0ad915761ab1779316b609374810aa5178244c71
[deliverable/binutils-gdb.git] / gdb / inf-ttrace.c
1 /* Low-level child interface to ttrace.
2
3 Copyright (C) 2004, 2005, 2006, 2007, 2008 Free Software Foundation, Inc.
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
19
20 #include "defs.h"
21
22 /* The ttrace(2) system call didn't exist before HP-UX 10.30. Don't
23 try to compile this code unless we have it. */
24 #ifdef HAVE_TTRACE
25
26 #include "command.h"
27 #include "gdbcore.h"
28 #include "gdbthread.h"
29 #include "inferior.h"
30 #include "target.h"
31
32 #include "gdb_assert.h"
33 #include "gdb_string.h"
34 #include <sys/mman.h>
35 #include <sys/ttrace.h>
36 #include <signal.h>
37
38 #include "inf-child.h"
39 #include "inf-ttrace.h"
40
41 /* HACK: Save the ttrace ops returned by inf_ttrace_target. */
42 static struct target_ops *ttrace_ops_hack;
43 \f
44
45 /* HP-UX uses a threading model where each user-space thread
46 corresponds to a kernel thread. These kernel threads are called
47 lwps. The ttrace(2) interface gives us almost full control over
48 the threads, which makes it very easy to support them in GDB. We
49 identify the threads by process ID and lwp ID. The ttrace(2) also
50 provides us with a thread's user ID (in the `tts_user_tid' member
51 of `ttstate_t') but we don't use that (yet) as it isn't necessary
52 to uniquely label the thread. */
53
54 /* Number of active lwps. */
55 static int inf_ttrace_num_lwps;
56 \f
57
58 /* On HP-UX versions that have the ttrace(2) system call, we can
59 implement "hardware" watchpoints by fiddling with the protection of
60 pages in the address space that contain the variable being watched.
61 In order to implement this, we keep a dictionary of pages for which
62 we have changed the protection. */
63
64 struct inf_ttrace_page
65 {
66 CORE_ADDR addr; /* Page address. */
67 int prot; /* Protection. */
68 int refcount; /* Reference count. */
69 struct inf_ttrace_page *next;
70 struct inf_ttrace_page *prev;
71 };
72
73 struct inf_ttrace_page_dict
74 {
75 struct inf_ttrace_page buckets[128];
76 int pagesize; /* Page size. */
77 int count; /* Number of pages in this dictionary. */
78 } inf_ttrace_page_dict;
79
80 struct inf_ttrace_private_thread_info
81 {
82 int dying;
83 };
84
85 /* Number of lwps that are currently in a system call. */
86 static int inf_ttrace_num_lwps_in_syscall;
87
88 /* Flag to indicate whether we should re-enable page protections after
89 the next wait. */
90 static int inf_ttrace_reenable_page_protections;
91
92 /* Enable system call events for process PID. */
93
94 static void
95 inf_ttrace_enable_syscall_events (pid_t pid)
96 {
97 ttevent_t tte;
98 ttstate_t tts;
99
100 gdb_assert (inf_ttrace_num_lwps_in_syscall == 0);
101
102 if (ttrace (TT_PROC_GET_EVENT_MASK, pid, 0,
103 (uintptr_t)&tte, sizeof tte, 0) == -1)
104 perror_with_name (("ttrace"));
105
106 tte.tte_events |= (TTEVT_SYSCALL_ENTRY | TTEVT_SYSCALL_RETURN);
107
108 if (ttrace (TT_PROC_SET_EVENT_MASK, pid, 0,
109 (uintptr_t)&tte, sizeof tte, 0) == -1)
110 perror_with_name (("ttrace"));
111
112 if (ttrace (TT_PROC_GET_FIRST_LWP_STATE, pid, 0,
113 (uintptr_t)&tts, sizeof tts, 0) == -1)
114 perror_with_name (("ttrace"));
115
116 if (tts.tts_flags & TTS_INSYSCALL)
117 inf_ttrace_num_lwps_in_syscall++;
118
119 /* FIXME: Handle multiple threads. */
120 }
121
122 /* Disable system call events for process PID. */
123
124 static void
125 inf_ttrace_disable_syscall_events (pid_t pid)
126 {
127 ttevent_t tte;
128
129 gdb_assert (inf_ttrace_page_dict.count == 0);
130
131 if (ttrace (TT_PROC_GET_EVENT_MASK, pid, 0,
132 (uintptr_t)&tte, sizeof tte, 0) == -1)
133 perror_with_name (("ttrace"));
134
135 tte.tte_events &= ~(TTEVT_SYSCALL_ENTRY | TTEVT_SYSCALL_RETURN);
136
137 if (ttrace (TT_PROC_SET_EVENT_MASK, pid, 0,
138 (uintptr_t)&tte, sizeof tte, 0) == -1)
139 perror_with_name (("ttrace"));
140
141 inf_ttrace_num_lwps_in_syscall = 0;
142 }
143
144 /* Get information about the page at address ADDR for process PID from
145 the dictionary. */
146
147 static struct inf_ttrace_page *
148 inf_ttrace_get_page (pid_t pid, CORE_ADDR addr)
149 {
150 const int num_buckets = ARRAY_SIZE (inf_ttrace_page_dict.buckets);
151 const int pagesize = inf_ttrace_page_dict.pagesize;
152 int bucket;
153 struct inf_ttrace_page *page;
154
