gdbserver/linux-low: turn '{collect, supply}_ptrace_register' into methods
[deliverable/binutils-gdb.git] / gdb / thread.c
1 /* Multi-process/thread control for GDB, the GNU debugger.
2
3 Copyright (C) 1986-2020 Free Software Foundation, Inc.
4
5 Contributed by Lynx Real-Time Systems, Inc. Los Gatos, CA.
6
7 This file is part of GDB.
8
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 3 of the License, or
12 (at your option) any later version.
13
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with this program. If not, see <http://www.gnu.org/licenses/>. */
21
22 #include "defs.h"
23 #include "symtab.h"
24 #include "frame.h"
25 #include "inferior.h"
26 #include "gdbsupport/environ.h"
27 #include "value.h"
28 #include "target.h"
29 #include "gdbthread.h"
30 #include "command.h"
31 #include "gdbcmd.h"
32 #include "regcache.h"
33 #include "btrace.h"
34
35 #include <ctype.h>
36 #include <sys/types.h>
37 #include <signal.h>
38 #include "ui-out.h"
39 #include "observable.h"
40 #include "annotate.h"
41 #include "cli/cli-decode.h"
42 #include "cli/cli-option.h"
43 #include "gdb_regex.h"
44 #include "cli/cli-utils.h"
45 #include "thread-fsm.h"
46 #include "tid-parse.h"
47 #include <algorithm>
48 #include "gdbsupport/gdb_optional.h"
49 #include "inline-frame.h"
50 #include "stack.h"
51
52 /* Definition of struct thread_info exported to gdbthread.h. */
53
54 /* Prototypes for local functions. */
55
56 static int highest_thread_num;
57
58 /* RAII type used to increase / decrease the refcount of each thread
59 in a given list of threads. */
60
61 class scoped_inc_dec_ref
62 {
63 public:
64 explicit scoped_inc_dec_ref (const std::vector<thread_info *> &thrds)
65 : m_thrds (thrds)
66 {
67 for (thread_info *thr : m_thrds)
68 thr->incref ();
69 }
70
71 ~scoped_inc_dec_ref ()
72 {
73 for (thread_info *thr : m_thrds)
74 thr->decref ();
75 }
76
77 private:
78 const std::vector<thread_info *> &m_thrds;
79 };
80
81
82 struct thread_info*
83 inferior_thread (void)
84 {
85 struct thread_info *tp = find_thread_ptid (current_inferior (), inferior_ptid);
86 gdb_assert (tp);
87 return tp;
88 }
89
90 /* Delete the breakpoint pointed at by BP_P, if there's one. */
91
92 static void
93 delete_thread_breakpoint (struct breakpoint **bp_p)
94 {
95 if (*bp_p != NULL)
96 {
97 delete_breakpoint (*bp_p);
98 *bp_p = NULL;
99 }
100 }
101
102 void
103 delete_step_resume_breakpoint (struct thread_info *tp)
104 {
105 if (tp != NULL)
106 delete_thread_breakpoint (&tp->control.step_resume_breakpoint);
107 }
108
109 void
110 delete_exception_resume_breakpoint (struct thread_info *tp)
111 {
112 if (tp != NULL)
113 delete_thread_breakpoint (&tp->control.exception_resume_breakpoint);
114 }
115
116 /* See gdbthread.h. */
117
118 void
119 delete_single_step_breakpoints (struct thread_info *tp)
120 {
121 if (tp != NULL)
122 delete_thread_breakpoint (&tp->control.single_step_breakpoints);
123 }
124
125 /* Delete the breakpoint pointed at by BP_P at the next stop, if
126 there's one. */
127
128 static void
129 delete_at_next_stop (struct breakpoint **bp)
130 {
131 if (*bp != NULL)
132 {
133 (*bp)->disposition = disp_del_at_next_stop;
134 *bp = NULL;
135 }
136 }
137
138 /* See gdbthread.h. */
139
140 int
141 thread_has_single_step_breakpoints_set (struct thread_info *tp)
142 {
143 return tp->control.single_step_breakpoints != NULL;
144 }
145
146 /* See gdbthread.h. */
147
148 int
149 thread_has_single_step_breakpoint_here (struct thread_info *tp,
150 const address_space *aspace,
151 CORE_ADDR addr)
152 {
153 struct breakpoint *ss_bps = tp->control.single_step_breakpoints;
154
155 return (ss_bps != NULL
156 && breakpoint_has_location_inserted_here (ss_bps, aspace, addr));
157 }
158
159 /* See gdbthread.h. */
160
161 void
162 thread_cancel_execution_command (struct thread_info *thr)
163 {
164 if (thr->thread_fsm != NULL)
165 {
166 thr->thread_fsm->clean_up (thr);
167 delete thr->thread_fsm;
168 thr->thread_fsm = NULL;
169 }
170 }
171
172 static void
173 clear_thread_inferior_resources (struct thread_info *tp)
174 {
175 /* NOTE: this will take care of any left-over step_resume breakpoints,
176 but not any user-specified thread-specific breakpoints. We can not
177 delete the breakpoint straight-off, because the inferior might not
178 be stopped at the moment. */
179 delete_at_next_stop (&tp->control.step_resume_breakpoint);
180 delete_at_next_stop (&tp->control.exception_resume_breakpoint);
181 delete_at_next_stop (&tp->control.single_step_breakpoints);
182
183 delete_longjmp_breakpoint_at_next_stop (tp->global_num);
184
185 bpstat_clear (&tp->control.stop_bpstat);
186
187 btrace_teardown (tp);
188
189 thread_cancel_execution_command (tp);
190
191 clear_inline_frame_state (tp);
192 }
193
194 /* Set the TP's state as exited. */
195
196 static void
197 set_thread_exited (thread_info *tp, int silent)
198 {
199 /* Dead threads don't need to step-over. Remove from queue. */
200 if (tp->step_over_next != NULL)
201 thread_step_over_chain_remove (tp);
202
203 if (tp->state != THREAD_EXITED)
204 {
205 gdb::observers::thread_exit.notify (tp, silent);
206
207 /* Tag it as exited. */
208 tp->state = THREAD_EXITED;
209
210 /* Clear breakpoints, etc. associated with this thread. */
211 clear_thread_inferior_resources (tp);
212 }
213 }
214
215 void
216 init_thread_list (void)
217 {
218 highest_thread_num = 0;
219
220 for (thread_info *tp : all_threads_safe ())
221 {
222 inferior *inf = tp->inf;
223
224 if (tp->deletable ())
225 delete tp;
226 else
227 set_thread_exited (tp, 1);
228
229 inf->thread_list = NULL;
230 }
231 }
232
233 /* Allocate a new thread of inferior INF with target id PTID and add
234 it to the thread list. */
235
236 static struct thread_info *
237 new_thread (struct inferior *inf, ptid_t ptid)
238 {
239 thread_info *tp = new thread_info (inf, ptid);
240
241 if (inf->thread_list == NULL)
242 inf->thread_list = tp;
243 else
244 {
245 struct thread_info *last;
246
247 for (last = inf->thread_list; last->next != NULL; last = last->next)
248 ;
249 last->next = tp;
250 }
251
252 return tp;
253 }
254
255 struct thread_info *
256 add_thread_silent (process_stratum_target *targ, ptid_t ptid)
257 {
258 inferior *inf;
259
260 thread_info *tp = find_thread_ptid (targ, ptid);
261 if (tp)
262 /* Found an old thread with the same id. It has to be dead,
263 otherwise we wouldn't be adding a new thread with the same id.
