Replace ../include/wait.h with gdb_wait.h.
[deliverable/binutils-gdb.git] / gdb / target.c
CommitLineData
c906108c 1/* Select target systems and architectures at runtime for GDB.
d9fcf2fb 2 Copyright 1990, 1992-1995, 1998-2000 Free Software Foundation, Inc.
c906108c
SS
3 Contributed by Cygnus Support.
4
c5aa993b 5 This file is part of GDB.
c906108c 6
c5aa993b
JM
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
c906108c 11
c5aa993b
JM
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
c906108c 16
c5aa993b
JM
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA. */
c906108c
SS
21
22#include "defs.h"
23#include <errno.h>
24#include <ctype.h>
25#include "gdb_string.h"
26#include "target.h"
27#include "gdbcmd.h"
28#include "symtab.h"
29#include "inferior.h"
30#include "bfd.h"
31#include "symfile.h"
32#include "objfiles.h"
03f2053f 33#include "gdb_wait.h"
c906108c
SS
34#include <signal.h>
35
36extern int errno;
37
38static void
39target_info PARAMS ((char *, int));
40
41static void
42cleanup_target PARAMS ((struct target_ops *));
43
44static void
45maybe_kill_then_create_inferior PARAMS ((char *, char *, char **));
46
47static void
48default_clone_and_follow_inferior PARAMS ((int, int *));
49
50static void
51maybe_kill_then_attach PARAMS ((char *, int));
52
53static void
54kill_or_be_killed PARAMS ((int));
55
56static void
57default_terminal_info PARAMS ((char *, int));
58
59static int
60nosymbol PARAMS ((char *, CORE_ADDR *));
61
62static void
63tcomplain PARAMS ((void));
64
65static int
66nomemory PARAMS ((CORE_ADDR, char *, int, int, struct target_ops *));
67
68static int
69return_zero PARAMS ((void));
70
71static int
72return_one PARAMS ((void));
73
74void
75target_ignore PARAMS ((void));
76
77static void
78target_command PARAMS ((char *, int));
79
80static struct target_ops *
ed9a39eb 81find_default_run_target PARAMS ((char *));
c906108c
SS
82
83static void
84update_current_target PARAMS ((void));
85
392a587b
JM
86static void nosupport_runtime PARAMS ((void));
87
88static void normal_target_post_startup_inferior PARAMS ((int pid));
89
917317f4
JM
90/* Transfer LEN bytes between target address MEMADDR and GDB address
91 MYADDR. Returns 0 for success, errno code for failure (which
92 includes partial transfers -- if you want a more useful response to
93 partial transfers, try either target_read_memory_partial or
94 target_write_memory_partial). */
c906108c
SS
95
96static int
97target_xfer_memory PARAMS ((CORE_ADDR memaddr, char *myaddr, int len,
c5aa993b 98 int write, asection * bfd_section));
c906108c
SS
99
100static void init_dummy_target PARAMS ((void));
101
102static void
103debug_to_open PARAMS ((char *, int));
104
105static void
106debug_to_close PARAMS ((int));
107
108static void
109debug_to_attach PARAMS ((char *, int));
110
111static void
112debug_to_detach PARAMS ((char *, int));
113
114static void
115debug_to_resume PARAMS ((int, int, enum target_signal));
116
117static int
118debug_to_wait PARAMS ((int, struct target_waitstatus *));
119
120static void
121debug_to_fetch_registers PARAMS ((int));
122
123static void
124debug_to_store_registers PARAMS ((int));
125
126static void
127debug_to_prepare_to_store PARAMS ((void));
128
129static int
130debug_to_xfer_memory PARAMS ((CORE_ADDR, char *, int, int, struct target_ops *));
131
132static void
133debug_to_files_info PARAMS ((struct target_ops *));
134
135static int
136debug_to_insert_breakpoint PARAMS ((CORE_ADDR, char *));
137
138static int
139debug_to_remove_breakpoint PARAMS ((CORE_ADDR, char *));
140
141static void
142debug_to_terminal_init PARAMS ((void));
143
144static void
145debug_to_terminal_inferior PARAMS ((void));
146
147static void
148debug_to_terminal_ours_for_output PARAMS ((void));
149
150static void
151debug_to_terminal_ours PARAMS ((void));
152
153static void
154debug_to_terminal_info PARAMS ((char *, int));
155
156static void
157debug_to_kill PARAMS ((void));
158
159static void
160debug_to_load PARAMS ((char *, int));
161
162static int
163debug_to_lookup_symbol PARAMS ((char *, CORE_ADDR *));
164
165static void
166debug_to_create_inferior PARAMS ((char *, char *, char **));
167
168static void
169debug_to_mourn_inferior PARAMS ((void));
170
171static int
172debug_to_can_run PARAMS ((void));
173
174static void
175debug_to_notice_signals PARAMS ((int));
176
177static int
178debug_to_thread_alive PARAMS ((int));
179
180static void
181debug_to_stop PARAMS ((void));
182
c5aa993b 183static int debug_to_query PARAMS ((int /*char */ , char *, char *, int *));
c906108c
SS
184
185/* Pointer to array of target architecture structures; the size of the
186 array; the current index into the array; the allocated size of the
187 array. */
188struct target_ops **target_structs;
189unsigned target_struct_size;
190unsigned target_struct_index;
191unsigned target_struct_allocsize;
192#define DEFAULT_ALLOCSIZE 10
193
194/* The initial current target, so that there is always a semi-valid
195 current target. */
196
197static struct target_ops dummy_target;
198
199/* Top of target stack. */
200
201struct target_stack_item *target_stack;
202
203/* The target structure we are currently using to talk to a process
204 or file or whatever "inferior" we have. */
205
206struct target_ops current_target;
207
208/* Command list for target. */
209
210static struct cmd_list_element *targetlist = NULL;
211
212/* Nonzero if we are debugging an attached outside process
213 rather than an inferior. */
214
215int attach_flag;
216
c906108c
SS
217/* Non-zero if we want to see trace of target level stuff. */
218
219static int targetdebug = 0;
220
221static void setup_target_debug PARAMS ((void));
222
c906108c
SS
223/* The user just typed 'target' without the name of a target. */
224
225/* ARGSUSED */
226static void
227target_command (arg, from_tty)
228 char *arg;
229 int from_tty;
230{
231 fputs_filtered ("Argument required (target name). Try `help target'\n",
232 gdb_stdout);
233}
234
235/* Add a possible target architecture to the list. */
236
237void
238add_target (t)
239 struct target_ops *t;
240{
241 if (!target_structs)
242 {
243 target_struct_allocsize = DEFAULT_ALLOCSIZE;
244 target_structs = (struct target_ops **) xmalloc
245 (target_struct_allocsize * sizeof (*target_structs));
246 }
247 if (target_struct_size >= target_struct_allocsize)
248 {
249 target_struct_allocsize *= 2;
250 target_structs = (struct target_ops **)
c5aa993b
JM
251 xrealloc ((char *) target_structs,
252 target_struct_allocsize * sizeof (*target_structs));
c906108c
SS
253 }
254 target_structs[target_struct_size++] = t;
c5aa993b 255/* cleanup_target (t); */
c906108c
SS
256
257 if (targetlist == NULL)
258 add_prefix_cmd ("target", class_run, target_command,
259 "Connect to a target machine or process.\n\
260The first argument is the type or protocol of the target machine.\n\
261Remaining arguments are interpreted by the target protocol. For more\n\
262information on the arguments for a particular protocol, type\n\
263`help target ' followed by the protocol name.",
264 &targetlist, "target ", 0, &cmdlist);
265 add_cmd (t->to_shortname, no_class, t->to_open, t->to_doc, &targetlist);
266}
267
268/* Stub functions */
269
270void
271target_ignore ()
272{
273}
274
11cf8741
JM
275void
276target_load (char *arg, int from_tty)
277{
278 (*current_target.to_load) (arg, from_tty);
279}
280
c906108c
SS
281/* ARGSUSED */
282static int
283nomemory (memaddr, myaddr, len, write, t)
284 CORE_ADDR memaddr;
285 char *myaddr;
286 int len;
287 int write;
288 struct target_ops *t;
289{
c5aa993b
JM
290 errno = EIO; /* Can't read/write this location */
291 return 0; /* No bytes handled */
c906108c
SS
292}
293
294static void
295tcomplain ()
296{
297 error ("You can't do that when your target is `%s'",
298 current_target.to_shortname);
299}
300
301void
302noprocess ()
303{
304 error ("You can't do that without a process to debug.");
305}
306
307/* ARGSUSED */
308static int
309nosymbol (name, addrp)
310 char *name;
311 CORE_ADDR *addrp;
312{
c5aa993b 313 return 1; /* Symbol does not exist in target env */
c906108c
SS
314}
315
316/* ARGSUSED */
392a587b 317static void
c906108c
SS
318nosupport_runtime ()
319{
320 if (!inferior_pid)
321 noprocess ();
322 else
323 error ("No run-time support for this");
324}
325
326
327/* ARGSUSED */
328static void
329default_terminal_info (args, from_tty)
330 char *args;
331 int from_tty;
332{
c5aa993b 333 printf_unfiltered ("No saved terminal information.\n");
c906108c
SS
334}
335
336/* This is the default target_create_inferior and target_attach function.
337 If the current target is executing, it asks whether to kill it off.
338 If this function returns without calling error(), it has killed off
339 the target, and the operation should be attempted. */
340
341static void
342kill_or_be_killed (from_tty)
343 int from_tty;
344{
345 if (target_has_execution)
346 {
347 printf_unfiltered ("You are already running a program:\n");
348 target_files_info ();
c5aa993b
JM
349 if (query ("Kill it? "))
350 {
351 target_kill ();
352 if (target_has_execution)
353 error ("Killing the program did not help.");
354 return;
355 }
356 else
357 {
358 error ("Program not killed.");
359 }
c906108c 360 }
c5aa993b 361 tcomplain ();
c906108c
SS
362}
363
364static void
365maybe_kill_then_attach (args, from_tty)
366 char *args;
367 int from_tty;
368{
369 kill_or_be_killed (from_tty);
370 target_attach (args, from_tty);
371}
372
373static void
374maybe_kill_then_create_inferior (exec, args, env)
375 char *exec;
376 char *args;
377 char **env;
378{
379 kill_or_be_killed (0);
380 target_create_inferior (exec, args, env);
381}
382
383static void
384default_clone_and_follow_inferior (child_pid, followed_child)
c5aa993b
JM
385 int child_pid;
386 int *followed_child;
c906108c
SS
387{
388 target_clone_and_follow_inferior (child_pid, followed_child);
389}
390
391/* Clean up a target struct so it no longer has any zero pointers in it.
