Move fbsd_resume and related functions below fork following helper code.
[binutils-gdb.git] / gdb / fbsd-nat.c
1 /* Native-dependent code for FreeBSD.
2
3 Copyright (C) 2002-2016 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 "gdbcore.h"
22 #include "inferior.h"
23 #include "regcache.h"
24 #include "regset.h"
25 #include "gdbcmd.h"
26 #include "gdbthread.h"
27 #include "gdb_wait.h"
28 #include <sys/types.h>
29 #include <sys/procfs.h>
30 #include <sys/ptrace.h>
31 #include <sys/sysctl.h>
32 #ifdef HAVE_KINFO_GETVMMAP
33 #include <sys/user.h>
34 #include <libutil.h>
35 #endif
36
37 #include "elf-bfd.h"
38 #include "fbsd-nat.h"
39
40 /* Return the name of a file that can be opened to get the symbols for
41 the child process identified by PID. */
42
43 static char *
44 fbsd_pid_to_exec_file (struct target_ops *self, int pid)
45 {
46 ssize_t len;
47 static char buf[PATH_MAX];
48 char name[PATH_MAX];
49
50 #ifdef KERN_PROC_PATHNAME
51 size_t buflen;
52 int mib[4];
53
54 mib[0] = CTL_KERN;
55 mib[1] = KERN_PROC;
56 mib[2] = KERN_PROC_PATHNAME;
57 mib[3] = pid;
58 buflen = sizeof buf;
59 if (sysctl (mib, 4, buf, &buflen, NULL, 0) == 0)
60 return buf;
61 #endif
62
63 xsnprintf (name, PATH_MAX, "/proc/%d/exe", pid);
64 len = readlink (name, buf, PATH_MAX - 1);
65 if (len != -1)
66 {
67 buf[len] = '\0';
68 return buf;
69 }
70
71 return NULL;
72 }
73
74 #ifdef HAVE_KINFO_GETVMMAP
75 /* Iterate over all the memory regions in the current inferior,
76 calling FUNC for each memory region. OBFD is passed as the last
77 argument to FUNC. */
78
79 static int
80 fbsd_find_memory_regions (struct target_ops *self,
81 find_memory_region_ftype func, void *obfd)
82 {
83 pid_t pid = ptid_get_pid (inferior_ptid);
84 struct kinfo_vmentry *vmentl, *kve;
85 uint64_t size;
86 struct cleanup *cleanup;
87 int i, nitems;
88
89 vmentl = kinfo_getvmmap (pid, &nitems);
90 if (vmentl == NULL)
91 perror_with_name (_("Couldn't fetch VM map entries."));
92 cleanup = make_cleanup (free, vmentl);
93
94 for (i = 0; i < nitems; i++)
95 {
96 kve = &vmentl[i];
97
98 /* Skip unreadable segments and those where MAP_NOCORE has been set. */
99 if (!(kve->kve_protection & KVME_PROT_READ)
100 || kve->kve_flags & KVME_FLAG_NOCOREDUMP)
101 continue;
102
103 /* Skip segments with an invalid type. */
104 if (kve->kve_type != KVME_TYPE_DEFAULT
105 && kve->kve_type != KVME_TYPE_VNODE
106 && kve->kve_type != KVME_TYPE_SWAP
107 && kve->kve_type != KVME_TYPE_PHYS)
108 continue;
109
110 size = kve->kve_end - kve->kve_start;
111 if (info_verbose)
112 {
113 fprintf_filtered (gdb_stdout,
114 "Save segment, %ld bytes at %s (%c%c%c)\n",
115 (long) size,
116 paddress (target_gdbarch (), kve->kve_start),
117 kve->kve_protection & KVME_PROT_READ ? 'r' : '-',
118 kve->kve_protection & KVME_PROT_WRITE ? 'w' : '-',
119 kve->kve_protection & KVME_PROT_EXEC ? 'x' : '-');
120 }
121
122 /* Invoke the callback function to create the corefile segment.
