2010-05-06 Michael Snyder <msnyder@vmware.com>
[deliverable/binutils-gdb.git] / gdb / infcmd.c
1 /* Memory-access and commands for "inferior" process, for GDB.
2
3 Copyright (C) 1986, 1987, 1988, 1989, 1990, 1991, 1992, 1993, 1994, 1995,
4 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007,
5 2008, 2009, 2010 Free Software Foundation, Inc.
6
7 This file is part of GDB.
8
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 3 of the License, or
12 (at your option) any later version.
13
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with this program. If not, see <http://www.gnu.org/licenses/>. */
21
22 #include "defs.h"
23 #include "arch-utils.h"
24 #include <signal.h>
25 #include "gdb_string.h"
26 #include "symtab.h"
27 #include "gdbtypes.h"
28 #include "frame.h"
29 #include "inferior.h"
30 #include "environ.h"
31 #include "value.h"
32 #include "gdbcmd.h"
33 #include "symfile.h"
34 #include "gdbcore.h"
35 #include "target.h"
36 #include "language.h"
37 #include "symfile.h"
38 #include "objfiles.h"
39 #include "completer.h"
40 #include "ui-out.h"
41 #include "event-top.h"
42 #include "parser-defs.h"
43 #include "regcache.h"
44 #include "reggroups.h"
45 #include "block.h"
46 #include "solib.h"
47 #include <ctype.h>
48 #include "gdb_assert.h"
49 #include "observer.h"
50 #include "target-descriptions.h"
51 #include "user-regs.h"
52 #include "exceptions.h"
53 #include "cli/cli-decode.h"
54 #include "gdbthread.h"
55 #include "valprint.h"
56 #include "inline-frame.h"
57 #include "tracepoint.h"
58
59 /* Functions exported for general use, in inferior.h: */
60
61 void all_registers_info (char *, int);
62
63 void registers_info (char *, int);
64
65 void nexti_command (char *, int);
66
67 void stepi_command (char *, int);
68
69 void continue_command (char *, int);
70
71 void interrupt_target_command (char *args, int from_tty);
72
73 /* Local functions: */
74
75 static void nofp_registers_info (char *, int);
76
77 static void print_return_value (struct type *func_type,
78 struct type *value_type);
79
80 static void until_next_command (int);
81
82 static void until_command (char *, int);
83
84 static void path_info (char *, int);
85
86 static void path_command (char *, int);
87
88 static void unset_command (char *, int);
89
90 static void float_info (char *, int);
91
92 static void disconnect_command (char *, int);
93
94 static void unset_environment_command (char *, int);
95
96 static void set_environment_command (char *, int);
97
98 static void environment_info (char *, int);
99
100 static void program_info (char *, int);
101
102 static void finish_command (char *, int);
103
104 static void signal_command (char *, int);
105
106 static void jump_command (char *, int);
107
108 static void step_1 (int, int, char *);
109 static void step_once (int skip_subroutines, int single_inst, int count, int thread);
110
111 static void next_command (char *, int);
112
113 static void step_command (char *, int);
114
115 static void run_command (char *, int);
116
117 static void run_no_args_command (char *args, int from_tty);
118
119 static void go_command (char *line_no, int from_tty);
120
121 static int strip_bg_char (char **);
122
123 void _initialize_infcmd (void);
124
125 #define ERROR_NO_INFERIOR \
126 if (!target_has_execution) error (_("The program is not being run."));
127
128 /* Scratch area where string containing arguments to give to the program will be
129 stored by 'set args'. As soon as anything is stored, notice_args_set will
130 move it into per-inferior storage. Arguments are separated by spaces. Empty
131 string (pointer to '\0') means no args. */
132
133 static char *inferior_args_scratch;
134
135 /* Scratch area where 'set inferior-tty' will store user-provided value.
136 We'll immediate copy it into per-inferior storage. */
137
138 static char *inferior_io_terminal_scratch;
139
140 /* Pid of our debugged inferior, or 0 if no inferior now.
141 Since various parts of infrun.c test this to see whether there is a program
142 being debugged it should be nonzero (currently 3 is used) for remote
143 debugging. */
144
145 ptid_t inferior_ptid;
146
147 /* Address at which inferior stopped. */
148
149 CORE_ADDR stop_pc;
150
151 /* Flag indicating that a command has proceeded the inferior past the
152 current breakpoint. */
153
154 int breakpoint_proceeded;
155
156 /* Nonzero if stopped due to completion of a stack dummy routine. */
157
158 enum stop_stack_kind stop_stack_dummy;
159
160 /* Nonzero if stopped due to a random (unexpected) signal in inferior
161 process. */
162
163 int stopped_by_random_signal;
164
165 \f
166 /* Accessor routines. */
167
168 /* Set the io terminal for the current inferior. Ownership of
169 TERMINAL_NAME is not transferred. */
170
171 void
172 set_inferior_io_terminal (const char *terminal_name)
173 {
174 xfree (current_inferior ()->terminal);
175 current_inferior ()->terminal = terminal_name ? xstrdup (terminal_name) : 0;
176 }
177
178 const char *
179 get_inferior_io_terminal (void)
180 {
181 return current_inferior ()->terminal;
182 }
183
184 static void
185 set_inferior_tty_command (char *args, int from_tty,
186 struct cmd_list_element *c)
187 {
188 /* CLI has assigned the user-provided value to inferior_io_terminal_scratch.
189 Now route it to current inferior. */
190 set_inferior_io_terminal (inferior_io_terminal_scratch);
191 }
192
193 static void
194 show_inferior_tty_command (struct ui_file *file, int from_tty,
195 struct cmd_list_element *c, const char *value)
196 {
197 /* Note that we ignore the passed-in value in favor of computing it
198 directly. */
199 const char *inferior_io_terminal = get_inferior_io_terminal ();
200 if (inferior_io_terminal == NULL)
201 inferior_io_terminal = "";
202 fprintf_filtered (gdb_stdout,
203 _("Terminal for future runs of program being debugged "
204 "is \"%s\".\n"), inferior_io_terminal);
205 }
206
207 char *
208 get_inferior_args (void)
209 {
210 if (current_inferior ()->argc != 0)
211 {
212 char *n;
213
214 n = construct_inferior_arguments (current_inferior ()->argc,
215 current_inferior ()->argv);
216 set_inferior_args (n);
217 xfree (n);
218 }
219
220 if (current_inferior ()->args == NULL)
221 current_inferior ()->args = xstrdup ("");
222
223 return current_inferior ()->args;
224 }
225
226 /* Set the arguments for the current inferior. Ownership of
227 NEWARGS is not transferred. */
228
229 void
230 set_inferior_args (char *newargs)
231 {
232 xfree (current_inferior ()->args);
233 current_inferior ()->args = newargs ? xstrdup (newargs) : NULL;
234 current_inferior ()->argc = 0;
235 current_inferior ()->argv = 0;
236 }
237
238 void
239 set_inferior_args_vector (int argc, char **argv)
240 {
241 current_inferior ()->argc = argc;
242 current_inferior ()->argv = argv;
243 }
244
245 /* Notice when `set args' is run. */
246 static void
247 set_args_command (char *args, int from_tty, struct cmd_list_element *c)
248 {
249 /* CLI has assigned the user-provided value to inferior_args_scratch.
250 Now route it to current inferior. */
251 set_inferior_args (inferior_args_scratch);
252 }
253
254 /* Notice when `show args' is run. */
255 static void
256 show_args_command (struct ui_file *file, int from_tty,
257 struct cmd_list_element *c, const char *value)
258 {
259 /* Note that we ignore the passed-in value in favor of computing it
260 directly. */
261 deprecated_show_value_hack (file, from_tty, c, get_inferior_args ());
262 }
263
264 \f
265 /* Compute command-line string given argument vector. This does the
266 same shell processing as fork_inferior. */
267 char *
268 construct_inferior_arguments (int argc, char **argv)
269 {
270 char *result;
271
272 if (STARTUP_WITH_SHELL)
273 {
274 /* This holds all the characters considered special to the
275 typical Unix shells. We include `^' because the SunOS
276 /bin/sh treats it as a synonym for `|'. */
277 char *special = "\"!#$&*()\\|[]{}<>?'\"`~^; \t\n";
278 int i;
279 int length = 0;
280 char *out, *cp;
281
282 /* We over-compute the size. It shouldn't matter. */
283 for (i = 0; i < argc; ++i)
284 length += 3 * strlen (argv[i]) + 1 + 2 * (argv[i][0] == '\0');
285
286 result = (char *) xmalloc (length);
287 out = result;
288
289 for (i = 0; i < argc; ++i)
290 {
291 if (i > 0)
292 *out++ = ' ';
293
294 /* Need to handle empty arguments specially. */
295 if (argv[i][0] == '\0')
296 {
297 *out++ = '\'';
298 *out++ = '\'';
299 }
300 else
301 {
302 for (cp = argv[i]; *cp; ++cp)
303 {
304 if (*cp == '\n')
305 {
306 /* A newline cannot be quoted with a backslash (it
307 just disappears), only by putting it inside
308 quotes. */
309 *out++ = '\'';
310 *out++ = '\n';
311 *out++ = '\'';
312 }
313 else
314 {
315 if (strchr (special, *cp) != NULL)
316 *out++ = '\\';
317 *out++ = *cp;
318 }
319 }
320 }
321 }
322 *out = '\0';
323 }
324 else
325 {
326 /* In this case we can't handle arguments that contain spaces,
327 tabs, or newlines -- see breakup_args(). */
328 int i;
329 int length = 0;
330
331 for (i = 0; i < argc; ++i)
332 {
333 char *cp = strchr (argv[i], ' ');
334 if (cp == NULL)
335 cp = strchr (argv[i], '\t');
336 if (cp == NULL)
337 cp = strchr (argv[i], '\n');
338 if (cp != NULL)
339 error (_("can't handle command-line argument containing whitespace"));
340 length += strlen (argv[i]) + 1;
341 }
342
343 result = (char *) xmalloc (length);
344 result[0] = '\0';
345 for (i = 0; i < argc; ++i)
346 {
347 if (i > 0)
348 strcat (result, " ");
349 strcat (result, argv[i]);
350 }
351 }
352
353 return result;
354 }
355 \f
356
357 /* This function detects whether or not a '&' character (indicating
358 background execution) has been added as *the last* of the arguments ARGS
359 of a command. If it has, it removes it and returns 1. Otherwise it
360 does nothing and returns 0. */
361 static int
362 strip_bg_char (char **args)
363 {
364 char *p = NULL;
365
366 p = strchr (*args, '&');
367
368 if (p)
369 {
370 if (p == (*args + strlen (*args) - 1))
371 {
372 if (strlen (*args) > 1)
373 {
374 do
375 p--;
376 while (*p == ' ' || *p == '\t');
377 *(p + 1) = '\0';
378 }
379 else
380 *args = 0;
381 return 1;
382 }
383 }
384 return 0;
385 }
386
387 /* Common actions to take after creating any sort of inferior, by any
388 means (running, attaching, connecting, et cetera). The target
389 should be stopped. */
390
391 void
392 post_create_inferior (struct target_ops *target, int from_tty)
393 {
394 /* Be sure we own the terminal in case write operations are performed. */
395 target_terminal_ours ();
396
397 /* If the target hasn't taken care of this already, do it now.
