1 /* Execution of byte code produced by bytecomp.el.
2 Copyright (C) 1985, 1986, 1987, 1988, 1993, 2000, 2001, 2002, 2003, 2004
3 Free Software Foundation, Inc.
5 This file is part of GNU Emacs.
7 GNU Emacs is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
12 GNU Emacs is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with GNU Emacs; see the file COPYING. If not, write to
19 the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA.
22 hacked on by jwz@lucid.com 17-jun-91
23 o added a compile-time switch to turn on simple sanity checking;
24 o put back the obsolete byte-codes for error-detection;
25 o added a new instruction, unbind_all, which I will use for
26 tail-recursion elimination;
27 o made temp_output_buffer_show be called with the right number
29 o made the new bytecodes be called with args in the right order;
30 o added metering support.
33 o added relative jump instructions;
34 o all conditionals now only do QUIT if they jump.
44 #ifdef CHECK_FRAME_FONT
50 * define BYTE_CODE_SAFE to enable some minor sanity checking (useful for
51 * debugging the byte compiler...)
53 * define BYTE_CODE_METER to enable generation of a byte-op usage histogram.
55 /* #define BYTE_CODE_SAFE */
56 /* #define BYTE_CODE_METER */
59 #ifdef BYTE_CODE_METER
61 Lisp_Object Vbyte_code_meter
, Qbyte_code_meter
;
64 #define METER_2(code1, code2) \
65 XFASTINT (XVECTOR (XVECTOR (Vbyte_code_meter)->contents[(code1)]) \
68 #define METER_1(code) METER_2 (0, (code))
70 #define METER_CODE(last_code, this_code) \
72 if (byte_metering_on) \
74 if (METER_1 (this_code) < MOST_POSITIVE_FIXNUM) \
75 METER_1 (this_code)++; \
77 && METER_2 (last_code, this_code) < MOST_POSITIVE_FIXNUM) \
78 METER_2 (last_code, this_code)++; \
82 #else /* no BYTE_CODE_METER */
84 #define METER_CODE(last_code, this_code)
86 #endif /* no BYTE_CODE_METER */
89 Lisp_Object Qbytecode
;
117 #define Bsymbol_value 0112
118 #define Bsymbol_function 0113
122 #define Bsubstring 0117
123 #define Bconcat2 0120
124 #define Bconcat3 0121
125 #define Bconcat4 0122
128 #define Beqlsign 0125
141 /* Was Bmark in v17. */
142 #define Bsave_current_buffer 0141
143 #define Bgoto_char 0142
145 #define Bpoint_max 0144
146 #define Bpoint_min 0145
147 #define Bchar_after 0146
148 #define Bfollowing_char 0147
149 #define Bpreceding_char 0150
150 #define Bcurrent_column 0151
151 #define Bindent_to 0152
152 #define Bscan_buffer 0153 /* No longer generated as of v18 */
157 #define Bcurrent_buffer 0160
158 #define Bset_buffer 0161
159 #define Bsave_current_buffer_1 0162 /* Replacing Bsave_current_buffer. */
160 #define Bread_char 0162 /* No longer generated as of v19 */
161 #define Bset_mark 0163 /* this loser is no longer generated as of v18 */
162 #define Binteractive_p 0164 /* Needed since interactive-p takes unevalled args */
164 #define Bforward_char 0165
165 #define Bforward_word 0166
166 #define Bskip_chars_forward 0167
167 #define Bskip_chars_backward 0170
168 #define Bforward_line 0171
169 #define Bchar_syntax 0172
170 #define Bbuffer_substring 0173
171 #define Bdelete_region 0174
172 #define Bnarrow_to_region 0175
174 #define Bend_of_line 0177
176 #define Bconstant2 0201
178 #define Bgotoifnil 0203
179 #define Bgotoifnonnil 0204
180 #define Bgotoifnilelsepop 0205
181 #define Bgotoifnonnilelsepop 0206
183 #define Bdiscard 0210
186 #define Bsave_excursion 0212
187 #define Bsave_window_excursion 0213
188 #define Bsave_restriction 0214
191 #define Bunwind_protect 0216
192 #define Bcondition_case 0217
193 #define Btemp_output_buffer_setup 0220
194 #define Btemp_output_buffer_show 0221
196 #define Bunbind_all 0222
198 #define Bset_marker 0223
199 #define Bmatch_beginning 0224
200 #define Bmatch_end 0225
202 #define Bdowncase 0227
204 #define Bstringeqlsign 0230
205 #define Bstringlss 0231
211 #define Bnreverse 0237
214 #define Bcar_safe 0242
215 #define Bcdr_safe 0243
219 #define Bnumberp 0247
220 #define Bintegerp 0250
223 #define BRgotoifnil 0253
224 #define BRgotoifnonnil 0254
225 #define BRgotoifnilelsepop 0255
226 #define BRgotoifnonnilelsepop 0256
229 #define BconcatN 0260
230 #define BinsertN 0261
232 #define Bconstant 0300
233 #define CONSTANTLIM 0100
236 /* Structure describing a value stack used during byte-code execution
241 /* Program counter. This points into the byte_string below
242 and is relocated when that string is relocated. */
243 const unsigned char *pc
;
245 /* Top and bottom of stack. The bottom points to an area of memory
246 allocated with alloca in Fbyte_code. */
247 Lisp_Object
*top
, *bottom
;
249 /* The string containing the byte-code, and its current address.
