2010-05-14 Phil Muldoon <pmuldoon@redhat.com>
[deliverable/binutils-gdb.git] / gdb / linux-fork.c
CommitLineData
ac264b3b
MS
1/* GNU/Linux native-dependent code for debugging multiple forks.
2
4c38e0a4
JB
3 Copyright (C) 2005, 2006, 2007, 2008, 2009, 2010
4 Free Software Foundation, Inc.
ac264b3b
MS
5
6 This file is part of GDB.
7
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
a9762ec7 10 the Free Software Foundation; either version 3 of the License, or
ac264b3b
MS
11 (at your option) any later version.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
a9762ec7 19 along with this program. If not, see <http://www.gnu.org/licenses/>. */
ac264b3b
MS
20
21#include "defs.h"
5af949e3 22#include "arch-utils.h"
ac264b3b
MS
23#include "inferior.h"
24#include "regcache.h"
25#include "gdbcmd.h"
26#include "infcall.h"
3e3b026f 27#include "objfiles.h"
791b663b 28#include "gdb_assert.h"
ac264b3b
MS
29#include "gdb_string.h"
30#include "linux-fork.h"
f973ed9c 31#include "linux-nat.h"
7a298875 32#include "gdbthread.h"
ac264b3b
MS
33
34#include <sys/ptrace.h>
3c61c145 35#include "gdb_wait.h"
ac264b3b 36#include <sys/param.h>
91c06669 37#include "gdb_dirent.h"
ac264b3b
MS
38#include <ctype.h>
39
40struct fork_info *fork_list;
41static int highest_fork_num;
42
43/* Prevent warning from -Wmissing-prototypes. */
44extern void _initialize_linux_fork (void);
45
ac264b3b
MS
46/* Fork list data structure: */
47struct fork_info
48{
49 struct fork_info *next;
50 ptid_t ptid;
7a298875 51 ptid_t parent_ptid;
ac264b3b 52 int num; /* Convenient handle (GDB fork id) */
3cb5bea9 53 struct regcache *savedregs; /* Convenient for info fork, saves
ac264b3b
MS
54 having to actually switch contexts. */
55 int clobber_regs; /* True if we should restore saved regs. */
ac264b3b
MS
56 off_t *filepos; /* Set of open file descriptors' offsets. */
57 int maxfd;
58};
59
60/* Fork list methods: */
61
3cb5bea9 62int
ac264b3b
MS
63forks_exist_p (void)
64{
65 return (fork_list != NULL);
66}
67
3cb5bea9 68/* Add a fork to the internal fork list. */
ac264b3b 69
3cb5bea9 70struct fork_info *
ac264b3b
MS
71add_fork (pid_t pid)
72{
73 struct fork_info *fp;
74
56aac7e8 75 if (fork_list == NULL && pid != PIDGET (inferior_ptid))
ac264b3b
MS
76 {
77 /* Special case -- if this is the first fork in the list
78 (the list is hitherto empty), and if this new fork is
79 NOT the current inferior_ptid, then add inferior_ptid
80 first, as a special zeroeth fork id. */
81 highest_fork_num = -1;
82 add_fork (PIDGET (inferior_ptid)); /* safe recursion */
83 }
84
85 fp = XZALLOC (struct fork_info);
f973ed9c 86 fp->ptid = ptid_build (pid, pid, 0);
ac264b3b
MS
87 fp->num = ++highest_fork_num;
88 fp->next = fork_list;
89 fork_list = fp;
90 return fp;
91}
92
93static void
94free_fork (struct fork_info *fp)
95{
96 /* Notes on step-resume breakpoints: since this is a concern for
97 threads, let's convince ourselves that it's not a concern for
98 forks. There are two ways for a fork_info to be created. First,
99 by the checkpoint command, in which case we're at a gdb prompt
100 and there can't be any step-resume breakpoint. Second, by a fork
101 in the user program, in which case we *may* have stepped into the
102 fork call, but regardless of whether we follow the parent or the
103 child, we will return to the same place and the step-resume
104 breakpoint, if any, will take care of itself as usual. And
105 unlike threads, we do not save a private copy of the step-resume
106 breakpoint -- so we're OK. */
107
108 if (fp)
109 {
110 if (fp->savedregs)
111 regcache_xfree (fp->savedregs);