392 We default entries, at least to stubs that print error messages. */
393
394static void
395cleanup_target (t)
396 struct target_ops *t;
397{
398
399#define de_fault(field, value) \
0d06e24b
JM
400 if (!t->field) \
401 t->field = value
402
403 de_fault (to_open,
404 (void (*) (char *, int))
405 tcomplain);
406 de_fault (to_close,
407 (void (*) (int))
408 target_ignore);
409 de_fault (to_attach,
410 maybe_kill_then_attach);
411 de_fault (to_post_attach,
412 (void (*) (int))
413 target_ignore);
414 de_fault (to_require_attach,
415 maybe_kill_then_attach);
416 de_fault (to_detach,
417 (void (*) (char *, int))
418 target_ignore);
419 de_fault (to_require_detach,
420 (void (*) (int, char *, int))
421 target_ignore);
422 de_fault (to_resume,
423 (void (*) (int, int, enum target_signal))
424 noprocess);
425 de_fault (to_wait,
426 (int (*) (int, struct target_waitstatus *))
427 noprocess);
428 de_fault (to_post_wait,
429 (void (*) (int, int))
430 target_ignore);
431 de_fault (to_fetch_registers,
432 (void (*) (int))
433 target_ignore);
434 de_fault (to_store_registers,
435 (void (*) (int))
436 noprocess);
437 de_fault (to_prepare_to_store,
438 (void (*) (void))
439 noprocess);
440 de_fault (to_xfer_memory,
441 (int (*) (CORE_ADDR, char *, int, int, struct target_ops *))
442 nomemory);
443 de_fault (to_files_info,
444 (void (*) (struct target_ops *))
445 target_ignore);
446 de_fault (to_insert_breakpoint,
447 memory_insert_breakpoint);
448 de_fault (to_remove_breakpoint,
449 memory_remove_breakpoint);
450 de_fault (to_terminal_init,
451 (void (*) (void))
452 target_ignore);
453 de_fault (to_terminal_inferior,
454 (void (*) (void))
455 target_ignore);
456 de_fault (to_terminal_ours_for_output,
457 (void (*) (void))
458 target_ignore);
459 de_fault (to_terminal_ours,
460 (void (*) (void))
461 target_ignore);
462 de_fault (to_terminal_info,
463 default_terminal_info);
464 de_fault (to_kill,
465 (void (*) (void))
466 noprocess);
467 de_fault (to_load,
468 (void (*) (char *, int))
469 tcomplain);
470 de_fault (to_lookup_symbol,
471 (int (*) (char *, CORE_ADDR *))
472 nosymbol);
473 de_fault (to_create_inferior,
474 maybe_kill_then_create_inferior);
475 de_fault (to_post_startup_inferior,
476 (void (*) (int))
477 target_ignore);
478 de_fault (to_acknowledge_created_inferior,
479 (void (*) (int))
480 target_ignore);
481 de_fault (to_clone_and_follow_inferior,
482 default_clone_and_follow_inferior);
483 de_fault (to_post_follow_inferior_by_clone,
484 (void (*) (void))
485 target_ignore);
486 de_fault (to_insert_fork_catchpoint,
487 (int (*) (int))
488 tcomplain);
489 de_fault (to_remove_fork_catchpoint,
490 (int (*) (int))
491 tcomplain);
492 de_fault (to_insert_vfork_catchpoint,
493 (int (*) (int))
494 tcomplain);
495 de_fault (to_remove_vfork_catchpoint,
496 (int (*) (int))
497 tcomplain);
498 de_fault (to_has_forked,
499 (int (*) (int, int *))
500 return_zero);
501 de_fault (to_has_vforked,
502 (int (*) (int, int *))
503 return_zero);
504 de_fault (to_can_follow_vfork_prior_to_exec,
505 (int (*) (void))
506 return_zero);
507 de_fault (to_post_follow_vfork,
508 (void (*) (int, int, int, int))
509 target_ignore);
510 de_fault (to_insert_exec_catchpoint,
511 (int (*) (int))
512 tcomplain);
513 de_fault (to_remove_exec_catchpoint,
514 (int (*) (int))
515 tcomplain);
516 de_fault (to_has_execd,
517 (int (*) (int, char **))
518 return_zero);
519 de_fault (to_reported_exec_events_per_exec_call,
520 (int (*) (void))
521 return_one);
522 de_fault (to_has_syscall_event,
523 (int (*) (int, enum target_waitkind *, int *))
524 return_zero);
525 de_fault (to_has_exited,
526 (int (*) (int, int, int *))
527 return_zero);
528 de_fault (to_mourn_inferior,
529 (void (*) (void))
530 noprocess);
531 de_fault (to_can_run,
532 return_zero);
533 de_fault (to_notice_signals,
534 (void (*) (int))
535 target_ignore);
536 de_fault (to_thread_alive,
537 (int (*) (int))
538 return_zero);
539 de_fault (to_find_new_threads,
540 (void (*) (void))
541 target_ignore);
542 de_fault (to_extra_thread_info,
543 (char *(*) (struct thread_info *))
544 return_zero);
545 de_fault (to_stop,
546 (void (*) (void))
547 target_ignore);
548 de_fault (to_query,
549 (int (*) (int, char *, char *, int *))
550 return_zero);
551 de_fault (to_rcmd,
d9fcf2fb 552 (void (*) (char *, struct ui_file *))
0d06e24b
JM
553 tcomplain);
554 de_fault (to_enable_exception_callback,
555 (struct symtab_and_line * (*) (enum exception_event_kind, int))
556 nosupport_runtime);
557 de_fault (to_get_current_exception_event,
558 (struct exception_event_record * (*) (void))
559 nosupport_runtime);
560 de_fault (to_pid_to_exec_file,
561 (char *(*) (int))
562 return_zero);
563 de_fault (to_core_file_to_sym_file,
564 (char *(*) (char *))
565 return_zero);
566 de_fault (to_can_async_p,
567 (int (*) (void))
568 return_zero);
569 de_fault (to_is_async_p,
570 (int (*) (void))
571 return_zero);
572 de_fault (to_async,
573 (void (*) (void (*) (enum inferior_event_type, void*), void*))
574 tcomplain);
c906108c
SS
575#undef de_fault
576}
577
578/* Go through the target stack from top to bottom, copying over zero entries in
579 current_target. In effect, we are doing class inheritance through the
580 pushed target vectors. */
581
582static void
583update_current_target ()
584{
585 struct target_stack_item *item;
586 struct target_ops *t;
587
588 /* First, reset current_target */
589 memset (&current_target, 0, sizeof current_target);
590
591 for (item = target_stack; item; item = item->next)
592 {
593 t = item->target_ops;
594
595#define INHERIT(FIELD, TARGET) \
596 if (!current_target.FIELD) \
597 current_target.FIELD = TARGET->FIELD
598
599 INHERIT (to_shortname, t);
600 INHERIT (to_longname, t);
601 INHERIT (to_doc, t);
602 INHERIT (to_open, t);
603 INHERIT (to_close, t);
604 INHERIT (to_attach, t);
605 INHERIT (to_post_attach, t);
606 INHERIT (to_require_attach, t);
607 INHERIT (to_detach, t);
608 INHERIT (to_require_detach, t);
609 INHERIT (to_resume, t);
610 INHERIT (to_wait, t);
611 INHERIT (to_post_wait, t);
612 INHERIT (to_fetch_registers, t);
613 INHERIT (to_store_registers, t);
614 INHERIT (to_prepare_to_store, t);
615 INHERIT (to_xfer_memory, t);
616 INHERIT (to_files_info, t);
617 INHERIT (to_insert_breakpoint, t);
618 INHERIT (to_remove_breakpoint, t);
619 INHERIT (to_terminal_init, t);
620 INHERIT (to_terminal_inferior, t);
621 INHERIT (to_terminal_ours_for_output, t);
622 INHERIT (to_terminal_ours, t);
623 INHERIT (to_terminal_info, t);
624 INHERIT (to_kill, t);
625 INHERIT (to_load, t);
626 INHERIT (to_lookup_symbol, t);
627 INHERIT (to_create_inferior, t);
628 INHERIT (to_post_startup_inferior, t);
629 INHERIT (to_acknowledge_created_inferior, t);
630 INHERIT (to_clone_and_follow_inferior, t);
631 INHERIT (to_post_follow_inferior_by_clone, t);
632 INHERIT (to_insert_fork_catchpoint, t);
633 INHERIT (to_remove_fork_catchpoint, t);
634 INHERIT (to_insert_vfork_catchpoint, t);
635 INHERIT (to_remove_vfork_catchpoint, t);
636 INHERIT (to_has_forked, t);
637 INHERIT (to_has_vforked, t);
638 INHERIT (to_can_follow_vfork_prior_to_exec, t);
639 INHERIT (to_post_follow_vfork, t);
640 INHERIT (to_insert_exec_catchpoint, t);
641 INHERIT (to_remove_exec_catchpoint, t);
642 INHERIT (to_has_execd, t);
643 INHERIT (to_reported_exec_events_per_exec_call, t);
644 INHERIT (to_has_syscall_event, t);
645 INHERIT (to_has_exited, t);
646 INHERIT (to_mourn_inferior, t);
647 INHERIT (to_can_run, t);
648 INHERIT (to_notice_signals, t);
649 INHERIT (to_thread_alive, t);
b83266a0 650 INHERIT (to_find_new_threads, t);
ed9a39eb 651 INHERIT (to_pid_to_str, t);
0d06e24b 652 INHERIT (to_extra_thread_info, t);
c906108c
SS
653 INHERIT (to_stop, t);
654 INHERIT (to_query, t);
96baa820 655 INHERIT (to_rcmd, t);
c906108c
SS
656 INHERIT (to_enable_exception_callback, t);
657 INHERIT (to_get_current_exception_event, t);
658 INHERIT (to_pid_to_exec_file, t);
659 INHERIT (to_core_file_to_sym_file, t);
660 INHERIT (to_stratum, t);
661 INHERIT (DONT_USE, t);
662 INHERIT (to_has_all_memory, t);
663 INHERIT (to_has_memory, t);
664 INHERIT (to_has_stack, t);
665 INHERIT (to_has_registers, t);
666 INHERIT (to_has_execution, t);
667 INHERIT (to_has_thread_control, t);
668 INHERIT (to_sections, t);
669 INHERIT (to_sections_end, t);
6426a772
JM
670 INHERIT (to_can_async_p, t);
671 INHERIT (to_is_async_p, t);
672 INHERIT (to_async, t);
ed9a39eb 673 INHERIT (to_async_mask_value, t);
c906108c
SS
674 INHERIT (to_magic, t);
675
676#undef INHERIT
677 }
678}
679
680/* Push a new target type into the stack of the existing target accessors,
681 possibly superseding some of the existing accessors.
682
683 Result is zero if the pushed target ended up on top of the stack,
684 nonzero if at least one target is on top of it.
685
686 Rather than allow an empty stack, we always have the dummy target at
687 the bottom stratum, so we can call the function vectors without
688 checking them. */
689
690int
691push_target (t)
692 struct target_ops *t;
693{
694 struct target_stack_item *cur, *prev, *tmp;
695
696 /* Check magic number. If wrong, it probably means someone changed
697 the struct definition, but not all the places that initialize one. */
698 if (t->to_magic != OPS_MAGIC)
699 {
c5aa993b
JM
700 fprintf_unfiltered (gdb_stderr,
701 "Magic number of %s target struct wrong\n",
702 t->to_shortname);
703 abort ();
c906108c
SS
704 }
705
706 /* Find the proper stratum to install this target in. */
707
708 for (prev = NULL, cur = target_stack; cur; prev = cur, cur = cur->next)
709 {
c5aa993b 710 if ((int) (t->to_stratum) >= (int) (cur->target_ops->to_stratum))
c906108c
SS
711 break;
712 }
713
714 /* If there's already targets at this stratum, remove them. */
715
716 if (cur)
717 while (t->to_stratum == cur->target_ops->to_stratum)
718 {
719 /* There's already something on this stratum. Close it off. */
720 if (cur->target_ops->to_close)
721 (cur->target_ops->to_close) (0);
722 if (prev)
c5aa993b 723 prev->next = cur->next; /* Unchain old target_ops */
c906108c 724 else
c5aa993b 725 target_stack = cur->next; /* Unchain first on list */
c906108c
SS
726 tmp = cur->next;
727 free (cur);
728 cur = tmp;
729 }
730
731 /* We have removed all targets in our stratum, now add the new one. */
732
733 tmp = (struct target_stack_item *)
734 xmalloc (sizeof (struct target_stack_item));
735 tmp->next = cur;
736 tmp->target_ops = t;
737
738 if (prev)
739 prev->next = tmp;
740 else
741 target_stack = tmp;
742
743 update_current_target ();
744
c5aa993b 745 cleanup_target (&current_target); /* Fill in the gaps */
c906108c 746
c906108c
SS
747 if (targetdebug)
748 setup_target_debug ();
c906108c
SS
749
750 return prev != 0;
751}
752
753/* Remove a target_ops vector from the stack, wherever it may be.
754 Return how many times it was removed (0 or 1). */
755
756int
757unpush_target (t)
758 struct target_ops *t;
759{
760 struct target_stack_item *cur, *prev;
761
762 if (t->to_close)
763 t->to_close (0); /* Let it clean up */
764
765 /* Look for the specified target. Note that we assume that a target
766 can only occur once in the target stack. */
767
768 for (cur = target_stack, prev = NULL; cur; prev = cur, cur = cur->next)
769 if (cur->target_ops == t)
770 break;
771
772 if (!cur)
773 return 0; /* Didn't find target_ops, quit now */
774
775 /* Unchain the target */
776
777 if (!prev)
778 target_stack = cur->next;
779 else
780 prev->next = cur->next;
781
782 free (cur); /* Release the target_stack_item */
783
784 update_current_target ();
785 cleanup_target (&current_target);
786
787 return 1;
788}
789
790void
791pop_target ()
792{
c5aa993b 793 (current_target.to_close) (0); /* Let it clean up */
c906108c
SS
794 if (unpush_target (target_stack->target_ops) == 1)
795 return;
796
c5aa993b
JM
797 fprintf_unfiltered (gdb_stderr,
798 "pop_target couldn't find target %s\n",
799 current_target.to_shortname);
800 abort ();
c906108c
SS
801}
802
803#undef MIN
804#define MIN(A, B) (((A) <= (B)) ? (A) : (B))
805
806/* target_read_string -- read a null terminated string, up to LEN bytes,
807 from MEMADDR in target. Set *ERRNOP to the errno code, or 0 if successful.
808 Set *STRING to a pointer to malloc'd memory containing the data; the caller
809 is responsible for freeing it. Return the number of bytes successfully
810 read. */
811
812int
813target_read_string (memaddr, string, len, errnop)
814 CORE_ADDR memaddr;
815 char **string;
816 int len;
817 int *errnop;
818{
819 int tlen, origlen, offset, i;
820 char buf[4];
821 int errcode = 0;
822 char *buffer;
823 int buffer_allocated;
824 char *bufptr;
825 unsigned int nbytes_read = 0;
826
827 /* Small for testing. */
828 buffer_allocated = 4;
829 buffer = xmalloc (buffer_allocated);
830 bufptr = buffer;
831
832 origlen = len;
833
834 while (len > 0)
835 {
836 tlen = MIN (len, 4 - (memaddr & 3));
837 offset = memaddr & 3;
838
839 errcode = target_xfer_memory (memaddr & ~3, buf, 4, 0, NULL);
840 if (errcode != 0)
841 {
842 /* The transfer request might have crossed the boundary to an
843 unallocated region of memory. Retry the transfer, requesting
844 a single byte. */
845 tlen = 1;
846 offset = 0;
847 errcode = target_xfer_memory (memaddr, buf, 1, 0, NULL);
848 if (errcode != 0)
849 goto done;
850 }
851
852 if (bufptr - buffer + tlen > buffer_allocated)
853 {
854 unsigned int bytes;
855 bytes = bufptr - buffer;
856 buffer_allocated *= 2;
857 buffer = xrealloc (buffer, buffer_allocated);
858 bufptr = buffer + bytes;
859 }
860
861 for (i = 0; i < tlen; i++)
862 {
863 *bufptr++ = buf[i + offset];
864 if (buf[i + offset] == '\000')
865 {
866 nbytes_read += i + 1;
867 goto done;
868 }
869 }
870
871 memaddr += tlen;
872 len -= tlen;
873 nbytes_read += tlen;
874 }
c5aa993b 875done:
c906108c
SS
876 if (errnop != NULL)
877 *errnop = errcode;
878 if (string != NULL)
879 *string = buffer;
880 return nbytes_read;
881}
882
883/* Read LEN bytes of target memory at address MEMADDR, placing the results in
884 GDB's memory at MYADDR. Returns either 0 for success or an errno value
885 if any error occurs.
886
887 If an error occurs, no guarantee is made about the contents of the data at
888 MYADDR. In particular, the caller should not depend upon partial reads
889 filling the buffer with good data. There is no way for the caller to know
890 how much good data might have been transfered anyway. Callers that can
891 deal with partial reads should call target_read_memory_partial. */
892
893int
894target_read_memory (memaddr, myaddr, len)
895 CORE_ADDR memaddr;
896 char *myaddr;
897 int len;
898{
899 return target_xfer_memory (memaddr, myaddr, len, 0, NULL);
900}
901
902int
903target_read_memory_section (memaddr, myaddr, len, bfd_section)
904 CORE_ADDR memaddr;
905 char *myaddr;
906 int len;
907 asection *bfd_section;
908{
909 return target_xfer_memory (memaddr, myaddr, len, 0, bfd_section);
910}
911
c906108c
SS
912int
913target_write_memory (memaddr, myaddr, len)
914 CORE_ADDR memaddr;
915 char *myaddr;
916 int len;
917{
918 return target_xfer_memory (memaddr, myaddr, len, 1, NULL);
919}
c5aa993b 920
c906108c
SS
921/* This variable is used to pass section information down to targets. This
922 *should* be done by adding an argument to the target_xfer_memory function
923 of all the targets, but I didn't feel like changing 50+ files. */
924
925asection *target_memory_bfd_section = NULL;
926
927/* Move memory to or from the targets. Iterate until all of it has
928 been moved, if necessary. The top target gets priority; anything
929 it doesn't want, is offered to the next one down, etc. Note the
930 business with curlen: if an early target says "no, but I have a
931 boundary overlapping this xfer" then we shorten what we offer to
932 the subsequent targets so the early guy will get a chance at the
933 tail before the subsequent ones do.
