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[thirdparty/binutils-gdb.git] / gdb / linux-thread-db.c
1 /* libthread_db assisted debugging support, generic parts.
2
3 Copyright 1999, 2000, 2001, 2003, 2004, 2005
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 2 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, write to the Free Software
20 Foundation, Inc., 59 Temple Place - Suite 330,
21 Boston, MA 02111-1307, USA. */
22
23 #include "defs.h"
24
25 #include "gdb_assert.h"
26 #include <dlfcn.h>
27 #include "gdb_proc_service.h"
28 #include "gdb_thread_db.h"
29
30 #include "bfd.h"
31 #include "exceptions.h"
32 #include "gdbthread.h"
33 #include "inferior.h"
34 #include "symfile.h"
35 #include "objfiles.h"
36 #include "target.h"
37 #include "regcache.h"
38 #include "solib-svr4.h"
39
40 #ifdef HAVE_GNU_LIBC_VERSION_H
41 #include <gnu/libc-version.h>
42 #endif
43
44 #ifndef LIBTHREAD_DB_SO
45 #define LIBTHREAD_DB_SO "libthread_db.so.1"
46 #endif
47
48 /* If we're running on GNU/Linux, we must explicitly attach to any new
49 threads. */
50
51 /* FIXME: There is certainly some room for improvements:
52 - Cache LWP ids.
53 - Bypass libthread_db when fetching or storing registers for
54 threads bound to a LWP. */
55
56 /* This module's target vector. */
57 static struct target_ops thread_db_ops;
58
59 /* The target vector that we call for things this module can't handle. */
60 static struct target_ops *target_beneath;
61
62 /* Pointer to the next function on the objfile event chain. */
63 static void (*target_new_objfile_chain) (struct objfile * objfile);
64
65 /* Non-zero if we're using this module's target vector. */
66 static int using_thread_db;
67
68 /* Non-zero if we have determined the signals used by the threads
69 library. */
70 static int thread_signals;
71 static sigset_t thread_stop_set;
72 static sigset_t thread_print_set;
73
74 /* Structure that identifies the child process for the
75 <proc_service.h> interface. */
76 static struct ps_prochandle proc_handle;
77
78 /* Connection to the libthread_db library. */
79 static td_thragent_t *thread_agent;
80
81 /* Pointers to the libthread_db functions. */
82
83 static td_err_e (*td_init_p) (void);
84
85 static td_err_e (*td_ta_new_p) (struct ps_prochandle * ps,
86 td_thragent_t **ta);
87 static td_err_e (*td_ta_map_id2thr_p) (const td_thragent_t *ta, thread_t pt,
88 td_thrhandle_t *__th);
89 static td_err_e (*td_ta_map_lwp2thr_p) (const td_thragent_t *ta,
90 lwpid_t lwpid, td_thrhandle_t *th);
91 static td_err_e (*td_ta_thr_iter_p) (const td_thragent_t *ta,
92 td_thr_iter_f *callback, void *cbdata_p,
93 td_thr_state_e state, int ti_pri,
94 sigset_t *ti_sigmask_p,
95 unsigned int ti_user_flags);
96 static td_err_e (*td_ta_event_addr_p) (const td_thragent_t *ta,
97 td_event_e event, td_notify_t *ptr);
98 static td_err_e (*td_ta_set_event_p) (const td_thragent_t *ta,
99 td_thr_events_t *event);
100 static td_err_e (*td_ta_event_getmsg_p) (const td_thragent_t *ta,
101 td_event_msg_t *msg);
102
103 static td_err_e (*td_thr_validate_p) (const td_thrhandle_t *th);
104 static td_err_e (*td_thr_get_info_p) (const td_thrhandle_t *th,
105 td_thrinfo_t *infop);
106 static td_err_e (*td_thr_getfpregs_p) (const td_thrhandle_t *th,
107 gdb_prfpregset_t *regset);
108 static td_err_e (*td_thr_getgregs_p) (const td_thrhandle_t *th,
109 prgregset_t gregs);
110 static td_err_e (*td_thr_setfpregs_p) (const td_thrhandle_t *th,
111 const gdb_prfpregset_t *fpregs);
112 static td_err_e (*td_thr_setgregs_p) (const td_thrhandle_t *th,
113 prgregset_t gregs);
114 static td_err_e (*td_thr_event_enable_p) (const td_thrhandle_t *th,
115 int event);
116
117 static td_err_e (*td_thr_tls_get_addr_p) (const td_thrhandle_t *th,
118 void *map_address,
119 size_t offset, void **address);
120
121 /* Location of the thread creation event breakpoint. The code at this
122 location in the child process will be called by the pthread library
123 whenever a new thread is created. By setting a special breakpoint
124 at this location, GDB can detect when a new thread is created. We
125 obtain this location via the td_ta_event_addr call. */
126 static CORE_ADDR td_create_bp_addr;
127
128 /* Location of the thread death event breakpoint. */
129 static CORE_ADDR td_death_bp_addr;
130
131 /* Prototypes for local functions. */
132 static void thread_db_find_new_threads (void);
133 static void attach_thread (ptid_t ptid, const td_thrhandle_t *th_p,
134 const td_thrinfo_t *ti_p, int verbose);
135 static void detach_thread (ptid_t ptid, int verbose);
136 \f
137
138 /* Building process ids. */
139
140 #define GET_PID(ptid) ptid_get_pid (ptid)
141 #define GET_LWP(ptid) ptid_get_lwp (ptid)
142 #define GET_THREAD(ptid) ptid_get_tid (ptid)
143
144 #define is_lwp(ptid) (GET_LWP (ptid) != 0)
145 #define is_thread(ptid) (GET_THREAD (ptid) != 0)
146
147 #define BUILD_LWP(lwp, pid) ptid_build (pid, lwp, 0)
148 \f
149
150 /* Use "struct private_thread_info" to cache thread state. This is
151 a substantial optimization. */
