Fix ARC TLS support.
[deliverable/binutils-gdb.git] / gdb / thread.c
CommitLineData
c906108c 1/* Multi-process/thread control for GDB, the GNU debugger.
8926118c 2
618f726f 3 Copyright (C) 1986-2016 Free Software Foundation, Inc.
8926118c 4
b6ba6518 5 Contributed by Lynx Real-Time Systems, Inc. Los Gatos, CA.
c906108c 6
c5aa993b 7 This file is part of GDB.
c906108c 8
c5aa993b
JM
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
a9762ec7 11 the Free Software Foundation; either version 3 of the License, or
c5aa993b 12 (at your option) any later version.
c906108c 13
c5aa993b
JM
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
c906108c 18
c5aa993b 19 You should have received a copy of the GNU General Public License
a9762ec7 20 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
21
22#include "defs.h"
23#include "symtab.h"
24#include "frame.h"
25#include "inferior.h"
26#include "environ.h"
27#include "value.h"
28#include "target.h"
29#include "gdbthread.h"
30#include "command.h"
31#include "gdbcmd.h"
4e052eda 32#include "regcache.h"
5b7f31a4 33#include "gdb.h"
02d27625 34#include "btrace.h"
c906108c
SS
35
36#include <ctype.h>
37#include <sys/types.h>
38#include <signal.h>
8b93c638 39#include "ui-out.h"
683f2885 40#include "observer.h"
d4fc5b1e 41#include "annotate.h"
94cc34af 42#include "cli/cli-decode.h"
60f98dde 43#include "gdb_regex.h"
aea5b279 44#include "cli/cli-utils.h"
243a9253 45#include "thread-fsm.h"
5d5658a1 46#include "tid-parse.h"
94cc34af 47
c378eb4e 48/* Definition of struct thread_info exported to gdbthread.h. */
c906108c 49
c378eb4e 50/* Prototypes for exported functions. */
c906108c 51
a14ed312 52void _initialize_thread (void);
c906108c 53
c378eb4e 54/* Prototypes for local functions. */
c906108c 55
e5ef252a 56struct thread_info *thread_list = NULL;
c906108c
SS
57static int highest_thread_num;
58
b57bacec
PA
59/* True if any thread is, or may be executing. We need to track this
60 separately because until we fully sync the thread list, we won't
61 know whether the target is fully stopped, even if we see stop
62 events for all known threads, because any of those threads may have
63 spawned new threads we haven't heard of yet. */
64static int threads_executing;
65
a14ed312
KB
66static void thread_apply_all_command (char *, int);
67static int thread_alive (struct thread_info *);
68static void info_threads_command (char *, int);
69static void thread_apply_command (char *, int);
39f77062 70static void restore_current_thread (ptid_t);
c906108c 71
054e8d9e
AA
72/* Data to cleanup thread array. */
73
74struct thread_array_cleanup
75{
76 /* Array of thread pointers used to set
77 reference count. */
78 struct thread_info **tp_array;
79
80 /* Thread count in the array. */
81 int count;
82};
83
84
a5321aa4 85struct thread_info*
4e1c45ea 86inferior_thread (void)
8601f500 87{
e09875d4 88 struct thread_info *tp = find_thread_ptid (inferior_ptid);
4e1c45ea
PA
89 gdb_assert (tp);
90 return tp;
91}
8601f500 92
5b834a0a
PA
93/* Delete the breakpoint pointed at by BP_P, if there's one. */
94
95static void
96delete_thread_breakpoint (struct breakpoint **bp_p)
4e1c45ea 97{
5b834a0a 98 if (*bp_p != NULL)
8601f500 99 {
5b834a0a
PA
100 delete_breakpoint (*bp_p);
101 *bp_p = NULL;
8601f500
MS
102 }
103}
104
5b834a0a
PA
105void
106delete_step_resume_breakpoint (struct thread_info *tp)
107{
108 if (tp != NULL)
109 delete_thread_breakpoint (&tp->control.step_resume_breakpoint);
110}
111
186c406b
TT
112void
113delete_exception_resume_breakpoint (struct thread_info *tp)
114{
5b834a0a
PA
115 if (tp != NULL)
116 delete_thread_breakpoint (&tp->control.exception_resume_breakpoint);
117}
118
34b7e8a6
PA
119/* See gdbthread.h. */
120
121void
122delete_single_step_breakpoints (struct thread_info *tp)
123{
124 if (tp != NULL)
125 delete_thread_breakpoint (&tp->control.single_step_breakpoints);
126}
127
5b834a0a
PA
128/* Delete the breakpoint pointed at by BP_P at the next stop, if
129 there's one. */
130
131static void
132delete_at_next_stop (struct breakpoint **bp)
133{
134 if (*bp != NULL)
186c406b 135 {
5b834a0a
PA
136 (*bp)->disposition = disp_del_at_next_stop;
137 *bp = NULL;
186c406b
TT
138 }
139}
140
34b7e8a6
PA
141/* See gdbthread.h. */
142
143int
144thread_has_single_step_breakpoints_set (struct thread_info *tp)
145{
146 return tp->control.single_step_breakpoints != NULL;
147}
148
149/* See gdbthread.h. */
150
151int
152thread_has_single_step_breakpoint_here (struct thread_info *tp,
153 struct address_space *aspace,
154 CORE_ADDR addr)
155{
156 struct breakpoint *ss_bps = tp->control.single_step_breakpoints;
157
158 return (ss_bps != NULL
159 && breakpoint_has_location_inserted_here (ss_bps, aspace, addr));
160}
161
243a9253
PA
162/* See gdbthread.h. */
163
164void
165thread_cancel_execution_command (struct thread_info *thr)
166{
167 if (thr->thread_fsm != NULL)
168 {
169 thread_fsm_clean_up (thr->thread_fsm);
170 thread_fsm_delete (thr->thread_fsm);
171 thr->thread_fsm = NULL;
172 }
173}
174
7c952b6d 175static void
4f8d22e3 176clear_thread_inferior_resources (struct thread_info *tp)
7c952b6d
ND
177{
178 /* NOTE: this will take care of any left-over step_resume breakpoints,
4d8453a5
DJ
179 but not any user-specified thread-specific breakpoints. We can not
180 delete the breakpoint straight-off, because the inferior might not
181 be stopped at the moment. */
5b834a0a
PA
182 delete_at_next_stop (&tp->control.step_resume_breakpoint);
183 delete_at_next_stop (&tp->control.exception_resume_breakpoint);
34b7e8a6 184 delete_at_next_stop (&tp->control.single_step_breakpoints);
186c406b 185
5d5658a1 186 delete_longjmp_breakpoint_at_next_stop (tp->global_num);
f59f708a 187
16c381f0 188 bpstat_clear (&tp->control.stop_bpstat);
95e54da7 189
02d27625
MM
190 btrace_teardown (tp);
191
243a9253 192 thread_cancel_execution_command (tp);
4f8d22e3
PA
193}
194
195static void
196free_thread (struct thread_info *tp)
197{
fe978cb0 198 if (tp->priv)
dc146f7c
VP
199 {
200 if (tp->private_dtor)
fe978cb0 201 tp->private_dtor (tp->priv);
dc146f7c 202 else
fe978cb0 203 xfree (tp->priv);
dc146f7c 204 }
7c952b6d 205
4694da01 206 xfree (tp->name);
b8c9b27d 207 xfree (tp);
7c952b6d
ND
208}
209
c906108c 210void
fba45db2 211init_thread_list (void)
c906108c
SS
212{
213 struct thread_info *tp, *tpnext;
214
7c952b6d 215 highest_thread_num = 0;
8ea051c5 216
c906108c
SS
217 if (!thread_list)
218 return;
219
220 for (tp = thread_list; tp; tp = tpnext)
221 {
222 tpnext = tp->next;
7c952b6d 223 free_thread (tp);
c906108c
SS
224 }
225
226 thread_list = NULL;
b57bacec 227 threads_executing = 0;
c906108c
SS
228}
229
5d5658a1
PA
230/* Allocate a new thread of inferior INF with target id PTID and add
231 it to the thread list. */
e58b0e63
PA
232
233static struct thread_info *
5d5658a1 234new_thread (struct inferior *inf, ptid_t ptid)
e58b0e63 235{
5d5658a1
PA
236 struct thread_info *tp;
237
238 gdb_assert (inf != NULL);
239
240 tp = XCNEW (struct thread_info);
e58b0e63
PA
241
242 tp->ptid = ptid;
5d5658a1
PA
243 tp->global_num = ++highest_thread_num;
244 tp->inf = inf;
245 tp->per_inf_num = ++inf->highest_thread_num;
b05b1202
PA
246
247 if (thread_list == NULL)
248 thread_list = tp;
249 else
250 {
251 struct thread_info *last;
252
253 for (last = thread_list; last->next != NULL; last = last->next)
254 ;
255 last->next = tp;
256 }
e58b0e63
PA
257
258 /* Nothing to follow yet. */
259 tp->pending_follow.kind = TARGET_WAITKIND_SPURIOUS;
30596231 260 tp->state = THREAD_STOPPED;
372316f1 261 tp->suspend.waitstatus.kind = TARGET_WAITKIND_IGNORE;
e58b0e63
PA
262
263 return tp;
264}
265
0d06e24b 266struct thread_info *
93815fbf 267add_thread_silent (ptid_t ptid)
c906108c
SS
268{
269 struct thread_info *tp;
5d5658a1
PA
270 struct inferior *inf = find_inferior_ptid (ptid);
271 gdb_assert (inf != NULL);
c906108c 272
e09875d4 273 tp = find_thread_ptid (ptid);
4f8d22e3
PA
274 if (tp)
275 /* Found an old thread with the same id. It has to be dead,
276 otherwise we wouldn't be adding a new thread with the same id.
