
272
|
2447 void clear_message (void);
|
|
2448
|
|
2449 /* Defined in print.c */
|
|
2450 void write_string_to_stdio_stream (FILE *, struct console *,
|
412
|
2451 CONST Bufbyte *, Bytecount, Bytecount,
|
|
2452 enum external_data_format);
|
272
|
2453 void debug_print (Lisp_Object);
|
|
2454 void debug_short_backtrace (int);
|
380
|
2455 void temp_output_buffer_setup (Lisp_Object);
|
272
|
2456 void temp_output_buffer_show (Lisp_Object, Lisp_Object);
|
|
2457 /* NOTE: Do not call this with the data of a Lisp_String. Use princ.
|
|
2458 * Note: stream should be defaulted before calling
|
|
2459 * (eg Qnil means stdout, not Vstandard_output, etc) */
|
412
|
2460 void write_c_string (CONST char *, Lisp_Object);
|
272
|
2461 /* Same goes for this function. */
|
412
|
2462 void write_string_1 (CONST Bufbyte *, Bytecount, Lisp_Object);
|
272
|
2463 void print_cons (Lisp_Object, Lisp_Object, int);
|
|
2464 void print_vector (Lisp_Object, Lisp_Object, int);
|
|
2465 void print_string (Lisp_Object, Lisp_Object, int);
|
276
|
2466 void long_to_string (char *, long);
|
272
|
2467 void print_internal (Lisp_Object, Lisp_Object, int);
|
|
2468 void print_symbol (Lisp_Object, Lisp_Object, int);
|
|
2469 void print_float (Lisp_Object, Lisp_Object, int);
|
|
2470 extern int print_escape_newlines;
|
|
2471 extern int print_readably;
|
380
|
2472 Lisp_Object internal_with_output_to_temp_buffer (Lisp_Object,
|
272
|
2473 Lisp_Object (*) (Lisp_Object),
|
|
2474 Lisp_Object, Lisp_Object);
|
|
2475 void float_to_string (char *, double);
|
|
2476 void internal_object_printer (Lisp_Object, Lisp_Object, int);
|
|
2477
|
|
2478 /* Defined in profile.c */
|
424
|
2479 void mark_profiling_info (void);
|
272
|
2480 void profile_increase_call_count (Lisp_Object);
|
|
2481 extern int profiling_active;
|
|
2482 extern int profiling_redisplay_flag;
|
|
2483
|
|
2484 /* Defined in rangetab.c */
|
|
2485 void put_range_table (Lisp_Object, EMACS_INT, EMACS_INT, Lisp_Object);
|
|
2486 int unified_range_table_bytes_needed (Lisp_Object);
|
|
2487 int unified_range_table_bytes_used (void *);
|
|
2488 void unified_range_table_copy_data (Lisp_Object, void *);
|
|
2489 Lisp_Object unified_range_table_lookup (void *, EMACS_INT, Lisp_Object);
|
|
2490 int unified_range_table_nentries (void *);
|
|
2491 void unified_range_table_get_range (void *, int, EMACS_INT *, EMACS_INT *,
|
|
2492 Lisp_Object *);
|
|
2493
|
|
2494 /* Defined in search.c */
|
|
2495 struct re_pattern_buffer;
|
|
2496 struct re_registers;
|
286
|
2497 Bufpos scan_buffer (struct buffer *, Emchar, Bufpos, Bufpos, EMACS_INT, EMACS_INT *, int);
|
272
|
2498 Bufpos find_next_newline (struct buffer *, Bufpos, int);
|
|
2499 Bufpos find_next_newline_no_quit (struct buffer *, Bufpos, int);
|
|
2500 Bytind bi_find_next_newline_no_quit (struct buffer *, Bytind, int);
|
424
|
2501 Bytind bi_find_next_emchar_in_string (struct Lisp_String*, Emchar, Bytind, EMACS_INT);
|
272