112 if (fp->filepos)
113 xfree (fp->filepos);
114 xfree (fp);
115 }
116}
117
118static void
119delete_fork (ptid_t ptid)
120{
121 struct fork_info *fp, *fpprev;
122
123 fpprev = NULL;
124
125 for (fp = fork_list; fp; fpprev = fp, fp = fp->next)
126 if (ptid_equal (fp->ptid, ptid))
127 break;
128
129 if (!fp)
130 return;
131
132 if (fpprev)
133 fpprev->next = fp->next;
134 else
135 fork_list = fp->next;
136
137 free_fork (fp);
138
3cb5bea9 139 /* Special case: if there is now only one process in the list,
ac264b3b
MS
140 and if it is (hopefully!) the current inferior_ptid, then
141 remove it, leaving the list empty -- we're now down to the
142 default case of debugging a single process. */
143 if (fork_list != NULL && fork_list->next == NULL &&
144 ptid_equal (fork_list->ptid, inferior_ptid))
145 {
146 /* Last fork -- delete from list and handle as solo process
147 (should be a safe recursion). */
148 delete_fork (inferior_ptid);
149 }
150}
151
152/* Find a fork_info by matching PTID. */
153static struct fork_info *
154find_fork_ptid (ptid_t ptid)
155{
156 struct fork_info *fp;
157
158 for (fp = fork_list; fp; fp = fp->next)
159 if (ptid_equal (fp->ptid, ptid))
160 return fp;
161
162 return NULL;
163}
164
165/* Find a fork_info by matching ID. */
166static struct fork_info *
167find_fork_id (int num)
168{
169 struct fork_info *fp;
170
171 for (fp = fork_list; fp; fp = fp->next)
172 if (fp->num == num)
173 return fp;
174
175 return NULL;
176}
177
178/* Find a fork_info by matching pid. */
179extern struct fork_info *
180find_fork_pid (pid_t pid)
181{
182 struct fork_info *fp;
183
184 for (fp = fork_list; fp; fp = fp->next)
185 if (pid == ptid_get_pid (fp->ptid))
186 return fp;
187
188 return NULL;
189}
190
191static ptid_t
192fork_id_to_ptid (int num)
193{
194 struct fork_info *fork = find_fork_id (num);
195 if (fork)
196 return fork->ptid;
197 else
198 return pid_to_ptid (-1);
199}
200
201static void
202init_fork_list (void)
203{
204 struct fork_info *fp, *fpnext;
205
206 if (!fork_list)
207 return;
208
209 for (fp = fork_list; fp; fp = fpnext)
210 {
211 fpnext = fp->next;
212 free_fork (fp);
213 }
214
215 fork_list = NULL;
216}
217
218/* Fork list <-> gdb interface. */
219
3cb5bea9 220/* Utility function for fork_load/fork_save.
ac264b3b
MS
221 Calls lseek in the (current) inferior process. */
222
223static off_t
224call_lseek (int fd, off_t offset, int whence)
225{
226 char exp[80];
227
228 snprintf (&exp[0], sizeof (exp), "lseek (%d, %ld, %d)",
229 fd, (long) offset, whence);
230 return (off_t) parse_and_eval_long (&exp[0]);
231}
232
233/* Load infrun state for the fork PTID. */
234
235static void
236fork_load_infrun_state (struct fork_info *fp)
237{
238 extern void nullify_last_target_wait_ptid ();
239 int i;
240
2277426b 241 linux_nat_switch_fork (fp->ptid);
f973ed9c 242
ac264b3b 243 if (fp->savedregs && fp->clobber_regs)
594f7785 244 regcache_cpy (get_current_regcache (), fp->savedregs);
ac264b3b 245
791b663b
DJ
246 registers_changed ();
247 reinit_frame_cache ();
248
fb14de7b 249 stop_pc = regcache_read_pc (get_current_regcache ());
ac264b3b
MS
250 nullify_last_target_wait_ptid ();
251
252 /* Now restore the file positions of open file descriptors. */
253 if (fp->filepos)
254 {
255 for (i = 0; i <= fp->maxfd; i++)
256 if (fp->filepos[i] != (off_t) -1)
257 call_lseek (i, fp->filepos[i], SEEK_SET);
258 /* NOTE: I can get away with using SEEK_SET and SEEK_CUR because
259 this is native-only. If it ever has to be cross, we'll have
260 to rethink this. */
261 }
262}
263
264/* Save infrun state for the fork PTID.
