2013-01-31 Aleksandar Ristovski <aristovski@qnx.com>
[deliverable/binutils-gdb.git] / gdb / linux-thread-db.c
1 /* libthread_db assisted debugging support, generic parts.
2
3 Copyright (C) 1999-2013 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
22 #include "gdb_assert.h"
23 #include <dlfcn.h>
24 #include "gdb_proc_service.h"
25 #include "gdb_thread_db.h"
26 #include "gdb_vecs.h"
27 #include "bfd.h"
28 #include "command.h"
29 #include "exceptions.h"
30 #include "gdbcmd.h"
31 #include "gdbthread.h"
32 #include "inferior.h"
33 #include "symfile.h"
34 #include "objfiles.h"
35 #include "target.h"
36 #include "regcache.h"
37 #include "solib.h"
38 #include "solib-svr4.h"
39 #include "gdbcore.h"
40 #include "observer.h"
41 #include "linux-nat.h"
42 #include "linux-procfs.h"
43 #include "linux-osdata.h"
44 #include "auto-load.h"
45
46 #include <signal.h>
47 #include <ctype.h>
48
49 /* GNU/Linux libthread_db support.
50
51 libthread_db is a library, provided along with libpthread.so, which
52 exposes the internals of the thread library to a debugger. It
53 allows GDB to find existing threads, new threads as they are
54 created, thread IDs (usually, the result of pthread_self), and
55 thread-local variables.
56
57 The libthread_db interface originates on Solaris, where it is
58 both more powerful and more complicated. This implementation
59 only works for LinuxThreads and NPTL, the two glibc threading
60 libraries. It assumes that each thread is permanently assigned
61 to a single light-weight process (LWP).
62
63 libthread_db-specific information is stored in the "private" field
64 of struct thread_info. When the field is NULL we do not yet have
65 information about the new thread; this could be temporary (created,
66 but the thread library's data structures do not reflect it yet)
67 or permanent (created using clone instead of pthread_create).
68
69 Process IDs managed by linux-thread-db.c match those used by
70 linux-nat.c: a common PID for all processes, an LWP ID for each
71 thread, and no TID. We save the TID in private. Keeping it out
72 of the ptid_t prevents thread IDs changing when libpthread is
73 loaded or unloaded. */
74
75 static char *libthread_db_search_path;
76
77 /* Set to non-zero if thread_db auto-loading is enabled
78 by the "set auto-load libthread-db" command. */
79 static int auto_load_thread_db = 1;
80
81 /* "show" command for the auto_load_thread_db configuration variable. */
82
83 static void
84 show_auto_load_thread_db (struct ui_file *file, int from_tty,
85 struct cmd_list_element *c, const char *value)
86 {
87 fprintf_filtered (file, _("Auto-loading of inferior specific libthread_db "
88 "is %s.\n"),
89 value);
90 }
91
92 static void
93 set_libthread_db_search_path (char *ignored, int from_tty,
94 struct cmd_list_element *c)
95 {
96 if (*libthread_db_search_path == '\0')
97 {
98 xfree (libthread_db_search_path);
99 libthread_db_search_path = xstrdup (LIBTHREAD_DB_SEARCH_PATH);
100 }
101 }
102
103 /* If non-zero, print details of libthread_db processing. */
104
105 static unsigned int libthread_db_debug;
106
107 static void
108 show_libthread_db_debug (struct ui_file *file, int from_tty,
109 struct cmd_list_element *c, const char *value)
110 {
111 fprintf_filtered (file, _("libthread-db debugging is %s.\n"), value);
112 }
113
114 /* If we're running on GNU/Linux, we must explicitly attach to any new
115 threads. */
116
117 /* This module's target vector. */
118 static struct target_ops thread_db_ops;
119
120 /* Non-zero if we have determined the signals used by the threads
121 library. */
122 static int thread_signals;
123 static sigset_t thread_stop_set;
124 static sigset_t thread_print_set;
125
126 struct thread_db_info
127 {
128 struct thread_db_info *next;
129
130 /* Process id this object refers to. */
131 int pid;
132
133 /* Handle from dlopen for libthread_db.so. */
134 void *handle;
135
136 /* Absolute pathname from gdb_realpath to disk file used for dlopen-ing
137 HANDLE. It may be NULL for system library. */
138 char *filename;
139
140 /* Structure that identifies the child process for the
141 <proc_service.h> interface. */
142 struct ps_prochandle proc_handle;
143
144 /* Connection to the libthread_db library. */
145 td_thragent_t *thread_agent;
146
147 /* True if we need to apply the workaround for glibc/BZ5983. When
148 we catch a PTRACE_O_TRACEFORK, and go query the child's thread
149 list, nptl_db returns the parent's threads in addition to the new
150 (single) child thread. If this flag is set, we do extra work to
151 be able to ignore such stale entries. */
152 int need_stale_parent_threads_check;
153
154 /* Location of the thread creation event breakpoint. The code at
155 this location in the child process will be called by the pthread
156 library whenever a new thread is created. By setting a special
157 breakpoint at this location, GDB can detect when a new thread is
158 created. We obtain this location via the td_ta_event_addr
159 call. */
160 CORE_ADDR td_create_bp_addr;
161
162 /* Location of the thread death event breakpoint. */
163 CORE_ADDR td_death_bp_addr;
164
165 /* Pointers to the libthread_db functions. */
166
167 td_err_e (*td_init_p) (void);
168
169 td_err_e (*td_ta_new_p) (struct ps_prochandle * ps,
170 td_thragent_t **ta);
171 td_err_e (*td_ta_map_id2thr_p) (const td_thragent_t *ta, thread_t pt,
172 td_thrhandle_t *__th);
173 td_err_e (*td_ta_map_lwp2thr_p) (const td_thragent_t *ta,
174 lwpid_t lwpid, td_thrhandle_t *th);
175 td_err_e (*td_ta_thr_iter_p) (const td_thragent_t *ta,
176 td_thr_iter_f *callback, void *cbdata_p,
177 td_thr_state_e state, int ti_pri,
178 sigset_t *ti_sigmask_p,
179 unsigned int ti_user_flags);
180 td_err_e (*td_ta_event_addr_p) (const td_thragent_t *ta,
181 td_event_e event, td_notify_t *ptr);
182 td_err_e (*td_ta_set_event_p) (const td_thragent_t *ta,
183 td_thr_events_t *event);
184 td_err_e (*td_ta_clear_event_p) (const td_thragent_t *ta,
185 td_thr_events_t *event);
186 td_err_e (*td_ta_event_getmsg_p) (const td_thragent_t *ta,
187 td_event_msg_t *msg);
188
189 td_err_e (*td_thr_validate_p) (const td_thrhandle_t *th);
190 td_err_e (*td_thr_get_info_p) (const td_thrhandle_t *th,
191 td_thrinfo_t *infop);
192 td_err_e (*td_thr_event_enable_p) (const td_thrhandle_t *th,
193 int event);
194
195 td_err_e (*td_thr_tls_get_addr_p) (const td_thrhandle_t *th,
196 psaddr_t map_address,
197 size_t offset, psaddr_t *address);
198 };
199
200 /* List of known processes using thread_db, and the required
201 bookkeeping. */
202 struct thread_db_info *thread_db_list;
203
204 static void thread_db_find_new_threads_1 (ptid_t ptid);
205 static void thread_db_find_new_threads_2 (ptid_t ptid, int until_no_new);
206
207 /* Add the current inferior to the list of processes using libpthread.