264 The OS is reusing this id --- delete it, and recreate a new
265 one. */
266 {
267 /* In addition to deleting the thread, if this is the current
268 thread, then we need to take care that delete_thread doesn't
269 really delete the thread if it is inferior_ptid. Create a
270 new template thread in the list with an invalid ptid, switch
271 to it, delete the original thread, reset the new thread's
272 ptid, and switch to it. */
273
274 if (inferior_ptid == ptid)
275 {
276 thread_info *new_thr = new_thread (tp->inf, null_ptid);
277
278 /* Make switch_to_thread not read from the thread. */
279 new_thr->state = THREAD_EXITED;
280 switch_to_no_thread ();
281
282 /* Now we can delete it. */
283 delete_thread (tp);
284
285 /* Now reset its ptid, and reswitch inferior_ptid to it. */
286 new_thr->ptid = ptid;
287 new_thr->state = THREAD_STOPPED;
288 switch_to_thread (new_thr);
289
290 gdb::observers::new_thread.notify (new_thr);
291
292 /* All done. */
293 return new_thr;
294 }
295
296 inf = tp->inf;
297
298 /* Just go ahead and delete it. */
299 delete_thread (tp);
300 }
301 else
302 inf = find_inferior_ptid (targ, ptid);
303
304 tp = new_thread (inf, ptid);
305 gdb::observers::new_thread.notify (tp);
306
307 return tp;
308 }
309
310 struct thread_info *
311 add_thread_with_info (process_stratum_target *targ, ptid_t ptid,
312 private_thread_info *priv)
313 {
314 thread_info *result = add_thread_silent (targ, ptid);
315
316 result->priv.reset (priv);
317
318 if (print_thread_events)
319 printf_unfiltered (_("[New %s]\n"), target_pid_to_str (ptid).c_str ());
320
321 annotate_new_thread ();
322 return result;
323 }
324
325 struct thread_info *
326 add_thread (process_stratum_target *targ, ptid_t ptid)
327 {
328 return add_thread_with_info (targ, ptid, NULL);
329 }
330
331 private_thread_info::~private_thread_info () = default;
332
333 thread_info::thread_info (struct inferior *inf_, ptid_t ptid_)
334 : ptid (ptid_), inf (inf_)
335 {
336 gdb_assert (inf_ != NULL);
337
338 this->global_num = ++highest_thread_num;
339 this->per_inf_num = ++inf_->highest_thread_num;
340
341 /* Nothing to follow yet. */
342 memset (&this->pending_follow, 0, sizeof (this->pending_follow));
343 this->pending_follow.kind = TARGET_WAITKIND_SPURIOUS;
344 this->suspend.waitstatus.kind = TARGET_WAITKIND_IGNORE;
345 }
346
347 thread_info::~thread_info ()
348 {
349 xfree (this->name);
350 }
351
352 /* Returns true if THR is the current thread. */
353
354 static bool
355 is_current_thread (const thread_info *thr)
356 {
357 return thr->inf == current_inferior () && thr->ptid == inferior_ptid;
358 }
359
360 /* See gdbthread.h. */
361
362 bool
363 thread_info::deletable () const
364 {
365 /* If this is the current thread, or there's code out there that
366 relies on it existing (refcount > 0) we can't delete yet. */
367 return refcount () == 0 && !is_current_thread (this);
368 }
369
370 /* Add TP to the end of the step-over chain LIST_P. */
371
372 static void
373 step_over_chain_enqueue (struct thread_info **list_p, struct thread_info *tp)
374 {
375 gdb_assert (tp->step_over_next == NULL);
376 gdb_assert (tp->step_over_prev == NULL);
377
378 if (*list_p == NULL)
379 {
380 *list_p = tp;
381 tp->step_over_prev = tp->step_over_next = tp;
382 }
383 else
384 {
385 struct thread_info *head = *list_p;
386 struct thread_info *tail = head->step_over_prev;
387
388 tp->step_over_prev = tail;
389 tp->step_over_next = head;
390 head->step_over_prev = tp;
391 tail->step_over_next = tp;
392 }
393 }
394
395 /* Remove TP from step-over chain LIST_P. */
396
397 static void
398 step_over_chain_remove (struct thread_info **list_p, struct thread_info *tp)
399 {
400 gdb_assert (tp->step_over_next != NULL);
401 gdb_assert (tp->step_over_prev != NULL);
402
403 if (*list_p == tp)
404 {
405 if (tp == tp->step_over_next)
406 *list_p = NULL;
407 else
408 *list_p = tp->step_over_next;
409 }
410
411 tp->step_over_prev->step_over_next = tp->step_over_next;
412 tp->step_over_next->step_over_prev = tp->step_over_prev;
413 tp->step_over_prev = tp->step_over_next = NULL;
414 }
415
416 /* See gdbthread.h. */
417
418 struct thread_info *
419 thread_step_over_chain_next (struct thread_info *tp)
420 {
421 struct thread_info *next = tp->step_over_next;
422
423 return (next == step_over_queue_head ? NULL : next);
424 }
425
426 /* See gdbthread.h. */
427
428 int
429 thread_is_in_step_over_chain (struct thread_info *tp)
430 {
431 return (tp->step_over_next != NULL);
432 }
433
434 /* See gdbthread.h. */
435
436 void
437 thread_step_over_chain_enqueue (struct thread_info *tp)
438 {
439 step_over_chain_enqueue (&step_over_queue_head, tp);
440 }
441
442 /* See gdbthread.h. */
443
444 void
445 thread_step_over_chain_remove (struct thread_info *tp)
446 {
447 step_over_chain_remove (&step_over_queue_head, tp);
448 }
449
450 /* Delete the thread referenced by THR. If SILENT, don't notify
451 the observer of this exit.
452
453 THR must not be NULL or a failed assertion will be raised. */
454
455 static void
456 delete_thread_1 (thread_info *thr, bool silent)
457 {
458 gdb_assert (thr != nullptr);
459
460 struct thread_info *tp, *tpprev = NULL;
461
462 for (tp = thr->inf->thread_list; tp; tpprev = tp, tp = tp->next)
463 if (tp == thr)
464 break;
465
466 if (!tp)
467 return;
468
469 set_thread_exited (tp, silent);
470
471 if (!tp->deletable ())
472 {
473 /* Will be really deleted some other time. */
474 return;
475 }
476
477 if (tpprev)
478 tpprev->next = tp->next;
479 else
480 tp->inf->thread_list = tp->next;
481
482 delete tp;
483 }
484
485 /* Delete thread THREAD and notify of thread exit. If this is the
486 current thread, don't actually delete it, but tag it as exited and
487 do the notification. If this is the user selected thread, clear
488 it. */
489
490 void
491 delete_thread (thread_info *thread)
492 {
493 delete_thread_1 (thread, false /* not silent */);
494 }
495
496 void
497 delete_thread_silent (thread_info *thread)
498 {
499 delete_thread_1 (thread, true /* silent */);
500 }
501
502 struct thread_info *
503 find_thread_global_id (int global_id)
504 {
505 for (thread_info *tp : all_threads ())
506 if (tp->global_num == global_id)
507 return tp;
508
509 return NULL;
510 }
511
512 static struct thread_info *
513 find_thread_id (struct inferior *inf, int thr_num)
514 {
515 for (thread_info *tp : inf->threads ())
516 if (tp->per_inf_num == thr_num)
517 return tp;
518
519 return NULL;
520 }
521
522 /* See gdbthread.h. */
523
524 struct thread_info *
525 find_thread_ptid (process_stratum_target *targ, ptid_t ptid)
526 {
527 inferior *inf = find_inferior_ptid (targ, ptid);
528 if (inf == NULL)
529 return NULL;
530 return find_thread_ptid (inf, ptid);
531 }
532
533 /* See gdbthread.h. */
534
535 struct thread_info *
536 find_thread_ptid (inferior *inf, ptid_t ptid)
537 {
538 for (thread_info *tp : inf->threads ())
539 if (tp->ptid == ptid)
540 return tp;
541
542 return NULL;
543 }
544
545 /* See gdbthread.h. */
546
547 struct thread_info *
548 find_thread_by_handle (gdb::array_view<const gdb_byte> handle,
549 struct inferior *inf)
550 {
551 return target_thread_handle_to_thread_info (handle.data (),
552 handle.size (),
553 inf);
554 }
555
556 /*
557 * Thread iterator function.
558 *
559 * Calls a callback function once for each thread, so long as
560 * the callback function returns false. If the callback function
561 * returns true, the iteration will end and the current thread
562 * will be returned. This can be useful for implementing a
563 * search for a thread with arbitrary attributes, or for applying
564 * some operation to every thread.
565 *
566 * FIXME: some of the existing functionality, such as
567 * "Thread apply all", might be rewritten using this functionality.
