Enable support for the AArch64 dot-prod instruction in the Cortex A55 and A75 cpus.
[deliverable/binutils-gdb.git] / gdb / thread.c
CommitLineData
c906108c 1/* Multi-process/thread control for GDB, the GNU debugger.
8926118c 2
61baf725 3 Copyright (C) 1986-2017 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"
c6609450 47#include <algorithm>
94cc34af 48
c378eb4e 49/* Definition of struct thread_info exported to gdbthread.h. */
c906108c 50
c378eb4e 51/* Prototypes for exported functions. */
c906108c 52
a14ed312 53void _initialize_thread (void);
c906108c 54
c378eb4e 55/* Prototypes for local functions. */
c906108c 56
e5ef252a 57struct thread_info *thread_list = NULL;
c906108c
SS
58static int highest_thread_num;
59
b57bacec
PA
60/* True if any thread is, or may be executing. We need to track this
61 separately because until we fully sync the thread list, we won't
62 know whether the target is fully stopped, even if we see stop
63 events for all known threads, because any of those threads may have
64 spawned new threads we haven't heard of yet. */
65static int threads_executing;
66
a14ed312
KB
67static void thread_apply_all_command (char *, int);
68static int thread_alive (struct thread_info *);
69static void info_threads_command (char *, int);
70static void thread_apply_command (char *, int);
c906108c 71
c6609450
PA
72/* RAII type used to increase / decrease the refcount of each thread
73 in a given list of threads. */
054e8d9e 74
c6609450 75class scoped_inc_dec_ref
054e8d9e 76{
c6609450
PA
77public:
78 explicit scoped_inc_dec_ref (const std::vector<thread_info *> &thrds)
79 : m_thrds (thrds)
80 {
81 for (thread_info *thr : m_thrds)
82 thr->incref ();
83 }
054e8d9e 84
c6609450
PA
85 ~scoped_inc_dec_ref ()
86 {
87 for (thread_info *thr : m_thrds)
88 thr->decref ();
89 }
90
91private:
92 const std::vector<thread_info *> &m_thrds;
054e8d9e
AA
93};
94
95
a5321aa4 96struct thread_info*
4e1c45ea 97inferior_thread (void)
8601f500 98{
e09875d4 99 struct thread_info *tp = find_thread_ptid (inferior_ptid);
4e1c45ea
PA
100 gdb_assert (tp);
101 return tp;
102}
8601f500 103
5b834a0a
PA
104/* Delete the breakpoint pointed at by BP_P, if there's one. */
105
106static void
107delete_thread_breakpoint (struct breakpoint **bp_p)
4e1c45ea 108{
5b834a0a 109 if (*bp_p != NULL)
8601f500 110 {
5b834a0a
PA
111 delete_breakpoint (*bp_p);
112 *bp_p = NULL;
8601f500
MS
113 }
114}
115
5b834a0a
PA
116void
117delete_step_resume_breakpoint (struct thread_info *tp)
118{
119 if (tp != NULL)
120 delete_thread_breakpoint (&tp->control.step_resume_breakpoint);
121}
122
186c406b
TT
123void
124delete_exception_resume_breakpoint (struct thread_info *tp)
125{
5b834a0a
PA
126 if (tp != NULL)
127 delete_thread_breakpoint (&tp->control.exception_resume_breakpoint);
128}
129
34b7e8a6
PA
130/* See gdbthread.h. */
131
132void
133delete_single_step_breakpoints (struct thread_info *tp)
134{
135 if (tp != NULL)
136 delete_thread_breakpoint (&tp->control.single_step_breakpoints);
137}
138
5b834a0a
PA
139/* Delete the breakpoint pointed at by BP_P at the next stop, if
140 there's one. */
141
142static void
143delete_at_next_stop (struct breakpoint **bp)
144{
145 if (*bp != NULL)
186c406b 146 {
5b834a0a
PA
147 (*bp)->disposition = disp_del_at_next_stop;
148 *bp = NULL;
186c406b
TT
149 }
150}
151
34b7e8a6
PA
152/* See gdbthread.h. */
153
154int
155thread_has_single_step_breakpoints_set (struct thread_info *tp)
156{
157 return tp->control.single_step_breakpoints != NULL;
158}
159
160/* See gdbthread.h. */
161
162int
163thread_has_single_step_breakpoint_here (struct thread_info *tp,
164 struct address_space *aspace,
165 CORE_ADDR addr)
166{
167 struct breakpoint *ss_bps = tp->control.single_step_breakpoints;
168
169 return (ss_bps != NULL
170 && breakpoint_has_location_inserted_here (ss_bps, aspace, addr));
171}
172
243a9253
PA
173/* See gdbthread.h. */
174
175void
176thread_cancel_execution_command (struct thread_info *thr)
177{
178 if (thr->thread_fsm != NULL)
179 {
8980e177 180 thread_fsm_clean_up (thr->thread_fsm, thr);
243a9253
PA
181 thread_fsm_delete (thr->thread_fsm);
182 thr->thread_fsm = NULL;
183 }
184}
185
7c952b6d 186static void
4f8d22e3 187clear_thread_inferior_resources (struct thread_info *tp)
7c952b6d
ND
188{
189 /* NOTE: this will take care of any left-over step_resume breakpoints,
4d8453a5
DJ
190 but not any user-specified thread-specific breakpoints. We can not
191 delete the breakpoint straight-off, because the inferior might not
192 be stopped at the moment. */
5b834a0a
PA
193 delete_at_next_stop (&tp->control.step_resume_breakpoint);
194 delete_at_next_stop (&tp->control.exception_resume_breakpoint);
34b7e8a6 195 delete_at_next_stop (&tp->control.single_step_breakpoints);
186c406b 196
5d5658a1 197 delete_longjmp_breakpoint_at_next_stop (tp->global_num);
f59f708a 198
16c381f0 199 bpstat_clear (&tp->control.stop_bpstat);
95e54da7 200
02d27625
MM
201 btrace_teardown (tp);
202
243a9253 203 thread_cancel_execution_command (tp);
4f8d22e3
PA
204}
205
803bdfe4
YQ
206/* Set the TP's state as exited. */
207
208static void
209set_thread_exited (thread_info *tp, int silent)
210{
211 /* Dead threads don't need to step-over. Remove from queue. */
212 if (tp->step_over_next != NULL)
213 thread_step_over_chain_remove (tp);
214
215 if (tp->state != THREAD_EXITED)
216 {
217 observer_notify_thread_exit (tp, silent);
218
219 /* Tag it as exited. */
220 tp->state = THREAD_EXITED;
221
222 /* Clear breakpoints, etc. associated with this thread. */
223 clear_thread_inferior_resources (tp);
224 }
225}
226
c906108c 227void
fba45db2 228init_thread_list (void)
c906108c
SS
229{
230 struct thread_info *tp, *tpnext;
231
7c952b6d 232 highest_thread_num = 0;
8ea051c5 233
c906108c
SS
234 if (!thread_list)
235 return;
236
237 for (tp = thread_list; tp; tp = tpnext)
238 {
239 tpnext = tp->next;
803bdfe4
YQ
240 if (tp->deletable ())
241 delete tp;
242 else
243 set_thread_exited (tp, 1);
c906108c
SS
244 }
245
246 thread_list = NULL;
b57bacec 247 threads_executing = 0;
c906108c
SS
248}
249
5d5658a1
PA
250/* Allocate a new thread of inferior INF with target id PTID and add
251 it to the thread list. */
e58b0e63
PA
252
253static struct thread_info *
5d5658a1 254new_thread (struct inferior *inf, ptid_t ptid)
e58b0e63 255{
12316564 256 thread_info *tp = new thread_info (inf, ptid);
b05b1202
PA
257
258 if (thread_list == NULL)
259 thread_list = tp;
260 else
261 {
262 struct thread_info *last;
263
264 for (last = thread_list; last->next != NULL; last = last->next)
265 ;
266 last->next = tp;
267 }
e58b0e63 268
e58b0e63
PA
269 return tp;
270}
271
0d06e24b 272struct thread_info *
93815fbf 273add_thread_silent (ptid_t ptid)
c906108c
SS
274{
275 struct thread_info *tp;
5d5658a1
PA
276 struct inferior *inf = find_inferior_ptid (ptid);
277 gdb_assert (inf != NULL);
c906108c 278
e09875d4 279 tp = find_thread_ptid (ptid);
4f8d22e3
PA
280 if (tp)
281 /* Found an old thread with the same id. It has to be dead,
282 otherwise we wouldn't be adding a new thread with the same id.
