39dae864a39cfa3fc1d670979534d5f2a6cd5271
[deliverable/binutils-gdb.git] / gdb / sol-thread.c
1 /* Solaris threads debugging interface.
2
3 Copyright (C) 1996-2017 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 /* This module implements a sort of half target that sits between the
21 machine-independent parts of GDB and the /proc interface (procfs.c)
22 to provide access to the Solaris user-mode thread implementation.
23
24 Solaris threads are true user-mode threads, which are invoked via
25 the thr_* and pthread_* (native and POSIX respectivly) interfaces.
26 These are mostly implemented in user-space, with all thread context
27 kept in various structures that live in the user's heap. These
28 should not be confused with lightweight processes (LWPs), which are
29 implemented by the kernel, and scheduled without explicit
30 intervention by the process.
31
32 Just to confuse things a little, Solaris threads (both native and
33 POSIX) are actually implemented using LWPs. In general, there are
34 going to be more threads than LWPs. There is no fixed
35 correspondence between a thread and an LWP. When a thread wants to
36 run, it gets scheduled onto the first available LWP and can
37 therefore migrate from one LWP to another as time goes on. A
38 sleeping thread may not be associated with an LWP at all!
39
40 To make it possible to mess with threads, Sun provides a library
41 called libthread_db.so.1 (not to be confused with
42 libthread_db.so.0, which doesn't have a published interface). This
43 interface has an upper part, which it provides, and a lower part
44 which we provide. The upper part consists of the td_* routines,
45 which allow us to find all the threads, query their state, etc...
46 The lower part consists of all of the ps_*, which are used by the
47 td_* routines to read/write memory, manipulate LWPs, lookup
48 symbols, etc... The ps_* routines actually do most of their work
49 by calling functions in procfs.c. */
50
51 #include "defs.h"
52 #include <thread.h>
53 #include <proc_service.h>
54 #include <thread_db.h>
55 #include "gdbthread.h"
56 #include "target.h"
57 #include "inferior.h"
58 #include <fcntl.h>
59 #include <sys/stat.h>
60 #include <dlfcn.h>
61 #include "gdbcmd.h"
62 #include "gdbcore.h"
63 #include "regcache.h"
64 #include "solib.h"
65 #include "symfile.h"
66 #include "observer.h"
67 #include "procfs.h"
68 #include "symtab.h"
69 #include "minsyms.h"
70 #include "objfiles.h"
71
72 struct target_ops sol_thread_ops;
73
74 /* Prototypes for supply_gregset etc. */
75 #include "gregset.h"
76
77 /* This struct is defined by us, but mainly used for the proc_service
78 interface. We don't have much use for it, except as a handy place
79 to get a real PID for memory accesses. */
80
81 struct ps_prochandle
82 {
83 ptid_t ptid;
84 };
85
86 struct string_map
87 {
88 int num;
89 char *str;
90 };
91
92 static struct ps_prochandle main_ph;
93 static td_thragent_t *main_ta;
94 static int sol_thread_active = 0;
95
96 static void init_sol_thread_ops (void);
97
98 /* Default definitions: These must be defined in tm.h if they are to
99 be shared with a process module such as procfs. */
100
101 /* Types of the libthread_db functions. */
102
103 typedef void (td_log_ftype)(const int on_off);
104 typedef td_err_e (td_ta_new_ftype)(const struct ps_prochandle *ph_p,
105 td_thragent_t **ta_pp);
106 typedef td_err_e (td_ta_delete_ftype)(td_thragent_t *ta_p);
107 typedef td_err_e (td_init_ftype)(void);
108 typedef td_err_e (td_ta_get_ph_ftype)(const td_thragent_t *ta_p,
109 struct ps_prochandle **ph_pp);
110 typedef td_err_e (td_ta_get_nthreads_ftype)(const td_thragent_t *ta_p,
111 int *nthread_p);
112 typedef td_err_e (td_ta_tsd_iter_ftype)(const td_thragent_t *ta_p,
113 td_key_iter_f *cb, void *cbdata_p);
114 typedef td_err_e (td_ta_thr_iter_ftype)(const td_thragent_t *ta_p,
115 td_thr_iter_f *cb, void *cbdata_p,
116 td_thr_state_e state, int ti_pri,
117 sigset_t *ti_sigmask_p,
118 unsigned ti_user_flags);
119 typedef td_err_e (td_thr_validate_ftype)(const td_thrhandle_t *th_p);
120 typedef td_err_e (td_thr_tsd_ftype)(const td_thrhandle_t * th_p,
121 const thread_key_t key, void **data_pp);
122 typedef td_err_e (td_thr_get_info_ftype)(const td_thrhandle_t *th_p,
123 td_thrinfo_t *ti_p);
124 typedef td_err_e (td_thr_getfpregs_ftype)(const td_thrhandle_t *th_p,
125 prfpregset_t *fpregset);
126 typedef td_err_e (td_thr_getxregsize_ftype)(const td_thrhandle_t *th_p,
127 int *xregsize);
128 typedef td_err_e (td_thr_getxregs_ftype)(const td_thrhandle_t *th_p,
129 const caddr_t xregset);
130 typedef td_err_e (td_thr_sigsetmask_ftype)(const td_thrhandle_t *th_p,
131 const sigset_t ti_sigmask);
132 typedef td_err_e (td_thr_setprio_ftype)(const td_thrhandle_t *th_p,
133 const int ti_pri);
134 typedef td_err_e (td_thr_setsigpending_ftype)(const td_thrhandle_t *th_p,
135 const uchar_t ti_pending_flag,
136 const sigset_t ti_pending);
137 typedef td_err_e (td_thr_setfpregs_ftype)(const td_thrhandle_t *th_p,
138 const prfpregset_t *fpregset);
139 typedef td_err_e (td_thr_setxregs_ftype)(const td_thrhandle_t *th_p,
140 const caddr_t xregset);
141 typedef td_err_e (td_ta_map_id2thr_ftype)(const td_thragent_t *ta_p,
142 thread_t tid,
143 td_thrhandle_t *th_p);
144 typedef td_err_e (td_ta_map_lwp2thr_ftype)(const td_thragent_t *ta_p,
145 lwpid_t lwpid,
146 td_thrhandle_t *th_p);
147 typedef td_err_e (td_thr_getgregs_ftype)(const td_thrhandle_t *th_p,
148 prgregset_t regset);