265 Exported for use by linux child_follow_fork. */
266
2277426b 267static void
ac264b3b
MS
268fork_save_infrun_state (struct fork_info *fp, int clobber_regs)
269{
270 char path[MAXPATHLEN];
271 struct dirent *de;
272 DIR *d;
273
274 if (fp->savedregs)
275 regcache_xfree (fp->savedregs);
276
594f7785 277 fp->savedregs = regcache_dup (get_current_regcache ());
ac264b3b 278 fp->clobber_regs = clobber_regs;
ac264b3b
MS
279
280 if (clobber_regs)
281 {
282 /* Now save the 'state' (file position) of all open file descriptors.
283 Unfortunately fork does not take care of that for us... */
284 snprintf (path, MAXPATHLEN, "/proc/%ld/fd", (long) PIDGET (fp->ptid));
285 if ((d = opendir (path)) != NULL)
286 {
287 long tmp;
288
289 fp->maxfd = 0;
290 while ((de = readdir (d)) != NULL)
291 {
292 /* Count open file descriptors (actually find highest
293 numbered). */
294 tmp = strtol (&de->d_name[0], NULL, 10);
295 if (fp->maxfd < tmp)
296 fp->maxfd = tmp;
297 }
298 /* Allocate array of file positions. */
3cb5bea9 299 fp->filepos = xrealloc (fp->filepos,
ac264b3b
MS
300 (fp->maxfd + 1) * sizeof (*fp->filepos));
301
302 /* Initialize to -1 (invalid). */
303 for (tmp = 0; tmp <= fp->maxfd; tmp++)
304 fp->filepos[tmp] = -1;
305
306 /* Now find actual file positions. */
307 rewinddir (d);
308 while ((de = readdir (d)) != NULL)
309 if (isdigit (de->d_name[0]))
310 {
311 tmp = strtol (&de->d_name[0], NULL, 10);
312 fp->filepos[tmp] = call_lseek (tmp, 0, SEEK_CUR);
313 }
314 closedir (d);
315 }
316 }
317}
318
319/* Kill 'em all, let God sort 'em out... */
320
3cb5bea9 321void
ac264b3b
MS
322linux_fork_killall (void)
323{
324 /* Walk list and kill every pid. No need to treat the
325 current inferior_ptid as special (we do not return a
326 status for it) -- however any process may be a child
327 or a parent, so may get a SIGCHLD from a previously
328 killed child. Wait them all out. */
56aac7e8 329 struct fork_info *fp;
ac264b3b
MS
330 pid_t pid, ret;
331 int status;
332
56aac7e8
MS
333 for (fp = fork_list; fp; fp = fp->next)
334 {
335 pid = PIDGET (fp->ptid);
336 do {
4c28f408
PA
337 /* Use SIGKILL instead of PTRACE_KILL because the former works even
338 if the thread is running, while the later doesn't. */
339 kill (pid, SIGKILL);
56aac7e8
MS
340 ret = waitpid (pid, &status, 0);
341 /* We might get a SIGCHLD instead of an exit status. This is
342 aggravated by the first kill above - a child has just
343 died. MVS comment cut-and-pasted from linux-nat. */
344 } while (ret == pid && WIFSTOPPED (status));
345 }
346 init_fork_list (); /* Clear list, prepare to start fresh. */
ac264b3b
MS
347}
348
349/* The current inferior_ptid has exited, but there are other viable
350 forks to debug. Delete the exiting one and context-switch to the
351 first available. */
352
3cb5bea9 353void
ac264b3b
MS
354linux_fork_mourn_inferior (void)
355{
356 /* Wait just one more time to collect the inferior's exit status.