155 bucket = (addr / pagesize) % num_buckets;
156 page = &inf_ttrace_page_dict.buckets[bucket];
157 while (page)
158 {
159 if (page->addr == addr)
160 break;
161
162 page = page->next;
163 }
164
165 return page;
166 }
167
168 /* Add the page at address ADDR for process PID to the dictionary. */
169
170 static struct inf_ttrace_page *
171 inf_ttrace_add_page (pid_t pid, CORE_ADDR addr)
172 {
173 const int num_buckets = ARRAY_SIZE (inf_ttrace_page_dict.buckets);
174 const int pagesize = inf_ttrace_page_dict.pagesize;
175 int bucket;
176 struct inf_ttrace_page *page;
177 struct inf_ttrace_page *prev = NULL;
178
179 bucket = (addr / pagesize) % num_buckets;
180 page = &inf_ttrace_page_dict.buckets[bucket];
181 while (page)
182 {
183 if (page->addr == addr)
184 break;
185
186 prev = page;
187 page = page->next;
188 }
189
190 if (!page)
191 {
192 int prot;
193
194 if (ttrace (TT_PROC_GET_MPROTECT, pid, 0,
195 addr, 0, (uintptr_t)&prot) == -1)
196 perror_with_name (("ttrace"));
197
198 page = XMALLOC (struct inf_ttrace_page);
199 page->addr = addr;
200 page->prot = prot;
201 page->refcount = 0;
202 page->next = NULL;
203
204 page->prev = prev;
205 prev->next = page;
206
207 inf_ttrace_page_dict.count++;
208 if (inf_ttrace_page_dict.count == 1)
209 inf_ttrace_enable_syscall_events (pid);
210
211 if (inf_ttrace_num_lwps_in_syscall == 0)
212 {
213 if (ttrace (TT_PROC_SET_MPROTECT, pid, 0,
214 addr, pagesize, prot & ~PROT_WRITE) == -1)
215 perror_with_name (("ttrace"));
216 }
217 }
218
219 return page;
220 }
221
222 /* Insert the page at address ADDR of process PID to the dictionary. */
223
224 static void
225 inf_ttrace_insert_page (pid_t pid, CORE_ADDR addr)
226 {
227 struct inf_ttrace_page *page;
228
229 page = inf_ttrace_get_page (pid, addr);
230 if (!page)
231 page = inf_ttrace_add_page (pid, addr);
232
233 page->refcount++;
234 }
235
236 /* Remove the page at address ADDR of process PID from the dictionary. */
237
238 static void
239 inf_ttrace_remove_page (pid_t pid, CORE_ADDR addr)
240 {
241 const int pagesize = inf_ttrace_page_dict.pagesize;
242 struct inf_ttrace_page *page;
243
244 page = inf_ttrace_get_page (pid, addr);
245 page->refcount--;
246
247 gdb_assert (page->refcount >= 0);
248
249 if (page->refcount == 0)
250 {
251 if (inf_ttrace_num_lwps_in_syscall == 0)
252 {
253 if (ttrace (TT_PROC_SET_MPROTECT, pid, 0,
254 addr, pagesize, page->prot) == -1)
255 perror_with_name (("ttrace"));
256 }
257
258 inf_ttrace_page_dict.count--;
259 if (inf_ttrace_page_dict.count == 0)
260 inf_ttrace_disable_syscall_events (pid);
261
262 page->prev->next = page->next;
263 if (page->next)
264 page->next->prev = page->prev;
265
266 xfree (page);
267 }
268 }
269
270 /* Mask the bits in PROT from the page protections that are currently
271 in the dictionary for process PID. */
272
273 static void
274 inf_ttrace_mask_page_protections (pid_t pid, int prot)
275 {
276 const int num_buckets = ARRAY_SIZE (inf_ttrace_page_dict.buckets);
277 const int pagesize = inf_ttrace_page_dict.pagesize;
278 int bucket;
279
280 for (bucket = 0; bucket < num_buckets; bucket++)
281 {
282 struct inf_ttrace_page *page;
283
284 page = inf_ttrace_page_dict.buckets[bucket].next;
285 while (page)
286 {
287 if (ttrace (TT_PROC_SET_MPROTECT, pid, 0,
288 page->addr, pagesize, page->prot & ~prot) == -1)
289 perror_with_name (("ttrace"));
290
291 page = page->next;
292 }
293 }
294 }
295
296 /* Write-protect the pages in the dictionary for process PID. */
297
298 static void
299 inf_ttrace_enable_page_protections (pid_t pid)
300 {
301 inf_ttrace_mask_page_protections (pid, PROT_WRITE);
302 }
303
304 /* Restore the protection of the pages in the dictionary for process
305 PID. */
306
307 static void
308 inf_ttrace_disable_page_protections (pid_t pid)
309 {
310 inf_ttrace_mask_page_protections (pid, 0);
311 }
312
313 /* Insert a "hardware" watchpoint for LEN bytes at address ADDR of
314 type TYPE. */
315
316 static int
317 inf_ttrace_insert_watchpoint (CORE_ADDR addr, int len, int type)
318 {
319 const int pagesize = inf_ttrace_page_dict.pagesize;
320 pid_t pid = ptid_get_pid (inferior_ptid);
321 CORE_ADDR page_addr;
322 int num_pages;
323 int page;
324
325 gdb_assert (type == hw_write);
326
327 page_addr = (addr / pagesize) * pagesize;
328 num_pages = (len + pagesize - 1) / pagesize;
329
