target: add to_record_stop_replaying target method
[deliverable/binutils-gdb.git] / gdb / record-btrace.c
1 /* Branch trace support for GDB, the GNU debugger.
2
3 Copyright (C) 2013-2015 Free Software Foundation, Inc.
4
5 Contributed by Intel Corp. <markus.t.metzger@intel.com>
6
7 This file is part of GDB.
8
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 3 of the License, or
12 (at your option) any later version.
13
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with this program. If not, see <http://www.gnu.org/licenses/>. */
21
22 #include "defs.h"
23 #include "record.h"
24 #include "gdbthread.h"
25 #include "target.h"
26 #include "gdbcmd.h"
27 #include "disasm.h"
28 #include "observer.h"
29 #include "cli/cli-utils.h"
30 #include "source.h"
31 #include "ui-out.h"
32 #include "symtab.h"
33 #include "filenames.h"
34 #include "regcache.h"
35 #include "frame-unwind.h"
36 #include "hashtab.h"
37 #include "infrun.h"
38 #include "event-loop.h"
39 #include "inf-loop.h"
40 #include "vec.h"
41
42 /* The target_ops of record-btrace. */
43 static struct target_ops record_btrace_ops;
44
45 /* A new thread observer enabling branch tracing for the new thread. */
46 static struct observer *record_btrace_thread_observer;
47
48 /* Memory access types used in set/show record btrace replay-memory-access. */
49 static const char replay_memory_access_read_only[] = "read-only";
50 static const char replay_memory_access_read_write[] = "read-write";
51 static const char *const replay_memory_access_types[] =
52 {
53 replay_memory_access_read_only,
54 replay_memory_access_read_write,
55 NULL
56 };
57
58 /* The currently allowed replay memory access type. */
59 static const char *replay_memory_access = replay_memory_access_read_only;
60
61 /* Command lists for "set/show record btrace". */
62 static struct cmd_list_element *set_record_btrace_cmdlist;
63 static struct cmd_list_element *show_record_btrace_cmdlist;
64
65 /* The execution direction of the last resume we got. See record-full.c. */
66 static enum exec_direction_kind record_btrace_resume_exec_dir = EXEC_FORWARD;
67
68 /* The async event handler for reverse/replay execution. */
69 static struct async_event_handler *record_btrace_async_inferior_event_handler;
70
71 /* A flag indicating that we are currently generating a core file. */
72 static int record_btrace_generating_corefile;
73
74 /* The current branch trace configuration. */
75 static struct btrace_config record_btrace_conf;
76
77 /* Command list for "record btrace". */
78 static struct cmd_list_element *record_btrace_cmdlist;
79
80 /* Command lists for "set/show record btrace bts". */
81 static struct cmd_list_element *set_record_btrace_bts_cmdlist;
82 static struct cmd_list_element *show_record_btrace_bts_cmdlist;
83
84 /* Command lists for "set/show record btrace pt". */
85 static struct cmd_list_element *set_record_btrace_pt_cmdlist;
86 static struct cmd_list_element *show_record_btrace_pt_cmdlist;
87
88 /* Print a record-btrace debug message. Use do ... while (0) to avoid
89 ambiguities when used in if statements. */
90
91 #define DEBUG(msg, args...) \
92 do \
93 { \
94 if (record_debug != 0) \
95 fprintf_unfiltered (gdb_stdlog, \
96 "[record-btrace] " msg "\n", ##args); \
97 } \
98 while (0)
99
100
101 /* Update the branch trace for the current thread and return a pointer to its
102 thread_info.
103
104 Throws an error if there is no thread or no trace. This function never
105 returns NULL. */
106
107 static struct thread_info *
108 require_btrace_thread (void)
109 {
110 struct thread_info *tp;
111
112 DEBUG ("require");
113
114 tp = find_thread_ptid (inferior_ptid);
115 if (tp == NULL)
116 error (_("No thread."));
117
118 btrace_fetch (tp);
119
120 if (btrace_is_empty (tp))
121 error (_("No trace."));
122
123 return tp;
124 }
125
126 /* Update the branch trace for the current thread and return a pointer to its
127 branch trace information struct.
128
129 Throws an error if there is no thread or no trace. This function never
130 returns NULL. */
131
132 static struct btrace_thread_info *
133 require_btrace (void)
134 {
135 struct thread_info *tp;
136
137 tp = require_btrace_thread ();
138
139 return &tp->btrace;
140 }
141
142 /* Enable branch tracing for one thread. Warn on errors. */
143
144 static void
145 record_btrace_enable_warn (struct thread_info *tp)
146 {
147 TRY
148 {
149 btrace_enable (tp, &record_btrace_conf);
150 }
151 CATCH (error, RETURN_MASK_ERROR)
152 {
153 warning ("%s", error.message);
154 }
155 END_CATCH
156 }
157
158 /* Callback function to disable branch tracing for one thread. */
159
160 static void
161 record_btrace_disable_callback (void *arg)
162 {
163 struct thread_info *tp;
164
165 tp = arg;
166
167 btrace_disable (tp);
168 }
169
170 /* Enable automatic tracing of new threads. */
171
172 static void
173 record_btrace_auto_enable (void)
174 {
175 DEBUG ("attach thread observer");
176
177 record_btrace_thread_observer
178 = observer_attach_new_thread (record_btrace_enable_warn);
179 }
180
181 /* Disable automatic tracing of new threads. */
182
183 static void
184 record_btrace_auto_disable (void)
185 {
186 /* The observer may have been detached, already. */
187 if (record_btrace_thread_observer == NULL)
188 return;
189
190 DEBUG ("detach thread observer");
191
192 observer_detach_new_thread (record_btrace_thread_observer);
193 record_btrace_thread_observer = NULL;
194 }
195
196 /* The record-btrace async event handler function. */
197
198 static void
199 record_btrace_handle_async_inferior_event (gdb_client_data data)
200 {
201 inferior_event_handler (INF_REG_EVENT, NULL);
202 }
203
204 /* The to_open method of target record-btrace. */
205
206 static void
207 record_btrace_open (const char *args, int from_tty)
208 {
209 struct cleanup *disable_chain;
210 struct thread_info *tp;
211
212 DEBUG ("open");
213
214 record_preopen ();
215
216 if (!target_has_execution)
217 error (_("The program is not being run."));
218
219 gdb_assert (record_btrace_thread_observer == NULL);
220
221 disable_chain = make_cleanup (null_cleanup, NULL);
222 ALL_NON_EXITED_THREADS (tp)
223 if (args == NULL || *args == 0 || number_is_in_list (args, tp->num))
224 {
225 btrace_enable (tp, &record_btrace_conf);
226
227 make_cleanup (record_btrace_disable_callback, tp);
228 }
229
230 record_btrace_auto_enable ();
231
232 push_target (&record_btrace_ops);
233
234 record_btrace_async_inferior_event_handler
235 = create_async_event_handler (record_btrace_handle_async_inferior_event,
236 NULL);
237 record_btrace_generating_corefile = 0;
238
239 observer_notify_record_changed (current_inferior (), 1);
240
241 discard_cleanups (disable_chain);
242 }
243
244 /* The to_stop_recording method of target record-btrace. */
245
246 static void
247 record_btrace_stop_recording (struct target_ops *self)
248 {
249 struct thread_info *tp;
250
251 DEBUG ("stop recording");
252
253 record_btrace_auto_disable ();
254
255 ALL_NON_EXITED_THREADS (tp)
256 if (tp->btrace.target != NULL)
257 btrace_disable (tp);
258 }
259
260 /* The to_close method of target record-btrace. */
261
262 static void
263 record_btrace_close (struct target_ops *self)
264 {
265 struct thread_info *tp;
266
267 if (record_btrace_async_inferior_event_handler != NULL)
268 delete_async_event_handler (&record_btrace_async_inferior_event_handler);
269
270 /* Make sure automatic recording gets disabled even if we did not stop
271 recording before closing the record-btrace target. */
272 record_btrace_auto_disable ();
273
274 /* We should have already stopped recording.
275 Tear down btrace in case we have not. */
276 ALL_NON_EXITED_THREADS (tp)
277 btrace_teardown (tp);
278 }
279
280 /* The to_async method of target record-btrace. */
281
282 static void
283 record_btrace_async (struct target_ops *ops, int enable)
284 {
285 if (enable)
286 mark_async_event_handler (record_btrace_async_inferior_event_handler);
287 else
288 clear_async_event_handler (record_btrace_async_inferior_event_handler);
289
290 ops->beneath->to_async (ops->beneath, enable);
291 }
292
293 /* Adjusts the size and returns a human readable size suffix. */
294
295 static const char *
296 record_btrace_adjust_size (unsigned int *size)
297 {
298 unsigned int sz;
299
300 sz = *size;
301
302 if ((sz & ((1u << 30) - 1)) == 0)
303 {
304 *size = sz >> 30;
305 return "GB";
306 }
307 else if ((sz & ((1u << 20) - 1)) == 0)
308 {
309 *size = sz >> 20;
310 return "MB";
311 }
312 else if ((sz & ((1u << 10) - 1)) == 0)
313 {
314 *size = sz >> 10;
315 return "kB";
316 }
317 else
318 return "";
319 }
320
321 /* Print a BTS configuration. */
322
323 static void
324 record_btrace_print_bts_conf (const struct btrace_config_bts *conf)
325 {
326 const char *suffix;
327 unsigned int size;
328
329 size = conf->size;
330 if (size > 0)
331 {
332 suffix = record_btrace_adjust_size (&size);
333 printf_unfiltered (_("Buffer size: %u%s.\n"), size, suffix);
334 }
335 }
336
337 /* Print an Intel(R) Processor Trace configuration. */
338
339 static void
340 record_btrace_print_pt_conf (const struct btrace_config_pt *conf)
341 {
342 const char *suffix;
343 unsigned int size;
344
345 size = conf->size;
346 if (size > 0)
347 {
348 suffix = record_btrace_adjust_size (&size);
349 printf_unfiltered (_("Buffer size: %u%s.\n"), size, suffix);
350 }
351 }
352
353 /* Print a branch tracing configuration. */
354
355 static void
356 record_btrace_print_conf (const struct btrace_config *conf)
357 {
358 printf_unfiltered (_("Recording format: %s.\n"),
359 btrace_format_string (conf->format));
360
361 switch (conf->format)
362 {
363 case BTRACE_FORMAT_NONE:
364 return;
365
366 case BTRACE_FORMAT_BTS:
367 record_btrace_print_bts_conf (&conf->bts);
368 return;
369
370 case BTRACE_FORMAT_PT:
371 record_btrace_print_pt_conf (&conf->pt);
372 return;
373 }
374
375 internal_error (__FILE__, __LINE__, _("Unkown branch trace format."));
376 }
377
378 /* The to_info_record method of target record-btrace. */
379
380 static void
381 record_btrace_info (struct target_ops *self)
382 {
383 struct btrace_thread_info *btinfo;
384 const struct btrace_config *conf;
