rotate gdb/ChangeLog
[deliverable/binutils-gdb.git] / gdb / linux-fork.c
CommitLineData
ac264b3b
MS
1/* GNU/Linux native-dependent code for debugging multiple forks.
2
e2882c85 3 Copyright (C) 2005-2018 Free Software Foundation, Inc.
ac264b3b
MS
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
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
ac264b3b
MS
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
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
ac264b3b
MS
19
20#include "defs.h"
5af949e3 21#include "arch-utils.h"
ac264b3b 22#include "inferior.h"
45741a9c 23#include "infrun.h"
ac264b3b
MS
24#include "regcache.h"
25#include "gdbcmd.h"
26#include "infcall.h"
3e3b026f 27#include "objfiles.h"
ac264b3b 28#include "linux-fork.h"
f973ed9c 29#include "linux-nat.h"
7a298875 30#include "gdbthread.h"
05cba821 31#include "source.h"
ac264b3b 32
5826e159 33#include "nat/gdb_ptrace.h"
3c61c145 34#include "gdb_wait.h"
2978b111 35#include <dirent.h>
ac264b3b
MS
36#include <ctype.h>
37
38struct fork_info *fork_list;
39static int highest_fork_num;
40
ac264b3b
MS
41/* Fork list data structure: */
42struct fork_info
43{
44 struct fork_info *next;
45 ptid_t ptid;
7a298875 46 ptid_t parent_ptid;
1777feb0 47 int num; /* Convenient handle (GDB fork id). */
daf6667d 48 readonly_detached_regcache *savedregs; /* Convenient for info fork, saves
ac264b3b 49 having to actually switch contexts. */
daf6667d 50 CORE_ADDR pc;
ac264b3b 51 int clobber_regs; /* True if we should restore saved regs. */
ac264b3b
MS
52 off_t *filepos; /* Set of open file descriptors' offsets. */
53 int maxfd;
54};
55
56/* Fork list methods: */
57
3cb5bea9 58int
ac264b3b
MS
59forks_exist_p (void)
60{
61 return (fork_list != NULL);
62}
63
2f341b6e
PA
64/* Return the last fork in the list. */
65
66static struct fork_info *
67find_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
3cb5bea9 79/* Add a fork to the internal fork list. */
ac264b3b 80
3cb5bea9 81struct fork_info *
ac264b3b
MS
82add_fork (pid_t pid)
83{
84 struct fork_info *fp;
85
e99b03dc 86 if (fork_list == NULL && pid != inferior_ptid.pid ())
ac264b3b
MS
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;
e99b03dc 93 add_fork (inferior_ptid.pid ()); /* safe recursion */
ac264b3b
MS
94 }
95
41bf6aca 96 fp = XCNEW (struct fork_info);
fd79271b 97 fp->ptid = ptid_t (pid, pid, 0);
ac264b3b 98 fp->num = ++highest_fork_num;
2f341b6e
PA
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
ac264b3b
MS
109 return fp;
110}
111
112static void
113free_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)
c0e383c6 130 delete fp->savedregs;
ac264b3b
MS
131 if (fp->filepos)
132 xfree (fp->filepos);
133 xfree (fp);
134 }
135}
136
137static void
138delete_fork (ptid_t ptid)
139{
140 struct fork_info *fp, *fpprev;
141
142 fpprev = NULL;
143
e99b03dc 144 linux_target->low_forget_process (ptid.pid ());
26cb8b7c 145
ac264b3b 146 for (fp = fork_list; fp; fpprev = fp, fp = fp->next)
d7e15655 147 if (fp->ptid == ptid)
ac264b3b
MS
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
3cb5bea9 160 /* Special case: if there is now only one process in the list,
ac264b3b
MS
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 &&
d7e15655 165 fork_list->ptid == inferior_ptid)
ac264b3b
MS
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. */
174static struct fork_info *
175find_fork_ptid (ptid_t ptid)
176{
177 struct fork_info *fp;
178
179 for (fp = fork_list; fp; fp = fp->next)
d7e15655 180 if (fp->ptid == ptid)
ac264b3b
MS
181 return fp;
182
183 return NULL;
184}
185
186/* Find a fork_info by matching ID. */
187static struct fork_info *
188find_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. */
200extern struct fork_info *
201find_fork_pid (pid_t pid)
202{
203 struct fork_info *fp;
204
205 for (fp = fork_list; fp; fp = fp->next)
e99b03dc 206 if (pid == fp->ptid.pid ())
ac264b3b
MS
207 return fp;
208
209 return NULL;
210}
211
212static ptid_t
213fork_id_to_ptid (int num)
214{
215 struct fork_info *fork = find_fork_id (num);
216 if (fork)
217 return fork->ptid;
218 else
f2907e49 219 return ptid_t (-1);
ac264b3b
MS
220}
221
222static void
223init_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
3cb5bea9 241/* Utility function for fork_load/fork_save.