|
2502 Bufpos find_before_next_newline (struct buffer *, Bufpos, Bufpos, int);
|
|
2503 struct re_pattern_buffer *compile_pattern (Lisp_Object, struct re_registers *,
|
|
2504 char *, int, Error_behavior);
|
412
|
2505 Bytecount fast_string_match (Lisp_Object, CONST Bufbyte *,
|
272
|
2506 Lisp_Object, Bytecount,
|
|
2507 Bytecount, int, Error_behavior, int);
|
|
2508 Bytecount fast_lisp_string_match (Lisp_Object, Lisp_Object);
|
|
2509 void restore_match_data (void);
|
|
2510
|
|
2511 /* Defined in signal.c */
|
|
2512 void init_interrupts_late (void);
|
|
2513 extern int dont_check_for_quit;
|
|
2514 void begin_dont_check_for_quit (void);
|
|
2515 void emacs_sleep (int);
|
|
2516
|
|
2517 /* Defined in sound.c */
|
|
2518 void init_device_sound (struct device *);
|
|
2519
|
|
2520 /* Defined in specifier.c */
|
|
2521 Lisp_Object specifier_instance (Lisp_Object, Lisp_Object, Lisp_Object,
|
|
2522 Error_behavior, int, int, Lisp_Object);
|
|
2523 Lisp_Object specifier_instance_no_quit (Lisp_Object, Lisp_Object, Lisp_Object,
|
|
2524 Error_behavior, int, Lisp_Object);
|
|
2525
|
|
2526 /* Defined in symbols.c */
|
412
|
2527 int hash_string (CONST Bufbyte *, Bytecount);
|
|
2528 Lisp_Object intern (CONST char *);
|
|
2529 Lisp_Object oblookup (Lisp_Object, CONST Bufbyte *, Bytecount);
|
272
|
2530 void map_obarray (Lisp_Object, int (*) (Lisp_Object, void *), void *);
|
|
2531 Lisp_Object indirect_function (Lisp_Object, int);
|
|
2532 Lisp_Object symbol_value_in_buffer (Lisp_Object, Lisp_Object);
|
|
2533 void kill_buffer_local_variables (struct buffer *);
|
|
2534 int symbol_value_buffer_local_info (Lisp_Object, struct buffer *);
|
|
2535 Lisp_Object find_symbol_value (Lisp_Object);
|
|
2536 Lisp_Object find_symbol_value_quickly (Lisp_Object, int);
|
|
2537 Lisp_Object top_level_value (Lisp_Object);
|
380
|
2538 void reject_constant_symbols (Lisp_Object sym, Lisp_Object newval,
|
|
2539 int function_p,
|
|
2540 Lisp_Object follow_past_lisp_magic);
|
272
|
2541
|
|
2542 /* Defined in syntax.c */
|
424
|
2543 Bufpos scan_words (struct buffer *, Bufpos, int);
|
272
|
2544
|
|
2545 /* Defined in undo.c */
|
|
2546 Lisp_Object truncate_undo_list (Lisp_Object, int, int);
|
|
2547 void record_extent (Lisp_Object, int);
|
|
2548 void record_insert (struct buffer *, Bufpos, Charcount);
|
|
2549 void record_delete (struct buffer *, Bufpos, Charcount);
|
|
2550 void record_change (struct buffer *, Bufpos, Charcount);
|
|
2551
|
|
2552 /* Defined in unex*.c */
|
|
2553 int unexec (char *, char *, uintptr_t, uintptr_t, uintptr_t);
|
|
2554 #ifdef RUN_TIME_REMAP
|
|
2555 int run_time_remap (char *);
|
|
2556 #endif
|
|
2557
|
|
2558 /* Defined in vm-limit.c */
|
412
|
2559 void memory_warnings (void *, void (*) (CONST char *));
|
272
|
2560
|
|
2561 /* Defined in window.c */
|
|
2562 Lisp_Object save_window_excursion_unwind (Lisp_Object);
|
|
2563 Lisp_Object display_buffer (Lisp_Object, Lisp_Object, Lisp_Object);