123 Pass MODIFIED as true, we do not know the real modification state. */
124 func (kve->kve_start, size, kve->kve_protection & KVME_PROT_READ,
125 kve->kve_protection & KVME_PROT_WRITE,
126 kve->kve_protection & KVME_PROT_EXEC, 1, obfd);
127 }
128 do_cleanups (cleanup);
129 return 0;
130 }
131 #else
132 static int
133 fbsd_read_mapping (FILE *mapfile, unsigned long *start, unsigned long *end,
134 char *protection)
135 {
136 /* FreeBSD 5.1-RELEASE uses a 256-byte buffer. */
137 char buf[256];
138 int resident, privateresident;
139 unsigned long obj;
140 int ret = EOF;
141
142 /* As of FreeBSD 5.0-RELEASE, the layout is described in
143 /usr/src/sys/fs/procfs/procfs_map.c. Somewhere in 5.1-CURRENT a
144 new column was added to the procfs map. Therefore we can't use
145 fscanf since we need to support older releases too. */
146 if (fgets (buf, sizeof buf, mapfile) != NULL)
147 ret = sscanf (buf, "%lx %lx %d %d %lx %s", start, end,
148 &resident, &privateresident, &obj, protection);
149
150 return (ret != 0 && ret != EOF);
151 }
152
153 /* Iterate over all the memory regions in the current inferior,
154 calling FUNC for each memory region. OBFD is passed as the last
155 argument to FUNC. */
156
157 static int
158 fbsd_find_memory_regions (struct target_ops *self,
159 find_memory_region_ftype func, void *obfd)
160 {
161 pid_t pid = ptid_get_pid (inferior_ptid);
162 char *mapfilename;
163 FILE *mapfile;
164 unsigned long start, end, size;
165 char protection[4];
166 int read, write, exec;
167 struct cleanup *cleanup;
168
169 mapfilename = xstrprintf ("/proc/%ld/map", (long) pid);
170 cleanup = make_cleanup (xfree, mapfilename);
171 mapfile = fopen (mapfilename, "r");
172 if (mapfile == NULL)
173 error (_("Couldn't open %s."), mapfilename);
174 make_cleanup_fclose (mapfile);
175
176 if (info_verbose)
177 fprintf_filtered (gdb_stdout,
178 "Reading memory regions from %s\n", mapfilename);
179
180 /* Now iterate until end-of-file. */
181 while (fbsd_read_mapping (mapfile, &start, &end, &protection[0]))
182 {
183 size = end - start;
184
185 read = (strchr (protection, 'r') != 0);
186 write = (strchr (protection, 'w') != 0);
187 exec = (strchr (protection, 'x') != 0);
188
189 if (info_verbose)
190 {
191 fprintf_filtered (gdb_stdout,
192 "Save segment, %ld bytes at %s (%c%c%c)\n",
193 size, paddress (target_gdbarch (), start),
194 read ? 'r' : '-',
195 write ? 'w' : '-',
196 exec ? 'x' : '-');
197 }
198
199 /* Invoke the callback function to create the corefile segment.
200 Pass MODIFIED as true, we do not know the real modification state. */
201 func (start, size, read, write, exec, 1, obfd);
202 }
203
204 do_cleanups (cleanup);
205 return 0;
206 }
207 #endif
208
209 #ifdef KERN_PROC_AUXV
210 static enum target_xfer_status (*super_xfer_partial) (struct target_ops *ops,
211 enum target_object object,
212 const char *annex,
213 gdb_byte *readbuf,
214 const gdb_byte *writebuf,
215 ULONGEST offset,
216 ULONGEST len,
217 ULONGEST *xfered_len);
218
219 /* Implement the "to_xfer_partial target_ops" method. */
220
221 static enum target_xfer_status
222 fbsd_xfer_partial (struct target_ops *ops, enum target_object object,
223 const char *annex, gdb_byte *readbuf,
224 const gdb_byte *writebuf,
225 ULONGEST offset, ULONGEST len, ULONGEST *xfered_len)
226 {
227 pid_t pid = ptid_get_pid (inferior_ptid);
228
229 switch (object)
230 {
231 case TARGET_OBJECT_AUXV:
232 {
233 struct cleanup *cleanup = make_cleanup (null_cleanup, NULL);
234 unsigned char *buf;
235 size_t buflen;
236 int mib[4];
237
238 if (writebuf != NULL)
239 return TARGET_XFER_E_IO;
240 mib[0] = CTL_KERN;
241 mib[1] = KERN_PROC;
242 mib[2] = KERN_PROC_AUXV;
243 mib[3] = pid;
244 if (offset == 0)
245 {
246 buf = readbuf;
247 buflen = len;
248 }
249 else
250 {
251 buflen = offset + len;
252 buf = XCNEWVEC (unsigned char, buflen);
253 cleanup = make_cleanup (xfree, buf);
254 }
255 if (sysctl (mib, 4, buf, &buflen, NULL, 0) == 0)
256 {
257 if (offset != 0)
258 {
259 if (buflen > offset)
260 {
261 buflen -= offset;
262 memcpy (readbuf, buf + offset, buflen);
263 }
264 else
265 buflen = 0;
266 }
267 do_cleanups (cleanup);
268 *xfered_len = buflen;
269 return (buflen == 0) ? TARGET_XFER_EOF : TARGET_XFER_OK;
270 }
271 do_cleanups (cleanup);
272 return TARGET_XFER_E_IO;
273 }
