1 /* Memory-access and commands for "inferior" process, for GDB.
2 
3    Copyright 1986, 1987, 1988, 1989, 1990, 1991, 1992, 1993, 1994,
4    1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005
5    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 2 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, write to the Free Software
21    Foundation, Inc., 59 Temple Place - Suite 330,
22    Boston, MA 02111-1307, USA.  */
23 
24 #include "defs.h"
25 #include <signal.h>
26 #include "gdb_string.h"
27 #include "symtab.h"
28 #include "gdbtypes.h"
29 #include "frame.h"
30 #include "inferior.h"
31 #include "environ.h"
32 #include "value.h"
33 #include "gdbcmd.h"
34 #include "symfile.h"
35 #include "gdbcore.h"
36 #include "target.h"
37 #include "language.h"
38 #include "symfile.h"
39 #include "objfiles.h"
40 #include "completer.h"
41 #include "ui-out.h"
42 #include "event-top.h"
43 #include "parser-defs.h"
44 #include "regcache.h"
45 #include "reggroups.h"
46 #include "block.h"
47 #include "solib.h"
48 #include <ctype.h>
49 #include "gdb_assert.h"
50 
51 /* Functions exported for general use, in inferior.h: */
52 
53 void all_registers_info (char *, int);
54 
55 void registers_info (char *, int);
56 
57 void nexti_command (char *, int);
58 
59 void stepi_command (char *, int);
60 
61 void continue_command (char *, int);
62 
63 void interrupt_target_command (char *args, int from_tty);
64 
65 /* Local functions: */
66 
67 static void nofp_registers_info (char *, int);
68 
69 static void print_return_value (int struct_return, struct type *value_type);
70 
71 static void finish_command_continuation (struct continuation_arg *);
72 
73 static void until_next_command (int);
74 
75 static void until_command (char *, int);
76 
77 static void path_info (char *, int);
78 
79 static void path_command (char *, int);
80 
81 static void unset_command (char *, int);
82 
83 static void float_info (char *, int);
84 
85 static void detach_command (char *, int);
86 
87 static void disconnect_command (char *, int);
88 
89 static void unset_environment_command (char *, int);
90 
91 static void set_environment_command (char *, int);
92 
93 static void environment_info (char *, int);
94 
95 static void program_info (char *, int);
96 
97 static void finish_command (char *, int);
98 
99 static void signal_command (char *, int);
100 
101 static void jump_command (char *, int);
102 
103 static void step_1 (int, int, char *);
104 static void step_once (int skip_subroutines, int single_inst, int count);
105 static void step_1_continuation (struct continuation_arg *arg);
106 
107 static void next_command (char *, int);
108 
109 static void step_command (char *, int);
110 
111 static void run_command (char *, int);
112 
113 static void run_no_args_command (char *args, int from_tty);
114 
115 static void go_command (char *line_no, int from_tty);
116 
117 static int strip_bg_char (char **);
118 
119 void _initialize_infcmd (void);
120 
121 #define GO_USAGE   "Usage: go <location>\n"
122 
123 #define ERROR_NO_INFERIOR \
124    if (!target_has_execution) error (_("The program is not being run."));
125 
126 /* String containing arguments to give to the program, separated by spaces.
127    Empty string (pointer to '\0') means no args.  */
128 
129 static char *inferior_args;
130 
131 /* The inferior arguments as a vector.  If INFERIOR_ARGC is nonzero,
132    then we must compute INFERIOR_ARGS from this (via the target).  */
133 
134 static int inferior_argc;
135 static char **inferior_argv;
136 
137 /* File name for default use for standard in/out in the inferior.  */
138 
139 static char *inferior_io_terminal;
140 
141 /* Pid of our debugged inferior, or 0 if no inferior now.
142    Since various parts of infrun.c test this to see whether there is a program
143    being debugged it should be nonzero (currently 3 is used) for remote
144    debugging.  */
145 
146 ptid_t inferior_ptid;
147 
148 /* Last signal that the inferior received (why it stopped).  */
149 
150 enum target_signal stop_signal;
151 
152 /* Address at which inferior stopped.  */
153 
154 CORE_ADDR stop_pc;
155 
156 /* Chain containing status of breakpoint(s) that we have stopped at.  */
157 
158 bpstat stop_bpstat;
159 
160 /* Flag indicating that a command has proceeded the inferior past the
161    current breakpoint.  */
162 
163 int breakpoint_proceeded;
164 
165 /* Nonzero if stopped due to a step command.  */
166 
167 int stop_step;
168 
169 /* Nonzero if stopped due to completion of a stack dummy routine.  */
170 
171 int stop_stack_dummy;
172 
173 /* Nonzero if stopped due to a random (unexpected) signal in inferior
174    process.  */
175 
176 int stopped_by_random_signal;
177 
178 /* Range to single step within.
179    If this is nonzero, respond to a single-step signal
180    by continuing to step if the pc is in this range.  */
181 
182 CORE_ADDR step_range_start;	/* Inclusive */
183 CORE_ADDR step_range_end;	/* Exclusive */
184 
185 /* Stack frame address as of when stepping command was issued.
186    This is how we know when we step into a subroutine call,
187    and how to set the frame for the breakpoint used to step out.  */
188 
189 struct frame_id step_frame_id;
190 
191 enum step_over_calls_kind step_over_calls;
192 
193 /* If stepping, nonzero means step count is > 1
194    so don't print frame next time inferior stops
195    if it stops due to stepping.  */
196 
197 int step_multi;
198 
199 /* Environment to use for running inferior,
200    in format described in environ.h.  */
201 
202 struct gdb_environ *inferior_environ;
203 
204 /* Accessor routines. */
205 
206 void
set_inferior_io_terminal(const char * terminal_name)207 set_inferior_io_terminal (const char *terminal_name)
208 {
209   if (inferior_io_terminal)
210     xfree (inferior_io_terminal);
211 
212   if (!terminal_name)
213     inferior_io_terminal = NULL;
214   else
215     inferior_io_terminal = savestring (terminal_name, strlen (terminal_name));
216 }
217 
218 const char *
get_inferior_io_terminal(void)219 get_inferior_io_terminal (void)
220 {
221   return inferior_io_terminal;
222 }
223 
224 char *
get_inferior_args(void)225 get_inferior_args (void)
226 {
227   if (inferior_argc != 0)
228     {
229       char *n, *old;
230 
231       n = gdbarch_construct_inferior_arguments (current_gdbarch,
232 						inferior_argc, inferior_argv);
233       old = set_inferior_args (n);
234       xfree (old);
235     }
236 
237   if (inferior_args == NULL)
238     inferior_args = xstrdup ("");
239 
240   return inferior_args;
241 }
242 
243 char *
set_inferior_args(char * newargs)244 set_inferior_args (char *newargs)
245 {
246   char *saved_args = inferior_args;
247 
248   inferior_args = newargs;
249   inferior_argc = 0;
250   inferior_argv = 0;
251 
252   return saved_args;
253 }
254 
255 void
set_inferior_args_vector(int argc,char ** argv)256 set_inferior_args_vector (int argc, char **argv)
257 {
258   inferior_argc = argc;
259   inferior_argv = argv;
260 }
261 
262 /* Notice when `set args' is run.  */
263 static void
notice_args_set(char * args,int from_tty,struct cmd_list_element * c)264 notice_args_set (char *args, int from_tty, struct cmd_list_element *c)
265 {
266   inferior_argc = 0;
267   inferior_argv = 0;
268 }
269 
270 /* Notice when `show args' is run.  */
271 static void
notice_args_read(struct ui_file * file,int from_tty,struct cmd_list_element * c,const char * value)272 notice_args_read (struct ui_file *file, int from_tty,
273 		  struct cmd_list_element *c, const char *value)
274 {
275   deprecated_show_value_hack (file, from_tty, c, value);
276   /* Might compute the value.  */
277   get_inferior_args ();
278 }
279 
280 
281 /* Compute command-line string given argument vector.  This does the
282    same shell processing as fork_inferior.  */
283 char *
construct_inferior_arguments(struct gdbarch * gdbarch,int argc,char ** argv)284 construct_inferior_arguments (struct gdbarch *gdbarch, int argc, char **argv)
285 {
286   char *result;
287 
288   if (STARTUP_WITH_SHELL)
289     {
290       /* This holds all the characters considered special to the
291 	 typical Unix shells.  We include `^' because the SunOS
292 	 /bin/sh treats it as a synonym for `|'.  */
293       char *special = "\"!#$&*()\\|[]{}<>?'\"`~^; \t\n";
294       int i;
295       int length = 0;
296       char *out, *cp;
297 
298       /* We over-compute the size.  It shouldn't matter.  */
299       for (i = 0; i < argc; ++i)
300 	length += 2 * strlen (argv[i]) + 1 + 2 * (argv[i][0] == '\0');
301 
302       result = (char *) xmalloc (length);
303       out = result;
304 
305       for (i = 0; i < argc; ++i)
306 	{
307 	  if (i > 0)
308 	    *out++ = ' ';
309 
310 	  /* Need to handle empty arguments specially.  */
