1 # Copyright (C) 1992-1998, 2000-2012 Free Software Foundation, Inc.
3 # This file is part of GNU Emacs.
5 # GNU Emacs is free software; you can redistribute it and/or modify
6 # it under the terms of the GNU General Public License as published by
7 # the Free Software Foundation; either version 3, or (at your option)
10 # GNU Emacs is distributed in the hope that it will be useful,
11 # but WITHOUT ANY WARRANTY; without even the implied warranty of
12 # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 # GNU General Public License for more details.
15 # You should have received a copy of the GNU General Public License
16 # along with GNU Emacs; see the file COPYING. If not, write to the
17 # Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
18 # Boston, MA 02110-1301, USA.
20 # Force loading of symbols, enough to give us VALBITS etc.
22 # With some compilers, we need this to give us struct Lisp_Symbol etc.:
23 set $dummy = Fmake_symbol + 8
25 # Find lwlib source files too.
27 #dir /gd/gnu/lesstif-0.89.9/lib/Xm
29 # Don't enter GDB when user types C-g to quit.
30 # This has one unfortunate effect: you can't type C-c
31 # at the GDB to stop Emacs, when using X.
32 # However, C-z works just as well in that case.
35 # Make it work like SIGINT normally does.
38 # Pass on user signals
39 handle SIGUSR1 noprint pass
40 handle SIGUSR2 noprint pass
42 # Don't pass SIGALRM to Emacs. This makes problems when
46 # Use $bugfix so that the value isn't a constant.
47 # Using a constant runs into GDB bugs sometimes.
49 if (CHECK_LISP_OBJECT_TYPE)
54 set $ptr = ($bugfix & VALMASK) | DATA_SEG_BITS
58 if (CHECK_LISP_OBJECT_TYPE)
63 set $int = $bugfix << (USE_LSB_TAG ? 0 : INTTYPEBITS) >> INTTYPEBITS
67 if (CHECK_LISP_OBJECT_TYPE)
72 set $type = (enum Lisp_Type) (USE_LSB_TAG ? $bugfix & (1 << GCTYPEBITS) - 1 : $bugfix >> VALBITS)
75 # Set up something to print out s-expressions.
76 # We save and restore print_output_debug_flag to prevent the w32 port
77 # from calling OutputDebugString, which causes GDB to display each
78 # character twice (yuk!).
83 Print the emacs s-expression which is $.
84 Works only when an inferior emacs is executing.
87 # Print out s-expressions
90 set $output_debug = print_output_debug_flag
91 set print_output_debug_flag = 0
92 call safe_debug_print ($tmp)
93 set print_output_debug_flag = $output_debug
96 Print the argument as an emacs s-expression
97 Works only when an inferior emacs is executing.
100 # Print value of lisp variable
103 set $output_debug = print_output_debug_flag
104 set print_output_debug_flag = 0
105 call safe_debug_print (find_symbol_value (intern ($tmp)))
106 set print_output_debug_flag = $output_debug
109 Print the value of the lisp variable given as argument.
110 Works only when an inferior emacs is executing.
113 # Print out current buffer point and boundaries
115 set $b = current_buffer
117 printf "BUF PT: %d", $b->pt
118 if ($b->pt != $b->pt_byte)
119 printf "[%d]", $b->pt_byte
121 printf " of 1..%d", $t->z
122 if ($t->z != $t->z_byte)
123 printf "[%d]", $t->z_byte
125 if ($b->begv != 1 || $b->zv != $t->z)
126 printf " NARROW=%d..%d", $b->begv, $b->zv
127 if ($b->begv != $b->begv_byte || $b->zv != $b->zv_byte)
128 printf " [%d..%d]", $b->begv_byte, $b->zv_byte
131 printf " GAP: %d", $t->gpt
132 if ($t->gpt != $t->gpt_byte)