274 default:
275 return super_xfer_partial (ops, object, annex, readbuf, writebuf, offset,
276 len, xfered_len);
277 }
278 }
279 #endif
280
281 #ifdef PT_LWPINFO
282 static int debug_fbsd_lwp;
283
284 static void (*super_resume) (struct target_ops *,
285 ptid_t,
286 int,
287 enum gdb_signal);
288 static ptid_t (*super_wait) (struct target_ops *,
289 ptid_t,
290 struct target_waitstatus *,
291 int);
292
293 static void
294 show_fbsd_lwp_debug (struct ui_file *file, int from_tty,
295 struct cmd_list_element *c, const char *value)
296 {
297 fprintf_filtered (file, _("Debugging of FreeBSD lwp module is %s.\n"), value);
298 }
299
300 #if defined(TDP_RFPPWAIT) || defined(HAVE_STRUCT_PTRACE_LWPINFO_PL_TDNAME)
301 /* Fetch the external variant of the kernel's internal process
302 structure for the process PID into KP. */
303
304 static void
305 fbsd_fetch_kinfo_proc (pid_t pid, struct kinfo_proc *kp)
306 {
307 size_t len;
308 int mib[4];
309
310 len = sizeof *kp;
311 mib[0] = CTL_KERN;
312 mib[1] = KERN_PROC;
313 mib[2] = KERN_PROC_PID;
314 mib[3] = pid;
315 if (sysctl (mib, 4, kp, &len, NULL, 0) == -1)
316 perror_with_name (("sysctl"));
317 }
318 #endif
319
320 /*
321 FreeBSD's first thread support was via a "reentrant" version of libc
322 (libc_r) that first shipped in 2.2.7. This library multiplexed all
323 of the threads in a process onto a single kernel thread. This
324 library is supported via the bsd-uthread target.
325
326 FreeBSD 5.1 introduced two new threading libraries that made use of
327 multiple kernel threads. The first (libkse) scheduled M user
328 threads onto N (<= M) kernel threads (LWPs). The second (libthr)
329 bound each user thread to a dedicated kernel thread. libkse shipped
330 as the default threading library (libpthread).
331
332 FreeBSD 5.3 added a libthread_db to abstract the interface across
333 the various thread libraries (libc_r, libkse, and libthr).
334
335 FreeBSD 7.0 switched the default threading library from from libkse
336 to libpthread and removed libc_r.
337
338 FreeBSD 8.0 removed libkse and the in-kernel support for it. The
339 only threading library supported by 8.0 and later is libthr which
340 ties each user thread directly to an LWP. To simplify the
341 implementation, this target only supports LWP-backed threads using
342 ptrace directly rather than libthread_db.
343
344 FreeBSD 11.0 introduced LWP event reporting via PT_LWP_EVENTS.
345 */
346
347 /* Return true if PTID is still active in the inferior. */
348
349 static int
350 fbsd_thread_alive (struct target_ops *ops, ptid_t ptid)
351 {
352 if (ptid_lwp_p (ptid))
353 {
354 struct ptrace_lwpinfo pl;
355
356 if (ptrace (PT_LWPINFO, ptid_get_lwp (ptid), (caddr_t) &pl, sizeof pl)
357 == -1)
358 return 0;
359 #ifdef PL_FLAG_EXITED
360 if (pl.pl_flags & PL_FLAG_EXITED)
361 return 0;
362 #endif
363 }
364
365 return 1;
366 }
367
368 /* Convert PTID to a string. Returns the string in a static
369 buffer. */
370
371 static char *
372 fbsd_pid_to_str (struct target_ops *ops, ptid_t ptid)
373 {
374 lwpid_t lwp;
375
376 lwp = ptid_get_lwp (ptid);
377 if (lwp != 0)
378 {
379 static char buf[64];
380 int pid = ptid_get_pid (ptid);
381
382 xsnprintf (buf, sizeof buf, "LWP %d of process %d", lwp, pid);
383 return buf;
384 }
385
386 return normal_pid_to_str (ptid);
387 }
388
389 #ifdef HAVE_STRUCT_PTRACE_LWPINFO_PL_TDNAME
390 /* Return the name assigned to a thread by an application. Returns
391 the string in a static buffer. */
392
393 static const char *
394 fbsd_thread_name (struct target_ops *self, struct thread_info *thr)
395 {
396 struct ptrace_lwpinfo pl;
397 struct kinfo_proc kp;
398 int pid = ptid_get_pid (thr->ptid);
399 long lwp = ptid_get_lwp (thr->ptid);
400 static char buf[sizeof pl.pl_tdname + 1];
401
402 /* Note that ptrace_lwpinfo returns the process command in pl_tdname
403 if a name has not been set explicitly. Return a NULL name in
404 that case. */
405 fbsd_fetch_kinfo_proc (pid, &kp);
406 if (ptrace (PT_LWPINFO, lwp, (caddr_t) &pl, sizeof pl) == -1)
407 perror_with_name (("ptrace"));
408 if (strcmp (kp.ki_comm, pl.pl_tdname) == 0)
409 return NULL;
410 xsnprintf (buf, sizeof buf, "%s", pl.pl_tdname);
411 return buf;
412 }
413 #endif
414
415 #ifdef PT_LWP_EVENTS
416 /* Enable LWP events for a specific process.
