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1 /* libthread_db assisted debugging support, generic parts.
2
3 Copyright (C) 1999, 2000, 2001, 2003, 2004, 2005, 2006, 2007, 2008
4 Free Software Foundation, Inc.
5
6 This file is part of GDB.
7
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3 of the License, or
11 (at your option) any later version.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with this program. If not, see <http://www.gnu.org/licenses/>. */
20
21 #include "defs.h"
22
23 #include "gdb_assert.h"
24 #include <dlfcn.h>
25 #include "gdb_proc_service.h"
26 #include "gdb_thread_db.h"
27
28 #include "bfd.h"
29 #include "exceptions.h"
30 #include "gdbthread.h"
31 #include "inferior.h"
32 #include "symfile.h"
33 #include "objfiles.h"
34 #include "target.h"
35 #include "regcache.h"
36 #include "solib-svr4.h"
37 #include "gdbcore.h"
38 #include "observer.h"
39 #include "linux-nat.h"
40
41 #include <signal.h>
42
43 #ifdef HAVE_GNU_LIBC_VERSION_H
44 #include <gnu/libc-version.h>
45 #endif
46
47 #ifndef LIBTHREAD_DB_SO
48 #define LIBTHREAD_DB_SO "libthread_db.so.1"
49 #endif
50
51 /* GNU/Linux libthread_db support.
52
53 libthread_db is a library, provided along with libpthread.so, which
54 exposes the internals of the thread library to a debugger. It
55 allows GDB to find existing threads, new threads as they are
56 created, thread IDs (usually, the result of pthread_self), and
57 thread-local variables.
58
59 The libthread_db interface originates on Solaris, where it is
60 both more powerful and more complicated. This implementation
61 only works for LinuxThreads and NPTL, the two glibc threading
62 libraries. It assumes that each thread is permanently assigned
63 to a single light-weight process (LWP).
64
65 libthread_db-specific information is stored in the "private" field
66 of struct thread_info. When the field is NULL we do not yet have
67 information about the new thread; this could be temporary (created,
68 but the thread library's data structures do not reflect it yet)
69 or permanent (created using clone instead of pthread_create).
70
71 Process IDs managed by linux-thread-db.c match those used by
72 linux-nat.c: a common PID for all processes, an LWP ID for each
73 thread, and no TID. We save the TID in private. Keeping it out
74 of the ptid_t prevents thread IDs changing when libpthread is
75 loaded or unloaded. */
76
77 /* If we're running on GNU/Linux, we must explicitly attach to any new
78 threads. */
79
80 /* This module's target vector. */
81 static struct target_ops thread_db_ops;
82
83 /* The target vector that we call for things this module can't handle. */
84 static struct target_ops *target_beneath;
85
86 /* Non-zero if we're using this module's target vector. */
87 static int using_thread_db;
88
89 /* Non-zero if we have determined the signals used by the threads
90 library. */
91 static int thread_signals;
92 static sigset_t thread_stop_set;
93 static sigset_t thread_print_set;
94
95 /* Structure that identifies the child process for the
96 <proc_service.h> interface. */
97 static struct ps_prochandle proc_handle;
98
99 /* Connection to the libthread_db library. */
100 static td_thragent_t *thread_agent;
101
102 /* Pointers to the libthread_db functions. */
103
104 static td_err_e (*td_init_p) (void);
105
106 static td_err_e (*td_ta_new_p) (struct ps_prochandle * ps,
107 td_thragent_t **ta);
108 static td_err_e (*td_ta_map_id2thr_p) (const td_thragent_t *ta, thread_t pt,
109 td_thrhandle_t *__th);
110 static td_err_e (*td_ta_map_lwp2thr_p) (const td_thragent_t *ta,
111 lwpid_t lwpid, td_thrhandle_t *th);
112 static td_err_e (*td_ta_thr_iter_p) (const td_thragent_t *ta,
113 td_thr_iter_f *callback, void *cbdata_p,
114 td_thr_state_e state, int ti_pri,
115 sigset_t *ti_sigmask_p,
116 unsigned int ti_user_flags);
117 static td_err_e (*td_ta_event_addr_p) (const td_thragent_t *ta,
118 td_event_e event, td_notify_t *ptr);
119 static td_err_e (*td_ta_set_event_p) (const td_thragent_t *ta,
120 td_thr_events_t *event);
121 static td_err_e (*td_ta_event_getmsg_p) (const td_thragent_t *ta,
122 td_event_msg_t *msg);
123
124 static td_err_e (*td_thr_validate_p) (const td_thrhandle_t *th);
125 static td_err_e (*td_thr_get_info_p) (const td_thrhandle_t *th,
