gdb: Remove cleanup from linux-fork.c:inferior_call_waitpid
[deliverable/binutils-gdb.git] / gdb / linux-fork.c
1 /* GNU/Linux native-dependent code for debugging multiple forks.
2
3 Copyright (C) 2005-2019 Free Software Foundation, Inc.
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
19
20 #include "defs.h"
21 #include "arch-utils.h"
22 #include "inferior.h"
23 #include "infrun.h"
24 #include "regcache.h"
25 #include "gdbcmd.h"
26 #include "infcall.h"
27 #include "objfiles.h"
28 #include "linux-fork.h"
29 #include "linux-nat.h"
30 #include "gdbthread.h"
31 #include "source.h"
32
33 #include "nat/gdb_ptrace.h"
34 #include "gdb_wait.h"
35 #include <dirent.h>
36 #include <ctype.h>
37
38 struct fork_info *fork_list;
39 static int highest_fork_num;
40
41 /* Fork list data structure: */
42 struct fork_info
43 {
44 struct fork_info *next;
45 ptid_t ptid;
46 ptid_t parent_ptid;
47 int num; /* Convenient handle (GDB fork id). */
48 readonly_detached_regcache *savedregs; /* Convenient for info fork, saves
49 having to actually switch contexts. */
50 CORE_ADDR pc;
51 int clobber_regs; /* True if we should restore saved regs. */
52 off_t *filepos; /* Set of open file descriptors' offsets. */
53 int maxfd;
54 };
55
56 /* Fork list methods: */
57
58 int
59 forks_exist_p (void)
60 {
61 return (fork_list != NULL);
62 }
63
64 /* Return the last fork in the list. */
65
66 static struct fork_info *
67 find_last_fork (void)
68 {
69 struct fork_info *last;
70
71 if (fork_list == NULL)
72 return NULL;
73
74 for (last = fork_list; last->next != NULL; last = last->next)
75 ;
76 return last;
77 }
78
79 /* Add a fork to the internal fork list. */
80
81 struct fork_info *
82 add_fork (pid_t pid)
83 {
84 struct fork_info *fp;
85
86 if (fork_list == NULL && pid != inferior_ptid.pid ())
87 {
88 /* Special case -- if this is the first fork in the list
89 (the list is hitherto empty), and if this new fork is
90 NOT the current inferior_ptid, then add inferior_ptid
91 first, as a special zeroeth fork id. */
92 highest_fork_num = -1;
93 add_fork (inferior_ptid.pid ()); /* safe recursion */
94 }
95
96 fp = XCNEW (struct fork_info);
97 fp->ptid = ptid_t (pid, pid, 0);
98 fp->num = ++highest_fork_num;
99
100 if (fork_list == NULL)
101 fork_list = fp;
102 else
103 {
104 struct fork_info *last = find_last_fork ();
105
106 last->next = fp;
107 }
108
109 return fp;
110 }
111
112 static void
113 free_fork (struct fork_info *fp)
114 {
115 /* Notes on step-resume breakpoints: since this is a concern for
116 threads, let's convince ourselves that it's not a concern for
117 forks. There are two ways for a fork_info to be created. First,
118 by the checkpoint command, in which case we're at a gdb prompt
119 and there can't be any step-resume breakpoint. Second, by a fork
120 in the user program, in which case we *may* have stepped into the
121 fork call, but regardless of whether we follow the parent or the
122 child, we will return to the same place and the step-resume
123 breakpoint, if any, will take care of itself as usual. And
124 unlike threads, we do not save a private copy of the step-resume
125 breakpoint -- so we're OK. */
126
127 if (fp)
128 {
129 if (fp->savedregs)
130 delete fp->savedregs;
131 if (fp->filepos)
132 xfree (fp->filepos);
133 xfree (fp);
134 }
135 }
136
137 static void
138 delete_fork (ptid_t ptid)
139 {
140 struct fork_info *fp, *fpprev;
