* top.c (get_prompt_1), tracepoint.c (replace_comma): Update
[binutils-gdb.git] / gdb / top.c
1 /* Top level stuff for GDB, the GNU debugger.
2 Copyright 1986-2000 Free Software Foundation, Inc.
3
4 This file is part of GDB.
5
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 2 of the License, or
9 (at your option) any later version.
10
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with this program; if not, write to the Free Software
18 Foundation, Inc., 59 Temple Place - Suite 330,
19 Boston, MA 02111-1307, USA. */
20
21 #include "defs.h"
22 #include "gdbcmd.h"
23 #include "call-cmds.h"
24 #include "symtab.h"
25 #include "inferior.h"
26 #include "signals.h"
27 #include "target.h"
28 #include "breakpoint.h"
29 #include "gdbtypes.h"
30 #include "expression.h"
31 #include "value.h"
32 #include "language.h"
33 #include "terminal.h" /* For job_control. */
34 #include "annotate.h"
35 #include "top.h"
36 #include "version.h"
37
38 /* readline include files */
39 #include <readline/readline.h>
40 #include <readline/history.h>
41
42 /* readline defines this. */
43 #undef savestring
44
45 #include <sys/types.h>
46
47 #include <setjmp.h>
48
49 #include "event-top.h"
50 #include "gdb_string.h"
51 #include "gdb_stat.h"
52 #include <ctype.h>
53 #ifdef UI_OUT
54 #include "ui-out.h"
55 #include "cli-out.h"
56 #endif
57
58 /* Prototypes for local functions */
59
60 static void dont_repeat_command (char *, int);
61
62 static void source_cleanup_lines (PTR);
63
64 static void user_defined_command (char *, int);
65
66 static void init_signals (void);
67
68 #ifdef STOP_SIGNAL
69 static void stop_sig (int);
70 #endif
71
72 static char *line_completion_function (char *, int, char *, int);
73
74 static char *readline_line_completion_function (char *, int);
75
76 static void while_command (char *, int);
77
78 static void if_command (char *, int);
79
80 static struct command_line *build_command_line (enum command_control_type,
81 char *);
82
83 static struct command_line *get_command_line (enum command_control_type,
84 char *);
85
86 static void realloc_body_list (struct command_line *, int);
87
88 static enum misc_command_type read_next_line (struct command_line **);
89
90 static enum command_control_type
91 recurse_read_control_structure (struct command_line *);
92
93 static struct cleanup *setup_user_args (char *);
94
95 static char *locate_arg (char *);
96
97 static char *insert_args (char *);
98
99 static void arg_cleanup (void *);
100
101 static void init_main (void);
102
103 static void init_cmd_lists (void);
104
105 static void float_handler (int);
106
107 static void init_signals (void);
108
109 static void set_verbose (char *, int, struct cmd_list_element *);
110
111 static void show_history (char *, int);
112
113 static void set_history (char *, int);
114
115 static void set_history_size_command (char *, int, struct cmd_list_element *);
116
117 static void show_commands (char *, int);
118
119 static void echo_command (char *, int);
120
121 static void pwd_command (char *, int);
122
123 static void show_version (char *, int);
124
125 static void document_command (char *, int);
126
127 static void define_command (char *, int);
128
129 static void validate_comname (char *);
130
131 static void help_command (char *, int);
132
133 static void show_command (char *, int);
134
135 static void info_command (char *, int);
136
137 static void complete_command (char *, int);
138
139 static void do_nothing (int);
140
141 static void show_debug (char *, int);
142
143 static void set_debug (char *, int);
144
145 #ifdef SIGHUP
146 /* NOTE 1999-04-29: This function will be static again, once we modify
147 gdb to use the event loop as the default command loop and we merge
148 event-top.c into this file, top.c */
149 /* static */ int quit_cover (PTR);
150
151 static void disconnect (int);
152 #endif
153
154 static void do_restore_instream_cleanup (void *stream);
155
156 static struct cleanup *make_cleanup_free_command_lines (struct command_line **);
157
158 /* Default command line prompt. This is overriden in some configs. */
159
160 #ifndef DEFAULT_PROMPT
161 #define DEFAULT_PROMPT "(gdb) "
162 #endif
163
164 /* Initialization file name for gdb. This is overridden in some configs. */
165
166 #ifndef GDBINIT_FILENAME
167 #define GDBINIT_FILENAME ".gdbinit"
168 #endif
169 char gdbinit[] = GDBINIT_FILENAME;
170
171 int inhibit_gdbinit = 0;
172
173 /* If nonzero, and GDB has been configured to be able to use windows,
174 attempt to open them upon startup. */
175
176 int use_windows = 1;
177
178 extern char lang_frame_mismatch_warn[]; /* language.c */
179
180 /* Flag for whether we want all the "from_tty" gubbish printed. */
181
182 int caution = 1; /* Default is yes, sigh. */
183
184 /* Define all cmd_list_elements. */
185
186 /* Chain containing all defined commands. */
187
188 struct cmd_list_element *cmdlist;
189
190 /* Chain containing all defined info subcommands. */
191
192 struct cmd_list_element *infolist;
193
194 /* Chain containing all defined enable subcommands. */
195
196 struct cmd_list_element *enablelist;
197
198 /* Chain containing all defined disable subcommands. */
199
200 struct cmd_list_element *disablelist;
201
202 /* Chain containing all defined toggle subcommands. */
203
204 struct cmd_list_element *togglelist;
205
206 /* Chain containing all defined stop subcommands. */
207
208 struct cmd_list_element *stoplist;
209
210 /* Chain containing all defined delete subcommands. */
211
212 struct cmd_list_element *deletelist;
213
214 /* Chain containing all defined "enable breakpoint" subcommands. */
215
216 struct cmd_list_element *enablebreaklist;
217
218 /* Chain containing all defined set subcommands */
219
220 struct cmd_list_element *setlist;
221
222 /* Chain containing all defined unset subcommands */
223
224 struct cmd_list_element *unsetlist;
225
226 /* Chain containing all defined show subcommands. */
227
228 struct cmd_list_element *showlist;
229
230 /* Chain containing all defined \"set history\". */
231
232 struct cmd_list_element *sethistlist;
233
234 /* Chain containing all defined \"show history\". */
235
236 struct cmd_list_element *showhistlist;
237
238 /* Chain containing all defined \"unset history\". */
239
240 struct cmd_list_element *unsethistlist;
241
242 /* Chain containing all defined maintenance subcommands. */
243
244 struct cmd_list_element *maintenancelist;
245
246 /* Chain containing all defined "maintenance info" subcommands. */
247
248 struct cmd_list_element *maintenanceinfolist;
249
250 /* Chain containing all defined "maintenance print" subcommands. */
251
252 struct cmd_list_element *maintenanceprintlist;
253
254 struct cmd_list_element *setprintlist;
255
256 struct cmd_list_element *showprintlist;
257
258 struct cmd_list_element *setdebuglist;
259
260 struct cmd_list_element *showdebuglist;
261
262 struct cmd_list_element *setchecklist;
263
264 struct cmd_list_element *showchecklist;
265
266 /* stdio stream that command input is being read from. Set to stdin normally.
267 Set by source_command to the file we are sourcing. Set to NULL if we are
268 executing a user-defined command or interacting via a GUI. */
269
270 FILE *instream;
271
272 /* Current working directory. */
273
274 char *current_directory;
275
276 /* The directory name is actually stored here (usually). */
277 char gdb_dirbuf[1024];
278
279 /* Function to call before reading a command, if nonzero.
280 The function receives two args: an input stream,
281 and a prompt string. */
282
283 void (*window_hook) (FILE *, char *);
284
285 int epoch_interface;
286 int xgdb_verbose;
287
288 /* gdb prints this when reading a command interactively */
289 static char *gdb_prompt_string; /* the global prompt string */
290 extern char *get_prompt (void); /* access function for prompt string */
291
292 /* Buffer used for reading command lines, and the size
293 allocated for it so far. */
294
295 char *line;
296 int linesize = 100;
297
298 /* Nonzero if the current command is modified by "server ". This
299 affects things like recording into the command history, commands
300 repeating on RETURN, etc. This is so a user interface (emacs, GUI,
301 whatever) can issue its own commands and also send along commands
302 from the user, and have the user not notice that the user interface
303 is issuing commands too. */
304 int server_command;
305
306 /* Baud rate specified for talking to serial target systems. Default
307 is left as -1, so targets can choose their own defaults. */
308 /* FIXME: This means that "show remotebaud" and gr_files_info can print -1
309 or (unsigned int)-1. This is a Bad User Interface. */
310
311 int baud_rate = -1;
312
313 /* Timeout limit for response from target. */
314
315 /* The default value has been changed many times over the years. It
316 was originally 5 seconds. But that was thought to be a long time
317 to sit and wait, so it was changed to 2 seconds. That was thought
318 to be plenty unless the connection was going through some terminal
319 server or multiplexer or other form of hairy serial connection.
320
321 In mid-1996, remote_timeout was moved from remote.c to top.c and
322 it began being used in other remote-* targets. It appears that the
323 default was changed to 20 seconds at that time, perhaps because the
324 Hitachi E7000 ICE didn't always respond in a timely manner.
325
326 But if 5 seconds is a long time to sit and wait for retransmissions,
327 20 seconds is far worse. This demonstrates the difficulty of using
328 a single variable for all protocol timeouts.
329
330 As remote.c is used much more than remote-e7000.c, it was changed
331 back to 2 seconds in 1999. */
332
333 int remote_timeout = 2;
334
335 /* Non-zero tells remote* modules to output debugging info. */
336
337 int remote_debug = 0;
338
339 /* Non-zero means the target is running. Note: this is different from
340 saying that there is an active target and we are stopped at a
341 breakpoint, for instance. This is a real indicator whether the
342 target is off and running, which gdb is doing something else. */
343 int target_executing = 0;
344
345 /* Level of control structure. */
346 static int control_level;
347
348 /* Structure for arguments to user defined functions. */
349 #define MAXUSERARGS 10
350 struct user_args
351 {
352 struct user_args *next;
353 struct
354 {
355 char *arg;
356 int len;
357 }
358 a[MAXUSERARGS];
359 int count;
360 }
361 *user_args;
362
363 /* Signal to catch ^Z typed while reading a command: SIGTSTP or SIGCONT. */
364
365 #ifndef STOP_SIGNAL
366 #ifdef SIGTSTP
367 #define STOP_SIGNAL SIGTSTP
368 static void stop_sig (int);
369 #endif
370 #endif
371
372 /* Some System V have job control but not sigsetmask(). */
373 #if !defined (HAVE_SIGSETMASK)
374 #if !defined (USG)
375 #define HAVE_SIGSETMASK 1
376 #else
377 #define HAVE_SIGSETMASK 0
378 #endif
379 #endif
380
381 #if 0 == (HAVE_SIGSETMASK)
382 #define sigsetmask(n)
383 #endif
384
385 /* Hooks for alternate command interfaces. */
386
387 /* Called after most modules have been initialized, but before taking users
388 command file. */
389
390 void (*init_ui_hook) (char *argv0);
391
392 /* This hook is called from within gdb's many mini-event loops which could
393 steal control from a real user interface's event loop. It returns
394 non-zero if the user is requesting a detach, zero otherwise. */
395
396 int (*ui_loop_hook) (int);
397
398 /* Called instead of command_loop at top level. Can be invoked via
399 return_to_top_level. */
400
401 void (*command_loop_hook) (void);
402
403
404 /* Called from print_frame_info to list the line we stopped in. */
405
406 void (*print_frame_info_listing_hook) (struct symtab * s, int line,
407 int stopline, int noerror);
408 /* Replaces most of query. */
409
410 int (*query_hook) (const char *, va_list);
411
412 /* Replaces most of warning. */
413
414 void (*warning_hook) (const char *, va_list);
415
416 /* These three functions support getting lines of text from the user. They
417 are used in sequence. First readline_begin_hook is called with a text
418 string that might be (for example) a message for the user to type in a
419 sequence of commands to be executed at a breakpoint. If this function
420 calls back to a GUI, it might take this opportunity to pop up a text
421 interaction window with this message. Next, readline_hook is called
422 with a prompt that is emitted prior to collecting the user input.
423 It can be called multiple times. Finally, readline_end_hook is called
424 to notify the GUI that we are done with the interaction window and it
425 can close it. */
426
427 void (*readline_begin_hook) (char *, ...);
428 char *(*readline_hook) (char *);
429 void (*readline_end_hook) (void);
430
431 /* Called as appropriate to notify the interface of the specified breakpoint
432 conditions. */
433
434 void (*create_breakpoint_hook) (struct breakpoint * bpt);
435 void (*delete_breakpoint_hook) (struct breakpoint * bpt);
436 void (*modify_breakpoint_hook) (struct breakpoint * bpt);
437
438 /* Called as appropriate to notify the interface that we have attached
439 to or detached from an already running process. */
440
441 void (*attach_hook) (void);
442 void (*detach_hook) (void);
443
444 /* Called during long calculations to allow GUI to repair window damage, and to
445 check for stop buttons, etc... */
446
447 void (*interactive_hook) (void);
448
449 /* Called when the registers have changed, as a hint to a GUI
450 to minimize window update. */
451
452 void (*registers_changed_hook) (void);
453
454 /* Tell the GUI someone changed the register REGNO. -1 means
455 that the caller does not know which register changed or
456 that several registers have changed (see value_assign). */
457 void (*register_changed_hook) (int regno);
458
459 /* Tell the GUI someone changed LEN bytes of memory at ADDR */
460 void (*memory_changed_hook) (CORE_ADDR addr, int len);
461
462 /* Called when going to wait for the target. Usually allows the GUI to run
463 while waiting for target events. */
464
465 int (*target_wait_hook) (int pid, struct target_waitstatus * status);
466
467 /* Used by UI as a wrapper around command execution. May do various things
468 like enabling/disabling buttons, etc... */
469
470 void (*call_command_hook) (struct cmd_list_element * c, char *cmd,
471 int from_tty);
472
473 /* Called after a `set' command has finished. Is only run if the
474 `set' command succeeded. */
475
476 void (*set_hook) (struct cmd_list_element * c);
477
478 /* Called when the current thread changes. Argument is thread id. */
479
480 void (*context_hook) (int id);
481
482 /* Takes control from error (). Typically used to prevent longjmps out of the
483 middle of the GUI. Usually used in conjunction with a catch routine. */
484
485 NORETURN void (*error_hook) (void) ATTR_NORETURN;
486 \f
487
488 /* One should use catch_errors rather than manipulating these
489 directly. */
490 #if defined(HAVE_SIGSETJMP)
491 #define SIGJMP_BUF sigjmp_buf
492 #define SIGSETJMP(buf) sigsetjmp(buf, 1)
493 #define SIGLONGJMP(buf,val) siglongjmp(buf,val)
494 #else
495 #define SIGJMP_BUF jmp_buf
496 #define SIGSETJMP(buf) setjmp(buf)
497 #define SIGLONGJMP(buf,val) longjmp(buf,val)
498 #endif
499
500 /* Where to go for return_to_top_level. */
501 static SIGJMP_BUF *catch_return;
502
503 /* Return for reason REASON to the nearest containing catch_errors(). */
504
505 NORETURN void
506 return_to_top_level (enum return_reason reason)
507 {
508 quit_flag = 0;
509 immediate_quit = 0;
510
511 /* Perhaps it would be cleaner to do this via the cleanup chain (not sure
512 I can think of a reason why that is vital, though). */
513 bpstat_clear_actions (stop_bpstat); /* Clear queued breakpoint commands */
514
515 disable_current_display ();
516 do_cleanups (ALL_CLEANUPS);
517 if (event_loop_p && target_can_async_p () && !target_executing)
518 do_exec_cleanups (ALL_CLEANUPS);
519 if (event_loop_p && sync_execution)
520 do_exec_error_cleanups (ALL_CLEANUPS);
521
522 if (annotation_level > 1)
523 switch (reason)
524 {
525 case RETURN_QUIT:
526 annotate_quit ();
527 break;
528 case RETURN_ERROR:
529 annotate_error ();
530 break;
531 }
532
533 /* Jump to the containing catch_errors() call, communicating REASON
534 to that call via setjmp's return value. Note that REASON can't
535 be zero, by definition in defs.h. */
536
537 (NORETURN void) SIGLONGJMP (*catch_return, (int) reason);
538 }
539
540 /* Call FUNC with arg ARGS, catching any errors. If there is no
541 error, return the value returned by FUNC. If there is an error,
542 print ERRSTRING, print the specific error message, then return
543 zero.
544
545 Must not be called with immediate_quit in effect (bad things might
546 happen, say we got a signal in the middle of a memcpy to quit_return).
547 This is an OK restriction; with very few exceptions immediate_quit can
548 be replaced by judicious use of QUIT.