126 td_thrinfo_t *infop);
127 static td_err_e (*td_thr_event_enable_p) (const td_thrhandle_t *th,
128 int event);
129
130 static td_err_e (*td_thr_tls_get_addr_p) (const td_thrhandle_t *th,
131 void *map_address,
132 size_t offset, void **address);
133
134 /* Location of the thread creation event breakpoint. The code at this
135 location in the child process will be called by the pthread library
136 whenever a new thread is created. By setting a special breakpoint
137 at this location, GDB can detect when a new thread is created. We
138 obtain this location via the td_ta_event_addr call. */
139 static CORE_ADDR td_create_bp_addr;
140
141 /* Location of the thread death event breakpoint. */
142 static CORE_ADDR td_death_bp_addr;
143
144 /* Prototypes for local functions. */
145 static void thread_db_find_new_threads (void);
146 static void attach_thread (ptid_t ptid, const td_thrhandle_t *th_p,
147 const td_thrinfo_t *ti_p);
148 static void detach_thread (ptid_t ptid);
149 \f
150
151 /* Use "struct private_thread_info" to cache thread state. This is
152 a substantial optimization. */
153
154 struct private_thread_info
155 {
156 /* Flag set when we see a TD_DEATH event for this thread. */
157 unsigned int dying:1;
158
159 /* Cached thread state. */
160 td_thrhandle_t th;
161 thread_t tid;
162 };
163 \f
164
165 static char *
166 thread_db_err_str (td_err_e err)
167 {
168 static char buf[64];
169
170 switch (err)
171 {
172 case TD_OK:
173 return "generic 'call succeeded'";
174 case TD_ERR:
175 return "generic error";
176 case TD_NOTHR:
177 return "no thread to satisfy query";
178 case TD_NOSV:
179 return "no sync handle to satisfy query";
180 case TD_NOLWP:
181 return "no LWP to satisfy query";
182 case TD_BADPH:
183 return "invalid process handle";
184 case TD_BADTH:
185 return "invalid thread handle";
186 case TD_BADSH:
187 return "invalid synchronization handle";
188 case TD_BADTA:
189 return "invalid thread agent";
190 case TD_BADKEY:
191 return "invalid key";
192 case TD_NOMSG:
193 return "no event message for getmsg";
194 case TD_NOFPREGS:
195 return "FPU register set not available";
196 case TD_NOLIBTHREAD:
197 return "application not linked with libthread";
198 case TD_NOEVENT:
199 return "requested event is not supported";
200 case TD_NOCAPAB:
201 return "capability not available";
202 case TD_DBERR:
203 return "debugger service failed";
204 case TD_NOAPLIC:
205 return "operation not applicable to";
206 case TD_NOTSD:
207 return "no thread-specific data for this thread";
208 case TD_MALLOC:
209 return "malloc failed";
210 case TD_PARTIALREG:
211 return "only part of register set was written/read";
212 case TD_NOXREGS:
213 return "X register set not available for this thread";
214 #ifdef THREAD_DB_HAS_TD_NOTALLOC
215 case TD_NOTALLOC:
216 return "thread has not yet allocated TLS for given module";
217 #endif
218 #ifdef THREAD_DB_HAS_TD_VERSION
219 case TD_VERSION:
220 return "versions of libpthread and libthread_db do not match";
221 #endif
222 #ifdef THREAD_DB_HAS_TD_NOTLS
223 case TD_NOTLS:
224 return "there is no TLS segment in the given module";
225 #endif
226 default:
227 snprintf (buf, sizeof (buf), "unknown thread_db error '%d'", err);
228 return buf;
229 }
230 }
231 \f
232 /* Return 1 if any threads have been registered. There may be none if
233 the threading library is not fully initialized yet. */
234
235 static int
236 have_threads_callback (struct thread_info *thread, void *dummy)
237 {
238 return thread->private != NULL;
239 }
240
241 static int
242 have_threads (void)
243 {
244 return iterate_over_threads (have_threads_callback, NULL) != NULL;
245 }
246
247 /* A callback function for td_ta_thr_iter, which we use to map all
248 threads to LWPs.
249
250 THP is a handle to the current thread; if INFOP is not NULL, the
251 struct thread_info associated with this thread is returned in
252 *INFOP.
253
254 If the thread is a zombie, TD_THR_ZOMBIE is returned. Otherwise,
255 zero is returned to indicate success. */
256
257 static int
258 thread_get_info_callback (const td_thrhandle_t *thp, void *infop)
259 {
260 td_thrinfo_t ti;
261 td_err_e err;
262 struct thread_info *thread_info;
263 ptid_t thread_ptid;
264
265 err = td_thr_get_info_p (thp, &ti);
266 if (err != TD_OK)