ac264b3b
MS
242 Calls lseek in the (current) inferior process. */
243
244static off_t
245call_lseek (int fd, off_t offset, int whence)
246{
247 char exp[80];
248
7022349d 249 snprintf (&exp[0], sizeof (exp), "(long) lseek (%d, %ld, %d)",
ac264b3b
MS
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
256static void
257fork_load_infrun_state (struct fork_info *fp)
258{
259 extern void nullify_last_target_wait_ptid ();
260 int i;
261
2277426b 262 linux_nat_switch_fork (fp->ptid);
f973ed9c 263
ac264b3b 264 if (fp->savedregs && fp->clobber_regs)
fc5b8736 265 get_current_regcache ()->restore (fp->savedregs);
ac264b3b 266
791b663b
DJ
267 registers_changed ();
268 reinit_frame_cache ();
269
f2ffa92b
PA
270 inferior_thread ()->suspend.stop_pc
271 = regcache_read_pc (get_current_regcache ());
ac264b3b
MS
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
2277426b 289static void
ac264b3b
MS
290fork_save_infrun_state (struct fork_info *fp, int clobber_regs)
291{
d8d2a3ee 292 char path[PATH_MAX];
ac264b3b
MS
293 struct dirent *de;
294 DIR *d;
295
296 if (fp->savedregs)
c0e383c6 297 delete fp->savedregs;
ac264b3b 298
daf6667d
YQ
299 fp->savedregs = new readonly_detached_regcache (*get_current_regcache ());
300 fp->pc = regcache_read_pc (get_current_regcache ());
ac264b3b 301 fp->clobber_regs = clobber_regs;
ac264b3b
MS
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... */
dfd4cc63 307 snprintf (path, PATH_MAX, "/proc/%ld/fd",
e99b03dc 308 (long) fp->ptid.pid ());
ac264b3b
MS
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. */
224c3ddb 323 fp->filepos = XRESIZEVEC (off_t, fp->filepos, fp->maxfd + 1);
ac264b3b
MS
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
3cb5bea9 344void
ac264b3b
MS
345linux_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. */
56aac7e8 352 struct fork_info *fp;
ac264b3b
MS
353 pid_t pid, ret;
354 int status;
355
56aac7e8
MS
356 for (fp = fork_list; fp; fp = fp->next)
357 {
e99b03dc 358 pid = fp->ptid.pid ();
56aac7e8 359 do {
4c28f408
PA
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);
56aac7e8
MS
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. */
ac264b3b
MS
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
3cb5bea9 376void
ac264b3b
MS
377linux_fork_mourn_inferior (void)
378{
2f341b6e
PA
379 struct fork_info *last;
380 int status;
381
ac264b3b
MS
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. */
e99b03dc 386 waitpid (inferior_ptid.pid (), &status, 0);
ac264b3b
MS
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);
791b663b
DJ
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
2f341b6e
PA
398 last = find_last_fork ();
399 fork_load_infrun_state (last);
791b663b
DJ
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);
ac264b3b
MS
406}
407
7a7d3353
PA
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
3cb5bea9 412void
6bd6f3b6 413linux_fork_detach (int from_tty)
7a7d3353
PA
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
e99b03dc 419 if (ptrace (PTRACE_DETACH, inferior_ptid.pid (), 0, 0))
7a7d3353
PA
420 error (_("Unable to detach %s"), target_pid_to_str (inferior_ptid));
421
422 delete_fork (inferior_ptid);
7a7d3353
PA
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
7a298875
HZ
440static void
441inferior_call_waitpid_cleanup (void *fp)