152
153 struct private_thread_info
154 {
155 /* Flag set when we see a TD_DEATH event for this thread. */
156 unsigned int dying:1;
157
158 /* Cached thread state. */
159 unsigned int th_valid:1;
160 unsigned int ti_valid:1;
161
162 td_thrhandle_t th;
163 td_thrinfo_t ti;
164 };
165 \f
166
167 static char *
168 thread_db_err_str (td_err_e err)
169 {
170 static char buf[64];
171
172 switch (err)
173 {
174 case TD_OK:
175 return "generic 'call succeeded'";
176 case TD_ERR:
177 return "generic error";
178 case TD_NOTHR:
179 return "no thread to satisfy query";
180 case TD_NOSV:
181 return "no sync handle to satisfy query";
182 case TD_NOLWP:
183 return "no LWP to satisfy query";
184 case TD_BADPH:
185 return "invalid process handle";
186 case TD_BADTH:
187 return "invalid thread handle";
188 case TD_BADSH:
189 return "invalid synchronization handle";
190 case TD_BADTA:
191 return "invalid thread agent";
192 case TD_BADKEY:
193 return "invalid key";
194 case TD_NOMSG:
195 return "no event message for getmsg";
196 case TD_NOFPREGS:
197 return "FPU register set not available";
198 case TD_NOLIBTHREAD:
199 return "application not linked with libthread";
200 case TD_NOEVENT:
201 return "requested event is not supported";
202 case TD_NOCAPAB:
203 return "capability not available";
204 case TD_DBERR:
205 return "debugger service failed";
206 case TD_NOAPLIC:
207 return "operation not applicable to";
208 case TD_NOTSD:
209 return "no thread-specific data for this thread";
210 case TD_MALLOC:
211 return "malloc failed";
212 case TD_PARTIALREG:
213 return "only part of register set was written/read";
214 case TD_NOXREGS:
215 return "X register set not available for this thread";
216 default:
217 snprintf (buf, sizeof (buf), "unknown thread_db error '%d'", err);
218 return buf;
219 }
220 }
221
222 static char *
223 thread_db_state_str (td_thr_state_e state)
224 {
225 static char buf[64];
226
227 switch (state)
228 {
229 case TD_THR_STOPPED:
230 return "stopped by debugger";
231 case TD_THR_RUN:
232 return "runnable";
233 case TD_THR_ACTIVE:
234 return "active";
235 case TD_THR_ZOMBIE:
236 return "zombie";
237 case TD_THR_SLEEP:
238 return "sleeping";
239 case TD_THR_STOPPED_ASLEEP:
240 return "stopped by debugger AND blocked";
241 default:
242 snprintf (buf, sizeof (buf), "unknown thread_db state %d", state);
243 return buf;
244 }
245 }
246 \f
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, ti.ti_tid);
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 if (thread_info != NULL)
281 {
282 memcpy (&thread_info->private->th, thp, sizeof (*thp));
283 thread_info->private->th_valid = 1;
284 memcpy (&thread_info->private->ti, &ti, sizeof (ti));
285 thread_info->private->ti_valid = 1;
286 }
287 return TD_THR_ZOMBIE;
288 }
289
290 if (thread_info == NULL)
291 {
292 /* New thread. Attach to it now (why wait?). */
293 attach_thread (thread_ptid, thp, &ti, 1);
294 thread_info = find_thread_pid (thread_ptid);
295 gdb_assert (thread_info != NULL);
296 }
297
298 memcpy (&thread_info->private->th, thp, sizeof (*thp));
299 thread_info->private->th_valid = 1;
300 memcpy (&thread_info->private->ti, &ti, sizeof (ti));
301 thread_info->private->ti_valid = 1;
302
303 if (infop != NULL)
304 *(struct thread_info **) infop = thread_info;
305
306 return 0;
307 }
308
309 /* Accessor functions for the thread_db information, with caching. */
310
311 static void
312 thread_db_map_id2thr (struct thread_info *thread_info, int fatal)
313 {
314 td_err_e err;
315
316 if (thread_info->private->th_valid)
317 return;
318
319 err = td_ta_map_id2thr_p (thread_agent, GET_THREAD (thread_info->ptid),
320 &thread_info->private->th);
321 if (err != TD_OK)
322 {
323 if (fatal)
324 error (_("Cannot find thread %ld: %s"),
325 (long) GET_THREAD (thread_info->ptid),
326 thread_db_err_str (err));
327 }
328 else
329 thread_info->private->th_valid = 1;
330 }
331
332 static td_thrinfo_t *
333 thread_db_get_info (struct thread_info *thread_info)
334 {
335 td_err_e err;
336
337 if (thread_info->private->ti_valid)
338 return &thread_info->private->ti;
339
340 if (!thread_info->private->th_valid)
341 thread_db_map_id2thr (thread_info, 1);
342
343 err =
344 td_thr_get_info_p (&thread_info->private->th, &thread_info->private->ti);
345 if (err != TD_OK)
346 error (_("thread_db_get_info: cannot get thread info: %s"),
347 thread_db_err_str (err));
348
349 thread_info->private->ti_valid = 1;
350 return &thread_info->private->ti;
351 }
352 \f
353 /* Convert between user-level thread ids and LWP ids. */
354
355 static ptid_t
356 thread_from_lwp (ptid_t ptid)
357 {
358 td_thrhandle_t th;
359 td_err_e err;
360 struct thread_info *thread_info;
361 ptid_t thread_ptid;
362
363 if (GET_LWP (ptid) == 0)
364 ptid = BUILD_LWP (GET_PID (ptid), GET_PID (ptid));
365
366 gdb_assert (is_lwp (ptid));
367
368 err = td_ta_map_lwp2thr_p (thread_agent, GET_LWP (ptid), &th);
369 if (err != TD_OK)
370 error (_("Cannot find user-level thread for LWP %ld: %s"),
371 GET_LWP (ptid), thread_db_err_str (err));