149 typedef td_err_e (td_thr_setgregs_ftype)(const td_thrhandle_t *th_p,
150 const prgregset_t regset);
151
152 /* Pointers to routines from libthread_db resolved by dlopen(). */
153
154 static td_log_ftype *p_td_log;
155 static td_ta_new_ftype *p_td_ta_new;
156 static td_ta_delete_ftype *p_td_ta_delete;
157 static td_init_ftype *p_td_init;
158 static td_ta_get_ph_ftype *p_td_ta_get_ph;
159 static td_ta_get_nthreads_ftype *p_td_ta_get_nthreads;
160 static td_ta_tsd_iter_ftype *p_td_ta_tsd_iter;
161 static td_ta_thr_iter_ftype *p_td_ta_thr_iter;
162 static td_thr_validate_ftype *p_td_thr_validate;
163 static td_thr_tsd_ftype *p_td_thr_tsd;
164 static td_thr_get_info_ftype *p_td_thr_get_info;
165 static td_thr_getfpregs_ftype *p_td_thr_getfpregs;
166 static td_thr_getxregsize_ftype *p_td_thr_getxregsize;
167 static td_thr_getxregs_ftype *p_td_thr_getxregs;
168 static td_thr_sigsetmask_ftype *p_td_thr_sigsetmask;
169 static td_thr_setprio_ftype *p_td_thr_setprio;
170 static td_thr_setsigpending_ftype *p_td_thr_setsigpending;
171 static td_thr_setfpregs_ftype *p_td_thr_setfpregs;
172 static td_thr_setxregs_ftype *p_td_thr_setxregs;
173 static td_ta_map_id2thr_ftype *p_td_ta_map_id2thr;
174 static td_ta_map_lwp2thr_ftype *p_td_ta_map_lwp2thr;
175 static td_thr_getgregs_ftype *p_td_thr_getgregs;
176 static td_thr_setgregs_ftype *p_td_thr_setgregs;
177 \f
178
179 /* Return the libthread_db error string associated with ERRCODE. If
180 ERRCODE is unknown, return an appropriate message. */
181
182 static char *
183 td_err_string (td_err_e errcode)
184 {
185 static struct string_map td_err_table[] =
186 {
187 { TD_OK, "generic \"call succeeded\"" },
188 { TD_ERR, "generic error." },
189 { TD_NOTHR, "no thread can be found to satisfy query" },
190 { TD_NOSV, "no synch. variable can be found to satisfy query" },
191 { TD_NOLWP, "no lwp can be found to satisfy query" },
192 { TD_BADPH, "invalid process handle" },
193 { TD_BADTH, "invalid thread handle" },
194 { TD_BADSH, "invalid synchronization handle" },
195 { TD_BADTA, "invalid thread agent" },
196 { TD_BADKEY, "invalid key" },
197 { TD_NOMSG, "td_thr_event_getmsg() called when there was no message" },
198 { TD_NOFPREGS, "FPU register set not available for given thread" },
199 { TD_NOLIBTHREAD, "application not linked with libthread" },
200 { TD_NOEVENT, "requested event is not supported" },
201 { TD_NOCAPAB, "capability not available" },
202 { TD_DBERR, "Debugger service failed" },
203 { TD_NOAPLIC, "Operation not applicable to" },
204 { TD_NOTSD, "No thread specific data for this thread" },
205 { TD_MALLOC, "Malloc failed" },
206 { TD_PARTIALREG, "Only part of register set was written/read" },
207 { TD_NOXREGS, "X register set not available for given thread" }
208 };
209 const int td_err_size = sizeof td_err_table / sizeof (struct string_map);
210 int i;
211 static char buf[50];
212
213 for (i = 0; i < td_err_size; i++)
214 if (td_err_table[i].num == errcode)
215 return td_err_table[i].str;
216
217 xsnprintf (buf, sizeof (buf), "Unknown libthread_db error code: %d",
218 errcode);
219
220 return buf;
221 }
222
223 /* Return the libthread_db state string assicoated with STATECODE.
224 If STATECODE is unknown, return an appropriate message. */
225
226 static char *
227 td_state_string (td_thr_state_e statecode)
228 {
229 static struct string_map td_thr_state_table[] =
230 {
231 { TD_THR_ANY_STATE, "any state" },
232 { TD_THR_UNKNOWN, "unknown" },
233 { TD_THR_STOPPED, "stopped" },
234 { TD_THR_RUN, "run" },
235 { TD_THR_ACTIVE, "active" },
236 { TD_THR_ZOMBIE, "zombie" },
237 { TD_THR_SLEEP, "sleep" },
238 { TD_THR_STOPPED_ASLEEP, "stopped asleep" }
239 };
240 const int td_thr_state_table_size =
241 sizeof td_thr_state_table / sizeof (struct string_map);
242 int i;
243 static char buf[50];
244
245 for (i = 0; i < td_thr_state_table_size; i++)
246 if (td_thr_state_table[i].num == statecode)
247 return td_thr_state_table[i].str;
248
249 xsnprintf (buf, sizeof (buf), "Unknown libthread_db state code: %d",
250 statecode);
251
252 return buf;
253 }
254 \f
255
256 /* Convert a POSIX or Solaris thread ID into a LWP ID. If THREAD_ID
257 doesn't exist, that's an error. If it's an inactive thread, return
258 DEFAULT_LWP.
259
260 NOTE: This function probably shouldn't call error(). */
261
262 static ptid_t
263 thread_to_lwp (ptid_t thread_id, int default_lwp)
264 {
265 td_thrinfo_t ti;
266 td_thrhandle_t th;
267 td_err_e val;
268
269 if (ptid_lwp_p (thread_id))
270 return thread_id; /* It's already an LWP ID. */
271
272 /* It's a thread. Convert to LWP. */
273
274 val = p_td_ta_map_id2thr (main_ta, ptid_get_tid (thread_id), &th);
275 if (val == TD_NOTHR)
276 return pid_to_ptid (-1); /* Thread must have terminated. */
277 else if (val != TD_OK)
278 error (_("thread_to_lwp: td_ta_map_id2thr %s"), td_err_string (val));
279
280 val = p_td_thr_get_info (&th, &ti);
281 if (val == TD_NOTHR)
282 return pid_to_ptid (-1); /* Thread must have terminated. */
283 else if (val != TD_OK)
284 error (_("thread_to_lwp: td_thr_get_info: %s"), td_err_string (val));
285
286 if (ti.ti_state != TD_THR_ACTIVE)
287 {
288 if (default_lwp != -1)
289 return pid_to_ptid (default_lwp);
290 error (_("thread_to_lwp: thread state not active: %s"),
291 td_state_string (ti.ti_state));
292 }
293
294 return ptid_build (ptid_get_pid (thread_id), ti.ti_lid, 0);
295 }
296
297 /* Convert an LWP ID into a POSIX or Solaris thread ID. If LWP_ID
298 doesn't exists, that's an error.