934
935 Result is 0 or errno value. */
936
937static int
938target_xfer_memory (memaddr, myaddr, len, write, bfd_section)
939 CORE_ADDR memaddr;
940 char *myaddr;
941 int len;
942 int write;
943 asection *bfd_section;
944{
945 int curlen;
946 int res;
947 struct target_ops *t;
948 struct target_stack_item *item;
949
950 /* Zero length requests are ok and require no work. */
951 if (len == 0)
952 return 0;
953
954 target_memory_bfd_section = bfd_section;
955
956 /* to_xfer_memory is not guaranteed to set errno, even when it returns
957 0. */
958 errno = 0;
959
960 /* The quick case is that the top target does it all. */
961 res = current_target.to_xfer_memory
c5aa993b 962 (memaddr, myaddr, len, write, &current_target);
c906108c
SS
963 if (res == len)
964 return 0;
965
966 if (res > 0)
967 goto bump;
968 /* If res <= 0 then we call it again in the loop. Ah well. */
969
970 for (; len > 0;)
971 {
972 curlen = len; /* Want to do it all */
973 for (item = target_stack; item; item = item->next)
974 {
975 t = item->target_ops;
976 if (!t->to_has_memory)
977 continue;
978
979 res = t->to_xfer_memory (memaddr, myaddr, curlen, write, t);
980 if (res > 0)
981 break; /* Handled all or part of xfer */
982 if (t->to_has_all_memory)
983 break;
984 }
985
986 if (res <= 0)
987 {
988 /* If this address is for nonexistent memory,
989 read zeros if reading, or do nothing if writing. Return error. */
990 if (!write)
991 memset (myaddr, 0, len);
992 if (errno == 0)
993 return EIO;
994 else
995 return errno;
996 }
c5aa993b 997 bump:
c906108c 998 memaddr += res;
c5aa993b
JM
999 myaddr += res;
1000 len -= res;
c906108c
SS
1001 }
1002 return 0; /* We managed to cover it all somehow. */
1003}
1004
1005
917317f4
JM
1006/* Perform a partial memory transfer. */
1007
1008static int
1009target_xfer_memory_partial (CORE_ADDR memaddr, char *buf, int len,
1010 int write_p, int *err)
1011{
1012 int res;
1013 int err_res;
1014 int len_res;
1015 struct target_ops *t;
1016 struct target_stack_item *item;
1017
1018 /* Zero length requests are ok and require no work. */
1019 if (len == 0)
1020 {
1021 *err = 0;
1022 return 0;
1023 }
1024
1025 /* The quick case is that the top target does it all. */
1026 res = current_target.to_xfer_memory (memaddr, buf, len, write_p, &current_target);
1027 if (res > 0)
1028 {
1029 *err = 0;
1030 return res;
1031 }
1032
1033 /* xfer memory doesn't always reliably set errno. */
1034 errno = 0;
1035
1036 /* Try all levels of the target stack to see one can handle it. */
1037 for (item = target_stack; item; item = item->next)
1038 {
1039 t = item->target_ops;
1040 if (!t->to_has_memory)
1041 continue;
1042 res = t->to_xfer_memory (memaddr, buf, len, write_p, t);
1043 if (res > 0)
1044 {
1045 /* Handled all or part of xfer */
1046 *err = 0;
1047 return res;
1048 }
1049 if (t->to_has_all_memory)
1050 break;
1051 }
1052
1053 /* Total failure. Return error. */
1054 if (errno != 0)
1055 {
1056 *err = errno;
1057 return -1;
1058 }
1059 *err = EIO;
1060 return -1;
1061}
1062
1063int
1064target_read_memory_partial (CORE_ADDR memaddr, char *buf, int len, int *err)
1065{
1066 return target_xfer_memory_partial (memaddr, buf, len, 0, err);
1067}
1068
1069int
1070target_write_memory_partial (CORE_ADDR memaddr, char *buf, int len, int *err)
1071{
1072 return target_xfer_memory_partial (memaddr, buf, len, 1, err);
1073}
1074
c906108c
SS
1075/* ARGSUSED */
1076static void
1077target_info (args, from_tty)
1078 char *args;
1079 int from_tty;
1080{
1081 struct target_ops *t;
1082 struct target_stack_item *item;
1083 int has_all_mem = 0;
c5aa993b 1084
c906108c
SS
1085 if (symfile_objfile != NULL)
1086 printf_unfiltered ("Symbols from \"%s\".\n", symfile_objfile->name);
1087
1088#ifdef FILES_INFO_HOOK
1089 if (FILES_INFO_HOOK ())
1090 return;
1091#endif
1092
1093 for (item = target_stack; item; item = item->next)
1094 {
1095 t = item->target_ops;
1096
1097 if (!t->to_has_memory)
1098 continue;
1099
c5aa993b 1100 if ((int) (t->to_stratum) <= (int) dummy_stratum)
c906108c
SS
1101 continue;
1102 if (has_all_mem)
c5aa993b
JM
1103 printf_unfiltered ("\tWhile running this, GDB does not access memory from...\n");
1104 printf_unfiltered ("%s:\n", t->to_longname);
1105 (t->to_files_info) (t);
c906108c
SS
1106 has_all_mem = t->to_has_all_memory;
1107 }
1108}
1109
1110/* This is to be called by the open routine before it does
1111 anything. */
1112
1113void
1114target_preopen (from_tty)
1115 int from_tty;
1116{
c5aa993b 1117 dont_repeat ();
c906108c
SS
1118
1119 if (target_has_execution)
c5aa993b 1120 {
adf40b2e
JM
1121 if (!from_tty
1122 || query ("A program is being debugged already. Kill it? "))
c5aa993b 1123 target_kill ();
c906108c 1124 else
c5aa993b 1125 error ("Program not killed.");
c906108c
SS
1126 }
1127
1128 /* Calling target_kill may remove the target from the stack. But if
1129 it doesn't (which seems like a win for UDI), remove it now. */
1130
1131 if (target_has_execution)
1132 pop_target ();
1133}
1134
1135/* Detach a target after doing deferred register stores. */
1136
1137void
1138target_detach (args, from_tty)
1139 char *args;
1140 int from_tty;
1141{
1142 /* Handle any optimized stores to the inferior. */
1143#ifdef DO_DEFERRED_STORES
1144 DO_DEFERRED_STORES;
1145#endif
1146 (current_target.to_detach) (args, from_tty);
1147}
1148
1149void
1150target_link (modname, t_reloc)
1151 char *modname;
1152 CORE_ADDR *t_reloc;
1153{
c5aa993b 1154 if (STREQ (current_target.to_shortname, "rombug"))
c906108c
SS
1155 {
1156 (current_target.to_lookup_symbol) (modname, t_reloc);
1157 if (*t_reloc == 0)
c5aa993b 1158 error ("Unable to link to %s and get relocation in rombug", modname);
c906108c
SS
1159 }
1160 else
2acceee2 1161 *t_reloc = (CORE_ADDR) -1;
c906108c
SS
1162}
1163
ed9a39eb
JM
1164int
1165target_async_mask (int mask)
1166{
1167 int saved_async_masked_status = target_async_mask_value;
1168 target_async_mask_value = mask;
1169 return saved_async_masked_status;
1170}
1171
c906108c
SS
1172/* Look through the list of possible targets for a target that can
1173 execute a run or attach command without any other data. This is
1174 used to locate the default process stratum.
1175
1176 Result is always valid (error() is called for errors). */
1177
1178static struct target_ops *
1179find_default_run_target (do_mesg)
1180 char *do_mesg;
1181{
1182 struct target_ops **t;
1183 struct target_ops *runable = NULL;
1184 int count;
1185
1186 count = 0;
1187
1188 for (t = target_structs; t < target_structs + target_struct_size;
1189 ++t)
1190 {
c5aa993b 1191 if ((*t)->to_can_run && target_can_run (*t))
c906108c
SS
1192 {
1193 runable = *t;
1194 ++count;
1195 }
1196 }
1197
1198 if (count != 1)
1199 error ("Don't know how to %s. Try \"help target\".", do_mesg);
1200
1201 return runable;
1202}
1203
1204void
1205find_default_attach (args, from_tty)
1206 char *args;
1207 int from_tty;
1208{
1209 struct target_ops *t;
1210
c5aa993b 1211 t = find_default_run_target ("attach");
c906108c
SS
1212 (t->to_attach) (args, from_tty);
1213 return;
1214}
1215
1216void
1217find_default_require_attach (args, from_tty)
1218 char *args;
1219 int from_tty;
1220{
1221 struct target_ops *t;
1222
c5aa993b 1223 t = find_default_run_target ("require_attach");
c906108c
SS
1224 (t->to_require_attach) (args, from_tty);
1225 return;
1226}
1227
1228void
1229find_default_require_detach (pid, args, from_tty)
c5aa993b
JM
1230 int pid;
1231 char *args;
1232 int from_tty;
c906108c
SS
1233{
1234 struct target_ops *t;
1235
c5aa993b 1236 t = find_default_run_target ("require_detach");
c906108c
SS
1237 (t->to_require_detach) (pid, args, from_tty);
1238 return;
1239}
1240
1241void
1242find_default_create_inferior (exec_file, allargs, env)
1243 char *exec_file;
1244 char *allargs;
1245 char **env;
1246{
1247 struct target_ops *t;
1248
c5aa993b 1249 t = find_default_run_target ("run");
c906108c
SS
1250 (t->to_create_inferior) (exec_file, allargs, env);
1251 return;
1252}
1253
1254void
1255find_default_clone_and_follow_inferior (child_pid, followed_child)
c5aa993b
JM
1256 int child_pid;
1257 int *followed_child;
c906108c
SS
1258{
1259 struct target_ops *t;
1260
c5aa993b 1261 t = find_default_run_target ("run");
c906108c
SS
1262 (t->to_clone_and_follow_inferior) (child_pid, followed_child);
1263 return;
1264}
1265
1266static int
1267return_zero ()
1268{
1269 return 0;
1270}
1271
1272static int
1273return_one ()
1274{
1275 return 1;
1276}
1277
6426a772
JM
1278/*
1279 * Resize the to_sections pointer. Also make sure that anyone that
1280 * was holding on to an old value of it gets updated.
1281 * Returns the old size.
1282 */
1283
1284int
1285target_resize_to_sections (struct target_ops *target, int num_added)
1286{
1287 struct target_ops **t;
1288 struct section_table *old_value;
1289 int old_count;
1290
1291 old_value = target->to_sections;
1292
1293 if (target->to_sections)
1294 {
1295 old_count = target->to_sections_end - target->to_sections;
1296 target->to_sections = (struct section_table *)
1297 xrealloc ((char *) target->to_sections,
1298 (sizeof (struct section_table)) * (num_added + old_count));
1299 }
1300 else
1301 {
1302 old_count = 0;
1303 target->to_sections = (struct section_table *)
1304 xmalloc ((sizeof (struct section_table)) * num_added);
1305 }
1306 target->to_sections_end = target->to_sections + (num_added + old_count);
1307
1308 /* Check to see if anyone else was pointing to this structure.
1309 If old_value was null, then no one was. */
1310
1311 if (old_value)
1312 {
1313 for (t = target_structs; t < target_structs + target_struct_size;
1314 ++t)
1315 {
1316 if ((*t)->to_sections == old_value)
1317 {
1318 (*t)->to_sections = target->to_sections;
1319 (*t)->to_sections_end = target->to_sections_end;
1320 }
1321 }
1322 }
1323
1324 return old_count;
1325
1326}
1327
7a292a7a
SS
1328/* Find a single runnable target in the stack and return it. If for
1329 some reason there is more than one, return NULL. */
1330
1331struct target_ops *
1332find_run_target ()
1333{
1334 struct target_ops **t;
1335 struct target_ops *runable = NULL;
1336 int count;
c5aa993b 1337
7a292a7a 1338 count = 0;
c5aa993b 1339
7a292a7a
SS
1340 for (t = target_structs; t < target_structs + target_struct_size; ++t)
1341 {
c5aa993b 1342 if ((*t)->to_can_run && target_can_run (*t))
7a292a7a
SS
1343 {
1344 runable = *t;
1345 ++count;
1346 }
1347 }
c5aa993b 1348
7a292a7a
SS
1349 return (count == 1 ? runable : NULL);
1350}
1351
ed9a39eb
JM
1352/* Find a single core_stratum target in the list of targets and return it.
1353 If for some reason there is more than one, return NULL. */
1354
c906108c
SS
1355struct target_ops *
1356find_core_target ()
1357{
1358 struct target_ops **t;
1359 struct target_ops *runable = NULL;
1360 int count;
c5aa993b 1361
c906108c 1362 count = 0;
c5aa993b 1363
c906108c
SS
1364 for (t = target_structs; t < target_structs + target_struct_size;
1365 ++t)
1366 {
1367 if ((*t)->to_stratum == core_stratum)
1368 {
1369 runable = *t;
1370 ++count;
1371 }
1372 }
c5aa993b
JM
1373
1374 return (count == 1 ? runable : NULL);
c906108c 1375}
ed9a39eb
JM
1376
1377/*
1378 * Find the next target down the stack from the specified target.