330 for (page = 0; page < num_pages; page++, page_addr += pagesize)
331 inf_ttrace_insert_page (pid, page_addr);
332
333 return 1;
334 }
335
336 /* Remove a "hardware" watchpoint for LEN bytes at address ADDR of
337 type TYPE. */
338
339 static int
340 inf_ttrace_remove_watchpoint (CORE_ADDR addr, int len, int type)
341 {
342 const int pagesize = inf_ttrace_page_dict.pagesize;
343 pid_t pid = ptid_get_pid (inferior_ptid);
344 CORE_ADDR page_addr;
345 int num_pages;
346 int page;
347
348 gdb_assert (type == hw_write);
349
350 page_addr = (addr / pagesize) * pagesize;
351 num_pages = (len + pagesize - 1) / pagesize;
352
353 for (page = 0; page < num_pages; page++, page_addr += pagesize)
354 inf_ttrace_remove_page (pid, page_addr);
355
356 return 1;
357 }
358
359 static int
360 inf_ttrace_can_use_hw_breakpoint (int type, int len, int ot)
361 {
362 return (type == bp_hardware_watchpoint);
363 }
364
365 static int
366 inf_ttrace_region_ok_for_hw_watchpoint (CORE_ADDR addr, int len)
367 {
368 return 1;
369 }
370
371 /* Return non-zero if the current inferior was (potentially) stopped
372 by hitting a "hardware" watchpoint. */
373
374 static int
375 inf_ttrace_stopped_by_watchpoint (void)
376 {
377 pid_t pid = ptid_get_pid (inferior_ptid);
378 lwpid_t lwpid = ptid_get_lwp (inferior_ptid);
379 ttstate_t tts;
380
381 if (inf_ttrace_page_dict.count > 0)
382 {
383 if (ttrace (TT_LWP_GET_STATE, pid, lwpid,
384 (uintptr_t)&tts, sizeof tts, 0) == -1)
385 perror_with_name (("ttrace"));
386
387 if (tts.tts_event == TTEVT_SIGNAL
388 && tts.tts_u.tts_signal.tts_signo == SIGBUS)
389 {
390 const int pagesize = inf_ttrace_page_dict.pagesize;
391 void *addr = tts.tts_u.tts_signal.tts_siginfo.si_addr;
392 CORE_ADDR page_addr = ((uintptr_t)addr / pagesize) * pagesize;
393
394 if (inf_ttrace_get_page (pid, page_addr))
395 return 1;
396 }
397 }
398
399 return 0;
400 }
401 \f
402
403 /* When tracking a vfork(2), we cannot detach from the parent until
404 after the child has called exec(3) or has exited. If we are still
405 attached to the parent, this variable will be set to the process ID
406 of the parent. Otherwise it will be set to zero. */
407 static pid_t inf_ttrace_vfork_ppid = -1;
408
409 static int
410 inf_ttrace_follow_fork (struct target_ops *ops, int follow_child)
411 {
412 pid_t pid, fpid;
413 lwpid_t lwpid, flwpid;
414 ttstate_t tts;
415
416 /* FIXME: kettenis/20050720: This stuff should really be passed as
417 an argument by our caller. */
418 {
419 ptid_t ptid;
420 struct target_waitstatus status;
421
422 get_last_target_status (&ptid, &status);
423 gdb_assert (status.kind == TARGET_WAITKIND_FORKED
424 || status.kind == TARGET_WAITKIND_VFORKED);
425
426 pid = ptid_get_pid (ptid);
427 lwpid = ptid_get_lwp (ptid);
428 }
429
430 /* Get all important details that core GDB doesn't (and shouldn't)
431 know about. */
432 if (ttrace (TT_LWP_GET_STATE, pid, lwpid,
433 (uintptr_t)&tts, sizeof tts, 0) == -1)
434 perror_with_name (("ttrace"));
435
436 gdb_assert (tts.tts_event == TTEVT_FORK || tts.tts_event == TTEVT_VFORK);
437
438 if (tts.tts_u.tts_fork.tts_isparent)
439 {
440 pid = tts.tts_pid;
441 lwpid = tts.tts_lwpid;
442 fpid = tts.tts_u.tts_fork.tts_fpid;
443 flwpid = tts.tts_u.tts_fork.tts_flwpid;
444 }
445 else
446 {
447 pid = tts.tts_u.tts_fork.tts_fpid;
448 lwpid = tts.tts_u.tts_fork.tts_flwpid;
449 fpid = tts.tts_pid;
450 flwpid = tts.tts_lwpid;
451 }
452
453 if (follow_child)
454 {
455 inferior_ptid = ptid_build (fpid, flwpid, 0);
456 detach_breakpoints (pid);
457
458 target_terminal_ours ();
459 fprintf_unfiltered (gdb_stdlog, _("\
460 Attaching after fork to child process %ld.\n"), (long)fpid);
461 }
462 else
463 {
464 inferior_ptid = ptid_build (pid, lwpid, 0);
465 detach_breakpoints (fpid);
466
467 target_terminal_ours ();
468 fprintf_unfiltered (gdb_stdlog, _("\
469 Detaching after fork from child process %ld.\n"), (long)fpid);
470 }
471
472 if (tts.tts_event == TTEVT_VFORK)
473 {
474 gdb_assert (!tts.tts_u.tts_fork.tts_isparent);
475
476 if (follow_child)
477 {
478 /* We can't detach from the parent yet. */
479 inf_ttrace_vfork_ppid = pid;
480
481 reattach_breakpoints (fpid);
482 }
483 else
484 {
485 if (ttrace (TT_PROC_DETACH, fpid, 0, 0, 0, 0) == -1)
486 perror_with_name (("ttrace"));
487
488 /* Wait till we get the TTEVT_VFORK event in the parent.