311 	  if (argv[i][0] == '\0')
312 	    {
313 	      *out++ = '\'';
314 	      *out++ = '\'';
315 	    }
316 	  else
317 	    {
318 	      for (cp = argv[i]; *cp; ++cp)
319 		{
320 		  if (strchr (special, *cp) != NULL)
321 		    *out++ = '\\';
322 		  *out++ = *cp;
323 		}
324 	    }
325 	}
326       *out = '\0';
327     }
328   else
329     {
330       /* In this case we can't handle arguments that contain spaces,
331 	 tabs, or newlines -- see breakup_args().  */
332       int i;
333       int length = 0;
334 
335       for (i = 0; i < argc; ++i)
336 	{
337 	  char *cp = strchr (argv[i], ' ');
338 	  if (cp == NULL)
339 	    cp = strchr (argv[i], '\t');
340 	  if (cp == NULL)
341 	    cp = strchr (argv[i], '\n');
342 	  if (cp != NULL)
343 	    error (_("can't handle command-line argument containing whitespace"));
344 	  length += strlen (argv[i]) + 1;
345 	}
346 
347       result = (char *) xmalloc (length);
348       result[0] = '\0';
349       for (i = 0; i < argc; ++i)
350 	{
351 	  if (i > 0)
352 	    strcat (result, " ");
353 	  strcat (result, argv[i]);
354 	}
355     }
356 
357   return result;
358 }
359 
360 
361 /* This function detects whether or not a '&' character (indicating
362    background execution) has been added as *the last* of the arguments ARGS
363    of a command. If it has, it removes it and returns 1. Otherwise it
364    does nothing and returns 0. */
365 static int
strip_bg_char(char ** args)366 strip_bg_char (char **args)
367 {
368   char *p = NULL;
369 
370   p = strchr (*args, '&');
371 
372   if (p)
373     {
374       if (p == (*args + strlen (*args) - 1))
375 	{
376 	  if (strlen (*args) > 1)
377 	    {
378 	      do
379 		p--;
380 	      while (*p == ' ' || *p == '\t');
381 	      *(p + 1) = '\0';
382 	    }
383 	  else
384 	    *args = 0;
385 	  return 1;
386 	}
387     }
388   return 0;
389 }
390 
391 void
tty_command(char * file,int from_tty)392 tty_command (char *file, int from_tty)
393 {
394   if (file == 0)
395     error_no_arg (_("terminal name for running target process"));
396 
397   set_inferior_io_terminal (file);
398 }
399 
400 /* Kill the inferior if already running.  This function is designed
401    to be called when we are about to start the execution of the program
402    from the beginning.  Ask the user to confirm that he wants to restart
403    the program being debugged when FROM_TTY is non-null.  */
404 
405 void
kill_if_already_running(int from_tty)406 kill_if_already_running (int from_tty)
407 {
408   if (! ptid_equal (inferior_ptid, null_ptid) && target_has_execution)
409     {
410       if (from_tty
411 	  && !query ("The program being debugged has been started already.\n\
412 Start it from the beginning? "))
413 	error (_("Program not restarted."));
414       target_kill ();
415 #if defined(SOLIB_RESTART)
416       SOLIB_RESTART ();
417 #endif
418       init_wait_for_inferior ();
419     }
420 }
421 
422 /* Implement the "run" command. If TBREAK_AT_MAIN is set, then insert
423    a temporary breakpoint at the begining of the main program before
424    running the program.  */
425 
426 static void
run_command_1(char * args,int from_tty,int tbreak_at_main)427 run_command_1 (char *args, int from_tty, int tbreak_at_main)
428 {
429   char *exec_file;
430 
431   dont_repeat ();
432 
433   kill_if_already_running (from_tty);
434   clear_breakpoint_hit_counts ();
435 
436   /* Purge old solib objfiles. */
437   objfile_purge_solibs ();
438 
439   do_run_cleanups (NULL);
440 
441   /* The comment here used to read, "The exec file is re-read every
442      time we do a generic_mourn_inferior, so we just have to worry
443      about the symbol file."  The `generic_mourn_inferior' function
444      gets called whenever the program exits.  However, suppose the
445      program exits, and *then* the executable file changes?  We need
446      to check again here.  Since reopen_exec_file doesn't do anything
447      if the timestamp hasn't changed, I don't see the harm.  */
448   reopen_exec_file ();
449   reread_symbols ();
450 
451   /* Insert the temporary breakpoint if a location was specified.  */
452   if (tbreak_at_main)
453     tbreak_command (main_name (), 0);
454 
455   exec_file = (char *) get_exec_file (0);
456 
457   /* We keep symbols from add-symbol-file, on the grounds that the
458      user might want to add some symbols before running the program
459      (right?).  But sometimes (dynamic loading where the user manually
460      introduces the new symbols with add-symbol-file), the code which
461      the symbols describe does not persist between runs.  Currently
462      the user has to manually nuke all symbols between runs if they
463      want them to go away (PR 2207).  This is probably reasonable.  */
464 
465   if (!args)
466     {
467       if (target_can_async_p ())
468 	async_disable_stdin ();
469     }
470   else
471     {
472       int async_exec = strip_bg_char (&args);
473 
474       /* If we get a request for running in the bg but the target
475          doesn't support it, error out. */
476       if (async_exec && !target_can_async_p ())
477 	error (_("Asynchronous execution not supported on this target."));
478 
479       /* If we don't get a request of running in the bg, then we need
480          to simulate synchronous (fg) execution. */
481       if (!async_exec && target_can_async_p ())
482 	{
483 	  /* Simulate synchronous execution */
484 	  async_disable_stdin ();
485 	}
486 
487       /* If there were other args, beside '&', process them. */
488       if (args)
489 	{
490           char *old_args = set_inferior_args (xstrdup (args));
491           xfree (old_args);
492 	}
493     }
494 
495   if (from_tty)
496     {
497       ui_out_field_string (uiout, NULL, "Starting program");
498       ui_out_text (uiout, ": ");
499       if (exec_file)
500 	ui_out_field_string (uiout, "execfile", exec_file);
501       ui_out_spaces (uiout, 1);
502       /* We call get_inferior_args() because we might need to compute
503 	 the value now.  */
504       ui_out_field_string (uiout, "infargs", get_inferior_args ());
505       ui_out_text (uiout, "\n");
506       ui_out_flush (uiout);
507     }
508 
509   /* We call get_inferior_args() because we might need to compute
510      the value now.  */
511   target_create_inferior (exec_file, get_inferior_args (),
512 			  environ_vector (inferior_environ), from_tty);
513 }
514 
515 
516 static void
run_command(char * args,int from_tty)517 run_command (char *args, int from_tty)
518 {
519   run_command_1 (args, from_tty, 0);
520 }
521 
522 static void
run_no_args_command(char * args,int from_tty)523 run_no_args_command (char *args, int from_tty)
524 {
525   char *old_args = set_inferior_args (xstrdup (""));
526   xfree (old_args);
527 }
528 
529 
530 /* Start the execution of the program up until the beginning of the main
531    program.  */
532 
533 static void
start_command(char * args,int from_tty)534 start_command (char *args, int from_tty)
535 {
536   /* Some languages such as Ada need to search inside the program
537      minimal symbols for the location where to put the temporary
538      breakpoint before starting.  */
539   if (!have_minimal_symbols ())
540     error (_("No symbol table loaded.  Use the \"file\" command."));
541 
542   /* Run the program until reaching the main procedure...  */
543   run_command_1 (args, from_tty, 1);
544 }
545 
546 void
continue_command(char * proc_count_exp,int from_tty)547 continue_command (char *proc_count_exp, int from_tty)
548 {
549   int async_exec = 0;
550   ERROR_NO_INFERIOR;
551 
552   /* Find out whether we must run in the background. */
553   if (proc_count_exp != NULL)
554     async_exec = strip_bg_char (&proc_count_exp);
555 
556   /* If we must run in the background, but the target can't do it,
557      error out. */
558   if (async_exec && !target_can_async_p ())
559     error (_("Asynchronous execution not supported on this target."));
560 
561   /* If we are not asked to run in the bg, then prepare to run in the
562      foreground, synchronously. */
563   if (!async_exec && target_can_async_p ())
564     {
565       /* Simulate synchronous execution */
566       async_disable_stdin ();
567     }
568 
569   /* If have argument (besides '&'), set proceed count of breakpoint
570      we stopped at.  */
571   if (proc_count_exp != NULL)
572     {
573       bpstat bs = stop_bpstat;
574       int num = bpstat_num (&bs);
575       if (num == 0 && from_tty)
576 	{
577 	  printf_filtered
578 	    ("Not stopped at any breakpoint; argument ignored.\n");
579 	}
580       while (num != 0)
581 	{
582 	  set_ignore_count (num,
583 			    parse_and_eval_long (proc_count_exp) - 1,
584 			    from_tty);
585 	  /* set_ignore_count prints a message ending with a period.