385 struct thread_info *tp;
386 unsigned int insns, calls, gaps;
387
388 DEBUG ("info");
389
390 tp = find_thread_ptid (inferior_ptid);
391 if (tp == NULL)
392 error (_("No thread."));
393
394 btinfo = &tp->btrace;
395
396 conf = btrace_conf (btinfo);
397 if (conf != NULL)
398 record_btrace_print_conf (conf);
399
400 btrace_fetch (tp);
401
402 insns = 0;
403 calls = 0;
404 gaps = 0;
405
406 if (!btrace_is_empty (tp))
407 {
408 struct btrace_call_iterator call;
409 struct btrace_insn_iterator insn;
410
411 btrace_call_end (&call, btinfo);
412 btrace_call_prev (&call, 1);
413 calls = btrace_call_number (&call);
414
415 btrace_insn_end (&insn, btinfo);
416
417 insns = btrace_insn_number (&insn);
418 if (insns != 0)
419 {
420 /* The last instruction does not really belong to the trace. */
421 insns -= 1;
422 }
423 else
424 {
425 unsigned int steps;
426
427 /* Skip gaps at the end. */
428 do
429 {
430 steps = btrace_insn_prev (&insn, 1);
431 if (steps == 0)
432 break;
433
434 insns = btrace_insn_number (&insn);
435 }
436 while (insns == 0);
437 }
438
439 gaps = btinfo->ngaps;
440 }
441
442 printf_unfiltered (_("Recorded %u instructions in %u functions (%u gaps) "
443 "for thread %d (%s).\n"), insns, calls, gaps,
444 tp->num, target_pid_to_str (tp->ptid));
445
446 if (btrace_is_replaying (tp))
447 printf_unfiltered (_("Replay in progress. At instruction %u.\n"),
448 btrace_insn_number (btinfo->replay));
449 }
450
451 /* Print a decode error. */
452
453 static void
454 btrace_ui_out_decode_error (struct ui_out *uiout, int errcode,
455 enum btrace_format format)
456 {
457 const char *errstr;
458 int is_error;
459
460 errstr = _("unknown");
461 is_error = 1;
462
463 switch (format)
464 {
465 default:
466 break;
467
468 case BTRACE_FORMAT_BTS:
469 switch (errcode)
470 {
471 default:
472 break;
473
474 case BDE_BTS_OVERFLOW:
475 errstr = _("instruction overflow");
476 break;
477
478 case BDE_BTS_INSN_SIZE:
479 errstr = _("unknown instruction");
480 break;
481 }
482 break;
483
484 #if defined (HAVE_LIBIPT)
485 case BTRACE_FORMAT_PT:
486 switch (errcode)
487 {
488 case BDE_PT_USER_QUIT:
489 is_error = 0;
490 errstr = _("trace decode cancelled");
491 break;
492
493 case BDE_PT_DISABLED:
494 is_error = 0;
495 errstr = _("disabled");
496 break;
497
498 case BDE_PT_OVERFLOW:
499 is_error = 0;
500 errstr = _("overflow");
501 break;
502
503 default:
504 if (errcode < 0)
505 errstr = pt_errstr (pt_errcode (errcode));
506 break;
507 }
508 break;
509 #endif /* defined (HAVE_LIBIPT) */
510 }
511
512 ui_out_text (uiout, _("["));
513 if (is_error)
514 {
515 ui_out_text (uiout, _("decode error ("));
516 ui_out_field_int (uiout, "errcode", errcode);
517 ui_out_text (uiout, _("): "));
518 }
519 ui_out_text (uiout, errstr);
520 ui_out_text (uiout, _("]\n"));
521 }
522
523 /* Print an unsigned int. */
524
525 static void
526 ui_out_field_uint (struct ui_out *uiout, const char *fld, unsigned int val)
527 {
528 ui_out_field_fmt (uiout, fld, "%u", val);
529 }
530
531 /* Disassemble a section of the recorded instruction trace. */
532
533 static void
534 btrace_insn_history (struct ui_out *uiout,
535 const struct btrace_thread_info *btinfo,
536 const struct btrace_insn_iterator *begin,
537 const struct btrace_insn_iterator *end, int flags)
538 {
539 struct gdbarch *gdbarch;
540 struct btrace_insn_iterator it;
541
542 DEBUG ("itrace (0x%x): [%u; %u)", flags, btrace_insn_number (begin),
543 btrace_insn_number (end));
544
545 gdbarch = target_gdbarch ();
546
547 for (it = *begin; btrace_insn_cmp (&it, end) != 0; btrace_insn_next (&it, 1))
548 {
549 const struct btrace_insn *insn;
550
551 insn = btrace_insn_get (&it);
552
553 /* A NULL instruction indicates a gap in the trace. */
554 if (insn == NULL)
555 {
556 const struct btrace_config *conf;
557
558 conf = btrace_conf (btinfo);
559
560 /* We have trace so we must have a configuration. */
561 gdb_assert (conf != NULL);
562
563 btrace_ui_out_decode_error (uiout, it.function->errcode,
564 conf->format);
565 }
566 else
567 {
568 char prefix[4];
569
570 /* We may add a speculation prefix later. We use the same space
571 that is used for the pc prefix. */
572 if ((flags & DISASSEMBLY_OMIT_PC) == 0)
573 strncpy (prefix, pc_prefix (insn->pc), 3);
574 else
575 {
576 prefix[0] = ' ';
577 prefix[1] = ' ';
578 prefix[2] = ' ';
579 }
580 prefix[3] = 0;
581
582 /* Print the instruction index. */
583 ui_out_field_uint (uiout, "index", btrace_insn_number (&it));
584 ui_out_text (uiout, "\t");
585
586 /* Indicate speculative execution by a leading '?'. */
587 if ((insn->flags & BTRACE_INSN_FLAG_SPECULATIVE) != 0)
588 prefix[0] = '?';
589
590 /* Print the prefix; we tell gdb_disassembly below to omit it. */
591 ui_out_field_fmt (uiout, "prefix", "%s", prefix);
592
593 /* Disassembly with '/m' flag may not produce the expected result.
594 See PR gdb/11833. */
595 gdb_disassembly (gdbarch, uiout, NULL, flags | DISASSEMBLY_OMIT_PC,
596 1, insn->pc, insn->pc + 1);
597 }
598 }
599 }
600
601 /* The to_insn_history method of target record-btrace. */
602
603 static void
604 record_btrace_insn_history (struct target_ops *self, int size, int flags)
605 {
606 struct btrace_thread_info *btinfo;
607 struct btrace_insn_history *history;
608 struct btrace_insn_iterator begin, end;
609 struct cleanup *uiout_cleanup;
610 struct ui_out *uiout;
611 unsigned int context, covered;
612
613 uiout = current_uiout;
614 uiout_cleanup = make_cleanup_ui_out_tuple_begin_end (uiout,
615 "insn history");
616 context = abs (size);
617 if (context == 0)
618 error (_("Bad record instruction-history-size."));
619
620 btinfo = require_btrace ();
621 history = btinfo->insn_history;
622 if (history == NULL)
623 {
624 struct btrace_insn_iterator *replay;
625
626 DEBUG ("insn-history (0x%x): %d", flags, size);
627
628 /* If we're replaying, we start at the replay position. Otherwise, we
629 start at the tail of the trace. */
630 replay = btinfo->replay;
631 if (replay != NULL)
632 begin = *replay;
633 else
634 btrace_insn_end (&begin, btinfo);
635
636 /* We start from here and expand in the requested direction. Then we
637 expand in the other direction, as well, to fill up any remaining
638 context. */
639 end = begin;
640 if (size < 0)
641 {
642 /* We want the current position covered, as well. */
643 covered = btrace_insn_next (&end, 1);
644 covered += btrace_insn_prev (&begin, context - covered);
645 covered += btrace_insn_next (&end, context - covered);
646 }
647 else
648 {
649 covered = btrace_insn_next (&end, context);
650 covered += btrace_insn_prev (&begin, context - covered);
651 }
652 }
653 else
654 {
655 begin = history->begin;
656 end = history->end;
657
658 DEBUG ("insn-history (0x%x): %d, prev: [%u; %u)", flags, size,
659 btrace_insn_number (&begin), btrace_insn_number (&end));
660
661 if (size < 0)
662 {
663 end = begin;
664 covered = btrace_insn_prev (&begin, context);
665 }
666 else
667 {
668 begin = end;
669 covered = btrace_insn_next (&end, context);
670 }
671 }
672
673 if (covered > 0)
674 btrace_insn_history (uiout, btinfo, &begin, &end, flags);
675 else
676 {
677 if (size < 0)
678 printf_unfiltered (_("At the start of the branch trace record.\n"));
679 else
680 printf_unfiltered (_("At the end of the branch trace record.\n"));
681 }
682
683 btrace_set_insn_history (btinfo, &begin, &end);
684 do_cleanups (uiout_cleanup);
685 }
686
687 /* The to_insn_history_range method of target record-btrace. */
688
689 static void
690 record_btrace_insn_history_range (struct target_ops *self,
691 ULONGEST from, ULONGEST to, int flags)
692 {
693 struct btrace_thread_info *btinfo;
694 struct btrace_insn_history *history;
695 struct btrace_insn_iterator begin, end;
696 struct cleanup *uiout_cleanup;
697 struct ui_out *uiout;
698 unsigned int low, high;
699 int found;
700
701 uiout = current_uiout;
702 uiout_cleanup = make_cleanup_ui_out_tuple_begin_end (uiout,
703 "insn history");
704 low = from;
705 high = to;
706
707 DEBUG ("insn-history (0x%x): [%u; %u)", flags, low, high);
708
709 /* Check for wrap-arounds. */
710 if (low != from || high != to)
711 error (_("Bad range."));
712
713 if (high < low)
714 error (_("Bad range."));
715
716 btinfo = require_btrace ();
717
718 found = btrace_find_insn_by_number (&begin, btinfo, low);
719 if (found == 0)
720 error (_("Range out of bounds."));
721
722 found = btrace_find_insn_by_number (&end, btinfo, high);
723 if (found == 0)
724 {
725 /* Silently truncate the range. */
726 btrace_insn_end (&end, btinfo);
727 }
728 else
729 {
730 /* We want both begin and end to be inclusive. */
731 btrace_insn_next (&end, 1);
732 }
733
734 btrace_insn_history (uiout, btinfo, &begin, &end, flags);
735 btrace_set_insn_history (btinfo, &begin, &end);
736
737 do_cleanups (uiout_cleanup);
738 }
739
740 /* The to_insn_history_from method of target record-btrace. */
741
742 static void
743 record_btrace_insn_history_from (struct target_ops *self,
744 ULONGEST from, int size, int flags)
745 {
746 ULONGEST begin, end, context;
747
748 context = abs (size);
749 if (context == 0)
750 error (_("Bad record instruction-history-size."));
751
752 if (size < 0)
753 {
754 end = from;
755
756 if (from < context)
757 begin = 0;
758 else
759 begin = from - context + 1;
760 }
761 else
762 {
763 begin = from;
764 end = from + context - 1;
765
766 /* Check for wrap-around. */
767 if (end < begin)
768 end = ULONGEST_MAX;
769 }
770
771 record_btrace_insn_history_range (self, begin, end, flags);
772 }
773
774 /* Print the instruction number range for a function call history line. */
775
776 static void
777 btrace_call_history_insn_range (struct ui_out *uiout,
778 const struct btrace_function *bfun)
779 {
780 unsigned int begin, end, size;
781
782 size = VEC_length (btrace_insn_s, bfun->insn);
783 gdb_assert (size > 0);
784
785 begin = bfun->insn_offset;
786 end = begin + size - 1;
787
788 ui_out_field_uint (uiout, "insn begin", begin);
789 ui_out_text (uiout, ",");
790 ui_out_field_uint (uiout, "insn end", end);
791 }
792
793 /* Compute the lowest and highest source line for the instructions in BFUN
794 and return them in PBEGIN and PEND.