208 Return a pointer to the newly allocated object that was added to
209 THREAD_DB_LIST. HANDLE is the handle returned by dlopen'ing
210 LIBTHREAD_DB_SO. */
211
212 static struct thread_db_info *
213 add_thread_db_info (void *handle)
214 {
215 struct thread_db_info *info;
216
217 info = xcalloc (1, sizeof (*info));
218 info->pid = ptid_get_pid (inferior_ptid);
219 info->handle = handle;
220
221 /* The workaround works by reading from /proc/pid/status, so it is
222 disabled for core files. */
223 if (target_has_execution)
224 info->need_stale_parent_threads_check = 1;
225
226 info->next = thread_db_list;
227 thread_db_list = info;
228
229 return info;
230 }
231
232 /* Return the thread_db_info object representing the bookkeeping
233 related to process PID, if any; NULL otherwise. */
234
235 static struct thread_db_info *
236 get_thread_db_info (int pid)
237 {
238 struct thread_db_info *info;
239
240 for (info = thread_db_list; info; info = info->next)
241 if (pid == info->pid)
242 return info;
243
244 return NULL;
245 }
246
247 /* When PID has exited or has been detached, we no longer want to keep
248 track of it as using libpthread. Call this function to discard
249 thread_db related info related to PID. Note that this closes
250 LIBTHREAD_DB_SO's dlopen'ed handle. */
251
252 static void
253 delete_thread_db_info (int pid)
254 {
255 struct thread_db_info *info, *info_prev;
256
257 info_prev = NULL;
258
259 for (info = thread_db_list; info; info_prev = info, info = info->next)
260 if (pid == info->pid)
261 break;
262
263 if (info == NULL)
264 return;
265
266 if (info->handle != NULL)
267 dlclose (info->handle);
268
269 xfree (info->filename);
270
271 if (info_prev)
272 info_prev->next = info->next;
273 else
274 thread_db_list = info->next;
275
276 xfree (info);
277 }
278
279 /* Prototypes for local functions. */
280 static int attach_thread (ptid_t ptid, const td_thrhandle_t *th_p,
281 const td_thrinfo_t *ti_p);
282 static void detach_thread (ptid_t ptid);
283 \f
284
285 /* Use "struct private_thread_info" to cache thread state. This is
286 a substantial optimization. */
287
288 struct private_thread_info
289 {
290 /* Flag set when we see a TD_DEATH event for this thread. */
291 unsigned int dying:1;
292
293 /* Cached thread state. */
294 td_thrhandle_t th;
295 thread_t tid;
296 };
297 \f
298
299 static char *
300 thread_db_err_str (td_err_e err)
301 {
302 static char buf[64];
303
304 switch (err)
305 {
306 case TD_OK:
307 return "generic 'call succeeded'";
308 case TD_ERR:
309 return "generic error";
310 case TD_NOTHR:
311 return "no thread to satisfy query";
312 case TD_NOSV:
313 return "no sync handle to satisfy query";
314 case TD_NOLWP:
315 return "no LWP to satisfy query";
316 case TD_BADPH:
317 return "invalid process handle";
318 case TD_BADTH:
319 return "invalid thread handle";
320 case TD_BADSH:
321 return "invalid synchronization handle";
322 case TD_BADTA:
323 return "invalid thread agent";
324 case TD_BADKEY:
325 return "invalid key";
326 case TD_NOMSG:
327 return "no event message for getmsg";
328 case TD_NOFPREGS:
329 return "FPU register set not available";
330 case TD_NOLIBTHREAD:
331 return "application not linked with libthread";
332 case TD_NOEVENT:
333 return "requested event is not supported";
334 case TD_NOCAPAB:
335 return "capability not available";
336 case TD_DBERR:
337 return "debugger service failed";
338 case TD_NOAPLIC:
339 return "operation not applicable to";
340 case TD_NOTSD:
341 return "no thread-specific data for this thread";
342 case TD_MALLOC:
343 return "malloc failed";
344 case TD_PARTIALREG:
345 return "only part of register set was written/read";
346 case TD_NOXREGS:
347 return "X register set not available for this thread";
348 #ifdef THREAD_DB_HAS_TD_NOTALLOC
349 case TD_NOTALLOC:
350 return "thread has not yet allocated TLS for given module";
351 #endif
352 #ifdef THREAD_DB_HAS_TD_VERSION
353 case TD_VERSION:
354 return "versions of libpthread and libthread_db do not match";
355 #endif
356 #ifdef THREAD_DB_HAS_TD_NOTLS
357 case TD_NOTLS:
358 return "there is no TLS segment in the given module";
359 #endif
360 default:
361 snprintf (buf, sizeof (buf), "unknown thread_db error '%d'", err);
362 return buf;
363 }
364 }
365 \f
366 /* Return 1 if any threads have been registered. There may be none if
367 the threading library is not fully initialized yet. */
368
369 static int
370 have_threads_callback (struct thread_info *thread, void *args)
371 {
372 int pid = * (int *) args;
373
374 if (ptid_get_pid (thread->ptid) != pid)
375 return 0;
376
377 return thread->private != NULL;
378 }
379
380 static int
381 have_threads (ptid_t ptid)
382 {
383 int pid = ptid_get_pid (ptid);
384
385 return iterate_over_threads (have_threads_callback, &pid) != NULL;
386 }
387
388 struct thread_get_info_inout
389 {
390 struct thread_info *thread_info;
391 struct thread_db_info *thread_db_info;
392 };
393
394 /* A callback function for td_ta_thr_iter, which we use to map all
395 threads to LWPs.
396
397 THP is a handle to the current thread; if INFOP is not NULL, the
398 struct thread_info associated with this thread is returned in
399 *INFOP.
400
401 If the thread is a zombie, TD_THR_ZOMBIE is returned. Otherwise,
402 zero is returned to indicate success. */
403
404 static int
405 thread_get_info_callback (const td_thrhandle_t *thp, void *argp)
406 {
407 td_thrinfo_t ti;
408 td_err_e err;
409 ptid_t thread_ptid;
410 struct thread_get_info_inout *inout;
411 struct thread_db_info *info;
412
413 inout = argp;
414 info = inout->thread_db_info;
415
416 err = info->td_thr_get_info_p (thp, &ti);
417 if (err != TD_OK)
418 error (_("thread_get_info_callback: cannot get thread info: %s"),
419 thread_db_err_str (err));
420
421 /* Fill the cache. */
422 thread_ptid = ptid_build (info->pid, ti.ti_lid, 0);
423 inout->thread_info = find_thread_ptid (thread_ptid);
424
425 if (inout->thread_info == NULL)
426 {
427 /* New thread. Attach to it now (why wait?). */
428 if (!have_threads (thread_ptid))
429 thread_db_find_new_threads_1 (thread_ptid);
430 else
431 attach_thread (thread_ptid, thp, &ti);
432 inout->thread_info = find_thread_ptid (thread_ptid);
433 gdb_assert (inout->thread_info != NULL);
434 }
435
436 return 0;
437 }
438 \f
439 /* Fetch the user-level thread id of PTID. */
440
441 static void
442 thread_from_lwp (ptid_t ptid)
443 {
444 td_thrhandle_t th;
445 td_err_e err;
446 struct thread_db_info *info;
447 struct thread_get_info_inout io = {0};
448
449 /* Just in case td_ta_map_lwp2thr doesn't initialize it completely. */
450 th.th_unique = 0;
451
452 /* This ptid comes from linux-nat.c, which should always fill in the
453 LWP. */
454 gdb_assert (GET_LWP (ptid) != 0);
455
456 info = get_thread_db_info (GET_PID (ptid));
457
458 /* Access an lwp we know is stopped. */
459 info->proc_handle.ptid = ptid;
460 err = info->td_ta_map_lwp2thr_p (info->thread_agent, GET_LWP (ptid), &th);
461 if (err != TD_OK)
462 error (_("Cannot find user-level thread for LWP %ld: %s"),
463 GET_LWP (ptid), thread_db_err_str (err));
464
465 /* Long-winded way of fetching the thread info. */
466 io.thread_db_info = info;
467 io.thread_info = NULL;
468 thread_get_info_callback (&th, &io);
469 }
470 \f
471
472 /* Attach to lwp PTID, doing whatever else is required to have this
473 LWP under the debugger's control --- e.g., enabling event
474 reporting. Returns true on success. */
475 int
476 thread_db_attach_lwp (ptid_t ptid)
477 {
478 td_thrhandle_t th;
479 td_thrinfo_t ti;
480 td_err_e err;
481 struct thread_db_info *info;
482
483 info = get_thread_db_info (GET_PID (ptid));
484
485 if (info == NULL)
486 return 0;
487
488 /* This ptid comes from linux-nat.c, which should always fill in the
489 LWP. */
490 gdb_assert (GET_LWP (ptid) != 0);
491
492 /* Access an lwp we know is stopped. */
493 info->proc_handle.ptid = ptid;
494
495 /* If we have only looked at the first thread before libpthread was
496 initialized, we may not know its thread ID yet. Make sure we do
497 before we add another thread to the list. */
498 if (!have_threads (ptid))
499 thread_db_find_new_threads_1 (ptid);
500
501 err = info->td_ta_map_lwp2thr_p (info->thread_agent, GET_LWP (ptid), &th);
502 if (err != TD_OK)
503 /* Cannot find user-level thread. */
504 return 0;
505
506 err = info->td_thr_get_info_p (&th, &ti);
507 if (err != TD_OK)
508 {
509 warning (_("Cannot get thread info: %s"), thread_db_err_str (err));
510 return 0;
511 }
512
513 attach_thread (ptid, &th, &ti);
514 return 1;
515 }
516
517 static void *
518 verbose_dlsym (void *handle, const char *name)
519 {
520 void *sym = dlsym (handle, name);
521 if (sym == NULL)
522 warning (_("Symbol \"%s\" not found in libthread_db: %s"),
523 name, dlerror ());
524 return sym;
525 }
526
527 static td_err_e
528 enable_thread_event (int event, CORE_ADDR *bp)
529 {
530 td_notify_t notify;
531 td_err_e err;
532 struct thread_db_info *info;
533
534 info = get_thread_db_info (GET_PID (inferior_ptid));
535
536 /* Access an lwp we know is stopped. */
537 info->proc_handle.ptid = inferior_ptid;
538
539 /* Get the breakpoint address for thread EVENT. */
540 err = info->td_ta_event_addr_p (info->thread_agent, event, &notify);
541 if (err != TD_OK)
542 return err;
543
544 /* Set up the breakpoint. */
545 gdb_assert (exec_bfd);
546 (*bp) = (gdbarch_convert_from_func_ptr_addr
547 (target_gdbarch (),
548 /* Do proper sign extension for the target. */
549 (bfd_get_sign_extend_vma (exec_bfd) > 0
550 ? (CORE_ADDR) (intptr_t) notify.u.bptaddr
551 : (CORE_ADDR) (uintptr_t) notify.u.bptaddr),
552 &current_target));
553 create_thread_event_breakpoint (target_gdbarch (), *bp);
554
555 return TD_OK;
556 }
557
558 /* Verify inferior's '\0'-terminated symbol VER_SYMBOL starts with "%d.%d" and
559 return 1 if this version is lower (and not equal) to
560 VER_MAJOR_MIN.VER_MINOR_MIN. Return 0 in all other cases. */
561
562 static int
563 inferior_has_bug (const char *ver_symbol, int ver_major_min, int ver_minor_min)
564 {
565 struct minimal_symbol *version_msym;
566 CORE_ADDR version_addr;
567 char *version;
568 int err, got, retval = 0;
569
570 version_msym = lookup_minimal_symbol (ver_symbol, NULL, NULL);
571 if (version_msym == NULL)
572 return 0;
573
574 version_addr = SYMBOL_VALUE_ADDRESS (version_msym);
575 got = target_read_string (version_addr, &version, 32, &err);
576 if (err == 0 && memchr (version, 0, got) == &version[got -1])
577 {
578 int major, minor;
579
580 retval = (sscanf (version, "%d.%d", &major, &minor) == 2
581 && (major < ver_major_min
582 || (major == ver_major_min && minor < ver_minor_min)));
583 }
584 xfree (version);
585
586 return retval;
587 }
588
589 static void
590 enable_thread_event_reporting (void)
591 {
592 td_thr_events_t events;
593 td_err_e err;
594 struct thread_db_info *info;
595
596 info = get_thread_db_info (GET_PID (inferior_ptid));
597
598 /* We cannot use the thread event reporting facility if these
599 functions aren't available. */
600 if (info->td_ta_event_addr_p == NULL
601 || info->td_ta_set_event_p == NULL
602 || info->td_ta_event_getmsg_p == NULL
603 || info->td_thr_event_enable_p == NULL)
604 return;
605
606 /* Set the process wide mask saying which events we're interested in. */
607 td_event_emptyset (&events);
608 td_event_addset (&events, TD_CREATE);
609
610 /* There is a bug fixed between linuxthreads 2.1.3 and 2.2 by
611 commit 2e4581e4fba917f1779cd0a010a45698586c190a
612 * manager.c (pthread_exited): Correctly report event as TD_REAP
613 instead of TD_DEATH. Fix comments.