586 	     So print two spaces before "Continuing.".  */
587 	  if (from_tty)
588 	    printf_filtered ("  ");
589 	  num = bpstat_num (&bs);
590 	}
591     }
592 
593   if (from_tty)
594     printf_filtered (_("Continuing.\n"));
595 
596   clear_proceed_status ();
597 
598   proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 0);
599 }
600 
601 /* Step until outside of current statement.  */
602 
603 static void
step_command(char * count_string,int from_tty)604 step_command (char *count_string, int from_tty)
605 {
606   step_1 (0, 0, count_string);
607 }
608 
609 /* Likewise, but skip over subroutine calls as if single instructions.  */
610 
611 static void
next_command(char * count_string,int from_tty)612 next_command (char *count_string, int from_tty)
613 {
614   step_1 (1, 0, count_string);
615 }
616 
617 /* Likewise, but step only one instruction.  */
618 
619 void
stepi_command(char * count_string,int from_tty)620 stepi_command (char *count_string, int from_tty)
621 {
622   step_1 (0, 1, count_string);
623 }
624 
625 void
nexti_command(char * count_string,int from_tty)626 nexti_command (char *count_string, int from_tty)
627 {
628   step_1 (1, 1, count_string);
629 }
630 
631 static void
disable_longjmp_breakpoint_cleanup(void * ignore)632 disable_longjmp_breakpoint_cleanup (void *ignore)
633 {
634   disable_longjmp_breakpoint ();
635 }
636 
637 static void
step_1(int skip_subroutines,int single_inst,char * count_string)638 step_1 (int skip_subroutines, int single_inst, char *count_string)
639 {
640   int count = 1;
641   struct frame_info *frame;
642   struct cleanup *cleanups = 0;
643   int async_exec = 0;
644 
645   ERROR_NO_INFERIOR;
646 
647   if (count_string)
648     async_exec = strip_bg_char (&count_string);
649 
650   /* If we get a request for running in the bg but the target
651      doesn't support it, error out. */
652   if (async_exec && !target_can_async_p ())
653     error (_("Asynchronous execution not supported on this target."));
654 
655   /* If we don't get a request of running in the bg, then we need
656      to simulate synchronous (fg) execution. */
657   if (!async_exec && target_can_async_p ())
658     {
659       /* Simulate synchronous execution */
660       async_disable_stdin ();
661     }
662 
663   count = count_string ? parse_and_eval_long (count_string) : 1;
664 
665   if (!single_inst || skip_subroutines)		/* leave si command alone */
666     {
667       enable_longjmp_breakpoint ();
668       if (!target_can_async_p ())
669 	cleanups = make_cleanup (disable_longjmp_breakpoint_cleanup, 0 /*ignore*/);
670       else
671         make_exec_cleanup (disable_longjmp_breakpoint_cleanup, 0 /*ignore*/);
672     }
673 
674   /* In synchronous case, all is well, just use the regular for loop. */
675   if (!target_can_async_p ())
676     {
677       for (; count > 0; count--)
678 	{
679 	  clear_proceed_status ();
680 
681 	  frame = get_current_frame ();
682 	  if (!frame)		/* Avoid coredump here.  Why tho? */
683 	    error (_("No current frame"));
684 	  step_frame_id = get_frame_id (frame);
685 
686 	  if (!single_inst)
687 	    {
688 	      find_pc_line_pc_range (stop_pc, &step_range_start, &step_range_end);
689 	      if (step_range_end == 0)
690 		{
691 		  char *name;
692 		  if (find_pc_partial_function (stop_pc, &name, &step_range_start,
693 						&step_range_end) == 0)
694 		    error (_("Cannot find bounds of current function"));
695 
696 		  target_terminal_ours ();
697 		  printf_filtered (_("\
698 Single stepping until exit from function %s, \n\
699 which has no line number information.\n"), name);
700 		}
701 	    }
702 	  else
703 	    {
704 	      /* Say we are stepping, but stop after one insn whatever it does.  */
705 	      step_range_start = step_range_end = 1;
706 	      if (!skip_subroutines)
707 		/* It is stepi.
708 		   Don't step over function calls, not even to functions lacking
709 		   line numbers.  */
710 		step_over_calls = STEP_OVER_NONE;
711 	    }
712 
713 	  if (skip_subroutines)
714 	    step_over_calls = STEP_OVER_ALL;
715 
716 	  step_multi = (count > 1);
717 	  proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 1);
718 
719 	  if (!stop_step)
720 	    break;
721 	}
722 
723       if (!single_inst || skip_subroutines)
724 	do_cleanups (cleanups);
725       return;
726     }
727   /* In case of asynchronous target things get complicated, do only
728      one step for now, before returning control to the event loop. Let
729      the continuation figure out how many other steps we need to do,
730      and handle them one at the time, through step_once(). */
731   else
732     {
733       if (target_can_async_p ())
734 	step_once (skip_subroutines, single_inst, count);
735     }
736 }
737 
738 /* Called after we are done with one step operation, to check whether
739    we need to step again, before we print the prompt and return control
740    to the user. If count is > 1, we will need to do one more call to
741    proceed(), via step_once(). Basically it is like step_once and
742    step_1_continuation are co-recursive. */
743 static void
step_1_continuation(struct continuation_arg * arg)744 step_1_continuation (struct continuation_arg *arg)
745 {
746   int count;
747   int skip_subroutines;
748   int single_inst;
749 
750   skip_subroutines = arg->data.integer;
751   single_inst      = arg->next->data.integer;
752   count            = arg->next->next->data.integer;
753 
754   if (stop_step)
755     step_once (skip_subroutines, single_inst, count - 1);
756   else
757     if (!single_inst || skip_subroutines)
758       do_exec_cleanups (ALL_CLEANUPS);
759 }
760 
761 /* Do just one step operation. If count >1 we will have to set up a
762    continuation to be done after the target stops (after this one
763    step). This is useful to implement the 'step n' kind of commands, in
764    case of asynchronous targets. We had to split step_1 into two parts,
765    one to be done before proceed() and one afterwards. This function is
766    called in case of step n with n>1, after the first step operation has
767    been completed.*/
768 static void
step_once(int skip_subroutines,int single_inst,int count)769 step_once (int skip_subroutines, int single_inst, int count)
770 {
771   struct continuation_arg *arg1;
772   struct continuation_arg *arg2;
773   struct continuation_arg *arg3;
774   struct frame_info *frame;
775 
776   if (count > 0)
777     {
778       clear_proceed_status ();
779 
780       frame = get_current_frame ();
781       if (!frame)		/* Avoid coredump here.  Why tho? */
782 	error (_("No current frame"));
783       step_frame_id = get_frame_id (frame);
784 
785       if (!single_inst)
786 	{
787 	  find_pc_line_pc_range (stop_pc, &step_range_start, &step_range_end);
788 
789 	  /* If we have no line info, switch to stepi mode.  */
790 	  if (step_range_end == 0 && step_stop_if_no_debug)
791 	    {
792 	      step_range_start = step_range_end = 1;
793 	    }
794 	  else if (step_range_end == 0)
795 	    {
796 	      char *name;
797 	      if (find_pc_partial_function (stop_pc, &name, &step_range_start,
798 					    &step_range_end) == 0)
799 		error (_("Cannot find bounds of current function"));
800 
801 	      target_terminal_ours ();
802 	      printf_filtered (_("\
803 Single stepping until exit from function %s, \n\
804 which has no line number information.\n"), name);
805 	    }
806 	}
807       else
808 	{
809 	  /* Say we are stepping, but stop after one insn whatever it does.  */
810 	  step_range_start = step_range_end = 1;
811 	  if (!skip_subroutines)
812 	    /* It is stepi.
813 	       Don't step over function calls, not even to functions lacking
814 	       line numbers.  */
815 	    step_over_calls = STEP_OVER_NONE;
816 	}
817 
818       if (skip_subroutines)
819 	step_over_calls = STEP_OVER_ALL;
820 
821       step_multi = (count > 1);
822       arg1 =
823 	(struct continuation_arg *) xmalloc (sizeof (struct continuation_arg));
824       arg2 =
825 	(struct continuation_arg *) xmalloc (sizeof (struct continuation_arg));
826       arg3 =
827 	(struct continuation_arg *) xmalloc (sizeof (struct continuation_arg));
828       arg1->next = arg2;
829       arg1->data.integer = skip_subroutines;
830       arg2->next = arg3;
831       arg2->data.integer = single_inst;
832       arg3->next = NULL;
833       arg3->data.integer = count;
834       add_intermediate_continuation (step_1_continuation, arg1);
835       proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 1);
836     }
837 }
838 
839 
840 /* Continue program at specified address.  */
841 
842 static void
jump_command(char * arg,int from_tty)843 jump_command (char *arg, int from_tty)
844 {
845   CORE_ADDR addr;
846   struct symtabs_and_lines sals;
847   struct symtab_and_line sal;
848   struct symbol *fn;
849   struct symbol *sfn;
850   int async_exec = 0;
851 
852   ERROR_NO_INFERIOR;
853 
854   /* Find out whether we must run in the background. */
855   if (arg != NULL)
856     async_exec = strip_bg_char (&arg);
857 
858   /* If we must run in the background, but the target can't do it,
859      error out. */
860   if (async_exec && !target_can_async_p ())
861     error (_("Asynchronous execution not supported on this target."));
862 
863   /* If we are not asked to run in the bg, then prepare to run in the
864      foreground, synchronously. */
865   if (!async_exec && target_can_async_p ())
866     {
867       /* Simulate synchronous execution */
868       async_disable_stdin ();
869     }
870 
871   if (!arg)
872     error_no_arg (_("starting address"));
873 
874   sals = decode_line_spec_1 (arg, 1);
875   if (sals.nelts != 1)
876     {
877       error (_("Unreasonable jump request"));
878     }
879 
880   sal = sals.sals[0];
881   xfree (sals.sals);
882 
883   if (sal.symtab == 0 && sal.pc == 0)
884     error (_("No source file has been specified."));
885 
886   resolve_sal_pc (&sal);	/* May error out */
887 
888   /* See if we are trying to jump to another function. */
889   fn = get_frame_function (get_current_frame ());
890   sfn = find_pc_function (sal.pc);
891   if (fn != NULL && sfn != fn)
892     {
893       if (!query ("Line %d is not in `%s'.  Jump anyway? ", sal.line,
894 		  SYMBOL_PRINT_NAME (fn)))
895 	{
896 	  error (_("Not confirmed."));
897 	  /* NOTREACHED */
898 	}
899     }
900 
901   if (sfn != NULL)
902     {
903       fixup_symbol_section (sfn, 0);
904       if (section_is_overlay (SYMBOL_BFD_SECTION (sfn)) &&
905 	  !section_is_mapped (SYMBOL_BFD_SECTION (sfn)))
906 	{
907 	  if (!query ("WARNING!!!  Destination is in unmapped overlay!  Jump anyway? "))
908 	    {
909 	      error (_("Not confirmed."));
910 	      /* NOTREACHED */
911 	    }
912 	}
913     }
914 
915   addr = sal.pc;
916 
917   if (from_tty)
918     {
919       printf_filtered (_("Continuing at "));
920       deprecated_print_address_numeric (addr, 1, gdb_stdout);
921       printf_filtered (".\n");
922     }
923 
924   clear_proceed_status ();
925   proceed (addr, TARGET_SIGNAL_0, 0);
926 }
927 
928 
929 /* Go to line or address in current procedure */
930 static void
go_command(char * line_no,int from_tty)931 go_command (char *line_no, int from_tty)
932 {
933   if (line_no == (char *) NULL || !*line_no)
934     printf_filtered (GO_USAGE);
935   else
936     {
937       tbreak_command (line_no, from_tty);
938       jump_command (line_no, from_tty);
939     }
940 }
941 
942 
943 /* Continue program giving it specified signal.  */
944 
945 static void
signal_command(char * signum_exp,int from_tty)946 signal_command (char *signum_exp, int from_tty)
947 {
948   enum target_signal oursig;
949 
950   dont_repeat ();		/* Too dangerous.  */
951   ERROR_NO_INFERIOR;
952 
953   if (!signum_exp)
954     error_no_arg (_("signal number"));
955 
956   /* It would be even slicker to make signal names be valid expressions,
957      (the type could be "enum $signal" or some such), then the user could
958      assign them to convenience variables.  */
959   oursig = target_signal_from_name (signum_exp);
960 
961   if (oursig == TARGET_SIGNAL_UNKNOWN)
962     {
963       /* No, try numeric.  */
964       int num = parse_and_eval_long (signum_exp);
965 
966       if (num == 0)
967 	oursig = TARGET_SIGNAL_0;
968       else
969 	oursig = target_signal_from_command (num);
970     }
971 
972   if (from_tty)
973     {
974       if (oursig == TARGET_SIGNAL_0)
975 	printf_filtered (_("Continuing with no signal.\n"));
976       else
977 	printf_filtered (_("Continuing with signal %s.\n"),
978 			 target_signal_to_name (oursig));
979     }
980 
981   clear_proceed_status ();
982   /* "signal 0" should not get stuck if we are stopped at a breakpoint.