795 Ignore instructions that can't be mapped to BFUN, e.g. instructions that
796 result from inlining or macro expansion. */
797
798 static void
799 btrace_compute_src_line_range (const struct btrace_function *bfun,
800 int *pbegin, int *pend)
801 {
802 struct btrace_insn *insn;
803 struct symtab *symtab;
804 struct symbol *sym;
805 unsigned int idx;
806 int begin, end;
807
808 begin = INT_MAX;
809 end = INT_MIN;
810
811 sym = bfun->sym;
812 if (sym == NULL)
813 goto out;
814
815 symtab = symbol_symtab (sym);
816
817 for (idx = 0; VEC_iterate (btrace_insn_s, bfun->insn, idx, insn); ++idx)
818 {
819 struct symtab_and_line sal;
820
821 sal = find_pc_line (insn->pc, 0);
822 if (sal.symtab != symtab || sal.line == 0)
823 continue;
824
825 begin = min (begin, sal.line);
826 end = max (end, sal.line);
827 }
828
829 out:
830 *pbegin = begin;
831 *pend = end;
832 }
833
834 /* Print the source line information for a function call history line. */
835
836 static void
837 btrace_call_history_src_line (struct ui_out *uiout,
838 const struct btrace_function *bfun)
839 {
840 struct symbol *sym;
841 int begin, end;
842
843 sym = bfun->sym;
844 if (sym == NULL)
845 return;
846
847 ui_out_field_string (uiout, "file",
848 symtab_to_filename_for_display (symbol_symtab (sym)));
849
850 btrace_compute_src_line_range (bfun, &begin, &end);
851 if (end < begin)
852 return;
853
854 ui_out_text (uiout, ":");
855 ui_out_field_int (uiout, "min line", begin);
856
857 if (end == begin)
858 return;
859
860 ui_out_text (uiout, ",");
861 ui_out_field_int (uiout, "max line", end);
862 }
863
864 /* Get the name of a branch trace function. */
865
866 static const char *
867 btrace_get_bfun_name (const struct btrace_function *bfun)
868 {
869 struct minimal_symbol *msym;
870 struct symbol *sym;
871
872 if (bfun == NULL)
873 return "??";
874
875 msym = bfun->msym;
876 sym = bfun->sym;
877
878 if (sym != NULL)
879 return SYMBOL_PRINT_NAME (sym);
880 else if (msym != NULL)
881 return MSYMBOL_PRINT_NAME (msym);
882 else
883 return "??";
884 }
885
886 /* Disassemble a section of the recorded function trace. */
887
888 static void
889 btrace_call_history (struct ui_out *uiout,
890 const struct btrace_thread_info *btinfo,
891 const struct btrace_call_iterator *begin,
892 const struct btrace_call_iterator *end,
893 enum record_print_flag flags)
894 {
895 struct btrace_call_iterator it;
896
897 DEBUG ("ftrace (0x%x): [%u; %u)", flags, btrace_call_number (begin),
898 btrace_call_number (end));
899
900 for (it = *begin; btrace_call_cmp (&it, end) < 0; btrace_call_next (&it, 1))
901 {
902 const struct btrace_function *bfun;
903 struct minimal_symbol *msym;
904 struct symbol *sym;
905
906 bfun = btrace_call_get (&it);
907 sym = bfun->sym;
908 msym = bfun->msym;
909
910 /* Print the function index. */
911 ui_out_field_uint (uiout, "index", bfun->number);
912 ui_out_text (uiout, "\t");
913
914 /* Indicate gaps in the trace. */
915 if (bfun->errcode != 0)
916 {
917 const struct btrace_config *conf;
918
919 conf = btrace_conf (btinfo);
920
921 /* We have trace so we must have a configuration. */
922 gdb_assert (conf != NULL);
923
924 btrace_ui_out_decode_error (uiout, bfun->errcode, conf->format);
925
926 continue;
927 }
928
929 if ((flags & RECORD_PRINT_INDENT_CALLS) != 0)
930 {
931 int level = bfun->level + btinfo->level, i;
932
933 for (i = 0; i < level; ++i)
934 ui_out_text (uiout, " ");
935 }
936
937 if (sym != NULL)
938 ui_out_field_string (uiout, "function", SYMBOL_PRINT_NAME (sym));
939 else if (msym != NULL)
940 ui_out_field_string (uiout, "function", MSYMBOL_PRINT_NAME (msym));
941 else if (!ui_out_is_mi_like_p (uiout))
942 ui_out_field_string (uiout, "function", "??");
943
944 if ((flags & RECORD_PRINT_INSN_RANGE) != 0)
945 {
946 ui_out_text (uiout, _("\tinst "));
947 btrace_call_history_insn_range (uiout, bfun);
948 }
949
950 if ((flags & RECORD_PRINT_SRC_LINE) != 0)
951 {
952 ui_out_text (uiout, _("\tat "));
953 btrace_call_history_src_line (uiout, bfun);
954 }
955
956 ui_out_text (uiout, "\n");
957 }
958 }
959
960 /* The to_call_history method of target record-btrace. */
961
962 static void
963 record_btrace_call_history (struct target_ops *self, int size, int flags)
964 {
965 struct btrace_thread_info *btinfo;
966 struct btrace_call_history *history;
967 struct btrace_call_iterator begin, end;
968 struct cleanup *uiout_cleanup;
969 struct ui_out *uiout;
970 unsigned int context, covered;
971
972 uiout = current_uiout;
973 uiout_cleanup = make_cleanup_ui_out_tuple_begin_end (uiout,
974 "insn history");
975 context = abs (size);
976 if (context == 0)
977 error (_("Bad record function-call-history-size."));
978
979 btinfo = require_btrace ();
980 history = btinfo->call_history;
981 if (history == NULL)
982 {
983 struct btrace_insn_iterator *replay;
984
985 DEBUG ("call-history (0x%x): %d", flags, size);
986
987 /* If we're replaying, we start at the replay position. Otherwise, we
988 start at the tail of the trace. */
989 replay = btinfo->replay;
990 if (replay != NULL)
991 {
992 begin.function = replay->function;
993 begin.btinfo = btinfo;
994 }
995 else
996 btrace_call_end (&begin, btinfo);
997
998 /* We start from here and expand in the requested direction. Then we
999 expand in the other direction, as well, to fill up any remaining
1000 context. */
1001 end = begin;
1002 if (size < 0)
1003 {
1004 /* We want the current position covered, as well. */
1005 covered = btrace_call_next (&end, 1);
1006 covered += btrace_call_prev (&begin, context - covered);
1007 covered += btrace_call_next (&end, context - covered);
1008 }
1009 else
1010 {
1011 covered = btrace_call_next (&end, context);
1012 covered += btrace_call_prev (&begin, context- covered);
1013 }
1014 }
1015 else
1016 {
1017 begin = history->begin;
1018 end = history->end;
1019
1020 DEBUG ("call-history (0x%x): %d, prev: [%u; %u)", flags, size,
1021 btrace_call_number (&begin), btrace_call_number (&end));
1022
1023 if (size < 0)
1024 {
1025 end = begin;
1026 covered = btrace_call_prev (&begin, context);
1027 }
1028 else
1029 {
1030 begin = end;
1031 covered = btrace_call_next (&end, context);
1032 }
1033 }
1034
1035 if (covered > 0)
1036 btrace_call_history (uiout, btinfo, &begin, &end, flags);
1037 else
1038 {
1039 if (size < 0)
1040 printf_unfiltered (_("At the start of the branch trace record.\n"));
1041 else
1042 printf_unfiltered (_("At the end of the branch trace record.\n"));
1043 }
1044
1045 btrace_set_call_history (btinfo, &begin, &end);
1046 do_cleanups (uiout_cleanup);
1047 }
1048
1049 /* The to_call_history_range method of target record-btrace. */
1050
1051 static void
1052 record_btrace_call_history_range (struct target_ops *self,
1053 ULONGEST from, ULONGEST to, int flags)
1054 {
1055 struct btrace_thread_info *btinfo;
1056 struct btrace_call_history *history;
1057 struct btrace_call_iterator begin, end;
1058 struct cleanup *uiout_cleanup;
1059 struct ui_out *uiout;
1060 unsigned int low, high;
1061 int found;
1062
1063 uiout = current_uiout;
1064 uiout_cleanup = make_cleanup_ui_out_tuple_begin_end (uiout,
1065 "func history");
1066 low = from;
1067 high = to;
1068
1069 DEBUG ("call-history (0x%x): [%u; %u)", flags, low, high);
1070
1071 /* Check for wrap-arounds. */
1072 if (low != from || high != to)
1073 error (_("Bad range."));
1074
1075 if (high < low)
1076 error (_("Bad range."));
1077
1078 btinfo = require_btrace ();
1079
1080 found = btrace_find_call_by_number (&begin, btinfo, low);
1081 if (found == 0)
1082 error (_("Range out of bounds."));
1083
1084 found = btrace_find_call_by_number (&end, btinfo, high);
1085 if (found == 0)
1086 {
1087 /* Silently truncate the range. */
1088 btrace_call_end (&end, btinfo);
1089 }
1090 else
1091 {
1092 /* We want both begin and end to be inclusive. */
1093 btrace_call_next (&end, 1);
1094 }
1095
1096 btrace_call_history (uiout, btinfo, &begin, &end, flags);
1097 btrace_set_call_history (btinfo, &begin, &end);
1098
1099 do_cleanups (uiout_cleanup);
1100 }
1101
1102 /* The to_call_history_from method of target record-btrace. */
1103
1104 static void
1105 record_btrace_call_history_from (struct target_ops *self,
1106 ULONGEST from, int size, int flags)
1107 {
1108 ULONGEST begin, end, context;
1109
1110 context = abs (size);
1111 if (context == 0)
1112 error (_("Bad record function-call-history-size."));
1113
1114 if (size < 0)
1115 {
1116 end = from;
1117
1118 if (from < context)
1119 begin = 0;
1120 else
1121 begin = from - context + 1;
1122 }
1123 else
1124 {
1125 begin = from;
1126 end = from + context - 1;
1127
1128 /* Check for wrap-around. */
1129 if (end < begin)
1130 end = ULONGEST_MAX;
1131 }
1132
1133 record_btrace_call_history_range (self, begin, end, flags);
1134 }
1135
1136 /* The to_record_is_replaying method of target record-btrace. */
1137
1138 static int
1139 record_btrace_is_replaying (struct target_ops *self, ptid_t ptid)
1140 {
1141 struct thread_info *tp;
1142
1143 ALL_NON_EXITED_THREADS (tp)
1144 if (ptid_match (tp->ptid, ptid) && btrace_is_replaying (tp))
1145 return 1;
1146
1147 return 0;
1148 }
1149
1150 /* The to_xfer_partial method of target record-btrace. */
1151
1152 static enum target_xfer_status
1153 record_btrace_xfer_partial (struct target_ops *ops, enum target_object object,
1154 const char *annex, gdb_byte *readbuf,
1155 const gdb_byte *writebuf, ULONGEST offset,
1156 ULONGEST len, ULONGEST *xfered_len)
1157 {
1158 struct target_ops *t;
1159
1160 /* Filter out requests that don't make sense during replay. */
1161 if (replay_memory_access == replay_memory_access_read_only
1162 && !record_btrace_generating_corefile
1163 && record_btrace_is_replaying (ops, inferior_ptid))
1164 {
1165 switch (object)
1166 {
1167 case TARGET_OBJECT_MEMORY:
1168 {
1169 struct target_section *section;
1170
1171 /* We do not allow writing memory in general. */
1172 if (writebuf != NULL)
1173 {
1174 *xfered_len = len;
1175 return TARGET_XFER_UNAVAILABLE;
1176 }
1177
1178 /* We allow reading readonly memory. */
1179 section = target_section_by_addr (ops, offset);
1180 if (section != NULL)
1181 {
1182 /* Check if the section we found is readonly. */
1183 if ((bfd_get_section_flags (section->the_bfd_section->owner,
1184 section->the_bfd_section)
1185 & SEC_READONLY) != 0)
1186 {
1187 /* Truncate the request to fit into this section. */
1188 len = min (len, section->endaddr - offset);
1189 break;
1190 }
1191 }
1192
1193 *xfered_len = len;
1194 return TARGET_XFER_UNAVAILABLE;
1195 }
1196 }
1197 }
1198
1199 /* Forward the request. */
1200 ops = ops->beneath;
1201 return ops->to_xfer_partial (ops, object, annex, readbuf, writebuf,
1202 offset, len, xfered_len);
1203 }
1204
1205 /* The to_insert_breakpoint method of target record-btrace. */
1206
1207 static int
1208 record_btrace_insert_breakpoint (struct target_ops *ops,
1209 struct gdbarch *gdbarch,
1210 struct bp_target_info *bp_tgt)
1211 {
1212 const char *old;
1213 int ret;
1214