283 The OS is reusing this id --- delete it, and recreate a new
284 one. */
285 {
286 /* In addition to deleting the thread, if this is the current
dcf4fbde
PA
287 thread, then we need to take care that delete_thread doesn't
288 really delete the thread if it is inferior_ptid. Create a
289 new template thread in the list with an invalid ptid, switch
290 to it, delete the original thread, reset the new thread's
291 ptid, and switch to it. */
4f8d22e3 292
9295a5a9 293 if (inferior_ptid == ptid)
4f8d22e3 294 {
5d5658a1 295 tp = new_thread (inf, null_ptid);
dcf4fbde
PA
296
297 /* Make switch_to_thread not read from the thread. */
30596231 298 tp->state = THREAD_EXITED;
c820c52a 299 switch_to_thread (null_ptid);
4f8d22e3
PA
300
301 /* Now we can delete it. */
302 delete_thread (ptid);
303
dcf4fbde 304 /* Now reset its ptid, and reswitch inferior_ptid to it. */
4f8d22e3 305 tp->ptid = ptid;
30596231 306 tp->state = THREAD_STOPPED;
4f8d22e3
PA
307 switch_to_thread (ptid);
308
309 observer_notify_new_thread (tp);
310
311 /* All done. */
312 return tp;
313 }
314 else
315 /* Just go ahead and delete it. */
316 delete_thread (ptid);
317 }
318
5d5658a1 319 tp = new_thread (inf, ptid);
cfc01461
VP
320 observer_notify_new_thread (tp);
321
0d06e24b 322 return tp;
c906108c
SS
323}
324
93815fbf 325struct thread_info *
fe978cb0 326add_thread_with_info (ptid_t ptid, struct private_thread_info *priv)
93815fbf
VP
327{
328 struct thread_info *result = add_thread_silent (ptid);
329
fe978cb0 330 result->priv = priv;
17faa917 331
93815fbf 332 if (print_thread_events)
fd532e2e 333 printf_unfiltered (_("[New %s]\n"), target_pid_to_str (ptid));
d4fc5b1e
NR
334
335 annotate_new_thread ();
93815fbf
VP
336 return result;
337}
338
17faa917
DJ
339struct thread_info *
340add_thread (ptid_t ptid)
341{
342 return add_thread_with_info (ptid, NULL);
343}
344
12316564
YQ
345thread_info::thread_info (struct inferior *inf_, ptid_t ptid_)
346 : ptid (ptid_), inf (inf_)
347{
348 gdb_assert (inf_ != NULL);
349
350 this->global_num = ++highest_thread_num;
351 this->per_inf_num = ++inf_->highest_thread_num;
352
353 /* Nothing to follow yet. */
354 memset (&this->pending_follow, 0, sizeof (this->pending_follow));
355 this->pending_follow.kind = TARGET_WAITKIND_SPURIOUS;
356 this->suspend.waitstatus.kind = TARGET_WAITKIND_IGNORE;
357}
358
359thread_info::~thread_info ()
360{
361 if (this->priv)
362 {
363 if (this->private_dtor)
364 this->private_dtor (this->priv);
365 else
366 xfree (this->priv);
367 }
368
369 xfree (this->name);
370}
371
c2829269
PA
372/* Add TP to the end of the step-over chain LIST_P. */
373
374static void
375step_over_chain_enqueue (struct thread_info **list_p, struct thread_info *tp)
376{
377 gdb_assert (tp->step_over_next == NULL);
378 gdb_assert (tp->step_over_prev == NULL);
379
380 if (*list_p == NULL)
381 {
382 *list_p = tp;
383 tp->step_over_prev = tp->step_over_next = tp;
384 }
385 else
386 {
387 struct thread_info *head = *list_p;
388 struct thread_info *tail = head->step_over_prev;
389
390 tp->step_over_prev = tail;
391 tp->step_over_next = head;
392 head->step_over_prev = tp;
393 tail->step_over_next = tp;
394 }
395}
396
397/* Remove TP from step-over chain LIST_P. */
398
399static void
400step_over_chain_remove (struct thread_info **list_p, struct thread_info *tp)
401{
402 gdb_assert (tp->step_over_next != NULL);
403 gdb_assert (tp->step_over_prev != NULL);
404
405 if (*list_p == tp)
406 {
407 if (tp == tp->step_over_next)
408 *list_p = NULL;
409 else
410 *list_p = tp->step_over_next;
411 }
412
413 tp->step_over_prev->step_over_next = tp->step_over_next;
414 tp->step_over_next->step_over_prev = tp->step_over_prev;
415 tp->step_over_prev = tp->step_over_next = NULL;
416}
417
418/* See gdbthread.h. */
419
420struct thread_info *
421thread_step_over_chain_next (struct thread_info *tp)
422{
423 struct thread_info *next = tp->step_over_next;
424
425 return (next == step_over_queue_head ? NULL : next);
426}
427
428/* See gdbthread.h. */
429
430int
431thread_is_in_step_over_chain (struct thread_info *tp)
432{
433 return (tp->step_over_next != NULL);
434}
435
436/* See gdbthread.h. */
437
438void
439thread_step_over_chain_enqueue (struct thread_info *tp)
440{
441 step_over_chain_enqueue (&step_over_queue_head, tp);
442}
443
444/* See gdbthread.h. */
445
446void
447thread_step_over_chain_remove (struct thread_info *tp)
448{
449 step_over_chain_remove (&step_over_queue_head, tp);
450}
451
5e0b29c1
PA
452/* Delete thread PTID. If SILENT, don't notify the observer of this
453 exit. */
454static void
455delete_thread_1 (ptid_t ptid, int silent)
c906108c
SS
456{
457 struct thread_info *tp, *tpprev;
458
459 tpprev = NULL;
460
461 for (tp = thread_list; tp; tpprev = tp, tp = tp->next)
9295a5a9 462 if (tp->ptid == ptid)
c906108c
SS
463 break;
464
465 if (!tp)
466 return;
467
803bdfe4 468 set_thread_exited (tp, silent);
c2829269 469
803bdfe4 470 if (!tp->deletable ())
8c25b497 471 {
4f8d22e3
PA
472 /* Will be really deleted some other time. */
473 return;
474 }
475
c906108c
SS
476 if (tpprev)
477 tpprev->next = tp->next;
478 else
479 thread_list = tp->next;
480
12316564 481 delete tp;
c906108c
SS
482}
483
4f8d22e3
PA
484/* Delete thread PTID and notify of thread exit. If this is
485 inferior_ptid, don't actually delete it, but tag it as exited and
486 do the notification. If PTID is the user selected thread, clear
487 it. */
5e0b29c1
PA
488void
489delete_thread (ptid_t ptid)
490{
491 delete_thread_1 (ptid, 0 /* not silent */);
492}
493
494void
495delete_thread_silent (ptid_t ptid)
496{
497 delete_thread_1 (ptid, 1 /* silent */);
498}
499
1e92afda 500struct thread_info *
5d5658a1 501find_thread_global_id (int global_id)
c906108c
SS
502{
503 struct thread_info *tp;
504
505 for (tp = thread_list; tp; tp = tp->next)
5d5658a1
PA
506 if (tp->global_num == global_id)
507 return tp;
508
509 return NULL;
510}
511
512static struct thread_info *
513find_thread_id (struct inferior *inf, int thr_num)
514{
515 struct thread_info *tp;
516
517 for (tp = thread_list; tp; tp = tp->next)
518 if (tp->inf == inf && tp->per_inf_num == thr_num)
c906108c
SS
519 return tp;
520
521 return NULL;
522}
523
39f77062 524/* Find a thread_info by matching PTID. */
0d06e24b 525struct thread_info *
e09875d4 526find_thread_ptid (ptid_t ptid)
0d06e24b
JM
527{
528 struct thread_info *tp;
529
530 for (tp = thread_list; tp; tp = tp->next)
9295a5a9 531 if (tp->ptid == ptid)
0d06e24b
JM
532 return tp;
533
534 return NULL;
535}
536
537/*
538 * Thread iterator function.
539 *
540 * Calls a callback function once for each thread, so long as
541 * the callback function returns false. If the callback function
542 * returns true, the iteration will end and the current thread
ae0eee42 543 * will be returned. This can be useful for implementing a
0d06e24b
JM
544 * search for a thread with arbitrary attributes, or for applying
545 * some operation to every thread.
546 *
ae0eee42 547 * FIXME: some of the existing functionality, such as
0d06e24b
JM
548 * "Thread apply all", might be rewritten using this functionality.
549 */
550
551struct thread_info *
fd118b61
KB
552iterate_over_threads (int (*callback) (struct thread_info *, void *),
553 void *data)
0d06e24b 554{
4f8d22e3 555 struct thread_info *tp, *next;
0d06e24b 556
4f8d22e3
PA
557 for (tp = thread_list; tp; tp = next)
558 {
559 next = tp->next;
560 if ((*callback) (tp, data))
561 return tp;
562 }
0d06e24b
JM
563
564 return NULL;
565}
566
20874c92
VP
567int
568thread_count (void)
569{
570 int result = 0;
571 struct thread_info *tp;
572
573 for (tp = thread_list; tp; tp = tp->next)
574 ++result;
575
ae0eee42 576 return result;
20874c92
VP
577}
578
c6609450
PA
579/* Return the number of non-exited threads in the thread list. */
580
581static int
582live_threads_count (void)
583{
584 int result = 0;
585 struct thread_info *tp;
586