267 error (_("thread_get_info_callback: cannot get thread info: %s"),
268 thread_db_err_str (err));
269
270 /* Fill the cache. */
271 thread_ptid = ptid_build (GET_PID (inferior_ptid), ti.ti_lid, 0);
272 thread_info = find_thread_pid (thread_ptid);
273
274 /* In the case of a zombie thread, don't continue. We don't want to
275 attach to it thinking it is a new thread. */
276 if (ti.ti_state == TD_THR_UNKNOWN || ti.ti_state == TD_THR_ZOMBIE)
277 {
278 if (infop != NULL)
279 *(struct thread_info **) infop = thread_info;
280 return TD_THR_ZOMBIE;
281 }
282
283 if (thread_info == NULL)
284 {
285 /* New thread. Attach to it now (why wait?). */
286 if (!have_threads ())
287 thread_db_find_new_threads ();
288 else
289 attach_thread (thread_ptid, thp, &ti);
290 thread_info = find_thread_pid (thread_ptid);
291 gdb_assert (thread_info != NULL);
292 }
293
294 if (infop != NULL)
295 *(struct thread_info **) infop = thread_info;
296
297 return 0;
298 }
299 \f
300 /* Convert between user-level thread ids and LWP ids. */
301
302 static ptid_t
303 thread_from_lwp (ptid_t ptid)
304 {
305 td_thrhandle_t th;
306 td_err_e err;
307 struct thread_info *thread_info;
308 ptid_t thread_ptid;
309
310 /* This ptid comes from linux-nat.c, which should always fill in the
311 LWP. */
312 gdb_assert (GET_LWP (ptid) != 0);
313
314 /* Access an lwp we know is stopped. */
315 proc_handle.pid = GET_LWP (ptid);
316 err = td_ta_map_lwp2thr_p (thread_agent, GET_LWP (ptid), &th);
317 if (err != TD_OK)
318 error (_("Cannot find user-level thread for LWP %ld: %s"),
319 GET_LWP (ptid), thread_db_err_str (err));
320
321 thread_info = NULL;
322
323 /* Fetch the thread info. If we get back TD_THR_ZOMBIE, then the
324 event thread has already died. If another gdb interface has called
325 thread_alive() previously, the thread won't be found on the thread list
326 anymore. In that case, we don't want to process this ptid anymore
327 to avoid the possibility of later treating it as a newly
328 discovered thread id that we should add to the list. Thus,
329 we return a -1 ptid which is also how the thread list marks a
330 dead thread. */
331 if (thread_get_info_callback (&th, &thread_info) == TD_THR_ZOMBIE
332 && thread_info == NULL)
333 return pid_to_ptid (-1);
334
335 gdb_assert (ptid_get_tid (ptid) == 0);
336 return ptid;
337 }
338 \f
339
340 /* Attach to lwp PTID, doing whatever else is required to have this
341 LWP under the debugger's control --- e.g., enabling event
342 reporting. Returns true on success. */
343 int
344 thread_db_attach_lwp (ptid_t ptid)
345 {
346 td_thrhandle_t th;
347 td_thrinfo_t ti;
348 td_err_e err;
349
350 if (!using_thread_db)
351 return 0;
352
353 /* This ptid comes from linux-nat.c, which should always fill in the
354 LWP. */
355 gdb_assert (GET_LWP (ptid) != 0);
356
357 /* Access an lwp we know is stopped. */
358 proc_handle.pid = GET_LWP (ptid);
359
360 /* If we have only looked at the first thread before libpthread was
361 initialized, we may not know its thread ID yet. Make sure we do
362 before we add another thread to the list. */
363 if (!have_threads ())
364 thread_db_find_new_threads ();
365
366 err = td_ta_map_lwp2thr_p (thread_agent, GET_LWP (ptid), &th);
367 if (err != TD_OK)
368 /* Cannot find user-level thread. */
369 return 0;
370
371 err = td_thr_get_info_p (&th, &ti);
372 if (err != TD_OK)
373 {
374 warning (_("Cannot get thread info: %s"), thread_db_err_str (err));
375 return 0;
376 }
377
378 attach_thread (ptid, &th, &ti);
379 return 1;
380 }
381
382 void
383 thread_db_init (struct target_ops *target)
384 {
385 target_beneath = target;
386 }
387
388 static void *
389 verbose_dlsym (void *handle, const char *name)
390 {
391 void *sym = dlsym (handle, name);
392 if (sym == NULL)
393 warning (_("Symbol \"%s\" not found in libthread_db: %s"), name, dlerror ());
394 return sym;
395 }
396
397 static int
398 thread_db_load (void)
399 {
400 void *handle;
401 td_err_e err;
402
403 handle = dlopen (LIBTHREAD_DB_SO, RTLD_NOW);
404 if (handle == NULL)
405 {
406 fprintf_filtered (gdb_stderr, "\n\ndlopen failed on '%s' - %s\n",
407 LIBTHREAD_DB_SO, dlerror ());
408 fprintf_filtered (gdb_stderr,
409 "GDB will not be able to debug pthreads.\n\n");
410 return 0;
411 }
412
413 /* Initialize pointers to the dynamic library functions we will use.