1379 */
1380
1381struct target_ops *
1382find_target_beneath (t)
1383 struct target_ops *t;
1384{
1385 struct target_stack_item *cur;
1386
1387 for (cur = target_stack; cur; cur = cur->next)
1388 if (cur->target_ops == t)
1389 break;
1390
1391 if (cur == NULL || cur->next == NULL)
1392 return NULL;
1393 else
1394 return cur->next->target_ops;
1395}
1396
c906108c
SS
1397\f
1398/* The inferior process has died. Long live the inferior! */
1399
1400void
1401generic_mourn_inferior ()
1402{
1403 extern int show_breakpoint_hit_counts;
1404
1405 inferior_pid = 0;
1406 attach_flag = 0;
1407 breakpoint_init_inferior (inf_exited);
1408 registers_changed ();
1409
1410#ifdef CLEAR_DEFERRED_STORES
1411 /* Delete any pending stores to the inferior... */
1412 CLEAR_DEFERRED_STORES;
1413#endif
1414
1415 reopen_exec_file ();
1416 reinit_frame_cache ();
1417
1418 /* It is confusing to the user for ignore counts to stick around
1419 from previous runs of the inferior. So clear them. */
1420 /* However, it is more confusing for the ignore counts to disappear when
1421 using hit counts. So don't clear them if we're counting hits. */
1422 if (!show_breakpoint_hit_counts)
1423 breakpoint_clear_ignore_counts ();
1424}
1425\f
1426/* This table must match in order and size the signals in enum target_signal
1427 in target.h. */
9846de1b 1428/* *INDENT-OFF* */
c906108c
SS
1429static struct {
1430 char *name;
1431 char *string;
1432 } signals [] =
1433{
1434 {"0", "Signal 0"},
1435 {"SIGHUP", "Hangup"},
1436 {"SIGINT", "Interrupt"},
1437 {"SIGQUIT", "Quit"},
1438 {"SIGILL", "Illegal instruction"},
1439 {"SIGTRAP", "Trace/breakpoint trap"},
1440 {"SIGABRT", "Aborted"},
1441 {"SIGEMT", "Emulation trap"},
1442 {"SIGFPE", "Arithmetic exception"},
1443 {"SIGKILL", "Killed"},
1444 {"SIGBUS", "Bus error"},
1445 {"SIGSEGV", "Segmentation fault"},
1446 {"SIGSYS", "Bad system call"},
1447 {"SIGPIPE", "Broken pipe"},
1448 {"SIGALRM", "Alarm clock"},
1449 {"SIGTERM", "Terminated"},
1450 {"SIGURG", "Urgent I/O condition"},
1451 {"SIGSTOP", "Stopped (signal)"},
1452 {"SIGTSTP", "Stopped (user)"},
1453 {"SIGCONT", "Continued"},
1454 {"SIGCHLD", "Child status changed"},
1455 {"SIGTTIN", "Stopped (tty input)"},
1456 {"SIGTTOU", "Stopped (tty output)"},
1457 {"SIGIO", "I/O possible"},
1458 {"SIGXCPU", "CPU time limit exceeded"},
1459 {"SIGXFSZ", "File size limit exceeded"},
1460 {"SIGVTALRM", "Virtual timer expired"},
1461 {"SIGPROF", "Profiling timer expired"},
1462 {"SIGWINCH", "Window size changed"},
1463 {"SIGLOST", "Resource lost"},
1464 {"SIGUSR1", "User defined signal 1"},
1465 {"SIGUSR2", "User defined signal 2"},
1466 {"SIGPWR", "Power fail/restart"},
1467 {"SIGPOLL", "Pollable event occurred"},
1468 {"SIGWIND", "SIGWIND"},
1469 {"SIGPHONE", "SIGPHONE"},
1470 {"SIGWAITING", "Process's LWPs are blocked"},
1471 {"SIGLWP", "Signal LWP"},
1472 {"SIGDANGER", "Swap space dangerously low"},
1473 {"SIGGRANT", "Monitor mode granted"},
1474 {"SIGRETRACT", "Need to relinquish monitor mode"},
1475 {"SIGMSG", "Monitor mode data available"},
1476 {"SIGSOUND", "Sound completed"},
1477 {"SIGSAK", "Secure attention"},
1478 {"SIGPRIO", "SIGPRIO"},
1479 {"SIG33", "Real-time event 33"},
1480 {"SIG34", "Real-time event 34"},
1481 {"SIG35", "Real-time event 35"},
1482 {"SIG36", "Real-time event 36"},
1483 {"SIG37", "Real-time event 37"},
1484 {"SIG38", "Real-time event 38"},
1485 {"SIG39", "Real-time event 39"},
1486 {"SIG40", "Real-time event 40"},
1487 {"SIG41", "Real-time event 41"},
1488 {"SIG42", "Real-time event 42"},
1489 {"SIG43", "Real-time event 43"},
1490 {"SIG44", "Real-time event 44"},
1491 {"SIG45", "Real-time event 45"},
1492 {"SIG46", "Real-time event 46"},
1493 {"SIG47", "Real-time event 47"},
1494 {"SIG48", "Real-time event 48"},
1495 {"SIG49", "Real-time event 49"},
1496 {"SIG50", "Real-time event 50"},
1497 {"SIG51", "Real-time event 51"},
1498 {"SIG52", "Real-time event 52"},
1499 {"SIG53", "Real-time event 53"},
1500 {"SIG54", "Real-time event 54"},
1501 {"SIG55", "Real-time event 55"},
1502 {"SIG56", "Real-time event 56"},
1503 {"SIG57", "Real-time event 57"},
1504 {"SIG58", "Real-time event 58"},
1505 {"SIG59", "Real-time event 59"},
1506 {"SIG60", "Real-time event 60"},
1507 {"SIG61", "Real-time event 61"},
1508 {"SIG62", "Real-time event 62"},
1509 {"SIG63", "Real-time event 63"},
cd0fc7c3 1510 {"SIGCANCEL", "LWP internal signal"},
d4f3574e 1511 {"SIG32", "Real-time event 32"},
c906108c
SS
1512
1513#if defined(MACH) || defined(__MACH__)
1514 /* Mach exceptions */
1515 {"EXC_BAD_ACCESS", "Could not access memory"},
1516 {"EXC_BAD_INSTRUCTION", "Illegal instruction/operand"},
1517 {"EXC_ARITHMETIC", "Arithmetic exception"},
1518 {"EXC_EMULATION", "Emulation instruction"},
1519 {"EXC_SOFTWARE", "Software generated exception"},
1520 {"EXC_BREAKPOINT", "Breakpoint"},
1521#endif
7a292a7a
SS
1522 {"SIGINFO", "Information request"},
1523
c906108c
SS
1524 {NULL, "Unknown signal"},
1525 {NULL, "Internal error: printing TARGET_SIGNAL_DEFAULT"},
1526
1527 /* Last entry, used to check whether the table is the right size. */
1528 {NULL, "TARGET_SIGNAL_MAGIC"}
1529};
9846de1b 1530/* *INDENT-ON* */
c906108c 1531
c5aa993b
JM
1532
1533
c906108c
SS
1534/* Return the string for a signal. */
1535char *
1536target_signal_to_string (sig)
1537 enum target_signal sig;
1538{
7a292a7a
SS
1539 if ((sig >= TARGET_SIGNAL_FIRST) && (sig <= TARGET_SIGNAL_LAST))
1540 return signals[sig].string;
1541 else
1542 return signals[TARGET_SIGNAL_UNKNOWN].string;
c906108c
SS
1543}
1544
1545/* Return the name for a signal. */
1546char *
1547target_signal_to_name (sig)
1548 enum target_signal sig;
1549{
1550 if (sig == TARGET_SIGNAL_UNKNOWN)
1551 /* I think the code which prints this will always print it along with
1552 the string, so no need to be verbose. */
1553 return "?";
1554 return signals[sig].name;
1555}
1556
1557/* Given a name, return its signal. */
1558enum target_signal
1559target_signal_from_name (name)
1560 char *name;
1561{
1562 enum target_signal sig;
1563
1564 /* It's possible we also should allow "SIGCLD" as well as "SIGCHLD"
1565 for TARGET_SIGNAL_SIGCHLD. SIGIOT, on the other hand, is more
1566 questionable; seems like by now people should call it SIGABRT
1567 instead. */
1568
1569 /* This ugly cast brought to you by the native VAX compiler. */
1570 for (sig = TARGET_SIGNAL_HUP;
1571 signals[sig].name != NULL;
c5aa993b 1572 sig = (enum target_signal) ((int) sig + 1))
c906108c
SS
1573 if (STREQ (name, signals[sig].name))
1574 return sig;
1575 return TARGET_SIGNAL_UNKNOWN;
1576}
1577\f
1578/* The following functions are to help certain targets deal
1579 with the signal/waitstatus stuff. They could just as well be in
1580 a file called native-utils.c or unixwaitstatus-utils.c or whatever. */
1581
1582/* Convert host signal to our signals. */
1583enum target_signal
1584target_signal_from_host (hostsig)
1585 int hostsig;
1586{
1587 /* A switch statement would make sense but would require special kludges
1588 to deal with the cases where more than one signal has the same number. */
1589
c5aa993b
JM
1590 if (hostsig == 0)
1591 return TARGET_SIGNAL_0;
c906108c
SS
1592
1593#if defined (SIGHUP)
c5aa993b
JM
1594 if (hostsig == SIGHUP)
1595 return TARGET_SIGNAL_HUP;
c906108c
SS
1596#endif
1597#if defined (SIGINT)
c5aa993b
JM
1598 if (hostsig == SIGINT)
1599 return TARGET_SIGNAL_INT;
c906108c
SS
1600#endif
1601#if defined (SIGQUIT)
c5aa993b
JM
1602 if (hostsig == SIGQUIT)
1603 return TARGET_SIGNAL_QUIT;
c906108c
SS
1604#endif
1605#if defined (SIGILL)
c5aa993b
JM
1606 if (hostsig == SIGILL)
1607 return TARGET_SIGNAL_ILL;
c906108c
SS
1608#endif
1609#if defined (SIGTRAP)
c5aa993b
JM
1610 if (hostsig == SIGTRAP)
1611 return TARGET_SIGNAL_TRAP;
c906108c
SS
1612#endif
1613#if defined (SIGABRT)
c5aa993b
JM
1614 if (hostsig == SIGABRT)
1615 return TARGET_SIGNAL_ABRT;
c906108c
SS
1616#endif
1617#if defined (SIGEMT)
c5aa993b
JM
1618 if (hostsig == SIGEMT)
1619 return TARGET_SIGNAL_EMT;
c906108c
SS
1620#endif
1621#if defined (SIGFPE)
c5aa993b
JM
1622 if (hostsig == SIGFPE)
1623 return TARGET_SIGNAL_FPE;
c906108c
SS
1624#endif
1625#if defined (SIGKILL)
c5aa993b
JM
1626 if (hostsig == SIGKILL)
1627 return TARGET_SIGNAL_KILL;
c906108c
SS
1628#endif
1629#if defined (SIGBUS)
c5aa993b
JM
1630 if (hostsig == SIGBUS)
1631 return TARGET_SIGNAL_BUS;
c906108c
SS
1632#endif
1633#if defined (SIGSEGV)
c5aa993b
JM
1634 if (hostsig == SIGSEGV)
1635 return TARGET_SIGNAL_SEGV;
c906108c
SS
1636#endif
1637#if defined (SIGSYS)
c5aa993b
JM
1638 if (hostsig == SIGSYS)
1639 return TARGET_SIGNAL_SYS;
c906108c
SS
1640#endif
1641#if defined (SIGPIPE)
c5aa993b
JM
1642 if (hostsig == SIGPIPE)
1643 return TARGET_SIGNAL_PIPE;
c906108c
SS
1644#endif
1645#if defined (SIGALRM)
c5aa993b
JM
1646 if (hostsig == SIGALRM)
1647 return TARGET_SIGNAL_ALRM;
c906108c
SS
1648#endif
1649#if defined (SIGTERM)
c5aa993b
JM
1650 if (hostsig == SIGTERM)
1651 return TARGET_SIGNAL_TERM;
c906108c
SS
1652#endif
1653#if defined (SIGUSR1)
c5aa993b
JM
1654 if (hostsig == SIGUSR1)
1655 return TARGET_SIGNAL_USR1;
c906108c
SS
1656#endif
1657#if defined (SIGUSR2)
c5aa993b
JM
1658 if (hostsig == SIGUSR2)
1659 return TARGET_SIGNAL_USR2;
c906108c
SS
1660#endif
1661#if defined (SIGCLD)
c5aa993b
JM
1662 if (hostsig == SIGCLD)
1663 return TARGET_SIGNAL_CHLD;
c906108c
SS
1664#endif
1665#if defined (SIGCHLD)
c5aa993b
JM
1666 if (hostsig == SIGCHLD)
1667 return TARGET_SIGNAL_CHLD;
c906108c
SS
1668#endif
1669#if defined (SIGPWR)
c5aa993b
JM
1670 if (hostsig == SIGPWR)
1671 return TARGET_SIGNAL_PWR;
c906108c
SS
1672#endif
1673#if defined (SIGWINCH)
c5aa993b
JM
1674 if (hostsig == SIGWINCH)
1675 return TARGET_SIGNAL_WINCH;
c906108c
SS
1676#endif
1677#if defined (SIGURG)
c5aa993b
JM
1678 if (hostsig == SIGURG)
1679 return TARGET_SIGNAL_URG;
c906108c
SS
1680#endif
1681#if defined (SIGIO)
c5aa993b
JM
1682 if (hostsig == SIGIO)
1683 return TARGET_SIGNAL_IO;
c906108c
SS
1684#endif
1685#if defined (SIGPOLL)
c5aa993b
JM
1686 if (hostsig == SIGPOLL)
1687 return TARGET_SIGNAL_POLL;
c906108c
SS
1688#endif
1689#if defined (SIGSTOP)
c5aa993b
JM
1690 if (hostsig == SIGSTOP)
1691 return TARGET_SIGNAL_STOP;
c906108c
SS
1692#endif
1693#if defined (SIGTSTP)
c5aa993b
JM
1694 if (hostsig == SIGTSTP)
1695 return TARGET_SIGNAL_TSTP;
c906108c
SS
1696#endif
1697#if defined (SIGCONT)
c5aa993b
JM
1698 if (hostsig == SIGCONT)
1699 return TARGET_SIGNAL_CONT;
c906108c
SS
1700#endif
1701#if defined (SIGTTIN)
c5aa993b
JM
1702 if (hostsig == SIGTTIN)
1703 return TARGET_SIGNAL_TTIN;
c906108c
SS
1704#endif
1705#if defined (SIGTTOU)
c5aa993b
JM