398 Targets which need to access registers during to_open,
399 to_create_inferior, or to_attach should do it earlier; but many
400 don't need to. */
401 target_find_description ();
402
403 /* Now that we know the register layout, retrieve current PC. */
404 stop_pc = regcache_read_pc (get_current_regcache ());
405
406 if (exec_bfd)
407 {
408 /* Create the hooks to handle shared library load and unload
409 events. */
410 #ifdef SOLIB_CREATE_INFERIOR_HOOK
411 SOLIB_CREATE_INFERIOR_HOOK (PIDGET (inferior_ptid));
412 #else
413 solib_create_inferior_hook (from_tty);
414 #endif
415 }
416
417 /* If the solist is global across processes, there's no need to
418 refetch it here. */
419 if (exec_bfd && !gdbarch_has_global_solist (target_gdbarch))
420 {
421 /* Sometimes the platform-specific hook loads initial shared
422 libraries, and sometimes it doesn't. If it doesn't FROM_TTY will be
423 incorrectly 0 but such solib targets should be fixed anyway. If we
424 made all the inferior hook methods consistent, this call could be
425 removed. Call it only after the solib target has been initialized by
426 solib_create_inferior_hook. */
427
428 #ifdef SOLIB_ADD
429 SOLIB_ADD (NULL, 0, target, auto_solib_add);
430 #else
431 solib_add (NULL, 0, target, auto_solib_add);
432 #endif
433 }
434
435 /* If the user sets watchpoints before execution having started,
436 then she gets software watchpoints, because GDB can't know which
437 target will end up being pushed, or if it supports hardware
438 watchpoints or not. breakpoint_re_set takes care of promoting
439 watchpoints to hardware watchpoints if possible, however, if this
440 new inferior doesn't load shared libraries or we don't pull in
441 symbols from any other source on this target/arch,
442 breakpoint_re_set is never called. Call it now so that software
443 watchpoints get a chance to be promoted to hardware watchpoints
444 if the now pushed target supports hardware watchpoints. */
445 breakpoint_re_set ();
446
447 observer_notify_inferior_created (target, from_tty);
448 }
449
450 /* Kill the inferior if already running. This function is designed
451 to be called when we are about to start the execution of the program
452 from the beginning. Ask the user to confirm that he wants to restart
453 the program being debugged when FROM_TTY is non-null. */
454
455 static void
456 kill_if_already_running (int from_tty)
457 {
458 if (! ptid_equal (inferior_ptid, null_ptid) && target_has_execution)
459 {
460 /* Bail out before killing the program if we will not be able to
461 restart it. */
462 target_require_runnable ();
463
464 if (from_tty
465 && !query (_("The program being debugged has been started already.\n\
466 Start it from the beginning? ")))
467 error (_("Program not restarted."));
468 target_kill ();
469 }
470 }
471
472 /* Implement the "run" command. If TBREAK_AT_MAIN is set, then insert
473 a temporary breakpoint at the begining of the main program before
474 running the program. */
475
476 static void
477 run_command_1 (char *args, int from_tty, int tbreak_at_main)
478 {
479 char *exec_file;
480 struct cleanup *old_chain;
481 ptid_t ptid;
482
483 dont_repeat ();
484
485 kill_if_already_running (from_tty);
486
487 init_wait_for_inferior ();
488 clear_breakpoint_hit_counts ();
489
490 /* Clean up any leftovers from other runs. Some other things from
491 this function should probably be moved into target_pre_inferior. */
492 target_pre_inferior (from_tty);
493
494 /* The comment here used to read, "The exec file is re-read every
495 time we do a generic_mourn_inferior, so we just have to worry
496 about the symbol file." The `generic_mourn_inferior' function
497 gets called whenever the program exits. However, suppose the
498 program exits, and *then* the executable file changes? We need
499 to check again here. Since reopen_exec_file doesn't do anything
500 if the timestamp hasn't changed, I don't see the harm. */
501 reopen_exec_file ();
502 reread_symbols ();
503
504 /* Insert the temporary breakpoint if a location was specified. */
505 if (tbreak_at_main)
506 tbreak_command (main_name (), 0);
507
508 exec_file = (char *) get_exec_file (0);
509
510 if (non_stop && !target_supports_non_stop ())
511 error (_("The target does not support running in non-stop mode."));
512
513 /* We keep symbols from add-symbol-file, on the grounds that the
514 user might want to add some symbols before running the program
515 (right?). But sometimes (dynamic loading where the user manually
516 introduces the new symbols with add-symbol-file), the code which
517 the symbols describe does not persist between runs. Currently
518 the user has to manually nuke all symbols between runs if they
519 want them to go away (PR 2207). This is probably reasonable. */
520
521 if (!args)
522 {
523 if (target_can_async_p ())
524 async_disable_stdin ();
525 }
526 else
527 {
528 int async_exec = strip_bg_char (&args);
529
530 /* If we get a request for running in the bg but the target
531 doesn't support it, error out. */
532 if (async_exec && !target_can_async_p ())
533 error (_("Asynchronous execution not supported on this target."));
534
535 /* If we don't get a request of running in the bg, then we need
536 to simulate synchronous (fg) execution. */
537 if (!async_exec && target_can_async_p ())
538 {
539 /* Simulate synchronous execution */
540 async_disable_stdin ();
541 }
542
543 /* If there were other args, beside '&', process them. */
544 if (args)
545 set_inferior_args (args);
546 }
547
548 if (from_tty)
549 {
550 ui_out_field_string (uiout, NULL, "Starting program");
551 ui_out_text (uiout, ": ");
552 if (exec_file)
553 ui_out_field_string (uiout, "execfile", exec_file);
554 ui_out_spaces (uiout, 1);
555 /* We call get_inferior_args() because we might need to compute
556 the value now. */
557 ui_out_field_string (uiout, "infargs", get_inferior_args ());
558 ui_out_text (uiout, "\n");
559 ui_out_flush (uiout);
560 }
561
562 /* We call get_inferior_args() because we might need to compute
563 the value now. */
564 target_create_inferior (exec_file, get_inferior_args (),
565 environ_vector (current_inferior ()->environment), from_tty);
566
567 /* We're starting off a new process. When we get out of here, in
568 non-stop mode, finish the state of all threads of that process,
569 but leave other threads alone, as they may be stopped in internal
570 events --- the frontend shouldn't see them as stopped. In
571 all-stop, always finish the state of all threads, as we may be
572 resuming more than just the new process. */
573 if (non_stop)
574 ptid = pid_to_ptid (ptid_get_pid (inferior_ptid));
575 else
576 ptid = minus_one_ptid;
577 old_chain = make_cleanup (finish_thread_state_cleanup, &ptid);
578
579 /* Pass zero for FROM_TTY, because at this point the "run" command
580 has done its thing; now we are setting up the running program. */
581 post_create_inferior (&current_target, 0);
582
583 /* Start the target running. Do not use -1 continuation as it would skip
584 breakpoint right at the entry point. */
585 proceed (regcache_read_pc (get_current_regcache ()), TARGET_SIGNAL_0, 0);
586
587 /* Since there was no error, there's no need to finish the thread
588 states here. */
589 discard_cleanups (old_chain);
590 }
591
592 static void
593 run_command (char *args, int from_tty)
594 {
595 run_command_1 (args, from_tty, 0);
596 }
597
598 static void
599 run_no_args_command (char *args, int from_tty)
600 {
601 set_inferior_args ("");
602 }
603 \f
604
605 /* Start the execution of the program up until the beginning of the main
606 program. */
607
608 static void
609 start_command (char *args, int from_tty)
610 {
611 /* Some languages such as Ada need to search inside the program
612 minimal symbols for the location where to put the temporary
613 breakpoint before starting. */
614 if (!have_minimal_symbols ())
615 error (_("No symbol table loaded. Use the \"file\" command."));
616
617 /* Run the program until reaching the main procedure... */
618 run_command_1 (args, from_tty, 1);
619 }
620
621 static int
622 proceed_thread_callback (struct thread_info *thread, void *arg)
623 {
624 /* We go through all threads individually instead of compressing
625 into a single target `resume_all' request, because some threads
626 may be stopped in internal breakpoints/events, or stopped waiting
627 for its turn in the displaced stepping queue (that is, they are
628 running && !executing). The target side has no idea about why
629 the thread is stopped, so a `resume_all' command would resume too
630 much. If/when GDB gains a way to tell the target `hold this
631 thread stopped until I say otherwise', then we can optimize
632 this. */
633 if (!is_stopped (thread->ptid))
634 return 0;
635
636 switch_to_thread (thread->ptid);
637 clear_proceed_status ();
638 proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 0);
639 return 0;
640 }
641
642 void
643 ensure_valid_thread (void)
644 {
645 if (ptid_equal (inferior_ptid, null_ptid)
646 || is_exited (inferior_ptid))
647 error (_("\
648 Cannot execute this command without a live selected thread."));
649 }
650
651 /* If the user is looking at trace frames, any resumption of execution
652 is likely to mix up recorded and live target data. So simply
653 disallow those commands. */
654
655 void
656 ensure_not_tfind_mode (void)
657 {
658 if (get_traceframe_number () >= 0)
659 error (_("\
660 Cannot execute this command while looking at trace frames."));
661 }
662
663 void
664 continue_1 (int all_threads)
665 {
666 ERROR_NO_INFERIOR;
667 ensure_not_tfind_mode ();
668
669 if (non_stop && all_threads)
670 {
671 /* Don't error out if the current thread is running, because
672 there may be other stopped threads. */
673 struct cleanup *old_chain;
674
675 /* Backup current thread and selected frame. */
676 old_chain = make_cleanup_restore_current_thread ();
677
678 iterate_over_threads (proceed_thread_callback, NULL);
679
680 /* Restore selected ptid. */
681 do_cleanups (old_chain);
682 }
683 else
684 {
685 ensure_valid_thread ();
686 ensure_not_running ();
687 clear_proceed_status ();
688 proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 0);
689 }
690 }
691
692 /* continue [-a] [proceed-count] [&] */
693 void
694 continue_command (char *args, int from_tty)
695 {
696 int async_exec = 0;
697 int all_threads = 0;
698 ERROR_NO_INFERIOR;
699
700 /* Find out whether we must run in the background. */
701 if (args != NULL)
702 async_exec = strip_bg_char (&args);
703
704 /* If we must run in the background, but the target can't do it,
705 error out. */
706 if (async_exec && !target_can_async_p ())
707 error (_("Asynchronous execution not supported on this target."));
708
709 /* If we are not asked to run in the bg, then prepare to run in the
710 foreground, synchronously. */
711 if (!async_exec && target_can_async_p ())
712 {
713 /* Simulate synchronous execution */
714 async_disable_stdin ();
715 }
716
717 if (args != NULL)
718 {
719 if (strncmp (args, "-a", sizeof ("-a") - 1) == 0)
720 {
721 all_threads = 1;
722 args += sizeof ("-a") - 1;
723 if (*args == '\0')
724 args = NULL;
725 }
726 }
727
728 if (!non_stop && all_threads)
729 error (_("`-a' is meaningless in all-stop mode."));
730
731 if (args != NULL && all_threads)
732 error (_("\
733 Can't resume all threads and specify proceed count simultaneously."));
734
735 /* If we have an argument left, set proceed count of breakpoint we
736 stopped at. */
737 if (args != NULL)
738 {
739 bpstat bs = NULL;
740 int num, stat;
741 int stopped = 0;
742 struct thread_info *tp;
743
744 if (non_stop)
745 tp = find_thread_ptid (inferior_ptid);
746 else
747 {
748 ptid_t last_ptid;
749 struct target_waitstatus ws;
750
751 get_last_target_status (&last_ptid, &ws);
752 tp = find_thread_ptid (last_ptid);
753 }
754 if (tp != NULL)
755 bs = tp->stop_bpstat;
756
757 while ((stat = bpstat_num (&bs, &num)) != 0)
758 if (stat > 0)
759 {
760 set_ignore_count (num,
761 parse_and_eval_long (args) - 1,
762 from_tty);
763 /* set_ignore_count prints a message ending with a period.