133 printf "[%d]", $t->gpt_byte
135 printf " SZ=%d\n", $t->gap_size
138 Print current buffer's point and boundaries.
139 Prints values of point, beg, end, narrow, and gap for current buffer.
143 set $itmethod = $arg0
146 printf "GET_FROM_BUFFER"
149 printf "GET_FROM_DISPLAY_VECTOR"
152 printf "GET_FROM_STRING"
155 printf "GET_FROM_C_STRING"
158 printf "GET_FROM_IMAGE"
161 printf "GET_FROM_STRETCH"
163 if ($itmethod < 0 || $itmethod > 5)
168 Pretty print it->method given as first arg
171 # Print out iterator given as first arg
174 printf "cur=%d", $it->current.pos.charpos
175 if ($it->current.pos.charpos != $it->current.pos.bytepos)
176 printf "[%d]", $it->current.pos.bytepos
178 printf " pos=%d", $it->position.charpos
179 if ($it->position.charpos != $it->position.bytepos)
180 printf "[%d]", $it->position.bytepos
182 printf " start=%d", $it->start.pos.charpos
183 if ($it->start.pos.charpos != $it->start.pos.bytepos)
184 printf "[%d]", $it->start.pos.bytepos
186 printf " end=%d", $it->end_charpos
187 printf " stop=%d", $it->stop_charpos
188 printf " face=%d", $it->face_id
189 if ($it->multibyte_p)
192 if ($it->header_line_p)
195 if ($it->n_overlay_strings > 0)
196 printf " nov=%d", $it->n_overlay_strings
199 printf " sp=%d", $it->sp
203 if ($it->len == 1 && $it->c >= ' ' && it->c < 255)
204 printf " ch='%c'", $it->c
206 printf " ch=[%d,%d]", $it->c, $it->len
212 printf "IT_CHARACTER"
215 printf "IT_COMPOSITION"
227 printf "IT_TRUNCATION"
230 printf "IT_CONTINUATION"
232 if ($it->what < 0 || $it->what > 6)
236 if ($it->method != 0)
239 pitmethod $it->method
240 if ($it->method == 2)
242 printf "[%d]", $it->current.string_pos.charpos
244 if ($it->method == 4)
246 printf "[%d]", $it->image_id
251 printf "BIDI: base_stop=%d prev_stop=%d level=%d\n", $it->base_level_stop, $it->prev_stop, $it->bidi_it.resolved_level
253 if ($it->region_beg_charpos >= 0)
254 printf "reg=%d-%d ", $it->region_beg_charpos, $it->region_end_charpos
256 printf "vpos=%d hpos=%d", $it->vpos, $it->hpos,
257 printf " y=%d lvy=%d", $it->current_y, $it->last_visible_y
258 printf " x=%d vx=%d-%d", $it->current_x, $it->first_visible_x, $it->last_visible_x
259 printf " w=%d", $it->pixel_width
260 printf " a+d=%d+%d=%d", $it->ascent, $it->descent, $it->ascent+$it->descent
261 printf " max=%d+%d=%d", $it->max_ascent, $it->max_descent, $it->max_ascent+$it->max_descent
264 while ($i < $it->sp && $i < 4)
265 set $e = $it->stack[$i]
266 printf "stack[%d]: ", $i
268 printf "[%d]", $e.position.charpos
274 Pretty print a display iterator.
275 Take one arg, an iterator object or pointer.
282 Pretty print the display iterator it.
287 printf "y=%d x=%d pwid=%d", $row->y, $row->x, $row->pixel_width
288 printf " a+d=%d+%d=%d", $row->ascent, $row->height-$row->ascent, $row->height
289 printf " phys=%d+%d=%d", $row->phys_ascent, $row->phys_height-$row->phys_ascent, $row->phys_height
290 printf " vis=%d\n", $row->visible_height
291 printf "used=(LMargin=%d,Text=%d,RMargin=%d) Hash=%d\n", $row->used[0], $row->used[1], $row->used[2], $row->hash
292 printf "start=%d end=%d", $row->start.pos.charpos, $row->end.pos.charpos
296 if ($row->displays_text_p)
299 if ($row->mode_line_p)
302 if ($row->continued_p)
305 if ($row-> truncated_on_left_p)
308 if ($row-> truncated_on_right_p)
311 if ($row->starts_in_middle_of_char_p)
314 if ($row->ends_in_middle_of_char_p)
317 if ($row->ends_in_newline_from_string_p)
320 if ($row->ends_at_zv_p)
323 if ($row->overlapped_p)
326 if ($row->overlapping_p)