614 where event reporting facility is broken for TD_DEATH events,
615 so don't enable it if we have glibc but a lower version. */
616 if (!inferior_has_bug ("__linuxthreads_version", 2, 2))
617 td_event_addset (&events, TD_DEATH);
618
619 err = info->td_ta_set_event_p (info->thread_agent, &events);
620 if (err != TD_OK)
621 {
622 warning (_("Unable to set global thread event mask: %s"),
623 thread_db_err_str (err));
624 return;
625 }
626
627 /* Delete previous thread event breakpoints, if any. */
628 remove_thread_event_breakpoints ();
629 info->td_create_bp_addr = 0;
630 info->td_death_bp_addr = 0;
631
632 /* Set up the thread creation event. */
633 err = enable_thread_event (TD_CREATE, &info->td_create_bp_addr);
634 if (err != TD_OK)
635 {
636 warning (_("Unable to get location for thread creation breakpoint: %s"),
637 thread_db_err_str (err));
638 return;
639 }
640
641 /* Set up the thread death event. */
642 err = enable_thread_event (TD_DEATH, &info->td_death_bp_addr);
643 if (err != TD_OK)
644 {
645 warning (_("Unable to get location for thread death breakpoint: %s"),
646 thread_db_err_str (err));
647 return;
648 }
649 }
650
651 /* Similar as thread_db_find_new_threads_1, but try to silently ignore errors
652 if appropriate.
653
654 Return 1 if the caller should abort libthread_db initialization. Return 0
655 otherwise. */
656
657 static int
658 thread_db_find_new_threads_silently (ptid_t ptid)
659 {
660 volatile struct gdb_exception except;
661
662 TRY_CATCH (except, RETURN_MASK_ERROR)
663 {
664 thread_db_find_new_threads_2 (ptid, 1);
665 }
666
667 if (except.reason < 0)
668 {
669 if (libthread_db_debug)
670 exception_fprintf (gdb_stderr, except,
671 "Warning: thread_db_find_new_threads_silently: ");
672
673 /* There is a bug fixed between nptl 2.6.1 and 2.7 by
674 commit 7d9d8bd18906fdd17364f372b160d7ab896ce909
675 where calls to td_thr_get_info fail with TD_ERR for statically linked
676 executables if td_thr_get_info is called before glibc has initialized
677 itself.
678
679 If the nptl bug is NOT present in the inferior and still thread_db
680 reports an error return 1. It means the inferior has corrupted thread
681 list and GDB should fall back only to LWPs.
682
683 If the nptl bug is present in the inferior return 0 to silently ignore
684 such errors, and let gdb enumerate threads again later. In such case
685 GDB cannot properly display LWPs if the inferior thread list is
686 corrupted. For core files it does not apply, no 'later enumeration'
687 is possible. */
688
689 if (!target_has_execution || !inferior_has_bug ("nptl_version", 2, 7))
690 {
691 exception_fprintf (gdb_stderr, except,
692 _("Warning: couldn't activate thread debugging "
693 "using libthread_db: "));
694 return 1;
695 }
696 }
697 return 0;
698 }
699
700 /* Lookup a library in which given symbol resides.
701 Note: this is looking in GDB process, not in the inferior.
702 Returns library name, or NULL. */
703
704 static const char *
705 dladdr_to_soname (const void *addr)
706 {
707 Dl_info info;
708
709 if (dladdr (addr, &info) != 0)
710 return info.dli_fname;
711 return NULL;
712 }
713
714 /* Attempt to initialize dlopen()ed libthread_db, described by INFO.
715 Return 1 on success.
716 Failure could happen if libthread_db does not have symbols we expect,
717 or when it refuses to work with the current inferior (e.g. due to
718 version mismatch between libthread_db and libpthread). */
719
720 static int
721 try_thread_db_load_1 (struct thread_db_info *info)
722 {
723 td_err_e err;
724
725 /* Initialize pointers to the dynamic library functions we will use.
726 Essential functions first. */
727
728 info->td_init_p = verbose_dlsym (info->handle, "td_init");
729 if (info->td_init_p == NULL)
730 return 0;
731
732 err = info->td_init_p ();
733 if (err != TD_OK)
734 {
735 warning (_("Cannot initialize libthread_db: %s"),
736 thread_db_err_str (err));
737 return 0;
738 }
739
740 info->td_ta_new_p = verbose_dlsym (info->handle, "td_ta_new");
741 if (info->td_ta_new_p == NULL)
742 return 0;
743
744 /* Initialize the structure that identifies the child process. */
745 info->proc_handle.ptid = inferior_ptid;
746
747 /* Now attempt to open a connection to the thread library. */
748 err = info->td_ta_new_p (&info->proc_handle, &info->thread_agent);
749 if (err != TD_OK)
750 {
751 if (libthread_db_debug)
752 printf_unfiltered (_("td_ta_new failed: %s\n"),
753 thread_db_err_str (err));
754 else
755 switch (err)
756 {
757 case TD_NOLIBTHREAD:
758 #ifdef THREAD_DB_HAS_TD_VERSION
759 case TD_VERSION:
760 #endif
761 /* The errors above are not unexpected and silently ignored:
762 they just mean we haven't found correct version of
763 libthread_db yet. */
764 break;
765 default:
766 warning (_("td_ta_new failed: %s"), thread_db_err_str (err));
767 }
768 return 0;
769 }
770
771 info->td_ta_map_id2thr_p = verbose_dlsym (info->handle, "td_ta_map_id2thr");
772 if (info->td_ta_map_id2thr_p == NULL)
773 return 0;
774
775 info->td_ta_map_lwp2thr_p = verbose_dlsym (info->handle,
776 "td_ta_map_lwp2thr");
777 if (info->td_ta_map_lwp2thr_p == NULL)
778 return 0;
779
780 info->td_ta_thr_iter_p = verbose_dlsym (info->handle, "td_ta_thr_iter");
781 if (info->td_ta_thr_iter_p == NULL)
782 return 0;
783
784 info->td_thr_validate_p = verbose_dlsym (info->handle, "td_thr_validate");
785 if (info->td_thr_validate_p == NULL)
786 return 0;
787
788 info->td_thr_get_info_p = verbose_dlsym (info->handle, "td_thr_get_info");
789 if (info->td_thr_get_info_p == NULL)
790 return 0;
791
792 /* These are not essential. */
793 info->td_ta_event_addr_p = dlsym (info->handle, "td_ta_event_addr");
794 info->td_ta_set_event_p = dlsym (info->handle, "td_ta_set_event");
795 info->td_ta_clear_event_p = dlsym (info->handle, "td_ta_clear_event");
796 info->td_ta_event_getmsg_p = dlsym (info->handle, "td_ta_event_getmsg");
797 info->td_thr_event_enable_p = dlsym (info->handle, "td_thr_event_enable");
798 info->td_thr_tls_get_addr_p = dlsym (info->handle, "td_thr_tls_get_addr");
799
800 if (thread_db_find_new_threads_silently (inferior_ptid) != 0)
801 {
802 /* Even if libthread_db initializes, if the thread list is
803 corrupted, we'd not manage to list any threads. Better reject this
804 thread_db, and fall back to at least listing LWPs. */
805 return 0;
806 }
807
808 printf_unfiltered (_("[Thread debugging using libthread_db enabled]\n"));
809
810 if (libthread_db_debug || *libthread_db_search_path)
811 {
812 const char *library;
813
814 library = dladdr_to_soname (*info->td_ta_new_p);
815 if (library == NULL)
816 library = LIBTHREAD_DB_SO;
817
818 printf_unfiltered (_("Using host libthread_db library \"%s\".\n"),
819 library);
820 }
821
822 /* The thread library was detected. Activate the thread_db target
823 if this is the first process using it. */
824 if (thread_db_list->next == NULL)
825 push_target (&thread_db_ops);
826
827 /* Enable event reporting, but not when debugging a core file. */
828 if (target_has_execution)
829 enable_thread_event_reporting ();
830
831 return 1;
832 }
833
834 /* Attempt to use LIBRARY as libthread_db. LIBRARY could be absolute,
835 relative, or just LIBTHREAD_DB. */
836
837 static int
838 try_thread_db_load (const char *library)
839 {
840 void *handle;
841 struct thread_db_info *info;
842
843 if (libthread_db_debug)
844 printf_unfiltered (_("Trying host libthread_db library: %s.\n"),
845 library);
846 handle = dlopen (library, RTLD_NOW);
847 if (handle == NULL)
848 {
849 if (libthread_db_debug)
850 printf_unfiltered (_("dlopen failed: %s.\n"), dlerror ());
851 return 0;
852 }
853
854 if (libthread_db_debug && strchr (library, '/') == NULL)
855 {
856 void *td_init;
857
858 td_init = dlsym (handle, "td_init");
859 if (td_init != NULL)
860 {
861 const char *const libpath = dladdr_to_soname (td_init);
862
863 if (libpath != NULL)
864 printf_unfiltered (_("Host %s resolved to: %s.\n"),
865 library, libpath);
866 }
867 }
868
869 info = add_thread_db_info (handle);
870
871 /* Do not save system library name, that one is always trusted. */
872 if (strchr (library, '/') != NULL)
873 info->filename = gdb_realpath (library);
874
875 if (try_thread_db_load_1 (info))
876 return 1;
877
878 /* This library "refused" to work on current inferior. */
879 delete_thread_db_info (GET_PID (inferior_ptid));
880 return 0;
881 }
882
883 /* Subroutine of try_thread_db_load_from_pdir to simplify it.