549
550 MASK specifies what to catch; it is normally set to
551 RETURN_MASK_ALL, if for no other reason than that the code which
552 calls catch_errors might not be set up to deal with a quit which
553 isn't caught. But if the code can deal with it, it generally
554 should be RETURN_MASK_ERROR, unless for some reason it is more
555 useful to abort only the portion of the operation inside the
556 catch_errors. Note that quit should return to the command line
557 fairly quickly, even if some further processing is being done. */
558
559 /* MAYBE: cagney/1999-11-05: catch_errors() in conjunction with
560 error() et.al. could maintain a set of flags that indicate the the
561 current state of each of the longjmp buffers. This would give the
562 longjmp code the chance to detect a longjmp botch (before it gets
563 to longjmperror()). Prior to 1999-11-05 this wasn't possible as
564 code also randomly used a SET_TOP_LEVEL macro that directly
565 initialize the longjmp buffers. */
566
567 /* MAYBE: cagney/1999-11-05: Should the catch_erros and cleanups code
568 be consolidated into a single file instead of being distributed
569 between utils.c and top.c? */
570
571 int
572 catch_errors (catch_errors_ftype *func, PTR args, char *errstring,
573 return_mask mask)
574 {
575 SIGJMP_BUF *saved_catch;
576 SIGJMP_BUF catch;
577 int val;
578 struct cleanup *saved_cleanup_chain;
579 char *saved_error_pre_print;
580 char *saved_quit_pre_print;
581
582 /* Return value from SIGSETJMP(): enum return_reason if error or
583 quit caught, 0 otherwise. */
584 int caught;
585
586 /* Override error/quit messages during FUNC. */
587
588 saved_error_pre_print = error_pre_print;
589 saved_quit_pre_print = quit_pre_print;
590
591 if (mask & RETURN_MASK_ERROR)
592 error_pre_print = errstring;
593 if (mask & RETURN_MASK_QUIT)
594 quit_pre_print = errstring;
595
596 /* Prevent error/quit during FUNC from calling cleanups established
597 prior to here. */
598
599 saved_cleanup_chain = save_cleanups ();
600
601 /* Call FUNC, catching error/quit events. */
602
603 saved_catch = catch_return;
604 catch_return = &catch;
605 caught = SIGSETJMP (catch);
606 if (!caught)
607 val = (*func) (args);
608 catch_return = saved_catch;
609
610 /* FIXME: cagney/1999-11-05: A correct FUNC implementaton will
611 clean things up (restoring the cleanup chain) to the state they
612 were just prior to the call. Unfortunatly, many FUNC's are not
613 that well behaved. This could be fixed by adding either a
614 do_cleanups call (to cover the problem) or an assertion check to
615 detect bad FUNCs code. */
616
617 /* Restore the cleanup chain and error/quit messages to their
618 original states. */
619
620 restore_cleanups (saved_cleanup_chain);
621
622 if (mask & RETURN_MASK_QUIT)
623 quit_pre_print = saved_quit_pre_print;
624 if (mask & RETURN_MASK_ERROR)
625 error_pre_print = saved_error_pre_print;
626
627 /* Return normally if no error/quit event occurred. */
628
629 if (!caught)
630 return val;
631
632 /* If the caller didn't request that the event be caught, relay the
633 event to the next containing catch_errors(). */
634
635 if (!(mask & RETURN_MASK (caught)))
636 return_to_top_level (caught);
637
638 /* Tell the caller that an event was caught.
639
640 FIXME: nsd/2000-02-22: When MASK is RETURN_MASK_ALL, the caller
641 can't tell what type of event occurred.
642
643 A possible fix is to add a new interface, catch_event(), that
644 returns enum return_reason after catching an error or a quit.
645
646 When returning normally, i.e. without catching an error or a
647 quit, catch_event() could return RETURN_NORMAL, which would be
648 added to enum return_reason. FUNC would return information
649 exclusively via ARGS.
650
651 Alternatively, normal catch_event() could return FUNC's return
652 value. The caller would need to be aware of potential overlap
653 with enum return_reason, which could be publicly restricted to
654 negative values to simplify return value processing in FUNC and
655 in the caller. */
656
657 return 0;
658 }
659
660 struct captured_command_args
661 {
662 catch_command_errors_ftype *command;
663 char *arg;
664 int from_tty;
665 };
666
667 static int
668 do_captured_command (void *data)
669 {
670 struct captured_command_args *context = data;
671 context->command (context->arg, context->from_tty);
672 /* FIXME: cagney/1999-11-07: Technically this do_cleanups() call
673 isn't needed. Instead an assertion check could be made that
674 simply confirmed that the called function correctly cleaned up
675 after its self. Unfortunatly, old code (prior to 1999-11-04) in
676 main.c was calling SET_TOP_LEVEL(), calling the command function,
677 and then *always* calling do_cleanups(). For the moment we
678 remain ``bug compatible'' with that old code.. */
679 do_cleanups (ALL_CLEANUPS);
680 return 1;
681 }
682
683 int
684 catch_command_errors (catch_command_errors_ftype * command,
685 char *arg, int from_tty, return_mask mask)
686 {
687 struct captured_command_args args;
688 args.command = command;
689 args.arg = arg;
690 args.from_tty = from_tty;
691 return catch_errors (do_captured_command, &args, "", mask);
692 }
693
694
695 /* Handler for SIGHUP. */
696
697 #ifdef SIGHUP
698 static void
699 disconnect (int signo)
700 {
701 catch_errors (quit_cover, NULL,
702 "Could not kill the program being debugged", RETURN_MASK_ALL);
703 signal (SIGHUP, SIG_DFL);
704 kill (getpid (), SIGHUP);
705 }
706
707 /* Just a little helper function for disconnect(). */
708
709 /* NOTE 1999-04-29: This function will be static again, once we modify
710 gdb to use the event loop as the default command loop and we merge
711 event-top.c into this file, top.c */
712 /* static */ int
713 quit_cover (PTR s)
714 {
715 caution = 0; /* Throw caution to the wind -- we're exiting.
716 This prevents asking the user dumb questions. */
717 quit_command ((char *) 0, 0);
718 return 0;
719 }
720 #endif /* defined SIGHUP */
721 \f
722 /* Line number we are currently in in a file which is being sourced. */
723 /* NOTE 1999-04-29: This variable will be static again, once we modify
724 gdb to use the event loop as the default command loop and we merge
725 event-top.c into this file, top.c */
726 /* static */ int source_line_number;
727
728 /* Name of the file we are sourcing. */
729 /* NOTE 1999-04-29: This variable will be static again, once we modify
730 gdb to use the event loop as the default command loop and we merge
731 event-top.c into this file, top.c */
732 /* static */ char *source_file_name;
733
734 /* Buffer containing the error_pre_print used by the source stuff.
735 Malloc'd. */
736 /* NOTE 1999-04-29: This variable will be static again, once we modify
737 gdb to use the event loop as the default command loop and we merge
738 event-top.c into this file, top.c */
739 /* static */ char *source_error;
740 static int source_error_allocated;
741
742 /* Something to glom on to the start of error_pre_print if source_file_name
743 is set. */
744 /* NOTE 1999-04-29: This variable will be static again, once we modify
745 gdb to use the event loop as the default command loop and we merge
746 event-top.c into this file, top.c */
747 /* static */ char *source_pre_error;
748
749 /* Clean up on error during a "source" command (or execution of a
750 user-defined command). */
751
752 static void
753 do_restore_instream_cleanup (void *stream)
754 {
755 /* Restore the previous input stream. */
756 instream = stream;
757 }
758
759 /* Read commands from STREAM. */
760 void
761 read_command_file (FILE *stream)
762 {
763 struct cleanup *cleanups;
764
765 cleanups = make_cleanup (do_restore_instream_cleanup, instream);
766 instream = stream;
767 command_loop ();
768 do_cleanups (cleanups);
769 }
770 \f
771 extern void init_proc (void);
772
773 void (*pre_init_ui_hook) (void);
774
775 #ifdef __MSDOS__
776 void
777 do_chdir_cleanup (void *old_dir)
778 {
779 chdir (old_dir);
780 free (old_dir);
781 }
782 #endif
783
784 void
785 gdb_init (char *argv0)
786 {
787 if (pre_init_ui_hook)
788 pre_init_ui_hook ();
789
790 /* Run the init function of each source file */
791
792 getcwd (gdb_dirbuf, sizeof (gdb_dirbuf));
793 current_directory = gdb_dirbuf;
794
795 #ifdef __MSDOS__
796 /* Make sure we return to the original directory upon exit, come
797 what may, since the OS doesn't do that for us. */
798 make_final_cleanup (do_chdir_cleanup, xstrdup (current_directory));
799 #endif
800
801 init_cmd_lists (); /* This needs to be done first */
802 initialize_targets (); /* Setup target_terminal macros for utils.c */
803 initialize_utils (); /* Make errors and warnings possible */
804 initialize_all_files ();
805 initialize_current_architecture ();
806 init_main (); /* But that omits this file! Do it now */
807
808 /* The signal handling mechanism is different depending whether or
809 not the async version is run. NOTE: in the future we plan to make
810 the event loop be the default engine of gdb, and this difference
811 will disappear. */
812 if (event_loop_p)
813 async_init_signals ();
814 else
815 init_signals ();
816
817 /* We need a default language for parsing expressions, so simple things like
818 "set width 0" won't fail if no language is explicitly set in a config file
819 or implicitly set by reading an executable during startup. */
820 set_language (language_c);
821 expected_language = current_language; /* don't warn about the change. */
822
823 #ifdef UI_OUT
824 /* Install the default UI */
825 uiout = cli_out_new (gdb_stdout);
826 #endif
827
828 #ifdef UI_OUT
829 /* All the interpreters should have had a look at things by now.
830 Initialize the selected interpreter. */
831 if (interpreter_p && !init_ui_hook)
832 {
833 fprintf_unfiltered (gdb_stderr, "Interpreter `%s' unrecognized.\n",
834 interpreter_p);
835 exit (1);
836 }
837 #endif
838
839 if (init_ui_hook)
840 init_ui_hook (argv0);
841 }
842
843 /* Allocate, initialize a new command line structure for one of the
844 control commands (if/while). */
845
846 static struct command_line *
847 build_command_line (enum command_control_type type, char *args)
848 {
849 struct command_line *cmd;
850
851 if (args == NULL)
852 error ("if/while commands require arguments.\n");
853
854 cmd = (struct command_line *) xmalloc (sizeof (struct command_line));
855 cmd->next = NULL;
856 cmd->control_type = type;
857
858 cmd->body_count = 1;
859 cmd->body_list
860 = (struct command_line **) xmalloc (sizeof (struct command_line *)
861 * cmd->body_count);
862 memset (cmd->body_list, 0, sizeof (struct command_line *) * cmd->body_count);
863 cmd->line = savestring (args, strlen (args));
864 return cmd;
865 }
866
867 /* Build and return a new command structure for the control commands
868 such as "if" and "while". */
869
870 static struct command_line *
871 get_command_line (enum command_control_type type, char *arg)
872 {
873 struct command_line *cmd;
874 struct cleanup *old_chain = NULL;
875
876 /* Allocate and build a new command line structure. */
877 cmd = build_command_line (type, arg);
878
879 old_chain = make_cleanup_free_command_lines (&cmd);
880
881 /* Read in the body of this command. */
882 if (recurse_read_control_structure (cmd) == invalid_control)
883 {
884 warning ("error reading in control structure\n");
885 do_cleanups (old_chain);
886 return NULL;
887 }
888
889 discard_cleanups (old_chain);
890 return cmd;
891 }
892
893 /* Recursively print a command (including full control structures). */
894 #ifdef UI_OUT
895 void
896 print_command_lines (struct ui_out *uiout, struct command_line *cmd,
897 unsigned int depth)
898 {
899 struct command_line *list;
900
901 list = cmd;
902 while (list)
903 {
904
905 if (depth)
906 ui_out_spaces (uiout, 2 * depth);
907
908 /* A simple command, print it and continue. */
909 if (list->control_type == simple_control)
910 {
911 ui_out_field_string (uiout, NULL, list->line);
912 ui_out_text (uiout, "\n");
913 list = list->next;
914 continue;
915 }
916
917 /* loop_continue to jump to the start of a while loop, print it
918 and continue. */
919 if (list->control_type == continue_control)
920 {
921 ui_out_field_string (uiout, NULL, "loop_continue");
922 ui_out_text (uiout, "\n");
923 list = list->next;
924 continue;
925 }
926
927 /* loop_break to break out of a while loop, print it and continue. */
928 if (list->control_type == break_control)
929 {
930 ui_out_field_string (uiout, NULL, "loop_break");
931 ui_out_text (uiout, "\n");
932 list = list->next;
933 continue;
934 }
935
936 /* A while command. Recursively print its subcommands and continue. */
937 if (list->control_type == while_control)
938 {
939 ui_out_text (uiout, "while ");
940 ui_out_field_fmt (uiout, NULL, "while %s", list->line);
941 ui_out_text (uiout, "\n");
942 print_command_lines (uiout, *list->body_list, depth + 1);
943 ui_out_field_string (uiout, NULL, "end");
944 if (depth)
945 ui_out_spaces (uiout, 2 * depth);
946 ui_out_text (uiout, "end\n");
947 list = list->next;
948 continue;
949 }
950
951 /* An if command. Recursively print both arms before continueing. */
952 if (list->control_type == if_control)
953 {
954 ui_out_text (uiout, "if ");
955 ui_out_field_fmt (uiout, NULL, "if %s", list->line);
956 ui_out_text (uiout, "\n");
957 /* The true arm. */
958 print_command_lines (uiout, list->body_list[0], depth + 1);
959
960 /* Show the false arm if it exists. */
961 if (list->body_count == 2)
962 {
963 if (depth)
964 ui_out_spaces (uiout, 2 * depth);
965 ui_out_field_string (uiout, NULL, "else");
966 ui_out_text (uiout, "else\n");
967 print_command_lines (uiout, list->body_list[1], depth + 1);
968 }
969
970 ui_out_field_string (uiout, NULL, "end");
971 if (depth)
972 ui_out_spaces (uiout, 2 * depth);
973 ui_out_text (uiout, "end\n");
974 list = list->next;
975 continue;
976 }
977
978 /* ignore illegal command type and try next */
979 list = list->next;
980 } /* while (list) */
981 }
982 #else
983 void
984 print_command_line (struct command_line *cmd, unsigned int depth,
985 struct ui_file *stream)
986 {
987 unsigned int i;
988
989 if (depth)
990 {
991 for (i = 0; i < depth; i++)
992 fputs_filtered (" ", stream);
993 }
994
995 /* A simple command, print it and return. */
996 if (cmd->control_type == simple_control)
997 {
998 fputs_filtered (cmd->line, stream);
999 fputs_filtered ("\n", stream);
1000 return;
1001 }
1002
1003 /* loop_continue to jump to the start of a while loop, print it
1004 and return. */
1005 if (cmd->control_type == continue_control)
1006 {
1007 fputs_filtered ("loop_continue\n", stream);
1008 return;
1009 }
1010
1011 /* loop_break to break out of a while loop, print it and return. */
1012 if (cmd->control_type == break_control)
1013 {
1014 fputs_filtered ("loop_break\n", stream);
1015 return;
1016 }
1017
1018 /* A while command. Recursively print its subcommands before returning. */
1019 if (cmd->control_type == while_control)
1020 {
1021 struct command_line *list;
1022 fputs_filtered ("while ", stream);
1023 fputs_filtered (cmd->line, stream);
1024 fputs_filtered ("\n", stream);
1025 list = *cmd->body_list;
1026 while (list)
1027 {
1028 print_command_line (list, depth + 1, stream);
1029 list = list->next;
1030 }
1031 }
1032
1033 /* An if command. Recursively print both arms before returning. */
1034 if (cmd->control_type == if_control)
1035 {
1036 fputs_filtered ("if ", stream);
1037 fputs_filtered (cmd->line, stream);
1038 fputs_filtered ("\n", stream);
1039 /* The true arm. */
1040 print_command_line (cmd->body_list[0], depth + 1, stream);
1041
1042 /* Show the false arm if it exists. */
1043 if (cmd->body_count == 2)
1044 {
1045 if (depth)
1046 {
1047 for (i = 0; i < depth; i++)
1048 fputs_filtered (" ", stream);
1049 }
1050 fputs_filtered ("else\n", stream);
1051 print_command_line (cmd->body_list[1], depth + 1, stream);
1052 }
1053 if (depth)
1054 {
1055 for (i = 0; i < depth; i++)
1056 fputs_filtered (" ", stream);
1057 }
1058 fputs_filtered ("end\n", stream);
1059 }
1060 }
1061 #endif
1062
1063 /* Execute the command in CMD. */
1064
1065 enum command_control_type
1066 execute_control_command (struct command_line *cmd)
1067 {
1068 struct expression *expr;
1069 struct command_line *current;
1070 struct cleanup *old_chain = 0;
1071 value_ptr val;
1072 value_ptr val_mark;
1073 int loop;
1074 enum command_control_type ret;
1075 char *new_line;
1076
1077 switch (cmd->control_type)
1078 {
1079 case simple_control:
1080 /* A simple command, execute it and return. */
1081 new_line = insert_args (cmd->line);
1082 if (!new_line)
1083 return invalid_control;
1084 old_chain = make_cleanup (free_current_contents, &new_line);
1085 execute_command (new_line, 0);
1086 ret = cmd->control_type;
1087 break;
1088
1089 case continue_control:
1090 case break_control:
1091 /* Return for "continue", and "break" so we can either
1092 continue the loop at the top, or break out. */
1093 ret = cmd->control_type;
1094 break;
1095
1096 case while_control:
1097 {
1098 /* Parse the loop control expression for the while statement. */
1099 new_line = insert_args (cmd->line);
1100 if (!new_line)
1101 return invalid_control;
1102 old_chain = make_cleanup (free_current_contents, &new_line);
1103 expr = parse_expression (new_line);
1104 make_cleanup (free_current_contents, &expr);
1105
1106 ret = simple_control;
1107 loop = 1;
1108
1109 /* Keep iterating so long as the expression is true. */
1110 while (loop == 1)
1111 {
1112 int cond_result;
1113
1114 QUIT;
1115
1116 /* Evaluate the expression. */
1117 val_mark = value_mark ();
1118 val = evaluate_expression (expr);
1119 cond_result = value_true (val);
1120 value_free_to_mark (val_mark);
1121
1122 /* If the value is false, then break out of the loop. */
1123 if (!cond_result)
1124 break;
1125
1126 /* Execute the body of the while statement. */
1127 current = *cmd->body_list;
1128 while (current)
1129 {
1130 ret = execute_control_command (current);
1131
1132 /* If we got an error, or a "break" command, then stop
1133 looping. */
1134 if (ret == invalid_control || ret == break_control)
1135 {
1136 loop = 0;
1137 break;
1138 }
1139
1140 /* If we got a "continue" command, then restart the loop
1141 at this point. */
1142 if (ret == continue_control)
1143 break;
1144
1145 /* Get the next statement. */
1146 current = current->next;
1147 }
1148 }
1149
1150 /* Reset RET so that we don't recurse the break all the way down. */
1151 if (ret == break_control)
1152 ret = simple_control;
1153
1154 break;
1155 }
1156
1157 case if_control:
1158 {
1159 new_line = insert_args (cmd->line);
1160 if (!new_line)
1161 return invalid_control;
1162 old_chain = make_cleanup (free_current_contents, &new_line);
1163 /* Parse the conditional for the if statement. */
1164 expr = parse_expression (new_line);
1165 make_cleanup (free_current_contents, &expr);
1166
1167 current = NULL;
1168 ret = simple_control;
1169
1170 /* Evaluate the conditional. */
1171 val_mark = value_mark ();
1172 val = evaluate_expression (expr);
1173
1174 /* Choose which arm to take commands from based on the value of the
1175 conditional expression. */
1176 if (value_true (val))
1177 current = *cmd->body_list;
1178 else if (cmd->body_count == 2)
1179 current = *(cmd->body_list + 1);
1180 value_free_to_mark (val_mark);
1181
1182 /* Execute commands in the given arm. */
1183 while (current)
1184 {
1185 ret = execute_control_command (current);
1186
1187 /* If we got an error, get out. */
1188 if (ret != simple_control)
1189 break;
1190
1191 /* Get the next statement in the body. */
1192 current = current->next;
1193 }
1194
1195 break;
1196 }
1197
1198 default:
1199 warning ("Invalid control type in command structure.");
1200 return invalid_control;
1201 }
1202
1203 if (old_chain)
1204 do_cleanups (old_chain);
1205
1206 return ret;
1207 }
1208
1209 /* "while" command support. Executes a body of statements while the
1210 loop condition is nonzero. */
1211
1212 static void
1213 while_command (char *arg, int from_tty)
1214 {
1215 struct command_line *command = NULL;
1216
1217 control_level = 1;
1218 command = get_command_line (while_control, arg);
1219
1220 if (command == NULL)
1221 return;
1222
1223 execute_control_command (command);
1224 free_command_lines (&command);
1225 }
1226
1227 /* "if" command support. Execute either the true or false arm depending
1228 on the value of the if conditional. */
1229
1230 static void
1231 if_command (char *arg, int from_tty)
1232 {
1233 struct command_line *command = NULL;
1234
1235 control_level = 1;
1236 command = get_command_line (if_control, arg);
1237
1238 if (command == NULL)
1239 return;
1240
1241 execute_control_command (command);
1242 free_command_lines (&command);
1243 }
1244
1245 /* Cleanup */
1246 static void
1247 arg_cleanup (void *ignore)
1248 {
1249 struct user_args *oargs = user_args;
1250 if (!user_args)
1251 internal_error ("Internal error, arg_cleanup called with no user args.\n");
1252
1253 user_args = user_args->next;
1254 free (oargs);
1255 }
1256
1257 /* Bind the incomming arguments for a user defined command to
1258 $arg0, $arg1 ... $argMAXUSERARGS. */
1259
1260 static struct cleanup *
1261 setup_user_args (char *p)
1262 {
1263 struct user_args *args;
1264 struct cleanup *old_chain;
1265 unsigned int arg_count = 0;
1266
1267 args = (struct user_args *) xmalloc (sizeof (struct user_args));
1268 memset (args, 0, sizeof (struct user_args));
1269
1270 args->next = user_args;
1271 user_args = args;
1272
1273 old_chain = make_cleanup (arg_cleanup, 0/*ignored*/);
1274
1275 if (p == NULL)
1276 return old_chain;
1277
1278 while (*p)
1279 {
1280 char *start_arg;
1281 int squote = 0;
1282 int dquote = 0;
1283 int bsquote = 0;
1284
1285 if (arg_count >= MAXUSERARGS)
1286 {
1287 error ("user defined function may only have %d arguments.\n",
1288 MAXUSERARGS);
1289 return old_chain;
1290 }
1291
1292 /* Strip whitespace. */
1293 while (*p == ' ' || *p == '\t')
1294 p++;
1295
1296 /* P now points to an argument. */
1297 start_arg = p;
1298 user_args->a[arg_count].arg = p;
1299
1300 /* Get to the end of this argument. */
1301 while (*p)
1302 {
1303 if (((*p == ' ' || *p == '\t')) && !squote && !dquote && !bsquote)
1304 break;
1305 else
1306 {
1307 if (bsquote)
1308 bsquote = 0;
1309 else if (*p == '\\')
1310 bsquote = 1;
1311 else if (squote)
1312 {
1313 if (*p == '\'')
1314 squote = 0;
1315 }
1316 else if (dquote)
1317 {
1318 if (*p == '"')
1319 dquote = 0;
1320 }
1321 else
1322 {
1323 if (*p == '\'')
1324 squote = 1;
1325 else if (*p == '"')
1326 dquote = 1;
1327 }
1328 p++;
1329 }
1330 }
1331
1332 user_args->a[arg_count].len = p - start_arg;
1333 arg_count++;
1334 user_args->count++;
1335 }
1336 return old_chain;
1337 }
1338
1339 /* Given character string P, return a point to the first argument ($arg),
1340 or NULL if P contains no arguments. */
1341
1342 static char *
1343 locate_arg (char *p)
1344 {
1345 while ((p = strchr (p, '$')))
1346 {
1347 if (strncmp (p, "$arg", 4) == 0 && isdigit (p[4]))
1348 return p;
1349 p++;
1350 }
1351 return NULL;
1352 }
1353
1354 /* Insert the user defined arguments stored in user_arg into the $arg
1355 arguments found in line, with the updated copy being placed into nline. */
1356
1357 static char *
1358 insert_args (char *line)
1359 {
1360 char *p, *save_line, *new_line;
1361 unsigned len, i;
1362
1363 /* First we need to know how much memory to allocate for the new line. */
1364 save_line = line;
1365 len = 0;
1366 while ((p = locate_arg (line)))
1367 {
1368 len += p - line;
1369 i = p[4] - '0';
1370
1371 if (i >= user_args->count)
1372 {
1373 error ("Missing argument %d in user function.\n", i);
1374 return NULL;
1375 }
1376 len += user_args->a[i].len;
1377 line = p + 5;
1378 }
1379
1380 /* Don't forget the tail. */
1381 len += strlen (line);
1382
1383 /* Allocate space for the new line and fill it in. */
1384 new_line = (char *) xmalloc (len + 1);
1385 if (new_line == NULL)
1386 return NULL;
1387
1388 /* Restore pointer to beginning of old line. */
1389 line = save_line;
1390
1391 /* Save pointer to beginning of new line. */
1392 save_line = new_line;
1393
1394 while ((p = locate_arg (line)))
1395 {
1396 int i, len;
1397
1398 memcpy (new_line, line, p - line);
1399 new_line += p - line;
1400 i = p[4] - '0';
1401
1402 len = user_args->a[i].len;
1403 if (len)
1404 {
1405 memcpy (new_line, user_args->a[i].arg, len);
1406 new_line += len;
1407 }
1408 line = p + 5;
1409 }
1410 /* Don't forget the tail. */
1411 strcpy (new_line, line);
1412
1413 /* Return a pointer to the beginning of the new line. */
1414 return save_line;
1415 }
1416
1417 void
1418 execute_user_command (struct cmd_list_element *c, char *args)
1419 {
1420 register struct command_line *cmdlines;
1421 struct cleanup *old_chain;
1422 enum command_control_type ret;
1423
1424 old_chain = setup_user_args (args);
1425
1426 cmdlines = c->user_commands;
1427 if (cmdlines == 0)
1428 /* Null command */
1429 return;
1430
1431 /* Set the instream to 0, indicating execution of a
1432 user-defined function. */
1433 old_chain = make_cleanup (do_restore_instream_cleanup, instream);
1434 instream = (FILE *) 0;
1435 while (cmdlines)
1436 {
1437 ret = execute_control_command (cmdlines);
1438 if (ret != simple_control && ret != break_control)
1439 {
1440 warning ("Error in control structure.\n");
1441 break;
1442 }
1443 cmdlines = cmdlines->next;
1444 }
1445 do_cleanups (old_chain);
1446 }
1447
1448 /* Execute the line P as a command.
1449 Pass FROM_TTY as second argument to the defining function. */
1450
1451 void
1452 execute_command (char *p, int from_tty)
1453 {
1454 register struct cmd_list_element *c;
1455 register enum language flang;
1456 static int warned = 0;
1457 char *line;
1458 /* FIXME: These should really be in an appropriate header file */
1459 extern void serial_log_command (const char *);
1460
1461 free_all_values ();
1462
1463 /* Force cleanup of any alloca areas if using C alloca instead of
1464 a builtin alloca. */
1465 alloca (0);
1466
1467 /* This can happen when command_line_input hits end of file. */
1468 if (p == NULL)
1469 return;
1470
1471 serial_log_command (p);
1472
1473 while (*p == ' ' || *p == '\t')
1474 p++;
1475 if (*p)
1476 {
1477 char *arg;
1478 line = p;
1479
1480 c = lookup_cmd (&p, cmdlist, "", 0, 1);
1481
1482 /* If the target is running, we allow only a limited set of
1483 commands. */
1484 if (event_loop_p && target_can_async_p () && target_executing)
1485 if (!strcmp (c->name, "help")
1486 && !strcmp (c->name, "pwd")
1487 && !strcmp (c->name, "show")
1488 && !strcmp (c->name, "stop"))
1489 error ("Cannot execute this command while the target is running.");
1490
1491 /* Pass null arg rather than an empty one. */
1492 arg = *p ? p : 0;
1493
1494 /* Clear off trailing whitespace, except for set and complete command. */
1495 if (arg && c->type != set_cmd && c->function.cfunc != complete_command)
1496 {
1497 p = arg + strlen (arg) - 1;
1498 while (p >= arg && (*p == ' ' || *p == '\t'))
1499 p--;
1500 *(p + 1) = '\0';
1501 }
1502
1503 /* If this command has been hooked, run the hook first. */
1504 if (c->hook)
1505 execute_user_command (c->hook, (char *) 0);
1506
1507 if (c->flags & DEPRECATED_WARN_USER)
1508 deprecated_cmd_warning (&line);
1509
1510 if (c->class == class_user)
1511 execute_user_command (c, arg);
1512 else if (c->type == set_cmd || c->type == show_cmd)
1513 do_setshow_command (arg, from_tty & caution, c);
1514 else if (c->function.cfunc == NO_FUNCTION)
1515 error ("That is not a command, just a help topic.");
1516 else if (call_command_hook)
1517 call_command_hook (c, arg, from_tty & caution);
1518 else
1519 (*c->function.cfunc) (arg, from_tty & caution);
1520 }
1521
1522 /* Tell the user if the language has changed (except first time). */
1523 if (current_language != expected_language)
1524 {
1525 if (language_mode == language_mode_auto)
1526 {
1527 language_info (1); /* Print what changed. */
1528 }
1529 warned = 0;
1530 }
1531
1532 /* Warn the user if the working language does not match the
1533 language of the current frame. Only warn the user if we are
1534 actually running the program, i.e. there is a stack. */
1535 /* FIXME: This should be cacheing the frame and only running when
1536 the frame changes. */
1537
1538 if (target_has_stack)
1539 {
1540 flang = get_frame_language ();
1541 if (!warned
1542 && flang != language_unknown
1543 && flang != current_language->la_language)
1544 {
1545 printf_filtered ("%s\n", lang_frame_mismatch_warn);
1546 warned = 1;
1547 }
1548 }
1549 }
1550
1551 /* Read commands from `instream' and execute them
1552 until end of file or error reading instream. */
1553
1554 void
1555 command_loop (void)
1556 {
1557 struct cleanup *old_chain;
1558 char *command;
1559 int stdin_is_tty = ISATTY (stdin);
1560 long time_at_cmd_start;
1561 #ifdef HAVE_SBRK
1562 long space_at_cmd_start = 0;
1563 #endif
1564 extern int display_time;
1565 extern int display_space;
1566
1567 while (instream && !feof (instream))
1568 {
1569 #if defined(TUI)
1570 extern int insert_mode;
1571 #endif
1572 if (window_hook && instream == stdin)
1573 (*window_hook) (instream, get_prompt ());
1574
1575 quit_flag = 0;
1576 if (instream == stdin && stdin_is_tty)
1577 reinitialize_more_filter ();
1578 old_chain = make_cleanup (null_cleanup, 0);
1579
1580 #if defined(TUI)
1581 /* A bit of paranoia: I want to make sure the "insert_mode" global
1582 * is clear except when it is being used for command-line editing
1583 * (see tuiIO.c, utils.c); otherwise normal output will
1584 * get messed up in the TUI. So clear it before/after
1585 * the command-line-input call. - RT
1586 */
1587 insert_mode = 0;
1588 #endif
1589 /* Get a command-line. This calls the readline package. */
1590 command = command_line_input (instream == stdin ?
1591 get_prompt () : (char *) NULL,
1592 instream == stdin, "prompt");
1593 #if defined(TUI)
1594 insert_mode = 0;
1595 #endif
1596 if (command == 0)
1597 return;
1598
1599 time_at_cmd_start = get_run_time ();
1600
1601 if (display_space)
1602 {
1603 #ifdef HAVE_SBRK
1604 extern char **environ;
1605 char *lim = (char *) sbrk (0);
1606
1607 space_at_cmd_start = (long) (lim - (char *) &environ);
1608 #endif
1609 }
1610
1611 execute_command (command, instream == stdin);
1612 /* Do any commands attached to breakpoint we stopped at. */
1613 bpstat_do_actions (&stop_bpstat);
1614 do_cleanups (old_chain);
1615
1616 if (display_time)
1617 {
1618 long cmd_time = get_run_time () - time_at_cmd_start;
1619
1620 printf_unfiltered ("Command execution time: %ld.%06ld\n",
1621 cmd_time / 1000000, cmd_time % 1000000);
1622 }
1623
1624 if (display_space)
1625 {
1626 #ifdef HAVE_SBRK
1627 extern char **environ;
1628 char *lim = (char *) sbrk (0);
1629 long space_now = lim - (char *) &environ;
1630 long space_diff = space_now - space_at_cmd_start;
1631
1632 printf_unfiltered ("Space used: %ld (%c%ld for this command)\n",
1633 space_now,
1634 (space_diff >= 0 ? '+' : '-'),
1635 space_diff);
1636 #endif
1637 }
1638 }
1639 }
1640
1641 /* Read commands from `instream' and execute them until end of file or
1642 error reading instream. This command loop doesnt care about any
1643 such things as displaying time and space usage. If the user asks
1644 for those, they won't work. */
1645 void
1646 simplified_command_loop (read_input_func, execute_command_func)
1647 char *(*read_input_func) (char *);
1648 void (*execute_command_func) (char *, int);
1649 {
1650 struct cleanup *old_chain;
1651 char *command;
1652 int stdin_is_tty = ISATTY (stdin);
1653
1654 while (instream && !feof (instream))
1655 {
1656 quit_flag = 0;
1657 if (instream == stdin && stdin_is_tty)
1658 reinitialize_more_filter ();
1659 old_chain = make_cleanup (null_cleanup, 0);
1660
1661 /* Get a command-line. */
1662 command = (*read_input_func) (instream == stdin ?
1663 get_prompt () : (char *) NULL);
1664
1665 if (command == 0)
1666 return;
1667
1668 (*execute_command_func) (command, instream == stdin);
1669
1670 /* Do any commands attached to breakpoint we stopped at. */
1671 bpstat_do_actions (&stop_bpstat);
1672
1673 do_cleanups (old_chain);
1674 }
1675 }
1676 \f
1677 /* Commands call this if they do not want to be repeated by null lines. */
1678
1679 void
1680 dont_repeat (void)
1681 {
1682 if (server_command)
1683 return;
1684
1685 /* If we aren't reading from standard input, we are saving the last
1686 thing read from stdin in line and don't want to delete it. Null lines
1687 won't repeat here in any case. */
1688 if (instream == stdin)
1689 *line = 0;
1690 }
1691 \f
1692 /* Read a line from the stream "instream" without command line editing.
1693
1694 It prints PROMPT_ARG once at the start.
1695 Action is compatible with "readline", e.g. space for the result is
1696 malloc'd and should be freed by the caller.
1697
1698 A NULL return means end of file. */
1699 char *
1700 gdb_readline (char *prompt_arg)
1701 {
1702 int c;
1703 char *result;
1704 int input_index = 0;
1705 int result_size = 80;
1706
1707 if (prompt_arg)
1708 {
1709 /* Don't use a _filtered function here. It causes the assumed
1710 character position to be off, since the newline we read from
1711 the user is not accounted for. */
1712 fputs_unfiltered (prompt_arg, gdb_stdout);
1713 #ifdef MPW
1714 /* Move to a new line so the entered line doesn't have a prompt
1715 on the front of it. */
1716 fputs_unfiltered ("\n", gdb_stdout);
1717 #endif /* MPW */
1718 gdb_flush (gdb_stdout);
1719 }
1720
1721 result = (char *) xmalloc (result_size);
1722
1723 while (1)
1724 {
1725 /* Read from stdin if we are executing a user defined command.