489 This indicates that the child has called exec(3) or has
490 exited and that the parent is ready to be traced again. */
491 if (ttrace_wait (pid, lwpid, TTRACE_WAITOK, &tts, sizeof tts) == -1)
492 perror_with_name (("ttrace_wait"));
493 gdb_assert (tts.tts_event == TTEVT_VFORK);
494 gdb_assert (tts.tts_u.tts_fork.tts_isparent);
495
496 reattach_breakpoints (pid);
497 }
498 }
499 else
500 {
501 gdb_assert (tts.tts_u.tts_fork.tts_isparent);
502
503 if (follow_child)
504 {
505 if (ttrace (TT_PROC_DETACH, pid, 0, 0, 0, 0) == -1)
506 perror_with_name (("ttrace"));
507 }
508 else
509 {
510 if (ttrace (TT_PROC_DETACH, fpid, 0, 0, 0, 0) == -1)
511 perror_with_name (("ttrace"));
512 }
513 }
514
515 if (follow_child)
516 {
517 struct thread_info *ti;
518
519 /* The child will start out single-threaded. */
520 inf_ttrace_num_lwps = 1;
521 inf_ttrace_num_lwps_in_syscall = 0;
522
523 /* Delete parent. */
524 delete_thread_silent (ptid_build (pid, lwpid, 0));
525
526 /* Add child. inferior_ptid was already set above. */
527 ti = add_thread_silent (inferior_ptid);
528 ti->private =
529 xmalloc (sizeof (struct inf_ttrace_private_thread_info));
530 memset (ti->private, 0,
531 sizeof (struct inf_ttrace_private_thread_info));
532
533 /* Reset breakpoints in the child as appropriate. */
534 follow_inferior_reset_breakpoints ();
535 }
536
537 return 0;
538 }
539 \f
540
541 /* File descriptors for pipes used as semaphores during initial
542 startup of an inferior. */
543 static int inf_ttrace_pfd1[2];
544 static int inf_ttrace_pfd2[2];
545
546 static void
547 do_cleanup_pfds (void *dummy)
548 {
549 close (inf_ttrace_pfd1[0]);
550 close (inf_ttrace_pfd1[1]);
551 close (inf_ttrace_pfd2[0]);
552 close (inf_ttrace_pfd2[1]);
553 }
554
555 static void
556 inf_ttrace_prepare (void)
557 {
558 if (pipe (inf_ttrace_pfd1) == -1)
559 perror_with_name (("pipe"));
560
561 if (pipe (inf_ttrace_pfd2) == -1)
562 {
563 close (inf_ttrace_pfd1[0]);
564 close (inf_ttrace_pfd2[0]);
565 perror_with_name (("pipe"));
566 }
567 }
568
569 /* Prepare to be traced. */
570
571 static void
572 inf_ttrace_me (void)
573 {
574 struct cleanup *old_chain = make_cleanup (do_cleanup_pfds, 0);
575 char c;
576
577 /* "Trace me, Dr. Memory!" */
578 if (ttrace (TT_PROC_SETTRC, 0, 0, 0, TT_VERSION, 0) == -1)
579 perror_with_name (("ttrace"));
580
581 /* Tell our parent that we are ready to be traced. */
582 if (write (inf_ttrace_pfd1[1], &c, sizeof c) != sizeof c)
583 perror_with_name (("write"));
584
585 /* Wait until our parent has set the initial event mask. */
586 if (read (inf_ttrace_pfd2[0], &c, sizeof c) != sizeof c)
587 perror_with_name (("read"));
588
589 do_cleanups (old_chain);
590 }
591
592 /* Start tracing PID. */
593
594 static void
595 inf_ttrace_him (int pid)
596 {
597 struct cleanup *old_chain = make_cleanup (do_cleanup_pfds, 0);
598 ttevent_t tte;
599 char c;
600
601 /* Wait until our child is ready to be traced. */
602 if (read (inf_ttrace_pfd1[0], &c, sizeof c) != sizeof c)
603 perror_with_name (("read"));
604
605 /* Set the initial event mask. */
606 memset (&tte, 0, sizeof (tte));
607 tte.tte_events |= TTEVT_EXEC | TTEVT_EXIT | TTEVT_FORK | TTEVT_VFORK;
608 tte.tte_events |= TTEVT_LWP_CREATE | TTEVT_LWP_EXIT | TTEVT_LWP_TERMINATE;
609 #ifdef TTEVT_BPT_SSTEP
610 tte.tte_events |= TTEVT_BPT_SSTEP;
611 #endif
612 tte.tte_opts |= TTEO_PROC_INHERIT;
613 if (ttrace (TT_PROC_SET_EVENT_MASK, pid, 0,
614 (uintptr_t)&tte, sizeof tte, 0) == -1)
615 perror_with_name (("ttrace"));
616
617 /* Tell our child that we have set the initial event mask. */
618 if (write (inf_ttrace_pfd2[1], &c, sizeof c) != sizeof c)
619 perror_with_name (("write"));
620
621 do_cleanups (old_chain);
622
623 push_target (ttrace_ops_hack);
624
625 /* On some targets, there must be some explicit synchronization
626 between the parent and child processes after the debugger forks,
627 and before the child execs the debuggee program. This call
628 basically gives permission for the child to exec. */
629
630 target_acknowledge_created_inferior (pid);
631
632 /* START_INFERIOR_TRAPS_EXPECTED is defined in inferior.h, and will
633 be 1 or 2 depending on whether we're starting without or with a
634 shell. */
635 startup_inferior (START_INFERIOR_TRAPS_EXPECTED);
636
637 /* On some targets, there must be some explicit actions taken after
638 the inferior has been started up. */
639 target_post_startup_inferior (pid_to_ptid (pid));
640 }
641
642 static void
643 inf_ttrace_create_inferior (char *exec_file, char *allargs, char **env,
644 int from_tty)
645 {
646 gdb_assert (inf_ttrace_num_lwps == 0);
647 gdb_assert (inf_ttrace_num_lwps_in_syscall == 0);
648 gdb_assert (inf_ttrace_page_dict.count == 0);
649 gdb_assert (inf_ttrace_reenable_page_protections == 0);
650 gdb_assert (inf_ttrace_vfork_ppid == -1);
651
652 fork_inferior (exec_file, allargs, env, inf_ttrace_me, inf_ttrace_him,