277 The OS is reusing this id --- delete it, and recreate a new
278 one. */
279 {
280 /* In addition to deleting the thread, if this is the current
dcf4fbde
PA
281 thread, then we need to take care that delete_thread doesn't
282 really delete the thread if it is inferior_ptid. Create a
283 new template thread in the list with an invalid ptid, switch
284 to it, delete the original thread, reset the new thread's
285 ptid, and switch to it. */
4f8d22e3
PA
286
287 if (ptid_equal (inferior_ptid, ptid))
288 {
5d5658a1 289 tp = new_thread (inf, null_ptid);
dcf4fbde
PA
290
291 /* Make switch_to_thread not read from the thread. */
30596231 292 tp->state = THREAD_EXITED;
c820c52a 293 switch_to_thread (null_ptid);
4f8d22e3
PA
294
295 /* Now we can delete it. */
296 delete_thread (ptid);
297
dcf4fbde 298 /* Now reset its ptid, and reswitch inferior_ptid to it. */
4f8d22e3 299 tp->ptid = ptid;
30596231 300 tp->state = THREAD_STOPPED;
4f8d22e3
PA
301 switch_to_thread (ptid);
302
303 observer_notify_new_thread (tp);
304
305 /* All done. */
306 return tp;
307 }
308 else
309 /* Just go ahead and delete it. */
310 delete_thread (ptid);
311 }
312
5d5658a1 313 tp = new_thread (inf, ptid);
cfc01461
VP
314 observer_notify_new_thread (tp);
315
0d06e24b 316 return tp;
c906108c
SS
317}
318
93815fbf 319struct thread_info *
fe978cb0 320add_thread_with_info (ptid_t ptid, struct private_thread_info *priv)
93815fbf
VP
321{
322 struct thread_info *result = add_thread_silent (ptid);
323
fe978cb0 324 result->priv = priv;
17faa917 325
93815fbf 326 if (print_thread_events)
fd532e2e 327 printf_unfiltered (_("[New %s]\n"), target_pid_to_str (ptid));
d4fc5b1e
NR
328
329 annotate_new_thread ();
93815fbf
VP
330 return result;
331}
332
17faa917
DJ
333struct thread_info *
334add_thread (ptid_t ptid)
335{
336 return add_thread_with_info (ptid, NULL);
337}
338
c2829269
PA
339/* Add TP to the end of the step-over chain LIST_P. */
340
341static void
342step_over_chain_enqueue (struct thread_info **list_p, struct thread_info *tp)
343{
344 gdb_assert (tp->step_over_next == NULL);
345 gdb_assert (tp->step_over_prev == NULL);
346
347 if (*list_p == NULL)
348 {
349 *list_p = tp;
350 tp->step_over_prev = tp->step_over_next = tp;
351 }
352 else
353 {
354 struct thread_info *head = *list_p;
355 struct thread_info *tail = head->step_over_prev;
356
357 tp->step_over_prev = tail;
358 tp->step_over_next = head;
359 head->step_over_prev = tp;
360 tail->step_over_next = tp;
361 }
362}
363
364/* Remove TP from step-over chain LIST_P. */
365
366static void
367step_over_chain_remove (struct thread_info **list_p, struct thread_info *tp)
368{
369 gdb_assert (tp->step_over_next != NULL);
370 gdb_assert (tp->step_over_prev != NULL);
371
372 if (*list_p == tp)
373 {
374 if (tp == tp->step_over_next)
375 *list_p = NULL;
376 else
377 *list_p = tp->step_over_next;
378 }
379
380 tp->step_over_prev->step_over_next = tp->step_over_next;
381 tp->step_over_next->step_over_prev = tp->step_over_prev;
382 tp->step_over_prev = tp->step_over_next = NULL;
383}
384
385/* See gdbthread.h. */
386
387struct thread_info *
388thread_step_over_chain_next (struct thread_info *tp)
389{
390 struct thread_info *next = tp->step_over_next;
391
392 return (next == step_over_queue_head ? NULL : next);
393}
394
395/* See gdbthread.h. */
396
397int
398thread_is_in_step_over_chain (struct thread_info *tp)
399{
400 return (tp->step_over_next != NULL);
401}
402
403/* See gdbthread.h. */
404
405void
406thread_step_over_chain_enqueue (struct thread_info *tp)
407{
408 step_over_chain_enqueue (&step_over_queue_head, tp);
409}
410
411/* See gdbthread.h. */
412
413void
414thread_step_over_chain_remove (struct thread_info *tp)
415{
416 step_over_chain_remove (&step_over_queue_head, tp);
417}
418
5e0b29c1
PA
419/* Delete thread PTID. If SILENT, don't notify the observer of this
420 exit. */
421static void
422delete_thread_1 (ptid_t ptid, int silent)
c906108c
SS
423{
424 struct thread_info *tp, *tpprev;
425
426 tpprev = NULL;
427
428 for (tp = thread_list; tp; tpprev = tp, tp = tp->next)
39f77062 429 if (ptid_equal (tp->ptid, ptid))
c906108c
SS
430 break;
431
432 if (!tp)
433 return;
434
c2829269
PA
435 /* Dead threads don't need to step-over. Remove from queue. */
436 if (tp->step_over_next != NULL)
437 thread_step_over_chain_remove (tp);
438
4f8d22e3
PA
439 /* If this is the current thread, or there's code out there that
440 relies on it existing (refcount > 0) we can't delete yet. Mark
441 it as exited, and notify it. */
442 if (tp->refcount > 0
443 || ptid_equal (tp->ptid, inferior_ptid))
444 {
30596231 445 if (tp->state != THREAD_EXITED)
4f8d22e3 446 {
a07daef3 447 observer_notify_thread_exit (tp, silent);
4f8d22e3
PA
448
449 /* Tag it as exited. */
30596231 450 tp->state = THREAD_EXITED;
4f8d22e3
PA
451
452 /* Clear breakpoints, etc. associated with this thread. */
453 clear_thread_inferior_resources (tp);
454 }
455
456 /* Will be really deleted some other time. */
457 return;
458 }
459
fa4cd53f 460 /* Notify thread exit, but only if we haven't already. */
30596231 461 if (tp->state != THREAD_EXITED)
fa4cd53f
PA
462 observer_notify_thread_exit (tp, silent);
463
464 /* Tag it as exited. */
30596231 465 tp->state = THREAD_EXITED;
fa4cd53f
PA
466 clear_thread_inferior_resources (tp);
467
c906108c
SS
468 if (tpprev)
469 tpprev->next = tp->next;
470 else
471 thread_list = tp->next;
472
7c952b6d 473 free_thread (tp);
c906108c
SS
474}
475
4f8d22e3
PA
476/* Delete thread PTID and notify of thread exit. If this is
477 inferior_ptid, don't actually delete it, but tag it as exited and
478 do the notification. If PTID is the user selected thread, clear
479 it. */
5e0b29c1
PA
480void
481delete_thread (ptid_t ptid)
482{
483 delete_thread_1 (ptid, 0 /* not silent */);
484}
485
486void
487delete_thread_silent (ptid_t ptid)
488{
489 delete_thread_1 (ptid, 1 /* silent */);
490}
491
1e92afda 492struct thread_info *
5d5658a1 493find_thread_global_id (int global_id)
c906108c
SS
494{
495 struct thread_info *tp;
496
497 for (tp = thread_list; tp; tp = tp->next)
5d5658a1
PA
498 if (tp->global_num == global_id)
499 return tp;
500
501 return NULL;
502}
503
504static struct thread_info *
505find_thread_id (struct inferior *inf, int thr_num)
506{
507 struct thread_info *tp;
508
509 for (tp = thread_list; tp; tp = tp->next)
510 if (tp->inf == inf && tp->per_inf_num == thr_num)
c906108c
SS
511 return tp;
512
513 return NULL;
514}
515
39f77062 516/* Find a thread_info by matching PTID. */
0d06e24b 517struct thread_info *
e09875d4 518find_thread_ptid (ptid_t ptid)
0d06e24b
JM
519{
520 struct thread_info *tp;
521
522 for (tp = thread_list; tp; tp = tp->next)
39f77062 523 if (ptid_equal (tp->ptid, ptid))
0d06e24b
JM
524 return tp;
525
526 return NULL;
527}
528
529/*
530 * Thread iterator function.
531 *
532 * Calls a callback function once for each thread, so long as
533 * the callback function returns false. If the callback function
534 * returns true, the iteration will end and the current thread
535 * will be returned. This can be useful for implementing a
536 * search for a thread with arbitrary attributes, or for applying
537 * some operation to every thread.
538 *
539 * FIXME: some of the existing functionality, such as
540 * "Thread apply all", might be rewritten using this functionality.