414 Essential functions first. */
415
416 td_init_p = verbose_dlsym (handle, "td_init");
417 if (td_init_p == NULL)
418 return 0;
419
420 td_ta_new_p = verbose_dlsym (handle, "td_ta_new");
421 if (td_ta_new_p == NULL)
422 return 0;
423
424 td_ta_map_id2thr_p = verbose_dlsym (handle, "td_ta_map_id2thr");
425 if (td_ta_map_id2thr_p == NULL)
426 return 0;
427
428 td_ta_map_lwp2thr_p = verbose_dlsym (handle, "td_ta_map_lwp2thr");
429 if (td_ta_map_lwp2thr_p == NULL)
430 return 0;
431
432 td_ta_thr_iter_p = verbose_dlsym (handle, "td_ta_thr_iter");
433 if (td_ta_thr_iter_p == NULL)
434 return 0;
435
436 td_thr_validate_p = verbose_dlsym (handle, "td_thr_validate");
437 if (td_thr_validate_p == NULL)
438 return 0;
439
440 td_thr_get_info_p = verbose_dlsym (handle, "td_thr_get_info");
441 if (td_thr_get_info_p == NULL)
442 return 0;
443
444 /* Initialize the library. */
445 err = td_init_p ();
446 if (err != TD_OK)
447 {
448 warning (_("Cannot initialize libthread_db: %s"), thread_db_err_str (err));
449 return 0;
450 }
451
452 /* These are not essential. */
453 td_ta_event_addr_p = dlsym (handle, "td_ta_event_addr");
454 td_ta_set_event_p = dlsym (handle, "td_ta_set_event");
455 td_ta_event_getmsg_p = dlsym (handle, "td_ta_event_getmsg");
456 td_thr_event_enable_p = dlsym (handle, "td_thr_event_enable");
457 td_thr_tls_get_addr_p = dlsym (handle, "td_thr_tls_get_addr");
458
459 return 1;
460 }
461
462 static td_err_e
463 enable_thread_event (td_thragent_t *thread_agent, int event, CORE_ADDR *bp)
464 {
465 td_notify_t notify;
466 td_err_e err;
467
468 /* Access an lwp we know is stopped. */
469 proc_handle.pid = GET_LWP (inferior_ptid);
470
471 /* Get the breakpoint address for thread EVENT. */
472 err = td_ta_event_addr_p (thread_agent, event, &notify);
473 if (err != TD_OK)
474 return err;
475
476 /* Set up the breakpoint. */
477 gdb_assert (exec_bfd);
478 (*bp) = (gdbarch_convert_from_func_ptr_addr
479 (current_gdbarch,
480 /* Do proper sign extension for the target. */
481 (bfd_get_sign_extend_vma (exec_bfd) > 0
482 ? (CORE_ADDR) (intptr_t) notify.u.bptaddr
483 : (CORE_ADDR) (uintptr_t) notify.u.bptaddr),
484 &current_target));
485 create_thread_event_breakpoint ((*bp));
486
487 return TD_OK;
488 }
489
490 static void
491 enable_thread_event_reporting (void)
492 {
493 td_thr_events_t events;
494 td_notify_t notify;
495 td_err_e err;
496 #ifdef HAVE_GNU_LIBC_VERSION_H
497 const char *libc_version;
498 int libc_major, libc_minor;
499 #endif
500
501 /* We cannot use the thread event reporting facility if these
502 functions aren't available. */
503 if (td_ta_event_addr_p == NULL || td_ta_set_event_p == NULL
504 || td_ta_event_getmsg_p == NULL || td_thr_event_enable_p == NULL)
505 return;
506
507 /* Set the process wide mask saying which events we're interested in. */
508 td_event_emptyset (&events);
509 td_event_addset (&events, TD_CREATE);
510
511 #ifdef HAVE_GNU_LIBC_VERSION_H
512 /* The event reporting facility is broken for TD_DEATH events in
513 glibc 2.1.3, so don't enable it if we have glibc but a lower
514 version. */
515 libc_version = gnu_get_libc_version ();
516 if (sscanf (libc_version, "%d.%d", &libc_major, &libc_minor) == 2
517 && (libc_major > 2 || (libc_major == 2 && libc_minor > 1)))
518 #endif
519 td_event_addset (&events, TD_DEATH);
520
521 err = td_ta_set_event_p (thread_agent, &events);
522 if (err != TD_OK)
523 {
524 warning (_("Unable to set global thread event mask: %s"),
525 thread_db_err_str (err));
526 return;
527 }
528
529 /* Delete previous thread event breakpoints, if any. */
530 remove_thread_event_breakpoints ();
531 td_create_bp_addr = 0;
532 td_death_bp_addr = 0;
533
534 /* Set up the thread creation event. */
535 err = enable_thread_event (thread_agent, TD_CREATE, &td_create_bp_addr);
536 if (err != TD_OK)
537 {
538 warning (_("Unable to get location for thread creation breakpoint: %s"),
539 thread_db_err_str (err));
540 return;
541 }
542
543 /* Set up the thread death event. */
544 err = enable_thread_event (thread_agent, TD_DEATH, &td_death_bp_addr);
545 if (err != TD_OK)
546 {
547 warning (_("Unable to get location for thread death breakpoint: %s"),
548 thread_db_err_str (err));
549 return;
550 }
551 }
552
553 static void
554 disable_thread_event_reporting (void)
555 {
556 td_thr_events_t events;
557
558 /* Set the process wide mask saying we aren't interested in any
559 events anymore. */
560 td_event_emptyset (&events);
561 td_ta_set_event_p (thread_agent, &events);
562
563 /* Delete thread event breakpoints, if any. */
564 remove_thread_event_breakpoints ();
565 td_create_bp_addr = 0;
566 td_death_bp_addr = 0;
567 }
568
569 static void
570 check_thread_signals (void)
571 {
572 #ifdef GET_THREAD_SIGNALS
573 if (!thread_signals)
574 {
575 sigset_t mask;
576 int i;
577
578 GET_THREAD_SIGNALS (&mask);
