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CommitLineData
afedecd3
MM
1/* Branch trace support for GDB, the GNU debugger.
2
3666a048 3 Copyright (C) 2013-2021 Free Software Foundation, Inc.
afedecd3
MM
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"
c0272db5 24#include "record-btrace.h"
afedecd3
MM
25#include "gdbthread.h"
26#include "target.h"
27#include "gdbcmd.h"
28#include "disasm.h"
76727919 29#include "observable.h"
afedecd3
MM
30#include "cli/cli-utils.h"
31#include "source.h"
32#include "ui-out.h"
33#include "symtab.h"
34#include "filenames.h"
1f3ef581 35#include "regcache.h"
cecac1ab 36#include "frame-unwind.h"
0b722aec 37#include "hashtab.h"
45741a9c 38#include "infrun.h"
400b5eca 39#include "gdbsupport/event-loop.h"
70ad5bff 40#include "inf-loop.h"
00431a78 41#include "inferior.h"
325fac50 42#include <algorithm>
0d12e84c 43#include "gdbarch.h"
e43b10e1 44#include "cli/cli-style.h"
93b54c8e 45#include "async-event.h"
159ed7d9 46#include <forward_list>
afedecd3 47
d9f719f1
PA
48static const target_info record_btrace_target_info = {
49 "record-btrace",
50 N_("Branch tracing target"),
51 N_("Collect control-flow trace and provide the execution history.")
52};
53
afedecd3 54/* The target_ops of record-btrace. */
f6ac5f3d
PA
55
56class record_btrace_target final : public target_ops
57{
58public:
d9f719f1
PA
59 const target_info &info () const override
60 { return record_btrace_target_info; }
f6ac5f3d 61
66b4deae
PA
62 strata stratum () const override { return record_stratum; }
63
f6ac5f3d
PA
64 void close () override;
65 void async (int) override;
66
67 void detach (inferior *inf, int from_tty) override
68 { record_detach (this, inf, from_tty); }
69
70 void disconnect (const char *, int) override;
71
72 void mourn_inferior () override
73 { record_mourn_inferior (this); }
74
75 void kill () override
76 { record_kill (this); }
77
78 enum record_method record_method (ptid_t ptid) override;
79
80 void stop_recording () override;
81 void info_record () override;
82
83 void insn_history (int size, gdb_disassembly_flags flags) override;
84 void insn_history_from (ULONGEST from, int size,
85 gdb_disassembly_flags flags) override;
86 void insn_history_range (ULONGEST begin, ULONGEST end,
87 gdb_disassembly_flags flags) override;
88 void call_history (int size, record_print_flags flags) override;
89 void call_history_from (ULONGEST begin, int size, record_print_flags flags)
90 override;
91 void call_history_range (ULONGEST begin, ULONGEST end, record_print_flags flags)
92 override;
93
57810aa7
PA
94 bool record_is_replaying (ptid_t ptid) override;
95 bool record_will_replay (ptid_t ptid, int dir) override;
f6ac5f3d
PA
96 void record_stop_replaying () override;
97
98 enum target_xfer_status xfer_partial (enum target_object object,
99 const char *annex,
100 gdb_byte *readbuf,
101 const gdb_byte *writebuf,
102 ULONGEST offset, ULONGEST len,
103 ULONGEST *xfered_len) override;
104
105 int insert_breakpoint (struct gdbarch *,
106 struct bp_target_info *) override;
107 int remove_breakpoint (struct gdbarch *, struct bp_target_info *,
108 enum remove_bp_reason) override;
109
110 void fetch_registers (struct regcache *, int) override;
111
112 void store_registers (struct regcache *, int) override;
113 void prepare_to_store (struct regcache *) override;
114
115 const struct frame_unwind *get_unwinder () override;
116
117 const struct frame_unwind *get_tailcall_unwinder () override;
118
f6ac5f3d 119 void resume (ptid_t, int, enum gdb_signal) override;
b60cea74 120 ptid_t wait (ptid_t, struct target_waitstatus *, target_wait_flags) override;
f6ac5f3d
PA
121
122 void stop (ptid_t) override;
123 void update_thread_list () override;
57810aa7 124 bool thread_alive (ptid_t ptid) override;
f6ac5f3d
PA
125 void goto_record_begin () override;
126 void goto_record_end () override;
127 void goto_record (ULONGEST insn) override;
128
57810aa7 129 bool can_execute_reverse () override;
f6ac5f3d 130
57810aa7
PA
131 bool stopped_by_sw_breakpoint () override;
132 bool supports_stopped_by_sw_breakpoint () override;
f6ac5f3d 133
57810aa7
PA
134 bool stopped_by_hw_breakpoint () override;
135 bool supports_stopped_by_hw_breakpoint () override;
f6ac5f3d
PA
136
137 enum exec_direction_kind execution_direction () override;
138 void prepare_to_generate_core () override;
139 void done_generating_core () override;
140};
141
142static record_btrace_target record_btrace_ops;
143
144/* Initialize the record-btrace target ops. */
afedecd3 145
76727919
TT
146/* Token associated with a new-thread observer enabling branch tracing
147 for the new thread. */
3dcfdc58 148static const gdb::observers::token record_btrace_thread_observer_token {};
afedecd3 149
67b5c0c1
MM
150/* Memory access types used in set/show record btrace replay-memory-access. */
151static const char replay_memory_access_read_only[] = "read-only";
152static const char replay_memory_access_read_write[] = "read-write";
153static const char *const replay_memory_access_types[] =
154{
155 replay_memory_access_read_only,
156 replay_memory_access_read_write,
157 NULL
158};
159
160/* The currently allowed replay memory access type. */
161static const char *replay_memory_access = replay_memory_access_read_only;
162
4a4495d6
MM
163/* The cpu state kinds. */
164enum record_btrace_cpu_state_kind
165{
166 CS_AUTO,
167 CS_NONE,
168 CS_CPU
169};
170
171/* The current cpu state. */
172static enum record_btrace_cpu_state_kind record_btrace_cpu_state = CS_AUTO;
173
174/* The current cpu for trace decode. */
175static struct btrace_cpu record_btrace_cpu;
176
67b5c0c1
MM
177/* Command lists for "set/show record btrace". */
178static struct cmd_list_element *set_record_btrace_cmdlist;
179static struct cmd_list_element *show_record_btrace_cmdlist;
633785ff 180
70ad5bff
MM
181/* The execution direction of the last resume we got. See record-full.c. */
182static enum exec_direction_kind record_btrace_resume_exec_dir = EXEC_FORWARD;
183
184/* The async event handler for reverse/replay execution. */
185static struct async_event_handler *record_btrace_async_inferior_event_handler;
186
aef92902
MM
187/* A flag indicating that we are currently generating a core file. */
188static int record_btrace_generating_corefile;
189
f4abbc16
MM
190/* The current branch trace configuration. */
191static struct btrace_config record_btrace_conf;
192
193/* Command list for "record btrace". */
194static struct cmd_list_element *record_btrace_cmdlist;
195
d33501a5
MM
196/* Command lists for "set/show record btrace bts". */
197static struct cmd_list_element *set_record_btrace_bts_cmdlist;
198static struct cmd_list_element *show_record_btrace_bts_cmdlist;
199
b20a6524
MM
200/* Command lists for "set/show record btrace pt". */
201static struct cmd_list_element *set_record_btrace_pt_cmdlist;
202static struct cmd_list_element *show_record_btrace_pt_cmdlist;
203
4a4495d6
MM
204/* Command list for "set record btrace cpu". */
205static struct cmd_list_element *set_record_btrace_cpu_cmdlist;
206
afedecd3
MM
207/* Print a record-btrace debug message. Use do ... while (0) to avoid
208 ambiguities when used in if statements. */
209
210#define DEBUG(msg, args...) \
211 do \
212 { \
213 if (record_debug != 0) \
dda83cd7 214 fprintf_unfiltered (gdb_stdlog, \
afedecd3
MM
215 "[record-btrace] " msg "\n", ##args); \
216 } \
217 while (0)
218
219
4a4495d6
MM
220/* Return the cpu configured by the user. Returns NULL if the cpu was
221 configured as auto. */
222const struct btrace_cpu *
223record_btrace_get_cpu (void)
224{
225 switch (record_btrace_cpu_state)
226 {
227 case CS_AUTO:
228 return nullptr;
229
230 case CS_NONE:
231 record_btrace_cpu.vendor = CV_UNKNOWN;
232 /* Fall through. */
233 case CS_CPU:
234 return &record_btrace_cpu;
235 }
236
237 error (_("Internal error: bad record btrace cpu state."));
238}
239
afedecd3 240/* Update the branch trace for the current thread and return a pointer to its
066ce621 241 thread_info.
afedecd3
MM
242
243 Throws an error if there is no thread or no trace. This function never
244 returns NULL. */
245
066ce621
MM
246static struct thread_info *
247require_btrace_thread (void)
afedecd3 248{
afedecd3
MM
249 DEBUG ("require");
250
00431a78 251 if (inferior_ptid == null_ptid)
afedecd3
MM
252 error (_("No thread."));
253
00431a78
PA
254 thread_info *tp = inferior_thread ();
255
cd4007e4
MM
256 validate_registers_access ();
257
4a4495d6 258 btrace_fetch (tp, record_btrace_get_cpu ());
afedecd3 259
6e07b1d2 260 if (btrace_is_empty (tp))
afedecd3
MM
261 error (_("No trace."));
262
066ce621
MM
263 return tp;
264}
265
266/* Update the branch trace for the current thread and return a pointer to its
267 branch trace information struct.
268
269 Throws an error if there is no thread or no trace. This function never
270 returns NULL. */
271
272static struct btrace_thread_info *
273require_btrace (void)
274{
275 struct thread_info *tp;
276
277 tp = require_btrace_thread ();
278
279 return &tp->btrace;
afedecd3
MM
280}
281
282/* Enable branch tracing for one thread. Warn on errors. */
283
284static void
285record_btrace_enable_warn (struct thread_info *tp)
286{
d89edf9b
MM
287 /* Ignore this thread if its inferior is not recorded by us. */
288 target_ops *rec = tp->inf->target_at (record_stratum);
289 if (rec != &record_btrace_ops)
290 return;
291
a70b8144 292 try
492d29ea
PA
293 {
294 btrace_enable (tp, &record_btrace_conf);
295 }
230d2906 296 catch (const gdb_exception_error &error)
492d29ea 297 {
3d6e9d23 298 warning ("%s", error.what ());
492d29ea 299 }
afedecd3
MM
300}
301
afedecd3
MM
302/* Enable automatic tracing of new threads. */
303
304static void
305record_btrace_auto_enable (void)
306{
307 DEBUG ("attach thread observer");
308
76727919 309 gdb::observers::new_thread.attach (record_btrace_enable_warn,
c90e7d63
SM
310 record_btrace_thread_observer_token,
311 "record-btrace");
afedecd3
MM
312}
313
314/* Disable automatic tracing of new threads. */
315
316static void
317record_btrace_auto_disable (void)
318{
afedecd3
MM
319 DEBUG ("detach thread observer");
320
76727919 321 gdb::observers::new_thread.detach (record_btrace_thread_observer_token);
afedecd3
MM
322}
323
70ad5bff
MM
324/* The record-btrace async event handler function. */
325
326static void
327record_btrace_handle_async_inferior_event (gdb_client_data data)
328{
b1a35af2 329 inferior_event_handler (INF_REG_EVENT);
70ad5bff
MM
330}
331
c0272db5
TW
332/* See record-btrace.h. */
333
334void
335record_btrace_push_target (void)
336{
337 const char *format;
338
339 record_btrace_auto_enable ();
340
02980c56 341 current_inferior ()->push_target (&record_btrace_ops);
c0272db5
TW
342
343 record_btrace_async_inferior_event_handler
344 = create_async_event_handler (record_btrace_handle_async_inferior_event,
db20ebdf 345 NULL, "record-btrace");
c0272db5
TW
346 record_btrace_generating_corefile = 0;
347
348 format = btrace_format_short_string (record_btrace_conf.format);
76727919 349 gdb::observers::record_changed.notify (current_inferior (), 1, "btrace", format);
c0272db5
TW
350}
351
228f1508
SM
352/* Disable btrace on a set of threads on scope exit. */
353
354struct scoped_btrace_disable
355{
356 scoped_btrace_disable () = default;
357
358 DISABLE_COPY_AND_ASSIGN (scoped_btrace_disable);
359
360 ~scoped_btrace_disable ()
361 {
362 for (thread_info *tp : m_threads)
363 btrace_disable (tp);
364 }
365
366 void add_thread (thread_info *thread)
367 {
368 m_threads.push_front (thread);
369 }
370
371 void discard ()
372 {
373 m_threads.clear ();
374 }
375
376private:
377 std::forward_list<thread_info *> m_threads;
378};
379
d9f719f1 380/* Open target record-btrace. */
afedecd3 381
d9f719f1
PA
382static void
383record_btrace_target_open (const char *args, int from_tty)
afedecd3 384{
228f1508
SM
385 /* If we fail to enable btrace for one thread, disable it for the threads for
386 which it was successfully enabled. */
387 scoped_btrace_disable btrace_disable;
afedecd3
MM
388
389 DEBUG ("open");
390
8213266a 391 record_preopen ();
afedecd3 392
55f6301a 393 if (!target_has_execution ())
afedecd3
MM
394 error (_("The program is not being run."));
395
d89edf9b 396 for (thread_info *tp : current_inferior ()->non_exited_threads ())
5d5658a1 397 if (args == NULL || *args == 0 || number_is_in_list (args, tp->global_num))
afedecd3 398 {
f4abbc16 399 btrace_enable (tp, &record_btrace_conf);
afedecd3 400
228f1508 401 btrace_disable.add_thread (tp);
afedecd3
MM
402 }
403
c0272db5 404 record_btrace_push_target ();
afedecd3 405
228f1508 406 btrace_disable.discard ();
afedecd3
MM
407}
408
f6ac5f3d 409/* The stop_recording method of target record-btrace. */
afedecd3 410
f6ac5f3d
PA
411void
412record_btrace_target::stop_recording ()
afedecd3 413{
afedecd3
MM
414 DEBUG ("stop recording");
415
416 record_btrace_auto_disable ();
417
d89edf9b 418 for (thread_info *tp : current_inferior ()->non_exited_threads ())
afedecd3
MM
419 if (tp->btrace.target != NULL)
420 btrace_disable (tp);
421}
422
f6ac5f3d 423/* The disconnect method of target record-btrace. */
c0272db5 424
f6ac5f3d
PA
425void
426record_btrace_target::disconnect (const char *args,
427 int from_tty)
c0272db5 428{
b6a8c27b 429 struct target_ops *beneath = this->beneath ();
c0272db5
TW
430
431 /* Do not stop recording, just clean up GDB side. */
fadf6add 432 current_inferior ()->unpush_target (this);
c0272db5
TW
433
434 /* Forward disconnect. */
f6ac5f3d 435 beneath->disconnect (args, from_tty);
c0272db5
TW
436}
437
f6ac5f3d 438/* The close method of target record-btrace. */
afedecd3 439
f6ac5f3d
PA
440void
441record_btrace_target::close ()
afedecd3 442{
70ad5bff
MM
443 if (record_btrace_async_inferior_event_handler != NULL)
444 delete_async_event_handler (&record_btrace_async_inferior_event_handler);
445
99c819ee
MM
446 /* Make sure automatic recording gets disabled even if we did not stop
447 recording before closing the record-btrace target. */
448 record_btrace_auto_disable ();
449
568e808b
MM
450 /* We should have already stopped recording.
