Move duplicated code into new files
[deliverable/binutils-gdb.git] / gdb / inf-ttrace.c
CommitLineData
eee22bf8
MK
1/* Low-level child interface to ttrace.
2
ecd75fc8 3 Copyright (C) 2004-2014 Free Software Foundation, Inc.
eee22bf8
MK
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
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
eee22bf8
MK
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
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
eee22bf8
MK
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"
a7be7fa8 28#include "gdbthread.h"
eee22bf8 29#include "inferior.h"
191c4426 30#include "terminal.h"
eee22bf8
MK
31#include "target.h"
32
33#include "gdb_assert.h"
0e9f083f 34#include <string.h>
932936f0 35#include <sys/mman.h>
eee22bf8 36#include <sys/ttrace.h>
438ac09b 37#include <signal.h>
eee22bf8
MK
38
39#include "inf-child.h"
40#include "inf-ttrace.h"
21ff4686 41#include "common/filestuff.h"
eee22bf8 42
932936f0
MK
43\f
44
a7be7fa8
MK
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. */
55static int inf_ttrace_num_lwps;
56\f
57
932936f0
MK
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
64struct 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
73struct 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
60e2c248
JG
80struct inf_ttrace_private_thread_info
81{
82 int dying;
83};
84
a7be7fa8
MK
85/* Number of lwps that are currently in a system call. */
86static int inf_ttrace_num_lwps_in_syscall;
932936f0
MK
87
88/* Flag to indicate whether we should re-enable page protections after
89 the next wait. */
90static int inf_ttrace_reenable_page_protections;
91
92/* Enable system call events for process PID. */
93
94static void
95inf_ttrace_enable_syscall_events (pid_t pid)
96{
97 ttevent_t tte;
98 ttstate_t tts;
99
a7be7fa8 100 gdb_assert (inf_ttrace_num_lwps_in_syscall == 0);
932936f0
MK
101
102 if (ttrace (TT_PROC_GET_EVENT_MASK, pid, 0,
103 (uintptr_t)&tte, sizeof tte, 0) == -1)
e2e0b3e5 104 perror_with_name (("ttrace"));
932936f0
MK
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)
e2e0b3e5 110 perror_with_name (("ttrace"));
932936f0
MK
111
112 if (ttrace (TT_PROC_GET_FIRST_LWP_STATE, pid, 0,
113 (uintptr_t)&tts, sizeof tts, 0) == -1)
e2e0b3e5 114 perror_with_name (("ttrace"));
932936f0
MK
115
116 if (tts.tts_flags & TTS_INSYSCALL)
a7be7fa8 117 inf_ttrace_num_lwps_in_syscall++;
932936f0
MK
118
119 /* FIXME: Handle multiple threads. */
120}
121
122/* Disable system call events for process PID. */
123
124static void
125inf_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)
e2e0b3e5 133 perror_with_name (("ttrace"));
932936f0
MK
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)
e2e0b3e5 139 perror_with_name (("ttrace"));
932936f0 140
a7be7fa8 141 inf_ttrace_num_lwps_in_syscall = 0;
932936f0
MK
142}
143
144/* Get information about the page at address ADDR for process PID from
145 the dictionary. */
146
147static struct inf_ttrace_page *
148inf_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
170static struct inf_ttrace_page *
171inf_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)
e2e0b3e5 196 perror_with_name (("ttrace"));
932936f0 197
70ba0933 198 page = XNEW (struct inf_ttrace_page);
932936f0
MK
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
a7be7fa8 211 if (inf_ttrace_num_lwps_in_syscall == 0)
932936f0
MK
212 {
213 if (ttrace (TT_PROC_SET_MPROTECT, pid, 0,
214 addr, pagesize, prot & ~PROT_WRITE) == -1)
e2e0b3e5 215 perror_with_name (("ttrace"));
932936f0
MK
216 }
217 }
218
219 return page;
220}
221
222/* Insert the page at address ADDR of process PID to the dictionary. */
223
224static void
225inf_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
238static void
239inf_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 {
a7be7fa8 251 if (inf_ttrace_num_lwps_in_syscall == 0)
932936f0
MK
252 {
253 if (ttrace (TT_PROC_SET_MPROTECT, pid, 0,
254 addr, pagesize, page->prot) == -1)
e2e0b3e5 255 perror_with_name (("ttrace"));
932936f0
MK
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
273static void
274inf_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)
e2e0b3e5 289 perror_with_name (("ttrace"));
932936f0
MK
290
291 page = page->next;
292 }
293 }
294}
295
296/* Write-protect the pages in the dictionary for process PID. */
297
298static void
299inf_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
307static void
308inf_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
316static int
7bb99c53
TT
317inf_ttrace_insert_watchpoint (struct target_ops *self,
318 CORE_ADDR addr, int len, int type,
0cf6dd15 319 struct expression *cond)
932936f0
MK
320{
321 const int pagesize = inf_ttrace_page_dict.pagesize;
322 pid_t pid = ptid_get_pid (inferior_ptid);
323 CORE_ADDR page_addr;
324 int num_pages;
325 int page;
326