|
|
2564
|
|
2565 /* The following were machine generated 19980312 */
|
|
2566
|
|
2567
|
|
2568 EXFUN (Faccept_process_output, 3);
|
|
2569 EXFUN (Fadd1, 1);
|
|
2570 EXFUN (Fadd_spec_to_specifier, 5);
|
|
2571 EXFUN (Fadd_timeout, 4);
|
|
2572 EXFUN (Fappend, MANY);
|
|
2573 EXFUN (Fapply, MANY);
|
|
2574 EXFUN (Faref, 2);
|
|
2575 EXFUN (Faset, 3);
|
|
2576 EXFUN (Fassoc, 2);
|
|
2577 EXFUN (Fassq, 2);
|
|
2578 EXFUN (Fbacktrace, 2);
|
|
2579 EXFUN (Fbeginning_of_line, 2);
|
|
2580 EXFUN (Fbobp, 1);
|
|
2581 EXFUN (Fbolp, 1);
|
|
2582 EXFUN (Fboundp, 1);
|
|
2583 EXFUN (Fbuffer_substring, 3);
|
|
2584 EXFUN (Fbuilt_in_variable_type, 1);
|
|
2585 EXFUN (Fbyte_code, 3);
|
|
2586 EXFUN (Fcall_interactively, 3);
|
|
2587 EXFUN (Fcanonicalize_lax_plist, 2);
|
|
2588 EXFUN (Fcanonicalize_plist, 2);
|
|
2589 EXFUN (Fcar, 1);
|
|
2590 EXFUN (Fcar_safe, 1);
|
|
2591 EXFUN (Fcdr, 1);
|
|
2592 EXFUN (Fchar_after, 2);
|
|
2593 EXFUN (Fchar_to_string, 1);
|
|
2594 EXFUN (Fcheck_valid_plist, 1);
|
|
2595 EXFUN (Fclear_range_table, 1);
|
|
2596 EXFUN (Fcoding_category_list, 0);
|
|
2597 EXFUN (Fcoding_category_system, 1);
|
|
2598 EXFUN (Fcoding_priority_list, 0);
|
|
2599 EXFUN (Fcoding_system_charset, 2);
|
|
2600 EXFUN (Fcoding_system_doc_string, 1);
|
|
2601 EXFUN (Fcoding_system_list, 0);
|
|
2602 EXFUN (Fcoding_system_name, 1);
|
|
2603 EXFUN (Fcoding_system_p, 1);
|
|
2604 EXFUN (Fcoding_system_property, 2);
|
|
2605 EXFUN (Fcoding_system_type, 1);
|
|
2606 EXFUN (Fcommand_execute, 3);
|
|
2607 EXFUN (Fcommandp, 1);
|
|
2608 EXFUN (Fconcat, MANY);
|
|
2609 EXFUN (Fcons, 2);
|
|
2610 EXFUN (Fcopy_alist, 1);
|
|
2611 EXFUN (Fcopy_coding_system, 2);
|
|
2612 EXFUN (Fcopy_event, 2);
|
380
|
2613 EXFUN (Fcopy_list, 1);
|
272
|
2614 EXFUN (Fcopy_marker, 2);
|
|
2615 EXFUN (Fcopy_sequence, 1);
|
|
2616 EXFUN (Fcopy_tree, 2);
|
|
2617 EXFUN (Fcurrent_window_configuration, 1);
|
|
2618 EXFUN (Fdecode_big5_char, 1);
|
|
2619 EXFUN (Fdecode_coding_region, 4);
|
|
2620 EXFUN (Fdecode_shift_jis_char, 1);
|
|
2621 EXFUN (Fdefault_boundp, 1);
|
|
2622 EXFUN (Fdefault_value, 1);
|
|
2623 EXFUN (Fdefine_key, 3);
|
|
2624 EXFUN (Fdelete_region, 3);
|
|
2625 EXFUN (Fdelq, 2);
|
|
2626 EXFUN (Fdestructive_alist_to_plist, 1);
|
|
2627 EXFUN (Fdetect_coding_region, 3);
|
|
2628 EXFUN (Fdgettext, 2);
|
|
2629 EXFUN (Fding, 3);
|
|
2630 EXFUN (Fdirectory_file_name, 1);
|
|
2631 EXFUN (Fdisable_timeout, 1);
|
|
2632 EXFUN (Fdiscard_input, 0);
|
|
2633 EXFUN (Fdispatch_event, 1);
|
|
2634 EXFUN (Fdisplay_error, 2);
|
|
2635 EXFUN (Fdo_auto_save, 2);
|
|
2636 EXFUN (Fdowncase, 2);
|
|
2637 EXFUN (Felt, 2);
|
|
2638 EXFUN (Fencode_big5_char, 1);
|
|
2639 EXFUN (Fencode_coding_region, 4);
|
|
2640 EXFUN (Fencode_shift_jis_char, 1);
|
|
2641 EXFUN (Fend_of_line, 2);
|
|
2642 EXFUN (Fenqueue_eval_event, 2);
|
|
2643 EXFUN (Feobp, 1);
|
|
2644 EXFUN (Feolp, 1);
|
|
2645 EXFUN (Fequal, 2);
|
|
