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1 /* Multi-process/thread control for GDB, the GNU debugger.
2 Copyright 1986, 1987, 1988, 1993, 1998, 1999, 2000
3
4 Contributed by Lynx Real-Time Systems, Inc. Los Gatos, CA.
5 Free Software Foundation, Inc.
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 2 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, write to the Free Software
21 Foundation, Inc., 59 Temple Place - Suite 330,
22 Boston, MA 02111-1307, USA. */
23
24 #include "defs.h"
25 #include "symtab.h"
26 #include "frame.h"
27 #include "inferior.h"
28 #include "environ.h"
29 #include "value.h"
30 #include "target.h"
31 #include "gdbthread.h"
32 #include "command.h"
33 #include "gdbcmd.h"
34
35 #include <ctype.h>
36 #include <sys/types.h>
37 #include <signal.h>
38 #ifdef UI_OUT
39 #include "ui-out.h"
40 #endif
41
42 /*#include "lynxos-core.h" */
43
44 /* Definition of struct thread_info exported to gdbthread.h */
45
46 /* Prototypes for exported functions. */
47
48 void _initialize_thread (void);
49
50 /* Prototypes for local functions. */
51
52 static struct thread_info *thread_list = NULL;
53 static int highest_thread_num;
54
55 static struct thread_info *find_thread_id (int num);
56
57 static void thread_command (char *tidstr, int from_tty);
58 static void thread_apply_all_command (char *, int);
59 static int thread_alive (struct thread_info *);
60 static void info_threads_command (char *, int);
61 static void thread_apply_command (char *, int);
62 static void restore_current_thread (int);
63 static void switch_to_thread (int pid);
64 static void prune_threads (void);
65
66 static void
67 free_thread (struct thread_info *tp)
68 {
69 /* NOTE: this will take care of any left-over step_resume breakpoints,
70 but not any user-specified thread-specific breakpoints. */
71 if (tp->step_resume_breakpoint)
72 delete_breakpoint (tp->step_resume_breakpoint);
73
74 /* FIXME: do I ever need to call the back-end to give it a
75 chance at this private data before deleting the thread? */
76 if (tp->private)
77 free (tp->private);
78
79 free (tp);
80 }
81
82 void
83 init_thread_list (void)
84 {
85 struct thread_info *tp, *tpnext;
86
87 highest_thread_num = 0;
88 if (!thread_list)
89 return;
90
91 for (tp = thread_list; tp; tp = tpnext)
92 {
93 tpnext = tp->next;
94 free_thread (tp);
95 }
96
97 thread_list = NULL;
98 }
99
100 /* add_thread now returns a pointer to the new thread_info,
101 so that back_ends can initialize their private data. */
102
103 struct thread_info *
104 add_thread (int pid)
105 {
106 struct thread_info *tp;
107
108 tp = (struct thread_info *) xmalloc (sizeof (struct thread_info));
109
110 tp->pid = pid;
111 tp->num = ++highest_thread_num;
112 tp->prev_pc = 0;
113 tp->prev_func_start = 0;
114 tp->prev_func_name = NULL;
115 tp->step_range_start = 0;
116 tp->step_range_end = 0;
117 tp->step_frame_address = 0;
118 tp->step_resume_breakpoint = 0;
119 tp->through_sigtramp_breakpoint = 0;
120 tp->handling_longjmp = 0;
121 tp->trap_expected = 0;
122 tp->another_trap = 0;
123 tp->stepping_through_solib_after_catch = 0;
124 tp->stepping_through_solib_catchpoints = NULL;
125 tp->stepping_through_sigtramp = 0;
126 tp->next = thread_list;
127 tp->private = NULL;
128 thread_list = tp;
129 return tp;
130 }
131
132 void
133 delete_thread (int pid)
134 {
135 struct thread_info *tp, *tpprev;
136
137 tpprev = NULL;
138
139 for (tp = thread_list; tp; tpprev = tp, tp = tp->next)
140 if (tp->pid == pid)
141 break;
142
143 if (!tp)
144 return;
145
146 if (tpprev)
147 tpprev->next = tp->next;
148 else
149 thread_list = tp->next;
150
151 free_thread (tp);
152 }
153
154 static struct thread_info *
155 find_thread_id (int num)
156 {
157 struct thread_info *tp;
158
159 for (tp = thread_list; tp; tp = tp->next)
160 if (tp->num == num)
161 return tp;
162
163 return NULL;
164 }
165
166 /* Find a thread_info by matching 'pid'. */
167 struct thread_info *
168 find_thread_pid (int pid)
169 {
170 struct thread_info *tp;
171
172 for (tp = thread_list; tp; tp = tp->next)
173 if (tp->pid == pid)
174 return tp;
175
176 return NULL;
177 }
178
179 /*
180 * Thread iterator function.