587 ALL_NON_EXITED_THREADS (tp)
588 ++result;
589
590 return result;
591}
592
c906108c 593int
5d5658a1 594valid_global_thread_id (int global_id)
c906108c
SS
595{
596 struct thread_info *tp;
597
598 for (tp = thread_list; tp; tp = tp->next)
5d5658a1 599 if (tp->global_num == global_id)
c906108c
SS
600 return 1;
601
602 return 0;
603}
604
605int
5d5658a1 606ptid_to_global_thread_id (ptid_t ptid)
c906108c
SS
607{
608 struct thread_info *tp;
609
610 for (tp = thread_list; tp; tp = tp->next)
9295a5a9 611 if (tp->ptid == ptid)
5d5658a1 612 return tp->global_num;
c906108c
SS
613
614 return 0;
615}
616
39f77062 617ptid_t
5d5658a1 618global_thread_id_to_ptid (int global_id)
c906108c 619{
5d5658a1 620 struct thread_info *thread = find_thread_global_id (global_id);
5d502164 621
c906108c 622 if (thread)
39f77062 623 return thread->ptid;
c906108c 624 else
5d5658a1 625 return minus_one_ptid;
c906108c
SS
626}
627
628int
39f77062 629in_thread_list (ptid_t ptid)
c906108c
SS
630{
631 struct thread_info *tp;
632
633 for (tp = thread_list; tp; tp = tp->next)
9295a5a9 634 if (tp->ptid == ptid)
c906108c
SS
635 return 1;
636
c378eb4e 637 return 0; /* Never heard of 'im. */
c906108c 638}
8926118c 639
bad34192
PA
640/* Finds the first thread of the inferior given by PID. If PID is -1,
641 return the first thread in the list. */
642
643struct thread_info *
644first_thread_of_process (int pid)
645{
646 struct thread_info *tp, *ret = NULL;
647
648 for (tp = thread_list; tp; tp = tp->next)
649 if (pid == -1 || ptid_get_pid (tp->ptid) == pid)
5d5658a1 650 if (ret == NULL || tp->global_num < ret->global_num)
bad34192
PA
651 ret = tp;
652
653 return ret;
654}
655
2277426b
PA
656struct thread_info *
657any_thread_of_process (int pid)
658{
659 struct thread_info *tp;
660
32990ada
PA
661 gdb_assert (pid != 0);
662
663 /* Prefer the current thread. */
664 if (ptid_get_pid (inferior_ptid) == pid)
665 return inferior_thread ();
666
667 ALL_NON_EXITED_THREADS (tp)
2277426b
PA
668 if (ptid_get_pid (tp->ptid) == pid)
669 return tp;
670
671 return NULL;
672}
673
6c95b8df
PA
674struct thread_info *
675any_live_thread_of_process (int pid)
676{
32990ada 677 struct thread_info *curr_tp = NULL;
6c95b8df 678 struct thread_info *tp;
9941e0c5 679 struct thread_info *tp_executing = NULL;
6c95b8df 680
32990ada
PA
681 gdb_assert (pid != 0);
682
683 /* Prefer the current thread if it's not executing. */
684 if (ptid_get_pid (inferior_ptid) == pid)
685 {
686 /* If the current thread is dead, forget it. If it's not
687 executing, use it. Otherwise, still choose it (below), but
688 only if no other non-executing thread is found. */
689 curr_tp = inferior_thread ();
690 if (curr_tp->state == THREAD_EXITED)
691 curr_tp = NULL;
692 else if (!curr_tp->executing)
693 return curr_tp;
694 }
695
696 ALL_NON_EXITED_THREADS (tp)
697 if (ptid_get_pid (tp->ptid) == pid)
6c95b8df 698 {
32990ada 699 if (!tp->executing)
6c95b8df 700 return tp;
32990ada
PA
701
702 tp_executing = tp;
6c95b8df
PA
703 }
704
32990ada
PA
705 /* If both the current thread and all live threads are executing,
706 prefer the current thread. */
707 if (curr_tp != NULL)
708 return curr_tp;
709
710 /* Otherwise, just return an executing thread, if any. */
9941e0c5 711 return tp_executing;
6c95b8df
PA
712}
713
8b93c638 714/* Print a list of thread ids currently known, and the total number of
c378eb4e 715 threads. To be used from within catch_errors. */
6949171e
JJ
716static int
717do_captured_list_thread_ids (struct ui_out *uiout, void *arg)
8b93c638
JM
718{
719 struct thread_info *tp;
720 int num = 0;
592375cd 721 int current_thread = -1;
8b93c638 722
dc146f7c 723 update_thread_list ();
7990a578 724
2e783024
TT
725 {
726 ui_out_emit_tuple tuple_emitter (uiout, "thread-ids");
592375cd 727
2e783024
TT
728 for (tp = thread_list; tp; tp = tp->next)
729 {
730 if (tp->state == THREAD_EXITED)
731 continue;
592375cd 732
2e783024
TT
733 if (tp->ptid == inferior_ptid)
734 current_thread = tp->global_num;
8b93c638 735
2e783024
TT
736 num++;
737 uiout->field_int ("thread-id", tp->global_num);
738 }
739 }
592375cd
VP
740
741 if (current_thread != -1)
112e8700
SM
742 uiout->field_int ("current-thread-id", current_thread);
743 uiout->field_int ("number-of-threads", num);
8b93c638
JM
744 return GDB_RC_OK;
745}
746
747/* Official gdblib interface function to get a list of thread ids and
c378eb4e 748 the total number. */
8b93c638 749enum gdb_rc
ce43223b 750gdb_list_thread_ids (struct ui_out *uiout, char **error_message)
8b93c638 751{
b0b13bb4
DJ
752 if (catch_exceptions_with_msg (uiout, do_captured_list_thread_ids, NULL,
753 error_message, RETURN_MASK_ALL) < 0)
754 return GDB_RC_FAIL;
755 return GDB_RC_OK;
8b93c638 756}
c906108c 757
c378eb4e 758/* Return true if TP is an active thread. */
c906108c 759static int
fba45db2 760thread_alive (struct thread_info *tp)
c906108c 761{
30596231 762 if (tp->state == THREAD_EXITED)
c906108c 763 return 0;
39f77062 764 if (!target_thread_alive (tp->ptid))
4f8d22e3 765 return 0;
c906108c
SS
766 return 1;
767}
768
e8032dde
PA
769/* See gdbthreads.h. */
770
771void
fba45db2 772prune_threads (void)
c906108c 773{
8a06aea7 774 struct thread_info *tp, *tmp;
c906108c 775
8a06aea7 776 ALL_THREADS_SAFE (tp, tmp)
c906108c 777 {
c906108c 778 if (!thread_alive (tp))
39f77062 779 delete_thread (tp->ptid);
c906108c
SS
780 }
781}
782
8a06aea7
PA
783/* See gdbthreads.h. */
784
785void
786delete_exited_threads (void)
787{
788 struct thread_info *tp, *tmp;
789
790 ALL_THREADS_SAFE (tp, tmp)
791 {
792 if (tp->state == THREAD_EXITED)
793 delete_thread (tp->ptid);
794 }
795}
796
6c659fc2
SC
797/* Disable storing stack temporaries for the thread whose id is
798 stored in DATA. */
799
800static void
801disable_thread_stack_temporaries (void *data)
802{
19ba03f4 803 ptid_t *pd = (ptid_t *) data;
6c659fc2
SC
804 struct thread_info *tp = find_thread_ptid (*pd);
805
806 if (tp != NULL)
807 {
808 tp->stack_temporaries_enabled = 0;
809 VEC_free (value_ptr, tp->stack_temporaries);
810 }
811
812 xfree (pd);
813}
814
815/* Enable storing stack temporaries for thread with id PTID and return a
816 cleanup which can disable and clear the stack temporaries. */
817
818struct cleanup *
819enable_thread_stack_temporaries (ptid_t ptid)
820{
821 struct thread_info *tp = find_thread_ptid (ptid);
822 ptid_t *data;
823 struct cleanup *c;
824
825 gdb_assert (tp != NULL);
826
827 tp->stack_temporaries_enabled = 1;
828 tp->stack_temporaries = NULL;
8d749320 829 data = XNEW (ptid_t);
6c659fc2
SC
830 *data = ptid;
831 c = make_cleanup (disable_thread_stack_temporaries, data);
832
833 return c;
834}
835
836/* Return non-zero value if stack temporaies are enabled for the thread
837 with id PTID. */
838
839int
840thread_stack_temporaries_enabled_p (ptid_t ptid)
841{
842 struct thread_info *tp = find_thread_ptid (ptid);
843
844 if (tp == NULL)
845 return 0;
846 else
847 return tp->stack_temporaries_enabled;
848}
849
850/* Push V on to the stack temporaries of the thread with id PTID. */
851
852void
853push_thread_stack_temporary (ptid_t ptid, struct value *v)
854{
855 struct thread_info *tp = find_thread_ptid (ptid);
856
857 gdb_assert (tp != NULL && tp->stack_temporaries_enabled);
858 VEC_safe_push (value_ptr, tp->stack_temporaries, v);
859}
860
861/* Return 1 if VAL is among the stack temporaries of the thread
862 with id PTID. Return 0 otherwise. */
863
864int
865value_in_thread_stack_temporaries (struct value *val, ptid_t ptid)
866{
867 struct thread_info *tp = find_thread_ptid (ptid);
868
869 gdb_assert (tp != NULL && tp->stack_temporaries_enabled);
870 if (!VEC_empty (value_ptr, tp->stack_temporaries))
871 {
872 struct value *v;
873 int i;
874
875 for (i = 0; VEC_iterate (value_ptr, tp->stack_temporaries, i, v); i++)
876 if (v == val)
877 return 1;
878 }
879
880 return 0;
881}
882
883/* Return the last of the stack temporaries for thread with id PTID.