541 */
542
543struct thread_info *
fd118b61
KB
544iterate_over_threads (int (*callback) (struct thread_info *, void *),
545 void *data)
0d06e24b 546{
4f8d22e3 547 struct thread_info *tp, *next;
0d06e24b 548
4f8d22e3
PA
549 for (tp = thread_list; tp; tp = next)
550 {
551 next = tp->next;
552 if ((*callback) (tp, data))
553 return tp;
554 }
0d06e24b
JM
555
556 return NULL;
557}
558
20874c92
VP
559int
560thread_count (void)
561{
562 int result = 0;
563 struct thread_info *tp;
564
565 for (tp = thread_list; tp; tp = tp->next)
566 ++result;
567
568 return result;
569}
570
c906108c 571int
5d5658a1 572valid_global_thread_id (int global_id)
c906108c
SS
573{
574 struct thread_info *tp;
575
576 for (tp = thread_list; tp; tp = tp->next)
5d5658a1 577 if (tp->global_num == global_id)
c906108c
SS
578 return 1;
579
580 return 0;
581}
582
583int
5d5658a1 584ptid_to_global_thread_id (ptid_t ptid)
c906108c
SS
585{
586 struct thread_info *tp;
587
588 for (tp = thread_list; tp; tp = tp->next)
39f77062 589 if (ptid_equal (tp->ptid, ptid))
5d5658a1 590 return tp->global_num;
c906108c
SS
591
592 return 0;
593}
594
39f77062 595ptid_t
5d5658a1 596global_thread_id_to_ptid (int global_id)
c906108c 597{
5d5658a1 598 struct thread_info *thread = find_thread_global_id (global_id);
5d502164 599
c906108c 600 if (thread)
39f77062 601 return thread->ptid;
c906108c 602 else
5d5658a1 603 return minus_one_ptid;
c906108c
SS
604}
605
606int
39f77062 607in_thread_list (ptid_t ptid)
c906108c
SS
608{
609 struct thread_info *tp;
610
611 for (tp = thread_list; tp; tp = tp->next)
39f77062 612 if (ptid_equal (tp->ptid, ptid))
c906108c
SS
613 return 1;
614
c378eb4e 615 return 0; /* Never heard of 'im. */
c906108c 616}
8926118c 617
bad34192
PA
618/* Finds the first thread of the inferior given by PID. If PID is -1,
619 return the first thread in the list. */
620
621struct thread_info *
622first_thread_of_process (int pid)
623{
624 struct thread_info *tp, *ret = NULL;
625
626 for (tp = thread_list; tp; tp = tp->next)
627 if (pid == -1 || ptid_get_pid (tp->ptid) == pid)
5d5658a1 628 if (ret == NULL || tp->global_num < ret->global_num)
bad34192
PA
629 ret = tp;
630
631 return ret;
632}
633
2277426b
PA
634struct thread_info *
635any_thread_of_process (int pid)
636{
637 struct thread_info *tp;
638
32990ada
PA
639 gdb_assert (pid != 0);
640
641 /* Prefer the current thread. */
642 if (ptid_get_pid (inferior_ptid) == pid)
643 return inferior_thread ();
644
645 ALL_NON_EXITED_THREADS (tp)
2277426b
PA
646 if (ptid_get_pid (tp->ptid) == pid)
647 return tp;
648
649 return NULL;
650}
651
6c95b8df
PA
652struct thread_info *
653any_live_thread_of_process (int pid)
654{
32990ada 655 struct thread_info *curr_tp = NULL;
6c95b8df 656 struct thread_info *tp;
9941e0c5 657 struct thread_info *tp_executing = NULL;
6c95b8df 658
32990ada
PA
659 gdb_assert (pid != 0);
660
661 /* Prefer the current thread if it's not executing. */
662 if (ptid_get_pid (inferior_ptid) == pid)
663 {
664 /* If the current thread is dead, forget it. If it's not
665 executing, use it. Otherwise, still choose it (below), but
666 only if no other non-executing thread is found. */
667 curr_tp = inferior_thread ();
668 if (curr_tp->state == THREAD_EXITED)
669 curr_tp = NULL;
670 else if (!curr_tp->executing)
671 return curr_tp;
672 }
673
674 ALL_NON_EXITED_THREADS (tp)
675 if (ptid_get_pid (tp->ptid) == pid)
6c95b8df 676 {
32990ada 677 if (!tp->executing)
6c95b8df 678 return tp;
32990ada
PA
679
680 tp_executing = tp;
6c95b8df
PA
681 }
682
32990ada
PA
683 /* If both the current thread and all live threads are executing,
684 prefer the current thread. */
685 if (curr_tp != NULL)
686 return curr_tp;
687
688 /* Otherwise, just return an executing thread, if any. */
9941e0c5 689 return tp_executing;
6c95b8df
PA
690}
691
8b93c638 692/* Print a list of thread ids currently known, and the total number of
c378eb4e 693 threads. To be used from within catch_errors. */
6949171e
JJ
694static int
695do_captured_list_thread_ids (struct ui_out *uiout, void *arg)
8b93c638
JM
696{
697 struct thread_info *tp;
698 int num = 0;
3b31d625 699 struct cleanup *cleanup_chain;
592375cd 700 int current_thread = -1;
8b93c638 701
dc146f7c 702 update_thread_list ();
7990a578 703
3b31d625 704 cleanup_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "thread-ids");
8b93c638
JM
705
706 for (tp = thread_list; tp; tp = tp->next)
707 {
30596231 708 if (tp->state == THREAD_EXITED)
4f8d22e3 709 continue;
592375cd
VP
710
711 if (ptid_equal (tp->ptid, inferior_ptid))
5d5658a1 712 current_thread = tp->global_num;
592375cd 713
8b93c638 714 num++;
5d5658a1 715 ui_out_field_int (uiout, "thread-id", tp->global_num);
8b93c638
JM
716 }
717
3b31d625 718 do_cleanups (cleanup_chain);
592375cd
VP
719
720 if (current_thread != -1)
721 ui_out_field_int (uiout, "current-thread-id", current_thread);
8b93c638
JM
722 ui_out_field_int (uiout, "number-of-threads", num);
723 return GDB_RC_OK;
724}
725
726/* Official gdblib interface function to get a list of thread ids and
c378eb4e 727 the total number. */
8b93c638 728enum gdb_rc
ce43223b 729gdb_list_thread_ids (struct ui_out *uiout, char **error_message)
8b93c638 730{
b0b13bb4
DJ
731 if (catch_exceptions_with_msg (uiout, do_captured_list_thread_ids, NULL,
732 error_message, RETURN_MASK_ALL) < 0)
733 return GDB_RC_FAIL;
734 return GDB_RC_OK;
8b93c638 735}
c906108c 736
c378eb4e 737/* Return true if TP is an active thread. */
c906108c 738static int
fba45db2 739thread_alive (struct thread_info *tp)
c906108c 740{
30596231 741 if (tp->state == THREAD_EXITED)
c906108c 742 return 0;
39f77062 743 if (!target_thread_alive (tp->ptid))
4f8d22e3 744 return 0;
c906108c
SS
745 return 1;
746}
747
e8032dde
PA
748/* See gdbthreads.h. */
749
750void
fba45db2 751prune_threads (void)
c906108c 752{
8a06aea7 753 struct thread_info *tp, *tmp;
c906108c 754
8a06aea7 755 ALL_THREADS_SAFE (tp, tmp)
c906108c 756 {
c906108c 757 if (!thread_alive (tp))
39f77062 758 delete_thread (tp->ptid);
c906108c
SS
759 }
760}
761
8a06aea7
PA
762/* See gdbthreads.h. */
763
764void
765delete_exited_threads (void)
766{
767 struct thread_info *tp, *tmp;
768
769 ALL_THREADS_SAFE (tp, tmp)
770 {
771 if (tp->state == THREAD_EXITED)
772 delete_thread (tp->ptid);
773 }
774}
775
6c659fc2
SC
776/* Disable storing stack temporaries for the thread whose id is
777 stored in DATA. */
778
779static void
780disable_thread_stack_temporaries (void *data)
781{
19ba03f4 782 ptid_t *pd = (ptid_t *) data;
6c659fc2
SC
783 struct thread_info *tp = find_thread_ptid (*pd);
784
785 if (tp != NULL)
786 {
787 tp->stack_temporaries_enabled = 0;
788 VEC_free (value_ptr, tp->stack_temporaries);
789 }
790
791 xfree (pd);
792}
793
794/* Enable storing stack temporaries for thread with id PTID and return a
795 cleanup which can disable and clear the stack temporaries. */
796
797struct cleanup *
798enable_thread_stack_temporaries (ptid_t ptid)
799{
800 struct thread_info *tp = find_thread_ptid (ptid);
801 ptid_t *data;
802 struct cleanup *c;
803
804 gdb_assert (tp != NULL);
805
806 tp->stack_temporaries_enabled = 1;
807 tp->stack_temporaries = NULL;
8d749320 808 data = XNEW (ptid_t);
6c659fc2
SC
809 *data = ptid;
810 c = make_cleanup (disable_thread_stack_temporaries, data);
811
812 return c;
813}
814
815/* Return non-zero value if stack temporaies are enabled for the thread
816 with id PTID. */
817
818int
819thread_stack_temporaries_enabled_p (ptid_t ptid)
820{
821 struct thread_info *tp = find_thread_ptid (ptid);
822
823 if (tp == NULL)
824 return 0;
825 else
826 return tp->stack_temporaries_enabled;
827}
828
829/* Push V on to the stack temporaries of the thread with id PTID. */
830
831void
832push_thread_stack_temporary (ptid_t ptid, struct value *v)
833{
834 struct thread_info *tp = find_thread_ptid (ptid);
835
836 gdb_assert (tp != NULL && tp->stack_temporaries_enabled);
837 VEC_safe_push (value_ptr, tp->stack_temporaries, v);
838}
839
840/* Return 1 if VAL is among the stack temporaries of the thread
841 with id PTID. Return 0 otherwise. */
842
843int
844value_in_thread_stack_temporaries (struct value *val, ptid_t ptid)
845{
846 struct thread_info *tp = find_thread_ptid (ptid);
847
848 gdb_assert (tp != NULL && tp->stack_temporaries_enabled);
849 if (!VEC_empty (value_ptr, tp->stack_temporaries))
850 {
851 struct value *v;
852 int i;
853
854 for (i = 0; VEC_iterate (value_ptr, tp->stack_temporaries, i, v); i++)
855 if (v == val)
856 return 1;
857 }
858
859 return 0;
860}
861
862/* Return the last of the stack temporaries for thread with id PTID.