181 *
182 * Calls a callback function once for each thread, so long as
183 * the callback function returns false. If the callback function
184 * returns true, the iteration will end and the current thread
185 * will be returned. This can be useful for implementing a
186 * search for a thread with arbitrary attributes, or for applying
187 * some operation to every thread.
188 *
189 * FIXME: some of the existing functionality, such as
190 * "Thread apply all", might be rewritten using this functionality.
191 */
192
193 struct thread_info *
194 iterate_over_threads (callback, data)
195 int (*callback) ();
196 void *data;
197 {
198 struct thread_info *tp;
199
200 for (tp = thread_list; tp; tp = tp->next)
201 if ((*callback) (tp, data))
202 return tp;
203
204 return NULL;
205 }
206
207 int
208 valid_thread_id (int num)
209 {
210 struct thread_info *tp;
211
212 for (tp = thread_list; tp; tp = tp->next)
213 if (tp->num == num)
214 return 1;
215
216 return 0;
217 }
218
219 int
220 pid_to_thread_id (int pid)
221 {
222 struct thread_info *tp;
223
224 for (tp = thread_list; tp; tp = tp->next)
225 if (tp->pid == pid)
226 return tp->num;
227
228 return 0;
229 }
230
231 int
232 thread_id_to_pid (int num)
233 {
234 struct thread_info *thread = find_thread_id (num);
235 if (thread)
236 return thread->pid;
237 else
238 return -1;
239 }
240
241 int
242 in_thread_list (int pid)
243 {
244 struct thread_info *tp;
245
246 for (tp = thread_list; tp; tp = tp->next)
247 if (tp->pid == pid)
248 return 1;
249
250 return 0; /* Never heard of 'im */
251 }
252 #ifdef UI_OUT
253 /* Print a list of thread ids currently known, and the total number of
254 threads. To be used from within catch_errors. */
255 static int
256 do_captured_list_thread_ids (void *arg)
257 {
258 struct thread_info *tp;
259 int num = 0;
260
261 ui_out_list_begin (uiout, "thread-ids");
262
263 for (tp = thread_list; tp; tp = tp->next)
264 {
265 num++;
266 ui_out_field_int (uiout, "thread-id", tp->num);
267 }
268
269 ui_out_list_end (uiout);
270 ui_out_field_int (uiout, "number-of-threads", num);
271 return GDB_RC_OK;
272 }
273
274 /* Official gdblib interface function to get a list of thread ids and
275 the total number. */
276 enum gdb_rc
277 gdb_list_thread_ids (/* output object */)
278 {
279 return catch_errors (do_captured_list_thread_ids, NULL,
280 NULL, RETURN_MASK_ALL);
281 }
282 #endif
283
284 /* Load infrun state for the thread PID. */
285
286 void
287 load_infrun_state (int pid, CORE_ADDR *prev_pc, CORE_ADDR *prev_func_start,
288 char **prev_func_name, int *trap_expected,
289 struct breakpoint **step_resume_breakpoint,
290 struct breakpoint **through_sigtramp_breakpoint,
291 CORE_ADDR *step_range_start, CORE_ADDR *step_range_end,
292 CORE_ADDR *step_frame_address, int *handling_longjmp,
293 int *another_trap, int *stepping_through_solib_after_catch,
294 bpstat *stepping_through_solib_catchpoints,
295 int *stepping_through_sigtramp)
296 {
297 struct thread_info *tp;
298
299 /* If we can't find the thread, then we're debugging a single threaded
300 process. No need to do anything in that case. */
301 tp = find_thread_id (pid_to_thread_id (pid));
302 if (tp == NULL)
303 return;
304
305 *prev_pc = tp->prev_pc;
306 *prev_func_start = tp->prev_func_start;
307 *prev_func_name = tp->prev_func_name;
308 *step_resume_breakpoint = tp->step_resume_breakpoint;
309 *step_range_start = tp->step_range_start;
310 *step_range_end = tp->step_range_end;
311 *step_frame_address = tp->step_frame_address;
312 *through_sigtramp_breakpoint = tp->through_sigtramp_breakpoint;
313 *handling_longjmp = tp->handling_longjmp;
314 *trap_expected = tp->trap_expected;
315 *another_trap = tp->another_trap;
316 *stepping_through_solib_after_catch = tp->stepping_through_solib_after_catch;
317 *stepping_through_solib_catchpoints = tp->stepping_through_solib_catchpoints;