451 Tear down btrace in case we have not. */
d89edf9b 452 for (thread_info *tp : current_inferior ()->non_exited_threads ())
568e808b 453 btrace_teardown (tp);
afedecd3
MM
454}
455
f6ac5f3d 456/* The async method of target record-btrace. */
b7d2e916 457
f6ac5f3d
PA
458void
459record_btrace_target::async (int enable)
b7d2e916 460{
6a3753b3 461 if (enable)
b7d2e916
PA
462 mark_async_event_handler (record_btrace_async_inferior_event_handler);
463 else
464 clear_async_event_handler (record_btrace_async_inferior_event_handler);
465
b6a8c27b 466 this->beneath ()->async (enable);
b7d2e916
PA
467}
468
d33501a5
MM
469/* Adjusts the size and returns a human readable size suffix. */
470
471static const char *
472record_btrace_adjust_size (unsigned int *size)
473{
474 unsigned int sz;
475
476 sz = *size;
477
478 if ((sz & ((1u << 30) - 1)) == 0)
479 {
480 *size = sz >> 30;
481 return "GB";
482 }
483 else if ((sz & ((1u << 20) - 1)) == 0)
484 {
485 *size = sz >> 20;
486 return "MB";
487 }
488 else if ((sz & ((1u << 10) - 1)) == 0)
489 {
490 *size = sz >> 10;
491 return "kB";
492 }
493 else
494 return "";
495}
496
497/* Print a BTS configuration. */
498
499static void
500record_btrace_print_bts_conf (const struct btrace_config_bts *conf)
501{
502 const char *suffix;
503 unsigned int size;
504
505 size = conf->size;
506 if (size > 0)
507 {
508 suffix = record_btrace_adjust_size (&size);
509 printf_unfiltered (_("Buffer size: %u%s.\n"), size, suffix);
510 }
511}
512
bc504a31 513/* Print an Intel Processor Trace configuration. */
b20a6524
MM
514
515static void
516record_btrace_print_pt_conf (const struct btrace_config_pt *conf)
517{
518 const char *suffix;
519 unsigned int size;
520
521 size = conf->size;
522 if (size > 0)
523 {
524 suffix = record_btrace_adjust_size (&size);
525 printf_unfiltered (_("Buffer size: %u%s.\n"), size, suffix);
526 }
527}
528
d33501a5
MM
529/* Print a branch tracing configuration. */
530
531static void
532record_btrace_print_conf (const struct btrace_config *conf)
533{
534 printf_unfiltered (_("Recording format: %s.\n"),
535 btrace_format_string (conf->format));
536
537 switch (conf->format)
538 {
539 case BTRACE_FORMAT_NONE:
540 return;
541
542 case BTRACE_FORMAT_BTS:
543 record_btrace_print_bts_conf (&conf->bts);
544 return;
b20a6524
MM
545
546 case BTRACE_FORMAT_PT:
547 record_btrace_print_pt_conf (&conf->pt);
548 return;
d33501a5
MM
549 }
550
40c94099 551 internal_error (__FILE__, __LINE__, _("Unknown branch trace format."));
d33501a5
MM
552}
553
f6ac5f3d 554/* The info_record method of target record-btrace. */
afedecd3 555
f6ac5f3d
PA
556void
557record_btrace_target::info_record ()
afedecd3
MM
558{
559 struct btrace_thread_info *btinfo;
f4abbc16 560 const struct btrace_config *conf;
afedecd3 561 struct thread_info *tp;
31fd9caa 562 unsigned int insns, calls, gaps;
afedecd3
MM
563
564 DEBUG ("info");
565
5b6d1e4f 566 if (inferior_ptid == null_ptid)
afedecd3
MM
567 error (_("No thread."));
568
5b6d1e4f
PA
569 tp = inferior_thread ();
570
cd4007e4
MM
571 validate_registers_access ();
572
f4abbc16
MM
573 btinfo = &tp->btrace;
574
f6ac5f3d 575 conf = ::btrace_conf (btinfo);
f4abbc16 576 if (conf != NULL)
d33501a5 577 record_btrace_print_conf (conf);
f4abbc16 578
4a4495d6 579 btrace_fetch (tp, record_btrace_get_cpu ());
afedecd3 580
23a7fe75
MM
581 insns = 0;
582 calls = 0;
31fd9caa 583 gaps = 0;
23a7fe75 584
6e07b1d2 585 if (!btrace_is_empty (tp))
23a7fe75
MM
586 {
587 struct btrace_call_iterator call;
588 struct btrace_insn_iterator insn;
589
590 btrace_call_end (&call, btinfo);
591 btrace_call_prev (&call, 1);
5de9129b 592 calls = btrace_call_number (&call);
23a7fe75
MM
593
594 btrace_insn_end (&insn, btinfo);
5de9129b 595 insns = btrace_insn_number (&insn);
31fd9caa 596
69090cee
TW
597 /* If the last instruction is not a gap, it is the current instruction
598 that is not actually part of the record. */
599 if (btrace_insn_get (&insn) != NULL)
600 insns -= 1;
31fd9caa
MM
601
602 gaps = btinfo->ngaps;
23a7fe75 603 }
afedecd3 604
31fd9caa 605 printf_unfiltered (_("Recorded %u instructions in %u functions (%u gaps) "
43792cf0 606 "for thread %s (%s).\n"), insns, calls, gaps,
a068643d
TT
607 print_thread_id (tp),
608 target_pid_to_str (tp->ptid).c_str ());
07bbe694
MM
609
610 if (btrace_is_replaying (tp))
611 printf_unfiltered (_("Replay in progress. At instruction %u.\n"),
612 btrace_insn_number (btinfo->replay));
afedecd3
MM
613}
614
31fd9caa
MM
615/* Print a decode error. */
616
617static void
618btrace_ui_out_decode_error (struct ui_out *uiout, int errcode,
619 enum btrace_format format)
620{
508352a9 621 const char *errstr = btrace_decode_error (format, errcode);
31fd9caa 622
112e8700 623 uiout->text (_("["));
508352a9
TW
624 /* ERRCODE > 0 indicates notifications on BTRACE_FORMAT_PT. */
625 if (!(format == BTRACE_FORMAT_PT && errcode > 0))
31fd9caa 626 {
112e8700 627 uiout->text (_("decode error ("));
381befee 628 uiout->field_signed ("errcode", errcode);
112e8700 629 uiout->text (_("): "));
31fd9caa 630 }
112e8700
SM
631 uiout->text (errstr);
632 uiout->text (_("]\n"));
31fd9caa
MM
633}
634
f94cc897
MM
635/* A range of source lines. */
636
637struct btrace_line_range
638{
639 /* The symtab this line is from. */
640 struct symtab *symtab;
641
642 /* The first line (inclusive). */
643 int begin;
644
645 /* The last line (exclusive). */
646 int end;
647};
648
649/* Construct a line range. */
650
651static struct btrace_line_range
652btrace_mk_line_range (struct symtab *symtab, int begin, int end)
653{
654 struct btrace_line_range range;
655
656 range.symtab = symtab;
657 range.begin = begin;
658 range.end = end;
659
660 return range;
661}
662
663/* Add a line to a line range. */
664
665static struct btrace_line_range
666btrace_line_range_add (struct btrace_line_range range, int line)
667{
668 if (range.end <= range.begin)
669 {
670 /* This is the first entry. */
671 range.begin = line;
672 range.end = line + 1;
673 }
674 else if (line < range.begin)
675 range.begin = line;
676 else if (range.end < line)
677 range.end = line;
678
679 return range;
680}
681
682/* Return non-zero if RANGE is empty, zero otherwise. */
683
684static int
685btrace_line_range_is_empty (struct btrace_line_range range)
686{
687 return range.end <= range.begin;
688}
689
690/* Return non-zero if LHS contains RHS, zero otherwise. */
691
692static int
693btrace_line_range_contains_range (struct btrace_line_range lhs,
694 struct btrace_line_range rhs)
695{
696 return ((lhs.symtab == rhs.symtab)
697 && (lhs.begin <= rhs.begin)
698 && (rhs.end <= lhs.end));
699}
700
701/* Find the line range associated with PC. */
702
703static struct btrace_line_range
704btrace_find_line_range (CORE_ADDR pc)
705{
706 struct btrace_line_range range;
707 struct linetable_entry *lines;
708 struct linetable *ltable;
709 struct symtab *symtab;
710 int nlines, i;
711
712 symtab = find_pc_line_symtab (pc);
713 if (symtab == NULL)
714 return btrace_mk_line_range (NULL, 0, 0);
715
716 ltable = SYMTAB_LINETABLE (symtab);
717 if (ltable == NULL)
718 return btrace_mk_line_range (symtab, 0, 0);
719
720 nlines = ltable->nitems;
721 lines = ltable->item;
722 if (nlines <= 0)
723 return btrace_mk_line_range (symtab, 0, 0);
724
725 range = btrace_mk_line_range (symtab, 0, 0);
726 for (i = 0; i < nlines - 1; i++)
727 {
8c95582d
AB
728 /* The test of is_stmt here was added when the is_stmt field was
729 introduced to the 'struct linetable_entry' structure. This
730 ensured that this loop maintained the same behaviour as before we
731 introduced is_stmt. That said, it might be that we would be
732 better off not checking is_stmt here, this would lead to us
733 possibly adding more line numbers to the range. At the time this
734 change was made I was unsure how to test this so chose to go with
735 maintaining the existing experience. */
736 if ((lines[i].pc == pc) && (lines[i].line != 0)
737 && (lines[i].is_stmt == 1))
f94cc897
MM
738 range = btrace_line_range_add (range, lines[i].line);
739 }
740
741 return range;
742}
743
744/* Print source lines in LINES to UIOUT.
