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c906108c
SS
1/* Select target systems and architectures at runtime for GDB.
2 Copyright 1990, 1992-1995, 1998, 1999 Free Software Foundation, Inc.
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"
33#include "wait.h"
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 *
c5aa993b 81 find_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
c906108c
SS
90/* Transfer LEN bytes between target address MEMADDR and GDB address MYADDR.
91 Returns 0 for success, errno code for failure (which includes partial
92 transfers--if you want a more useful response to partial transfers, try
93 target_read_memory_partial). */
94
95static int
96target_xfer_memory PARAMS ((CORE_ADDR memaddr, char *myaddr, int len,
c5aa993b 97 int write, asection * bfd_section));
c906108c
SS
98
99static void init_dummy_target PARAMS ((void));
100
101static void
102debug_to_open PARAMS ((char *, int));
103
104static void
105debug_to_close PARAMS ((int));
106
107static void
108debug_to_attach PARAMS ((char *, int));
109
110static void
111debug_to_detach PARAMS ((char *, int));
112
113static void
114debug_to_resume PARAMS ((int, int, enum target_signal));
115
116static int
117debug_to_wait PARAMS ((int, struct target_waitstatus *));
118
119static void
120debug_to_fetch_registers PARAMS ((int));
121
122static void
123debug_to_store_registers PARAMS ((int));
124
125static void
126debug_to_prepare_to_store PARAMS ((void));
127
128static int
129debug_to_xfer_memory PARAMS ((CORE_ADDR, char *, int, int, struct target_ops *));
130
131static void
132debug_to_files_info PARAMS ((struct target_ops *));
133
134static int
135debug_to_insert_breakpoint PARAMS ((CORE_ADDR, char *));
136
137static int
138debug_to_remove_breakpoint PARAMS ((CORE_ADDR, char *));
139
140static void
141debug_to_terminal_init PARAMS ((void));
142
143static void
144debug_to_terminal_inferior PARAMS ((void));
145
146static void
147debug_to_terminal_ours_for_output PARAMS ((void));
148
149static void
150debug_to_terminal_ours PARAMS ((void));
151
152static void
153debug_to_terminal_info PARAMS ((char *, int));
154
155static void
156debug_to_kill PARAMS ((void));
157
158static void
159debug_to_load PARAMS ((char *, int));
160
161static int
162debug_to_lookup_symbol PARAMS ((char *, CORE_ADDR *));
163
164static void
165debug_to_create_inferior PARAMS ((char *, char *, char **));
166
167static void
168debug_to_mourn_inferior PARAMS ((void));
169
170static int
171debug_to_can_run PARAMS ((void));
172
173static void
174debug_to_notice_signals PARAMS ((int));
175
176static int
177debug_to_thread_alive PARAMS ((int));
178
179static void
180debug_to_stop PARAMS ((void));
181
c5aa993b 182static int debug_to_query PARAMS ((int /*char */ , char *, char *, int *));
c906108c
SS
183
184/* Pointer to array of target architecture structures; the size of the
185 array; the current index into the array; the allocated size of the
186 array. */
187struct target_ops **target_structs;
188unsigned target_struct_size;
189unsigned target_struct_index;
190unsigned target_struct_allocsize;
191#define DEFAULT_ALLOCSIZE 10
192
193/* The initial current target, so that there is always a semi-valid
194 current target. */
195
196static struct target_ops dummy_target;
197
198/* Top of target stack. */
199
200struct target_stack_item *target_stack;
201
202/* The target structure we are currently using to talk to a process
203 or file or whatever "inferior" we have. */
204
205struct target_ops current_target;
206
207/* Command list for target. */
208
209static struct cmd_list_element *targetlist = NULL;
210
211/* Nonzero if we are debugging an attached outside process
212 rather than an inferior. */
213
214int attach_flag;
215
c906108c
SS
216/* Non-zero if we want to see trace of target level stuff. */
217
218static int targetdebug = 0;
219
220static void setup_target_debug PARAMS ((void));
221
c906108c
SS
222/* The user just typed 'target' without the name of a target. */
223
224/* ARGSUSED */
225static void
226target_command (arg, from_tty)
227 char *arg;
228 int from_tty;
229{
230 fputs_filtered ("Argument required (target name). Try `help target'\n",
231 gdb_stdout);
232}
233
234/* Add a possible target architecture to the list. */
235
236void
237add_target (t)
238 struct target_ops *t;
239{
240 if (!target_structs)
241 {
242 target_struct_allocsize = DEFAULT_ALLOCSIZE;
243 target_structs = (struct target_ops **) xmalloc
244 (target_struct_allocsize * sizeof (*target_structs));
245 }
246 if (target_struct_size >= target_struct_allocsize)
247 {
248 target_struct_allocsize *= 2;
249 target_structs = (struct target_ops **)
c5aa993b
JM
250 xrealloc ((char *) target_structs,
251 target_struct_allocsize * sizeof (*target_structs));
c906108c
SS
252 }
253 target_structs[target_struct_size++] = t;
c5aa993b 254/* cleanup_target (t); */
c906108c
SS
255
256 if (targetlist == NULL)
257 add_prefix_cmd ("target", class_run, target_command,
258 "Connect to a target machine or process.\n\
259The first argument is the type or protocol of the target machine.\n\
260Remaining arguments are interpreted by the target protocol. For more\n\
261information on the arguments for a particular protocol, type\n\
262`help target ' followed by the protocol name.",
263 &targetlist, "target ", 0, &cmdlist);
264 add_cmd (t->to_shortname, no_class, t->to_open, t->to_doc, &targetlist);
265}
266
267/* Stub functions */
268
269void
270target_ignore ()
271{
272}
273
274/* ARGSUSED */
275static int
276nomemory (memaddr, myaddr, len, write, t)
277 CORE_ADDR memaddr;
278 char *myaddr;
279 int len;
280 int write;
281 struct target_ops *t;
282{
c5aa993b
JM
283 errno = EIO; /* Can't read/write this location */
284 return 0; /* No bytes handled */
c906108c
SS
285}
286
287static void
288tcomplain ()
289{
290 error ("You can't do that when your target is `%s'",
291 current_target.to_shortname);
292}
293
294void
295noprocess ()
296{
297 error ("You can't do that without a process to debug.");
298}
299
300/* ARGSUSED */
301static int
302nosymbol (name, addrp)
303 char *name;
304 CORE_ADDR *addrp;
305{
c5aa993b 306 return 1; /* Symbol does not exist in target env */
c906108c
SS
307}
308
309/* ARGSUSED */
392a587b 310static void
c906108c
SS
311nosupport_runtime ()
312{
313 if (!inferior_pid)
314 noprocess ();
315 else
316 error ("No run-time support for this");
317}
318
319
320/* ARGSUSED */
321static void
322default_terminal_info (args, from_tty)
323 char *args;
324 int from_tty;
325{
c5aa993b 326 printf_unfiltered ("No saved terminal information.\n");
c906108c
SS
327}
328
329/* This is the default target_create_inferior and target_attach function.
330 If the current target is executing, it asks whether to kill it off.
331 If this function returns without calling error(), it has killed off
332 the target, and the operation should be attempted. */
333
334static void
335kill_or_be_killed (from_tty)
336 int from_tty;
337{
338 if (target_has_execution)
339 {
340 printf_unfiltered ("You are already running a program:\n");
341 target_files_info ();
c5aa993b
JM
342 if (query ("Kill it? "))
343 {
344 target_kill ();
345 if (target_has_execution)
346 error ("Killing the program did not help.");
347 return;
348 }
349 else
350 {
351 error ("Program not killed.");
352 }
c906108c 353 }
c5aa993b 354 tcomplain ();
c906108c
SS
355}
356
357static void
358maybe_kill_then_attach (args, from_tty)
359 char *args;
360 int from_tty;
361{
362 kill_or_be_killed (from_tty);
363 target_attach (args, from_tty);
364}
365
366static void
367maybe_kill_then_create_inferior (exec, args, env)
368 char *exec;
369 char *args;
370 char **env;
371{
372 kill_or_be_killed (0);
373 target_create_inferior (exec, args, env);
374}
375
376static void
377default_clone_and_follow_inferior (child_pid, followed_child)
c5aa993b
JM
378 int child_pid;
379 int *followed_child;
c906108c
SS
380{
381 target_clone_and_follow_inferior (child_pid, followed_child);
382}
383
384/* Clean up a target struct so it no longer has any zero pointers in it.
385 We default entries, at least to stubs that print error messages. */
386
387static void
388cleanup_target (t)
389 struct target_ops *t;
390{
391
392#define de_fault(field, value) \
393 if (!t->field) t->field = value
394
c5aa993b
JM
395 /* FIELD DEFAULT VALUE */
396
397 de_fault (to_open, (void (*)PARAMS ((char *, int))) tcomplain);
398 de_fault (to_close, (void (*)PARAMS ((int))) target_ignore);
399 de_fault (to_attach, maybe_kill_then_attach);
400 de_fault (to_post_attach, (void (*)PARAMS ((int))) target_ignore);
401 de_fault (to_require_attach, maybe_kill_then_attach);
402 de_fault (to_detach, (void (*)PARAMS ((char *, int))) target_ignore);
403 de_fault (to_require_detach, (void (*)PARAMS ((int, char *, int))) target_ignore);
404 de_fault (to_resume, (void (*)PARAMS ((int, int, enum target_signal))) noprocess);
405 de_fault (to_wait, (int (*)PARAMS ((int, struct target_waitstatus *))) noprocess);
406 de_fault (to_post_wait, (void (*)PARAMS ((int, int))) target_ignore);
407 de_fault (to_fetch_registers, (void (*)PARAMS ((int))) target_ignore);
408 de_fault (to_store_registers, (void (*)PARAMS ((int))) noprocess);
409 de_fault (to_prepare_to_store, (void (*)PARAMS ((void))) noprocess);
410 de_fault (to_xfer_memory, (int (*)PARAMS ((CORE_ADDR, char *, int, int, struct target_ops *))) nomemory);
411 de_fault (to_files_info, (void (*)PARAMS ((struct target_ops *))) target_ignore);
412 de_fault (to_insert_breakpoint, memory_insert_breakpoint);
413 de_fault (to_remove_breakpoint, memory_remove_breakpoint);
414 de_fault (to_terminal_init, (void (*)PARAMS ((void))) target_ignore);
415 de_fault (to_terminal_inferior, (void (*)PARAMS ((void))) target_ignore);
416 de_fault (to_terminal_ours_for_output, (void (*)PARAMS ((void))) target_ignore);
417 de_fault (to_terminal_ours, (void (*)PARAMS ((void))) target_ignore);
418 de_fault (to_terminal_info, default_terminal_info);
419 de_fault (to_kill, (void (*)PARAMS ((void))) noprocess);
420 de_fault (to_load, (void (*)PARAMS ((char *, int))) tcomplain);
421 de_fault (to_lookup_symbol, (int (*)PARAMS ((char *, CORE_ADDR *))) nosymbol);
422 de_fault (to_create_inferior, maybe_kill_then_create_inferior);
423 de_fault (to_post_startup_inferior, (void (*)PARAMS ((int))) target_ignore);
424 de_fault (to_acknowledge_created_inferior, (void (*)PARAMS ((int))) target_ignore);
425 de_fault (to_clone_and_follow_inferior, default_clone_and_follow_inferior);
426 de_fault (to_post_follow_inferior_by_clone, (void (*)PARAMS ((void))) target_ignore);
427 de_fault (to_insert_fork_catchpoint, (int (*)PARAMS ((int))) tcomplain);