1215 /* Inserting breakpoints requires accessing memory. Allow it for the
1216 duration of this function. */
1217 old = replay_memory_access;
1218 replay_memory_access = replay_memory_access_read_write;
1219
1220 ret = 0;
1221 TRY
1222 {
1223 ret = ops->beneath->to_insert_breakpoint (ops->beneath, gdbarch, bp_tgt);
1224 }
1225 CATCH (except, RETURN_MASK_ALL)
1226 {
1227 replay_memory_access = old;
1228 throw_exception (except);
1229 }
1230 END_CATCH
1231 replay_memory_access = old;
1232
1233 return ret;
1234 }
1235
1236 /* The to_remove_breakpoint method of target record-btrace. */
1237
1238 static int
1239 record_btrace_remove_breakpoint (struct target_ops *ops,
1240 struct gdbarch *gdbarch,
1241 struct bp_target_info *bp_tgt)
1242 {
1243 const char *old;
1244 int ret;
1245
1246 /* Removing breakpoints requires accessing memory. Allow it for the
1247 duration of this function. */
1248 old = replay_memory_access;
1249 replay_memory_access = replay_memory_access_read_write;
1250
1251 ret = 0;
1252 TRY
1253 {
1254 ret = ops->beneath->to_remove_breakpoint (ops->beneath, gdbarch, bp_tgt);
1255 }
1256 CATCH (except, RETURN_MASK_ALL)
1257 {
1258 replay_memory_access = old;
1259 throw_exception (except);
1260 }
1261 END_CATCH
1262 replay_memory_access = old;
1263
1264 return ret;
1265 }
1266
1267 /* The to_fetch_registers method of target record-btrace. */
1268
1269 static void
1270 record_btrace_fetch_registers (struct target_ops *ops,
1271 struct regcache *regcache, int regno)
1272 {
1273 struct btrace_insn_iterator *replay;
1274 struct thread_info *tp;
1275
1276 tp = find_thread_ptid (inferior_ptid);
1277 gdb_assert (tp != NULL);
1278
1279 replay = tp->btrace.replay;
1280 if (replay != NULL && !record_btrace_generating_corefile)
1281 {
1282 const struct btrace_insn *insn;
1283 struct gdbarch *gdbarch;
1284 int pcreg;
1285
1286 gdbarch = get_regcache_arch (regcache);
1287 pcreg = gdbarch_pc_regnum (gdbarch);
1288 if (pcreg < 0)
1289 return;
1290
1291 /* We can only provide the PC register. */
1292 if (regno >= 0 && regno != pcreg)
1293 return;
1294
1295 insn = btrace_insn_get (replay);
1296 gdb_assert (insn != NULL);
1297
1298 regcache_raw_supply (regcache, regno, &insn->pc);
1299 }
1300 else
1301 {
1302 struct target_ops *t = ops->beneath;
1303
1304 t->to_fetch_registers (t, regcache, regno);
1305 }
1306 }
1307
1308 /* The to_store_registers method of target record-btrace. */
1309
1310 static void
1311 record_btrace_store_registers (struct target_ops *ops,
1312 struct regcache *regcache, int regno)
1313 {
1314 struct target_ops *t;
1315
1316 if (!record_btrace_generating_corefile
1317 && record_btrace_is_replaying (ops, inferior_ptid))
1318 error (_("Cannot write registers while replaying."));
1319
1320 gdb_assert (may_write_registers != 0);
1321
1322 t = ops->beneath;
1323 t->to_store_registers (t, regcache, regno);
1324 }
1325
1326 /* The to_prepare_to_store method of target record-btrace. */
1327
1328 static void
1329 record_btrace_prepare_to_store (struct target_ops *ops,
1330 struct regcache *regcache)
1331 {
1332 struct target_ops *t;
1333
1334 if (!record_btrace_generating_corefile
1335 && record_btrace_is_replaying (ops, inferior_ptid))
1336 return;
1337
1338 t = ops->beneath;
1339 t->to_prepare_to_store (t, regcache);
1340 }
1341
1342 /* The branch trace frame cache. */
1343
1344 struct btrace_frame_cache
1345 {
1346 /* The thread. */
1347 struct thread_info *tp;
1348
1349 /* The frame info. */
1350 struct frame_info *frame;
1351
1352 /* The branch trace function segment. */
1353 const struct btrace_function *bfun;
1354 };
1355
1356 /* A struct btrace_frame_cache hash table indexed by NEXT. */
1357
1358 static htab_t bfcache;
1359
1360 /* hash_f for htab_create_alloc of bfcache. */
1361
1362 static hashval_t
1363 bfcache_hash (const void *arg)
1364 {
1365 const struct btrace_frame_cache *cache = arg;
1366
1367 return htab_hash_pointer (cache->frame);
1368 }
1369
1370 /* eq_f for htab_create_alloc of bfcache. */
1371
1372 static int
1373 bfcache_eq (const void *arg1, const void *arg2)
1374 {
1375 const struct btrace_frame_cache *cache1 = arg1;
1376 const struct btrace_frame_cache *cache2 = arg2;
1377
1378 return cache1->frame == cache2->frame;
1379 }
1380
1381 /* Create a new btrace frame cache. */
1382
1383 static struct btrace_frame_cache *
1384 bfcache_new (struct frame_info *frame)
1385 {
1386 struct btrace_frame_cache *cache;
1387 void **slot;
1388
1389 cache = FRAME_OBSTACK_ZALLOC (struct btrace_frame_cache);
1390 cache->frame = frame;
1391
1392 slot = htab_find_slot (bfcache, cache, INSERT);
1393 gdb_assert (*slot == NULL);
1394 *slot = cache;
1395
1396 return cache;
1397 }
1398
1399 /* Extract the branch trace function from a branch trace frame. */
1400
1401 static const struct btrace_function *
1402 btrace_get_frame_function (struct frame_info *frame)
1403 {
1404 const struct btrace_frame_cache *cache;
1405 const struct btrace_function *bfun;
1406 struct btrace_frame_cache pattern;
1407 void **slot;
1408
1409 pattern.frame = frame;
1410
1411 slot = htab_find_slot (bfcache, &pattern, NO_INSERT);
1412 if (slot == NULL)
1413 return NULL;
1414
1415 cache = *slot;
1416 return cache->bfun;
1417 }
1418
1419 /* Implement stop_reason method for record_btrace_frame_unwind. */
1420
1421 static enum unwind_stop_reason
1422 record_btrace_frame_unwind_stop_reason (struct frame_info *this_frame,
1423 void **this_cache)
1424 {
1425 const struct btrace_frame_cache *cache;
1426 const struct btrace_function *bfun;
1427
1428 cache = *this_cache;
1429 bfun = cache->bfun;
1430 gdb_assert (bfun != NULL);
1431
1432 if (bfun->up == NULL)
1433 return UNWIND_UNAVAILABLE;
1434
1435 return UNWIND_NO_REASON;
1436 }
1437
1438 /* Implement this_id method for record_btrace_frame_unwind. */
1439
1440 static void
1441 record_btrace_frame_this_id (struct frame_info *this_frame, void **this_cache,
1442 struct frame_id *this_id)
1443 {
1444 const struct btrace_frame_cache *cache;
1445 const struct btrace_function *bfun;
1446 CORE_ADDR code, special;
1447
1448 cache = *this_cache;
1449
1450 bfun = cache->bfun;
1451 gdb_assert (bfun != NULL);
1452
1453 while (bfun->segment.prev != NULL)
1454 bfun = bfun->segment.prev;
1455
1456 code = get_frame_func (this_frame);
1457 special = bfun->number;
1458
1459 *this_id = frame_id_build_unavailable_stack_special (code, special);
1460
1461 DEBUG ("[frame] %s id: (!stack, pc=%s, special=%s)",
1462 btrace_get_bfun_name (cache->bfun),
1463 core_addr_to_string_nz (this_id->code_addr),
1464 core_addr_to_string_nz (this_id->special_addr));
1465 }
1466
1467 /* Implement prev_register method for record_btrace_frame_unwind. */
1468
1469 static struct value *
1470 record_btrace_frame_prev_register (struct frame_info *this_frame,
1471 void **this_cache,
1472 int regnum)
1473 {
1474 const struct btrace_frame_cache *cache;
1475 const struct btrace_function *bfun, *caller;
1476 const struct btrace_insn *insn;
1477 struct gdbarch *gdbarch;
1478 CORE_ADDR pc;
1479 int pcreg;
1480
1481 gdbarch = get_frame_arch (this_frame);
1482 pcreg = gdbarch_pc_regnum (gdbarch);
1483 if (pcreg < 0 || regnum != pcreg)
1484 throw_error (NOT_AVAILABLE_ERROR,
1485 _("Registers are not available in btrace record history"));
1486
1487 cache = *this_cache;
1488 bfun = cache->bfun;
1489 gdb_assert (bfun != NULL);
1490
1491 caller = bfun->up;
1492 if (caller == NULL)
1493 throw_error (NOT_AVAILABLE_ERROR,
1494 _("No caller in btrace record history"));
1495
1496 if ((bfun->flags & BFUN_UP_LINKS_TO_RET) != 0)
1497 {
1498 insn = VEC_index (btrace_insn_s, caller->insn, 0);
1499 pc = insn->pc;
1500 }
1501 else
1502 {
1503 insn = VEC_last (btrace_insn_s, caller->insn);
1504 pc = insn->pc;
1505
1506 pc += gdb_insn_length (gdbarch, pc);
1507 }
1508
1509 DEBUG ("[frame] unwound PC in %s on level %d: %s",
1510 btrace_get_bfun_name (bfun), bfun->level,
1511 core_addr_to_string_nz (pc));
1512
1513 return frame_unwind_got_address (this_frame, regnum, pc);
1514 }
1515
1516 /* Implement sniffer method for record_btrace_frame_unwind. */
1517
1518 static int
1519 record_btrace_frame_sniffer (const struct frame_unwind *self,
1520 struct frame_info *this_frame,
1521 void **this_cache)
1522 {
1523 const struct btrace_function *bfun;
1524 struct btrace_frame_cache *cache;
1525 struct thread_info *tp;
1526 struct frame_info *next;
1527
1528 /* THIS_FRAME does not contain a reference to its thread. */
1529 tp = find_thread_ptid (inferior_ptid);
1530 gdb_assert (tp != NULL);
1531
1532 bfun = NULL;
1533 next = get_next_frame (this_frame);
1534 if (next == NULL)
1535 {
1536 const struct btrace_insn_iterator *replay;
1537
1538 replay = tp->btrace.replay;
1539 if (replay != NULL)
1540 bfun = replay->function;
1541 }
1542 else
1543 {
1544 const struct btrace_function *callee;
1545
1546 callee = btrace_get_frame_function (next);
1547 if (callee != NULL && (callee->flags & BFUN_UP_LINKS_TO_TAILCALL) == 0)
1548 bfun = callee->up;
1549 }
1550
1551 if (bfun == NULL)
1552 return 0;
1553
1554 DEBUG ("[frame] sniffed frame for %s on level %d",
1555 btrace_get_bfun_name (bfun), bfun->level);
1556
1557 /* This is our frame. Initialize the frame cache. */
1558 cache = bfcache_new (this_frame);
1559 cache->tp = tp;
1560 cache->bfun = bfun;
1561
1562 *this_cache = cache;
1563 return 1;
1564 }
1565
1566 /* Implement sniffer method for record_btrace_tailcall_frame_unwind. */
1567
1568 static int
1569 record_btrace_tailcall_frame_sniffer (const struct frame_unwind *self,
1570 struct frame_info *this_frame,
1571 void **this_cache)
1572 {
1573 const struct btrace_function *bfun, *callee;
1574 struct btrace_frame_cache *cache;
1575 struct frame_info *next;
1576
1577 next = get_next_frame (this_frame);
1578 if (next == NULL)
1579 return 0;
1580
1581 callee = btrace_get_frame_function (next);
1582 if (callee == NULL)
1583 return 0;
1584
1585 if ((callee->flags & BFUN_UP_LINKS_TO_TAILCALL) == 0)
1586 return 0;
1587
1588 bfun = callee->up;
1589 if (bfun == NULL)
1590 return 0;
1591
1592 DEBUG ("[frame] sniffed tailcall frame for %s on level %d",
1593 btrace_get_bfun_name (bfun), bfun->level);
1594
1595 /* This is our frame. Initialize the frame cache. */
1596 cache = bfcache_new (this_frame);
1597 cache->tp = find_thread_ptid (inferior_ptid);
1598 cache->bfun = bfun;
1599
1600 *this_cache = cache;
1601 return 1;
1602 }
1603
1604 static void
1605 record_btrace_frame_dealloc_cache (struct frame_info *self, void *this_cache)
1606 {
1607 struct btrace_frame_cache *cache;
1608 void **slot;
1609
1610 cache = this_cache;
1611
1612 slot = htab_find_slot (bfcache, cache, NO_INSERT);
1613 gdb_assert (slot != NULL);
1614
1615 htab_remove_elt (bfcache, cache);
1616 }
1617
1618 /* btrace recording does not store previous memory content, neither the stack
1619 frames content. Any unwinding would return errorneous results as the stack
1620 contents no longer matches the changed PC value restored from history.