884 Try loading libthread_db in directory(OBJ)/SUBDIR.
885 SUBDIR may be NULL. It may also be something like "../lib64".
886 The result is true for success. */
887
888 static int
889 try_thread_db_load_from_pdir_1 (struct objfile *obj, const char *subdir)
890 {
891 struct cleanup *cleanup;
892 char *path, *cp;
893 int result;
894
895 if (obj->name[0] != '/')
896 {
897 warning (_("Expected absolute pathname for libpthread in the"
898 " inferior, but got %s."), obj->name);
899 return 0;
900 }
901
902 path = xmalloc (strlen (obj->name) + (subdir ? strlen (subdir) + 1 : 0)
903 + 1 + strlen (LIBTHREAD_DB_SO) + 1);
904 cleanup = make_cleanup (xfree, path);
905
906 strcpy (path, obj->name);
907 cp = strrchr (path, '/');
908 /* This should at minimum hit the first character. */
909 gdb_assert (cp != NULL);
910 cp[1] = '\0';
911 if (subdir != NULL)
912 {
913 strcat (cp, subdir);
914 strcat (cp, "/");
915 }
916 strcat (cp, LIBTHREAD_DB_SO);
917
918 if (!file_is_auto_load_safe (path, _("auto-load: Loading libthread-db "
919 "library \"%s\" from $pdir.\n"),
920 path))
921 result = 0;
922 else
923 result = try_thread_db_load (path);
924
925 do_cleanups (cleanup);
926 return result;
927 }
928
929 /* Handle $pdir in libthread-db-search-path.
930 Look for libthread_db in directory(libpthread)/SUBDIR.
931 SUBDIR may be NULL. It may also be something like "../lib64".
932 The result is true for success. */
933
934 static int
935 try_thread_db_load_from_pdir (const char *subdir)
936 {
937 struct objfile *obj;
938
939 if (!auto_load_thread_db)
940 return 0;
941
942 ALL_OBJFILES (obj)
943 if (libpthread_name_p (obj->name))
944 {
945 if (try_thread_db_load_from_pdir_1 (obj, subdir))
946 return 1;
947
948 /* We may have found the separate-debug-info version of
949 libpthread, and it may live in a directory without a matching
950 libthread_db. */
951 if (obj->separate_debug_objfile_backlink != NULL)
952 return try_thread_db_load_from_pdir_1 (obj->separate_debug_objfile_backlink,
953 subdir);
954
955 return 0;
956 }
957
958 return 0;
959 }
960
961 /* Handle $sdir in libthread-db-search-path.
962 Look for libthread_db in the system dirs, or wherever a plain
963 dlopen(file_without_path) will look.
964 The result is true for success. */
965
966 static int
967 try_thread_db_load_from_sdir (void)
968 {
969 return try_thread_db_load (LIBTHREAD_DB_SO);
970 }
971
972 /* Try to load libthread_db from directory DIR of length DIR_LEN.
973 The result is true for success. */
974
975 static int
976 try_thread_db_load_from_dir (const char *dir, size_t dir_len)
977 {
978 struct cleanup *cleanup;
979 char *path;
980 int result;
981
982 if (!auto_load_thread_db)
983 return 0;
984
985 path = xmalloc (dir_len + 1 + strlen (LIBTHREAD_DB_SO) + 1);
986 cleanup = make_cleanup (xfree, path);
987
988 memcpy (path, dir, dir_len);
989 path[dir_len] = '/';
990 strcpy (path + dir_len + 1, LIBTHREAD_DB_SO);
991
992 if (!file_is_auto_load_safe (path, _("auto-load: Loading libthread-db "
993 "library \"%s\" from explicit "
994 "directory.\n"),
995 path))
996 result = 0;
997 else
998 result = try_thread_db_load (path);
999
1000 do_cleanups (cleanup);
1001 return result;
1002 }
1003
1004 /* Search libthread_db_search_path for libthread_db which "agrees"
1005 to work on current inferior.
1006 The result is true for success. */
1007
1008 static int
1009 thread_db_load_search (void)
1010 {
1011 VEC (char_ptr) *dir_vec;
1012 struct cleanup *cleanups;
1013 char *this_dir;
1014 int i, rc = 0;
1015
1016 dir_vec = dirnames_to_char_ptr_vec (libthread_db_search_path);
1017 cleanups = make_cleanup_free_char_ptr_vec (dir_vec);
1018
1019 for (i = 0; VEC_iterate (char_ptr, dir_vec, i, this_dir); ++i)
1020 {
1021 const int pdir_len = sizeof ("$pdir") - 1;
1022 size_t this_dir_len;
1023
1024 this_dir_len = strlen (this_dir);
1025
1026 if (strncmp (this_dir, "$pdir", pdir_len) == 0
1027 && (this_dir[pdir_len] == '\0'
1028 || this_dir[pdir_len] == '/'))
1029 {
1030 char *subdir = NULL;
1031 struct cleanup *free_subdir_cleanup = NULL;
1032
1033 if (this_dir[pdir_len] == '/')
1034 {
1035 subdir = xmalloc (strlen (this_dir));
1036 free_subdir_cleanup = make_cleanup (xfree, subdir);
1037 strcpy (subdir, this_dir + pdir_len + 1);
1038 }
1039 rc = try_thread_db_load_from_pdir (subdir);
1040 if (free_subdir_cleanup != NULL)
1041 do_cleanups (free_subdir_cleanup);
1042 if (rc)
1043 break;
1044 }
1045 else if (strcmp (this_dir, "$sdir") == 0)
1046 {
1047 if (try_thread_db_load_from_sdir ())
1048 {
1049 rc = 1;
1050 break;
1051 }
1052 }
1053 else
1054 {
1055 if (try_thread_db_load_from_dir (this_dir, this_dir_len))
1056 {
1057 rc = 1;
1058 break;
1059 }
1060 }
1061 }
1062
1063 do_cleanups (cleanups);
1064 if (libthread_db_debug)
1065 printf_unfiltered (_("thread_db_load_search returning %d\n"), rc);
1066 return rc;
1067 }
1068
1069 /* Return non-zero if the inferior has a libpthread. */
1070
1071 static int
1072 has_libpthread (void)
1073 {
1074 struct objfile *obj;
1075
1076 ALL_OBJFILES (obj)
1077 if (libpthread_name_p (obj->name))
1078 return 1;
1079
1080 return 0;
1081 }
1082
1083 /* Attempt to load and initialize libthread_db.
1084 Return 1 on success. */
1085
1086 static int
1087 thread_db_load (void)
1088 {
1089 struct thread_db_info *info;
1090
1091 info = get_thread_db_info (GET_PID (inferior_ptid));
1092
1093 if (info != NULL)
1094 return 1;
1095
1096 /* Don't attempt to use thread_db on executables not running
1097 yet. */
1098 if (!target_has_registers)
1099 return 0;
1100
1101 /* Don't attempt to use thread_db for remote targets. */
1102 if (!(target_can_run (&current_target) || core_bfd))
1103 return 0;
1104
1105 if (thread_db_load_search ())
1106 return 1;
1107
1108 /* We couldn't find a libthread_db.