764 So print two spaces before "Continuing.". */
765 if (from_tty)
766 printf_filtered (" ");
767 stopped = 1;
768 }
769
770 if (!stopped && from_tty)
771 {
772 printf_filtered
773 ("Not stopped at any breakpoint; argument ignored.\n");
774 }
775 }
776
777 if (from_tty)
778 printf_filtered (_("Continuing.\n"));
779
780 continue_1 (all_threads);
781 }
782 \f
783 /* Record the starting point of a "step" or "next" command. */
784
785 static void
786 set_step_frame (void)
787 {
788 struct symtab_and_line sal;
789
790 find_frame_sal (get_current_frame (), &sal);
791 set_step_info (get_current_frame (), sal);
792 }
793
794 /* Step until outside of current statement. */
795
796 static void
797 step_command (char *count_string, int from_tty)
798 {
799 step_1 (0, 0, count_string);
800 }
801
802 /* Likewise, but skip over subroutine calls as if single instructions. */
803
804 static void
805 next_command (char *count_string, int from_tty)
806 {
807 step_1 (1, 0, count_string);
808 }
809
810 /* Likewise, but step only one instruction. */
811
812 void
813 stepi_command (char *count_string, int from_tty)
814 {
815 step_1 (0, 1, count_string);
816 }
817
818 void
819 nexti_command (char *count_string, int from_tty)
820 {
821 step_1 (1, 1, count_string);
822 }
823
824 static void
825 delete_longjmp_breakpoint_cleanup (void *arg)
826 {
827 int thread = * (int *) arg;
828 delete_longjmp_breakpoint (thread);
829 }
830
831 static void
832 step_1 (int skip_subroutines, int single_inst, char *count_string)
833 {
834 int count = 1;
835 struct cleanup *cleanups = make_cleanup (null_cleanup, NULL);
836 int async_exec = 0;
837 int thread = -1;
838
839 ERROR_NO_INFERIOR;
840 ensure_not_tfind_mode ();
841 ensure_valid_thread ();
842 ensure_not_running ();
843
844 if (count_string)
845 async_exec = strip_bg_char (&count_string);
846
847 /* If we get a request for running in the bg but the target
848 doesn't support it, error out. */
849 if (async_exec && !target_can_async_p ())
850 error (_("Asynchronous execution not supported on this target."));
851
852 /* If we don't get a request of running in the bg, then we need
853 to simulate synchronous (fg) execution. */
854 if (!async_exec && target_can_async_p ())
855 {
856 /* Simulate synchronous execution */
857 async_disable_stdin ();
858 }
859
860 count = count_string ? parse_and_eval_long (count_string) : 1;
861
862 if (!single_inst || skip_subroutines) /* leave si command alone */
863 {
864 if (in_thread_list (inferior_ptid))
865 thread = pid_to_thread_id (inferior_ptid);
866
867 set_longjmp_breakpoint (thread);
868
869 make_cleanup (delete_longjmp_breakpoint_cleanup, &thread);
870 }
871
872 /* In synchronous case, all is well; each step_once call will step once. */
873 if (!target_can_async_p ())
874 {
875 for (; count > 0; count--)
876 {
877 struct thread_info *tp;
878 step_once (skip_subroutines, single_inst, count, thread);
879
880 if (target_has_execution
881 && !ptid_equal (inferior_ptid, null_ptid))
882 tp = inferior_thread ();
883 else
884 tp = NULL;
885
886 if (!tp || !tp->stop_step || !tp->step_multi)
887 {
888 /* If we stopped for some reason that is not stepping
889 there are no further steps to make. */
890 if (tp)
891 tp->step_multi = 0;
892 break;
893 }
894 }
895
896 do_cleanups (cleanups);
897 }
898 else
899 {
900 /* In the case of an asynchronous target things get complicated;
901 do only one step for now, before returning control to the
902 event loop. Let the continuation figure out how many other
903 steps we need to do, and handle them one at the time, through
904 step_once. */
905 step_once (skip_subroutines, single_inst, count, thread);
906
907 /* We are running, and the continuation is installed. It will
908 disable the longjmp breakpoint as appropriate. */
909 discard_cleanups (cleanups);
910 }
911 }
912
913 struct step_1_continuation_args
914 {
915 int count;
916 int skip_subroutines;
917 int single_inst;
918 int thread;
919 };
920
921 /* Called after we are done with one step operation, to check whether
922 we need to step again, before we print the prompt and return control
923 to the user. If count is > 1, we will need to do one more call to
924 proceed(), via step_once(). Basically it is like step_once and
925 step_1_continuation are co-recursive. */
926 static void
927 step_1_continuation (void *args)
928 {
929 struct step_1_continuation_args *a = args;
930
931 if (target_has_execution)
932 {
933 struct thread_info *tp;
934
935 tp = inferior_thread ();
936 if (tp->step_multi && tp->stop_step)
937 {
938 /* There are more steps to make, and we did stop due to
939 ending a stepping range. Do another step. */
940 step_once (a->skip_subroutines, a->single_inst,
941 a->count - 1, a->thread);
942 return;
943 }
944 tp->step_multi = 0;
945 }
946
947 /* We either stopped for some reason that is not stepping, or there
948 are no further steps to make. Cleanup. */
949 if (!a->single_inst || a->skip_subroutines)
950 delete_longjmp_breakpoint (a->thread);
951 }
952
953 /* Do just one step operation. This is useful to implement the 'step
954 n' kind of commands. In case of asynchronous targets, we will have
955 to set up a continuation to be done after the target stops (after
956 this one step). For synch targets, the caller handles further
957 stepping. */
958
959 static void
960 step_once (int skip_subroutines, int single_inst, int count, int thread)
961 {
962 struct frame_info *frame = get_current_frame ();
963
964 if (count > 0)
965 {
966 /* Don't assume THREAD is a valid thread id. It is set to -1 if
967 the longjmp breakpoint was not required. Use the
968 INFERIOR_PTID thread instead, which is the same thread when
969 THREAD is set. */
970 struct thread_info *tp = inferior_thread ();
971 clear_proceed_status ();
972 set_step_frame ();
973
974 if (!single_inst)
975 {
976 CORE_ADDR pc;
977
978 /* Step at an inlined function behaves like "down". */
979 if (!skip_subroutines && !single_inst
980 && inline_skipped_frames (inferior_ptid))
981 {
982 step_into_inline_frame (inferior_ptid);
983 if (count > 1)
984 step_once (skip_subroutines, single_inst, count - 1, thread);
985 else
986 /* Pretend that we've stopped. */
987 normal_stop ();
988 return;
989 }
990
991 pc = get_frame_pc (frame);
992 find_pc_line_pc_range (pc,
993 &tp->step_range_start, &tp->step_range_end);
994
995 /* If we have no line info, switch to stepi mode. */
996 if (tp->step_range_end == 0 && step_stop_if_no_debug)
997 tp->step_range_start = tp->step_range_end = 1;
998 else if (tp->step_range_end == 0)
999 {
1000 char *name;
1001 if (find_pc_partial_function (pc, &name,
1002 &tp->step_range_start,
1003 &tp->step_range_end) == 0)
1004 error (_("Cannot find bounds of current function"));
1005
1006 target_terminal_ours ();
1007 printf_filtered (_("\
1008 Single stepping until exit from function %s, \n\
1009 which has no line number information.\n"), name);
1010 }
1011 }
1012 else
1013 {
1014 /* Say we are stepping, but stop after one insn whatever it does. */
1015 tp->step_range_start = tp->step_range_end = 1;
1016 if (!skip_subroutines)
1017 /* It is stepi.
1018 Don't step over function calls, not even to functions lacking
1019 line numbers. */
1020 tp->step_over_calls = STEP_OVER_NONE;
1021 }
1022
1023 if (skip_subroutines)
1024 tp->step_over_calls = STEP_OVER_ALL;
1025
1026 tp->step_multi = (count > 1);
1027 proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 1);
1028
1029 /* For async targets, register a continuation to do any
1030 additional steps. For sync targets, the caller will handle
1031 further stepping. */
1032 if (target_can_async_p ())
1033 {
1034 struct step_1_continuation_args *args;
1035
1036 args = xmalloc (sizeof (*args));
1037 args->skip_subroutines = skip_subroutines;
1038 args->single_inst = single_inst;
1039 args->count = count;
1040 args->thread = thread;
1041
1042 add_intermediate_continuation (tp, step_1_continuation, args, xfree);
1043 }
1044 }
1045 }
1046
1047 \f
1048 /* Continue program at specified address. */
1049
1050 static void
1051 jump_command (char *arg, int from_tty)
1052 {
1053 struct gdbarch *gdbarch = get_current_arch ();
1054 CORE_ADDR addr;
1055 struct symtabs_and_lines sals;
1056 struct symtab_and_line sal;
1057 struct symbol *fn;
1058 struct symbol *sfn;
1059 int async_exec = 0;
1060
1061 ERROR_NO_INFERIOR;
1062 ensure_not_tfind_mode ();
1063 ensure_valid_thread ();
1064 ensure_not_running ();
1065
1066 /* Find out whether we must run in the background. */
1067 if (arg != NULL)
1068 async_exec = strip_bg_char (&arg);
1069
1070 /* If we must run in the background, but the target can't do it,
1071 error out. */
1072 if (async_exec && !target_can_async_p ())
1073 error (_("Asynchronous execution not supported on this target."));
1074
1075 if (!arg)
1076 error_no_arg (_("starting address"));
1077
1078 sals = decode_line_spec_1 (arg, 1);
1079 if (sals.nelts != 1)
1080 {
1081 error (_("Unreasonable jump request"));
1082 }
1083
1084 sal = sals.sals[0];
1085 xfree (sals.sals);
1086
1087 if (sal.symtab == 0 && sal.pc == 0)
1088 error (_("No source file has been specified."));
1089
1090 resolve_sal_pc (&sal); /* May error out */
1091
1092 /* See if we are trying to jump to another function. */
1093 fn = get_frame_function (get_current_frame ());
1094 sfn = find_pc_function (sal.pc);
1095 if (fn != NULL && sfn != fn)
1096 {
1097 if (!query (_("Line %d is not in `%s'. Jump anyway? "), sal.line,
1098 SYMBOL_PRINT_NAME (fn)))
1099 {
1100 error (_("Not confirmed."));
1101 /* NOTREACHED */
1102 }
1103 }
1104
1105 if (sfn != NULL)
1106 {
1107 fixup_symbol_section (sfn, 0);
1108 if (section_is_overlay (SYMBOL_OBJ_SECTION (sfn)) &&
1109 !section_is_mapped (SYMBOL_OBJ_SECTION (sfn)))
1110 {
1111 if (!query (_("WARNING!!! Destination is in unmapped overlay! Jump anyway? ")))
1112 {
1113 error (_("Not confirmed."));
1114 /* NOTREACHED */
1115 }
1116 }
1117 }
1118
1119 addr = sal.pc;
1120
1121 if (from_tty)
1122 {
1123 printf_filtered (_("Continuing at "));
1124 fputs_filtered (paddress (gdbarch, addr), gdb_stdout);
1125 printf_filtered (".\n");
1126 }
1127
1128 /* If we are not asked to run in the bg, then prepare to run in the
1129 foreground, synchronously. */
1130 if (!async_exec && target_can_async_p ())
1131 {
1132 /* Simulate synchronous execution */
1133 async_disable_stdin ();
1134 }
1135
1136 clear_proceed_status ();
1137 proceed (addr, TARGET_SIGNAL_0, 0);
1138 }
1139 \f
1140
1141 /* Go to line or address in current procedure */
1142 static void
1143 go_command (char *line_no, int from_tty)
1144 {
1145 if (line_no == (char *) NULL || !*line_no)
1146 printf_filtered (_("Usage: go <location>\n"));
1147 else
1148 {
1149 tbreak_command (line_no, from_tty);
1150 jump_command (line_no, from_tty);
1151 }
1152 }
1153 \f
1154
1155 /* Continue program giving it specified signal. */
1156
1157 static void
1158 signal_command (char *signum_exp, int from_tty)
1159 {
1160 enum target_signal oursig;
1161 int async_exec = 0;
1162
1163 dont_repeat (); /* Too dangerous. */
1164 ERROR_NO_INFERIOR;
1165 ensure_not_tfind_mode ();
1166 ensure_valid_thread ();
1167 ensure_not_running ();
1168
1169 /* Find out whether we must run in the background. */
1170 if (signum_exp != NULL)
1171 async_exec = strip_bg_char (&signum_exp);
1172
1173 /* If we must run in the background, but the target can't do it,
1174 error out. */
1175 if (async_exec && !target_can_async_p ())
1176 error (_("Asynchronous execution not supported on this target."));
1177
1178 /* If we are not asked to run in the bg, then prepare to run in the
1179 foreground, synchronously. */
1180 if (!async_exec && target_can_async_p ())
1181 {
1182 /* Simulate synchronous execution. */
1183 async_disable_stdin ();
1184 }
1185
1186 if (!signum_exp)
1187 error_no_arg (_("signal number"));
1188
1189 /* It would be even slicker to make signal names be valid expressions,
1190 (the type could be "enum $signal" or some such), then the user could
1191 assign them to convenience variables. */
1192 oursig = target_signal_from_name (signum_exp);
1193
1194 if (oursig == TARGET_SIGNAL_UNKNOWN)
1195 {
1196 /* No, try numeric. */
1197 int num = parse_and_eval_long (signum_exp);
1198
1199 if (num == 0)
1200 oursig = TARGET_SIGNAL_0;
1201 else
1202 oursig = target_signal_from_command (num);
1203 }
1204
1205 if (from_tty)
1206 {
1207 if (oursig == TARGET_SIGNAL_0)
1208 printf_filtered (_("Continuing with no signal.\n"));
1209 else
1210 printf_filtered (_("Continuing with signal %s.\n"),
1211 target_signal_to_name (oursig));
1212 }
1213
1214 clear_proceed_status ();
1215 proceed ((CORE_ADDR) -1, oursig, 0);
1216 }
1217
1218 /* Proceed until we reach a different source line with pc greater than
1219 our current one or exit the function. We skip calls in both cases.