428 de_fault (to_remove_fork_catchpoint, (int (*)PARAMS ((int))) tcomplain);
429 de_fault (to_insert_vfork_catchpoint, (int (*)PARAMS ((int))) tcomplain);
430 de_fault (to_remove_vfork_catchpoint, (int (*)PARAMS ((int))) tcomplain);
431 de_fault (to_has_forked, (int (*)PARAMS ((int, int *))) return_zero);
432 de_fault (to_has_vforked, (int (*)PARAMS ((int, int *))) return_zero);
433 de_fault (to_can_follow_vfork_prior_to_exec, (int (*)PARAMS ((void))) return_zero);
434 de_fault (to_post_follow_vfork, (void (*)PARAMS ((int, int, int, int))) target_ignore);
435 de_fault (to_insert_exec_catchpoint, (int (*)PARAMS ((int))) tcomplain);
436 de_fault (to_remove_exec_catchpoint, (int (*)PARAMS ((int))) tcomplain);
437 de_fault (to_has_execd, (int (*)PARAMS ((int, char **))) return_zero);
438 de_fault (to_reported_exec_events_per_exec_call, (int (*)PARAMS ((void))) return_one);
439 de_fault (to_has_syscall_event, (int (*)PARAMS ((int, enum target_waitkind *, int *))) return_zero);
440 de_fault (to_has_exited, (int (*)PARAMS ((int, int, int *))) return_zero);
441 de_fault (to_mourn_inferior, (void (*)PARAMS ((void))) noprocess);
442 de_fault (to_can_run, return_zero);
443 de_fault (to_notice_signals, (void (*)PARAMS ((int))) target_ignore);
444 de_fault (to_thread_alive, (int (*)PARAMS ((int))) target_ignore);
445 de_fault (to_stop, (void (*)PARAMS ((void))) target_ignore);
446 de_fault (to_query, (int (*)PARAMS ((int /*char */ , char *, char *, int *))) target_ignore);
447 de_fault (to_enable_exception_callback, (struct symtab_and_line * (*)PARAMS ((enum exception_event_kind, int))) nosupport_runtime);
448 de_fault (to_get_current_exception_event, (struct exception_event_record * (*)PARAMS ((void))) nosupport_runtime);
449
450 de_fault (to_pid_to_exec_file, (char *(*)PARAMS ((int))) return_zero);
451 de_fault (to_core_file_to_sym_file, (char *(*)PARAMS ((char *))) return_zero);
c906108c
SS
452#undef de_fault
453}
454
455/* Go through the target stack from top to bottom, copying over zero entries in
456 current_target. In effect, we are doing class inheritance through the
457 pushed target vectors. */
458
459static void
460update_current_target ()
461{
462 struct target_stack_item *item;
463 struct target_ops *t;
464
465 /* First, reset current_target */
466 memset (&current_target, 0, sizeof current_target);
467
468 for (item = target_stack; item; item = item->next)
469 {
470 t = item->target_ops;
471
472#define INHERIT(FIELD, TARGET) \
473 if (!current_target.FIELD) \
474 current_target.FIELD = TARGET->FIELD
475
476 INHERIT (to_shortname, t);
477 INHERIT (to_longname, t);
478 INHERIT (to_doc, t);
479 INHERIT (to_open, t);
480 INHERIT (to_close, t);
481 INHERIT (to_attach, t);
482 INHERIT (to_post_attach, t);
483 INHERIT (to_require_attach, t);
484 INHERIT (to_detach, t);
485 INHERIT (to_require_detach, t);
486 INHERIT (to_resume, t);
487 INHERIT (to_wait, t);
488 INHERIT (to_post_wait, t);
489 INHERIT (to_fetch_registers, t);
490 INHERIT (to_store_registers, t);
491 INHERIT (to_prepare_to_store, t);
492 INHERIT (to_xfer_memory, t);
493 INHERIT (to_files_info, t);
494 INHERIT (to_insert_breakpoint, t);
495 INHERIT (to_remove_breakpoint, t);
496 INHERIT (to_terminal_init, t);
497 INHERIT (to_terminal_inferior, t);
498 INHERIT (to_terminal_ours_for_output, t);
499 INHERIT (to_terminal_ours, t);
500 INHERIT (to_terminal_info, t);
501 INHERIT (to_kill, t);
502 INHERIT (to_load, t);
503 INHERIT (to_lookup_symbol, t);
504 INHERIT (to_create_inferior, t);
505 INHERIT (to_post_startup_inferior, t);
506 INHERIT (to_acknowledge_created_inferior, t);
507 INHERIT (to_clone_and_follow_inferior, t);
508 INHERIT (to_post_follow_inferior_by_clone, t);
509 INHERIT (to_insert_fork_catchpoint, t);
510 INHERIT (to_remove_fork_catchpoint, t);
511 INHERIT (to_insert_vfork_catchpoint, t);
512 INHERIT (to_remove_vfork_catchpoint, t);
513 INHERIT (to_has_forked, t);
514 INHERIT (to_has_vforked, t);
515 INHERIT (to_can_follow_vfork_prior_to_exec, t);
516 INHERIT (to_post_follow_vfork, t);
517 INHERIT (to_insert_exec_catchpoint, t);
518 INHERIT (to_remove_exec_catchpoint, t);
519 INHERIT (to_has_execd, t);
520 INHERIT (to_reported_exec_events_per_exec_call, t);
521 INHERIT (to_has_syscall_event, t);
522 INHERIT (to_has_exited, t);
523 INHERIT (to_mourn_inferior, t);
524 INHERIT (to_can_run, t);
525 INHERIT (to_notice_signals, t);
526 INHERIT (to_thread_alive, t);
b83266a0 527 INHERIT (to_find_new_threads, t);
c906108c
SS
528 INHERIT (to_stop, t);
529 INHERIT (to_query, t);
530 INHERIT (to_enable_exception_callback, t);
531 INHERIT (to_get_current_exception_event, t);
532 INHERIT (to_pid_to_exec_file, t);
533 INHERIT (to_core_file_to_sym_file, t);
534 INHERIT (to_stratum, t);
535 INHERIT (DONT_USE, t);
536 INHERIT (to_has_all_memory, t);
537 INHERIT (to_has_memory, t);
538 INHERIT (to_has_stack, t);
539 INHERIT (to_has_registers, t);
540 INHERIT (to_has_execution, t);
541 INHERIT (to_has_thread_control, t);
43ff13b4 542 INHERIT (to_has_async_exec, t);
c906108c
SS
543 INHERIT (to_sections, t);
544 INHERIT (to_sections_end, t);
545 INHERIT (to_magic, t);
546
547#undef INHERIT
548 }
549}
550
551/* Push a new target type into the stack of the existing target accessors,
552 possibly superseding some of the existing accessors.
553
554 Result is zero if the pushed target ended up on top of the stack,
555 nonzero if at least one target is on top of it.
556
557 Rather than allow an empty stack, we always have the dummy target at
558 the bottom stratum, so we can call the function vectors without
559 checking them. */
560
561int
562push_target (t)
563 struct target_ops *t;
564{
565 struct target_stack_item *cur, *prev, *tmp;
566
567 /* Check magic number. If wrong, it probably means someone changed
568 the struct definition, but not all the places that initialize one. */
569 if (t->to_magic != OPS_MAGIC)
570 {
c5aa993b
JM
571 fprintf_unfiltered (gdb_stderr,
572 "Magic number of %s target struct wrong\n",
573 t->to_shortname);
574 abort ();
c906108c
SS
575 }
576
577 /* Find the proper stratum to install this target in. */
578
579 for (prev = NULL, cur = target_stack; cur; prev = cur, cur = cur->next)
580 {
c5aa993b 581 if ((int) (t->to_stratum) >= (int) (cur->target_ops->to_stratum))
c906108c
SS
582 break;
583 }
584
585 /* If there's already targets at this stratum, remove them. */
586
587 if (cur)
588 while (t->to_stratum == cur->target_ops->to_stratum)
589 {
590 /* There's already something on this stratum. Close it off. */
591 if (cur->target_ops->to_close)
592 (cur->target_ops->to_close) (0);
593 if (prev)
c5aa993b 594 prev->next = cur->next; /* Unchain old target_ops */
c906108c 595 else
c5aa993b 596 target_stack = cur->next; /* Unchain first on list */
c906108c
SS
597 tmp = cur->next;
598 free (cur);
599 cur = tmp;
600 }
601
602 /* We have removed all targets in our stratum, now add the new one. */
603
604 tmp = (struct target_stack_item *)
605 xmalloc (sizeof (struct target_stack_item));
606 tmp->next = cur;
607 tmp->target_ops = t;
608
609 if (prev)
610 prev->next = tmp;
611 else
612 target_stack = tmp;
613
614 update_current_target ();
615
c5aa993b 616 cleanup_target (&current_target); /* Fill in the gaps */
c906108c 617
c906108c
SS
618 if (targetdebug)
619 setup_target_debug ();
c906108c
SS
620
621 return prev != 0;
622}
623
624/* Remove a target_ops vector from the stack, wherever it may be.
625 Return how many times it was removed (0 or 1). */
626
627int
628unpush_target (t)
629 struct target_ops *t;
630{
631 struct target_stack_item *cur, *prev;
632
633 if (t->to_close)
634 t->to_close (0); /* Let it clean up */
635
636 /* Look for the specified target. Note that we assume that a target
637 can only occur once in the target stack. */
638
639 for (cur = target_stack, prev = NULL; cur; prev = cur, cur = cur->next)
640 if (cur->target_ops == t)
641 break;
642
643 if (!cur)
644 return 0; /* Didn't find target_ops, quit now */
645
646 /* Unchain the target */
647
648 if (!prev)
649 target_stack = cur->next;
650 else
651 prev->next = cur->next;
652
653 free (cur); /* Release the target_stack_item */
654
655 update_current_target ();
656 cleanup_target (&current_target);
657
658 return 1;
659}
660
661void
662pop_target ()
663{
c5aa993b 664 (current_target.to_close) (0); /* Let it clean up */
c906108c
SS
665 if (unpush_target (target_stack->target_ops) == 1)
666 return;
667
c5aa993b
JM
668 fprintf_unfiltered (gdb_stderr,
669 "pop_target couldn't find target %s\n",
670 current_target.to_shortname);
671 abort ();
c906108c
SS
672}
673
674#undef MIN
675#define MIN(A, B) (((A) <= (B)) ? (A) : (B))
676
677/* target_read_string -- read a null terminated string, up to LEN bytes,
678 from MEMADDR in target. Set *ERRNOP to the errno code, or 0 if successful.
679 Set *STRING to a pointer to malloc'd memory containing the data; the caller
680 is responsible for freeing it. Return the number of bytes successfully
681 read. */
682
683int
684target_read_string (memaddr, string, len, errnop)
685 CORE_ADDR memaddr;
686 char **string;
687 int len;
688 int *errnop;
689{
690 int tlen, origlen, offset, i;
691 char buf[4];
692 int errcode = 0;
693 char *buffer;
694 int buffer_allocated;
695 char *bufptr;
696 unsigned int nbytes_read = 0;
697
698 /* Small for testing. */
699 buffer_allocated = 4;
700 buffer = xmalloc (buffer_allocated);
701 bufptr = buffer;
702
703 origlen = len;
704
705 while (len > 0)
706 {
707 tlen = MIN (len, 4 - (memaddr & 3));
708 offset = memaddr & 3;
709
710 errcode = target_xfer_memory (memaddr & ~3, buf, 4, 0, NULL);
711 if (errcode != 0)
712 {
713 /* The transfer request might have crossed the boundary to an
714 unallocated region of memory. Retry the transfer, requesting
715 a single byte. */
716 tlen = 1;
717 offset = 0;
718 errcode = target_xfer_memory (memaddr, buf, 1, 0, NULL);
719 if (errcode != 0)
720 goto done;
721 }
722
723 if (bufptr - buffer + tlen > buffer_allocated)
724 {
725 unsigned int bytes;
726 bytes = bufptr - buffer;
727 buffer_allocated *= 2;
728 buffer = xrealloc (buffer, buffer_allocated);
729 bufptr = buffer + bytes;
730 }
731
732 for (i = 0; i < tlen; i++)
733 {
734 *bufptr++ = buf[i + offset];
735 if (buf[i + offset] == '\000')
736 {
737 nbytes_read += i + 1;
738 goto done;
739 }
740 }
741
742 memaddr += tlen;
743 len -= tlen;
744 nbytes_read += tlen;
745 }
c5aa993b 746done:
c906108c
SS
747 if (errnop != NULL)
748 *errnop = errcode;
749 if (string != NULL)
750 *string = buffer;
751 return nbytes_read;
752}
753
754/* Read LEN bytes of target memory at address MEMADDR, placing the results in
755 GDB's memory at MYADDR. Returns either 0 for success or an errno value
756 if any error occurs.