884 Return NULL if there are no stack temporaries for the thread. */
885
886struct value *
887get_last_thread_stack_temporary (ptid_t ptid)
888{
889 struct value *lastval = NULL;
890 struct thread_info *tp = find_thread_ptid (ptid);
891
892 gdb_assert (tp != NULL);
893 if (!VEC_empty (value_ptr, tp->stack_temporaries))
894 lastval = VEC_last (value_ptr, tp->stack_temporaries);
895
896 return lastval;
897}
898
5231c1fd
PA
899void
900thread_change_ptid (ptid_t old_ptid, ptid_t new_ptid)
901{
82f73884
PA
902 struct inferior *inf;
903 struct thread_info *tp;
904
905 /* It can happen that what we knew as the target inferior id
906 changes. E.g, target remote may only discover the remote process
907 pid after adding the inferior to GDB's list. */
c9657e70 908 inf = find_inferior_ptid (old_ptid);
82f73884
PA
909 inf->pid = ptid_get_pid (new_ptid);
910
e09875d4 911 tp = find_thread_ptid (old_ptid);
5231c1fd
PA
912 tp->ptid = new_ptid;
913
914 observer_notify_thread_ptid_changed (old_ptid, new_ptid);
915}
916
372316f1
PA
917/* See gdbthread.h. */
918
919void
920set_resumed (ptid_t ptid, int resumed)
921{
922 struct thread_info *tp;
9295a5a9 923 int all = ptid == minus_one_ptid;
372316f1
PA
924
925 if (all || ptid_is_pid (ptid))
926 {
927 for (tp = thread_list; tp; tp = tp->next)
928 if (all || ptid_get_pid (tp->ptid) == ptid_get_pid (ptid))
929 tp->resumed = resumed;
930 }
931 else
932 {
933 tp = find_thread_ptid (ptid);
934 gdb_assert (tp != NULL);
935 tp->resumed = resumed;
936 }
937}
938
4d9d9d04
PA
939/* Helper for set_running, that marks one thread either running or
940 stopped. */
941
942static int
943set_running_thread (struct thread_info *tp, int running)
944{
945 int started = 0;
946
947 if (running && tp->state == THREAD_STOPPED)
948 started = 1;
949 tp->state = running ? THREAD_RUNNING : THREAD_STOPPED;
950
951 if (!running)
952 {
953 /* If the thread is now marked stopped, remove it from
954 the step-over queue, so that we don't try to resume
955 it until the user wants it to. */
956 if (tp->step_over_next != NULL)
957 thread_step_over_chain_remove (tp);
958 }
959
960 return started;
961}
962
e1ac3328
VP
963void
964set_running (ptid_t ptid, int running)
965{
966 struct thread_info *tp;
9295a5a9 967 int all = ptid == minus_one_ptid;
4d9d9d04 968 int any_started = 0;
e1ac3328 969
ae0eee42
PA
970 /* We try not to notify the observer if no thread has actually changed
971 the running state -- merely to reduce the number of messages to
e1ac3328 972 frontend. Frontend is supposed to handle multiple *running just fine. */
d90e17a7 973 if (all || ptid_is_pid (ptid))
e1ac3328 974 {
e1ac3328 975 for (tp = thread_list; tp; tp = tp->next)
d90e17a7
PA
976 if (all || ptid_get_pid (tp->ptid) == ptid_get_pid (ptid))
977 {
30596231 978 if (tp->state == THREAD_EXITED)
d90e17a7 979 continue;
4d9d9d04
PA
980
981 if (set_running_thread (tp, running))
d90e17a7 982 any_started = 1;
d90e17a7 983 }
e1ac3328
VP
984 }
985 else
986 {
e09875d4 987 tp = find_thread_ptid (ptid);
4d9d9d04 988 gdb_assert (tp != NULL);
30596231 989 gdb_assert (tp->state != THREAD_EXITED);
4d9d9d04
PA
990 if (set_running_thread (tp, running))
991 any_started = 1;
4f8d22e3 992 }
4d9d9d04
PA
993 if (any_started)
994 observer_notify_target_resumed (ptid);
e1ac3328
VP
995}
996
4f8d22e3
PA
997static int
998is_thread_state (ptid_t ptid, enum thread_state state)
e1ac3328
VP
999{
1000 struct thread_info *tp;
1001
e09875d4 1002 tp = find_thread_ptid (ptid);
e1ac3328 1003 gdb_assert (tp);
30596231 1004 return tp->state == state;
4f8d22e3
PA
1005}
1006
1007int
1008is_stopped (ptid_t ptid)
1009{
4f8d22e3
PA
1010 return is_thread_state (ptid, THREAD_STOPPED);
1011}
1012
1013int
1014is_exited (ptid_t ptid)
1015{
4f8d22e3
PA
1016 return is_thread_state (ptid, THREAD_EXITED);
1017}
1018
1019int
1020is_running (ptid_t ptid)
1021{
4f8d22e3 1022 return is_thread_state (ptid, THREAD_RUNNING);
e1ac3328
VP
1023}
1024
8ea051c5
PA
1025int
1026is_executing (ptid_t ptid)
1027{
1028 struct thread_info *tp;
1029
e09875d4 1030 tp = find_thread_ptid (ptid);
8ea051c5 1031 gdb_assert (tp);
30596231 1032 return tp->executing;
8ea051c5
PA
1033}
1034
1035void
1036set_executing (ptid_t ptid, int executing)
1037{
1038 struct thread_info *tp;
9295a5a9 1039 int all = ptid == minus_one_ptid;
8ea051c5 1040
d90e17a7 1041 if (all || ptid_is_pid (ptid))
8ea051c5
PA
1042 {
1043 for (tp = thread_list; tp; tp = tp->next)
d90e17a7 1044 if (all || ptid_get_pid (tp->ptid) == ptid_get_pid (ptid))
30596231 1045 tp->executing = executing;
8ea051c5
PA
1046 }
1047 else
1048 {
e09875d4 1049 tp = find_thread_ptid (ptid);
8ea051c5 1050 gdb_assert (tp);
30596231 1051 tp->executing = executing;
8ea051c5 1052 }
b57bacec
PA
1053
1054 /* It only takes one running thread to spawn more threads.*/
1055 if (executing)
1056 threads_executing = 1;
1057 /* Only clear the flag if the caller is telling us everything is
1058 stopped. */
9295a5a9 1059 else if (minus_one_ptid == ptid)
b57bacec
PA
1060 threads_executing = 0;
1061}
1062
1063/* See gdbthread.h. */
1064
1065int
1066threads_are_executing (void)
1067{
1068 return threads_executing;
8ea051c5
PA
1069}
1070
252fbfc8
PA
1071void
1072set_stop_requested (ptid_t ptid, int stop)
1073{
1074 struct thread_info *tp;
9295a5a9 1075 int all = ptid == minus_one_ptid;
252fbfc8
PA
1076
1077 if (all || ptid_is_pid (ptid))
1078 {
1079 for (tp = thread_list; tp; tp = tp->next)
1080 if (all || ptid_get_pid (tp->ptid) == ptid_get_pid (ptid))
1081 tp->stop_requested = stop;
1082 }
1083 else
1084 {
e09875d4 1085 tp = find_thread_ptid (ptid);
252fbfc8
PA
1086 gdb_assert (tp);
1087 tp->stop_requested = stop;
1088 }
1089
1090 /* Call the stop requested observer so other components of GDB can
1091 react to this request. */
1092 if (stop)
1093 observer_notify_thread_stop_requested (ptid);
1094}
1095
29f49a6a
PA
1096void
1097finish_thread_state (ptid_t ptid)
1098{
1099 struct thread_info *tp;
1100 int all;
1101 int any_started = 0;
1102
9295a5a9 1103 all = ptid == minus_one_ptid;
29f49a6a
PA
1104
1105 if (all || ptid_is_pid (ptid))
1106 {
1107 for (tp = thread_list; tp; tp = tp->next)
1108 {
ae0eee42
PA
1109 if (tp->state == THREAD_EXITED)
1110 continue;
29f49a6a
PA
1111 if (all || ptid_get_pid (ptid) == ptid_get_pid (tp->ptid))
1112 {
4d9d9d04 1113 if (set_running_thread (tp, tp->executing))
29f49a6a 1114 any_started = 1;
29f49a6a
PA
1115 }
1116 }
1117 }
1118 else
1119 {
e09875d4 1120 tp = find_thread_ptid (ptid);
29f49a6a 1121 gdb_assert (tp);
30596231 1122 if (tp->state != THREAD_EXITED)
29f49a6a 1123 {
4d9d9d04 1124 if (set_running_thread (tp, tp->executing))
29f49a6a 1125 any_started = 1;
29f49a6a
PA
1126 }
1127 }
1128
1129 if (any_started)
1130 observer_notify_target_resumed (ptid);
1131}
1132
1133void
1134finish_thread_state_cleanup (void *arg)
1135{
19ba03f4 1136 ptid_t *ptid_p = (ptid_t *) arg;
29f49a6a
PA
1137
1138 gdb_assert (arg);
1139
1140 finish_thread_state (*ptid_p);
1141}
1142
a911d87a
PA
1143/* See gdbthread.h. */
1144
1145void
1146validate_registers_access (void)
1147{
1148 /* No selected thread, no registers. */
9295a5a9 1149 if (inferior_ptid == null_ptid)
a911d87a
PA
1150 error (_("No thread selected."));
1151
1152 /* Don't try to read from a dead thread. */
1153 if (is_exited (inferior_ptid))
1154 error (_("The current thread has terminated"));
1155
1156 /* ... or from a spinning thread. FIXME: This isn't actually fully
1157 correct. It'll allow an user-requested access (e.g., "print $pc"
1158 at the prompt) when a thread is not executing for some internal
1159 reason, but is marked running from the user's perspective. E.g.,
1160 the thread is waiting for its turn in the step-over queue. */
1161 if (is_executing (inferior_ptid))
1162 error (_("Selected thread is running."));
1163}
1164
cf77c34e
MM
1165/* See gdbthread.h. */
1166
1167bool
1168can_access_registers_ptid (ptid_t ptid)
1169{
1170 /* No thread, no registers. */
9295a5a9 1171 if (ptid == null_ptid)
cf77c34e
MM
1172 return false;
1173
1174 /* Don't try to read from a dead thread. */
1175 if (is_exited (ptid))
1176 return false;
1177
1178 /* ... or from a spinning thread. FIXME: see validate_registers_access. */
1179 if (is_executing (ptid))
1180 return false;
1181
1182 return true;
1183}
1184
ce4c476a
PA
1185int
1186pc_in_thread_step_range (CORE_ADDR pc, struct thread_info *thread)
1187{
1188 return (pc >= thread->control.step_range_start
1189 && pc < thread->control.step_range_end);
1190}
1191
5d5658a1
PA
1192/* Helper for print_thread_info. Returns true if THR should be
1193 printed. If REQUESTED_THREADS, a list of GDB ids/ranges, is not
1194 NULL, only print THR if its ID is included in the list. GLOBAL_IDS
1195 is true if REQUESTED_THREADS is list of global IDs, false if a list
1196 of per-inferior thread ids. If PID is not -1, only print THR if it
1197 is a thread from the process PID. Otherwise, threads from all
1198 attached PIDs are printed. If both REQUESTED_THREADS is not NULL
1199 and PID is not -1, then the thread is printed if it belongs to the
1200 specified process. Otherwise, an error is raised. */
1201
1202static int
1203should_print_thread (const char *requested_threads, int default_inf_num,
1204 int global_ids, int pid, struct thread_info *thr)
1205{
1206 if (requested_threads != NULL && *requested_threads != '\0')
1207 {
1208 int in_list;
1209
1210 if (global_ids)
1211 in_list = number_is_in_list (requested_threads, thr->global_num);
1212 else
1213 in_list = tid_is_in_list (requested_threads, default_inf_num,
1214 thr->inf->num, thr->per_inf_num);
1215 if (!in_list)
1216 return 0;
1217 }
1218
1219 if (pid != -1 && ptid_get_pid (thr->ptid) != pid)
1220 {
1221 if (requested_threads != NULL && *requested_threads != '\0')