653 inf_ttrace_prepare, NULL);
654 }
655
656 static void
657 inf_ttrace_mourn_inferior (void)
658 {
659 const int num_buckets = ARRAY_SIZE (inf_ttrace_page_dict.buckets);
660 int bucket;
661
662 inf_ttrace_num_lwps = 0;
663 inf_ttrace_num_lwps_in_syscall = 0;
664
665 for (bucket = 0; bucket < num_buckets; bucket++)
666 {
667 struct inf_ttrace_page *page;
668 struct inf_ttrace_page *next;
669
670 page = inf_ttrace_page_dict.buckets[bucket].next;
671 while (page)
672 {
673 next = page->next;
674 xfree (page);
675 page = next;
676 }
677 }
678 inf_ttrace_page_dict.count = 0;
679
680 unpush_target (ttrace_ops_hack);
681 generic_mourn_inferior ();
682 }
683
684 static void
685 inf_ttrace_attach (char *args, int from_tty)
686 {
687 char *exec_file;
688 pid_t pid;
689 char *dummy;
690 ttevent_t tte;
691
692 if (!args)
693 error_no_arg (_("process-id to attach"));
694
695 dummy = args;
696 pid = strtol (args, &dummy, 0);
697 if (pid == 0 && args == dummy)
698 error (_("Illegal process-id: %s."), args);
699
700 if (pid == getpid ()) /* Trying to masturbate? */
701 error (_("I refuse to debug myself!"));
702
703 if (from_tty)
704 {
705 exec_file = get_exec_file (0);
706
707 if (exec_file)
708 printf_unfiltered (_("Attaching to program: %s, %s\n"), exec_file,
709 target_pid_to_str (pid_to_ptid (pid)));
710 else
711 printf_unfiltered (_("Attaching to %s\n"),
712 target_pid_to_str (pid_to_ptid (pid)));
713
714 gdb_flush (gdb_stdout);
715 }
716
717 gdb_assert (inf_ttrace_num_lwps == 0);
718 gdb_assert (inf_ttrace_num_lwps_in_syscall == 0);
719 gdb_assert (inf_ttrace_vfork_ppid == -1);
720
721 if (ttrace (TT_PROC_ATTACH, pid, 0, TT_KILL_ON_EXIT, TT_VERSION, 0) == -1)
722 perror_with_name (("ttrace"));
723 attach_flag = 1;
724
725 /* Set the initial event mask. */
726 memset (&tte, 0, sizeof (tte));
727 tte.tte_events |= TTEVT_EXEC | TTEVT_EXIT | TTEVT_FORK | TTEVT_VFORK;
728 tte.tte_events |= TTEVT_LWP_CREATE | TTEVT_LWP_EXIT | TTEVT_LWP_TERMINATE;
729 #ifdef TTEVT_BPT_SSTEP
730 tte.tte_events |= TTEVT_BPT_SSTEP;
731 #endif
732 tte.tte_opts |= TTEO_PROC_INHERIT;
733 if (ttrace (TT_PROC_SET_EVENT_MASK, pid, 0,
734 (uintptr_t)&tte, sizeof tte, 0) == -1)
735 perror_with_name (("ttrace"));
736
737 push_target (ttrace_ops_hack);
738
739 /* We'll bump inf_ttrace_num_lwps up and add the private data to the
740 thread as soon as we get to inf_ttrace_wait. At this point, we
741 don't have lwpid info yet. */
742 inferior_ptid = pid_to_ptid (pid);
743 add_thread_silent (inferior_ptid);
744 }
745
746 static void
747 inf_ttrace_detach (char *args, int from_tty)
748 {
749 pid_t pid = ptid_get_pid (inferior_ptid);
750 int sig = 0;
751
752 if (from_tty)
753 {
754 char *exec_file = get_exec_file (0);
755 if (exec_file == 0)
756 exec_file = "";
757 printf_unfiltered (_("Detaching from program: %s, %s\n"), exec_file,
758 target_pid_to_str (pid_to_ptid (pid)));
759 gdb_flush (gdb_stdout);
760 }
761 if (args)
762 sig = atoi (args);
763
764 /* ??? The HP-UX 11.0 ttrace(2) manual page doesn't mention that we
765 can pass a signal number here. Does this really work? */
766 if (ttrace (TT_PROC_DETACH, pid, 0, 0, sig, 0) == -1)
767 perror_with_name (("ttrace"));
768
769 if (inf_ttrace_vfork_ppid != -1)
770 {
771 if (ttrace (TT_PROC_DETACH, inf_ttrace_vfork_ppid, 0, 0, 0, 0) == -1)
772 perror_with_name (("ttrace"));
773 inf_ttrace_vfork_ppid = -1;
774 }
775
776 inf_ttrace_num_lwps = 0;
777 inf_ttrace_num_lwps_in_syscall = 0;
778
779 unpush_target (ttrace_ops_hack);
780 inferior_ptid = null_ptid;
781 }
782
783 static void
784 inf_ttrace_kill (void)
785 {
786 pid_t pid = ptid_get_pid (inferior_ptid);
787
788 if (pid == 0)
789 return;
790
791 if (ttrace (TT_PROC_EXIT, pid, 0, 0, 0, 0) == -1)
792 perror_with_name (("ttrace"));
793 /* ??? Is it necessary to call ttrace_wait() here? */
794
795 if (inf_ttrace_vfork_ppid != -1)
796 {
797 if (ttrace (TT_PROC_DETACH, inf_ttrace_vfork_ppid, 0, 0, 0, 0) == -1)
798 perror_with_name (("ttrace"));
799 inf_ttrace_vfork_ppid = -1;
800 }
801
802 target_mourn_inferior ();
803 }
804
805 /* Check is a dying thread is dead by now, and delete it from GDBs
806 thread list if so. */
807 static int
808 inf_ttrace_delete_dead_threads_callback (struct thread_info *info, void *arg)
809 {
810 lwpid_t lwpid;
811 struct inf_ttrace_private_thread_info *p;
812
813 if (is_exited (info->ptid))
814 return 0;
815
816 lwpid = ptid_get_lwp (info->ptid);
817 p = (struct inf_ttrace_private_thread_info *) info->private;
818
819 /* Check if an lwp that was dying is still there or not. */
820 if (p->dying && (kill (lwpid, 0) == -1))
821 /* It's gone now. */
822 delete_thread (info->ptid);
823
824 return 0;
825 }
826
827 /* Resume the lwp pointed to by INFO, with REQUEST, and pass it signal
828 SIG. */
829
830 static void
831 inf_ttrace_resume_lwp (struct thread_info *info, ttreq_t request, int sig)
832 {
833 pid_t pid = ptid_get_pid (info->ptid);