357 Do not check whether this succeeds though, since we may be
358 dealing with a process that we attached to. Such a process will
359 only report its exit status to its original parent. */
360 int status;
361
362 waitpid (ptid_get_pid (inferior_ptid), &status, 0);
363
364 /* OK, presumably inferior_ptid is the one who has exited.
365 We need to delete that one from the fork_list, and switch
366 to the next available fork. */
367 delete_fork (inferior_ptid);
791b663b
DJ
368
369 /* There should still be a fork - if there's only one left,
370 delete_fork won't remove it, because we haven't updated
371 inferior_ptid yet. */
372 gdb_assert (fork_list);
373
374 fork_load_infrun_state (fork_list);
375 printf_filtered (_("[Switching to %s]\n"),
376 target_pid_to_str (inferior_ptid));
377
378 /* If there's only one fork, switch back to non-fork mode. */
379 if (fork_list->next == NULL)
380 delete_fork (inferior_ptid);
ac264b3b
MS
381}
382
7a7d3353
PA
383/* The current inferior_ptid is being detached, but there are other
384 viable forks to debug. Detach and delete it and context-switch to
385 the first available. */
386
3cb5bea9 387void
7a7d3353
PA
388linux_fork_detach (char *args, int from_tty)
389{
390 /* OK, inferior_ptid is the one we are detaching from. We need to
391 delete it from the fork_list, and switch to the next available
392 fork. */
393
394 if (ptrace (PTRACE_DETACH, PIDGET (inferior_ptid), 0, 0))
395 error (_("Unable to detach %s"), target_pid_to_str (inferior_ptid));
396
397 delete_fork (inferior_ptid);
7a7d3353
PA
398
399 /* There should still be a fork - if there's only one left,
400 delete_fork won't remove it, because we haven't updated
401 inferior_ptid yet. */
402 gdb_assert (fork_list);
403
404 fork_load_infrun_state (fork_list);
405
406 if (from_tty)
407 printf_filtered (_("[Switching to %s]\n"),
408 target_pid_to_str (inferior_ptid));
409
410 /* If there's only one fork, switch back to non-fork mode. */
411 if (fork_list->next == NULL)
412 delete_fork (inferior_ptid);
413}
414
7a298875
HZ
415static void
416inferior_call_waitpid_cleanup (void *fp)
417{
418 struct fork_info *oldfp = fp;
419
420 /* Switch back to inferior_ptid. */
421 remove_breakpoints ();
422 fork_load_infrun_state (oldfp);
423 insert_breakpoints ();
424}
425
426static int
427inferior_call_waitpid (ptid_t pptid, int pid)
428{
429 struct objfile *waitpid_objf;
430 struct value *waitpid_fn = NULL;
431 struct value *argv[4];
432 struct gdbarch *gdbarch = get_current_arch ();
433 struct fork_info *oldfp = NULL, *newfp = NULL;
434 struct cleanup *old_cleanup = NULL;
435 int ret = -1;
436
437 if (!ptid_equal (pptid, inferior_ptid))
438 {
439 /* Switch to pptid. */
440 oldfp = find_fork_ptid (inferior_ptid);
441 gdb_assert (oldfp != NULL);
442 newfp = find_fork_ptid (pptid);
443 gdb_assert (oldfp != NULL);
444 fork_save_infrun_state (oldfp, 1);
445 remove_breakpoints ();
446 fork_load_infrun_state (newfp);
447 insert_breakpoints ();
448
449 old_cleanup = make_cleanup (inferior_call_waitpid_cleanup, oldfp);
450 }
451
452 /* Get the waitpid_fn. */
453 if (lookup_minimal_symbol ("waitpid", NULL, NULL) != NULL)
454 waitpid_fn = find_function_in_inferior ("waitpid", &waitpid_objf);
455 if (!waitpid_fn && lookup_minimal_symbol ("_waitpid", NULL, NULL) != NULL)
456 waitpid_fn = find_function_in_inferior ("_waitpid", &waitpid_objf);
457 if (!waitpid_fn)