250 Storing this here protects it from GC because mark_byte_stack
252 Lisp_Object byte_string
;
253 const unsigned char *byte_string_start
;
255 /* The vector of constants used during byte-code execution. Storing
256 this here protects it from GC because mark_byte_stack marks it. */
257 Lisp_Object constants
;
259 /* Next entry in byte_stack_list. */
260 struct byte_stack
*next
;
263 /* A list of currently active byte-code execution value stacks.
264 Fbyte_code adds an entry to the head of this list before it starts
265 processing byte-code, and it removed the entry again when it is
266 done. Signalling an error truncates the list analoguous to
269 struct byte_stack
*byte_stack_list
;
272 /* Mark objects on byte_stack_list. Called during GC. */
277 struct byte_stack
*stack
;
280 for (stack
= byte_stack_list
; stack
; stack
= stack
->next
)
282 /* If STACK->top is null here, this means there's an opcode in
283 Fbyte_code that wasn't expected to GC, but did. To find out
284 which opcode this is, record the value of `stack', and walk
285 up the stack in a debugger, stopping in frames of Fbyte_code.
286 The culprit is found in the frame of Fbyte_code where the
287 address of its local variable `stack' is equal to the
288 recorded value of `stack' here. */
289 eassert (stack
->top
);
291 for (obj
= stack
->bottom
; obj
<= stack
->top
; ++obj
)
294 mark_object (stack
->byte_string
);
295 mark_object (stack
->constants
);
300 /* Unmark objects in the stacks on byte_stack_list. Relocate program
301 counters. Called when GC has completed. */
306 struct byte_stack
*stack
;
308 for (stack
= byte_stack_list
; stack
; stack
= stack
->next
)
310 if (stack
->byte_string_start
!= SDATA (stack
->byte_string
))
312 int offset
= stack
->pc
- stack
->byte_string_start
;
313 stack
->byte_string_start
= SDATA (stack
->byte_string
);
314 stack
->pc
= stack
->byte_string_start
+ offset
;
320 /* Fetch the next byte from the bytecode stream */
322 #define FETCH *stack.pc++
324 /* Fetch two bytes from the bytecode stream and make a 16-bit number
327 #define FETCH2 (op = FETCH, op + (FETCH << 8))
329 /* Push x onto the execution stack. This used to be #define PUSH(x)
330 (*++stackp = (x)) This oddity is necessary because Alliant can't be
331 bothered to compile the preincrement operator properly, as of 4/91.
334 #define PUSH(x) (top++, *top = (x))
336 /* Pop a value off the execution stack. */
340 /* Discard n values from the execution stack. */
342 #define DISCARD(n) (top -= (n))
344 /* Get the value which is at the top of the execution stack, but don't
349 /* Actions that must be performed before and after calling a function
352 #define BEFORE_POTENTIAL_GC() stack.top = top
353 #define AFTER_POTENTIAL_GC() stack.top = NULL
355 /* Garbage collect if we have consed enough since the last time.