1726 This is the right thing for prompt_for_continue, at least. */
1727 c = fgetc (instream ? instream : stdin);
1728
1729 if (c == EOF)
1730 {
1731 if (input_index > 0)
1732 /* The last line does not end with a newline. Return it, and
1733 if we are called again fgetc will still return EOF and
1734 we'll return NULL then. */
1735 break;
1736 free (result);
1737 return NULL;
1738 }
1739
1740 if (c == '\n')
1741 #ifndef CRLF_SOURCE_FILES
1742 break;
1743 #else
1744 {
1745 if (input_index > 0 && result[input_index - 1] == '\r')
1746 input_index--;
1747 break;
1748 }
1749 #endif
1750
1751 result[input_index++] = c;
1752 while (input_index >= result_size)
1753 {
1754 result_size *= 2;
1755 result = (char *) xrealloc (result, result_size);
1756 }
1757 }
1758
1759 result[input_index++] = '\0';
1760 return result;
1761 }
1762
1763 /* Variables which control command line editing and history
1764 substitution. These variables are given default values at the end
1765 of this file. */
1766 static int command_editing_p;
1767 /* NOTE 1999-04-29: This variable will be static again, once we modify
1768 gdb to use the event loop as the default command loop and we merge
1769 event-top.c into this file, top.c */
1770 /* static */ int history_expansion_p;
1771 static int write_history_p;
1772 static int history_size;
1773 static char *history_filename;
1774
1775 /* readline uses the word breaks for two things:
1776 (1) In figuring out where to point the TEXT parameter to the
1777 rl_completion_entry_function. Since we don't use TEXT for much,
1778 it doesn't matter a lot what the word breaks are for this purpose, but
1779 it does affect how much stuff M-? lists.
1780 (2) If one of the matches contains a word break character, readline
1781 will quote it. That's why we switch between
1782 gdb_completer_word_break_characters and
1783 gdb_completer_command_word_break_characters. I'm not sure when
1784 we need this behavior (perhaps for funky characters in C++ symbols?). */
1785
1786 /* Variables which are necessary for fancy command line editing. */
1787 char *gdb_completer_word_break_characters =
1788 " \t\n!@#$%^&*()+=|~`}{[]\"';:?/>.<,-";
1789
1790 /* When completing on command names, we remove '-' from the list of
1791 word break characters, since we use it in command names. If the
1792 readline library sees one in any of the current completion strings,
1793 it thinks that the string needs to be quoted and automatically supplies
1794 a leading quote. */
1795 char *gdb_completer_command_word_break_characters =
1796 " \t\n!@#$%^&*()+=|~`}{[]\"';:?/>.<,";
1797
1798 /* When completing on file names, we remove from the list of word
1799 break characters any characters that are commonly used in file
1800 names, such as '-', '+', '~', etc. Otherwise, readline displays
1801 incorrect completion candidates. */
1802 char *gdb_completer_file_name_break_characters = " \t\n*|\"';:?/><";
1803
1804 /* Characters that can be used to quote completion strings. Note that we
1805 can't include '"' because the gdb C parser treats such quoted sequences
1806 as strings. */
1807 char *gdb_completer_quote_characters =
1808 "'";
1809
1810 /* Functions that are used as part of the fancy command line editing. */
1811
1812 /* This can be used for functions which don't want to complete on symbols
1813 but don't want to complete on anything else either. */
1814 /* ARGSUSED */
1815 char **
1816 noop_completer (char *text, char *prefix)
1817 {
1818 return NULL;
1819 }
1820
1821 /* Complete on filenames. */
1822 char **
1823 filename_completer (char *text, char *word)
1824 {
1825 /* From readline. */
1826 extern char *filename_completion_function (char *, int);
1827 int subsequent_name;
1828 char **return_val;
1829 int return_val_used;
1830 int return_val_alloced;
1831
1832 return_val_used = 0;
1833 /* Small for testing. */
1834 return_val_alloced = 1;
1835 return_val = (char **) xmalloc (return_val_alloced * sizeof (char *));
1836
1837 subsequent_name = 0;
1838 while (1)
1839 {
1840 char *p;
1841 p = filename_completion_function (text, subsequent_name);
1842 if (return_val_used >= return_val_alloced)
1843 {
1844 return_val_alloced *= 2;
1845 return_val =
1846 (char **) xrealloc (return_val,
1847 return_val_alloced * sizeof (char *));
1848 }
1849 if (p == NULL)
1850 {
1851 return_val[return_val_used++] = p;
1852 break;
1853 }
1854 /* We need to set subsequent_name to a non-zero value before the
1855 continue line below, because otherwise, if the first file seen
1856 by GDB is a backup file whose name ends in a `~', we will loop
1857 indefinitely. */
1858 subsequent_name = 1;
1859 /* Like emacs, don't complete on old versions. Especially useful
1860 in the "source" command. */
1861 if (p[strlen (p) - 1] == '~')
1862 continue;
1863
1864 {
1865 char *q;
1866 if (word == text)
1867 /* Return exactly p. */
1868 return_val[return_val_used++] = p;
1869 else if (word > text)
1870 {
1871 /* Return some portion of p. */
1872 q = xmalloc (strlen (p) + 5);
1873 strcpy (q, p + (word - text));
1874 return_val[return_val_used++] = q;
1875 free (p);
1876 }
1877 else
1878 {
1879 /* Return some of TEXT plus p. */
1880 q = xmalloc (strlen (p) + (text - word) + 5);
1881 strncpy (q, word, text - word);
1882 q[text - word] = '\0';
1883 strcat (q, p);
1884 return_val[return_val_used++] = q;
1885 free (p);
1886 }
1887 }
1888 }
1889 #if 0
1890 /* There is no way to do this just long enough to affect quote inserting
1891 without also affecting the next completion. This should be fixed in
1892 readline. FIXME. */
1893 /* Insure that readline does the right thing
1894 with respect to inserting quotes. */
1895 rl_completer_word_break_characters = "";
1896 #endif
1897 return return_val;
1898 }
1899
1900 /* Here are some useful test cases for completion. FIXME: These should
1901 be put in the test suite. They should be tested with both M-? and TAB.
1902
1903 "show output-" "radix"
1904 "show output" "-radix"
1905 "p" ambiguous (commands starting with p--path, print, printf, etc.)
1906 "p " ambiguous (all symbols)
1907 "info t foo" no completions
1908 "info t " no completions
1909 "info t" ambiguous ("info target", "info terminal", etc.)
1910 "info ajksdlfk" no completions
1911 "info ajksdlfk " no completions
1912 "info" " "
1913 "info " ambiguous (all info commands)
1914 "p \"a" no completions (string constant)
1915 "p 'a" ambiguous (all symbols starting with a)
1916 "p b-a" ambiguous (all symbols starting with a)
1917 "p b-" ambiguous (all symbols)
1918 "file Make" "file" (word break hard to screw up here)
1919 "file ../gdb.stabs/we" "ird" (needs to not break word at slash)
1920 */
1921
1922 /* Generate completions one by one for the completer. Each time we are
1923 called return another potential completion to the caller.
1924 line_completion just completes on commands or passes the buck to the
1925 command's completer function, the stuff specific to symbol completion
1926 is in make_symbol_completion_list.
1927
1928 TEXT is the caller's idea of the "word" we are looking at.
1929
1930 MATCHES is the number of matches that have currently been collected from
1931 calling this completion function. When zero, then we need to initialize,
1932 otherwise the initialization has already taken place and we can just
1933 return the next potential completion string.
1934
1935 LINE_BUFFER is available to be looked at; it contains the entire text
1936 of the line. POINT is the offset in that line of the cursor. You
1937 should pretend that the line ends at POINT.
1938
1939 Returns NULL if there are no more completions, else a pointer to a string
1940 which is a possible completion, it is the caller's responsibility to
1941 free the string. */
1942
1943 static char *
1944 line_completion_function (char *text, int matches, char *line_buffer, int point)
1945 {
1946 static char **list = (char **) NULL; /* Cache of completions */
1947 static int index; /* Next cached completion */
1948 char *output = NULL;
1949 char *tmp_command, *p;
1950 /* Pointer within tmp_command which corresponds to text. */
1951 char *word;
1952 struct cmd_list_element *c, *result_list;
1953
1954 if (matches == 0)
1955 {
1956 /* The caller is beginning to accumulate a new set of completions, so
1957 we need to find all of them now, and cache them for returning one at
1958 a time on future calls. */
1959
1960 if (list)
1961 {
1962 /* Free the storage used by LIST, but not by the strings inside.
1963 This is because rl_complete_internal () frees the strings. */
1964 free ((PTR) list);
1965 }
1966 list = 0;
1967 index = 0;
1968
1969 /* Choose the default set of word break characters to break completions.
1970 If we later find out that we are doing completions on command strings
1971 (as opposed to strings supplied by the individual command completer
1972 functions, which can be any string) then we will switch to the
1973 special word break set for command strings, which leaves out the
1974 '-' character used in some commands. */
1975
1976 rl_completer_word_break_characters =
1977 gdb_completer_word_break_characters;
1978
1979 /* Decide whether to complete on a list of gdb commands or on symbols. */
1980 tmp_command = (char *) alloca (point + 1);
1981 p = tmp_command;
1982
1983 strncpy (tmp_command, line_buffer, point);
1984 tmp_command[point] = '\0';
1985 /* Since text always contains some number of characters leading up
1986 to point, we can find the equivalent position in tmp_command
1987 by subtracting that many characters from the end of tmp_command. */
1988 word = tmp_command + point - strlen (text);
1989
1990 if (point == 0)
1991 {
1992 /* An empty line we want to consider ambiguous; that is, it
1993 could be any command. */
1994 c = (struct cmd_list_element *) -1;
1995 result_list = 0;
1996 }
1997 else
1998 {
1999 c = lookup_cmd_1 (&p, cmdlist, &result_list, 1);
2000 }
2001
2002 /* Move p up to the next interesting thing. */
2003 while (*p == ' ' || *p == '\t')
2004 {
2005 p++;
2006 }
2007
2008 if (!c)
2009 {
2010 /* It is an unrecognized command. So there are no
2011 possible completions. */
2012 list = NULL;
2013 }
2014 else if (c == (struct cmd_list_element *) -1)
2015 {
2016 char *q;
2017
2018 /* lookup_cmd_1 advances p up to the first ambiguous thing, but
2019 doesn't advance over that thing itself. Do so now. */
2020 q = p;
2021 while (*q && (isalnum (*q) || *q == '-' || *q == '_'))
2022 ++q;
2023 if (q != tmp_command + point)
2024 {
2025 /* There is something beyond the ambiguous
2026 command, so there are no possible completions. For
2027 example, "info t " or "info t foo" does not complete
2028 to anything, because "info t" can be "info target" or
2029 "info terminal". */
2030 list = NULL;
2031 }
2032 else
2033 {
2034 /* We're trying to complete on the command which was ambiguous.
2035 This we can deal with. */
2036 if (result_list)
2037 {
2038 list = complete_on_cmdlist (*result_list->prefixlist, p,
2039 word);
2040 }
2041 else
2042 {
2043 list = complete_on_cmdlist (cmdlist, p, word);
2044 }
2045 /* Insure that readline does the right thing with respect to
2046 inserting quotes. */
2047 rl_completer_word_break_characters =
2048 gdb_completer_command_word_break_characters;
2049 }
2050 }
2051 else
2052 {
2053 /* We've recognized a full command. */
2054
2055 if (p == tmp_command + point)
2056 {
2057 /* There is no non-whitespace in the line beyond the command. */
2058
2059 if (p[-1] == ' ' || p[-1] == '\t')
2060 {
2061 /* The command is followed by whitespace; we need to complete
2062 on whatever comes after command. */
2063 if (c->prefixlist)
2064 {
2065 /* It is a prefix command; what comes after it is
2066 a subcommand (e.g. "info "). */
2067 list = complete_on_cmdlist (*c->prefixlist, p, word);
2068
2069 /* Insure that readline does the right thing
2070 with respect to inserting quotes. */
2071 rl_completer_word_break_characters =
2072 gdb_completer_command_word_break_characters;
2073 }
2074 else if (c->enums)
2075 {
2076 list = complete_on_enum (c->enums, p, word);
2077 rl_completer_word_break_characters =
2078 gdb_completer_command_word_break_characters;
2079 }
2080 else
2081 {
2082 /* It is a normal command; what comes after it is
2083 completed by the command's completer function. */
2084 list = (*c->completer) (p, word);
2085 if (c->completer == filename_completer)
2086 rl_completer_word_break_characters =
2087 gdb_completer_file_name_break_characters;
2088 }
2089 }
2090 else
2091 {
2092 /* The command is not followed by whitespace; we need to
2093 complete on the command itself. e.g. "p" which is a
2094 command itself but also can complete to "print", "ptype"
2095 etc. */
2096 char *q;
2097
2098 /* Find the command we are completing on. */
2099 q = p;
2100 while (q > tmp_command)
2101 {
2102 if (isalnum (q[-1]) || q[-1] == '-' || q[-1] == '_')
2103 --q;
2104 else
2105 break;
2106 }
2107
2108 list = complete_on_cmdlist (result_list, q, word);
2109
2110 /* Insure that readline does the right thing
2111 with respect to inserting quotes. */
2112 rl_completer_word_break_characters =
2113 gdb_completer_command_word_break_characters;
2114 }
2115 }
2116 else
2117 {
2118 /* There is non-whitespace beyond the command. */
2119
2120 if (c->prefixlist && !c->allow_unknown)
2121 {
2122 /* It is an unrecognized subcommand of a prefix command,
2123 e.g. "info adsfkdj". */
2124 list = NULL;
2125 }
2126 else if (c->enums)
2127 {
2128 list = complete_on_enum (c->enums, p, word);
2129 }
2130 else
2131 {
2132 /* It is a normal command. */
2133 list = (*c->completer) (p, word);
2134 if (c->completer == filename_completer)
2135 rl_completer_word_break_characters =
2136 gdb_completer_file_name_break_characters;
2137 }
2138 }
2139 }
2140 }
2141
2142 /* If we found a list of potential completions during initialization then
2143 dole them out one at a time. The vector of completions is NULL
2144 terminated, so after returning the last one, return NULL (and continue
2145 to do so) each time we are called after that, until a new list is
2146 available. */
2147
2148 if (list)
2149 {
2150 output = list[index];
2151 if (output)
2152 {
2153 index++;
2154 }
2155 }
2156
2157 #if 0
2158 /* Can't do this because readline hasn't yet checked the word breaks
2159 for figuring out whether to insert a quote. */
2160 if (output == NULL)
2161 /* Make sure the word break characters are set back to normal for the
2162 next time that readline tries to complete something. */
2163 rl_completer_word_break_characters =
2164 gdb_completer_word_break_characters;
2165 #endif
2166
2167 return (output);
2168 }
2169
2170 /* Line completion interface function for readline. */
2171
2172 static char *
2173 readline_line_completion_function (char *text, int matches)
2174 {
2175 return line_completion_function (text, matches, rl_line_buffer, rl_point);
2176 }
2177
2178 /* Skip over a possibly quoted word (as defined by the quote characters
2179 and word break characters the completer uses). Returns pointer to the
2180 location after the "word". */
2181
2182 char *
2183 skip_quoted (char *str)
2184 {
2185 char quote_char = '\0';
2186 char *scan;
2187
2188 for (scan = str; *scan != '\0'; scan++)
2189 {
2190 if (quote_char != '\0')
2191 {
2192 /* Ignore everything until the matching close quote char */
2193 if (*scan == quote_char)
2194 {
2195 /* Found matching close quote. */
2196 scan++;
2197 break;
2198 }
2199 }
2200 else if (strchr (gdb_completer_quote_characters, *scan))
2201 {
2202 /* Found start of a quoted string. */
2203 quote_char = *scan;
2204 }
2205 else if (strchr (gdb_completer_word_break_characters, *scan))
2206 {
2207 break;
2208 }
2209 }
2210 return (scan);
2211 }
2212 \f
2213
2214 #ifdef STOP_SIGNAL
2215 static void
2216 stop_sig (int signo)
2217 {
2218 #if STOP_SIGNAL == SIGTSTP
2219 signal (SIGTSTP, SIG_DFL);
2220 sigsetmask (0);
2221 kill (getpid (), SIGTSTP);
2222 signal (SIGTSTP, stop_sig);
2223 #else
2224 signal (STOP_SIGNAL, stop_sig);
2225 #endif
2226 printf_unfiltered ("%s", get_prompt ());
2227 gdb_flush (gdb_stdout);
2228
2229 /* Forget about any previous command -- null line now will do nothing. */
2230 dont_repeat ();
2231 }
2232 #endif /* STOP_SIGNAL */
2233
2234 /* Initialize signal handlers. */
2235 static void
2236 do_nothing (int signo)
2237 {
2238 /* Under System V the default disposition of a signal is reinstated after
2239 the signal is caught and delivered to an application process. On such
2240 systems one must restore the replacement signal handler if one wishes
2241 to continue handling the signal in one's program. On BSD systems this
2242 is not needed but it is harmless, and it simplifies the code to just do
2243 it unconditionally. */
2244 signal (signo, do_nothing);
2245 }
2246
2247 static void
2248 init_signals (void)
2249 {
2250 signal (SIGINT, request_quit);
2251
2252 /* If SIGTRAP was set to SIG_IGN, then the SIG_IGN will get passed
2253 to the inferior and breakpoints will be ignored. */
2254 #ifdef SIGTRAP
2255 signal (SIGTRAP, SIG_DFL);
2256 #endif
2257
2258 /* If we initialize SIGQUIT to SIG_IGN, then the SIG_IGN will get
2259 passed to the inferior, which we don't want. It would be
2260 possible to do a "signal (SIGQUIT, SIG_DFL)" after we fork, but
2261 on BSD4.3 systems using vfork, that can affect the
2262 GDB process as well as the inferior (the signal handling tables
2263 might be in memory, shared between the two). Since we establish
2264 a handler for SIGQUIT, when we call exec it will set the signal
2265 to SIG_DFL for us. */
2266 signal (SIGQUIT, do_nothing);
2267 #ifdef SIGHUP
2268 if (signal (SIGHUP, do_nothing) != SIG_IGN)
2269 signal (SIGHUP, disconnect);
2270 #endif
2271 signal (SIGFPE, float_handler);
2272
2273 #if defined(SIGWINCH) && defined(SIGWINCH_HANDLER)
2274 signal (SIGWINCH, SIGWINCH_HANDLER);
2275 #endif
2276 }
2277 \f
2278 /* Read one line from the command input stream `instream'
2279 into the local static buffer `linebuffer' (whose current length
2280 is `linelength').