834 lwpid_t lwpid = ptid_get_lwp (info->ptid);
835
836 if (ttrace (request, pid, lwpid, TT_NOPC, sig, 0) == -1)
837 {
838 struct inf_ttrace_private_thread_info *p
839 = (struct inf_ttrace_private_thread_info *) info->private;
840 if (p->dying && errno == EPROTO)
841 /* This is expected, it means the dying lwp is really gone
842 by now. If ttrace had an event to inform the debugger
843 the lwp is really gone, this wouldn't be needed. */
844 delete_thread (info->ptid);
845 else
846 /* This was really unexpected. */
847 perror_with_name (("ttrace"));
848 }
849 }
850
851 /* Callback for iterate_over_threads. */
852
853 static int
854 inf_ttrace_resume_callback (struct thread_info *info, void *arg)
855 {
856 if (!ptid_equal (info->ptid, inferior_ptid) && !is_exited (info->ptid))
857 inf_ttrace_resume_lwp (info, TT_LWP_CONTINUE, 0);
858
859 return 0;
860 }
861
862 static void
863 inf_ttrace_resume (ptid_t ptid, int step, enum target_signal signal)
864 {
865 int resume_all;
866 ttreq_t request = step ? TT_LWP_SINGLE : TT_LWP_CONTINUE;
867 int sig = target_signal_to_host (signal);
868 struct thread_info *info;
869
870 /* A specific PTID means `step only this process id'. */
871 resume_all = (ptid_equal (ptid, minus_one_ptid));
872
873 /* If resuming all threads, it's the current thread that should be
874 handled specially. */
875 if (resume_all)
876 ptid = inferior_ptid;
877
878 info = thread_find_pid (ptid);
879 inf_ttrace_resume_lwp (info, request, sig);
880
881 if (resume_all)
882 /* Let all the other threads run too. */
883 iterate_over_threads (inf_ttrace_resume_callback, NULL);
884 }
885
886 static ptid_t
887 inf_ttrace_wait (ptid_t ptid, struct target_waitstatus *ourstatus)
888 {
889 pid_t pid = ptid_get_pid (ptid);
890 lwpid_t lwpid = ptid_get_lwp (ptid);
891 ttstate_t tts;
892 struct thread_info *ti;
893 ptid_t related_ptid;
894
895 /* Until proven otherwise. */
896 ourstatus->kind = TARGET_WAITKIND_SPURIOUS;
897
898 if (pid == -1)
899 pid = lwpid = 0;
900
901 gdb_assert (pid != 0 || lwpid == 0);
902
903 do
904 {
905 set_sigint_trap ();
906 set_sigio_trap ();
907
908 if (ttrace_wait (pid, lwpid, TTRACE_WAITOK, &tts, sizeof tts) == -1)
909 perror_with_name (("ttrace_wait"));
910
911 if (tts.tts_event == TTEVT_VFORK && tts.tts_u.tts_fork.tts_isparent)
912 {
913 if (inf_ttrace_vfork_ppid != -1)
914 {
915 gdb_assert (inf_ttrace_vfork_ppid == tts.tts_pid);
916
917 if (ttrace (TT_PROC_DETACH, tts.tts_pid, 0, 0, 0, 0) == -1)
918 perror_with_name (("ttrace"));
919 inf_ttrace_vfork_ppid = -1;
920 }
921
922 tts.tts_event = TTEVT_NONE;
923 }
924
925 clear_sigio_trap ();
926 clear_sigint_trap ();
927 }
928 while (tts.tts_event == TTEVT_NONE);
929
930 /* Now that we've waited, we can re-enable the page protections. */
931 if (inf_ttrace_reenable_page_protections)
932 {
933 gdb_assert (inf_ttrace_num_lwps_in_syscall == 0);
934 inf_ttrace_enable_page_protections (tts.tts_pid);
935 inf_ttrace_reenable_page_protections = 0;
936 }
937
938 ptid = ptid_build (tts.tts_pid, tts.tts_lwpid, 0);
939
940 if (inf_ttrace_num_lwps == 0)
941 {
942 struct thread_info *ti;
943
944 inf_ttrace_num_lwps = 1;
945
946 /* This is the earliest we hear about the lwp member of
947 INFERIOR_PTID, after an attach or fork_inferior. */
948 gdb_assert (ptid_get_lwp (inferior_ptid) == 0);
949
950 /* We haven't set the private member on the main thread yet. Do
951 it now. */
952 ti = find_thread_pid (inferior_ptid);
953 gdb_assert (ti != NULL && ti->private == NULL);
954 ti->private =
955 xmalloc (sizeof (struct inf_ttrace_private_thread_info));
956 memset (ti->private, 0,
957 sizeof (struct inf_ttrace_private_thread_info));
958
959 /* Notify the core that this ptid changed. This changes
960 inferior_ptid as well. */
961 thread_change_ptid (inferior_ptid, ptid);
962 }
963
964 switch (tts.tts_event)
965 {
966 #ifdef TTEVT_BPT_SSTEP
967 case TTEVT_BPT_SSTEP:
968 /* Make it look like a breakpoint. */
969 ourstatus->kind = TARGET_WAITKIND_STOPPED;
970 ourstatus->value.sig = TARGET_SIGNAL_TRAP;
971 break;
972 #endif
973
974 case TTEVT_EXEC:
975 ourstatus->kind = TARGET_WAITKIND_EXECD;
976 ourstatus->value.execd_pathname =
977 xmalloc (tts.tts_u.tts_exec.tts_pathlen + 1);
978 if (ttrace (TT_PROC_GET_PATHNAME, tts.tts_pid, 0,
979 (uintptr_t)ourstatus->value.execd_pathname,
980 tts.tts_u.tts_exec.tts_pathlen, 0) == -1)
981 perror_with_name (("ttrace"));
982 ourstatus->value.execd_pathname[tts.tts_u.tts_exec.tts_pathlen] = 0;
983
984 /* At this point, all inserted breakpoints are gone. Doing this
985 as soon as we detect an exec prevents the badness of deleting
986 a breakpoint writing the current "shadow contents" to lift
987 the bp. That shadow is NOT valid after an exec. */
988 mark_breakpoints_out ();
989 break;
990
991 case TTEVT_EXIT:
992 store_waitstatus (ourstatus, tts.tts_u.tts_exit.tts_exitcode);
993 inf_ttrace_num_lwps = 0;