332 Pretty print information about glyph_row.
333 Takes one argument, a row object or pointer.
340 Pretty print information about glyph_row in row.
346 printf "y=%d x=%d vpos=%d hpos=%d", $cp->y, $cp->x, $cp->vpos, $cp->hpos
349 Pretty print a window cursor.
354 pcursorx output_cursor
358 Pretty print the output_cursor.
363 xgetint $w->sequence_number
364 if ($w->mini_p != Qnil)
367 printf "Window %d ", $int
369 set $tem = (struct buffer *) $ptr
371 printf "%s", ((struct Lisp_String *) $ptr)->data
374 set $tem = (struct Lisp_Marker *) $ptr
375 printf "start=%d end:", $tem->charpos
376 if ($w->window_end_valid != Qnil)
377 xgetint $w->window_end_pos
378 printf "pos=%d", $int
379 xgetint $w->window_end_vpos
380 printf " vpos=%d", $int
384 printf " vscroll=%d", $w->vscroll
385 if ($w->force_start != Qnil)
386 printf " FORCE_START"
388 if ($w->must_be_updated_p)
395 pcursorx $w->phys_cursor
396 if ($w->phys_cursor_on_p)
402 if ($w->last_cursor_off_p != $w->cursor_off_p)
403 if ($w->last_cursor_off_p)
409 if ($w->cursor_off_p)
417 Pretty print a window structure.
418 Takes one argument, a pointer to a window structure.
425 Pretty print window structure w.
450 if ($arg0 < 0 || $arg0 > 6)
455 Print textual description of bidi type given as first argument.
462 if ($g.u.ch >= ' ' && $g.u.ch < 127)
463 printf "CHAR[%c]", $g.u.ch
465 printf "CHAR[0x%x]", $g.u.ch
470 printf "COMP[%d (%d..%d)]", $g.u.cmp.id, $g.slice.cmp.from, $g.slice.cmp.to
475 if ($g.u.glyphless.method == 0)
478 if ($g.u.glyphless.method == 1)
481 if ($g.u.glyphless.method == 2)
484 if ($g.u.glyphless.method == 3)
490 printf "IMAGE[%d]", $g.u.img_id
494 printf "STRETCH[%d+%d]", $g.u.stretch.height, $g.u.stretch.ascent
497 if ($type == Lisp_String)
498 printf " str=%x[%d]", $g.object, $g.charpos
500 printf " pos=%d", $g.charpos
502 # For characters, print their resolved level and bidi type
504 printf " blev=%d,btyp=", $g.resolved_level
505 pbiditype $g.bidi_type
507 printf " w=%d a+d=%d+%d", $g.pixel_width, $g.ascent, $g.descent
508 # If not DEFAULT_FACE_ID
510 printf " face=%d", $g.face_id
513 printf " vof=%d", $g.voffset
521 if ($g.glyph_not_available_p)
524 if ($g.overlaps_vertically_p)
527 if ($g.avoid_cursor_p)
530 if ($g.left_box_line_p)
533 if ($g.right_box_line_p)
536 if ($g.slice.img.x || $g.slice.img.y || $g.slice.img.width || $g.slice.img.height)
537 printf " slice=%d,%d,%d,%d" ,$g.slice.img.x, $g.slice.img.y, $g.slice.img.width, $g.slice.img.height
542 Pretty print a glyph structure.
543 Takes one argument, a pointer to a glyph structure.
551 Pretty print glyph structure glyph.
559 Pretty print glyph structure glyph[I].
560 Takes one argument, a integer I.
564 set $pgidx = $pgidx + 1
568 Pretty print next glyph structure.
576 set $used = $row->used[$area]
578 set $gl0 = $row->glyphs[$area]
580 printf "%s: %d glyphs\n", ($area == 0 ? "LEFT" : $area == 2 ? "RIGHT" : "TEXT"), $used
581 while ($pgidx < $used)
582 printf "%3d %4d: ", $pgidx, $xofs
584 set $xofs = $xofs + $gl0[$pgidx]->pixel_width
585 set $pgidx = $pgidx + 1
588 set $area = $area + 1
592 Pretty print all glyphs in a row structure.
593 Takes one argument, a pointer to a row structure.
600 Pretty print all glyphs in row structure row.
607 Pretty print all glyphs in it->glyph_row.
611 printf "edges=(%d,%d),r2l=%d,cont=%d,trunc=(%d,%d),at_zv=%d\n", $arg0->minpos.charpos, $arg0->maxpos.charpos, $arg0->reversed_p, $arg0->continued_p, $arg0->truncated_on_left_p, $arg0->truncated_on_right_p, $arg0->ends_at_zv_p
614 Print important attributes of a glyph_row structure.
615 Takes one argument, a pointer to a glyph_row structure.
621 set $glend = $mtx->rows + $mtx->nrows - 1
631 Print data about glyph rows in a glyph matrix.
632 Takes one argument, a pointer to a glyph_matrix structure.
639 if $type == Lisp_Misc
642 if $type == Lisp_Vectorlike
648 Print the type of $, assuming it is an Emacs Lisp value.
649 If the first type printed is Lisp_Vector or Lisp_Misc,
650 a second line gives the more precise type.