2281 The buffer is made bigger as necessary.
2282 Returns the address of the start of the line.
2283
2284 NULL is returned for end of file.
2285
2286 *If* the instream == stdin & stdin is a terminal, the line read
2287 is copied into the file line saver (global var char *line,
2288 length linesize) so that it can be duplicated.
2289
2290 This routine either uses fancy command line editing or
2291 simple input as the user has requested. */
2292
2293 char *
2294 command_line_input (char *prompt_arg, int repeat, char *annotation_suffix)
2295 {
2296 static char *linebuffer = 0;
2297 static unsigned linelength = 0;
2298 register char *p;
2299 char *p1;
2300 char *rl;
2301 char *local_prompt = prompt_arg;
2302 char *nline;
2303 char got_eof = 0;
2304
2305 /* The annotation suffix must be non-NULL. */
2306 if (annotation_suffix == NULL)
2307 annotation_suffix = "";
2308
2309 if (annotation_level > 1 && instream == stdin)
2310 {
2311 local_prompt = alloca ((prompt_arg == NULL ? 0 : strlen (prompt_arg))
2312 + strlen (annotation_suffix) + 40);
2313 if (prompt_arg == NULL)
2314 local_prompt[0] = '\0';
2315 else
2316 strcpy (local_prompt, prompt_arg);
2317 strcat (local_prompt, "\n\032\032");
2318 strcat (local_prompt, annotation_suffix);
2319 strcat (local_prompt, "\n");
2320 }
2321
2322 if (linebuffer == 0)
2323 {
2324 linelength = 80;
2325 linebuffer = (char *) xmalloc (linelength);
2326 }
2327
2328 p = linebuffer;
2329
2330 /* Control-C quits instantly if typed while in this loop
2331 since it should not wait until the user types a newline. */
2332 immediate_quit++;
2333 #ifdef STOP_SIGNAL
2334 if (job_control)
2335 {
2336 if (event_loop_p)
2337 signal (STOP_SIGNAL, handle_stop_sig);
2338 else
2339 signal (STOP_SIGNAL, stop_sig);
2340 }
2341 #endif
2342
2343 while (1)
2344 {
2345 /* Make sure that all output has been output. Some machines may let
2346 you get away with leaving out some of the gdb_flush, but not all. */
2347 wrap_here ("");
2348 gdb_flush (gdb_stdout);
2349 gdb_flush (gdb_stderr);
2350
2351 if (source_file_name != NULL)
2352 {
2353 ++source_line_number;
2354 sprintf (source_error,
2355 "%s%s:%d: Error in sourced command file:\n",
2356 source_pre_error,
2357 source_file_name,
2358 source_line_number);
2359 error_pre_print = source_error;
2360 }
2361
2362 if (annotation_level > 1 && instream == stdin)
2363 {
2364 printf_unfiltered ("\n\032\032pre-");
2365 printf_unfiltered (annotation_suffix);
2366 printf_unfiltered ("\n");
2367 }
2368
2369 /* Don't use fancy stuff if not talking to stdin. */
2370 if (readline_hook && instream == NULL)
2371 {
2372 rl = (*readline_hook) (local_prompt);
2373 }
2374 else if (command_editing_p && instream == stdin && ISATTY (instream))
2375 {
2376 rl = readline (local_prompt);
2377 }
2378 else
2379 {
2380 rl = gdb_readline (local_prompt);
2381 }
2382
2383 if (annotation_level > 1 && instream == stdin)
2384 {
2385 printf_unfiltered ("\n\032\032post-");
2386 printf_unfiltered (annotation_suffix);
2387 printf_unfiltered ("\n");
2388 }
2389
2390 if (!rl || rl == (char *) EOF)
2391 {
2392 got_eof = 1;
2393 break;
2394 }
2395 if (strlen (rl) + 1 + (p - linebuffer) > linelength)
2396 {
2397 linelength = strlen (rl) + 1 + (p - linebuffer);
2398 nline = (char *) xrealloc (linebuffer, linelength);
2399 p += nline - linebuffer;
2400 linebuffer = nline;
2401 }
2402 p1 = rl;
2403 /* Copy line. Don't copy null at end. (Leaves line alone
2404 if this was just a newline) */
2405 while (*p1)
2406 *p++ = *p1++;
2407
2408 free (rl); /* Allocated in readline. */
2409
2410 if (p == linebuffer || *(p - 1) != '\\')
2411 break;
2412
2413 p--; /* Put on top of '\'. */
2414 local_prompt = (char *) 0;
2415 }
2416
2417 #ifdef STOP_SIGNAL
2418 if (job_control)
2419 signal (STOP_SIGNAL, SIG_DFL);
2420 #endif
2421 immediate_quit--;
2422
2423 if (got_eof)
2424 return NULL;
2425
2426 #define SERVER_COMMAND_LENGTH 7
2427 server_command =
2428 (p - linebuffer > SERVER_COMMAND_LENGTH)
2429 && STREQN (linebuffer, "server ", SERVER_COMMAND_LENGTH);
2430 if (server_command)
2431 {
2432 /* Note that we don't set `line'. Between this and the check in
2433 dont_repeat, this insures that repeating will still do the
2434 right thing. */
2435 *p = '\0';
2436 return linebuffer + SERVER_COMMAND_LENGTH;
2437 }
2438
2439 /* Do history expansion if that is wished. */
2440 if (history_expansion_p && instream == stdin
2441 && ISATTY (instream))
2442 {
2443 char *history_value;
2444 int expanded;
2445
2446 *p = '\0'; /* Insert null now. */
2447 expanded = history_expand (linebuffer, &history_value);
2448 if (expanded)
2449 {
2450 /* Print the changes. */
2451 printf_unfiltered ("%s\n", history_value);
2452
2453 /* If there was an error, call this function again. */
2454 if (expanded < 0)
2455 {
2456 free (history_value);
2457 return command_line_input (prompt_arg, repeat, annotation_suffix);
2458 }
2459 if (strlen (history_value) > linelength)
2460 {
2461 linelength = strlen (history_value) + 1;
2462 linebuffer = (char *) xrealloc (linebuffer, linelength);
2463 }
2464 strcpy (linebuffer, history_value);
2465 p = linebuffer + strlen (linebuffer);
2466 free (history_value);
2467 }
2468 }
2469
2470 /* If we just got an empty line, and that is supposed
2471 to repeat the previous command, return the value in the
2472 global buffer. */
2473 if (repeat && p == linebuffer)
2474 return line;
2475 for (p1 = linebuffer; *p1 == ' ' || *p1 == '\t'; p1++);
2476 if (repeat && !*p1)
2477 return line;
2478
2479 *p = 0;
2480
2481 /* Add line to history if appropriate. */
2482 if (instream == stdin
2483 && ISATTY (stdin) && *linebuffer)
2484 add_history (linebuffer);
2485
2486 /* Note: lines consisting solely of comments are added to the command
2487 history. This is useful when you type a command, and then
2488 realize you don't want to execute it quite yet. You can comment
2489 out the command and then later fetch it from the value history
2490 and remove the '#'. The kill ring is probably better, but some
2491 people are in the habit of commenting things out. */
2492 if (*p1 == '#')
2493 *p1 = '\0'; /* Found a comment. */
2494
2495 /* Save into global buffer if appropriate. */
2496 if (repeat)
2497 {
2498 if (linelength > linesize)
2499 {
2500 line = xrealloc (line, linelength);
2501 linesize = linelength;
2502 }
2503 strcpy (line, linebuffer);
2504 return line;
2505 }
2506
2507 return linebuffer;
2508 }
2509 \f
2510
2511 /* Expand the body_list of COMMAND so that it can hold NEW_LENGTH
2512 code bodies. This is typically used when we encounter an "else"
2513 clause for an "if" command. */
2514
2515 static void
2516 realloc_body_list (struct command_line *command, int new_length)
2517 {
2518 int n;
2519 struct command_line **body_list;
2520
2521 n = command->body_count;
2522
2523 /* Nothing to do? */
2524 if (new_length <= n)
2525 return;
2526
2527 body_list = (struct command_line **)
2528 xmalloc (sizeof (struct command_line *) * new_length);
2529
2530 memcpy (body_list, command->body_list, sizeof (struct command_line *) * n);
2531
2532 free (command->body_list);
2533 command->body_list = body_list;
2534 command->body_count = new_length;
2535 }
2536
2537 /* Read one line from the input stream. If the command is an "else" or
2538 "end", return such an indication to the caller. */
2539
2540 static enum misc_command_type
2541 read_next_line (struct command_line **command)
2542 {
2543 char *p, *p1, *prompt_ptr, control_prompt[256];
2544 int i = 0;
2545
2546 if (control_level >= 254)
2547 error ("Control nesting too deep!\n");
2548
2549 /* Set a prompt based on the nesting of the control commands. */
2550 if (instream == stdin || (instream == 0 && readline_hook != NULL))
2551 {
2552 for (i = 0; i < control_level; i++)
2553 control_prompt[i] = ' ';
2554 control_prompt[i] = '>';
2555 control_prompt[i + 1] = '\0';
2556 prompt_ptr = (char *) &control_prompt[0];
2557 }
2558 else
2559 prompt_ptr = NULL;
2560
2561 p = command_line_input (prompt_ptr, instream == stdin, "commands");
2562
2563 /* Not sure what to do here. */
2564 if (p == NULL)
2565 return end_command;
2566
2567 /* Strip leading and trailing whitespace. */
2568 while (*p == ' ' || *p == '\t')
2569 p++;
2570
2571 p1 = p + strlen (p);
2572 while (p1 != p && (p1[-1] == ' ' || p1[-1] == '\t'))
2573 p1--;
2574
2575 /* Blanks and comments don't really do anything, but we need to
2576 distinguish them from else, end and other commands which can be
2577 executed. */
2578 if (p1 == p || p[0] == '#')
2579 return nop_command;
2580
2581 /* Is this the end of a simple, while, or if control structure? */
2582 if (p1 - p == 3 && !strncmp (p, "end", 3))
2583 return end_command;
2584
2585 /* Is the else clause of an if control structure? */
2586 if (p1 - p == 4 && !strncmp (p, "else", 4))
2587 return else_command;
2588
2589 /* Check for while, if, break, continue, etc and build a new command
2590 line structure for them. */
2591 if (p1 - p > 5 && !strncmp (p, "while", 5))
2592 *command = build_command_line (while_control, p + 6);
2593 else if (p1 - p > 2 && !strncmp (p, "if", 2))
2594 *command = build_command_line (if_control, p + 3);
2595 else if (p1 - p == 10 && !strncmp (p, "loop_break", 10))
2596 {
2597 *command = (struct command_line *)
2598 xmalloc (sizeof (struct command_line));
2599 (*command)->next = NULL;
2600 (*command)->line = NULL;
2601 (*command)->control_type = break_control;
2602 (*command)->body_count = 0;
2603 (*command)->body_list = NULL;
2604 }
2605 else if (p1 - p == 13 && !strncmp (p, "loop_continue", 13))
2606 {
2607 *command = (struct command_line *)
2608 xmalloc (sizeof (struct command_line));
2609 (*command)->next = NULL;
2610 (*command)->line = NULL;
2611 (*command)->control_type = continue_control;
2612 (*command)->body_count = 0;
2613 (*command)->body_list = NULL;
2614 }
2615 else
2616 {
2617 /* A normal command. */
2618 *command = (struct command_line *)
2619 xmalloc (sizeof (struct command_line));
2620 (*command)->next = NULL;
2621 (*command)->line = savestring (p, p1 - p);
2622 (*command)->control_type = simple_control;
2623 (*command)->body_count = 0;
2624 (*command)->body_list = NULL;
2625 }
2626
2627 /* Nothing special. */
2628 return ok_command;
2629 }
2630
2631 /* Recursively read in the control structures and create a command_line
2632 structure from them.
2633
2634 The parent_control parameter is the control structure in which the
2635 following commands are nested. */
2636
2637 static enum command_control_type
2638 recurse_read_control_structure (struct command_line *current_cmd)
2639 {
2640 int current_body, i;
2641 enum misc_command_type val;
2642 enum command_control_type ret;
2643 struct command_line **body_ptr, *child_tail, *next;
2644
2645 child_tail = NULL;
2646 current_body = 1;
2647
2648 /* Sanity checks. */
2649 if (current_cmd->control_type == simple_control)
2650 {
2651 error ("Recursed on a simple control type\n");
2652 return invalid_control;
2653 }
2654
2655 if (current_body > current_cmd->body_count)
2656 {
2657 error ("Allocated body is smaller than this command type needs\n");
2658 return invalid_control;
2659 }
2660
2661 /* Read lines from the input stream and build control structures. */
2662 while (1)
2663 {
2664 dont_repeat ();
2665
2666 next = NULL;
2667 val = read_next_line (&next);
2668
2669 /* Just skip blanks and comments. */
2670 if (val == nop_command)
2671 continue;
2672
2673 if (val == end_command)
2674 {
2675 if (current_cmd->control_type == while_control
2676 || current_cmd->control_type == if_control)
2677 {
2678 /* Success reading an entire control structure. */
2679 ret = simple_control;
2680 break;
2681 }
2682 else
2683 {
2684 ret = invalid_control;
2685 break;
2686 }
2687 }
2688
2689 /* Not the end of a control structure. */
2690 if (val == else_command)
2691 {
2692 if (current_cmd->control_type == if_control
2693 && current_body == 1)
2694 {
2695 realloc_body_list (current_cmd, 2);
2696 current_body = 2;
2697 child_tail = NULL;
2698 continue;
2699 }
2700 else
2701 {
2702 ret = invalid_control;
2703 break;
2704 }
2705 }
2706
2707 if (child_tail)
2708 {
2709 child_tail->next = next;
2710 }
2711 else
2712 {
2713 body_ptr = current_cmd->body_list;
2714 for (i = 1; i < current_body; i++)
2715 body_ptr++;
2716
2717 *body_ptr = next;
2718
2719 }
2720
2721 child_tail = next;
2722
2723 /* If the latest line is another control structure, then recurse
2724 on it. */
2725 if (next->control_type == while_control
2726 || next->control_type == if_control)
2727 {
2728 control_level++;
2729 ret = recurse_read_control_structure (next);
2730 control_level--;
2731
2732 if (ret != simple_control)
2733 break;
2734 }
2735 }
2736
2737 dont_repeat ();
2738
2739 return ret;
2740 }
2741
2742 /* Read lines from the input stream and accumulate them in a chain of
2743 struct command_line's, which is then returned. For input from a
2744 terminal, the special command "end" is used to mark the end of the
2745 input, and is not included in the returned chain of commands. */
2746
2747 #define END_MESSAGE "End with a line saying just \"end\"."