863 Return NULL if there are no stack temporaries for the thread. */
864
865struct value *
866get_last_thread_stack_temporary (ptid_t ptid)
867{
868 struct value *lastval = NULL;
869 struct thread_info *tp = find_thread_ptid (ptid);
870
871 gdb_assert (tp != NULL);
872 if (!VEC_empty (value_ptr, tp->stack_temporaries))
873 lastval = VEC_last (value_ptr, tp->stack_temporaries);
874
875 return lastval;
876}
877
5231c1fd
PA
878void
879thread_change_ptid (ptid_t old_ptid, ptid_t new_ptid)
880{
82f73884
PA
881 struct inferior *inf;
882 struct thread_info *tp;
883
884 /* It can happen that what we knew as the target inferior id
885 changes. E.g, target remote may only discover the remote process
886 pid after adding the inferior to GDB's list. */
c9657e70 887 inf = find_inferior_ptid (old_ptid);
82f73884
PA
888 inf->pid = ptid_get_pid (new_ptid);
889
e09875d4 890 tp = find_thread_ptid (old_ptid);
5231c1fd
PA
891 tp->ptid = new_ptid;
892
893 observer_notify_thread_ptid_changed (old_ptid, new_ptid);
894}
895
372316f1
PA
896/* See gdbthread.h. */
897
898void
899set_resumed (ptid_t ptid, int resumed)
900{
901 struct thread_info *tp;
902 int all = ptid_equal (ptid, minus_one_ptid);
903
904 if (all || ptid_is_pid (ptid))
905 {
906 for (tp = thread_list; tp; tp = tp->next)
907 if (all || ptid_get_pid (tp->ptid) == ptid_get_pid (ptid))
908 tp->resumed = resumed;
909 }
910 else
911 {
912 tp = find_thread_ptid (ptid);
913 gdb_assert (tp != NULL);
914 tp->resumed = resumed;
915 }
916}
917
4d9d9d04
PA
918/* Helper for set_running, that marks one thread either running or
919 stopped. */
920
921static int
922set_running_thread (struct thread_info *tp, int running)
923{
924 int started = 0;
925
926 if (running && tp->state == THREAD_STOPPED)
927 started = 1;
928 tp->state = running ? THREAD_RUNNING : THREAD_STOPPED;
929
930 if (!running)
931 {
932 /* If the thread is now marked stopped, remove it from
933 the step-over queue, so that we don't try to resume
934 it until the user wants it to. */
935 if (tp->step_over_next != NULL)
936 thread_step_over_chain_remove (tp);
937 }
938
939 return started;
940}
941
e1ac3328
VP
942void
943set_running (ptid_t ptid, int running)
944{
945 struct thread_info *tp;
d90e17a7 946 int all = ptid_equal (ptid, minus_one_ptid);
4d9d9d04 947 int any_started = 0;
e1ac3328 948
e1ac3328
VP
949 /* We try not to notify the observer if no thread has actually changed
950 the running state -- merely to reduce the number of messages to
951 frontend. Frontend is supposed to handle multiple *running just fine. */
d90e17a7 952 if (all || ptid_is_pid (ptid))
e1ac3328 953 {
e1ac3328 954 for (tp = thread_list; tp; tp = tp->next)
d90e17a7
PA
955 if (all || ptid_get_pid (tp->ptid) == ptid_get_pid (ptid))
956 {
30596231 957 if (tp->state == THREAD_EXITED)
d90e17a7 958 continue;
4d9d9d04
PA
959
960 if (set_running_thread (tp, running))
d90e17a7 961 any_started = 1;
d90e17a7 962 }
e1ac3328
VP
963 }
964 else
965 {
e09875d4 966 tp = find_thread_ptid (ptid);
4d9d9d04 967 gdb_assert (tp != NULL);
30596231 968 gdb_assert (tp->state != THREAD_EXITED);
4d9d9d04
PA
969 if (set_running_thread (tp, running))
970 any_started = 1;
4f8d22e3 971 }
4d9d9d04
PA
972 if (any_started)
973 observer_notify_target_resumed (ptid);
e1ac3328
VP
974}
975
4f8d22e3
PA
976static int
977is_thread_state (ptid_t ptid, enum thread_state state)
e1ac3328
VP
978{
979 struct thread_info *tp;
980
e09875d4 981 tp = find_thread_ptid (ptid);
e1ac3328 982 gdb_assert (tp);
30596231 983 return tp->state == state;
4f8d22e3
PA
984}
985
986int
987is_stopped (ptid_t ptid)
988{
4f8d22e3
PA
989 return is_thread_state (ptid, THREAD_STOPPED);
990}
991
992int
993is_exited (ptid_t ptid)
994{
4f8d22e3
PA
995 return is_thread_state (ptid, THREAD_EXITED);
996}
997
998int
999is_running (ptid_t ptid)
1000{
4f8d22e3 1001 return is_thread_state (ptid, THREAD_RUNNING);
e1ac3328
VP
1002}
1003
8ea051c5
PA
1004int
1005is_executing (ptid_t ptid)
1006{
1007 struct thread_info *tp;
1008
e09875d4 1009 tp = find_thread_ptid (ptid);
8ea051c5 1010 gdb_assert (tp);
30596231 1011 return tp->executing;
8ea051c5
PA
1012}
1013
1014void
1015set_executing (ptid_t ptid, int executing)
1016{
1017 struct thread_info *tp;
d90e17a7 1018 int all = ptid_equal (ptid, minus_one_ptid);
8ea051c5 1019
d90e17a7 1020 if (all || ptid_is_pid (ptid))
8ea051c5
PA
1021 {
1022 for (tp = thread_list; tp; tp = tp->next)
d90e17a7 1023 if (all || ptid_get_pid (tp->ptid) == ptid_get_pid (ptid))
30596231 1024 tp->executing = executing;
8ea051c5
PA
1025 }
1026 else
1027 {
e09875d4 1028 tp = find_thread_ptid (ptid);
8ea051c5 1029 gdb_assert (tp);
30596231 1030 tp->executing = executing;
8ea051c5 1031 }
b57bacec
PA
1032
1033 /* It only takes one running thread to spawn more threads.*/
1034 if (executing)
1035 threads_executing = 1;
1036 /* Only clear the flag if the caller is telling us everything is
1037 stopped. */
1038 else if (ptid_equal (minus_one_ptid, ptid))
1039 threads_executing = 0;
1040}
1041
1042/* See gdbthread.h. */
1043
1044int
1045threads_are_executing (void)
1046{
1047 return threads_executing;
8ea051c5
PA
1048}
1049
252fbfc8
PA
1050void
1051set_stop_requested (ptid_t ptid, int stop)
1052{
1053 struct thread_info *tp;
1054 int all = ptid_equal (ptid, minus_one_ptid);
1055
1056 if (all || ptid_is_pid (ptid))
1057 {
1058 for (tp = thread_list; tp; tp = tp->next)
1059 if (all || ptid_get_pid (tp->ptid) == ptid_get_pid (ptid))
1060 tp->stop_requested = stop;
1061 }
1062 else
1063 {
e09875d4 1064 tp = find_thread_ptid (ptid);
252fbfc8
PA
1065 gdb_assert (tp);
1066 tp->stop_requested = stop;
1067 }
1068
1069 /* Call the stop requested observer so other components of GDB can
1070 react to this request. */
1071 if (stop)
1072 observer_notify_thread_stop_requested (ptid);
1073}
1074
29f49a6a
PA
1075void
1076finish_thread_state (ptid_t ptid)
1077{
1078 struct thread_info *tp;
1079 int all;
1080 int any_started = 0;
1081
1082 all = ptid_equal (ptid, minus_one_ptid);
1083
1084 if (all || ptid_is_pid (ptid))
1085 {
1086 for (tp = thread_list; tp; tp = tp->next)
1087 {
30596231 1088 if (tp->state == THREAD_EXITED)
29f49a6a
PA
1089 continue;
1090 if (all || ptid_get_pid (ptid) == ptid_get_pid (tp->ptid))
1091 {
4d9d9d04 1092 if (set_running_thread (tp, tp->executing))
29f49a6a 1093 any_started = 1;
29f49a6a
PA
1094 }
1095 }
1096 }
1097 else
1098 {
e09875d4 1099 tp = find_thread_ptid (ptid);
29f49a6a 1100 gdb_assert (tp);
30596231 1101 if (tp->state != THREAD_EXITED)
29f49a6a 1102 {
4d9d9d04 1103 if (set_running_thread (tp, tp->executing))
29f49a6a 1104 any_started = 1;
29f49a6a
PA
1105 }
1106 }
1107
1108 if (any_started)
1109 observer_notify_target_resumed (ptid);
1110}
1111
1112void
1113finish_thread_state_cleanup (void *arg)
1114{
19ba03f4 1115 ptid_t *ptid_p = (ptid_t *) arg;
29f49a6a
PA
1116
1117 gdb_assert (arg);
1118
1119 finish_thread_state (*ptid_p);
1120}
1121
a911d87a
PA
1122/* See gdbthread.h. */
1123
1124void
1125validate_registers_access (void)
1126{
1127 /* No selected thread, no registers. */
1128 if (ptid_equal (inferior_ptid, null_ptid))
1129 error (_("No thread selected."));
1130
1131 /* Don't try to read from a dead thread. */
1132 if (is_exited (inferior_ptid))
1133 error (_("The current thread has terminated"));
1134
1135 /* ... or from a spinning thread. FIXME: This isn't actually fully
1136 correct. It'll allow an user-requested access (e.g., "print $pc"
1137 at the prompt) when a thread is not executing for some internal
1138 reason, but is marked running from the user's perspective. E.g.,
1139 the thread is waiting for its turn in the step-over queue. */
1140 if (is_executing (inferior_ptid))
1141 error (_("Selected thread is running."));
1142}
1143
ce4c476a
PA
1144int
1145pc_in_thread_step_range (CORE_ADDR pc, struct thread_info *thread)
1146{
1147 return (pc >= thread->control.step_range_start
1148 && pc < thread->control.step_range_end);
1149}
1150
5d5658a1
PA
1151/* Helper for print_thread_info. Returns true if THR should be
1152 printed. If REQUESTED_THREADS, a list of GDB ids/ranges, is not
1153 NULL, only print THR if its ID is included in the list. GLOBAL_IDS
1154 is true if REQUESTED_THREADS is list of global IDs, false if a list
1155 of per-inferior thread ids. If PID is not -1, only print THR if it
1156 is a thread from the process PID. Otherwise, threads from all
1157 attached PIDs are printed. If both REQUESTED_THREADS is not NULL
1158 and PID is not -1, then the thread is printed if it belongs to the
1159 specified process. Otherwise, an error is raised. */
1160
1161static int
1162should_print_thread (const char *requested_threads, int default_inf_num,
1163 int global_ids, int pid, struct thread_info *thr)
1164{
1165 if (requested_threads != NULL && *requested_threads != '\0')
1166 {
1167 int in_list;
1168
1169 if (global_ids)
1170 in_list = number_is_in_list (requested_threads, thr->global_num);
1171 else
1172 in_list = tid_is_in_list (requested_threads, default_inf_num,
1173 thr->inf->num, thr->per_inf_num);
1174 if (!in_list)
1175 return 0;
1176 }
1177
1178 if (pid != -1 && ptid_get_pid (thr->ptid) != pid)
1179 {
1180 if (requested_threads != NULL && *requested_threads != '\0')
1181 error (_("Requested thread not found in requested process"));
1182 return 0;
1183 }
1184
1185 if (thr->state == THREAD_EXITED)
1186 return 0;
1187
1188 return 1;
1189}
1190
1191/* Like print_thread_info, but in addition, GLOBAL_IDS indicates
1192 whether REQUESTED_THREADS is a list of global or per-inferior
1193 thread ids. */
1194
1195static void
1196print_thread_info_1 (struct ui_out *uiout, char *requested_threads,
1197 int global_ids, int pid,
1198 int show_global_ids)
c906108c
SS
1199{
1200 struct thread_info *tp;
39f77062 1201 ptid_t current_ptid;
99b3d574 1202 struct cleanup *old_chain;
73ede765 1203 const char *extra_info, *name, *target_id;
8e8901c5 1204 int current_thread = -1;
5d5658a1
PA
1205 struct inferior *inf;
1206 int default_inf_num = current_inferior ()->num;
c906108c 1207
dc146f7c 1208 update_thread_list ();
39f77062 1209 current_ptid = inferior_ptid;
4f8d22e3
PA
1210
1211 /* We'll be switching threads temporarily. */
1212 old_chain = make_cleanup_restore_current_thread ();
1213
a7658b96
TT
1214 /* For backward compatibility, we make a list for MI. A table is
1215 preferable for the CLI, though, because it shows table
1216 headers. */
1217 if (ui_out_is_mi_like_p (uiout))
1218 make_cleanup_ui_out_list_begin_end (uiout, "threads");
1219 else
1220 {
1221 int n_threads = 0;
1222
1223 for (tp = thread_list; tp; tp = tp->next)
1224 {
5d5658a1
PA
1225 if (!should_print_thread (requested_threads, default_inf_num,
1226 global_ids, pid, tp))
a7658b96
TT
1227 continue;
1228
1229 ++n_threads;
1230 }
1231
1232 if (n_threads == 0)
1233 {
aea5b279 1234 if (requested_threads == NULL || *requested_threads == '\0')
a7658b96
TT
1235 ui_out_message (uiout, 0, _("No threads.\n"));
1236 else
aea5b279
MS
1237 ui_out_message (uiout, 0, _("No threads match '%s'.\n"),
1238 requested_threads);
a7658b96
TT
1239 do_cleanups (old_chain);
1240 return;
1241 }
1242
5d5658a1
PA
1243 if (show_global_ids || ui_out_is_mi_like_p (uiout))
1244 make_cleanup_ui_out_table_begin_end (uiout, 5, n_threads, "threads");
1245 else
1246 make_cleanup_ui_out_table_begin_end (uiout, 4, n_threads, "threads");
a7658b96
TT
1247
1248 ui_out_table_header (uiout, 1, ui_left, "current", "");
5d5658a1
PA
1249
1250 if (!ui_out_is_mi_like_p (uiout))
1251 ui_out_table_header (uiout, 4, ui_left, "id-in-tg", "Id");
1252 if (show_global_ids || ui_out_is_mi_like_p (uiout))
1253 ui_out_table_header (uiout, 4, ui_left, "id", "GId");
a7658b96 1254 ui_out_table_header (uiout, 17, ui_left, "target-id", "Target Id");
a7658b96
TT
1255 ui_out_table_header (uiout, 1, ui_left, "frame", "Frame");
1256 ui_out_table_body (uiout);
1257 }
1258
5d5658a1 1259 ALL_THREADS_BY_INFERIOR (inf, tp)
c906108c 1260 {
8e8901c5 1261 struct cleanup *chain2;
dc146f7c 1262 int core;
8e8901c5 1263
4f8d22e3 1264 if (ptid_equal (tp->ptid, current_ptid))
5d5658a1 1265 current_thread = tp->global_num;
4f8d22e3 1266
5d5658a1
PA
1267 if (!should_print_thread (requested_threads, default_inf_num,
1268 global_ids, pid, tp))
4f8d22e3
PA
1269 continue;
1270
8e8901c5
VP
1271 chain2 = make_cleanup_ui_out_tuple_begin_end (uiout, NULL);
1272
a7658b96
TT
1273 if (ui_out_is_mi_like_p (uiout))
1274 {
1275 /* Compatibility. */
1276 if (ptid_equal (tp->ptid, current_ptid))
1277 ui_out_text (uiout, "* ");
1278 else
1279 ui_out_text (uiout, " ");
1280 }
c906108c 1281 else
a7658b96
TT
1282 {
1283 if (ptid_equal (tp->ptid, current_ptid))
1284 ui_out_field_string (uiout, "current", "*");
1285 else
1286 ui_out_field_skip (uiout, "current");
1287 }
c906108c 1288
5d5658a1
PA
1289 if (!ui_out_is_mi_like_p (uiout))
1290 ui_out_field_string (uiout, "id-in-tg", print_thread_id (tp));
1291
1292 if (show_global_ids || ui_out_is_mi_like_p (uiout))
1293 ui_out_field_int (uiout, "id", tp->global_num);
0d06e24b 1294
4694da01
TT
1295 /* For the CLI, we stuff everything into the target-id field.