327 gdb_assert (type == hw_write);
328
329 page_addr = (addr / pagesize) * pagesize;
330 num_pages = (len + pagesize - 1) / pagesize;
331
332 for (page = 0; page < num_pages; page++, page_addr += pagesize)
333 inf_ttrace_insert_page (pid, page_addr);
334
335 return 1;
336}
337
338/* Remove a "hardware" watchpoint for LEN bytes at address ADDR of
339 type TYPE. */
340
341static int
11b5219a
TT
342inf_ttrace_remove_watchpoint (struct target_ops *self,
343 CORE_ADDR addr, int len, int type,
0cf6dd15 344 struct expression *cond)
932936f0
MK
345{
346 const int pagesize = inf_ttrace_page_dict.pagesize;
347 pid_t pid = ptid_get_pid (inferior_ptid);
348 CORE_ADDR page_addr;
349 int num_pages;
350 int page;
351
352 gdb_assert (type == hw_write);
353
354 page_addr = (addr / pagesize) * pagesize;
355 num_pages = (len + pagesize - 1) / pagesize;
356
357 for (page = 0; page < num_pages; page++, page_addr += pagesize)
358 inf_ttrace_remove_page (pid, page_addr);
359
360 return 1;
361}
362
363static int
5461485a
TT
364inf_ttrace_can_use_hw_breakpoint (struct target_ops *self,
365 int type, int len, int ot)
932936f0
MK
366{
367 return (type == bp_hardware_watchpoint);
368}
369
370static int
31568a15
TT
371inf_ttrace_region_ok_for_hw_watchpoint (struct target_ops *self,
372 CORE_ADDR addr, int len)
932936f0
MK
373{
374 return 1;
375}
376
377/* Return non-zero if the current inferior was (potentially) stopped
378 by hitting a "hardware" watchpoint. */
379
380static int
6a109b6b 381inf_ttrace_stopped_by_watchpoint (struct target_ops *ops)
932936f0
MK
382{
383 pid_t pid = ptid_get_pid (inferior_ptid);
384 lwpid_t lwpid = ptid_get_lwp (inferior_ptid);
385 ttstate_t tts;
386
387 if (inf_ttrace_page_dict.count > 0)
388 {
389 if (ttrace (TT_LWP_GET_STATE, pid, lwpid,
390 (uintptr_t)&tts, sizeof tts, 0) == -1)
e2e0b3e5 391 perror_with_name (("ttrace"));
932936f0
MK
392
393 if (tts.tts_event == TTEVT_SIGNAL
394 && tts.tts_u.tts_signal.tts_signo == SIGBUS)
395 {
396 const int pagesize = inf_ttrace_page_dict.pagesize;
397 void *addr = tts.tts_u.tts_signal.tts_siginfo.si_addr;
398 CORE_ADDR page_addr = ((uintptr_t)addr / pagesize) * pagesize;
399
400 if (inf_ttrace_get_page (pid, page_addr))
401 return 1;
402 }
403 }
404
405 return 0;
406}
407\f
eee22bf8 408
b2a4db28
MK
409/* When tracking a vfork(2), we cannot detach from the parent until
410 after the child has called exec(3) or has exited. If we are still
411 attached to the parent, this variable will be set to the process ID
412 of the parent. Otherwise it will be set to zero. */
413static pid_t inf_ttrace_vfork_ppid = -1;
414
415static int
07107ca6
LM
416inf_ttrace_follow_fork (struct target_ops *ops, int follow_child,
417 int detach_fork)
b2a4db28
MK
418{
419 pid_t pid, fpid;
420 lwpid_t lwpid, flwpid;
421 ttstate_t tts;
e58b0e63
PA
422 struct thread_info *tp = inferior_thread ();
423
424 gdb_assert (tp->pending_follow.kind == TARGET_WAITKIND_FORKED
425 || tp->pending_follow.kind == TARGET_WAITKIND_VFORKED);
426
427 pid = ptid_get_pid (inferior_ptid);
428 lwpid = ptid_get_lwp (inferior_ptid);
b2a4db28
MK
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 {
77435e4c 455 struct inferior *inf;
191c4426
PA
456 struct inferior *parent_inf;
457
458 parent_inf = find_inferior_pid (pid);
77435e4c 459
b2a4db28 460 inferior_ptid = ptid_build (fpid, flwpid, 0);
77435e4c 461 inf = add_inferior (fpid);
191c4426 462 inf->attach_flag = parent_inf->attach_flag;
6c95b8df
PA
463 inf->pspace = parent_inf->pspace;
464 inf->aspace = parent_inf->aspace;
191c4426 465 copy_terminal_info (inf, parent_inf);
d80ee84f 466 detach_breakpoints (ptid_build (pid, lwpid, 0));
b2a4db28
MK
467
468 target_terminal_ours ();
3e43a32a
MS
469 fprintf_unfiltered (gdb_stdlog,
470 _("Attaching after fork to child process %ld.\n"),
471 (long)fpid);
b2a4db28
MK
472 }
473 else
474 {
475 inferior_ptid = ptid_build (pid, lwpid, 0);
2dcc6086
JB
476 /* Detach any remaining breakpoints in the child. In the case
477 of fork events, we do not need to do this, because breakpoints
478 should have already been removed earlier. */
479 if (tts.tts_event == TTEVT_VFORK)
d80ee84f 480 detach_breakpoints (ptid_build (fpid, flwpid, 0));
b2a4db28
MK
481
482 target_terminal_ours ();
3e43a32a
MS
483 fprintf_unfiltered (gdb_stdlog,
484 _("Detaching after fork from child process %ld.\n"),
485 (long)fpid);
b2a4db28
MK
486 }
487
488 if (tts.tts_event == TTEVT_VFORK)
489 {
490 gdb_assert (!tts.tts_u.tts_fork.tts_isparent);
491
492 if (follow_child)
493 {
494 /* We can't detach from the parent yet. */
495 inf_ttrace_vfork_ppid = pid;
496
497 reattach_breakpoints (fpid);
498 }
499 else
500 {
501 if (ttrace (TT_PROC_DETACH, fpid, 0, 0, 0, 0) == -1)
502 perror_with_name (("ttrace"));
503
504 /* Wait till we get the TTEVT_VFORK event in the parent.