2646 EXFUN (Ferror_message_string, 1);
|
|
2647 EXFUN (Feval, 1);
|
|
2648 EXFUN (Fevent_to_character, 4);
|
|
2649 EXFUN (Fexecute_kbd_macro, 2);
|
|
2650 EXFUN (Fexpand_abbrev, 0);
|
|
2651 EXFUN (Fexpand_file_name, 2);
|
|
2652 EXFUN (Fextent_at, 5);
|
|
2653 EXFUN (Fextent_property, 3);
|
|
2654 EXFUN (Ffboundp, 1);
|
|
2655 EXFUN (Ffile_accessible_directory_p, 1);
|
|
2656 EXFUN (Ffile_directory_p, 1);
|
|
2657 EXFUN (Ffile_executable_p, 1);
|
|
2658 EXFUN (Ffile_exists_p, 1);
|
|
2659 EXFUN (Ffile_name_absolute_p, 1);
|
|
2660 EXFUN (Ffile_name_as_directory, 1);
|
|
2661 EXFUN (Ffile_name_directory, 1);
|
|
2662 EXFUN (Ffile_name_nondirectory, 1);
|
|
2663 EXFUN (Ffile_readable_p, 1);
|
|
2664 EXFUN (Ffile_symlink_p, 1);
|
|
2665 EXFUN (Ffile_truename, 2);
|
|
2666 EXFUN (Ffind_coding_system, 1);
|
|
2667 EXFUN (Ffind_file_name_handler, 2);
|
|
2668 EXFUN (Ffollowing_char, 1);
|
|
2669 EXFUN (Fformat, MANY);
|
|
2670 EXFUN (Fforward_char, 2);
|
|
2671 EXFUN (Fforward_line, 2);
|
|
2672 EXFUN (Ffset, 2);
|
|
2673 EXFUN (Ffuncall, MANY);
|
280
|
2674 EXFUN (Fgeq, MANY);
|
272
|
2675 EXFUN (Fget, 3);
|
|
2676 EXFUN (Fget_buffer_process, 1);
|
|
2677 EXFUN (Fget_coding_system, 1);
|
|
2678 EXFUN (Fget_process, 1);
|
|
2679 EXFUN (Fget_range_table, 3);
|
|
2680 EXFUN (Fgettext, 1);
|
|
2681 EXFUN (Fgoto_char, 2);
|
280
|
2682 EXFUN (Fgtr, MANY);
|
272
|
2683 EXFUN (Findent_to, 3);
|
|
2684 EXFUN (Findirect_function, 1);
|
|
2685 EXFUN (Finsert, MANY);
|
|
2686 EXFUN (Finsert_buffer_substring, 3);
|
|
2687 EXFUN (Finsert_char, 4);
|
|
2688 EXFUN (Finsert_file_contents_internal, 7);
|
|
2689 EXFUN (Finteractive_p, 0);
|
|
2690 EXFUN (Fintern, 2);
|
|
2691 EXFUN (Fintern_soft, 2);
|
|
2692 EXFUN (Fkey_description, 1);
|
|
2693 EXFUN (Fkill_emacs, 1);
|
|
2694 EXFUN (Fkill_local_variable, 1);
|
|
2695 EXFUN (Flax_plist_get, 3);
|
|
2696 EXFUN (Flax_plist_remprop, 2);
|
|
2697 EXFUN (Flength, 1);
|
280
|
2698 EXFUN (Fleq, MANY);
|
272
|
2699 EXFUN (Flist, MANY);
|
|
2700 EXFUN (Flistp, 1);
|
412
|
2701 #ifdef HAVE_SHLIB
|
388
|
2702 EXFUN (Flist_modules, 0);
|
|
2703 EXFUN (Fload_module, 3);
|
412
|
2704 #endif
|
280
|
2705 EXFUN (Flss, MANY);
|
272
|
2706 EXFUN (Fmake_byte_code, MANY);
|
|
2707 EXFUN (Fmake_coding_system, 4);
|
|
2708 EXFUN (Fmake_glyph_internal, 1);
|
|
2709 EXFUN (Fmake_list, 2);
|
|
2710 EXFUN (Fmake_marker, 0);
|
|
2711 EXFUN (Fmake_range_table, 0);
|
|
2712 EXFUN (Fmake_sparse_keymap, 1);
|
|
2713 EXFUN (Fmake_string, 2);
|
|
2714 EXFUN (Fmake_symbol, 1);
|
|
2715 EXFUN (Fmake_vector, 2);
|
|
2716 EXFUN (Fmapcar, 2);
|
|
2717 EXFUN (Fmarker_buffer, 1);
|
|
2718 EXFUN (Fmarker_position, 1);
|
|
2719 EXFUN (Fmatch_beginning, 1);
|
|
2720 EXFUN (Fmatch_end, 1);
|
|
2721 EXFUN (Fmax, MANY);
|
|
2722 EXFUN (Fmember, 2);
|
|
2723 EXFUN (Fmemq, 2);
|
|
2724 EXFUN (Fmin, MANY);
|
|
2725 EXFUN (Fminus, MANY);
|
|
2726 EXFUN (Fnarrow_to_region, 3);
|
|
2727 EXFUN (Fnconc, MANY);
|
|