372
373 thread_info = NULL;
374
375 /* Fetch the thread info. If we get back TD_THR_ZOMBIE, then the
376 event thread has already died. If another gdb interface has called
377 thread_alive() previously, the thread won't be found on the thread list
378 anymore. In that case, we don't want to process this ptid anymore
379 to avoid the possibility of later treating it as a newly
380 discovered thread id that we should add to the list. Thus,
381 we return a -1 ptid which is also how the thread list marks a
382 dead thread. */
383 if (thread_get_info_callback (&th, &thread_info) == TD_THR_ZOMBIE
384 && thread_info == NULL)
385 return pid_to_ptid (-1);
386
387 gdb_assert (thread_info && thread_info->private->ti_valid);
388
389 return ptid_build (GET_PID (ptid), GET_LWP (ptid),
390 thread_info->private->ti.ti_tid);
391 }
392
393 static ptid_t
394 lwp_from_thread (ptid_t ptid)
395 {
396 return BUILD_LWP (GET_LWP (ptid), GET_PID (ptid));
397 }
398 \f
399
400 void
401 thread_db_init (struct target_ops *target)
402 {
403 target_beneath = target;
404 }
405
406 static void *
407 verbose_dlsym (void *handle, const char *name)
408 {
409 void *sym = dlsym (handle, name);
410 if (sym == NULL)
411 warning (_("Symbol \"%s\" not found in libthread_db: %s"), name, dlerror ());
412 return sym;
413 }
414
415 static int
416 thread_db_load (void)
417 {
418 void *handle;
419 td_err_e err;
420
421 handle = dlopen (LIBTHREAD_DB_SO, RTLD_NOW);
422 if (handle == NULL)
423 {
424 fprintf_filtered (gdb_stderr, "\n\ndlopen failed on '%s' - %s\n",
425 LIBTHREAD_DB_SO, dlerror ());
426 fprintf_filtered (gdb_stderr,
427 "GDB will not be able to debug pthreads.\n\n");
428 return 0;
429 }
430
431 /* Initialize pointers to the dynamic library functions we will use.
432 Essential functions first. */
433
434 td_init_p = verbose_dlsym (handle, "td_init");
435 if (td_init_p == NULL)
436 return 0;
437
438 td_ta_new_p = verbose_dlsym (handle, "td_ta_new");
439 if (td_ta_new_p == NULL)
440 return 0;
441
442 td_ta_map_id2thr_p = verbose_dlsym (handle, "td_ta_map_id2thr");
443 if (td_ta_map_id2thr_p == NULL)
444 return 0;
445
446 td_ta_map_lwp2thr_p = verbose_dlsym (handle, "td_ta_map_lwp2thr");
447 if (td_ta_map_lwp2thr_p == NULL)
448 return 0;
449
450 td_ta_thr_iter_p = verbose_dlsym (handle, "td_ta_thr_iter");
451 if (td_ta_thr_iter_p == NULL)
452 return 0;
453
454 td_thr_validate_p = verbose_dlsym (handle, "td_thr_validate");
455 if (td_thr_validate_p == NULL)
456 return 0;
457
458 td_thr_get_info_p = verbose_dlsym (handle, "td_thr_get_info");
459 if (td_thr_get_info_p == NULL)
460 return 0;
461
462 td_thr_getfpregs_p = verbose_dlsym (handle, "td_thr_getfpregs");
463 if (td_thr_getfpregs_p == NULL)
464 return 0;
465
466 td_thr_getgregs_p = verbose_dlsym (handle, "td_thr_getgregs");
467 if (td_thr_getgregs_p == NULL)
468 return 0;
469
470 td_thr_setfpregs_p = verbose_dlsym (handle, "td_thr_setfpregs");
471 if (td_thr_setfpregs_p == NULL)
472 return 0;
473
474 td_thr_setgregs_p = verbose_dlsym (handle, "td_thr_setgregs");
475 if (td_thr_setgregs_p == NULL)
476 return 0;
477
478 /* Initialize the library. */
479 err = td_init_p ();
480 if (err != TD_OK)
481 {
482 warning (_("Cannot initialize libthread_db: %s"), thread_db_err_str (err));
483 return 0;
484 }
485
486 /* These are not essential. */
487 td_ta_event_addr_p = dlsym (handle, "td_ta_event_addr");
488 td_ta_set_event_p = dlsym (handle, "td_ta_set_event");
489 td_ta_event_getmsg_p = dlsym (handle, "td_ta_event_getmsg");
490 td_thr_event_enable_p = dlsym (handle, "td_thr_event_enable");
491 td_thr_tls_get_addr_p = dlsym (handle, "td_thr_tls_get_addr");
492
493 return 1;
494 }
495
496 static td_err_e
497 enable_thread_event (td_thragent_t *thread_agent, int event, CORE_ADDR *bp)
498 {
499 td_notify_t notify;
500 td_err_e err;
501
502 /* Get the breakpoint address for thread EVENT. */
503 err = td_ta_event_addr_p (thread_agent, event, &notify);
504 if (err != TD_OK)
505 return err;
506
507 /* Set up the breakpoint. */
508 (*bp) = gdbarch_convert_from_func_ptr_addr (current_gdbarch,
509 (CORE_ADDR) notify.u.bptaddr,
510 &current_target);
511 create_thread_event_breakpoint ((*bp));
512
513 return TD_OK;
514 }
515
516 static void
517 enable_thread_event_reporting (void)
518 {
519 td_thr_events_t events;
520 td_notify_t notify;
521 td_err_e err;
522 #ifdef HAVE_GNU_LIBC_VERSION_H
523 const char *libc_version;
524 int libc_major, libc_minor;
525 #endif
526
527 /* We cannot use the thread event reporting facility if these
528 functions aren't available. */
529 if (td_ta_event_addr_p == NULL || td_ta_set_event_p == NULL
530 || td_ta_event_getmsg_p == NULL || td_thr_event_enable_p == NULL)
531 return;
532
533 /* Set the process wide mask saying which events we're interested in. */
534 td_event_emptyset (&events);
535 td_event_addset (&events, TD_CREATE);
536
537 #ifdef HAVE_GNU_LIBC_VERSION_H
538 /* FIXME: kettenis/2000-04-23: The event reporting facility is