757
758 If an error occurs, no guarantee is made about the contents of the data at
759 MYADDR. In particular, the caller should not depend upon partial reads
760 filling the buffer with good data. There is no way for the caller to know
761 how much good data might have been transfered anyway. Callers that can
762 deal with partial reads should call target_read_memory_partial. */
763
764int
765target_read_memory (memaddr, myaddr, len)
766 CORE_ADDR memaddr;
767 char *myaddr;
768 int len;
769{
770 return target_xfer_memory (memaddr, myaddr, len, 0, NULL);
771}
772
773int
774target_read_memory_section (memaddr, myaddr, len, bfd_section)
775 CORE_ADDR memaddr;
776 char *myaddr;
777 int len;
778 asection *bfd_section;
779{
780 return target_xfer_memory (memaddr, myaddr, len, 0, bfd_section);
781}
782
783/* Read LEN bytes of target memory at address MEMADDR, placing the results
784 in GDB's memory at MYADDR. Returns a count of the bytes actually read,
785 and optionally an errno value in the location pointed to by ERRNOPTR
786 if ERRNOPTR is non-null. */
787
788int
789target_read_memory_partial (memaddr, myaddr, len, errnoptr)
790 CORE_ADDR memaddr;
791 char *myaddr;
792 int len;
793 int *errnoptr;
794{
c5aa993b
JM
795 int nread; /* Number of bytes actually read. */
796 int errcode; /* Error from last read. */
c906108c
SS
797
798 /* First try a complete read. */
799 errcode = target_xfer_memory (memaddr, myaddr, len, 0, NULL);
800 if (errcode == 0)
801 {
802 /* Got it all. */
803 nread = len;
804 }
805 else
806 {
807 /* Loop, reading one byte at a time until we get as much as we can. */
808 for (errcode = 0, nread = 0; len > 0 && errcode == 0; nread++, len--)
809 {
810 errcode = target_xfer_memory (memaddr++, myaddr++, 1, 0, NULL);
811 }
812 /* If an error, the last read was unsuccessful, so adjust count. */
813 if (errcode != 0)
814 {
815 nread--;
816 }
817 }
818 if (errnoptr != NULL)
819 {
820 *errnoptr = errcode;
821 }
822 return (nread);
823}
824
825int
826target_write_memory (memaddr, myaddr, len)
827 CORE_ADDR memaddr;
828 char *myaddr;
829 int len;
830{
831 return target_xfer_memory (memaddr, myaddr, len, 1, NULL);
832}
c5aa993b 833
c906108c
SS
834/* This variable is used to pass section information down to targets. This
835 *should* be done by adding an argument to the target_xfer_memory function
836 of all the targets, but I didn't feel like changing 50+ files. */
837
838asection *target_memory_bfd_section = NULL;
839
840/* Move memory to or from the targets. Iterate until all of it has
841 been moved, if necessary. The top target gets priority; anything
842 it doesn't want, is offered to the next one down, etc. Note the
843 business with curlen: if an early target says "no, but I have a
844 boundary overlapping this xfer" then we shorten what we offer to
845 the subsequent targets so the early guy will get a chance at the
846 tail before the subsequent ones do.
847
848 Result is 0 or errno value. */
849
850static int
851target_xfer_memory (memaddr, myaddr, len, write, bfd_section)
852 CORE_ADDR memaddr;
853 char *myaddr;
854 int len;
855 int write;
856 asection *bfd_section;
857{
858 int curlen;
859 int res;
860 struct target_ops *t;
861 struct target_stack_item *item;
862
863 /* Zero length requests are ok and require no work. */
864 if (len == 0)
865 return 0;
866
867 target_memory_bfd_section = bfd_section;
868
869 /* to_xfer_memory is not guaranteed to set errno, even when it returns
870 0. */
871 errno = 0;
872
873 /* The quick case is that the top target does it all. */
874 res = current_target.to_xfer_memory
c5aa993b 875 (memaddr, myaddr, len, write, &current_target);
c906108c
SS
876 if (res == len)
877 return 0;
878
879 if (res > 0)
880 goto bump;
881 /* If res <= 0 then we call it again in the loop. Ah well. */
882
883 for (; len > 0;)
884 {
885 curlen = len; /* Want to do it all */
886 for (item = target_stack; item; item = item->next)
887 {
888 t = item->target_ops;
889 if (!t->to_has_memory)
890 continue;
891
892 res = t->to_xfer_memory (memaddr, myaddr, curlen, write, t);
893 if (res > 0)
894 break; /* Handled all or part of xfer */
895 if (t->to_has_all_memory)
896 break;
897 }
898
899 if (res <= 0)
900 {
901 /* If this address is for nonexistent memory,
902 read zeros if reading, or do nothing if writing. Return error. */
903 if (!write)
904 memset (myaddr, 0, len);
905 if (errno == 0)
906 return EIO;
907 else
908 return errno;
909 }
c5aa993b 910 bump:
c906108c 911 memaddr += res;
c5aa993b
JM
912 myaddr += res;
913 len -= res;
c906108c
SS
914 }
915 return 0; /* We managed to cover it all somehow. */
916}
917
918
919/* ARGSUSED */
920static void
921target_info (args, from_tty)
922 char *args;
923 int from_tty;
924{
925 struct target_ops *t;
926 struct target_stack_item *item;
927 int has_all_mem = 0;
c5aa993b 928
c906108c
SS
929 if (symfile_objfile != NULL)
930 printf_unfiltered ("Symbols from \"%s\".\n", symfile_objfile->name);
931
932#ifdef FILES_INFO_HOOK
933 if (FILES_INFO_HOOK ())
934 return;
935#endif
936
937 for (item = target_stack; item; item = item->next)
938 {
939 t = item->target_ops;
940
941 if (!t->to_has_memory)
942 continue;
943
c5aa993b 944 if ((int) (t->to_stratum) <= (int) dummy_stratum)
c906108c
SS
945 continue;
946 if (has_all_mem)
c5aa993b
JM
947 printf_unfiltered ("\tWhile running this, GDB does not access memory from...\n");
948 printf_unfiltered ("%s:\n", t->to_longname);
949 (t->to_files_info) (t);
c906108c
SS
950 has_all_mem = t->to_has_all_memory;
951 }
952}
953
954/* This is to be called by the open routine before it does
955 anything. */
956
957void
958target_preopen (from_tty)
959 int from_tty;
960{
c5aa993b 961 dont_repeat ();
c906108c
SS
962
963 if (target_has_execution)
c5aa993b 964 {
c906108c 965 if (query ("A program is being debugged already. Kill it? "))
c5aa993b 966 target_kill ();
c906108c 967 else
c5aa993b 968 error ("Program not killed.");
c906108c
SS
969 }
970
971 /* Calling target_kill may remove the target from the stack. But if
972 it doesn't (which seems like a win for UDI), remove it now. */
973
974 if (target_has_execution)
975 pop_target ();
976}
977
978/* Detach a target after doing deferred register stores. */
979
980void
981target_detach (args, from_tty)
982 char *args;
983 int from_tty;
984{
985 /* Handle any optimized stores to the inferior. */
986#ifdef DO_DEFERRED_STORES
987 DO_DEFERRED_STORES;
988#endif
989 (current_target.to_detach) (args, from_tty);
990}
991
992void
993target_link (modname, t_reloc)
994 char *modname;
995 CORE_ADDR *t_reloc;
996{
c5aa993b 997 if (STREQ (current_target.to_shortname, "rombug"))
c906108c
SS
998 {
999 (current_target.to_lookup_symbol) (modname, t_reloc);
1000 if (*t_reloc == 0)
c5aa993b 1001 error ("Unable to link to %s and get relocation in rombug", modname);
c906108c
SS
1002 }
1003 else
c5aa993b 1004 *t_reloc = (CORE_ADDR) - 1;
c906108c
SS
1005}
1006
1007/* Look through the list of possible targets for a target that can
1008 execute a run or attach command without any other data. This is
1009 used to locate the default process stratum.
1010
1011 Result is always valid (error() is called for errors). */
1012
1013static struct target_ops *
1014find_default_run_target (do_mesg)
1015 char *do_mesg;
1016{
1017 struct target_ops **t;
1018 struct target_ops *runable = NULL;
1019 int count;
1020
1021 count = 0;
1022
1023 for (t = target_structs; t < target_structs + target_struct_size;
1024 ++t)
1025 {
c5aa993b 1026 if ((*t)->to_can_run && target_can_run (*t))
c906108c
SS
1027 {
1028 runable = *t;
1029 ++count;
1030 }
1031 }
1032
1033 if (count != 1)
1034 error ("Don't know how to %s. Try \"help target\".", do_mesg);
1035
1036 return runable;
1037}
1038
1039void
1040find_default_attach (args, from_tty)
1041 char *args;
1042 int from_tty;
1043{
1044 struct target_ops *t;
1045
c5aa993b 1046 t = find_default_run_target ("attach");
c906108c
SS
1047 (t->to_attach) (args, from_tty);
1048 return;
1049}
1050
1051void
1052find_default_require_attach (args, from_tty)
1053 char *args;
1054 int from_tty;
1055{
1056 struct target_ops *t;
1057
c5aa993b 1058 t = find_default_run_target ("require_attach");
c906108c
SS
1059 (t->to_require_attach) (args, from_tty);
1060 return;
1061}
1062
1063void
1064find_default_require_detach (pid, args, from_tty)
c5aa993b
JM
1065 int pid;
1066 char *args;
1067 int from_tty;
c906108c
SS
1068{
1069 struct target_ops *t;
1070
c5aa993b 1071 t = find_default_run_target ("require_detach");
c906108c
SS
1072 (t->to_require_detach) (pid, args, from_tty);
1073 return;
1074}
1075
1076void
1077find_default_create_inferior (exec_file, allargs, env)
1078 char *exec_file;
1079 char *allargs;
1080 char **env;
1081{
1082 struct target_ops *t;
1083
c5aa993b 1084 t = find_default_run_target ("run");
c906108c
SS
1085 (t->to_create_inferior) (exec_file, allargs, env);
1086 return;
1087}
1088
1089void
1090find_default_clone_and_follow_inferior (child_pid, followed_child)
c5aa993b
JM
1091 int child_pid;
1092 int *followed_child;
c906108c
SS
1093{
1094 struct target_ops *t;
1095
c5aa993b 1096 t = find_default_run_target ("run");
c906108c
SS
1097 (t->to_clone_and_follow_inferior) (child_pid, followed_child);
1098 return;
1099}
1100
1101static int
1102return_zero ()
1103{
1104 return 0;
1105}
1106
1107static int
1108return_one ()
1109{
1110 return 1;
1111}
1112
7a292a7a
SS
1113/* Find a single runnable target in the stack and return it. If for
1114 some reason there is more than one, return NULL. */
1115
1116struct target_ops *
1117find_run_target ()
1118{
1119 struct target_ops **t;
1120 struct target_ops *runable = NULL;
1121 int count;
c5aa993b 1122
7a292a7a 1123 count = 0;
c5aa993b 1124
7a292a7a
SS
1125 for (t = target_structs; t < target_structs + target_struct_size; ++t)
1126 {
c5aa993b 1127 if ((*t)->to_can_run && target_can_run (*t))