2728 EXFUN (Fnext_event, 2);
|
|
2729 EXFUN (Fnreverse, 1);
|
|
2730 EXFUN (Fnthcdr, 2);
|
|
2731 EXFUN (Fnumber_to_string, 1);
|
|
2732 EXFUN (Fold_assq, 2);
|
|
2733 EXFUN (Fold_equal, 2);
|
|
2734 EXFUN (Fold_member, 2);
|
|
2735 EXFUN (Fold_memq, 2);
|
|
2736 EXFUN (Fplist_get, 3);
|
384
|
2737 EXFUN (Fplist_member, 2);
|
272
|
2738 EXFUN (Fplist_put, 3);
|
|
2739 EXFUN (Fplus, MANY);
|
|
2740 EXFUN (Fpoint, 1);
|
|
2741 EXFUN (Fpoint_marker, 2);
|
|
2742 EXFUN (Fpoint_max, 1);
|
|
2743 EXFUN (Fpoint_min, 1);
|
|
2744 EXFUN (Fpreceding_char, 1);
|
|
2745 EXFUN (Fprefix_numeric_value, 1);
|
|
2746 EXFUN (Fprin1, 2);
|
|
2747 EXFUN (Fprin1_to_string, 2);
|
|
2748 EXFUN (Fprinc, 2);
|
|
2749 EXFUN (Fprint, 2);
|
|
2750 EXFUN (Fprocess_status, 1);
|
|
2751 EXFUN (Fprogn, UNEVALLED);
|
|
2752 EXFUN (Fprovide, 1);
|
|
2753 EXFUN (Fput, 3);
|
|
2754 EXFUN (Fput_range_table, 4);
|
|
2755 EXFUN (Fput_text_property, 5);
|
|
2756 EXFUN (Fquo, MANY);
|
|
2757 EXFUN (Frassq, 2);
|
|
2758 EXFUN (Fread, 1);
|
|
2759 EXFUN (Fread_key_sequence, 3);
|
|
2760 EXFUN (Freally_free, 1);
|
|
2761 EXFUN (Frem, 2);
|
|
2762 EXFUN (Fremassq, 2);
|
|
2763 EXFUN (Fselected_frame, 1);
|
|
2764 EXFUN (Fset, 2);
|
|
2765 EXFUN (Fset_coding_category_system, 2);
|
|
2766 EXFUN (Fset_coding_priority_list, 1);
|
|
2767 EXFUN (Fset_default, 2);
|
|
2768 EXFUN (Fset_marker, 3);
|
|
2769 EXFUN (Fset_standard_case_table, 1);
|
|
2770 EXFUN (Fsetcar, 2);
|
|
2771 EXFUN (Fsetcdr, 2);
|
|
2772 EXFUN (Fsignal, 2);
|
|
2773 EXFUN (Fsit_for, 2);
|
|
2774 EXFUN (Fskip_chars_backward, 3);
|
|
2775 EXFUN (Fskip_chars_forward, 3);
|
|
2776 EXFUN (Fsleep_for, 1);
|
|
2777 EXFUN (Fsort, 2);
|
|
2778 EXFUN (Fspecifier_spec_list, 4);
|
|
2779 EXFUN (Fstring_equal, 2);
|
|
2780 EXFUN (Fstring_lessp, 2);
|
|
2781 EXFUN (Fstring_match, 4);
|
|
2782 EXFUN (Fsub1, 1);
|
|
2783 EXFUN (Fsubr_max_args, 1);
|
|
2784 EXFUN (Fsubr_min_args, 1);
|
|
2785 EXFUN (Fsubsidiary_coding_system, 2);
|
|
2786 EXFUN (Fsubstitute_command_keys, 1);
|
|
2787 EXFUN (Fsubstitute_in_file_name, 1);
|
|
2788 EXFUN (Fsubstring, 3);
|
|
2789 EXFUN (Fsymbol_function, 1);
|
|
2790 EXFUN (Fsymbol_name, 1);
|
|
2791 EXFUN (Fsymbol_plist, 1);
|
|
2792 EXFUN (Fsymbol_value, 1);
|
373
|
2793 EXFUN (Fsystem_name, 0);
|
272
|
2794 EXFUN (Fthrow, 2);
|
|
2795 EXFUN (Ftimes, MANY);
|
|
2796 EXFUN (Ftruncate, 1);
|
|
2797 EXFUN (Fundo_boundary, 0);
|
|
2798 EXFUN (Funhandled_file_name_directory, 1);
|
|
2799 EXFUN (Funlock_buffer, 0);
|
|
2800 EXFUN (Fupcase, 2);
|
|
2801 EXFUN (Fupcase_initials, 2);
|
|
2802 EXFUN (Fupcase_initials_region, 3);
|
|
2803 EXFUN (Fupcase_region, 3);
|
288
|
2804 EXFUN (Fuser_home_directory, 0);
|
272
|
2805 EXFUN (Fuser_login_name, 1);
|
|
2806 EXFUN (Fvector, MANY);
|
|
2807 EXFUN (Fverify_visited_file_modtime, 1);
|
288
|
2808 EXFUN (Fvertical_motion, 3);
|
272
|
2809 EXFUN (Fwiden, 1);
|
|
2810
|
|
2811
|
412
|
2812 extern Lisp_Object Q_style, Qactually_requested, Qactivate_menubar_hook;