568 */
569
570 struct thread_info *
571 iterate_over_threads (int (*callback) (struct thread_info *, void *),
572 void *data)
573 {
574 for (thread_info *tp : all_threads_safe ())
575 if ((*callback) (tp, data))
576 return tp;
577
578 return NULL;
579 }
580
581 /* See gdbthread.h. */
582
583 bool
584 any_thread_p ()
585 {
586 for (thread_info *tp ATTRIBUTE_UNUSED : all_threads ())
587 return true;
588 return false;
589 }
590
591 int
592 thread_count (process_stratum_target *proc_target)
593 {
594 auto rng = all_threads (proc_target);
595 return std::distance (rng.begin (), rng.end ());
596 }
597
598 /* Return the number of non-exited threads in the thread list. */
599
600 static int
601 live_threads_count (void)
602 {
603 auto rng = all_non_exited_threads ();
604 return std::distance (rng.begin (), rng.end ());
605 }
606
607 int
608 valid_global_thread_id (int global_id)
609 {
610 for (thread_info *tp : all_threads ())
611 if (tp->global_num == global_id)
612 return 1;
613
614 return 0;
615 }
616
617 bool
618 in_thread_list (process_stratum_target *targ, ptid_t ptid)
619 {
620 return find_thread_ptid (targ, ptid) != nullptr;
621 }
622
623 /* Finds the first thread of the inferior. */
624
625 thread_info *
626 first_thread_of_inferior (inferior *inf)
627 {
628 return inf->thread_list;
629 }
630
631 thread_info *
632 any_thread_of_inferior (inferior *inf)
633 {
634 gdb_assert (inf->pid != 0);
635
636 /* Prefer the current thread. */
637 if (inf == current_inferior ())
638 return inferior_thread ();
639
640 for (thread_info *tp : inf->non_exited_threads ())
641 return tp;
642
643 return NULL;
644 }
645
646 thread_info *
647 any_live_thread_of_inferior (inferior *inf)
648 {
649 struct thread_info *curr_tp = NULL;
650 struct thread_info *tp_executing = NULL;
651
652 gdb_assert (inf != NULL && inf->pid != 0);
653
654 /* Prefer the current thread if it's not executing. */
655 if (inferior_ptid != null_ptid && current_inferior () == inf)
656 {
657 /* If the current thread is dead, forget it. If it's not
658 executing, use it. Otherwise, still choose it (below), but
659 only if no other non-executing thread is found. */
660 curr_tp = inferior_thread ();
661 if (curr_tp->state == THREAD_EXITED)
662 curr_tp = NULL;
663 else if (!curr_tp->executing)
664 return curr_tp;
665 }
666
667 for (thread_info *tp : inf->non_exited_threads ())
668 {
669 if (!tp->executing)
670 return tp;
671
672 tp_executing = tp;
673 }
674
675 /* If both the current thread and all live threads are executing,
676 prefer the current thread. */
677 if (curr_tp != NULL)
678 return curr_tp;
679
680 /* Otherwise, just return an executing thread, if any. */
681 return tp_executing;
682 }
683
684 /* Return true if TP is an active thread. */
685 static bool
686 thread_alive (thread_info *tp)
687 {
688 if (tp->state == THREAD_EXITED)
689 return false;
690
691 /* Ensure we're looking at the right target stack. */
692 gdb_assert (tp->inf == current_inferior ());
693
694 return target_thread_alive (tp->ptid);
695 }
696
697 /* Switch to thread TP if it is alive. Returns true if successfully
698 switched, false otherwise. */
699
700 static bool
701 switch_to_thread_if_alive (thread_info *thr)
702 {
703 scoped_restore_current_thread restore_thread;
704
705 /* Switch inferior first, so that we're looking at the right target
706 stack. */
707 switch_to_inferior_no_thread (thr->inf);
708
709 if (thread_alive (thr))
710 {
711 switch_to_thread (thr);
712 restore_thread.dont_restore ();
713 return true;
714 }
715
716 return false;
717 }
718
719 /* See gdbthreads.h. */
720
721 void
722 prune_threads (void)
723 {
724 scoped_restore_current_thread restore_thread;
725
726 for (thread_info *tp : all_threads_safe ())
727 {
728 switch_to_inferior_no_thread (tp->inf);
729
730 if (!thread_alive (tp))
731 delete_thread (tp);
732 }
733 }
734
735 /* See gdbthreads.h. */
736
737 void
738 delete_exited_threads (void)
739 {
740 for (thread_info *tp : all_threads_safe ())
741 if (tp->state == THREAD_EXITED)
742 delete_thread (tp);
743 }
744
745 /* Return true value if stack temporaries are enabled for the thread
746 TP. */
747
748 bool
749 thread_stack_temporaries_enabled_p (thread_info *tp)
750 {
751 if (tp == NULL)
752 return false;
753 else
754 return tp->stack_temporaries_enabled;
755 }
756
757 /* Push V on to the stack temporaries of the thread with id PTID. */
758
759 void
760 push_thread_stack_temporary (thread_info *tp, struct value *v)
761 {
762 gdb_assert (tp != NULL && tp->stack_temporaries_enabled);
763 tp->stack_temporaries.push_back (v);
764 }
765
766 /* Return true if VAL is among the stack temporaries of the thread
767 TP. Return false otherwise. */
768
769 bool
770 value_in_thread_stack_temporaries (struct value *val, thread_info *tp)
771 {
772 gdb_assert (tp != NULL && tp->stack_temporaries_enabled);
773 for (value *v : tp->stack_temporaries)
774 if (v == val)
775 return true;
776
777 return false;
778 }
779
780 /* Return the last of the stack temporaries for thread with id PTID.
781 Return NULL if there are no stack temporaries for the thread. */
782
783 value *
784 get_last_thread_stack_temporary (thread_info *tp)
785 {
786 struct value *lastval = NULL;
787
788 gdb_assert (tp != NULL);
789 if (!tp->stack_temporaries.empty ())
790 lastval = tp->stack_temporaries.back ();
791
792 return lastval;
793 }
794
795 void
796 thread_change_ptid (process_stratum_target *targ,
797 ptid_t old_ptid, ptid_t new_ptid)
798 {
799 struct inferior *inf;
800 struct thread_info *tp;
801
802 /* It can happen that what we knew as the target inferior id
803 changes. E.g, target remote may only discover the remote process
804 pid after adding the inferior to GDB's list. */
805 inf = find_inferior_ptid (targ, old_ptid);
806 inf->pid = new_ptid.pid ();
807
808 tp = find_thread_ptid (inf, old_ptid);
809 tp->ptid = new_ptid;
810
811 gdb::observers::thread_ptid_changed.notify (old_ptid, new_ptid);
812 }
813
814 /* See gdbthread.h. */
815
816 void
817 set_resumed (process_stratum_target *targ, ptid_t ptid, bool resumed)
818 {
819 for (thread_info *tp : all_non_exited_threads (targ, ptid))
820 tp->resumed = resumed;
821 }
822
823 /* Helper for set_running, that marks one thread either running or
824 stopped. */
825
826 static bool
827 set_running_thread (struct thread_info *tp, bool running)
828 {
829 bool started = false;
830
831 if (running && tp->state == THREAD_STOPPED)
832 started = true;
833 tp->state = running ? THREAD_RUNNING : THREAD_STOPPED;
834
835 if (!running)
836 {
837 /* If the thread is now marked stopped, remove it from
838 the step-over queue, so that we don't try to resume
839 it until the user wants it to. */
840 if (tp->step_over_next != NULL)
841 thread_step_over_chain_remove (tp);
842 }
843
844 return started;
845 }
846
847 /* See gdbthread.h. */
848
849 void
850 thread_info::set_running (bool running)
851 {
852 if (set_running_thread (this, running))
853 gdb::observers::target_resumed.notify (this->ptid);
854 }
855
856 void
857 set_running (process_stratum_target *targ, ptid_t ptid, bool running)
858 {
859 /* We try not to notify the observer if no thread has actually
860 changed the running state -- merely to reduce the number of
861 messages to the MI frontend. A frontend is supposed to handle
862 multiple *running notifications just fine. */
863 bool any_started = false;
864
865 for (thread_info *tp : all_non_exited_threads (targ, ptid))
866 if (set_running_thread (tp, running))
867 any_started = true;
868
869 if (any_started)
870 gdb::observers::target_resumed.notify (ptid);
871 }
872
873
874 /* Helper for set_executing. Set's the thread's 'executing' field
875 from EXECUTING, and if EXECUTING is true also clears the thread's
876 stop_pc. */
877
878 static void
879 set_executing_thread (thread_info *thr, bool executing)
880 {
881 thr->executing = executing;
882 if (executing)
883 thr->suspend.stop_pc = ~(CORE_ADDR) 0;
884 }
885
886 void
887 set_executing (process_stratum_target *targ, ptid_t ptid, bool executing)
888 {
889 for (thread_info *tp : all_non_exited_threads (targ, ptid))
890 set_executing_thread (tp, executing);
891
892 /* It only takes one running thread to spawn more threads. */
893 if (executing)
894 targ->threads_executing = true;
895 /* Only clear the flag if the caller is telling us everything is
896 stopped. */
897 else if (minus_one_ptid == ptid)
898 targ->threads_executing = false;
899 }
900
901 /* See gdbthread.h. */
902
903 bool
904 threads_are_executing (process_stratum_target *target)
905 {
906 return target->threads_executing;
907 }
908
909 void
910 set_stop_requested (process_stratum_target *targ, ptid_t ptid, bool stop)
911 {
912 for (thread_info *tp : all_non_exited_threads (targ, ptid))
913 tp->stop_requested = stop;
914
915 /* Call the stop requested observer so other components of GDB can
916 react to this request. */
917 if (stop)
918 gdb::observers::thread_stop_requested.notify (ptid);
919 }
920
921 void
922 finish_thread_state (process_stratum_target *targ, ptid_t ptid)
923 {
924 bool any_started = false;
925
926 for (thread_info *tp : all_non_exited_threads (targ, ptid))
927 if (set_running_thread (tp, tp->executing))
928 any_started = true;
929
930 if (any_started)
931 gdb::observers::target_resumed.notify (ptid);
932 }
933
934 /* See gdbthread.h. */
935
936 void
937 validate_registers_access (void)
938 {
939 /* No selected thread, no registers. */
940 if (inferior_ptid == null_ptid)
941 error (_("No thread selected."));
942
943 thread_info *tp = inferior_thread ();
944
945 /* Don't try to read from a dead thread. */
946 if (tp->state == THREAD_EXITED)
947 error (_("The current thread has terminated"));
948
949 /* ... or from a spinning thread. FIXME: This isn't actually fully