1222 error (_("Requested thread not found in requested process"));
1223 return 0;
1224 }
1225
1226 if (thr->state == THREAD_EXITED)
1227 return 0;
1228
1229 return 1;
1230}
1231
1232/* Like print_thread_info, but in addition, GLOBAL_IDS indicates
1233 whether REQUESTED_THREADS is a list of global or per-inferior
1234 thread ids. */
1235
1236static void
1237print_thread_info_1 (struct ui_out *uiout, char *requested_threads,
1238 int global_ids, int pid,
1239 int show_global_ids)
c906108c
SS
1240{
1241 struct thread_info *tp;
39f77062 1242 ptid_t current_ptid;
73ede765 1243 const char *extra_info, *name, *target_id;
5d5658a1
PA
1244 struct inferior *inf;
1245 int default_inf_num = current_inferior ()->num;
c906108c 1246
dc146f7c 1247 update_thread_list ();
39f77062 1248 current_ptid = inferior_ptid;
4f8d22e3 1249
5ed8105e 1250 struct cleanup *old_chain = make_cleanup (null_cleanup, NULL);
4f8d22e3 1251
a7658b96
TT
1252 /* For backward compatibility, we make a list for MI. A table is
1253 preferable for the CLI, though, because it shows table
1254 headers. */
112e8700 1255 if (uiout->is_mi_like_p ())
a7658b96
TT
1256 make_cleanup_ui_out_list_begin_end (uiout, "threads");
1257 else
1258 {
1259 int n_threads = 0;
1260
1261 for (tp = thread_list; tp; tp = tp->next)
1262 {
5d5658a1
PA
1263 if (!should_print_thread (requested_threads, default_inf_num,
1264 global_ids, pid, tp))
a7658b96
TT
1265 continue;
1266
1267 ++n_threads;
1268 }
1269
1270 if (n_threads == 0)
1271 {
aea5b279 1272 if (requested_threads == NULL || *requested_threads == '\0')
112e8700 1273 uiout->message (_("No threads.\n"));
a7658b96 1274 else
112e8700 1275 uiout->message (_("No threads match '%s'.\n"),
aea5b279 1276 requested_threads);
a7658b96
TT
1277 do_cleanups (old_chain);
1278 return;
1279 }
1280
112e8700 1281 if (show_global_ids || uiout->is_mi_like_p ())
5d5658a1
PA
1282 make_cleanup_ui_out_table_begin_end (uiout, 5, n_threads, "threads");
1283 else
1284 make_cleanup_ui_out_table_begin_end (uiout, 4, n_threads, "threads");
a7658b96 1285
112e8700 1286 uiout->table_header (1, ui_left, "current", "");
5d5658a1 1287
112e8700
SM
1288 if (!uiout->is_mi_like_p ())
1289 uiout->table_header (4, ui_left, "id-in-tg", "Id");
1290 if (show_global_ids || uiout->is_mi_like_p ())
1291 uiout->table_header (4, ui_left, "id", "GId");
1292 uiout->table_header (17, ui_left, "target-id", "Target Id");
1293 uiout->table_header (1, ui_left, "frame", "Frame");
1294 uiout->table_body ();
a7658b96
TT
1295 }
1296
5ed8105e
PA
1297 /* We'll be switching threads temporarily. */
1298 {
1299 scoped_restore_current_thread restore_thread;
8e8901c5 1300
5ed8105e
PA
1301 ALL_THREADS_BY_INFERIOR (inf, tp)
1302 {
1303 int core;
4f8d22e3 1304
5ed8105e
PA
1305 if (!should_print_thread (requested_threads, default_inf_num,
1306 global_ids, pid, tp))
1307 continue;
8e8901c5 1308
5ed8105e 1309 ui_out_emit_tuple tuple_emitter (uiout, NULL);
c906108c 1310
5ed8105e
PA
1311 if (!uiout->is_mi_like_p ())
1312 {
1313 if (tp->ptid == current_ptid)
1314 uiout->field_string ("current", "*");
1315 else
1316 uiout->field_skip ("current");
1317 }
5d5658a1 1318
5ed8105e
PA
1319 if (!uiout->is_mi_like_p ())
1320 uiout->field_string ("id-in-tg", print_thread_id (tp));
0d06e24b 1321
5ed8105e
PA
1322 if (show_global_ids || uiout->is_mi_like_p ())
1323 uiout->field_int ("id", tp->global_num);
4694da01 1324
5ed8105e
PA
1325 /* For the CLI, we stuff everything into the target-id field.
1326 This is a gross hack to make the output come out looking
1327 correct. The underlying problem here is that ui-out has no
1328 way to specify that a field's space allocation should be
1329 shared by several fields. For MI, we do the right thing
1330 instead. */
4694da01 1331
5ed8105e
PA
1332 target_id = target_pid_to_str (tp->ptid);
1333 extra_info = target_extra_thread_info (tp);
1334 name = tp->name ? tp->name : target_thread_name (tp);
4694da01 1335
5ed8105e
PA
1336 if (uiout->is_mi_like_p ())
1337 {
1338 uiout->field_string ("target-id", target_id);
1339 if (extra_info)
1340 uiout->field_string ("details", extra_info);
1341 if (name)
1342 uiout->field_string ("name", name);
1343 }
1344 else
1345 {
1346 struct cleanup *str_cleanup;
1347 char *contents;
1348
1349 if (extra_info && name)
1350 contents = xstrprintf ("%s \"%s\" (%s)", target_id,
1351 name, extra_info);
1352 else if (extra_info)
1353 contents = xstrprintf ("%s (%s)", target_id, extra_info);
1354 else if (name)
1355 contents = xstrprintf ("%s \"%s\"", target_id, name);
1356 else
1357 contents = xstrdup (target_id);
1358 str_cleanup = make_cleanup (xfree, contents);
1359
1360 uiout->field_string ("target-id", contents);
1361 do_cleanups (str_cleanup);
1362 }
4f8d22e3 1363
5ed8105e
PA
1364 if (tp->state == THREAD_RUNNING)
1365 uiout->text ("(running)\n");
1366 else
1367 {
1368 /* The switch below puts us at the top of the stack (leaf
1369 frame). */
1370 switch_to_thread (tp->ptid);
1371 print_stack_frame (get_selected_frame (NULL),
1372 /* For MI output, print frame level. */
1373 uiout->is_mi_like_p (),
1374 LOCATION, 0);
1375 }
8e8901c5 1376
5ed8105e
PA
1377 if (uiout->is_mi_like_p ())
1378 {
1379 const char *state = "stopped";
5d502164 1380
5ed8105e
PA
1381 if (tp->state == THREAD_RUNNING)
1382 state = "running";
1383 uiout->field_string ("state", state);
1384 }
90139f7d 1385
5ed8105e
PA
1386 core = target_core_of_thread (tp->ptid);
1387 if (uiout->is_mi_like_p () && core != -1)
1388 uiout->field_int ("core", core);
c906108c
SS
1389 }
1390
5ed8105e
PA
1391 /* This end scope restores the current thread and the frame
1392 selected before the "info threads" command. */
1393 }
1394
99b3d574 1395 do_cleanups (old_chain);
c906108c 1396
aea5b279 1397 if (pid == -1 && requested_threads == NULL)
8e8901c5 1398 {
112e8700 1399 if (uiout->is_mi_like_p ()
9295a5a9 1400 && inferior_ptid != null_ptid)
5d5658a1
PA
1401 {
1402 int num = ptid_to_global_thread_id (inferior_ptid);
1403
1404 gdb_assert (num != 0);
112e8700 1405 uiout->field_int ("current-thread-id", num);
5d5658a1 1406 }
94cc34af 1407
9295a5a9 1408 if (inferior_ptid != null_ptid && is_exited (inferior_ptid))
112e8700 1409 uiout->message ("\n\
5d5658a1
PA
1410The current thread <Thread ID %s> has terminated. See `help thread'.\n",
1411 print_thread_id (inferior_thread ()));
9295a5a9 1412 else if (thread_list != NULL && inferior_ptid == null_ptid)
112e8700 1413 uiout->message ("\n\
d729566a 1414No selected thread. See `help thread'.\n");
c906108c 1415 }
c906108c
SS
1416}
1417
5d5658a1 1418/* See gdbthread.h. */
8e8901c5 1419
5d5658a1
PA
1420void
1421print_thread_info (struct ui_out *uiout, char *requested_threads, int pid)
1422{
1423 print_thread_info_1 (uiout, requested_threads, 1, pid, 0);
1424}
1425
1426/* Implementation of the "info threads" command.
60f98dde
MS
1427
1428 Note: this has the drawback that it _really_ switches
ae0eee42
PA
1429 threads, which frees the frame cache. A no-side
1430 effects info-threads command would be nicer. */
8e8901c5
VP
1431
1432static void
1433info_threads_command (char *arg, int from_tty)
1434{
c84f6bbf
PA
1435 int show_global_ids = 0;
1436
1437 if (arg != NULL
1438 && check_for_argument (&arg, "-gid", sizeof ("-gid") - 1))
1439 {
1440 arg = skip_spaces (arg);
1441 show_global_ids = 1;
1442 }
1443
1444 print_thread_info_1 (current_uiout, arg, 0, -1, show_global_ids);
8e8901c5
VP
1445}
1446
6efcd9a8
PA
1447/* See gdbthread.h. */
1448
1449void
1450switch_to_thread_no_regs (struct thread_info *thread)
1451{
3a3fd0fd 1452 struct inferior *inf = thread->inf;
6efcd9a8 1453
6efcd9a8
PA
1454 set_current_program_space (inf->pspace);
1455 set_current_inferior (inf);
1456
1457 inferior_ptid = thread->ptid;
1458 stop_pc = ~(CORE_ADDR) 0;
1459}
1460
3a3fd0fd 1461/* Switch to no thread selected. */
c906108c 1462
3a3fd0fd
PA
1463static void
1464switch_to_no_thread ()
c906108c 1465{
3a3fd0fd
PA
1466 if (inferior_ptid == null_ptid)
1467 return;
6c95b8df 1468
3a3fd0fd
PA
1469 inferior_ptid = null_ptid;
1470 reinit_frame_cache ();
1471 stop_pc = ~(CORE_ADDR) 0;
1472}
1473
1474/* Switch from one thread to another. */
6c95b8df 1475
3a3fd0fd
PA
1476static void
1477switch_to_thread (thread_info *thr)
1478{
1479 gdb_assert (thr != NULL);
1480
1481 if (inferior_ptid == thr->ptid)
c906108c
SS
1482 return;
1483
3a3fd0fd
PA
1484 switch_to_thread_no_regs (thr);
1485
35f196d9 1486 reinit_frame_cache ();
94cc34af 1487
4f8d22e3
PA
1488 /* We don't check for is_stopped, because we're called at times
1489 while in the TARGET_RUNNING state, e.g., while handling an
1490 internal event. */
3a3fd0fd
PA
1491 if (thr->state != THREAD_EXITED
1492 && !thr->executing)
1493 stop_pc = regcache_read_pc (get_thread_regcache (thr->ptid));
c906108c
SS
1494}
1495
3a3fd0fd
PA
1496/* See gdbthread.h. */
1497
1498void
1499switch_to_thread (ptid_t ptid)
c906108c 1500{
3a3fd0fd
PA
1501 if (ptid == null_ptid)
1502 switch_to_no_thread ();
1503 else
1504 switch_to_thread (find_thread_ptid (ptid));
99b3d574
DP
1505}
1506
1507static void
4f8d22e3 1508restore_selected_frame (struct frame_id a_frame_id, int frame_level)
99b3d574 1509{
4f8d22e3
PA
1510 struct frame_info *frame = NULL;
1511 int count;
1512
eb8c0621
TT
1513 /* This means there was no selected frame. */
1514 if (frame_level == -1)
1515 {
1516 select_frame (NULL);
1517 return;
1518 }
1519
4f8d22e3
PA
1520 gdb_assert (frame_level >= 0);
1521
1522 /* Restore by level first, check if the frame id is the same as
1523 expected. If that fails, try restoring by frame id. If that
1524 fails, nothing to do, just warn the user. */
1525
1526 count = frame_level;
1527 frame = find_relative_frame (get_current_frame (), &count);
1528 if (count == 0
1529 && frame != NULL
005ca36a
JB
1530 /* The frame ids must match - either both valid or both outer_frame_id.