356 We do this at every branch, to avoid loops that never GC. */
359 if (consing_since_gc > gc_cons_threshold) \
361 BEFORE_POTENTIAL_GC (); \
362 Fgarbage_collect (); \
363 AFTER_POTENTIAL_GC (); \
367 /* Check for jumping out of range. */
369 #ifdef BYTE_CODE_SAFE
371 #define CHECK_RANGE(ARG) \
372 if (ARG >= bytestr_length) abort ()
374 #else /* not BYTE_CODE_SAFE */
376 #define CHECK_RANGE(ARG)
378 #endif /* not BYTE_CODE_SAFE */
380 /* A version of the QUIT macro which makes sure that the stack top is
381 set before signaling `quit'. */
383 #define BYTE_CODE_QUIT \
385 if (!NILP (Vquit_flag) && NILP (Vinhibit_quit)) \
387 Lisp_Object flag = Vquit_flag; \
389 BEFORE_POTENTIAL_GC (); \
390 if (EQ (Vthrow_on_input, flag)) \
391 Fthrow (Vthrow_on_input, Qnil); \
392 Fsignal (Qquit, Qnil); \
393 AFTER_POTENTIAL_GC (); \
398 DEFUN ("byte-code", Fbyte_code
, Sbyte_code
, 3, 3, 0,
399 doc
: /* Function used internally in byte-compiled code.
400 The first argument, BYTESTR, is a string of byte code;
401 the second, VECTOR, a vector of constants;
402 the third, MAXDEPTH, the maximum stack depth used in this function.
403 If the third argument is incorrect, Emacs may crash. */)
404 (bytestr
, vector
, maxdepth
)
405 Lisp_Object bytestr
, vector
, maxdepth
;
407 int count
= SPECPDL_INDEX ();
408 #ifdef BYTE_CODE_METER
413 /* Lisp_Object v1, v2; */
414 Lisp_Object
*vectorp
;
415 #ifdef BYTE_CODE_SAFE
416 int const_length
= XVECTOR (vector
)->size
;
420 struct byte_stack stack
;
424 #ifdef CHECK_FRAME_FONT
426 struct frame
*f
= SELECTED_FRAME ();
428 && FRAME_FONT (f
)->direction
!= 0
429 && FRAME_FONT (f
)->direction
!= 1)
434 CHECK_STRING (bytestr
);
435 if (!VECTORP (vector
))
436 vector
= wrong_type_argument (Qvectorp
, vector
);
437 CHECK_NUMBER (maxdepth
);
439 if (STRING_MULTIBYTE (bytestr
))
440 /* BYTESTR must have been produced by Emacs 20.2 or the earlier
441 because they produced a raw 8-bit string for byte-code and now
442 such a byte-code string is loaded as multibyte while raw 8-bit
443 characters converted to multibyte form. Thus, now we must
444 convert them back to the originally intended unibyte form. */
445 bytestr
= Fstring_as_unibyte (bytestr
);
447 bytestr_length
= SBYTES (bytestr
);
448 vectorp
= XVECTOR (vector
)->contents
;
450 stack
.byte_string
= bytestr
;
451 stack
.pc
= stack
.byte_string_start
= SDATA (bytestr
);
452 stack
.constants
= vector
;
453 stack
.bottom
= (Lisp_Object
*) alloca (XFASTINT (maxdepth
)
454 * sizeof (Lisp_Object
));
455 top
= stack
.bottom
- 1;
457 stack
.next
= byte_stack_list
;
458 byte_stack_list
= &stack
;