1109 If the inferior has a libpthread warn the user. */
1110 if (has_libpthread ())
1111 {
1112 warning (_("Unable to find libthread_db matching inferior's thread"
1113 " library, thread debugging will not be available."));
1114 return 0;
1115 }
1116
1117 /* Either this executable isn't using libpthread at all, or it is
1118 statically linked. Since we can't easily distinguish these two cases,
1119 no warning is issued. */
1120 return 0;
1121 }
1122
1123 static void
1124 disable_thread_event_reporting (struct thread_db_info *info)
1125 {
1126 if (info->td_ta_clear_event_p != NULL)
1127 {
1128 td_thr_events_t events;
1129
1130 /* Set the process wide mask saying we aren't interested in any
1131 events anymore. */
1132 td_event_fillset (&events);
1133 info->td_ta_clear_event_p (info->thread_agent, &events);
1134 }
1135
1136 info->td_create_bp_addr = 0;
1137 info->td_death_bp_addr = 0;
1138 }
1139
1140 static void
1141 check_thread_signals (void)
1142 {
1143 if (!thread_signals)
1144 {
1145 sigset_t mask;
1146 int i;
1147
1148 lin_thread_get_thread_signals (&mask);
1149 sigemptyset (&thread_stop_set);
1150 sigemptyset (&thread_print_set);
1151
1152 for (i = 1; i < NSIG; i++)
1153 {
1154 if (sigismember (&mask, i))
1155 {
1156 if (signal_stop_update (gdb_signal_from_host (i), 0))
1157 sigaddset (&thread_stop_set, i);
1158 if (signal_print_update (gdb_signal_from_host (i), 0))
1159 sigaddset (&thread_print_set, i);
1160 thread_signals = 1;
1161 }
1162 }
1163 }
1164 }
1165
1166 /* Check whether thread_db is usable. This function is called when
1167 an inferior is created (or otherwise acquired, e.g. attached to)
1168 and when new shared libraries are loaded into a running process. */
1169
1170 void
1171 check_for_thread_db (void)
1172 {
1173 /* Do nothing if we couldn't load libthread_db.so.1. */
1174 if (!thread_db_load ())
1175 return;
1176 }
1177
1178 /* This function is called via the new_objfile observer. */
1179
1180 static void
1181 thread_db_new_objfile (struct objfile *objfile)
1182 {
1183 /* This observer must always be called with inferior_ptid set
1184 correctly. */
1185
1186 if (objfile != NULL
1187 /* libpthread with separate debug info has its debug info file already
1188 loaded (and notified without successful thread_db initialization)
1189 the time observer_notify_new_objfile is called for the library itself.
1190 Static executables have their separate debug info loaded already
1191 before the inferior has started. */
1192 && objfile->separate_debug_objfile_backlink == NULL
1193 /* Only check for thread_db if we loaded libpthread,
1194 or if this is the main symbol file.
1195 We need to check OBJF_MAINLINE to handle the case of debugging
1196 a statically linked executable AND the symbol file is specified AFTER
1197 the exec file is loaded (e.g., gdb -c core ; file foo).
1198 For dynamically linked executables, libpthread can be near the end
1199 of the list of shared libraries to load, and in an app of several
1200 thousand shared libraries, this can otherwise be painful. */
1201 && ((objfile->flags & OBJF_MAINLINE) != 0
1202 || libpthread_name_p (objfile->name)))
1203 check_for_thread_db ();
1204 }
1205
1206 /* This function is called via the inferior_created observer.
1207 This handles the case of debugging statically linked executables. */
1208
1209 static void
1210 thread_db_inferior_created (struct target_ops *target, int from_tty)
1211 {
1212 check_for_thread_db ();
1213 }
1214
1215 /* Attach to a new thread. This function is called when we receive a
1216 TD_CREATE event or when we iterate over all threads and find one
1217 that wasn't already in our list. Returns true on success. */
1218
1219 static int
1220 attach_thread (ptid_t ptid, const td_thrhandle_t *th_p,
1221 const td_thrinfo_t *ti_p)
1222 {
1223 struct private_thread_info *private;
1224 struct thread_info *tp;
1225 td_err_e err;
1226 struct thread_db_info *info;
1227
1228 /* If we're being called after a TD_CREATE event, we may already
1229 know about this thread. There are two ways this can happen. We
1230 may have iterated over all threads between the thread creation
1231 and the TD_CREATE event, for instance when the user has issued
1232 the `info threads' command before the SIGTRAP for hitting the
1233 thread creation breakpoint was reported. Alternatively, the
1234 thread may have exited and a new one been created with the same
1235 thread ID. In the first case we don't need to do anything; in
1236 the second case we should discard information about the dead
1237 thread and attach to the new one. */
1238 tp = find_thread_ptid (ptid);
1239 if (tp != NULL)
1240 {
1241 /* If tp->private is NULL, then GDB is already attached to this
1242 thread, but we do not know anything about it. We can learn
1243 about it here. This can only happen if we have some other
1244 way besides libthread_db to notice new threads (i.e.
1245 PTRACE_EVENT_CLONE); assume the same mechanism notices thread
1246 exit, so this can not be a stale thread recreated with the
1247 same ID. */
1248 if (tp->private != NULL)
1249 {
1250 if (!tp->private->dying)
1251 return 0;
1252
1253 delete_thread (ptid);
1254 tp = NULL;
1255 }
1256 }
1257
1258 if (target_has_execution)
1259 check_thread_signals ();
1260
1261 /* Under GNU/Linux, we have to attach to each and every thread. */
1262 if (target_has_execution
1263 && tp == NULL)
1264 {
1265 int res;
1266
1267 res = lin_lwp_attach_lwp (BUILD_LWP (ti_p->ti_lid, GET_PID (ptid)));
1268 if (res < 0)
1269 {
1270 /* Error, stop iterating. */
1271 return 0;
1272 }
1273 else if (res > 0)
1274 {
1275 /* Pretend this thread doesn't exist yet, and keep
1276 iterating. */
1277 return 1;
1278 }
1279
1280 /* Otherwise, we sucessfully attached to the thread. */
1281 }
1282
1283 /* Construct the thread's private data. */
1284 private = xmalloc (sizeof (struct private_thread_info));
1285 memset (private, 0, sizeof (struct private_thread_info));
1286
1287 /* A thread ID of zero may mean the thread library has not initialized
1288 yet. But we shouldn't even get here if that's the case. FIXME:
1289 if we change GDB to always have at least one thread in the thread
1290 list this will have to go somewhere else; maybe private == NULL
1291 until the thread_db target claims it. */
1292 gdb_assert (ti_p->ti_tid != 0);
1293 private->th = *th_p;
1294 private->tid = ti_p->ti_tid;
1295 if (ti_p->ti_state == TD_THR_UNKNOWN || ti_p->ti_state == TD_THR_ZOMBIE)
1296 private->dying = 1;
1297
1298 /* Add the thread to GDB's thread list. */
1299 if (tp == NULL)
1300 add_thread_with_info (ptid, private);
1301 else
1302 tp->private = private;
1303
1304 info = get_thread_db_info (GET_PID (ptid));
1305
1306 /* Enable thread event reporting for this thread, except when
1307 debugging a core file. */
1308 if (target_has_execution)
1309 {
1310 err = info->td_thr_event_enable_p (th_p, 1);
1311 if (err != TD_OK)
1312 error (_("Cannot enable thread event reporting for %s: %s"),
1313 target_pid_to_str (ptid), thread_db_err_str (err));
1314 }
1315
1316 return 1;
1317 }
1318
1319 static void
1320 detach_thread (ptid_t ptid)
1321 {
1322 struct thread_info *thread_info;
1323
1324 /* Don't delete the thread now, because it still reports as active
1325 until it has executed a few instructions after the event
1326 breakpoint - if we deleted it now, "info threads" would cause us
1327 to re-attach to it. Just mark it as having had a TD_DEATH
1328 event. This means that we won't delete it from our thread list
1329 until we notice that it's dead (via prune_threads), or until
1330 something re-uses its thread ID. We'll report the thread exit
1331 when the underlying LWP dies. */
1332 thread_info = find_thread_ptid (ptid);
1333 gdb_assert (thread_info != NULL && thread_info->private != NULL);
1334 thread_info->private->dying = 1;
1335 }
1336
1337 static void
1338 thread_db_detach (struct target_ops *ops, char *args, int from_tty)
1339 {
1340 struct target_ops *target_beneath = find_target_beneath (ops);
1341 struct thread_db_info *info;
1342
1343 info = get_thread_db_info (GET_PID (inferior_ptid));
1344
1345 if (info)
1346 {
1347 if (target_has_execution)
1348 {
1349 disable_thread_event_reporting (info);
1350
1351 /* Delete the old thread event breakpoints. Note that
1352 unlike when mourning, we can remove them here because
1353 there's still a live inferior to poke at. In any case,
1354 GDB will not try to insert anything in the inferior when
1355 removing a breakpoint. */
1356 remove_thread_event_breakpoints ();
1357 }
1358
1359 delete_thread_db_info (GET_PID (inferior_ptid));
1360 }
1361
1362 target_beneath->to_detach (target_beneath, args, from_tty);
1363
1364 /* NOTE: From this point on, inferior_ptid is null_ptid. */
1365
1366 /* If there are no more processes using libpthread, detach the
1367 thread_db target ops. */
1368 if (!thread_db_list)
1369 unpush_target (&thread_db_ops);
1370 }
1371
1372 /* Check if PID is currently stopped at the location of a thread event
1373 breakpoint location. If it is, read the event message and act upon
1374 the event. */
1375
1376 static void
1377 check_event (ptid_t ptid)
1378 {
1379 struct regcache *regcache = get_thread_regcache (ptid);
1380 struct gdbarch *gdbarch = get_regcache_arch (regcache);
1381 td_event_msg_t msg;
1382 td_thrinfo_t ti;
1383 td_err_e err;
1384 CORE_ADDR stop_pc;
1385 int loop = 0;
1386 struct thread_db_info *info;
1387
1388 info = get_thread_db_info (GET_PID (ptid));
1389
1390 /* Bail out early if we're not at a thread event breakpoint. */
1391 stop_pc = regcache_read_pc (regcache)
1392 - gdbarch_decr_pc_after_break (gdbarch);
1393 if (stop_pc != info->td_create_bp_addr
1394 && stop_pc != info->td_death_bp_addr)
1395 return;
1396
1397 /* Access an lwp we know is stopped. */
1398 info->proc_handle.ptid = ptid;
1399
1400 /* If we have only looked at the first thread before libpthread was
1401 initialized, we may not know its thread ID yet. Make sure we do
1402 before we add another thread to the list. */
1403 if (!have_threads (ptid))
1404 thread_db_find_new_threads_1 (ptid);
1405
1406 /* If we are at a create breakpoint, we do not know what new lwp
1407 was created and cannot specifically locate the event message for it.