458 goto out;
459
460 /* Get the argv. */
461 argv[0] = value_from_longest (builtin_type (gdbarch)->builtin_int, pid);
462 argv[1] = value_from_pointer (builtin_type (gdbarch)->builtin_data_ptr, 0);
463 argv[2] = value_from_longest (builtin_type (gdbarch)->builtin_int, 0);
464 argv[3] = 0;
465
466 call_function_by_hand (waitpid_fn, 3, argv);
467
468 ret = 0;
469
470out:
471 if (old_cleanup)
472 do_cleanups (old_cleanup);
473 return ret;
474}
475
ac264b3b
MS
476/* Fork list <-> user interface. */
477
478static void
3cb5bea9 479delete_checkpoint_command (char *args, int from_tty)
ac264b3b
MS
480{
481 ptid_t ptid;
7a298875 482 struct fork_info *fi;
ac264b3b
MS
483
484 if (!args || !*args)
2277426b 485 error (_("Requires argument (checkpoint id to delete)"));
ac264b3b
MS
486
487 ptid = fork_id_to_ptid (parse_and_eval_long (args));
488 if (ptid_equal (ptid, minus_one_ptid))
2277426b 489 error (_("No such checkpoint id, %s"), args);
ac264b3b
MS
490
491 if (ptid_equal (ptid, inferior_ptid))
3cb5bea9
PA
492 error (_("\
493Please switch to another checkpoint before deleting the current one"));
ac264b3b 494
1dce6535 495 if (ptrace (PTRACE_KILL, PIDGET (ptid), 0, 0))
54ba13f7 496 error (_("Unable to kill pid %s"), target_pid_to_str (ptid));
ac264b3b 497
7a298875
HZ
498 fi = find_fork_ptid (ptid);
499 gdb_assert (fi);
500
ac264b3b
MS
501 if (from_tty)
502 printf_filtered (_("Killed %s\n"), target_pid_to_str (ptid));
503
504 delete_fork (ptid);
7a298875
HZ
505
506 /* If fi->parent_ptid is not a part of lwp but it's a part of checkpoint
507 list, waitpid the ptid.
508 If fi->parent_ptid is a part of lwp and it is stoped, waitpid the
509 ptid. */
510 if ((!find_thread_ptid (fi->parent_ptid) && find_fork_ptid (fi->parent_ptid))
511 || (find_thread_ptid (fi->parent_ptid) && is_stopped (fi->parent_ptid)))
512 {
513 if (inferior_call_waitpid (fi->parent_ptid, PIDGET (ptid)))
514 warning (_("Unable to wait pid %s"), target_pid_to_str (ptid));
515 }
ac264b3b
MS
516}
517
518static void
3cb5bea9 519detach_checkpoint_command (char *args, int from_tty)
ac264b3b
MS
520{
521 ptid_t ptid;
522
523 if (!args || !*args)
2277426b 524 error (_("Requires argument (checkpoint id to detach)"));
ac264b3b
MS
525
526 ptid = fork_id_to_ptid (parse_and_eval_long (args));
527 if (ptid_equal (ptid, minus_one_ptid))
2277426b 528 error (_("No such checkpoint id, %s"), args);
ac264b3b
MS
529
530 if (ptid_equal (ptid, inferior_ptid))
2277426b
PA
531 error (_("\
532Please switch to another checkpoint before detaching the current one"));
ac264b3b 533
1dce6535 534 if (ptrace (PTRACE_DETACH, PIDGET (ptid), 0, 0))
ac264b3b
MS
535 error (_("Unable to detach %s"), target_pid_to_str (ptid));
536
537 if (from_tty)
538 printf_filtered (_("Detached %s\n"), target_pid_to_str (ptid));
539
540 delete_fork (ptid);
541}
542
3cb5bea9 543/* Print information about currently known checkpoints. */
ac264b3b
MS
544
545static void
3cb5bea9 546info_checkpoints_command (char *arg, int from_tty)
ac264b3b 547{
5af949e3 548 struct gdbarch *gdbarch = get_current_arch ();
ac264b3b 549 struct symtab_and_line sal;
ac264b3b 550 struct fork_info *fp;
ac264b3b 551 ULONGEST pc;
b8db102d
MS
552 int requested = -1;
553 struct fork_info *printed = NULL;
554
555 if (arg && *arg)
556 requested = (int) parse_and_eval_long (arg);
ac264b3b
MS
557
558 for (fp = fork_list; fp; fp = fp->next)
559 {