1296 This is a gross hack to make the output come out looking
1297 correct. The underlying problem here is that ui-out has no
1298 way to specify that a field's space allocation should be
1299 shared by several fields. For MI, we do the right thing
1300 instead. */
1301
1302 target_id = target_pid_to_str (tp->ptid);
ed406532 1303 extra_info = target_extra_thread_info (tp);
4694da01
TT
1304 name = tp->name ? tp->name : target_thread_name (tp);
1305
1306 if (ui_out_is_mi_like_p (uiout))
8e8901c5 1307 {
4694da01
TT
1308 ui_out_field_string (uiout, "target-id", target_id);
1309 if (extra_info)
1310 ui_out_field_string (uiout, "details", extra_info);
1311 if (name)
1312 ui_out_field_string (uiout, "name", name);
1313 }
1314 else
1315 {
1316 struct cleanup *str_cleanup;
1317 char *contents;
1318
1319 if (extra_info && name)
1320 contents = xstrprintf ("%s \"%s\" (%s)", target_id,
1321 name, extra_info);
1322 else if (extra_info)
1323 contents = xstrprintf ("%s (%s)", target_id, extra_info);
1324 else if (name)
1325 contents = xstrprintf ("%s \"%s\"", target_id, name);
1326 else
1327 contents = xstrdup (target_id);
1328 str_cleanup = make_cleanup (xfree, contents);
1329
1330 ui_out_field_string (uiout, "target-id", contents);
1331 do_cleanups (str_cleanup);
8e8901c5 1332 }
4f8d22e3 1333
30596231 1334 if (tp->state == THREAD_RUNNING)
94cc34af
PA
1335 ui_out_text (uiout, "(running)\n");
1336 else
1337 {
1338 /* The switch below puts us at the top of the stack (leaf
1339 frame). */
1340 switch_to_thread (tp->ptid);
1341 print_stack_frame (get_selected_frame (NULL),
1342 /* For MI output, print frame level. */
1343 ui_out_is_mi_like_p (uiout),
08d72866 1344 LOCATION, 0);
94cc34af 1345 }
8e8901c5 1346
90139f7d
VP
1347 if (ui_out_is_mi_like_p (uiout))
1348 {
1349 char *state = "stopped";
5d502164 1350
30596231 1351 if (tp->state == THREAD_RUNNING)
90139f7d
VP
1352 state = "running";
1353 ui_out_field_string (uiout, "state", state);
1354 }
1355
dc146f7c
VP
1356 core = target_core_of_thread (tp->ptid);
1357 if (ui_out_is_mi_like_p (uiout) && core != -1)
1358 ui_out_field_int (uiout, "core", core);
1359
8e8901c5 1360 do_cleanups (chain2);
c906108c
SS
1361 }
1362
99b3d574
DP
1363 /* Restores the current thread and the frame selected before
1364 the "info threads" command. */
1365 do_cleanups (old_chain);
c906108c 1366
aea5b279 1367 if (pid == -1 && requested_threads == NULL)
8e8901c5 1368 {
5d5658a1
PA
1369 if (ui_out_is_mi_like_p (uiout)
1370 && !ptid_equal (inferior_ptid, null_ptid))
1371 {
1372 int num = ptid_to_global_thread_id (inferior_ptid);
1373
1374 gdb_assert (num != 0);
1375 ui_out_field_int (uiout, "current-thread-id", num);
1376 }
94cc34af 1377
5d5658a1 1378 if (!ptid_equal (inferior_ptid, null_ptid) && is_exited (inferior_ptid))
4f8d22e3 1379 ui_out_message (uiout, 0, "\n\
5d5658a1
PA
1380The current thread <Thread ID %s> has terminated. See `help thread'.\n",
1381 print_thread_id (inferior_thread ()));
1382 else if (thread_list != NULL
1383 && ptid_equal (inferior_ptid, null_ptid))
d729566a
PA
1384 ui_out_message (uiout, 0, "\n\
1385No selected thread. See `help thread'.\n");
c906108c 1386 }
c906108c
SS
1387}
1388
5d5658a1 1389/* See gdbthread.h. */
8e8901c5 1390
5d5658a1
PA
1391void
1392print_thread_info (struct ui_out *uiout, char *requested_threads, int pid)
1393{
1394 print_thread_info_1 (uiout, requested_threads, 1, pid, 0);
1395}
1396
1397/* Implementation of the "info threads" command.
60f98dde
MS
1398
1399 Note: this has the drawback that it _really_ switches
1400 threads, which frees the frame cache. A no-side
1401 effects info-threads command would be nicer. */
8e8901c5
VP
1402
1403static void
1404info_threads_command (char *arg, int from_tty)
1405{
c84f6bbf
PA
1406 int show_global_ids = 0;
1407
1408 if (arg != NULL
1409 && check_for_argument (&arg, "-gid", sizeof ("-gid") - 1))
1410 {
1411 arg = skip_spaces (arg);
1412 show_global_ids = 1;
1413 }
1414
1415 print_thread_info_1 (current_uiout, arg, 0, -1, show_global_ids);
8e8901c5
VP
1416}
1417
6efcd9a8
PA
1418/* See gdbthread.h. */
1419
1420void
1421switch_to_thread_no_regs (struct thread_info *thread)
1422{
1423 struct inferior *inf;
1424
1425 inf = find_inferior_ptid (thread->ptid);
1426 gdb_assert (inf != NULL);
1427 set_current_program_space (inf->pspace);
1428 set_current_inferior (inf);
1429
1430 inferior_ptid = thread->ptid;
1431 stop_pc = ~(CORE_ADDR) 0;
1432}
1433
c378eb4e 1434/* Switch from one thread to another. */
c906108c 1435
6a6b96b9 1436void
39f77062 1437switch_to_thread (ptid_t ptid)
c906108c 1438{
6c95b8df
PA
1439 /* Switch the program space as well, if we can infer it from the now
1440 current thread. Otherwise, it's up to the caller to select the
1441 space it wants. */
1442 if (!ptid_equal (ptid, null_ptid))
1443 {
1444 struct inferior *inf;
1445
c9657e70 1446 inf = find_inferior_ptid (ptid);
6c95b8df
PA
1447 gdb_assert (inf != NULL);
1448 set_current_program_space (inf->pspace);
1449 set_current_inferior (inf);
1450 }
1451
39f77062 1452 if (ptid_equal (ptid, inferior_ptid))
c906108c
SS
1453 return;
1454
39f77062 1455 inferior_ptid = ptid;
35f196d9 1456 reinit_frame_cache ();
94cc34af 1457
4f8d22e3
PA
1458 /* We don't check for is_stopped, because we're called at times
1459 while in the TARGET_RUNNING state, e.g., while handling an
1460 internal event. */
d729566a
PA
1461 if (!ptid_equal (inferior_ptid, null_ptid)
1462 && !is_exited (ptid)
1463 && !is_executing (ptid))
fb14de7b 1464 stop_pc = regcache_read_pc (get_thread_regcache (ptid));
94cc34af
PA
1465 else
1466 stop_pc = ~(CORE_ADDR) 0;
c906108c
SS
1467}
1468
1469static void
39f77062 1470restore_current_thread (ptid_t ptid)
c906108c 1471{
dcf4fbde 1472 switch_to_thread (ptid);
99b3d574
DP
1473}
1474
1475static void
4f8d22e3 1476restore_selected_frame (struct frame_id a_frame_id, int frame_level)
99b3d574 1477{
4f8d22e3
PA
1478 struct frame_info *frame = NULL;
1479 int count;
1480
eb8c0621
TT
1481 /* This means there was no selected frame. */
1482 if (frame_level == -1)
1483 {
1484 select_frame (NULL);
1485 return;
1486 }
1487
4f8d22e3
PA
1488 gdb_assert (frame_level >= 0);
1489
1490 /* Restore by level first, check if the frame id is the same as
1491 expected. If that fails, try restoring by frame id. If that
1492 fails, nothing to do, just warn the user. */
1493
1494 count = frame_level;
1495 frame = find_relative_frame (get_current_frame (), &count);
1496 if (count == 0
1497 && frame != NULL
005ca36a
JB
1498 /* The frame ids must match - either both valid or both outer_frame_id.