1408 We have to call td_ta_event_getmsg() to get
1409 the latest message. Since we have no way of correlating whether
1410 the event message we get back corresponds to our breakpoint, we must
1411 loop and read all event messages, processing them appropriately.
1412 This guarantees we will process the correct message before continuing
1413 from the breakpoint.
1414
1415 Currently, death events are not enabled. If they are enabled,
1416 the death event can use the td_thr_event_getmsg() interface to
1417 get the message specifically for that lwp and avoid looping
1418 below. */
1419
1420 loop = 1;
1421
1422 do
1423 {
1424 err = info->td_ta_event_getmsg_p (info->thread_agent, &msg);
1425 if (err != TD_OK)
1426 {
1427 if (err == TD_NOMSG)
1428 return;
1429
1430 error (_("Cannot get thread event message: %s"),
1431 thread_db_err_str (err));
1432 }
1433
1434 err = info->td_thr_get_info_p (msg.th_p, &ti);
1435 if (err != TD_OK)
1436 error (_("Cannot get thread info: %s"), thread_db_err_str (err));
1437
1438 ptid = ptid_build (GET_PID (ptid), ti.ti_lid, 0);
1439
1440 switch (msg.event)
1441 {
1442 case TD_CREATE:
1443 /* Call attach_thread whether or not we already know about a
1444 thread with this thread ID. */
1445 attach_thread (ptid, msg.th_p, &ti);
1446
1447 break;
1448
1449 case TD_DEATH:
1450
1451 if (!in_thread_list (ptid))
1452 error (_("Spurious thread death event."));
1453
1454 detach_thread (ptid);
1455
1456 break;
1457
1458 default:
1459 error (_("Spurious thread event."));
1460 }
1461 }
1462 while (loop);
1463 }
1464
1465 static ptid_t
1466 thread_db_wait (struct target_ops *ops,
1467 ptid_t ptid, struct target_waitstatus *ourstatus,
1468 int options)
1469 {
1470 struct thread_db_info *info;
1471 struct target_ops *beneath = find_target_beneath (ops);
1472
1473 ptid = beneath->to_wait (beneath, ptid, ourstatus, options);
1474
1475 if (ourstatus->kind == TARGET_WAITKIND_IGNORE)
1476 return ptid;
1477
1478 if (ourstatus->kind == TARGET_WAITKIND_EXITED
1479 || ourstatus->kind == TARGET_WAITKIND_SIGNALLED)
1480 return ptid;
1481
1482 info = get_thread_db_info (GET_PID (ptid));
1483
1484 /* If this process isn't using thread_db, we're done. */
1485 if (info == NULL)
1486 return ptid;
1487
1488 if (ourstatus->kind == TARGET_WAITKIND_EXECD)
1489 {
1490 /* New image, it may or may not end up using thread_db. Assume
1491 not unless we find otherwise. */
1492 delete_thread_db_info (GET_PID (ptid));
1493 if (!thread_db_list)
1494 unpush_target (&thread_db_ops);
1495
1496 /* Thread event breakpoints are deleted by
1497 update_breakpoints_after_exec. */
1498
1499 return ptid;
1500 }
1501
1502 /* If we do not know about the main thread yet, this would be a good time to
1503 find it. */
1504 if (ourstatus->kind == TARGET_WAITKIND_STOPPED && !have_threads (ptid))
1505 thread_db_find_new_threads_1 (ptid);
1506
1507 if (ourstatus->kind == TARGET_WAITKIND_STOPPED
1508 && ourstatus->value.sig == GDB_SIGNAL_TRAP)
1509 /* Check for a thread event. */
1510 check_event (ptid);
1511
1512 if (have_threads (ptid))
1513 {
1514 /* Fill in the thread's user-level thread id. */
1515 thread_from_lwp (ptid);
1516 }
1517
1518 return ptid;
1519 }
1520
1521 static void
1522 thread_db_mourn_inferior (struct target_ops *ops)
1523 {
1524 struct target_ops *target_beneath = find_target_beneath (ops);
1525
1526 delete_thread_db_info (GET_PID (inferior_ptid));
1527
1528 target_beneath->to_mourn_inferior (target_beneath);
1529
1530 /* Delete the old thread event breakpoints. Do this after mourning
1531 the inferior, so that we don't try to uninsert them. */
1532 remove_thread_event_breakpoints ();
1533
1534 /* Detach thread_db target ops. */
1535 if (!thread_db_list)
1536 unpush_target (ops);
1537 }
1538
1539 struct callback_data
1540 {
1541 struct thread_db_info *info;
1542 int new_threads;
1543 };
1544
1545 static int
1546 find_new_threads_callback (const td_thrhandle_t *th_p, void *data)
1547 {
1548 td_thrinfo_t ti;
1549 td_err_e err;
1550 ptid_t ptid;
1551 struct thread_info *tp;
1552 struct callback_data *cb_data = data;
1553 struct thread_db_info *info = cb_data->info;
1554
1555 err = info->td_thr_get_info_p (th_p, &ti);
1556 if (err != TD_OK)
1557 error (_("find_new_threads_callback: cannot get thread info: %s"),
1558 thread_db_err_str (err));
1559
1560 if (ti.ti_tid == 0)
1561 {
1562 /* A thread ID of zero means that this is the main thread, but
1563 glibc has not yet initialized thread-local storage and the
1564 pthread library. We do not know what the thread's TID will
1565 be yet. Just enable event reporting and otherwise ignore
1566 it. */
1567
1568 /* In that case, we're not stopped in a fork syscall and don't
1569 need this glibc bug workaround. */
1570 info->need_stale_parent_threads_check = 0;
1571
1572 if (target_has_execution)
1573 {
1574 err = info->td_thr_event_enable_p (th_p, 1);
1575 if (err != TD_OK)
1576 error (_("Cannot enable thread event reporting for LWP %d: %s"),
1577 (int) ti.ti_lid, thread_db_err_str (err));
1578 }
1579
1580 return 0;
1581 }
1582
1583 /* Ignore stale parent threads, caused by glibc/BZ5983. This is a
1584 bit expensive, as it needs to open /proc/pid/status, so try to
1585 avoid doing the work if we know we don't have to. */
1586 if (info->need_stale_parent_threads_check)
1587 {
1588 int tgid = linux_proc_get_tgid (ti.ti_lid);
1589
1590 if (tgid != -1 && tgid != info->pid)
1591 return 0;
1592 }
1593
1594 ptid = ptid_build (info->pid, ti.ti_lid, 0);
1595 tp = find_thread_ptid (ptid);
1596 if (tp == NULL || tp->private == NULL)
1597 {
1598 if (attach_thread (ptid, th_p, &ti))
1599 cb_data->new_threads += 1;
1600 else
1601 /* Problem attaching this thread; perhaps it exited before we
1602 could attach it?
1603 This could mean that the thread list inside glibc itself is in
1604 inconsistent state, and libthread_db could go on looping forever
1605 (observed with glibc-2.3.6). To prevent that, terminate
1606 iteration: thread_db_find_new_threads_2 will retry. */
1607 return 1;
1608 }
1609
1610 return 0;
1611 }
1612
1613 /* Helper for thread_db_find_new_threads_2.