299
300 NOTE: This function probably shouldn't call error(). */
301
302 static ptid_t
303 lwp_to_thread (ptid_t lwp)
304 {
305 td_thrinfo_t ti;
306 td_thrhandle_t th;
307 td_err_e val;
308
309 if (ptid_tid_p (lwp))
310 return lwp; /* It's already a thread ID. */
311
312 /* It's an LWP. Convert it to a thread ID. */
313
314 if (!target_thread_alive (lwp))
315 return pid_to_ptid (-1); /* Must be a defunct LPW. */
316
317 val = p_td_ta_map_lwp2thr (main_ta, ptid_get_lwp (lwp), &th);
318 if (val == TD_NOTHR)
319 return pid_to_ptid (-1); /* Thread must have terminated. */
320 else if (val != TD_OK)
321 error (_("lwp_to_thread: td_ta_map_lwp2thr: %s."), td_err_string (val));
322
323 val = p_td_thr_validate (&th);
324 if (val == TD_NOTHR)
325 return lwp; /* Unknown to libthread; just return LPW, */
326 else if (val != TD_OK)
327 error (_("lwp_to_thread: td_thr_validate: %s."), td_err_string (val));
328
329 val = p_td_thr_get_info (&th, &ti);
330 if (val == TD_NOTHR)
331 return pid_to_ptid (-1); /* Thread must have terminated. */
332 else if (val != TD_OK)
333 error (_("lwp_to_thread: td_thr_get_info: %s."), td_err_string (val));
334
335 return ptid_build (ptid_get_pid (lwp), 0 , ti.ti_tid);
336 }
337 \f
338
339 /* Most target vector functions from here on actually just pass
340 through to the layer beneath, as they don't need to do anything
341 specific for threads. */
342
343 /* Take a program previously attached to and detaches it. The program
344 resumes execution and will no longer stop on signals, etc. We'd
345 better not have left any breakpoints in the program or it'll die
346 when it hits one. For this to work, it may be necessary for the
347 process to have been previously attached. It *might* work if the
348 program was started via the normal ptrace (PTRACE_TRACEME). */
349
350 static void
351 sol_thread_detach (struct target_ops *ops, const char *args, int from_tty)
352 {
353 struct target_ops *beneath = find_target_beneath (ops);
354
355 sol_thread_active = 0;
356 inferior_ptid = pid_to_ptid (ptid_get_pid (main_ph.ptid));
357 unpush_target (ops);
358 beneath->to_detach (beneath, args, from_tty);
359 }
360
361 /* Resume execution of process PTID. If STEP is nozero, then just
362 single step it. If SIGNAL is nonzero, restart it with that signal
363 activated. We may have to convert PTID from a thread ID to an LWP
364 ID for procfs. */
365
366 static void
367 sol_thread_resume (struct target_ops *ops,
368 ptid_t ptid, int step, enum gdb_signal signo)
369 {
370 struct cleanup *old_chain;
371 struct target_ops *beneath = find_target_beneath (ops);
372
373 old_chain = save_inferior_ptid ();
374
375 inferior_ptid = thread_to_lwp (inferior_ptid, ptid_get_pid (main_ph.ptid));
376 if (ptid_get_pid (inferior_ptid) == -1)
377 inferior_ptid = procfs_first_available ();
378
379 if (ptid_get_pid (ptid) != -1)
380 {
381 ptid_t save_ptid = ptid;
382
383 ptid = thread_to_lwp (ptid, -2);
384 if (ptid_get_pid (ptid) == -2) /* Inactive thread. */
385 error (_("This version of Solaris can't start inactive threads."));
386 if (info_verbose && ptid_get_pid (ptid) == -1)
387 warning (_("Specified thread %ld seems to have terminated"),
388 ptid_get_tid (save_ptid));
389 }
390
391 beneath->to_resume (beneath, ptid, step, signo);
392
393 do_cleanups (old_chain);
394 }
395
396 /* Wait for any threads to stop. We may have to convert PTID from a
397 thread ID to an LWP ID, and vice versa on the way out. */
398
399 static ptid_t
400 sol_thread_wait (struct target_ops *ops,
401 ptid_t ptid, struct target_waitstatus *ourstatus, int options)
402 {
403 ptid_t rtnval;
404 ptid_t save_ptid;
405 struct target_ops *beneath = find_target_beneath (ops);
406 struct cleanup *old_chain;
407
408 save_ptid = inferior_ptid;
409 old_chain = save_inferior_ptid ();
410
411 inferior_ptid = thread_to_lwp (inferior_ptid, ptid_get_pid (main_ph.ptid));
412 if (ptid_get_pid (inferior_ptid) == -1)
413 inferior_ptid = procfs_first_available ();
414
415 if (ptid_get_pid (ptid) != -1)
416 {
417 ptid_t save_ptid = ptid;
418
419 ptid = thread_to_lwp (ptid, -2);
420 if (ptid_get_pid (ptid) == -2) /* Inactive thread. */
421 error (_("This version of Solaris can't start inactive threads."));
422 if (info_verbose && ptid_get_pid (ptid) == -1)
423 warning (_("Specified thread %ld seems to have terminated"),
424 ptid_get_tid (save_ptid));
425 }
426
427 rtnval = beneath->to_wait (beneath, ptid, ourstatus, options);
428
429 if (ourstatus->kind != TARGET_WAITKIND_EXITED)
430 {
431 /* Map the LWP of interest back to the appropriate thread ID. */
432 rtnval = lwp_to_thread (rtnval);
433 if (ptid_get_pid (rtnval) == -1)
434 rtnval = save_ptid;
435
436 /* See if we have a new thread. */