950 correct. It'll allow an user-requested access (e.g., "print $pc"
951 at the prompt) when a thread is not executing for some internal
952 reason, but is marked running from the user's perspective. E.g.,
953 the thread is waiting for its turn in the step-over queue. */
954 if (tp->executing)
955 error (_("Selected thread is running."));
956 }
957
958 /* See gdbthread.h. */
959
960 bool
961 can_access_registers_thread (thread_info *thread)
962 {
963 /* No thread, no registers. */
964 if (thread == NULL)
965 return false;
966
967 /* Don't try to read from a dead thread. */
968 if (thread->state == THREAD_EXITED)
969 return false;
970
971 /* ... or from a spinning thread. FIXME: see validate_registers_access. */
972 if (thread->executing)
973 return false;
974
975 return true;
976 }
977
978 int
979 pc_in_thread_step_range (CORE_ADDR pc, struct thread_info *thread)
980 {
981 return (pc >= thread->control.step_range_start
982 && pc < thread->control.step_range_end);
983 }
984
985 /* Helper for print_thread_info. Returns true if THR should be
986 printed. If REQUESTED_THREADS, a list of GDB ids/ranges, is not
987 NULL, only print THR if its ID is included in the list. GLOBAL_IDS
988 is true if REQUESTED_THREADS is list of global IDs, false if a list
989 of per-inferior thread ids. If PID is not -1, only print THR if it
990 is a thread from the process PID. Otherwise, threads from all
991 attached PIDs are printed. If both REQUESTED_THREADS is not NULL
992 and PID is not -1, then the thread is printed if it belongs to the
993 specified process. Otherwise, an error is raised. */
994
995 static int
996 should_print_thread (const char *requested_threads, int default_inf_num,
997 int global_ids, int pid, struct thread_info *thr)
998 {
999 if (requested_threads != NULL && *requested_threads != '\0')
1000 {
1001 int in_list;
1002
1003 if (global_ids)
1004 in_list = number_is_in_list (requested_threads, thr->global_num);
1005 else
1006 in_list = tid_is_in_list (requested_threads, default_inf_num,
1007 thr->inf->num, thr->per_inf_num);
1008 if (!in_list)
1009 return 0;
1010 }
1011
1012 if (pid != -1 && thr->ptid.pid () != pid)
1013 {
1014 if (requested_threads != NULL && *requested_threads != '\0')
1015 error (_("Requested thread not found in requested process"));
1016 return 0;
1017 }
1018
1019 if (thr->state == THREAD_EXITED)
1020 return 0;
1021
1022 return 1;
1023 }
1024
1025 /* Return the string to display in "info threads"'s "Target Id"
1026 column, for TP. */
1027
1028 static std::string
1029 thread_target_id_str (thread_info *tp)
1030 {
1031 std::string target_id = target_pid_to_str (tp->ptid);
1032 const char *extra_info = target_extra_thread_info (tp);
1033 const char *name = tp->name != nullptr ? tp->name : target_thread_name (tp);
1034
1035 if (extra_info != nullptr && name != nullptr)
1036 return string_printf ("%s \"%s\" (%s)", target_id.c_str (), name,
1037 extra_info);
1038 else if (extra_info != nullptr)
1039 return string_printf ("%s (%s)", target_id.c_str (), extra_info);
1040 else if (name != nullptr)
1041 return string_printf ("%s \"%s\"", target_id.c_str (), name);
1042 else
1043 return target_id;
1044 }
1045
1046 /* Like print_thread_info, but in addition, GLOBAL_IDS indicates
1047 whether REQUESTED_THREADS is a list of global or per-inferior
1048 thread ids. */
1049
1050 static void
1051 print_thread_info_1 (struct ui_out *uiout, const char *requested_threads,
1052 int global_ids, int pid,
1053 int show_global_ids)
1054 {
1055 int default_inf_num = current_inferior ()->num;
1056
1057 update_thread_list ();
1058
1059 /* Whether we saw any thread. */
1060 bool any_thread = false;
1061 /* Whether the current thread is exited. */
1062 bool current_exited = false;
1063
1064 thread_info *current_thread = (inferior_ptid != null_ptid
1065 ? inferior_thread () : NULL);
1066
1067 {
1068 /* For backward compatibility, we make a list for MI. A table is
1069 preferable for the CLI, though, because it shows table
1070 headers. */
1071 gdb::optional<ui_out_emit_list> list_emitter;
1072 gdb::optional<ui_out_emit_table> table_emitter;
1073
1074 /* We'll be switching threads temporarily below. */
1075 scoped_restore_current_thread restore_thread;
1076
1077 if (uiout->is_mi_like_p ())
1078 list_emitter.emplace (uiout, "threads");
1079 else
1080 {
1081 int n_threads = 0;
1082 /* The width of the "Target Id" column. Grown below to
1083 accommodate the largest entry. */
1084 size_t target_id_col_width = 17;
1085
1086 for (thread_info *tp : all_threads ())
1087 {
1088 if (!should_print_thread (requested_threads, default_inf_num,
1089 global_ids, pid, tp))
1090 continue;
1091
1092 if (!uiout->is_mi_like_p ())
1093 {
1094 /* Switch inferiors so we're looking at the right
1095 target stack. */
1096 switch_to_inferior_no_thread (tp->inf);
1097
1098 target_id_col_width
1099 = std::max (target_id_col_width,
1100 thread_target_id_str (tp).size ());
1101 }
1102
1103 ++n_threads;
1104 }
1105
1106 if (n_threads == 0)
1107 {
1108 if (requested_threads == NULL || *requested_threads == '\0')
1109 uiout->message (_("No threads.\n"));
1110 else
1111 uiout->message (_("No threads match '%s'.\n"),
1112 requested_threads);
1113 return;
1114 }
1115
1116 table_emitter.emplace (uiout, show_global_ids ? 5 : 4,
1117 n_threads, "threads");
1118
1119 uiout->table_header (1, ui_left, "current", "");
1120 uiout->table_header (4, ui_left, "id-in-tg", "Id");
1121 if (show_global_ids)
1122 uiout->table_header (4, ui_left, "id", "GId");
1123 uiout->table_header (target_id_col_width, ui_left,
1124 "target-id", "Target Id");
1125 uiout->table_header (1, ui_left, "frame", "Frame");
1126 uiout->table_body ();
1127 }
1128
1129 for (inferior *inf : all_inferiors ())
1130 for (thread_info *tp : inf->threads ())
1131 {
1132 int core;
1133
1134 any_thread = true;
1135 if (tp == current_thread && tp->state == THREAD_EXITED)
1136 current_exited = true;
1137
1138 if (!should_print_thread (requested_threads, default_inf_num,
1139 global_ids, pid, tp))
1140 continue;
1141
1142 ui_out_emit_tuple tuple_emitter (uiout, NULL);
1143
1144 if (!uiout->is_mi_like_p ())
1145 {
1146 if (tp == current_thread)
1147 uiout->field_string ("current", "*");
1148 else
1149 uiout->field_skip ("current");
1150
1151 uiout->field_string ("id-in-tg", print_thread_id (tp));
1152 }
1153
1154 if (show_global_ids || uiout->is_mi_like_p ())
1155 uiout->field_signed ("id", tp->global_num);
1156
1157 /* Switch to the thread (and inferior / target). */
1158 switch_to_thread (tp);
1159
1160 /* For the CLI, we stuff everything into the target-id field.
1161 This is a gross hack to make the output come out looking
1162 correct. The underlying problem here is that ui-out has no
1163 way to specify that a field's space allocation should be
1164 shared by several fields. For MI, we do the right thing
1165 instead. */
1166
1167 if (uiout->is_mi_like_p ())
1168 {
1169 uiout->field_string ("target-id", target_pid_to_str (tp->ptid));
1170
1171 const char *extra_info = target_extra_thread_info (tp);
1172 if (extra_info != nullptr)
1173 uiout->field_string ("details", extra_info);
1174
1175 const char *name = (tp->name != nullptr
1176 ? tp->name
1177 : target_thread_name (tp));
1178 if (name != NULL)
1179 uiout->field_string ("name", name);
1180 }
1181 else
1182 {
1183 uiout->field_string ("target-id",
1184 thread_target_id_str (tp).c_str ());
1185 }
1186
1187 if (tp->state == THREAD_RUNNING)
1188 uiout->text ("(running)\n");
1189 else
1190 {
1191 /* The switch above put us at the top of the stack (leaf
1192 frame). */
1193 print_stack_frame (get_selected_frame (NULL),
1194 /* For MI output, print frame level. */
1195 uiout->is_mi_like_p (),
1196 LOCATION, 0);
1197 }
1198
1199 if (uiout->is_mi_like_p ())
1200 {
1201 const char *state = "stopped";
1202
1203 if (tp->state == THREAD_RUNNING)
1204 state = "running";
1205 uiout->field_string ("state", state);
1206 }
1207
1208 core = target_core_of_thread (tp->ptid);
1209 if (uiout->is_mi_like_p () && core != -1)
1210 uiout->field_signed ("core", core);
1211 }
1212
1213 /* This end scope restores the current thread and the frame
1214 selected before the "info threads" command, and it finishes the
1215 ui-out list or table. */
1216 }
1217
1218 if (pid == -1 && requested_threads == NULL)
1219 {
1220 if (uiout->is_mi_like_p () && inferior_ptid != null_ptid)
1221 uiout->field_signed ("current-thread-id", current_thread->global_num);
1222
1223 if (inferior_ptid != null_ptid && current_exited)
1224 uiout->message ("\n\
1225 The current thread <Thread ID %s> has terminated. See `help thread'.\n",
1226 print_thread_id (inferior_thread ()));
1227 else if (any_thread && inferior_ptid == null_ptid)
1228 uiout->message ("\n\
1229 No selected thread. See `help thread'.\n");
1230 }
1231 }
1232
1233 /* See gdbthread.h. */
1234
1235 void
1236 print_thread_info (struct ui_out *uiout, const char *requested_threads,
1237 int pid)
1238 {
1239 print_thread_info_1 (uiout, requested_threads, 1, pid, 0);
1240 }
1241
1242 /* The options for the "info threads" command. */
1243
1244 struct info_threads_opts
1245 {
1246 /* For "-gid". */
1247 bool show_global_ids = false;
1248 };
1249
1250 static const gdb::option::option_def info_threads_option_defs[] = {
1251
1252 gdb::option::flag_option_def<info_threads_opts> {
1253 "gid",
1254 [] (info_threads_opts *opts) { return &opts->show_global_ids; },
1255 N_("Show global thread IDs."),
1256 },
1257
1258 };
1259
1260 /* Create an option_def_group for the "info threads" options, with
1261 IT_OPTS as context. */
1262
1263 static inline gdb::option::option_def_group
1264 make_info_threads_options_def_group (info_threads_opts *it_opts)
1265 {
1266 return {{info_threads_option_defs}, it_opts};
1267 }
1268
1269 /* Implementation of the "info threads" command.