1706 if (hostsig == SIGTTOU)
1707 return TARGET_SIGNAL_TTOU;
c906108c
SS
1708#endif
1709#if defined (SIGVTALRM)
c5aa993b
JM
1710 if (hostsig == SIGVTALRM)
1711 return TARGET_SIGNAL_VTALRM;
c906108c
SS
1712#endif
1713#if defined (SIGPROF)
c5aa993b
JM
1714 if (hostsig == SIGPROF)
1715 return TARGET_SIGNAL_PROF;
c906108c
SS
1716#endif
1717#if defined (SIGXCPU)
c5aa993b
JM
1718 if (hostsig == SIGXCPU)
1719 return TARGET_SIGNAL_XCPU;
c906108c
SS
1720#endif
1721#if defined (SIGXFSZ)
c5aa993b
JM
1722 if (hostsig == SIGXFSZ)
1723 return TARGET_SIGNAL_XFSZ;
c906108c
SS
1724#endif
1725#if defined (SIGWIND)
c5aa993b
JM
1726 if (hostsig == SIGWIND)
1727 return TARGET_SIGNAL_WIND;
c906108c
SS
1728#endif
1729#if defined (SIGPHONE)
c5aa993b
JM
1730 if (hostsig == SIGPHONE)
1731 return TARGET_SIGNAL_PHONE;
c906108c
SS
1732#endif
1733#if defined (SIGLOST)
c5aa993b
JM
1734 if (hostsig == SIGLOST)
1735 return TARGET_SIGNAL_LOST;
c906108c
SS
1736#endif
1737#if defined (SIGWAITING)
c5aa993b
JM
1738 if (hostsig == SIGWAITING)
1739 return TARGET_SIGNAL_WAITING;
c906108c 1740#endif
cd0fc7c3 1741#if defined (SIGCANCEL)
c5aa993b
JM
1742 if (hostsig == SIGCANCEL)
1743 return TARGET_SIGNAL_CANCEL;
cd0fc7c3 1744#endif
c906108c 1745#if defined (SIGLWP)
c5aa993b
JM
1746 if (hostsig == SIGLWP)
1747 return TARGET_SIGNAL_LWP;
c906108c
SS
1748#endif
1749#if defined (SIGDANGER)
c5aa993b
JM
1750 if (hostsig == SIGDANGER)
1751 return TARGET_SIGNAL_DANGER;
c906108c
SS
1752#endif
1753#if defined (SIGGRANT)
c5aa993b
JM
1754 if (hostsig == SIGGRANT)
1755 return TARGET_SIGNAL_GRANT;
c906108c
SS
1756#endif
1757#if defined (SIGRETRACT)
c5aa993b
JM
1758 if (hostsig == SIGRETRACT)
1759 return TARGET_SIGNAL_RETRACT;
c906108c
SS
1760#endif
1761#if defined (SIGMSG)
c5aa993b
JM
1762 if (hostsig == SIGMSG)
1763 return TARGET_SIGNAL_MSG;
c906108c
SS
1764#endif
1765#if defined (SIGSOUND)
c5aa993b
JM
1766 if (hostsig == SIGSOUND)
1767 return TARGET_SIGNAL_SOUND;
c906108c
SS
1768#endif
1769#if defined (SIGSAK)
c5aa993b
JM
1770 if (hostsig == SIGSAK)
1771 return TARGET_SIGNAL_SAK;
c906108c
SS
1772#endif
1773#if defined (SIGPRIO)
c5aa993b
JM
1774 if (hostsig == SIGPRIO)
1775 return TARGET_SIGNAL_PRIO;
c906108c
SS
1776#endif
1777
1778 /* Mach exceptions. Assumes that the values for EXC_ are positive! */
1779#if defined (EXC_BAD_ACCESS) && defined (_NSIG)
c5aa993b
JM
1780 if (hostsig == _NSIG + EXC_BAD_ACCESS)
1781 return TARGET_EXC_BAD_ACCESS;
c906108c
SS
1782#endif
1783#if defined (EXC_BAD_INSTRUCTION) && defined (_NSIG)
c5aa993b
JM
1784 if (hostsig == _NSIG + EXC_BAD_INSTRUCTION)
1785 return TARGET_EXC_BAD_INSTRUCTION;
c906108c
SS
1786#endif
1787#if defined (EXC_ARITHMETIC) && defined (_NSIG)
c5aa993b
JM
1788 if (hostsig == _NSIG + EXC_ARITHMETIC)
1789 return TARGET_EXC_ARITHMETIC;
c906108c
SS
1790#endif
1791#if defined (EXC_EMULATION) && defined (_NSIG)
c5aa993b
JM
1792 if (hostsig == _NSIG + EXC_EMULATION)
1793 return TARGET_EXC_EMULATION;
c906108c
SS
1794#endif
1795#if defined (EXC_SOFTWARE) && defined (_NSIG)
c5aa993b
JM
1796 if (hostsig == _NSIG + EXC_SOFTWARE)
1797 return TARGET_EXC_SOFTWARE;
c906108c
SS
1798#endif
1799#if defined (EXC_BREAKPOINT) && defined (_NSIG)
c5aa993b
JM
1800 if (hostsig == _NSIG + EXC_BREAKPOINT)
1801 return TARGET_EXC_BREAKPOINT;
c906108c
SS
1802#endif
1803
7a292a7a 1804#if defined (SIGINFO)
c5aa993b
JM
1805 if (hostsig == SIGINFO)
1806 return TARGET_SIGNAL_INFO;
7a292a7a
SS
1807#endif
1808
c906108c
SS
1809#if defined (REALTIME_LO)
1810 if (hostsig >= REALTIME_LO && hostsig < REALTIME_HI)
d4f3574e
SS
1811 {
1812 /* This block of TARGET_SIGNAL_REALTIME value is in order. */
1813 if (33 <= hostsig && hostsig <= 63)
1814 return (enum target_signal)
1815 (hostsig - 33 + (int) TARGET_SIGNAL_REALTIME_33);
1816 else if (hostsig == 32)
1817 return TARGET_SIGNAL_REALTIME_32;
1818 else
1819 error ("GDB bug: target.c (target_signal_from_host): unrecognized real-time signal");
1820 }
c906108c
SS
1821#endif
1822 return TARGET_SIGNAL_UNKNOWN;
1823}
1824
c2d11a7d
JM
1825/* Convert a OURSIG (an enum target_signal) to the form used by the
1826 target operating system (refered to as the ``host'') or zero if the
1827 equivalent host signal is not available. Set/clear OURSIG_OK
1828 accordingly. */
1829
1830static int
1831do_target_signal_to_host (enum target_signal oursig,
1832 int *oursig_ok)
c906108c 1833{
c2d11a7d 1834 *oursig_ok = 1;
c906108c
SS
1835 switch (oursig)
1836 {
c5aa993b
JM
1837 case TARGET_SIGNAL_0:
1838 return 0;
c906108c
SS
1839
1840#if defined (SIGHUP)
c5aa993b
JM
1841 case TARGET_SIGNAL_HUP:
1842 return SIGHUP;
c906108c
SS
1843#endif
1844#if defined (SIGINT)
c5aa993b
JM
1845 case TARGET_SIGNAL_INT:
1846 return SIGINT;
c906108c
SS
1847#endif
1848#if defined (SIGQUIT)
c5aa993b
JM
1849 case TARGET_SIGNAL_QUIT:
1850 return SIGQUIT;
c906108c
SS
1851#endif
1852#if defined (SIGILL)
c5aa993b
JM
1853 case TARGET_SIGNAL_ILL:
1854 return SIGILL;
c906108c
SS
1855#endif
1856#if defined (SIGTRAP)
c5aa993b
JM
1857 case TARGET_SIGNAL_TRAP:
1858 return SIGTRAP;
c906108c
SS
1859#endif
1860#if defined (SIGABRT)
c5aa993b
JM
1861 case TARGET_SIGNAL_ABRT:
1862 return SIGABRT;
c906108c
SS
1863#endif
1864#if defined (SIGEMT)
c5aa993b
JM
1865 case TARGET_SIGNAL_EMT:
1866 return SIGEMT;
c906108c
SS
1867#endif
1868#if defined (SIGFPE)
c5aa993b
JM
1869 case TARGET_SIGNAL_FPE:
1870 return SIGFPE;
c906108c
SS
1871#endif
1872#if defined (SIGKILL)
c5aa993b
JM
1873 case TARGET_SIGNAL_KILL:
1874 return SIGKILL;
c906108c
SS
1875#endif
1876#if defined (SIGBUS)
c5aa993b
JM
1877 case TARGET_SIGNAL_BUS:
1878 return SIGBUS;
c906108c
SS
1879#endif
1880#if defined (SIGSEGV)
c5aa993b
JM
1881 case TARGET_SIGNAL_SEGV:
1882 return SIGSEGV;
c906108c
SS
1883#endif
1884#if defined (SIGSYS)
c5aa993b
JM
1885 case TARGET_SIGNAL_SYS:
1886 return SIGSYS;
c906108c
SS
1887#endif
1888#if defined (SIGPIPE)
c5aa993b
JM
1889 case TARGET_SIGNAL_PIPE:
1890 return SIGPIPE;
c906108c
SS
1891#endif
1892#if defined (SIGALRM)
c5aa993b
JM
1893 case TARGET_SIGNAL_ALRM:
1894 return SIGALRM;
c906108c
SS
1895#endif
1896#if defined (SIGTERM)
c5aa993b
JM
1897 case TARGET_SIGNAL_TERM:
1898 return SIGTERM;
c906108c
SS
1899#endif
1900#if defined (SIGUSR1)
c5aa993b
JM
1901 case TARGET_SIGNAL_USR1:
1902 return SIGUSR1;
c906108c
SS
1903#endif
1904#if defined (SIGUSR2)
c5aa993b
JM
1905 case TARGET_SIGNAL_USR2:
1906 return SIGUSR2;
c906108c
SS
1907#endif
1908#if defined (SIGCHLD) || defined (SIGCLD)
c5aa993b 1909 case TARGET_SIGNAL_CHLD:
c906108c
SS
1910#if defined (SIGCHLD)
1911 return SIGCHLD;
1912#else
1913 return SIGCLD;
1914#endif
1915#endif /* SIGCLD or SIGCHLD */
1916#if defined (SIGPWR)
c5aa993b
JM
1917 case TARGET_SIGNAL_PWR:
1918 return SIGPWR;
c906108c
SS
1919#endif
1920#if defined (SIGWINCH)
c5aa993b
JM
1921 case TARGET_SIGNAL_WINCH:
1922 return SIGWINCH;
c906108c
SS
1923#endif
1924#if defined (SIGURG)
c5aa993b
JM
1925 case TARGET_SIGNAL_URG:
1926 return SIGURG;
c906108c
SS
1927#endif
1928#if defined (SIGIO)
c5aa993b
JM
1929 case TARGET_SIGNAL_IO:
1930 return SIGIO;
c906108c
SS
1931#endif
1932#if defined (SIGPOLL)
c5aa993b
JM
1933 case TARGET_SIGNAL_POLL:
1934 return SIGPOLL;
c906108c
SS
1935#endif
1936#if defined (SIGSTOP)
c5aa993b
JM
1937 case TARGET_SIGNAL_STOP:
1938 return SIGSTOP;
c906108c
SS
1939#endif
1940#if defined (SIGTSTP)
c5aa993b
JM
1941 case TARGET_SIGNAL_TSTP:
1942 return SIGTSTP;
c906108c
SS
1943#endif
1944#if defined (SIGCONT)
c5aa993b
JM
1945 case TARGET_SIGNAL_CONT:
1946 return SIGCONT;
c906108c
SS
1947#endif
1948#if defined (SIGTTIN)
c5aa993b
JM
1949 case TARGET_SIGNAL_TTIN:
1950 return SIGTTIN;
c906108c
SS
1951#endif
1952#if defined (SIGTTOU)
c5aa993b
JM
1953 case TARGET_SIGNAL_TTOU:
1954 return SIGTTOU;
c906108c
SS
1955#endif
1956#if defined (SIGVTALRM)
c5aa993b
JM
1957 case TARGET_SIGNAL_VTALRM:
1958 return SIGVTALRM;
c906108c
SS
1959#endif
1960#if defined (SIGPROF)
c5aa993b
JM
1961 case TARGET_SIGNAL_PROF:
1962 return SIGPROF;
c906108c
SS
1963#endif
1964#if defined (SIGXCPU)
c5aa993b
JM
1965 case TARGET_SIGNAL_XCPU:
1966 return SIGXCPU;
c906108c
SS
1967#endif
1968#if defined (SIGXFSZ)
c5aa993b
JM
1969 case TARGET_SIGNAL_XFSZ:
1970 return SIGXFSZ;
c906108c
SS
1971#endif
1972#if defined (SIGWIND)
c5aa993b
JM
1973 case TARGET_SIGNAL_WIND:
1974 return SIGWIND;
c906108c
SS
1975#endif
1976#if defined (SIGPHONE)
c5aa993b
JM
1977 case TARGET_SIGNAL_PHONE:
1978 return SIGPHONE;
c906108c
SS
1979#endif
1980#if defined (SIGLOST)
c5aa993b
JM
1981 case TARGET_SIGNAL_LOST:
1982 return SIGLOST;
c906108c
SS
1983#endif
1984#if defined (SIGWAITING)
c5aa993b
JM
1985 case TARGET_SIGNAL_WAITING:
1986 return SIGWAITING;
c906108c 1987#endif
cd0fc7c3 1988#if defined (SIGCANCEL)
c5aa993b
JM
1989 case TARGET_SIGNAL_CANCEL:
1990 return SIGCANCEL;
cd0fc7c3 1991#endif
c906108c 1992#if defined (SIGLWP)
c5aa993b
JM
1993 case TARGET_SIGNAL_LWP:
1994 return SIGLWP;
c906108c
SS
1995#endif
1996#if defined (SIGDANGER)
c5aa993b
JM
1997 case TARGET_SIGNAL_DANGER:
1998 return SIGDANGER;
c906108c
SS
1999#endif
2000#if defined (SIGGRANT)
c5aa993b
JM
2001 case TARGET_SIGNAL_GRANT:
2002 return SIGGRANT;
c906108c
SS
2003#endif
2004#if defined (SIGRETRACT)
c5aa993b
JM
2005 case TARGET_SIGNAL_RETRACT:
2006 return SIGRETRACT;
c906108c
SS
2007#endif
2008#if defined (SIGMSG)
c5aa993b
JM
2009 case TARGET_SIGNAL_MSG:
2010 return SIGMSG;
c906108c
SS
2011#endif
2012#if defined (SIGSOUND)
c5aa993b
JM
2013 case TARGET_SIGNAL_SOUND:
2014 return SIGSOUND;
c906108c
SS
2015#endif
2016#if defined (SIGSAK)
c5aa993b
JM
2017 case TARGET_SIGNAL_SAK:
2018 return SIGSAK;
c906108c
SS
2019#endif
2020#if defined (SIGPRIO)
c5aa993b
JM
2021 case TARGET_SIGNAL_PRIO:
2022 return SIGPRIO;
c906108c
SS
2023#endif
2024
d4f3574e
SS
2025 case TARGET_SIGNAL_REALTIME_32: return 32; /* by definition */
2026
c906108c
SS
2027 /* Mach exceptions. Assumes that the values for EXC_ are positive! */
2028#if defined (EXC_BAD_ACCESS) && defined (_NSIG)
c5aa993b
JM
2029 case TARGET_EXC_BAD_ACCESS:
2030 return _NSIG + EXC_BAD_ACCESS;
c906108c
SS
2031#endif
2032#if defined (EXC_BAD_INSTRUCTION) && defined (_NSIG)
c5aa993b
JM
2033 case TARGET_EXC_BAD_INSTRUCTION:
2034 return _NSIG + EXC_BAD_INSTRUCTION;
c906108c
SS
2035#endif
2036#if defined (EXC_ARITHMETIC) && defined (_NSIG)
c5aa993b
JM
2037 case TARGET_EXC_ARITHMETIC:
2038 return _NSIG + EXC_ARITHMETIC;
c906108c
SS
2039#endif
2040#if defined (EXC_EMULATION) && defined (_NSIG)
c5aa993b
JM
2041 case TARGET_EXC_EMULATION:
2042 return _NSIG + EXC_EMULATION;
c906108c
SS
2043#endif
2044#if defined (EXC_SOFTWARE) && defined (_NSIG)
c5aa993b
JM
2045 case TARGET_EXC_SOFTWARE:
2046 return _NSIG + EXC_SOFTWARE;
c906108c
SS
2047#endif
2048#if defined (EXC_BREAKPOINT) && defined (_NSIG)
c5aa993b
JM
2049 case TARGET_EXC_BREAKPOINT:
2050 return _NSIG + EXC_BREAKPOINT;
c906108c
SS
2051#endif
2052
7a292a7a 2053#if defined (SIGINFO)
c5aa993b
JM
2054 case TARGET_SIGNAL_INFO:
2055 return SIGINFO;
7a292a7a
SS
2056#endif
2057
c906108c
SS
2058 default:
2059#if defined (REALTIME_LO)
2060 if (oursig >= TARGET_SIGNAL_REALTIME_33
2061 && oursig <= TARGET_SIGNAL_REALTIME_63)
2062 {
2063 int retsig =
c5aa993b 2064 (int) oursig - (int) TARGET_SIGNAL_REALTIME_33 + REALTIME_LO;
c906108c
SS
2065 if (retsig < REALTIME_HI)
2066 return retsig;
2067 }
2068#endif
c2d11a7d
JM
2069 *oursig_ok = 0;
2070 return 0;
2071 }
2072}
2073
2074int
2075target_signal_to_host_p (enum target_signal oursig)
2076{
2077 int oursig_ok;
2078 do_target_signal_to_host (oursig, &oursig_ok);
2079 return oursig_ok;
2080}
2081
2082int
2083target_signal_to_host (enum target_signal oursig)
2084{
2085 int oursig_ok;
2086 int targ_signo = do_target_signal_to_host (oursig, &oursig_ok);
2087 if (!oursig_ok)
2088 {
c906108c 2089 /* The user might be trying to do "signal SIGSAK" where this system
c5aa993b 2090 doesn't have SIGSAK. */
c906108c
SS
2091 warning ("Signal %s does not exist on this system.\n",
2092 target_signal_to_name (oursig));
2093 return 0;
2094 }
c2d11a7d
JM
2095 else
2096 return targ_signo;
c906108c
SS
2097}
2098
2099/* Helper function for child_wait and the Lynx derivatives of child_wait.
2100 HOSTSTATUS is the waitstatus from wait() or the equivalent; store our
2101 translation of that in OURSTATUS. */
2102void
2103store_waitstatus (ourstatus, hoststatus)
2104 struct target_waitstatus *ourstatus;
2105 int hoststatus;
2106{
2107#ifdef CHILD_SPECIAL_WAITSTATUS
2108 /* CHILD_SPECIAL_WAITSTATUS should return nonzero and set *OURSTATUS
2109 if it wants to deal with hoststatus. */
2110 if (CHILD_SPECIAL_WAITSTATUS (ourstatus, hoststatus))
2111 return;
2112#endif
2113
2114 if (WIFEXITED (hoststatus))
2115 {
2116 ourstatus->kind = TARGET_WAITKIND_EXITED;
2117 ourstatus->value.integer = WEXITSTATUS (hoststatus);
2118 }
2119 else if (!WIFSTOPPED (hoststatus))
2120 {
2121 ourstatus->kind = TARGET_WAITKIND_SIGNALLED;
2122 ourstatus->value.sig = target_signal_from_host (WTERMSIG (hoststatus));
2123 }
2124 else
2125 {
2126 ourstatus->kind = TARGET_WAITKIND_STOPPED;
2127 ourstatus->value.sig = target_signal_from_host (WSTOPSIG (hoststatus));
2128 }
2129}
2130\f
2131/* In some circumstances we allow a command to specify a numeric
2132 signal. The idea is to keep these circumstances limited so that
2133 users (and scripts) develop portable habits. For comparison,
2134 POSIX.2 `kill' requires that 1,2,3,6,9,14, and 15 work (and using a
2135 numeric signal at all is obscelescent. We are slightly more
2136 lenient and allow 1-15 which should match host signal numbers on
2137 most systems. Use of symbolic signal names is strongly encouraged. */
2138
2139enum target_signal
2140target_signal_from_command (num)
2141 int num;
2142{
2143 if (num >= 1 && num <= 15)
c5aa993b 2144 return (enum target_signal) num;
c906108c
SS
2145 error ("Only signals 1-15 are valid as numeric signals.\n\
2146Use \"info signals\" for a list of symbolic signals.");
2147}
2148\f
2149/* Returns zero to leave the inferior alone, one to interrupt it. */
2150int (*target_activity_function) PARAMS ((void));
2151int target_activity_fd;
2152\f
2153/* Convert a normal process ID to a string. Returns the string in a static
2154 buffer. */
2155
2156char *
2157normal_pid_to_str (pid)
2158 int pid;
2159{
2160 static char buf[30];
2161
2162 if (STREQ (current_target.to_shortname, "remote"))
104c1213 2163 sprintf (buf, "thread %d", pid);
c906108c 2164 else
104c1213 2165 sprintf (buf, "process %d", pid);
c906108c
SS
2166
2167 return buf;
2168}
2169
2170/* Some targets (such as ttrace-based HPUX) don't allow us to request
2171 notification of inferior events such as fork and vork immediately
2172 after the inferior is created. (This because of how gdb gets an
2173 inferior created via invoking a shell to do it. In such a scenario,
2174 if the shell init file has commands in it, the shell will fork and
2175 exec for each of those commands, and we will see each such fork
2176 event. Very bad.)
c5aa993b 2177
c906108c
SS
2178 This function is used by all targets that allow us to request
2179 notification of forks, etc at inferior creation time; e.g., in
2180 target_acknowledge_forked_child.
c5aa993b 2181 */
392a587b 2182static void
c906108c 2183normal_target_post_startup_inferior (pid)
c5aa993b 2184 int pid;
c906108c
SS
2185{
2186 /* This space intentionally left blank. */
2187}
2188
2189/* Set up the handful of non-empty slots needed by the dummy target
2190 vector. */
2191
2192static void
2193init_dummy_target ()
2194{
2195 dummy_target.to_shortname = "None";
2196 dummy_target.to_longname = "None";
2197 dummy_target.to_doc = "";
2198 dummy_target.to_attach = find_default_attach;
2199 dummy_target.to_require_attach = find_default_require_attach;
2200 dummy_target.to_require_detach = find_default_require_detach;
2201 dummy_target.to_create_inferior = find_default_create_inferior;
2202 dummy_target.to_clone_and_follow_inferior = find_default_clone_and_follow_inferior;
ed9a39eb 2203 dummy_target.to_pid_to_str = normal_pid_to_str;
c906108c
SS
2204 dummy_target.to_stratum = dummy_stratum;
2205 dummy_target.to_magic = OPS_MAGIC;
2206}
c906108c 2207\f
c5aa993b 2208
c906108c
SS
2209static struct target_ops debug_target;
2210
2211static void
2212debug_to_open (args, from_tty)
2213 char *args;
2214 int from_tty;
2215{
2216 debug_target.to_open (args, from_tty);
2217
96baa820 2218 fprintf_unfiltered (gdb_stdlog, "target_open (%s, %d)\n", args, from_tty);
c906108c
SS
2219}
2220
2221static void
2222debug_to_close (quitting)
2223 int quitting;
2224{
2225 debug_target.to_close (quitting);
2226
96baa820 2227 fprintf_unfiltered (gdb_stdlog, "target_close (%d)\n", quitting);
c906108c
SS
2228}
2229
2230static void
2231debug_to_attach (args, from_tty)
2232 char *args;
2233 int from_tty;
2234{
2235 debug_target.to_attach (args, from_tty);
2236
96baa820 2237 fprintf_unfiltered (gdb_stdlog, "target_attach (%s, %d)\n", args, from_tty);
c906108c
SS
2238}
2239
2240
2241static void
2242debug_to_post_attach (pid)
c5aa993b 2243 int pid;
c906108c
SS
2244{
2245 debug_target.to_post_attach (pid);
2246
96baa820 2247 fprintf_unfiltered (gdb_stdlog, "target_post_attach (%d)\n", pid);
c906108c
SS
2248}
2249
2250static void
2251debug_to_require_attach (args, from_tty)
2252 char *args;
2253 int from_tty;
2254{
2255 debug_target.to_require_attach (args, from_tty);
2256
96baa820 2257 fprintf_unfiltered (gdb_stdlog,
c906108c
SS
2258 "target_require_attach (%s, %d)\n", args, from_tty);
2259}
2260
2261static void
2262debug_to_detach (args, from_tty)
2263 char *args;
2264 int from_tty;
2265{
2266 debug_target.to_detach (args, from_tty);
2267
96baa820 2268 fprintf_unfiltered (gdb_stdlog, "target_detach (%s, %d)\n", args, from_tty);
c906108c
SS
2269}
2270
2271static void
2272debug_to_require_detach (pid, args, from_tty)
c5aa993b
JM
2273 int pid;
2274 char *args;
2275 int from_tty;
c906108c
SS
2276{
2277 debug_target.to_require_detach (pid, args, from_tty);
2278
96baa820 2279 fprintf_unfiltered (gdb_stdlog,
c5aa993b 2280 "target_require_detach (%d, %s, %d)\n", pid, args, from_tty);
c906108c
SS
2281}
2282
2283static void
2284debug_to_resume (pid, step, siggnal)
2285 int pid;
2286 int step;
2287 enum target_signal siggnal;
2288{
2289 debug_target.to_resume (pid, step, siggnal);
2290
96baa820 2291 fprintf_unfiltered (gdb_stdlog, "target_resume (%d, %s, %s)\n", pid,
c906108c
SS
2292 step ? "step" : "continue",
2293 target_signal_to_name (siggnal));
2294}
2295
2296static int
2297debug_to_wait (pid, status)
2298 int pid;
2299 struct target_waitstatus *status;
2300{
2301 int retval;
2302
2303 retval = debug_target.to_wait (pid, status);
2304
96baa820 2305 fprintf_unfiltered (gdb_stdlog,
c906108c 2306 "target_wait (%d, status) = %d, ", pid, retval);
96baa820 2307 fprintf_unfiltered (gdb_stdlog, "status->kind = ");
c906108c
SS
2308 switch (status->kind)
2309 {
2310 case TARGET_WAITKIND_EXITED:
96baa820 2311 fprintf_unfiltered (gdb_stdlog, "exited, status = %d\n",
c906108c
SS
2312 status->value.integer);
2313 break;
2314 case TARGET_WAITKIND_STOPPED:
96baa820 2315 fprintf_unfiltered (gdb_stdlog, "stopped, signal = %s\n",
c906108c
SS
2316 target_signal_to_name (status->value.sig));
2317 break;
2318 case TARGET_WAITKIND_SIGNALLED:
96baa820 2319 fprintf_unfiltered (gdb_stdlog, "signalled, signal = %s\n",
c906108c
SS
2320 target_signal_to_name (status->value.sig));
2321 break;
2322 case TARGET_WAITKIND_LOADED:
96baa820 2323 fprintf_unfiltered (gdb_stdlog, "loaded\n");
c906108c
SS
2324 break;
2325 case TARGET_WAITKIND_FORKED:
96baa820 2326 fprintf_unfiltered (gdb_stdlog, "forked\n");
c906108c
SS
2327 break;
2328 case TARGET_WAITKIND_VFORKED:
96baa820 2329 fprintf_unfiltered (gdb_stdlog, "vforked\n");
c906108c
SS
2330 break;
2331 case TARGET_WAITKIND_EXECD:
96baa820 2332 fprintf_unfiltered (gdb_stdlog, "execd\n");
c906108c
SS
2333 break;
2334 case TARGET_WAITKIND_SPURIOUS:
96baa820 2335 fprintf_unfiltered (gdb_stdlog, "spurious\n");
c906108c
SS
2336 break;
2337 default:
96baa820 2338 fprintf_unfiltered (gdb_stdlog, "unknown???\n");
c906108c
SS
2339 break;
2340 }
2341
2342 return retval;
2343}
2344
2345static void
2346debug_to_post_wait (pid, status)
c5aa993b
JM
2347 int pid;
2348 int status;
c906108c
SS
2349{
2350 debug_target.to_post_wait (pid, status);
2351
96baa820 2352 fprintf_unfiltered (gdb_stdlog, "target_post_wait (%d, %d)\n",
c906108c
SS
2353 pid, status);
2354}
2355
2356static void
2357debug_to_fetch_registers (regno)
2358 int regno;
2359{
2360 debug_target.to_fetch_registers (regno);
2361
96baa820 2362 fprintf_unfiltered (gdb_stdlog, "target_fetch_registers (%s)",
c906108c
SS
2363 regno != -1 ? REGISTER_NAME (regno) : "-1");
2364 if (regno != -1)
104c1213 2365 fprintf_unfiltered (gdb_stdlog, " = 0x%lx %ld",
c906108c 2366 (unsigned long) read_register (regno),
104c1213 2367 (unsigned long) read_register (regno));
96baa820 2368 fprintf_unfiltered (gdb_stdlog, "\n");
c906108c
SS
2369}
2370
2371static void
2372debug_to_store_registers (regno)
2373 int regno;
2374{
2375 debug_target.to_store_registers (regno);
2376
2377 if (regno >= 0 && regno < NUM_REGS)
104c1213 2378 fprintf_unfiltered (gdb_stdlog, "target_store_registers (%s) = 0x%lx %ld\n",
c906108c
SS
2379 REGISTER_NAME (regno),