579 sigemptyset (&thread_stop_set);
580 sigemptyset (&thread_print_set);
581
582 for (i = 1; i < NSIG; i++)
583 {
584 if (sigismember (&mask, i))
585 {
586 if (signal_stop_update (target_signal_from_host (i), 0))
587 sigaddset (&thread_stop_set, i);
588 if (signal_print_update (target_signal_from_host (i), 0))
589 sigaddset (&thread_print_set, i);
590 thread_signals = 1;
591 }
592 }
593 }
594 #endif
595 }
596
597 /* Check whether thread_db is usable. This function is called when
598 an inferior is created (or otherwise acquired, e.g. attached to)
599 and when new shared libraries are loaded into a running process. */
600
601 void
602 check_for_thread_db (void)
603 {
604 td_err_e err;
605 static int already_loaded;
606
607 /* Do nothing if we couldn't load libthread_db.so.1. */
608 if (td_ta_new_p == NULL)
609 return;
610
611 /* First time through, report that libthread_db was successfuly
612 loaded. Can't print this in in thread_db_load as, at that stage,
613 the interpreter and it's console haven't started. */
614
615 if (!already_loaded)
616 {
617 Dl_info info;
618 const char *library = NULL;
619 if (dladdr ((*td_ta_new_p), &info) != 0)
620 library = info.dli_fname;
621
622 /* Try dlinfo? */
623
624 if (library == NULL)
625 /* Paranoid - don't let a NULL path slip through. */
626 library = LIBTHREAD_DB_SO;
627
628 if (info_verbose)
629 printf_unfiltered (_("Using host libthread_db library \"%s\".\n"),
630 library);
631 already_loaded = 1;
632 }
633
634 if (using_thread_db)
635 /* Nothing to do. The thread library was already detected and the
636 target vector was already activated. */
637 return;
638
639 /* Don't attempt to use thread_db on targets which can not run
640 (executables not running yet, core files) for now. */
641 if (!target_has_execution)
642 return;
643
644 /* Don't attempt to use thread_db for remote targets. */
645 if (!target_can_run (&current_target))
646 return;
647
648 /* Initialize the structure that identifies the child process. */
649 proc_handle.pid = GET_PID (inferior_ptid);
650
651 /* Now attempt to open a connection to the thread library. */
652 err = td_ta_new_p (&proc_handle, &thread_agent);
653 switch (err)
654 {
655 case TD_NOLIBTHREAD:
656 /* No thread library was detected. */
657 break;
658
659 case TD_OK:
660 printf_unfiltered (_("[Thread debugging using libthread_db enabled]\n"));
661
662 /* The thread library was detected. Activate the thread_db target. */
663 push_target (&thread_db_ops);
664 using_thread_db = 1;
665
666 enable_thread_event_reporting ();
667 thread_db_find_new_threads ();
668 break;
669
670 default:
671 warning (_("Cannot initialize thread debugging library: %s"),
672 thread_db_err_str (err));
673 break;
674 }
675 }
676
677 static void
678 thread_db_new_objfile (struct objfile *objfile)
679 {
680 if (objfile != NULL)
681 check_for_thread_db ();
682 }
683
684 /* Attach to a new thread. This function is called when we receive a
685 TD_CREATE event or when we iterate over all threads and find one
686 that wasn't already in our list. */
687
688 static void
689 attach_thread (ptid_t ptid, const td_thrhandle_t *th_p,
690 const td_thrinfo_t *ti_p)
691 {
692 struct private_thread_info *private;
693 struct thread_info *tp = NULL;
694 td_err_e err;
695
696 /* If we're being called after a TD_CREATE event, we may already
697 know about this thread. There are two ways this can happen. We
698 may have iterated over all threads between the thread creation
699 and the TD_CREATE event, for instance when the user has issued
700 the `info threads' command before the SIGTRAP for hitting the
701 thread creation breakpoint was reported. Alternatively, the
702 thread may have exited and a new one been created with the same
703 thread ID. In the first case we don't need to do anything; in
704 the second case we should discard information about the dead
705 thread and attach to the new one. */
706 if (in_thread_list (ptid))
707 {
708 tp = find_thread_pid (ptid);
709 gdb_assert (tp != NULL);
710
711 /* If tp->private is NULL, then GDB is already attached to this
712 thread, but we do not know anything about it. We can learn
713 about it here. This can only happen if we have some other
714 way besides libthread_db to notice new threads (i.e.
715 PTRACE_EVENT_CLONE); assume the same mechanism notices thread
716 exit, so this can not be a stale thread recreated with the
717 same ID. */
718 if (tp->private != NULL)
719 {
720 if (!tp->private->dying)
721 return;
722
723 delete_thread (ptid);
724 tp = NULL;
725 }
726 }
727
728 check_thread_signals ();
729
730 if (ti_p->ti_state == TD_THR_UNKNOWN || ti_p->ti_state == TD_THR_ZOMBIE)
731 return; /* A zombie thread -- do not attach. */
732
733 /* Under GNU/Linux, we have to attach to each and every thread. */
734 if (tp == NULL
735 && lin_lwp_attach_lwp (BUILD_LWP (ti_p->ti_lid, GET_PID (ptid))) < 0)