b8db102d
MS
560 if (requested > 0 && fp->num != requested)
561 continue;
562
563 printed = fp;
ac264b3b
MS
564 if (ptid_equal (fp->ptid, inferior_ptid))
565 {
566 printf_filtered ("* ");
fb14de7b 567 pc = regcache_read_pc (get_current_regcache ());
ac264b3b
MS
568 }
569 else
570 {
571 printf_filtered (" ");
2277426b 572 pc = regcache_read_pc (fp->savedregs);
ac264b3b
MS
573 }
574 printf_filtered ("%d %s", fp->num, target_pid_to_str (fp->ptid));
575 if (fp->num == 0)
576 printf_filtered (_(" (main process)"));
577 printf_filtered (_(" at "));
5af949e3 578 fputs_filtered (paddress (gdbarch, pc), gdb_stdout);
ac264b3b
MS
579
580 sal = find_pc_line (pc, 0);
581 if (sal.symtab)
582 {
583 char *tmp = strrchr (sal.symtab->filename, '/');
584
585 if (tmp)
586 printf_filtered (_(", file %s"), tmp + 1);
587 else
588 printf_filtered (_(", file %s"), sal.symtab->filename);
589 }
590 if (sal.line)
591 printf_filtered (_(", line %d"), sal.line);
592 if (!sal.symtab && !sal.line)
593 {
594 struct minimal_symbol *msym;
595
596 msym = lookup_minimal_symbol_by_pc (pc);
597 if (msym)
598 printf_filtered (", <%s>", SYMBOL_LINKAGE_NAME (msym));
599 }
600
601 putchar_filtered ('\n');
602 }
b8db102d
MS
603 if (printed == NULL)
604 {
605 if (requested > 0)
2277426b 606 printf_filtered (_("No checkpoint number %d.\n"), requested);
b8db102d 607 else
2277426b 608 printf_filtered (_("No checkpoints.\n"));
b8db102d 609 }
ac264b3b
MS
610}
611
2277426b
PA
612/* The PID of the process we're checkpointing. */
613static int checkpointing_pid = 0;
ac264b3b 614
2277426b
PA
615int
616linux_fork_checkpointing_p (int pid)
ac264b3b 617{
2277426b 618 return (checkpointing_pid == pid);
ac264b3b
MS
619}
620
621static void
622checkpoint_command (char *args, int from_tty)
623{
3e3b026f
UW
624 struct objfile *fork_objf;
625 struct gdbarch *gdbarch;
ac264b3b
MS
626 struct target_waitstatus last_target_waitstatus;
627 ptid_t last_target_ptid;
628 struct value *fork_fn = NULL, *ret;
629 struct fork_info *fp;
630 pid_t retpid;
631 struct cleanup *old_chain;
74960c60 632
ac264b3b
MS
633 /* Make the inferior fork, record its (and gdb's) state. */
634
635 if (lookup_minimal_symbol ("fork", NULL, NULL) != NULL)
3e3b026f 636 fork_fn = find_function_in_inferior ("fork", &fork_objf);
ac264b3b
MS
637 if (!fork_fn)
638 if (lookup_minimal_symbol ("_fork", NULL, NULL) != NULL)
3e3b026f 639 fork_fn = find_function_in_inferior ("fork", &fork_objf);
ac264b3b
MS
640 if (!fork_fn)
641 error (_("checkpoint: can't find fork function in inferior."));
642
3e3b026f
UW
643 gdbarch = get_objfile_arch (fork_objf);
644 ret = value_from_longest (builtin_type (gdbarch)->builtin_int, 0);
2277426b
PA
645
646 /* Tell linux-nat.c that we're checkpointing this inferior. */
647 old_chain = make_cleanup_restore_integer (&checkpointing_pid);
648 checkpointing_pid = PIDGET (inferior_ptid);
649
ac264b3b
MS
650 ret = call_function_by_hand (fork_fn, 0, &ret);
651 do_cleanups (old_chain);
652 if (!ret) /* Probably can't happen. */
653 error (_("checkpoint: call_function_by_hand returned null."));
654
655 retpid = value_as_long (ret);
656 get_last_target_status (&last_target_ptid, &last_target_waitstatus);
657 if (from_tty)
658 {
659 int parent_pid;
660
3cb5bea9 661 printf_filtered (_("checkpoint: fork returned pid %ld.\n"),
ac264b3b
MS
662 (long) retpid);
663 if (info_verbose)
664 {