745
746 UI_ITEM_CHAIN is a cleanup chain for the last source line and the
747 instructions corresponding to that source line. When printing a new source
748 line, we do the cleanups for the open chain and open a new cleanup chain for
749 the new source line. If the source line range in LINES is not empty, this
750 function will leave the cleanup chain for the last printed source line open
751 so instructions can be added to it. */
752
753static void
754btrace_print_lines (struct btrace_line_range lines, struct ui_out *uiout,
7ea78b59
SM
755 gdb::optional<ui_out_emit_tuple> *src_and_asm_tuple,
756 gdb::optional<ui_out_emit_list> *asm_list,
757 gdb_disassembly_flags flags)
f94cc897 758{
8d297bbf 759 print_source_lines_flags psl_flags;
f94cc897 760
f94cc897
MM
761 if (flags & DISASSEMBLY_FILENAME)
762 psl_flags |= PRINT_SOURCE_LINES_FILENAME;
763
7ea78b59 764 for (int line = lines.begin; line < lines.end; ++line)
f94cc897 765 {
7ea78b59 766 asm_list->reset ();
f94cc897 767
7ea78b59 768 src_and_asm_tuple->emplace (uiout, "src_and_asm_line");
f94cc897
MM
769
770 print_source_lines (lines.symtab, line, line + 1, psl_flags);
771
7ea78b59 772 asm_list->emplace (uiout, "line_asm_insn");
f94cc897
MM
773 }
774}
775
afedecd3
MM
776/* Disassemble a section of the recorded instruction trace. */
777
778static void
23a7fe75 779btrace_insn_history (struct ui_out *uiout,
31fd9caa 780 const struct btrace_thread_info *btinfo,
23a7fe75 781 const struct btrace_insn_iterator *begin,
9a24775b
PA
782 const struct btrace_insn_iterator *end,
783 gdb_disassembly_flags flags)
afedecd3 784{
9a24775b
PA
785 DEBUG ("itrace (0x%x): [%u; %u)", (unsigned) flags,
786 btrace_insn_number (begin), btrace_insn_number (end));
afedecd3 787
f94cc897
MM
788 flags |= DISASSEMBLY_SPECULATIVE;
789
7ea78b59
SM
790 struct gdbarch *gdbarch = target_gdbarch ();
791 btrace_line_range last_lines = btrace_mk_line_range (NULL, 0, 0);
f94cc897 792
7ea78b59 793 ui_out_emit_list list_emitter (uiout, "asm_insns");
f94cc897 794
7ea78b59
SM
795 gdb::optional<ui_out_emit_tuple> src_and_asm_tuple;
796 gdb::optional<ui_out_emit_list> asm_list;
afedecd3 797
046bebe1 798 gdb_pretty_print_disassembler disasm (gdbarch, uiout);
8b172ce7 799
7ea78b59 800 for (btrace_insn_iterator it = *begin; btrace_insn_cmp (&it, end) != 0;
dda83cd7 801 btrace_insn_next (&it, 1))
afedecd3 802 {
23a7fe75
MM
803 const struct btrace_insn *insn;
804
805 insn = btrace_insn_get (&it);
806
31fd9caa
MM
807 /* A NULL instruction indicates a gap in the trace. */
808 if (insn == NULL)
809 {
810 const struct btrace_config *conf;
811
812 conf = btrace_conf (btinfo);
afedecd3 813
31fd9caa
MM
814 /* We have trace so we must have a configuration. */
815 gdb_assert (conf != NULL);
816
69090cee
TW
817 uiout->field_fmt ("insn-number", "%u",
818 btrace_insn_number (&it));
819 uiout->text ("\t");
820
821 btrace_ui_out_decode_error (uiout, btrace_insn_get_error (&it),
31fd9caa
MM
822 conf->format);
823 }
824 else
825 {
f94cc897 826 struct disasm_insn dinsn;
da8c46d2 827
f94cc897 828 if ((flags & DISASSEMBLY_SOURCE) != 0)
da8c46d2 829 {
f94cc897
MM
830 struct btrace_line_range lines;
831
832 lines = btrace_find_line_range (insn->pc);
833 if (!btrace_line_range_is_empty (lines)
834 && !btrace_line_range_contains_range (last_lines, lines))
835 {
7ea78b59
SM
836 btrace_print_lines (lines, uiout, &src_and_asm_tuple, &asm_list,
837 flags);
f94cc897
MM
838 last_lines = lines;
839 }
7ea78b59 840 else if (!src_and_asm_tuple.has_value ())
f94cc897 841 {
7ea78b59
SM
842 gdb_assert (!asm_list.has_value ());
843
844 src_and_asm_tuple.emplace (uiout, "src_and_asm_line");
845
f94cc897 846 /* No source information. */
7ea78b59 847 asm_list.emplace (uiout, "line_asm_insn");
f94cc897
MM
848 }
849
7ea78b59
SM
850 gdb_assert (src_and_asm_tuple.has_value ());
851 gdb_assert (asm_list.has_value ());
da8c46d2 852 }
da8c46d2 853
f94cc897
MM
854 memset (&dinsn, 0, sizeof (dinsn));
855 dinsn.number = btrace_insn_number (&it);
856 dinsn.addr = insn->pc;
31fd9caa 857
da8c46d2 858 if ((insn->flags & BTRACE_INSN_FLAG_SPECULATIVE) != 0)
f94cc897 859 dinsn.is_speculative = 1;
da8c46d2 860
046bebe1 861 disasm.pretty_print_insn (&dinsn, flags);
31fd9caa 862 }
afedecd3
MM
863 }
864}
865
f6ac5f3d 866/* The insn_history method of target record-btrace. */
afedecd3 867
f6ac5f3d
PA
868void
869record_btrace_target::insn_history (int size, gdb_disassembly_flags flags)
afedecd3
MM
870{
871 struct btrace_thread_info *btinfo;
23a7fe75
MM
872 struct btrace_insn_history *history;
873 struct btrace_insn_iterator begin, end;
afedecd3 874 struct ui_out *uiout;
23a7fe75 875 unsigned int context, covered;
afedecd3
MM
876
877 uiout = current_uiout;
2e783024 878 ui_out_emit_tuple tuple_emitter (uiout, "insn history");
afedecd3 879 context = abs (size);
afedecd3
MM
880 if (context == 0)
881 error (_("Bad record instruction-history-size."));
882
23a7fe75
MM
883 btinfo = require_btrace ();
884 history = btinfo->insn_history;
885 if (history == NULL)
afedecd3 886 {
07bbe694 887 struct btrace_insn_iterator *replay;
afedecd3 888
9a24775b 889 DEBUG ("insn-history (0x%x): %d", (unsigned) flags, size);
afedecd3 890
07bbe694
MM
891 /* If we're replaying, we start at the replay position. Otherwise, we
892 start at the tail of the trace. */
893 replay = btinfo->replay;
894 if (replay != NULL)
895 begin = *replay;
896 else
897 btrace_insn_end (&begin, btinfo);
898
899 /* We start from here and expand in the requested direction. Then we
900 expand in the other direction, as well, to fill up any remaining
901 context. */
902 end = begin;
903 if (size < 0)
904 {
905 /* We want the current position covered, as well. */
906 covered = btrace_insn_next (&end, 1);
907 covered += btrace_insn_prev (&begin, context - covered);
908 covered += btrace_insn_next (&end, context - covered);
909 }
910 else
911 {
912 covered = btrace_insn_next (&end, context);
913 covered += btrace_insn_prev (&begin, context - covered);
914 }
afedecd3
MM
915 }
916 else
917 {
23a7fe75
MM
918 begin = history->begin;
919 end = history->end;
afedecd3 920
9a24775b 921 DEBUG ("insn-history (0x%x): %d, prev: [%u; %u)", (unsigned) flags, size,
23a7fe75 922 btrace_insn_number (&begin), btrace_insn_number (&end));
afedecd3 923
23a7fe75
MM
924 if (size < 0)
925 {
926 end = begin;
927 covered = btrace_insn_prev (&begin, context);
928 }
929 else
930 {
931 begin = end;
932 covered = btrace_insn_next (&end, context);
933 }
afedecd3
MM
934 }
935
23a7fe75 936 if (covered > 0)
31fd9caa 937 btrace_insn_history (uiout, btinfo, &begin, &end, flags);
23a7fe75
MM
938 else
939 {
940 if (size < 0)
941 printf_unfiltered (_("At the start of the branch trace record.\n"));
942 else
943 printf_unfiltered (_("At the end of the branch trace record.\n"));
944 }
afedecd3 945
23a7fe75 946 btrace_set_insn_history (btinfo, &begin, &end);
afedecd3
MM
947}
948
f6ac5f3d 949/* The insn_history_range method of target record-btrace. */
afedecd3 950
f6ac5f3d
PA
951void
952record_btrace_target::insn_history_range (ULONGEST from, ULONGEST to,
953 gdb_disassembly_flags flags)
afedecd3
MM
954{
955 struct btrace_thread_info *btinfo;
23a7fe75 956 struct btrace_insn_iterator begin, end;
afedecd3 957 struct ui_out *uiout;
23a7fe75
MM
958 unsigned int low, high;
959 int found;
afedecd3
MM
960
961 uiout = current_uiout;
2e783024 962 ui_out_emit_tuple tuple_emitter (uiout, "insn history");
23a7fe75
MM
963 low = from;
964 high = to;
afedecd3 965
9a24775b 966 DEBUG ("insn-history (0x%x): [%u; %u)", (unsigned) flags, low, high);
afedecd3
MM
967
968 /* Check for wrap-arounds. */
23a7fe75 969 if (low != from || high != to)
afedecd3
MM
970 error (_("Bad range."));
971
0688d04e 972 if (high < low)
afedecd3
MM
973 error (_("Bad range."));
974
23a7fe75 975 btinfo = require_btrace ();
afedecd3 976
23a7fe75
MM
977 found = btrace_find_insn_by_number (&begin, btinfo, low);
978 if (found == 0)
979 error (_("Range out of bounds."));
afedecd3 980
23a7fe75
MM
981 found = btrace_find_insn_by_number (&end, btinfo, high);
982 if (found == 0)
0688d04e
MM
983 {
984 /* Silently truncate the range. */
985 btrace_insn_end (&end, btinfo);
986 }
987 else
988 {
989 /* We want both begin and end to be inclusive. */
990 btrace_insn_next (&end, 1);
991 }
afedecd3 992
31fd9caa 993 btrace_insn_history (uiout, btinfo, &begin, &end, flags);
23a7fe75 994 btrace_set_insn_history (btinfo, &begin, &end);
afedecd3
MM
995}
996
f6ac5f3d 997/* The insn_history_from method of target record-btrace. */
afedecd3 998
f6ac5f3d
PA
999void
1000record_btrace_target::insn_history_from (ULONGEST from, int size,
1001 gdb_disassembly_flags flags)
afedecd3
MM
1002{
1003 ULONGEST begin, end, context;
1004
1005 context = abs (size);
0688d04e
MM
1006 if (context == 0)
1007 error (_("Bad record instruction-history-size."));
afedecd3
MM
1008
1009 if (size < 0)
1010 {
1011 end = from;
1012
1013 if (from < context)
1014 begin = 0;
1015 else
0688d04e 1016 begin = from - context + 1;
afedecd3
MM
1017 }
1018 else
1019 {
1020 begin = from;
0688d04e 1021 end = from + context - 1;
afedecd3
MM
1022
1023 /* Check for wrap-around. */
1024 if (end < begin)
1025 end = ULONGEST_MAX;
1026 }
1027
f6ac5f3d 1028 insn_history_range (begin, end, flags);
afedecd3
MM
1029}
1030
1031/* Print the instruction number range for a function call history line. */
1032
1033static void
23a7fe75
MM
1034btrace_call_history_insn_range (struct ui_out *uiout,
1035 const struct btrace_function *bfun)
afedecd3 1036{
7acbe133
MM
1037 unsigned int begin, end, size;
1038
0860c437 1039 size = bfun->insn.size ();
7acbe133 1040 gdb_assert (size > 0);
afedecd3 1041
23a7fe75 1042 begin = bfun->insn_offset;
7acbe133 1043 end = begin + size - 1;
afedecd3 1044
1f77b012 1045 uiout->field_unsigned ("insn begin", begin);
112e8700 1046 uiout->text (",");
1f77b012 1047 uiout->field_unsigned ("insn end", end);
afedecd3
MM
1048}
1049
ce0dfbea
MM
1050/* Compute the lowest and highest source line for the instructions in BFUN
1051 and return them in PBEGIN and PEND.
1052 Ignore instructions that can't be mapped to BFUN, e.g. instructions that
1053 result from inlining or macro expansion. */
1054
1055static void
1056btrace_compute_src_line_range (const struct btrace_function *bfun,
1057 int *pbegin, int *pend)
1058{
ce0dfbea
MM
1059 struct symtab *symtab;
1060 struct symbol *sym;
ce0dfbea
MM
1061 int begin, end;
1062
1063 begin = INT_MAX;
1064 end = INT_MIN;
1065
1066 sym = bfun->sym;
1067 if (sym == NULL)
1068 goto out;
1069
1070 symtab = symbol_symtab (sym);
1071
0860c437 1072 for (const btrace_insn &insn : bfun->insn)
ce0dfbea
MM
1073 {
1074 struct symtab_and_line sal;
1075
0860c437 1076 sal = find_pc_line (insn.pc, 0);
ce0dfbea
MM
1077 if (sal.symtab != symtab || sal.line == 0)
1078 continue;
1079
325fac50
PA
1080 begin = std::min (begin, sal.line);
1081 end = std::max (end, sal.line);
ce0dfbea
MM
1082 }
1083
1084 out:
1085 *pbegin = begin;
1086 *pend = end;
1087}
1088
afedecd3
MM
1089/* Print the source line information for a function call history line. */
1090
1091static void
23a7fe75
MM
1092btrace_call_history_src_line (struct ui_out *uiout,
1093 const struct btrace_function *bfun)
afedecd3
MM
1094{
1095 struct symbol *sym;
23a7fe75 1096 int begin, end;
afedecd3
MM
1097
1098 sym = bfun->sym;
1099 if (sym == NULL)
1100 return;
1101
112e8700 1102 uiout->field_string ("file",
cbe56571 1103 symtab_to_filename_for_display (symbol_symtab (sym)),
e43b10e1 1104 file_name_style.style ());
afedecd3 1105
ce0dfbea 1106 btrace_compute_src_line_range (bfun, &begin, &end);
23a7fe75 1107 if (end < begin)
afedecd3
MM
1108 return;
1109
112e8700 1110 uiout->text (":");
381befee 1111 uiout->field_signed ("min line", begin);
afedecd3 1112
23a7fe75 1113 if (end == begin)
afedecd3
MM
1114 return;
1115
112e8700 1116 uiout->text (",");
381befee 1117 uiout->field_signed ("max line", end);
afedecd3
MM
1118}
1119
0b722aec
MM
1120/* Get the name of a branch trace function. */
1121
1122static const char *
1123btrace_get_bfun_name (const struct btrace_function *bfun)
1124{
1125 struct minimal_symbol *msym;
1126 struct symbol *sym;