|
|
2813 extern Lisp_Object Qafter, Qall, Qand;
|
272
|
2814 extern Lisp_Object Qarith_error, Qarrayp, Qassoc, Qat, Qautodetect, Qautoload;
|
|
2815 extern Lisp_Object Qbackground, Qbackground_pixmap, Qbad_variable, Qbefore;
|
412
|
2816 extern Lisp_Object Qbeginning_of_buffer, Qbig5, Qbinary, Qbitmap, Qbitp, Qblinking;
|
424
|
2817 extern Lisp_Object Qboolean, Qbottom, Qbuffer;
|
272
|
2818 extern Lisp_Object Qbuffer_glyph_p, Qbuffer_live_p, Qbuffer_read_only, Qbutton;
|
412
|
2819 extern Lisp_Object Qbyte_code, Qcall_interactively, Qcategory;
|
272
|
2820 extern Lisp_Object Qcategory_designator_p, Qcategory_table_value_p, Qccl, Qcdr;
|
|
2821 extern Lisp_Object Qchannel, Qchar, Qchar_or_string_p, Qcharacter, Qcharacterp;
|
|
2822 extern Lisp_Object Qchars, Qcharset_g0, Qcharset_g1, Qcharset_g2, Qcharset_g3;
|
424
|
2823 extern Lisp_Object Qcenter, Qcircular_list, Qcircular_property_list;
|
|
2824 extern Lisp_Object Qcoding_system_error;
|
380
|
2825 extern Lisp_Object Qcolor, Qcolor_pixmap_image_instance_p;
|
272
|
2826 extern Lisp_Object Qcolumns, Qcommand, Qcommandp, Qcompletion_ignore_case;
|
412
|
2827 extern Lisp_Object Qconsole, Qconsole_live_p, Qconst_specifier, Qcr, Qcritical;
|
|
2828 extern Lisp_Object Qcrlf, Qctext, Qcurrent_menubar, Qcursor;
|
272
|
2829 extern Lisp_Object Qcyclic_variable_indirection, Qdata, Qdead, Qdecode;
|
|
2830 extern Lisp_Object Qdefault, Qdefun, Qdelete, Qdelq, Qdevice, Qdevice_live_p;
|
|
2831 extern Lisp_Object Qdim, Qdimension, Qdisabled, Qdisplay, Qdisplay_table;
|
412
|
2832 extern Lisp_Object Qdoc_string, Qdomain_error, Qdynarr_overhead;
|
272
|
2833 extern Lisp_Object Qempty, Qencode, Qend_of_buffer, Qend_of_file, Qend_open;
|
|
2834 extern Lisp_Object Qeol_cr, Qeol_crlf, Qeol_lf, Qeol_type, Qeq, Qeql, Qequal;
|
|
2835 extern Lisp_Object Qerror, Qerror_conditions, Qerror_message, Qescape_quoted;
|
|
2836 extern Lisp_Object Qeval, Qevent_live_p, Qexit, Qextent_live_p, Qextents;
|
412
|
2837 extern Lisp_Object Qexternal_debugging_output, Qface, Qfeaturep, Qfile_error;
|
272
|
2838 extern Lisp_Object Qfont, Qforce_g0_on_output, Qforce_g1_on_output;
|
|
2839 extern Lisp_Object Qforce_g2_on_output, Qforce_g3_on_output, Qforeground;
|
412
|
2840 extern Lisp_Object Qformat, Qframe, Qframe_live_p, Qfunction, Qgap_overhead;
|
424
|
2841 extern Lisp_Object Qgeneric, Qgeometry, Qglobal, Qheight, Qhighlight, Qhorizontal, Qicon;
|
412
|
2842 extern Lisp_Object Qicon_glyph_p, Qid, Qidentity, Qimage, Qinfo, Qinherit;
|
272
|
2843 extern Lisp_Object Qinhibit_quit, Qinhibit_read_only;
|
|
2844 extern Lisp_Object Qinput_charset_conversion, Qinteger;
|
|
2845 extern Lisp_Object Qinteger_char_or_marker_p, Qinteger_or_char_p;
|
|
2846 extern Lisp_Object Qinteger_or_marker_p, Qintegerp, Qinteractive, Qinternal;
|
|
2847 extern Lisp_Object Qinvalid_function, Qinvalid_read_syntax, Qio_error;
|
424
|