1621 Therefore this unwinder reports any possibly unwound registers as
1622 <unavailable>. */
1623
1624 const struct frame_unwind record_btrace_frame_unwind =
1625 {
1626 NORMAL_FRAME,
1627 record_btrace_frame_unwind_stop_reason,
1628 record_btrace_frame_this_id,
1629 record_btrace_frame_prev_register,
1630 NULL,
1631 record_btrace_frame_sniffer,
1632 record_btrace_frame_dealloc_cache
1633 };
1634
1635 const struct frame_unwind record_btrace_tailcall_frame_unwind =
1636 {
1637 TAILCALL_FRAME,
1638 record_btrace_frame_unwind_stop_reason,
1639 record_btrace_frame_this_id,
1640 record_btrace_frame_prev_register,
1641 NULL,
1642 record_btrace_tailcall_frame_sniffer,
1643 record_btrace_frame_dealloc_cache
1644 };
1645
1646 /* Implement the to_get_unwinder method. */
1647
1648 static const struct frame_unwind *
1649 record_btrace_to_get_unwinder (struct target_ops *self)
1650 {
1651 return &record_btrace_frame_unwind;
1652 }
1653
1654 /* Implement the to_get_tailcall_unwinder method. */
1655
1656 static const struct frame_unwind *
1657 record_btrace_to_get_tailcall_unwinder (struct target_ops *self)
1658 {
1659 return &record_btrace_tailcall_frame_unwind;
1660 }
1661
1662 /* Return a human-readable string for FLAG. */
1663
1664 static const char *
1665 btrace_thread_flag_to_str (enum btrace_thread_flag flag)
1666 {
1667 switch (flag)
1668 {
1669 case BTHR_STEP:
1670 return "step";
1671
1672 case BTHR_RSTEP:
1673 return "reverse-step";
1674
1675 case BTHR_CONT:
1676 return "cont";
1677
1678 case BTHR_RCONT:
1679 return "reverse-cont";
1680
1681 case BTHR_STOP:
1682 return "stop";
1683 }
1684
1685 return "<invalid>";
1686 }
1687
1688 /* Indicate that TP should be resumed according to FLAG. */
1689
1690 static void
1691 record_btrace_resume_thread (struct thread_info *tp,
1692 enum btrace_thread_flag flag)
1693 {
1694 struct btrace_thread_info *btinfo;
1695
1696 DEBUG ("resuming thread %d (%s): %x (%s)", tp->num,
1697 target_pid_to_str (tp->ptid), flag, btrace_thread_flag_to_str (flag));
1698
1699 btinfo = &tp->btrace;
1700
1701 /* Fetch the latest branch trace. */
1702 btrace_fetch (tp);
1703
1704 /* A resume request overwrites a preceding resume or stop request. */
1705 btinfo->flags &= ~(BTHR_MOVE | BTHR_STOP);
1706 btinfo->flags |= flag;
1707 }
1708
1709 /* Get the current frame for TP. */
1710
1711 static struct frame_info *
1712 get_thread_current_frame (struct thread_info *tp)
1713 {
1714 struct frame_info *frame;
1715 ptid_t old_inferior_ptid;
1716 int executing;
1717
1718 /* Set INFERIOR_PTID, which is implicitly used by get_current_frame. */
1719 old_inferior_ptid = inferior_ptid;
1720 inferior_ptid = tp->ptid;
1721
1722 /* Clear the executing flag to allow changes to the current frame.
1723 We are not actually running, yet. We just started a reverse execution
1724 command or a record goto command.
1725 For the latter, EXECUTING is false and this has no effect.
1726 For the former, EXECUTING is true and we're in to_wait, about to
1727 move the thread. Since we need to recompute the stack, we temporarily
1728 set EXECUTING to flase. */
1729 executing = is_executing (inferior_ptid);
1730 set_executing (inferior_ptid, 0);
1731
1732 frame = NULL;
1733 TRY
1734 {
1735 frame = get_current_frame ();
1736 }
1737 CATCH (except, RETURN_MASK_ALL)
1738 {
1739 /* Restore the previous execution state. */
1740 set_executing (inferior_ptid, executing);
1741
1742 /* Restore the previous inferior_ptid. */
1743 inferior_ptid = old_inferior_ptid;
1744
1745 throw_exception (except);
1746 }
1747 END_CATCH
1748
1749 /* Restore the previous execution state. */
1750 set_executing (inferior_ptid, executing);
1751
1752 /* Restore the previous inferior_ptid. */
1753 inferior_ptid = old_inferior_ptid;
1754
1755 return frame;
1756 }
1757
1758 /* Start replaying a thread. */
1759
1760 static struct btrace_insn_iterator *
1761 record_btrace_start_replaying (struct thread_info *tp)
1762 {
1763 struct btrace_insn_iterator *replay;
1764 struct btrace_thread_info *btinfo;
1765
1766 btinfo = &tp->btrace;
1767 replay = NULL;
1768
1769 /* We can't start replaying without trace. */
1770 if (btinfo->begin == NULL)
1771 return NULL;
1772
1773 /* GDB stores the current frame_id when stepping in order to detects steps
1774 into subroutines.
1775 Since frames are computed differently when we're replaying, we need to
1776 recompute those stored frames and fix them up so we can still detect
1777 subroutines after we started replaying. */
1778 TRY
1779 {
1780 struct frame_info *frame;
1781 struct frame_id frame_id;
1782 int upd_step_frame_id, upd_step_stack_frame_id;
1783
1784 /* The current frame without replaying - computed via normal unwind. */
1785 frame = get_thread_current_frame (tp);
1786 frame_id = get_frame_id (frame);
1787
1788 /* Check if we need to update any stepping-related frame id's. */
1789 upd_step_frame_id = frame_id_eq (frame_id,
1790 tp->control.step_frame_id);
1791 upd_step_stack_frame_id = frame_id_eq (frame_id,
1792 tp->control.step_stack_frame_id);
1793
1794 /* We start replaying at the end of the branch trace. This corresponds
1795 to the current instruction. */
1796 replay = XNEW (struct btrace_insn_iterator);
1797 btrace_insn_end (replay, btinfo);
1798
1799 /* Skip gaps at the end of the trace. */
1800 while (btrace_insn_get (replay) == NULL)
1801 {
1802 unsigned int steps;
1803
1804 steps = btrace_insn_prev (replay, 1);
1805 if (steps == 0)
1806 error (_("No trace."));
1807 }
1808
1809 /* We're not replaying, yet. */
1810 gdb_assert (btinfo->replay == NULL);
1811 btinfo->replay = replay;
1812
1813 /* Make sure we're not using any stale registers. */
1814 registers_changed_ptid (tp->ptid);
1815
1816 /* The current frame with replaying - computed via btrace unwind. */
1817 frame = get_thread_current_frame (tp);
1818 frame_id = get_frame_id (frame);
1819
1820 /* Replace stepping related frames where necessary. */
1821 if (upd_step_frame_id)
1822 tp->control.step_frame_id = frame_id;
1823 if (upd_step_stack_frame_id)
1824 tp->control.step_stack_frame_id = frame_id;
1825 }
1826 CATCH (except, RETURN_MASK_ALL)
1827 {
1828 xfree (btinfo->replay);
1829 btinfo->replay = NULL;
1830
1831 registers_changed_ptid (tp->ptid);
1832
1833 throw_exception (except);
1834 }
1835 END_CATCH
1836
1837 return replay;
1838 }
1839
1840 /* Stop replaying a thread. */
1841
1842 static void
1843 record_btrace_stop_replaying (struct thread_info *tp)
1844 {
1845 struct btrace_thread_info *btinfo;
1846
1847 btinfo = &tp->btrace;
1848
1849 xfree (btinfo->replay);
1850 btinfo->replay = NULL;
1851
1852 /* Make sure we're not leaving any stale registers. */
1853 registers_changed_ptid (tp->ptid);
1854 }
1855
1856 /* Stop replaying TP if it is at the end of its execution history. */
1857
1858 static void
1859 record_btrace_stop_replaying_at_end (struct thread_info *tp)
1860 {
1861 struct btrace_insn_iterator *replay, end;
1862 struct btrace_thread_info *btinfo;
1863
1864 btinfo = &tp->btrace;
1865 replay = btinfo->replay;
1866
1867 if (replay == NULL)
1868 return;
1869
1870 btrace_insn_end (&end, btinfo);
1871
1872 if (btrace_insn_cmp (replay, &end) == 0)
1873 record_btrace_stop_replaying (tp);
1874 }
1875
1876 /* The to_resume method of target record-btrace. */
1877
1878 static void
1879 record_btrace_resume (struct target_ops *ops, ptid_t ptid, int step,
1880 enum gdb_signal signal)
1881 {
1882 struct thread_info *tp;
1883 enum btrace_thread_flag flag;
1884 ptid_t orig_ptid;
1885
1886 DEBUG ("resume %s: %s%s", target_pid_to_str (ptid),
1887 execution_direction == EXEC_REVERSE ? "reverse-" : "",
1888 step ? "step" : "cont");
1889
1890 orig_ptid = ptid;
1891
1892 /* Store the execution direction of the last resume.
1893
1894 If there is more than one to_resume call, we have to rely on infrun
1895 to not change the execution direction in-between. */
1896 record_btrace_resume_exec_dir = execution_direction;
1897
1898 /* For all-stop targets... */
1899 if (!target_is_non_stop_p ())
1900 {
1901 /* ...we pick the current thread when asked to resume an entire process
1902 or everything. */
1903 if (ptid_equal (minus_one_ptid, ptid) || ptid_is_pid (ptid))
1904 ptid = inferior_ptid;
1905
1906 tp = find_thread_ptid (ptid);
1907 if (tp == NULL)
1908 error (_("Cannot find thread to resume."));
1909
1910 /* ...and we stop replaying other threads if the thread to resume is not
1911 replaying. */
1912 if (!btrace_is_replaying (tp) && execution_direction != EXEC_REVERSE)
1913 target_record_stop_replaying ();
1914 }
1915
1916 /* As long as we're not replaying, just forward the request.