7a292a7a
SS
1128 {
1129 runable = *t;
1130 ++count;
1131 }
1132 }
c5aa993b 1133
7a292a7a
SS
1134 return (count == 1 ? runable : NULL);
1135}
1136
c906108c
SS
1137struct target_ops *
1138find_core_target ()
1139{
1140 struct target_ops **t;
1141 struct target_ops *runable = NULL;
1142 int count;
c5aa993b 1143
c906108c 1144 count = 0;
c5aa993b 1145
c906108c
SS
1146 for (t = target_structs; t < target_structs + target_struct_size;
1147 ++t)
1148 {
1149 if ((*t)->to_stratum == core_stratum)
1150 {
1151 runable = *t;
1152 ++count;
1153 }
1154 }
c5aa993b
JM
1155
1156 return (count == 1 ? runable : NULL);
c906108c
SS
1157}
1158\f
1159/* The inferior process has died. Long live the inferior! */
1160
1161void
1162generic_mourn_inferior ()
1163{
1164 extern int show_breakpoint_hit_counts;
1165
1166 inferior_pid = 0;
1167 attach_flag = 0;
1168 breakpoint_init_inferior (inf_exited);
1169 registers_changed ();
1170
1171#ifdef CLEAR_DEFERRED_STORES
1172 /* Delete any pending stores to the inferior... */
1173 CLEAR_DEFERRED_STORES;
1174#endif
1175
1176 reopen_exec_file ();
1177 reinit_frame_cache ();
1178
1179 /* It is confusing to the user for ignore counts to stick around
1180 from previous runs of the inferior. So clear them. */
1181 /* However, it is more confusing for the ignore counts to disappear when
1182 using hit counts. So don't clear them if we're counting hits. */
1183 if (!show_breakpoint_hit_counts)
1184 breakpoint_clear_ignore_counts ();
1185}
1186\f
1187/* This table must match in order and size the signals in enum target_signal
1188 in target.h. */
9846de1b 1189/* *INDENT-OFF* */
c906108c
SS
1190static struct {
1191 char *name;
1192 char *string;
1193 } signals [] =
1194{
1195 {"0", "Signal 0"},
1196 {"SIGHUP", "Hangup"},
1197 {"SIGINT", "Interrupt"},
1198 {"SIGQUIT", "Quit"},
1199 {"SIGILL", "Illegal instruction"},
1200 {"SIGTRAP", "Trace/breakpoint trap"},
1201 {"SIGABRT", "Aborted"},
1202 {"SIGEMT", "Emulation trap"},
1203 {"SIGFPE", "Arithmetic exception"},
1204 {"SIGKILL", "Killed"},
1205 {"SIGBUS", "Bus error"},
1206 {"SIGSEGV", "Segmentation fault"},
1207 {"SIGSYS", "Bad system call"},
1208 {"SIGPIPE", "Broken pipe"},
1209 {"SIGALRM", "Alarm clock"},
1210 {"SIGTERM", "Terminated"},
1211 {"SIGURG", "Urgent I/O condition"},
1212 {"SIGSTOP", "Stopped (signal)"},
1213 {"SIGTSTP", "Stopped (user)"},
1214 {"SIGCONT", "Continued"},
1215 {"SIGCHLD", "Child status changed"},
1216 {"SIGTTIN", "Stopped (tty input)"},
1217 {"SIGTTOU", "Stopped (tty output)"},
1218 {"SIGIO", "I/O possible"},
1219 {"SIGXCPU", "CPU time limit exceeded"},
1220 {"SIGXFSZ", "File size limit exceeded"},
1221 {"SIGVTALRM", "Virtual timer expired"},
1222 {"SIGPROF", "Profiling timer expired"},
1223 {"SIGWINCH", "Window size changed"},
1224 {"SIGLOST", "Resource lost"},
1225 {"SIGUSR1", "User defined signal 1"},
1226 {"SIGUSR2", "User defined signal 2"},
1227 {"SIGPWR", "Power fail/restart"},
1228 {"SIGPOLL", "Pollable event occurred"},
1229 {"SIGWIND", "SIGWIND"},
1230 {"SIGPHONE", "SIGPHONE"},
1231 {"SIGWAITING", "Process's LWPs are blocked"},
1232 {"SIGLWP", "Signal LWP"},
1233 {"SIGDANGER", "Swap space dangerously low"},
1234 {"SIGGRANT", "Monitor mode granted"},
1235 {"SIGRETRACT", "Need to relinquish monitor mode"},
1236 {"SIGMSG", "Monitor mode data available"},
1237 {"SIGSOUND", "Sound completed"},
1238 {"SIGSAK", "Secure attention"},
1239 {"SIGPRIO", "SIGPRIO"},
1240 {"SIG33", "Real-time event 33"},
1241 {"SIG34", "Real-time event 34"},
1242 {"SIG35", "Real-time event 35"},
1243 {"SIG36", "Real-time event 36"},
1244 {"SIG37", "Real-time event 37"},
1245 {"SIG38", "Real-time event 38"},
1246 {"SIG39", "Real-time event 39"},
1247 {"SIG40", "Real-time event 40"},
1248 {"SIG41", "Real-time event 41"},
1249 {"SIG42", "Real-time event 42"},
1250 {"SIG43", "Real-time event 43"},
1251 {"SIG44", "Real-time event 44"},
1252 {"SIG45", "Real-time event 45"},
1253 {"SIG46", "Real-time event 46"},
1254 {"SIG47", "Real-time event 47"},
1255 {"SIG48", "Real-time event 48"},
1256 {"SIG49", "Real-time event 49"},
1257 {"SIG50", "Real-time event 50"},
1258 {"SIG51", "Real-time event 51"},
1259 {"SIG52", "Real-time event 52"},
1260 {"SIG53", "Real-time event 53"},
1261 {"SIG54", "Real-time event 54"},
1262 {"SIG55", "Real-time event 55"},
1263 {"SIG56", "Real-time event 56"},
1264 {"SIG57", "Real-time event 57"},
1265 {"SIG58", "Real-time event 58"},
1266 {"SIG59", "Real-time event 59"},
1267 {"SIG60", "Real-time event 60"},
1268 {"SIG61", "Real-time event 61"},
1269 {"SIG62", "Real-time event 62"},
1270 {"SIG63", "Real-time event 63"},
cd0fc7c3 1271 {"SIGCANCEL", "LWP internal signal"},
c906108c
SS
1272
1273#if defined(MACH) || defined(__MACH__)
1274 /* Mach exceptions */
1275 {"EXC_BAD_ACCESS", "Could not access memory"},
1276 {"EXC_BAD_INSTRUCTION", "Illegal instruction/operand"},
1277 {"EXC_ARITHMETIC", "Arithmetic exception"},
1278 {"EXC_EMULATION", "Emulation instruction"},
1279 {"EXC_SOFTWARE", "Software generated exception"},
1280 {"EXC_BREAKPOINT", "Breakpoint"},
1281#endif
7a292a7a
SS
1282 {"SIGINFO", "Information request"},
1283
c906108c
SS
1284 {NULL, "Unknown signal"},
1285 {NULL, "Internal error: printing TARGET_SIGNAL_DEFAULT"},
1286
1287 /* Last entry, used to check whether the table is the right size. */
1288 {NULL, "TARGET_SIGNAL_MAGIC"}
1289};
9846de1b 1290/* *INDENT-ON* */
c906108c 1291
c5aa993b
JM
1292
1293
c906108c
SS
1294/* Return the string for a signal. */
1295char *
1296target_signal_to_string (sig)
1297 enum target_signal sig;
1298{
7a292a7a
SS
1299 if ((sig >= TARGET_SIGNAL_FIRST) && (sig <= TARGET_SIGNAL_LAST))
1300 return signals[sig].string;
1301 else
1302 return signals[TARGET_SIGNAL_UNKNOWN].string;
c906108c
SS
1303}
1304
1305/* Return the name for a signal. */
1306char *
1307target_signal_to_name (sig)
1308 enum target_signal sig;
1309{
1310 if (sig == TARGET_SIGNAL_UNKNOWN)
1311 /* I think the code which prints this will always print it along with
1312 the string, so no need to be verbose. */
1313 return "?";
1314 return signals[sig].name;
1315}
1316
1317/* Given a name, return its signal. */
1318enum target_signal
1319target_signal_from_name (name)
1320 char *name;
1321{
1322 enum target_signal sig;
1323
1324 /* It's possible we also should allow "SIGCLD" as well as "SIGCHLD"
1325 for TARGET_SIGNAL_SIGCHLD. SIGIOT, on the other hand, is more
1326 questionable; seems like by now people should call it SIGABRT
1327 instead. */
1328
1329 /* This ugly cast brought to you by the native VAX compiler. */
1330 for (sig = TARGET_SIGNAL_HUP;
1331 signals[sig].name != NULL;
c5aa993b 1332 sig = (enum target_signal) ((int) sig + 1))
c906108c
SS
1333 if (STREQ (name, signals[sig].name))
1334 return sig;
1335 return TARGET_SIGNAL_UNKNOWN;
1336}
1337\f
1338/* The following functions are to help certain targets deal
1339 with the signal/waitstatus stuff. They could just as well be in
1340 a file called native-utils.c or unixwaitstatus-utils.c or whatever. */
1341
1342/* Convert host signal to our signals. */
1343enum target_signal
1344target_signal_from_host (hostsig)
1345 int hostsig;
1346{
1347 /* A switch statement would make sense but would require special kludges
1348 to deal with the cases where more than one signal has the same number. */
1349
c5aa993b
JM
1350 if (hostsig == 0)
1351 return TARGET_SIGNAL_0;
c906108c
SS
1352
1353#if defined (SIGHUP)
c5aa993b
JM
1354 if (hostsig == SIGHUP)
1355 return TARGET_SIGNAL_HUP;
c906108c
SS
1356#endif
1357#if defined (SIGINT)
c5aa993b
JM
1358 if (hostsig == SIGINT)
1359 return TARGET_SIGNAL_INT;
c906108c
SS
1360#endif
1361#if defined (SIGQUIT)
c5aa993b
JM
1362 if (hostsig == SIGQUIT)
1363 return TARGET_SIGNAL_QUIT;
c906108c
SS
1364#endif
1365#if defined (SIGILL)
c5aa993b
JM
1366 if (hostsig == SIGILL)
1367 return TARGET_SIGNAL_ILL;
c906108c
SS
1368#endif
1369#if defined (SIGTRAP)
c5aa993b
JM
1370 if (hostsig == SIGTRAP)
1371 return TARGET_SIGNAL_TRAP;
c906108c
SS
1372#endif
1373#if defined (SIGABRT)
c5aa993b
JM
1374 if (hostsig == SIGABRT)
1375 return TARGET_SIGNAL_ABRT;
c906108c
SS
1376#endif
1377#if defined (SIGEMT)
c5aa993b
JM
1378 if (hostsig == SIGEMT)
1379 return TARGET_SIGNAL_EMT;
c906108c
SS
1380#endif
1381#if defined (SIGFPE)
c5aa993b
JM
1382 if (hostsig == SIGFPE)
1383 return TARGET_SIGNAL_FPE;
c906108c
SS
1384#endif
1385#if defined (SIGKILL)
c5aa993b
JM
1386 if (hostsig == SIGKILL)
1387 return TARGET_SIGNAL_KILL;
c906108c
SS
1388#endif
1389#if defined (SIGBUS)
c5aa993b
JM
1390 if (hostsig == SIGBUS)
1391 return TARGET_SIGNAL_BUS;
c906108c
SS
1392#endif
1393#if defined (SIGSEGV)
c5aa993b
JM
1394 if (hostsig == SIGSEGV)
1395 return TARGET_SIGNAL_SEGV;
c906108c
SS
1396#endif
1397#if defined (SIGSYS)
c5aa993b
JM
1398 if (hostsig == SIGSYS)
1399 return TARGET_SIGNAL_SYS;
c906108c
SS
1400#endif
1401#if defined (SIGPIPE)
c5aa993b
JM
1402 if (hostsig == SIGPIPE)
1403 return TARGET_SIGNAL_PIPE;
c906108c
SS
1404#endif
1405#if defined (SIGALRM)
c5aa993b
JM
1406 if (hostsig == SIGALRM)
1407 return TARGET_SIGNAL_ALRM;
c906108c
SS
1408#endif
1409#if defined (SIGTERM)
c5aa993b
JM
1410 if (hostsig == SIGTERM)
1411 return TARGET_SIGNAL_TERM;
c906108c
SS
1412#endif
1413#if defined (SIGUSR1)
c5aa993b
JM
1414 if (hostsig == SIGUSR1)
1415 return TARGET_SIGNAL_USR1;
c906108c
SS
1416#endif
1417#if defined (SIGUSR2)
c5aa993b
JM
1418 if (hostsig == SIGUSR2)
1419 return TARGET_SIGNAL_USR2;
c906108c
SS
1420#endif
1421#if defined (SIGCLD)
c5aa993b
JM
1422 if (hostsig == SIGCLD)
1423 return TARGET_SIGNAL_CHLD;
c906108c
SS
1424#endif
1425#if defined (SIGCHLD)
c5aa993b
JM
1426 if (hostsig == SIGCHLD)
1427 return TARGET_SIGNAL_CHLD;
c906108c
SS
1428#endif
1429#if defined (SIGPWR)
c5aa993b
JM
1430 if (hostsig == SIGPWR)
1431 return TARGET_SIGNAL_PWR;
c906108c
SS
1432#endif
1433#if defined (SIGWINCH)
c5aa993b
JM
1434 if (hostsig == SIGWINCH)