1531 The latter case is not failsafe, but since it's highly unlikely
4f8d22e3
PA
1532 the search by level finds the wrong frame, it's 99.9(9)% of
1533 the time (for all practical purposes) safe. */
005ca36a 1534 && frame_id_eq (get_frame_id (frame), a_frame_id))
4f8d22e3
PA
1535 {
1536 /* Cool, all is fine. */
1537 select_frame (frame);
1538 return;
1539 }
99b3d574 1540
4f8d22e3
PA
1541 frame = frame_find_by_id (a_frame_id);
1542 if (frame != NULL)
1543 {
1544 /* Cool, refound it. */
1545 select_frame (frame);
1546 return;
1547 }
99b3d574 1548
0c501536
PA
1549 /* Nothing else to do, the frame layout really changed. Select the
1550 innermost stack frame. */
1551 select_frame (get_current_frame ());
1552
1553 /* Warn the user. */
112e8700 1554 if (frame_level > 0 && !current_uiout->is_mi_like_p ())
99b3d574 1555 {
3e43a32a 1556 warning (_("Couldn't restore frame #%d in "
e0162910 1557 "current thread. Bottom (innermost) frame selected:"),
4f8d22e3
PA
1558 frame_level);
1559 /* For MI, we should probably have a notification about
1560 current frame change. But this error is not very
1561 likely, so don't bother for now. */
08d72866 1562 print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC, 1);
c906108c
SS
1563 }
1564}
1565
5ed8105e 1566scoped_restore_current_thread::~scoped_restore_current_thread ()
6ecce94d 1567{
803bdfe4
YQ
1568 /* If an entry of thread_info was previously selected, it won't be
1569 deleted because we've increased its refcount. The thread represented
1570 by this thread_info entry may have already exited (due to normal exit,
1571 detach, etc), so the thread_info.state is THREAD_EXITED. */
5ed8105e 1572 if (m_thread != NULL
803bdfe4
YQ
1573 /* If the previously selected thread belonged to a process that has
1574 in the mean time exited (or killed, detached, etc.), then don't revert
1575 back to it, but instead simply drop back to no thread selected. */
5ed8105e
PA
1576 && m_inf->pid != 0)
1577 switch_to_thread (m_thread);
88fc996f 1578 else
6c95b8df 1579 {
3a3fd0fd 1580 switch_to_no_thread ();
5ed8105e 1581 set_current_inferior (m_inf);
6c95b8df 1582 }
94cc34af 1583
4f8d22e3
PA
1584 /* The running state of the originally selected thread may have
1585 changed, so we have to recheck it here. */
9295a5a9 1586 if (inferior_ptid != null_ptid
5ed8105e 1587 && m_was_stopped
4f8d22e3
PA
1588 && is_stopped (inferior_ptid)
1589 && target_has_registers
1590 && target_has_stack
1591 && target_has_memory)
5ed8105e 1592 restore_selected_frame (m_selected_frame_id, m_selected_frame_level);
5d502164 1593
5ed8105e
PA
1594 if (m_thread != NULL)
1595 m_thread->decref ();
1596 m_inf->decref ();
6ecce94d
AC
1597}
1598
5ed8105e 1599scoped_restore_current_thread::scoped_restore_current_thread ()
6ecce94d 1600{
5ed8105e
PA
1601 m_thread = NULL;
1602 m_inf = current_inferior ();
4f8d22e3 1603
9295a5a9 1604 if (inferior_ptid != null_ptid)
d729566a 1605 {
f6223dbb 1606 thread_info *tp = find_thread_ptid (inferior_ptid);
12316564
YQ
1607 struct frame_info *frame;
1608
f6223dbb
PA
1609 gdb_assert (tp != NULL);
1610
5ed8105e
PA
1611 m_was_stopped = tp->state == THREAD_STOPPED;
1612 if (m_was_stopped
d729566a
PA
1613 && target_has_registers
1614 && target_has_stack
1615 && target_has_memory)
eb8c0621
TT
1616 {
1617 /* When processing internal events, there might not be a
1618 selected frame. If we naively call get_selected_frame
1619 here, then we can end up reading debuginfo for the
1620 current frame, but we don't generally need the debuginfo
1621 at this point. */
1622 frame = get_selected_frame_if_set ();
1623 }
d729566a
PA
1624 else
1625 frame = NULL;
4f8d22e3 1626
5ed8105e
PA
1627 m_selected_frame_id = get_frame_id (frame);
1628 m_selected_frame_level = frame_relative_level (frame);
d729566a 1629
f6223dbb 1630 tp->incref ();
5ed8105e 1631 m_thread = tp;
d729566a 1632 }
4f8d22e3 1633
5ed8105e 1634 m_inf->incref ();
6ecce94d
AC
1635}
1636
43792cf0
PA
1637/* See gdbthread.h. */
1638
f303dbd6
PA
1639int
1640show_thread_that_caused_stop (void)
1641{
1642 return highest_thread_num > 1;
1643}
1644
1645/* See gdbthread.h. */
1646
5d5658a1
PA
1647int
1648show_inferior_qualified_tids (void)
1649{
1650 return (inferior_list->next != NULL || inferior_list->num != 1);
1651}
1652
1653/* See gdbthread.h. */
1654
43792cf0
PA
1655const char *
1656print_thread_id (struct thread_info *thr)
1657{
1658 char *s = get_print_cell ();
1659
5d5658a1
PA
1660 if (show_inferior_qualified_tids ())
1661 xsnprintf (s, PRINT_CELL_SIZE, "%d.%d", thr->inf->num, thr->per_inf_num);
1662 else
1663 xsnprintf (s, PRINT_CELL_SIZE, "%d", thr->per_inf_num);
43792cf0
PA
1664 return s;
1665}
1666
c6609450
PA
1667/* If true, tp_array_compar should sort in ascending order, otherwise
1668 in descending order. */
253828f1 1669
c6609450 1670static bool tp_array_compar_ascending;
253828f1 1671
5d5658a1
PA
1672/* Sort an array for struct thread_info pointers by thread ID (first
1673 by inferior number, and then by per-inferior thread number). The
1674 order is determined by TP_ARRAY_COMPAR_ASCENDING. */
253828f1 1675
c6609450
PA
1676static bool
1677tp_array_compar (const thread_info *a, const thread_info *b)
253828f1 1678{
5d5658a1
PA
1679 if (a->inf->num != b->inf->num)
1680 {
c6609450
PA
1681 if (tp_array_compar_ascending)
1682 return a->inf->num < b->inf->num;
1683 else
1684 return a->inf->num > b->inf->num;
5d5658a1 1685 }
253828f1 1686
c6609450
PA
1687 if (tp_array_compar_ascending)
1688 return (a->per_inf_num < b->per_inf_num);
1689 else
1690 return (a->per_inf_num > b->per_inf_num);
253828f1
JK
1691}
1692
c906108c
SS
1693/* Apply a GDB command to a list of threads. List syntax is a whitespace
1694 seperated list of numbers, or ranges, or the keyword `all'. Ranges consist
1695 of two numbers seperated by a hyphen. Examples:
1696
c5aa993b
JM
1697 thread apply 1 2 7 4 backtrace Apply backtrace cmd to threads 1,2,7,4
1698 thread apply 2-7 9 p foo(1) Apply p foo(1) cmd to threads 2->7 & 9
c378eb4e 1699 thread apply all p x/i $pc Apply x/i $pc cmd to all threads. */
c906108c
SS
1700
1701static void
fba45db2 1702thread_apply_all_command (char *cmd, int from_tty)
c906108c 1703{
e35ce267 1704 char *saved_cmd;
c906108c 1705
c6609450 1706 tp_array_compar_ascending = false;
253828f1
JK
1707 if (cmd != NULL
1708 && check_for_argument (&cmd, "-ascending", strlen ("-ascending")))
1709 {
1710 cmd = skip_spaces (cmd);
c6609450 1711 tp_array_compar_ascending = true;
253828f1
JK
1712 }
1713
c906108c 1714 if (cmd == NULL || *cmd == '\000')
8a3fe4f8 1715 error (_("Please specify a command following the thread ID list"));
94cc34af 1716
dc146f7c 1717 update_thread_list ();
e9d196c5 1718
e35ce267 1719 /* Save a copy of the command in case it is clobbered by
c378eb4e 1720 execute_command. */
5b616ba1 1721 saved_cmd = xstrdup (cmd);
94cc34af 1722 make_cleanup (xfree, saved_cmd);
94cc34af 1723
c6609450 1724 int tc = live_threads_count ();
a25d8bf9 1725 if (tc != 0)
054e8d9e 1726 {
c6609450
PA
1727 /* Save a copy of the thread list and increment each thread's
1728 refcount while executing the command in the context of each
1729 thread, in case the command is one that wipes threads. E.g.,
1730 detach, kill, disconnect, etc., or even normally continuing
1731 over an inferior or thread exit. */
1732 std::vector<thread_info *> thr_list_cpy;
1733 thr_list_cpy.reserve (tc);
054e8d9e 1734
c6609450
PA
1735 {
1736 thread_info *tp;
054e8d9e 1737
c6609450
PA
1738 ALL_NON_EXITED_THREADS (tp)
1739 {
1740 thr_list_cpy.push_back (tp);
1741 }
1742
1743 gdb_assert (thr_list_cpy.size () == tc);
1744 }
054e8d9e 1745
c6609450
PA
1746 /* Increment the refcounts, and restore them back on scope
1747 exit. */
1748 scoped_inc_dec_ref inc_dec_ref (thr_list_cpy);