655 set $size = ((struct Lisp_Vector *) $ptr)->header.size
656 if ($size & PSEUDOVECTOR_FLAG)
657 output (enum pvec_type) (($size & PVEC_TYPE_MASK) >> PSEUDOVECTOR_SIZE_BITS)
659 output $size & ~ARRAY_MARK_FLAG
664 Print the size or vector subtype of $.
665 This command assumes that $ is a vector or pseudovector.
670 output (enum Lisp_Misc_Type) (((struct Lisp_Free *) $ptr)->type)
674 Assume that $ is some misc type and print its specific type.
682 Print $ as an Emacs Lisp integer. This gets the sign right.
690 Print the pointer portion of an Emacs Lisp value in $.
695 print (struct Lisp_Marker *) $ptr
698 Print $ as a marker pointer.
699 This command assumes that $ is an Emacs Lisp marker value.
704 print (struct Lisp_Overlay *) $ptr
707 Print $ as a overlay pointer.
708 This command assumes that $ is an Emacs Lisp overlay value.
713 print (struct Lisp_Free *) $ptr
716 Print $ as a misc free-cell pointer.
717 This command assumes that $ is an Emacs Lisp Misc value.
723 print (struct Lisp_Symbol *) $ptr
728 Print the name and address of the symbol $.
729 This command assumes that $ is an Emacs Lisp symbol value.
734 print (struct Lisp_String *) $ptr
739 Print the contents and address of the string $.
740 This command assumes that $ is an Emacs Lisp string value.
745 print (struct Lisp_Vector *) $ptr
746 output ($->header.size > 50) ? 0 : ($->contents[0])@($->header.size & ~ARRAY_MARK_FLAG)
750 Print the contents and address of the vector $.
751 This command assumes that $ is an Emacs Lisp vector value.
756 print (struct Lisp_Process *) $ptr
761 Print the address of the struct Lisp_process to which $ points.
762 This command assumes that $ is a Lisp_Object.
767 print (struct frame *) $ptr
769 set $ptr = (struct Lisp_String *) $ptr
774 Print $ as a frame pointer.
775 This command assumes $ is an Emacs Lisp frame value.
780 print (struct Lisp_Vector *) $ptr
781 output ($->contents[0])@($->header.size & 0xff)
784 Print $ as a compiled function pointer.
785 This command assumes that $ is an Emacs Lisp compiled value.
790 print (struct window *) $ptr
791 set $window = (struct window *) $ptr
792 xgetint $window->total_cols
794 xgetint $window->total_lines
796 xgetint $window->left_col
798 xgetint $window->top_line
800 printf "%dx%d+%d+%d\n", $width, $height, $left, $top
803 Print $ as a window pointer, assuming it is an Emacs Lisp window value.
804 Print the window's position as "WIDTHxHEIGHT+LEFT+TOP".
809 print (struct save_window_data *) $ptr
812 Print $ as a window configuration pointer.
813 This command assumes that $ is an Emacs Lisp window configuration value.
818 print (struct Lisp_Subr *) $ptr
823 Print the address of the subr which the Lisp_Object $ points to.
828 print (struct Lisp_Char_Table *) $ptr
831 printf " %d extra slots", ($->header.size & 0x1ff) - 68
835 Print the address of the char-table $, and its purpose.
836 This command assumes that $ is an Emacs Lisp char-table value.
841 print (struct Lisp_Sub_Char_Table *) $ptr
845 printf "Depth: %d, Min char: %d (0x%x)\n", $depth, $int, $int
847 document xsubchartable
848 Print the address of the sub-char-table $, its depth and min-char.
849 This command assumes that $ is an Emacs Lisp sub-char-table value.
854 print (struct Lisp_Bool_Vector *) $ptr
855 output ($->size > 256) ? 0 : ($->data[0])@(($->size + BOOL_VECTOR_BITS_PER_CHAR - 1)/ BOOL_VECTOR_BITS_PER_CHAR)