1127
1128 if (bfun == NULL)
1129 return "??";
1130
1131 msym = bfun->msym;
1132 sym = bfun->sym;
1133
1134 if (sym != NULL)
987012b8 1135 return sym->print_name ();
0b722aec 1136 else if (msym != NULL)
c9d95fa3 1137 return msym->print_name ();
0b722aec
MM
1138 else
1139 return "??";
1140}
1141
afedecd3
MM
1142/* Disassemble a section of the recorded function trace. */
1143
1144static void
23a7fe75 1145btrace_call_history (struct ui_out *uiout,
8710b709 1146 const struct btrace_thread_info *btinfo,
23a7fe75
MM
1147 const struct btrace_call_iterator *begin,
1148 const struct btrace_call_iterator *end,
8d297bbf 1149 int int_flags)
afedecd3 1150{
23a7fe75 1151 struct btrace_call_iterator it;
8d297bbf 1152 record_print_flags flags = (enum record_print_flag) int_flags;
afedecd3 1153
8d297bbf 1154 DEBUG ("ftrace (0x%x): [%u; %u)", int_flags, btrace_call_number (begin),
23a7fe75 1155 btrace_call_number (end));
afedecd3 1156
23a7fe75 1157 for (it = *begin; btrace_call_cmp (&it, end) < 0; btrace_call_next (&it, 1))
afedecd3 1158 {
23a7fe75
MM
1159 const struct btrace_function *bfun;
1160 struct minimal_symbol *msym;
1161 struct symbol *sym;
1162
1163 bfun = btrace_call_get (&it);
23a7fe75 1164 sym = bfun->sym;
0b722aec 1165 msym = bfun->msym;
23a7fe75 1166
afedecd3 1167 /* Print the function index. */
1f77b012 1168 uiout->field_unsigned ("index", bfun->number);
112e8700 1169 uiout->text ("\t");
afedecd3 1170
31fd9caa
MM
1171 /* Indicate gaps in the trace. */
1172 if (bfun->errcode != 0)
1173 {
1174 const struct btrace_config *conf;
1175
1176 conf = btrace_conf (btinfo);
1177
1178 /* We have trace so we must have a configuration. */
1179 gdb_assert (conf != NULL);
1180
1181 btrace_ui_out_decode_error (uiout, bfun->errcode, conf->format);
1182
1183 continue;
1184 }
1185
8710b709
MM
1186 if ((flags & RECORD_PRINT_INDENT_CALLS) != 0)
1187 {
1188 int level = bfun->level + btinfo->level, i;
1189
1190 for (i = 0; i < level; ++i)
112e8700 1191 uiout->text (" ");
8710b709
MM
1192 }
1193
1194 if (sym != NULL)
987012b8 1195 uiout->field_string ("function", sym->print_name (),
e43b10e1 1196 function_name_style.style ());
8710b709 1197 else if (msym != NULL)
c9d95fa3 1198 uiout->field_string ("function", msym->print_name (),
e43b10e1 1199 function_name_style.style ());
112e8700 1200 else if (!uiout->is_mi_like_p ())
cbe56571 1201 uiout->field_string ("function", "??",
e43b10e1 1202 function_name_style.style ());
8710b709 1203
1e038f67 1204 if ((flags & RECORD_PRINT_INSN_RANGE) != 0)
afedecd3 1205 {
112e8700 1206 uiout->text (_("\tinst "));
23a7fe75 1207 btrace_call_history_insn_range (uiout, bfun);
afedecd3
MM
1208 }
1209
1e038f67 1210 if ((flags & RECORD_PRINT_SRC_LINE) != 0)
afedecd3 1211 {
112e8700 1212 uiout->text (_("\tat "));
23a7fe75 1213 btrace_call_history_src_line (uiout, bfun);
afedecd3
MM
1214 }
1215
112e8700 1216 uiout->text ("\n");
afedecd3
MM
1217 }
1218}
1219
f6ac5f3d 1220/* The call_history method of target record-btrace. */
afedecd3 1221
f6ac5f3d
PA
1222void
1223record_btrace_target::call_history (int size, record_print_flags flags)
afedecd3
MM
1224{
1225 struct btrace_thread_info *btinfo;
23a7fe75
MM
1226 struct btrace_call_history *history;
1227 struct btrace_call_iterator begin, end;
afedecd3 1228 struct ui_out *uiout;
23a7fe75 1229 unsigned int context, covered;
afedecd3
MM
1230
1231 uiout = current_uiout;
2e783024 1232 ui_out_emit_tuple tuple_emitter (uiout, "insn history");
afedecd3 1233 context = abs (size);
afedecd3
MM
1234 if (context == 0)
1235 error (_("Bad record function-call-history-size."));
1236
23a7fe75
MM
1237 btinfo = require_btrace ();
1238 history = btinfo->call_history;
1239 if (history == NULL)
afedecd3 1240 {
07bbe694 1241 struct btrace_insn_iterator *replay;
afedecd3 1242
0cb7c7b0 1243 DEBUG ("call-history (0x%x): %d", (int) flags, size);
afedecd3 1244
07bbe694
MM
1245 /* If we're replaying, we start at the replay position. Otherwise, we
1246 start at the tail of the trace. */
1247 replay = btinfo->replay;
1248 if (replay != NULL)
1249 {
07bbe694 1250 begin.btinfo = btinfo;
a0f1b963 1251 begin.index = replay->call_index;
07bbe694
MM
1252 }
1253 else
1254 btrace_call_end (&begin, btinfo);
1255
1256 /* We start from here and expand in the requested direction. Then we
1257 expand in the other direction, as well, to fill up any remaining
1258 context. */
1259 end = begin;
1260 if (size < 0)
1261 {
1262 /* We want the current position covered, as well. */
1263 covered = btrace_call_next (&end, 1);
1264 covered += btrace_call_prev (&begin, context - covered);
1265 covered += btrace_call_next (&end, context - covered);
1266 }
1267 else
1268 {
1269 covered = btrace_call_next (&end, context);
1270 covered += btrace_call_prev (&begin, context- covered);
1271 }
afedecd3
MM
1272 }
1273 else
1274 {
23a7fe75
MM
1275 begin = history->begin;
1276 end = history->end;
afedecd3 1277
0cb7c7b0 1278 DEBUG ("call-history (0x%x): %d, prev: [%u; %u)", (int) flags, size,
23a7fe75 1279 btrace_call_number (&begin), btrace_call_number (&end));
afedecd3 1280
23a7fe75
MM
1281 if (size < 0)
1282 {
1283 end = begin;
1284 covered = btrace_call_prev (&begin, context);
1285 }
1286 else
1287 {
1288 begin = end;
1289 covered = btrace_call_next (&end, context);
1290 }
afedecd3
MM
1291 }
1292
23a7fe75 1293 if (covered > 0)
8710b709 1294 btrace_call_history (uiout, btinfo, &begin, &end, flags);
23a7fe75
MM
1295 else
1296 {
1297 if (size < 0)
1298 printf_unfiltered (_("At the start of the branch trace record.\n"));
1299 else
1300 printf_unfiltered (_("At the end of the branch trace record.\n"));
1301 }
afedecd3 1302
23a7fe75 1303 btrace_set_call_history (btinfo, &begin, &end);
afedecd3
MM
1304}
1305
f6ac5f3d 1306/* The call_history_range method of target record-btrace. */
afedecd3 1307
f6ac5f3d
PA
1308void
1309record_btrace_target::call_history_range (ULONGEST from, ULONGEST to,
1310 record_print_flags flags)
afedecd3
MM
1311{
1312 struct btrace_thread_info *btinfo;
23a7fe75 1313 struct btrace_call_iterator begin, end;
afedecd3 1314 struct ui_out *uiout;
23a7fe75
MM
1315 unsigned int low, high;
1316 int found;
afedecd3
MM
1317
1318 uiout = current_uiout;
2e783024 1319 ui_out_emit_tuple tuple_emitter (uiout, "func history");
23a7fe75
MM
1320 low = from;
1321 high = to;
afedecd3 1322
0cb7c7b0 1323 DEBUG ("call-history (0x%x): [%u; %u)", (int) flags, low, high);
afedecd3
MM
1324
1325 /* Check for wrap-arounds. */
23a7fe75 1326 if (low != from || high != to)
afedecd3
MM
1327 error (_("Bad range."));
1328
0688d04e 1329 if (high < low)
afedecd3
MM
1330 error (_("Bad range."));
1331
23a7fe75 1332 btinfo = require_btrace ();
afedecd3 1333
23a7fe75
MM
1334 found = btrace_find_call_by_number (&begin, btinfo, low);
1335 if (found == 0)
1336 error (_("Range out of bounds."));
afedecd3 1337
23a7fe75
MM
1338 found = btrace_find_call_by_number (&end, btinfo, high);
1339 if (found == 0)
0688d04e
MM
1340 {
1341 /* Silently truncate the range. */
1342 btrace_call_end (&end, btinfo);
1343 }
1344 else
1345 {
1346 /* We want both begin and end to be inclusive. */
1347 btrace_call_next (&end, 1);
1348 }
afedecd3 1349
8710b709 1350 btrace_call_history (uiout, btinfo, &begin, &end, flags);
23a7fe75 1351 btrace_set_call_history (btinfo, &begin, &end);
afedecd3
MM
1352}
1353
f6ac5f3d 1354/* The call_history_from method of target record-btrace. */
afedecd3 1355
f6ac5f3d
PA
1356void
1357record_btrace_target::call_history_from (ULONGEST from, int size,
1358 record_print_flags flags)
afedecd3
MM
1359{
1360 ULONGEST begin, end, context;
1361
1362 context = abs (size);
0688d04e
MM
1363 if (context == 0)
1364 error (_("Bad record function-call-history-size."));
afedecd3
MM
1365
1366 if (size < 0)
1367 {
1368 end = from;
1369
1370 if (from < context)
1371 begin = 0;
1372 else
0688d04e 1373 begin = from - context + 1;
afedecd3
MM
1374 }
1375 else
1376 {
1377 begin = from;
0688d04e 1378 end = from + context - 1;
afedecd3
MM
1379
1380 /* Check for wrap-around. */
1381 if (end < begin)
1382 end = ULONGEST_MAX;
1383 }
1384
f6ac5f3d 1385 call_history_range ( begin, end, flags);
afedecd3
MM
1386}
1387
f6ac5f3d 1388/* The record_method method of target record-btrace. */
b158a20f 1389
f6ac5f3d
PA
1390enum record_method
1391record_btrace_target::record_method (ptid_t ptid)
b158a20f 1392{
5b6d1e4f
PA
1393 process_stratum_target *proc_target = current_inferior ()->process_target ();
1394 thread_info *const tp = find_thread_ptid (proc_target, ptid);
b158a20f
TW
1395
1396 if (tp == NULL)
1397 error (_("No thread."));
1398
1399 if (tp->btrace.target == NULL)
1400 return RECORD_METHOD_NONE;
1401
1402 return RECORD_METHOD_BTRACE;
1403}
1404
f6ac5f3d 1405/* The record_is_replaying method of target record-btrace. */
07bbe694 1406
57810aa7 1407bool
f6ac5f3d 1408record_btrace_target::record_is_replaying (ptid_t ptid)
07bbe694 1409{
5b6d1e4f
PA
1410 process_stratum_target *proc_target = current_inferior ()->process_target ();
1411 for (thread_info *tp : all_non_exited_threads (proc_target, ptid))
08036331 1412 if (btrace_is_replaying (tp))
57810aa7 1413 return true;
07bbe694 1414
57810aa7 1415 return false;
07bbe694
MM
1416}
1417
f6ac5f3d 1418/* The record_will_replay method of target record-btrace. */
7ff27e9b 1419
57810aa7 1420bool
f6ac5f3d 1421record_btrace_target::record_will_replay (ptid_t ptid, int dir)
7ff27e9b 1422{
f6ac5f3d 1423 return dir == EXEC_REVERSE || record_is_replaying (ptid);
7ff27e9b
MM
1424}
1425
f6ac5f3d 1426/* The xfer_partial method of target record-btrace. */
633785ff 1427
f6ac5f3d
PA
1428enum target_xfer_status
1429record_btrace_target::xfer_partial (enum target_object object,
1430 const char *annex, gdb_byte *readbuf,
1431 const gdb_byte *writebuf, ULONGEST offset,
1432 ULONGEST len, ULONGEST *xfered_len)
633785ff 1433{
633785ff 1434 /* Filter out requests that don't make sense during replay. */
67b5c0c1 1435 if (replay_memory_access == replay_memory_access_read_only
aef92902 1436 && !record_btrace_generating_corefile
f6ac5f3d 1437 && record_is_replaying (inferior_ptid))
633785ff
MM
1438 {
1439 switch (object)
1440 {
1441 case TARGET_OBJECT_MEMORY:
1442 {
19cf757a 1443 const struct target_section *section;
633785ff
MM
1444
1445 /* We do not allow writing memory in general. */
1446 if (writebuf != NULL)
9b409511
YQ
1447 {
1448 *xfered_len = len;
bc113b4e 1449 return TARGET_XFER_UNAVAILABLE;
9b409511 1450 }
633785ff
MM
1451
1452 /* We allow reading readonly memory. */
f6ac5f3d 1453 section = target_section_by_addr (this, offset);
633785ff
MM
1454 if (section != NULL)
1455 {
1456 /* Check if the section we found is readonly. */
fd361982 1457 if ((bfd_section_flags (section->the_bfd_section)
633785ff
MM
1458 & SEC_READONLY) != 0)
1459 {
1460 /* Truncate the request to fit into this section. */
325fac50 1461 len = std::min (len, section->endaddr - offset);
633785ff
MM
1462 break;
1463 }
1464 }
1465
9b409511 1466 *xfered_len = len;
bc113b4e 1467 return TARGET_XFER_UNAVAILABLE;
633785ff
MM
1468 }
1469 }
1470 }
1471
1472 /* Forward the request. */
b6a8c27b
PA
1473 return this->beneath ()->xfer_partial (object, annex, readbuf, writebuf,
1474 offset, len, xfered_len);
633785ff
MM
1475}
1476
f6ac5f3d 1477/* The insert_breakpoint method of target record-btrace. */
633785ff 1478
f6ac5f3d
PA
1479int
1480record_btrace_target::insert_breakpoint (struct gdbarch *gdbarch,
1481 struct bp_target_info *bp_tgt)
633785ff 1482{
67b5c0c1
MM
1483 const char *old;
1484 int ret;
633785ff
MM
1485
1486 /* Inserting breakpoints requires accessing memory. Allow it for the
1487 duration of this function. */
67b5c0c1
MM
1488 old = replay_memory_access;
1489 replay_memory_access = replay_memory_access_read_write;
633785ff
MM
1490
1491 ret = 0;
a70b8144 1492 try
492d29ea 1493 {
b6a8c27b 1494 ret = this->beneath ()->insert_breakpoint (gdbarch, bp_tgt);
492d29ea 1495 }
230d2906 1496 catch (const gdb_exception &except)
492d29ea 1497 {
6c63c96a 1498 replay_memory_access = old;
eedc3f4f 1499 throw;
492d29ea 1500 }
6c63c96a 1501 replay_memory_access = old;
633785ff
MM
1502
1503 return ret;
1504}
1505