983      FIXME: Neither should "signal foo" but when I tried passing
984      (CORE_ADDR)-1 unconditionally I got a testsuite failure which I haven't
985      tried to track down yet.  */
986   proceed (oursig == TARGET_SIGNAL_0 ? (CORE_ADDR) -1 : stop_pc, oursig, 0);
987 }
988 
989 /* Proceed until we reach a different source line with pc greater than
990    our current one or exit the function.  We skip calls in both cases.
991 
992    Note that eventually this command should probably be changed so
993    that only source lines are printed out when we hit the breakpoint
994    we set.  This may involve changes to wait_for_inferior and the
995    proceed status code.  */
996 
997 static void
until_next_command(int from_tty)998 until_next_command (int from_tty)
999 {
1000   struct frame_info *frame;
1001   CORE_ADDR pc;
1002   struct symbol *func;
1003   struct symtab_and_line sal;
1004 
1005   clear_proceed_status ();
1006 
1007   frame = get_current_frame ();
1008 
1009   /* Step until either exited from this function or greater
1010      than the current line (if in symbolic section) or pc (if
1011      not). */
1012 
1013   pc = read_pc ();
1014   func = find_pc_function (pc);
1015 
1016   if (!func)
1017     {
1018       struct minimal_symbol *msymbol = lookup_minimal_symbol_by_pc (pc);
1019 
1020       if (msymbol == NULL)
1021 	error (_("Execution is not within a known function."));
1022 
1023       step_range_start = SYMBOL_VALUE_ADDRESS (msymbol);
1024       step_range_end = pc;
1025     }
1026   else
1027     {
1028       sal = find_pc_line (pc, 0);
1029 
1030       step_range_start = BLOCK_START (SYMBOL_BLOCK_VALUE (func));
1031       step_range_end = sal.end;
1032     }
1033 
1034   step_over_calls = STEP_OVER_ALL;
1035   step_frame_id = get_frame_id (frame);
1036 
1037   step_multi = 0;		/* Only one call to proceed */
1038 
1039   proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 1);
1040 }
1041 
1042 static void
until_command(char * arg,int from_tty)1043 until_command (char *arg, int from_tty)
1044 {
1045   int async_exec = 0;
1046 
1047   if (!target_has_execution)
1048     error (_("The program is not running."));
1049 
1050   /* Find out whether we must run in the background. */
1051   if (arg != NULL)
1052     async_exec = strip_bg_char (&arg);
1053 
1054   /* If we must run in the background, but the target can't do it,
1055      error out. */
1056   if (async_exec && !target_can_async_p ())
1057     error (_("Asynchronous execution not supported on this target."));
1058 
1059   /* If we are not asked to run in the bg, then prepare to run in the
1060      foreground, synchronously. */
1061   if (!async_exec && target_can_async_p ())
1062     {
1063       /* Simulate synchronous execution */
1064       async_disable_stdin ();
1065     }
1066 
1067   if (arg)
1068     until_break_command (arg, from_tty, 0);
1069   else
1070     until_next_command (from_tty);
1071 }
1072 
1073 static void
advance_command(char * arg,int from_tty)1074 advance_command (char *arg, int from_tty)
1075 {
1076   int async_exec = 0;
1077 
1078   if (!target_has_execution)
1079     error (_("The program is not running."));
1080 
1081   if (arg == NULL)
1082     error_no_arg (_("a location"));
1083 
1084   /* Find out whether we must run in the background.  */
1085   if (arg != NULL)
1086     async_exec = strip_bg_char (&arg);
1087 
1088   /* If we must run in the background, but the target can't do it,
1089      error out.  */
1090   if (async_exec && !target_can_async_p ())
1091     error (_("Asynchronous execution not supported on this target."));
1092 
1093   /* If we are not asked to run in the bg, then prepare to run in the
1094      foreground, synchronously.  */
1095   if (!async_exec && target_can_async_p ())
1096     {
1097       /* Simulate synchronous execution.  */
1098       async_disable_stdin ();
1099     }
1100 
1101   until_break_command (arg, from_tty, 1);
1102 }
1103 
1104 /* Print the result of a function at the end of a 'finish' command.  */
1105 
1106 static void
print_return_value(int struct_return,struct type * value_type)1107 print_return_value (int struct_return, struct type *value_type)
1108 {
1109   struct gdbarch *gdbarch = current_gdbarch;
1110   struct cleanup *old_chain;
1111   struct ui_stream *stb;
1112   struct value *value;
1113 
1114   gdb_assert (TYPE_CODE (value_type) != TYPE_CODE_VOID);
1115 
1116   /* FIXME: 2003-09-27: When returning from a nested inferior function
1117      call, it's possible (with no help from the architecture vector)
1118      to locate and return/print a "struct return" value.  This is just
1119      a more complicated case of what is already being done in in the
1120      inferior function call code.  In fact, when inferior function
1121      calls are made async, this will likely be made the norm.  */
1122 
1123   switch (gdbarch_return_value (gdbarch, value_type, NULL, NULL, NULL))
1124     {
1125     case RETURN_VALUE_REGISTER_CONVENTION:
1126     case RETURN_VALUE_ABI_RETURNS_ADDRESS:
1127       value = allocate_value (value_type);
1128       CHECK_TYPEDEF (value_type);
1129       gdbarch_return_value (current_gdbarch, value_type, stop_registers,
1130 			    value_contents_raw (value), NULL);
1131       break;
1132     case RETURN_VALUE_STRUCT_CONVENTION:
1133       value = NULL;
1134       break;
1135     default:
1136       internal_error (__FILE__, __LINE__, _("bad switch"));
1137     }
1138 
1139   if (value)
1140     {
1141       /* Print it.  */
1142       stb = ui_out_stream_new (uiout);
1143       old_chain = make_cleanup_ui_out_stream_delete (stb);
1144       ui_out_text (uiout, "Value returned is ");
1145       ui_out_field_fmt (uiout, "gdb-result-var", "$%d",
1146 			record_latest_value (value));
1147       ui_out_text (uiout, " = ");
1148       value_print (value, stb->stream, 0, Val_no_prettyprint);
1149       ui_out_field_stream (uiout, "return-value", stb);
1150       ui_out_text (uiout, "\n");
1151       do_cleanups (old_chain);
1152     }
1153   else
1154     {
1155       ui_out_text (uiout, "Value returned has type: ");
1156       ui_out_field_string (uiout, "return-type", TYPE_NAME (value_type));
1157       ui_out_text (uiout, ".");
1158       ui_out_text (uiout, " Cannot determine contents\n");
1159     }
1160 }
1161 
1162 /* Stuff that needs to be done by the finish command after the target
1163    has stopped.  In asynchronous mode, we wait for the target to stop
1164    in the call to poll or select in the event loop, so it is
1165    impossible to do all the stuff as part of the finish_command
1166    function itself.  The only chance we have to complete this command
1167    is in fetch_inferior_event, which is called by the event loop as
1168    soon as it detects that the target has stopped. This function is
1169    called via the cmd_continuation pointer.  */
1170 
1171 static void
finish_command_continuation(struct continuation_arg * arg)1172 finish_command_continuation (struct continuation_arg *arg)
1173 {
1174   struct symbol *function;
1175   struct breakpoint *breakpoint;
1176   struct cleanup *cleanups;
1177 
1178   breakpoint = (struct breakpoint *) arg->data.pointer;
1179   function = (struct symbol *) arg->next->data.pointer;
1180   cleanups = (struct cleanup *) arg->next->next->data.pointer;
1181 
1182   if (bpstat_find_breakpoint (stop_bpstat, breakpoint) != NULL
1183       && function != NULL)
1184     {
1185       struct type *value_type;
1186       int struct_return;
1187       int gcc_compiled;
1188 
1189       value_type = TYPE_TARGET_TYPE (SYMBOL_TYPE (function));
1190       if (!value_type)
1191 	internal_error (__FILE__, __LINE__,
1192 			_("finish_command: function has no target type"));
1193 
1194       if (TYPE_CODE (value_type) == TYPE_CODE_VOID)
1195 	{
1196 	  do_exec_cleanups (cleanups);
1197 	  return;
1198 	}
1199 
1200       CHECK_TYPEDEF (value_type);
1201       gcc_compiled = BLOCK_GCC_COMPILED (SYMBOL_BLOCK_VALUE (function));
1202       struct_return = using_struct_return (value_type, gcc_compiled);
1203 
1204       print_return_value (struct_return, value_type);
1205     }
1206 
1207   do_exec_cleanups (cleanups);
1208 }
1209 
1210 /* "finish": Set a temporary breakpoint at the place the selected
1211    frame will return to, then continue.  */
1212 
1213 static void
finish_command(char * arg,int from_tty)1214 finish_command (char *arg, int from_tty)
1215 {
1216   struct symtab_and_line sal;
1217   struct frame_info *frame;
1218   struct symbol *function;