994 break;
995
996 case TTEVT_FORK:
997 related_ptid = ptid_build (tts.tts_u.tts_fork.tts_fpid,
998 tts.tts_u.tts_fork.tts_flwpid, 0);
999
1000 ourstatus->kind = TARGET_WAITKIND_FORKED;
1001 ourstatus->value.related_pid = related_ptid;
1002
1003 /* Make sure the other end of the fork is stopped too. */
1004 if (ttrace_wait (tts.tts_u.tts_fork.tts_fpid,
1005 tts.tts_u.tts_fork.tts_flwpid,
1006 TTRACE_WAITOK, &tts, sizeof tts) == -1)
1007 perror_with_name (("ttrace_wait"));
1008
1009 gdb_assert (tts.tts_event == TTEVT_FORK);
1010 if (tts.tts_u.tts_fork.tts_isparent)
1011 {
1012 related_ptid = ptid_build (tts.tts_u.tts_fork.tts_fpid,
1013 tts.tts_u.tts_fork.tts_flwpid, 0);
1014 ptid = ptid_build (tts.tts_pid, tts.tts_lwpid, 0);
1015 ourstatus->value.related_pid = related_ptid;
1016 }
1017 break;
1018
1019 case TTEVT_VFORK:
1020 gdb_assert (!tts.tts_u.tts_fork.tts_isparent);
1021
1022 related_ptid = ptid_build (tts.tts_u.tts_fork.tts_fpid,
1023 tts.tts_u.tts_fork.tts_flwpid, 0);
1024
1025 ourstatus->kind = TARGET_WAITKIND_VFORKED;
1026 ourstatus->value.related_pid = related_ptid;
1027
1028 /* HACK: To avoid touching the parent during the vfork, switch
1029 away from it. */
1030 inferior_ptid = ptid;
1031 break;
1032
1033 case TTEVT_LWP_CREATE:
1034 lwpid = tts.tts_u.tts_thread.tts_target_lwpid;
1035 ptid = ptid_build (tts.tts_pid, lwpid, 0);
1036 ti = add_thread (ptid);
1037 ti->private =
1038 xmalloc (sizeof (struct inf_ttrace_private_thread_info));
1039 memset (ti->private, 0,
1040 sizeof (struct inf_ttrace_private_thread_info));
1041 inf_ttrace_num_lwps++;
1042 ptid = ptid_build (tts.tts_pid, tts.tts_lwpid, 0);
1043 /* Let the lwp_create-caller thread continue. */
1044 ttrace (TT_LWP_CONTINUE, ptid_get_pid (ptid),
1045 ptid_get_lwp (ptid), TT_NOPC, 0, 0);
1046 /* Return without stopping the whole process. */
1047 ourstatus->kind = TARGET_WAITKIND_IGNORE;
1048 return ptid;
1049
1050 case TTEVT_LWP_EXIT:
1051 if (print_thread_events)
1052 printf_unfiltered (_("[%s exited]\n"), target_pid_to_str (ptid));
1053 ti = find_thread_pid (ptid);
1054 gdb_assert (ti != NULL);
1055 ((struct inf_ttrace_private_thread_info *)ti->private)->dying = 1;
1056 inf_ttrace_num_lwps--;
1057 /* Let the thread really exit. */
1058 ttrace (TT_LWP_CONTINUE, ptid_get_pid (ptid),
1059 ptid_get_lwp (ptid), TT_NOPC, 0, 0);
1060 /* Return without stopping the whole process. */
1061 ourstatus->kind = TARGET_WAITKIND_IGNORE;
1062 return ptid;
1063
1064 case TTEVT_LWP_TERMINATE:
1065 lwpid = tts.tts_u.tts_thread.tts_target_lwpid;
1066 ptid = ptid_build (tts.tts_pid, lwpid, 0);
1067 if (print_thread_events)
1068 printf_unfiltered(_("[%s has been terminated]\n")
1069 target_pid_to_str (ptid));
1070 ti = find_thread_pid (ptid);
1071 gdb_assert (ti != NULL);
1072 ((struct inf_ttrace_private_thread_info *)ti->private)->dying = 1;
1073 inf_ttrace_num_lwps--;
1074
1075 /* Resume the lwp_terminate-caller thread. */
1076 ptid = ptid_build (tts.tts_pid, tts.tts_lwpid, 0);
1077 ttrace (TT_LWP_CONTINUE, ptid_get_pid (ptid),
1078 ptid_get_lwp (ptid), TT_NOPC, 0, 0);
1079 /* Return without stopping the whole process. */
1080 ourstatus->kind = TARGET_WAITKIND_IGNORE;
1081 return ptid;
1082
1083 case TTEVT_SIGNAL:
1084 ourstatus->kind = TARGET_WAITKIND_STOPPED;
1085 ourstatus->value.sig =
1086 target_signal_from_host (tts.tts_u.tts_signal.tts_signo);
1087 break;
1088
1089 case TTEVT_SYSCALL_ENTRY:
1090 gdb_assert (inf_ttrace_reenable_page_protections == 0);
1091 inf_ttrace_num_lwps_in_syscall++;
1092 if (inf_ttrace_num_lwps_in_syscall == 1)
1093 {
1094 /* A thread has just entered a system call. Disable any
1095 page protections as the kernel can't deal with them. */
1096 inf_ttrace_disable_page_protections (tts.tts_pid);
1097 }
1098 ourstatus->kind = TARGET_WAITKIND_SYSCALL_ENTRY;
1099 ourstatus->value.syscall_id = tts.tts_scno;
1100 break;
1101
1102 case TTEVT_SYSCALL_RETURN:
1103 if (inf_ttrace_num_lwps_in_syscall > 0)
1104 {
1105 /* If the last thread has just left the system call, this
1106 would be a logical place to re-enable the page
1107 protections, but that doesn't work. We can't re-enable
1108 them until we've done another wait. */
1109 inf_ttrace_reenable_page_protections =
1110 (inf_ttrace_num_lwps_in_syscall == 1);
1111 inf_ttrace_num_lwps_in_syscall--;
1112 }
1113 ourstatus->kind = TARGET_WAITKIND_SYSCALL_RETURN;
1114 ourstatus->value.syscall_id = tts.tts_scno;
1115 break;
1116
1117 default:
1118 gdb_assert (!"Unexpected ttrace event");
1119 break;
1120 }
1121
1122 /* Make sure all threads within the process are stopped. */
1123 if (ttrace (TT_PROC_STOP, tts.tts_pid, 0, 0, 0, 0) == -1)
1124 perror_with_name (("ttrace"));
1125
1126 /* Now that the whole process is stopped, check if any dying thread
1127 is really dead by now. If a dying thread is still alive, it will
1128 be stopped too, and will still show up in `info threads', tagged