f6ac5f3d 1506/* The remove_breakpoint method of target record-btrace. */
633785ff 1507
f6ac5f3d
PA
1508int
1509record_btrace_target::remove_breakpoint (struct gdbarch *gdbarch,
1510 struct bp_target_info *bp_tgt,
1511 enum remove_bp_reason reason)
633785ff 1512{
67b5c0c1
MM
1513 const char *old;
1514 int ret;
633785ff
MM
1515
1516 /* Removing breakpoints requires accessing memory. Allow it for the
1517 duration of this function. */
67b5c0c1
MM
1518 old = replay_memory_access;
1519 replay_memory_access = replay_memory_access_read_write;
633785ff
MM
1520
1521 ret = 0;
a70b8144 1522 try
492d29ea 1523 {
b6a8c27b 1524 ret = this->beneath ()->remove_breakpoint (gdbarch, bp_tgt, reason);
492d29ea 1525 }
230d2906 1526 catch (const gdb_exception &except)
492d29ea 1527 {
6c63c96a 1528 replay_memory_access = old;
eedc3f4f 1529 throw;
492d29ea 1530 }
6c63c96a 1531 replay_memory_access = old;
633785ff
MM
1532
1533 return ret;
1534}
1535
f6ac5f3d 1536/* The fetch_registers method of target record-btrace. */
1f3ef581 1537
f6ac5f3d
PA
1538void
1539record_btrace_target::fetch_registers (struct regcache *regcache, int regno)
1f3ef581 1540{
1a476b6d
MM
1541 btrace_insn_iterator *replay = nullptr;
1542
1543 /* Thread-db may ask for a thread's registers before GDB knows about the
1544 thread. We forward the request to the target beneath in this
1545 case. */
5b6d1e4f 1546 thread_info *tp = find_thread_ptid (regcache->target (), regcache->ptid ());
1a476b6d
MM
1547 if (tp != nullptr)
1548 replay = tp->btrace.replay;
1f3ef581 1549
1a476b6d 1550 if (replay != nullptr && !record_btrace_generating_corefile)
1f3ef581
MM
1551 {
1552 const struct btrace_insn *insn;
1553 struct gdbarch *gdbarch;
1554 int pcreg;
1555
ac7936df 1556 gdbarch = regcache->arch ();
1f3ef581
MM
1557 pcreg = gdbarch_pc_regnum (gdbarch);
1558 if (pcreg < 0)
1559 return;
1560
1561 /* We can only provide the PC register. */
1562 if (regno >= 0 && regno != pcreg)
1563 return;
1564
1565 insn = btrace_insn_get (replay);
1566 gdb_assert (insn != NULL);
1567
73e1c03f 1568 regcache->raw_supply (regno, &insn->pc);
1f3ef581
MM
1569 }
1570 else
b6a8c27b 1571 this->beneath ()->fetch_registers (regcache, regno);
1f3ef581
MM
1572}
1573
f6ac5f3d 1574/* The store_registers method of target record-btrace. */
1f3ef581 1575
f6ac5f3d
PA
1576void
1577record_btrace_target::store_registers (struct regcache *regcache, int regno)
1f3ef581 1578{
a52eab48 1579 if (!record_btrace_generating_corefile
222312d3 1580 && record_is_replaying (regcache->ptid ()))
4d10e986 1581 error (_("Cannot write registers while replaying."));
1f3ef581 1582
491144b5 1583 gdb_assert (may_write_registers);
1f3ef581 1584
b6a8c27b 1585 this->beneath ()->store_registers (regcache, regno);
1f3ef581
MM
1586}
1587
f6ac5f3d 1588/* The prepare_to_store method of target record-btrace. */
1f3ef581 1589
f6ac5f3d
PA
1590void
1591record_btrace_target::prepare_to_store (struct regcache *regcache)
1f3ef581 1592{
a52eab48 1593 if (!record_btrace_generating_corefile
222312d3 1594 && record_is_replaying (regcache->ptid ()))
1f3ef581
MM
1595 return;
1596
b6a8c27b 1597 this->beneath ()->prepare_to_store (regcache);
1f3ef581
MM
1598}
1599
0b722aec
MM
1600/* The branch trace frame cache. */
1601
1602struct btrace_frame_cache
1603{
1604 /* The thread. */
1605 struct thread_info *tp;
1606
1607 /* The frame info. */
1608 struct frame_info *frame;
1609
1610 /* The branch trace function segment. */
1611 const struct btrace_function *bfun;
1612};
1613
1614/* A struct btrace_frame_cache hash table indexed by NEXT. */
1615
1616static htab_t bfcache;
1617
1618/* hash_f for htab_create_alloc of bfcache. */
1619
1620static hashval_t
1621bfcache_hash (const void *arg)
1622{
19ba03f4
SM
1623 const struct btrace_frame_cache *cache
1624 = (const struct btrace_frame_cache *) arg;
0b722aec
MM
1625
1626 return htab_hash_pointer (cache->frame);
1627}
1628
1629/* eq_f for htab_create_alloc of bfcache. */
1630
1631static int
1632bfcache_eq (const void *arg1, const void *arg2)
1633{
19ba03f4
SM
1634 const struct btrace_frame_cache *cache1
1635 = (const struct btrace_frame_cache *) arg1;
1636 const struct btrace_frame_cache *cache2
1637 = (const struct btrace_frame_cache *) arg2;
0b722aec
MM
1638
1639 return cache1->frame == cache2->frame;
1640}
1641
1642/* Create a new btrace frame cache. */
1643
1644static struct btrace_frame_cache *
1645bfcache_new (struct frame_info *frame)
1646{
1647 struct btrace_frame_cache *cache;
1648 void **slot;
1649
1650 cache = FRAME_OBSTACK_ZALLOC (struct btrace_frame_cache);
1651 cache->frame = frame;
1652
1653 slot = htab_find_slot (bfcache, cache, INSERT);
1654 gdb_assert (*slot == NULL);
1655 *slot = cache;
1656
1657 return cache;
1658}
1659
1660/* Extract the branch trace function from a branch trace frame. */
1661
1662static const struct btrace_function *
1663btrace_get_frame_function (struct frame_info *frame)
1664{
1665 const struct btrace_frame_cache *cache;
0b722aec
MM
1666 struct btrace_frame_cache pattern;
1667 void **slot;
1668
1669 pattern.frame = frame;
1670
1671 slot = htab_find_slot (bfcache, &pattern, NO_INSERT);
1672 if (slot == NULL)
1673 return NULL;
1674
19ba03f4 1675 cache = (const struct btrace_frame_cache *) *slot;
0b722aec
MM
1676 return cache->bfun;
1677}
1678
cecac1ab
MM
1679/* Implement stop_reason method for record_btrace_frame_unwind. */
1680
1681static enum unwind_stop_reason
1682record_btrace_frame_unwind_stop_reason (struct frame_info *this_frame,
1683 void **this_cache)
1684{
0b722aec
MM
1685 const struct btrace_frame_cache *cache;
1686 const struct btrace_function *bfun;
1687
19ba03f4 1688 cache = (const struct btrace_frame_cache *) *this_cache;
0b722aec
MM
1689 bfun = cache->bfun;
1690 gdb_assert (bfun != NULL);
1691
42bfe59e 1692 if (bfun->up == 0)
0b722aec
MM
1693 return UNWIND_UNAVAILABLE;
1694
1695 return UNWIND_NO_REASON;
cecac1ab
MM
1696}
1697
1698/* Implement this_id method for record_btrace_frame_unwind. */
1699
1700static void
1701record_btrace_frame_this_id (struct frame_info *this_frame, void **this_cache,
1702 struct frame_id *this_id)
1703{
0b722aec
MM
1704 const struct btrace_frame_cache *cache;
1705 const struct btrace_function *bfun;
4aeb0dfc 1706 struct btrace_call_iterator it;
0b722aec
MM
1707 CORE_ADDR code, special;
1708
19ba03f4 1709 cache = (const struct btrace_frame_cache *) *this_cache;
0b722aec
MM
1710
1711 bfun = cache->bfun;
1712 gdb_assert (bfun != NULL);
1713
4aeb0dfc
TW
1714 while (btrace_find_call_by_number (&it, &cache->tp->btrace, bfun->prev) != 0)
1715 bfun = btrace_call_get (&it);
0b722aec
MM
1716
1717 code = get_frame_func (this_frame);
1718 special = bfun->number;
1719
1720 *this_id = frame_id_build_unavailable_stack_special (code, special);
1721
1722 DEBUG ("[frame] %s id: (!stack, pc=%s, special=%s)",
1723 btrace_get_bfun_name (cache->bfun),
1724 core_addr_to_string_nz (this_id->code_addr),
1725 core_addr_to_string_nz (this_id->special_addr));
cecac1ab
MM
1726}
1727
1728/* Implement prev_register method for record_btrace_frame_unwind. */
1729
1730static struct value *
1731record_btrace_frame_prev_register (struct frame_info *this_frame,
1732 void **this_cache,
1733 int regnum)
1734{
0b722aec
MM
1735 const struct btrace_frame_cache *cache;
1736 const struct btrace_function *bfun, *caller;
42bfe59e 1737 struct btrace_call_iterator it;
0b722aec
MM
1738 struct gdbarch *gdbarch;
1739 CORE_ADDR pc;
1740 int pcreg;
1741
1742 gdbarch = get_frame_arch (this_frame);
1743 pcreg = gdbarch_pc_regnum (gdbarch);
1744 if (pcreg < 0 || regnum != pcreg)
1745 throw_error (NOT_AVAILABLE_ERROR,
1746 _("Registers are not available in btrace record history"));
1747
19ba03f4 1748 cache = (const struct btrace_frame_cache *) *this_cache;
0b722aec
MM
1749 bfun = cache->bfun;
1750 gdb_assert (bfun != NULL);
1751
42bfe59e 1752 if (btrace_find_call_by_number (&it, &cache->tp->btrace, bfun->up) == 0)
0b722aec
MM
1753 throw_error (NOT_AVAILABLE_ERROR,
1754 _("No caller in btrace record history"));
1755
42bfe59e
TW
1756 caller = btrace_call_get (&it);
1757
0b722aec 1758 if ((bfun->flags & BFUN_UP_LINKS_TO_RET) != 0)
0860c437 1759 pc = caller->insn.front ().pc;
0b722aec
MM
1760 else
1761 {
0860c437 1762 pc = caller->insn.back ().pc;
0b722aec
MM
1763 pc += gdb_insn_length (gdbarch, pc);
1764 }
1765
1766 DEBUG ("[frame] unwound PC in %s on level %d: %s",
1767 btrace_get_bfun_name (bfun), bfun->level,
1768 core_addr_to_string_nz (pc));
1769
1770 return frame_unwind_got_address (this_frame, regnum, pc);
cecac1ab
MM
1771}
1772
1773/* Implement sniffer method for record_btrace_frame_unwind. */
1774
1775static int
1776record_btrace_frame_sniffer (const struct frame_unwind *self,
1777 struct frame_info *this_frame,
1778 void **this_cache)
1779{
0b722aec
MM
1780 const struct btrace_function *bfun;
1781 struct btrace_frame_cache *cache;
cecac1ab 1782 struct thread_info *tp;
0b722aec 1783 struct frame_info *next;
cecac1ab
MM
1784
1785 /* THIS_FRAME does not contain a reference to its thread. */
00431a78 1786 tp = inferior_thread ();
cecac1ab 1787
0b722aec
MM
1788 bfun = NULL;
1789 next = get_next_frame (this_frame);
1790 if (next == NULL)
1791 {
1792 const struct btrace_insn_iterator *replay;
1793
1794 replay = tp->btrace.replay;
1795 if (replay != NULL)
08c3f6d2 1796 bfun = &replay->btinfo->functions[replay->call_index];
0b722aec
MM
1797 }
1798 else
1799 {
1800 const struct btrace_function *callee;
42bfe59e 1801 struct btrace_call_iterator it;
0b722aec
MM
1802
1803 callee = btrace_get_frame_function (next);
42bfe59e
TW
1804 if (callee == NULL || (callee->flags & BFUN_UP_LINKS_TO_TAILCALL) != 0)
1805 return 0;
1806
1807 if (btrace_find_call_by_number (&it, &tp->btrace, callee->up) == 0)
1808 return 0;
1809
1810 bfun = btrace_call_get (&it);
0b722aec
MM
1811 }
1812
1813 if (bfun == NULL)
1814 return 0;
1815
1816 DEBUG ("[frame] sniffed frame for %s on level %d",
1817 btrace_get_bfun_name (bfun), bfun->level);
1818
1819 /* This is our frame. Initialize the frame cache. */
1820 cache = bfcache_new (this_frame);
1821 cache->tp = tp;
1822 cache->bfun = bfun;
1823
1824 *this_cache = cache;
1825 return 1;
1826}
1827
1828/* Implement sniffer method for record_btrace_tailcall_frame_unwind. */
1829
1830static int
1831record_btrace_tailcall_frame_sniffer (const struct frame_unwind *self,
1832 struct frame_info *this_frame,
1833 void **this_cache)
1834{
1835 const struct btrace_function *bfun, *callee;
1836 struct btrace_frame_cache *cache;
42bfe59e 1837 struct btrace_call_iterator it;
0b722aec 1838 struct frame_info *next;
42bfe59e 1839 struct thread_info *tinfo;
0b722aec
MM
1840
1841 next = get_next_frame (this_frame);
1842 if (next == NULL)
1843 return 0;
1844
1845 callee = btrace_get_frame_function (next);
1846 if (callee == NULL)
1847 return 0;
1848
1849 if ((callee->flags & BFUN_UP_LINKS_TO_TAILCALL) == 0)
1850 return 0;
1851
00431a78 1852 tinfo = inferior_thread ();
42bfe59e 1853 if (btrace_find_call_by_number (&it, &tinfo->btrace, callee->up) == 0)
0b722aec
MM
1854 return 0;
1855
42bfe59e
TW
1856 bfun = btrace_call_get (&it);
1857
0b722aec
MM
1858 DEBUG ("[frame] sniffed tailcall frame for %s on level %d",
1859 btrace_get_bfun_name (bfun), bfun->level);
1860
1861 /* This is our frame. Initialize the frame cache. */
1862 cache = bfcache_new (this_frame);
42bfe59e 1863 cache->tp = tinfo;
0b722aec
MM
1864 cache->bfun = bfun;
1865
1866 *this_cache = cache;
1867 return 1;
1868}
1869
1870static void
1871record_btrace_frame_dealloc_cache (struct frame_info *self, void *this_cache)
1872{
1873 struct btrace_frame_cache *cache;
1874 void **slot;
1875
19ba03f4 1876 cache = (struct btrace_frame_cache *) this_cache;
0b722aec
MM
1877
1878 slot = htab_find_slot (bfcache, cache, NO_INSERT);
1879 gdb_assert (slot != NULL);
1880
1881 htab_remove_elt (bfcache, cache);
cecac1ab
MM
1882}
1883
1884/* btrace recording does not store previous memory content, neither the stack
30baf67b 1885 frames content. Any unwinding would return erroneous results as the stack
cecac1ab
MM
1886 contents no longer matches the changed PC value restored from history.