1219   struct breakpoint *breakpoint;
1220   struct cleanup *old_chain;
1221   struct continuation_arg *arg1, *arg2, *arg3;
1222 
1223   int async_exec = 0;
1224 
1225   /* Find out whether we must run in the background.  */
1226   if (arg != NULL)
1227     async_exec = strip_bg_char (&arg);
1228 
1229   /* If we must run in the background, but the target can't do it,
1230      error out.  */
1231   if (async_exec && !target_can_async_p ())
1232     error (_("Asynchronous execution not supported on this target."));
1233 
1234   /* If we are not asked to run in the bg, then prepare to run in the
1235      foreground, synchronously.  */
1236   if (!async_exec && target_can_async_p ())
1237     {
1238       /* Simulate synchronous execution.  */
1239       async_disable_stdin ();
1240     }
1241 
1242   if (arg)
1243     error (_("The \"finish\" command does not take any arguments."));
1244   if (!target_has_execution)
1245     error (_("The program is not running."));
1246   if (deprecated_selected_frame == NULL)
1247     error (_("No selected frame."));
1248 
1249   frame = get_prev_frame (deprecated_selected_frame);
1250   if (frame == 0)
1251     error (_("\"finish\" not meaningful in the outermost frame."));
1252 
1253   clear_proceed_status ();
1254 
1255   sal = find_pc_line (get_frame_pc (frame), 0);
1256   sal.pc = get_frame_pc (frame);
1257 
1258   breakpoint = set_momentary_breakpoint (sal, get_frame_id (frame), bp_finish);
1259 
1260   if (!target_can_async_p ())
1261     old_chain = make_cleanup_delete_breakpoint (breakpoint);
1262   else
1263     old_chain = make_exec_cleanup_delete_breakpoint (breakpoint);
1264 
1265   /* Find the function we will return from.  */
1266 
1267   function = find_pc_function (get_frame_pc (deprecated_selected_frame));
1268 
1269   /* Print info on the selected frame, including level number but not
1270      source.  */
1271   if (from_tty)
1272     {
1273       printf_filtered (_("Run till exit from "));
1274       print_stack_frame (get_selected_frame (NULL), 1, LOCATION);
1275     }
1276 
1277   /* If running asynchronously and the target support asynchronous
1278      execution, set things up for the rest of the finish command to be
1279      completed later on, when gdb has detected that the target has
1280      stopped, in fetch_inferior_event.  */
1281   if (target_can_async_p ())
1282     {
1283       arg1 =
1284 	(struct continuation_arg *) xmalloc (sizeof (struct continuation_arg));
1285       arg2 =
1286 	(struct continuation_arg *) xmalloc (sizeof (struct continuation_arg));
1287       arg3 =
1288 	(struct continuation_arg *) xmalloc (sizeof (struct continuation_arg));
1289       arg1->next = arg2;
1290       arg2->next = arg3;
1291       arg3->next = NULL;
1292       arg1->data.pointer = breakpoint;
1293       arg2->data.pointer = function;
1294       arg3->data.pointer = old_chain;
1295       add_continuation (finish_command_continuation, arg1);
1296     }
1297 
1298   proceed_to_finish = 1;	/* We want stop_registers, please...  */
1299   proceed ((CORE_ADDR) -1, TARGET_SIGNAL_DEFAULT, 0);
1300 
1301   /* Do this only if not running asynchronously or if the target
1302      cannot do async execution.  Otherwise, complete this command when
1303      the target actually stops, in fetch_inferior_event.  */
1304   if (!target_can_async_p ())
1305     {
1306       /* Did we stop at our breakpoint?  */
1307       if (bpstat_find_breakpoint (stop_bpstat, breakpoint) != NULL
1308 	  && function != NULL)
1309 	{
1310 	  struct type *value_type;
1311 	  int struct_return;
1312 	  int gcc_compiled;
1313 
1314 	  value_type = TYPE_TARGET_TYPE (SYMBOL_TYPE (function));
1315 	  if (!value_type)
1316 	    internal_error (__FILE__, __LINE__,
1317 			    _("finish_command: function has no target type"));
1318 
1319 	  /* FIXME: Shouldn't we do the cleanups before returning?  */
1320 	  if (TYPE_CODE (value_type) == TYPE_CODE_VOID)
1321 	    return;
1322 
1323 	  CHECK_TYPEDEF (value_type);
1324 	  gcc_compiled = BLOCK_GCC_COMPILED (SYMBOL_BLOCK_VALUE (function));
1325 	  struct_return = using_struct_return (value_type, gcc_compiled);
1326 
1327 	  print_return_value (struct_return, value_type);
1328 	}
1329 
1330       do_cleanups (old_chain);
1331     }
1332 }
1333 
1334 
1335 static void
program_info(char * args,int from_tty)1336 program_info (char *args, int from_tty)
1337 {
1338   bpstat bs = stop_bpstat;
1339   int num = bpstat_num (&bs);
1340 
1341   if (!target_has_execution)
1342     {
1343       printf_filtered (_("The program being debugged is not being run.\n"));
1344       return;
1345     }
1346 
1347   target_files_info ();
1348   printf_filtered (_("Program stopped at %s.\n"),
1349 		   hex_string ((unsigned long) stop_pc));
1350   if (stop_step)
1351     printf_filtered (_("It stopped after being stepped.\n"));
1352   else if (num != 0)
1353     {
1354       /* There may be several breakpoints in the same place, so this
1355          isn't as strange as it seems.  */
1356       while (num != 0)
1357 	{
1358 	  if (num < 0)
1359 	    {
1360 	      printf_filtered (_("\
1361 It stopped at a breakpoint that has since been deleted.\n"));
1362 	    }
1363 	  else
1364 	    printf_filtered (_("It stopped at breakpoint %d.\n"), num);
1365 	  num = bpstat_num (&bs);
1366 	}
1367     }
1368   else if (stop_signal != TARGET_SIGNAL_0)
1369     {
1370       printf_filtered (_("It stopped with signal %s, %s.\n"),
1371 		       target_signal_to_name (stop_signal),
1372 		       target_signal_to_string (stop_signal));
1373     }
1374 
1375   if (!from_tty)
1376     {
1377       printf_filtered (_("\
1378 Type \"info stack\" or \"info registers\" for more information.\n"));
1379     }
1380 }
1381 
1382 static void
environment_info(char * var,int from_tty)1383 environment_info (char *var, int from_tty)
1384 {
1385   if (var)
1386     {
1387       char *val = get_in_environ (inferior_environ, var);
1388       if (val)
1389 	{
1390 	  puts_filtered (var);
1391 	  puts_filtered (" = ");
1392 	  puts_filtered (val);
1393 	  puts_filtered ("\n");
1394 	}
1395       else
1396 	{
1397 	  puts_filtered ("Environment variable \"");
1398 	  puts_filtered (var);
1399 	  puts_filtered ("\" not defined.\n");
1400 	}
1401     }
1402   else
1403     {
1404       char **vector = environ_vector (inferior_environ);
1405       while (*vector)
1406 	{
1407 	  puts_filtered (*vector++);
1408 	  puts_filtered ("\n");
1409 	}
1410     }
1411 }
1412 
1413 static void
set_environment_command(char * arg,int from_tty)1414 set_environment_command (char *arg, int from_tty)
1415 {
1416   char *p, *val, *var;
1417   int nullset = 0;
1418 
1419   if (arg == 0)
1420     error_no_arg (_("environment variable and value"));
1421 
1422   /* Find seperation between variable name and value */
1423   p = (char *) strchr (arg, '=');
1424   val = (char *) strchr (arg, ' ');
1425 
1426   if (p != 0 && val != 0)
1427     {
1428       /* We have both a space and an equals.  If the space is before the
1429          equals, walk forward over the spaces til we see a nonspace
1430          (possibly the equals). */
1431       if (p > val)
1432 	while (*val == ' ')
1433 	  val++;
1434 
1435       /* Now if the = is after the char following the spaces,
1436          take the char following the spaces.  */
1437       if (p > val)
1438 	p = val - 1;
1439     }
1440   else if (val != 0 && p == 0)
1441     p = val;
1442 
1443   if (p == arg)
1444     error_no_arg (_("environment variable to set"));
1445 
1446   if (p == 0 || p[1] == 0)
1447     {
1448       nullset = 1;
1449       if (p == 0)
1450 	p = arg + strlen (arg);	/* So that savestring below will work */
1451     }
1452   else
1453     {
1454       /* Not setting variable value to null */
1455       val = p + 1;
1456       while (*val == ' ' || *val == '\t')
1457 	val++;
1458     }
1459 
1460   while (p != arg && (p[-1] == ' ' || p[-1] == '\t'))
1461     p--;
1462 
1463   var = savestring (arg, p - arg);
1464   if (nullset)
1465     {
1466       printf_filtered (_("\
1467 Setting environment variable \"%s\" to null value.\n"),
1468 		       var);
1469       set_in_environ (inferior_environ, var, "");
1470     }
1471   else
1472     set_in_environ (inferior_environ, var, val);
1473   xfree (var);
1474 }
1475 
1476 static void
unset_environment_command(char * var,int from_tty)1477 unset_environment_command (char *var, int from_tty)
1478 {
1479   if (var == 0)
1480     {
1481       /* If there is no argument, delete all environment variables.