1220
1221 Note that eventually this command should probably be changed so
1222 that only source lines are printed out when we hit the breakpoint
1223 we set. This may involve changes to wait_for_inferior and the
1224 proceed status code. */
1225
1226 static void
1227 until_next_command (int from_tty)
1228 {
1229 struct frame_info *frame;
1230 CORE_ADDR pc;
1231 struct symbol *func;
1232 struct symtab_and_line sal;
1233 struct thread_info *tp = inferior_thread ();
1234
1235 clear_proceed_status ();
1236 set_step_frame ();
1237
1238 frame = get_current_frame ();
1239
1240 /* Step until either exited from this function or greater
1241 than the current line (if in symbolic section) or pc (if
1242 not). */
1243
1244 pc = get_frame_pc (frame);
1245 func = find_pc_function (pc);
1246
1247 if (!func)
1248 {
1249 struct minimal_symbol *msymbol = lookup_minimal_symbol_by_pc (pc);
1250
1251 if (msymbol == NULL)
1252 error (_("Execution is not within a known function."));
1253
1254 tp->step_range_start = SYMBOL_VALUE_ADDRESS (msymbol);
1255 tp->step_range_end = pc;
1256 }
1257 else
1258 {
1259 sal = find_pc_line (pc, 0);
1260
1261 tp->step_range_start = BLOCK_START (SYMBOL_BLOCK_VALUE (func));
1262 tp->step_range_end = sal.end;
1263 }
1264
1265 tp->step_over_calls = STEP_OVER_ALL;
1266
1267 tp->step_multi = 0; /* Only one call to proceed */
1268
1269 proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 1);
1270 }
1271
1272 static void
1273 until_command (char *arg, int from_tty)
1274 {
1275 int async_exec = 0;
1276
1277 ERROR_NO_INFERIOR;
1278 ensure_not_tfind_mode ();
1279 ensure_valid_thread ();
1280 ensure_not_running ();
1281
1282 /* Find out whether we must run in the background. */
1283 if (arg != NULL)
1284 async_exec = strip_bg_char (&arg);
1285
1286 /* If we must run in the background, but the target can't do it,
1287 error out. */
1288 if (async_exec && !target_can_async_p ())
1289 error (_("Asynchronous execution not supported on this target."));
1290
1291 /* If we are not asked to run in the bg, then prepare to run in the
1292 foreground, synchronously. */
1293 if (!async_exec && target_can_async_p ())
1294 {
1295 /* Simulate synchronous execution */
1296 async_disable_stdin ();
1297 }
1298
1299 if (arg)
1300 until_break_command (arg, from_tty, 0);
1301 else
1302 until_next_command (from_tty);
1303 }
1304
1305 static void
1306 advance_command (char *arg, int from_tty)
1307 {
1308 int async_exec = 0;
1309
1310 ERROR_NO_INFERIOR;
1311 ensure_not_tfind_mode ();
1312 ensure_valid_thread ();
1313 ensure_not_running ();
1314
1315 if (arg == NULL)
1316 error_no_arg (_("a location"));
1317
1318 /* Find out whether we must run in the background. */
1319 if (arg != NULL)
1320 async_exec = strip_bg_char (&arg);
1321
1322 /* If we must run in the background, but the target can't do it,
1323 error out. */
1324 if (async_exec && !target_can_async_p ())
1325 error (_("Asynchronous execution not supported on this target."));
1326
1327 /* If we are not asked to run in the bg, then prepare to run in the
1328 foreground, synchronously. */
1329 if (!async_exec && target_can_async_p ())
1330 {
1331 /* Simulate synchronous execution. */
1332 async_disable_stdin ();
1333 }
1334
1335 until_break_command (arg, from_tty, 1);
1336 }
1337 \f
1338 /* Print the result of a function at the end of a 'finish' command. */
1339
1340 static void
1341 print_return_value (struct type *func_type, struct type *value_type)
1342 {
1343 struct gdbarch *gdbarch = get_regcache_arch (stop_registers);
1344 struct cleanup *old_chain;
1345 struct ui_stream *stb;
1346 struct value *value;
1347
1348 CHECK_TYPEDEF (value_type);
1349 gdb_assert (TYPE_CODE (value_type) != TYPE_CODE_VOID);
1350
1351 /* FIXME: 2003-09-27: When returning from a nested inferior function
1352 call, it's possible (with no help from the architecture vector)
1353 to locate and return/print a "struct return" value. This is just
1354 a more complicated case of what is already being done in in the
1355 inferior function call code. In fact, when inferior function
1356 calls are made async, this will likely be made the norm. */
1357
1358 switch (gdbarch_return_value (gdbarch, func_type, value_type,
1359 NULL, NULL, NULL))
1360 {
1361 case RETURN_VALUE_REGISTER_CONVENTION:
1362 case RETURN_VALUE_ABI_RETURNS_ADDRESS:
1363 case RETURN_VALUE_ABI_PRESERVES_ADDRESS:
1364 value = allocate_value (value_type);
1365 gdbarch_return_value (gdbarch, func_type, value_type, stop_registers,
1366 value_contents_raw (value), NULL);
1367 break;
1368 case RETURN_VALUE_STRUCT_CONVENTION:
1369 value = NULL;
1370 break;
1371 default:
1372 internal_error (__FILE__, __LINE__, _("bad switch"));
1373 }
1374
1375 if (value)
1376 {
1377 struct value_print_options opts;
1378
1379 /* Print it. */
1380 stb = ui_out_stream_new (uiout);
1381 old_chain = make_cleanup_ui_out_stream_delete (stb);
1382 ui_out_text (uiout, "Value returned is ");
1383 ui_out_field_fmt (uiout, "gdb-result-var", "$%d",
1384 record_latest_value (value));
1385 ui_out_text (uiout, " = ");
1386 get_raw_print_options (&opts);
1387 value_print (value, stb->stream, &opts);
1388 ui_out_field_stream (uiout, "return-value", stb);
1389 ui_out_text (uiout, "\n");
1390 do_cleanups (old_chain);
1391 }
1392 else
1393 {
1394 ui_out_text (uiout, "Value returned has type: ");
1395 ui_out_field_string (uiout, "return-type", TYPE_NAME (value_type));
1396 ui_out_text (uiout, ".");
1397 ui_out_text (uiout, " Cannot determine contents\n");
1398 }
1399 }
1400
1401 /* Stuff that needs to be done by the finish command after the target
1402 has stopped. In asynchronous mode, we wait for the target to stop
1403 in the call to poll or select in the event loop, so it is
1404 impossible to do all the stuff as part of the finish_command
1405 function itself. The only chance we have to complete this command
1406 is in fetch_inferior_event, which is called by the event loop as
1407 soon as it detects that the target has stopped. This function is
1408 called via the cmd_continuation pointer. */
1409
1410 struct finish_command_continuation_args
1411 {
1412 struct breakpoint *breakpoint;
1413 struct symbol *function;
1414 };
1415
1416 static void
1417 finish_command_continuation (void *arg)
1418 {
1419 struct finish_command_continuation_args *a = arg;
1420 struct thread_info *tp = NULL;
1421 bpstat bs = NULL;
1422
1423 if (!ptid_equal (inferior_ptid, null_ptid)
1424 && target_has_execution
1425 && is_stopped (inferior_ptid))
1426 {
1427 tp = inferior_thread ();
1428 bs = tp->stop_bpstat;
1429 }
1430
1431 if (bpstat_find_breakpoint (bs, a->breakpoint) != NULL
1432 && a->function != NULL)
1433 {
1434 struct type *value_type;
1435
1436 value_type = TYPE_TARGET_TYPE (SYMBOL_TYPE (a->function));
1437 if (!value_type)
1438 internal_error (__FILE__, __LINE__,
1439 _("finish_command: function has no target type"));
1440
1441 if (TYPE_CODE (value_type) != TYPE_CODE_VOID)
1442 {
1443 volatile struct gdb_exception ex;
1444
1445 TRY_CATCH (ex, RETURN_MASK_ALL)
1446 {
1447 /* print_return_value can throw an exception in some
1448 circumstances. We need to catch this so that we still
1449 delete the breakpoint. */
1450 print_return_value (SYMBOL_TYPE (a->function), value_type);
1451 }
1452 if (ex.reason < 0)
1453 exception_print (gdb_stdout, ex);
1454 }
1455 }
1456
1457 /* We suppress normal call of normal_stop observer and do it here so
1458 that the *stopped notification includes the return value. */
1459 if (bs != NULL && tp->proceed_to_finish)
1460 observer_notify_normal_stop (bs, 1 /* print frame */);
1461 delete_breakpoint (a->breakpoint);
1462 }
1463
1464 static void
1465 finish_command_continuation_free_arg (void *arg)
1466 {
1467 xfree (arg);
1468 }
1469
1470 /* finish_backward -- helper function for finish_command. */
1471
1472 static void
1473 finish_backward (struct symbol *function)
1474 {
1475 struct symtab_and_line sal;
1476 struct thread_info *tp = inferior_thread ();
1477 struct breakpoint *breakpoint;
1478 struct cleanup *old_chain;
1479 CORE_ADDR pc;
1480 CORE_ADDR func_addr;
1481 int back_up;
1482
1483 pc = get_frame_pc (get_current_frame ());
1484
1485 if (find_pc_partial_function (pc, NULL, &func_addr, NULL) == 0)
1486 internal_error (__FILE__, __LINE__,
1487 _("Finish: couldn't find function."));
1488
1489 sal = find_pc_line (func_addr, 0);
1490
1491 /* We don't need a return value. */
1492 tp->proceed_to_finish = 0;
1493 /* Special case: if we're sitting at the function entry point,
1494 then all we need to do is take a reverse singlestep. We
1495 don't need to set a breakpoint, and indeed it would do us
1496 no good to do so.