141
142 fpprev = NULL;
143
144 linux_target->low_forget_process (ptid.pid ());
145
146 for (fp = fork_list; fp; fpprev = fp, fp = fp->next)
147 if (fp->ptid == ptid)
148 break;
149
150 if (!fp)
151 return;
152
153 if (fpprev)
154 fpprev->next = fp->next;
155 else
156 fork_list = fp->next;
157
158 free_fork (fp);
159
160 /* Special case: if there is now only one process in the list,
161 and if it is (hopefully!) the current inferior_ptid, then
162 remove it, leaving the list empty -- we're now down to the
163 default case of debugging a single process. */
164 if (fork_list != NULL && fork_list->next == NULL &&
165 fork_list->ptid == inferior_ptid)
166 {
167 /* Last fork -- delete from list and handle as solo process
168 (should be a safe recursion). */
169 delete_fork (inferior_ptid);
170 }
171 }
172
173 /* Find a fork_info by matching PTID. */
174 static struct fork_info *
175 find_fork_ptid (ptid_t ptid)
176 {
177 struct fork_info *fp;
178
179 for (fp = fork_list; fp; fp = fp->next)
180 if (fp->ptid == ptid)
181 return fp;
182
183 return NULL;
184 }
185
186 /* Find a fork_info by matching ID. */
187 static struct fork_info *
188 find_fork_id (int num)
189 {
190 struct fork_info *fp;
191
192 for (fp = fork_list; fp; fp = fp->next)
193 if (fp->num == num)
194 return fp;
195
196 return NULL;
197 }
198
199 /* Find a fork_info by matching pid. */
200 extern struct fork_info *
201 find_fork_pid (pid_t pid)
202 {
203 struct fork_info *fp;
204
205 for (fp = fork_list; fp; fp = fp->next)
206 if (pid == fp->ptid.pid ())
207 return fp;
208
209 return NULL;
210 }
211
212 static ptid_t
213 fork_id_to_ptid (int num)
214 {
215 struct fork_info *fork = find_fork_id (num);
216 if (fork)
217 return fork->ptid;
218 else
219 return ptid_t (-1);
220 }
221
222 static void
223 init_fork_list (void)
224 {
225 struct fork_info *fp, *fpnext;
226
227 if (!fork_list)
228 return;
229
230 for (fp = fork_list; fp; fp = fpnext)
231 {
232 fpnext = fp->next;
233 free_fork (fp);
234 }
235
236 fork_list = NULL;
237 }
238
239 /* Fork list <-> gdb interface. */
240
241 /* Utility function for fork_load/fork_save.
242 Calls lseek in the (current) inferior process. */
243
244 static off_t
245 call_lseek (int fd, off_t offset, int whence)
246 {
247 char exp[80];
248
249 snprintf (&exp[0], sizeof (exp), "(long) lseek (%d, %ld, %d)",
250 fd, (long) offset, whence);
251 return (off_t) parse_and_eval_long (&exp[0]);
252 }
253
254 /* Load infrun state for the fork PTID. */
255
256 static void
257 fork_load_infrun_state (struct fork_info *fp)
258 {
259 extern void nullify_last_target_wait_ptid ();
260 int i;
261
262 linux_nat_switch_fork (fp->ptid);
263
264 if (fp->savedregs && fp->clobber_regs)
265 get_current_regcache ()->restore (fp->savedregs);
266
267 registers_changed ();
268 reinit_frame_cache ();
269
270 inferior_thread ()->suspend.stop_pc
271 = regcache_read_pc (get_current_regcache ());
272 nullify_last_target_wait_ptid ();
273
274 /* Now restore the file positions of open file descriptors. */
275 if (fp->filepos)
276 {
277 for (i = 0; i <= fp->maxfd; i++)
278 if (fp->filepos[i] != (off_t) -1)
279 call_lseek (i, fp->filepos[i], SEEK_SET);
280 /* NOTE: I can get away with using SEEK_SET and SEEK_CUR because
281 this is native-only. If it ever has to be cross, we'll have
282 to rethink this. */
283 }
284 }
285
286 /* Save infrun state for the fork PTID.