253828f1 1749
c6609450 1750 std::sort (thr_list_cpy.begin (), thr_list_cpy.end (), tp_array_compar);
054e8d9e 1751
5ed8105e
PA
1752 scoped_restore_current_thread restore_thread;
1753
c6609450
PA
1754 for (thread_info *thr : thr_list_cpy)
1755 if (thread_alive (thr))
ae0eee42 1756 {
c6609450 1757 switch_to_thread (thr->ptid);
ae0eee42 1758 printf_filtered (_("\nThread %s (%s):\n"),
c6609450 1759 print_thread_id (thr),
054e8d9e 1760 target_pid_to_str (inferior_ptid));
ae0eee42 1761 execute_command (cmd, from_tty);
054e8d9e 1762
ae0eee42
PA
1763 /* Restore exact command used previously. */
1764 strcpy (cmd, saved_cmd);
054e8d9e
AA
1765 }
1766 }
c906108c
SS
1767}
1768
43792cf0
PA
1769/* Implementation of the "thread apply" command. */
1770
c906108c 1771static void
fba45db2 1772thread_apply_command (char *tidlist, int from_tty)
c906108c 1773{
3f5b7598 1774 char *cmd = NULL;
c906108c 1775 struct cleanup *old_chain;
e35ce267 1776 char *saved_cmd;
bfd28288 1777 tid_range_parser parser;
c906108c
SS
1778
1779 if (tidlist == NULL || *tidlist == '\000')
8a3fe4f8 1780 error (_("Please specify a thread ID list"));
c906108c 1781
bfd28288
PA
1782 parser.init (tidlist, current_inferior ()->num);
1783 while (!parser.finished ())
3f5b7598
PA
1784 {
1785 int inf_num, thr_start, thr_end;
c906108c 1786
bfd28288 1787 if (!parser.get_tid_range (&inf_num, &thr_start, &thr_end))
3f5b7598 1788 {
bfd28288 1789 cmd = (char *) parser.cur_tok ();
3f5b7598
PA
1790 break;
1791 }
1792 }
1793
1794 if (cmd == NULL)
8a3fe4f8 1795 error (_("Please specify a command following the thread ID list"));
c906108c 1796
3f5b7598
PA
1797 if (tidlist == cmd || !isalpha (cmd[0]))
1798 invalid_thread_id_error (cmd);
1799
e35ce267 1800 /* Save a copy of the command in case it is clobbered by
c378eb4e 1801 execute_command. */
5b616ba1 1802 saved_cmd = xstrdup (cmd);
4f8d22e3 1803 old_chain = make_cleanup (xfree, saved_cmd);
197f0a60 1804
5ed8105e 1805 scoped_restore_current_thread restore_thread;
c906108c 1806
bfd28288
PA
1807 parser.init (tidlist, current_inferior ()->num);
1808 while (!parser.finished () && parser.cur_tok () < cmd)
5d5658a1
PA
1809 {
1810 struct thread_info *tp = NULL;
1811 struct inferior *inf;
1812 int inf_num, thr_num;
65fc9b77 1813
bfd28288 1814 parser.get_tid (&inf_num, &thr_num);
5d5658a1
PA
1815 inf = find_inferior_id (inf_num);
1816 if (inf != NULL)
1817 tp = find_thread_id (inf, thr_num);
71ef29a8 1818
bfd28288 1819 if (parser.in_star_range ())
71ef29a8
PA
1820 {
1821 if (inf == NULL)
1822 {
1823 warning (_("Unknown inferior %d"), inf_num);
bfd28288 1824 parser.skip_range ();
71ef29a8
PA
1825 continue;
1826 }
1827
1828 /* No use looking for threads past the highest thread number
1829 the inferior ever had. */
1830 if (thr_num >= inf->highest_thread_num)
bfd28288 1831 parser.skip_range ();
71ef29a8
PA
1832
1833 /* Be quiet about unknown threads numbers. */
1834 if (tp == NULL)
1835 continue;
1836 }
1837
5d5658a1
PA
1838 if (tp == NULL)
1839 {
bfd28288 1840 if (show_inferior_qualified_tids () || parser.tid_is_qualified ())
5d5658a1
PA
1841 warning (_("Unknown thread %d.%d"), inf_num, thr_num);
1842 else
1843 warning (_("Unknown thread %d"), thr_num);
1844 continue;
1845 }
c906108c 1846
5d5658a1 1847 if (!thread_alive (tp))
65ebfb52 1848 {
5d5658a1
PA
1849 warning (_("Thread %s has terminated."), print_thread_id (tp));
1850 continue;
1851 }
4f8d22e3 1852
5d5658a1 1853 switch_to_thread (tp->ptid);
4f8d22e3 1854
5d5658a1
PA
1855 printf_filtered (_("\nThread %s (%s):\n"), print_thread_id (tp),
1856 target_pid_to_str (inferior_ptid));
1857 execute_command (cmd, from_tty);
1858
1859 /* Restore exact command used previously. */
1860 strcpy (cmd, saved_cmd);
c906108c 1861 }
6ecce94d
AC
1862
1863 do_cleanups (old_chain);
c906108c
SS
1864}
1865
1866/* Switch to the specified thread. Will dispatch off to thread_apply_command
1867 if prefix of arg is `apply'. */
1868
f0e8c4c5 1869void
fba45db2 1870thread_command (char *tidstr, int from_tty)
c906108c 1871{
4034d0ff 1872 if (tidstr == NULL)
c906108c 1873 {
9295a5a9 1874 if (inferior_ptid == null_ptid)
d729566a
PA
1875 error (_("No thread selected"));
1876
c906108c 1877 if (target_has_stack)
4f8d22e3 1878 {
43792cf0
PA
1879 struct thread_info *tp = inferior_thread ();
1880
4f8d22e3 1881 if (is_exited (inferior_ptid))
43792cf0
PA
1882 printf_filtered (_("[Current thread is %s (%s) (exited)]\n"),
1883 print_thread_id (tp),
54ba13f7 1884 target_pid_to_str (inferior_ptid));
4f8d22e3 1885 else
43792cf0
PA
1886 printf_filtered (_("[Current thread is %s (%s)]\n"),
1887 print_thread_id (tp),
54ba13f7 1888 target_pid_to_str (inferior_ptid));
4f8d22e3 1889 }
c906108c 1890 else
8a3fe4f8 1891 error (_("No stack."));
c906108c 1892 }
4034d0ff
AT
1893 else
1894 {
1895 ptid_t previous_ptid = inferior_ptid;
1896 enum gdb_rc result;
1897
1898 result = gdb_thread_select (current_uiout, tidstr, NULL);
1899
1900 /* If thread switch did not succeed don't notify or print. */
1901 if (result == GDB_RC_FAIL)
1902 return;
c5394b80 1903
ae0eee42
PA
1904 /* Print if the thread has not changed, otherwise an event will
1905 be sent. */
9295a5a9 1906 if (inferior_ptid == previous_ptid)
4034d0ff
AT
1907 {
1908 print_selected_thread_frame (current_uiout,
1909 USER_SELECTED_THREAD
1910 | USER_SELECTED_FRAME);
1911 }
1912 else
1913 {
1914 observer_notify_user_selected_context_changed (USER_SELECTED_THREAD
1915 | USER_SELECTED_FRAME);
1916 }
1917 }
c5394b80
JM
1918}
1919
4694da01
TT
1920/* Implementation of `thread name'. */
1921
1922static void
1923thread_name_command (char *arg, int from_tty)
1924{
1925 struct thread_info *info;
1926
9295a5a9 1927 if (inferior_ptid == null_ptid)
4694da01
TT
1928 error (_("No thread selected"));
1929
529480d0 1930 arg = skip_spaces (arg);
4694da01
TT
1931
1932 info = inferior_thread ();
1933 xfree (info->name);
1934 info->name = arg ? xstrdup (arg) : NULL;
1935}
1936
60f98dde
MS
1937/* Find thread ids with a name, target pid, or extra info matching ARG. */
1938
1939static void
1940thread_find_command (char *arg, int from_tty)
1941{
1942 struct thread_info *tp;
73ede765 1943 const char *tmp;
60f98dde
MS
1944 unsigned long match = 0;
1945
1946 if (arg == NULL || *arg == '\0')
1947 error (_("Command requires an argument."));
1948
1949 tmp = re_comp (arg);
1950 if (tmp != 0)
1951 error (_("Invalid regexp (%s): %s"), tmp, arg);
1952
1953 update_thread_list ();
1954 for (tp = thread_list; tp; tp = tp->next)
1955 {
1956 if (tp->name != NULL && re_exec (tp->name))
1957 {
43792cf0
PA
1958 printf_filtered (_("Thread %s has name '%s'\n"),
1959 print_thread_id (tp), tp->name);
60f98dde
MS
1960 match++;
1961 }
1962
1963 tmp = target_thread_name (tp);
1964 if (tmp != NULL && re_exec (tmp))
1965 {
43792cf0
PA
1966 printf_filtered (_("Thread %s has target name '%s'\n"),
1967 print_thread_id (tp), tmp);
60f98dde
MS
1968 match++;
1969 }
1970
1971 tmp = target_pid_to_str (tp->ptid);
1972 if (tmp != NULL && re_exec (tmp))
1973 {
43792cf0
PA
1974 printf_filtered (_("Thread %s has target id '%s'\n"),
1975 print_thread_id (tp), tmp);
60f98dde
MS
1976 match++;
1977 }
1978
1979 tmp = target_extra_thread_info (tp);
1980 if (tmp != NULL && re_exec (tmp))
1981 {
43792cf0
PA
1982 printf_filtered (_("Thread %s has extra info '%s'\n"),
1983 print_thread_id (tp), tmp);
60f98dde
MS
1984 match++;
1985 }
1986 }
1987 if (!match)
1988 printf_filtered (_("No threads match '%s'\n"), arg);
1989}
1990
93815fbf
VP
1991/* Print notices when new threads are attached and detached. */
1992int print_thread_events = 1;
1993static void
1994show_print_thread_events (struct ui_file *file, int from_tty,
ae0eee42 1995 struct cmd_list_element *c, const char *value)
93815fbf 1996{
3e43a32a
MS
1997 fprintf_filtered (file,