1499 The latter case is not failsafe, but since it's highly unlikely
4f8d22e3
PA
1500 the search by level finds the wrong frame, it's 99.9(9)% of
1501 the time (for all practical purposes) safe. */
005ca36a 1502 && frame_id_eq (get_frame_id (frame), a_frame_id))
4f8d22e3
PA
1503 {
1504 /* Cool, all is fine. */
1505 select_frame (frame);
1506 return;
1507 }
99b3d574 1508
4f8d22e3
PA
1509 frame = frame_find_by_id (a_frame_id);
1510 if (frame != NULL)
1511 {
1512 /* Cool, refound it. */
1513 select_frame (frame);
1514 return;
1515 }
99b3d574 1516
0c501536
PA
1517 /* Nothing else to do, the frame layout really changed. Select the
1518 innermost stack frame. */
1519 select_frame (get_current_frame ());
1520
1521 /* Warn the user. */
79a45e25 1522 if (frame_level > 0 && !ui_out_is_mi_like_p (current_uiout))
99b3d574 1523 {
3e43a32a 1524 warning (_("Couldn't restore frame #%d in "
e0162910 1525 "current thread. Bottom (innermost) frame selected:"),
4f8d22e3
PA
1526 frame_level);
1527 /* For MI, we should probably have a notification about
1528 current frame change. But this error is not very
1529 likely, so don't bother for now. */
08d72866 1530 print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC, 1);
c906108c
SS
1531 }
1532}
1533
e1316e60
PA
1534/* Data used by the cleanup installed by
1535 'make_cleanup_restore_current_thread'. */
1536
6ecce94d
AC
1537struct current_thread_cleanup
1538{
e1316e60
PA
1539 /* Next in list of currently installed 'struct
1540 current_thread_cleanup' cleanups. See
1541 'current_thread_cleanup_chain' below. */
1542 struct current_thread_cleanup *next;
1543
39f77062 1544 ptid_t inferior_ptid;
99b3d574 1545 struct frame_id selected_frame_id;
4f8d22e3
PA
1546 int selected_frame_level;
1547 int was_stopped;
6c95b8df 1548 int inf_id;
9addecb9 1549 int was_removable;
6ecce94d
AC
1550};
1551
e1316e60
PA
1552/* A chain of currently installed 'struct current_thread_cleanup'
1553 cleanups. Restoring the previously selected thread looks up the
1554 old thread in the thread list by ptid. If the thread changes ptid,
1555 we need to update the cleanup's thread structure so the look up
1556 succeeds. */
1557static struct current_thread_cleanup *current_thread_cleanup_chain;
1558
1559/* A thread_ptid_changed observer. Update all currently installed
1560 current_thread_cleanup cleanups that want to switch back to
1561 OLD_PTID to switch back to NEW_PTID instead. */
1562
1563static void
1564restore_current_thread_ptid_changed (ptid_t old_ptid, ptid_t new_ptid)
1565{
1566 struct current_thread_cleanup *it;
1567
1568 for (it = current_thread_cleanup_chain; it != NULL; it = it->next)
1569 {
1570 if (ptid_equal (it->inferior_ptid, old_ptid))
1571 it->inferior_ptid = new_ptid;
1572 }
1573}
1574
6ecce94d
AC
1575static void
1576do_restore_current_thread_cleanup (void *arg)
1577{
4f8d22e3 1578 struct thread_info *tp;
19ba03f4 1579 struct current_thread_cleanup *old = (struct current_thread_cleanup *) arg;
d729566a 1580
e09875d4 1581 tp = find_thread_ptid (old->inferior_ptid);
d729566a
PA
1582
1583 /* If the previously selected thread belonged to a process that has
1584 in the mean time been deleted (due to normal exit, detach, etc.),
1585 then don't revert back to it, but instead simply drop back to no
1586 thread selected. */
1587 if (tp
c9657e70 1588 && find_inferior_ptid (tp->ptid) != NULL)
d729566a 1589 restore_current_thread (old->inferior_ptid);
88fc996f 1590 else
6c95b8df
PA
1591 {
1592 restore_current_thread (null_ptid);
1593 set_current_inferior (find_inferior_id (old->inf_id));
1594 }
94cc34af 1595
4f8d22e3
PA
1596 /* The running state of the originally selected thread may have
1597 changed, so we have to recheck it here. */
d729566a
PA
1598 if (!ptid_equal (inferior_ptid, null_ptid)
1599 && old->was_stopped
4f8d22e3
PA
1600 && is_stopped (inferior_ptid)
1601 && target_has_registers
1602 && target_has_stack
1603 && target_has_memory)
1604 restore_selected_frame (old->selected_frame_id,
1605 old->selected_frame_level);
1606}
1607
1608static void
1609restore_current_thread_cleanup_dtor (void *arg)
1610{
19ba03f4 1611 struct current_thread_cleanup *old = (struct current_thread_cleanup *) arg;
4f8d22e3 1612 struct thread_info *tp;
9addecb9 1613 struct inferior *inf;
5d502164 1614
e1316e60
PA
1615 current_thread_cleanup_chain = current_thread_cleanup_chain->next;
1616
e09875d4 1617 tp = find_thread_ptid (old->inferior_ptid);
4f8d22e3
PA
1618 if (tp)
1619 tp->refcount--;
9addecb9
TT
1620 inf = find_inferior_id (old->inf_id);
1621 if (inf != NULL)
1622 inf->removable = old->was_removable;
b8c9b27d 1623 xfree (old);
6ecce94d
AC
1624}
1625
054e8d9e
AA
1626/* Set the thread reference count. */
1627
1628static void
1629set_thread_refcount (void *data)
1630{
1631 int k;
19ba03f4
SM
1632 struct thread_array_cleanup *ta_cleanup
1633 = (struct thread_array_cleanup *) data;
054e8d9e
AA
1634
1635 for (k = 0; k != ta_cleanup->count; k++)
1636 ta_cleanup->tp_array[k]->refcount--;
1637}
1638
6208b47d 1639struct cleanup *
4f8d22e3 1640make_cleanup_restore_current_thread (void)
6ecce94d 1641{
4f8d22e3
PA
1642 struct thread_info *tp;
1643 struct frame_info *frame;
8d749320 1644 struct current_thread_cleanup *old = XNEW (struct current_thread_cleanup);
4f8d22e3 1645
39f77062 1646 old->inferior_ptid = inferior_ptid;
6c95b8df 1647 old->inf_id = current_inferior ()->num;
9addecb9 1648 old->was_removable = current_inferior ()->removable;
4f8d22e3 1649
e1316e60
PA
1650 old->next = current_thread_cleanup_chain;
1651 current_thread_cleanup_chain = old;
1652
d729566a
PA
1653 if (!ptid_equal (inferior_ptid, null_ptid))
1654 {
1655 old->was_stopped = is_stopped (inferior_ptid);
1656 if (old->was_stopped
1657 && target_has_registers
1658 && target_has_stack
1659 && target_has_memory)
eb8c0621
TT
1660 {
1661 /* When processing internal events, there might not be a
1662 selected frame. If we naively call get_selected_frame
1663 here, then we can end up reading debuginfo for the
1664 current frame, but we don't generally need the debuginfo
1665 at this point. */
1666 frame = get_selected_frame_if_set ();
1667 }
d729566a
PA
1668 else
1669 frame = NULL;
4f8d22e3 1670
d729566a
PA
1671 old->selected_frame_id = get_frame_id (frame);
1672 old->selected_frame_level = frame_relative_level (frame);
1673
e09875d4 1674 tp = find_thread_ptid (inferior_ptid);
d729566a
PA
1675 if (tp)
1676 tp->refcount++;
1677 }
4f8d22e3 1678
9addecb9
TT
1679 current_inferior ()->removable = 0;
1680
4f8d22e3
PA
1681 return make_cleanup_dtor (do_restore_current_thread_cleanup, old,
1682 restore_current_thread_cleanup_dtor);
6ecce94d
AC
1683}
1684
43792cf0
PA
1685/* See gdbthread.h. */
1686
f303dbd6
PA
1687int
1688show_thread_that_caused_stop (void)
1689{
1690 return highest_thread_num > 1;
1691}
1692
1693/* See gdbthread.h. */
1694
5d5658a1
PA
1695int
1696show_inferior_qualified_tids (void)
1697{
1698 return (inferior_list->next != NULL || inferior_list->num != 1);
1699}
1700
1701/* See gdbthread.h. */
1702
43792cf0
PA
1703const char *
1704print_thread_id (struct thread_info *thr)
1705{
1706 char *s = get_print_cell ();
1707
5d5658a1
PA
1708 if (show_inferior_qualified_tids ())
1709 xsnprintf (s, PRINT_CELL_SIZE, "%d.%d", thr->inf->num, thr->per_inf_num);
1710 else
1711 xsnprintf (s, PRINT_CELL_SIZE, "%d", thr->per_inf_num);
43792cf0
PA
1712 return s;
1713}
1714
253828f1
JK
1715/* If non-zero tp_array_compar should sort in ascending order, otherwise in
1716 descending order. */
1717
1718static int tp_array_compar_ascending;
1719
5d5658a1
PA
1720/* Sort an array for struct thread_info pointers by thread ID (first
1721 by inferior number, and then by per-inferior thread number). The
1722 order is determined by TP_ARRAY_COMPAR_ASCENDING. */
253828f1
JK
1723
1724static int
1725tp_array_compar (const void *ap_voidp, const void *bp_voidp)
1726{
5d5658a1
PA
1727 const struct thread_info *a = *(const struct thread_info * const *) ap_voidp;
1728 const struct thread_info *b = *(const struct thread_info * const *) bp_voidp;
1729
1730 if (a->inf->num != b->inf->num)
1731 {
1732 return ((a->inf->num > b->inf->num) - (a->inf->num < b->inf->num)
1733 * (tp_array_compar_ascending ? +1 : -1));
1734 }
253828f1 1735
5d5658a1
PA
1736 return (((a->per_inf_num > b->per_inf_num)
1737 - (a->per_inf_num < b->per_inf_num))
253828f1
JK
1738 * (tp_array_compar_ascending ? +1 : -1));