2748
2749 struct command_line *
2750 read_command_lines (char *prompt_arg, int from_tty)
2751 {
2752 struct command_line *head, *tail, *next;
2753 struct cleanup *old_chain;
2754 enum command_control_type ret;
2755 enum misc_command_type val;
2756
2757 control_level = 0;
2758 if (readline_begin_hook)
2759 {
2760 /* Note - intentional to merge messages with no newline */
2761 (*readline_begin_hook) ("%s %s\n", prompt_arg, END_MESSAGE);
2762 }
2763 else if (from_tty && input_from_terminal_p ())
2764 {
2765 printf_unfiltered ("%s\n%s\n", prompt_arg, END_MESSAGE);
2766 gdb_flush (gdb_stdout);
2767 }
2768
2769 head = tail = NULL;
2770 old_chain = NULL;
2771
2772 while (1)
2773 {
2774 val = read_next_line (&next);
2775
2776 /* Ignore blank lines or comments. */
2777 if (val == nop_command)
2778 continue;
2779
2780 if (val == end_command)
2781 {
2782 ret = simple_control;
2783 break;
2784 }
2785
2786 if (val != ok_command)
2787 {
2788 ret = invalid_control;
2789 break;
2790 }
2791
2792 if (next->control_type == while_control
2793 || next->control_type == if_control)
2794 {
2795 control_level++;
2796 ret = recurse_read_control_structure (next);
2797 control_level--;
2798
2799 if (ret == invalid_control)
2800 break;
2801 }
2802
2803 if (tail)
2804 {
2805 tail->next = next;
2806 }
2807 else
2808 {
2809 head = next;
2810 old_chain = make_cleanup_free_command_lines (&head);
2811 }
2812 tail = next;
2813 }
2814
2815 dont_repeat ();
2816
2817 if (head)
2818 {
2819 if (ret != invalid_control)
2820 {
2821 discard_cleanups (old_chain);
2822 }
2823 else
2824 do_cleanups (old_chain);
2825 }
2826
2827 if (readline_end_hook)
2828 {
2829 (*readline_end_hook) ();
2830 }
2831 return (head);
2832 }
2833
2834 /* Free a chain of struct command_line's. */
2835
2836 void
2837 free_command_lines (struct command_line **lptr)
2838 {
2839 register struct command_line *l = *lptr;
2840 register struct command_line *next;
2841 struct command_line **blist;
2842 int i;
2843
2844 while (l)
2845 {
2846 if (l->body_count > 0)
2847 {
2848 blist = l->body_list;
2849 for (i = 0; i < l->body_count; i++, blist++)
2850 free_command_lines (blist);
2851 }
2852 next = l->next;
2853 free (l->line);
2854 free ((PTR) l);
2855 l = next;
2856 }
2857 }
2858
2859 static void
2860 do_free_command_lines_cleanup (void *arg)
2861 {
2862 free_command_lines (arg);
2863 }
2864
2865 static struct cleanup *
2866 make_cleanup_free_command_lines (struct command_line **arg)
2867 {
2868 return make_cleanup (do_free_command_lines_cleanup, arg);
2869 }
2870 \f
2871 /* Add an element to the list of info subcommands. */
2872
2873 struct cmd_list_element *
2874 add_info (name, fun, doc)
2875 char *name;
2876 void (*fun) (char *, int);
2877 char *doc;
2878 {
2879 return add_cmd (name, no_class, fun, doc, &infolist);
2880 }
2881
2882 /* Add an alias to the list of info subcommands. */
2883
2884 struct cmd_list_element *
2885 add_info_alias (char *name, char *oldname, int abbrev_flag)
2886 {
2887 return add_alias_cmd (name, oldname, 0, abbrev_flag, &infolist);
2888 }
2889
2890 /* The "info" command is defined as a prefix, with allow_unknown = 0.
2891 Therefore, its own definition is called only for "info" with no args. */
2892
2893 /* ARGSUSED */
2894 static void
2895 info_command (char *arg, int from_tty)
2896 {
2897 printf_unfiltered ("\"info\" must be followed by the name of an info command.\n");
2898 help_list (infolist, "info ", -1, gdb_stdout);
2899 }
2900
2901 /* The "complete" command is used by Emacs to implement completion. */
2902
2903 /* ARGSUSED */
2904 static void
2905 complete_command (char *arg, int from_tty)
2906 {
2907 int i;
2908 int argpoint;
2909 char *completion;
2910
2911 dont_repeat ();
2912
2913 if (arg == NULL)
2914 arg = "";
2915 argpoint = strlen (arg);
2916
2917 for (completion = line_completion_function (arg, i = 0, arg, argpoint);
2918 completion;
2919 completion = line_completion_function (arg, ++i, arg, argpoint))
2920 {
2921 printf_unfiltered ("%s\n", completion);
2922 free (completion);
2923 }
2924 }
2925
2926 /* The "show" command with no arguments shows all the settings. */
2927
2928 /* ARGSUSED */
2929 static void
2930 show_command (char *arg, int from_tty)
2931 {
2932 cmd_show_list (showlist, from_tty, "");
2933 }
2934 \f
2935 /* Add an element to the list of commands. */
2936
2937 struct cmd_list_element *
2938 add_com (name, class, fun, doc)
2939 char *name;
2940 enum command_class class;
2941 void (*fun) (char *, int);
2942 char *doc;
2943 {
2944 return add_cmd (name, class, fun, doc, &cmdlist);
2945 }
2946
2947 /* Add an alias or abbreviation command to the list of commands. */
2948
2949 struct cmd_list_element *
2950 add_com_alias (char *name, char *oldname, enum command_class class,
2951 int abbrev_flag)
2952 {
2953 return add_alias_cmd (name, oldname, class, abbrev_flag, &cmdlist);
2954 }
2955
2956 void
2957 error_no_arg (char *why)
2958 {
2959 error ("Argument required (%s).", why);
2960 }
2961
2962 /* ARGSUSED */
2963 static void
2964 help_command (command, from_tty)
2965 char *command;
2966 int from_tty; /* Ignored */
2967 {
2968 help_cmd (command, gdb_stdout);
2969 }
2970 \f
2971 static void
2972 validate_comname (char *comname)
2973 {
2974 register char *p;
2975
2976 if (comname == 0)
2977 error_no_arg ("name of command to define");
2978
2979 p = comname;
2980 while (*p)
2981 {
2982 if (!isalnum (*p) && *p != '-' && *p != '_')
2983 error ("Junk in argument list: \"%s\"", p);
2984 p++;
2985 }
2986 }
2987
2988 /* This is just a placeholder in the command data structures. */
2989 static void
2990 user_defined_command (char *ignore, int from_tty)
2991 {
2992 }
2993
2994 static void
2995 define_command (char *comname, int from_tty)
2996 {
2997 register struct command_line *cmds;
2998 register struct cmd_list_element *c, *newc, *hookc = 0;
2999 char *tem = comname;
3000 char tmpbuf[128];
3001 #define HOOK_STRING "hook-"
3002 #define HOOK_LEN 5
3003
3004 validate_comname (comname);
3005
3006 /* Look it up, and verify that we got an exact match. */
3007 c = lookup_cmd (&tem, cmdlist, "", -1, 1);
3008 if (c && !STREQ (comname, c->name))
3009 c = 0;
3010
3011 if (c)
3012 {
3013 if (c->class == class_user || c->class == class_alias)
3014 tem = "Redefine command \"%s\"? ";
3015 else
3016 tem = "Really redefine built-in command \"%s\"? ";
3017 if (!query (tem, c->name))
3018 error ("Command \"%s\" not redefined.", c->name);
3019 }
3020
3021 /* If this new command is a hook, then mark the command which it
3022 is hooking. Note that we allow hooking `help' commands, so that
3023 we can hook the `stop' pseudo-command. */
3024
3025 if (!strncmp (comname, HOOK_STRING, HOOK_LEN))
3026 {
3027 /* Look up cmd it hooks, and verify that we got an exact match. */
3028 tem = comname + HOOK_LEN;
3029 hookc = lookup_cmd (&tem, cmdlist, "", -1, 0);
3030 if (hookc && !STREQ (comname + HOOK_LEN, hookc->name))
3031 hookc = 0;
3032 if (!hookc)
3033 {
3034 warning ("Your new `%s' command does not hook any existing command.",
3035 comname);
3036 if (!query ("Proceed? "))
3037 error ("Not confirmed.");
3038 }
3039 }
3040
3041 comname = savestring (comname, strlen (comname));
3042
3043 /* If the rest of the commands will be case insensitive, this one
3044 should behave in the same manner. */
3045 for (tem = comname; *tem; tem++)
3046 if (isupper (*tem))
3047 *tem = tolower (*tem);
3048
3049 sprintf (tmpbuf, "Type commands for definition of \"%s\".", comname);
3050 cmds = read_command_lines (tmpbuf, from_tty);
3051
3052 if (c && c->class == class_user)
3053 free_command_lines (&c->user_commands);
3054
3055 newc = add_cmd (comname, class_user, user_defined_command,
3056 (c && c->class == class_user)
3057 ? c->doc : savestring ("User-defined.", 13), &cmdlist);
3058 newc->user_commands = cmds;
3059
3060 /* If this new command is a hook, then mark both commands as being
3061 tied. */
3062 if (hookc)
3063 {
3064 hookc->hook = newc; /* Target gets hooked. */
3065 newc->hookee = hookc; /* We are marked as hooking target cmd. */
3066 }
3067 }
3068
3069 static void
3070 document_command (char *comname, int from_tty)
3071 {
3072 struct command_line *doclines;
3073 register struct cmd_list_element *c;
3074 char *tem = comname;
3075 char tmpbuf[128];
3076
3077 validate_comname (comname);
3078
3079 c = lookup_cmd (&tem, cmdlist, "", 0, 1);
3080
3081 if (c->class != class_user)
3082 error ("Command \"%s\" is built-in.", comname);
3083
3084 sprintf (tmpbuf, "Type documentation for \"%s\".", comname);
3085 doclines = read_command_lines (tmpbuf, from_tty);
3086
3087 if (c->doc)
3088 free (c->doc);
3089
3090 {
3091 register struct command_line *cl1;
3092 register int len = 0;
3093
3094 for (cl1 = doclines; cl1; cl1 = cl1->next)
3095 len += strlen (cl1->line) + 1;
3096
3097 c->doc = (char *) xmalloc (len + 1);
3098 *c->doc = 0;
3099
3100 for (cl1 = doclines; cl1; cl1 = cl1->next)
3101 {
3102 strcat (c->doc, cl1->line);
3103 if (cl1->next)
3104 strcat (c->doc, "\n");
3105 }
3106 }
3107
3108 free_command_lines (&doclines);
3109 }
3110 \f
3111 /* Print the GDB banner. */
3112 void
3113 print_gdb_version (struct ui_file *stream)
3114 {
3115 /* From GNU coding standards, first line is meant to be easy for a
3116 program to parse, and is just canonical program name and version
3117 number, which starts after last space. */
3118
3119 #ifdef UI_OUT
3120 /* Print it console style until a format is defined */
3121 fprintf_filtered (stream, "GNU gdb %s (UI_OUT)\n", version);
3122 #else
3123 fprintf_filtered (stream, "GNU gdb %s\n", version);
3124 #endif
3125
3126 /* Second line is a copyright notice. */
3127
3128 fprintf_filtered (stream, "Copyright 2000 Free Software Foundation, Inc.\n");
3129
3130 /* Following the copyright is a brief statement that the program is
3131 free software, that users are free to copy and change it on
3132 certain conditions, that it is covered by the GNU GPL, and that
3133 there is no warranty. */
3134
3135 fprintf_filtered (stream, "\
3136 GDB is free software, covered by the GNU General Public License, and you are\n\
3137 welcome to change it and/or distribute copies of it under certain conditions.\n\
3138 Type \"show copying\" to see the conditions.\n\
3139 There is absolutely no warranty for GDB. Type \"show warranty\" for details.\n");
3140
3141 /* After the required info we print the configuration information. */
3142
3143 fprintf_filtered (stream, "This GDB was configured as \"");
3144 if (!STREQ (host_name, target_name))
3145 {
3146 fprintf_filtered (stream, "--host=%s --target=%s", host_name, target_name);
3147 }
3148 else
3149 {
3150 fprintf_filtered (stream, "%s", host_name);
3151 }
3152 fprintf_filtered (stream, "\".");
3153 }
3154
3155 /* ARGSUSED */
3156 static void
3157 show_version (char *args, int from_tty)
3158 {
3159 immediate_quit++;
3160 print_gdb_version (gdb_stdout);
3161 printf_filtered ("\n");
3162 immediate_quit--;
3163 }
3164 \f
3165 /* get_prompt: access method for the GDB prompt string. */
3166
3167 #define MAX_PROMPT_SIZE 256
3168
3169 /*
3170 * int get_prompt_1 (char * buf);
3171 *
3172 * Work-horse for get_prompt (called via catch_errors).
3173 * Argument is buffer to hold the formatted prompt.
3174 *
3175 * Returns: 1 for success (use formatted prompt)
3176 * 0 for failure (use gdb_prompt_string).
3177 */
3178
3179 static int gdb_prompt_escape;
3180
3181 static int
3182 get_prompt_1 (void *data)
3183 {
3184 char *formatted_prompt = data;
3185 char *local_prompt;
3186
3187 if (event_loop_p)
3188 local_prompt = PROMPT (0);
3189 else
3190 local_prompt = gdb_prompt_string;
3191
3192
3193 if (gdb_prompt_escape == 0)
3194 {
3195 return 0; /* do no formatting */
3196 }
3197 else
3198 /* formatted prompt */
3199 {
3200 char fmt[40], *promptp, *outp, *tmp;
3201 value_ptr arg_val;
3202 DOUBLEST doubleval;
3203 LONGEST longval;
3204 CORE_ADDR addrval;
3205
3206 int i, len;
3207 struct type *arg_type, *elt_type;
3208
3209 promptp = local_prompt;
3210 outp = formatted_prompt;
3211
3212 while (*promptp != '\0')
3213 {
3214 int available = MAX_PROMPT_SIZE - (outp - formatted_prompt) - 1;
3215
3216 if (*promptp != gdb_prompt_escape)
3217 {
3218 if (available >= 1) /* overflow protect */
3219 *outp++ = *promptp++;
3220 }
3221 else
3222 {
3223 /* GDB prompt string contains escape char. Parse for arg.
3224 Two consecutive escape chars followed by arg followed by
3225 a comma means to insert the arg using a default format.
3226 Otherwise a printf format string may be included between
3227 the two escape chars. eg:
3228 %%foo, insert foo using default format
3229 %2.2f%foo, insert foo using "%2.2f" format
3230 A mismatch between the format string and the data type
3231 of "foo" is an error (which we don't know how to protect
3232 against). */
3233
3234 fmt[0] = '\0'; /* assume null format string */
3235 if (promptp[1] == gdb_prompt_escape) /* double esc char */
3236 {
3237 promptp += 2; /* skip past two escape chars. */
3238 }
3239 else
3240 {
3241 /* extract format string from between two esc chars */
3242 i = 0;
3243 do
3244 {
3245 fmt[i++] = *promptp++; /* copy format string */
3246 }
3247 while (i < sizeof (fmt) - 1 &&
3248 *promptp != gdb_prompt_escape &&
3249 *promptp != '\0');
3250
3251 if (*promptp != gdb_prompt_escape)
3252 error ("Syntax error at prompt position %d",
3253 promptp - local_prompt);
3254 else
3255 {
3256 promptp++; /* skip second escape char */
3257 fmt[i++] = '\0'; /* terminate the format string */
3258 }
3259 }
3260
3261 arg_val = parse_to_comma_and_eval (&promptp);
3262 if (*promptp == ',')
3263 promptp++; /* skip past the comma */
3264 arg_type = check_typedef (VALUE_TYPE (arg_val));
3265 switch (TYPE_CODE (arg_type))
3266 {
3267 case TYPE_CODE_ARRAY:
3268 elt_type = check_typedef (TYPE_TARGET_TYPE (arg_type));
3269 if (TYPE_LENGTH (arg_type) > 0 &&
3270 TYPE_LENGTH (elt_type) == 1 &&
3271 TYPE_CODE (elt_type) == TYPE_CODE_INT)
3272 {
3273 int len = TYPE_LENGTH (arg_type);
3274
3275 if (VALUE_LAZY (arg_val))
3276 value_fetch_lazy (arg_val);
3277 tmp = VALUE_CONTENTS (arg_val);
3278
3279 if (len > available)
3280 len = available; /* overflow protect */
3281
3282 /* FIXME: how to protect GDB from crashing
3283 from bad user-supplied format string? */
3284 if (fmt[0] != 0)
3285 sprintf (outp, fmt, tmp);
3286 else
3287 strncpy (outp, tmp, len);
3288 outp[len] = '\0';
3289 }
3290 break;
3291 case TYPE_CODE_PTR:
3292 elt_type = check_typedef (TYPE_TARGET_TYPE (arg_type));
3293 addrval = value_as_pointer (arg_val);
3294
3295 if (TYPE_LENGTH (elt_type) == 1 &&
3296 TYPE_CODE (elt_type) == TYPE_CODE_INT &&
3297 addrval != 0)
3298 {
3299 /* display it as a string */
3300 char *default_fmt = "%s";
3301 char *tmp;
3302 int err = 0;
3303
3304 /* Limiting the number of bytes that the following call
3305 will read protects us from sprintf overflow later. */
3306 i = target_read_string (addrval, /* src */
3307 &tmp, /* dest */
3308 available, /* len */
3309 &err);
3310 if (err) /* read failed */
3311 error ("%s on target_read", safe_strerror (err));
3312
3313 tmp[i] = '\0'; /* force-terminate string */
3314 /* FIXME: how to protect GDB from crashing
3315 from bad user-supplied format string? */
3316 sprintf (outp, fmt[0] == 0 ? default_fmt : fmt,
3317 tmp);
3318 free (tmp);
3319 }
3320 else
3321 {
3322 /* display it as a pointer */
3323 char *default_fmt = "0x%x";
3324
3325 /* FIXME: how to protect GDB from crashing
3326 from bad user-supplied format string? */
3327 if (available >= 16 /*? */ ) /* overflow protect */
3328 sprintf (outp, fmt[0] == 0 ? default_fmt : fmt,
3329 (long) addrval);
3330 }
3331 break;
3332 case TYPE_CODE_FLT:
3333 {
3334 char *default_fmt = "%g";
3335
3336 doubleval = value_as_double (arg_val);
3337 /* FIXME: how to protect GDB from crashing
3338 from bad user-supplied format string? */
3339 if (available >= 16 /*? */ ) /* overflow protect */
3340 sprintf (outp, fmt[0] == 0 ? default_fmt : fmt,
3341 (double) doubleval);
3342 break;
3343 }
3344 case TYPE_CODE_INT:
3345 {
3346 char *default_fmt = "%d";
3347
3348 longval = value_as_long (arg_val);
3349 /* FIXME: how to protect GDB from crashing
3350 from bad user-supplied format string? */
3351 if (available >= 16 /*? */ ) /* overflow protect */
3352 sprintf (outp, fmt[0] == 0 ? default_fmt : fmt,
3353 (long) longval);
3354 break;
3355 }
3356 case TYPE_CODE_BOOL:
3357 {
3358 /* no default format for bool */
3359 longval = value_as_long (arg_val);
3360 if (available >= 8 /*? */ ) /* overflow protect */
3361 {
3362 if (longval)
3363 strcpy (outp, "<true>");
3364 else
3365 strcpy (outp, "<false>");
3366 }
3367 break;
3368 }
3369 case TYPE_CODE_ENUM:
3370 {
3371 /* no default format for enum */
3372 longval = value_as_long (arg_val);
3373 len = TYPE_NFIELDS (arg_type);
3374 /* find enum name if possible */
3375 for (i = 0; i < len; i++)
3376 if (TYPE_FIELD_BITPOS (arg_type, i) == longval)
3377 break; /* match -- end loop */
3378
3379 if (i < len) /* enum name found */
3380 {
3381 char *name = TYPE_FIELD_NAME (arg_type, i);
3382
3383 strncpy (outp, name, available);
3384 /* in casel available < strlen (name), */
3385 outp[available] = '\0';
3386 }
3387 else
3388 {
3389 if (available >= 16 /*? */ ) /* overflow protect */
3390 sprintf (outp, "%ld", (long) longval);
3391 }
3392 break;
3393 }
3394 case TYPE_CODE_VOID:
3395 *outp = '\0';
3396 break; /* void type -- no output */
3397 default:
3398 error ("bad data type at prompt position %d",
3399 promptp - local_prompt);
3400 break;
3401 }
3402 outp += strlen (outp);
3403 }
3404 }
3405 *outp++ = '\0'; /* terminate prompt string */
3406 return 1;
3407 }
3408 }
3409
3410 char *
3411 get_prompt (void)
3412 {
3413 static char buf[MAX_PROMPT_SIZE];
3414
3415 if (catch_errors (get_prompt_1, buf, "bad formatted prompt: ",
3416 RETURN_MASK_ALL))
3417 {
3418 return &buf[0]; /* successful formatted prompt */
3419 }
3420 else
3421 {
3422 /* Prompt could not be formatted. */
3423 if (event_loop_p)
3424 return PROMPT (0);
3425 else
3426 return gdb_prompt_string;
3427 }
3428 }
3429
3430 void
3431 set_prompt (char *s)
3432 {
3433 /* ??rehrauer: I don't know why this fails, since it looks as though
3434 assignments to prompt are wrapped in calls to savestring...