736 return;
737
738 /* Construct the thread's private data. */
739 private = xmalloc (sizeof (struct private_thread_info));
740 memset (private, 0, sizeof (struct private_thread_info));
741
742 /* A thread ID of zero may mean the thread library has not initialized
743 yet. But we shouldn't even get here if that's the case. FIXME:
744 if we change GDB to always have at least one thread in the thread
745 list this will have to go somewhere else; maybe private == NULL
746 until the thread_db target claims it. */
747 gdb_assert (ti_p->ti_tid != 0);
748 private->th = *th_p;
749 private->tid = ti_p->ti_tid;
750
751 /* Add the thread to GDB's thread list. */
752 if (tp == NULL)
753 tp = add_thread_with_info (ptid, private);
754 else
755 tp->private = private;
756
757 /* Enable thread event reporting for this thread. */
758 err = td_thr_event_enable_p (th_p, 1);
759 if (err != TD_OK)
760 error (_("Cannot enable thread event reporting for %s: %s"),
761 target_pid_to_str (ptid), thread_db_err_str (err));
762 }
763
764 static void
765 detach_thread (ptid_t ptid)
766 {
767 struct thread_info *thread_info;
768
769 /* Don't delete the thread now, because it still reports as active
770 until it has executed a few instructions after the event
771 breakpoint - if we deleted it now, "info threads" would cause us
772 to re-attach to it. Just mark it as having had a TD_DEATH
773 event. This means that we won't delete it from our thread list
774 until we notice that it's dead (via prune_threads), or until
775 something re-uses its thread ID. We'll report the thread exit
776 when the underlying LWP dies. */
777 thread_info = find_thread_pid (ptid);
778 gdb_assert (thread_info != NULL && thread_info->private != NULL);
779 thread_info->private->dying = 1;
780 }
781
782 static void
783 thread_db_detach (struct target_ops *ops, char *args, int from_tty)
784 {
785 disable_thread_event_reporting ();
786
787 target_beneath->to_detach (target_beneath, args, from_tty);
788
789 /* Should this be done by detach_command? */
790 target_mourn_inferior ();
791 }
792
793 /* Check if PID is currently stopped at the location of a thread event
794 breakpoint location. If it is, read the event message and act upon
795 the event. */
796
797 static void
798 check_event (ptid_t ptid)
799 {
800 struct regcache *regcache = get_thread_regcache (ptid);
801 struct gdbarch *gdbarch = get_regcache_arch (regcache);
802 td_event_msg_t msg;
803 td_thrinfo_t ti;
804 td_err_e err;
805 CORE_ADDR stop_pc;
806 int loop = 0;
807
808 /* Bail out early if we're not at a thread event breakpoint. */
809 stop_pc = regcache_read_pc (regcache)
810 - gdbarch_decr_pc_after_break (gdbarch);
811 if (stop_pc != td_create_bp_addr && stop_pc != td_death_bp_addr)
812 return;
813
814 /* Access an lwp we know is stopped. */
815 proc_handle.pid = GET_LWP (ptid);
816
817 /* If we have only looked at the first thread before libpthread was
818 initialized, we may not know its thread ID yet. Make sure we do
819 before we add another thread to the list. */
820 if (!have_threads ())
821 thread_db_find_new_threads ();
822
823 /* If we are at a create breakpoint, we do not know what new lwp
824 was created and cannot specifically locate the event message for it.
825 We have to call td_ta_event_getmsg() to get
826 the latest message. Since we have no way of correlating whether
827 the event message we get back corresponds to our breakpoint, we must
828 loop and read all event messages, processing them appropriately.
829 This guarantees we will process the correct message before continuing
830 from the breakpoint.
831
832 Currently, death events are not enabled. If they are enabled,
833 the death event can use the td_thr_event_getmsg() interface to
834 get the message specifically for that lwp and avoid looping
835 below. */
836
837 loop = 1;
838
839 do
840 {
841 err = td_ta_event_getmsg_p (thread_agent, &msg);
842 if (err != TD_OK)
843 {
844 if (err == TD_NOMSG)
845 return;
846
847 error (_("Cannot get thread event message: %s"),
848 thread_db_err_str (err));
849 }
850
851 err = td_thr_get_info_p (msg.th_p, &ti);
852 if (err != TD_OK)
853 error (_("Cannot get thread info: %s"), thread_db_err_str (err));
854
855 ptid = ptid_build (GET_PID (ptid), ti.ti_lid, 0);
856
857 switch (msg.event)
858 {
859 case TD_CREATE:
860 /* Call attach_thread whether or not we already know about a
861 thread with this thread ID. */
862 attach_thread (ptid, msg.th_p, &ti);
863
864 break;
865
866 case TD_DEATH:
867
868 if (!in_thread_list (ptid))
869 error (_("Spurious thread death event."));
870
871 detach_thread (ptid);
872
873 break;
874
875 default:
876 error (_("Spurious thread event."));
877 }
878 }
879 while (loop);
880 }
881
882 static ptid_t
883 thread_db_wait (ptid_t ptid, struct target_waitstatus *ourstatus)
884 {