1482          Ask for confirmation if reading from the terminal.  */
1483       if (!from_tty || query (_("Delete all environment variables? ")))
1484 	{
1485 	  free_environ (inferior_environ);
1486 	  inferior_environ = make_environ ();
1487 	}
1488     }
1489   else
1490     unset_in_environ (inferior_environ, var);
1491 }
1492 
1493 /* Handle the execution path (PATH variable) */
1494 
1495 static const char path_var_name[] = "PATH";
1496 
1497 static void
path_info(char * args,int from_tty)1498 path_info (char *args, int from_tty)
1499 {
1500   puts_filtered ("Executable and object file path: ");
1501   puts_filtered (get_in_environ (inferior_environ, path_var_name));
1502   puts_filtered ("\n");
1503 }
1504 
1505 /* Add zero or more directories to the front of the execution path.  */
1506 
1507 static void
path_command(char * dirname,int from_tty)1508 path_command (char *dirname, int from_tty)
1509 {
1510   char *exec_path;
1511   char *env;
1512   dont_repeat ();
1513   env = get_in_environ (inferior_environ, path_var_name);
1514   /* Can be null if path is not set */
1515   if (!env)
1516     env = "";
1517   exec_path = xstrdup (env);
1518   mod_path (dirname, &exec_path);
1519   set_in_environ (inferior_environ, path_var_name, exec_path);
1520   xfree (exec_path);
1521   if (from_tty)
1522     path_info ((char *) NULL, from_tty);
1523 }
1524 
1525 
1526 /* Print out the machine register regnum. If regnum is -1, print all
1527    registers (print_all == 1) or all non-float and non-vector
1528    registers (print_all == 0).
1529 
1530    For most machines, having all_registers_info() print the
1531    register(s) one per line is good enough.  If a different format is
1532    required, (eg, for MIPS or Pyramid 90x, which both have lots of
1533    regs), or there is an existing convention for showing all the
1534    registers, define the architecture method PRINT_REGISTERS_INFO to
1535    provide that format.  */
1536 
1537 void
default_print_registers_info(struct gdbarch * gdbarch,struct ui_file * file,struct frame_info * frame,int regnum,int print_all)1538 default_print_registers_info (struct gdbarch *gdbarch,
1539 			      struct ui_file *file,
1540 			      struct frame_info *frame,
1541 			      int regnum, int print_all)
1542 {
1543   int i;
1544   const int numregs = NUM_REGS + NUM_PSEUDO_REGS;
1545   gdb_byte buffer[MAX_REGISTER_SIZE];
1546 
1547   for (i = 0; i < numregs; i++)
1548     {
1549       /* Decide between printing all regs, non-float / vector regs, or
1550          specific reg.  */
1551       if (regnum == -1)
1552 	{
1553 	  if (print_all)
1554 	    {
1555 	      if (!gdbarch_register_reggroup_p (gdbarch, i, all_reggroup))
1556 		continue;
1557 	    }
1558 	  else
1559 	    {
1560 	      if (!gdbarch_register_reggroup_p (gdbarch, i, general_reggroup))
1561 		continue;
1562 	    }
1563 	}
1564       else
1565 	{
1566 	  if (i != regnum)
1567 	    continue;
1568 	}
1569 
1570       /* If the register name is empty, it is undefined for this
1571          processor, so don't display anything.  */
1572       if (REGISTER_NAME (i) == NULL || *(REGISTER_NAME (i)) == '\0')
1573 	continue;
1574 
1575       fputs_filtered (REGISTER_NAME (i), file);
1576       print_spaces_filtered (15 - strlen (REGISTER_NAME (i)), file);
1577 
1578       /* Get the data in raw format.  */
1579       if (! frame_register_read (frame, i, buffer))
1580 	{
1581 	  fprintf_filtered (file, "*value not available*\n");
1582 	  continue;
1583 	}
1584 
1585       /* If virtual format is floating, print it that way, and in raw
1586          hex.  */
1587       if (TYPE_CODE (register_type (current_gdbarch, i)) == TYPE_CODE_FLT)
1588 	{
1589 	  int j;
1590 
1591 	  val_print (register_type (current_gdbarch, i), buffer, 0, 0,
1592 		     file, 0, 1, 0, Val_pretty_default);
1593 
1594 	  fprintf_filtered (file, "\t(raw 0x");
1595 	  for (j = 0; j < register_size (current_gdbarch, i); j++)
1596 	    {
1597 	      int idx;
1598 	      if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG)
1599 		idx = j;
1600 	      else
1601 		idx = register_size (current_gdbarch, i) - 1 - j;
1602 	      fprintf_filtered (file, "%02x", (unsigned char) buffer[idx]);
1603 	    }
1604 	  fprintf_filtered (file, ")");
1605 	}
1606       else
1607 	{
1608 	  /* Print the register in hex.  */
1609 	  val_print (register_type (current_gdbarch, i), buffer, 0, 0,
1610 		     file, 'x', 1, 0, Val_pretty_default);
1611           /* If not a vector register, print it also according to its
1612              natural format.  */
1613 	  if (TYPE_VECTOR (register_type (current_gdbarch, i)) == 0)
1614 	    {
1615 	      fprintf_filtered (file, "\t");
1616 	      val_print (register_type (current_gdbarch, i), buffer, 0, 0,
1617 			 file, 0, 1, 0, Val_pretty_default);
1618 	    }
1619 	}
1620 
1621       fprintf_filtered (file, "\n");
1622     }
1623 }
1624 
1625 void
registers_info(char * addr_exp,int fpregs)1626 registers_info (char *addr_exp, int fpregs)
1627 {
1628   int regnum, numregs;
1629   char *end;
1630 
1631   if (!target_has_registers)
1632     error (_("The program has no registers now."));
1633   if (deprecated_selected_frame == NULL)
1634     error (_("No selected frame."));
1635 
1636   if (!addr_exp)
1637     {
1638       gdbarch_print_registers_info (current_gdbarch, gdb_stdout,
1639 				    deprecated_selected_frame, -1, fpregs);
1640       return;
1641     }
1642 
1643   while (*addr_exp != '\0')
1644     {
1645       char *start;
1646       const char *end;
1647 
1648       /* Keep skipping leading white space.  */
1649       if (isspace ((*addr_exp)))
1650 	{
1651 	  addr_exp++;
1652 	  continue;
1653 	}
1654 
1655       /* Discard any leading ``$''.  Check that there is something
1656          resembling a register following it.  */
1657       if (addr_exp[0] == '$')
1658 	addr_exp++;
1659       if (isspace ((*addr_exp)) || (*addr_exp) == '\0')
1660 	error (_("Missing register name"));
1661 
1662       /* Find the start/end of this register name/num/group.  */
1663       start = addr_exp;
1664       while ((*addr_exp) != '\0' && !isspace ((*addr_exp)))
1665 	addr_exp++;
1666       end = addr_exp;
1667 
1668       /* Figure out what we've found and display it.  */
1669 
1670       /* A register name?  */
1671       {
1672 	int regnum = frame_map_name_to_regnum (deprecated_selected_frame,
1673 					       start, end - start);
1674 	if (regnum >= 0)
1675 	  {
1676 	    gdbarch_print_registers_info (current_gdbarch, gdb_stdout,
1677 					  deprecated_selected_frame, regnum, fpregs);
1678 	    continue;
1679 	  }
1680       }
1681 
1682       /* A register number?  (how portable is this one?).  */
1683       {
1684 	char *endptr;
1685 	int regnum = strtol (start, &endptr, 0);
1686 	if (endptr == end
1687 	    && regnum >= 0
1688 	    && regnum < NUM_REGS + NUM_PSEUDO_REGS)
1689 	  {
1690 	    gdbarch_print_registers_info (current_gdbarch, gdb_stdout,
1691 					  deprecated_selected_frame, regnum, fpregs);
1692 	    continue;
1693 	  }
1694       }
1695 
1696       /* A register group?  */
1697       {
1698 	struct reggroup *group;
1699 	for (group = reggroup_next (current_gdbarch, NULL);
1700 	     group != NULL;
1701 	     group = reggroup_next (current_gdbarch, group))
1702 	  {
1703 	    /* Don't bother with a length check.  Should the user
1704 	       enter a short register group name, go with the first
1705 	       group that matches.  */
1706 	    if (strncmp (start, reggroup_name (group), end - start) == 0)
1707 	      break;
1708 	  }
1709 	if (group != NULL)
1710 	  {
1711 	    int regnum;
1712 	    for (regnum = 0; regnum < NUM_REGS + NUM_PSEUDO_REGS; regnum++)
1713 	      {
1714 		if (gdbarch_register_reggroup_p (current_gdbarch, regnum,
1715 						 group))
1716 		  gdbarch_print_registers_info (current_gdbarch,
1717 						gdb_stdout, deprecated_selected_frame,
1718 						regnum, fpregs);
1719 	      }
1720 	    continue;
1721 	  }
1722       }
1723 
1724       /* Nothing matched.  */
1725       error (_("Invalid register `%.*s'"), (int) (end - start), start);
1726     }
1727 }
1728 
1729 void
all_registers_info(char * addr_exp,int from_tty)1730 all_registers_info (char *addr_exp, int from_tty)
1731 {
1732   registers_info (addr_exp, 1);
1733 }
1734 
1735 static void
nofp_registers_info(char * addr_exp,int from_tty)1736 nofp_registers_info (char *addr_exp, int from_tty)
1737 {
1738   registers_info (addr_exp, 0);
1739 }
1740 
1741 static void
print_vector_info(struct gdbarch * gdbarch,struct ui_file * file,struct frame_info * frame,const char * args)1742 print_vector_info (struct gdbarch *gdbarch, struct ui_file *file,
1743 		   struct frame_info *frame, const char *args)
1744 {
1745   if (!target_has_registers)
1746     error (_("The program has no registers now."));
1747   if (deprecated_selected_frame == NULL)
1748     error (_("No selected frame."));
1749 
1750   if (gdbarch_print_vector_info_p (gdbarch))
1751     gdbarch_print_vector_info (gdbarch, file, frame, args);
1752   else
1753     {
1754       int regnum;
1755       int printed_something = 0;
1756 
1757       for (regnum = 0; regnum < NUM_REGS + NUM_PSEUDO_REGS; regnum++)
1758 	{
1759 	  if (gdbarch_register_reggroup_p (gdbarch, regnum, vector_reggroup))
1760 	    {
1761 	      printed_something = 1;
1762 	      gdbarch_print_registers_info (gdbarch, file, frame, regnum, 1);
1763 	    }
1764 	}
1765       if (!printed_something)
1766 	fprintf_filtered (file, "No vector information\n");
1767     }
1768 }
1769 
1770 static void
vector_info(char * args,int from_tty)1771 vector_info (char *args, int from_tty)
1772 {
1773   print_vector_info (current_gdbarch, gdb_stdout, deprecated_selected_frame, args);
1774 }
1775 
1776 
1777 /*
1778  * TODO:
1779  * Should save/restore the tty state since it might be that the
1780  * program to be debugged was started on this tty and it wants
1781  * the tty in some state other than what we want.  If it's running
1782  * on another terminal or without a terminal, then saving and
1783  * restoring the tty state is a harmless no-op.