1614 Returns number of new threads found. */
1615
1616 static int
1617 find_new_threads_once (struct thread_db_info *info, int iteration,
1618 td_err_e *errp)
1619 {
1620 volatile struct gdb_exception except;
1621 struct callback_data data;
1622 td_err_e err = TD_ERR;
1623
1624 data.info = info;
1625 data.new_threads = 0;
1626
1627 TRY_CATCH (except, RETURN_MASK_ERROR)
1628 {
1629 /* Iterate over all user-space threads to discover new threads. */
1630 err = info->td_ta_thr_iter_p (info->thread_agent,
1631 find_new_threads_callback,
1632 &data,
1633 TD_THR_ANY_STATE,
1634 TD_THR_LOWEST_PRIORITY,
1635 TD_SIGNO_MASK,
1636 TD_THR_ANY_USER_FLAGS);
1637 }
1638
1639 if (libthread_db_debug)
1640 {
1641 if (except.reason < 0)
1642 exception_fprintf (gdb_stderr, except,
1643 "Warning: find_new_threads_once: ");
1644
1645 printf_filtered (_("Found %d new threads in iteration %d.\n"),
1646 data.new_threads, iteration);
1647 }
1648
1649 if (errp != NULL)
1650 *errp = err;
1651
1652 return data.new_threads;
1653 }
1654
1655 /* Search for new threads, accessing memory through stopped thread
1656 PTID. If UNTIL_NO_NEW is true, repeat searching until several
1657 searches in a row do not discover any new threads. */
1658
1659 static void
1660 thread_db_find_new_threads_2 (ptid_t ptid, int until_no_new)
1661 {
1662 td_err_e err = TD_OK;
1663 struct thread_db_info *info;
1664 int i, loop;
1665
1666 info = get_thread_db_info (GET_PID (ptid));
1667
1668 /* Access an lwp we know is stopped. */
1669 info->proc_handle.ptid = ptid;
1670
1671 if (until_no_new)
1672 {
1673 /* Require 4 successive iterations which do not find any new threads.
1674 The 4 is a heuristic: there is an inherent race here, and I have
1675 seen that 2 iterations in a row are not always sufficient to
1676 "capture" all threads. */
1677 for (i = 0, loop = 0; loop < 4 && err == TD_OK; ++i, ++loop)
1678 if (find_new_threads_once (info, i, &err) != 0)
1679 {
1680 /* Found some new threads. Restart the loop from beginning. */
1681 loop = -1;
1682 }
1683 }
1684 else
1685 find_new_threads_once (info, 0, &err);
1686
1687 if (err != TD_OK)
1688 error (_("Cannot find new threads: %s"), thread_db_err_str (err));
1689 }
1690
1691 static void
1692 thread_db_find_new_threads_1 (ptid_t ptid)
1693 {
1694 thread_db_find_new_threads_2 (ptid, 0);
1695 }
1696
1697 static int
1698 update_thread_core (struct lwp_info *info, void *closure)
1699 {
1700 info->core = linux_common_core_of_thread (info->ptid);
1701 return 0;
1702 }
1703
1704 static void
1705 thread_db_find_new_threads (struct target_ops *ops)
1706 {
1707 struct thread_db_info *info;
1708 struct inferior *inf;
1709
1710 ALL_INFERIORS (inf)
1711 {
1712 struct thread_info *thread;
1713
1714 if (inf->pid == 0)
1715 continue;
1716
1717 info = get_thread_db_info (inf->pid);
1718 if (info == NULL)
1719 continue;
1720
1721 thread = any_live_thread_of_process (inf->pid);
1722 if (thread == NULL || thread->executing)
1723 continue;
1724
1725 thread_db_find_new_threads_1 (thread->ptid);
1726 }
1727
1728 if (target_has_execution)
1729 iterate_over_lwps (minus_one_ptid /* iterate over all */,
1730 update_thread_core, NULL);
1731 }
1732
1733 static char *
1734 thread_db_pid_to_str (struct target_ops *ops, ptid_t ptid)
1735 {
1736 struct thread_info *thread_info = find_thread_ptid (ptid);
1737 struct target_ops *beneath;
1738
1739 if (thread_info != NULL && thread_info->private != NULL)
1740 {
1741 static char buf[64];
1742 thread_t tid;
1743
1744 tid = thread_info->private->tid;
1745 snprintf (buf, sizeof (buf), "Thread 0x%lx (LWP %ld)",
1746 tid, GET_LWP (ptid));
1747
1748 return buf;
1749 }
1750
1751 beneath = find_target_beneath (ops);
1752 if (beneath->to_pid_to_str (beneath, ptid))
1753 return beneath->to_pid_to_str (beneath, ptid);
1754
1755 return normal_pid_to_str (ptid);
1756 }
1757
1758 /* Return a string describing the state of the thread specified by
1759 INFO. */
1760
1761 static char *
1762 thread_db_extra_thread_info (struct thread_info *info)
1763 {
1764 if (info->private == NULL)
1765 return NULL;
1766
1767 if (info->private->dying)
1768 return "Exiting";
1769
1770 return NULL;
1771 }
1772
1773 /* Get the address of the thread local variable in load module LM which
1774 is stored at OFFSET within the thread local storage for thread PTID. */
1775
1776 static CORE_ADDR
1777 thread_db_get_thread_local_address (struct target_ops *ops,
1778 ptid_t ptid,
1779 CORE_ADDR lm,
1780 CORE_ADDR offset)
1781 {
1782 struct thread_info *thread_info;
1783 struct target_ops *beneath;
1784
1785 /* If we have not discovered any threads yet, check now. */
1786 if (!have_threads (ptid))
1787 thread_db_find_new_threads_1 (ptid);
1788
1789 /* Find the matching thread. */
1790 thread_info = find_thread_ptid (ptid);
1791
1792 if (thread_info != NULL && thread_info->private != NULL)
1793 {
1794 td_err_e err;
1795 psaddr_t address;
1796 struct thread_db_info *info;
1797
1798 info = get_thread_db_info (GET_PID (ptid));
1799
1800 /* glibc doesn't provide the needed interface. */
1801 if (!info->td_thr_tls_get_addr_p)
1802 throw_error (TLS_NO_LIBRARY_SUPPORT_ERROR,
1803 _("No TLS library support"));
1804
1805 /* Caller should have verified that lm != 0. */
1806 gdb_assert (lm != 0);
1807
1808 /* Finally, get the address of the variable. */
1809 /* Note the cast through uintptr_t: this interface only works if
1810 a target address fits in a psaddr_t, which is a host pointer.
1811 So a 32-bit debugger can not access 64-bit TLS through this. */
1812 err = info->td_thr_tls_get_addr_p (&thread_info->private->th,
1813 (psaddr_t)(uintptr_t) lm,
1814 offset, &address);
1815
1816 #ifdef THREAD_DB_HAS_TD_NOTALLOC
1817 /* The memory hasn't been allocated, yet. */
1818 if (err == TD_NOTALLOC)
1819 /* Now, if libthread_db provided the initialization image's
1820 address, we *could* try to build a non-lvalue value from
1821 the initialization image. */
1822 throw_error (TLS_NOT_ALLOCATED_YET_ERROR,
1823 _("TLS not allocated yet"));
1824 #endif
1825
1826 /* Something else went wrong. */
1827 if (err != TD_OK)
1828 throw_error (TLS_GENERIC_ERROR,
1829 (("%s")), thread_db_err_str (err));
1830
1831 /* Cast assuming host == target. Joy. */
1832 /* Do proper sign extension for the target. */
1833 gdb_assert (exec_bfd);
1834 return (bfd_get_sign_extend_vma (exec_bfd) > 0
1835 ? (CORE_ADDR) (intptr_t) address
1836 : (CORE_ADDR) (uintptr_t) address);
1837 }
1838
1839 beneath = find_target_beneath (ops);
1840 if (beneath->to_get_thread_local_address)
1841 return beneath->to_get_thread_local_address (beneath, ptid, lm, offset);
1842 else
1843 throw_error (TLS_GENERIC_ERROR,
1844 _("TLS not supported on this target"));
1845 }
1846
1847 /* Callback routine used to find a thread based on the TID part of
1848 its PTID. */
1849
1850 static int
1851 thread_db_find_thread_from_tid (struct thread_info *thread, void *data)
1852 {
1853 long *tid = (long *) data;
1854
1855 if (thread->private->tid == *tid)
1856 return 1;
1857
1858 return 0;
1859 }
1860
1861 /* Implement the to_get_ada_task_ptid target method for this target. */
1862
1863 static ptid_t
1864 thread_db_get_ada_task_ptid (long lwp, long thread)
1865 {
1866 struct thread_info *thread_info;
1867
1868 thread_db_find_new_threads_1 (inferior_ptid);
1869 thread_info = iterate_over_threads (thread_db_find_thread_from_tid, &thread);
1870
1871 gdb_assert (thread_info != NULL);
1872
1873 return (thread_info->ptid);
1874 }
1875
1876 static void
1877 thread_db_resume (struct target_ops *ops,
1878 ptid_t ptid, int step, enum gdb_signal signo)
1879 {
1880 struct target_ops *beneath = find_target_beneath (ops);
1881 struct thread_db_info *info;
1882
1883 if (ptid_equal (ptid, minus_one_ptid))
1884 info = get_thread_db_info (GET_PID (inferior_ptid));
1885 else
1886 info = get_thread_db_info (GET_PID (ptid));
1887
1888 /* This workaround is only needed for child fork lwps stopped in a
1889 PTRACE_O_TRACEFORK event. When the inferior is resumed, the
1890 workaround can be disabled. */
1891 if (info)
1892 info->need_stale_parent_threads_check = 0;
1893