437 if (ptid_tid_p (rtnval)
438 && !ptid_equal (rtnval, save_ptid)
439 && (!in_thread_list (rtnval)
440 || is_exited (rtnval)))
441 add_thread (rtnval);
442 }
443
444 /* During process initialization, we may get here without the thread
445 package being initialized, since that can only happen after we've
446 found the shared libs. */
447
448 do_cleanups (old_chain);
449
450 return rtnval;
451 }
452
453 static void
454 sol_thread_fetch_registers (struct target_ops *ops,
455 struct regcache *regcache, int regnum)
456 {
457 thread_t thread;
458 td_thrhandle_t thandle;
459 td_err_e val;
460 prgregset_t gregset;
461 prfpregset_t fpregset;
462 gdb_gregset_t *gregset_p = &gregset;
463 gdb_fpregset_t *fpregset_p = &fpregset;
464 struct target_ops *beneath = find_target_beneath (ops);
465 ptid_t ptid = regcache_get_ptid (regcache);
466
467 if (!ptid_tid_p (ptid))
468 {
469 /* It's an LWP; pass the request on to the layer beneath. */
470 beneath->to_fetch_registers (beneath, regcache, regnum);
471 return;
472 }
473
474 /* Solaris thread: convert PTID into a td_thrhandle_t. */
475 thread = ptid_get_tid (ptid);
476 if (thread == 0)
477 error (_("sol_thread_fetch_registers: thread == 0"));
478
479 val = p_td_ta_map_id2thr (main_ta, thread, &thandle);
480 if (val != TD_OK)
481 error (_("sol_thread_fetch_registers: td_ta_map_id2thr: %s"),
482 td_err_string (val));
483
484 /* Get the general-purpose registers. */
485
486 val = p_td_thr_getgregs (&thandle, gregset);
487 if (val != TD_OK && val != TD_PARTIALREG)
488 error (_("sol_thread_fetch_registers: td_thr_getgregs %s"),
489 td_err_string (val));
490
491 /* For SPARC, TD_PARTIALREG means that only %i0...%i7, %l0..%l7, %pc
492 and %sp are saved (by a thread context switch). */
493
494 /* And, now the floating-point registers. */
495
496 val = p_td_thr_getfpregs (&thandle, &fpregset);
497 if (val != TD_OK && val != TD_NOFPREGS)
498 error (_("sol_thread_fetch_registers: td_thr_getfpregs %s"),
499 td_err_string (val));
500
501 /* Note that we must call supply_gregset and supply_fpregset *after*
502 calling the td routines because the td routines call ps_lget*
503 which affect the values stored in the registers array. */
504
505 supply_gregset (regcache, (const gdb_gregset_t *) gregset_p);
506 supply_fpregset (regcache, (const gdb_fpregset_t *) fpregset_p);
507 }
508
509 static void
510 sol_thread_store_registers (struct target_ops *ops,
511 struct regcache *regcache, int regnum)
512 {
513 thread_t thread;
514 td_thrhandle_t thandle;
515 td_err_e val;
516 prgregset_t gregset;
517 prfpregset_t fpregset;
518 ptid_t ptid = regcache_get_ptid (regcache);
519
520 if (!ptid_tid_p (ptid))
521 {
522 struct target_ops *beneath = find_target_beneath (ops);
523
524 /* It's an LWP; pass the request on to the layer beneath. */
525 beneath->to_store_registers (beneath, regcache, regnum);
526 return;
527 }
528
529 /* Solaris thread: convert PTID into a td_thrhandle_t. */
530 thread = ptid_get_tid (ptid);
531
532 val = p_td_ta_map_id2thr (main_ta, thread, &thandle);
533 if (val != TD_OK)
534 error (_("sol_thread_store_registers: td_ta_map_id2thr %s"),
535 td_err_string (val));
536
537 if (regnum != -1)
538 {
539 val = p_td_thr_getgregs (&thandle, gregset);
540 if (val != TD_OK)
541 error (_("sol_thread_store_registers: td_thr_getgregs %s"),
542 td_err_string (val));
543 val = p_td_thr_getfpregs (&thandle, &fpregset);
544 if (val != TD_OK)
545 error (_("sol_thread_store_registers: td_thr_getfpregs %s"),
546 td_err_string (val));
547 }
548
549 fill_gregset (regcache, (gdb_gregset_t *) &gregset, regnum);
550 fill_fpregset (regcache, (gdb_fpregset_t *) &fpregset, regnum);
551
552 val = p_td_thr_setgregs (&thandle, gregset);
553 if (val != TD_OK)
554 error (_("sol_thread_store_registers: td_thr_setgregs %s"),
555 td_err_string (val));
556 val = p_td_thr_setfpregs (&thandle, &fpregset);
557 if (val != TD_OK)
558 error (_("sol_thread_store_registers: td_thr_setfpregs %s"),
559 td_err_string (val));
560 }
561
562 /* Perform partial transfers on OBJECT. See target_read_partial and
563 target_write_partial for details of each variant. One, and only
564 one, of readbuf or writebuf must be non-NULL. */
565
566 static enum target_xfer_status
567 sol_thread_xfer_partial (struct target_ops *ops, enum target_object object,
568 const char *annex, gdb_byte *readbuf,
569 const gdb_byte *writebuf,
570 ULONGEST offset, ULONGEST len, ULONGEST *xfered_len)
571 {
572 enum target_xfer_status retval;
573 struct cleanup *old_chain;
574 struct target_ops *beneath = find_target_beneath (ops);
575
576 old_chain = save_inferior_ptid ();
577
578 if (ptid_tid_p (inferior_ptid) || !target_thread_alive (inferior_ptid))