539 broken for TD_DEATH events in glibc 2.1.3, so don't enable it for
540 now. */
541 libc_version = gnu_get_libc_version ();
542 if (sscanf (libc_version, "%d.%d", &libc_major, &libc_minor) == 2
543 && (libc_major > 2 || (libc_major == 2 && libc_minor > 1)))
544 #endif
545 td_event_addset (&events, TD_DEATH);
546
547 err = td_ta_set_event_p (thread_agent, &events);
548 if (err != TD_OK)
549 {
550 warning (_("Unable to set global thread event mask: %s"),
551 thread_db_err_str (err));
552 return;
553 }
554
555 /* Delete previous thread event breakpoints, if any. */
556 remove_thread_event_breakpoints ();
557 td_create_bp_addr = 0;
558 td_death_bp_addr = 0;
559
560 /* Set up the thread creation event. */
561 err = enable_thread_event (thread_agent, TD_CREATE, &td_create_bp_addr);
562 if (err != TD_OK)
563 {
564 warning (_("Unable to get location for thread creation breakpoint: %s"),
565 thread_db_err_str (err));
566 return;
567 }
568
569 /* Set up the thread death event. */
570 err = enable_thread_event (thread_agent, TD_DEATH, &td_death_bp_addr);
571 if (err != TD_OK)
572 {
573 warning (_("Unable to get location for thread death breakpoint: %s"),
574 thread_db_err_str (err));
575 return;
576 }
577 }
578
579 static void
580 disable_thread_event_reporting (void)
581 {
582 td_thr_events_t events;
583
584 /* Set the process wide mask saying we aren't interested in any
585 events anymore. */
586 td_event_emptyset (&events);
587 td_ta_set_event_p (thread_agent, &events);
588
589 /* Delete thread event breakpoints, if any. */
590 remove_thread_event_breakpoints ();
591 td_create_bp_addr = 0;
592 td_death_bp_addr = 0;
593 }
594
595 static void
596 check_thread_signals (void)
597 {
598 #ifdef GET_THREAD_SIGNALS
599 if (!thread_signals)
600 {
601 sigset_t mask;
602 int i;
603
604 GET_THREAD_SIGNALS (&mask);
605 sigemptyset (&thread_stop_set);
606 sigemptyset (&thread_print_set);
607
608 for (i = 1; i < NSIG; i++)
609 {
610 if (sigismember (&mask, i))
611 {
612 if (signal_stop_update (target_signal_from_host (i), 0))
613 sigaddset (&thread_stop_set, i);
614 if (signal_print_update (target_signal_from_host (i), 0))
615 sigaddset (&thread_print_set, i);
616 thread_signals = 1;
617 }
618 }
619 }
620 #endif
621 }
622
623 static void
624 thread_db_new_objfile (struct objfile *objfile)
625 {
626 td_err_e err;
627
628 /* First time through, report that libthread_db was successfuly
629 loaded. Can't print this in in thread_db_load as, at that stage,
630 the interpreter and it's console haven't started. The real
631 problem here is that libthread_db is loaded too early - it should
632 only be loaded when there is a program to debug. */
633 {
634 static int dejavu;
635 if (!dejavu)
636 {
637 Dl_info info;
638 const char *library = NULL;
639 /* Try dladdr. */
640 if (dladdr ((*td_ta_new_p), &info) != 0)
641 library = info.dli_fname;
642 /* Try dlinfo? */
643 if (library == NULL)
644 /* Paranoid - don't let a NULL path slip through. */
645 library = LIBTHREAD_DB_SO;
646 printf_unfiltered (_("Using host libthread_db library \"%s\".\n"),
647 library);
648 dejavu = 1;
649 }
650 }
651
652 /* Don't attempt to use thread_db on targets which can not run
653 (core files). */
654 if (objfile == NULL || !target_has_execution)
655 {
656 /* All symbols have been discarded. If the thread_db target is
657 active, deactivate it now. */
658 if (using_thread_db)
659 {
660 gdb_assert (proc_handle.pid == 0);
661 unpush_target (&thread_db_ops);
662 using_thread_db = 0;
663 }
664
665 goto quit;
666 }
667
668 if (using_thread_db)
669 /* Nothing to do. The thread library was already detected and the
670 target vector was already activated. */
671 goto quit;
672
673 /* Initialize the structure that identifies the child process. Note
674 that at this point there is no guarantee that we actually have a
675 child process. */
676 proc_handle.pid = GET_PID (inferior_ptid);
677
678 /* Now attempt to open a connection to the thread library. */
679 err = td_ta_new_p (&proc_handle, &thread_agent);
680 switch (err)
681 {
682 case TD_NOLIBTHREAD:
683 /* No thread library was detected. */
684 break;
685
686 case TD_OK:
687 printf_unfiltered (_("[Thread debugging using libthread_db enabled]\n"));
688
689 /* The thread library was detected. Activate the thread_db target. */
690 push_target (&thread_db_ops);
691 using_thread_db = 1;
692
693 enable_thread_event_reporting ();
694 thread_db_find_new_threads ();
695 break;
696
697 default:
698 warning (_("Cannot initialize thread debugging library: %s"),
699 thread_db_err_str (err));
700 break;
701 }
702
703 quit:
704 if (target_new_objfile_chain)
705 target_new_objfile_chain (objfile);
706 }
707
708 /* Attach to a new thread. This function is called when we receive a
709 TD_CREATE event or when we iterate over all threads and find one
710 that wasn't already in our list. */
711
712 static void
713 attach_thread (ptid_t ptid, const td_thrhandle_t *th_p,
714 const td_thrinfo_t *ti_p, int verbose)
715 {
716 struct thread_info *tp;
717 td_err_e err;
718