460 #ifdef BYTE_CODE_SAFE
461 stacke
= stack
.bottom
- 1 + XFASTINT (maxdepth
);
466 #ifdef BYTE_CODE_SAFE
469 else if (top
< stack
.bottom
- 1)
473 #ifdef BYTE_CODE_METER
475 this_op
= op
= FETCH
;
476 METER_CODE (prev_op
, op
);
496 /* This seems to be the most frequently executed byte-code
497 among the Bvarref's, so avoid a goto here. */
507 v2
= SYMBOL_VALUE (v1
);
508 if (MISCP (v2
) || EQ (v2
, Qunbound
))
510 BEFORE_POTENTIAL_GC ();
511 v2
= Fsymbol_value (v1
);
512 AFTER_POTENTIAL_GC ();
517 BEFORE_POTENTIAL_GC ();
518 v2
= Fsymbol_value (v1
);
519 AFTER_POTENTIAL_GC ();
532 stack
.pc
= stack
.byte_string_start
+ op
;
546 wrong_type_argument (Qlistp
, v1
);
555 TOP
= EQ (v1
, TOP
) ? Qt
: Qnil
;
562 BEFORE_POTENTIAL_GC ();
564 TOP
= Fmemq (TOP
, v1
);
565 AFTER_POTENTIAL_GC ();
579 wrong_type_argument (Qlistp
, v1
);
601 Lisp_Object sym
, val
;
606 /* Inline the most common case. */
608 && !EQ (val
, Qunbound
)
609 && !XSYMBOL (sym
)->indirect_variable
610 && !XSYMBOL (sym
)->constant
611 && !MISCP (XSYMBOL (sym
)->value
))
612 XSYMBOL (sym
)->value
= val
;
615 BEFORE_POTENTIAL_GC ();
616 set_internal (sym
, val
, current_buffer
, 0);
617 AFTER_POTENTIAL_GC ();
631 /* ------------------ */
649 /* Specbind can signal and thus GC. */
650 BEFORE_POTENTIAL_GC ();
651 specbind (vectorp
[op
], POP
);
652 AFTER_POTENTIAL_GC ();
672 BEFORE_POTENTIAL_GC ();
674 #ifdef BYTE_CODE_METER
675 if (byte_metering_on
&& SYMBOLP (TOP
))
680 v2
= Fget (v1
, Qbyte_code_meter
);
682 && XINT (v2
) < MOST_POSITIVE_FIXNUM
)
684 XSETINT (v2
, XINT (v2
) + 1);
685 Fput (v1
, Qbyte_code_meter
, v2
);
689 TOP
= Ffuncall (op
+ 1, &TOP
);
690 AFTER_POTENTIAL_GC ();
710 BEFORE_POTENTIAL_GC ();
711 unbind_to (SPECPDL_INDEX () - op
, Qnil
);
712 AFTER_POTENTIAL_GC ();
716 /* To unbind back to the beginning of this frame. Not used yet,
717 but will be needed for tail-recursion elimination. */
718 BEFORE_POTENTIAL_GC ();
719 unbind_to (count
, Qnil
);
720 AFTER_POTENTIAL_GC ();
726 op
= FETCH2
; /* pc = FETCH2 loses since FETCH2 contains pc++ */
728 stack
.pc
= stack
.byte_string_start
+ op
;
738 stack
.pc
= stack
.byte_string_start
+ op
;
742 case Bgotoifnilelsepop
:
749 stack
.pc
= stack
.byte_string_start
+ op
;
754 case Bgotoifnonnilelsepop
:
761 stack
.pc
= stack
.byte_string_start
+ op
;
769 stack
.pc
+= (int) *stack
.pc
- 127;
777 stack
.pc
+= (int) *stack
.pc
- 128;
787 stack
.pc
+= (int) *stack
.pc
- 128;
792 case BRgotoifnilelsepop
:
798 stack
.pc
+= op
- 128;
803 case BRgotoifnonnilelsepop
:
809 stack
.pc
+= op
- 128;
823 PUSH (vectorp
[FETCH2
]);
826 case Bsave_excursion
:
827 record_unwind_protect (save_excursion_restore
,
828 save_excursion_save ());
831 case Bsave_current_buffer
:
832 case Bsave_current_buffer_1
:
833 record_unwind_protect (set_buffer_if_live
, Fcurrent_buffer ());
836 case Bsave_window_excursion
:
837 BEFORE_POTENTIAL_GC ();
838 TOP
= Fsave_window_excursion (TOP
);
839 AFTER_POTENTIAL_GC ();
842 case Bsave_restriction
:
843 record_unwind_protect (save_restriction_restore
,
844 save_restriction_save ());
850 BEFORE_POTENTIAL_GC ();
852 TOP
= internal_catch (TOP
, Feval
, v1
);
853 AFTER_POTENTIAL_GC ();
857 case Bunwind_protect
:
858 record_unwind_protect (Fprogn
, POP
);
861 case Bcondition_case
:
865 v1
= Fcons (POP
, v1
);
866 BEFORE_POTENTIAL_GC ();
867 TOP
= Fcondition_case (Fcons (TOP
, v1
));
868 AFTER_POTENTIAL_GC ();
872 case Btemp_output_buffer_setup
:
873 BEFORE_POTENTIAL_GC ();
875 temp_output_buffer_setup (SDATA (TOP
));
876 AFTER_POTENTIAL_GC ();
877 TOP
= Vstandard_output
;
880 case Btemp_output_buffer_show
:
883 BEFORE_POTENTIAL_GC ();
885 temp_output_buffer_show (TOP
);
887 /* pop binding of standard-output */
888 unbind_to (SPECPDL_INDEX () - 1, Qnil
);
889 AFTER_POTENTIAL_GC ();
896 BEFORE_POTENTIAL_GC ();
900 AFTER_POTENTIAL_GC ();
910 wrong_type_argument (Qlistp
, v1
);
919 wrong_type_argument (Qlistp
, v1
);
924 TOP
= SYMBOLP (TOP
) ? Qt
: Qnil
;
928 TOP
= CONSP (TOP
) ? Qt
: Qnil
;
932 TOP
= STRINGP (TOP
) ? Qt
: Qnil
;
936 TOP
= CONSP (TOP
) || NILP (TOP
) ? Qt
: Qnil
;
940 TOP
= NILP (TOP
) ? Qt
: Qnil
;
947 TOP
= Fcons (TOP
, v1
);
952 TOP
= Fcons (TOP
, Qnil
);
959 TOP
= Fcons (TOP
, Fcons (v1
, Qnil
));
965 TOP
= Flist (3, &TOP
);
970 TOP
= Flist (4, &TOP
);
976 TOP
= Flist (op
, &TOP
);
980 BEFORE_POTENTIAL_GC ();
982 AFTER_POTENTIAL_GC ();
988 BEFORE_POTENTIAL_GC ();
990 TOP
= Faref (TOP
, v1
);
991 AFTER_POTENTIAL_GC ();
998 BEFORE_POTENTIAL_GC ();
1000 TOP
= Faset (TOP
, v1
, v2
);
1001 AFTER_POTENTIAL_GC ();
1006 BEFORE_POTENTIAL_GC ();
1007 TOP
= Fsymbol_value (TOP
);
1008 AFTER_POTENTIAL_GC ();
1011 case Bsymbol_function
:
1012 BEFORE_POTENTIAL_GC ();
1013 TOP
= Fsymbol_function (TOP
);
1014 AFTER_POTENTIAL_GC ();
1020 BEFORE_POTENTIAL_GC ();
1022 TOP
= Fset (TOP
, v1
);
1023 AFTER_POTENTIAL_GC ();
1030 BEFORE_POTENTIAL_GC ();
1032 TOP
= Ffset (TOP
, v1
);
1033 AFTER_POTENTIAL_GC ();
1040 BEFORE_POTENTIAL_GC ();
1042 TOP
= Fget (TOP
, v1
);
1043 AFTER_POTENTIAL_GC ();
1050 BEFORE_POTENTIAL_GC ();
1052 TOP
= Fsubstring (TOP
, v1
, v2
);
1053 AFTER_POTENTIAL_GC ();
1058 BEFORE_POTENTIAL_GC ();
1060 TOP
= Fconcat (2, &TOP
);
1061 AFTER_POTENTIAL_GC ();
1065 BEFORE_POTENTIAL_GC ();
1067 TOP
= Fconcat (3, &TOP