2848 extern Lisp_Object Qiso2022, Qkey, Qkey_assoc, Qkeymap, Qlambda, Qlayout, Qleft, Qlf;
|
272
|
2849 extern Lisp_Object Qlist, Qlistp, Qload, Qlock_shift, Qmacro, Qmagic;
|
412
|
2850 extern Lisp_Object Qmalformed_list, Qmalformed_property_list;
|
380
|
2851 extern Lisp_Object Qmalloc_overhead, Qmark, Qmarkers;
|
272
|
2852 extern Lisp_Object Qmax, Qmemory, Qmessage, Qminus, Qmnemonic, Qmodifiers;
|
|
2853 extern Lisp_Object Qmono_pixmap_image_instance_p, Qmotion;
|
412
|
2854 extern Lisp_Object Qmouse_leave_buffer_hook, Qmswindows, Qname, Qnas, Qnatnump;
|
|
2855 extern Lisp_Object Qno_ascii_cntl, Qno_ascii_eol, Qno_catch;
|
272
|
2856 extern Lisp_Object Qno_conversion, Qno_iso6429, Qnone, Qnot, Qnothing;
|
|
2857 extern Lisp_Object Qnothing_image_instance_p, Qnotice;
|
424
|
2858 extern Lisp_Object Qnumber_char_or_marker_p, Qnumberp;
|
412
|
2859 extern Lisp_Object Qobject, Qold_assoc, Qold_delete, Qold_delq, Qold_rassoc;
|
|
2860 extern Lisp_Object Qold_rassq, Qonly, Qor, Qother, Qoutput_charset_conversion;
|
424
|
2861 extern Lisp_Object Qoverflow_error, Qpoint, Qpointer, Qpointer_glyph_p;
|
412
|
2862 extern Lisp_Object Qpointer_image_instance_p, Qpost_read_conversion;
|
|
2863 extern Lisp_Object Qpre_write_conversion, Qprint, Qprint_length;
|
272
|
2864 extern Lisp_Object Qprint_string_length, Qprocess, Qprogn, Qprovide, Qquit;
|
|
2865 extern Lisp_Object Qquote, Qrange_error, Qrassoc, Qrassq, Qread_char;
|
|
2866 extern Lisp_Object Qread_from_minibuffer, Qreally_early_error_handler;
|
|
2867 extern Lisp_Object Qregion_beginning, Qregion_end, Qrequire, Qresource;
|
412
|
2868 extern Lisp_Object Qreturn, Qreverse, Qright, Qrun_hooks, Qsans_modifiers;
|
|
2869 extern Lisp_Object Qsave_buffers_kill_emacs, Qsearch, Qselected, Qself_insert_command;
|
|
2870 extern Lisp_Object Qsequencep, Qsetting_constant, Qseven, Qshift_jis, Qshort;
|
272
|
2871 extern Lisp_Object Qsignal, Qsimple, Qsingularity_error, Qsize, Qspace;
|
|
2872 extern Lisp_Object Qspecifier, Qstandard_input, Qstandard_output, Qstart_open;
|
384
|
2873 extern Lisp_Object Qstream, Qstring, Qstring_lessp, Qsubwindow;
|
412
|
2874 extern Lisp_Object Qsubwindow_image_instance_p, Qsymbol, Qsyntax, Qt, Qtest;
|
|
2875 extern Lisp_Object Qtext, Qtext_image_instance_p, Qtimeout, Qtimestamp;
|
|
2876 extern Lisp_Object Qtoolbar, Qtop, Qtop_level, Qtrue_list_p, Qtty, Qtype;
|
272
|
2877 extern Lisp_Object Qunbound, Qundecided, Qundefined, Qunderflow_error;
|
288
|
2878 extern Lisp_Object Qunderline, Qunimplemented, Quser_files_and_directories;
|
|
2879 extern Lisp_Object Qvalue_assoc, Qvalues;
|
424
|
2880 extern Lisp_Object Qvariable_documentation, Qvariable_domain, Qvertical;
|
412
|
2881 extern Lisp_Object Qvoid_function, Qvoid_variable, Qwarning, Qwidth, Qwidget, Qwindow;
|
272
|
2882 extern Lisp_Object Qwindow_live_p, Qwindow_system, Qwrong_number_of_arguments;
|
412
|
2883 extern Lisp_Object Qwrong_type_argument, Qx, Qy, Qyes_or_no_p;
|
272
|