1917
1918 For non-stop targets this means that no thread is replaying. In order to
1919 make progress, we may need to explicitly move replaying threads to the end
1920 of their execution history. */
1921 if ((execution_direction != EXEC_REVERSE)
1922 && !record_btrace_is_replaying (ops, minus_one_ptid))
1923 {
1924 ops = ops->beneath;
1925 return ops->to_resume (ops, orig_ptid, step, signal);
1926 }
1927
1928 /* Compute the btrace thread flag for the requested move. */
1929 if (step == 0)
1930 flag = execution_direction == EXEC_REVERSE ? BTHR_RCONT : BTHR_CONT;
1931 else
1932 flag = execution_direction == EXEC_REVERSE ? BTHR_RSTEP : BTHR_STEP;
1933
1934 /* We just indicate the resume intent here. The actual stepping happens in
1935 record_btrace_wait below. */
1936 ALL_NON_EXITED_THREADS (tp)
1937 if (ptid_match (tp->ptid, ptid))
1938 record_btrace_resume_thread (tp, flag);
1939
1940 /* Async support. */
1941 if (target_can_async_p ())
1942 {
1943 target_async (1);
1944 mark_async_event_handler (record_btrace_async_inferior_event_handler);
1945 }
1946 }
1947
1948 /* Cancel resuming TP. */
1949
1950 static void
1951 record_btrace_cancel_resume (struct thread_info *tp)
1952 {
1953 enum btrace_thread_flag flags;
1954
1955 flags = tp->btrace.flags & (BTHR_MOVE | BTHR_STOP);
1956 if (flags == 0)
1957 return;
1958
1959 DEBUG ("cancel resume thread %d (%s): %x (%s)", tp->num,
1960 target_pid_to_str (tp->ptid), flags,
1961 btrace_thread_flag_to_str (flags));
1962
1963 tp->btrace.flags &= ~(BTHR_MOVE | BTHR_STOP);
1964 record_btrace_stop_replaying_at_end (tp);
1965 }
1966
1967 /* Return a target_waitstatus indicating that we ran out of history. */
1968
1969 static struct target_waitstatus
1970 btrace_step_no_history (void)
1971 {
1972 struct target_waitstatus status;
1973
1974 status.kind = TARGET_WAITKIND_NO_HISTORY;
1975
1976 return status;
1977 }
1978
1979 /* Return a target_waitstatus indicating that a step finished. */
1980
1981 static struct target_waitstatus
1982 btrace_step_stopped (void)
1983 {
1984 struct target_waitstatus status;
1985
1986 status.kind = TARGET_WAITKIND_STOPPED;
1987 status.value.sig = GDB_SIGNAL_TRAP;
1988
1989 return status;
1990 }
1991
1992 /* Return a target_waitstatus indicating that a thread was stopped as
1993 requested. */
1994
1995 static struct target_waitstatus
1996 btrace_step_stopped_on_request (void)
1997 {
1998 struct target_waitstatus status;
1999
2000 status.kind = TARGET_WAITKIND_STOPPED;
2001 status.value.sig = GDB_SIGNAL_0;
2002
2003 return status;
2004 }
2005
2006 /* Return a target_waitstatus indicating a spurious stop. */
2007
2008 static struct target_waitstatus
2009 btrace_step_spurious (void)
2010 {
2011 struct target_waitstatus status;
2012
2013 status.kind = TARGET_WAITKIND_SPURIOUS;
2014
2015 return status;
2016 }
2017
2018 /* Return a target_waitstatus indicating that the thread was not resumed. */
2019
2020 static struct target_waitstatus
2021 btrace_step_no_resumed (void)
2022 {
2023 struct target_waitstatus status;
2024
2025 status.kind = TARGET_WAITKIND_NO_RESUMED;
2026
2027 return status;
2028 }
2029
2030 /* Return a target_waitstatus indicating that we should wait again. */
2031
2032 static struct target_waitstatus
2033 btrace_step_again (void)
2034 {
2035 struct target_waitstatus status;
2036
2037 status.kind = TARGET_WAITKIND_IGNORE;
2038
2039 return status;
2040 }
2041
2042 /* Clear the record histories. */
2043
2044 static void
2045 record_btrace_clear_histories (struct btrace_thread_info *btinfo)
2046 {
2047 xfree (btinfo->insn_history);
2048 xfree (btinfo->call_history);
2049
2050 btinfo->insn_history = NULL;
2051 btinfo->call_history = NULL;
2052 }
2053
2054 /* Check whether TP's current replay position is at a breakpoint. */
2055
2056 static int
2057 record_btrace_replay_at_breakpoint (struct thread_info *tp)
2058 {
2059 struct btrace_insn_iterator *replay;
2060 struct btrace_thread_info *btinfo;
2061 const struct btrace_insn *insn;
2062 struct inferior *inf;
2063
2064 btinfo = &tp->btrace;
2065 replay = btinfo->replay;
2066
2067 if (replay == NULL)
2068 return 0;
2069
2070 insn = btrace_insn_get (replay);
2071 if (insn == NULL)
2072 return 0;
2073
2074 inf = find_inferior_ptid (tp->ptid);
2075 if (inf == NULL)
2076 return 0;
2077
2078 return record_check_stopped_by_breakpoint (inf->aspace, insn->pc,
2079 &btinfo->stop_reason);
2080 }
2081
2082 /* Step one instruction in forward direction. */
2083
2084 static struct target_waitstatus
2085 record_btrace_single_step_forward (struct thread_info *tp)
2086 {
2087 struct btrace_insn_iterator *replay, end;
2088 struct btrace_thread_info *btinfo;
2089
2090 btinfo = &tp->btrace;
2091 replay = btinfo->replay;
2092
2093 /* We're done if we're not replaying. */
2094 if (replay == NULL)
2095 return btrace_step_no_history ();
2096
2097 /* Check if we're stepping a breakpoint. */
2098 if (record_btrace_replay_at_breakpoint (tp))
2099 return btrace_step_stopped ();
2100
2101 /* Skip gaps during replay. */
2102 do
2103 {
2104 unsigned int steps;
2105
2106 /* We will bail out here if we continue stepping after reaching the end
2107 of the execution history. */
2108 steps = btrace_insn_next (replay, 1);
2109 if (steps == 0)
2110 return btrace_step_no_history ();
2111 }
2112 while (btrace_insn_get (replay) == NULL);
2113
2114 /* Determine the end of the instruction trace. */
2115 btrace_insn_end (&end, btinfo);
2116
2117 /* The execution trace contains (and ends with) the current instruction.
2118 This instruction has not been executed, yet, so the trace really ends
2119 one instruction earlier. */
2120 if (btrace_insn_cmp (replay, &end) == 0)
2121 return btrace_step_no_history ();
2122
2123 return btrace_step_spurious ();
2124 }
2125
2126 /* Step one instruction in backward direction. */
2127
2128 static struct target_waitstatus
2129 record_btrace_single_step_backward (struct thread_info *tp)
2130 {
2131 struct btrace_insn_iterator *replay;
2132 struct btrace_thread_info *btinfo;
2133
2134 btinfo = &tp->btrace;
2135 replay = btinfo->replay;
2136
2137 /* Start replaying if we're not already doing so. */
2138 if (replay == NULL)
2139 replay = record_btrace_start_replaying (tp);
2140
2141 /* If we can't step any further, we reached the end of the history.
2142 Skip gaps during replay. */
2143 do
2144 {
2145 unsigned int steps;
2146
2147 steps = btrace_insn_prev (replay, 1);
2148 if (steps == 0)
2149 return btrace_step_no_history ();
2150 }
2151 while (btrace_insn_get (replay) == NULL);
2152
2153 /* Check if we're stepping a breakpoint.
2154
2155 For reverse-stepping, this check is after the step. There is logic in
2156 infrun.c that handles reverse-stepping separately. See, for example,
2157 proceed and adjust_pc_after_break.
2158
2159 This code assumes that for reverse-stepping, PC points to the last
2160 de-executed instruction, whereas for forward-stepping PC points to the
2161 next to-be-executed instruction. */
2162 if (record_btrace_replay_at_breakpoint (tp))
2163 return btrace_step_stopped ();
2164
2165 return btrace_step_spurious ();
2166 }
2167
2168 /* Step a single thread. */
2169
2170 static struct target_waitstatus
2171 record_btrace_step_thread (struct thread_info *tp)
2172 {
2173 struct btrace_thread_info *btinfo;
2174 struct target_waitstatus status;
2175 enum btrace_thread_flag flags;
2176
2177 btinfo = &tp->btrace;
2178
2179 flags = btinfo->flags & (BTHR_MOVE | BTHR_STOP);
2180 btinfo->flags &= ~(BTHR_MOVE | BTHR_STOP);
2181
2182 DEBUG ("stepping thread %d (%s): %x (%s)", tp->num,
2183 target_pid_to_str (tp->ptid), flags,
2184 btrace_thread_flag_to_str (flags));
2185
2186 /* We can't step without an execution history. */
2187 if ((flags & BTHR_MOVE) != 0 && btrace_is_empty (tp))
2188 return btrace_step_no_history ();
2189
2190 switch (flags)
2191 {
2192 default:
2193 internal_error (__FILE__, __LINE__, _("invalid stepping type."));
2194
2195 case BTHR_STOP:
2196 return btrace_step_stopped_on_request ();
2197
2198 case BTHR_STEP:
2199 status = record_btrace_single_step_forward (tp);
2200 if (status.kind != TARGET_WAITKIND_SPURIOUS)
2201 break;
2202
2203 return btrace_step_stopped ();
2204
2205 case BTHR_RSTEP:
2206 status = record_btrace_single_step_backward (tp);
2207 if (status.kind != TARGET_WAITKIND_SPURIOUS)
2208 break;
2209
2210 return btrace_step_stopped ();
2211
2212 case BTHR_CONT:
2213 status = record_btrace_single_step_forward (tp);
2214 if (status.kind != TARGET_WAITKIND_SPURIOUS)
2215 break;
2216
2217 btinfo->flags |= flags;
2218 return btrace_step_again ();
2219
2220 case BTHR_RCONT:
2221 status = record_btrace_single_step_backward (tp);
2222 if (status.kind != TARGET_WAITKIND_SPURIOUS)
2223 break;
2224
2225 btinfo->flags |= flags;
2226 return btrace_step_again ();
2227 }
2228
2229 /* We keep threads moving at the end of their execution history. The to_wait
2230 method will stop the thread for whom the event is reported. */
2231 if (status.kind == TARGET_WAITKIND_NO_HISTORY)
2232 btinfo->flags |= flags;
2233
2234 return status;
2235 }
2236
2237 /* A vector of threads. */
2238
2239 typedef struct thread_info * tp_t;
2240 DEF_VEC_P (tp_t);
2241
2242 /* Announce further events if necessary. */
2243
2244 static void
2245 record_btrace_maybe_mark_async_event (const VEC (tp_t) *moving,
2246 const VEC (tp_t) *no_history)
2247 {
2248 int more_moving, more_no_history;
2249
2250 more_moving = !VEC_empty (tp_t, moving);
2251 more_no_history = !VEC_empty (tp_t, no_history);
2252
2253 if (!more_moving && !more_no_history)
2254 return;
2255
2256 if (more_moving)
2257 DEBUG ("movers pending");
2258
2259 if (more_no_history)
2260 DEBUG ("no-history pending");
2261
2262 mark_async_event_handler (record_btrace_async_inferior_event_handler);
2263 }
2264
2265 /* The to_wait method of target record-btrace. */
2266
2267 static ptid_t
2268 record_btrace_wait (struct target_ops *ops, ptid_t ptid,
2269 struct target_waitstatus *status, int options)
2270 {
2271 VEC (tp_t) *moving, *no_history;
2272 struct thread_info *tp, *eventing;
2273 struct cleanup *cleanups = make_cleanup (null_cleanup, NULL);
2274
2275 DEBUG ("wait %s (0x%x)", target_pid_to_str (ptid), options);
2276
2277 /* As long as we're not replaying, just forward the request. */
2278 if ((execution_direction != EXEC_REVERSE)
2279 && !record_btrace_is_replaying (ops, minus_one_ptid))
2280 {
2281 ops = ops->beneath;
2282 return ops->to_wait (ops, ptid, status, options);
2283 }
2284
2285 moving = NULL;
2286 no_history = NULL;
2287
2288 make_cleanup (VEC_cleanup (tp_t), &moving);
2289 make_cleanup (VEC_cleanup (tp_t), &no_history);
2290
2291 /* Keep a work list of moving threads. */
2292 ALL_NON_EXITED_THREADS (tp)
2293 if (ptid_match (tp->ptid, ptid)
2294 && ((tp->btrace.flags & (BTHR_MOVE | BTHR_STOP)) != 0))
2295 VEC_safe_push (tp_t, moving, tp);
2296
2297 if (VEC_empty (tp_t, moving))
2298 {
2299 *status = btrace_step_no_resumed ();
2300
2301 DEBUG ("wait ended by %s: %s", target_pid_to_str (null_ptid),
2302 target_waitstatus_to_string (status));
2303
2304 do_cleanups (cleanups);
2305 return null_ptid;
2306 }
2307
2308 /* Step moving threads one by one, one step each, until either one thread
2309 reports an event or we run out of threads to step.
2310
2311 When stepping more than one thread, chances are that some threads reach
2312 the end of their execution history earlier than others. If we reported
2313 this immediately, all-stop on top of non-stop would stop all threads and
2314 resume the same threads next time. And we would report the same thread
2315 having reached the end of its execution history again.
2316
2317 In the worst case, this would starve the other threads. But even if other
2318 threads would be allowed to make progress, this would result in far too
2319 many intermediate stops.