1129 with "(Exiting)". We could make `info threads' prune dead
1130 threads instead via inf_ttrace_thread_alive, but doing this here
1131 has the advantage that a frontend is notificed sooner of thread
1132 exits. Note that a dying lwp is still alive, it still has to be
1133 resumed, like any other lwp. */
1134 iterate_over_threads (inf_ttrace_delete_dead_threads_callback, NULL);
1135
1136 return ptid;
1137 }
1138
1139 /* Transfer LEN bytes from ADDR in the inferior's memory into READBUF,
1140 and transfer LEN bytes from WRITEBUF into the inferior's memory at
1141 ADDR. Either READBUF or WRITEBUF may be null, in which case the
1142 corresponding transfer doesn't happen. Return the number of bytes
1143 actually transferred (which may be zero if an error occurs). */
1144
1145 static LONGEST
1146 inf_ttrace_xfer_memory (CORE_ADDR addr, ULONGEST len,
1147 void *readbuf, const void *writebuf)
1148 {
1149 pid_t pid = ptid_get_pid (inferior_ptid);
1150
1151 /* HP-UX treats text space and data space differently. GDB however,
1152 doesn't really know the difference. Therefore we try both. Try
1153 text space before data space though because when we're writing
1154 into text space the instruction cache might need to be flushed. */
1155
1156 if (readbuf
1157 && ttrace (TT_PROC_RDTEXT, pid, 0, addr, len, (uintptr_t)readbuf) == -1
1158 && ttrace (TT_PROC_RDDATA, pid, 0, addr, len, (uintptr_t)readbuf) == -1)
1159 return 0;
1160
1161 if (writebuf
1162 && ttrace (TT_PROC_WRTEXT, pid, 0, addr, len, (uintptr_t)writebuf) == -1
1163 && ttrace (TT_PROC_WRDATA, pid, 0, addr, len, (uintptr_t)writebuf) == -1)
1164 return 0;
1165
1166 return len;
1167 }
1168
1169 static LONGEST
1170 inf_ttrace_xfer_partial (struct target_ops *ops, enum target_object object,
1171 const char *annex, gdb_byte *readbuf,
1172 const gdb_byte *writebuf, ULONGEST offset, LONGEST len)
1173 {
1174 switch (object)
1175 {
1176 case TARGET_OBJECT_MEMORY:
1177 return inf_ttrace_xfer_memory (offset, len, readbuf, writebuf);
1178
1179 case TARGET_OBJECT_UNWIND_TABLE:
1180 return -1;
1181
1182 case TARGET_OBJECT_AUXV:
1183 return -1;
1184
1185 case TARGET_OBJECT_WCOOKIE:
1186 return -1;
1187
1188 default:
1189 return -1;
1190 }
1191 }
1192
1193 /* Print status information about what we're accessing. */
1194
1195 static void
1196 inf_ttrace_files_info (struct target_ops *ignore)
1197 {
1198 printf_filtered (_("\tUsing the running image of %s %s.\n"),
1199 attach_flag ? "attached" : "child",
1200 target_pid_to_str (inferior_ptid));
1201 }
1202
1203 static int
1204 inf_ttrace_thread_alive (ptid_t ptid)
1205 {
1206 return 1;
1207 }
1208
1209 /* Return a string describing the state of the thread specified by
1210 INFO. */
1211
1212 static char *
1213 inf_ttrace_extra_thread_info (struct thread_info *info)
1214 {
1215 struct inf_ttrace_private_thread_info* private =
1216 (struct inf_ttrace_private_thread_info *) info->private;
1217
1218 if (private != NULL && private->dying)
1219 return "Exiting";
1220
1221 return NULL;
1222 }
1223
1224 static char *
1225 inf_ttrace_pid_to_str (ptid_t ptid)
1226 {
1227 pid_t pid = ptid_get_pid (ptid);
1228 lwpid_t lwpid = ptid_get_lwp (ptid);
1229 static char buf[128];
1230
1231 if (lwpid == 0)
1232 xsnprintf (buf, sizeof buf, "process %ld",
1233 (long) pid);
1234 else
1235 xsnprintf (buf, sizeof buf, "process %ld, lwp %ld",
1236 (long) pid, (long) lwpid);
1237 return buf;
1238 }
1239 \f
1240
1241 struct target_ops *
1242 inf_ttrace_target (void)
1243 {
1244 struct target_ops *t = inf_child_target ();
1245
1246 t->to_attach = inf_ttrace_attach;
1247 t->to_detach = inf_ttrace_detach;
1248 t->to_resume = inf_ttrace_resume;
1249 t->to_wait = inf_ttrace_wait;
1250 t->to_files_info = inf_ttrace_files_info;
1251 t->to_can_use_hw_breakpoint = inf_ttrace_can_use_hw_breakpoint;
1252 t->to_insert_watchpoint = inf_ttrace_insert_watchpoint;
1253 t->to_remove_watchpoint = inf_ttrace_remove_watchpoint;
1254 t->to_stopped_by_watchpoint = inf_ttrace_stopped_by_watchpoint;
1255 t->to_region_ok_for_hw_watchpoint =
1256 inf_ttrace_region_ok_for_hw_watchpoint;
1257 t->to_kill = inf_ttrace_kill;
1258 t->to_create_inferior = inf_ttrace_create_inferior;
1259 t->to_follow_fork = inf_ttrace_follow_fork;
1260 t->to_mourn_inferior = inf_ttrace_mourn_inferior;
1261 t->to_thread_alive = inf_ttrace_thread_alive;
1262 t->to_extra_thread_info = inf_ttrace_extra_thread_info;
1263 t->to_pid_to_str = inf_ttrace_pid_to_str;
1264 t->to_xfer_partial = inf_ttrace_xfer_partial;
1265
1266 ttrace_ops_hack = t;
1267 return t;
1268 }
1269 #endif
1270 \f
1271
1272 /* Prevent warning from -Wmissing-prototypes. */
1273 void _initialize_hppa_hpux_nat (void);
1274
1275 void
1276 _initialize_inf_ttrace (void)
1277 {
1278 #ifdef HAVE_TTRACE
1279 inf_ttrace_page_dict.pagesize = getpagesize();
1280 #endif
1281 }
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