1887 Therefore this unwinder reports any possibly unwound registers as
1888 <unavailable>. */
1889
0b722aec 1890const struct frame_unwind record_btrace_frame_unwind =
cecac1ab
MM
1891{
1892 NORMAL_FRAME,
1893 record_btrace_frame_unwind_stop_reason,
1894 record_btrace_frame_this_id,
1895 record_btrace_frame_prev_register,
1896 NULL,
0b722aec
MM
1897 record_btrace_frame_sniffer,
1898 record_btrace_frame_dealloc_cache
1899};
1900
1901const struct frame_unwind record_btrace_tailcall_frame_unwind =
1902{
1903 TAILCALL_FRAME,
1904 record_btrace_frame_unwind_stop_reason,
1905 record_btrace_frame_this_id,
1906 record_btrace_frame_prev_register,
1907 NULL,
1908 record_btrace_tailcall_frame_sniffer,
1909 record_btrace_frame_dealloc_cache
cecac1ab 1910};
b2f4cfde 1911
f6ac5f3d 1912/* Implement the get_unwinder method. */
ac01945b 1913
f6ac5f3d
PA
1914const struct frame_unwind *
1915record_btrace_target::get_unwinder ()
ac01945b
TT
1916{
1917 return &record_btrace_frame_unwind;
1918}
1919
f6ac5f3d 1920/* Implement the get_tailcall_unwinder method. */
ac01945b 1921
f6ac5f3d
PA
1922const struct frame_unwind *
1923record_btrace_target::get_tailcall_unwinder ()
ac01945b
TT
1924{
1925 return &record_btrace_tailcall_frame_unwind;
1926}
1927
987e68b1
MM
1928/* Return a human-readable string for FLAG. */
1929
1930static const char *
04902b09 1931btrace_thread_flag_to_str (btrace_thread_flags flag)
987e68b1
MM
1932{
1933 switch (flag)
1934 {
1935 case BTHR_STEP:
1936 return "step";
1937
1938 case BTHR_RSTEP:
1939 return "reverse-step";
1940
1941 case BTHR_CONT:
1942 return "cont";
1943
1944 case BTHR_RCONT:
1945 return "reverse-cont";
1946
1947 case BTHR_STOP:
1948 return "stop";
1949 }
1950
1951 return "<invalid>";
1952}
1953
52834460
MM
1954/* Indicate that TP should be resumed according to FLAG. */
1955
1956static void
1957record_btrace_resume_thread (struct thread_info *tp,
1958 enum btrace_thread_flag flag)
1959{
1960 struct btrace_thread_info *btinfo;
1961
43792cf0 1962 DEBUG ("resuming thread %s (%s): %x (%s)", print_thread_id (tp),
a068643d
TT
1963 target_pid_to_str (tp->ptid).c_str (), flag,
1964 btrace_thread_flag_to_str (flag));
52834460
MM
1965
1966 btinfo = &tp->btrace;
1967
52834460 1968 /* Fetch the latest branch trace. */
4a4495d6 1969 btrace_fetch (tp, record_btrace_get_cpu ());
52834460 1970
0ca912df
MM
1971 /* A resume request overwrites a preceding resume or stop request. */
1972 btinfo->flags &= ~(BTHR_MOVE | BTHR_STOP);
52834460
MM
1973 btinfo->flags |= flag;
1974}
1975
ec71cc2f
MM
1976/* Get the current frame for TP. */
1977
79b8d3b0
TT
1978static struct frame_id
1979get_thread_current_frame_id (struct thread_info *tp)
ec71cc2f 1980{
79b8d3b0 1981 struct frame_id id;
719546c4 1982 bool executing;
ec71cc2f 1983
00431a78
PA
1984 /* Set current thread, which is implicitly used by
1985 get_current_frame. */
1986 scoped_restore_current_thread restore_thread;
1987
1988 switch_to_thread (tp);
ec71cc2f 1989
5b6d1e4f
PA
1990 process_stratum_target *proc_target = tp->inf->process_target ();
1991
ec71cc2f
MM
1992 /* Clear the executing flag to allow changes to the current frame.
1993 We are not actually running, yet. We just started a reverse execution
1994 command or a record goto command.
1995 For the latter, EXECUTING is false and this has no effect.
f6ac5f3d 1996 For the former, EXECUTING is true and we're in wait, about to
ec71cc2f 1997 move the thread. Since we need to recompute the stack, we temporarily
85102364 1998 set EXECUTING to false. */
00431a78 1999 executing = tp->executing;
5b6d1e4f 2000 set_executing (proc_target, inferior_ptid, false);
ec71cc2f 2001
79b8d3b0 2002 id = null_frame_id;
a70b8144 2003 try
ec71cc2f 2004 {
79b8d3b0 2005 id = get_frame_id (get_current_frame ());
ec71cc2f 2006 }
230d2906 2007 catch (const gdb_exception &except)
ec71cc2f
MM
2008 {
2009 /* Restore the previous execution state. */
5b6d1e4f 2010 set_executing (proc_target, inferior_ptid, executing);
ec71cc2f 2011
eedc3f4f 2012 throw;
ec71cc2f 2013 }
ec71cc2f
MM
2014
2015 /* Restore the previous execution state. */
5b6d1e4f 2016 set_executing (proc_target, inferior_ptid, executing);
ec71cc2f 2017
79b8d3b0 2018 return id;
ec71cc2f
MM
2019}
2020
52834460
MM
2021/* Start replaying a thread. */
2022
2023static struct btrace_insn_iterator *
2024record_btrace_start_replaying (struct thread_info *tp)
2025{
52834460
MM
2026 struct btrace_insn_iterator *replay;
2027 struct btrace_thread_info *btinfo;
52834460
MM
2028
2029 btinfo = &tp->btrace;
2030 replay = NULL;
2031
2032 /* We can't start replaying without trace. */
b54b03bd 2033 if (btinfo->functions.empty ())
52834460
MM
2034 return NULL;
2035
52834460
MM
2036 /* GDB stores the current frame_id when stepping in order to detects steps
2037 into subroutines.
2038 Since frames are computed differently when we're replaying, we need to
2039 recompute those stored frames and fix them up so we can still detect
2040 subroutines after we started replaying. */
a70b8144 2041 try
52834460 2042 {
52834460
MM
2043 struct frame_id frame_id;
2044 int upd_step_frame_id, upd_step_stack_frame_id;
2045
2046 /* The current frame without replaying - computed via normal unwind. */
79b8d3b0 2047 frame_id = get_thread_current_frame_id (tp);
52834460
MM
2048
2049 /* Check if we need to update any stepping-related frame id's. */
2050 upd_step_frame_id = frame_id_eq (frame_id,
2051 tp->control.step_frame_id);
2052 upd_step_stack_frame_id = frame_id_eq (frame_id,
2053 tp->control.step_stack_frame_id);
2054
2055 /* We start replaying at the end of the branch trace. This corresponds
2056 to the current instruction. */
8d749320 2057 replay = XNEW (struct btrace_insn_iterator);
52834460
MM
2058 btrace_insn_end (replay, btinfo);
2059
31fd9caa
MM
2060 /* Skip gaps at the end of the trace. */
2061 while (btrace_insn_get (replay) == NULL)
2062 {
2063 unsigned int steps;
2064
2065 steps = btrace_insn_prev (replay, 1);
2066 if (steps == 0)
2067 error (_("No trace."));
2068 }
2069
52834460
MM
2070 /* We're not replaying, yet. */
2071 gdb_assert (btinfo->replay == NULL);
2072 btinfo->replay = replay;
2073
2074 /* Make sure we're not using any stale registers. */
00431a78 2075 registers_changed_thread (tp);
52834460
MM
2076
2077 /* The current frame with replaying - computed via btrace unwind. */
79b8d3b0 2078 frame_id = get_thread_current_frame_id (tp);
52834460
MM
2079
2080 /* Replace stepping related frames where necessary. */
2081 if (upd_step_frame_id)
2082 tp->control.step_frame_id = frame_id;
2083 if (upd_step_stack_frame_id)
2084 tp->control.step_stack_frame_id = frame_id;
2085 }
230d2906 2086 catch (const gdb_exception &except)
52834460
MM
2087 {
2088 xfree (btinfo->replay);
2089 btinfo->replay = NULL;
2090
00431a78 2091 registers_changed_thread (tp);
52834460 2092
eedc3f4f 2093 throw;
52834460
MM
2094 }
2095
2096 return replay;
2097}
2098
2099/* Stop replaying a thread. */
2100
2101static void
2102record_btrace_stop_replaying (struct thread_info *tp)
2103{
2104 struct btrace_thread_info *btinfo;
2105
2106 btinfo = &tp->btrace;
2107
2108 xfree (btinfo->replay);
2109 btinfo->replay = NULL;
2110
2111 /* Make sure we're not leaving any stale registers. */
00431a78 2112 registers_changed_thread (tp);
52834460
MM
2113}
2114
e3cfc1c7
MM
2115/* Stop replaying TP if it is at the end of its execution history. */
2116
2117static void
2118record_btrace_stop_replaying_at_end (struct thread_info *tp)
2119{
2120 struct btrace_insn_iterator *replay, end;
2121 struct btrace_thread_info *btinfo;
2122
2123 btinfo = &tp->btrace;
2124 replay = btinfo->replay;
2125
2126 if (replay == NULL)
2127 return;
2128
2129 btrace_insn_end (&end, btinfo);
2130
2131 if (btrace_insn_cmp (replay, &end) == 0)
2132 record_btrace_stop_replaying (tp);
2133}
2134
f6ac5f3d 2135/* The resume method of target record-btrace. */
b2f4cfde 2136
f6ac5f3d
PA
2137void
2138record_btrace_target::resume (ptid_t ptid, int step, enum gdb_signal signal)
b2f4cfde 2139{
d2939ba2 2140 enum btrace_thread_flag flag, cflag;
52834460 2141
a068643d 2142 DEBUG ("resume %s: %s%s", target_pid_to_str (ptid).c_str (),
f6ac5f3d 2143 ::execution_direction == EXEC_REVERSE ? "reverse-" : "",
987e68b1 2144 step ? "step" : "cont");
52834460 2145
0ca912df
MM
2146 /* Store the execution direction of the last resume.
2147
f6ac5f3d 2148 If there is more than one resume call, we have to rely on infrun
0ca912df 2149 to not change the execution direction in-between. */
f6ac5f3d 2150 record_btrace_resume_exec_dir = ::execution_direction;
70ad5bff 2151
0ca912df 2152 /* As long as we're not replaying, just forward the request.
52834460 2153
0ca912df
MM
2154 For non-stop targets this means that no thread is replaying. In order to
2155 make progress, we may need to explicitly move replaying threads to the end
2156 of their execution history. */
f6ac5f3d
PA
2157 if ((::execution_direction != EXEC_REVERSE)
2158 && !record_is_replaying (minus_one_ptid))
b2f4cfde 2159 {
b6a8c27b 2160 this->beneath ()->resume (ptid, step, signal);
04c4fe8c 2161 return;
b2f4cfde
MM
2162 }
2163
52834460 2164 /* Compute the btrace thread flag for the requested move. */
f6ac5f3d 2165 if (::execution_direction == EXEC_REVERSE)
d2939ba2
MM
2166 {
2167 flag = step == 0 ? BTHR_RCONT : BTHR_RSTEP;
2168 cflag = BTHR_RCONT;
2169 }
52834460 2170 else
d2939ba2
MM
2171 {
2172 flag = step == 0 ? BTHR_CONT : BTHR_STEP;
2173 cflag = BTHR_CONT;
2174 }
52834460 2175
52834460 2176 /* We just indicate the resume intent here. The actual stepping happens in
d2939ba2
MM
2177 record_btrace_wait below.
2178
2179 For all-stop targets, we only step INFERIOR_PTID and continue others. */
5b6d1e4f
PA
2180
2181 process_stratum_target *proc_target = current_inferior ()->process_target ();
2182
d2939ba2
MM
2183 if (!target_is_non_stop_p ())
2184 {
26a57c92 2185 gdb_assert (inferior_ptid.matches (ptid));
d2939ba2 2186
5b6d1e4f 2187 for (thread_info *tp : all_non_exited_threads (proc_target, ptid))
08036331
PA
2188 {
2189 if (tp->ptid.matches (inferior_ptid))
2190 record_btrace_resume_thread (tp, flag);
2191 else
2192 record_btrace_resume_thread (tp, cflag);
2193 }
d2939ba2
MM
2194 }
2195 else
2196 {
5b6d1e4f 2197 for (thread_info *tp : all_non_exited_threads (proc_target, ptid))
08036331 2198 record_btrace_resume_thread (tp, flag);
d2939ba2 2199 }
70ad5bff
MM
2200
2201 /* Async support. */
2202 if (target_can_async_p ())
2203 {
6a3753b3 2204 target_async (1);
70ad5bff
MM
2205 mark_async_event_handler (record_btrace_async_inferior_event_handler);
2206 }
52834460
MM
2207}
2208
987e68b1
MM
2209/* Cancel resuming TP. */
2210
2211static void
2212record_btrace_cancel_resume (struct thread_info *tp)
2213{
04902b09 2214 btrace_thread_flags flags;
987e68b1
MM
2215
2216 flags = tp->btrace.flags & (BTHR_MOVE | BTHR_STOP);
2217 if (flags == 0)
2218 return;
2219
43792cf0
PA
2220 DEBUG ("cancel resume thread %s (%s): %x (%s)",
2221 print_thread_id (tp),
04902b09 2222 target_pid_to_str (tp->ptid).c_str (), flags.raw (),
987e68b1
MM
2223 btrace_thread_flag_to_str (flags));
2224
2225 tp->btrace.flags &= ~(BTHR_MOVE | BTHR_STOP);
e3cfc1c7 2226 record_btrace_stop_replaying_at_end (tp);
52834460
MM
2227}
2228
2229/* Return a target_waitstatus indicating that we ran out of history. */
2230
2231static struct target_waitstatus
2232btrace_step_no_history (void)
2233{
2234 struct target_waitstatus status;
2235
2236 status.kind = TARGET_WAITKIND_NO_HISTORY;
2237
2238 return status;
2239}
2240
2241/* Return a target_waitstatus indicating that a step finished. */
2242
2243static struct target_waitstatus
2244btrace_step_stopped (void)
2245{
2246 struct target_waitstatus status;
2247
2248 status.kind = TARGET_WAITKIND_STOPPED;
2249 status.value.sig = GDB_SIGNAL_TRAP;
2250
2251 return status;
2252}
2253
6e4879f0
MM
2254/* Return a target_waitstatus indicating that a thread was stopped as
2255 requested. */
2256
2257static struct target_waitstatus
2258btrace_step_stopped_on_request (void)
2259{
2260 struct target_waitstatus status;
2261
2262 status.kind = TARGET_WAITKIND_STOPPED;
2263 status.value.sig = GDB_SIGNAL_0;
2264
2265 return status;
2266}
2267
d825d248
MM
2268/* Return a target_waitstatus indicating a spurious stop. */
2269
2270static struct target_waitstatus
2271btrace_step_spurious (void)
2272{
2273 struct target_waitstatus status;
2274
2275 status.kind = TARGET_WAITKIND_SPURIOUS;
2276
2277 return status;
2278}
2279
e3cfc1c7
MM
2280/* Return a target_waitstatus indicating that the thread was not resumed. */
2281
2282static struct target_waitstatus
2283btrace_step_no_resumed (void)
2284{
2285 struct target_waitstatus status;
2286
2287 status.kind = TARGET_WAITKIND_NO_RESUMED;
2288
2289 return status;
2290}
2291
2292/* Return a target_waitstatus indicating that we should wait again. */
2293
2294static struct target_waitstatus
2295btrace_step_again (void)
2296{
2297 struct target_waitstatus status;
2298
2299 status.kind = TARGET_WAITKIND_IGNORE;
2300
2301 return status;
2302}
2303
52834460
MM
2304/* Clear the record histories. */
2305
2306static void
2307record_btrace_clear_histories (struct btrace_thread_info *btinfo)
2308{
2309 xfree (btinfo->insn_history);
2310 xfree (btinfo->call_history);
2311
2312 btinfo->insn_history = NULL;
2313 btinfo->call_history = NULL;
2314}
2315
3c615f99
MM
2316/* Check whether TP's current replay position is at a breakpoint. */
2317
2318static int
2319record_btrace_replay_at_breakpoint (struct thread_info *tp)
2320{
2321 struct btrace_insn_iterator *replay;
2322 struct btrace_thread_info *btinfo;
2323 const struct btrace_insn *insn;
3c615f99
MM
2324
2325 btinfo = &tp->btrace;
2326 replay = btinfo->replay;
2327
2328 if (replay == NULL)
2329 return 0;
2330
2331 insn = btrace_insn_get (replay);
2332 if (insn == NULL)
2333 return 0;
2334
00431a78 2335 return record_check_stopped_by_breakpoint (tp->inf->aspace, insn->pc,
3c615f99
MM
2336 &btinfo->stop_reason);
2337}
2338
d825d248 2339/* Step one instruction in forward direction. */
52834460
MM
2340
2341static struct target_waitstatus
d825d248 2342record_btrace_single_step_forward (struct thread_info *tp)
52834460 2343{
b61ce85c 2344 struct btrace_insn_iterator *replay, end, start;
52834460 2345 struct btrace_thread_info *btinfo;
52834460 2346
d825d248
MM
2347 btinfo = &tp->btrace;
2348 replay = btinfo->replay;
2349
2350 /* We're done if we're not replaying. */
2351 if (replay == NULL)
2352 return btrace_step_no_history ();
2353
011c71b6
MM
2354 /* Check if we're stepping a breakpoint. */
2355 if (record_btrace_replay_at_breakpoint (tp))
2356 return btrace_step_stopped ();
2357
b61ce85c
MM
2358 /* Skip gaps during replay. If we end up at a gap (at the end of the trace),
2359 jump back to the instruction at which we started. */
2360 start = *replay;
d825d248
MM
2361 do
2362 {
2363 unsigned int steps;
2364
e3cfc1c7
MM
2365 /* We will bail out here if we continue stepping after reaching the end
2366 of the execution history. */
d825d248
MM
2367 steps = btrace_insn_next (replay, 1);
2368 if (steps == 0)
b61ce85c
MM
2369 {
2370 *replay = start;
2371 return btrace_step_no_history ();
2372 }
d825d248
MM
2373 }
2374 while (btrace_insn_get (replay) == NULL);
2375
2376 /* Determine the end of the instruction trace. */
2377 btrace_insn_end (&end, btinfo);
2378
e3cfc1c7
MM
2379 /* The execution trace contains (and ends with) the current instruction.