1270
1271 Note: this has the drawback that it _really_ switches
1272 threads, which frees the frame cache. A no-side
1273 effects info-threads command would be nicer. */
1274
1275 static void
1276 info_threads_command (const char *arg, int from_tty)
1277 {
1278 info_threads_opts it_opts;
1279
1280 auto grp = make_info_threads_options_def_group (&it_opts);
1281 gdb::option::process_options
1282 (&arg, gdb::option::PROCESS_OPTIONS_UNKNOWN_IS_ERROR, grp);
1283
1284 print_thread_info_1 (current_uiout, arg, 0, -1, it_opts.show_global_ids);
1285 }
1286
1287 /* Completer for the "info threads" command. */
1288
1289 static void
1290 info_threads_command_completer (struct cmd_list_element *ignore,
1291 completion_tracker &tracker,
1292 const char *text, const char *word_ignored)
1293 {
1294 const auto grp = make_info_threads_options_def_group (nullptr);
1295
1296 if (gdb::option::complete_options
1297 (tracker, &text, gdb::option::PROCESS_OPTIONS_UNKNOWN_IS_ERROR, grp))
1298 return;
1299
1300 /* Convenience to let the user know what the option can accept. */
1301 if (*text == '\0')
1302 {
1303 gdb::option::complete_on_all_options (tracker, grp);
1304 /* Keep this "ID" in sync with what "help info threads"
1305 says. */
1306 tracker.add_completion (make_unique_xstrdup ("ID"));
1307 }
1308 }
1309
1310 /* See gdbthread.h. */
1311
1312 void
1313 switch_to_thread_no_regs (struct thread_info *thread)
1314 {
1315 struct inferior *inf = thread->inf;
1316
1317 set_current_program_space (inf->pspace);
1318 set_current_inferior (inf);
1319
1320 inferior_ptid = thread->ptid;
1321 }
1322
1323 /* See gdbthread.h. */
1324
1325 void
1326 switch_to_no_thread ()
1327 {
1328 if (inferior_ptid == null_ptid)
1329 return;
1330
1331 inferior_ptid = null_ptid;
1332 reinit_frame_cache ();
1333 }
1334
1335 /* See gdbthread.h. */
1336
1337 void
1338 switch_to_thread (thread_info *thr)
1339 {
1340 gdb_assert (thr != NULL);
1341
1342 if (is_current_thread (thr))
1343 return;
1344
1345 switch_to_thread_no_regs (thr);
1346
1347 reinit_frame_cache ();
1348 }
1349
1350 /* See gdbsupport/common-gdbthread.h. */
1351
1352 void
1353 switch_to_thread (process_stratum_target *proc_target, ptid_t ptid)
1354 {
1355 thread_info *thr = find_thread_ptid (proc_target, ptid);
1356 switch_to_thread (thr);
1357 }
1358
1359 static void
1360 restore_selected_frame (struct frame_id a_frame_id, int frame_level)
1361 {
1362 struct frame_info *frame = NULL;
1363 int count;
1364
1365 /* This means there was no selected frame. */
1366 if (frame_level == -1)
1367 {
1368 select_frame (NULL);
1369 return;
1370 }
1371
1372 gdb_assert (frame_level >= 0);
1373
1374 /* Restore by level first, check if the frame id is the same as
1375 expected. If that fails, try restoring by frame id. If that
1376 fails, nothing to do, just warn the user. */
1377
1378 count = frame_level;
1379 frame = find_relative_frame (get_current_frame (), &count);
1380 if (count == 0
1381 && frame != NULL
1382 /* The frame ids must match - either both valid or both outer_frame_id.
1383 The latter case is not failsafe, but since it's highly unlikely
1384 the search by level finds the wrong frame, it's 99.9(9)% of
1385 the time (for all practical purposes) safe. */
1386 && frame_id_eq (get_frame_id (frame), a_frame_id))
1387 {
1388 /* Cool, all is fine. */
1389 select_frame (frame);
1390 return;
1391 }
1392
1393 frame = frame_find_by_id (a_frame_id);
1394 if (frame != NULL)
1395 {
1396 /* Cool, refound it. */
1397 select_frame (frame);
1398 return;
1399 }
1400
1401 /* Nothing else to do, the frame layout really changed. Select the
1402 innermost stack frame. */
1403 select_frame (get_current_frame ());
1404
1405 /* Warn the user. */
1406 if (frame_level > 0 && !current_uiout->is_mi_like_p ())
1407 {
1408 warning (_("Couldn't restore frame #%d in "
1409 "current thread. Bottom (innermost) frame selected:"),
1410 frame_level);
1411 /* For MI, we should probably have a notification about
1412 current frame change. But this error is not very
1413 likely, so don't bother for now. */
1414 print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC, 1);
1415 }
1416 }
1417
1418 void
1419 scoped_restore_current_thread::restore ()
1420 {
1421 /* If an entry of thread_info was previously selected, it won't be
1422 deleted because we've increased its refcount. The thread represented
1423 by this thread_info entry may have already exited (due to normal exit,
1424 detach, etc), so the thread_info.state is THREAD_EXITED. */
1425 if (m_thread != NULL
1426 /* If the previously selected thread belonged to a process that has
1427 in the mean time exited (or killed, detached, etc.), then don't revert
1428 back to it, but instead simply drop back to no thread selected. */
1429 && m_inf->pid != 0)
1430 switch_to_thread (m_thread);
1431 else
1432 switch_to_inferior_no_thread (m_inf);
1433
1434 /* The running state of the originally selected thread may have
1435 changed, so we have to recheck it here. */
1436 if (inferior_ptid != null_ptid
1437 && m_was_stopped
1438 && m_thread->state == THREAD_STOPPED
1439 && target_has_registers
1440 && target_has_stack
1441 && target_has_memory)
1442 restore_selected_frame (m_selected_frame_id, m_selected_frame_level);
1443 }
1444
1445 scoped_restore_current_thread::~scoped_restore_current_thread ()
1446 {
1447 if (!m_dont_restore)
1448 {
1449 try
1450 {
1451 restore ();
1452 }
1453 catch (const gdb_exception &ex)
1454 {
1455 /* We're in a dtor, there's really nothing else we can do
1456 but swallow the exception. */
1457 }
1458 }
1459
1460 if (m_thread != NULL)
1461 m_thread->decref ();
1462 m_inf->decref ();
1463 }
1464
1465 scoped_restore_current_thread::scoped_restore_current_thread ()
1466 {
1467 m_thread = NULL;
1468 m_inf = current_inferior ();
1469
1470 if (inferior_ptid != null_ptid)
1471 {
1472 thread_info *tp = inferior_thread ();
1473 struct frame_info *frame;
1474
1475 m_was_stopped = tp->state == THREAD_STOPPED;
1476 if (m_was_stopped
1477 && target_has_registers
1478 && target_has_stack
1479 && target_has_memory)
1480 {
1481 /* When processing internal events, there might not be a
1482 selected frame. If we naively call get_selected_frame
1483 here, then we can end up reading debuginfo for the
1484 current frame, but we don't generally need the debuginfo
1485 at this point. */
1486 frame = get_selected_frame_if_set ();
1487 }
1488 else
1489 frame = NULL;
1490
1491 m_selected_frame_id = get_frame_id (frame);
1492 m_selected_frame_level = frame_relative_level (frame);
1493
1494 tp->incref ();
1495 m_thread = tp;
1496 }
1497
1498 m_inf->incref ();
1499 }
1500
1501 /* See gdbthread.h. */
1502
1503 int
1504 show_thread_that_caused_stop (void)
1505 {
1506 return highest_thread_num > 1;
1507 }
1508
1509 /* See gdbthread.h. */
1510
1511 int
1512 show_inferior_qualified_tids (void)
1513 {
1514 return (inferior_list->next != NULL || inferior_list->num != 1);
1515 }
1516
1517 /* See gdbthread.h. */
1518
1519 const char *
1520 print_thread_id (struct thread_info *thr)
1521 {
1522 char *s = get_print_cell ();
1523
1524 if (show_inferior_qualified_tids ())
1525 xsnprintf (s, PRINT_CELL_SIZE, "%d.%d", thr->inf->num, thr->per_inf_num);
1526 else
1527 xsnprintf (s, PRINT_CELL_SIZE, "%d", thr->per_inf_num);
1528 return s;
1529 }
1530
1531 /* Sort an array of struct thread_info pointers by thread ID (first by
1532 inferior number, and then by per-inferior thread number). Sorts in
1533 ascending order. */
1534
1535 static bool
1536 tp_array_compar_ascending (const thread_info *a, const thread_info *b)
1537 {
1538 if (a->inf->num != b->inf->num)
1539 return a->inf->num < b->inf->num;
1540
1541 return (a->per_inf_num < b->per_inf_num);
1542 }
1543
1544 /* Sort an array of struct thread_info pointers by thread ID (first by
1545 inferior number, and then by per-inferior thread number). Sorts in
1546 descending order. */
1547
1548 static bool
1549 tp_array_compar_descending (const thread_info *a, const thread_info *b)
1550 {
1551 if (a->inf->num != b->inf->num)
1552 return a->inf->num > b->inf->num;
1553
1554 return (a->per_inf_num > b->per_inf_num);
1555 }
1556
1557 /* Switch to thread THR and execute CMD.