442{
9a3c8263 443 struct fork_info *oldfp = (struct fork_info *) fp;
7a298875 444
e17c9e56
HZ
445 if (oldfp)
446 {
1777feb0 447 /* Switch back to inferior_ptid. */
e17c9e56
HZ
448 remove_breakpoints ();
449 fork_load_infrun_state (oldfp);
450 insert_breakpoints ();
451 }
7a298875
HZ
452}
453
454static int
455inferior_call_waitpid (ptid_t pptid, int pid)
456{
457 struct objfile *waitpid_objf;
458 struct value *waitpid_fn = NULL;
e71585ff 459 struct value *argv[3], *retv;
7a298875
HZ
460 struct gdbarch *gdbarch = get_current_arch ();
461 struct fork_info *oldfp = NULL, *newfp = NULL;
e17c9e56 462 struct cleanup *old_cleanup;
7a298875
HZ
463 int ret = -1;
464
d7e15655 465 if (pptid != inferior_ptid)
7a298875
HZ
466 {
467 /* Switch to pptid. */
468 oldfp = find_fork_ptid (inferior_ptid);
469 gdb_assert (oldfp != NULL);
470 newfp = find_fork_ptid (pptid);
da3ecdc6 471 gdb_assert (newfp != NULL);
7a298875
HZ
472 fork_save_infrun_state (oldfp, 1);
473 remove_breakpoints ();
474 fork_load_infrun_state (newfp);
475 insert_breakpoints ();
7a298875
HZ
476 }
477
e17c9e56
HZ
478 old_cleanup = make_cleanup (inferior_call_waitpid_cleanup, oldfp);
479
7a298875 480 /* Get the waitpid_fn. */
3b7344d5 481 if (lookup_minimal_symbol ("waitpid", NULL, NULL).minsym != NULL)
7a298875 482 waitpid_fn = find_function_in_inferior ("waitpid", &waitpid_objf);
3b7344d5
TT
483 if (!waitpid_fn
484 && lookup_minimal_symbol ("_waitpid", NULL, NULL).minsym != NULL)
7a298875
HZ
485 waitpid_fn = find_function_in_inferior ("_waitpid", &waitpid_objf);
486 if (!waitpid_fn)
487 goto out;
488
489 /* Get the argv. */
490 argv[0] = value_from_longest (builtin_type (gdbarch)->builtin_int, pid);
491 argv[1] = value_from_pointer (builtin_type (gdbarch)->builtin_data_ptr, 0);
492 argv[2] = value_from_longest (builtin_type (gdbarch)->builtin_int, 0);
7a298875 493
e71585ff 494 retv = call_function_by_hand (waitpid_fn, NULL, argv);
e17c9e56
HZ
495 if (value_as_long (retv) < 0)
496 goto out;
7a298875
HZ
497
498 ret = 0;
499
500out:
e17c9e56 501 do_cleanups (old_cleanup);
7a298875
HZ
502 return ret;
503}
504
ac264b3b
MS
505/* Fork list <-> user interface. */
506
507static void
5b64bf74 508delete_checkpoint_command (const char *args, int from_tty)
ac264b3b 509{
e17c9e56 510 ptid_t ptid, pptid;
7a298875 511 struct fork_info *fi;
ac264b3b
MS
512
513 if (!args || !*args)
2277426b 514 error (_("Requires argument (checkpoint id to delete)"));
ac264b3b
MS
515
516 ptid = fork_id_to_ptid (parse_and_eval_long (args));
d7e15655 517 if (ptid == minus_one_ptid)
2277426b 518 error (_("No such checkpoint id, %s"), args);
ac264b3b 519
d7e15655 520 if (ptid == inferior_ptid)
3cb5bea9
PA
521 error (_("\
522Please switch to another checkpoint before deleting the current one"));
ac264b3b 523
e99b03dc 524 if (ptrace (PTRACE_KILL, ptid.pid (), 0, 0))
54ba13f7 525 error (_("Unable to kill pid %s"), target_pid_to_str (ptid));
ac264b3b 526
7a298875
HZ
527 fi = find_fork_ptid (ptid);
528 gdb_assert (fi);
e17c9e56 529 pptid = fi->parent_ptid;
7a298875 530
ac264b3b
MS
531 if (from_tty)
532 printf_filtered (_("Killed %s\n"), target_pid_to_str (ptid));
533
534 delete_fork (ptid);
7a298875
HZ
535
536 /* If fi->parent_ptid is not a part of lwp but it's a part of checkpoint
537 list, waitpid the ptid.