505 This indicates that the child has called exec(3) or has
506 exited and that the parent is ready to be traced again. */
507 if (ttrace_wait (pid, lwpid, TTRACE_WAITOK, &tts, sizeof tts) == -1)
508 perror_with_name (("ttrace_wait"));
509 gdb_assert (tts.tts_event == TTEVT_VFORK);
510 gdb_assert (tts.tts_u.tts_fork.tts_isparent);
511
512 reattach_breakpoints (pid);
513 }
514 }
515 else
516 {
517 gdb_assert (tts.tts_u.tts_fork.tts_isparent);
518
519 if (follow_child)
520 {
521 if (ttrace (TT_PROC_DETACH, pid, 0, 0, 0, 0) == -1)
522 perror_with_name (("ttrace"));
523 }
524 else
525 {
526 if (ttrace (TT_PROC_DETACH, fpid, 0, 0, 0, 0) == -1)
527 perror_with_name (("ttrace"));
528 }
529 }
530
531 if (follow_child)
532 {
2935f27f
PA
533 struct thread_info *ti;
534
b2a4db28 535 /* The child will start out single-threaded. */
2935f27f 536 inf_ttrace_num_lwps = 1;
b2a4db28
MK
537 inf_ttrace_num_lwps_in_syscall = 0;
538
2935f27f
PA
539 /* Delete parent. */
540 delete_thread_silent (ptid_build (pid, lwpid, 0));
7f9f62ba 541 detach_inferior (pid);
2935f27f 542
7f9f62ba 543 /* Add child thread. inferior_ptid was already set above. */
2935f27f
PA
544 ti = add_thread_silent (inferior_ptid);
545 ti->private =
546 xmalloc (sizeof (struct inf_ttrace_private_thread_info));
547 memset (ti->private, 0,
548 sizeof (struct inf_ttrace_private_thread_info));
b2a4db28
MK
549 }
550
551 return 0;
552}
553\f
554
eee22bf8
MK
555/* File descriptors for pipes used as semaphores during initial
556 startup of an inferior. */
557static int inf_ttrace_pfd1[2];
558static int inf_ttrace_pfd2[2];
559
560static void
561do_cleanup_pfds (void *dummy)
562{
563 close (inf_ttrace_pfd1[0]);
564 close (inf_ttrace_pfd1[1]);
565 close (inf_ttrace_pfd2[0]);
566 close (inf_ttrace_pfd2[1]);
21ff4686
TT
567
568 unmark_fd_no_cloexec (inf_ttrace_pfd1[0]);
569 unmark_fd_no_cloexec (inf_ttrace_pfd1[1]);
570 unmark_fd_no_cloexec (inf_ttrace_pfd2[0]);
571 unmark_fd_no_cloexec (inf_ttrace_pfd2[1]);
eee22bf8
MK
572}
573
574static void
575inf_ttrace_prepare (void)
576{
577 if (pipe (inf_ttrace_pfd1) == -1)
a3f17187 578 perror_with_name (("pipe"));
eee22bf8
MK
579
580 if (pipe (inf_ttrace_pfd2) == -1)
581 {
582 close (inf_ttrace_pfd1[0]);
583 close (inf_ttrace_pfd2[0]);
a3f17187 584 perror_with_name (("pipe"));
eee22bf8 585 }
21ff4686
TT
586
587 mark_fd_no_cloexec (inf_ttrace_pfd1[0]);
588 mark_fd_no_cloexec (inf_ttrace_pfd1[1]);
589 mark_fd_no_cloexec (inf_ttrace_pfd2[0]);
590 mark_fd_no_cloexec (inf_ttrace_pfd2[1]);
eee22bf8
MK
591}
592
593/* Prepare to be traced. */
594
595static void
596inf_ttrace_me (void)
597{
598 struct cleanup *old_chain = make_cleanup (do_cleanup_pfds, 0);
599 char c;
600
601 /* "Trace me, Dr. Memory!" */
602 if (ttrace (TT_PROC_SETTRC, 0, 0, 0, TT_VERSION, 0) == -1)
e2e0b3e5 603 perror_with_name (("ttrace"));
eee22bf8
MK
604
605 /* Tell our parent that we are ready to be traced. */
606 if (write (inf_ttrace_pfd1[1], &c, sizeof c) != sizeof c)
e2e0b3e5 607 perror_with_name (("write"));
eee22bf8
MK
608
609 /* Wait until our parent has set the initial event mask. */
610 if (read (inf_ttrace_pfd2[0], &c, sizeof c) != sizeof c)
e2e0b3e5 611 perror_with_name (("read"));
eee22bf8
MK
612
613 do_cleanups (old_chain);
614}
615
616/* Start tracing PID. */
617
618static void
28439f5e 619inf_ttrace_him (struct target_ops *ops, int pid)
eee22bf8
MK
620{
621 struct cleanup *old_chain = make_cleanup (do_cleanup_pfds, 0);
622 ttevent_t tte;
eee22bf8
MK
623 char c;
624
625 /* Wait until our child is ready to be traced. */
626 if (read (inf_ttrace_pfd1[0], &c, sizeof c) != sizeof c)
e2e0b3e5 627 perror_with_name (("read"));
eee22bf8
MK
628
629 /* Set the initial event mask. */
630 memset (&tte, 0, sizeof (tte));
b2a4db28 631 tte.tte_events |= TTEVT_EXEC | TTEVT_EXIT | TTEVT_FORK | TTEVT_VFORK;
a7be7fa8 632 tte.tte_events |= TTEVT_LWP_CREATE | TTEVT_LWP_EXIT | TTEVT_LWP_TERMINATE;
7ba0e0c2
MK
633#ifdef TTEVT_BPT_SSTEP
634 tte.tte_events |= TTEVT_BPT_SSTEP;
635#endif
b2a4db28 636 tte.tte_opts |= TTEO_PROC_INHERIT;
eee22bf8
MK
637 if (ttrace (TT_PROC_SET_EVENT_MASK, pid, 0,
638 (uintptr_t)&tte, sizeof tte, 0) == -1)
e2e0b3e5 639 perror_with_name (("ttrace"));
eee22bf8
MK
640
641 /* Tell our child that we have set the initial event mask. */
642 if (write (inf_ttrace_pfd2[1], &c, sizeof c) != sizeof c)
e2e0b3e5 643 perror_with_name (("write"));
eee22bf8
MK
644
645 do_cleanups (old_chain);
646
6a3cb8e8
PA
647 if (!target_is_pushed (ops))
648 push_target (ops);
eee22bf8 649
eee22bf8
MK
650 startup_inferior (START_INFERIOR_TRAPS_EXPECTED);
651
652 /* On some targets, there must be some explicit actions taken after
653 the inferior has been started up. */
654 target_post_startup_inferior (pid_to_ptid (pid));
655}
656
657static void
136d6dae
VP
658inf_ttrace_create_inferior (struct target_ops *ops, char *exec_file,
659 char *allargs, char **env, int from_tty)
eee22bf8 660{
28439f5e