859 Print the contents and address of the bool-vector $.
860 This command assumes that $ is an Emacs Lisp bool-vector value.
865 print (struct buffer *) $ptr
867 output ((struct Lisp_String *) $ptr)->data
871 Set $ as a buffer pointer and the name of the buffer.
872 This command assumes $ is an Emacs Lisp buffer value.
877 print (struct Lisp_Hash_Table *) $ptr
880 Set $ as a hash table pointer.
881 This command assumes that $ is an Emacs Lisp hash table value.
886 print (struct Lisp_Cons *) $ptr
891 Print the contents of $ as an Emacs Lisp cons.
899 Print the contents of the next cell in a list.
900 This command assumes that the last thing you printed was a cons cell contents
901 (type struct Lisp_Cons) or a pointer to one.
906 print/x ($type == Lisp_Cons ? ((struct Lisp_Cons *) $ptr)->car : 0)
909 Assume that $ is an Emacs Lisp pair and print its car.
915 print/x ($type == Lisp_Cons ? ((struct Lisp_Cons *) $ptr)->u.cdr : 0)
918 Assume that $ is an Emacs Lisp pair and print its cdr.
923 set $cons = (struct Lisp_Cons *) $ptr
927 while $cons != $nil && $i < 10
931 set $cons = (struct Lisp_Cons *) $ptr
943 Print $ assuming it is a list.
948 print ((struct Lisp_Float *) $ptr)->u.data
951 Print $ assuming it is a lisp floating-point number.
956 print (struct scrollbar *) $ptr
961 Print $ as a scrollbar pointer.
966 if $type == Lisp_Int0 || $type == Lisp_Int1
969 if $type == Lisp_Symbol
972 if $type == Lisp_String
975 if $type == Lisp_Cons
978 if $type == Lisp_Float
981 if $type == Lisp_Misc
982 set $misc = (enum Lisp_Misc_Type) (((struct Lisp_Free *) $ptr)->type)
983 if $misc == Lisp_Misc_Free
986 if $misc == Lisp_Misc_Marker
989 if $misc == Lisp_Misc_Overlay
992 # if $misc == Lisp_Misc_Save_Value
996 if $type == Lisp_Vectorlike
997 set $size = ((struct Lisp_Vector *) $ptr)->header.size
998 if ($size & PSEUDOVECTOR_FLAG)
999 set $vec = (enum pvec_type) (($size & PVEC_TYPE_MASK) >> PSEUDOVECTOR_SIZE_BITS)
1000 if $vec == PVEC_NORMAL_VECTOR
1003 if $vec == PVEC_PROCESS
1006 if $vec == PVEC_FRAME
1009 if $vec == PVEC_COMPILED
1012 if $vec == PVEC_WINDOW
1015 if $vec == PVEC_WINDOW_CONFIGURATION
1018 if $vec == PVEC_SUBR
1021 if $vec == PVEC_CHAR_TABLE
1024 if $vec == PVEC_BOOL_VECTOR
1027 if $vec == PVEC_BUFFER
1030 if $vec == PVEC_HASH_TABLE
1039 Print $ as a lisp object of any type.
1043 set $data = (char *) $arg0->data
1044 output ($arg0->size > 1000) ? 0 : ($data[0])@($arg0->size_byte < 0 ? $arg0->size & ~ARRAY_MARK_FLAG : $arg0->size_byte)
1049 set $sym = (struct Lisp_Symbol *) $ptr
1051 set $sym_name = (struct Lisp_String *) $ptr
1055 Print argument as a symbol.
1059 set $tmp = (struct Lisp_Hash_Table *) ((Vcoding_system_hash_table & VALMASK) | DATA_SEG_BITS)
1060 set $tmp = (struct Lisp_Vector *) (($tmp->key_and_value & VALMASK) | DATA_SEG_BITS)
1061 set $name = $tmp->contents[$arg0 * 2]
1064 print $tmp->contents[$arg0 * 2 + 1]
1068 Print the name and attributes of coding system that has ID (argument).
1072 set $tmp = (struct Lisp_Hash_Table *) ((Vcharset_hash_table & VALMASK) | DATA_SEG_BITS)
1073 set $tmp = (struct Lisp_Vector *) (($tmp->key_and_value & VALMASK) | DATA_SEG_BITS)
1074 p $tmp->contents[charset_table[$arg0].hash_index * 2]