1784  * This only needs to be done if we are attaching to a process.
1785  */
1786 
1787 /*
1788    attach_command --
1789    takes a program started up outside of gdb and ``attaches'' to it.
1790    This stops it cold in its tracks and allows us to start debugging it.
1791    and wait for the trace-trap that results from attaching.  */
1792 
1793 void
attach_command(char * args,int from_tty)1794 attach_command (char *args, int from_tty)
1795 {
1796   char *exec_file;
1797   char *full_exec_path = NULL;
1798 
1799   dont_repeat ();		/* Not for the faint of heart */
1800 
1801   if (target_has_execution)
1802     {
1803       if (query ("A program is being debugged already.  Kill it? "))
1804 	target_kill ();
1805       else
1806 	error (_("Not killed."));
1807     }
1808 
1809   /* Clear out solib state. Otherwise the solib state of the previous
1810      inferior might have survived and is entirely wrong for the new
1811      target.  This has been observed on Linux using glibc 2.3. How to
1812      reproduce:
1813 
1814      bash$ ./foo&
1815      [1] 4711
1816      bash$ ./foo&
1817      [1] 4712
1818      bash$ gdb ./foo
1819      [...]
1820      (gdb) attach 4711
1821      (gdb) detach
1822      (gdb) attach 4712
1823      Cannot access memory at address 0xdeadbeef
1824   */
1825 #ifdef CLEAR_SOLIB
1826       CLEAR_SOLIB ();
1827 #else
1828       clear_solib ();
1829 #endif
1830 
1831   target_attach (args, from_tty);
1832 
1833   /* Set up the "saved terminal modes" of the inferior
1834      based on what modes we are starting it with.  */
1835   target_terminal_init ();
1836 
1837   /* Set up execution context to know that we should return from
1838      wait_for_inferior as soon as the target reports a stop.  */
1839   init_wait_for_inferior ();
1840   clear_proceed_status ();
1841 
1842   /* No traps are generated when attaching to inferior under Mach 3
1843      or GNU hurd.  */
1844 #ifndef ATTACH_NO_WAIT
1845   /* Careful here. See comments in inferior.h.  Basically some OSes
1846      don't ignore SIGSTOPs on continue requests anymore.  We need a
1847      way for handle_inferior_event to reset the stop_signal variable
1848      after an attach, and this is what STOP_QUIETLY_NO_SIGSTOP is for.  */
1849   stop_soon = STOP_QUIETLY_NO_SIGSTOP;
1850   wait_for_inferior ();
1851   stop_soon = NO_STOP_QUIETLY;
1852 #endif
1853 
1854   /*
1855    * If no exec file is yet known, try to determine it from the
1856    * process itself.
1857    */
1858   exec_file = (char *) get_exec_file (0);
1859   if (!exec_file)
1860     {
1861       exec_file = target_pid_to_exec_file (PIDGET (inferior_ptid));
1862       if (exec_file)
1863 	{
1864 	  /* It's possible we don't have a full path, but rather just a
1865 	     filename.  Some targets, such as HP-UX, don't provide the
1866 	     full path, sigh.
1867 
1868 	     Attempt to qualify the filename against the source path.
1869 	     (If that fails, we'll just fall back on the original
1870 	     filename.  Not much more we can do...)
1871 	   */
1872 	  if (!source_full_path_of (exec_file, &full_exec_path))
1873 	    full_exec_path = savestring (exec_file, strlen (exec_file));
1874 
1875 	  exec_file_attach (full_exec_path, from_tty);
1876 	  symbol_file_add_main (full_exec_path, from_tty);
1877 	}
1878     }
1879   else
1880     {
1881       reopen_exec_file ();
1882       reread_symbols ();
1883     }
1884 
1885 #ifdef SOLIB_ADD
1886   /* Add shared library symbols from the newly attached process, if any.  */
1887   SOLIB_ADD ((char *) 0, from_tty, &current_target, auto_solib_add);
1888 #else
1889   solib_add (NULL, from_tty, &current_target, auto_solib_add);
1890 #endif
1891   re_enable_breakpoints_in_shlibs ();
1892 
1893   /* Take any necessary post-attaching actions for this platform.
1894    */
1895   target_post_attach (PIDGET (inferior_ptid));
1896 
1897   /* Install inferior's terminal modes.  */
1898   target_terminal_inferior ();
1899 
1900   normal_stop ();
1901 
1902   if (deprecated_attach_hook)
1903     deprecated_attach_hook ();
1904 }
1905 
1906 /*
1907  * detach_command --
1908  * takes a program previously attached to and detaches it.
1909  * The program resumes execution and will no longer stop
1910  * on signals, etc.  We better not have left any breakpoints
1911  * in the program or it'll die when it hits one.  For this
1912  * to work, it may be necessary for the process to have been
1913  * previously attached.  It *might* work if the program was
1914  * started via the normal ptrace (PTRACE_TRACEME).
1915  */
1916 
1917 static void
detach_command(char * args,int from_tty)1918 detach_command (char *args, int from_tty)
1919 {
1920   dont_repeat ();		/* Not for the faint of heart.  */
1921   target_detach (args, from_tty);
1922 #if defined(SOLIB_RESTART)
1923   SOLIB_RESTART ();
1924 #endif
1925   if (deprecated_detach_hook)
1926     deprecated_detach_hook ();
1927 }
1928 
1929 /* Disconnect from the current target without resuming it (leaving it
1930    waiting for a debugger).
1931 
1932    We'd better not have left any breakpoints in the program or the
1933    next debugger will get confused.  Currently only supported for some
1934    remote targets, since the normal attach mechanisms don't work on
1935    stopped processes on some native platforms (e.g. GNU/Linux).  */
1936 
1937 static void
disconnect_command(char * args,int from_tty)1938 disconnect_command (char *args, int from_tty)
1939 {
1940   dont_repeat ();		/* Not for the faint of heart */
1941   target_disconnect (args, from_tty);
1942 #if defined(SOLIB_RESTART)
1943   SOLIB_RESTART ();
1944 #endif
1945   if (deprecated_detach_hook)
1946     deprecated_detach_hook ();
1947 }
1948 
1949 /* Stop the execution of the target while running in async mode, in
1950    the backgound. */
1951 void
interrupt_target_command(char * args,int from_tty)1952 interrupt_target_command (char *args, int from_tty)
1953 {
1954   if (target_can_async_p ())
1955     {
1956       dont_repeat ();		/* Not for the faint of heart */
1957       target_stop ();
1958     }
1959 }
1960 
1961 static void
print_float_info(struct gdbarch * gdbarch,struct ui_file * file,struct frame_info * frame,const char * args)1962 print_float_info (struct gdbarch *gdbarch, struct ui_file *file,
1963 		  struct frame_info *frame, const char *args)
1964 {
1965   if (!target_has_registers)
1966     error (_("The program has no registers now."));
1967   if (deprecated_selected_frame == NULL)
1968     error (_("No selected frame."));
1969 
1970   if (gdbarch_print_float_info_p (gdbarch))
1971     gdbarch_print_float_info (gdbarch, file, frame, args);
1972   else
1973     {
1974       int regnum;
1975       int printed_something = 0;
1976 
1977       for (regnum = 0; regnum < NUM_REGS + NUM_PSEUDO_REGS; regnum++)
1978 	{
1979 	  if (gdbarch_register_reggroup_p (gdbarch, regnum, float_reggroup))
1980 	    {
1981 	      printed_something = 1;
1982 	      gdbarch_print_registers_info (gdbarch, file, frame, regnum, 1);
1983 	    }
1984 	}
1985       if (!printed_something)
1986 	fprintf_filtered (file, "\
1987 No floating-point info available for this processor.\n");
1988     }
1989 }
1990 
1991 static void
float_info(char * args,int from_tty)1992 float_info (char *args, int from_tty)
1993 {
1994   print_float_info (current_gdbarch, gdb_stdout,
1995 		    deprecated_selected_frame, args);
1996 }
1997 
1998 static void
unset_command(char * args,int from_tty)1999 unset_command (char *args, int from_tty)
2000 {
2001   printf_filtered (_("\
2002 \"unset\" must be followed by the name of an unset subcommand.\n"));
2003   help_list (unsetlist, "unset ", -1, gdb_stdout);
2004 }
2005 
2006 void
_initialize_infcmd(void)2007 _initialize_infcmd (void)
2008 {
2009   struct cmd_list_element *c = NULL;
2010 
2011   /* add the filename of the terminal connected to inferior I/O */
2012   add_setshow_filename_cmd ("inferior-tty", class_run,
2013 			    &inferior_io_terminal, _("\
2014 Set terminal for future runs of program being debugged."), _("\
2015 Show terminal for future runs of program being debugged."), _("\
2016 Usage: set inferior-tty /dev/pts/1"), NULL, NULL, &setlist, &showlist);
2017   add_com_alias ("tty", "set inferior-tty", class_alias, 0);
2018 
2019   add_setshow_optional_filename_cmd ("args", class_run,
2020 				     &inferior_args, _("\
2021 Set argument list to give program being debugged when it is started."), _("\
2022 Show argument list to give program being debugged when it is started."), _("\
2023 Follow this command with any number of args, to be passed to the program."),
2024 				     notice_args_set,
2025 				     notice_args_read,
2026 				     &setlist, &showlist);
2027 
2028   c = add_cmd ("environment", no_class, environment_info, _("\
2029 The environment to give the program, or one variable's value.\n\
2030 With an argument VAR, prints the value of environment variable VAR to\n\
2031 give the program being debugged.  With no arguments, prints the entire\n\
2032 environment to be given to the program."), &showlist);
2033   set_cmd_completer (c, noop_completer);