719 /* If we're being called after a TD_CREATE event, we may already
720 know about this thread. There are two ways this can happen. We
721 may have iterated over all threads between the thread creation
722 and the TD_CREATE event, for instance when the user has issued
723 the `info threads' command before the SIGTRAP for hitting the
724 thread creation breakpoint was reported. Alternatively, the
725 thread may have exited and a new one been created with the same
726 thread ID. In the first case we don't need to do anything; in
727 the second case we should discard information about the dead
728 thread and attach to the new one. */
729 if (in_thread_list (ptid))
730 {
731 tp = find_thread_pid (ptid);
732 gdb_assert (tp != NULL);
733
734 if (!tp->private->dying)
735 return;
736
737 delete_thread (ptid);
738 }
739
740 check_thread_signals ();
741
742 /* Add the thread to GDB's thread list. */
743 tp = add_thread (ptid);
744 tp->private = xmalloc (sizeof (struct private_thread_info));
745 memset (tp->private, 0, sizeof (struct private_thread_info));
746
747 if (verbose)
748 printf_unfiltered (_("[New %s]\n"), target_pid_to_str (ptid));
749
750 if (ti_p->ti_state == TD_THR_UNKNOWN || ti_p->ti_state == TD_THR_ZOMBIE)
751 return; /* A zombie thread -- do not attach. */
752
753 /* Under GNU/Linux, we have to attach to each and every thread. */
754 #ifdef ATTACH_LWP
755 ATTACH_LWP (BUILD_LWP (ti_p->ti_lid, GET_PID (ptid)), 0);
756 #endif
757
758 /* Enable thread event reporting for this thread. */
759 err = td_thr_event_enable_p (th_p, 1);
760 if (err != TD_OK)
761 error (_("Cannot enable thread event reporting for %s: %s"),
762 target_pid_to_str (ptid), thread_db_err_str (err));
763 }
764
765 static void
766 thread_db_attach (char *args, int from_tty)
767 {
768 target_beneath->to_attach (args, from_tty);
769
770 /* Destroy thread info; it's no longer valid. */
771 init_thread_list ();
772
773 /* The child process is now the actual multi-threaded
774 program. Snatch its process ID... */
775 proc_handle.pid = GET_PID (inferior_ptid);
776
777 /* ...and perform the remaining initialization steps. */
778 enable_thread_event_reporting ();
779 thread_db_find_new_threads ();
780 }
781
782 static void
783 detach_thread (ptid_t ptid, int verbose)
784 {
785 struct thread_info *thread_info;
786
787 if (verbose)
788 printf_unfiltered (_("[%s exited]\n"), target_pid_to_str (ptid));
789
790 /* Don't delete the thread now, because it still reports as active
791 until it has executed a few instructions after the event
792 breakpoint - if we deleted it now, "info threads" would cause us
793 to re-attach to it. Just mark it as having had a TD_DEATH
794 event. This means that we won't delete it from our thread list
795 until we notice that it's dead (via prune_threads), or until
796 something re-uses its thread ID. */
797 thread_info = find_thread_pid (ptid);
798 gdb_assert (thread_info != NULL);
799 thread_info->private->dying = 1;
800 }
801
802 static void
803 thread_db_detach (char *args, int from_tty)
804 {
805 disable_thread_event_reporting ();
806
807 /* There's no need to save & restore inferior_ptid here, since the
808 inferior is supposed to be survive this function call. */
809 inferior_ptid = lwp_from_thread (inferior_ptid);
810
811 /* Forget about the child's process ID. We shouldn't need it
812 anymore. */
813 proc_handle.pid = 0;
814
815 target_beneath->to_detach (args, from_tty);
816 }
817
818 static int
819 clear_lwpid_callback (struct thread_info *thread, void *dummy)
820 {
821 /* If we know that our thread implementation is 1-to-1, we could save
822 a certain amount of information; it's not clear how much, so we
823 are always conservative. */
824
825 thread->private->th_valid = 0;
826 thread->private->ti_valid = 0;
827
828 return 0;
829 }
830
831 static void
832 thread_db_resume (ptid_t ptid, int step, enum target_signal signo)
833 {
834 struct cleanup *old_chain = save_inferior_ptid ();
835
836 if (GET_PID (ptid) == -1)
837 inferior_ptid = lwp_from_thread (inferior_ptid);
838 else if (is_thread (ptid))
839 ptid = lwp_from_thread (ptid);
840
841 /* Clear cached data which may not be valid after the resume. */
842 iterate_over_threads (clear_lwpid_callback, NULL);
843
844 target_beneath->to_resume (ptid, step, signo);
845
846 do_cleanups (old_chain);
847 }
848
849 /* Check if PID is currently stopped at the location of a thread event
850 breakpoint location. If it is, read the event message and act upon
851 the event. */
852
853 static void
854 check_event (ptid_t ptid)
855 {
856 td_event_msg_t msg;
857 td_thrinfo_t ti;
858 td_err_e err;
859 CORE_ADDR stop_pc;
860 int loop = 0;
861
862 /* Bail out early if we're not at a thread event breakpoint. */
863 stop_pc = read_pc_pid (ptid) - DECR_PC_AFTER_BREAK;
864 if (stop_pc != td_create_bp_addr && stop_pc != td_death_bp_addr)
865 return;
866
867 /* If we are at a create breakpoint, we do not know what new lwp
868 was created and cannot specifically locate the event message for it.