417
418 To catch LWP events, PT_LWP_EVENTS is set on every traced process.
419 This enables stops on the birth for new LWPs (excluding the "main" LWP)
420 and the death of LWPs (excluding the last LWP in a process). Note
421 that unlike fork events, the LWP that creates a new LWP does not
422 report an event. */
423
424 static void
425 fbsd_enable_lwp_events (pid_t pid)
426 {
427 if (ptrace (PT_LWP_EVENTS, pid, (PTRACE_TYPE_ARG3)0, 1) == -1)
428 perror_with_name (("ptrace"));
429 }
430 #endif
431
432 /* Add threads for any new LWPs in a process.
433
434 When LWP events are used, this function is only used to detect existing
435 threads when attaching to a process. On older systems, this function is
436 called to discover new threads each time the thread list is updated. */
437
438 static void
439 fbsd_add_threads (pid_t pid)
440 {
441 struct cleanup *cleanup;
442 lwpid_t *lwps;
443 int i, nlwps;
444
445 gdb_assert (!in_thread_list (pid_to_ptid (pid)));
446 nlwps = ptrace (PT_GETNUMLWPS, pid, NULL, 0);
447 if (nlwps == -1)
448 perror_with_name (("ptrace"));
449
450 lwps = XCNEWVEC (lwpid_t, nlwps);
451 cleanup = make_cleanup (xfree, lwps);
452
453 nlwps = ptrace (PT_GETLWPLIST, pid, (caddr_t) lwps, nlwps);
454 if (nlwps == -1)
455 perror_with_name (("ptrace"));
456
457 for (i = 0; i < nlwps; i++)
458 {
459 ptid_t ptid = ptid_build (pid, lwps[i], 0);
460
461 if (!in_thread_list (ptid))
462 {
463 #ifdef PT_LWP_EVENTS
464 struct ptrace_lwpinfo pl;
465
466 /* Don't add exited threads. Note that this is only called
467 when attaching to a multi-threaded process. */
468 if (ptrace (PT_LWPINFO, lwps[i], (caddr_t) &pl, sizeof pl) == -1)
469 perror_with_name (("ptrace"));
470 if (pl.pl_flags & PL_FLAG_EXITED)
471 continue;
472 #endif
473 if (debug_fbsd_lwp)
474 fprintf_unfiltered (gdb_stdlog,
475 "FLWP: adding thread for LWP %u\n",
476 lwps[i]);
477 add_thread (ptid);
478 }
479 }
480 do_cleanups (cleanup);
481 }
482
483 /* Implement the "to_update_thread_list" target_ops method. */
484
485 static void
486 fbsd_update_thread_list (struct target_ops *ops)
487 {
488 #ifdef PT_LWP_EVENTS
489 /* With support for thread events, threads are added/deleted from the
490 list as events are reported, so just try deleting exited threads. */
491 delete_exited_threads ();
492 #else
493 prune_threads ();
494
495 fbsd_add_threads (ptid_get_pid (inferior_ptid));
496 #endif
497 }
498
499 #ifdef TDP_RFPPWAIT
500 /*
501 To catch fork events, PT_FOLLOW_FORK is set on every traced process
502 to enable stops on returns from fork or vfork. Note that both the
503 parent and child will always stop, even if system call stops are not
504 enabled.
505
506 After a fork, both the child and parent process will stop and report
507 an event. However, there is no guarantee of order. If the parent
508 reports its stop first, then fbsd_wait explicitly waits for the new
509 child before returning. If the child reports its stop first, then
510 the event is saved on a list and ignored until the parent's stop is
511 reported. fbsd_wait could have been changed to fetch the parent PID
512 of the new child and used that to wait for the parent explicitly.