2380 This instruction has not been executed, yet, so the trace really ends
2381 one instruction earlier. */
d825d248 2382 if (btrace_insn_cmp (replay, &end) == 0)
e3cfc1c7 2383 return btrace_step_no_history ();
d825d248
MM
2384
2385 return btrace_step_spurious ();
2386}
2387
2388/* Step one instruction in backward direction. */
2389
2390static struct target_waitstatus
2391record_btrace_single_step_backward (struct thread_info *tp)
2392{
b61ce85c 2393 struct btrace_insn_iterator *replay, start;
d825d248 2394 struct btrace_thread_info *btinfo;
e59fa00f 2395
52834460
MM
2396 btinfo = &tp->btrace;
2397 replay = btinfo->replay;
2398
d825d248
MM
2399 /* Start replaying if we're not already doing so. */
2400 if (replay == NULL)
2401 replay = record_btrace_start_replaying (tp);
2402
2403 /* If we can't step any further, we reached the end of the history.
b61ce85c
MM
2404 Skip gaps during replay. If we end up at a gap (at the beginning of
2405 the trace), jump back to the instruction at which we started. */
2406 start = *replay;
d825d248
MM
2407 do
2408 {
2409 unsigned int steps;
2410
2411 steps = btrace_insn_prev (replay, 1);
2412 if (steps == 0)
b61ce85c
MM
2413 {
2414 *replay = start;
2415 return btrace_step_no_history ();
2416 }
d825d248
MM
2417 }
2418 while (btrace_insn_get (replay) == NULL);
2419
011c71b6
MM
2420 /* Check if we're stepping a breakpoint.
2421
2422 For reverse-stepping, this check is after the step. There is logic in
2423 infrun.c that handles reverse-stepping separately. See, for example,
2424 proceed and adjust_pc_after_break.
2425
2426 This code assumes that for reverse-stepping, PC points to the last
2427 de-executed instruction, whereas for forward-stepping PC points to the
2428 next to-be-executed instruction. */
2429 if (record_btrace_replay_at_breakpoint (tp))
2430 return btrace_step_stopped ();
2431
d825d248
MM
2432 return btrace_step_spurious ();
2433}
2434
2435/* Step a single thread. */
2436
2437static struct target_waitstatus
2438record_btrace_step_thread (struct thread_info *tp)
2439{
2440 struct btrace_thread_info *btinfo;
2441 struct target_waitstatus status;
04902b09 2442 btrace_thread_flags flags;
d825d248
MM
2443
2444 btinfo = &tp->btrace;
2445
6e4879f0
MM
2446 flags = btinfo->flags & (BTHR_MOVE | BTHR_STOP);
2447 btinfo->flags &= ~(BTHR_MOVE | BTHR_STOP);
52834460 2448
43792cf0 2449 DEBUG ("stepping thread %s (%s): %x (%s)", print_thread_id (tp),
04902b09 2450 target_pid_to_str (tp->ptid).c_str (), flags.raw (),
987e68b1 2451 btrace_thread_flag_to_str (flags));
52834460 2452
6e4879f0
MM
2453 /* We can't step without an execution history. */
2454 if ((flags & BTHR_MOVE) != 0 && btrace_is_empty (tp))
2455 return btrace_step_no_history ();
2456
52834460
MM
2457 switch (flags)
2458 {
2459 default:
2460 internal_error (__FILE__, __LINE__, _("invalid stepping type."));
2461
6e4879f0
MM
2462 case BTHR_STOP:
2463 return btrace_step_stopped_on_request ();
2464
52834460 2465 case BTHR_STEP:
d825d248
MM
2466 status = record_btrace_single_step_forward (tp);
2467 if (status.kind != TARGET_WAITKIND_SPURIOUS)
e3cfc1c7 2468 break;
52834460
MM
2469
2470 return btrace_step_stopped ();
2471
2472 case BTHR_RSTEP:
d825d248
MM
2473 status = record_btrace_single_step_backward (tp);
2474 if (status.kind != TARGET_WAITKIND_SPURIOUS)
e3cfc1c7 2475 break;
52834460
MM
2476
2477 return btrace_step_stopped ();
2478
2479 case BTHR_CONT:
e3cfc1c7
MM
2480 status = record_btrace_single_step_forward (tp);
2481 if (status.kind != TARGET_WAITKIND_SPURIOUS)
2482 break;
52834460 2483
e3cfc1c7
MM
2484 btinfo->flags |= flags;
2485 return btrace_step_again ();
52834460
MM
2486
2487 case BTHR_RCONT:
e3cfc1c7
MM
2488 status = record_btrace_single_step_backward (tp);
2489 if (status.kind != TARGET_WAITKIND_SPURIOUS)
2490 break;
52834460 2491
e3cfc1c7
MM
2492 btinfo->flags |= flags;
2493 return btrace_step_again ();
2494 }
d825d248 2495
f6ac5f3d 2496 /* We keep threads moving at the end of their execution history. The wait
e3cfc1c7
MM
2497 method will stop the thread for whom the event is reported. */
2498 if (status.kind == TARGET_WAITKIND_NO_HISTORY)
2499 btinfo->flags |= flags;
52834460 2500
e3cfc1c7 2501 return status;
b2f4cfde
MM
2502}
2503
a6b5be76
MM
2504/* Announce further events if necessary. */
2505
2506static void
53127008
SM
2507record_btrace_maybe_mark_async_event
2508 (const std::vector<thread_info *> &moving,
2509 const std::vector<thread_info *> &no_history)
a6b5be76 2510{
53127008
SM
2511 bool more_moving = !moving.empty ();
2512 bool more_no_history = !no_history.empty ();;
a6b5be76
MM
2513
2514 if (!more_moving && !more_no_history)
2515 return;
2516
2517 if (more_moving)
2518 DEBUG ("movers pending");
2519
2520 if (more_no_history)
2521 DEBUG ("no-history pending");
2522
2523 mark_async_event_handler (record_btrace_async_inferior_event_handler);
2524}
2525
f6ac5f3d 2526/* The wait method of target record-btrace. */
b2f4cfde 2527
f6ac5f3d
PA
2528ptid_t
2529record_btrace_target::wait (ptid_t ptid, struct target_waitstatus *status,
b60cea74 2530 target_wait_flags options)
b2f4cfde 2531{
53127008
SM
2532 std::vector<thread_info *> moving;
2533 std::vector<thread_info *> no_history;
52834460 2534
85d3ad8e
SM
2535 /* Clear this, if needed we'll re-mark it below. */
2536 clear_async_event_handler (record_btrace_async_inferior_event_handler);
2537
b60cea74
TT
2538 DEBUG ("wait %s (0x%x)", target_pid_to_str (ptid).c_str (),
2539 (unsigned) options);
52834460 2540
b2f4cfde 2541 /* As long as we're not replaying, just forward the request. */
f6ac5f3d
PA
2542 if ((::execution_direction != EXEC_REVERSE)
2543 && !record_is_replaying (minus_one_ptid))
b2f4cfde 2544 {
b6a8c27b 2545 return this->beneath ()->wait (ptid, status, options);
b2f4cfde
MM
2546 }
2547
e3cfc1c7 2548 /* Keep a work list of moving threads. */
5b6d1e4f
PA
2549 process_stratum_target *proc_target = current_inferior ()->process_target ();
2550 for (thread_info *tp : all_non_exited_threads (proc_target, ptid))
08036331
PA
2551 if ((tp->btrace.flags & (BTHR_MOVE | BTHR_STOP)) != 0)
2552 moving.push_back (tp);
e3cfc1c7 2553
53127008 2554 if (moving.empty ())
52834460 2555 {
e3cfc1c7 2556 *status = btrace_step_no_resumed ();
52834460 2557
a068643d 2558 DEBUG ("wait ended by %s: %s", target_pid_to_str (null_ptid).c_str (),
23fdd69e 2559 target_waitstatus_to_string (status).c_str ());
e3cfc1c7 2560
e3cfc1c7 2561 return null_ptid;
52834460
MM
2562 }
2563
e3cfc1c7
MM
2564 /* Step moving threads one by one, one step each, until either one thread
2565 reports an event or we run out of threads to step.
2566
2567 When stepping more than one thread, chances are that some threads reach
2568 the end of their execution history earlier than others. If we reported
2569 this immediately, all-stop on top of non-stop would stop all threads and
2570 resume the same threads next time. And we would report the same thread
2571 having reached the end of its execution history again.
2572
2573 In the worst case, this would starve the other threads. But even if other
2574 threads would be allowed to make progress, this would result in far too
2575 many intermediate stops.
2576
2577 We therefore delay the reporting of "no execution history" until we have
2578 nothing else to report. By this time, all threads should have moved to
2579 either the beginning or the end of their execution history. There will
2580 be a single user-visible stop. */
53127008
SM
2581 struct thread_info *eventing = NULL;
2582 while ((eventing == NULL) && !moving.empty ())
e3cfc1c7 2583 {
53127008 2584 for (unsigned int ix = 0; eventing == NULL && ix < moving.size ();)
e3cfc1c7 2585 {
53127008
SM
2586 thread_info *tp = moving[ix];
2587
e3cfc1c7
MM
2588 *status = record_btrace_step_thread (tp);
2589
2590 switch (status->kind)
2591 {
2592 case TARGET_WAITKIND_IGNORE:
2593 ix++;
2594 break;
2595
2596 case TARGET_WAITKIND_NO_HISTORY:
53127008 2597 no_history.push_back (ordered_remove (moving, ix));
e3cfc1c7
MM
2598 break;
2599
2600 default:
53127008 2601 eventing = unordered_remove (moving, ix);
e3cfc1c7
MM
2602 break;
2603 }
2604 }
2605 }
2606
2607 if (eventing == NULL)
2608 {
2609 /* We started with at least one moving thread. This thread must have
2610 either stopped or reached the end of its execution history.