PA
661 int pid;
662
a7be7fa8
MK
663 gdb_assert (inf_ttrace_num_lwps == 0);
664 gdb_assert (inf_ttrace_num_lwps_in_syscall == 0);
932936f0 665 gdb_assert (inf_ttrace_page_dict.count == 0);
932936f0 666 gdb_assert (inf_ttrace_reenable_page_protections == 0);
b2a4db28 667 gdb_assert (inf_ttrace_vfork_ppid == -1);
932936f0 668
28439f5e 669 pid = fork_inferior (exec_file, allargs, env, inf_ttrace_me, NULL,
e69860f1 670 inf_ttrace_prepare, NULL, NULL);
28439f5e
PA
671
672 inf_ttrace_him (ops, pid);
eee22bf8
MK
673}
674
eee22bf8 675static void
136d6dae 676inf_ttrace_mourn_inferior (struct target_ops *ops)
eee22bf8 677{
932936f0
MK
678 const int num_buckets = ARRAY_SIZE (inf_ttrace_page_dict.buckets);
679 int bucket;
680
a7be7fa8
MK
681 inf_ttrace_num_lwps = 0;
682 inf_ttrace_num_lwps_in_syscall = 0;
932936f0
MK
683
684 for (bucket = 0; bucket < num_buckets; bucket++)
685 {
686 struct inf_ttrace_page *page;
687 struct inf_ttrace_page *next;
688
689 page = inf_ttrace_page_dict.buckets[bucket].next;
690 while (page)
691 {
692 next = page->next;
693 xfree (page);
694 page = next;
695 }
696 }
697 inf_ttrace_page_dict.count = 0;
698
c1ee2fb3 699 inf_child_mourn_inferior (ops);
eee22bf8
MK
700}
701
f688d93f
JB
702/* Assuming we just attached the debugger to a new inferior, create
703 a new thread_info structure for each thread, and add it to our
704 list of threads. */
705
706static void
707inf_ttrace_create_threads_after_attach (int pid)
708{
709 int status;
710 ptid_t ptid;
711 ttstate_t tts;
712 struct thread_info *ti;
713
714 status = ttrace (TT_PROC_GET_FIRST_LWP_STATE, pid, 0,
715 (uintptr_t) &tts, sizeof (ttstate_t), 0);
716 if (status < 0)
717 perror_with_name (_("TT_PROC_GET_FIRST_LWP_STATE ttrace call failed"));
718 gdb_assert (tts.tts_pid == pid);
719
720 /* Add the stopped thread. */
721 ptid = ptid_build (pid, tts.tts_lwpid, 0);
722 ti = add_thread (ptid);
723 ti->private = xzalloc (sizeof (struct inf_ttrace_private_thread_info));
724 inf_ttrace_num_lwps++;
725
726 /* We use the "first stopped thread" as the currently active thread. */
727 inferior_ptid = ptid;
728
729 /* Iterative over all the remaining threads. */
730
731 for (;;)
732 {
733 ptid_t ptid;
734
735 status = ttrace (TT_PROC_GET_NEXT_LWP_STATE, pid, 0,
736 (uintptr_t) &tts, sizeof (ttstate_t), 0);
737 if (status < 0)
738 perror_with_name (_("TT_PROC_GET_NEXT_LWP_STATE ttrace call failed"));
739 if (status == 0)
740 break; /* End of list. */
741
742 ptid = ptid_build (tts.tts_pid, tts.tts_lwpid, 0);
743 ti = add_thread (ptid);
744 ti->private = xzalloc (sizeof (struct inf_ttrace_private_thread_info));
745 inf_ttrace_num_lwps++;
746 }
747}
748
eee22bf8 749static void
c0939df1 750inf_ttrace_attach (struct target_ops *ops, const char *args, int from_tty)
eee22bf8
MK
751{
752 char *exec_file;
753 pid_t pid;
932936f0 754 ttevent_t tte;
181e7f93 755 struct inferior *inf;
eee22bf8 756
74164c56 757 pid = parse_pid_to_attach (args);
eee22bf8
MK
758
759 if (pid == getpid ()) /* Trying to masturbate? */
8a3fe4f8 760 error (_("I refuse to debug myself!"));
eee22bf8
MK
761
762 if (from_tty)
763 {
346e281c 764 exec_file = get_exec_file (0);
eee22bf8
MK
765
766 if (exec_file)
a3f17187 767 printf_unfiltered (_("Attaching to program: %s, %s\n"), exec_file,
eee22bf8
MK
768 target_pid_to_str (pid_to_ptid (pid)));
769 else
a3f17187 770 printf_unfiltered (_("Attaching to %s\n"),
eee22bf8
MK
771 target_pid_to_str (pid_to_ptid (pid)));
772
773 gdb_flush (gdb_stdout);
774 }
775
a7be7fa8
MK
776 gdb_assert (inf_ttrace_num_lwps == 0);
777 gdb_assert (inf_ttrace_num_lwps_in_syscall == 0);
b2a4db28 778 gdb_assert (inf_ttrace_vfork_ppid == -1);
a7be7fa8 779
eee22bf8 780 if (ttrace (TT_PROC_ATTACH, pid, 0, TT_KILL_ON_EXIT, TT_VERSION, 0) == -1)
e2e0b3e5 781 perror_with_name (("ttrace"));
eee22bf8 782
6c95b8df
PA
783 inf = current_inferior ();
784 inferior_appeared (inf, pid);
181e7f93 785 inf->attach_flag = 1;
7f9f62ba 786
932936f0 787 /* Set the initial event mask. */
932936f0 788 memset (&tte, 0, sizeof (tte));
b2a4db28 789 tte.tte_events |= TTEVT_EXEC | TTEVT_EXIT | TTEVT_FORK | TTEVT_VFORK;
a7be7fa8 790 tte.tte_events |= TTEVT_LWP_CREATE | TTEVT_LWP_EXIT | TTEVT_LWP_TERMINATE;
7ba0e0c2
MK
791#ifdef TTEVT_BPT_SSTEP
792 tte.tte_events |= TTEVT_BPT_SSTEP;
793#endif
b2a4db28 794 tte.tte_opts |= TTEO_PROC_INHERIT;
932936f0
MK
795 if (ttrace (TT_PROC_SET_EVENT_MASK, pid, 0,
796 (uintptr_t)&tte, sizeof tte, 0) == -1)
e2e0b3e5 797 perror_with_name (("ttrace"));
932936f0 798
6a3cb8e8
PA
799 if (!target_is_pushed (ops))
800 push_target (ops);
2935f27f 801
f688d93f 802 inf_ttrace_create_threads_after_attach (pid);
eee22bf8
MK
803}
804
805static void
52554a0e 806inf_ttrace_detach (struct target_ops *ops, const char *args, int from_tty)
eee22bf8 807{
eee22bf8 808 pid_t pid = ptid_get_pid (inferior_ptid);
5d426ff1 809 int sig = 0;
eee22bf8
MK
810
811 if (from_tty)
812 {
813 char *exec_file = get_exec_file (0);