869 We have to call td_ta_event_getmsg() to get
870 the latest message. Since we have no way of correlating whether
871 the event message we get back corresponds to our breakpoint, we must
872 loop and read all event messages, processing them appropriately.
873 This guarantees we will process the correct message before continuing
874 from the breakpoint.
875
876 Currently, death events are not enabled. If they are enabled,
877 the death event can use the td_thr_event_getmsg() interface to
878 get the message specifically for that lwp and avoid looping
879 below. */
880
881 loop = 1;
882
883 do
884 {
885 err = td_ta_event_getmsg_p (thread_agent, &msg);
886 if (err != TD_OK)
887 {
888 if (err == TD_NOMSG)
889 return;
890
891 error (_("Cannot get thread event message: %s"),
892 thread_db_err_str (err));
893 }
894
895 err = td_thr_get_info_p (msg.th_p, &ti);
896 if (err != TD_OK)
897 error (_("Cannot get thread info: %s"), thread_db_err_str (err));
898
899 ptid = ptid_build (GET_PID (ptid), ti.ti_lid, ti.ti_tid);
900
901 switch (msg.event)
902 {
903 case TD_CREATE:
904 /* Call attach_thread whether or not we already know about a
905 thread with this thread ID. */
906 attach_thread (ptid, msg.th_p, &ti, 1);
907
908 break;
909
910 case TD_DEATH:
911
912 if (!in_thread_list (ptid))
913 error (_("Spurious thread death event."));
914
915 detach_thread (ptid, 1);
916
917 break;
918
919 default:
920 error (_("Spurious thread event."));
921 }
922 }
923 while (loop);
924 }
925
926 static ptid_t
927 thread_db_wait (ptid_t ptid, struct target_waitstatus *ourstatus)
928 {
929 extern ptid_t trap_ptid;
930
931 if (GET_PID (ptid) != -1 && is_thread (ptid))
932 ptid = lwp_from_thread (ptid);
933
934 ptid = target_beneath->to_wait (ptid, ourstatus);
935
936 if (proc_handle.pid == 0)
937 /* The current child process isn't the actual multi-threaded
938 program yet, so don't try to do any special thread-specific
939 post-processing and bail out early. */
940 return ptid;
941
942 if (ourstatus->kind == TARGET_WAITKIND_EXITED)
943 return pid_to_ptid (-1);
944
945 if (ourstatus->kind == TARGET_WAITKIND_STOPPED
946 && ourstatus->value.sig == TARGET_SIGNAL_TRAP)
947 /* Check for a thread event. */
948 check_event (ptid);
949
950 if (!ptid_equal (trap_ptid, null_ptid))
951 trap_ptid = thread_from_lwp (trap_ptid);
952
953 /* Change the ptid back into the higher level PID + TID format.
954 If the thread is dead and no longer on the thread list, we will
955 get back a dead ptid. This can occur if the thread death event
956 gets postponed by other simultaneous events. In such a case,
957 we want to just ignore the event and continue on. */
958 ptid = thread_from_lwp (ptid);
959 if (GET_PID (ptid) == -1)
960 ourstatus->kind = TARGET_WAITKIND_SPURIOUS;
961
962 return ptid;
963 }
964
965 static LONGEST
966 thread_db_xfer_partial (struct target_ops *ops, enum target_object object,
967 const char *annex, gdb_byte *readbuf,
968 const gdb_byte *writebuf, ULONGEST offset, LONGEST len)
969 {
970 struct cleanup *old_chain = save_inferior_ptid ();
971 LONGEST xfer;
972
973 if (is_thread (inferior_ptid))
974 {
975 /* FIXME: This seems to be necessary to make sure breakpoints
976 are removed. */
977 if (!target_thread_alive (inferior_ptid))
978 inferior_ptid = pid_to_ptid (GET_PID (inferior_ptid));
979 else
980 inferior_ptid = lwp_from_thread (inferior_ptid);
981 }
982
983 xfer = target_beneath->to_xfer_partial (ops, object, annex,
984 readbuf, writebuf, offset, len);
985
986 do_cleanups (old_chain);
987 return xfer;
988 }
989
990 static void
991 thread_db_fetch_registers (int regno)
992 {
993 struct thread_info *thread_info;
994 prgregset_t gregset;
995 gdb_prfpregset_t fpregset;
996 td_err_e err;
997
998 if (!is_thread (inferior_ptid))
999 {
1000 /* Pass the request to the target beneath us. */
1001 target_beneath->to_fetch_registers (regno);
1002 return;
1003 }
1004
1005 thread_info = find_thread_pid (inferior_ptid);
1006 thread_db_map_id2thr (thread_info, 1);
1007
1008 err = td_thr_getgregs_p (&thread_info->private->th, gregset);
1009 if (err != TD_OK)
1010 error (_("Cannot fetch general-purpose registers for thread %ld: %s"),
1011 (long) GET_THREAD (inferior_ptid), thread_db_err_str (err));
1012
1013 err = td_thr_getfpregs_p (&thread_info->private->th, &fpregset);
1014 if (err != TD_OK)
1015 error (_("Cannot get floating-point registers for thread %ld: %s"),
1016 (long) GET_THREAD (inferior_ptid), thread_db_err_str (err));
1017
1018 /* Note that we must call supply_gregset after calling the thread_db
1019 routines because the thread_db routines call ps_lgetgregs and
1020 friends which clobber GDB's register cache. */