287 Exported for use by linux child_follow_fork. */
288
289 static void
290 fork_save_infrun_state (struct fork_info *fp, int clobber_regs)
291 {
292 char path[PATH_MAX];
293 struct dirent *de;
294 DIR *d;
295
296 if (fp->savedregs)
297 delete fp->savedregs;
298
299 fp->savedregs = new readonly_detached_regcache (*get_current_regcache ());
300 fp->pc = regcache_read_pc (get_current_regcache ());
301 fp->clobber_regs = clobber_regs;
302
303 if (clobber_regs)
304 {
305 /* Now save the 'state' (file position) of all open file descriptors.
306 Unfortunately fork does not take care of that for us... */
307 snprintf (path, PATH_MAX, "/proc/%ld/fd",
308 (long) fp->ptid.pid ());
309 if ((d = opendir (path)) != NULL)
310 {
311 long tmp;
312
313 fp->maxfd = 0;
314 while ((de = readdir (d)) != NULL)
315 {
316 /* Count open file descriptors (actually find highest
317 numbered). */
318 tmp = strtol (&de->d_name[0], NULL, 10);
319 if (fp->maxfd < tmp)
320 fp->maxfd = tmp;
321 }
322 /* Allocate array of file positions. */
323 fp->filepos = XRESIZEVEC (off_t, fp->filepos, fp->maxfd + 1);
324
325 /* Initialize to -1 (invalid). */
326 for (tmp = 0; tmp <= fp->maxfd; tmp++)
327 fp->filepos[tmp] = -1;
328
329 /* Now find actual file positions. */
330 rewinddir (d);
331 while ((de = readdir (d)) != NULL)
332 if (isdigit (de->d_name[0]))
333 {
334 tmp = strtol (&de->d_name[0], NULL, 10);
335 fp->filepos[tmp] = call_lseek (tmp, 0, SEEK_CUR);
336 }
337 closedir (d);
338 }
339 }
340 }
341
342 /* Kill 'em all, let God sort 'em out... */
343
344 void
345 linux_fork_killall (void)
346 {
347 /* Walk list and kill every pid. No need to treat the
348 current inferior_ptid as special (we do not return a
349 status for it) -- however any process may be a child
350 or a parent, so may get a SIGCHLD from a previously
351 killed child. Wait them all out. */
352 struct fork_info *fp;
353 pid_t pid, ret;
354 int status;
355
356 for (fp = fork_list; fp; fp = fp->next)
357 {
358 pid = fp->ptid.pid ();
359 do {
360 /* Use SIGKILL instead of PTRACE_KILL because the former works even
361 if the thread is running, while the later doesn't. */
362 kill (pid, SIGKILL);
363 ret = waitpid (pid, &status, 0);
364 /* We might get a SIGCHLD instead of an exit status. This is
365 aggravated by the first kill above - a child has just
366 died. MVS comment cut-and-pasted from linux-nat. */
367 } while (ret == pid && WIFSTOPPED (status));
368 }
369 init_fork_list (); /* Clear list, prepare to start fresh. */
370 }
371
372 /* The current inferior_ptid has exited, but there are other viable
373 forks to debug. Delete the exiting one and context-switch to the
374 first available. */
375
376 void
377 linux_fork_mourn_inferior (void)
378 {
379 struct fork_info *last;
380 int status;
381
382 /* Wait just one more time to collect the inferior's exit status.
383 Do not check whether this succeeds though, since we may be
384 dealing with a process that we attached to. Such a process will
385 only report its exit status to its original parent. */
386 waitpid (inferior_ptid.pid (), &status, 0);
387
388 /* OK, presumably inferior_ptid is the one who has exited.