318 *stepping_through_sigtramp = tp->stepping_through_sigtramp;
319 }
320
321 /* Save infrun state for the thread PID. */
322
323 void
324 save_infrun_state (int pid, CORE_ADDR prev_pc, CORE_ADDR prev_func_start,
325 char *prev_func_name, int trap_expected,
326 struct breakpoint *step_resume_breakpoint,
327 struct breakpoint *through_sigtramp_breakpoint,
328 CORE_ADDR step_range_start, CORE_ADDR step_range_end,
329 CORE_ADDR step_frame_address, int handling_longjmp,
330 int another_trap, int stepping_through_solib_after_catch,
331 bpstat stepping_through_solib_catchpoints,
332 int stepping_through_sigtramp)
333 {
334 struct thread_info *tp;
335
336 /* If we can't find the thread, then we're debugging a single-threaded
337 process. Nothing to do in that case. */
338 tp = find_thread_id (pid_to_thread_id (pid));
339 if (tp == NULL)
340 return;
341
342 tp->prev_pc = prev_pc;
343 tp->prev_func_start = prev_func_start;
344 tp->prev_func_name = prev_func_name;
345 tp->step_resume_breakpoint = step_resume_breakpoint;
346 tp->step_range_start = step_range_start;
347 tp->step_range_end = step_range_end;
348 tp->step_frame_address = step_frame_address;
349 tp->through_sigtramp_breakpoint = through_sigtramp_breakpoint;
350 tp->handling_longjmp = handling_longjmp;
351 tp->trap_expected = trap_expected;
352 tp->another_trap = another_trap;
353 tp->stepping_through_solib_after_catch = stepping_through_solib_after_catch;
354 tp->stepping_through_solib_catchpoints = stepping_through_solib_catchpoints;
355 tp->stepping_through_sigtramp = stepping_through_sigtramp;
356 }
357
358 /* Return true if TP is an active thread. */
359 static int
360 thread_alive (struct thread_info *tp)
361 {
362 if (tp->pid == -1)
363 return 0;
364 if (!target_thread_alive (tp->pid))
365 {
366 tp->pid = -1; /* Mark it as dead */
367 return 0;
368 }
369 return 1;
370 }
371
372 static void
373 prune_threads (void)
374 {
375 struct thread_info *tp, *next;
376
377 for (tp = thread_list; tp; tp = next)
378 {
379 next = tp->next;
380 if (!thread_alive (tp))
381 delete_thread (tp->pid);
382 }
383 }
384
385 /* Print information about currently known threads
386
387 * Note: this has the drawback that it _really_ switches
388 * threads, which frees the frame cache. A no-side
389 * effects info-threads command would be nicer.
390 */
391
392 static void
393 info_threads_command (char *arg, int from_tty)
394 {
395 struct thread_info *tp;
396 int current_pid;
397 struct frame_info *cur_frame;
398 int saved_frame_level = selected_frame_level;
399 int counter;
400 char *extra_info;
401
402 /* Avoid coredumps which would happen if we tried to access a NULL
403 selected_frame. */
404 if (!target_has_stack)
405 error ("No stack.");
406
407 prune_threads ();
408 target_find_new_threads ();
409 current_pid = inferior_pid;
410 for (tp = thread_list; tp; tp = tp->next)
411 {
412 if (tp->pid == current_pid)
413 printf_filtered ("* ");
414 else
415 printf_filtered (" ");
416
417 #ifdef HPUXHPPA
418 printf_filtered ("%d %s", tp->num, target_tid_to_str (tp->pid));
419 #else
420 printf_filtered ("%d %s", tp->num, target_pid_to_str (tp->pid));
421 #endif
422
423 extra_info = target_extra_thread_info (tp);
424 if (extra_info)
425 printf_filtered (" (%s)", extra_info);
426 puts_filtered (" ");
427
428 switch_to_thread (tp->pid);
429 if (selected_frame)
430 print_only_stack_frame (selected_frame, -1, 0);
431 else
432 printf_filtered ("[No stack.]\n");
433 }
434
435 switch_to_thread (current_pid);
436
437 /* Code below copied from "up_silently_base" in "stack.c".
438 * It restores the frame set by the user before the "info threads"
439 * command. We have finished the info-threads display by switching
440 * back to the current thread. That switch has put us at the top
441 * of the stack (leaf frame).