814 if (exec_file == 0)
815 exec_file = "";
a3f17187 816 printf_unfiltered (_("Detaching from program: %s, %s\n"), exec_file,
eee22bf8
MK
817 target_pid_to_str (pid_to_ptid (pid)));
818 gdb_flush (gdb_stdout);
819 }
820 if (args)
821 sig = atoi (args);
822
823 /* ??? The HP-UX 11.0 ttrace(2) manual page doesn't mention that we
824 can pass a signal number here. Does this really work? */
825 if (ttrace (TT_PROC_DETACH, pid, 0, 0, sig, 0) == -1)
e2e0b3e5 826 perror_with_name (("ttrace"));
eee22bf8 827
b2a4db28
MK
828 if (inf_ttrace_vfork_ppid != -1)
829 {
830 if (ttrace (TT_PROC_DETACH, inf_ttrace_vfork_ppid, 0, 0, 0, 0) == -1)
831 perror_with_name (("ttrace"));
832 inf_ttrace_vfork_ppid = -1;
833 }
834
a7be7fa8
MK
835 inf_ttrace_num_lwps = 0;
836 inf_ttrace_num_lwps_in_syscall = 0;
932936f0 837
932936f0 838 inferior_ptid = null_ptid;
7f9f62ba
PA
839 detach_inferior (pid);
840
6a3cb8e8 841 inf_child_maybe_unpush_target (ops);
eee22bf8
MK
842}
843
346e281c 844static void
7d85a9c0 845inf_ttrace_kill (struct target_ops *ops)
346e281c
MK
846{
847 pid_t pid = ptid_get_pid (inferior_ptid);
848
849 if (pid == 0)
850 return;
851
852 if (ttrace (TT_PROC_EXIT, pid, 0, 0, 0, 0) == -1)
853 perror_with_name (("ttrace"));
854 /* ??? Is it necessary to call ttrace_wait() here? */
855
856 if (inf_ttrace_vfork_ppid != -1)
857 {
858 if (ttrace (TT_PROC_DETACH, inf_ttrace_vfork_ppid, 0, 0, 0, 0) == -1)
859 perror_with_name (("ttrace"));
860 inf_ttrace_vfork_ppid = -1;
861 }
862
863 target_mourn_inferior ();
864}
865
438ac09b
PA
866/* Check is a dying thread is dead by now, and delete it from GDBs
867 thread list if so. */
7ba0e0c2 868static int
438ac09b 869inf_ttrace_delete_dead_threads_callback (struct thread_info *info, void *arg)
7ba0e0c2 870{
438ac09b
PA
871 lwpid_t lwpid;
872 struct inf_ttrace_private_thread_info *p;
7ba0e0c2 873
438ac09b
PA
874 if (is_exited (info->ptid))
875 return 0;
876
877 lwpid = ptid_get_lwp (info->ptid);
878 p = (struct inf_ttrace_private_thread_info *) info->private;
879
880 /* Check if an lwp that was dying is still there or not. */
881 if (p->dying && (kill (lwpid, 0) == -1))
882 /* It's gone now. */
883 delete_thread (info->ptid);
7ba0e0c2
MK
884
885 return 0;
886}
887
438ac09b
PA
888/* Resume the lwp pointed to by INFO, with REQUEST, and pass it signal
889 SIG. */
890
891static void
892inf_ttrace_resume_lwp (struct thread_info *info, ttreq_t request, int sig)
893{
894 pid_t pid = ptid_get_pid (info->ptid);
895 lwpid_t lwpid = ptid_get_lwp (info->ptid);
896
897 if (ttrace (request, pid, lwpid, TT_NOPC, sig, 0) == -1)
898 {
899 struct inf_ttrace_private_thread_info *p
900 = (struct inf_ttrace_private_thread_info *) info->private;
901 if (p->dying && errno == EPROTO)
902 /* This is expected, it means the dying lwp is really gone
903 by now. If ttrace had an event to inform the debugger
904 the lwp is really gone, this wouldn't be needed. */
905 delete_thread (info->ptid);
906 else
907 /* This was really unexpected. */
908 perror_with_name (("ttrace"));
909 }
910}
911
912/* Callback for iterate_over_threads. */
913
60e2c248 914static int
438ac09b 915inf_ttrace_resume_callback (struct thread_info *info, void *arg)
60e2c248 916{
438ac09b
PA
917 if (!ptid_equal (info->ptid, inferior_ptid) && !is_exited (info->ptid))
918 inf_ttrace_resume_lwp (info, TT_LWP_CONTINUE, 0);
919
60e2c248
JG
920 return 0;
921}
922
eee22bf8 923static void
28439f5e 924inf_ttrace_resume (struct target_ops *ops,
2ea28649 925 ptid_t ptid, int step, enum gdb_signal signal)
eee22bf8 926{
438ac09b 927 int resume_all;
eee22bf8 928 ttreq_t request = step ? TT_LWP_SINGLE : TT_LWP_CONTINUE;
2ea28649 929 int sig = gdb_signal_to_host (signal);
438ac09b 930 struct thread_info *info;
eee22bf8 931
438ac09b
PA
932 /* A specific PTID means `step only this process id'. */
933 resume_all = (ptid_equal (ptid, minus_one_ptid));
eee22bf8 934
438ac09b
PA
935 /* If resuming all threads, it's the current thread that should be
936 handled specially. */
937 if (resume_all)
938 ptid = inferior_ptid;
eee22bf8 939
e09875d4 940 info = find_thread_ptid (ptid);
438ac09b
PA
941 inf_ttrace_resume_lwp (info, request, sig);
942
943 if (resume_all)
944 /* Let all the other threads run too. */
945 iterate_over_threads (inf_ttrace_resume_callback, NULL);
eee22bf8
MK
946}
947
948static ptid_t
117de6a9 949inf_ttrace_wait (struct target_ops *ops,
47608cb1 950 ptid_t ptid, struct target_waitstatus *ourstatus, int options)
eee22bf8
MK
951{
952 pid_t pid = ptid_get_pid (ptid);
953 lwpid_t lwpid = ptid_get_lwp (ptid);
954 ttstate_t tts;
60e2c248 955 struct thread_info *ti;
3a3e9ee3 956 ptid_t related_ptid;
eee22bf8 957
932936f0 958 /* Until proven otherwise. */
a7be7fa8 959 ourstatus->kind = TARGET_WAITKIND_SPURIOUS;
eee22bf8
MK
960
961 if (pid == -1)
b2a4db28 962 pid = lwpid = 0;
eee22bf8 963
b2a4db28 964 gdb_assert (pid != 0 || lwpid == 0);
eee22bf8
MK
965