513 However, if two threads in the parent fork at the same time, then
514 the wait on the parent might return the "wrong" fork event.
515
516 The initial version of PT_FOLLOW_FORK did not set PL_FLAG_CHILD for
517 the new child process. This flag could be inferred by treating any
518 events for an unknown pid as a new child.
519
520 In addition, the initial version of PT_FOLLOW_FORK did not report a
521 stop event for the parent process of a vfork until after the child
522 process executed a new program or exited. The kernel was changed to
523 defer the wait for exit or exec of the child until after posting the
524 stop event shortly after the change to introduce PL_FLAG_CHILD.
525 This could be worked around by reporting a vfork event when the
526 child event posted and ignoring the subsequent event from the
527 parent.
528
529 This implementation requires both of these fixes for simplicity's
530 sake. FreeBSD versions newer than 9.1 contain both fixes.
531 */
532
533 struct fbsd_fork_child_info
534 {
535 struct fbsd_fork_child_info *next;
536 ptid_t child; /* Pid of new child. */
537 };
538
539 static struct fbsd_fork_child_info *fbsd_pending_children;
540
541 /* Record a new child process event that is reported before the
542 corresponding fork event in the parent. */
543
544 static void
545 fbsd_remember_child (ptid_t pid)
546 {
547 struct fbsd_fork_child_info *info = XCNEW (struct fbsd_fork_child_info);
548
549 info->child = pid;
550 info->next = fbsd_pending_children;
551 fbsd_pending_children = info;
552 }
553
554 /* Check for a previously-recorded new child process event for PID.
555 If one is found, remove it from the list and return the PTID. */
556
557 static ptid_t
558 fbsd_is_child_pending (pid_t pid)
559 {
560 struct fbsd_fork_child_info *info, *prev;
561 ptid_t ptid;
562
563 prev = NULL;
564 for (info = fbsd_pending_children; info; prev = info, info = info->next)
565 {
566 if (ptid_get_pid (info->child) == pid)
567 {
568 if (prev == NULL)
569 fbsd_pending_children = info->next;
570 else
571 prev->next = info->next;
572 ptid = info->child;
573 xfree (info);
574 return ptid;
575 }
576 }
577 return null_ptid;
578 }
579 #endif
580
581 static int
582 resume_one_thread_cb (struct thread_info *tp, void *data)
583 {
584 ptid_t *ptid = (ptid_t *) data;
585 int request;
586
587 if (ptid_get_pid (tp->ptid) != ptid_get_pid (*ptid))
588 return 0;
589
590 if (ptid_get_lwp (tp->ptid) == ptid_get_lwp (*ptid))
591 request = PT_RESUME;
592 else
593 request = PT_SUSPEND;
594
595 if (ptrace (request, ptid_get_lwp (tp->ptid), NULL, 0) == -1)
596 perror_with_name (("ptrace"));
597 return 0;
598 }
599
600 static int
601 resume_all_threads_cb (struct thread_info *tp, void *data)
602 {
603 ptid_t *filter = (ptid_t *) data;
604
605 if (!ptid_match (tp->ptid, *filter))
606 return 0;
607
608 if (ptrace (PT_RESUME, ptid_get_lwp (tp->ptid), NULL, 0) == -1)
609 perror_with_name (("ptrace"));
610 return 0;
611 }
612
613 /* Implement the "to_resume" target_ops method. */
614
615 static void
616 fbsd_resume (struct target_ops *ops,
617 ptid_t ptid, int step, enum gdb_signal signo)
618 {
619
620 if (debug_fbsd_lwp)
621 fprintf_unfiltered (gdb_stdlog,
622 "FLWP: fbsd_resume for ptid (%d, %ld, %ld)\n",
623 ptid_get_pid (ptid), ptid_get_lwp (ptid),
624 ptid_get_tid (ptid));
625 if (ptid_lwp_p (ptid))
626 {
627 /* If ptid is a specific LWP, suspend all other LWPs in the process. */
628 iterate_over_threads (resume_one_thread_cb, &ptid);
629 }
630 else
631 {
632 /* If ptid is a wildcard, resume all matching threads (they won't run
633 until the process is continued however). */
634 iterate_over_threads (resume_all_threads_cb, &ptid);
635 ptid = inferior_ptid;
636 }
637 super_resume (ops, ptid, step, signo);
638 }
639
640 /* Wait for the child specified by PTID to do something. Return the
641 process ID of the child, or MINUS_ONE_PTID in case of error; store
642 the status in *OURSTATUS. */
643
644 static ptid_t
645 fbsd_wait (struct target_ops *ops,
646 ptid_t ptid, struct target_waitstatus *ourstatus,
647 int target_options)
648 {
649 ptid_t wptid;
650
651 while (1)
652 {
653 wptid = super_wait (ops, ptid, ourstatus, target_options);
654 if (ourstatus->kind == TARGET_WAITKIND_STOPPED)
655 {
656 struct ptrace_lwpinfo pl;
657 pid_t pid;
658 int status;
659
660 pid = ptid_get_pid (wptid);
661 if (ptrace (PT_LWPINFO, pid, (caddr_t) &pl, sizeof pl) == -1)
662 perror_with_name (("ptrace"));
663
664 wptid = ptid_build (pid, pl.pl_lwpid, 0);
665
666 #ifdef PT_LWP_EVENTS
667 if (pl.pl_flags & PL_FLAG_EXITED)
668 {
669 /* If GDB attaches to a multi-threaded process, exiting
670 threads might be skipped during fbsd_post_attach that
671 have not yet reported their PL_FLAG_EXITED event.