442 */
443 counter = saved_frame_level;
444 cur_frame = find_relative_frame (selected_frame, &counter);
445 if (counter != 0)
446 {
447 /* Ooops, can't restore, tell user where we are. */
448 warning ("Couldn't restore frame in current thread, at frame 0");
449 print_stack_frame (selected_frame, -1, 0);
450 }
451 else
452 {
453 select_frame (cur_frame, saved_frame_level);
454 }
455
456 /* re-show current frame. */
457 show_stack_frame (cur_frame);
458 }
459
460 /* Switch from one thread to another. */
461
462 static void
463 switch_to_thread (int pid)
464 {
465 if (pid == inferior_pid)
466 return;
467
468 inferior_pid = pid;
469 flush_cached_frames ();
470 registers_changed ();
471 stop_pc = read_pc ();
472 select_frame (get_current_frame (), 0);
473 }
474
475 static void
476 restore_current_thread (int pid)
477 {
478 if (pid != inferior_pid)
479 {
480 switch_to_thread (pid);
481 print_stack_frame (get_current_frame (), 0, -1);
482 }
483 }
484
485 struct current_thread_cleanup
486 {
487 int inferior_pid;
488 };
489
490 static void
491 do_restore_current_thread_cleanup (void *arg)
492 {
493 struct current_thread_cleanup *old = arg;
494 restore_current_thread (old->inferior_pid);
495 free (old);
496 }
497
498 static struct cleanup *
499 make_cleanup_restore_current_thread (int inferior_pid)
500 {
501 struct current_thread_cleanup *old
502 = xmalloc (sizeof (struct current_thread_cleanup));
503 old->inferior_pid = inferior_pid;
504 return make_cleanup (do_restore_current_thread_cleanup, old);
505 }
506
507 /* Apply a GDB command to a list of threads. List syntax is a whitespace
508 seperated list of numbers, or ranges, or the keyword `all'. Ranges consist
509 of two numbers seperated by a hyphen. Examples:
510
511 thread apply 1 2 7 4 backtrace Apply backtrace cmd to threads 1,2,7,4
512 thread apply 2-7 9 p foo(1) Apply p foo(1) cmd to threads 2->7 & 9
513 thread apply all p x/i $pc Apply x/i $pc cmd to all threads
514 */
515
516 static void
517 thread_apply_all_command (char *cmd, int from_tty)
518 {
519 struct thread_info *tp;
520 struct cleanup *old_chain;
521
522 if (cmd == NULL || *cmd == '\000')
523 error ("Please specify a command following the thread ID list");
524
525 old_chain = make_cleanup_restore_current_thread (inferior_pid);
526
527 /* It is safe to update the thread list now, before
528 traversing it for "thread apply all". MVS */
529 target_find_new_threads ();
530
531 for (tp = thread_list; tp; tp = tp->next)
532 if (thread_alive (tp))
533 {
534 switch_to_thread (tp->pid);
535 #ifdef HPUXHPPA
536 printf_filtered ("\nThread %d (%s):\n",
537 tp->num,
538 target_tid_to_str (inferior_pid));
539 #else
540 printf_filtered ("\nThread %d (%s):\n", tp->num,
541 target_pid_to_str (inferior_pid));
542 #endif
543 execute_command (cmd, from_tty);
544 }
545
546 do_cleanups (old_chain);
547 }
548
549 static void
550 thread_apply_command (char *tidlist, int from_tty)
551 {
552 char *cmd;
553 char *p;
554 struct cleanup *old_chain;
555
556 if (tidlist == NULL || *tidlist == '\000')
557 error ("Please specify a thread ID list");
558
559 for (cmd = tidlist; *cmd != '\000' && !isalpha (*cmd); cmd++);
560
561 if (*cmd == '\000')
562 error ("Please specify a command following the thread ID list");
563
564 old_chain = make_cleanup_restore_current_thread (inferior_pid);
565
566 while (tidlist < cmd)
567 {
568 struct thread_info *tp;
569 int start, end;
570
571 start = strtol (tidlist, &p, 10);
572 if (p == tidlist)
573 error ("Error parsing %s", tidlist);
574 tidlist = p;
575
576 while (*tidlist == ' ' || *tidlist == '\t')
577 tidlist++;
578
579 if (*tidlist == '-') /* Got a range of IDs? */
580 {
581 tidlist++; /* Skip the - */
582 end = strtol (tidlist, &p, 10);