966 do
967 {
968 set_sigint_trap ();
eee22bf8
MK
969
970 if (ttrace_wait (pid, lwpid, TTRACE_WAITOK, &tts, sizeof tts) == -1)
a3f17187 971 perror_with_name (("ttrace_wait"));
eee22bf8 972
b2a4db28
MK
973 if (tts.tts_event == TTEVT_VFORK && tts.tts_u.tts_fork.tts_isparent)
974 {
975 if (inf_ttrace_vfork_ppid != -1)
976 {
977 gdb_assert (inf_ttrace_vfork_ppid == tts.tts_pid);
978
979 if (ttrace (TT_PROC_DETACH, tts.tts_pid, 0, 0, 0, 0) == -1)
980 perror_with_name (("ttrace"));
981 inf_ttrace_vfork_ppid = -1;
982 }
983
984 tts.tts_event = TTEVT_NONE;
985 }
986
eee22bf8
MK
987 clear_sigint_trap ();
988 }
989 while (tts.tts_event == TTEVT_NONE);
990
932936f0
MK
991 /* Now that we've waited, we can re-enable the page protections. */
992 if (inf_ttrace_reenable_page_protections)
993 {
a7be7fa8 994 gdb_assert (inf_ttrace_num_lwps_in_syscall == 0);
932936f0
MK
995 inf_ttrace_enable_page_protections (tts.tts_pid);
996 inf_ttrace_reenable_page_protections = 0;
997 }
998
a7be7fa8
MK
999 ptid = ptid_build (tts.tts_pid, tts.tts_lwpid, 0);
1000
2935f27f
PA
1001 if (inf_ttrace_num_lwps == 0)
1002 {
1003 struct thread_info *ti;
1004
1005 inf_ttrace_num_lwps = 1;
1006
1007 /* This is the earliest we hear about the lwp member of
1008 INFERIOR_PTID, after an attach or fork_inferior. */
1009 gdb_assert (ptid_get_lwp (inferior_ptid) == 0);
1010
1011 /* We haven't set the private member on the main thread yet. Do
1012 it now. */
e09875d4 1013 ti = find_thread_ptid (inferior_ptid);
2935f27f
PA
1014 gdb_assert (ti != NULL && ti->private == NULL);
1015 ti->private =
1016 xmalloc (sizeof (struct inf_ttrace_private_thread_info));
1017 memset (ti->private, 0,
1018 sizeof (struct inf_ttrace_private_thread_info));
1019
1020 /* Notify the core that this ptid changed. This changes
1021 inferior_ptid as well. */
1022 thread_change_ptid (inferior_ptid, ptid);
1023 }
1024
eee22bf8
MK
1025 switch (tts.tts_event)
1026 {
7ba0e0c2
MK
1027#ifdef TTEVT_BPT_SSTEP
1028 case TTEVT_BPT_SSTEP:
1029 /* Make it look like a breakpoint. */
1030 ourstatus->kind = TARGET_WAITKIND_STOPPED;
a493e3e2 1031 ourstatus->value.sig = GDB_SIGNAL_TRAP;
7ba0e0c2
MK
1032 break;
1033#endif
1034
eee22bf8 1035 case TTEVT_EXEC:
5d426ff1
MK
1036 ourstatus->kind = TARGET_WAITKIND_EXECD;
1037 ourstatus->value.execd_pathname =
1038 xmalloc (tts.tts_u.tts_exec.tts_pathlen + 1);
1039 if (ttrace (TT_PROC_GET_PATHNAME, tts.tts_pid, 0,
1040 (uintptr_t)ourstatus->value.execd_pathname,
1041 tts.tts_u.tts_exec.tts_pathlen, 0) == -1)
1042 perror_with_name (("ttrace"));
1043 ourstatus->value.execd_pathname[tts.tts_u.tts_exec.tts_pathlen] = 0;
25b22b0a
PA
1044
1045 /* At this point, all inserted breakpoints are gone. Doing this
1046 as soon as we detect an exec prevents the badness of deleting
1047 a breakpoint writing the current "shadow contents" to lift
1048 the bp. That shadow is NOT valid after an exec. */
1049 mark_breakpoints_out ();
eee22bf8 1050 break;
932936f0 1051
eee22bf8
MK
1052 case TTEVT_EXIT:
1053 store_waitstatus (ourstatus, tts.tts_u.tts_exit.tts_exitcode);
a7be7fa8
MK
1054 inf_ttrace_num_lwps = 0;
1055 break;
1056
b2a4db28 1057 case TTEVT_FORK:
3a3e9ee3
PA
1058 related_ptid = ptid_build (tts.tts_u.tts_fork.tts_fpid,
1059 tts.tts_u.tts_fork.tts_flwpid, 0);
1060
b2a4db28 1061 ourstatus->kind = TARGET_WAITKIND_FORKED;
3a3e9ee3 1062 ourstatus->value.related_pid = related_ptid;
b2a4db28
MK
1063
1064 /* Make sure the other end of the fork is stopped too. */
1065 if (ttrace_wait (tts.tts_u.tts_fork.tts_fpid,
1066 tts.tts_u.tts_fork.tts_flwpid,
1067 TTRACE_WAITOK, &tts, sizeof tts) == -1)
1068 perror_with_name (("ttrace_wait"));
1069
1070 gdb_assert (tts.tts_event == TTEVT_FORK);
1071 if (tts.tts_u.tts_fork.tts_isparent)
1072 {
3a3e9ee3
PA
1073 related_ptid = ptid_build (tts.tts_u.tts_fork.tts_fpid,
1074 tts.tts_u.tts_fork.tts_flwpid, 0);
b2a4db28 1075 ptid = ptid_build (tts.tts_pid, tts.tts_lwpid, 0);
3a3e9ee3 1076 ourstatus->value.related_pid = related_ptid;
b2a4db28
MK
1077 }
1078 break;
1079
1080 case TTEVT_VFORK:
1081 gdb_assert (!tts.tts_u.tts_fork.tts_isparent);
1082
3a3e9ee3
PA
1083 related_ptid = ptid_build (tts.tts_u.tts_fork.tts_fpid,
1084 tts.tts_u.tts_fork.tts_flwpid, 0);
1085
b2a4db28 1086 ourstatus->kind = TARGET_WAITKIND_VFORKED;
3a3e9ee3 1087 ourstatus->value.related_pid = related_ptid;
b2a4db28
MK
1088
1089 /* HACK: To avoid touching the parent during the vfork, switch
1090 away from it. */
1091 inferior_ptid = ptid;
1092 break;
1093
a7be7fa8
MK
1094 case TTEVT_LWP_CREATE:
1095 lwpid = tts.tts_u.tts_thread.tts_target_lwpid;
1096 ptid = ptid_build (tts.tts_pid, lwpid, 0);
60e2c248
JG
1097 ti = add_thread (ptid);
1098 ti->private =
1099 xmalloc (sizeof (struct inf_ttrace_private_thread_info));
1100 memset (ti->private, 0,
1101 sizeof (struct inf_ttrace_private_thread_info));
a7be7fa8
MK
1102 inf_ttrace_num_lwps++;
1103 ptid = ptid_build (tts.tts_pid, tts.tts_lwpid, 0);
62a93fa9