1078 Print the name of charset that has ID (argument).
1083 set $tbl = (struct Lisp_Char_Table *) $ptr
1085 xgetint $tbl->extras[0]
1086 printf " ID:%d", $int
1087 xgettype $tbl->extras[1]
1088 xgetptr $tbl->extras[1]
1089 if $type == Lisp_String
1090 set $ptr = (struct Lisp_String *) $ptr
1094 xgetptr $tbl->extras[2]
1095 set $ptr = (struct Lisp_Char_Table *) $ptr
1096 xgetptr $ptr->extras[1]
1097 set $ptr = (struct Lisp_String *) $ptr
1098 printf " Realized from:"
1106 set $size = (((struct Lisp_Vector *) $ptr)->header.size & 0x1FF)
1107 if $size == FONT_SPEC_MAX
1108 print (struct font_spec *) $ptr
1110 if $size == FONT_ENTITY_MAX
1111 print (struct font_entity *) $ptr
1113 print (struct font *) $ptr
1118 Print $ assuming it is a list font (font-spec, font-entity, or font-object).
1122 set $bt = backtrace_list
1124 xgettype ($bt->function)
1125 if $type == Lisp_Symbol
1126 xprintsym ($bt->function)
1127 printf " (0x%x)\n", $bt->args
1129 xgetptr $bt->function
1130 printf "0x%x ", $ptr
1131 if $type == Lisp_Vectorlike
1132 xgetptr ($bt->function)
1133 set $size = ((struct Lisp_Vector *) $ptr)->header.size
1134 if ($size & PSEUDOVECTOR_FLAG)
1135 output (enum pvec_type) (($size & PVEC_TYPE_MASK) >> PSEUDOVECTOR_SIZE_BITS)
1137 output $size & ~ARRAY_MARK_FLAG
1140 printf "Lisp type %d", $type
1148 Print a backtrace of Lisp function calls from backtrace_list.
1149 Set a breakpoint at Fsignal and call this to see from where
1150 an error was signaled.
1153 define xprintbytestr
1154 set $data = (char *) $arg0->data
1156 output/u ($arg0->size > 1000) ? 0 : ($data[0])@($arg0->size_byte < 0 ? $arg0->size & ~ARRAY_MARK_FLAG : $arg0->size_byte)
1158 document xprintbytestr
1159 Print a string of byte code.
1162 define xwhichsymbols
1163 set $output_debug = print_output_debug_flag
1164 set print_output_debug_flag = 0
1165 call safe_debug_print (which_symbols ($arg0, $arg1))
1166 set print_output_debug_flag = $output_debug
1168 document xwhichsymbols
1169 Print symbols which references a given lisp object
1170 either as its symbol value or symbol function.
1171 Call with two arguments: the lisp object and the
1172 maximum number of symbols referencing it to produce.
1176 set $bt = byte_stack_list
1178 xgetptr $bt->byte_string
1179 set $ptr = (struct Lisp_String *) $ptr
1181 printf "\n0x%x => ", $bt->byte_string
1182 xwhichsymbols $bt->byte_string 5
1187 Print a backtrace of the byte code stack.
1190 # Show Lisp backtrace after normal backtrace.
1191 define hookpost-backtrace
1192 set $bt = backtrace_list
1195 echo Lisp Backtrace:\n
1200 # Flush display (X only)
1205 Flush pending X window display updates to screen.
1206 Works only when an inferior emacs is executing.
1211 set print sevenbit-strings
1213 show environment DISPLAY
1214 show environment TERM
1216 # When debugging, it is handy to be able to "return" from
1217 # terminate_due_to_signal when an assertion failure is non-fatal.
1218 break terminate_due_to_signal
1220 # x_error_quitter is defined only on X. But window-system is set up
1221 # only at run time, during Emacs startup, so we need to defer setting
1222 # the breakpoint. init_sys_modes is the first function called on
1223 # every platform after init_display, where window-system is set.
1224 tbreak init_sys_modes
1227 xgetptr globals.f_Vinitial_window_system
1228 set $tem = (struct Lisp_Symbol *) $ptr
1230 set $tem = (struct Lisp_String *) $ptr
1231 set $tem = (char *) $tem->data
1232 # If we are running in synchronous mode, we want a chance to look
1233 # around before Emacs exits. Perhaps we should put the break
1234 # somewhere else instead...
1235 if $tem[0] == 'x' && $tem[1] == '\0'
1236 break x_error_quitter