389 We need to delete that one from the fork_list, and switch
390 to the next available fork. */
391 delete_fork (inferior_ptid);
392
393 /* There should still be a fork - if there's only one left,
394 delete_fork won't remove it, because we haven't updated
395 inferior_ptid yet. */
396 gdb_assert (fork_list);
397
398 last = find_last_fork ();
399 fork_load_infrun_state (last);
400 printf_filtered (_("[Switching to %s]\n"),
401 target_pid_to_str (inferior_ptid));
402
403 /* If there's only one fork, switch back to non-fork mode. */
404 if (fork_list->next == NULL)
405 delete_fork (inferior_ptid);
406 }
407
408 /* The current inferior_ptid is being detached, but there are other
409 viable forks to debug. Detach and delete it and context-switch to
410 the first available. */
411
412 void
413 linux_fork_detach (int from_tty)
414 {
415 /* OK, inferior_ptid is the one we are detaching from. We need to
416 delete it from the fork_list, and switch to the next available
417 fork. */
418
419 if (ptrace (PTRACE_DETACH, inferior_ptid.pid (), 0, 0))
420 error (_("Unable to detach %s"), target_pid_to_str (inferior_ptid));
421
422 delete_fork (inferior_ptid);
423
424 /* There should still be a fork - if there's only one left,
425 delete_fork won't remove it, because we haven't updated
426 inferior_ptid yet. */
427 gdb_assert (fork_list);
428
429 fork_load_infrun_state (fork_list);
430
431 if (from_tty)
432 printf_filtered (_("[Switching to %s]\n"),
433 target_pid_to_str (inferior_ptid));
434
435 /* If there's only one fork, switch back to non-fork mode. */
436 if (fork_list->next == NULL)
437 delete_fork (inferior_ptid);
438 }
439
440 /* Temporarily switch to the infrun state stored on the fork_info
441 identified by a given ptid_t. When this object goes out of scope,
442 restore the currently selected infrun state. */
443
444 class scoped_switch_fork_info
445 {
446 public:
447 /* Switch to the infrun state held on the fork_info identified by
448 PPTID. If PPTID is the current inferior then no switch is done. */
449 scoped_switch_fork_info (ptid_t pptid)
450 : m_oldfp (nullptr)
451 {
452 if (pptid != inferior_ptid)
453 {
454 struct fork_info *newfp = nullptr;
455
456 /* Switch to pptid. */
457 m_oldfp = find_fork_ptid (inferior_ptid);
458 gdb_assert (m_oldfp != nullptr);
459 newfp = find_fork_ptid (pptid);
460 gdb_assert (newfp != nullptr);
461 fork_save_infrun_state (m_oldfp, 1);
462 remove_breakpoints ();
463 fork_load_infrun_state (newfp);
464 insert_breakpoints ();
465 }
466 }
467
468 /* Restore the previously selected infrun state. If the constructor
469 didn't need to switch states, then nothing is done here either. */
470 ~scoped_switch_fork_info ()
471 {
472 if (m_oldfp != nullptr)
473 {
474 /* Switch back to inferior_ptid. */
475 remove_breakpoints ();
476 fork_load_infrun_state (m_oldfp);
477 insert_breakpoints ();
478 }
479 }
480
481 DISABLE_COPY_AND_ASSIGN (scoped_switch_fork_info);
482
483 private:
484 /* The fork_info for the previously selected infrun state, or nullptr if
485 we were already in the desired state, and nothing needs to be
486 restored. */
487 struct fork_info *m_oldfp;
488 };
489
490 static int
491 inferior_call_waitpid (ptid_t pptid, int pid)
492 {
493 struct objfile *waitpid_objf;
494 struct value *waitpid_fn = NULL;
495 int ret = -1;
496