00431a78 538 If fi->parent_ptid is a part of lwp and it is stopped, waitpid the
7a298875 539 ptid. */
00431a78
PA
540 thread_info *parent = find_thread_ptid (pptid);
541 if ((parent == NULL && find_fork_ptid (pptid))
542 || (parent != NULL && parent->state == THREAD_STOPPED))
7a298875 543 {
e99b03dc 544 if (inferior_call_waitpid (pptid, ptid.pid ()))
7a298875
HZ
545 warning (_("Unable to wait pid %s"), target_pid_to_str (ptid));
546 }
ac264b3b
MS
547}
548
549static void
5b64bf74 550detach_checkpoint_command (const char *args, int from_tty)
ac264b3b
MS
551{
552 ptid_t ptid;
553
554 if (!args || !*args)
2277426b 555 error (_("Requires argument (checkpoint id to detach)"));
ac264b3b
MS
556
557 ptid = fork_id_to_ptid (parse_and_eval_long (args));
d7e15655 558 if (ptid == minus_one_ptid)
2277426b 559 error (_("No such checkpoint id, %s"), args);
ac264b3b 560
d7e15655 561 if (ptid == inferior_ptid)
2277426b
PA
562 error (_("\
563Please switch to another checkpoint before detaching the current one"));
ac264b3b 564
e99b03dc 565 if (ptrace (PTRACE_DETACH, ptid.pid (), 0, 0))
ac264b3b
MS
566 error (_("Unable to detach %s"), target_pid_to_str (ptid));
567
568 if (from_tty)
569 printf_filtered (_("Detached %s\n"), target_pid_to_str (ptid));
570
571 delete_fork (ptid);
572}
573
3cb5bea9 574/* Print information about currently known checkpoints. */
ac264b3b
MS
575
576static void
1d12d88f 577info_checkpoints_command (const char *arg, int from_tty)
ac264b3b 578{
5af949e3 579 struct gdbarch *gdbarch = get_current_arch ();
ac264b3b 580 struct symtab_and_line sal;
ac264b3b 581 struct fork_info *fp;
ac264b3b 582 ULONGEST pc;
b8db102d
MS
583 int requested = -1;
584 struct fork_info *printed = NULL;
585
586 if (arg && *arg)
587 requested = (int) parse_and_eval_long (arg);
ac264b3b
MS
588
589 for (fp = fork_list; fp; fp = fp->next)
590 {
b8db102d
MS
591 if (requested > 0 && fp->num != requested)
592 continue;
593
594 printed = fp;
d7e15655 595 if (fp->ptid == inferior_ptid)
daf6667d 596 printf_filtered ("* ");
ac264b3b 597 else
daf6667d
YQ
598 printf_filtered (" ");
599
600 pc = fp->pc;
ac264b3b
MS
601 printf_filtered ("%d %s", fp->num, target_pid_to_str (fp->ptid));
602 if (fp->num == 0)
603 printf_filtered (_(" (main process)"));
604 printf_filtered (_(" at "));
5af949e3 605 fputs_filtered (paddress (gdbarch, pc), gdb_stdout);
ac264b3b
MS
606
607 sal = find_pc_line (pc, 0);
608 if (sal.symtab)
05cba821
JK
609 printf_filtered (_(", file %s"),
610 symtab_to_filename_for_display (sal.symtab));
ac264b3b
MS
611 if (sal.line)
612 printf_filtered (_(", line %d"), sal.line);
613 if (!sal.symtab && !sal.line)
614 {
7cbd4a93 615 struct bound_minimal_symbol msym;
ac264b3b
MS
616
617 msym = lookup_minimal_symbol_by_pc (pc);
7cbd4a93 618 if (msym.minsym)
efd66ac6 619 printf_filtered (", <%s>", MSYMBOL_LINKAGE_NAME (msym.minsym));
ac264b3b
MS
620 }
621
622 putchar_filtered ('\n');
623 }
b8db102d
MS
624 if (printed == NULL)
625 {
626 if (requested > 0)
2277426b 627 printf_filtered (_("No checkpoint number %d.\n"), requested);
b8db102d 628 else
2277426b 629 printf_filtered (_("No checkpoints.\n"));
b8db102d 630 }
ac264b3b
MS
631}
632