PA
1104 /* Let the lwp_create-caller thread continue. */
1105 ttrace (TT_LWP_CONTINUE, ptid_get_pid (ptid),
1106 ptid_get_lwp (ptid), TT_NOPC, 0, 0);
1107 /* Return without stopping the whole process. */
1108 ourstatus->kind = TARGET_WAITKIND_IGNORE;
1109 return ptid;
a7be7fa8
MK
1110
1111 case TTEVT_LWP_EXIT:
17faa917
DJ
1112 if (print_thread_events)
1113 printf_unfiltered (_("[%s exited]\n"), target_pid_to_str (ptid));
e09875d4 1114 ti = find_thread_ptid (ptid);
60e2c248
JG
1115 gdb_assert (ti != NULL);
1116 ((struct inf_ttrace_private_thread_info *)ti->private)->dying = 1;
a7be7fa8 1117 inf_ttrace_num_lwps--;
62a93fa9 1118 /* Let the thread really exit. */
60e2c248
JG
1119 ttrace (TT_LWP_CONTINUE, ptid_get_pid (ptid),
1120 ptid_get_lwp (ptid), TT_NOPC, 0, 0);
62a93fa9
PA
1121 /* Return without stopping the whole process. */
1122 ourstatus->kind = TARGET_WAITKIND_IGNORE;
1123 return ptid;
a7be7fa8
MK
1124
1125 case TTEVT_LWP_TERMINATE:
1126 lwpid = tts.tts_u.tts_thread.tts_target_lwpid;
1127 ptid = ptid_build (tts.tts_pid, lwpid, 0);
62a93fa9 1128 if (print_thread_events)
b861ac81 1129 printf_unfiltered(_("[%s has been terminated]\n"),
62a93fa9 1130 target_pid_to_str (ptid));
e09875d4 1131 ti = find_thread_ptid (ptid);
60e2c248
JG
1132 gdb_assert (ti != NULL);
1133 ((struct inf_ttrace_private_thread_info *)ti->private)->dying = 1;
a7be7fa8 1134 inf_ttrace_num_lwps--;
62a93fa9
PA
1135
1136 /* Resume the lwp_terminate-caller thread. */
a7be7fa8 1137 ptid = ptid_build (tts.tts_pid, tts.tts_lwpid, 0);
62a93fa9
PA
1138 ttrace (TT_LWP_CONTINUE, ptid_get_pid (ptid),
1139 ptid_get_lwp (ptid), TT_NOPC, 0, 0);
1140 /* Return without stopping the whole process. */
1141 ourstatus->kind = TARGET_WAITKIND_IGNORE;
1142 return ptid;
932936f0 1143
eee22bf8
MK
1144 case TTEVT_SIGNAL:
1145 ourstatus->kind = TARGET_WAITKIND_STOPPED;
1146 ourstatus->value.sig =
2ea28649 1147 gdb_signal_from_host (tts.tts_u.tts_signal.tts_signo);
eee22bf8 1148 break;
932936f0
MK
1149
1150 case TTEVT_SYSCALL_ENTRY:
1151 gdb_assert (inf_ttrace_reenable_page_protections == 0);
a7be7fa8
MK
1152 inf_ttrace_num_lwps_in_syscall++;
1153 if (inf_ttrace_num_lwps_in_syscall == 1)
932936f0
MK
1154 {
1155 /* A thread has just entered a system call. Disable any
1156 page protections as the kernel can't deal with them. */
1157 inf_ttrace_disable_page_protections (tts.tts_pid);
1158 }
1159 ourstatus->kind = TARGET_WAITKIND_SYSCALL_ENTRY;
01dedca2 1160 ourstatus->value.syscall_number = tts.tts_scno;
932936f0
MK
1161 break;
1162
1163 case TTEVT_SYSCALL_RETURN:
a7be7fa8 1164 if (inf_ttrace_num_lwps_in_syscall > 0)
932936f0
MK
1165 {
1166 /* If the last thread has just left the system call, this
1167 would be a logical place to re-enable the page
1168 protections, but that doesn't work. We can't re-enable
1169 them until we've done another wait. */
1170 inf_ttrace_reenable_page_protections =
a7be7fa8
MK
1171 (inf_ttrace_num_lwps_in_syscall == 1);
1172 inf_ttrace_num_lwps_in_syscall--;
932936f0
MK
1173 }
1174 ourstatus->kind = TARGET_WAITKIND_SYSCALL_RETURN;
01dedca2 1175 ourstatus->value.syscall_number = tts.tts_scno;
932936f0 1176 break;
a7be7fa8
MK
1177
1178 default:
1179 gdb_assert (!"Unexpected ttrace event");
1180 break;
eee22bf8
MK
1181 }
1182
1183 /* Make sure all threads within the process are stopped. */
1184 if (ttrace (TT_PROC_STOP, tts.tts_pid, 0, 0, 0, 0) == -1)
e2e0b3e5 1185 perror_with_name (("ttrace"));
eee22bf8 1186
438ac09b
PA
1187 /* Now that the whole process is stopped, check if any dying thread
1188 is really dead by now. If a dying thread is still alive, it will
1189 be stopped too, and will still show up in `info threads', tagged
1190 with "(Exiting)". We could make `info threads' prune dead
1191 threads instead via inf_ttrace_thread_alive, but doing this here
1192 has the advantage that a frontend is notificed sooner of thread
1193 exits. Note that a dying lwp is still alive, it still has to be
1194 resumed, like any other lwp. */
1195 iterate_over_threads (inf_ttrace_delete_dead_threads_callback, NULL);
1196
a7be7fa8 1197 return ptid;
eee22bf8
MK
1198}
1199
1200/* Transfer LEN bytes from ADDR in the inferior's memory into READBUF,
1201 and transfer LEN bytes from WRITEBUF into the inferior's memory at
1202 ADDR. Either READBUF or WRITEBUF may be null, in which case the
1203 corresponding transfer doesn't happen. Return the number of bytes
1204 actually transferred (which may be zero if an error occurs). */
1205
1206static LONGEST
1207inf_ttrace_xfer_memory (CORE_ADDR addr, ULONGEST len,
1208 void *readbuf, const void *writebuf)
1209{
1210 pid_t pid = ptid_get_pid (inferior_ptid);
1211
1212 /* HP-UX treats text space and data space differently. GDB however,
1213 doesn't really know the difference. Therefore we try both. Try
1214 text space before data space though because when we're writing
1215 into text space the instruction cache might need to be flushed. */