1497
1498 Note that this can only happen at frame #0, since there's
1499 no way that a function up the stack can have a return address
1500 that's equal to its entry point. */
1501
1502 if (sal.pc != pc)
1503 {
1504 struct frame_info *frame = get_selected_frame (NULL);
1505 struct gdbarch *gdbarch = get_frame_arch (frame);
1506
1507 /* Set breakpoint and continue. */
1508 breakpoint =
1509 set_momentary_breakpoint (gdbarch, sal,
1510 get_stack_frame_id (frame),
1511 bp_breakpoint);
1512 /* Tell the breakpoint to keep quiet. We won't be done
1513 until we've done another reverse single-step. */
1514 make_breakpoint_silent (breakpoint);
1515 old_chain = make_cleanup_delete_breakpoint (breakpoint);
1516 proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 0);
1517 /* We will be stopped when proceed returns. */
1518 back_up = bpstat_find_breakpoint (tp->stop_bpstat, breakpoint) != NULL;
1519 do_cleanups (old_chain);
1520 }
1521 else
1522 back_up = 1;
1523 if (back_up)
1524 {
1525 /* If in fact we hit the step-resume breakpoint (and not
1526 some other breakpoint), then we're almost there --
1527 we just need to back up by one more single-step. */
1528 tp->step_range_start = tp->step_range_end = 1;
1529 proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 1);
1530 }
1531 return;
1532 }
1533
1534 /* finish_forward -- helper function for finish_command. */
1535
1536 static void
1537 finish_forward (struct symbol *function, struct frame_info *frame)
1538 {
1539 struct gdbarch *gdbarch = get_frame_arch (frame);
1540 struct symtab_and_line sal;
1541 struct thread_info *tp = inferior_thread ();
1542 struct breakpoint *breakpoint;
1543 struct cleanup *old_chain;
1544 struct finish_command_continuation_args *cargs;
1545
1546 sal = find_pc_line (get_frame_pc (frame), 0);
1547 sal.pc = get_frame_pc (frame);
1548
1549 breakpoint = set_momentary_breakpoint (gdbarch, sal,
1550 get_stack_frame_id (frame),
1551 bp_finish);
1552
1553 old_chain = make_cleanup_delete_breakpoint (breakpoint);
1554
1555 tp->proceed_to_finish = 1; /* We want stop_registers, please... */
1556 cargs = xmalloc (sizeof (*cargs));
1557
1558 cargs->breakpoint = breakpoint;
1559 cargs->function = function;
1560 add_continuation (tp, finish_command_continuation, cargs,
1561 finish_command_continuation_free_arg);
1562 proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 0);
1563
1564 discard_cleanups (old_chain);
1565 if (!target_can_async_p ())
1566 do_all_continuations ();
1567 }
1568
1569 /* "finish": Set a temporary breakpoint at the place the selected
1570 frame will return to, then continue. */
1571
1572 static void
1573 finish_command (char *arg, int from_tty)
1574 {
1575 struct frame_info *frame;
1576 struct symbol *function;
1577
1578 int async_exec = 0;
1579
1580 ERROR_NO_INFERIOR;
1581 ensure_not_tfind_mode ();
1582 ensure_valid_thread ();
1583 ensure_not_running ();
1584
1585 /* Find out whether we must run in the background. */
1586 if (arg != NULL)
1587 async_exec = strip_bg_char (&arg);
1588
1589 /* If we must run in the background, but the target can't do it,
1590 error out. */
1591 if (async_exec && !target_can_async_p ())
1592 error (_("Asynchronous execution not supported on this target."));
1593
1594 /* Don't try to async in reverse. */
1595 if (async_exec && execution_direction == EXEC_REVERSE)
1596 error (_("Asynchronous 'finish' not supported in reverse."));
1597
1598 /* If we are not asked to run in the bg, then prepare to run in the
1599 foreground, synchronously. */
1600 if (!async_exec && target_can_async_p ())
1601 {
1602 /* Simulate synchronous execution. */
1603 async_disable_stdin ();
1604 }
1605
1606 if (arg)
1607 error (_("The \"finish\" command does not take any arguments."));
1608
1609 frame = get_prev_frame (get_selected_frame (_("No selected frame.")));
1610 if (frame == 0)
1611 error (_("\"finish\" not meaningful in the outermost frame."));
1612
1613 clear_proceed_status ();
1614
1615 /* Finishing from an inline frame is completely different. We don't
1616 try to show the "return value" - no way to locate it. So we do
1617 not need a completion. */
1618 if (get_frame_type (get_selected_frame (_("No selected frame.")))
1619 == INLINE_FRAME)
1620 {
1621 /* Claim we are stepping in the calling frame. An empty step
1622 range means that we will stop once we aren't in a function
1623 called by that frame. We don't use the magic "1" value for
1624 step_range_end, because then infrun will think this is nexti,
1625 and not step over the rest of this inlined function call. */
1626 struct thread_info *tp = inferior_thread ();
1627 struct symtab_and_line empty_sal;
1628 init_sal (&empty_sal);
1629 set_step_info (frame, empty_sal);
1630 tp->step_range_start = tp->step_range_end = get_frame_pc (frame);
1631 tp->step_over_calls = STEP_OVER_ALL;
1632
1633 /* Print info on the selected frame, including level number but not
1634 source. */
1635 if (from_tty)
1636 {
1637 printf_filtered (_("Run till exit from "));
1638 print_stack_frame (get_selected_frame (NULL), 1, LOCATION);
1639 }
1640
1641 proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 1);
1642 return;
1643 }
1644
1645 /* Find the function we will return from. */
1646
1647 function = find_pc_function (get_frame_pc (get_selected_frame (NULL)));
1648
1649 /* Print info on the selected frame, including level number but not
1650 source. */
1651 if (from_tty)
1652 {
1653 if (execution_direction == EXEC_REVERSE)
1654 printf_filtered (_("Run back to call of "));
1655 else
1656 printf_filtered (_("Run till exit from "));
1657
1658 print_stack_frame (get_selected_frame (NULL), 1, LOCATION);
1659 }
1660
1661 if (execution_direction == EXEC_REVERSE)
1662 finish_backward (function);
1663 else
1664 finish_forward (function, frame);
1665 }
1666 \f
1667
1668 static void
1669 program_info (char *args, int from_tty)
1670 {
1671 bpstat bs;
1672 int num, stat;
1673 struct thread_info *tp;
1674 ptid_t ptid;
1675
1676 if (!target_has_execution)
1677 {
1678 printf_filtered (_("The program being debugged is not being run.\n"));
1679 return;
1680 }
1681
1682 if (non_stop)
1683 ptid = inferior_ptid;
1684 else
1685 {
1686 struct target_waitstatus ws;
1687 get_last_target_status (&ptid, &ws);
1688 }
1689
1690 if (ptid_equal (ptid, null_ptid) || is_exited (ptid))
1691 error (_("Invalid selected thread."));
1692 else if (is_running (ptid))
1693 error (_("Selected thread is running."));
1694
1695 tp = find_thread_ptid (ptid);
1696 bs = tp->stop_bpstat;
1697 stat = bpstat_num (&bs, &num);
1698
1699 target_files_info ();
1700 printf_filtered (_("Program stopped at %s.\n"),
1701 paddress (target_gdbarch, stop_pc));
1702 if (tp->stop_step)
1703 printf_filtered (_("It stopped after being stepped.\n"));
1704 else if (stat != 0)
1705 {
1706 /* There may be several breakpoints in the same place, so this
1707 isn't as strange as it seems. */
1708 while (stat != 0)
1709 {
1710 if (stat < 0)
1711 {
1712 printf_filtered (_("\
1713 It stopped at a breakpoint that has since been deleted.\n"));
1714 }
1715 else
1716 printf_filtered (_("It stopped at breakpoint %d.\n"), num);
1717 stat = bpstat_num (&bs, &num);
1718 }
1719 }
1720 else if (tp->stop_signal != TARGET_SIGNAL_0)
1721 {
1722 printf_filtered (_("It stopped with signal %s, %s.\n"),
1723 target_signal_to_name (tp->stop_signal),
1724 target_signal_to_string (tp->stop_signal));
1725 }
1726
1727 if (!from_tty)
1728 {
1729 printf_filtered (_("\
1730 Type \"info stack\" or \"info registers\" for more information.\n"));
1731 }
1732 }
1733 \f
1734 static void
1735 environment_info (char *var, int from_tty)
1736 {
1737 if (var)
1738 {
1739 char *val = get_in_environ (current_inferior ()->environment, var);
1740 if (val)
1741 {
1742 puts_filtered (var);
1743 puts_filtered (" = ");
1744 puts_filtered (val);
1745 puts_filtered ("\n");
1746 }
1747 else
1748 {
1749 puts_filtered ("Environment variable \"");
1750 puts_filtered (var);
1751 puts_filtered ("\" not defined.\n");
1752 }
1753 }
1754 else
1755 {
1756 char **vector = environ_vector (current_inferior ()->environment);
1757 while (*vector)
1758 {
1759 puts_filtered (*vector++);
1760 puts_filtered ("\n");
1761 }
1762 }
1763 }
1764
1765 static void
1766 set_environment_command (char *arg, int from_tty)
1767 {
1768 char *p, *val, *var;
1769 int nullset = 0;
1770
1771 if (arg == 0)
1772 error_no_arg (_("environment variable and value"));
1773
1774 /* Find seperation between variable name and value */
1775 p = (char *) strchr (arg, '=');
1776 val = (char *) strchr (arg, ' ');
1777
1778 if (p != 0 && val != 0)
1779 {
1780 /* We have both a space and an equals. If the space is before the
1781 equals, walk forward over the spaces til we see a nonspace
1782 (possibly the equals). */
1783 if (p > val)
1784 while (*val == ' ')
1785 val++;
1786
1787 /* Now if the = is after the char following the spaces,
1788 take the char following the spaces. */
1789 if (p > val)
1790 p = val - 1;
1791 }
1792 else if (val != 0 && p == 0)
1793 p = val;
1794
1795 if (p == arg)
1796 error_no_arg (_("environment variable to set"));
1797
1798 if (p == 0 || p[1] == 0)
1799 {
1800 nullset = 1;
1801 if (p == 0)
1802 p = arg + strlen (arg); /* So that savestring below will work */
1803 }
1804 else
1805 {
1806 /* Not setting variable value to null */
1807 val = p + 1;
1808 while (*val == ' ' || *val == '\t')
1809 val++;
1810 }
1811
1812 while (p != arg && (p[-1] == ' ' || p[-1] == '\t'))
1813 p--;
1814
1815 var = savestring (arg, p - arg);
1816 if (nullset)
1817 {
1818 printf_filtered (_("\
1819 Setting environment variable \"%s\" to null value.\n"),
1820 var);
1821 set_in_environ (current_inferior ()->environment, var, "");
1822 }
1823 else
1824 set_in_environ (current_inferior ()->environment, var, val);
1825 xfree (var);
1826 }
1827
1828 static void
1829 unset_environment_command (char *var, int from_tty)
1830 {
1831 if (var == 0)
1832 {
1833 /* If there is no argument, delete all environment variables.
1834 Ask for confirmation if reading from the terminal. */
1835 if (!from_tty || query (_("Delete all environment variables? ")))
1836 {
1837 free_environ (current_inferior ()->environment);
1838 current_inferior ()->environment = make_environ ();
1839 }
1840 }
1841 else
1842 unset_in_environ (current_inferior ()->environment, var);
1843 }
1844
1845 /* Handle the execution path (PATH variable) */
1846
1847 static const char path_var_name[] = "PATH";
1848
1849 static void
1850 path_info (char *args, int from_tty)
1851 {
1852 puts_filtered ("Executable and object file path: ");
1853 puts_filtered (get_in_environ (current_inferior ()->environment, path_var_name));
1854 puts_filtered ("\n");
1855 }
1856
1857 /* Add zero or more directories to the front of the execution path. */
1858
1859 static void
1860 path_command (char *dirname, int from_tty)
1861 {
1862 char *exec_path;
1863 char *env;
1864 dont_repeat ();
1865 env = get_in_environ (current_inferior ()->environment, path_var_name);
1866 /* Can be null if path is not set */
1867 if (!env)
1868 env = "";
1869 exec_path = xstrdup (env);
1870 mod_path (dirname, &exec_path);
1871 set_in_environ (current_inferior ()->environment, path_var_name, exec_path);
1872 xfree (exec_path);
1873 if (from_tty)
1874 path_info ((char *) NULL, from_tty);
1875 }
1876 \f
1877
1878 /* Print out the machine register regnum. If regnum is -1, print all
1879 registers (print_all == 1) or all non-float and non-vector
1880 registers (print_all == 0).