583 if (p == tidlist)
584 error ("Error parsing %s", tidlist);
585 tidlist = p;
586
587 while (*tidlist == ' ' || *tidlist == '\t')
588 tidlist++;
589 }
590 else
591 end = start;
592
593 for (; start <= end; start++)
594 {
595 tp = find_thread_id (start);
596
597 if (!tp)
598 warning ("Unknown thread %d.", start);
599 else if (!thread_alive (tp))
600 warning ("Thread %d has terminated.", start);
601 else
602 {
603 switch_to_thread (tp->pid);
604 #ifdef HPUXHPPA
605 printf_filtered ("\nThread %d (%s):\n", tp->num,
606 target_tid_to_str (inferior_pid));
607 #else
608 printf_filtered ("\nThread %d (%s):\n", tp->num,
609 target_pid_to_str (inferior_pid));
610 #endif
611 execute_command (cmd, from_tty);
612 }
613 }
614 }
615
616 do_cleanups (old_chain);
617 }
618
619 /* Switch to the specified thread. Will dispatch off to thread_apply_command
620 if prefix of arg is `apply'. */
621
622 static void
623 thread_command (char *tidstr, int from_tty)
624 {
625 if (!tidstr)
626 {
627 /* Don't generate an error, just say which thread is current. */
628 if (target_has_stack)
629 printf_filtered ("[Current thread is %d (%s)]\n",
630 pid_to_thread_id (inferior_pid),
631 #if defined(HPUXHPPA)
632 target_tid_to_str (inferior_pid)
633 #else
634 target_pid_to_str (inferior_pid)
635 #endif
636 );
637 else
638 error ("No stack.");
639 return;
640 }
641
642 gdb_thread_select (tidstr);
643 }
644
645 static int
646 do_captured_thread_select (void *tidstr)
647 {
648 int num;
649 struct thread_info *tp;
650
651 num = atoi ((char *)tidstr);
652
653 tp = find_thread_id (num);
654
655 #ifdef UI_OUT
656 if (!tp)
657 error ("Thread ID %d not known.", num);
658 #else
659 if (!tp)
660 error ("Thread ID %d not known. Use the \"info threads\" command to\n\
661 see the IDs of currently known threads.", num);
662 #endif
663
664 if (!thread_alive (tp))
665 error ("Thread ID %d has terminated.\n", num);
666
667 switch_to_thread (tp->pid);
668
669 #ifdef UI_OUT
670 ui_out_text (uiout, "[Switching to thread ");
671 ui_out_field_int (uiout, "new-thread-id", pid_to_thread_id (inferior_pid));
672 ui_out_text (uiout, " (");
673 #if defined(HPUXHPPA)
674 ui_out_text (uiout, target_tid_to_str (inferior_pid));
675 #else
676 ui_out_text (uiout, target_pid_to_str (inferior_pid));
677 #endif
678 ui_out_text (uiout, ")]");
679 #else /* UI_OUT */
680 printf_filtered ("[Switching to thread %d (%s)]\n",
681 pid_to_thread_id (inferior_pid),
682 #if defined(HPUXHPPA)
683 target_tid_to_str (inferior_pid)
684 #else
685 target_pid_to_str (inferior_pid)
686 #endif
687 );
688 #endif /* UI_OUT */
689
690 print_stack_frame (selected_frame, selected_frame_level, 1);
691 return GDB_RC_OK;
692 }
693
694 enum gdb_rc
695 gdb_thread_select (char *tidstr)
696 {
697 return catch_errors (do_captured_thread_select, tidstr,
698 NULL, RETURN_MASK_ALL);
699 }
700
701 /* Commands with a prefix of `thread'. */
702 struct cmd_list_element *thread_cmd_list = NULL;
703
704 void
705 _initialize_thread (void)
706 {
707 static struct cmd_list_element *thread_apply_list = NULL;
708
709 add_info ("threads", info_threads_command,
710 "IDs of currently known threads.");
711
712 add_prefix_cmd ("thread", class_run, thread_command,
713 "Use this command to switch between threads.\n\
714 The new thread ID must be currently known.", &thread_cmd_list, "thread ", 1,
715 &cmdlist);
716
717 add_prefix_cmd ("apply", class_run, thread_apply_command,
718 "Apply a command to a list of threads.",
719 &thread_apply_list, "apply ", 1, &thread_cmd_list);
720
721 add_cmd ("all", class_run, thread_apply_all_command,
722 "Apply a command to all threads.",
723 &thread_apply_list);
724
725 if (!xdb_commands)
726 add_com_alias ("t", "thread", class_run, 1);
727 }