);
1068 AFTER_POTENTIAL_GC ();
1072 BEFORE_POTENTIAL_GC ();
1074 TOP
= Fconcat (4, &TOP
);
1075 AFTER_POTENTIAL_GC ();
1080 BEFORE_POTENTIAL_GC ();
1082 TOP
= Fconcat (op
, &TOP
);
1083 AFTER_POTENTIAL_GC ();
1092 XSETINT (v1
, XINT (v1
) - 1);
1097 BEFORE_POTENTIAL_GC ();
1099 AFTER_POTENTIAL_GC ();
1110 XSETINT (v1
, XINT (v1
) + 1);
1115 BEFORE_POTENTIAL_GC ();
1117 AFTER_POTENTIAL_GC ();
1125 BEFORE_POTENTIAL_GC ();
1127 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (v1
);
1128 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (v2
);
1129 AFTER_POTENTIAL_GC ();
1130 if (FLOATP (v1
) || FLOATP (v2
))
1134 f1
= (FLOATP (v1
) ? XFLOAT_DATA (v1
) : XINT (v1
));
1135 f2
= (FLOATP (v2
) ? XFLOAT_DATA (v2
) : XINT (v2
));
1136 TOP
= (f1
== f2
? Qt
: Qnil
);
1139 TOP
= (XINT (v1
) == XINT (v2
) ? Qt
: Qnil
);
1146 BEFORE_POTENTIAL_GC ();
1148 TOP
= Fgtr (TOP
, v1
);
1149 AFTER_POTENTIAL_GC ();
1156 BEFORE_POTENTIAL_GC ();
1158 TOP
= Flss (TOP
, v1
);
1159 AFTER_POTENTIAL_GC ();
1166 BEFORE_POTENTIAL_GC ();
1168 TOP
= Fleq (TOP
, v1
);
1169 AFTER_POTENTIAL_GC ();
1176 BEFORE_POTENTIAL_GC ();
1178 TOP
= Fgeq (TOP
, v1
);
1179 AFTER_POTENTIAL_GC ();
1184 BEFORE_POTENTIAL_GC ();
1186 TOP
= Fminus (2, &TOP
);
1187 AFTER_POTENTIAL_GC ();
1196 XSETINT (v1
, - XINT (v1
));
1201 BEFORE_POTENTIAL_GC ();
1202 TOP
= Fminus (1, &TOP
);
1203 AFTER_POTENTIAL_GC ();
1209 BEFORE_POTENTIAL_GC ();
1211 TOP
= Fplus (2, &TOP
);
1212 AFTER_POTENTIAL_GC ();
1216 BEFORE_POTENTIAL_GC ();
1218 TOP
= Fmax (2, &TOP
);
1219 AFTER_POTENTIAL_GC ();
1223 BEFORE_POTENTIAL_GC ();
1225 TOP
= Fmin (2, &TOP
);
1226 AFTER_POTENTIAL_GC ();
1230 BEFORE_POTENTIAL_GC ();
1232 TOP
= Ftimes (2, &TOP
);
1233 AFTER_POTENTIAL_GC ();
1237 BEFORE_POTENTIAL_GC ();
1239 TOP
= Fquo (2, &TOP
);
1240 AFTER_POTENTIAL_GC ();
1246 BEFORE_POTENTIAL_GC ();
1248 TOP
= Frem (TOP
, v1
);
1249 AFTER_POTENTIAL_GC ();
1256 XSETFASTINT (v1
, PT
);
1262 BEFORE_POTENTIAL_GC ();
1263 TOP
= Fgoto_char (TOP
);
1264 AFTER_POTENTIAL_GC ();
1268 BEFORE_POTENTIAL_GC ();
1269 TOP
= Finsert (1, &TOP
);
1270 AFTER_POTENTIAL_GC ();
1275 BEFORE_POTENTIAL_GC ();
1277 TOP
= Finsert (op
, &TOP
);
1278 AFTER_POTENTIAL_GC ();
1284 XSETFASTINT (v1
, ZV
);
1292 XSETFASTINT (v1
, BEGV
);
1298 BEFORE_POTENTIAL_GC ();
1299 TOP
= Fchar_after (TOP
);
1300 AFTER_POTENTIAL_GC ();
1303 case Bfollowing_char
:
1306 BEFORE_POTENTIAL_GC ();
1307 v1
= Ffollowing_char ();
1308 AFTER_POTENTIAL_GC ();
1313 case Bpreceding_char
:
1316 BEFORE_POTENTIAL_GC ();
1317 v1
= Fprevious_char ();
1318 AFTER_POTENTIAL_GC ();
1323 case Bcurrent_column
:
1326 BEFORE_POTENTIAL_GC ();
1327 XSETFASTINT (v1
, (int) current_column ()); /* iftc */
1328 AFTER_POTENTIAL_GC ();
1334 BEFORE_POTENTIAL_GC ();
1335 TOP
= Findent_to (TOP
, Qnil
);
1336 AFTER_POTENTIAL_GC ();
1355 case Bcurrent_buffer
:
1356 PUSH (Fcurrent_buffer ());
1360 BEFORE_POTENTIAL_GC ();
1361 TOP
= Fset_buffer (TOP
);
1362 AFTER_POTENTIAL_GC ();
1365 case Binteractive_p
:
1366 PUSH (Finteractive_p ());
1370 BEFORE_POTENTIAL_GC ();
1371 TOP
= Fforward_char (TOP
);
1372 AFTER_POTENTIAL_GC ();
1376 BEFORE_POTENTIAL_GC ();
1377 TOP
= Fforward_word (TOP
);
1378 AFTER_POTENTIAL_GC ();
1381 case Bskip_chars_forward
:
1384 BEFORE_POTENTIAL_GC ();
1386 TOP
= Fskip_chars_forward (TOP
, v1
);
1387 AFTER_POTENTIAL_GC ();
1391 case Bskip_chars_backward
:
1394 BEFORE_POTENTIAL_GC ();
1396 TOP
= Fskip_chars_backward (TOP
, v1
);
1397 AFTER_POTENTIAL_GC ();
1402 BEFORE_POTENTIAL_GC ();
1403 TOP
= Fforward_line (TOP
);
1404 AFTER_POTENTIAL_GC ();
1408 BEFORE_POTENTIAL_GC ();
1410 AFTER_POTENTIAL_GC ();
1411 XSETFASTINT (TOP
, syntax_code_spec
[(int) SYNTAX (XINT (TOP
))]);
1414 case Bbuffer_substring
:
1417 BEFORE_POTENTIAL_GC ();
1419 TOP
= Fbuffer_substring (TOP
, v1
);
1420 AFTER_POTENTIAL_GC ();
1424 case Bdelete_region
:
1427 BEFORE_POTENTIAL_GC ();
1429 TOP
= Fdelete_region (TOP
, v1
);
1430 AFTER_POTENTIAL_GC ();
1434 case Bnarrow_to_region
:
1437 BEFORE_POTENTIAL_GC ();
1439 TOP
= Fnarrow_to_region (TOP
, v1
);
1440 AFTER_POTENTIAL_GC ();
1445 BEFORE_POTENTIAL_GC ();
1447 AFTER_POTENTIAL_GC ();
1451 BEFORE_POTENTIAL_GC ();
1452 TOP
= Fend_of_line (TOP
);
1453 AFTER_POTENTIAL_GC ();
1459 BEFORE_POTENTIAL_GC ();
1462 TOP
= Fset_marker (TOP
, v2
, v1
);
1463 AFTER_POTENTIAL_GC ();
1467 case Bmatch_beginning
:
1468 BEFORE_POTENTIAL_GC ();
1469 TOP
= Fmatch_beginning (TOP
);
1470 AFTER_POTENTIAL_GC ();
1474 BEFORE_POTENTIAL_GC ();
1475 TOP
= Fmatch_end (TOP
);
1476 AFTER_POTENTIAL_GC ();
1480 BEFORE_POTENTIAL_GC ();
1481 TOP
= Fupcase (TOP
);
1482 AFTER_POTENTIAL_GC ();
1486 BEFORE_POTENTIAL_GC ();
1487 TOP
= Fdowncase (TOP
);
1488 AFTER_POTENTIAL_GC ();
1491 case Bstringeqlsign
:
1494 BEFORE_POTENTIAL_GC ();
1496 TOP
= Fstring_equal (TOP
, v1
);
1497 AFTER_POTENTIAL_GC ();
1504 BEFORE_POTENTIAL_GC ();
1506 TOP
= Fstring_lessp (TOP
, v1
);
1507 AFTER_POTENTIAL_GC ();
1515 TOP
= Fequal (TOP
, v1
);
1522 BEFORE_POTENTIAL_GC ();
1524 TOP
= Fnthcdr (TOP
, v1
);
1525 AFTER_POTENTIAL_GC ();
1534 /* Exchange args and then do nth. */
1535 BEFORE_POTENTIAL_GC ();
1539 AFTER_POTENTIAL_GC ();
1546 else if (!NILP (v1
))
1549 wrong_type_argument (Qlistp
, v1
);
1558 wrong_type_argument (Qlistp