579 {
580 /* It's either a thread or an LWP that isn't alive. Any live
581 LWP will do so use the first available.
582
583 NOTE: We don't need to call switch_to_thread; we're just
584 reading memory. */
585 inferior_ptid = procfs_first_available ();
586 }
587
588 retval = beneath->to_xfer_partial (beneath, object, annex, readbuf,
589 writebuf, offset, len, xfered_len);
590
591 do_cleanups (old_chain);
592
593 return retval;
594 }
595
596 static void
597 check_for_thread_db (void)
598 {
599 td_err_e err;
600 ptid_t ptid;
601
602 /* Don't attempt to use thread_db for remote targets. */
603 if (!(target_can_run (&current_target) || core_bfd))
604 return;
605
606 /* Do nothing if we couldn't load libthread_db.so.1. */
607 if (p_td_ta_new == NULL)
608 return;
609
610 if (sol_thread_active)
611 /* Nothing to do. The thread library was already detected and the
612 target vector was already activated. */
613 return;
614
615 /* Now, initialize libthread_db. This needs to be done after the
616 shared libraries are located because it needs information from
617 the user's thread library. */
618
619 err = p_td_init ();
620 if (err != TD_OK)
621 {
622 warning (_("sol_thread_new_objfile: td_init: %s"), td_err_string (err));
623 return;
624 }
625
626 /* Now attempt to open a connection to the thread library. */
627 err = p_td_ta_new (&main_ph, &main_ta);
628 switch (err)
629 {
630 case TD_NOLIBTHREAD:
631 /* No thread library was detected. */
632 break;
633
634 case TD_OK:
635 printf_unfiltered (_("[Thread debugging using libthread_db enabled]\n"));
636
637 /* The thread library was detected. Activate the sol_thread target. */
638 push_target (&sol_thread_ops);
639 sol_thread_active = 1;
640
641 main_ph.ptid = inferior_ptid; /* Save for xfer_memory. */
642 ptid = lwp_to_thread (inferior_ptid);
643 if (ptid_get_pid (ptid) != -1)
644 inferior_ptid = ptid;
645
646 target_update_thread_list ();
647 break;
648
649 default:
650 warning (_("Cannot initialize thread debugging library: %s"),
651 td_err_string (err));
652 break;
653 }
654 }
655
656 /* This routine is called whenever a new symbol table is read in, or
657 when all symbol tables are removed. libthread_db can only be
658 initialized when it finds the right variables in libthread.so.
659 Since it's a shared library, those variables don't show up until
660 the library gets mapped and the symbol table is read in. */
661
662 static void
663 sol_thread_new_objfile (struct objfile *objfile)
664 {
665 if (objfile != NULL)
666 check_for_thread_db ();
667 }
668
669 /* Clean up after the inferior dies. */
670
671 static void
672 sol_thread_mourn_inferior (struct target_ops *ops)
673 {
674 struct target_ops *beneath = find_target_beneath (ops);
675
676 sol_thread_active = 0;
677
678 unpush_target (ops);
679
680 beneath->to_mourn_inferior (beneath);
681 }
682
683 /* Return true if PTID is still active in the inferior. */
684
685 static int
686 sol_thread_alive (struct target_ops *ops, ptid_t ptid)
687 {
688 if (ptid_tid_p (ptid))
689 {
690 /* It's a (user-level) thread. */
691 td_err_e val;
692 td_thrhandle_t th;
693 int pid;
694
695 pid = ptid_get_tid (ptid);
696 if ((val = p_td_ta_map_id2thr (main_ta, pid, &th)) != TD_OK)
697 return 0; /* Thread not found. */
698 if ((val = p_td_thr_validate (&th)) != TD_OK)
699 return 0; /* Thread not valid. */
700 return 1; /* Known thread. */
701 }
702 else
703 {
704 struct target_ops *beneath = find_target_beneath (ops);
705
706 /* It's an LPW; pass the request on to the layer below. */
707 return beneath->to_thread_alive (beneath, ptid);
708 }
709 }
710
711 \f
712 /* These routines implement the lower half of the thread_db interface,
713 i.e. the ps_* routines. */
714
715 /* Various versions of <proc_service.h> have slightly different
716 function prototypes. In particular, we have
717
718 NEWER OLDER
719 struct ps_prochandle * const struct ps_prochandle *
720 void* char*
721 const void* char*
722 int size_t
723
724 Which one you have depends on the Solaris version and what patches
725 you've applied. On the theory that there are only two major
726 variants, we have configure check the prototype of ps_pdwrite (),
727 and use that info to make appropriate typedefs here. */
728
729 #ifdef PROC_SERVICE_IS_OLD
730 typedef const struct ps_prochandle *gdb_ps_prochandle_t;
731 typedef char *gdb_ps_read_buf_t;
732 typedef char *gdb_ps_write_buf_t;
733 typedef int gdb_ps_size_t;
734 typedef psaddr_t gdb_ps_addr_t;
735 #else
736 typedef struct ps_prochandle *gdb_ps_prochandle_t;
737 typedef void *gdb_ps_read_buf_t;
738 typedef const void *gdb_ps_write_buf_t;
739 typedef size_t gdb_ps_size_t;
740 typedef psaddr_t gdb_ps_addr_t;
741 #endif
742
743 /* The next four routines are called by libthread_db to tell us to
744 stop and stop a particular process or lwp. Since GDB ensures that
745 these are all stopped by the time we call anything in thread_db,
746 these routines need to do nothing. */
747
748 /* Process stop. */
749
750 ps_err_e
751 ps_pstop (gdb_ps_prochandle_t ph)
752 {
753 return PS_OK;
754 }
755
756 /* Process continue. */
757
758 ps_err_e
759 ps_pcontinue (gdb_ps_prochandle_t ph)
760 {
761 return PS_OK;
762 }
763
764 /* LWP stop. */
765
766 ps_err_e
767 ps_lstop (gdb_ps_prochandle_t ph, lwpid_t lwpid)
768 {
769 return PS_OK;
770 }
771
772 /* LWP continue. */
773
774 ps_err_e
775 ps_lcontinue (gdb_ps_prochandle_t ph, lwpid_t lwpid)
776 {
777 return PS_OK;
778 }
779
780 /* Looks up the symbol LD_SYMBOL_NAME in the debugger's symbol table. */
781
782 ps_err_e
783 ps_pglobal_lookup (gdb_ps_prochandle_t ph, const char *ld_object_name,
784 const char *ld_symbol_name, gdb_ps_addr_t *ld_symbol_addr)
785 {
786 struct bound_minimal_symbol ms;
787
788 ms = lookup_minimal_symbol (ld_symbol_name, NULL, NULL);
789 if (!ms.minsym)
790 return PS_NOSYM;
791
792 *ld_symbol_addr = BMSYMBOL_VALUE_ADDRESS (ms);
793 return PS_OK;
794 }
795
796 /* Common routine for reading and writing memory. */
797
798 static ps_err_e
799 rw_common (int dowrite, const struct ps_prochandle *ph, gdb_ps_addr_t addr,
800 gdb_byte *buf, int size)
801 {
802 int ret;
803 struct cleanup *old_chain;
804
805 old_chain = save_inferior_ptid ();
806
807 if (ptid_tid_p (inferior_ptid) || !target_thread_alive (inferior_ptid))