497 scoped_switch_fork_info switch_fork_info (pptid);
498
499 /* Get the waitpid_fn. */
500 if (lookup_minimal_symbol ("waitpid", NULL, NULL).minsym != NULL)
501 waitpid_fn = find_function_in_inferior ("waitpid", &waitpid_objf);
502 if (!waitpid_fn
503 && lookup_minimal_symbol ("_waitpid", NULL, NULL).minsym != NULL)
504 waitpid_fn = find_function_in_inferior ("_waitpid", &waitpid_objf);
505 if (waitpid_fn != nullptr)
506 {
507 struct gdbarch *gdbarch = get_current_arch ();
508 struct value *argv[3], *retv;
509
510 /* Get the argv. */
511 argv[0] = value_from_longest (builtin_type (gdbarch)->builtin_int, pid);
512 argv[1] = value_from_pointer (builtin_type (gdbarch)->builtin_data_ptr, 0);
513 argv[2] = value_from_longest (builtin_type (gdbarch)->builtin_int, 0);
514
515 retv = call_function_by_hand (waitpid_fn, NULL, argv);
516
517 if (value_as_long (retv) >= 0)
518 ret = 0;
519 }
520
521 return ret;
522 }
523
524 /* Fork list <-> user interface. */
525
526 static void
527 delete_checkpoint_command (const char *args, int from_tty)
528 {
529 ptid_t ptid, pptid;
530 struct fork_info *fi;
531
532 if (!args || !*args)
533 error (_("Requires argument (checkpoint id to delete)"));
534
535 ptid = fork_id_to_ptid (parse_and_eval_long (args));
536 if (ptid == minus_one_ptid)
537 error (_("No such checkpoint id, %s"), args);
538
539 if (ptid == inferior_ptid)
540 error (_("\
541 Please switch to another checkpoint before deleting the current one"));
542
543 if (ptrace (PTRACE_KILL, ptid.pid (), 0, 0))
544 error (_("Unable to kill pid %s"), target_pid_to_str (ptid));
545
546 fi = find_fork_ptid (ptid);
547 gdb_assert (fi);
548 pptid = fi->parent_ptid;
549
550 if (from_tty)
551 printf_filtered (_("Killed %s\n"), target_pid_to_str (ptid));
552
553 delete_fork (ptid);
554
555 /* If fi->parent_ptid is not a part of lwp but it's a part of checkpoint
556 list, waitpid the ptid.
557 If fi->parent_ptid is a part of lwp and it is stopped, waitpid the
558 ptid. */
559 thread_info *parent = find_thread_ptid (pptid);
560 if ((parent == NULL && find_fork_ptid (pptid))
561 || (parent != NULL && parent->state == THREAD_STOPPED))
562 {
563 if (inferior_call_waitpid (pptid, ptid.pid ()))
564 warning (_("Unable to wait pid %s"), target_pid_to_str (ptid));
565 }
566 }
567
568 static void
569 detach_checkpoint_command (const char *args, int from_tty)
570 {
571 ptid_t ptid;
572
573 if (!args || !*args)
574 error (_("Requires argument (checkpoint id to detach)"));
575
576 ptid = fork_id_to_ptid (parse_and_eval_long (args));
577 if (ptid == minus_one_ptid)
578 error (_("No such checkpoint id, %s"), args);
579
580 if (ptid == inferior_ptid)
581 error (_("\
582 Please switch to another checkpoint before detaching the current one"));
583
584 if (ptrace (PTRACE_DETACH, ptid.pid (), 0, 0))
585 error (_("Unable to detach %s"), target_pid_to_str (ptid));
586
587 if (from_tty)
588 printf_filtered (_("Detached %s\n"), target_pid_to_str (ptid));
589
590 delete_fork (ptid);
591 }
592
593 /* Print information about currently known checkpoints. */
594
595 static void
596 info_checkpoints_command (const char *arg, int from_tty)
597 {
598 struct gdbarch *gdbarch = get_current_arch ();
599 struct symtab_and_line sal;
600 struct fork_info *fp;
601 ULONGEST pc;
602 int requested = -1;
603 struct fork_info *printed = NULL;
604
605 if (arg && *arg)