1894 beneath->to_resume (beneath, ptid, step, signo);
1895 }
1896
1897 /* qsort helper function for info_auto_load_libthread_db, sort the
1898 thread_db_info pointers primarily by their FILENAME and secondarily by their
1899 PID, both in ascending order. */
1900
1901 static int
1902 info_auto_load_libthread_db_compare (const void *ap, const void *bp)
1903 {
1904 struct thread_db_info *a = *(struct thread_db_info **) ap;
1905 struct thread_db_info *b = *(struct thread_db_info **) bp;
1906 int retval;
1907
1908 retval = strcmp (a->filename, b->filename);
1909 if (retval)
1910 return retval;
1911
1912 return (a->pid > b->pid) - (a->pid - b->pid);
1913 }
1914
1915 /* Implement 'info auto-load libthread-db'. */
1916
1917 static void
1918 info_auto_load_libthread_db (char *args, int from_tty)
1919 {
1920 struct ui_out *uiout = current_uiout;
1921 const char *cs = args ? args : "";
1922 struct thread_db_info *info, **array;
1923 unsigned info_count, unique_filenames;
1924 size_t max_filename_len, max_pids_len, pids_len;
1925 struct cleanup *back_to;
1926 char *pids;
1927 int i;
1928
1929 while (isspace (*cs))
1930 cs++;
1931 if (*cs)
1932 error (_("'info auto-load libthread-db' does not accept any parameters"));
1933
1934 info_count = 0;
1935 for (info = thread_db_list; info; info = info->next)
1936 if (info->filename != NULL)
1937 info_count++;
1938
1939 array = xmalloc (sizeof (*array) * info_count);
1940 back_to = make_cleanup (xfree, array);
1941
1942 info_count = 0;
1943 for (info = thread_db_list; info; info = info->next)
1944 if (info->filename != NULL)
1945 array[info_count++] = info;
1946
1947 /* Sort ARRAY by filenames and PIDs. */
1948
1949 qsort (array, info_count, sizeof (*array),
1950 info_auto_load_libthread_db_compare);
1951
1952 /* Calculate the number of unique filenames (rows) and the maximum string
1953 length of PIDs list for the unique filenames (columns). */
1954
1955 unique_filenames = 0;
1956 max_filename_len = 0;
1957 max_pids_len = 0;
1958 pids_len = 0;
1959 for (i = 0; i < info_count; i++)
1960 {
1961 int pid = array[i]->pid;
1962 size_t this_pid_len;
1963
1964 for (this_pid_len = 0; pid != 0; pid /= 10)
1965 this_pid_len++;
1966
1967 if (i == 0 || strcmp (array[i - 1]->filename, array[i]->filename) != 0)
1968 {
1969 unique_filenames++;
1970 max_filename_len = max (max_filename_len,
1971 strlen (array[i]->filename));
1972
1973 if (i > 0)
1974 {
1975 pids_len -= strlen (", ");
1976 max_pids_len = max (max_pids_len, pids_len);
1977 }
1978 pids_len = 0;
1979 }
1980 pids_len += this_pid_len + strlen (", ");
1981 }
1982 if (i)
1983 {
1984 pids_len -= strlen (", ");
1985 max_pids_len = max (max_pids_len, pids_len);
1986 }
1987
1988 /* Table header shifted right by preceding "libthread-db: " would not match
1989 its columns. */
1990 if (info_count > 0 && args == auto_load_info_scripts_pattern_nl)
1991 ui_out_text (uiout, "\n");
1992
1993 make_cleanup_ui_out_table_begin_end (uiout, 2, unique_filenames,
1994 "LinuxThreadDbTable");
1995
1996 ui_out_table_header (uiout, max_filename_len, ui_left, "filename",
1997 "Filename");
1998 ui_out_table_header (uiout, pids_len, ui_left, "PIDs", "Pids");
1999 ui_out_table_body (uiout);
2000
2001 pids = xmalloc (max_pids_len + 1);
2002 make_cleanup (xfree, pids);
2003
2004 /* Note I is incremented inside the cycle, not at its end. */
2005 for (i = 0; i < info_count;)
2006 {
2007 struct cleanup *chain = make_cleanup_ui_out_tuple_begin_end (uiout, NULL);
2008 char *pids_end;
2009
2010 info = array[i];
2011 ui_out_field_string (uiout, "filename", info->filename);
2012 pids_end = pids;
2013
2014 while (i < info_count && strcmp (info->filename, array[i]->filename) == 0)
2015 {
2016 if (pids_end != pids)
2017 {
2018 *pids_end++ = ',';
2019 *pids_end++ = ' ';
2020 }
2021 pids_end += xsnprintf (pids_end, &pids[max_pids_len + 1] - pids_end,
2022 "%u", array[i]->pid);
2023 gdb_assert (pids_end < &pids[max_pids_len + 1]);
2024
2025 i++;
2026 }
2027 *pids_end = '\0';
2028
2029 ui_out_field_string (uiout, "pids", pids);
2030
2031 ui_out_text (uiout, "\n");
2032 do_cleanups (chain);
2033 }
2034
2035 do_cleanups (back_to);
2036
2037 if (info_count == 0)
2038 ui_out_message (uiout, 0, _("No auto-loaded libthread-db.\n"));
2039 }
2040
2041 static void
2042 init_thread_db_ops (void)
2043 {
2044 thread_db_ops.to_shortname = "multi-thread";
2045 thread_db_ops.to_longname = "multi-threaded child process.";
2046 thread_db_ops.to_doc = "Threads and pthreads support.";
2047 thread_db_ops.to_detach = thread_db_detach;
2048 thread_db_ops.to_wait = thread_db_wait;
2049 thread_db_ops.to_resume = thread_db_resume;
2050 thread_db_ops.to_mourn_inferior = thread_db_mourn_inferior;
2051 thread_db_ops.to_find_new_threads = thread_db_find_new_threads;
2052 thread_db_ops.to_pid_to_str = thread_db_pid_to_str;
2053 thread_db_ops.to_stratum = thread_stratum;
2054 thread_db_ops.to_has_thread_control = tc_schedlock;
2055 thread_db_ops.to_get_thread_local_address
2056 = thread_db_get_thread_local_address;
2057 thread_db_ops.to_extra_thread_info = thread_db_extra_thread_info;
2058 thread_db_ops.to_get_ada_task_ptid = thread_db_get_ada_task_ptid;
2059 thread_db_ops.to_magic = OPS_MAGIC;
2060 }
2061
2062 /* Provide a prototype to silence -Wmissing-prototypes. */
2063 extern initialize_file_ftype _initialize_thread_db;
2064
2065 void
2066 _initialize_thread_db (void)
2067 {
2068 init_thread_db_ops ();
2069 add_target (&thread_db_ops);
2070
2071 /* Defer loading of libthread_db.so until inferior is running.
2072 This allows gdb to load correct libthread_db for a given
2073 executable -- there could be mutiple versions of glibc,
2074 compiled with LinuxThreads or NPTL, and until there is
2075 a running inferior, we can't tell which libthread_db is
2076 the correct one to load. */
2077
2078 libthread_db_search_path = xstrdup (LIBTHREAD_DB_SEARCH_PATH);
2079
2080 add_setshow_optional_filename_cmd ("libthread-db-search-path",
2081 class_support,
2082 &libthread_db_search_path, _("\
2083 Set search path for libthread_db."), _("\
2084 Show the current search path or libthread_db."), _("\
2085 This path is used to search for libthread_db to be loaded into \
2086 gdb itself.\n\
2087 Its value is a colon (':') separate list of directories to search.\n\
2088 Setting the search path to an empty list resets it to its default value."),
2089 set_libthread_db_search_path,
2090 NULL,
2091 &setlist, &showlist);
2092
2093 add_setshow_zuinteger_cmd ("libthread-db", class_maintenance,
2094 &libthread_db_debug, _("\
2095 Set libthread-db debugging."), _("\
2096 Show libthread-db debugging."), _("\
2097 When non-zero, libthread-db debugging is enabled."),
2098 NULL,
2099 show_libthread_db_debug,
2100 &setdebuglist, &showdebuglist);
2101
2102 add_setshow_boolean_cmd ("libthread-db", class_support,
2103 &auto_load_thread_db, _("\
2104 Enable or disable auto-loading of inferior specific libthread_db."), _("\
2105 Show whether auto-loading inferior specific libthread_db is enabled."), _("\
2106 If enabled, libthread_db will be searched in 'set libthread-db-search-path'\n\
2107 locations to load libthread_db compatible with the inferior.\n\
2108 Standard system libthread_db still gets loaded even with this option off.\n\
2109 This options has security implications for untrusted inferiors."),
2110 NULL, show_auto_load_thread_db,
2111 auto_load_set_cmdlist_get (),
2112 auto_load_show_cmdlist_get ());
2113
2114 add_cmd ("libthread-db", class_info, info_auto_load_libthread_db,
2115 _("Print the list of loaded inferior specific libthread_db.\n\
2116 Usage: info auto-load libthread-db"),
2117 auto_load_info_cmdlist_get ());
2118
2119 /* Add ourselves to objfile event chain. */
2120 observer_attach_new_objfile (thread_db_new_objfile);
2121
2122 /* Add ourselves to inferior_created event chain.
2123 This is needed to handle debugging statically linked programs where
2124 the new_objfile observer won't get called for libpthread. */
2125 observer_attach_inferior_created (thread_db_inferior_created);
2126 }
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