3435 if (prompt != NULL)
3436 free (prompt);
3437 */
3438 if (event_loop_p)
3439 PROMPT (0) = savestring (s, strlen (s));
3440 else
3441 gdb_prompt_string = savestring (s, strlen (s));
3442 }
3443 \f
3444
3445 /* If necessary, make the user confirm that we should quit. Return
3446 non-zero if we should quit, zero if we shouldn't. */
3447
3448 int
3449 quit_confirm (void)
3450 {
3451 if (inferior_pid != 0 && target_has_execution)
3452 {
3453 char *s;
3454
3455 /* This is something of a hack. But there's no reliable way to
3456 see if a GUI is running. The `use_windows' variable doesn't
3457 cut it. */
3458 if (init_ui_hook)
3459 s = "A debugging session is active.\nDo you still want to close the debugger?";
3460 else if (attach_flag)
3461 s = "The program is running. Quit anyway (and detach it)? ";
3462 else
3463 s = "The program is running. Exit anyway? ";
3464
3465 if (!query (s))
3466 return 0;
3467 }
3468
3469 return 1;
3470 }
3471
3472 /* Quit without asking for confirmation. */
3473
3474 void
3475 quit_force (char *args, int from_tty)
3476 {
3477 int exit_code = 0;
3478
3479 /* An optional expression may be used to cause gdb to terminate with the
3480 value of that expression. */
3481 if (args)
3482 {
3483 value_ptr val = parse_and_eval (args);
3484
3485 exit_code = (int) value_as_long (val);
3486 }
3487
3488 if (inferior_pid != 0 && target_has_execution)
3489 {
3490 if (attach_flag)
3491 target_detach (args, from_tty);
3492 else
3493 target_kill ();
3494 }
3495
3496 /* UDI wants this, to kill the TIP. */
3497 target_close (1);
3498
3499 /* Save the history information if it is appropriate to do so. */
3500 if (write_history_p && history_filename)
3501 write_history (history_filename);
3502
3503 do_final_cleanups (ALL_CLEANUPS); /* Do any final cleanups before exiting */
3504
3505 #if defined(TUI)
3506 /* tuiDo((TuiOpaqueFuncPtr)tuiCleanUp); */
3507 /* The above does not need to be inside a tuiDo(), since
3508 * it is not manipulating the curses screen, but rather,
3509 * it is tearing it down.
3510 */
3511 if (tui_version)
3512 tuiCleanUp ();
3513 #endif
3514
3515 exit (exit_code);
3516 }
3517
3518 /* Handle the quit command. */
3519
3520 void
3521 quit_command (char *args, int from_tty)
3522 {
3523 if (!quit_confirm ())
3524 error ("Not confirmed.");
3525 quit_force (args, from_tty);
3526 }
3527
3528 /* Returns whether GDB is running on a terminal and whether the user
3529 desires that questions be asked of them on that terminal. */
3530
3531 int
3532 input_from_terminal_p (void)
3533 {
3534 return gdb_has_a_terminal () && (instream == stdin) & caution;
3535 }
3536 \f
3537 /* ARGSUSED */
3538 static void
3539 pwd_command (char *args, int from_tty)
3540 {
3541 if (args)
3542 error ("The \"pwd\" command does not take an argument: %s", args);
3543 getcwd (gdb_dirbuf, sizeof (gdb_dirbuf));
3544
3545 if (!STREQ (gdb_dirbuf, current_directory))
3546 printf_unfiltered ("Working directory %s\n (canonically %s).\n",
3547 current_directory, gdb_dirbuf);
3548 else
3549 printf_unfiltered ("Working directory %s.\n", current_directory);
3550 }
3551
3552 void
3553 cd_command (char *dir, int from_tty)
3554 {
3555 int len;
3556 /* Found something other than leading repetitions of "/..". */
3557 int found_real_path;
3558 char *p;
3559
3560 /* If the new directory is absolute, repeat is a no-op; if relative,
3561 repeat might be useful but is more likely to be a mistake. */
3562 dont_repeat ();
3563
3564 if (dir == 0)
3565 error_no_arg ("new working directory");
3566
3567 dir = tilde_expand (dir);
3568 make_cleanup (free, dir);
3569
3570 if (chdir (dir) < 0)
3571 perror_with_name (dir);
3572
3573 #if defined(_WIN32) || defined(__MSDOS__)
3574 /* There's too much mess with DOSish names like "d:", "d:.",
3575 "d:./foo" etc. Instead of having lots of special #ifdef'ed code,
3576 simply get the canonicalized name of the current directory. */
3577 dir = getcwd (gdb_dirbuf, sizeof (gdb_dirbuf));
3578 #endif
3579
3580 len = strlen (dir);
3581 if (SLASH_P (dir[len - 1]))
3582 {
3583 /* Remove the trailing slash unless this is a root directory
3584 (including a drive letter on non-Unix systems). */
3585 if (!(len == 1) /* "/" */
3586 #if defined(_WIN32) || defined(__MSDOS__)
3587 && !(!SLASH_P (*dir) && ROOTED_P (dir) && len <= 3) /* "d:/" */
3588 #endif
3589 )
3590 len--;
3591 }
3592
3593 dir = savestring (dir, len);
3594 if (ROOTED_P (dir))
3595 current_directory = dir;
3596 else
3597 {
3598 if (SLASH_P (current_directory[strlen (current_directory) - 1]))
3599 current_directory = concat (current_directory, dir, NULL);
3600 else
3601 current_directory = concat (current_directory, SLASH_STRING, dir, NULL);
3602 free (dir);
3603 }
3604
3605 /* Now simplify any occurrences of `.' and `..' in the pathname. */
3606
3607 found_real_path = 0;
3608 for (p = current_directory; *p;)
3609 {
3610 if (SLASH_P (p[0]) && p[1] == '.' && (p[2] == 0 || SLASH_P (p[2])))
3611 strcpy (p, p + 2);
3612 else if (SLASH_P (p[0]) && p[1] == '.' && p[2] == '.'
3613 && (p[3] == 0 || SLASH_P (p[3])))
3614 {
3615 if (found_real_path)
3616 {
3617 /* Search backwards for the directory just before the "/.."
3618 and obliterate it and the "/..". */
3619 char *q = p;
3620 while (q != current_directory && !SLASH_P (q[-1]))
3621 --q;
3622
3623 if (q == current_directory)
3624 /* current_directory is
3625 a relative pathname ("can't happen"--leave it alone). */
3626 ++p;
3627 else
3628 {
3629 strcpy (q - 1, p + 3);
3630 p = q - 1;
3631 }
3632 }
3633 else
3634 /* We are dealing with leading repetitions of "/..", for example
3635 "/../..", which is the Mach super-root. */
3636 p += 3;
3637 }
3638 else
3639 {
3640 found_real_path = 1;
3641 ++p;
3642 }
3643 }
3644
3645 forget_cached_source_info ();
3646
3647 if (from_tty)
3648 pwd_command ((char *) 0, 1);
3649 }
3650 \f
3651 struct source_cleanup_lines_args
3652 {
3653 int old_line;
3654 char *old_file;
3655 char *old_pre_error;
3656 char *old_error_pre_print;
3657 };
3658
3659 static void
3660 source_cleanup_lines (PTR args)
3661 {
3662 struct source_cleanup_lines_args *p =
3663 (struct source_cleanup_lines_args *) args;
3664 source_line_number = p->old_line;
3665 source_file_name = p->old_file;
3666 source_pre_error = p->old_pre_error;
3667 error_pre_print = p->old_error_pre_print;
3668 }
3669
3670 /* ARGSUSED */
3671 static void
3672 do_fclose_cleanup (void *stream)
3673 {
3674 fclose (stream);
3675 }
3676
3677 void
3678 source_command (char *args, int from_tty)
3679 {
3680 FILE *stream;
3681 struct cleanup *old_cleanups;
3682 char *file = args;
3683 struct source_cleanup_lines_args old_lines;
3684 int needed_length;
3685
3686 if (file == NULL)
3687 {
3688 error ("source command requires pathname of file to source.");
3689 }
3690
3691 file = tilde_expand (file);
3692 old_cleanups = make_cleanup (free, file);
3693
3694 stream = fopen (file, FOPEN_RT);
3695 if (!stream)
3696 {
3697 if (from_tty)
3698 perror_with_name (file);
3699 else
3700 return;
3701 }
3702
3703 make_cleanup (do_fclose_cleanup, stream);
3704
3705 old_lines.old_line = source_line_number;
3706 old_lines.old_file = source_file_name;
3707 old_lines.old_pre_error = source_pre_error;
3708 old_lines.old_error_pre_print = error_pre_print;
3709 make_cleanup (source_cleanup_lines, &old_lines);
3710 source_line_number = 0;
3711 source_file_name = file;
3712 source_pre_error = error_pre_print == NULL ? "" : error_pre_print;
3713 source_pre_error = savestring (source_pre_error, strlen (source_pre_error));
3714 make_cleanup (free, source_pre_error);
3715 /* This will get set every time we read a line. So it won't stay "" for
3716 long. */
3717 error_pre_print = "";
3718
3719 needed_length = strlen (source_file_name) + strlen (source_pre_error) + 80;
3720 if (source_error_allocated < needed_length)
3721 {
3722 source_error_allocated *= 2;
3723 if (source_error_allocated < needed_length)
3724 source_error_allocated = needed_length;
3725 if (source_error == NULL)
3726 source_error = xmalloc (source_error_allocated);
3727 else
3728 source_error = xrealloc (source_error, source_error_allocated);
3729 }
3730
3731 read_command_file (stream);
3732
3733 do_cleanups (old_cleanups);
3734 }
3735
3736 /* ARGSUSED */
3737 static void
3738 echo_command (char *text, int from_tty)
3739 {
3740 char *p = text;
3741 register int c;
3742
3743 if (text)
3744 while ((c = *p++) != '\0')
3745 {
3746 if (c == '\\')
3747 {
3748 /* \ at end of argument is used after spaces
3749 so they won't be lost. */
3750 if (*p == 0)
3751 return;
3752
3753 c = parse_escape (&p);
3754 if (c >= 0)
3755 printf_filtered ("%c", c);
3756 }
3757 else
3758 printf_filtered ("%c", c);
3759 }
3760
3761 /* Force this output to appear now. */
3762 wrap_here ("");
3763 gdb_flush (gdb_stdout);
3764 }
3765
3766 /* ARGSUSED */
3767 static void
3768 dont_repeat_command (char *ignored, int from_tty)
3769 {
3770 *line = 0; /* Can't call dont_repeat here because we're not
3771 necessarily reading from stdin. */
3772 }
3773 \f
3774 /* Functions to manipulate command line editing control variables. */
3775
3776 /* Number of commands to print in each call to show_commands. */
3777 #define Hist_print 10
3778 static void
3779 show_commands (char *args, int from_tty)
3780 {
3781 /* Index for history commands. Relative to history_base. */
3782 int offset;
3783
3784 /* Number of the history entry which we are planning to display next.
3785 Relative to history_base. */
3786 static int num = 0;
3787
3788 /* The first command in the history which doesn't exist (i.e. one more
3789 than the number of the last command). Relative to history_base. */
3790 int hist_len;
3791
3792 extern HIST_ENTRY *history_get (int);
3793
3794 /* Print out some of the commands from the command history. */
3795 /* First determine the length of the history list. */
3796 hist_len = history_size;
3797 for (offset = 0; offset < history_size; offset++)
3798 {
3799 if (!history_get (history_base + offset))
3800 {
3801 hist_len = offset;
3802 break;
3803 }
3804 }
3805
3806 if (args)
3807 {
3808 if (args[0] == '+' && args[1] == '\0')
3809 /* "info editing +" should print from the stored position. */
3810 ;
3811 else
3812 /* "info editing <exp>" should print around command number <exp>. */
3813 num = (parse_and_eval_address (args) - history_base) - Hist_print / 2;
3814 }
3815 /* "show commands" means print the last Hist_print commands. */
3816 else
3817 {
3818 num = hist_len - Hist_print;
3819 }
3820
3821 if (num < 0)
3822 num = 0;
3823
3824 /* If there are at least Hist_print commands, we want to display the last
3825 Hist_print rather than, say, the last 6. */
3826 if (hist_len - num < Hist_print)
3827 {
3828 num = hist_len - Hist_print;
3829 if (num < 0)
3830 num = 0;
3831 }
3832
3833 for (offset = num; offset < num + Hist_print && offset < hist_len; offset++)
3834 {
3835 printf_filtered ("%5d %s\n", history_base + offset,
3836 (history_get (history_base + offset))->line);
3837 }
3838
3839 /* The next command we want to display is the next one that we haven't
3840 displayed yet. */
3841 num += Hist_print;
3842
3843 /* If the user repeats this command with return, it should do what
3844 "show commands +" does. This is unnecessary if arg is null,
3845 because "show commands +" is not useful after "show commands". */
3846 if (from_tty && args)
3847 {
3848 args[0] = '+';
3849 args[1] = '\0';
3850 }
3851 }
3852
3853 /* Called by do_setshow_command. */
3854 /* ARGSUSED */
3855 static void
3856 set_history_size_command (char *args, int from_tty, struct cmd_list_element *c)
3857 {
3858 if (history_size == INT_MAX)
3859 unstifle_history ();
3860 else if (history_size >= 0)
3861 stifle_history (history_size);
3862 else
3863 {
3864 history_size = INT_MAX;
3865 error ("History size must be non-negative");
3866 }
3867 }
3868
3869 /* ARGSUSED */
3870 static void
3871 set_history (char *args, int from_tty)
3872 {
3873 printf_unfiltered ("\"set history\" must be followed by the name of a history subcommand.\n");
3874 help_list (sethistlist, "set history ", -1, gdb_stdout);
3875 }
3876
3877 /* ARGSUSED */
3878 static void
3879 show_history (char *args, int from_tty)
3880 {
3881 cmd_show_list (showhistlist, from_tty, "");
3882 }
3883
3884 int info_verbose = 0; /* Default verbose msgs off */
3885
3886 /* Called by do_setshow_command. An elaborate joke. */
3887 /* ARGSUSED */
3888 static void
3889 set_verbose (char *args, int from_tty, struct cmd_list_element *c)
3890 {
3891 char *cmdname = "verbose";
3892 struct cmd_list_element *showcmd;
3893
3894 showcmd = lookup_cmd_1 (&cmdname, showlist, NULL, 1);
3895
3896 if (info_verbose)
3897 {
3898 c->doc = "Set verbose printing of informational messages.";
3899 showcmd->doc = "Show verbose printing of informational messages.";
3900 }
3901 else
3902 {
3903 c->doc = "Set verbosity.";
3904 showcmd->doc = "Show verbosity.";
3905 }
3906 }
3907
3908 static void
3909 float_handler (int signo)
3910 {
3911 /* This message is based on ANSI C, section 4.7. Note that integer
3912 divide by zero causes this, so "float" is a misnomer. */
3913 signal (SIGFPE, float_handler);
3914 error ("Erroneous arithmetic operation.");
3915 }
3916
3917 static void
3918 set_debug (char *arg, int from_tty)
3919 {
3920 printf_unfiltered ("\"set debug\" must be followed by the name of a print subcommand.\n");
3921 help_list (setdebuglist, "set debug ", -1, gdb_stdout);
3922 }
3923
3924 static void
3925 show_debug (char *args, int from_tty)
3926 {
3927 cmd_show_list (showdebuglist, from_tty, "");
3928 }
3929
3930 static void
3931 init_cmd_lists (void)
3932 {
3933 cmdlist = NULL;
3934 infolist = NULL;
3935 enablelist = NULL;
3936 disablelist = NULL;
3937 togglelist = NULL;
3938 stoplist = NULL;
3939 deletelist = NULL;
3940 enablebreaklist = NULL;
3941 setlist = NULL;
3942 unsetlist = NULL;
3943 showlist = NULL;
3944 sethistlist = NULL;
3945 showhistlist = NULL;
3946 unsethistlist = NULL;
3947 maintenancelist = NULL;
3948 maintenanceinfolist = NULL;
3949 maintenanceprintlist = NULL;
3950 setprintlist = NULL;
3951 showprintlist = NULL;
3952 setchecklist = NULL;
3953 showchecklist = NULL;
3954 }
3955
3956 /* Init the history buffer. Note that we are called after the init file(s)
3957 * have been read so that the user can change the history file via his
3958 * .gdbinit file (for instance). The GDBHISTFILE environment variable
3959 * overrides all of this.