2380 (unsigned long) read_register (regno),
2381 (unsigned long) read_register (regno));
2382 else
96baa820 2383 fprintf_unfiltered (gdb_stdlog, "target_store_registers (%d)\n", regno);
c906108c
SS
2384}
2385
2386static void
2387debug_to_prepare_to_store ()
2388{
2389 debug_target.to_prepare_to_store ();
2390
96baa820 2391 fprintf_unfiltered (gdb_stdlog, "target_prepare_to_store ()\n");
c906108c
SS
2392}
2393
2394static int
2395debug_to_xfer_memory (memaddr, myaddr, len, write, target)
2396 CORE_ADDR memaddr;
2397 char *myaddr;
2398 int len;
2399 int write;
2400 struct target_ops *target;
2401{
2402 int retval;
2403
2404 retval = debug_target.to_xfer_memory (memaddr, myaddr, len, write, target);
2405
96baa820 2406 fprintf_unfiltered (gdb_stdlog,
c906108c 2407 "target_xfer_memory (0x%x, xxx, %d, %s, xxx) = %d",
c5aa993b 2408 (unsigned int) memaddr, /* possable truncate long long */
c906108c
SS
2409 len, write ? "write" : "read", retval);
2410
c5aa993b 2411
c906108c
SS
2412
2413 if (retval > 0)
2414 {
2415 int i;
2416
96baa820 2417 fputs_unfiltered (", bytes =", gdb_stdlog);
c906108c
SS
2418 for (i = 0; i < retval; i++)
2419 {
2420 if ((((long) &(myaddr[i])) & 0xf) == 0)
96baa820
JM
2421 fprintf_unfiltered (gdb_stdlog, "\n");
2422 fprintf_unfiltered (gdb_stdlog, " %02x", myaddr[i] & 0xff);
c906108c
SS
2423 }
2424 }
2425
96baa820 2426 fputc_unfiltered ('\n', gdb_stdlog);
c906108c
SS
2427
2428 return retval;
2429}
2430
2431static void
2432debug_to_files_info (target)
2433 struct target_ops *target;
2434{
2435 debug_target.to_files_info (target);
2436
96baa820 2437 fprintf_unfiltered (gdb_stdlog, "target_files_info (xxx)\n");
c906108c
SS
2438}
2439
2440static int
2441debug_to_insert_breakpoint (addr, save)
2442 CORE_ADDR addr;
2443 char *save;
2444{
2445 int retval;
2446
2447 retval = debug_target.to_insert_breakpoint (addr, save);
2448
96baa820 2449 fprintf_unfiltered (gdb_stdlog,
104c1213
JM
2450 "target_insert_breakpoint (0x%lx, xxx) = %ld\n",
2451 (unsigned long) addr,
2452 (unsigned long) retval);
c906108c
SS
2453 return retval;
2454}
2455
2456static int
2457debug_to_remove_breakpoint (addr, save)
2458 CORE_ADDR addr;
2459 char *save;
2460{
2461 int retval;
2462
2463 retval = debug_target.to_remove_breakpoint (addr, save);
2464
96baa820 2465 fprintf_unfiltered (gdb_stdlog,
104c1213
JM
2466 "target_remove_breakpoint (0x%lx, xxx) = %ld\n",
2467 (unsigned long) addr,
2468 (unsigned long) retval);
c906108c
SS
2469 return retval;
2470}
2471
2472static void
2473debug_to_terminal_init ()
2474{
2475 debug_target.to_terminal_init ();
2476
96baa820 2477 fprintf_unfiltered (gdb_stdlog, "target_terminal_init ()\n");
c906108c
SS
2478}
2479
2480static void
2481debug_to_terminal_inferior ()
2482{
2483 debug_target.to_terminal_inferior ();
2484
96baa820 2485 fprintf_unfiltered (gdb_stdlog, "target_terminal_inferior ()\n");
c906108c
SS
2486}
2487
2488static void
2489debug_to_terminal_ours_for_output ()
2490{
2491 debug_target.to_terminal_ours_for_output ();
2492
96baa820 2493 fprintf_unfiltered (gdb_stdlog, "target_terminal_ours_for_output ()\n");
c906108c
SS
2494}
2495
2496static void
2497debug_to_terminal_ours ()
2498{
2499 debug_target.to_terminal_ours ();
2500
96baa820 2501 fprintf_unfiltered (gdb_stdlog, "target_terminal_ours ()\n");
c906108c
SS
2502}
2503
2504static void
2505debug_to_terminal_info (arg, from_tty)
2506 char *arg;
2507 int from_tty;
2508{
2509 debug_target.to_terminal_info (arg, from_tty);
2510
96baa820 2511 fprintf_unfiltered (gdb_stdlog, "target_terminal_info (%s, %d)\n", arg,
c906108c
SS
2512 from_tty);
2513}
2514
2515static void
2516debug_to_kill ()
2517{
2518 debug_target.to_kill ();
2519
96baa820 2520 fprintf_unfiltered (gdb_stdlog, "target_kill ()\n");
c906108c
SS
2521}
2522
2523static void
2524debug_to_load (args, from_tty)
2525 char *args;
2526 int from_tty;
2527{
2528 debug_target.to_load (args, from_tty);
2529
96baa820 2530 fprintf_unfiltered (gdb_stdlog, "target_load (%s, %d)\n", args, from_tty);
c906108c
SS
2531}
2532
2533static int
2534debug_to_lookup_symbol (name, addrp)
2535 char *name;
2536 CORE_ADDR *addrp;
2537{
2538 int retval;
2539
2540 retval = debug_target.to_lookup_symbol (name, addrp);
2541
96baa820 2542 fprintf_unfiltered (gdb_stdlog, "target_lookup_symbol (%s, xxx)\n", name);
c906108c
SS
2543
2544 return retval;
2545}
2546
2547static void
2548debug_to_create_inferior (exec_file, args, env)
2549 char *exec_file;
2550 char *args;
2551 char **env;
2552{
2553 debug_target.to_create_inferior (exec_file, args, env);
2554
96baa820 2555 fprintf_unfiltered (gdb_stdlog, "target_create_inferior (%s, %s, xxx)\n",
c906108c
SS
2556 exec_file, args);
2557}
2558
2559static void
2560debug_to_post_startup_inferior (pid)
c5aa993b 2561 int pid;
c906108c
SS
2562{
2563 debug_target.to_post_startup_inferior (pid);
2564
96baa820 2565 fprintf_unfiltered (gdb_stdlog, "target_post_startup_inferior (%d)\n",
c906108c
SS
2566 pid);
2567}
2568
2569static void
2570debug_to_acknowledge_created_inferior (pid)
c5aa993b 2571 int pid;
c906108c
SS
2572{
2573 debug_target.to_acknowledge_created_inferior (pid);
2574
96baa820 2575 fprintf_unfiltered (gdb_stdlog, "target_acknowledge_created_inferior (%d)\n",
c906108c
SS
2576 pid);
2577}
2578
2579static void
2580debug_to_clone_and_follow_inferior (child_pid, followed_child)
c5aa993b
JM
2581 int child_pid;
2582 int *followed_child;
c906108c
SS
2583{
2584 debug_target.to_clone_and_follow_inferior (child_pid, followed_child);
2585
96baa820 2586 fprintf_unfiltered (gdb_stdlog,
c906108c
SS
2587 "target_clone_and_follow_inferior (%d, %d)\n",
2588 child_pid, *followed_child);
2589}
2590
2591static void
2592debug_to_post_follow_inferior_by_clone ()
2593{
2594 debug_target.to_post_follow_inferior_by_clone ();
2595
96baa820 2596 fprintf_unfiltered (gdb_stdlog, "target_post_follow_inferior_by_clone ()\n");
c906108c
SS
2597}
2598
2599static int
2600debug_to_insert_fork_catchpoint (pid)
c5aa993b 2601 int pid;
c906108c 2602{
c5aa993b 2603 int retval;
c906108c
SS
2604
2605 retval = debug_target.to_insert_fork_catchpoint (pid);
2606
96baa820 2607 fprintf_unfiltered (gdb_stdlog, "target_insert_fork_catchpoint (%d) = %d\n",
c5aa993b 2608 pid, retval);
c906108c
SS
2609
2610 return retval;
2611}
2612
2613static int
2614debug_to_remove_fork_catchpoint (pid)
c5aa993b 2615 int pid;
c906108c 2616{
c5aa993b 2617 int retval;
c906108c
SS
2618
2619 retval = debug_target.to_remove_fork_catchpoint (pid);
2620
96baa820 2621 fprintf_unfiltered (gdb_stdlog, "target_remove_fork_catchpoint (%d) = %d\n",
c5aa993b 2622 pid, retval);
c906108c
SS
2623
2624 return retval;
2625}
2626
2627static int
2628debug_to_insert_vfork_catchpoint (pid)
c5aa993b 2629 int pid;
c906108c 2630{
c5aa993b 2631 int retval;
c906108c
SS
2632
2633 retval = debug_target.to_insert_vfork_catchpoint (pid);
2634
96baa820 2635 fprintf_unfiltered (gdb_stdlog, "target_insert_vfork_catchpoint (%d)= %d\n",
c5aa993b 2636 pid, retval);
c906108c
SS
2637
2638 return retval;
2639}
2640
2641static int
2642debug_to_remove_vfork_catchpoint (pid)
c5aa993b 2643 int pid;
c906108c 2644{
c5aa993b 2645 int retval;
c906108c
SS
2646
2647 retval = debug_target.to_remove_vfork_catchpoint (pid);
2648
96baa820 2649 fprintf_unfiltered (gdb_stdlog, "target_remove_vfork_catchpoint (%d) = %d\n",
c5aa993b 2650 pid, retval);
c906108c
SS
2651
2652 return retval;
2653}
2654
2655static int
2656debug_to_has_forked (pid, child_pid)
c5aa993b
JM
2657 int pid;
2658 int *child_pid;
c906108c 2659{
c5aa993b 2660 int has_forked;
c906108c
SS
2661
2662 has_forked = debug_target.to_has_forked (pid, child_pid);
2663
96baa820 2664 fprintf_unfiltered (gdb_stdlog, "target_has_forked (%d, %d) = %d\n",
c5aa993b 2665 pid, *child_pid, has_forked);
c906108c
SS
2666
2667 return has_forked;
2668}
2669
2670static int
2671debug_to_has_vforked (pid, child_pid)
c5aa993b
JM
2672 int pid;
2673 int *child_pid;
c906108c 2674{
c5aa993b 2675 int has_vforked;
c906108c
SS
2676
2677 has_vforked = debug_target.to_has_vforked (pid, child_pid);
2678
96baa820 2679 fprintf_unfiltered (gdb_stdlog, "target_has_vforked (%d, %d) = %d\n",
c5aa993b 2680 pid, *child_pid, has_vforked);
c906108c
SS
2681
2682 return has_vforked;
2683}
2684
2685static int
2686debug_to_can_follow_vfork_prior_to_exec ()
2687{
c5aa993b 2688 int can_immediately_follow_vfork;
c906108c
SS
2689
2690 can_immediately_follow_vfork = debug_target.to_can_follow_vfork_prior_to_exec ();
2691
96baa820 2692 fprintf_unfiltered (gdb_stdlog, "target_can_follow_vfork_prior_to_exec () = %d\n",
c5aa993b 2693 can_immediately_follow_vfork);
c906108c
SS
2694
2695 return can_immediately_follow_vfork;
2696}
2697
2698static void
2699debug_to_post_follow_vfork (parent_pid, followed_parent, child_pid, followed_child)
c5aa993b
JM
2700 int parent_pid;
2701 int followed_parent;
2702 int child_pid;
2703 int followed_child;
c906108c
SS
2704{
2705 debug_target.to_post_follow_vfork (parent_pid, followed_parent, child_pid, followed_child);
2706
96baa820 2707 fprintf_unfiltered (gdb_stdlog,
c906108c 2708 "target_post_follow_vfork (%d, %d, %d, %d)\n",
c5aa993b 2709 parent_pid, followed_parent, child_pid, followed_child);
c906108c
SS
2710}
2711
2712static int
2713debug_to_insert_exec_catchpoint (pid)
c5aa993b 2714 int pid;
c906108c 2715{
c5aa993b 2716 int retval;
c906108c
SS
2717
2718 retval = debug_target.to_insert_exec_catchpoint (pid);
2719
96baa820 2720 fprintf_unfiltered (gdb_stdlog, "target_insert_exec_catchpoint (%d) = %d\n",
c5aa993b 2721 pid, retval);
c906108c
SS
2722
2723 return retval;
2724}
2725
2726static int
2727debug_to_remove_exec_catchpoint (pid)
c5aa993b 2728 int pid;
c906108c 2729{
c5aa993b 2730 int retval;
c906108c
SS
2731
2732 retval = debug_target.to_remove_exec_catchpoint (pid);
2733
96baa820 2734 fprintf_unfiltered (gdb_stdlog, "target_remove_exec_catchpoint (%d) = %d\n",
c5aa993b 2735 pid, retval);
c906108c
SS
2736
2737 return retval;
2738}
2739
2740static int
2741debug_to_has_execd (pid, execd_pathname)
c5aa993b
JM
2742 int pid;
2743 char **execd_pathname;
c906108c 2744{
c5aa993b 2745 int has_execd;
c906108c
SS
2746
2747 has_execd = debug_target.to_has_execd (pid, execd_pathname);
2748
96baa820 2749 fprintf_unfiltered (gdb_stdlog, "target_has_execd (%d, %s) = %d\n",
c5aa993b 2750 pid, (*execd_pathname ? *execd_pathname : "<NULL>"),
7a292a7a 2751 has_execd);
c906108c
SS
2752
2753 return has_execd;
2754}
2755
2756static int
2757debug_to_reported_exec_events_per_exec_call ()
2758{
c5aa993b 2759 int reported_exec_events;
c906108c
SS
2760
2761 reported_exec_events = debug_target.to_reported_exec_events_per_exec_call ();
2762