1216
1217 if (readbuf
1218 && ttrace (TT_PROC_RDTEXT, pid, 0, addr, len, (uintptr_t)readbuf) == -1
1219 && ttrace (TT_PROC_RDDATA, pid, 0, addr, len, (uintptr_t)readbuf) == -1)
1220 return 0;
1221
1222 if (writebuf
1223 && ttrace (TT_PROC_WRTEXT, pid, 0, addr, len, (uintptr_t)writebuf) == -1
1224 && ttrace (TT_PROC_WRDATA, pid, 0, addr, len, (uintptr_t)writebuf) == -1)
1225 return 0;
1226
1227 return len;
1228}
1229
9b409511 1230static enum target_xfer_status
eee22bf8 1231inf_ttrace_xfer_partial (struct target_ops *ops, enum target_object object,
7a4609f7 1232 const char *annex, gdb_byte *readbuf,
3e43a32a 1233 const gdb_byte *writebuf,
9b409511 1234 ULONGEST offset, ULONGEST len, ULONGEST *xfered_len)
eee22bf8
MK
1235{
1236 switch (object)
1237 {
1238 case TARGET_OBJECT_MEMORY:
9b409511
YQ
1239 {
1240 LONGEST val = inf_ttrace_xfer_memory (offset, len, readbuf, writebuf);
1241
1242 if (val == 0)
1243 return TARGET_XFER_EOF;
1244 else
1245 {
1246 *xfered_len = (ULONGEST) val;
1247 return TARGET_XFER_OK;
1248 }
1249 }
eee22bf8
MK
1250
1251 case TARGET_OBJECT_UNWIND_TABLE:
2ed4b548 1252 return TARGET_XFER_E_IO;
eee22bf8
MK
1253
1254 case TARGET_OBJECT_AUXV:
2ed4b548 1255 return TARGET_XFER_E_IO;
eee22bf8
MK
1256
1257 case TARGET_OBJECT_WCOOKIE:
2ed4b548 1258 return TARGET_XFER_E_IO;
eee22bf8
MK
1259
1260 default:
2ed4b548 1261 return TARGET_XFER_E_IO;
eee22bf8
MK
1262 }
1263}
1264
1265/* Print status information about what we're accessing. */
1266
1267static void
1268inf_ttrace_files_info (struct target_ops *ignore)
1269{
181e7f93 1270 struct inferior *inf = current_inferior ();
346e281c 1271 printf_filtered (_("\tUsing the running image of %s %s.\n"),
181e7f93 1272 inf->attach_flag ? "attached" : "child",
346e281c 1273 target_pid_to_str (inferior_ptid));
eee22bf8 1274}
a7be7fa8
MK
1275
1276static int
28439f5e 1277inf_ttrace_thread_alive (struct target_ops *ops, ptid_t ptid)
a7be7fa8 1278{
438ac09b
PA
1279 return 1;
1280}
1281
1282/* Return a string describing the state of the thread specified by
1283 INFO. */
1284
1285static char *
c15906d8
TT
1286inf_ttrace_extra_thread_info (struct target_ops *self,
1287 struct thread_info *info)
438ac09b
PA
1288{
1289 struct inf_ttrace_private_thread_info* private =
1290 (struct inf_ttrace_private_thread_info *) info->private;
1291
1292 if (private != NULL && private->dying)
1293 return "Exiting";
1294
1295 return NULL;
a7be7fa8
MK
1296}
1297
1298static char *
117de6a9 1299inf_ttrace_pid_to_str (struct target_ops *ops, ptid_t ptid)
a7be7fa8 1300{
2935f27f
PA
1301 pid_t pid = ptid_get_pid (ptid);
1302 lwpid_t lwpid = ptid_get_lwp (ptid);
1303 static char buf[128];
a7be7fa8 1304
2935f27f
PA
1305 if (lwpid == 0)
1306 xsnprintf (buf, sizeof buf, "process %ld",
1307 (long) pid);
1308 else
1309 xsnprintf (buf, sizeof buf, "process %ld, lwp %ld",
1310 (long) pid, (long) lwpid);
1311 return buf;
a7be7fa8 1312}
eee22bf8
MK
1313\f
1314
fa07e785
JB
1315/* Implement the get_ada_task_ptid target_ops method. */
1316
1317static ptid_t
1e6b91a4 1318inf_ttrace_get_ada_task_ptid (struct target_ops *self, long lwp, long thread)
fa07e785
JB
1319{
1320 return ptid_build (ptid_get_pid (inferior_ptid), lwp, 0);
1321}
1322
1323\f
eee22bf8
MK
1324struct target_ops *
1325inf_ttrace_target (void)
1326{
1327 struct target_ops *t = inf_child_target ();
1328
eee22bf8
MK
1329 t->to_attach = inf_ttrace_attach;
1330 t->to_detach = inf_ttrace_detach;
1331 t->to_resume = inf_ttrace_resume;
1332 t->to_wait = inf_ttrace_wait;
eee22bf8 1333 t->to_files_info = inf_ttrace_files_info;
932936f0 1334 t->to_can_use_hw_breakpoint = inf_ttrace_can_use_hw_breakpoint;
932936f0
MK
1335 t->to_insert_watchpoint = inf_ttrace_insert_watchpoint;
1336 t->to_remove_watchpoint = inf_ttrace_remove_watchpoint;
1337 t->to_stopped_by_watchpoint = inf_ttrace_stopped_by_watchpoint;
2a3cdf79
WZ
1338 t->to_region_ok_for_hw_watchpoint =
1339 inf_ttrace_region_ok_for_hw_watchpoint;
346e281c
MK
1340 t->to_kill = inf_ttrace_kill;
1341 t->to_create_inferior = inf_ttrace_create_inferior;
1342 t->to_follow_fork = inf_ttrace_follow_fork;
1343 t->to_mourn_inferior = inf_ttrace_mourn_inferior;
1344 t->to_thread_alive = inf_ttrace_thread_alive;
438ac09b 1345 t->to_extra_thread_info = inf_ttrace_extra_thread_info;
346e281c
MK
1346 t->to_pid_to_str = inf_ttrace_pid_to_str;
1347 t->to_xfer_partial = inf_ttrace_xfer_partial;
fa07e785 1348 t->to_get_ada_task_ptid = inf_ttrace_get_ada_task_ptid;
eee22bf8 1349
eee22bf8
MK
1350 return t;
1351}
d3322e8a 1352#endif
932936f0
MK
1353\f
1354
1355/* Prevent warning from -Wmissing-prototypes. */
0b155465 1356void _initialize_inf_ttrace (void);
eee22bf8 1357
932936f0
MK
1358void
1359_initialize_inf_ttrace (void)
1360{
d3322e8a 1361#ifdef HAVE_TTRACE
932936f0 1362 inf_ttrace_page_dict.pagesize = getpagesize();
eee22bf8 1363#endif
d3322e8a 1364}
This page took 1.680272 seconds and 4 git commands to generate.