2277426b
PA
633/* The PID of the process we're checkpointing. */
634static int checkpointing_pid = 0;
ac264b3b 635
2277426b
PA
636int
637linux_fork_checkpointing_p (int pid)
ac264b3b 638{
2277426b 639 return (checkpointing_pid == pid);
ac264b3b
MS
640}
641
92f6badc
KP
642/* Callback for iterate over threads. Used to check whether
643 the current inferior is multi-threaded. Returns true as soon
644 as it sees the second thread of the current inferior. */
645
646static int
647inf_has_multiple_thread_cb (struct thread_info *tp, void *data)
648{
649 int *count_p = (int *) data;
650
e99b03dc 651 if (current_inferior ()->pid == tp->ptid.pid ())
92f6badc
KP
652 (*count_p)++;
653
654 /* Stop the iteration if multiple threads have been detected. */
655 return *count_p > 1;
656}
657
658/* Return true if the current inferior is multi-threaded. */
659
660static int
661inf_has_multiple_threads (void)
662{
663 int count = 0;
664
665 iterate_over_threads (inf_has_multiple_thread_cb, &count);
666 return (count > 1);
667}
668
ac264b3b 669static void
0b39b52e 670checkpoint_command (const char *args, int from_tty)
ac264b3b 671{
3e3b026f
UW
672 struct objfile *fork_objf;
673 struct gdbarch *gdbarch;
ac264b3b
MS
674 struct target_waitstatus last_target_waitstatus;
675 ptid_t last_target_ptid;
676 struct value *fork_fn = NULL, *ret;
677 struct fork_info *fp;
678 pid_t retpid;
74960c60 679
92f6badc
KP
680 if (!target_has_execution)
681 error (_("The program is not being run."));
682
683 /* Ensure that the inferior is not multithreaded. */
684 update_thread_list ();
685 if (inf_has_multiple_threads ())
686 error (_("checkpoint: can't checkpoint multiple threads."));
687
ac264b3b
MS
688 /* Make the inferior fork, record its (and gdb's) state. */
689
3b7344d5 690 if (lookup_minimal_symbol ("fork", NULL, NULL).minsym != NULL)
3e3b026f 691 fork_fn = find_function_in_inferior ("fork", &fork_objf);
ac264b3b 692 if (!fork_fn)
3b7344d5 693 if (lookup_minimal_symbol ("_fork", NULL, NULL).minsym != NULL)
3e3b026f 694 fork_fn = find_function_in_inferior ("fork", &fork_objf);
ac264b3b
MS
695 if (!fork_fn)
696 error (_("checkpoint: can't find fork function in inferior."));
697
3e3b026f
UW
698 gdbarch = get_objfile_arch (fork_objf);
699 ret = value_from_longest (builtin_type (gdbarch)->builtin_int, 0);
2277426b
PA
700
701 /* Tell linux-nat.c that we're checkpointing this inferior. */
b7b633e9
TT
702 {
703 scoped_restore save_pid
e99b03dc 704 = make_scoped_restore (&checkpointing_pid, inferior_ptid.pid ());
b7b633e9 705
e71585ff 706 ret = call_function_by_hand (fork_fn, NULL, {});
b7b633e9 707 }
2277426b 708
ac264b3b
MS
709 if (!ret) /* Probably can't happen. */
710 error (_("checkpoint: call_function_by_hand returned null."));
711
712 retpid = value_as_long (ret);
713 get_last_target_status (&last_target_ptid, &last_target_waitstatus);
6f9d33d8
PP
714
715 fp = find_fork_pid (retpid);
716
ac264b3b
MS
717 if (from_tty)
718 {
719 int parent_pid;
720
6f9d33d8
PP
721 printf_filtered (_("checkpoint %d: fork returned pid %ld.\n"),
722 fp != NULL ? fp->num : -1, (long) retpid);
ac264b3b
MS
723 if (info_verbose)
724 {
e38504b3 725 parent_pid = last_target_ptid.lwp ();