885 ptid = target_beneath->to_wait (ptid, ourstatus);
886
887 if (ourstatus->kind == TARGET_WAITKIND_IGNORE)
888 return ptid;
889
890 if (ourstatus->kind == TARGET_WAITKIND_EXITED
891 || ourstatus->kind == TARGET_WAITKIND_SIGNALLED)
892 return ptid;
893
894 if (ourstatus->kind == TARGET_WAITKIND_EXECD)
895 {
896 remove_thread_event_breakpoints ();
897 unpush_target (&thread_db_ops);
898 using_thread_db = 0;
899
900 return ptid;
901 }
902
903 /* If we do not know about the main thread yet, this would be a good time to
904 find it. */
905 if (ourstatus->kind == TARGET_WAITKIND_STOPPED && !have_threads ())
906 thread_db_find_new_threads ();
907
908 if (ourstatus->kind == TARGET_WAITKIND_STOPPED
909 && ourstatus->value.sig == TARGET_SIGNAL_TRAP)
910 /* Check for a thread event. */
911 check_event (ptid);
912
913 if (have_threads ())
914 {
915 /* Change ptids back into the higher level PID + TID format. If
916 the thread is dead and no longer on the thread list, we will
917 get back a dead ptid. This can occur if the thread death
918 event gets postponed by other simultaneous events. In such a
919 case, we want to just ignore the event and continue on. */
920
921 ptid = thread_from_lwp (ptid);
922 if (GET_PID (ptid) == -1)
923 ourstatus->kind = TARGET_WAITKIND_SPURIOUS;
924 }
925
926 return ptid;
927 }
928
929 static void
930 thread_db_mourn_inferior (struct target_ops *ops)
931 {
932 /* Forget about the child's process ID. We shouldn't need it
933 anymore. */
934 proc_handle.pid = 0;
935
936 target_beneath->to_mourn_inferior (target_beneath);
937
938 /* Delete the old thread event breakpoints. Do this after mourning
939 the inferior, so that we don't try to uninsert them. */
940 remove_thread_event_breakpoints ();
941
942 /* Detach thread_db target ops. */
943 unpush_target (ops);
944 using_thread_db = 0;
945 }
946
947 static int
948 thread_db_can_async_p (void)
949 {
950 return target_beneath->to_can_async_p ();
951 }
952
953 static int
954 thread_db_is_async_p (void)
955 {
956 return target_beneath->to_is_async_p ();
957 }
958
959 static void
960 thread_db_async (void (*callback) (enum inferior_event_type event_type,
961 void *context), void *context)
962 {
963 return target_beneath->to_async (callback, context);
964 }
965
966 static int
967 thread_db_async_mask (int mask)
968 {
969 return target_beneath->to_async_mask (mask);
970 }
971
972 static int
973 find_new_threads_callback (const td_thrhandle_t *th_p, void *data)
974 {
975 td_thrinfo_t ti;
976 td_err_e err;
977 ptid_t ptid;
978 struct thread_info *tp;
979
980 err = td_thr_get_info_p (th_p, &ti);
981 if (err != TD_OK)
982 error (_("find_new_threads_callback: cannot get thread info: %s"),
983 thread_db_err_str (err));
984
985 if (ti.ti_state == TD_THR_UNKNOWN || ti.ti_state == TD_THR_ZOMBIE)
986 return 0; /* A zombie -- ignore. */
987
988 ptid = ptid_build (GET_PID (inferior_ptid), ti.ti_lid, 0);
989
990 if (ti.ti_tid == 0)
991 {
992 /* A thread ID of zero means that this is the main thread, but
993 glibc has not yet initialized thread-local storage and the
994 pthread library. We do not know what the thread's TID will
995 be yet. Just enable event reporting and otherwise ignore
996 it. */
997
998 err = td_thr_event_enable_p (th_p, 1);
999 if (err != TD_OK)
1000 error (_("Cannot enable thread event reporting for %s: %s"),
1001 target_pid_to_str (ptid), thread_db_err_str (err));
1002
1003 return 0;
1004 }
1005
1006 tp = find_thread_pid (ptid);
1007 if (tp == NULL || tp->private == NULL)
1008 attach_thread (ptid, th_p, &ti);
1009
1010 return 0;
1011 }
1012
1013 /* Search for new threads, accessing memory through stopped thread
1014 PTID. */
1015
1016 static void
1017 thread_db_find_new_threads (void)
1018 {
1019 td_err_e err;
1020 struct lwp_info *lp;
1021 ptid_t ptid;
1022
1023 /* In linux, we can only read memory through a stopped lwp. */
1024 ALL_LWPS (lp, ptid)
1025 if (lp->stopped)
1026 break;
1027
1028 if (!lp)
1029 /* There is no stopped thread. Bail out. */
1030 return;
1031
1032 /* Access an lwp we know is stopped. */
1033 proc_handle.pid = GET_LWP (ptid);
1034 /* Iterate over all user-space threads to discover new threads. */
1035 err = td_ta_thr_iter_p (thread_agent, find_new_threads_callback, NULL,
1036 TD_THR_ANY_STATE, TD_THR_LOWEST_PRIORITY,
1037 TD_SIGNO_MASK, TD_THR_ANY_USER_FLAGS);
1038 if (err != TD_OK)
1039 error (_("Cannot find new threads: %s"), thread_db_err_str (err));
1040 }
1041
1042 static char *
1043 thread_db_pid_to_str (ptid_t ptid)
1044 {
1045 struct thread_info *thread_info = find_thread_pid (ptid);
1046
1047 if (thread_info != NULL && thread_info->private != NULL)
1048 {
1049 static char buf[64];
1050 thread_t tid;
1051
1052 tid = thread_info->private->tid;
1053 thread_info = find_thread_pid (ptid);
1054 snprintf (buf, sizeof (buf), "Thread 0x%lx (LWP %ld)",
1055 tid, GET_LWP (ptid));