1881
1882 For most machines, having all_registers_info() print the
1883 register(s) one per line is good enough. If a different format is
1884 required, (eg, for MIPS or Pyramid 90x, which both have lots of
1885 regs), or there is an existing convention for showing all the
1886 registers, define the architecture method PRINT_REGISTERS_INFO to
1887 provide that format. */
1888
1889 void
1890 default_print_registers_info (struct gdbarch *gdbarch,
1891 struct ui_file *file,
1892 struct frame_info *frame,
1893 int regnum, int print_all)
1894 {
1895 int i;
1896 const int numregs = gdbarch_num_regs (gdbarch)
1897 + gdbarch_num_pseudo_regs (gdbarch);
1898 gdb_byte buffer[MAX_REGISTER_SIZE];
1899
1900 for (i = 0; i < numregs; i++)
1901 {
1902 /* Decide between printing all regs, non-float / vector regs, or
1903 specific reg. */
1904 if (regnum == -1)
1905 {
1906 if (print_all)
1907 {
1908 if (!gdbarch_register_reggroup_p (gdbarch, i, all_reggroup))
1909 continue;
1910 }
1911 else
1912 {
1913 if (!gdbarch_register_reggroup_p (gdbarch, i, general_reggroup))
1914 continue;
1915 }
1916 }
1917 else
1918 {
1919 if (i != regnum)
1920 continue;
1921 }
1922
1923 /* If the register name is empty, it is undefined for this
1924 processor, so don't display anything. */
1925 if (gdbarch_register_name (gdbarch, i) == NULL
1926 || *(gdbarch_register_name (gdbarch, i)) == '\0')
1927 continue;
1928
1929 fputs_filtered (gdbarch_register_name (gdbarch, i), file);
1930 print_spaces_filtered (15 - strlen (gdbarch_register_name
1931 (gdbarch, i)), file);
1932
1933 /* Get the data in raw format. */
1934 if (! frame_register_read (frame, i, buffer))
1935 {
1936 fprintf_filtered (file, "*value not available*\n");
1937 continue;
1938 }
1939
1940 /* If virtual format is floating, print it that way, and in raw
1941 hex. */
1942 if (TYPE_CODE (register_type (gdbarch, i)) == TYPE_CODE_FLT
1943 || TYPE_CODE (register_type (gdbarch, i)) == TYPE_CODE_DECFLOAT)
1944 {
1945 int j;
1946 struct value_print_options opts;
1947
1948 get_user_print_options (&opts);
1949 opts.deref_ref = 1;
1950 val_print (register_type (gdbarch, i), buffer, 0, 0,
1951 file, 0, &opts, current_language);
1952
1953 fprintf_filtered (file, "\t(raw 0x");
1954 for (j = 0; j < register_size (gdbarch, i); j++)
1955 {
1956 int idx;
1957 if (gdbarch_byte_order (gdbarch) == BFD_ENDIAN_BIG)
1958 idx = j;
1959 else
1960 idx = register_size (gdbarch, i) - 1 - j;
1961 fprintf_filtered (file, "%02x", (unsigned char) buffer[idx]);
1962 }
1963 fprintf_filtered (file, ")");
1964 }
1965 else
1966 {
1967 struct value_print_options opts;
1968
1969 /* Print the register in hex. */
1970 get_formatted_print_options (&opts, 'x');
1971 opts.deref_ref = 1;
1972 val_print (register_type (gdbarch, i), buffer, 0, 0,
1973 file, 0, &opts,
1974 current_language);
1975 /* If not a vector register, print it also according to its
1976 natural format. */
1977 if (TYPE_VECTOR (register_type (gdbarch, i)) == 0)
1978 {
1979 get_user_print_options (&opts);
1980 opts.deref_ref = 1;
1981 fprintf_filtered (file, "\t");
1982 val_print (register_type (gdbarch, i), buffer, 0, 0,
1983 file, 0, &opts, current_language);
1984 }
1985 }
1986
1987 fprintf_filtered (file, "\n");
1988 }
1989 }
1990
1991 void
1992 registers_info (char *addr_exp, int fpregs)
1993 {
1994 struct frame_info *frame;
1995 struct gdbarch *gdbarch;
1996
1997 if (!target_has_registers)
1998 error (_("The program has no registers now."));
1999 frame = get_selected_frame (NULL);
2000 gdbarch = get_frame_arch (frame);
2001
2002 if (!addr_exp)
2003 {
2004 gdbarch_print_registers_info (gdbarch, gdb_stdout,
2005 frame, -1, fpregs);
2006 return;
2007 }
2008
2009 while (*addr_exp != '\0')
2010 {
2011 char *start;
2012 const char *end;
2013
2014 /* Keep skipping leading white space. */
2015 if (isspace ((*addr_exp)))
2016 {
2017 addr_exp++;
2018 continue;
2019 }
2020
2021 /* Discard any leading ``$''. Check that there is something
2022 resembling a register following it. */
2023 if (addr_exp[0] == '$')
2024 addr_exp++;
2025 if (isspace ((*addr_exp)) || (*addr_exp) == '\0')
2026 error (_("Missing register name"));
2027
2028 /* Find the start/end of this register name/num/group. */
2029 start = addr_exp;
2030 while ((*addr_exp) != '\0' && !isspace ((*addr_exp)))
2031 addr_exp++;
2032 end = addr_exp;
2033
2034 /* Figure out what we've found and display it. */
2035
2036 /* A register name? */
2037 {
2038 int regnum = user_reg_map_name_to_regnum (gdbarch, start, end - start);
2039 if (regnum >= 0)
2040 {
2041 /* User registers lie completely outside of the range of
2042 normal registers. Catch them early so that the target
2043 never sees them. */
2044 if (regnum >= gdbarch_num_regs (gdbarch)
2045 + gdbarch_num_pseudo_regs (gdbarch))
2046 {
2047 struct value_print_options opts;
2048 struct value *val = value_of_user_reg (regnum, frame);
2049
2050 printf_filtered ("%s: ", start);
2051 get_formatted_print_options (&opts, 'x');
2052 print_scalar_formatted (value_contents (val),
2053 check_typedef (value_type (val)),
2054 &opts, 0, gdb_stdout);
2055 printf_filtered ("\n");
2056 }
2057 else
2058 gdbarch_print_registers_info (gdbarch, gdb_stdout,
2059 frame, regnum, fpregs);
2060 continue;
2061 }
2062 }
2063
2064 /* A register group? */
2065 {
2066 struct reggroup *group;
2067 for (group = reggroup_next (gdbarch, NULL);
2068 group != NULL;
2069 group = reggroup_next (gdbarch, group))
2070 {
2071 /* Don't bother with a length check. Should the user
2072 enter a short register group name, go with the first
2073 group that matches. */
2074 if (strncmp (start, reggroup_name (group), end - start) == 0)
2075 break;
2076 }
2077 if (group != NULL)
2078 {
2079 int regnum;
2080 for (regnum = 0;
2081 regnum < gdbarch_num_regs (gdbarch)
2082 + gdbarch_num_pseudo_regs (gdbarch);
2083 regnum++)
2084 {
2085 if (gdbarch_register_reggroup_p (gdbarch, regnum, group))
2086 gdbarch_print_registers_info (gdbarch,
2087 gdb_stdout, frame,
2088 regnum, fpregs);
2089 }
2090 continue;
2091 }
2092 }
2093
2094 /* Nothing matched. */
2095 error (_("Invalid register `%.*s'"), (int) (end - start), start);
2096 }
2097 }
2098
2099 void
2100 all_registers_info (char *addr_exp, int from_tty)
2101 {
2102 registers_info (addr_exp, 1);
2103 }
2104
2105 static void
2106 nofp_registers_info (char *addr_exp, int from_tty)
2107 {
2108 registers_info (addr_exp, 0);
2109 }
2110
2111 static void
2112 print_vector_info (struct ui_file *file,
2113 struct frame_info *frame, const char *args)
2114 {
2115 struct gdbarch *gdbarch = get_frame_arch (frame);
2116
2117 if (gdbarch_print_vector_info_p (gdbarch))
2118 gdbarch_print_vector_info (gdbarch, file, frame, args);
2119 else
2120 {
2121 int regnum;
2122 int printed_something = 0;
2123
2124 for (regnum = 0;
2125 regnum < gdbarch_num_regs (gdbarch)
2126 + gdbarch_num_pseudo_regs (gdbarch);
2127 regnum++)
2128 {
2129 if (gdbarch_register_reggroup_p (gdbarch, regnum, vector_reggroup))
2130 {
2131 printed_something = 1;
2132 gdbarch_print_registers_info (gdbarch, file, frame, regnum, 1);
2133 }
2134 }
2135 if (!printed_something)
2136 fprintf_filtered (file, "No vector information\n");
2137 }
2138 }
2139
2140 static void
2141 vector_info (char *args, int from_tty)
2142 {
2143 if (!target_has_registers)
2144 error (_("The program has no registers now."));
2145
2146 print_vector_info (gdb_stdout, get_selected_frame (NULL), args);
2147 }
2148 \f
2149 /* Kill the inferior process. Make us have no inferior. */
2150
2151 static void
2152 kill_command (char *arg, int from_tty)
2153 {
2154 /* FIXME: This should not really be inferior_ptid (or target_has_execution).
2155 It should be a distinct flag that indicates that a target is active, cuz
2156 some targets don't have processes! */
2157
2158 if (ptid_equal (inferior_ptid, null_ptid))
2159 error (_("The program is not being run."));
2160 if (!query (_("Kill the program being debugged? ")))
2161 error (_("Not confirmed."));
2162 target_kill ();
2163
2164 /* If we still have other inferiors to debug, then don't mess with
2165 with their threads. */
2166 if (!have_inferiors ())
2167 {
2168 init_thread_list (); /* Destroy thread info */
2169
2170 /* Killing off the inferior can leave us with a core file. If
2171 so, print the state we are left in. */
2172 if (target_has_stack)
2173 {
2174 printf_filtered (_("In %s,\n"), target_longname);
2175 print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC);
2176 }
2177 }
2178 bfd_cache_close_all ();
2179 }
2180
2181 /* Used in `attach&' command. ARG is a point to an integer
2182 representing a process id. Proceed threads of this process iff
2183 they stopped due to debugger request, and when they did, they
2184 reported a clean stop (TARGET_SIGNAL_0). Do not proceed threads
2185 that have been explicitly been told to stop. */
2186
2187 static int
2188 proceed_after_attach_callback (struct thread_info *thread,
2189 void *arg)
2190 {
2191 int pid = * (int *) arg;
2192
2193 if (ptid_get_pid (thread->ptid) == pid
2194 && !is_exited (thread->ptid)
2195 && !is_executing (thread->ptid)
2196 && !thread->stop_requested
2197 && thread->stop_signal == TARGET_SIGNAL_0)
2198 {
2199 switch_to_thread (thread->ptid);
2200 clear_proceed_status ();
2201 proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 0);
2202 }
2203
2204 return 0;
2205 }
2206
2207 static void
2208 proceed_after_attach (int pid)
2209 {
2210 /* Don't error out if the current thread is running, because
2211 there may be other stopped threads. */
2212 struct cleanup *old_chain;
2213
2214 /* Backup current thread and selected frame. */
2215 old_chain = make_cleanup_restore_current_thread ();
2216
2217 iterate_over_threads (proceed_after_attach_callback, &pid);
2218
2219 /* Restore selected ptid. */
2220 do_cleanups (old_chain);
2221 }
2222
2223 /*
2224 * TODO:
2225 * Should save/restore the tty state since it might be that the
2226 * program to be debugged was started on this tty and it wants
2227 * the tty in some state other than what we want. If it's running
2228 * on another terminal or without a terminal, then saving and
2229 * restoring the tty state is a harmless no-op.
2230 * This only needs to be done if we are attaching to a process.
2231 */
2232
2233 /*
2234 attach_command --
2235 takes a program started up outside of gdb and ``attaches'' to it.
2236 This stops it cold in its tracks and allows us to start debugging it.
2237 and wait for the trace-trap that results from attaching. */
2238
2239 static void
2240 attach_command_post_wait (char *args, int from_tty, int async_exec)
2241 {
2242 char *exec_file;
2243 char *full_exec_path = NULL;
2244 struct inferior *inferior;
2245
2246 inferior = current_inferior ();
2247 inferior->stop_soon = NO_STOP_QUIETLY;
2248
2249 /* If no exec file is yet known, try to determine it from the
2250 process itself. */
2251 exec_file = (char *) get_exec_file (0);
2252 if (!exec_file)
2253 {
2254 exec_file = target_pid_to_exec_file (PIDGET (inferior_ptid));
2255 if (exec_file)
2256 {
2257 /* It's possible we don't have a full path, but rather just a
2258 filename. Some targets, such as HP-UX, don't provide the
2259 full path, sigh.
2260
2261 Attempt to qualify the filename against the source path.
2262 (If that fails, we'll just fall back on the original
2263 filename. Not much more we can do...)