3960 */
3961
3962 void
3963 init_history (void)
3964 {
3965 char *tmpenv;
3966
3967 tmpenv = getenv ("HISTSIZE");
3968 if (tmpenv)
3969 history_size = atoi (tmpenv);
3970 else if (!history_size)
3971 history_size = 256;
3972
3973 stifle_history (history_size);
3974
3975 tmpenv = getenv ("GDBHISTFILE");
3976 if (tmpenv)
3977 history_filename = savestring (tmpenv, strlen (tmpenv));
3978 else if (!history_filename)
3979 {
3980 /* We include the current directory so that if the user changes
3981 directories the file written will be the same as the one
3982 that was read. */
3983 #ifdef __MSDOS__
3984 /* No leading dots in file names are allowed on MSDOS. */
3985 history_filename = concat (current_directory, "/_gdb_history", NULL);
3986 #else
3987 history_filename = concat (current_directory, "/.gdb_history", NULL);
3988 #endif
3989 }
3990 read_history (history_filename);
3991 }
3992
3993 static void
3994 init_main (void)
3995 {
3996 struct cmd_list_element *c;
3997
3998 /* If we are running the asynchronous version,
3999 we initialize the prompts differently. */
4000 if (!event_loop_p)
4001 {
4002 gdb_prompt_string = savestring (DEFAULT_PROMPT, strlen (DEFAULT_PROMPT));
4003 }
4004 else
4005 {
4006 /* initialize the prompt stack to a simple "(gdb) " prompt or to
4007 whatever the DEFAULT_PROMPT is. */
4008 the_prompts.top = 0;
4009 PREFIX (0) = "";
4010 PROMPT (0) = savestring (DEFAULT_PROMPT, strlen (DEFAULT_PROMPT));
4011 SUFFIX (0) = "";
4012 /* Set things up for annotation_level > 1, if the user ever decides
4013 to use it. */
4014 async_annotation_suffix = "prompt";
4015 /* Set the variable associated with the setshow prompt command. */
4016 new_async_prompt = savestring (PROMPT (0), strlen (PROMPT (0)));
4017 }
4018 gdb_prompt_escape = 0; /* default to none. */
4019
4020 /* Set the important stuff up for command editing. */
4021 command_editing_p = 1;
4022 history_expansion_p = 0;
4023 write_history_p = 0;
4024
4025 /* Setup important stuff for command line editing. */
4026 rl_completion_entry_function = (int (*)()) readline_line_completion_function;
4027 rl_completer_word_break_characters = gdb_completer_word_break_characters;
4028 rl_completer_quote_characters = gdb_completer_quote_characters;
4029 rl_readline_name = "gdb";
4030
4031 /* Define the classes of commands.
4032 They will appear in the help list in the reverse of this order. */
4033
4034 add_cmd ("internals", class_maintenance, NO_FUNCTION,
4035 "Maintenance commands.\n\
4036 Some gdb commands are provided just for use by gdb maintainers.\n\
4037 These commands are subject to frequent change, and may not be as\n\
4038 well documented as user commands.",
4039 &cmdlist);
4040 add_cmd ("obscure", class_obscure, NO_FUNCTION, "Obscure features.", &cmdlist);
4041 add_cmd ("aliases", class_alias, NO_FUNCTION, "Aliases of other commands.", &cmdlist);
4042 add_cmd ("user-defined", class_user, NO_FUNCTION, "User-defined commands.\n\
4043 The commands in this class are those defined by the user.\n\
4044 Use the \"define\" command to define a command.", &cmdlist);
4045 add_cmd ("support", class_support, NO_FUNCTION, "Support facilities.", &cmdlist);
4046 if (!dbx_commands)
4047 add_cmd ("status", class_info, NO_FUNCTION, "Status inquiries.", &cmdlist);
4048 add_cmd ("files", class_files, NO_FUNCTION, "Specifying and examining files.", &cmdlist);
4049 add_cmd ("breakpoints", class_breakpoint, NO_FUNCTION, "Making program stop at certain points.", &cmdlist);
4050 add_cmd ("data", class_vars, NO_FUNCTION, "Examining data.", &cmdlist);
4051 add_cmd ("stack", class_stack, NO_FUNCTION, "Examining the stack.\n\
4052 The stack is made up of stack frames. Gdb assigns numbers to stack frames\n\
4053 counting from zero for the innermost (currently executing) frame.\n\n\
4054 At any time gdb identifies one frame as the \"selected\" frame.\n\
4055 Variable lookups are done with respect to the selected frame.\n\
4056 When the program being debugged stops, gdb selects the innermost frame.\n\
4057 The commands below can be used to select other frames by number or address.",
4058 &cmdlist);
4059 add_cmd ("running", class_run, NO_FUNCTION, "Running the program.", &cmdlist);
4060
4061 add_com ("pwd", class_files, pwd_command,
4062 "Print working directory. This is used for your program as well.");
4063 c = add_cmd ("cd", class_files, cd_command,
4064 "Set working directory to DIR for debugger and program being debugged.\n\
4065 The change does not take effect for the program being debugged\n\
4066 until the next time it is started.", &cmdlist);
4067 c->completer = filename_completer;
4068
4069 /* The set prompt command is different depending whether or not the
4070 async version is run. NOTE: this difference is going to
4071 disappear as we make the event loop be the default engine of
4072 gdb. */
4073 if (!event_loop_p)
4074 {
4075 add_show_from_set
4076 (add_set_cmd ("prompt", class_support, var_string,
4077 (char *) &gdb_prompt_string, "Set gdb's prompt",
4078 &setlist),
4079 &showlist);
4080 }
4081 else
4082 {
4083 c = add_set_cmd ("prompt", class_support, var_string,
4084 (char *) &new_async_prompt, "Set gdb's prompt",
4085 &setlist);
4086 add_show_from_set (c, &showlist);
4087 c->function.sfunc = set_async_prompt;
4088 }
4089
4090 add_show_from_set
4091 (add_set_cmd ("prompt-escape-char", class_support, var_zinteger,
4092 (char *) &gdb_prompt_escape,
4093 "Set escape character for formatting of gdb's prompt",
4094 &setlist),
4095 &showlist);
4096
4097 add_com ("echo", class_support, echo_command,
4098 "Print a constant string. Give string as argument.\n\
4099 C escape sequences may be used in the argument.\n\
4100 No newline is added at the end of the argument;\n\
4101 use \"\\n\" if you want a newline to be printed.\n\
4102 Since leading and trailing whitespace are ignored in command arguments,\n\
4103 if you want to print some you must use \"\\\" before leading whitespace\n\
4104 to be printed or after trailing whitespace.");
4105 add_com ("document", class_support, document_command,
4106 "Document a user-defined command.\n\
4107 Give command name as argument. Give documentation on following lines.\n\
4108 End with a line of just \"end\".");
4109 add_com ("define", class_support, define_command,
4110 "Define a new command name. Command name is argument.\n\
4111 Definition appears on following lines, one command per line.\n\
4112 End with a line of just \"end\".\n\
4113 Use the \"document\" command to give documentation for the new command.\n\
4114 Commands defined in this way may have up to ten arguments.");
4115
4116 #ifdef __STDC__
4117 c = add_cmd ("source", class_support, source_command,
4118 "Read commands from a file named FILE.\n\
4119 Note that the file \"" GDBINIT_FILENAME "\" is read automatically in this way\n\
4120 when gdb is started.", &cmdlist);
4121 #else
4122 /* Punt file name, we can't help it easily. */
4123 c = add_cmd ("source", class_support, source_command,
4124 "Read commands from a file named FILE.\n\
4125 Note that the file \".gdbinit\" is read automatically in this way\n\
4126 when gdb is started.", &cmdlist);
4127 #endif
4128 c->completer = filename_completer;
4129
4130 add_com ("quit", class_support, quit_command, "Exit gdb.");
4131 add_com ("help", class_support, help_command, "Print list of commands.");
4132 add_com_alias ("q", "quit", class_support, 1);
4133 add_com_alias ("h", "help", class_support, 1);
4134
4135 add_com ("dont-repeat", class_support, dont_repeat_command, "Don't repeat this command.\n\
4136 Primarily used inside of user-defined commands that should not be repeated when\n\
4137 hitting return.");
4138
4139 c = add_set_cmd ("verbose", class_support, var_boolean, (char *) &info_verbose,
4140 "Set ",
4141 &setlist),
4142 add_show_from_set (c, &showlist);
4143 c->function.sfunc = set_verbose;
4144 set_verbose (NULL, 0, c);
4145
4146 /* The set editing command is different depending whether or not the
4147 async version is run. NOTE: this difference is going to disappear
4148 as we make the event loop be the default engine of gdb. */
4149 if (!event_loop_p)
4150 {
4151 add_show_from_set
4152 (add_set_cmd ("editing", class_support, var_boolean, (char *) &command_editing_p,
4153 "Set editing of command lines as they are typed.\n\
4154 Use \"on\" to enable the editing, and \"off\" to disable it.\n\
4155 Without an argument, command line editing is enabled. To edit, use\n\
4156 EMACS-like or VI-like commands like control-P or ESC.", &setlist),
4157 &showlist);
4158 }
4159 else
4160 {
4161 c = add_set_cmd ("editing", class_support, var_boolean, (char *) &async_command_editing_p,
4162 "Set editing of command lines as they are typed.\n\
4163 Use \"on\" to enable the editing, and \"off\" to disable it.\n\
4164 Without an argument, command line editing is enabled. To edit, use\n\
4165 EMACS-like or VI-like commands like control-P or ESC.", &setlist);
4166
4167 add_show_from_set (c, &showlist);
4168 c->function.sfunc = set_async_editing_command;
4169 }
4170
4171 add_prefix_cmd ("history", class_support, set_history,
4172 "Generic command for setting command history parameters.",
4173 &sethistlist, "set history ", 0, &setlist);
4174 add_prefix_cmd ("history", class_support, show_history,
4175 "Generic command for showing command history parameters.",
4176 &showhistlist, "show history ", 0, &showlist);
4177
4178 add_show_from_set
4179 (add_set_cmd ("expansion", no_class, var_boolean, (char *) &history_expansion_p,
4180 "Set history expansion on command input.\n\
4181 Without an argument, history expansion is enabled.", &sethistlist),
4182 &showhistlist);
4183
4184 add_show_from_set
4185 (add_set_cmd ("save", no_class, var_boolean, (char *) &write_history_p,
4186 "Set saving of the history record on exit.\n\
4187 Use \"on\" to enable the saving, and \"off\" to disable it.\n\
4188 Without an argument, saving is enabled.", &sethistlist),
4189 &showhistlist);
4190
4191 c = add_set_cmd ("size", no_class, var_integer, (char *) &history_size,
4192 "Set the size of the command history, \n\
4193 ie. the number of previous commands to keep a record of.", &sethistlist);
4194 add_show_from_set (c, &showhistlist);
4195 c->function.sfunc = set_history_size_command;
4196
4197 add_show_from_set
4198 (add_set_cmd ("filename", no_class, var_filename, (char *) &history_filename,
4199 "Set the filename in which to record the command history\n\
4200 (the list of previous commands of which a record is kept).", &sethistlist),
4201 &showhistlist);
4202
4203 add_show_from_set
4204 (add_set_cmd ("confirm", class_support, var_boolean,
4205 (char *) &caution,
4206 "Set whether to confirm potentially dangerous operations.",
4207 &setlist),
4208 &showlist);
4209
4210 add_prefix_cmd ("info", class_info, info_command,
4211 "Generic command for showing things about the program being debugged.",
4212 &infolist, "info ", 0, &cmdlist);
4213 add_com_alias ("i", "info", class_info, 1);
4214
4215 add_com ("complete", class_obscure, complete_command,
4216 "List the completions for the rest of the line as a command.");
4217
4218 add_prefix_cmd ("show", class_info, show_command,
4219 "Generic command for showing things about the debugger.",
4220 &showlist, "show ", 0, &cmdlist);
4221 /* Another way to get at the same thing. */
4222 add_info ("set", show_command, "Show all GDB settings.");
4223
4224 add_cmd ("commands", no_class, show_commands,
4225 "Show the history of commands you typed.\n\
4226 You can supply a command number to start with, or a `+' to start after\n\
4227 the previous command number shown.",
4228 &showlist);
4229
4230 add_cmd ("version", no_class, show_version,
4231 "Show what version of GDB this is.", &showlist);
4232
4233 add_com ("while", class_support, while_command,
4234 "Execute nested commands WHILE the conditional expression is non zero.\n\
4235 The conditional expression must follow the word `while' and must in turn be\n\
4236 followed by a new line. The nested commands must be entered one per line,\n\
4237 and should be terminated by the word `end'.");
4238
4239 add_com ("if", class_support, if_command,
4240 "Execute nested commands once IF the conditional expression is non zero.\n\
4241 The conditional expression must follow the word `if' and must in turn be\n\
4242 followed by a new line. The nested commands must be entered one per line,\n\
4243 and should be terminated by the word 'else' or `end'. If an else clause\n\
4244 is used, the same rules apply to its nested commands as to the first ones.");
4245
4246 /* If target is open when baud changes, it doesn't take effect until the
4247 next open (I think, not sure). */
4248 add_show_from_set (add_set_cmd ("remotebaud", no_class,
4249 var_zinteger, (char *) &baud_rate,
4250 "Set baud rate for remote serial I/O.\n\
4251 This value is used to set the speed of the serial port when debugging\n\
4252 using remote targets.", &setlist),
4253 &showlist);
4254
4255 c = add_set_cmd ("remotedebug", no_class, var_zinteger,
4256 (char *) &remote_debug,
4257 "Set debugging of remote protocol.\n\
4258 When enabled, each packet sent or received with the remote target\n\
4259 is displayed.", &setlist);
4260 deprecate_cmd (c, "set debug remote");
4261 deprecate_cmd (add_show_from_set (c, &showlist), "show debug remote");
4262
4263 add_show_from_set (add_set_cmd ("remote", no_class, var_zinteger,
4264 (char *) &remote_debug,
4265 "Set debugging of remote protocol.\n\
4266 When enabled, each packet sent or received with the remote target\n\
4267 is displayed.", &setdebuglist),
4268 &showdebuglist);
4269
4270 add_show_from_set (
4271 add_set_cmd ("remotetimeout", no_class, var_integer, (char *) &remote_timeout,
4272 "Set timeout limit to wait for target to respond.\n\
4273 This value is used to set the time limit for gdb to wait for a response\n\
4274 from the target.", &setlist),
4275 &showlist);
4276
4277 /* The set annotate command is different depending whether or not
4278 the async version is run. NOTE: this difference is going to
4279 disappear as we make the event loop be the default engine of
4280 gdb. */
4281 if (!event_loop_p)
4282 {
4283 c = add_set_cmd ("annotate", class_obscure, var_zinteger,
4284 (char *) &annotation_level, "Set annotation_level.\n\
4285 0 == normal; 1 == fullname (for use when running under emacs)\n\
4286 2 == output annotated suitably for use by programs that control GDB.",
4287 &setlist);
4288 c = add_show_from_set (c, &showlist);
4289 }
4290 else
4291 {
4292 c = add_set_cmd ("annotate", class_obscure, var_zinteger,
4293 (char *) &annotation_level, "Set annotation_level.\n\
4294 0 == normal; 1 == fullname (for use when running under emacs)\n\
4295 2 == output annotated suitably for use by programs that control GDB.",
4296 &setlist);
4297 add_show_from_set (c, &showlist);
4298 c->function.sfunc = set_async_annotation_level;
4299 }
4300 if (event_loop_p)
4301 {
4302 add_show_from_set
4303 (add_set_cmd ("exec-done-display", class_support, var_boolean, (char *) &exec_done_display_p,
4304 "Set notification of completion for asynchronous execution commands.\n\
4305 Use \"on\" to enable the notification, and \"off\" to disable it.", &setlist),
4306 &showlist);
4307 }
4308 add_prefix_cmd ("debug", no_class, set_debug,
4309 "Generic command for setting gdb debugging flags",
4310 &setdebuglist, "set debug ", 0, &setlist);
4311
4312 add_prefix_cmd ("debug", no_class, show_debug,
4313 "Generic command for showing gdb debugging flags",
4314 &showdebuglist, "show debug ", 0, &showlist);
4315 }