808 {
809 /* It's either a thread or an LWP that isn't alive. Any live
810 LWP will do so use the first available.
811
812 NOTE: We don't need to call switch_to_thread; we're just
813 reading memory. */
814 inferior_ptid = procfs_first_available ();
815 }
816
817 #if defined (__sparcv9)
818 /* For Sparc64 cross Sparc32, make sure the address has not been
819 accidentally sign-extended (or whatever) to beyond 32 bits. */
820 if (bfd_get_arch_size (exec_bfd) == 32)
821 addr &= 0xffffffff;
822 #endif
823
824 if (dowrite)
825 ret = target_write_memory (addr, (gdb_byte *) buf, size);
826 else
827 ret = target_read_memory (addr, (gdb_byte *) buf, size);
828
829 do_cleanups (old_chain);
830
831 return (ret == 0 ? PS_OK : PS_ERR);
832 }
833
834 /* Copies SIZE bytes from target process .data segment to debugger memory. */
835
836 ps_err_e
837 ps_pdread (gdb_ps_prochandle_t ph, gdb_ps_addr_t addr,
838 gdb_ps_read_buf_t buf, gdb_ps_size_t size)
839 {
840 return rw_common (0, ph, addr, (gdb_byte *) buf, size);
841 }
842
843 /* Copies SIZE bytes from debugger memory .data segment to target process. */
844
845 ps_err_e
846 ps_pdwrite (gdb_ps_prochandle_t ph, gdb_ps_addr_t addr,
847 gdb_ps_write_buf_t buf, gdb_ps_size_t size)
848 {
849 return rw_common (1, ph, addr, (gdb_byte *) buf, size);
850 }
851
852 /* Copies SIZE bytes from target process .text segment to debugger memory. */
853
854 ps_err_e
855 ps_ptread (gdb_ps_prochandle_t ph, gdb_ps_addr_t addr,
856 gdb_ps_read_buf_t buf, gdb_ps_size_t size)
857 {
858 return rw_common (0, ph, addr, (gdb_byte *) buf, size);
859 }
860
861 /* Copies SIZE bytes from debugger memory .text segment to target process. */
862
863 ps_err_e
864 ps_ptwrite (gdb_ps_prochandle_t ph, gdb_ps_addr_t addr,
865 gdb_ps_write_buf_t buf, gdb_ps_size_t size)
866 {
867 return rw_common (1, ph, addr, (gdb_byte *) buf, size);
868 }
869
870 /* Get general-purpose registers for LWP. */
871
872 ps_err_e
873 ps_lgetregs (gdb_ps_prochandle_t ph, lwpid_t lwpid, prgregset_t gregset)
874 {
875 ptid_t ptid = ptid_build (ptid_get_pid (inferior_ptid), lwpid, 0);
876 struct regcache *regcache
877 = get_thread_arch_regcache (ptid, target_gdbarch ());
878
879 target_fetch_registers (regcache, -1);
880 fill_gregset (regcache, (gdb_gregset_t *) gregset, -1);
881
882 return PS_OK;
883 }
884
885 /* Set general-purpose registers for LWP. */
886
887 ps_err_e
888 ps_lsetregs (gdb_ps_prochandle_t ph, lwpid_t lwpid,
889 const prgregset_t gregset)
890 {
891 ptid_t ptid = ptid_build (ptid_get_pid (inferior_ptid), lwpid, 0);
892 struct regcache *regcache
893 = get_thread_arch_regcache (ptid, target_gdbarch ());
894
895 supply_gregset (regcache, (const gdb_gregset_t *) gregset);
896 target_store_registers (regcache, -1);
897
898 return PS_OK;
899 }
900
901 /* Log a message (sends to gdb_stderr). */
902
903 void
904 ps_plog (const char *fmt, ...)
905 {
906 va_list args;
907
908 va_start (args, fmt);
909
910 vfprintf_filtered (gdb_stderr, fmt, args);
911 }
912
913 /* Get size of extra register set. Currently a noop. */
914
915 ps_err_e
916 ps_lgetxregsize (gdb_ps_prochandle_t ph, lwpid_t lwpid, int *xregsize)
917 {
918 return PS_OK;
919 }
920
921 /* Get extra register set. Currently a noop. */
922
923 ps_err_e
924 ps_lgetxregs (gdb_ps_prochandle_t ph, lwpid_t lwpid, caddr_t xregset)
925 {
926 return PS_OK;
927 }
928
929 /* Set extra register set. Currently a noop. */
930
931 ps_err_e
932 ps_lsetxregs (gdb_ps_prochandle_t ph, lwpid_t lwpid, caddr_t xregset)
933 {
934 return PS_OK;
935 }
936
937 /* Get floating-point registers for LWP. */
938
939 ps_err_e
940 ps_lgetfpregs (gdb_ps_prochandle_t ph, lwpid_t lwpid,
941 prfpregset_t *fpregset)
942 {
943 ptid_t ptid = ptid_build (ptid_get_pid (inferior_ptid), lwpid, 0);
944 struct regcache *regcache
945 = get_thread_arch_regcache (ptid, target_gdbarch ());
946
947 target_fetch_registers (regcache, -1);
948 fill_fpregset (regcache, (gdb_fpregset_t *) fpregset, -1);
949
950 return PS_OK;
951 }
952
953 /* Set floating-point regs for LWP. */
954
955 ps_err_e
956 ps_lsetfpregs (gdb_ps_prochandle_t ph, lwpid_t lwpid,
957 const prfpregset_t * fpregset)
958 {
959 ptid_t ptid = ptid_build (ptid_get_pid (inferior_ptid), lwpid, 0);
960 struct regcache *regcache
961 = get_thread_arch_regcache (ptid, target_gdbarch ());
962
963 supply_fpregset (regcache, (const gdb_fpregset_t *) fpregset);
964 target_store_registers (regcache, -1);
965
966 return PS_OK;
967 }
968
969 #ifdef PR_MODEL_LP64
970 /* Identify process as 32-bit or 64-bit. At the moment we're using
971 BFD to do this. There might be a more Solaris-specific
972 (e.g. procfs) method, but this ought to work. */
973
974 ps_err_e
975 ps_pdmodel (gdb_ps_prochandle_t ph, int *data_model)
976 {
977 if (exec_bfd == 0)
978 *data_model = PR_MODEL_UNKNOWN;
979 else if (bfd_get_arch_size (exec_bfd) == 32)
980 *data_model = PR_MODEL_ILP32;
981 else
982 *data_model = PR_MODEL_LP64;
983
984 return PS_OK;
985 }
986 #endif /* PR_MODEL_LP64 */
987
988 #if (defined(__i386__) || defined(__x86_64__)) && defined (sun)
989
990 /* Reads the local descriptor table of a LWP.