96baa820 2763 fprintf_unfiltered (gdb_stdlog,
c906108c 2764 "target_reported_exec_events_per_exec_call () = %d\n",
c5aa993b 2765 reported_exec_events);
c906108c
SS
2766
2767 return reported_exec_events;
2768}
2769
2770static int
2771debug_to_has_syscall_event (pid, kind, syscall_id)
c5aa993b
JM
2772 int pid;
2773 enum target_waitkind *kind;
2774 int *syscall_id;
c906108c 2775{
c5aa993b
JM
2776 int has_syscall_event;
2777 char *kind_spelling = "??";
c906108c
SS
2778
2779 has_syscall_event = debug_target.to_has_syscall_event (pid, kind, syscall_id);
2780 if (has_syscall_event)
2781 {
2782 switch (*kind)
c5aa993b
JM
2783 {
2784 case TARGET_WAITKIND_SYSCALL_ENTRY:
2785 kind_spelling = "SYSCALL_ENTRY";
2786 break;
2787 case TARGET_WAITKIND_SYSCALL_RETURN:
2788 kind_spelling = "SYSCALL_RETURN";
2789 break;
2790 default:
2791 break;
2792 }
c906108c
SS
2793 }
2794
96baa820 2795 fprintf_unfiltered (gdb_stdlog,
c906108c 2796 "target_has_syscall_event (%d, %s, %d) = %d\n",
c5aa993b 2797 pid, kind_spelling, *syscall_id, has_syscall_event);
c906108c
SS
2798
2799 return has_syscall_event;
2800}
2801
2802static int
2803debug_to_has_exited (pid, wait_status, exit_status)
c5aa993b
JM
2804 int pid;
2805 int wait_status;
2806 int *exit_status;
c906108c 2807{
c5aa993b 2808 int has_exited;
c906108c
SS
2809
2810 has_exited = debug_target.to_has_exited (pid, wait_status, exit_status);
2811
96baa820 2812 fprintf_unfiltered (gdb_stdlog, "target_has_exited (%d, %d, %d) = %d\n",
c5aa993b 2813 pid, wait_status, *exit_status, has_exited);
c906108c
SS
2814
2815 return has_exited;
2816}
2817
2818static void
2819debug_to_mourn_inferior ()
2820{
2821 debug_target.to_mourn_inferior ();
2822
96baa820 2823 fprintf_unfiltered (gdb_stdlog, "target_mourn_inferior ()\n");
c906108c
SS
2824}
2825
2826static int
2827debug_to_can_run ()
2828{
2829 int retval;
2830
2831 retval = debug_target.to_can_run ();
2832
96baa820 2833 fprintf_unfiltered (gdb_stdlog, "target_can_run () = %d\n", retval);
c906108c
SS
2834
2835 return retval;
2836}
2837
2838static void
2839debug_to_notice_signals (pid)
2840 int pid;
2841{
2842 debug_target.to_notice_signals (pid);
2843
96baa820 2844 fprintf_unfiltered (gdb_stdlog, "target_notice_signals (%d)\n", pid);
c906108c
SS
2845}
2846
2847static int
2848debug_to_thread_alive (pid)
2849 int pid;
2850{
2851 int retval;
2852
2853 retval = debug_target.to_thread_alive (pid);
2854
96baa820 2855 fprintf_unfiltered (gdb_stdlog, "target_thread_alive (%d) = %d\n",
c906108c
SS
2856 pid, retval);
2857
2858 return retval;
2859}
2860
0d06e24b
JM
2861static void
2862debug_to_find_new_threads ()
2863{
2864 debug_target.to_find_new_threads ();
2865
2866 fputs_unfiltered ("target_find_new_threads ()\n", gdb_stdlog);
2867}
2868
c906108c
SS
2869static void
2870debug_to_stop ()
2871{
2872 debug_target.to_stop ();
2873
96baa820 2874 fprintf_unfiltered (gdb_stdlog, "target_stop ()\n");
c906108c
SS
2875}
2876
2877static int
2878debug_to_query (type, req, resp, siz)
c5aa993b
JM
2879 int type;
2880 char *req;
2881 char *resp;
2882 int *siz;
c906108c
SS
2883{
2884 int retval;
2885
2886 retval = debug_target.to_query (type, req, resp, siz);
2887
96baa820 2888 fprintf_unfiltered (gdb_stdlog, "target_query (%c, %s, %s, %d) = %d\n", type, req, resp, *siz, retval);
c906108c
SS
2889
2890 return retval;
2891}
2892
96baa820
JM
2893static void
2894debug_to_rcmd (char *command,
d9fcf2fb 2895 struct ui_file *outbuf)
96baa820
JM
2896{
2897 debug_target.to_rcmd (command, outbuf);
2898 fprintf_unfiltered (gdb_stdlog, "target_rcmd (%s, ...)\n", command);
2899}
2900
c906108c
SS
2901static struct symtab_and_line *
2902debug_to_enable_exception_callback (kind, enable)
c5aa993b
JM
2903 enum exception_event_kind kind;
2904 int enable;
c906108c 2905{
7a292a7a
SS
2906 struct symtab_and_line *result;
2907 result = debug_target.to_enable_exception_callback (kind, enable);
96baa820 2908 fprintf_unfiltered (gdb_stdlog,
c906108c
SS
2909 "target get_exception_callback_sal (%d, %d)\n",
2910 kind, enable);
7a292a7a 2911 return result;
c906108c
SS
2912}
2913
2914static struct exception_event_record *
2915debug_to_get_current_exception_event ()
2916{
7a292a7a 2917 struct exception_event_record *result;
c5aa993b 2918 result = debug_target.to_get_current_exception_event ();
96baa820 2919 fprintf_unfiltered (gdb_stdlog, "target get_current_exception_event ()\n");
7a292a7a 2920 return result;
c906108c
SS
2921}
2922
2923static char *
2924debug_to_pid_to_exec_file (pid)
c5aa993b 2925 int pid;
c906108c 2926{
c5aa993b 2927 char *exec_file;
c906108c
SS
2928
2929 exec_file = debug_target.to_pid_to_exec_file (pid);
2930
96baa820 2931 fprintf_unfiltered (gdb_stdlog, "target_pid_to_exec_file (%d) = %s\n",
c5aa993b 2932 pid, exec_file);
c906108c
SS
2933
2934 return exec_file;
2935}
2936
2937static char *
2938debug_to_core_file_to_sym_file (core)
c5aa993b 2939 char *core;
c906108c 2940{
c5aa993b 2941 char *sym_file;
c906108c
SS
2942
2943 sym_file = debug_target.to_core_file_to_sym_file (core);
2944
96baa820 2945 fprintf_unfiltered (gdb_stdlog, "target_core_file_to_sym_file (%s) = %s\n",
c5aa993b 2946 core, sym_file);
c906108c
SS
2947
2948 return sym_file;
2949}
2950
2951static void
2952setup_target_debug ()
2953{
2954 memcpy (&debug_target, &current_target, sizeof debug_target);
2955
2956 current_target.to_open = debug_to_open;
2957 current_target.to_close = debug_to_close;
2958 current_target.to_attach = debug_to_attach;
2959 current_target.to_post_attach = debug_to_post_attach;
2960 current_target.to_require_attach = debug_to_require_attach;
2961 current_target.to_detach = debug_to_detach;
2962 current_target.to_require_detach = debug_to_require_detach;
2963 current_target.to_resume = debug_to_resume;
2964 current_target.to_wait = debug_to_wait;
2965 current_target.to_post_wait = debug_to_post_wait;
2966 current_target.to_fetch_registers = debug_to_fetch_registers;
2967 current_target.to_store_registers = debug_to_store_registers;
2968 current_target.to_prepare_to_store = debug_to_prepare_to_store;
2969 current_target.to_xfer_memory = debug_to_xfer_memory;
2970 current_target.to_files_info = debug_to_files_info;
2971 current_target.to_insert_breakpoint = debug_to_insert_breakpoint;
2972 current_target.to_remove_breakpoint = debug_to_remove_breakpoint;
2973 current_target.to_terminal_init = debug_to_terminal_init;
2974 current_target.to_terminal_inferior = debug_to_terminal_inferior;
2975 current_target.to_terminal_ours_for_output = debug_to_terminal_ours_for_output;
2976 current_target.to_terminal_ours = debug_to_terminal_ours;
2977 current_target.to_terminal_info = debug_to_terminal_info;
2978 current_target.to_kill = debug_to_kill;
2979 current_target.to_load = debug_to_load;
2980 current_target.to_lookup_symbol = debug_to_lookup_symbol;
2981 current_target.to_create_inferior = debug_to_create_inferior;
2982 current_target.to_post_startup_inferior = debug_to_post_startup_inferior;
2983 current_target.to_acknowledge_created_inferior = debug_to_acknowledge_created_inferior;
2984 current_target.to_clone_and_follow_inferior = debug_to_clone_and_follow_inferior;
2985 current_target.to_post_follow_inferior_by_clone = debug_to_post_follow_inferior_by_clone;
2986 current_target.to_insert_fork_catchpoint = debug_to_insert_fork_catchpoint;
2987 current_target.to_remove_fork_catchpoint = debug_to_remove_fork_catchpoint;
2988 current_target.to_insert_vfork_catchpoint = debug_to_insert_vfork_catchpoint;
2989 current_target.to_remove_vfork_catchpoint = debug_to_remove_vfork_catchpoint;
2990 current_target.to_has_forked = debug_to_has_forked;
2991 current_target.to_has_vforked = debug_to_has_vforked;
2992 current_target.to_can_follow_vfork_prior_to_exec = debug_to_can_follow_vfork_prior_to_exec;
2993 current_target.to_post_follow_vfork = debug_to_post_follow_vfork;
2994 current_target.to_insert_exec_catchpoint = debug_to_insert_exec_catchpoint;
2995 current_target.to_remove_exec_catchpoint = debug_to_remove_exec_catchpoint;
2996 current_target.to_has_execd = debug_to_has_execd;
2997 current_target.to_reported_exec_events_per_exec_call = debug_to_reported_exec_events_per_exec_call;
2998 current_target.to_has_syscall_event = debug_to_has_syscall_event;
2999 current_target.to_has_exited = debug_to_has_exited;
3000 current_target.to_mourn_inferior = debug_to_mourn_inferior;
3001 current_target.to_can_run = debug_to_can_run;
3002 current_target.to_notice_signals = debug_to_notice_signals;
3003 current_target.to_thread_alive = debug_to_thread_alive;
0d06e24b 3004 current_target.to_find_new_threads = debug_to_find_new_threads;
c906108c
SS
3005 current_target.to_stop = debug_to_stop;
3006 current_target.to_query = debug_to_query;
96baa820 3007 current_target.to_rcmd = debug_to_rcmd;
c906108c
SS
3008 current_target.to_enable_exception_callback = debug_to_enable_exception_callback;
3009 current_target.to_get_current_exception_event = debug_to_get_current_exception_event;
3010 current_target.to_pid_to_exec_file = debug_to_pid_to_exec_file;
3011 current_target.to_core_file_to_sym_file = debug_to_core_file_to_sym_file;
3012
3013}
c906108c 3014\f
c5aa993b
JM
3015
3016static char targ_desc[] =
3017"Names of targets and files being debugged.\n\
c906108c
SS
3018Shows the entire stack of targets currently in use (including the exec-file,\n\
3019core-file, and process, if any), as well as the symbol file name.";
3020
96baa820
JM
3021static void
3022do_monitor_command (char *cmd,
3023 int from_tty)
3024{
3025 if ((current_target.to_rcmd == (void*) tcomplain)
3026 || (current_target.to_rcmd == debug_to_rcmd
3027 && (debug_target.to_rcmd == (void*) tcomplain)))
3028 {
3029 error ("\"monitor\" command not supported by this target.\n");
3030 }
3031 target_rcmd (cmd, gdb_stdtarg);
3032}
3033
c906108c
SS
3034void
3035initialize_targets ()
3036{
3037 init_dummy_target ();
3038 push_target (&dummy_target);
3039
3040 add_info ("target", target_info, targ_desc);
3041 add_info ("files", target_info, targ_desc);
3042
c906108c 3043 add_show_from_set (
c5aa993b
JM
3044 add_set_cmd ("targetdebug", class_maintenance, var_zinteger,
3045 (char *) &targetdebug,
3046 "Set target debugging.\n\
c906108c 3047When non-zero, target debugging is enabled.", &setlist),
c5aa993b 3048 &showlist);
c906108c 3049
96baa820
JM
3050
3051 add_com ("monitor", class_obscure, do_monitor_command,
3052 "Send a command to the remote monitor (remote targets only).");
3053
c906108c
SS
3054 if (!STREQ (signals[TARGET_SIGNAL_LAST].string, "TARGET_SIGNAL_MAGIC"))
3055 abort ();
3056}
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