2884 extern Lisp_Object Vactivate_menubar_hook, Vascii_canon_table;
|
|
2885 extern Lisp_Object Vascii_downcase_table, Vascii_eqv_table;
|
412
|
2886 extern Lisp_Object Vascii_upcase_table, Vautoload_queue, Vbinary_process_input;
|
|
2887 extern Lisp_Object Vbinary_process_output, Vblank_menubar;
|
272
|
2888 extern Lisp_Object Vcharset_ascii, Vcharset_composite, Vcharset_control_1;
|
|
2889 extern Lisp_Object Vcoding_system_for_read, Vcoding_system_for_write;
|
380
|
2890 extern Lisp_Object Vcoding_system_hash_table, Vcommand_history;
|
272
|
2891 extern Lisp_Object Vcommand_line_args, Vconfigure_info_directory;
|
388
|
2892 extern Lisp_Object Vconfigure_site_directory, Vconfigure_site_module_directory;
|
272
|
2893 extern Lisp_Object Vconsole_list, Vcontrolling_terminal;
|
|
2894 extern Lisp_Object Vcurrent_compiled_function_annotation, Vcurrent_load_list;
|
|
2895 extern Lisp_Object Vcurrent_mouse_event, Vcurrent_prefix_arg, Vdata_directory;
|
412
|
2896 extern Lisp_Object Vdisabled_command_hook, Vdoc_directory, Vinternal_doc_file_name;
|
272
|
2897 extern Lisp_Object Vecho_area_buffer, Vemacs_major_version;
|
|
2898 extern Lisp_Object Vemacs_minor_version, Vexec_directory, Vexec_path;
|
|
2899 extern Lisp_Object Vexecuting_macro, Vfeatures, Vfile_domain;
|
|
2900 extern Lisp_Object Vfile_name_coding_system, Vinhibit_quit;
|
|
2901 extern Lisp_Object Vinvocation_directory, Vinvocation_name;
|
|
2902 extern Lisp_Object Vkeyboard_coding_system, Vlast_command, Vlast_command_char;
|
|
2903 extern Lisp_Object Vlast_command_event, Vlast_input_event;
|
|
2904 extern Lisp_Object Vload_file_name_internal;
|
|
2905 extern Lisp_Object Vload_file_name_internal_the_purecopy, Vload_history;
|
|
2906 extern Lisp_Object Vload_path, Vmark_even_if_inactive, Vmenubar_configuration;
|
|
2907 extern Lisp_Object Vminibuf_preprompt, Vminibuf_prompt, Vminibuffer_zero;
|
|
2908 extern Lisp_Object Vmirror_ascii_canon_table, Vmirror_ascii_downcase_table;
|
|
2909 extern Lisp_Object Vmirror_ascii_eqv_table, Vmirror_ascii_upcase_table;
|
388
|
2910 extern Lisp_Object Vmodule_directory, Vmswindows_downcase_file_names;
|
272
|
2911 extern Lisp_Object Vmswindows_get_true_file_attributes, Vobarray;
|
|
2912 extern Lisp_Object Vprint_length, Vprint_level, Vprocess_environment;
|
398
|
2913 extern Lisp_Object Vquit_flag;
|
272
|
2914 extern Lisp_Object Vrecent_keys_ring, Vshell_file_name, Vsite_directory;
|
388
|
2915 extern Lisp_Object Vsite_module_directory;
|
272
|
2916 extern Lisp_Object Vstandard_input, Vstandard_output, Vstdio_str;
|
|
2917 extern Lisp_Object Vsynchronous_sounds, Vsystem_name, Vterminal_coding_system;
|
|
2918 extern Lisp_Object Vthis_command_keys, Vunread_command_event;
|
412
|
2919 extern Lisp_Object Vwin32_generate_fake_inodes, Vwin32_pipe_read_delay;
|
272
|
2920 extern Lisp_Object Vx_initial_argv_list;
|
|
2921
|
412
|
2922 extern Lisp_Object Qmakunbound, Qset;
|
|
2923
|
|
2924 #endif /* _XEMACS_LISP_H_ */
|