606 requested = (int) parse_and_eval_long (arg);
607
608 for (fp = fork_list; fp; fp = fp->next)
609 {
610 if (requested > 0 && fp->num != requested)
611 continue;
612
613 printed = fp;
614 if (fp->ptid == inferior_ptid)
615 printf_filtered ("* ");
616 else
617 printf_filtered (" ");
618
619 pc = fp->pc;
620 printf_filtered ("%d %s", fp->num, target_pid_to_str (fp->ptid));
621 if (fp->num == 0)
622 printf_filtered (_(" (main process)"));
623 printf_filtered (_(" at "));
624 fputs_filtered (paddress (gdbarch, pc), gdb_stdout);
625
626 sal = find_pc_line (pc, 0);
627 if (sal.symtab)
628 printf_filtered (_(", file %s"),
629 symtab_to_filename_for_display (sal.symtab));
630 if (sal.line)
631 printf_filtered (_(", line %d"), sal.line);
632 if (!sal.symtab && !sal.line)
633 {
634 struct bound_minimal_symbol msym;
635
636 msym = lookup_minimal_symbol_by_pc (pc);
637 if (msym.minsym)
638 printf_filtered (", <%s>", MSYMBOL_LINKAGE_NAME (msym.minsym));
639 }
640
641 putchar_filtered ('\n');
642 }
643 if (printed == NULL)
644 {
645 if (requested > 0)
646 printf_filtered (_("No checkpoint number %d.\n"), requested);
647 else
648 printf_filtered (_("No checkpoints.\n"));
649 }
650 }
651
652 /* The PID of the process we're checkpointing. */
653 static int checkpointing_pid = 0;
654
655 int
656 linux_fork_checkpointing_p (int pid)
657 {
658 return (checkpointing_pid == pid);
659 }
660
661 /* Callback for iterate over threads. Used to check whether
662 the current inferior is multi-threaded. Returns true as soon
663 as it sees the second thread of the current inferior. */
664
665 static int
666 inf_has_multiple_thread_cb (struct thread_info *tp, void *data)
667 {
668 int *count_p = (int *) data;
669
670 if (current_inferior ()->pid == tp->ptid.pid ())
671 (*count_p)++;
672
673 /* Stop the iteration if multiple threads have been detected. */
674 return *count_p > 1;
675 }
676
677 /* Return true if the current inferior is multi-threaded. */
678
679 static int
680 inf_has_multiple_threads (void)
681 {
682 int count = 0;
683
684 iterate_over_threads (inf_has_multiple_thread_cb, &count);
685 return (count > 1);
686 }
687
688 static void
689 checkpoint_command (const char *args, int from_tty)
690 {
691 struct objfile *fork_objf;
692 struct gdbarch *gdbarch;
693 struct target_waitstatus last_target_waitstatus;
694 ptid_t last_target_ptid;
695 struct value *fork_fn = NULL, *ret;
696 struct fork_info *fp;
697 pid_t retpid;
698
699 if (!target_has_execution)
700 error (_("The program is not being run."));
701
702 /* Ensure that the inferior is not multithreaded. */
703 update_thread_list ();
704 if (inf_has_multiple_threads ())
705 error (_("checkpoint: can't checkpoint multiple threads."));
706
707 /* Make the inferior fork, record its (and gdb's) state. */
708
709 if (lookup_minimal_symbol ("fork", NULL, NULL).minsym != NULL)
710 fork_fn = find_function_in_inferior ("fork", &fork_objf);
711 if (!fork_fn)
712 if (lookup_minimal_symbol ("_fork", NULL, NULL).minsym != NULL)
713 fork_fn = find_function_in_inferior ("fork", &fork_objf);
714 if (!fork_fn)
715 error (_("checkpoint: can't find fork function in inferior."));
716
717 gdbarch = get_objfile_arch (fork_objf);
718 ret = value_from_longest (builtin_type (gdbarch)->builtin_int, 0);
719
720 /* Tell linux-nat.c that we're checkpointing this inferior. */
721 {