1021 supply_gregset ((gdb_gregset_t *) gregset);
1022 supply_fpregset (&fpregset);
1023 }
1024
1025 static void
1026 thread_db_store_registers (int regno)
1027 {
1028 prgregset_t gregset;
1029 gdb_prfpregset_t fpregset;
1030 td_err_e err;
1031 struct thread_info *thread_info;
1032
1033 if (!is_thread (inferior_ptid))
1034 {
1035 /* Pass the request to the target beneath us. */
1036 target_beneath->to_store_registers (regno);
1037 return;
1038 }
1039
1040 thread_info = find_thread_pid (inferior_ptid);
1041 thread_db_map_id2thr (thread_info, 1);
1042
1043 if (regno != -1)
1044 {
1045 char raw[MAX_REGISTER_SIZE];
1046
1047 deprecated_read_register_gen (regno, raw);
1048 thread_db_fetch_registers (-1);
1049 regcache_raw_supply (current_regcache, regno, raw);
1050 }
1051
1052 fill_gregset ((gdb_gregset_t *) gregset, -1);
1053 fill_fpregset (&fpregset, -1);
1054
1055 err = td_thr_setgregs_p (&thread_info->private->th, gregset);
1056 if (err != TD_OK)
1057 error (_("Cannot store general-purpose registers for thread %ld: %s"),
1058 (long) GET_THREAD (inferior_ptid), thread_db_err_str (err));
1059 err = td_thr_setfpregs_p (&thread_info->private->th, &fpregset);
1060 if (err != TD_OK)
1061 error (_("Cannot store floating-point registers for thread %ld: %s"),
1062 (long) GET_THREAD (inferior_ptid), thread_db_err_str (err));
1063 }
1064
1065 static void
1066 thread_db_kill (void)
1067 {
1068 /* There's no need to save & restore inferior_ptid here, since the
1069 inferior isn't supposed to survive this function call. */
1070 inferior_ptid = lwp_from_thread (inferior_ptid);
1071 target_beneath->to_kill ();
1072 }
1073
1074 static void
1075 thread_db_create_inferior (char *exec_file, char *allargs, char **env,
1076 int from_tty)
1077 {
1078 unpush_target (&thread_db_ops);
1079 using_thread_db = 0;
1080 target_beneath->to_create_inferior (exec_file, allargs, env, from_tty);
1081 }
1082
1083 static void
1084 thread_db_post_startup_inferior (ptid_t ptid)
1085 {
1086 if (proc_handle.pid == 0)
1087 {
1088 /* The child process is now the actual multi-threaded
1089 program. Snatch its process ID... */
1090 proc_handle.pid = GET_PID (ptid);
1091
1092 /* ...and perform the remaining initialization steps. */
1093 enable_thread_event_reporting ();
1094 thread_db_find_new_threads ();
1095 }
1096 }
1097
1098 static void
1099 thread_db_mourn_inferior (void)
1100 {
1101 remove_thread_event_breakpoints ();
1102
1103 /* Forget about the child's process ID. We shouldn't need it
1104 anymore. */
1105 proc_handle.pid = 0;
1106
1107 target_beneath->to_mourn_inferior ();
1108
1109 /* Detach thread_db target ops. */
1110 unpush_target (&thread_db_ops);
1111 using_thread_db = 0;
1112 }
1113
1114 static int
1115 thread_db_thread_alive (ptid_t ptid)
1116 {
1117 td_thrhandle_t th;
1118 td_err_e err;
1119
1120 if (is_thread (ptid))
1121 {
1122 struct thread_info *thread_info;
1123 thread_info = find_thread_pid (ptid);
1124
1125 thread_db_map_id2thr (thread_info, 0);
1126 if (!thread_info->private->th_valid)
1127 return 0;
1128
1129 err = td_thr_validate_p (&thread_info->private->th);
1130 if (err != TD_OK)
1131 return 0;
1132
1133 if (!thread_info->private->ti_valid)
1134 {
1135 err =
1136 td_thr_get_info_p (&thread_info->private->th,
1137 &thread_info->private->ti);
1138 if (err != TD_OK)
1139 return 0;
1140 thread_info->private->ti_valid = 1;
1141 }
1142
1143 if (thread_info->private->ti.ti_state == TD_THR_UNKNOWN
1144 || thread_info->private->ti.ti_state == TD_THR_ZOMBIE)
1145 return 0; /* A zombie thread. */
1146
1147 return 1;
1148 }
1149
1150 if (target_beneath->to_thread_alive)
1151 return target_beneath->to_thread_alive (ptid);
1152
1153 return 0;
1154 }
1155
1156 static int
1157 find_new_threads_callback (const td_thrhandle_t *th_p, void *data)
1158 {
1159 td_thrinfo_t ti;
1160 td_err_e err;
1161 ptid_t ptid;
1162
1163 err = td_thr_get_info_p (th_p, &ti);
1164 if (err != TD_OK)
1165 error (_("find_new_threads_callback: cannot get thread info: %s"),
1166 thread_db_err_str (err));
1167
1168 if (ti.ti_state == TD_THR_UNKNOWN || ti.ti_state == TD_THR_ZOMBIE)
1169 return 0; /* A zombie -- ignore. */
1170
1171 ptid = ptid_build (GET_PID (inferior_ptid), ti.ti_lid, ti.ti_tid);
1172
1173 if (!in_thread_list (ptid))
1174 attach_thread (ptid, th_p, &ti, 1);
1175
1176 return 0;
1177 }
1178
1179 static void
1180 thread_db_find_new_threads (void)
1181 {
1182 td_err_e err;
1183
1184 /* Iterate over all user-space threads to discover new threads. */
1185 err = td_ta_thr_iter_p (thread_agent, find_new_threads_callback, NULL,
1186 TD_THR_ANY_STATE, TD_THR_LOWEST_PRIORITY,
1187 TD_SIGNO_MASK, TD_THR_ANY_USER_FLAGS);