991
992 This function is necessary on x86-solaris only. Without it, the loading
993 of libthread_db would fail because of ps_lgetLDT being undefined. */
994
995 ps_err_e
996 ps_lgetLDT (gdb_ps_prochandle_t ph, lwpid_t lwpid,
997 struct ssd *pldt)
998 {
999 /* NOTE: only used on Solaris, therefore OK to refer to procfs.c. */
1000 struct ssd *ret;
1001
1002 /* FIXME: can't I get the process ID from the prochandle or
1003 something? */
1004
1005 if (ptid_get_pid (inferior_ptid) <= 0 || lwpid <= 0)
1006 return PS_BADLID;
1007
1008 ret = procfs_find_LDT_entry (ptid_build (ptid_get_pid (inferior_ptid),
1009 lwpid, 0));
1010 if (ret)
1011 {
1012 memcpy (pldt, ret, sizeof (struct ssd));
1013 return PS_OK;
1014 }
1015 else
1016 /* LDT not found. */
1017 return PS_ERR;
1018 }
1019 #endif
1020 \f
1021
1022 /* Convert PTID to printable form. */
1023
1024 static const char *
1025 solaris_pid_to_str (struct target_ops *ops, ptid_t ptid)
1026 {
1027 static char buf[100];
1028
1029 if (ptid_tid_p (ptid))
1030 {
1031 ptid_t lwp;
1032
1033 lwp = thread_to_lwp (ptid, -2);
1034
1035 if (ptid_get_pid (lwp) == -1)
1036 xsnprintf (buf, sizeof (buf), "Thread %ld (defunct)",
1037 ptid_get_tid (ptid));
1038 else if (ptid_get_pid (lwp) != -2)
1039 xsnprintf (buf, sizeof (buf), "Thread %ld (LWP %ld)",
1040 ptid_get_tid (ptid), ptid_get_lwp (lwp));
1041 else
1042 xsnprintf (buf, sizeof (buf), "Thread %ld ",
1043 ptid_get_tid (ptid));
1044 }
1045 else if (ptid_get_lwp (ptid) != 0)
1046 xsnprintf (buf, sizeof (buf), "LWP %ld ", ptid_get_lwp (ptid));
1047 else
1048 xsnprintf (buf, sizeof (buf), "process %d ", ptid_get_pid (ptid));
1049
1050 return buf;
1051 }
1052 \f
1053
1054 /* Worker bee for update_thread_list. Callback function that gets
1055 called once per user-level thread (i.e. not for LWP's). */
1056
1057 static int
1058 sol_update_thread_list_callback (const td_thrhandle_t *th, void *ignored)
1059 {
1060 td_err_e retval;
1061 td_thrinfo_t ti;
1062 ptid_t ptid;
1063
1064 retval = p_td_thr_get_info (th, &ti);
1065 if (retval != TD_OK)
1066 return -1;
1067
1068 ptid = ptid_build (ptid_get_pid (inferior_ptid), 0, ti.ti_tid);
1069 if (!in_thread_list (ptid) || is_exited (ptid))
1070 add_thread (ptid);
1071
1072 return 0;
1073 }
1074
1075 static void
1076 sol_update_thread_list (struct target_ops *ops)
1077 {
1078 struct target_ops *beneath = find_target_beneath (ops);
1079
1080 /* Delete dead threads. */
1081 prune_threads ();
1082
1083 /* Find any new LWP's. */
1084 beneath->to_update_thread_list (beneath);
1085
1086 /* Then find any new user-level threads. */
1087 p_td_ta_thr_iter (main_ta, sol_update_thread_list_callback, (void *) 0,
1088 TD_THR_ANY_STATE, TD_THR_LOWEST_PRIORITY,
1089 TD_SIGNO_MASK, TD_THR_ANY_USER_FLAGS);
1090 }
1091
1092 /* Worker bee for the "info sol-thread" command. This is a callback
1093 function that gets called once for each Solaris user-level thread
1094 (i.e. not for LWPs) in the inferior. Print anything interesting
1095 that we can think of. */
1096
1097 static int
1098 info_cb (const td_thrhandle_t *th, void *s)
1099 {
1100 td_err_e ret;
1101 td_thrinfo_t ti;
1102
1103 ret = p_td_thr_get_info (th, &ti);
1104 if (ret == TD_OK)
1105 {
1106 printf_filtered ("%s thread #%d, lwp %d, ",
1107 ti.ti_type == TD_THR_SYSTEM ? "system" : "user ",
1108 ti.ti_tid, ti.ti_lid);
1109 switch (ti.ti_state)
1110 {
1111 default:
1112 case TD_THR_UNKNOWN:
1113 printf_filtered ("<unknown state>");
1114 break;
1115 case TD_THR_STOPPED:
1116 printf_filtered ("(stopped)");
1117 break;
1118 case TD_THR_RUN:
1119 printf_filtered ("(run) ");
1120 break;
1121 case TD_THR_ACTIVE:
1122 printf_filtered ("(active) ");
1123 break;
1124 case TD_THR_ZOMBIE:
1125 printf_filtered ("(zombie) ");
1126 break;
1127 case TD_THR_SLEEP:
1128 printf_filtered ("(asleep) ");
1129 break;
1130 case TD_THR_STOPPED_ASLEEP:
1131 printf_filtered ("(stopped asleep)");
1132 break;
1133 }
1134 /* Print thr_create start function. */
1135 if (ti.ti_startfunc != 0)
1136 {
1137 const struct bound_minimal_symbol msym
1138 = lookup_minimal_symbol_by_pc (ti.ti_startfunc);
1139
1140 printf_filtered (" startfunc=%s",
1141 msym.minsym
1142 ? MSYMBOL_PRINT_NAME (msym.minsym)
1143 : paddress (target_gdbarch (), ti.ti_startfunc));
1144 }
1145
1146 /* If thread is asleep, print function that went to sleep. */
1147 if (ti.ti_state == TD_THR_SLEEP)
1148 {