2320
2321 We therefore delay the reporting of "no execution history" until we have
2322 nothing else to report. By this time, all threads should have moved to
2323 either the beginning or the end of their execution history. There will
2324 be a single user-visible stop. */
2325 eventing = NULL;
2326 while ((eventing == NULL) && !VEC_empty (tp_t, moving))
2327 {
2328 unsigned int ix;
2329
2330 ix = 0;
2331 while ((eventing == NULL) && VEC_iterate (tp_t, moving, ix, tp))
2332 {
2333 *status = record_btrace_step_thread (tp);
2334
2335 switch (status->kind)
2336 {
2337 case TARGET_WAITKIND_IGNORE:
2338 ix++;
2339 break;
2340
2341 case TARGET_WAITKIND_NO_HISTORY:
2342 VEC_safe_push (tp_t, no_history,
2343 VEC_ordered_remove (tp_t, moving, ix));
2344 break;
2345
2346 default:
2347 eventing = VEC_unordered_remove (tp_t, moving, ix);
2348 break;
2349 }
2350 }
2351 }
2352
2353 if (eventing == NULL)
2354 {
2355 /* We started with at least one moving thread. This thread must have
2356 either stopped or reached the end of its execution history.
2357
2358 In the former case, EVENTING must not be NULL.
2359 In the latter case, NO_HISTORY must not be empty. */
2360 gdb_assert (!VEC_empty (tp_t, no_history));
2361
2362 /* We kept threads moving at the end of their execution history. Stop
2363 EVENTING now that we are going to report its stop. */
2364 eventing = VEC_unordered_remove (tp_t, no_history, 0);
2365 eventing->btrace.flags &= ~BTHR_MOVE;
2366
2367 *status = btrace_step_no_history ();
2368 }
2369
2370 gdb_assert (eventing != NULL);
2371
2372 /* We kept threads replaying at the end of their execution history. Stop
2373 replaying EVENTING now that we are going to report its stop. */
2374 record_btrace_stop_replaying_at_end (eventing);
2375
2376 /* Stop all other threads. */
2377 if (!target_is_non_stop_p ())
2378 ALL_NON_EXITED_THREADS (tp)
2379 record_btrace_cancel_resume (tp);
2380
2381 /* In async mode, we need to announce further events. */
2382 if (target_is_async_p ())
2383 record_btrace_maybe_mark_async_event (moving, no_history);
2384
2385 /* Start record histories anew from the current position. */
2386 record_btrace_clear_histories (&eventing->btrace);
2387
2388 /* We moved the replay position but did not update registers. */
2389 registers_changed_ptid (eventing->ptid);
2390
2391 DEBUG ("wait ended by thread %d (%s): %s", eventing->num,
2392 target_pid_to_str (eventing->ptid),
2393 target_waitstatus_to_string (status));
2394
2395 do_cleanups (cleanups);
2396 return eventing->ptid;
2397 }
2398
2399 /* The to_stop method of target record-btrace. */
2400
2401 static void
2402 record_btrace_stop (struct target_ops *ops, ptid_t ptid)
2403 {
2404 DEBUG ("stop %s", target_pid_to_str (ptid));
2405
2406 /* As long as we're not replaying, just forward the request. */
2407 if ((execution_direction != EXEC_REVERSE)
2408 && !record_btrace_is_replaying (ops, minus_one_ptid))
2409 {
2410 ops = ops->beneath;
2411 ops->to_stop (ops, ptid);
2412 }
2413 else
2414 {
2415 struct thread_info *tp;
2416
2417 ALL_NON_EXITED_THREADS (tp)
2418 if (ptid_match (tp->ptid, ptid))
2419 {
2420 tp->btrace.flags &= ~BTHR_MOVE;
2421 tp->btrace.flags |= BTHR_STOP;
2422 }
2423 }
2424 }
2425
2426 /* The to_can_execute_reverse method of target record-btrace. */
2427
2428 static int
2429 record_btrace_can_execute_reverse (struct target_ops *self)
2430 {
2431 return 1;
2432 }
2433
2434 /* The to_stopped_by_sw_breakpoint method of target record-btrace. */
2435
2436 static int
2437 record_btrace_stopped_by_sw_breakpoint (struct target_ops *ops)
2438 {
2439 if (record_btrace_is_replaying (ops, minus_one_ptid))
2440 {
2441 struct thread_info *tp = inferior_thread ();
2442
2443 return tp->btrace.stop_reason == TARGET_STOPPED_BY_SW_BREAKPOINT;
2444 }
2445
2446 return ops->beneath->to_stopped_by_sw_breakpoint (ops->beneath);
2447 }
2448
2449 /* The to_supports_stopped_by_sw_breakpoint method of target
2450 record-btrace. */
2451
2452 static int
2453 record_btrace_supports_stopped_by_sw_breakpoint (struct target_ops *ops)
2454 {
2455 if (record_btrace_is_replaying (ops, minus_one_ptid))
2456 return 1;
2457
2458 return ops->beneath->to_supports_stopped_by_sw_breakpoint (ops->beneath);
2459 }
2460
2461 /* The to_stopped_by_sw_breakpoint method of target record-btrace. */
2462
2463 static int
2464 record_btrace_stopped_by_hw_breakpoint (struct target_ops *ops)
2465 {
2466 if (record_btrace_is_replaying (ops, minus_one_ptid))
2467 {
2468 struct thread_info *tp = inferior_thread ();
2469
2470 return tp->btrace.stop_reason == TARGET_STOPPED_BY_HW_BREAKPOINT;
2471 }
2472
2473 return ops->beneath->to_stopped_by_hw_breakpoint (ops->beneath);
2474 }
2475
2476 /* The to_supports_stopped_by_hw_breakpoint method of target
2477 record-btrace. */
2478
2479 static int
2480 record_btrace_supports_stopped_by_hw_breakpoint (struct target_ops *ops)
2481 {
2482 if (record_btrace_is_replaying (ops, minus_one_ptid))
2483 return 1;
2484
2485 return ops->beneath->to_supports_stopped_by_hw_breakpoint (ops->beneath);
2486 }
2487
2488 /* The to_update_thread_list method of target record-btrace. */
2489
2490 static void
2491 record_btrace_update_thread_list (struct target_ops *ops)
2492 {
2493 /* We don't add or remove threads during replay. */
2494 if (record_btrace_is_replaying (ops, minus_one_ptid))
2495 return;
2496
2497 /* Forward the request. */
2498 ops = ops->beneath;
2499 ops->to_update_thread_list (ops);
2500 }
2501
2502 /* The to_thread_alive method of target record-btrace. */
2503
2504 static int
2505 record_btrace_thread_alive (struct target_ops *ops, ptid_t ptid)
2506 {
2507 /* We don't add or remove threads during replay. */
2508 if (record_btrace_is_replaying (ops, minus_one_ptid))
2509 return find_thread_ptid (ptid) != NULL;
2510
2511 /* Forward the request. */
2512 ops = ops->beneath;
2513 return ops->to_thread_alive (ops, ptid);
2514 }
2515
2516 /* Set the replay branch trace instruction iterator. If IT is NULL, replay
2517 is stopped. */
2518
2519 static void
2520 record_btrace_set_replay (struct thread_info *tp,
2521 const struct btrace_insn_iterator *it)
2522 {
2523 struct btrace_thread_info *btinfo;
2524
2525 btinfo = &tp->btrace;
2526
2527 if (it == NULL || it->function == NULL)
2528 record_btrace_stop_replaying (tp);
2529 else
2530 {
2531 if (btinfo->replay == NULL)
2532 record_btrace_start_replaying (tp);
2533 else if (btrace_insn_cmp (btinfo->replay, it) == 0)
2534 return;
2535
2536 *btinfo->replay = *it;
2537 registers_changed_ptid (tp->ptid);
2538 }
2539
2540 /* Start anew from the new replay position. */
2541 record_btrace_clear_histories (btinfo);
2542
2543 stop_pc = regcache_read_pc (get_current_regcache ());
2544 print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC, 1);
2545 }
2546
2547 /* The to_goto_record_begin method of target record-btrace. */
2548
2549 static void
2550 record_btrace_goto_begin (struct target_ops *self)
2551 {
2552 struct thread_info *tp;
2553 struct btrace_insn_iterator begin;
2554
2555 tp = require_btrace_thread ();
2556
2557 btrace_insn_begin (&begin, &tp->btrace);
2558 record_btrace_set_replay (tp, &begin);
2559 }
2560
2561 /* The to_goto_record_end method of target record-btrace. */
2562
2563 static void
2564 record_btrace_goto_end (struct target_ops *ops)
2565 {
2566 struct thread_info *tp;
2567
2568 tp = require_btrace_thread ();
2569
2570 record_btrace_set_replay (tp, NULL);
2571 }
2572
2573 /* The to_goto_record method of target record-btrace. */
2574
2575 static void
2576 record_btrace_goto (struct target_ops *self, ULONGEST insn)
2577 {
2578 struct thread_info *tp;
2579 struct btrace_insn_iterator it;
2580 unsigned int number;
2581 int found;
2582
2583 number = insn;
2584
2585 /* Check for wrap-arounds. */
2586 if (number != insn)
2587 error (_("Instruction number out of range."));
2588
2589 tp = require_btrace_thread ();
2590
2591 found = btrace_find_insn_by_number (&it, &tp->btrace, number);
2592 if (found == 0)
2593 error (_("No such instruction."));
2594
2595 record_btrace_set_replay (tp, &it);
2596 }
2597
2598 /* The to_record_stop_replaying method of target record-btrace. */
2599
2600 static void
2601 record_btrace_stop_replaying_all (struct target_ops *self)
2602 {
2603 struct thread_info *tp;
2604
2605 ALL_NON_EXITED_THREADS (tp)
2606 record_btrace_stop_replaying (tp);
2607 }
2608
2609 /* The to_execution_direction target method. */
2610
2611 static enum exec_direction_kind
2612 record_btrace_execution_direction (struct target_ops *self)
2613 {
2614 return record_btrace_resume_exec_dir;
2615 }
2616
2617 /* The to_prepare_to_generate_core target method. */
2618
2619 static void
2620 record_btrace_prepare_to_generate_core (struct target_ops *self)
2621 {
2622 record_btrace_generating_corefile = 1;
2623 }
2624
2625 /* The to_done_generating_core target method. */
2626
2627 static void
2628 record_btrace_done_generating_core (struct target_ops *self)
2629 {
2630 record_btrace_generating_corefile = 0;
2631 }
2632
2633 /* Initialize the record-btrace target ops. */
2634
2635 static void
2636 init_record_btrace_ops (void)
2637 {
2638 struct target_ops *ops;
2639
2640 ops = &record_btrace_ops;
2641 ops->to_shortname = "record-btrace";
2642 ops->to_longname = "Branch tracing target";
2643 ops->to_doc = "Collect control-flow trace and provide the execution history.";
2644 ops->to_open = record_btrace_open;
2645 ops->to_close = record_btrace_close;
2646 ops->to_async = record_btrace_async;
2647 ops->to_detach = record_detach;
2648 ops->to_disconnect = record_disconnect;
2649 ops->to_mourn_inferior = record_mourn_inferior;
2650 ops->to_kill = record_kill;
2651 ops->to_stop_recording = record_btrace_stop_recording;
2652 ops->to_info_record = record_btrace_info;
2653 ops->to_insn_history = record_btrace_insn_history;
2654 ops->to_insn_history_from = record_btrace_insn_history_from;
2655 ops->to_insn_history_range = record_btrace_insn_history_range;
2656 ops->to_call_history = record_btrace_call_history;
2657 ops->to_call_history_from = record_btrace_call_history_from;
2658 ops->to_call_history_range = record_btrace_call_history_range;
2659 ops->to_record_is_replaying = record_btrace_is_replaying;
2660 ops->to_record_stop_replaying = record_btrace_stop_replaying_all;
2661 ops->to_xfer_partial = record_btrace_xfer_partial;
2662 ops->to_remove_breakpoint = record_btrace_remove_breakpoint;
2663 ops->to_insert_breakpoint = record_btrace_insert_breakpoint;