1188 if (err != TD_OK)
1189 error (_("Cannot find new threads: %s"), thread_db_err_str (err));
1190 }
1191
1192 static char *
1193 thread_db_pid_to_str (ptid_t ptid)
1194 {
1195 if (is_thread (ptid))
1196 {
1197 static char buf[64];
1198 td_thrinfo_t *ti_p;
1199 td_err_e err;
1200 struct thread_info *thread_info;
1201
1202 thread_info = find_thread_pid (ptid);
1203 thread_db_map_id2thr (thread_info, 0);
1204 if (!thread_info->private->th_valid)
1205 {
1206 snprintf (buf, sizeof (buf), "Thread %ld (Missing)",
1207 GET_THREAD (ptid));
1208 return buf;
1209 }
1210
1211 ti_p = thread_db_get_info (thread_info);
1212
1213 if (ti_p->ti_state == TD_THR_ACTIVE && ti_p->ti_lid != 0)
1214 {
1215 snprintf (buf, sizeof (buf), "Thread %ld (LWP %d)",
1216 (long) ti_p->ti_tid, ti_p->ti_lid);
1217 }
1218 else
1219 {
1220 snprintf (buf, sizeof (buf), "Thread %ld (%s)",
1221 (long) ti_p->ti_tid,
1222 thread_db_state_str (ti_p->ti_state));
1223 }
1224
1225 return buf;
1226 }
1227
1228 if (target_beneath->to_pid_to_str (ptid))
1229 return target_beneath->to_pid_to_str (ptid);
1230
1231 return normal_pid_to_str (ptid);
1232 }
1233
1234 /* Get the address of the thread local variable in load module LM which
1235 is stored at OFFSET within the thread local storage for thread PTID. */
1236
1237 static CORE_ADDR
1238 thread_db_get_thread_local_address (ptid_t ptid,
1239 CORE_ADDR lm,
1240 CORE_ADDR offset)
1241 {
1242 if (is_thread (ptid))
1243 {
1244 td_err_e err;
1245 void *address;
1246 struct thread_info *thread_info;
1247
1248 /* glibc doesn't provide the needed interface. */
1249 if (!td_thr_tls_get_addr_p)
1250 throw_error (TLS_NO_LIBRARY_SUPPORT_ERROR,
1251 _("No TLS library support"));
1252
1253 /* Caller should have verified that lm != 0. */
1254 gdb_assert (lm != 0);
1255
1256 /* Get info about the thread. */
1257 thread_info = find_thread_pid (ptid);
1258 thread_db_map_id2thr (thread_info, 1);
1259
1260 /* Finally, get the address of the variable. */
1261 err = td_thr_tls_get_addr_p (&thread_info->private->th, (void *) lm,
1262 offset, &address);
1263
1264 #ifdef THREAD_DB_HAS_TD_NOTALLOC
1265 /* The memory hasn't been allocated, yet. */
1266 if (err == TD_NOTALLOC)
1267 /* Now, if libthread_db provided the initialization image's
1268 address, we *could* try to build a non-lvalue value from
1269 the initialization image. */
1270 throw_error (TLS_NOT_ALLOCATED_YET_ERROR,
1271 _("TLS not allocated yet"));
1272 #endif
1273
1274 /* Something else went wrong. */
1275 if (err != TD_OK)
1276 throw_error (TLS_GENERIC_ERROR,
1277 (("%s")), thread_db_err_str (err));
1278
1279 /* Cast assuming host == target. Joy. */
1280 return (CORE_ADDR) address;
1281 }
1282
1283 if (target_beneath->to_get_thread_local_address)
1284 return target_beneath->to_get_thread_local_address (ptid, lm, offset);
1285 else
1286 throw_error (TLS_GENERIC_ERROR,
1287 _("TLS not supported on this target"));
1288 }
1289
1290 static void
1291 init_thread_db_ops (void)
1292 {
1293 thread_db_ops.to_shortname = "multi-thread";
1294 thread_db_ops.to_longname = "multi-threaded child process.";
1295 thread_db_ops.to_doc = "Threads and pthreads support.";
1296 thread_db_ops.to_attach = thread_db_attach;
1297 thread_db_ops.to_detach = thread_db_detach;
1298 thread_db_ops.to_resume = thread_db_resume;
1299 thread_db_ops.to_wait = thread_db_wait;
1300 thread_db_ops.to_fetch_registers = thread_db_fetch_registers;
1301 thread_db_ops.to_store_registers = thread_db_store_registers;
1302 thread_db_ops.to_xfer_partial = thread_db_xfer_partial;
1303 thread_db_ops.to_kill = thread_db_kill;
1304 thread_db_ops.to_create_inferior = thread_db_create_inferior;
1305 thread_db_ops.to_post_startup_inferior = thread_db_post_startup_inferior;
1306 thread_db_ops.to_mourn_inferior = thread_db_mourn_inferior;
1307 thread_db_ops.to_thread_alive = thread_db_thread_alive;
1308 thread_db_ops.to_find_new_threads = thread_db_find_new_threads;
1309 thread_db_ops.to_pid_to_str = thread_db_pid_to_str;
1310 thread_db_ops.to_stratum = thread_stratum;
1311 thread_db_ops.to_has_thread_control = tc_schedlock;
1312 thread_db_ops.to_get_thread_local_address
1313 = thread_db_get_thread_local_address;
1314 thread_db_ops.to_magic = OPS_MAGIC;
1315 }
1316
1317 void
1318 _initialize_thread_db (void)
1319 {
1320 /* Only initialize the module if we can load libthread_db. */
1321 if (thread_db_load ())
1322 {
1323 init_thread_db_ops ();
1324 add_target (&thread_db_ops);
1325
1326 /* Add ourselves to objfile event chain. */
1327 target_new_objfile_chain = deprecated_target_new_objfile_hook;
1328 deprecated_target_new_objfile_hook = thread_db_new_objfile;
1329 }
1330 }