1998 _("Printing of thread events is %s.\n"),
ae0eee42 1999 value);
93815fbf
VP
2000}
2001
c5394b80 2002static int
5d5658a1 2003do_captured_thread_select (struct ui_out *uiout, void *tidstr_v)
c5394b80 2004{
c0518081 2005 const char *tidstr = (const char *) tidstr_v;
c5394b80
JM
2006 struct thread_info *tp;
2007
112e8700 2008 if (uiout->is_mi_like_p ())
5d5658a1
PA
2009 {
2010 int num = value_as_long (parse_and_eval (tidstr));
c906108c 2011
5d5658a1
PA
2012 tp = find_thread_global_id (num);
2013 if (tp == NULL)
2014 error (_("Thread ID %d not known."), num);
2015 }
2016 else
2017 {
2018 tp = parse_thread_id (tidstr, NULL);
2019 gdb_assert (tp != NULL);
2020 }
c906108c
SS
2021
2022 if (!thread_alive (tp))
5d5658a1 2023 error (_("Thread ID %s has terminated."), tidstr);
c906108c 2024
dcf4fbde 2025 switch_to_thread (tp->ptid);
c906108c 2026
db5a7484
NR
2027 annotate_thread_changed ();
2028
4034d0ff
AT
2029 /* Since the current thread may have changed, see if there is any
2030 exited thread we can now delete. */
2031 prune_threads ();
2032
2033 return GDB_RC_OK;
2034}
2035
2036/* Print thread and frame switch command response. */
2037
2038void
2039print_selected_thread_frame (struct ui_out *uiout,
2040 user_selected_what selection)
2041{
2042 struct thread_info *tp = inferior_thread ();
2043 struct inferior *inf = current_inferior ();
2044
2045 if (selection & USER_SELECTED_THREAD)
5d5658a1 2046 {
112e8700 2047 if (uiout->is_mi_like_p ())
4034d0ff 2048 {
112e8700 2049 uiout->field_int ("new-thread-id",
4034d0ff
AT
2050 inferior_thread ()->global_num);
2051 }
2052 else
2053 {
112e8700
SM
2054 uiout->text ("[Switching to thread ");
2055 uiout->field_string ("new-thread-id", print_thread_id (tp));
2056 uiout->text (" (");
2057 uiout->text (target_pid_to_str (inferior_ptid));
2058 uiout->text (")]");
4034d0ff 2059 }
5d5658a1 2060 }
c5394b80 2061
30596231 2062 if (tp->state == THREAD_RUNNING)
98871305 2063 {
4034d0ff 2064 if (selection & USER_SELECTED_THREAD)
112e8700 2065 uiout->text ("(running)\n");
98871305 2066 }
4034d0ff
AT
2067 else if (selection & USER_SELECTED_FRAME)
2068 {
2069 if (selection & USER_SELECTED_THREAD)
112e8700 2070 uiout->text ("\n");
4f8d22e3 2071
4034d0ff
AT
2072 if (has_stack_frames ())
2073 print_stack_frame_to_uiout (uiout, get_selected_frame (NULL),
2074 1, SRC_AND_LOC, 1);
2075 }
c5394b80
JM
2076}
2077
2078enum gdb_rc
ce43223b 2079gdb_thread_select (struct ui_out *uiout, char *tidstr, char **error_message)
c5394b80 2080{
b0b13bb4
DJ
2081 if (catch_exceptions_with_msg (uiout, do_captured_thread_select, tidstr,
2082 error_message, RETURN_MASK_ALL) < 0)
2083 return GDB_RC_FAIL;
2084 return GDB_RC_OK;
c906108c
SS
2085}
2086
b57bacec
PA
2087/* Update the 'threads_executing' global based on the threads we know
2088 about right now. */
2089
2090static void
2091update_threads_executing (void)
2092{
2093 struct thread_info *tp;
2094
2095 threads_executing = 0;
2096 ALL_NON_EXITED_THREADS (tp)
2097 {
2098 if (tp->executing)
2099 {
2100 threads_executing = 1;
2101 break;
2102 }
2103 }
2104}
2105
dc146f7c
VP
2106void
2107update_thread_list (void)
2108{
e8032dde 2109 target_update_thread_list ();
b57bacec 2110 update_threads_executing ();
dc146f7c
VP
2111}
2112
663f6d42
PA
2113/* Return a new value for the selected thread's id. Return a value of
2114 0 if no thread is selected. If GLOBAL is true, return the thread's
2115 global number. Otherwise return the per-inferior number. */
2116
2117static struct value *
2118thread_num_make_value_helper (struct gdbarch *gdbarch, int global)
2119{
2120 struct thread_info *tp = find_thread_ptid (inferior_ptid);
2121 int int_val;
2122
2123 if (tp == NULL)
2124 int_val = 0;
2125 else if (global)
2126 int_val = tp->global_num;
2127 else
2128 int_val = tp->per_inf_num;
2129
2130 return value_from_longest (builtin_type (gdbarch)->builtin_int, int_val);
2131}
2132
5d5658a1
PA
2133/* Return a new value for the selected thread's per-inferior thread
2134 number. Return a value of 0 if no thread is selected, or no
2135 threads exist. */
6aed2dbc
SS
2136
2137static struct value *
ae0eee42
PA
2138thread_id_per_inf_num_make_value (struct gdbarch *gdbarch,
2139 struct internalvar *var,
663f6d42 2140 void *ignore)
6aed2dbc 2141{
663f6d42
PA
2142 return thread_num_make_value_helper (gdbarch, 0);
2143}
2144
2145/* Return a new value for the selected thread's global id. Return a
2146 value of 0 if no thread is selected, or no threads exist. */
6aed2dbc 2147
663f6d42
PA
2148static struct value *
2149global_thread_id_make_value (struct gdbarch *gdbarch, struct internalvar *var,
2150 void *ignore)
2151{
2152 return thread_num_make_value_helper (gdbarch, 1);
6aed2dbc
SS
2153}
2154
c906108c
SS
2155/* Commands with a prefix of `thread'. */
2156struct cmd_list_element *thread_cmd_list = NULL;
2157
22d2b532
SDJ
2158/* Implementation of `thread' variable. */
2159
2160static const struct internalvar_funcs thread_funcs =
2161{
663f6d42
PA
2162 thread_id_per_inf_num_make_value,
2163 NULL,
2164 NULL
2165};
2166
2167/* Implementation of `gthread' variable. */
2168
2169static const struct internalvar_funcs gthread_funcs =
2170{
2171 global_thread_id_make_value,
22d2b532
SDJ
2172 NULL,
2173 NULL
2174};
2175
c906108c 2176void
fba45db2 2177_initialize_thread (void)
c906108c
SS
2178{
2179 static struct cmd_list_element *thread_apply_list = NULL;
c906108c 2180
ae0eee42 2181 add_info ("threads", info_threads_command,
60f98dde 2182 _("Display currently known threads.\n\
c84f6bbf
PA
2183Usage: info threads [-gid] [ID]...\n\
2184-gid: Show global thread IDs.\n\
5d5658a1
PA
2185If ID is given, it is a space-separated list of IDs of threads to display.\n\
2186Otherwise, all threads are displayed."));
c906108c 2187
d729566a 2188 add_prefix_cmd ("thread", class_run, thread_command, _("\
1bedd215
AC
2189Use this command to switch between threads.\n\
2190The new thread ID must be currently known."),
d729566a 2191 &thread_cmd_list, "thread ", 1, &cmdlist);
c906108c 2192
d729566a
PA
2193 add_prefix_cmd ("apply", class_run, thread_apply_command,
2194 _("Apply a command to a list of threads."),
2195 &thread_apply_list, "thread apply ", 1, &thread_cmd_list);
c906108c 2196
d729566a 2197 add_cmd ("all", class_run, thread_apply_all_command,
253828f1
JK
2198 _("\
2199Apply a command to all threads.\n\
2200\n\
2201Usage: thread apply all [-ascending] <command>\n\
2202-ascending: Call <command> for all threads in ascending order.\n\
2203 The default is descending order.\
2204"),
2205 &thread_apply_list);
c906108c 2206
4694da01
TT
2207 add_cmd ("name", class_run, thread_name_command,
2208 _("Set the current thread's name.\n\
2209Usage: thread name [NAME]\n\
2210If NAME is not given, then any existing name is removed."), &thread_cmd_list);
2211
60f98dde
MS
2212 add_cmd ("find", class_run, thread_find_command, _("\
2213Find threads that match a regular expression.\n\
2214Usage: thread find REGEXP\n\
2215Will display thread ids whose name, target ID, or extra info matches REGEXP."),
2216 &thread_cmd_list);
2217
4f45d445 2218 add_com_alias ("t", "thread", class_run, 1);
93815fbf
VP
2219
2220 add_setshow_boolean_cmd ("thread-events", no_class,
ae0eee42 2221 &print_thread_events, _("\
11c68c47
EZ
2222Set printing of thread events (such as thread start and exit)."), _("\
2223Show printing of thread events (such as thread start and exit)."), NULL,
ae0eee42
PA
2224 NULL,
2225 show_print_thread_events,
2226 &setprintlist, &showprintlist);
6aed2dbc 2227
22d2b532 2228 create_internalvar_type_lazy ("_thread", &thread_funcs, NULL);
663f6d42 2229 create_internalvar_type_lazy ("_gthread", &gthread_funcs, NULL);
c906108c 2230}
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