1149 const struct bound_minimal_symbol msym
1150 = lookup_minimal_symbol_by_pc (ti.ti_pc);
1151
1152 printf_filtered (" sleepfunc=%s",
1153 msym.minsym
1154 ? MSYMBOL_PRINT_NAME (msym.minsym)
1155 : paddress (target_gdbarch (), ti.ti_pc));
1156 }
1157
1158 printf_filtered ("\n");
1159 }
1160 else
1161 warning (_("info sol-thread: failed to get info for thread."));
1162
1163 return 0;
1164 }
1165
1166 /* List some state about each Solaris user-level thread in the
1167 inferior. */
1168
1169 static void
1170 info_solthreads (char *args, int from_tty)
1171 {
1172 p_td_ta_thr_iter (main_ta, info_cb, args,
1173 TD_THR_ANY_STATE, TD_THR_LOWEST_PRIORITY,
1174 TD_SIGNO_MASK, TD_THR_ANY_USER_FLAGS);
1175 }
1176
1177 /* Callback routine used to find a thread based on the TID part of
1178 its PTID. */
1179
1180 static int
1181 thread_db_find_thread_from_tid (struct thread_info *thread, void *data)
1182 {
1183 long *tid = (long *) data;
1184
1185 if (ptid_get_tid (thread->ptid) == *tid)
1186 return 1;
1187
1188 return 0;
1189 }
1190
1191 static ptid_t
1192 sol_get_ada_task_ptid (struct target_ops *self, long lwp, long thread)
1193 {
1194 struct thread_info *thread_info =
1195 iterate_over_threads (thread_db_find_thread_from_tid, &thread);
1196
1197 if (thread_info == NULL)
1198 {
1199 /* The list of threads is probably not up to date. Find any
1200 thread that is missing from the list, and try again. */
1201 sol_update_thread_list (&current_target);
1202 thread_info = iterate_over_threads (thread_db_find_thread_from_tid,
1203 &thread);
1204 }
1205
1206 gdb_assert (thread_info != NULL);
1207
1208 return (thread_info->ptid);
1209 }
1210
1211 static void
1212 init_sol_thread_ops (void)
1213 {
1214 sol_thread_ops.to_shortname = "solaris-threads";
1215 sol_thread_ops.to_longname = "Solaris threads and pthread.";
1216 sol_thread_ops.to_doc = "Solaris threads and pthread support.";
1217 sol_thread_ops.to_detach = sol_thread_detach;
1218 sol_thread_ops.to_resume = sol_thread_resume;
1219 sol_thread_ops.to_wait = sol_thread_wait;
1220 sol_thread_ops.to_fetch_registers = sol_thread_fetch_registers;
1221 sol_thread_ops.to_store_registers = sol_thread_store_registers;
1222 sol_thread_ops.to_xfer_partial = sol_thread_xfer_partial;
1223 sol_thread_ops.to_mourn_inferior = sol_thread_mourn_inferior;
1224 sol_thread_ops.to_thread_alive = sol_thread_alive;
1225 sol_thread_ops.to_pid_to_str = solaris_pid_to_str;
1226 sol_thread_ops.to_update_thread_list = sol_update_thread_list;
1227 sol_thread_ops.to_stratum = thread_stratum;
1228 sol_thread_ops.to_get_ada_task_ptid = sol_get_ada_task_ptid;
1229 sol_thread_ops.to_magic = OPS_MAGIC;
1230 }
1231
1232 /* Silence -Wmissing-prototypes. */
1233 extern void _initialize_sol_thread (void);
1234
1235 void
1236 _initialize_sol_thread (void)
1237 {
1238 void *dlhandle;
1239
1240 init_sol_thread_ops ();
1241
1242 dlhandle = dlopen ("libthread_db.so.1", RTLD_NOW);
1243 if (!dlhandle)
1244 goto die;
1245
1246 #define resolve(X) \
1247 if (!(p_##X = (X ## _ftype *) dlsym (dlhandle, #X))) \
1248 goto die;
1249
1250 resolve (td_log);
1251 resolve (td_ta_new);
1252 resolve (td_ta_delete);
1253 resolve (td_init);
1254 resolve (td_ta_get_ph);
1255 resolve (td_ta_get_nthreads);
1256 resolve (td_ta_tsd_iter);
1257 resolve (td_ta_thr_iter);
1258 resolve (td_thr_validate);
1259 resolve (td_thr_tsd);
1260 resolve (td_thr_get_info);
1261 resolve (td_thr_getfpregs);
1262 resolve (td_thr_getxregsize);
1263 resolve (td_thr_getxregs);
1264 resolve (td_thr_sigsetmask);
1265 resolve (td_thr_setprio);
1266 resolve (td_thr_setsigpending);
1267 resolve (td_thr_setfpregs);
1268 resolve (td_thr_setxregs);
1269 resolve (td_ta_map_id2thr);
1270 resolve (td_ta_map_lwp2thr);
1271 resolve (td_thr_getgregs);
1272 resolve (td_thr_setgregs);
1273
1274 complete_target_initialization (&sol_thread_ops);
1275
1276 add_cmd ("sol-threads", class_maintenance, info_solthreads,
1277 _("Show info on Solaris user threads."), &maintenanceinfolist);
1278
1279 /* Hook into new_objfile notification. */
1280 observer_attach_new_objfile (sol_thread_new_objfile);
1281 return;
1282
1283 die:
1284 fprintf_unfiltered (gdb_stderr, "\
1285 [GDB will not be able to debug user-mode threads: %s]\n", dlerror ());
1286
1287 if (dlhandle)
1288 dlclose (dlhandle);
1289
1290 return;
1291 }
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