1435 return TARGET_SIGNAL_WINCH;
c906108c
SS
1436#endif
1437#if defined (SIGURG)
c5aa993b
JM
1438 if (hostsig == SIGURG)
1439 return TARGET_SIGNAL_URG;
c906108c
SS
1440#endif
1441#if defined (SIGIO)
c5aa993b
JM
1442 if (hostsig == SIGIO)
1443 return TARGET_SIGNAL_IO;
c906108c
SS
1444#endif
1445#if defined (SIGPOLL)
c5aa993b
JM
1446 if (hostsig == SIGPOLL)
1447 return TARGET_SIGNAL_POLL;
c906108c
SS
1448#endif
1449#if defined (SIGSTOP)
c5aa993b
JM
1450 if (hostsig == SIGSTOP)
1451 return TARGET_SIGNAL_STOP;
c906108c
SS
1452#endif
1453#if defined (SIGTSTP)
c5aa993b
JM
1454 if (hostsig == SIGTSTP)
1455 return TARGET_SIGNAL_TSTP;
c906108c
SS
1456#endif
1457#if defined (SIGCONT)
c5aa993b
JM
1458 if (hostsig == SIGCONT)
1459 return TARGET_SIGNAL_CONT;
c906108c
SS
1460#endif
1461#if defined (SIGTTIN)
c5aa993b
JM
1462 if (hostsig == SIGTTIN)
1463 return TARGET_SIGNAL_TTIN;
c906108c
SS
1464#endif
1465#if defined (SIGTTOU)
c5aa993b
JM
1466 if (hostsig == SIGTTOU)
1467 return TARGET_SIGNAL_TTOU;
c906108c
SS
1468#endif
1469#if defined (SIGVTALRM)
c5aa993b
JM
1470 if (hostsig == SIGVTALRM)
1471 return TARGET_SIGNAL_VTALRM;
c906108c
SS
1472#endif
1473#if defined (SIGPROF)
c5aa993b
JM
1474 if (hostsig == SIGPROF)
1475 return TARGET_SIGNAL_PROF;
c906108c
SS
1476#endif
1477#if defined (SIGXCPU)
c5aa993b
JM
1478 if (hostsig == SIGXCPU)
1479 return TARGET_SIGNAL_XCPU;
c906108c
SS
1480#endif
1481#if defined (SIGXFSZ)
c5aa993b
JM
1482 if (hostsig == SIGXFSZ)
1483 return TARGET_SIGNAL_XFSZ;
c906108c
SS
1484#endif
1485#if defined (SIGWIND)
c5aa993b
JM
1486 if (hostsig == SIGWIND)
1487 return TARGET_SIGNAL_WIND;
c906108c
SS
1488#endif
1489#if defined (SIGPHONE)
c5aa993b
JM
1490 if (hostsig == SIGPHONE)
1491 return TARGET_SIGNAL_PHONE;
c906108c
SS
1492#endif
1493#if defined (SIGLOST)
c5aa993b
JM
1494 if (hostsig == SIGLOST)
1495 return TARGET_SIGNAL_LOST;
c906108c
SS
1496#endif
1497#if defined (SIGWAITING)
c5aa993b
JM
1498 if (hostsig == SIGWAITING)
1499 return TARGET_SIGNAL_WAITING;
c906108c 1500#endif
cd0fc7c3 1501#if defined (SIGCANCEL)
c5aa993b
JM
1502 if (hostsig == SIGCANCEL)
1503 return TARGET_SIGNAL_CANCEL;
cd0fc7c3 1504#endif
c906108c 1505#if defined (SIGLWP)
c5aa993b
JM
1506 if (hostsig == SIGLWP)
1507 return TARGET_SIGNAL_LWP;
c906108c
SS
1508#endif
1509#if defined (SIGDANGER)
c5aa993b
JM
1510 if (hostsig == SIGDANGER)
1511 return TARGET_SIGNAL_DANGER;
c906108c
SS
1512#endif
1513#if defined (SIGGRANT)
c5aa993b
JM
1514 if (hostsig == SIGGRANT)
1515 return TARGET_SIGNAL_GRANT;
c906108c
SS
1516#endif
1517#if defined (SIGRETRACT)
c5aa993b
JM
1518 if (hostsig == SIGRETRACT)
1519 return TARGET_SIGNAL_RETRACT;
c906108c
SS
1520#endif
1521#if defined (SIGMSG)
c5aa993b
JM
1522 if (hostsig == SIGMSG)
1523 return TARGET_SIGNAL_MSG;
c906108c
SS
1524#endif
1525#if defined (SIGSOUND)
c5aa993b
JM
1526 if (hostsig == SIGSOUND)
1527 return TARGET_SIGNAL_SOUND;
c906108c
SS
1528#endif
1529#if defined (SIGSAK)
c5aa993b
JM
1530 if (hostsig == SIGSAK)
1531 return TARGET_SIGNAL_SAK;
c906108c
SS
1532#endif
1533#if defined (SIGPRIO)
c5aa993b
JM
1534 if (hostsig == SIGPRIO)
1535 return TARGET_SIGNAL_PRIO;
c906108c
SS
1536#endif
1537
1538 /* Mach exceptions. Assumes that the values for EXC_ are positive! */
1539#if defined (EXC_BAD_ACCESS) && defined (_NSIG)
c5aa993b
JM
1540 if (hostsig == _NSIG + EXC_BAD_ACCESS)
1541 return TARGET_EXC_BAD_ACCESS;
c906108c
SS
1542#endif
1543#if defined (EXC_BAD_INSTRUCTION) && defined (_NSIG)
c5aa993b
JM
1544 if (hostsig == _NSIG + EXC_BAD_INSTRUCTION)
1545 return TARGET_EXC_BAD_INSTRUCTION;
c906108c
SS
1546#endif
1547#if defined (EXC_ARITHMETIC) && defined (_NSIG)
c5aa993b
JM
1548 if (hostsig == _NSIG + EXC_ARITHMETIC)
1549 return TARGET_EXC_ARITHMETIC;
c906108c
SS
1550#endif
1551#if defined (EXC_EMULATION) && defined (_NSIG)
c5aa993b
JM
1552 if (hostsig == _NSIG + EXC_EMULATION)
1553 return TARGET_EXC_EMULATION;
c906108c
SS
1554#endif
1555#if defined (EXC_SOFTWARE) && defined (_NSIG)
c5aa993b
JM
1556 if (hostsig == _NSIG + EXC_SOFTWARE)
1557 return TARGET_EXC_SOFTWARE;
c906108c
SS
1558#endif
1559#if defined (EXC_BREAKPOINT) && defined (_NSIG)
c5aa993b
JM
1560 if (hostsig == _NSIG + EXC_BREAKPOINT)
1561 return TARGET_EXC_BREAKPOINT;
c906108c
SS
1562#endif
1563
7a292a7a 1564#if defined (SIGINFO)
c5aa993b
JM
1565 if (hostsig == SIGINFO)
1566 return TARGET_SIGNAL_INFO;
7a292a7a
SS
1567#endif
1568
c906108c
SS
1569#if defined (REALTIME_LO)
1570 if (hostsig >= REALTIME_LO && hostsig < REALTIME_HI)
1571 return (enum target_signal)
1572 (hostsig - 33 + (int) TARGET_SIGNAL_REALTIME_33);
1573#endif
1574 return TARGET_SIGNAL_UNKNOWN;
1575}
1576
1577int
1578target_signal_to_host (oursig)
1579 enum target_signal oursig;
1580{
1581 switch (oursig)
1582 {
c5aa993b
JM
1583 case TARGET_SIGNAL_0:
1584 return 0;
c906108c
SS
1585
1586#if defined (SIGHUP)
c5aa993b
JM
1587 case TARGET_SIGNAL_HUP:
1588 return SIGHUP;
c906108c
SS
1589#endif
1590#if defined (SIGINT)
c5aa993b
JM
1591 case TARGET_SIGNAL_INT:
1592 return SIGINT;
c906108c
SS
1593#endif
1594#if defined (SIGQUIT)
c5aa993b
JM
1595 case TARGET_SIGNAL_QUIT:
1596 return SIGQUIT;
c906108c
SS
1597#endif
1598#if defined (SIGILL)
c5aa993b
JM
1599 case TARGET_SIGNAL_ILL:
1600 return SIGILL;
c906108c
SS
1601#endif
1602#if defined (SIGTRAP)
c5aa993b
JM
1603 case TARGET_SIGNAL_TRAP:
1604 return SIGTRAP;
c906108c
SS
1605#endif
1606#if defined (SIGABRT)
c5aa993b
JM
1607 case TARGET_SIGNAL_ABRT:
1608 return SIGABRT;
c906108c
SS
1609#endif
1610#if defined (SIGEMT)
c5aa993b
JM
1611 case TARGET_SIGNAL_EMT:
1612 return SIGEMT;
c906108c
SS
1613#endif
1614#if defined (SIGFPE)
c5aa993b
JM
1615 case TARGET_SIGNAL_FPE:
1616 return SIGFPE;
c906108c
SS
1617#endif
1618#if defined (SIGKILL)
c5aa993b
JM
1619 case TARGET_SIGNAL_KILL:
1620 return SIGKILL;
c906108c
SS
1621#endif
1622#if defined (SIGBUS)
c5aa993b
JM
1623 case TARGET_SIGNAL_BUS:
1624 return SIGBUS;
c906108c
SS
1625#endif
1626#if defined (SIGSEGV)
c5aa993b
JM
1627 case TARGET_SIGNAL_SEGV:
1628 return SIGSEGV;
c906108c
SS
1629#endif
1630#if defined (SIGSYS)
c5aa993b
JM
1631 case TARGET_SIGNAL_SYS:
1632 return SIGSYS;
c906108c
SS
1633#endif
1634#if defined (SIGPIPE)
c5aa993b
JM
1635 case TARGET_SIGNAL_PIPE:
1636 return SIGPIPE;
c906108c
SS
1637#endif
1638#if defined (SIGALRM)
c5aa993b
JM
1639 case TARGET_SIGNAL_ALRM:
1640 return SIGALRM;
c906108c
SS
1641#endif
1642#if defined (SIGTERM)
c5aa993b
JM
1643 case TARGET_SIGNAL_TERM:
1644 return SIGTERM;
c906108c
SS
1645#endif
1646#if defined (SIGUSR1)
c5aa993b
JM
1647 case TARGET_SIGNAL_USR1:
1648 return SIGUSR1;
c906108c
SS
1649#endif
1650#if defined (SIGUSR2)
c5aa993b
JM
1651 case TARGET_SIGNAL_USR2:
1652 return SIGUSR2;
c906108c
SS
1653#endif
1654#if defined (SIGCHLD) || defined (SIGCLD)
c5aa993b 1655 case TARGET_SIGNAL_CHLD:
c906108c
SS
1656#if defined (SIGCHLD)
1657 return SIGCHLD;
1658#else
1659 return SIGCLD;
1660#endif
1661#endif /* SIGCLD or SIGCHLD */
1662#if defined (SIGPWR)
c5aa993b
JM
1663 case TARGET_SIGNAL_PWR:
1664 return SIGPWR;
c906108c
SS
1665#endif
1666#if defined (SIGWINCH)
c5aa993b
JM
1667 case TARGET_SIGNAL_WINCH:
1668 return SIGWINCH;
c906108c
SS
1669#endif
1670#if defined (SIGURG)
c5aa993b
JM
1671 case TARGET_SIGNAL_URG:
1672 return SIGURG;
c906108c
SS
1673#endif
1674#if defined (SIGIO)
c5aa993b
JM
1675 case TARGET_SIGNAL_IO:
1676 return SIGIO;
c906108c
SS
1677#endif
1678#if defined (SIGPOLL)
c5aa993b
JM
1679 case TARGET_SIGNAL_POLL:
1680 return SIGPOLL;
c906108c
SS
1681#endif
1682#if defined (SIGSTOP)
c5aa993b
JM
1683 case TARGET_SIGNAL_STOP:
1684 return SIGSTOP;
c906108c
SS
1685#endif
1686#if defined (SIGTSTP)
c5aa993b
JM
1687 case TARGET_SIGNAL_TSTP:
1688 return SIGTSTP;
c906108c
SS
1689#endif
1690#if defined (SIGCONT)
c5aa993b
JM
1691 case TARGET_SIGNAL_CONT:
1692 return SIGCONT;
c906108c
SS
1693#endif
1694#if defined (SIGTTIN)
c5aa993b
JM
1695 case TARGET_SIGNAL_TTIN:
1696 return SIGTTIN;
c906108c
SS
1697#endif
1698#if defined (SIGTTOU)
c5aa993b
JM
1699 case TARGET_SIGNAL_TTOU:
1700 return SIGTTOU;
c906108c
SS
1701#endif
1702#if defined (SIGVTALRM)
c5aa993b
JM
1703 case TARGET_SIGNAL_VTALRM:
1704 return SIGVTALRM;
c906108c
SS
1705#endif
1706#if defined (SIGPROF)
c5aa993b
JM
1707 case TARGET_SIGNAL_PROF:
1708 return SIGPROF;
c906108c
SS
1709#endif
1710#if defined (SIGXCPU)
c5aa993b
JM
1711 case TARGET_SIGNAL_XCPU:
1712 return SIGXCPU;
c906108c
SS
1713#endif
1714#if defined (SIGXFSZ)
c5aa993b
JM
1715 case TARGET_SIGNAL_XFSZ:
1716 return SIGXFSZ;
c906108c
SS
1717#endif
1718#if defined (SIGWIND)
c5aa993b
JM
1719 case TARGET_SIGNAL_WIND:
1720 return SIGWIND;
c906108c
SS
1721#endif
1722#if defined (SIGPHONE)
c5aa993b
JM
1723 case TARGET_SIGNAL_PHONE:
1724 return SIGPHONE;
c906108c
SS
1725#endif
1726#if defined (SIGLOST)
c5aa993b
JM
1727 case TARGET_SIGNAL_LOST:
1728 return SIGLOST;
c906108c
SS
1729#endif
1730#if defined (SIGWAITING)
c5aa993b
JM
1731 case TARGET_SIGNAL_WAITING:
1732 return SIGWAITING;
c906108c 1733#endif
cd0fc7c3 1734#if defined (SIGCANCEL)
c5aa993b
JM
1735 case TARGET_SIGNAL_CANCEL:
1736 return SIGCANCEL;
cd0fc7c3 1737#endif
c906108c 1738#if defined (SIGLWP)
c5aa993b
JM
1739 case TARGET_SIGNAL_LWP:
1740 return SIGLWP;
c906108c
SS
1741#endif
1742#if defined (SIGDANGER)
c5aa993b
JM
1743 case TARGET_SIGNAL_DANGER:
1744 return SIGDANGER;
c906108c
SS
1745#endif
1746#if defined (SIGGRANT)
c5aa993b
JM
1747 case TARGET_SIGNAL_GRANT:
1748 return SIGGRANT;
c906108c
SS
1749#endif
1750#if defined (SIGRETRACT)
c5aa993b
JM
1751 case TARGET_SIGNAL_RETRACT:
1752 return SIGRETRACT;
c906108c
SS
1753#endif
1754#if defined (SIGMSG)
c5aa993b
JM
1755 case TARGET_SIGNAL_MSG:
1756 return SIGMSG;
c906108c
SS
1757#endif
1758#if defined (SIGSOUND)
c5aa993b
JM
1759 case TARGET_SIGNAL_SOUND:
1760 return SIGSOUND;
c906108c
SS
1761#endif
1762#if defined (SIGSAK)
c5aa993b
JM
1763 case TARGET_SIGNAL_SAK:
1764 return SIGSAK;