2264 */
2265 if (!source_full_path_of (exec_file, &full_exec_path))
2266 full_exec_path = xstrdup (exec_file);
2267
2268 exec_file_attach (full_exec_path, from_tty);
2269 symbol_file_add_main (full_exec_path, from_tty);
2270 }
2271 }
2272 else
2273 {
2274 reopen_exec_file ();
2275 reread_symbols ();
2276 }
2277
2278 /* Take any necessary post-attaching actions for this platform. */
2279 target_post_attach (PIDGET (inferior_ptid));
2280
2281 post_create_inferior (&current_target, from_tty);
2282
2283 /* Install inferior's terminal modes. */
2284 target_terminal_inferior ();
2285
2286 if (async_exec)
2287 {
2288 /* The user requested an `attach&', so be sure to leave threads
2289 that didn't get a signal running. */
2290
2291 /* Immediatelly resume all suspended threads of this inferior,
2292 and this inferior only. This should have no effect on
2293 already running threads. If a thread has been stopped with a
2294 signal, leave it be. */
2295 if (non_stop)
2296 proceed_after_attach (inferior->pid);
2297 else
2298 {
2299 if (inferior_thread ()->stop_signal == TARGET_SIGNAL_0)
2300 {
2301 clear_proceed_status ();
2302 proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 0);
2303 }
2304 }
2305 }
2306 else
2307 {
2308 /* The user requested a plain `attach', so be sure to leave
2309 the inferior stopped. */
2310
2311 if (target_can_async_p ())
2312 async_enable_stdin ();
2313
2314 /* At least the current thread is already stopped. */
2315
2316 /* In all-stop, by definition, all threads have to be already
2317 stopped at this point. In non-stop, however, although the
2318 selected thread is stopped, others may still be executing.
2319 Be sure to explicitly stop all threads of the process. This
2320 should have no effect on already stopped threads. */
2321 if (non_stop)
2322 target_stop (pid_to_ptid (inferior->pid));
2323
2324 /* Tell the user/frontend where we're stopped. */
2325 normal_stop ();
2326 if (deprecated_attach_hook)
2327 deprecated_attach_hook ();
2328 }
2329 }
2330
2331 struct attach_command_continuation_args
2332 {
2333 char *args;
2334 int from_tty;
2335 int async_exec;
2336 };
2337
2338 static void
2339 attach_command_continuation (void *args)
2340 {
2341 struct attach_command_continuation_args *a = args;
2342 attach_command_post_wait (a->args, a->from_tty, a->async_exec);
2343 }
2344
2345 static void
2346 attach_command_continuation_free_args (void *args)
2347 {
2348 struct attach_command_continuation_args *a = args;
2349 xfree (a->args);
2350 xfree (a);
2351 }
2352
2353 void
2354 attach_command (char *args, int from_tty)
2355 {
2356 int async_exec = 0;
2357 struct cleanup *back_to = make_cleanup (null_cleanup, NULL);
2358
2359 dont_repeat (); /* Not for the faint of heart */
2360
2361 if (gdbarch_has_global_solist (target_gdbarch))
2362 /* Don't complain if all processes share the same symbol
2363 space. */
2364 ;
2365 else if (target_has_execution)
2366 {
2367 if (query (_("A program is being debugged already. Kill it? ")))
2368 target_kill ();
2369 else
2370 error (_("Not killed."));
2371 }
2372
2373 /* Clean up any leftovers from other runs. Some other things from
2374 this function should probably be moved into target_pre_inferior. */
2375 target_pre_inferior (from_tty);
2376
2377 if (non_stop && !target_supports_non_stop ())
2378 error (_("Cannot attach to this target in non-stop mode"));
2379
2380 if (args)
2381 {
2382 async_exec = strip_bg_char (&args);
2383
2384 /* If we get a request for running in the bg but the target
2385 doesn't support it, error out. */
2386 if (async_exec && !target_can_async_p ())
2387 error (_("Asynchronous execution not supported on this target."));
2388 }
2389
2390 /* If we don't get a request of running in the bg, then we need
2391 to simulate synchronous (fg) execution. */
2392 if (!async_exec && target_can_async_p ())
2393 {
2394 /* Simulate synchronous execution */
2395 async_disable_stdin ();
2396 make_cleanup ((make_cleanup_ftype *)async_enable_stdin, NULL);
2397 }
2398
2399 target_attach (args, from_tty);
2400
2401 /* Set up the "saved terminal modes" of the inferior
2402 based on what modes we are starting it with. */
2403 target_terminal_init ();
2404
2405 /* Set up execution context to know that we should return from
2406 wait_for_inferior as soon as the target reports a stop. */
2407 init_wait_for_inferior ();
2408 clear_proceed_status ();
2409
2410 if (non_stop)
2411 {
2412 /* If we find that the current thread isn't stopped, explicitly
2413 do so now, because we're going to install breakpoints and
2414 poke at memory. */
2415
2416 if (async_exec)
2417 /* The user requested an `attach&'; stop just one thread. */
2418 target_stop (inferior_ptid);
2419 else
2420 /* The user requested an `attach', so stop all threads of this
2421 inferior. */
2422 target_stop (pid_to_ptid (ptid_get_pid (inferior_ptid)));
2423 }
2424
2425 /* Some system don't generate traps when attaching to inferior.
2426 E.g. Mach 3 or GNU hurd. */
2427 if (!target_attach_no_wait)
2428 {
2429 struct inferior *inferior = current_inferior ();
2430
2431 /* Careful here. See comments in inferior.h. Basically some
2432 OSes don't ignore SIGSTOPs on continue requests anymore. We
2433 need a way for handle_inferior_event to reset the stop_signal
2434 variable after an attach, and this is what
2435 STOP_QUIETLY_NO_SIGSTOP is for. */
2436 inferior->stop_soon = STOP_QUIETLY_NO_SIGSTOP;
2437
2438 if (target_can_async_p ())
2439 {
2440 /* sync_execution mode. Wait for stop. */
2441 struct attach_command_continuation_args *a;
2442
2443 a = xmalloc (sizeof (*a));
2444 a->args = xstrdup (args);
2445 a->from_tty = from_tty;
2446 a->async_exec = async_exec;
2447 add_inferior_continuation (attach_command_continuation, a,
2448 attach_command_continuation_free_args);
2449 discard_cleanups (back_to);
2450 return;
2451 }
2452
2453 wait_for_inferior (0);
2454 }
2455
2456 attach_command_post_wait (args, from_tty, async_exec);
2457 discard_cleanups (back_to);
2458 }
2459
2460 /* We had just found out that the target was already attached to an
2461 inferior. PTID points at a thread of this new inferior, that is
2462 the most likely to be stopped right now, but not necessarily so.
2463 The new inferior is assumed to be already added to the inferior
2464 list at this point. If LEAVE_RUNNING, then leave the threads of
2465 this inferior running, except those we've explicitly seen reported
2466 as stopped. */
2467
2468 void
2469 notice_new_inferior (ptid_t ptid, int leave_running, int from_tty)
2470 {
2471 struct cleanup* old_chain;
2472 int async_exec;
2473
2474 old_chain = make_cleanup (null_cleanup, NULL);
2475
2476 /* If in non-stop, leave threads as running as they were. If
2477 they're stopped for some reason other than us telling it to, the
2478 target reports a signal != TARGET_SIGNAL_0. We don't try to
2479 resume threads with such a stop signal. */
2480 async_exec = non_stop;
2481
2482 if (!ptid_equal (inferior_ptid, null_ptid))
2483 make_cleanup_restore_current_thread ();
2484
2485 switch_to_thread (ptid);
2486
2487 /* When we "notice" a new inferior we need to do all the things we
2488 would normally do if we had just attached to it. */
2489
2490 if (is_executing (inferior_ptid))
2491 {
2492 struct inferior *inferior = current_inferior ();
2493
2494 /* We're going to install breakpoints, and poke at memory,
2495 ensure that the inferior is stopped for a moment while we do
2496 that. */
2497 target_stop (inferior_ptid);
2498
2499 inferior->stop_soon = STOP_QUIETLY_REMOTE;
2500
2501 /* Wait for stop before proceeding. */
2502 if (target_can_async_p ())
2503 {
2504 struct attach_command_continuation_args *a;
2505
2506 a = xmalloc (sizeof (*a));
2507 a->args = xstrdup ("");
2508 a->from_tty = from_tty;
2509 a->async_exec = async_exec;
2510 add_inferior_continuation (attach_command_continuation, a,
2511 attach_command_continuation_free_args);
2512
2513 do_cleanups (old_chain);
2514 return;
2515 }
2516 else
2517 wait_for_inferior (0);
2518 }
2519
2520 async_exec = leave_running;
2521 attach_command_post_wait ("" /* args */, from_tty, async_exec);
2522
2523 do_cleanups (old_chain);
2524 }
2525
2526 /*
2527 * detach_command --
2528 * takes a program previously attached to and detaches it.
2529 * The program resumes execution and will no longer stop
2530 * on signals, etc. We better not have left any breakpoints
2531 * in the program or it'll die when it hits one. For this
2532 * to work, it may be necessary for the process to have been
2533 * previously attached. It *might* work if the program was
2534 * started via the normal ptrace (PTRACE_TRACEME).
2535 */
2536
2537 void
2538 detach_command (char *args, int from_tty)
2539 {
2540 dont_repeat (); /* Not for the faint of heart. */
2541
2542 if (ptid_equal (inferior_ptid, null_ptid))
2543 error (_("The program is not being run."));
2544
2545 disconnect_tracing (from_tty);
2546
2547 target_detach (args, from_tty);
2548
2549 /* If the solist is global across inferiors, don't clear it when we
2550 detach from a single inferior. */
2551 if (!gdbarch_has_global_solist (target_gdbarch))
2552 no_shared_libraries (NULL, from_tty);
2553
2554 /* If we still have inferiors to debug, then don't mess with their
2555 threads. */
2556 if (!have_inferiors ())
2557 init_thread_list ();
2558
2559 if (deprecated_detach_hook)
2560 deprecated_detach_hook ();
2561 }
2562
2563 /* Disconnect from the current target without resuming it (leaving it
2564 waiting for a debugger).