672 Ignore EXITED events for an unknown LWP. */
673 if (in_thread_list (wptid))
674 {
675 if (debug_fbsd_lwp)
676 fprintf_unfiltered (gdb_stdlog,
677 "FLWP: deleting thread for LWP %u\n",
678 pl.pl_lwpid);
679 if (print_thread_events)
680 printf_unfiltered (_("[%s exited]\n"), target_pid_to_str
681 (wptid));
682 delete_thread (wptid);
683 }
684 if (ptrace (PT_CONTINUE, pid, (caddr_t) 1, 0) == -1)
685 perror_with_name (("ptrace"));
686 continue;
687 }
688 #endif
689
690 /* Switch to an LWP PTID on the first stop in a new process.
691 This is done after handling PL_FLAG_EXITED to avoid
692 switching to an exited LWP. It is done before checking
693 PL_FLAG_BORN in case the first stop reported after
694 attaching to an existing process is a PL_FLAG_BORN
695 event. */
696 if (in_thread_list (pid_to_ptid (pid)))
697 {
698 if (debug_fbsd_lwp)
699 fprintf_unfiltered (gdb_stdlog,
700 "FLWP: using LWP %u for first thread\n",
701 pl.pl_lwpid);
702 thread_change_ptid (pid_to_ptid (pid), wptid);
703 }
704
705 #ifdef PT_LWP_EVENTS
706 if (pl.pl_flags & PL_FLAG_BORN)
707 {
708 /* If GDB attaches to a multi-threaded process, newborn
709 threads might be added by fbsd_add_threads that have
710 not yet reported their PL_FLAG_BORN event. Ignore
711 BORN events for an already-known LWP. */
712 if (!in_thread_list (wptid))
713 {
714 if (debug_fbsd_lwp)
715 fprintf_unfiltered (gdb_stdlog,
716 "FLWP: adding thread for LWP %u\n",
717 pl.pl_lwpid);
718 add_thread (wptid);
719 }
720 ourstatus->kind = TARGET_WAITKIND_SPURIOUS;
721 return wptid;
722 }
723 #endif
724
725 #ifdef TDP_RFPPWAIT
726 if (pl.pl_flags & PL_FLAG_FORKED)
727 {
728 struct kinfo_proc kp;
729 ptid_t child_ptid;
730 pid_t child;
731
732 child = pl.pl_child_pid;
733 ourstatus->kind = TARGET_WAITKIND_FORKED;
734
735 /* Make sure the other end of the fork is stopped too. */
736 child_ptid = fbsd_is_child_pending (child);
737 if (ptid_equal (child_ptid, null_ptid))
738 {
739 pid = waitpid (child, &status, 0);
740 if (pid == -1)
741 perror_with_name (("waitpid"));
742
743 gdb_assert (pid == child);
744
745 if (ptrace (PT_LWPINFO, child, (caddr_t)&pl, sizeof pl) == -1)
746 perror_with_name (("ptrace"));
747
748 gdb_assert (pl.pl_flags & PL_FLAG_CHILD);
749 child_ptid = ptid_build (child, pl.pl_lwpid, 0);
750 }
751
752 /* For vfork, the child process will have the P_PPWAIT
753 flag set. */
754 fbsd_fetch_kinfo_proc (child, &kp);
755 if (kp.ki_flag & P_PPWAIT)
756 ourstatus->kind = TARGET_WAITKIND_VFORKED;
757 ourstatus->value.related_pid = child_ptid;
758
759 return wptid;
760 }
761
762 if (pl.pl_flags & PL_FLAG_CHILD)
763 {
764 /* Remember that this child forked, but do not report it
765 until the parent reports its corresponding fork
766 event. */
767 fbsd_remember_child (wptid);