1739}
1740
c906108c
SS
1741/* Apply a GDB command to a list of threads. List syntax is a whitespace
1742 seperated list of numbers, or ranges, or the keyword `all'. Ranges consist
1743 of two numbers seperated by a hyphen. Examples:
1744
c5aa993b
JM
1745 thread apply 1 2 7 4 backtrace Apply backtrace cmd to threads 1,2,7,4
1746 thread apply 2-7 9 p foo(1) Apply p foo(1) cmd to threads 2->7 & 9
c378eb4e 1747 thread apply all p x/i $pc Apply x/i $pc cmd to all threads. */
c906108c
SS
1748
1749static void
fba45db2 1750thread_apply_all_command (char *cmd, int from_tty)
c906108c 1751{
4f8d22e3 1752 struct cleanup *old_chain;
e35ce267 1753 char *saved_cmd;
054e8d9e
AA
1754 int tc;
1755 struct thread_array_cleanup ta_cleanup;
c906108c 1756
253828f1
JK
1757 tp_array_compar_ascending = 0;
1758 if (cmd != NULL
1759 && check_for_argument (&cmd, "-ascending", strlen ("-ascending")))
1760 {
1761 cmd = skip_spaces (cmd);
1762 tp_array_compar_ascending = 1;
1763 }
1764
c906108c 1765 if (cmd == NULL || *cmd == '\000')
8a3fe4f8 1766 error (_("Please specify a command following the thread ID list"));
94cc34af 1767
dc146f7c 1768 update_thread_list ();
e9d196c5 1769
4f8d22e3
PA
1770 old_chain = make_cleanup_restore_current_thread ();
1771
e35ce267 1772 /* Save a copy of the command in case it is clobbered by
c378eb4e 1773 execute_command. */
5b616ba1 1774 saved_cmd = xstrdup (cmd);
94cc34af 1775 make_cleanup (xfree, saved_cmd);
94cc34af 1776
a25d8bf9
PA
1777 /* Note this includes exited threads. */
1778 tc = thread_count ();
1779 if (tc != 0)
054e8d9e
AA
1780 {
1781 struct thread_info **tp_array;
1782 struct thread_info *tp;
1783 int i = 0, k;
1784
1785 /* Save a copy of the thread_list in case we execute detach
1786 command. */
8d749320 1787 tp_array = XNEWVEC (struct thread_info *, tc);
054e8d9e 1788 make_cleanup (xfree, tp_array);
054e8d9e 1789
034f788c 1790 ALL_NON_EXITED_THREADS (tp)
054e8d9e
AA
1791 {
1792 tp_array[i] = tp;
1793 tp->refcount++;
1794 i++;
1795 }
a25d8bf9
PA
1796 /* Because we skipped exited threads, we may end up with fewer
1797 threads in the array than the total count of threads. */
1798 gdb_assert (i <= tc);
054e8d9e 1799
a25d8bf9
PA
1800 if (i != 0)
1801 qsort (tp_array, i, sizeof (*tp_array), tp_array_compar);
253828f1 1802
a25d8bf9
PA
1803 ta_cleanup.tp_array = tp_array;
1804 ta_cleanup.count = i;
054e8d9e
AA
1805 make_cleanup (set_thread_refcount, &ta_cleanup);
1806
1807 for (k = 0; k != i; k++)
1808 if (thread_alive (tp_array[k]))
1809 {
1810 switch_to_thread (tp_array[k]->ptid);
43792cf0
PA
1811 printf_filtered (_("\nThread %s (%s):\n"),
1812 print_thread_id (tp_array[k]),
054e8d9e
AA
1813 target_pid_to_str (inferior_ptid));
1814 execute_command (cmd, from_tty);
1815
1816 /* Restore exact command used previously. */
1817 strcpy (cmd, saved_cmd);
1818 }
1819 }
6ecce94d
AC
1820
1821 do_cleanups (old_chain);
c906108c
SS
1822}
1823
43792cf0
PA
1824/* Implementation of the "thread apply" command. */
1825
c906108c 1826static void
fba45db2 1827thread_apply_command (char *tidlist, int from_tty)
c906108c 1828{
3f5b7598 1829 char *cmd = NULL;
c906108c 1830 struct cleanup *old_chain;
e35ce267 1831 char *saved_cmd;
5d5658a1 1832 struct tid_range_parser parser;
c906108c
SS
1833
1834 if (tidlist == NULL || *tidlist == '\000')
8a3fe4f8 1835 error (_("Please specify a thread ID list"));
c906108c 1836
3f5b7598
PA
1837 tid_range_parser_init (&parser, tidlist, current_inferior ()->num);
1838 while (!tid_range_parser_finished (&parser))
1839 {
1840 int inf_num, thr_start, thr_end;
c906108c 1841
3f5b7598
PA
1842 if (!tid_range_parser_get_tid_range (&parser,
1843 &inf_num, &thr_start, &thr_end))
1844 {
1845 cmd = (char *) tid_range_parser_string (&parser);
1846 break;
1847 }
1848 }
1849
1850 if (cmd == NULL)
8a3fe4f8 1851 error (_("Please specify a command following the thread ID list"));
c906108c 1852
3f5b7598
PA
1853 if (tidlist == cmd || !isalpha (cmd[0]))
1854 invalid_thread_id_error (cmd);
1855
e35ce267 1856 /* Save a copy of the command in case it is clobbered by
c378eb4e 1857 execute_command. */
5b616ba1 1858 saved_cmd = xstrdup (cmd);
4f8d22e3 1859 old_chain = make_cleanup (xfree, saved_cmd);
197f0a60 1860
5d5658a1 1861 make_cleanup_restore_current_thread ();
c906108c 1862
5d5658a1
PA
1863 tid_range_parser_init (&parser, tidlist, current_inferior ()->num);
1864 while (!tid_range_parser_finished (&parser)
1865 && tid_range_parser_string (&parser) < cmd)
1866 {
1867 struct thread_info *tp = NULL;
1868 struct inferior *inf;
1869 int inf_num, thr_num;
65fc9b77 1870
5d5658a1
PA
1871 tid_range_parser_get_tid (&parser, &inf_num, &thr_num);
1872 inf = find_inferior_id (inf_num);
1873 if (inf != NULL)
1874 tp = find_thread_id (inf, thr_num);
71ef29a8
PA
1875
1876 if (tid_range_parser_star_range (&parser))
1877 {
1878 if (inf == NULL)
1879 {
1880 warning (_("Unknown inferior %d"), inf_num);
1881 tid_range_parser_skip (&parser);
1882 continue;
1883 }
1884
1885 /* No use looking for threads past the highest thread number
1886 the inferior ever had. */
1887 if (thr_num >= inf->highest_thread_num)
1888 tid_range_parser_skip (&parser);
1889
1890 /* Be quiet about unknown threads numbers. */
1891 if (tp == NULL)
1892 continue;
1893 }
1894
5d5658a1
PA
1895 if (tp == NULL)
1896 {
1897 if (show_inferior_qualified_tids ()
1898 || tid_range_parser_qualified (&parser))
1899 warning (_("Unknown thread %d.%d"), inf_num, thr_num);
1900 else
1901 warning (_("Unknown thread %d"), thr_num);
1902 continue;
1903 }
c906108c 1904
5d5658a1 1905 if (!thread_alive (tp))
65ebfb52 1906 {
5d5658a1
PA
1907 warning (_("Thread %s has terminated."), print_thread_id (tp));
1908 continue;
1909 }
4f8d22e3 1910
5d5658a1 1911 switch_to_thread (tp->ptid);
4f8d22e3 1912
5d5658a1
PA
1913 printf_filtered (_("\nThread %s (%s):\n"), print_thread_id (tp),
1914 target_pid_to_str (inferior_ptid));
1915 execute_command (cmd, from_tty);
1916
1917 /* Restore exact command used previously. */
1918 strcpy (cmd, saved_cmd);
c906108c 1919 }
6ecce94d
AC
1920
1921 do_cleanups (old_chain);
c906108c
SS
1922}
1923
1924/* Switch to the specified thread. Will dispatch off to thread_apply_command
1925 if prefix of arg is `apply'. */
1926
f0e8c4c5 1927void
fba45db2 1928thread_command (char *tidstr, int from_tty)
c906108c 1929{
c906108c
SS
1930 if (!tidstr)
1931 {
d729566a
PA
1932 if (ptid_equal (inferior_ptid, null_ptid))
1933 error (_("No thread selected"));
1934
c906108c 1935 if (target_has_stack)
4f8d22e3 1936 {
43792cf0
PA
1937 struct thread_info *tp = inferior_thread ();
1938
4f8d22e3 1939 if (is_exited (inferior_ptid))
43792cf0
PA
1940 printf_filtered (_("[Current thread is %s (%s) (exited)]\n"),
1941 print_thread_id (tp),
54ba13f7 1942 target_pid_to_str (inferior_ptid));
4f8d22e3 1943 else
43792cf0
PA
1944 printf_filtered (_("[Current thread is %s (%s)]\n"),
1945 print_thread_id (tp),
54ba13f7 1946 target_pid_to_str (inferior_ptid));
4f8d22e3 1947 }
c906108c 1948 else
8a3fe4f8 1949 error (_("No stack."));
c906108c
SS
1950 return;
1951 }
c5394b80 1952
79a45e25 1953 gdb_thread_select (current_uiout, tidstr, NULL);
c5394b80
JM
1954}
1955
4694da01
TT
1956/* Implementation of `thread name'. */
1957
1958static void
1959thread_name_command (char *arg, int from_tty)
1960{
1961 struct thread_info *info;
1962
1963 if (ptid_equal (inferior_ptid, null_ptid))
1964 error (_("No thread selected"));
1965
529480d0 1966 arg = skip_spaces (arg);
4694da01
TT
1967
1968 info = inferior_thread ();
1969 xfree (info->name);
1970 info->name = arg ? xstrdup (arg) : NULL;
1971}
1972
60f98dde
MS
1973/* Find thread ids with a name, target pid, or extra info matching ARG. */
1974
1975static void
1976thread_find_command (char *arg, int from_tty)
1977{
1978 struct thread_info *tp;
73ede765 1979 const char *tmp;
60f98dde
MS
1980 unsigned long match = 0;
1981
1982 if (arg == NULL || *arg == '\0')
1983 error (_("Command requires an argument."));
1984
1985 tmp = re_comp (arg);
1986 if (tmp != 0)
1987 error (_("Invalid regexp (%s): %s"), tmp, arg);
1988
1989 update_thread_list ();
1990 for (tp = thread_list; tp; tp = tp->next)
1991 {
1992 if (tp->name != NULL && re_exec (tp->name))
1993 {
43792cf0
PA
1994 printf_filtered (_("Thread %s has name '%s'\n"),
1995 print_thread_id (tp), tp->name);
60f98dde
MS
1996 match++;
1997 }
1998
1999 tmp = target_thread_name (tp);