c906108c
SS
1765#endif
1766#if defined (SIGPRIO)
c5aa993b
JM
1767 case TARGET_SIGNAL_PRIO:
1768 return SIGPRIO;
c906108c
SS
1769#endif
1770
1771 /* Mach exceptions. Assumes that the values for EXC_ are positive! */
1772#if defined (EXC_BAD_ACCESS) && defined (_NSIG)
c5aa993b
JM
1773 case TARGET_EXC_BAD_ACCESS:
1774 return _NSIG + EXC_BAD_ACCESS;
c906108c
SS
1775#endif
1776#if defined (EXC_BAD_INSTRUCTION) && defined (_NSIG)
c5aa993b
JM
1777 case TARGET_EXC_BAD_INSTRUCTION:
1778 return _NSIG + EXC_BAD_INSTRUCTION;
c906108c
SS
1779#endif
1780#if defined (EXC_ARITHMETIC) && defined (_NSIG)
c5aa993b
JM
1781 case TARGET_EXC_ARITHMETIC:
1782 return _NSIG + EXC_ARITHMETIC;
c906108c
SS
1783#endif
1784#if defined (EXC_EMULATION) && defined (_NSIG)
c5aa993b
JM
1785 case TARGET_EXC_EMULATION:
1786 return _NSIG + EXC_EMULATION;
c906108c
SS
1787#endif
1788#if defined (EXC_SOFTWARE) && defined (_NSIG)
c5aa993b
JM
1789 case TARGET_EXC_SOFTWARE:
1790 return _NSIG + EXC_SOFTWARE;
c906108c
SS
1791#endif
1792#if defined (EXC_BREAKPOINT) && defined (_NSIG)
c5aa993b
JM
1793 case TARGET_EXC_BREAKPOINT:
1794 return _NSIG + EXC_BREAKPOINT;
c906108c
SS
1795#endif
1796
7a292a7a 1797#if defined (SIGINFO)
c5aa993b
JM
1798 case TARGET_SIGNAL_INFO:
1799 return SIGINFO;
7a292a7a
SS
1800#endif
1801
c906108c
SS
1802 default:
1803#if defined (REALTIME_LO)
1804 if (oursig >= TARGET_SIGNAL_REALTIME_33
1805 && oursig <= TARGET_SIGNAL_REALTIME_63)
1806 {
1807 int retsig =
c5aa993b 1808 (int) oursig - (int) TARGET_SIGNAL_REALTIME_33 + REALTIME_LO;
c906108c
SS
1809 if (retsig < REALTIME_HI)
1810 return retsig;
1811 }
1812#endif
1813 /* The user might be trying to do "signal SIGSAK" where this system
c5aa993b 1814 doesn't have SIGSAK. */
c906108c
SS
1815 warning ("Signal %s does not exist on this system.\n",
1816 target_signal_to_name (oursig));
1817 return 0;
1818 }
1819}
1820
1821/* Helper function for child_wait and the Lynx derivatives of child_wait.
1822 HOSTSTATUS is the waitstatus from wait() or the equivalent; store our
1823 translation of that in OURSTATUS. */
1824void
1825store_waitstatus (ourstatus, hoststatus)
1826 struct target_waitstatus *ourstatus;
1827 int hoststatus;
1828{
1829#ifdef CHILD_SPECIAL_WAITSTATUS
1830 /* CHILD_SPECIAL_WAITSTATUS should return nonzero and set *OURSTATUS
1831 if it wants to deal with hoststatus. */
1832 if (CHILD_SPECIAL_WAITSTATUS (ourstatus, hoststatus))
1833 return;
1834#endif
1835
1836 if (WIFEXITED (hoststatus))
1837 {
1838 ourstatus->kind = TARGET_WAITKIND_EXITED;
1839 ourstatus->value.integer = WEXITSTATUS (hoststatus);
1840 }
1841 else if (!WIFSTOPPED (hoststatus))
1842 {
1843 ourstatus->kind = TARGET_WAITKIND_SIGNALLED;
1844 ourstatus->value.sig = target_signal_from_host (WTERMSIG (hoststatus));
1845 }
1846 else
1847 {
1848 ourstatus->kind = TARGET_WAITKIND_STOPPED;
1849 ourstatus->value.sig = target_signal_from_host (WSTOPSIG (hoststatus));
1850 }
1851}
1852\f
1853/* In some circumstances we allow a command to specify a numeric
1854 signal. The idea is to keep these circumstances limited so that
1855 users (and scripts) develop portable habits. For comparison,
1856 POSIX.2 `kill' requires that 1,2,3,6,9,14, and 15 work (and using a
1857 numeric signal at all is obscelescent. We are slightly more
1858 lenient and allow 1-15 which should match host signal numbers on
1859 most systems. Use of symbolic signal names is strongly encouraged. */
1860
1861enum target_signal
1862target_signal_from_command (num)
1863 int num;
1864{
1865 if (num >= 1 && num <= 15)
c5aa993b 1866 return (enum target_signal) num;
c906108c
SS
1867 error ("Only signals 1-15 are valid as numeric signals.\n\
1868Use \"info signals\" for a list of symbolic signals.");
1869}
1870\f
1871/* Returns zero to leave the inferior alone, one to interrupt it. */
1872int (*target_activity_function) PARAMS ((void));
1873int target_activity_fd;
1874\f
1875/* Convert a normal process ID to a string. Returns the string in a static
1876 buffer. */
1877
1878char *
1879normal_pid_to_str (pid)
1880 int pid;
1881{
1882 static char buf[30];
1883
1884 if (STREQ (current_target.to_shortname, "remote"))
1885 sprintf (buf, "thread %d\0", pid);
1886 else
1887 sprintf (buf, "process %d\0", pid);
1888
1889 return buf;
1890}
1891
1892/* Some targets (such as ttrace-based HPUX) don't allow us to request
1893 notification of inferior events such as fork and vork immediately
1894 after the inferior is created. (This because of how gdb gets an
1895 inferior created via invoking a shell to do it. In such a scenario,
1896 if the shell init file has commands in it, the shell will fork and
1897 exec for each of those commands, and we will see each such fork
1898 event. Very bad.)
c5aa993b 1899
c906108c
SS
1900 This function is used by all targets that allow us to request
1901 notification of forks, etc at inferior creation time; e.g., in
1902 target_acknowledge_forked_child.
c5aa993b 1903 */
392a587b 1904static void
c906108c 1905normal_target_post_startup_inferior (pid)
c5aa993b 1906 int pid;
c906108c
SS
1907{
1908 /* This space intentionally left blank. */
1909}
1910
1911/* Set up the handful of non-empty slots needed by the dummy target
1912 vector. */
1913
1914static void
1915init_dummy_target ()
1916{
1917 dummy_target.to_shortname = "None";
1918 dummy_target.to_longname = "None";
1919 dummy_target.to_doc = "";
1920 dummy_target.to_attach = find_default_attach;
1921 dummy_target.to_require_attach = find_default_require_attach;
1922 dummy_target.to_require_detach = find_default_require_detach;
1923 dummy_target.to_create_inferior = find_default_create_inferior;
1924 dummy_target.to_clone_and_follow_inferior = find_default_clone_and_follow_inferior;
1925 dummy_target.to_stratum = dummy_stratum;
1926 dummy_target.to_magic = OPS_MAGIC;
1927}
c906108c 1928\f
c5aa993b 1929
c906108c
SS
1930static struct target_ops debug_target;
1931
1932static void
1933debug_to_open (args, from_tty)
1934 char *args;
1935 int from_tty;
1936{
1937 debug_target.to_open (args, from_tty);
1938
1939 fprintf_unfiltered (gdb_stderr, "target_open (%s, %d)\n", args, from_tty);
1940}
1941
1942static void
1943debug_to_close (quitting)
1944 int quitting;
1945{
1946 debug_target.to_close (quitting);
1947
1948 fprintf_unfiltered (gdb_stderr, "target_close (%d)\n", quitting);
1949}
1950
1951static void
1952debug_to_attach (args, from_tty)
1953 char *args;
1954 int from_tty;
1955{
1956 debug_target.to_attach (args, from_tty);
1957
1958 fprintf_unfiltered (gdb_stderr, "target_attach (%s, %d)\n", args, from_tty);
1959}
1960
1961
1962static void
1963debug_to_post_attach (pid)
c5aa993b 1964 int pid;
c906108c
SS
1965{
1966 debug_target.to_post_attach (pid);
1967
1968 fprintf_unfiltered (gdb_stderr, "target_post_attach (%d)\n", pid);
1969}
1970
1971static void
1972debug_to_require_attach (args, from_tty)
1973 char *args;
1974 int from_tty;
1975{
1976 debug_target.to_require_attach (args, from_tty);
1977
1978 fprintf_unfiltered (gdb_stderr,
1979 "target_require_attach (%s, %d)\n", args, from_tty);
1980}
1981
1982static void
1983debug_to_detach (args, from_tty)
1984 char *args;
1985 int from_tty;
1986{
1987 debug_target.to_detach (args, from_tty);
1988
1989 fprintf_unfiltered (gdb_stderr, "target_detach (%s, %d)\n", args, from_tty);
1990}
1991
1992static void
1993debug_to_require_detach (pid, args, from_tty)
c5aa993b
JM
1994 int pid;
1995 char *args;
1996 int from_tty;
c906108c
SS
1997{
1998 debug_target.to_require_detach (pid, args, from_tty);
1999
2000 fprintf_unfiltered (gdb_stderr,
c5aa993b 2001 "target_require_detach (%d, %s, %d)\n", pid, args, from_tty);
c906108c
SS
2002}
2003
2004static void
2005debug_to_resume (pid, step, siggnal)
2006 int pid;
2007 int step;
2008 enum target_signal siggnal;
2009{
2010 debug_target.to_resume (pid, step, siggnal);
2011
2012 fprintf_unfiltered (gdb_stderr, "target_resume (%d, %s, %s)\n", pid,
2013 step ? "step" : "continue",
2014 target_signal_to_name (siggnal));
2015}
2016
2017static int
2018debug_to_wait (pid, status)
2019 int pid;
2020 struct target_waitstatus *status;
2021{
2022 int retval;
2023
2024 retval = debug_target.to_wait (pid, status);
2025
2026 fprintf_unfiltered (gdb_stderr,
2027 "target_wait (%d, status) = %d, ", pid, retval);
2028 fprintf_unfiltered (gdb_stderr, "status->kind = ");
2029 switch (status->kind)
2030 {
2031 case TARGET_WAITKIND_EXITED:
2032 fprintf_unfiltered (gdb_stderr, "exited, status = %d\n",
2033 status->value.integer);
2034 break;
2035 case TARGET_WAITKIND_STOPPED:
2036 fprintf_unfiltered (gdb_stderr, "stopped, signal = %s\n",
2037 target_signal_to_name (status->value.sig));
2038 break;
2039 case TARGET_WAITKIND_SIGNALLED:
2040 fprintf_unfiltered (gdb_stderr, "signalled, signal = %s\n",
2041 target_signal_to_name (status->value.sig));
2042 break;
2043 case TARGET_WAITKIND_LOADED:
2044 fprintf_unfiltered (gdb_stderr, "loaded\n");
2045 break;
2046 case TARGET_WAITKIND_FORKED:
2047 fprintf_unfiltered (gdb_stderr, "forked\n");
2048 break;
2049 case TARGET_WAITKIND_VFORKED:
2050 fprintf_unfiltered (gdb_stderr, "vforked\n");
2051 break;
2052 case TARGET_WAITKIND_EXECD:
2053 fprintf_unfiltered (gdb_stderr, "execd\n");
2054 break;
2055 case TARGET_WAITKIND_SPURIOUS:
2056 fprintf_unfiltered (gdb_stderr, "spurious\n");
2057 break;
2058 default:
2059 fprintf_unfiltered (gdb_stderr, "unknown???\n");
2060 break;
2061 }
2062
2063 return retval;
2064}
2065
2066static void
2067debug_to_post_wait (pid, status)
c5aa993b
JM
2068 int pid;
2069 int status;
c906108c
SS
2070{
2071 debug_target.to_post_wait (pid, status);
2072
2073 fprintf_unfiltered (gdb_stderr, "target_post_wait (%d, %d)\n",
2074 pid, status);
2075}
2076
2077static void
2078debug_to_fetch_registers (regno)
2079 int regno;
2080{
2081 debug_target.to_fetch_registers (regno);
2082
2083 fprintf_unfiltered (gdb_stderr, "target_fetch_registers (%s)",