722 scoped_restore save_pid
723 = make_scoped_restore (&checkpointing_pid, inferior_ptid.pid ());
724
725 ret = call_function_by_hand (fork_fn, NULL, {});
726 }
727
728 if (!ret) /* Probably can't happen. */
729 error (_("checkpoint: call_function_by_hand returned null."));
730
731 retpid = value_as_long (ret);
732 get_last_target_status (&last_target_ptid, &last_target_waitstatus);
733
734 fp = find_fork_pid (retpid);
735
736 if (from_tty)
737 {
738 int parent_pid;
739
740 printf_filtered (_("checkpoint %d: fork returned pid %ld.\n"),
741 fp != NULL ? fp->num : -1, (long) retpid);
742 if (info_verbose)
743 {
744 parent_pid = last_target_ptid.lwp ();
745 if (parent_pid == 0)
746 parent_pid = last_target_ptid.pid ();
747 printf_filtered (_(" gdb says parent = %ld.\n"),
748 (long) parent_pid);
749 }
750 }
751
752 if (!fp)
753 error (_("Failed to find new fork"));
754 fork_save_infrun_state (fp, 1);
755 fp->parent_ptid = last_target_ptid;
756 }
757
758 static void
759 linux_fork_context (struct fork_info *newfp, int from_tty)
760 {
761 /* Now we attempt to switch processes. */
762 struct fork_info *oldfp;
763
764 gdb_assert (newfp != NULL);
765
766 oldfp = find_fork_ptid (inferior_ptid);
767 gdb_assert (oldfp != NULL);
768
769 fork_save_infrun_state (oldfp, 1);
770 remove_breakpoints ();
771 fork_load_infrun_state (newfp);
772 insert_breakpoints ();
773
774 printf_filtered (_("Switching to %s\n"),
775 target_pid_to_str (inferior_ptid));
776
777 print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC, 1);
778 }
779
780 /* Switch inferior process (checkpoint) context, by checkpoint id. */
781 static void
782 restart_command (const char *args, int from_tty)
783 {
784 struct fork_info *fp;
785
786 if (!args || !*args)
787 error (_("Requires argument (checkpoint id to restart)"));
788
789 if ((fp = find_fork_id (parse_and_eval_long (args))) == NULL)
790 error (_("Not found: checkpoint id %s"), args);
791
792 linux_fork_context (fp, from_tty);
793 }
794
795 void
796 _initialize_linux_fork (void)
797 {
798 init_fork_list ();
799
800 /* Checkpoint command: create a fork of the inferior process
801 and set it aside for later debugging. */
802
803 add_com ("checkpoint", class_obscure, checkpoint_command, _("\
804 Fork a duplicate process (experimental)."));
805
806 /* Restart command: restore the context of a specified checkpoint
807 process. */
808
809 add_com ("restart", class_obscure, restart_command, _("\
810 restart N: restore program context from a checkpoint.\n\
811 Argument N is checkpoint ID, as displayed by 'info checkpoints'."));
812
813 /* Delete checkpoint command: kill the process and remove it from
814 the fork list. */
815
816 add_cmd ("checkpoint", class_obscure, delete_checkpoint_command, _("\
817 Delete a checkpoint (experimental)."),
818 &deletelist);
819
820 /* Detach checkpoint command: release the process to run independently,
821 and remove it from the fork list. */
822
823 add_cmd ("checkpoint", class_obscure, detach_checkpoint_command, _("\
824 Detach from a checkpoint (experimental)."),
825 &detachlist);
826
827 /* Info checkpoints command: list all forks/checkpoints
828 currently under gdb's control. */
829
830 add_info ("checkpoints", info_checkpoints_command,
831 _("IDs of currently known checkpoints."));
832 }
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