1558 FLAGS.QUIET controls the printing of the thread information.
1559 FLAGS.CONT and FLAGS.SILENT control how to handle errors. */
1560
1561 static void
1562 thr_try_catch_cmd (thread_info *thr, const char *cmd, int from_tty,
1563 const qcs_flags &flags)
1564 {
1565 switch_to_thread (thr);
1566
1567 /* The thread header is computed before running the command since
1568 the command can change the inferior, which is not permitted
1569 by thread_target_id_str. */
1570 std::string thr_header =
1571 string_printf (_("\nThread %s (%s):\n"), print_thread_id (thr),
1572 thread_target_id_str (thr).c_str ());
1573
1574 try
1575 {
1576 std::string cmd_result = execute_command_to_string
1577 (cmd, from_tty, gdb_stdout->term_out ());
1578 if (!flags.silent || cmd_result.length () > 0)
1579 {
1580 if (!flags.quiet)
1581 printf_filtered ("%s", thr_header.c_str ());
1582 printf_filtered ("%s", cmd_result.c_str ());
1583 }
1584 }
1585 catch (const gdb_exception_error &ex)
1586 {
1587 if (!flags.silent)
1588 {
1589 if (!flags.quiet)
1590 printf_filtered ("%s", thr_header.c_str ());
1591 if (flags.cont)
1592 printf_filtered ("%s\n", ex.what ());
1593 else
1594 throw;
1595 }
1596 }
1597 }
1598
1599 /* Option definition of "thread apply"'s "-ascending" option. */
1600
1601 static const gdb::option::flag_option_def<> ascending_option_def = {
1602 "ascending",
1603 N_("\
1604 Call COMMAND for all threads in ascending order.\n\
1605 The default is descending order."),
1606 };
1607
1608 /* The qcs command line flags for the "thread apply" commands. Keep
1609 this in sync with the "frame apply" commands. */
1610
1611 using qcs_flag_option_def
1612 = gdb::option::flag_option_def<qcs_flags>;
1613
1614 static const gdb::option::option_def thr_qcs_flags_option_defs[] = {
1615 qcs_flag_option_def {
1616 "q", [] (qcs_flags *opt) { return &opt->quiet; },
1617 N_("Disables printing the thread information."),
1618 },
1619
1620 qcs_flag_option_def {
1621 "c", [] (qcs_flags *opt) { return &opt->cont; },
1622 N_("Print any error raised by COMMAND and continue."),
1623 },
1624
1625 qcs_flag_option_def {
1626 "s", [] (qcs_flags *opt) { return &opt->silent; },
1627 N_("Silently ignore any errors or empty output produced by COMMAND."),
1628 },
1629 };
1630
1631 /* Create an option_def_group for the "thread apply all" options, with
1632 ASCENDING and FLAGS as context. */
1633
1634 static inline std::array<gdb::option::option_def_group, 2>
1635 make_thread_apply_all_options_def_group (bool *ascending,
1636 qcs_flags *flags)
1637 {
1638 return {{
1639 { {ascending_option_def.def ()}, ascending},
1640 { {thr_qcs_flags_option_defs}, flags },
1641 }};
1642 }
1643
1644 /* Create an option_def_group for the "thread apply" options, with
1645 FLAGS as context. */
1646
1647 static inline gdb::option::option_def_group
1648 make_thread_apply_options_def_group (qcs_flags *flags)
1649 {
1650 return {{thr_qcs_flags_option_defs}, flags};
1651 }
1652
1653 /* Apply a GDB command to a list of threads. List syntax is a whitespace
1654 separated list of numbers, or ranges, or the keyword `all'. Ranges consist
1655 of two numbers separated by a hyphen. Examples:
1656
1657 thread apply 1 2 7 4 backtrace Apply backtrace cmd to threads 1,2,7,4
1658 thread apply 2-7 9 p foo(1) Apply p foo(1) cmd to threads 2->7 & 9
1659 thread apply all x/i $pc Apply x/i $pc cmd to all threads. */
1660
1661 static void
1662 thread_apply_all_command (const char *cmd, int from_tty)
1663 {
1664 bool ascending = false;
1665 qcs_flags flags;
1666
1667 auto group = make_thread_apply_all_options_def_group (&ascending,
1668 &flags);
1669 gdb::option::process_options
1670 (&cmd, gdb::option::PROCESS_OPTIONS_UNKNOWN_IS_OPERAND, group);
1671
1672 validate_flags_qcs ("thread apply all", &flags);
1673
1674 if (cmd == NULL || *cmd == '\000')
1675 error (_("Please specify a command at the end of 'thread apply all'"));
1676
1677 update_thread_list ();
1678
1679 int tc = live_threads_count ();
1680 if (tc != 0)
1681 {
1682 /* Save a copy of the thread list and increment each thread's
1683 refcount while executing the command in the context of each
1684 thread, in case the command is one that wipes threads. E.g.,
1685 detach, kill, disconnect, etc., or even normally continuing
1686 over an inferior or thread exit. */
1687 std::vector<thread_info *> thr_list_cpy;
1688 thr_list_cpy.reserve (tc);
1689
1690 for (thread_info *tp : all_non_exited_threads ())
1691 thr_list_cpy.push_back (tp);
1692 gdb_assert (thr_list_cpy.size () == tc);
1693
1694 /* Increment the refcounts, and restore them back on scope
1695 exit. */
1696 scoped_inc_dec_ref inc_dec_ref (thr_list_cpy);
1697
1698 auto *sorter = (ascending
1699 ? tp_array_compar_ascending
1700 : tp_array_compar_descending);
1701 std::sort (thr_list_cpy.begin (), thr_list_cpy.end (), sorter);
1702
1703 scoped_restore_current_thread restore_thread;
1704
1705 for (thread_info *thr : thr_list_cpy)
1706 if (switch_to_thread_if_alive (thr))
1707 thr_try_catch_cmd (thr, cmd, from_tty, flags);
1708 }
1709 }
1710
1711 /* Completer for "thread apply [ID list]". */
1712
1713 static void
1714 thread_apply_command_completer (cmd_list_element *ignore,
1715 completion_tracker &tracker,
1716 const char *text, const char * /*word*/)
1717 {
1718 /* Don't leave this to complete_options because there's an early
1719 return below. */
1720 tracker.set_use_custom_word_point (true);
1721
1722 tid_range_parser parser;
1723 parser.init (text, current_inferior ()->num);
1724
1725 try
1726 {
1727 while (!parser.finished ())
1728 {
1729 int inf_num, thr_start, thr_end;
1730
1731 if (!parser.get_tid_range (&inf_num, &thr_start, &thr_end))
1732 break;
1733
1734 if (parser.in_star_range () || parser.in_thread_range ())
1735 parser.skip_range ();
1736 }
1737 }
1738 catch (const gdb_exception_error &ex)
1739 {
1740 /* get_tid_range throws if it parses a negative number, for
1741 example. But a seemingly negative number may be the start of
1742 an option instead. */
1743 }
1744
1745 const char *cmd = parser.cur_tok ();
1746
1747 if (cmd == text)
1748 {
1749 /* No thread ID list yet. */
1750 return;
1751 }
1752
1753 /* Check if we're past a valid thread ID list already. */
1754 if (parser.finished ()
1755 && cmd > text && !isspace (cmd[-1]))
1756 return;
1757
1758 /* We're past the thread ID list, advance word point. */
1759 tracker.advance_custom_word_point_by (cmd - text);
1760 text = cmd;
1761
1762 const auto group = make_thread_apply_options_def_group (nullptr);
1763 if (gdb::option::complete_options
1764 (tracker, &text, gdb::option::PROCESS_OPTIONS_UNKNOWN_IS_OPERAND, group))
1765 return;
1766
1767 complete_nested_command_line (tracker, text);
1768 }
1769
1770 /* Completer for "thread apply all". */
1771
1772 static void
1773 thread_apply_all_command_completer (cmd_list_element *ignore,
1774 completion_tracker &tracker,
1775 const char *text, const char *word)
1776 {
1777 const auto group = make_thread_apply_all_options_def_group (nullptr,
1778 nullptr);
1779 if (gdb::option::complete_options
1780 (tracker, &text, gdb::option::PROCESS_OPTIONS_UNKNOWN_IS_OPERAND, group))
1781 return;
1782
1783 complete_nested_command_line (tracker, text);
1784 }
1785
1786 /* Implementation of the "thread apply" command. */
1787
1788 static void
1789 thread_apply_command (const char *tidlist, int from_tty)
1790 {
1791 qcs_flags flags;
1792 const char *cmd = NULL;
1793 tid_range_parser parser;
1794
1795 if (tidlist == NULL || *tidlist == '\000')
1796 error (_("Please specify a thread ID list"));