2034 
2035   add_prefix_cmd ("unset", no_class, unset_command,
2036 		  _("Complement to certain \"set\" commands."),
2037 		  &unsetlist, "unset ", 0, &cmdlist);
2038 
2039   c = add_cmd ("environment", class_run, unset_environment_command, _("\
2040 Cancel environment variable VAR for the program.\n\
2041 This does not affect the program until the next \"run\" command."),
2042 	       &unsetlist);
2043   set_cmd_completer (c, noop_completer);
2044 
2045   c = add_cmd ("environment", class_run, set_environment_command, _("\
2046 Set environment variable value to give the program.\n\
2047 Arguments are VAR VALUE where VAR is variable name and VALUE is value.\n\
2048 VALUES of environment variables are uninterpreted strings.\n\
2049 This does not affect the program until the next \"run\" command."),
2050 	       &setlist);
2051   set_cmd_completer (c, noop_completer);
2052 
2053   c = add_com ("path", class_files, path_command, _("\
2054 Add directory DIR(s) to beginning of search path for object files.\n\
2055 $cwd in the path means the current working directory.\n\
2056 This path is equivalent to the $PATH shell variable.  It is a list of\n\
2057 directories, separated by colons.  These directories are searched to find\n\
2058 fully linked executable files and separately compiled object files as needed."));
2059   set_cmd_completer (c, filename_completer);
2060 
2061   c = add_cmd ("paths", no_class, path_info, _("\
2062 Current search path for finding object files.\n\
2063 $cwd in the path means the current working directory.\n\
2064 This path is equivalent to the $PATH shell variable.  It is a list of\n\
2065 directories, separated by colons.  These directories are searched to find\n\
2066 fully linked executable files and separately compiled object files as needed."),
2067 	       &showlist);
2068   set_cmd_completer (c, noop_completer);
2069 
2070   add_com ("attach", class_run, attach_command, _("\
2071 Attach to a process or file outside of GDB.\n\
2072 This command attaches to another target, of the same type as your last\n\
2073 \"target\" command (\"info files\" will show your target stack).\n\
2074 The command may take as argument a process id or a device file.\n\
2075 For a process id, you must have permission to send the process a signal,\n\
2076 and it must have the same effective uid as the debugger.\n\
2077 When using \"attach\" with a process id, the debugger finds the\n\
2078 program running in the process, looking first in the current working\n\
2079 directory, or (if not found there) using the source file search path\n\
2080 (see the \"directory\" command).  You can also use the \"file\" command\n\
2081 to specify the program, and to load its symbol table."));
2082 
2083   add_com ("detach", class_run, detach_command, _("\
2084 Detach a process or file previously attached.\n\
2085 If a process, it is no longer traced, and it continues its execution.  If\n\
2086 you were debugging a file, the file is closed and gdb no longer accesses it."));
2087 
2088   add_com ("disconnect", class_run, disconnect_command, _("\
2089 Disconnect from a target.\n\
2090 The target will wait for another debugger to connect.  Not available for\n\
2091 all targets."));
2092 
2093   add_com ("signal", class_run, signal_command, _("\
2094 Continue program giving it signal specified by the argument.\n\
2095 An argument of \"0\" means continue program without giving it a signal."));
2096 
2097   add_com ("stepi", class_run, stepi_command, _("\
2098 Step one instruction exactly.\n\
2099 Argument N means do this N times (or till program stops for another reason)."));
2100   add_com_alias ("si", "stepi", class_alias, 0);
2101 
2102   add_com ("nexti", class_run, nexti_command, _("\
2103 Step one instruction, but proceed through subroutine calls.\n\
2104 Argument N means do this N times (or till program stops for another reason)."));
2105   add_com_alias ("ni", "nexti", class_alias, 0);
2106 
2107   add_com ("finish", class_run, finish_command, _("\
2108 Execute until selected stack frame returns.\n\
2109 Upon return, the value returned is printed and put in the value history."));
2110 
2111   add_com ("next", class_run, next_command, _("\
2112 Step program, proceeding through subroutine calls.\n\
2113 Like the \"step\" command as long as subroutine calls do not happen;\n\
2114 when they do, the call is treated as one instruction.\n\
2115 Argument N means do this N times (or till program stops for another reason)."));
2116   add_com_alias ("n", "next", class_run, 1);
2117   if (xdb_commands)
2118     add_com_alias ("S", "next", class_run, 1);
2119 
2120   add_com ("step", class_run, step_command, _("\
2121 Step program until it reaches a different source line.\n\
2122 Argument N means do this N times (or till program stops for another reason)."));
2123   add_com_alias ("s", "step", class_run, 1);
2124 
2125   c = add_com ("until", class_run, until_command, _("\
2126 Execute until the program reaches a source line greater than the current\n\
2127 or a specified location (same args as break command) within the current frame."));
2128   set_cmd_completer (c, location_completer);
2129   add_com_alias ("u", "until", class_run, 1);
2130 
2131   c = add_com ("advance", class_run, advance_command, _("\
2132 Continue the program up to the given location (same form as args for break command).\n\
2133 Execution will also stop upon exit from the current stack frame."));
2134   set_cmd_completer (c, location_completer);
2135 
2136   c = add_com ("jump", class_run, jump_command, _("\
2137 Continue program being debugged at specified line or address.\n\
2138 Give as argument either LINENUM or *ADDR, where ADDR is an expression\n\
2139 for an address to start at."));
2140   set_cmd_completer (c, location_completer);
2141 
2142   if (xdb_commands)
2143     {
2144       c = add_com ("go", class_run, go_command, _("\
2145 Usage: go <location>\n\
2146 Continue program being debugged, stopping at specified line or \n\
2147 address.\n\
2148 Give as argument either LINENUM or *ADDR, where ADDR is an \n\
2149 expression for an address to start at.\n\
2150 This command is a combination of tbreak and jump."));
2151       set_cmd_completer (c, location_completer);
2152     }
2153 
2154   if (xdb_commands)
2155     add_com_alias ("g", "go", class_run, 1);
2156 
2157   add_com ("continue", class_run, continue_command, _("\
2158 Continue program being debugged, after signal or breakpoint.\n\
2159 If proceeding from breakpoint, a number N may be used as an argument,\n\
2160 which means to set the ignore count of that breakpoint to N - 1 (so that\n\
2161 the breakpoint won't break until the Nth time it is reached)."));
2162   add_com_alias ("c", "cont", class_run, 1);
2163   add_com_alias ("fg", "cont", class_run, 1);
2164 
2165   c = add_com ("run", class_run, run_command, _("\
2166 Start debugged program.  You may specify arguments to give it.\n\
2167 Args may include \"*\", or \"[...]\"; they are expanded using \"sh\".\n\
2168 Input and output redirection with \">\", \"<\", or \">>\" are also allowed.\n\n\
2169 With no arguments, uses arguments last specified (with \"run\" or \"set args\").\n\
2170 To cancel previous arguments and run with no arguments,\n\
2171 use \"set args\" without arguments."));
2172   set_cmd_completer (c, filename_completer);
2173   add_com_alias ("r", "run", class_run, 1);
2174   if (xdb_commands)
2175     add_com ("R", class_run, run_no_args_command,
2176 	     _("Start debugged program with no arguments."));
2177 
2178   c = add_com ("start", class_run, start_command, _("\
2179 Run the debugged program until the beginning of the main procedure.\n\
2180 You may specify arguments to give to your program, just as with the\n\
2181 \"run\" command."));
2182   set_cmd_completer (c, filename_completer);
2183 
2184   add_com ("interrupt", class_run, interrupt_target_command,
2185 	   _("Interrupt the execution of the debugged program."));
2186 
2187   add_info ("registers", nofp_registers_info, _("\
2188 List of integer registers and their contents, for selected stack frame.\n\
2189 Register name as argument means describe only that register."));
2190   add_info_alias ("r", "registers", 1);
2191 
2192   if (xdb_commands)
2193     add_com ("lr", class_info, nofp_registers_info, _("\
2194 List of integer registers and their contents, for selected stack frame.\n\
2195 Register name as argument means describe only that register."));
2196   add_info ("all-registers", all_registers_info, _("\
2197 List of all registers and their contents, for selected stack frame.\n\
2198 Register name as argument means describe only that register."));
2199 
2200   add_info ("program", program_info,
2201 	    _("Execution status of the program."));
2202 
2203   add_info ("float", float_info,
2204 	    _("Print the status of the floating point unit\n"));
2205 
2206   add_info ("vector", vector_info,
2207 	    _("Print the status of the vector unit\n"));
2208 
2209   inferior_environ = make_environ ();
2210   init_environ (inferior_environ);
2211 }
2212