2565
2566 We'd better not have left any breakpoints in the program or the
2567 next debugger will get confused. Currently only supported for some
2568 remote targets, since the normal attach mechanisms don't work on
2569 stopped processes on some native platforms (e.g. GNU/Linux). */
2570
2571 static void
2572 disconnect_command (char *args, int from_tty)
2573 {
2574 dont_repeat (); /* Not for the faint of heart */
2575 target_disconnect (args, from_tty);
2576 no_shared_libraries (NULL, from_tty);
2577 init_thread_list ();
2578 if (deprecated_detach_hook)
2579 deprecated_detach_hook ();
2580 }
2581
2582 void
2583 interrupt_target_1 (int all_threads)
2584 {
2585 ptid_t ptid;
2586 if (all_threads)
2587 ptid = minus_one_ptid;
2588 else
2589 ptid = inferior_ptid;
2590 target_stop (ptid);
2591
2592 /* Tag the thread as having been explicitly requested to stop, so
2593 other parts of gdb know not to resume this thread automatically,
2594 if it was stopped due to an internal event. Limit this to
2595 non-stop mode, as when debugging a multi-threaded application in
2596 all-stop mode, we will only get one stop event --- it's undefined
2597 which thread will report the event. */
2598 if (non_stop)
2599 set_stop_requested (ptid, 1);
2600 }
2601
2602 /* Stop the execution of the target while running in async mode, in
2603 the backgound. In all-stop, stop the whole process. In non-stop
2604 mode, stop the current thread only by default, or stop all threads
2605 if the `-a' switch is used. */
2606
2607 /* interrupt [-a] */
2608 void
2609 interrupt_target_command (char *args, int from_tty)
2610 {
2611 if (target_can_async_p ())
2612 {
2613 int all_threads = 0;
2614
2615 dont_repeat (); /* Not for the faint of heart */
2616
2617 if (args != NULL
2618 && strncmp (args, "-a", sizeof ("-a") - 1) == 0)
2619 all_threads = 1;
2620
2621 if (!non_stop && all_threads)
2622 error (_("-a is meaningless in all-stop mode."));
2623
2624 interrupt_target_1 (all_threads);
2625 }
2626 }
2627
2628 static void
2629 print_float_info (struct ui_file *file,
2630 struct frame_info *frame, const char *args)
2631 {
2632 struct gdbarch *gdbarch = get_frame_arch (frame);
2633
2634 if (gdbarch_print_float_info_p (gdbarch))
2635 gdbarch_print_float_info (gdbarch, file, frame, args);
2636 else
2637 {
2638 int regnum;
2639 int printed_something = 0;
2640
2641 for (regnum = 0;
2642 regnum < gdbarch_num_regs (gdbarch)
2643 + gdbarch_num_pseudo_regs (gdbarch);
2644 regnum++)
2645 {
2646 if (gdbarch_register_reggroup_p (gdbarch, regnum, float_reggroup))
2647 {
2648 printed_something = 1;
2649 gdbarch_print_registers_info (gdbarch, file, frame, regnum, 1);
2650 }
2651 }
2652 if (!printed_something)
2653 fprintf_filtered (file, "\
2654 No floating-point info available for this processor.\n");
2655 }
2656 }
2657
2658 static void
2659 float_info (char *args, int from_tty)
2660 {
2661 if (!target_has_registers)
2662 error (_("The program has no registers now."));
2663
2664 print_float_info (gdb_stdout, get_selected_frame (NULL), args);
2665 }
2666 \f
2667 static void
2668 unset_command (char *args, int from_tty)
2669 {
2670 printf_filtered (_("\
2671 \"unset\" must be followed by the name of an unset subcommand.\n"));
2672 help_list (unsetlist, "unset ", -1, gdb_stdout);
2673 }
2674
2675 void
2676 _initialize_infcmd (void)
2677 {
2678 struct cmd_list_element *c = NULL;
2679
2680 /* add the filename of the terminal connected to inferior I/O */
2681 add_setshow_filename_cmd ("inferior-tty", class_run,
2682 &inferior_io_terminal_scratch, _("\
2683 Set terminal for future runs of program being debugged."), _("\
2684 Show terminal for future runs of program being debugged."), _("\
2685 Usage: set inferior-tty /dev/pts/1"),
2686 set_inferior_tty_command,
2687 show_inferior_tty_command,
2688 &setlist, &showlist);
2689 add_com_alias ("tty", "set inferior-tty", class_alias, 0);
2690
2691 add_setshow_optional_filename_cmd ("args", class_run,
2692 &inferior_args_scratch, _("\
2693 Set argument list to give program being debugged when it is started."), _("\
2694 Show argument list to give program being debugged when it is started."), _("\
2695 Follow this command with any number of args, to be passed to the program."),
2696 set_args_command,
2697 show_args_command,
2698 &setlist, &showlist);
2699
2700 c = add_cmd ("environment", no_class, environment_info, _("\
2701 The environment to give the program, or one variable's value.\n\
2702 With an argument VAR, prints the value of environment variable VAR to\n\
2703 give the program being debugged. With no arguments, prints the entire\n\
2704 environment to be given to the program."), &showlist);
2705 set_cmd_completer (c, noop_completer);
2706
2707 add_prefix_cmd ("unset", no_class, unset_command,
2708 _("Complement to certain \"set\" commands."),
2709 &unsetlist, "unset ", 0, &cmdlist);
2710
2711 c = add_cmd ("environment", class_run, unset_environment_command, _("\
2712 Cancel environment variable VAR for the program.\n\
2713 This does not affect the program until the next \"run\" command."),
2714 &unsetlist);
2715 set_cmd_completer (c, noop_completer);
2716
2717 c = add_cmd ("environment", class_run, set_environment_command, _("\
2718 Set environment variable value to give the program.\n\
2719 Arguments are VAR VALUE where VAR is variable name and VALUE is value.\n\
2720 VALUES of environment variables are uninterpreted strings.\n\
2721 This does not affect the program until the next \"run\" command."),
2722 &setlist);
2723 set_cmd_completer (c, noop_completer);
2724
2725 c = add_com ("path", class_files, path_command, _("\
2726 Add directory DIR(s) to beginning of search path for object files.\n\
2727 $cwd in the path means the current working directory.\n\
2728 This path is equivalent to the $PATH shell variable. It is a list of\n\
2729 directories, separated by colons. These directories are searched to find\n\
2730 fully linked executable files and separately compiled object files as needed."));
2731 set_cmd_completer (c, filename_completer);
2732
2733 c = add_cmd ("paths", no_class, path_info, _("\
2734 Current search path for finding object files.\n\
2735 $cwd in the path means the current working directory.\n\
2736 This path is equivalent to the $PATH shell variable. It is a list of\n\
2737 directories, separated by colons. These directories are searched to find\n\
2738 fully linked executable files and separately compiled object files as needed."),
2739 &showlist);
2740 set_cmd_completer (c, noop_completer);
2741
2742 add_prefix_cmd ("kill", class_run, kill_command,
2743 _("Kill execution of program being debugged."),
2744 &killlist, "kill ", 0, &cmdlist);
2745
2746 add_com ("attach", class_run, attach_command, _("\
2747 Attach to a process or file outside of GDB.\n\
2748 This command attaches to another target, of the same type as your last\n\
2749 \"target\" command (\"info files\" will show your target stack).\n\
2750 The command may take as argument a process id or a device file.\n\
2751 For a process id, you must have permission to send the process a signal,\n\
2752 and it must have the same effective uid as the debugger.\n\
2753 When using \"attach\" with a process id, the debugger finds the\n\
2754 program running in the process, looking first in the current working\n\
2755 directory, or (if not found there) using the source file search path\n\
2756 (see the \"directory\" command). You can also use the \"file\" command\n\
2757 to specify the program, and to load its symbol table."));
2758
2759 add_prefix_cmd ("detach", class_run, detach_command, _("\
2760 Detach a process or file previously attached.\n\
2761 If a process, it is no longer traced, and it continues its execution. If\n\
2762 you were debugging a file, the file is closed and gdb no longer accesses it."),
2763 &detachlist, "detach ", 0, &cmdlist);
2764
2765 add_com ("disconnect", class_run, disconnect_command, _("\
2766 Disconnect from a target.\n\
2767 The target will wait for another debugger to connect. Not available for\n\
2768 all targets."));
2769
2770 add_com ("signal", class_run, signal_command, _("\
2771 Continue program giving it signal specified by the argument.\n\
2772 An argument of \"0\" means continue program without giving it a signal."));
2773
2774 add_com ("stepi", class_run, stepi_command, _("\
2775 Step one instruction exactly.\n\
2776 Argument N means do this N times (or till program stops for another reason)."));
2777 add_com_alias ("si", "stepi", class_alias, 0);
2778
2779 add_com ("nexti", class_run, nexti_command, _("\
2780 Step one instruction, but proceed through subroutine calls.\n\
2781 Argument N means do this N times (or till program stops for another reason)."));
2782 add_com_alias ("ni", "nexti", class_alias, 0);
2783
2784 add_com ("finish", class_run, finish_command, _("\
2785 Execute until selected stack frame returns.\n\
2786 Upon return, the value returned is printed and put in the value history."));
2787 add_com_alias ("fin", "finish", class_run, 1);
2788
2789 add_com ("next", class_run, next_command, _("\
2790 Step program, proceeding through subroutine calls.\n\
2791 Like the \"step\" command as long as subroutine calls do not happen;\n\
2792 when they do, the call is treated as one instruction.\n\
2793 Argument N means do this N times (or till program stops for another reason)."));
2794 add_com_alias ("n", "next", class_run, 1);
2795 if (xdb_commands)
2796 add_com_alias ("S", "next", class_run, 1);
2797
2798 add_com ("step", class_run, step_command, _("\
2799 Step program until it reaches a different source line.\n\
2800 Argument N means do this N times (or till program stops for another reason)."));
2801 add_com_alias ("s", "step", class_run, 1);
2802
2803 c = add_com ("until", class_run, until_command, _("\
2804 Execute until the program reaches a source line greater than the current\n\
2805 or a specified location (same args as break command) within the current frame."));
2806 set_cmd_completer (c, location_completer);
2807 add_com_alias ("u", "until", class_run, 1);
2808
2809 c = add_com ("advance", class_run, advance_command, _("\
2810 Continue the program up to the given location (same form as args for break command).\n\
2811 Execution will also stop upon exit from the current stack frame."));
2812 set_cmd_completer (c, location_completer);
2813
2814 c = add_com ("jump", class_run, jump_command, _("\
2815 Continue program being debugged at specified line or address.\n\
2816 Give as argument either LINENUM or *ADDR, where ADDR is an expression\n\
2817 for an address to start at."));
2818 set_cmd_completer (c, location_completer);
2819
2820 if (xdb_commands)
2821 {
2822 c = add_com ("go", class_run, go_command, _("\
2823 Usage: go <location>\n\
2824 Continue program being debugged, stopping at specified line or \n\
2825 address.\n\
2826 Give as argument either LINENUM or *ADDR, where ADDR is an \n\
2827 expression for an address to start at.\n\
2828 This command is a combination of tbreak and jump."));
2829 set_cmd_completer (c, location_completer);
2830 }
2831
2832 if (xdb_commands)
2833 add_com_alias ("g", "go", class_run, 1);
2834
2835 c = add_com ("continue", class_run, continue_command, _("\
2836 Continue program being debugged, after signal or breakpoint.\n\
2837 If proceeding from breakpoint, a number N may be used as an argument,\n\
2838 which means to set the ignore count of that breakpoint to N - 1 (so that\n\
2839 the breakpoint won't break until the Nth time it is reached).\n\
2840 \n\
2841 If non-stop mode is enabled, continue only the current thread,\n\
2842 otherwise all the threads in the program are continued. To \n\
2843 continue all stopped threads in non-stop mode, use the -a option.\n\
2844 Specifying -a and an ignore count simultaneously is an error."));
2845 add_com_alias ("c", "cont", class_run, 1);
2846 add_com_alias ("fg", "cont", class_run, 1);
2847
2848 c = add_com ("run", class_run, run_command, _("\
2849 Start debugged program. You may specify arguments to give it.\n\
2850 Args may include \"*\", or \"[...]\"; they are expanded using \"sh\".\n\
2851 Input and output redirection with \">\", \"<\", or \">>\" are also allowed.\n\n\
2852 With no arguments, uses arguments last specified (with \"run\" or \"set args\").\n\
2853 To cancel previous arguments and run with no arguments,\n\
2854 use \"set args\" without arguments."));
2855 set_cmd_completer (c, filename_completer);
2856 add_com_alias ("r", "run", class_run, 1);
2857 if (xdb_commands)
2858 add_com ("R", class_run, run_no_args_command,
2859 _("Start debugged program with no arguments."));
2860
2861 c = add_com ("start", class_run, start_command, _("\
2862 Run the debugged program until the beginning of the main procedure.\n\
2863 You may specify arguments to give to your program, just as with the\n\
2864 \"run\" command."));
2865 set_cmd_completer (c, filename_completer);
2866
2867 c = add_com ("interrupt", class_run, interrupt_target_command,
2868 _("Interrupt the execution of the debugged program.\n\
2869 If non-stop mode is enabled, interrupt only the current thread,\n\
2870 otherwise all the threads in the program are stopped. To \n\
2871 interrupt all running threads in non-stop mode, use the -a option."));
2872
2873 add_info ("registers", nofp_registers_info, _("\
2874 List of integer registers and their contents, for selected stack frame.\n\
2875 Register name as argument means describe only that register."));
2876 add_info_alias ("r", "registers", 1);
2877
2878 if (xdb_commands)
2879 add_com ("lr", class_info, nofp_registers_info, _("\
2880 List of integer registers and their contents, for selected stack frame.\n\
2881 Register name as argument means describe only that register."));
2882 add_info ("all-registers", all_registers_info, _("\
2883 List of all registers and their contents, for selected stack frame.\n\
2884 Register name as argument means describe only that register."));
2885
2886 add_info ("program", program_info,
2887 _("Execution status of the program."));
2888
2889 add_info ("float", float_info,
2890 _("Print the status of the floating point unit\n"));
2891
2892 add_info ("vector", vector_info,
2893 _("Print the status of the vector unit\n"));
2894 }
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