768 continue;
769 }
770 #endif
771
772 #ifdef PL_FLAG_EXEC
773 if (pl.pl_flags & PL_FLAG_EXEC)
774 {
775 ourstatus->kind = TARGET_WAITKIND_EXECD;
776 ourstatus->value.execd_pathname
777 = xstrdup (fbsd_pid_to_exec_file (NULL, pid));
778 return wptid;
779 }
780 #endif
781
782 /* Note that PL_FLAG_SCE is set for any event reported while
783 a thread is executing a system call in the kernel. In
784 particular, signals that interrupt a sleep in a system
785 call will report this flag as part of their event. Stops
786 explicitly for system call entry and exit always use
787 SIGTRAP, so only treat SIGTRAP events as system call
788 entry/exit events. */
789 if (pl.pl_flags & (PL_FLAG_SCE | PL_FLAG_SCX)
790 && ourstatus->value.sig == SIGTRAP)
791 {
792 #ifdef HAVE_STRUCT_PTRACE_LWPINFO_PL_SYSCALL_CODE
793 if (catch_syscall_enabled ())
794 {
795 if (catching_syscall_number (pl.pl_syscall_code))
796 {
797 if (pl.pl_flags & PL_FLAG_SCE)
798 ourstatus->kind = TARGET_WAITKIND_SYSCALL_ENTRY;
799 else
800 ourstatus->kind = TARGET_WAITKIND_SYSCALL_RETURN;
801 ourstatus->value.syscall_number = pl.pl_syscall_code;
802 return wptid;
803 }
804 }
805 #endif
806 /* If the core isn't interested in this event, just
807 continue the process explicitly and wait for another
808 event. Note that PT_SYSCALL is "sticky" on FreeBSD
809 and once system call stops are enabled on a process
810 it stops for all system call entries and exits. */
811 if (ptrace (PT_CONTINUE, pid, (caddr_t) 1, 0) == -1)
812 perror_with_name (("ptrace"));
813 continue;
814 }
815 }
816 return wptid;
817 }
818 }
819
820 #ifdef TDP_RFPPWAIT
821 /* Target hook for follow_fork. On entry and at return inferior_ptid is
822 the ptid of the followed inferior. */
823
824 static int
825 fbsd_follow_fork (struct target_ops *ops, int follow_child,
826 int detach_fork)
827 {
828 if (!follow_child && detach_fork)
829 {
830 struct thread_info *tp = inferior_thread ();
831 pid_t child_pid = ptid_get_pid (tp->pending_follow.value.related_pid);
832
833 /* Breakpoints have already been detached from the child by
834 infrun.c. */
835
836 if (ptrace (PT_DETACH, child_pid, (PTRACE_TYPE_ARG3)1, 0) == -1)
837 perror_with_name (("ptrace"));
838 }
839
840 return 0;
841 }
842
843 static int
844 fbsd_insert_fork_catchpoint (struct target_ops *self, int pid)
845 {
846 return 0;
847 }
848
849 static int
850 fbsd_remove_fork_catchpoint (struct target_ops *self, int pid)
851 {
852 return 0;
853 }
854
855 static int
856 fbsd_insert_vfork_catchpoint (struct target_ops *self, int pid)
857 {
858 return 0;
859 }
860
861 static int
862 fbsd_remove_vfork_catchpoint (struct target_ops *self, int pid)
863 {
864 return 0;
865 }
866
867 /* Enable fork tracing for a specific process.