665 parent_pid = ptid_get_lwp (last_target_ptid);
666 if (parent_pid == 0)
667 parent_pid = ptid_get_pid (last_target_ptid);
3cb5bea9 668 printf_filtered (_(" gdb says parent = %ld.\n"),
ac264b3b
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669 (long) parent_pid);
670 }
671 }
672
673 fp = find_fork_pid (retpid);
674 if (!fp)
675 error (_("Failed to find new fork"));
676 fork_save_infrun_state (fp, 1);
7a298875 677 fp->parent_ptid = last_target_ptid;
ac264b3b
MS
678}
679
680static void
681linux_fork_context (struct fork_info *newfp, int from_tty)
682{
683 /* Now we attempt to switch processes. */
0d14fc63 684 struct fork_info *oldfp;
ac264b3b 685
0d14fc63 686 gdb_assert (newfp != NULL);
ac264b3b 687
0d14fc63
PA
688 oldfp = find_fork_ptid (inferior_ptid);
689 gdb_assert (oldfp != NULL);
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690
691 fork_save_infrun_state (oldfp, 1);
74960c60 692 remove_breakpoints ();
ac264b3b 693 fork_load_infrun_state (newfp);
74960c60 694 insert_breakpoints ();
ac264b3b 695
3cb5bea9 696 printf_filtered (_("Switching to %s\n"),
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697 target_pid_to_str (inferior_ptid));
698
699 print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC);
700}
701
2277426b 702/* Switch inferior process (checkpoint) context, by checkpoint id. */
ac264b3b
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703static void
704restart_command (char *args, int from_tty)
705{
706 struct fork_info *fp;
707
708 if (!args || !*args)
709 error (_("Requires argument (checkpoint id to restart)"));
710
711 if ((fp = find_fork_id (parse_and_eval_long (args))) == NULL)
712 error (_("Not found: checkpoint id %s"), args);
713
714 linux_fork_context (fp, from_tty);
715}
716
717void
718_initialize_linux_fork (void)
719{
720 init_fork_list ();
721
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722 /* Checkpoint command: create a fork of the inferior process
723 and set it aside for later debugging. */
724
725 add_com ("checkpoint", class_obscure, checkpoint_command, _("\
726Fork a duplicate process (experimental)."));
727
2277426b
PA
728 /* Restart command: restore the context of a specified checkpoint
729 process. */
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730
731 add_com ("restart", class_obscure, restart_command, _("\
732restart <n>: restore program context from a checkpoint.\n\
733Argument 'n' is checkpoint ID, as displayed by 'info checkpoints'."));
734
b8db102d 735 /* Delete checkpoint command: kill the process and remove it from
3cb5bea9 736 the fork list. */
ac264b3b 737
3cb5bea9 738 add_cmd ("checkpoint", class_obscure, delete_checkpoint_command, _("\
2277426b 739Delete a checkpoint (experimental)."),
b8db102d 740 &deletelist);
ac264b3b 741
3cb5bea9 742 /* Detach checkpoint command: release the process to run independently,
ac264b3b
MS
743 and remove it from the fork list. */
744
3cb5bea9 745 add_cmd ("checkpoint", class_obscure, detach_checkpoint_command, _("\
2277426b 746Detach from a checkpoint (experimental)."),
f73adfeb 747 &detachlist);
ac264b3b 748
3cb5bea9 749 /* Info checkpoints command: list all forks/checkpoints
ac264b3b
MS
750 currently under gdb's control. */
751
3cb5bea9 752 add_info ("checkpoints", info_checkpoints_command,
2277426b 753 _("IDs of currently known checkpoints."));
ac264b3b 754}
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