2084 regno != -1 ? REGISTER_NAME (regno) : "-1");
2085 if (regno != -1)
2086 fprintf_unfiltered (gdb_stderr, " = 0x%x %d",
2087 (unsigned long) read_register (regno),
2088 read_register (regno));
2089 fprintf_unfiltered (gdb_stderr, "\n");
2090}
2091
2092static void
2093debug_to_store_registers (regno)
2094 int regno;
2095{
2096 debug_target.to_store_registers (regno);
2097
2098 if (regno >= 0 && regno < NUM_REGS)
2099 fprintf_unfiltered (gdb_stderr, "target_store_registers (%s) = 0x%x %d\n",
2100 REGISTER_NAME (regno),
2101 (unsigned long) read_register (regno),
2102 (unsigned long) read_register (regno));
2103 else
2104 fprintf_unfiltered (gdb_stderr, "target_store_registers (%d)\n", regno);
2105}
2106
2107static void
2108debug_to_prepare_to_store ()
2109{
2110 debug_target.to_prepare_to_store ();
2111
2112 fprintf_unfiltered (gdb_stderr, "target_prepare_to_store ()\n");
2113}
2114
2115static int
2116debug_to_xfer_memory (memaddr, myaddr, len, write, target)
2117 CORE_ADDR memaddr;
2118 char *myaddr;
2119 int len;
2120 int write;
2121 struct target_ops *target;
2122{
2123 int retval;
2124
2125 retval = debug_target.to_xfer_memory (memaddr, myaddr, len, write, target);
2126
2127 fprintf_unfiltered (gdb_stderr,
2128 "target_xfer_memory (0x%x, xxx, %d, %s, xxx) = %d",
c5aa993b 2129 (unsigned int) memaddr, /* possable truncate long long */
c906108c
SS
2130 len, write ? "write" : "read", retval);
2131
c5aa993b 2132
c906108c
SS
2133
2134 if (retval > 0)
2135 {
2136 int i;
2137
2138 fputs_unfiltered (", bytes =", gdb_stderr);
2139 for (i = 0; i < retval; i++)
2140 {
2141 if ((((long) &(myaddr[i])) & 0xf) == 0)
2142 fprintf_unfiltered (gdb_stderr, "\n");
2143 fprintf_unfiltered (gdb_stderr, " %02x", myaddr[i] & 0xff);
2144 }
2145 }
2146
2147 fputc_unfiltered ('\n', gdb_stderr);
2148
2149 return retval;
2150}
2151
2152static void
2153debug_to_files_info (target)
2154 struct target_ops *target;
2155{
2156 debug_target.to_files_info (target);
2157
2158 fprintf_unfiltered (gdb_stderr, "target_files_info (xxx)\n");
2159}
2160
2161static int
2162debug_to_insert_breakpoint (addr, save)
2163 CORE_ADDR addr;
2164 char *save;
2165{
2166 int retval;
2167
2168 retval = debug_target.to_insert_breakpoint (addr, save);
2169
2170 fprintf_unfiltered (gdb_stderr,
2171 "target_insert_breakpoint (0x%x, xxx) = %d\n",
2172 (unsigned long) addr, retval);
2173 return retval;
2174}
2175
2176static int
2177debug_to_remove_breakpoint (addr, save)
2178 CORE_ADDR addr;
2179 char *save;
2180{
2181 int retval;
2182
2183 retval = debug_target.to_remove_breakpoint (addr, save);
2184
2185 fprintf_unfiltered (gdb_stderr,
2186 "target_remove_breakpoint (0x%x, xxx) = %d\n",
c5aa993b 2187 (unsigned long) addr, retval);
c906108c
SS
2188 return retval;
2189}
2190
2191static void
2192debug_to_terminal_init ()
2193{
2194 debug_target.to_terminal_init ();
2195
2196 fprintf_unfiltered (gdb_stderr, "target_terminal_init ()\n");
2197}
2198
2199static void
2200debug_to_terminal_inferior ()
2201{
2202 debug_target.to_terminal_inferior ();
2203
2204 fprintf_unfiltered (gdb_stderr, "target_terminal_inferior ()\n");
2205}
2206
2207static void
2208debug_to_terminal_ours_for_output ()
2209{
2210 debug_target.to_terminal_ours_for_output ();
2211
2212 fprintf_unfiltered (gdb_stderr, "target_terminal_ours_for_output ()\n");
2213}
2214
2215static void
2216debug_to_terminal_ours ()
2217{
2218 debug_target.to_terminal_ours ();
2219
2220 fprintf_unfiltered (gdb_stderr, "target_terminal_ours ()\n");
2221}
2222
2223static void
2224debug_to_terminal_info (arg, from_tty)
2225 char *arg;
2226 int from_tty;
2227{
2228 debug_target.to_terminal_info (arg, from_tty);
2229
2230 fprintf_unfiltered (gdb_stderr, "target_terminal_info (%s, %d)\n", arg,
2231 from_tty);
2232}
2233
2234static void
2235debug_to_kill ()
2236{
2237 debug_target.to_kill ();
2238
2239 fprintf_unfiltered (gdb_stderr, "target_kill ()\n");
2240}
2241
2242static void
2243debug_to_load (args, from_tty)
2244 char *args;
2245 int from_tty;
2246{
2247 debug_target.to_load (args, from_tty);
2248
2249 fprintf_unfiltered (gdb_stderr, "target_load (%s, %d)\n", args, from_tty);
2250}
2251
2252static int
2253debug_to_lookup_symbol (name, addrp)
2254 char *name;
2255 CORE_ADDR *addrp;
2256{
2257 int retval;
2258
2259 retval = debug_target.to_lookup_symbol (name, addrp);
2260
2261 fprintf_unfiltered (gdb_stderr, "target_lookup_symbol (%s, xxx)\n", name);
2262
2263 return retval;
2264}
2265
2266static void
2267debug_to_create_inferior (exec_file, args, env)
2268 char *exec_file;
2269 char *args;
2270 char **env;
2271{
2272 debug_target.to_create_inferior (exec_file, args, env);
2273
2274 fprintf_unfiltered (gdb_stderr, "target_create_inferior (%s, %s, xxx)\n",
2275 exec_file, args);
2276}
2277
2278static void
2279debug_to_post_startup_inferior (pid)
c5aa993b 2280 int pid;
c906108c
SS
2281{
2282 debug_target.to_post_startup_inferior (pid);
2283
2284 fprintf_unfiltered (gdb_stderr, "target_post_startup_inferior (%d)\n",
2285 pid);
2286}
2287
2288static void
2289debug_to_acknowledge_created_inferior (pid)
c5aa993b 2290 int pid;
c906108c
SS
2291{
2292 debug_target.to_acknowledge_created_inferior (pid);
2293
2294 fprintf_unfiltered (gdb_stderr, "target_acknowledge_created_inferior (%d)\n",
2295 pid);
2296}
2297
2298static void
2299debug_to_clone_and_follow_inferior (child_pid, followed_child)
c5aa993b
JM
2300 int child_pid;
2301 int *followed_child;
c906108c
SS
2302{
2303 debug_target.to_clone_and_follow_inferior (child_pid, followed_child);
2304
2305 fprintf_unfiltered (gdb_stderr,
2306 "target_clone_and_follow_inferior (%d, %d)\n",
2307 child_pid, *followed_child);
2308}
2309
2310static void
2311debug_to_post_follow_inferior_by_clone ()
2312{
2313 debug_target.to_post_follow_inferior_by_clone ();
2314
2315 fprintf_unfiltered (gdb_stderr, "target_post_follow_inferior_by_clone ()\n");
2316}
2317
2318static int
2319debug_to_insert_fork_catchpoint (pid)
c5aa993b 2320 int pid;
c906108c 2321{
c5aa993b 2322 int retval;
c906108c
SS
2323
2324 retval = debug_target.to_insert_fork_catchpoint (pid);
2325
2326 fprintf_unfiltered (gdb_stderr, "target_insert_fork_catchpoint (%d) = %d\n",
c5aa993b 2327 pid, retval);
c906108c
SS
2328
2329 return retval;
2330}
2331
2332static int
2333debug_to_remove_fork_catchpoint (pid)
c5aa993b 2334 int pid;
c906108c 2335{
c5aa993b 2336 int retval;
c906108c
SS
2337
2338 retval = debug_target.to_remove_fork_catchpoint (pid);
2339
2340 fprintf_unfiltered (gdb_stderr, "target_remove_fork_catchpoint (%d) = %d\n",
c5aa993b 2341 pid, retval);
c906108c
SS
2342
2343 return retval;
2344}
2345
2346static int
2347debug_to_insert_vfork_catchpoint (pid)
c5aa993b 2348 int pid;
c906108c 2349{
c5aa993b 2350 int retval;
c906108c
SS
2351
2352 retval = debug_target.to_insert_vfork_catchpoint (pid);
2353
2354 fprintf_unfiltered (gdb_stderr, "target_insert_vfork_catchpoint (%d)= %d\n",
c5aa993b 2355 pid, retval);
c906108c
SS
2356
2357 return retval;
2358}
2359
2360static int
2361debug_to_remove_vfork_catchpoint (pid)
c5aa993b 2362 int pid;
c906108c 2363{
c5aa993b 2364 int retval;
c906108c
SS
2365
2366 retval = debug_target.to_remove_vfork_catchpoint (pid);
2367
2368 fprintf_unfiltered (gdb_stderr, "target_remove_vfork_catchpoint (%d) = %d\n",
c5aa993b 2369 pid, retval);
c906108c
SS
2370
2371 return retval;
2372}
2373
2374static int
2375debug_to_has_forked (pid, child_pid)
c5aa993b
JM
2376 int pid;
2377 int *child_pid;
c906108c 2378{
c5aa993b 2379 int has_forked;
c906108c
SS
2380
2381 has_forked = debug_target.to_has_forked (pid, child_pid);
2382
2383 fprintf_unfiltered (gdb_stderr, "target_has_forked (%d, %d) = %d\n",
c5aa993b 2384 pid, *child_pid, has_forked);
c906108c
SS
2385
2386 return has_forked;
2387}
2388
2389static int
2390debug_to_has_vforked (pid, child_pid)
c5aa993b
JM
2391 int pid;
2392 int *child_pid;
c906108c 2393{
c5aa993b 2394 int has_vforked;
c906108c
SS
2395
2396 has_vforked = debug_target.to_has_vforked (pid, child_pid);
2397
2398 fprintf_unfiltered (gdb_stderr, "target_has_vforked (%d, %d) = %d\n",
c5aa993b 2399 pid, *child_pid, has_vforked);
c906108c
SS
2400
2401 return has_vforked;
2402}
2403
2404static int
2405debug_to_can_follow_vfork_prior_to_exec ()
2406{
c5aa993b 2407 int can_immediately_follow_vfork;
c906108c
SS
2408
2409 can_immediately_follow_vfork = debug_target.to_can_follow_vfork_prior_to_exec ();
2410
2411 fprintf_unfiltered (gdb_stderr, "target_can_follow_vfork_prior_to_exec () = %d\n",
c5aa993b 2412 can_immediately_follow_vfork);
c906108c
SS
2413
2414 return can_immediately_follow_vfork;
2415}
2416
2417static void
2418debug_to_post_follow_vfork (parent_pid, followed_parent, child_pid, followed_child)
c5aa993b
JM
2419 int parent_pid;
2420 int followed_parent;
2421 int child_pid;
2422 int followed_child;
c906108c
SS
2423{
2424 debug_target.to_post_follow_vfork (parent_pid, followed_parent, child_pid, followed_child);
2425
2426 fprintf_unfiltered (gdb_stderr,
2427 "target_post_follow_vfork (%d, %d, %d, %d)\n",
c5aa993b 2428 parent_pid, followed_parent, child_pid, followed_child);
c906108c
SS
2429}
2430
2431static int
2432debug_to_insert_exec_catchpoint (pid)
c5aa993b 2433 int pid;
c906108c 2434{
c5aa993b 2435 int retval;
c906108c
SS
2436
2437 retval = debug_target.to_insert_exec_catchpoint (pid);
2438
2439 fprintf_unfiltered (gdb_stderr, "target_insert_exec_catchpoint (%d) = %d\n",
c5aa993b 2440 pid, retval);
c906108c
SS
2441
2442 return retval;
2443}
2444
2445static int
2446debug_to_remove_exec_catchpoint (pid)
c5aa993b 2447 int pid;
c906108c 2448{
c5aa993b 2449 int retval;
c906108c
SS
2450
2451 retval = debug_target.to_remove_exec_catchpoint (pid);
2452
2453 fprintf_unfiltered (gdb_stderr, "target_remove_exec_catchpoint (%d) = %d\n",
c5aa993b 2454 pid, retval);
c906108c
SS
2455
2456 return retval;
2457}
2458