1056
1057 return buf;
1058 }
1059
1060 if (target_beneath->to_pid_to_str (ptid))
1061 return target_beneath->to_pid_to_str (ptid);
1062
1063 return normal_pid_to_str (ptid);
1064 }
1065
1066 /* Return a string describing the state of the thread specified by
1067 INFO. */
1068
1069 static char *
1070 thread_db_extra_thread_info (struct thread_info *info)
1071 {
1072 if (info->private == NULL)
1073 return NULL;
1074
1075 if (info->private->dying)
1076 return "Exiting";
1077
1078 return NULL;
1079 }
1080
1081 /* Get the address of the thread local variable in load module LM which
1082 is stored at OFFSET within the thread local storage for thread PTID. */
1083
1084 static CORE_ADDR
1085 thread_db_get_thread_local_address (ptid_t ptid,
1086 CORE_ADDR lm,
1087 CORE_ADDR offset)
1088 {
1089 struct thread_info *thread_info;
1090
1091 /* If we have not discovered any threads yet, check now. */
1092 if (!have_threads ())
1093 thread_db_find_new_threads ();
1094
1095 /* Find the matching thread. */
1096 thread_info = find_thread_pid (ptid);
1097
1098 if (thread_info != NULL && thread_info->private != NULL)
1099 {
1100 td_err_e err;
1101 void *address;
1102
1103 /* glibc doesn't provide the needed interface. */
1104 if (!td_thr_tls_get_addr_p)
1105 throw_error (TLS_NO_LIBRARY_SUPPORT_ERROR,
1106 _("No TLS library support"));
1107
1108 /* Caller should have verified that lm != 0. */
1109 gdb_assert (lm != 0);
1110
1111 /* Finally, get the address of the variable. */
1112 err = td_thr_tls_get_addr_p (&thread_info->private->th,
1113 (void *)(size_t) lm,
1114 offset, &address);
1115
1116 #ifdef THREAD_DB_HAS_TD_NOTALLOC
1117 /* The memory hasn't been allocated, yet. */
1118 if (err == TD_NOTALLOC)
1119 /* Now, if libthread_db provided the initialization image's
1120 address, we *could* try to build a non-lvalue value from
1121 the initialization image. */
1122 throw_error (TLS_NOT_ALLOCATED_YET_ERROR,
1123 _("TLS not allocated yet"));
1124 #endif
1125
1126 /* Something else went wrong. */
1127 if (err != TD_OK)
1128 throw_error (TLS_GENERIC_ERROR,
1129 (("%s")), thread_db_err_str (err));
1130
1131 /* Cast assuming host == target. Joy. */
1132 /* Do proper sign extension for the target. */
1133 gdb_assert (exec_bfd);
1134 return (bfd_get_sign_extend_vma (exec_bfd) > 0
1135 ? (CORE_ADDR) (intptr_t) address
1136 : (CORE_ADDR) (uintptr_t) address);
1137 }
1138
1139 if (target_beneath->to_get_thread_local_address)
1140 return target_beneath->to_get_thread_local_address (ptid, lm, offset);
1141 else
1142 throw_error (TLS_GENERIC_ERROR,
1143 _("TLS not supported on this target"));
1144 }
1145
1146 /* Callback routine used to find a thread based on the TID part of
1147 its PTID. */
1148
1149 static int
1150 thread_db_find_thread_from_tid (struct thread_info *thread, void *data)
1151 {
1152 long *tid = (long *) data;
1153
1154 if (thread->private->tid == *tid)
1155 return 1;
1156
1157 return 0;
1158 }
1159
1160 /* Implement the to_get_ada_task_ptid target method for this target. */
1161
1162 static ptid_t
1163 thread_db_get_ada_task_ptid (long lwp, long thread)
1164 {
1165 struct thread_info *thread_info;
1166
1167 thread_db_find_new_threads ();
1168 thread_info = iterate_over_threads (thread_db_find_thread_from_tid, &thread);
1169
1170 gdb_assert (thread_info != NULL);
1171
1172 return (thread_info->ptid);
1173 }
1174
1175 static void
1176 init_thread_db_ops (void)
1177 {
1178 thread_db_ops.to_shortname = "multi-thread";
1179 thread_db_ops.to_longname = "multi-threaded child process.";
1180 thread_db_ops.to_doc = "Threads and pthreads support.";
1181 thread_db_ops.to_detach = thread_db_detach;
1182 thread_db_ops.to_wait = thread_db_wait;
1183 thread_db_ops.to_mourn_inferior = thread_db_mourn_inferior;
1184 thread_db_ops.to_find_new_threads = thread_db_find_new_threads;
1185 thread_db_ops.to_pid_to_str = thread_db_pid_to_str;
1186 thread_db_ops.to_stratum = thread_stratum;
1187 thread_db_ops.to_has_thread_control = tc_schedlock;
1188 thread_db_ops.to_get_thread_local_address
1189 = thread_db_get_thread_local_address;
1190 thread_db_ops.to_extra_thread_info = thread_db_extra_thread_info;
1191 thread_db_ops.to_can_async_p = thread_db_can_async_p;
1192 thread_db_ops.to_is_async_p = thread_db_is_async_p;
1193 thread_db_ops.to_async = thread_db_async;
1194 thread_db_ops.to_async_mask = thread_db_async_mask;
1195 thread_db_ops.to_get_ada_task_ptid = thread_db_get_ada_task_ptid;
1196 thread_db_ops.to_magic = OPS_MAGIC;
1197 }
1198
1199 void
1200 _initialize_thread_db (void)
1201 {
1202 /* Only initialize the module if we can load libthread_db. */
1203 if (thread_db_load ())
1204 {
1205 init_thread_db_ops ();
1206 add_target (&thread_db_ops);
1207
1208 /* Add ourselves to objfile event chain. */
1209 observer_attach_new_objfile (thread_db_new_objfile);
1210 }
1211 }