2000 if (tmp != NULL && re_exec (tmp))
2001 {
43792cf0
PA
2002 printf_filtered (_("Thread %s has target name '%s'\n"),
2003 print_thread_id (tp), tmp);
60f98dde
MS
2004 match++;
2005 }
2006
2007 tmp = target_pid_to_str (tp->ptid);
2008 if (tmp != NULL && re_exec (tmp))
2009 {
43792cf0
PA
2010 printf_filtered (_("Thread %s has target id '%s'\n"),
2011 print_thread_id (tp), tmp);
60f98dde
MS
2012 match++;
2013 }
2014
2015 tmp = target_extra_thread_info (tp);
2016 if (tmp != NULL && re_exec (tmp))
2017 {
43792cf0
PA
2018 printf_filtered (_("Thread %s has extra info '%s'\n"),
2019 print_thread_id (tp), tmp);
60f98dde
MS
2020 match++;
2021 }
2022 }
2023 if (!match)
2024 printf_filtered (_("No threads match '%s'\n"), arg);
2025}
2026
93815fbf
VP
2027/* Print notices when new threads are attached and detached. */
2028int print_thread_events = 1;
2029static void
2030show_print_thread_events (struct ui_file *file, int from_tty,
2031 struct cmd_list_element *c, const char *value)
2032{
3e43a32a
MS
2033 fprintf_filtered (file,
2034 _("Printing of thread events is %s.\n"),
93815fbf
VP
2035 value);
2036}
2037
c5394b80 2038static int
5d5658a1 2039do_captured_thread_select (struct ui_out *uiout, void *tidstr_v)
c5394b80 2040{
c0518081 2041 const char *tidstr = (const char *) tidstr_v;
c5394b80
JM
2042 struct thread_info *tp;
2043
5d5658a1
PA
2044 if (ui_out_is_mi_like_p (uiout))
2045 {
2046 int num = value_as_long (parse_and_eval (tidstr));
c906108c 2047
5d5658a1
PA
2048 tp = find_thread_global_id (num);
2049 if (tp == NULL)
2050 error (_("Thread ID %d not known."), num);
2051 }
2052 else
2053 {
2054 tp = parse_thread_id (tidstr, NULL);
2055 gdb_assert (tp != NULL);
2056 }
c906108c
SS
2057
2058 if (!thread_alive (tp))
5d5658a1 2059 error (_("Thread ID %s has terminated."), tidstr);
c906108c 2060
dcf4fbde 2061 switch_to_thread (tp->ptid);
c906108c 2062
db5a7484
NR
2063 annotate_thread_changed ();
2064
5d5658a1
PA
2065 if (ui_out_is_mi_like_p (uiout))
2066 ui_out_field_int (uiout, "new-thread-id", inferior_thread ()->global_num);
2067 else
2068 {
2069 ui_out_text (uiout, "[Switching to thread ");
2070 ui_out_field_string (uiout, "new-thread-id", print_thread_id (tp));
2071 ui_out_text (uiout, " (");
2072 ui_out_text (uiout, target_pid_to_str (inferior_ptid));
2073 ui_out_text (uiout, ")]");
2074 }
c5394b80 2075
4f8d22e3
PA
2076 /* Note that we can't reach this with an exited thread, due to the
2077 thread_alive check above. */
30596231 2078 if (tp->state == THREAD_RUNNING)
94cc34af 2079 ui_out_text (uiout, "(running)\n");
4f8d22e3 2080 else
98871305
TT
2081 {
2082 ui_out_text (uiout, "\n");
08d72866 2083 print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC, 1);
98871305 2084 }
4f8d22e3
PA
2085
2086 /* Since the current thread may have changed, see if there is any
2087 exited thread we can now delete. */
2088 prune_threads ();
94cc34af 2089
c5394b80
JM
2090 return GDB_RC_OK;
2091}
2092
2093enum gdb_rc
ce43223b 2094gdb_thread_select (struct ui_out *uiout, char *tidstr, char **error_message)
c5394b80 2095{
b0b13bb4
DJ
2096 if (catch_exceptions_with_msg (uiout, do_captured_thread_select, tidstr,
2097 error_message, RETURN_MASK_ALL) < 0)
2098 return GDB_RC_FAIL;
2099 return GDB_RC_OK;
c906108c
SS
2100}
2101
b57bacec
PA
2102/* Update the 'threads_executing' global based on the threads we know
2103 about right now. */
2104
2105static void
2106update_threads_executing (void)
2107{
2108 struct thread_info *tp;
2109
2110 threads_executing = 0;
2111 ALL_NON_EXITED_THREADS (tp)
2112 {
2113 if (tp->executing)
2114 {
2115 threads_executing = 1;
2116 break;
2117 }
2118 }
2119}
2120
dc146f7c
VP
2121void
2122update_thread_list (void)
2123{
e8032dde 2124 target_update_thread_list ();
b57bacec 2125 update_threads_executing ();
dc146f7c
VP
2126}
2127
663f6d42
PA
2128/* Return a new value for the selected thread's id. Return a value of
2129 0 if no thread is selected. If GLOBAL is true, return the thread's
2130 global number. Otherwise return the per-inferior number. */
2131
2132static struct value *
2133thread_num_make_value_helper (struct gdbarch *gdbarch, int global)
2134{
2135 struct thread_info *tp = find_thread_ptid (inferior_ptid);
2136 int int_val;
2137
2138 if (tp == NULL)
2139 int_val = 0;
2140 else if (global)
2141 int_val = tp->global_num;
2142 else
2143 int_val = tp->per_inf_num;
2144
2145 return value_from_longest (builtin_type (gdbarch)->builtin_int, int_val);
2146}
2147
5d5658a1
PA
2148/* Return a new value for the selected thread's per-inferior thread
2149 number. Return a value of 0 if no thread is selected, or no
2150 threads exist. */
6aed2dbc
SS
2151
2152static struct value *
663f6d42
PA
2153thread_id_per_inf_num_make_value (struct gdbarch *gdbarch, struct internalvar *var,
2154 void *ignore)
6aed2dbc 2155{
663f6d42
PA
2156 return thread_num_make_value_helper (gdbarch, 0);
2157}
2158
2159/* Return a new value for the selected thread's global id. Return a
2160 value of 0 if no thread is selected, or no threads exist. */
6aed2dbc 2161
663f6d42
PA
2162static struct value *
2163global_thread_id_make_value (struct gdbarch *gdbarch, struct internalvar *var,
2164 void *ignore)
2165{
2166 return thread_num_make_value_helper (gdbarch, 1);
6aed2dbc
SS
2167}
2168
c906108c
SS
2169/* Commands with a prefix of `thread'. */
2170struct cmd_list_element *thread_cmd_list = NULL;
2171
22d2b532
SDJ
2172/* Implementation of `thread' variable. */
2173
2174static const struct internalvar_funcs thread_funcs =
2175{
663f6d42
PA
2176 thread_id_per_inf_num_make_value,
2177 NULL,
2178 NULL
2179};
2180
2181/* Implementation of `gthread' variable. */
2182
2183static const struct internalvar_funcs gthread_funcs =
2184{
2185 global_thread_id_make_value,
22d2b532
SDJ
2186 NULL,
2187 NULL
2188};
2189
c906108c 2190void
fba45db2 2191_initialize_thread (void)
c906108c
SS
2192{
2193 static struct cmd_list_element *thread_apply_list = NULL;
c906108c 2194
60f98dde
MS
2195 add_info ("threads", info_threads_command,
2196 _("Display currently known threads.\n\
c84f6bbf
PA
2197Usage: info threads [-gid] [ID]...\n\
2198-gid: Show global thread IDs.\n\
5d5658a1
PA
2199If ID is given, it is a space-separated list of IDs of threads to display.\n\
2200Otherwise, all threads are displayed."));
c906108c 2201
d729566a 2202 add_prefix_cmd ("thread", class_run, thread_command, _("\
1bedd215
AC
2203Use this command to switch between threads.\n\
2204The new thread ID must be currently known."),
d729566a 2205 &thread_cmd_list, "thread ", 1, &cmdlist);
c906108c 2206
d729566a
PA
2207 add_prefix_cmd ("apply", class_run, thread_apply_command,
2208 _("Apply a command to a list of threads."),
2209 &thread_apply_list, "thread apply ", 1, &thread_cmd_list);
c906108c 2210
d729566a 2211 add_cmd ("all", class_run, thread_apply_all_command,
253828f1
JK
2212 _("\
2213Apply a command to all threads.\n\
2214\n\
2215Usage: thread apply all [-ascending] <command>\n\
2216-ascending: Call <command> for all threads in ascending order.\n\
2217 The default is descending order.\
2218"),
2219 &thread_apply_list);
c906108c 2220
4694da01
TT
2221 add_cmd ("name", class_run, thread_name_command,
2222 _("Set the current thread's name.\n\
2223Usage: thread name [NAME]\n\
2224If NAME is not given, then any existing name is removed."), &thread_cmd_list);
2225
60f98dde
MS
2226 add_cmd ("find", class_run, thread_find_command, _("\
2227Find threads that match a regular expression.\n\
2228Usage: thread find REGEXP\n\
2229Will display thread ids whose name, target ID, or extra info matches REGEXP."),
2230 &thread_cmd_list);
2231
4f45d445 2232 add_com_alias ("t", "thread", class_run, 1);
93815fbf
VP
2233
2234 add_setshow_boolean_cmd ("thread-events", no_class,
2235 &print_thread_events, _("\
11c68c47
EZ
2236Set printing of thread events (such as thread start and exit)."), _("\
2237Show printing of thread events (such as thread start and exit)."), NULL,
93815fbf
VP
2238 NULL,
2239 show_print_thread_events,
2240 &setprintlist, &showprintlist);
6aed2dbc 2241
22d2b532 2242 create_internalvar_type_lazy ("_thread", &thread_funcs, NULL);
663f6d42 2243 create_internalvar_type_lazy ("_gthread", &gthread_funcs, NULL);
e1316e60
PA
2244
2245 observer_attach_thread_ptid_changed (restore_current_thread_ptid_changed);
c906108c 2246}
This page took 2.101943 seconds and 4 git commands to generate.