1797
1798 parser.init (tidlist, current_inferior ()->num);
1799 while (!parser.finished ())
1800 {
1801 int inf_num, thr_start, thr_end;
1802
1803 if (!parser.get_tid_range (&inf_num, &thr_start, &thr_end))
1804 break;
1805 }
1806
1807 cmd = parser.cur_tok ();
1808
1809 auto group = make_thread_apply_options_def_group (&flags);
1810 gdb::option::process_options
1811 (&cmd, gdb::option::PROCESS_OPTIONS_UNKNOWN_IS_OPERAND, group);
1812
1813 validate_flags_qcs ("thread apply", &flags);
1814
1815 if (*cmd == '\0')
1816 error (_("Please specify a command following the thread ID list"));
1817
1818 if (tidlist == cmd || isdigit (cmd[0]))
1819 invalid_thread_id_error (cmd);
1820
1821 scoped_restore_current_thread restore_thread;
1822
1823 parser.init (tidlist, current_inferior ()->num);
1824 while (!parser.finished ())
1825 {
1826 struct thread_info *tp = NULL;
1827 struct inferior *inf;
1828 int inf_num, thr_num;
1829
1830 parser.get_tid (&inf_num, &thr_num);
1831 inf = find_inferior_id (inf_num);
1832 if (inf != NULL)
1833 tp = find_thread_id (inf, thr_num);
1834
1835 if (parser.in_star_range ())
1836 {
1837 if (inf == NULL)
1838 {
1839 warning (_("Unknown inferior %d"), inf_num);
1840 parser.skip_range ();
1841 continue;
1842 }
1843
1844 /* No use looking for threads past the highest thread number
1845 the inferior ever had. */
1846 if (thr_num >= inf->highest_thread_num)
1847 parser.skip_range ();
1848
1849 /* Be quiet about unknown threads numbers. */
1850 if (tp == NULL)
1851 continue;
1852 }
1853
1854 if (tp == NULL)
1855 {
1856 if (show_inferior_qualified_tids () || parser.tid_is_qualified ())
1857 warning (_("Unknown thread %d.%d"), inf_num, thr_num);
1858 else
1859 warning (_("Unknown thread %d"), thr_num);
1860 continue;
1861 }
1862
1863 if (!switch_to_thread_if_alive (tp))
1864 {
1865 warning (_("Thread %s has terminated."), print_thread_id (tp));
1866 continue;
1867 }
1868
1869 thr_try_catch_cmd (tp, cmd, from_tty, flags);
1870 }
1871 }
1872
1873
1874 /* Implementation of the "taas" command. */
1875
1876 static void
1877 taas_command (const char *cmd, int from_tty)
1878 {
1879 if (cmd == NULL || *cmd == '\0')
1880 error (_("Please specify a command to apply on all threads"));
1881 std::string expanded = std::string ("thread apply all -s ") + cmd;
1882 execute_command (expanded.c_str (), from_tty);
1883 }
1884
1885 /* Implementation of the "tfaas" command. */
1886
1887 static void
1888 tfaas_command (const char *cmd, int from_tty)
1889 {
1890 if (cmd == NULL || *cmd == '\0')
1891 error (_("Please specify a command to apply on all frames of all threads"));
1892 std::string expanded
1893 = std::string ("thread apply all -s -- frame apply all -s ") + cmd;
1894 execute_command (expanded.c_str (), from_tty);
1895 }
1896
1897 /* Switch to the specified thread, or print the current thread. */
1898
1899 void
1900 thread_command (const char *tidstr, int from_tty)
1901 {
1902 if (tidstr == NULL)
1903 {
1904 if (inferior_ptid == null_ptid)
1905 error (_("No thread selected"));
1906
1907 if (target_has_stack)
1908 {
1909 struct thread_info *tp = inferior_thread ();
1910
1911 if (tp->state == THREAD_EXITED)
1912 printf_filtered (_("[Current thread is %s (%s) (exited)]\n"),
1913 print_thread_id (tp),
1914 target_pid_to_str (inferior_ptid).c_str ());
1915 else
1916 printf_filtered (_("[Current thread is %s (%s)]\n"),
1917 print_thread_id (tp),
1918 target_pid_to_str (inferior_ptid).c_str ());
1919 }
1920 else
1921 error (_("No stack."));
1922 }
1923 else
1924 {
1925 ptid_t previous_ptid = inferior_ptid;
1926
1927 thread_select (tidstr, parse_thread_id (tidstr, NULL));
1928
1929 /* Print if the thread has not changed, otherwise an event will
1930 be sent. */
1931 if (inferior_ptid == previous_ptid)
1932 {
1933 print_selected_thread_frame (current_uiout,
1934 USER_SELECTED_THREAD
1935 | USER_SELECTED_FRAME);
1936 }
1937 else
1938 {
1939 gdb::observers::user_selected_context_changed.notify
1940 (USER_SELECTED_THREAD | USER_SELECTED_FRAME);
1941 }
1942 }
1943 }
1944
1945 /* Implementation of `thread name'. */
1946
1947 static void
1948 thread_name_command (const char *arg, int from_tty)
1949 {
1950 struct thread_info *info;
1951
1952 if (inferior_ptid == null_ptid)
1953 error (_("No thread selected"));
1954
1955 arg = skip_spaces (arg);
1956
1957 info = inferior_thread ();
1958 xfree (info->name);
1959 info->name = arg ? xstrdup (arg) : NULL;
1960 }
1961
1962 /* Find thread ids with a name, target pid, or extra info matching ARG. */
1963
1964 static void
1965 thread_find_command (const char *arg, int from_tty)
1966 {
1967 const char *tmp;
1968 unsigned long match = 0;
1969
1970 if (arg == NULL || *arg == '\0')
1971 error (_("Command requires an argument."));
1972
1973 tmp = re_comp (arg);
1974 if (tmp != 0)
1975 error (_("Invalid regexp (%s): %s"), tmp, arg);
1976
1977 update_thread_list ();
1978 for (thread_info *tp : all_threads ())
1979 {
1980 if (tp->name != NULL && re_exec (tp->name))
1981 {
1982 printf_filtered (_("Thread %s has name '%s'\n"),
1983 print_thread_id (tp), tp->name);
1984 match++;
1985 }
1986
1987 tmp = target_thread_name (tp);
1988 if (tmp != NULL && re_exec (tmp))
1989 {
1990 printf_filtered (_("Thread %s has target name '%s'\n"),
1991 print_thread_id (tp), tmp);
1992 match++;
1993 }
1994
1995 std::string name = target_pid_to_str (tp->ptid);
1996 if (!name.empty () && re_exec (name.c_str ()))
1997 {
1998 printf_filtered (_("Thread %s has target id '%s'\n"),
1999 print_thread_id (tp), name.c_str ());
2000 match++;
2001 }
2002
2003 tmp = target_extra_thread_info (tp);
2004 if (tmp != NULL && re_exec (tmp))
2005 {
2006 printf_filtered (_("Thread %s has extra info '%s'\n"),
2007 print_thread_id (tp), tmp);
2008 match++;
2009 }
2010 }
2011 if (!match)
2012 printf_filtered (_("No threads match '%s'\n"), arg);
2013 }
2014
2015 /* Print notices when new threads are attached and detached. */
2016 bool print_thread_events = true;
2017 static void
2018 show_print_thread_events (struct ui_file *file, int from_tty,
2019 struct cmd_list_element *c, const char *value)
2020 {
2021 fprintf_filtered (file,
2022 _("Printing of thread events is %s.\n"),
2023 value);
2024 }
2025
2026 /* See gdbthread.h. */
2027
2028 void
2029 thread_select (const char *tidstr, thread_info *tp)
2030 {
2031 if (!switch_to_thread_if_alive (tp))
2032 error (_("Thread ID %s has terminated."), tidstr);
2033
2034 annotate_thread_changed ();
2035
2036 /* Since the current thread may have changed, see if there is any
2037 exited thread we can now delete. */
2038 prune_threads ();
2039 }
2040
2041 /* Print thread and frame switch command response. */
2042
2043 void
2044 print_selected_thread_frame (struct ui_out *uiout,
2045 user_selected_what selection)
2046 {
2047 struct thread_info *tp = inferior_thread ();
2048
2049 if (selection & USER_SELECTED_THREAD)
2050 {
2051 if (uiout->is_mi_like_p ())
2052 {
2053 uiout->field_signed ("new-thread-id",
2054 inferior_thread ()->global_num);
2055 }
2056 else
2057 {
2058 uiout->text ("[Switching to thread ");
2059 uiout->field_string ("new-thread-id", print_thread_id (tp));
2060 uiout->text (" (");
2061 uiout->text (target_pid_to_str (inferior_ptid).c_str ());
2062 uiout->text (")]");
2063 }
2064 }
2065
2066 if (tp->state == THREAD_RUNNING)
2067 {
2068 if (selection & USER_SELECTED_THREAD)
2069 uiout->text ("(running)\n");
2070 }
2071 else if (selection & USER_SELECTED_FRAME)
2072 {
2073 if (selection & USER_SELECTED_THREAD)
2074 uiout->text ("\n");
2075