2459static int
2460debug_to_has_execd (pid, execd_pathname)
c5aa993b
JM
2461 int pid;
2462 char **execd_pathname;
c906108c 2463{
c5aa993b 2464 int has_execd;
c906108c
SS
2465
2466 has_execd = debug_target.to_has_execd (pid, execd_pathname);
2467
2468 fprintf_unfiltered (gdb_stderr, "target_has_execd (%d, %s) = %d\n",
c5aa993b 2469 pid, (*execd_pathname ? *execd_pathname : "<NULL>"),
7a292a7a 2470 has_execd);
c906108c
SS
2471
2472 return has_execd;
2473}
2474
2475static int
2476debug_to_reported_exec_events_per_exec_call ()
2477{
c5aa993b 2478 int reported_exec_events;
c906108c
SS
2479
2480 reported_exec_events = debug_target.to_reported_exec_events_per_exec_call ();
2481
2482 fprintf_unfiltered (gdb_stderr,
2483 "target_reported_exec_events_per_exec_call () = %d\n",
c5aa993b 2484 reported_exec_events);
c906108c
SS
2485
2486 return reported_exec_events;
2487}
2488
2489static int
2490debug_to_has_syscall_event (pid, kind, syscall_id)
c5aa993b
JM
2491 int pid;
2492 enum target_waitkind *kind;
2493 int *syscall_id;
c906108c 2494{
c5aa993b
JM
2495 int has_syscall_event;
2496 char *kind_spelling = "??";
c906108c
SS
2497
2498 has_syscall_event = debug_target.to_has_syscall_event (pid, kind, syscall_id);
2499 if (has_syscall_event)
2500 {
2501 switch (*kind)
c5aa993b
JM
2502 {
2503 case TARGET_WAITKIND_SYSCALL_ENTRY:
2504 kind_spelling = "SYSCALL_ENTRY";
2505 break;
2506 case TARGET_WAITKIND_SYSCALL_RETURN:
2507 kind_spelling = "SYSCALL_RETURN";
2508 break;
2509 default:
2510 break;
2511 }
c906108c
SS
2512 }
2513
2514 fprintf_unfiltered (gdb_stderr,
2515 "target_has_syscall_event (%d, %s, %d) = %d\n",
c5aa993b 2516 pid, kind_spelling, *syscall_id, has_syscall_event);
c906108c
SS
2517
2518 return has_syscall_event;
2519}
2520
2521static int
2522debug_to_has_exited (pid, wait_status, exit_status)
c5aa993b
JM
2523 int pid;
2524 int wait_status;
2525 int *exit_status;
c906108c 2526{
c5aa993b 2527 int has_exited;
c906108c
SS
2528
2529 has_exited = debug_target.to_has_exited (pid, wait_status, exit_status);
2530
2531 fprintf_unfiltered (gdb_stderr, "target_has_exited (%d, %d, %d) = %d\n",
c5aa993b 2532 pid, wait_status, *exit_status, has_exited);
c906108c
SS
2533
2534 return has_exited;
2535}
2536
2537static void
2538debug_to_mourn_inferior ()
2539{
2540 debug_target.to_mourn_inferior ();
2541
2542 fprintf_unfiltered (gdb_stderr, "target_mourn_inferior ()\n");
2543}
2544
2545static int
2546debug_to_can_run ()
2547{
2548 int retval;
2549
2550 retval = debug_target.to_can_run ();
2551
2552 fprintf_unfiltered (gdb_stderr, "target_can_run () = %d\n", retval);
2553
2554 return retval;
2555}
2556
2557static void
2558debug_to_notice_signals (pid)
2559 int pid;
2560{
2561 debug_target.to_notice_signals (pid);
2562
2563 fprintf_unfiltered (gdb_stderr, "target_notice_signals (%d)\n", pid);
2564}
2565
2566static int
2567debug_to_thread_alive (pid)
2568 int pid;
2569{
2570 int retval;
2571
2572 retval = debug_target.to_thread_alive (pid);
2573
2574 fprintf_unfiltered (gdb_stderr, "target_thread_alive (%d) = %d\n",
2575 pid, retval);
2576
2577 return retval;
2578}
2579
2580static void
2581debug_to_stop ()
2582{
2583 debug_target.to_stop ();
2584
2585 fprintf_unfiltered (gdb_stderr, "target_stop ()\n");
2586}
2587
2588static int
2589debug_to_query (type, req, resp, siz)
c5aa993b
JM
2590 int type;
2591 char *req;
2592 char *resp;
2593 int *siz;
c906108c
SS
2594{
2595 int retval;
2596
2597 retval = debug_target.to_query (type, req, resp, siz);
2598
2599 fprintf_unfiltered (gdb_stderr, "target_query (%c, %s, %s, %d) = %d\n", type, req, resp, *siz, retval);
2600
2601 return retval;
2602}
2603
2604static struct symtab_and_line *
2605debug_to_enable_exception_callback (kind, enable)
c5aa993b
JM
2606 enum exception_event_kind kind;
2607 int enable;
c906108c 2608{
7a292a7a
SS
2609 struct symtab_and_line *result;
2610 result = debug_target.to_enable_exception_callback (kind, enable);
c906108c
SS
2611 fprintf_unfiltered (gdb_stderr,
2612 "target get_exception_callback_sal (%d, %d)\n",
2613 kind, enable);
7a292a7a 2614 return result;
c906108c
SS
2615}
2616
2617static struct exception_event_record *
2618debug_to_get_current_exception_event ()
2619{
7a292a7a 2620 struct exception_event_record *result;
c5aa993b 2621 result = debug_target.to_get_current_exception_event ();
c906108c 2622 fprintf_unfiltered (gdb_stderr, "target get_current_exception_event ()\n");
7a292a7a 2623 return result;
c906108c
SS
2624}
2625
2626static char *
2627debug_to_pid_to_exec_file (pid)
c5aa993b 2628 int pid;
c906108c 2629{
c5aa993b 2630 char *exec_file;
c906108c
SS
2631
2632 exec_file = debug_target.to_pid_to_exec_file (pid);
2633
2634 fprintf_unfiltered (gdb_stderr, "target_pid_to_exec_file (%d) = %s\n",
c5aa993b 2635 pid, exec_file);
c906108c
SS
2636
2637 return exec_file;
2638}
2639
2640static char *
2641debug_to_core_file_to_sym_file (core)
c5aa993b 2642 char *core;
c906108c 2643{
c5aa993b 2644 char *sym_file;
c906108c
SS
2645
2646 sym_file = debug_target.to_core_file_to_sym_file (core);
2647
2648 fprintf_unfiltered (gdb_stderr, "target_core_file_to_sym_file (%s) = %s\n",
c5aa993b 2649 core, sym_file);
c906108c
SS
2650
2651 return sym_file;
2652}
2653
2654static void
2655setup_target_debug ()
2656{
2657 memcpy (&debug_target, &current_target, sizeof debug_target);
2658
2659 current_target.to_open = debug_to_open;
2660 current_target.to_close = debug_to_close;
2661 current_target.to_attach = debug_to_attach;
2662 current_target.to_post_attach = debug_to_post_attach;
2663 current_target.to_require_attach = debug_to_require_attach;
2664 current_target.to_detach = debug_to_detach;
2665 current_target.to_require_detach = debug_to_require_detach;
2666 current_target.to_resume = debug_to_resume;
2667 current_target.to_wait = debug_to_wait;
2668 current_target.to_post_wait = debug_to_post_wait;
2669 current_target.to_fetch_registers = debug_to_fetch_registers;
2670 current_target.to_store_registers = debug_to_store_registers;
2671 current_target.to_prepare_to_store = debug_to_prepare_to_store;
2672 current_target.to_xfer_memory = debug_to_xfer_memory;
2673 current_target.to_files_info = debug_to_files_info;
2674 current_target.to_insert_breakpoint = debug_to_insert_breakpoint;
2675 current_target.to_remove_breakpoint = debug_to_remove_breakpoint;
2676 current_target.to_terminal_init = debug_to_terminal_init;
2677 current_target.to_terminal_inferior = debug_to_terminal_inferior;
2678 current_target.to_terminal_ours_for_output = debug_to_terminal_ours_for_output;
2679 current_target.to_terminal_ours = debug_to_terminal_ours;
2680 current_target.to_terminal_info = debug_to_terminal_info;
2681 current_target.to_kill = debug_to_kill;
2682 current_target.to_load = debug_to_load;
2683 current_target.to_lookup_symbol = debug_to_lookup_symbol;
2684 current_target.to_create_inferior = debug_to_create_inferior;
2685 current_target.to_post_startup_inferior = debug_to_post_startup_inferior;
2686 current_target.to_acknowledge_created_inferior = debug_to_acknowledge_created_inferior;
2687 current_target.to_clone_and_follow_inferior = debug_to_clone_and_follow_inferior;
2688 current_target.to_post_follow_inferior_by_clone = debug_to_post_follow_inferior_by_clone;
2689 current_target.to_insert_fork_catchpoint = debug_to_insert_fork_catchpoint;
2690 current_target.to_remove_fork_catchpoint = debug_to_remove_fork_catchpoint;
2691 current_target.to_insert_vfork_catchpoint = debug_to_insert_vfork_catchpoint;
2692 current_target.to_remove_vfork_catchpoint = debug_to_remove_vfork_catchpoint;
2693 current_target.to_has_forked = debug_to_has_forked;
2694 current_target.to_has_vforked = debug_to_has_vforked;
2695 current_target.to_can_follow_vfork_prior_to_exec = debug_to_can_follow_vfork_prior_to_exec;
2696 current_target.to_post_follow_vfork = debug_to_post_follow_vfork;
2697 current_target.to_insert_exec_catchpoint = debug_to_insert_exec_catchpoint;
2698 current_target.to_remove_exec_catchpoint = debug_to_remove_exec_catchpoint;
2699 current_target.to_has_execd = debug_to_has_execd;
2700 current_target.to_reported_exec_events_per_exec_call = debug_to_reported_exec_events_per_exec_call;
2701 current_target.to_has_syscall_event = debug_to_has_syscall_event;
2702 current_target.to_has_exited = debug_to_has_exited;
2703 current_target.to_mourn_inferior = debug_to_mourn_inferior;
2704 current_target.to_can_run = debug_to_can_run;
2705 current_target.to_notice_signals = debug_to_notice_signals;
2706 current_target.to_thread_alive = debug_to_thread_alive;
2707 current_target.to_stop = debug_to_stop;
2708 current_target.to_query = debug_to_query;
2709 current_target.to_enable_exception_callback = debug_to_enable_exception_callback;
2710 current_target.to_get_current_exception_event = debug_to_get_current_exception_event;
2711 current_target.to_pid_to_exec_file = debug_to_pid_to_exec_file;
2712 current_target.to_core_file_to_sym_file = debug_to_core_file_to_sym_file;
2713
2714}
c906108c 2715\f
c5aa993b
JM
2716
2717static char targ_desc[] =
2718"Names of targets and files being debugged.\n\
c906108c
SS
2719Shows the entire stack of targets currently in use (including the exec-file,\n\
2720core-file, and process, if any), as well as the symbol file name.";
2721
2722void
2723initialize_targets ()
2724{
2725 init_dummy_target ();
2726 push_target (&dummy_target);
2727
2728 add_info ("target", target_info, targ_desc);
2729 add_info ("files", target_info, targ_desc);
2730
c906108c 2731 add_show_from_set (
c5aa993b
JM
2732 add_set_cmd ("targetdebug", class_maintenance, var_zinteger,
2733 (char *) &targetdebug,
2734 "Set target debugging.\n\
c906108c 2735When non-zero, target debugging is enabled.", &setlist),
c5aa993b 2736 &showlist);
c906108c
SS
2737
2738 if (!STREQ (signals[TARGET_SIGNAL_LAST].string, "TARGET_SIGNAL_MAGIC"))
2739 abort ();
2740}