, v1
);
1562 BEFORE_POTENTIAL_GC ();
1564 TOP
= Felt (TOP
, v1
);
1565 AFTER_POTENTIAL_GC ();
1573 BEFORE_POTENTIAL_GC ();
1575 TOP
= Fmember (TOP
, v1
);
1576 AFTER_POTENTIAL_GC ();
1583 BEFORE_POTENTIAL_GC ();
1585 TOP
= Fassq (TOP
, v1
);
1586 AFTER_POTENTIAL_GC ();
1591 BEFORE_POTENTIAL_GC ();
1592 TOP
= Fnreverse (TOP
);
1593 AFTER_POTENTIAL_GC ();
1599 BEFORE_POTENTIAL_GC ();
1601 TOP
= Fsetcar (TOP
, v1
);
1602 AFTER_POTENTIAL_GC ();
1609 BEFORE_POTENTIAL_GC ();
1611 TOP
= Fsetcdr (TOP
, v1
);
1612 AFTER_POTENTIAL_GC ();
1639 BEFORE_POTENTIAL_GC ();
1641 TOP
= Fnconc (2, &TOP
);
1642 AFTER_POTENTIAL_GC ();
1646 TOP
= (NUMBERP (TOP
) ? Qt
: Qnil
);
1650 TOP
= INTEGERP (TOP
) ? Qt
: Qnil
;
1653 #ifdef BYTE_CODE_SAFE
1655 BEFORE_POTENTIAL_GC ();
1656 error ("set-mark is an obsolete bytecode");
1657 AFTER_POTENTIAL_GC ();
1660 BEFORE_POTENTIAL_GC ();
1661 error ("scan-buffer is an obsolete bytecode");
1662 AFTER_POTENTIAL_GC ();
1671 #ifdef BYTE_CODE_SAFE
1676 if ((op
-= Bconstant
) >= const_length
)
1682 PUSH (vectorp
[op
- Bconstant
]);
1689 byte_stack_list
= byte_stack_list
->next
;
1691 /* Binds and unbinds are supposed to be compiled balanced. */
1692 if (SPECPDL_INDEX () != count
)
1693 #ifdef BYTE_CODE_SAFE
1694 error ("binding stack not balanced (serious byte compiler bug)");
1705 Qbytecode
= intern ("byte-code");
1706 staticpro (&Qbytecode
);
1708 defsubr (&Sbyte_code
);
1710 #ifdef BYTE_CODE_METER
1712 DEFVAR_LISP ("byte-code-meter", &Vbyte_code_meter
,
1713 doc
: /* A vector of vectors which holds a histogram of byte-code usage.
1714 \(aref (aref byte-code-meter 0) CODE) indicates how many times the byte
1715 opcode CODE has been executed.
1716 \(aref (aref byte-code-meter CODE1) CODE2), where CODE1 is not 0,
1717 indicates how many times the byte opcodes CODE1 and CODE2 have been
1718 executed in succession. */);
1720 DEFVAR_BOOL ("byte-metering-on", &byte_metering_on
,
1721 doc
: /* If non-nil, keep profiling information on byte code usage.
1722 The variable byte-code-meter indicates how often each byte opcode is used.
1723 If a symbol has a property named `byte-code-meter' whose value is an
1724 integer, it is incremented each time that symbol's function is called. */);
1726 byte_metering_on
= 0;
1727 Vbyte_code_meter
= Fmake_vector (make_number (256), make_number (0));
1728 Qbyte_code_meter
= intern ("byte-code-meter");
1729 staticpro (&Qbyte_code_meter
);
1733 XVECTOR (Vbyte_code_meter
)->contents
[i
] =
1734 Fmake_vector (make_number (256), make_number (0));
1739 /* arch-tag: b9803b6f-1ed6-4190-8adf-33fd3a9d10e9
1740 (do not change this comment) */