2076 if (has_stack_frames ())
2077 print_stack_frame_to_uiout (uiout, get_selected_frame (NULL),
2078 1, SRC_AND_LOC, 1);
2079 }
2080 }
2081
2082 /* Update the 'threads_executing' global based on the threads we know
2083 about right now. This is used by infrun to tell whether we should
2084 pull events out of the current target. */
2085
2086 static void
2087 update_threads_executing (void)
2088 {
2089 process_stratum_target *targ = current_inferior ()->process_target ();
2090
2091 if (targ == NULL)
2092 return;
2093
2094 targ->threads_executing = false;
2095
2096 for (inferior *inf : all_non_exited_inferiors (targ))
2097 {
2098 if (!inf->has_execution ())
2099 continue;
2100
2101 /* If the process has no threads, then it must be we have a
2102 process-exit event pending. */
2103 if (inf->thread_list == NULL)
2104 {
2105 targ->threads_executing = true;
2106 return;
2107 }
2108
2109 for (thread_info *tp : inf->non_exited_threads ())
2110 {
2111 if (tp->executing)
2112 {
2113 targ->threads_executing = true;
2114 return;
2115 }
2116 }
2117 }
2118 }
2119
2120 void
2121 update_thread_list (void)
2122 {
2123 target_update_thread_list ();
2124 update_threads_executing ();
2125 }
2126
2127 /* Return a new value for the selected thread's id. Return a value of
2128 0 if no thread is selected. If GLOBAL is true, return the thread's
2129 global number. Otherwise return the per-inferior number. */
2130
2131 static struct value *
2132 thread_num_make_value_helper (struct gdbarch *gdbarch, int global)
2133 {
2134 int int_val;
2135
2136 if (inferior_ptid == null_ptid)
2137 int_val = 0;
2138 else
2139 {
2140 thread_info *tp = inferior_thread ();
2141 if (global)
2142 int_val = tp->global_num;
2143 else
2144 int_val = tp->per_inf_num;
2145 }
2146
2147 return value_from_longest (builtin_type (gdbarch)->builtin_int, int_val);
2148 }
2149
2150 /* Return a new value for the selected thread's per-inferior thread
2151 number. Return a value of 0 if no thread is selected, or no
2152 threads exist. */
2153
2154 static struct value *
2155 thread_id_per_inf_num_make_value (struct gdbarch *gdbarch,
2156 struct internalvar *var,
2157 void *ignore)
2158 {
2159 return thread_num_make_value_helper (gdbarch, 0);
2160 }
2161
2162 /* Return a new value for the selected thread's global id. Return a
2163 value of 0 if no thread is selected, or no threads exist. */
2164
2165 static struct value *
2166 global_thread_id_make_value (struct gdbarch *gdbarch, struct internalvar *var,
2167 void *ignore)
2168 {
2169 return thread_num_make_value_helper (gdbarch, 1);
2170 }
2171
2172 /* Commands with a prefix of `thread'. */
2173 struct cmd_list_element *thread_cmd_list = NULL;
2174
2175 /* Implementation of `thread' variable. */
2176
2177 static const struct internalvar_funcs thread_funcs =
2178 {
2179 thread_id_per_inf_num_make_value,
2180 NULL,
2181 NULL
2182 };
2183
2184 /* Implementation of `gthread' variable. */
2185
2186 static const struct internalvar_funcs gthread_funcs =
2187 {
2188 global_thread_id_make_value,
2189 NULL,
2190 NULL
2191 };
2192
2193 void _initialize_thread ();
2194 void
2195 _initialize_thread ()
2196 {
2197 static struct cmd_list_element *thread_apply_list = NULL;
2198 cmd_list_element *c;
2199
2200 const auto info_threads_opts = make_info_threads_options_def_group (nullptr);
2201
2202 /* Note: keep this "ID" in sync with what "info threads [TAB]"
2203 suggests. */
2204 static std::string info_threads_help
2205 = gdb::option::build_help (_("\
2206 Display currently known threads.\n\
2207 Usage: info threads [OPTION]... [ID]...\n\
2208 \n\
2209 Options:\n\
2210 %OPTIONS%\
2211 If ID is given, it is a space-separated list of IDs of threads to display.\n\
2212 Otherwise, all threads are displayed."),
2213 info_threads_opts);
2214
2215 c = add_info ("threads", info_threads_command, info_threads_help.c_str ());
2216 set_cmd_completer_handle_brkchars (c, info_threads_command_completer);
2217
2218 add_prefix_cmd ("thread", class_run, thread_command, _("\
2219 Use this command to switch between threads.\n\
2220 The new thread ID must be currently known."),
2221 &thread_cmd_list, "thread ", 1, &cmdlist);
2222
2223 #define THREAD_APPLY_OPTION_HELP "\
2224 Prints per-inferior thread number and target system's thread id\n\
2225 followed by COMMAND output.\n\
2226 \n\
2227 By default, an error raised during the execution of COMMAND\n\
2228 aborts \"thread apply\".\n\
2229 \n\
2230 Options:\n\
2231 %OPTIONS%"
2232
2233 const auto thread_apply_opts = make_thread_apply_options_def_group (nullptr);
2234
2235 static std::string thread_apply_help = gdb::option::build_help (_("\
2236 Apply a command to a list of threads.\n\
2237 Usage: thread apply ID... [OPTION]... COMMAND\n\
2238 ID is a space-separated list of IDs of threads to apply COMMAND on.\n"
2239 THREAD_APPLY_OPTION_HELP),
2240 thread_apply_opts);
2241
2242 c = add_prefix_cmd ("apply", class_run, thread_apply_command,
2243 thread_apply_help.c_str (),
2244 &thread_apply_list, "thread apply ", 1,
2245 &thread_cmd_list);
2246 set_cmd_completer_handle_brkchars (c, thread_apply_command_completer);
2247
2248 const auto thread_apply_all_opts
2249 = make_thread_apply_all_options_def_group (nullptr, nullptr);
2250
2251 static std::string thread_apply_all_help = gdb::option::build_help (_("\
2252 Apply a command to all threads.\n\
2253 \n\
2254 Usage: thread apply all [OPTION]... COMMAND\n"
2255 THREAD_APPLY_OPTION_HELP),
2256 thread_apply_all_opts);
2257
2258 c = add_cmd ("all", class_run, thread_apply_all_command,
2259 thread_apply_all_help.c_str (),
2260 &thread_apply_list);
2261 set_cmd_completer_handle_brkchars (c, thread_apply_all_command_completer);
2262
2263 c = add_com ("taas", class_run, taas_command, _("\
2264 Apply a command to all threads (ignoring errors and empty output).\n\
2265 Usage: taas [OPTION]... COMMAND\n\
2266 shortcut for 'thread apply all -s [OPTION]... COMMAND'\n\
2267 See \"help thread apply all\" for available options."));
2268 set_cmd_completer_handle_brkchars (c, thread_apply_all_command_completer);
2269
2270 c = add_com ("tfaas", class_run, tfaas_command, _("\
2271 Apply a command to all frames of all threads (ignoring errors and empty output).\n\
2272 Usage: tfaas [OPTION]... COMMAND\n\
2273 shortcut for 'thread apply all -s -- frame apply all -s [OPTION]... COMMAND'\n\
2274 See \"help frame apply all\" for available options."));
2275 set_cmd_completer_handle_brkchars (c, frame_apply_all_cmd_completer);
2276
2277 add_cmd ("name", class_run, thread_name_command,
2278 _("Set the current thread's name.\n\
2279 Usage: thread name [NAME]\n\
2280 If NAME is not given, then any existing name is removed."), &thread_cmd_list);
2281
2282 add_cmd ("find", class_run, thread_find_command, _("\
2283 Find threads that match a regular expression.\n\
2284 Usage: thread find REGEXP\n\
2285 Will display thread ids whose name, target ID, or extra info matches REGEXP."),
2286 &thread_cmd_list);
2287
2288 add_com_alias ("t", "thread", class_run, 1);
2289
2290 add_setshow_boolean_cmd ("thread-events", no_class,
2291 &print_thread_events, _("\
2292 Set printing of thread events (such as thread start and exit)."), _("\
2293 Show printing of thread events (such as thread start and exit)."), NULL,
2294 NULL,
2295 show_print_thread_events,
2296 &setprintlist, &showprintlist);
2297
2298 create_internalvar_type_lazy ("_thread", &thread_funcs, NULL);
2299 create_internalvar_type_lazy ("_gthread", &gthread_funcs, NULL);
2300 }
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