868
869 To catch fork events, PT_FOLLOW_FORK is set on every traced process
870 to enable stops on returns from fork or vfork. Note that both the
871 parent and child will always stop, even if system call stops are
872 not enabled. */
873
874 static void
875 fbsd_enable_follow_fork (pid_t pid)
876 {
877 if (ptrace (PT_FOLLOW_FORK, pid, (PTRACE_TYPE_ARG3)0, 1) == -1)
878 perror_with_name (("ptrace"));
879 }
880 #endif
881
882 /* Implement the "to_post_startup_inferior" target_ops method. */
883
884 static void
885 fbsd_post_startup_inferior (struct target_ops *self, ptid_t pid)
886 {
887 #ifdef TDP_RFPPWAIT
888 fbsd_enable_follow_fork (ptid_get_pid (pid));
889 #endif
890 #ifdef PT_LWP_EVENTS
891 fbsd_enable_lwp_events (ptid_get_pid (pid));
892 #endif
893 }
894
895 /* Implement the "to_post_attach" target_ops method. */
896
897 static void
898 fbsd_post_attach (struct target_ops *self, int pid)
899 {
900 #ifdef TDP_RFPPWAIT
901 fbsd_enable_follow_fork (pid);
902 #endif
903 #ifdef PT_LWP_EVENTS
904 fbsd_enable_lwp_events (pid);
905 #endif
906 fbsd_add_threads (pid);
907 }
908
909 #ifdef PL_FLAG_EXEC
910 /* If the FreeBSD kernel supports PL_FLAG_EXEC, then traced processes
911 will always stop after exec. */
912
913 static int
914 fbsd_insert_exec_catchpoint (struct target_ops *self, int pid)
915 {
916 return 0;
917 }
918
919 static int
920 fbsd_remove_exec_catchpoint (struct target_ops *self, int pid)
921 {
922 return 0;
923 }
924 #endif
925
926 #ifdef HAVE_STRUCT_PTRACE_LWPINFO_PL_SYSCALL_CODE
927 static int
928 fbsd_set_syscall_catchpoint (struct target_ops *self, int pid, int needed,
929 int any_count, int table_size, int *table)
930 {
931
932 /* Ignore the arguments. inf-ptrace.c will use PT_SYSCALL which
933 will catch all system call entries and exits. The system calls
934 are filtered by GDB rather than the kernel. */
935 return 0;
936 }
937 #endif
938 #endif
939
940 void
941 fbsd_nat_add_target (struct target_ops *t)
942 {
943 t->to_pid_to_exec_file = fbsd_pid_to_exec_file;
944 t->to_find_memory_regions = fbsd_find_memory_regions;
945 #ifdef KERN_PROC_AUXV
946 super_xfer_partial = t->to_xfer_partial;
947 t->to_xfer_partial = fbsd_xfer_partial;
948 #endif
949 #ifdef PT_LWPINFO
950 t->to_thread_alive = fbsd_thread_alive;
951 t->to_pid_to_str = fbsd_pid_to_str;
952 #ifdef HAVE_STRUCT_PTRACE_LWPINFO_PL_TDNAME
953 t->to_thread_name = fbsd_thread_name;
954 #endif
955 t->to_update_thread_list = fbsd_update_thread_list;
956 t->to_has_thread_control = tc_schedlock;
957 super_resume = t->to_resume;
958 t->to_resume = fbsd_resume;
959 super_wait = t->to_wait;
960 t->to_wait = fbsd_wait;
961 t->to_post_startup_inferior = fbsd_post_startup_inferior;
962 t->to_post_attach = fbsd_post_attach;
963 #ifdef TDP_RFPPWAIT
964 t->to_follow_fork = fbsd_follow_fork;
965 t->to_insert_fork_catchpoint = fbsd_insert_fork_catchpoint;
966 t->to_remove_fork_catchpoint = fbsd_remove_fork_catchpoint;
967 t->to_insert_vfork_catchpoint = fbsd_insert_vfork_catchpoint;
968 t->to_remove_vfork_catchpoint = fbsd_remove_vfork_catchpoint;
969 #endif
970 #ifdef PL_FLAG_EXEC
971 t->to_insert_exec_catchpoint = fbsd_insert_exec_catchpoint;
972 t->to_remove_exec_catchpoint = fbsd_remove_exec_catchpoint;
973 #endif
974 #ifdef HAVE_STRUCT_PTRACE_LWPINFO_PL_SYSCALL_CODE
975 t->to_set_syscall_catchpoint = fbsd_set_syscall_catchpoint;
976 #endif
977 #endif
978 add_target (t);
979 }
980
981 /* Provide a prototype to silence -Wmissing-prototypes. */
982 extern initialize_file_ftype _initialize_fbsd_nat;
983
984 void
985 _initialize_fbsd_nat (void)
986 {
987 #ifdef PT_LWPINFO
988 add_setshow_boolean_cmd ("fbsd-lwp", class_maintenance,
989 &debug_fbsd_lwp, _("\
990 Set debugging of FreeBSD lwp module."), _("\
991 Show debugging of FreeBSD lwp module."), _("\
992 Enables printf debugging output."),
993 NULL,
994 &show_fbsd_lwp_debug,
995 &setdebuglist, &showdebuglist);
996 #endif
997 }