ac264b3b 726 if (parent_pid == 0)
e99b03dc 727 parent_pid = last_target_ptid.pid ();
3cb5bea9 728 printf_filtered (_(" gdb says parent = %ld.\n"),
ac264b3b
MS
729 (long) parent_pid);
730 }
731 }
732
ac264b3b
MS
733 if (!fp)
734 error (_("Failed to find new fork"));
735 fork_save_infrun_state (fp, 1);
7a298875 736 fp->parent_ptid = last_target_ptid;
ac264b3b
MS
737}
738
739static void
740linux_fork_context (struct fork_info *newfp, int from_tty)
741{
742 /* Now we attempt to switch processes. */
0d14fc63 743 struct fork_info *oldfp;
ac264b3b 744
0d14fc63 745 gdb_assert (newfp != NULL);
ac264b3b 746
0d14fc63
PA
747 oldfp = find_fork_ptid (inferior_ptid);
748 gdb_assert (oldfp != NULL);
ac264b3b
MS
749
750 fork_save_infrun_state (oldfp, 1);
74960c60 751 remove_breakpoints ();
ac264b3b 752 fork_load_infrun_state (newfp);
74960c60 753 insert_breakpoints ();
ac264b3b 754
3cb5bea9 755 printf_filtered (_("Switching to %s\n"),
ac264b3b
MS
756 target_pid_to_str (inferior_ptid));
757
08d72866 758 print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC, 1);
ac264b3b
MS
759}
760
2277426b 761/* Switch inferior process (checkpoint) context, by checkpoint id. */
ac264b3b 762static void
0b39b52e 763restart_command (const char *args, int from_tty)
ac264b3b
MS
764{
765 struct fork_info *fp;
766
767 if (!args || !*args)
768 error (_("Requires argument (checkpoint id to restart)"));
769
770 if ((fp = find_fork_id (parse_and_eval_long (args))) == NULL)
771 error (_("Not found: checkpoint id %s"), args);
772
773 linux_fork_context (fp, from_tty);
774}
775
776void
777_initialize_linux_fork (void)
778{
779 init_fork_list ();
780
ac264b3b
MS
781 /* Checkpoint command: create a fork of the inferior process
782 and set it aside for later debugging. */
783
784 add_com ("checkpoint", class_obscure, checkpoint_command, _("\
785Fork a duplicate process (experimental)."));
786
2277426b
PA
787 /* Restart command: restore the context of a specified checkpoint
788 process. */
ac264b3b
MS
789
790 add_com ("restart", class_obscure, restart_command, _("\
c8a15b78
TT
791restart N: restore program context from a checkpoint.\n\
792Argument N is checkpoint ID, as displayed by 'info checkpoints'."));
ac264b3b 793
b8db102d 794 /* Delete checkpoint command: kill the process and remove it from
3cb5bea9 795 the fork list. */
ac264b3b 796
3cb5bea9 797 add_cmd ("checkpoint", class_obscure, delete_checkpoint_command, _("\
2277426b 798Delete a checkpoint (experimental)."),
b8db102d 799 &deletelist);
ac264b3b 800
3cb5bea9 801 /* Detach checkpoint command: release the process to run independently,
ac264b3b
MS
802 and remove it from the fork list. */
803
3cb5bea9 804 add_cmd ("checkpoint", class_obscure, detach_checkpoint_command, _("\
2277426b 805Detach from a checkpoint (experimental)."),
f73adfeb 806 &detachlist);
ac264b3b 807
3cb5bea9 808 /* Info checkpoints command: list all forks/checkpoints
ac264b3b
MS
809 currently under gdb's control. */
810
3cb5bea9 811 add_info ("checkpoints", info_checkpoints_command,
2277426b 812 _("IDs of currently known checkpoints."));
ac264b3b 813}
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