2664 ops->to_fetch_registers = record_btrace_fetch_registers;
2665 ops->to_store_registers = record_btrace_store_registers;
2666 ops->to_prepare_to_store = record_btrace_prepare_to_store;
2667 ops->to_get_unwinder = &record_btrace_to_get_unwinder;
2668 ops->to_get_tailcall_unwinder = &record_btrace_to_get_tailcall_unwinder;
2669 ops->to_resume = record_btrace_resume;
2670 ops->to_wait = record_btrace_wait;
2671 ops->to_stop = record_btrace_stop;
2672 ops->to_update_thread_list = record_btrace_update_thread_list;
2673 ops->to_thread_alive = record_btrace_thread_alive;
2674 ops->to_goto_record_begin = record_btrace_goto_begin;
2675 ops->to_goto_record_end = record_btrace_goto_end;
2676 ops->to_goto_record = record_btrace_goto;
2677 ops->to_can_execute_reverse = record_btrace_can_execute_reverse;
2678 ops->to_stopped_by_sw_breakpoint = record_btrace_stopped_by_sw_breakpoint;
2679 ops->to_supports_stopped_by_sw_breakpoint
2680 = record_btrace_supports_stopped_by_sw_breakpoint;
2681 ops->to_stopped_by_hw_breakpoint = record_btrace_stopped_by_hw_breakpoint;
2682 ops->to_supports_stopped_by_hw_breakpoint
2683 = record_btrace_supports_stopped_by_hw_breakpoint;
2684 ops->to_execution_direction = record_btrace_execution_direction;
2685 ops->to_prepare_to_generate_core = record_btrace_prepare_to_generate_core;
2686 ops->to_done_generating_core = record_btrace_done_generating_core;
2687 ops->to_stratum = record_stratum;
2688 ops->to_magic = OPS_MAGIC;
2689 }
2690
2691 /* Start recording in BTS format. */
2692
2693 static void
2694 cmd_record_btrace_bts_start (char *args, int from_tty)
2695 {
2696 if (args != NULL && *args != 0)
2697 error (_("Invalid argument."));
2698
2699 record_btrace_conf.format = BTRACE_FORMAT_BTS;
2700
2701 TRY
2702 {
2703 execute_command ("target record-btrace", from_tty);
2704 }
2705 CATCH (exception, RETURN_MASK_ALL)
2706 {
2707 record_btrace_conf.format = BTRACE_FORMAT_NONE;
2708 throw_exception (exception);
2709 }
2710 END_CATCH
2711 }
2712
2713 /* Start recording Intel(R) Processor Trace. */
2714
2715 static void
2716 cmd_record_btrace_pt_start (char *args, int from_tty)
2717 {
2718 if (args != NULL && *args != 0)
2719 error (_("Invalid argument."));
2720
2721 record_btrace_conf.format = BTRACE_FORMAT_PT;
2722
2723 TRY
2724 {
2725 execute_command ("target record-btrace", from_tty);
2726 }
2727 CATCH (exception, RETURN_MASK_ALL)
2728 {
2729 record_btrace_conf.format = BTRACE_FORMAT_NONE;
2730 throw_exception (exception);
2731 }
2732 END_CATCH
2733 }
2734
2735 /* Alias for "target record". */
2736
2737 static void
2738 cmd_record_btrace_start (char *args, int from_tty)
2739 {
2740 if (args != NULL && *args != 0)
2741 error (_("Invalid argument."));
2742
2743 record_btrace_conf.format = BTRACE_FORMAT_PT;
2744
2745 TRY
2746 {
2747 execute_command ("target record-btrace", from_tty);
2748 }
2749 CATCH (exception, RETURN_MASK_ALL)
2750 {
2751 record_btrace_conf.format = BTRACE_FORMAT_BTS;
2752
2753 TRY
2754 {
2755 execute_command ("target record-btrace", from_tty);
2756 }
2757 CATCH (exception, RETURN_MASK_ALL)
2758 {
2759 record_btrace_conf.format = BTRACE_FORMAT_NONE;
2760 throw_exception (exception);
2761 }
2762 END_CATCH
2763 }
2764 END_CATCH
2765 }
2766
2767 /* The "set record btrace" command. */
2768
2769 static void
2770 cmd_set_record_btrace (char *args, int from_tty)
2771 {
2772 cmd_show_list (set_record_btrace_cmdlist, from_tty, "");
2773 }
2774
2775 /* The "show record btrace" command. */
2776
2777 static void
2778 cmd_show_record_btrace (char *args, int from_tty)
2779 {
2780 cmd_show_list (show_record_btrace_cmdlist, from_tty, "");
2781 }
2782
2783 /* The "show record btrace replay-memory-access" command. */
2784
2785 static void
2786 cmd_show_replay_memory_access (struct ui_file *file, int from_tty,
2787 struct cmd_list_element *c, const char *value)
2788 {
2789 fprintf_filtered (gdb_stdout, _("Replay memory access is %s.\n"),
2790 replay_memory_access);
2791 }
2792
2793 /* The "set record btrace bts" command. */
2794
2795 static void
2796 cmd_set_record_btrace_bts (char *args, int from_tty)
2797 {
2798 printf_unfiltered (_("\"set record btrace bts\" must be followed "
2799 "by an appropriate subcommand.\n"));
2800 help_list (set_record_btrace_bts_cmdlist, "set record btrace bts ",
2801 all_commands, gdb_stdout);
2802 }
2803
2804 /* The "show record btrace bts" command. */
2805
2806 static void
2807 cmd_show_record_btrace_bts (char *args, int from_tty)
2808 {
2809 cmd_show_list (show_record_btrace_bts_cmdlist, from_tty, "");
2810 }
2811
2812 /* The "set record btrace pt" command. */
2813
2814 static void
2815 cmd_set_record_btrace_pt (char *args, int from_tty)
2816 {
2817 printf_unfiltered (_("\"set record btrace pt\" must be followed "
2818 "by an appropriate subcommand.\n"));
2819 help_list (set_record_btrace_pt_cmdlist, "set record btrace pt ",
2820 all_commands, gdb_stdout);
2821 }
2822
2823 /* The "show record btrace pt" command. */
2824
2825 static void
2826 cmd_show_record_btrace_pt (char *args, int from_tty)
2827 {
2828 cmd_show_list (show_record_btrace_pt_cmdlist, from_tty, "");
2829 }
2830
2831 /* The "record bts buffer-size" show value function. */
2832
2833 static void
2834 show_record_bts_buffer_size_value (struct ui_file *file, int from_tty,
2835 struct cmd_list_element *c,
2836 const char *value)
2837 {
2838 fprintf_filtered (file, _("The record/replay bts buffer size is %s.\n"),
2839 value);
2840 }
2841
2842 /* The "record pt buffer-size" show value function. */
2843
2844 static void
2845 show_record_pt_buffer_size_value (struct ui_file *file, int from_tty,
2846 struct cmd_list_element *c,
2847 const char *value)
2848 {
2849 fprintf_filtered (file, _("The record/replay pt buffer size is %s.\n"),
2850 value);
2851 }
2852
2853 void _initialize_record_btrace (void);
2854
2855 /* Initialize btrace commands. */
2856
2857 void
2858 _initialize_record_btrace (void)
2859 {
2860 add_prefix_cmd ("btrace", class_obscure, cmd_record_btrace_start,
2861 _("Start branch trace recording."), &record_btrace_cmdlist,
2862 "record btrace ", 0, &record_cmdlist);
2863 add_alias_cmd ("b", "btrace", class_obscure, 1, &record_cmdlist);
2864
2865 add_cmd ("bts", class_obscure, cmd_record_btrace_bts_start,
2866 _("\
2867 Start branch trace recording in Branch Trace Store (BTS) format.\n\n\
2868 The processor stores a from/to record for each branch into a cyclic buffer.\n\
2869 This format may not be available on all processors."),
2870 &record_btrace_cmdlist);
2871 add_alias_cmd ("bts", "btrace bts", class_obscure, 1, &record_cmdlist);
2872
2873 add_cmd ("pt", class_obscure, cmd_record_btrace_pt_start,
2874 _("\
2875 Start branch trace recording in Intel(R) Processor Trace format.\n\n\
2876 This format may not be available on all processors."),
2877 &record_btrace_cmdlist);
2878 add_alias_cmd ("pt", "btrace pt", class_obscure, 1, &record_cmdlist);
2879
2880 add_prefix_cmd ("btrace", class_support, cmd_set_record_btrace,
2881 _("Set record options"), &set_record_btrace_cmdlist,
2882 "set record btrace ", 0, &set_record_cmdlist);
2883
2884 add_prefix_cmd ("btrace", class_support, cmd_show_record_btrace,
2885 _("Show record options"), &show_record_btrace_cmdlist,
2886 "show record btrace ", 0, &show_record_cmdlist);
2887
2888 add_setshow_enum_cmd ("replay-memory-access", no_class,
2889 replay_memory_access_types, &replay_memory_access, _("\
2890 Set what memory accesses are allowed during replay."), _("\
2891 Show what memory accesses are allowed during replay."),
2892 _("Default is READ-ONLY.\n\n\
2893 The btrace record target does not trace data.\n\
2894 The memory therefore corresponds to the live target and not \
2895 to the current replay position.\n\n\
2896 When READ-ONLY, allow accesses to read-only memory during replay.\n\
2897 When READ-WRITE, allow accesses to read-only and read-write memory during \
2898 replay."),
2899 NULL, cmd_show_replay_memory_access,
2900 &set_record_btrace_cmdlist,
2901 &show_record_btrace_cmdlist);
2902
2903 add_prefix_cmd ("bts", class_support, cmd_set_record_btrace_bts,
2904 _("Set record btrace bts options"),
2905 &set_record_btrace_bts_cmdlist,
2906 "set record btrace bts ", 0, &set_record_btrace_cmdlist);
2907
2908 add_prefix_cmd ("bts", class_support, cmd_show_record_btrace_bts,
2909 _("Show record btrace bts options"),
2910 &show_record_btrace_bts_cmdlist,
2911 "show record btrace bts ", 0, &show_record_btrace_cmdlist);
2912
2913 add_setshow_uinteger_cmd ("buffer-size", no_class,
2914 &record_btrace_conf.bts.size,
2915 _("Set the record/replay bts buffer size."),
2916 _("Show the record/replay bts buffer size."), _("\
2917 When starting recording request a trace buffer of this size. \
2918 The actual buffer size may differ from the requested size. \
2919 Use \"info record\" to see the actual buffer size.\n\n\
2920 Bigger buffers allow longer recording but also take more time to process \
2921 the recorded execution trace.\n\n\
2922 The trace buffer size may not be changed while recording."), NULL,
2923 show_record_bts_buffer_size_value,
2924 &set_record_btrace_bts_cmdlist,
2925 &show_record_btrace_bts_cmdlist);
2926
2927 add_prefix_cmd ("pt", class_support, cmd_set_record_btrace_pt,
2928 _("Set record btrace pt options"),
2929 &set_record_btrace_pt_cmdlist,
2930 "set record btrace pt ", 0, &set_record_btrace_cmdlist);
2931
2932 add_prefix_cmd ("pt", class_support, cmd_show_record_btrace_pt,
2933 _("Show record btrace pt options"),
2934 &show_record_btrace_pt_cmdlist,
2935 "show record btrace pt ", 0, &show_record_btrace_cmdlist);
2936
2937 add_setshow_uinteger_cmd ("buffer-size", no_class,
2938 &record_btrace_conf.pt.size,
2939 _("Set the record/replay pt buffer size."),
2940 _("Show the record/replay pt buffer size."), _("\
2941 Bigger buffers allow longer recording but also take more time to process \
2942 the recorded execution.\n\
2943 The actual buffer size may differ from the requested size. Use \"info record\" \
2944 to see the actual buffer size."), NULL, show_record_pt_buffer_size_value,
2945 &set_record_btrace_pt_cmdlist,
2946 &show_record_btrace_pt_cmdlist);
2947
2948 init_record_btrace_ops ();
2949 add_target (&record_btrace_ops);
2950
2951 bfcache = htab_create_alloc (50, bfcache_hash, bfcache_eq, NULL,
2952 xcalloc, xfree);
2953
2954 record_btrace_conf.bts.size = 64 * 1024;
2955 record_btrace_conf.pt.size = 16 * 1024;
2956 }
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