2611
2612 In the former case, EVENTING must not be NULL.
2613 In the latter case, NO_HISTORY must not be empty. */
53127008 2614 gdb_assert (!no_history.empty ());
e3cfc1c7
MM
2615
2616 /* We kept threads moving at the end of their execution history. Stop
2617 EVENTING now that we are going to report its stop. */
53127008 2618 eventing = unordered_remove (no_history, 0);
e3cfc1c7
MM
2619 eventing->btrace.flags &= ~BTHR_MOVE;
2620
2621 *status = btrace_step_no_history ();
2622 }
2623
2624 gdb_assert (eventing != NULL);
2625
2626 /* We kept threads replaying at the end of their execution history. Stop
2627 replaying EVENTING now that we are going to report its stop. */
2628 record_btrace_stop_replaying_at_end (eventing);
52834460
MM
2629
2630 /* Stop all other threads. */
5953356c 2631 if (!target_is_non_stop_p ())
53127008 2632 {
d89edf9b 2633 for (thread_info *tp : current_inferior ()->non_exited_threads ())
53127008
SM
2634 record_btrace_cancel_resume (tp);
2635 }
52834460 2636
a6b5be76
MM
2637 /* In async mode, we need to announce further events. */
2638 if (target_is_async_p ())
2639 record_btrace_maybe_mark_async_event (moving, no_history);
2640
52834460 2641 /* Start record histories anew from the current position. */
e3cfc1c7 2642 record_btrace_clear_histories (&eventing->btrace);
52834460
MM
2643
2644 /* We moved the replay position but did not update registers. */
00431a78 2645 registers_changed_thread (eventing);
e3cfc1c7 2646
43792cf0
PA
2647 DEBUG ("wait ended by thread %s (%s): %s",
2648 print_thread_id (eventing),
a068643d 2649 target_pid_to_str (eventing->ptid).c_str (),
23fdd69e 2650 target_waitstatus_to_string (status).c_str ());
52834460 2651
e3cfc1c7 2652 return eventing->ptid;
52834460
MM
2653}
2654
f6ac5f3d 2655/* The stop method of target record-btrace. */
6e4879f0 2656
f6ac5f3d
PA
2657void
2658record_btrace_target::stop (ptid_t ptid)
6e4879f0 2659{
a068643d 2660 DEBUG ("stop %s", target_pid_to_str (ptid).c_str ());
6e4879f0
MM
2661
2662 /* As long as we're not replaying, just forward the request. */
f6ac5f3d
PA
2663 if ((::execution_direction != EXEC_REVERSE)
2664 && !record_is_replaying (minus_one_ptid))
6e4879f0 2665 {
b6a8c27b 2666 this->beneath ()->stop (ptid);
6e4879f0
MM
2667 }
2668 else
2669 {
5b6d1e4f
PA
2670 process_stratum_target *proc_target
2671 = current_inferior ()->process_target ();
2672
2673 for (thread_info *tp : all_non_exited_threads (proc_target, ptid))
08036331
PA
2674 {
2675 tp->btrace.flags &= ~BTHR_MOVE;
2676 tp->btrace.flags |= BTHR_STOP;
2677 }
6e4879f0
MM
2678 }
2679 }
2680
f6ac5f3d 2681/* The can_execute_reverse method of target record-btrace. */
52834460 2682
57810aa7 2683bool
f6ac5f3d 2684record_btrace_target::can_execute_reverse ()
52834460 2685{
57810aa7 2686 return true;
52834460
MM
2687}
2688
f6ac5f3d 2689/* The stopped_by_sw_breakpoint method of target record-btrace. */
52834460 2690
57810aa7 2691bool
f6ac5f3d 2692record_btrace_target::stopped_by_sw_breakpoint ()
52834460 2693{
f6ac5f3d 2694 if (record_is_replaying (minus_one_ptid))
9e8915c6
PA
2695 {
2696 struct thread_info *tp = inferior_thread ();
2697
2698 return tp->btrace.stop_reason == TARGET_STOPPED_BY_SW_BREAKPOINT;
2699 }
2700
b6a8c27b 2701 return this->beneath ()->stopped_by_sw_breakpoint ();
9e8915c6
PA
2702}
2703
f6ac5f3d 2704/* The supports_stopped_by_sw_breakpoint method of target
9e8915c6
PA
2705 record-btrace. */
2706
57810aa7 2707bool
f6ac5f3d 2708record_btrace_target::supports_stopped_by_sw_breakpoint ()
9e8915c6 2709{
f6ac5f3d 2710 if (record_is_replaying (minus_one_ptid))
57810aa7 2711 return true;
9e8915c6 2712
b6a8c27b 2713 return this->beneath ()->supports_stopped_by_sw_breakpoint ();
9e8915c6
PA
2714}
2715
f6ac5f3d 2716/* The stopped_by_sw_breakpoint method of target record-btrace. */
9e8915c6 2717
57810aa7 2718bool
f6ac5f3d 2719record_btrace_target::stopped_by_hw_breakpoint ()
9e8915c6 2720{
f6ac5f3d 2721 if (record_is_replaying (minus_one_ptid))
9e8915c6
PA
2722 {
2723 struct thread_info *tp = inferior_thread ();
2724
2725 return tp->btrace.stop_reason == TARGET_STOPPED_BY_HW_BREAKPOINT;
2726 }
2727
b6a8c27b 2728 return this->beneath ()->stopped_by_hw_breakpoint ();
9e8915c6
PA
2729}
2730
f6ac5f3d 2731/* The supports_stopped_by_hw_breakpoint method of target
9e8915c6
PA
2732 record-btrace. */
2733
57810aa7 2734bool
f6ac5f3d 2735record_btrace_target::supports_stopped_by_hw_breakpoint ()
9e8915c6 2736{
f6ac5f3d 2737 if (record_is_replaying (minus_one_ptid))
57810aa7 2738 return true;
52834460 2739
b6a8c27b 2740 return this->beneath ()->supports_stopped_by_hw_breakpoint ();
b2f4cfde
MM
2741}
2742
f6ac5f3d 2743/* The update_thread_list method of target record-btrace. */
e2887aa3 2744
f6ac5f3d
PA
2745void
2746record_btrace_target::update_thread_list ()
e2887aa3 2747{
e8032dde 2748 /* We don't add or remove threads during replay. */
f6ac5f3d 2749 if (record_is_replaying (minus_one_ptid))
e2887aa3
MM
2750 return;
2751
2752 /* Forward the request. */
b6a8c27b 2753 this->beneath ()->update_thread_list ();
e2887aa3
MM
2754}
2755
f6ac5f3d 2756/* The thread_alive method of target record-btrace. */
e2887aa3 2757
57810aa7 2758bool
f6ac5f3d 2759record_btrace_target::thread_alive (ptid_t ptid)
e2887aa3
MM
2760{
2761 /* We don't add or remove threads during replay. */
f6ac5f3d 2762 if (record_is_replaying (minus_one_ptid))
00431a78 2763 return true;
e2887aa3
MM
2764
2765 /* Forward the request. */
b6a8c27b 2766 return this->beneath ()->thread_alive (ptid);
e2887aa3
MM
2767}
2768
066ce621
MM
2769/* Set the replay branch trace instruction iterator. If IT is NULL, replay
2770 is stopped. */
2771
2772static void
2773record_btrace_set_replay (struct thread_info *tp,
2774 const struct btrace_insn_iterator *it)
2775{
2776 struct btrace_thread_info *btinfo;
2777
2778 btinfo = &tp->btrace;
2779
a0f1b963 2780 if (it == NULL)
52834460 2781 record_btrace_stop_replaying (tp);
066ce621
MM
2782 else
2783 {
2784 if (btinfo->replay == NULL)
52834460 2785 record_btrace_start_replaying (tp);
066ce621
MM
2786 else if (btrace_insn_cmp (btinfo->replay, it) == 0)
2787 return;
2788
2789 *btinfo->replay = *it;
00431a78 2790 registers_changed_thread (tp);
066ce621
MM
2791 }
2792
52834460
MM
2793 /* Start anew from the new replay position. */
2794 record_btrace_clear_histories (btinfo);
485668e5 2795
f2ffa92b
PA
2796 inferior_thread ()->suspend.stop_pc
2797 = regcache_read_pc (get_current_regcache ());
485668e5 2798 print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC, 1);
066ce621
MM
2799}
2800
f6ac5f3d 2801/* The goto_record_begin method of target record-btrace. */
066ce621 2802
f6ac5f3d
PA
2803void
2804record_btrace_target::goto_record_begin ()
066ce621
MM
2805{
2806 struct thread_info *tp;
2807 struct btrace_insn_iterator begin;
2808
2809 tp = require_btrace_thread ();
2810
2811 btrace_insn_begin (&begin, &tp->btrace);
b61ce85c
MM
2812
2813 /* Skip gaps at the beginning of the trace. */
2814 while (btrace_insn_get (&begin) == NULL)
2815 {
2816 unsigned int steps;
2817
2818 steps = btrace_insn_next (&begin, 1);
2819 if (steps == 0)
2820 error (_("No trace."));
2821 }
2822
066ce621 2823 record_btrace_set_replay (tp, &begin);
066ce621
MM
2824}
2825
f6ac5f3d 2826/* The goto_record_end method of target record-btrace. */
066ce621 2827
f6ac5f3d
PA
2828void
2829record_btrace_target::goto_record_end ()
066ce621
MM
2830{
2831 struct thread_info *tp;
2832
2833 tp = require_btrace_thread ();
2834
2835 record_btrace_set_replay (tp, NULL);
066ce621
MM
2836}
2837
f6ac5f3d 2838/* The goto_record method of target record-btrace. */
066ce621 2839
f6ac5f3d
PA
2840void
2841record_btrace_target::goto_record (ULONGEST insn)
066ce621
MM
2842{
2843 struct thread_info *tp;
2844 struct btrace_insn_iterator it;
2845 unsigned int number;
2846 int found;
2847
2848 number = insn;
2849
2850 /* Check for wrap-arounds. */
2851 if (number != insn)
2852 error (_("Instruction number out of range."));
2853
2854 tp = require_btrace_thread ();
2855
2856 found = btrace_find_insn_by_number (&it, &tp->btrace, number);
69090cee
TW
2857
2858 /* Check if the instruction could not be found or is a gap. */
2859 if (found == 0 || btrace_insn_get (&it) == NULL)
066ce621
MM
2860 error (_("No such instruction."));
2861
2862 record_btrace_set_replay (tp, &it);
066ce621
MM
2863}
2864
f6ac5f3d 2865/* The record_stop_replaying method of target record-btrace. */
797094dd 2866
f6ac5f3d
PA
2867void
2868record_btrace_target::record_stop_replaying ()
797094dd 2869{
d89edf9b 2870 for (thread_info *tp : current_inferior ()->non_exited_threads ())
797094dd
MM
2871 record_btrace_stop_replaying (tp);
2872}
2873
f6ac5f3d 2874/* The execution_direction target method. */
70ad5bff 2875
f6ac5f3d
PA
2876enum exec_direction_kind
2877record_btrace_target::execution_direction ()
70ad5bff
MM
2878{
2879 return record_btrace_resume_exec_dir;
2880}
2881
f6ac5f3d 2882/* The prepare_to_generate_core target method. */
aef92902 2883
f6ac5f3d
PA
2884void
2885record_btrace_target::prepare_to_generate_core ()
aef92902
MM
2886{
2887 record_btrace_generating_corefile = 1;
2888}
2889
f6ac5f3d 2890/* The done_generating_core target method. */
aef92902 2891
f6ac5f3d
PA
2892void
2893record_btrace_target::done_generating_core ()
aef92902
MM
2894{
2895 record_btrace_generating_corefile = 0;
2896}
2897
f4abbc16
MM
2898/* Start recording in BTS format. */
2899
2900static void
cdb34d4a 2901cmd_record_btrace_bts_start (const char *args, int from_tty)
f4abbc16 2902{
f4abbc16
MM
2903 if (args != NULL && *args != 0)
2904 error (_("Invalid argument."));
2905
2906 record_btrace_conf.format = BTRACE_FORMAT_BTS;
2907
a70b8144 2908 try
492d29ea 2909 {
95a6b0a1 2910 execute_command ("target record-btrace", from_tty);
492d29ea 2911 }
230d2906 2912 catch (const gdb_exception &exception)
f4abbc16
MM
2913 {
2914 record_btrace_conf.format = BTRACE_FORMAT_NONE;
eedc3f4f 2915 throw;
f4abbc16
MM
2916 }
2917}
2918
bc504a31 2919/* Start recording in Intel Processor Trace format. */
afedecd3
MM
2920
2921static void
cdb34d4a 2922cmd_record_btrace_pt_start (const char *args, int from_tty)
afedecd3
MM
2923{
2924 if (args != NULL && *args != 0)
2925 error (_("Invalid argument."));
2926
b20a6524 2927 record_btrace_conf.format = BTRACE_FORMAT_PT;
f4abbc16 2928
a70b8144 2929 try
492d29ea 2930 {
95a6b0a1 2931 execute_command ("target record-btrace", from_tty);
492d29ea 2932 }
230d2906 2933 catch (const gdb_exception &exception)
492d29ea
PA
2934 {
2935 record_btrace_conf.format = BTRACE_FORMAT_NONE;
eedc3f4f 2936 throw;
492d29ea 2937 }
afedecd3
MM
2938}
2939
b20a6524
MM
2940/* Alias for "target record". */
2941
2942static void
981a3fb3 2943cmd_record_btrace_start (const char *args, int from_tty)
b20a6524
MM
2944{
2945 if (args != NULL && *args != 0)
2946 error (_("Invalid argument."));
2947
2948 record_btrace_conf.format = BTRACE_FORMAT_PT;
2949
a70b8144 2950 try
b20a6524 2951 {
95a6b0a1 2952 execute_command ("target record-btrace", from_tty);
b20a6524 2953 }
230d2906 2954 catch (const gdb_exception &exception)
b20a6524
MM
2955 {
2956 record_btrace_conf.format = BTRACE_FORMAT_BTS;
2957
a70b8144 2958 try
b20a6524 2959 {
95a6b0a1 2960 execute_command ("target record-btrace", from_tty);
b20a6524 2961 }
230d2906 2962 catch (const gdb_exception &ex)
b20a6524
MM
2963 {
2964 record_btrace_conf.format = BTRACE_FORMAT_NONE;
eedc3f4f 2965 throw;
b20a6524 2966 }
b20a6524 2967 }
b20a6524
MM
2968}
2969
67b5c0c1
MM
2970/* The "show record btrace replay-memory-access" command. */
2971
2972static void
2973cmd_show_replay_memory_access (struct ui_file *file, int from_tty,
2974 struct cmd_list_element *c, const char *value)
2975{
2976 fprintf_filtered (gdb_stdout, _("Replay memory access is %s.\n"),
2977 replay_memory_access);
2978}
2979
4a4495d6
MM
2980/* The "set record btrace cpu none" command. */
2981
2982static void
2983cmd_set_record_btrace_cpu_none (const char *args, int from_tty)
2984{
2985 if (args != nullptr && *args != 0)
2986 error (_("Trailing junk: '%s'."), args);
2987
2988 record_btrace_cpu_state = CS_NONE;
2989}
2990
2991/* The "set record btrace cpu auto" command. */
2992
2993static void
2994cmd_set_record_btrace_cpu_auto (const char *args, int from_tty)
2995{
2996 if (args != nullptr && *args != 0)
2997 error (_("Trailing junk: '%s'."), args);
2998
2999 record_btrace_cpu_state = CS_AUTO;
3000}
3001
3002/* The "set record btrace cpu" command. */
3003
3004static void
3005cmd_set_record_btrace_cpu (const char *args, int from_tty)
3006{
3007 if (args == nullptr)
3008 args = "";
3009
3010 /* We use a hard-coded vendor string for now. */
3011 unsigned int family, model, stepping;
3012 int l1, l2, matches = sscanf (args, "intel: %u/%u%n/%u%n", &family,
3013 &model, &l1, &stepping, &l2);
3014 if (matches == 3)
3015 {
3016 if (strlen (args) != l2)
3017 error (_("Trailing junk: '%s'."), args + l2);
3018 }
3019 else if (matches == 2)
3020 {
3021 if (strlen (args) != l1)
3022 error (_("Trailing junk: '%s'."), args + l1);
3023
3024 stepping = 0;
3025 }
3026 else
3027 error (_("Bad format. See \"help set record btrace cpu\"."));
3028
3029 if (USHRT_MAX < family)
3030 error (_("Cpu family too big."));
3031
3032 if (UCHAR_MAX < model)
3033 error (_("Cpu model too big."));
3034
3035 if (UCHAR_MAX < stepping)
3036 error (_("Cpu stepping too big."));
3037
3038 record_btrace_cpu.vendor = CV_INTEL;
3039 record_btrace_cpu.family = family;
3040 record_btrace_cpu.model = model;
3041 record_btrace_cpu.stepping = stepping;
3042
3043 record_btrace_cpu_state = CS_CPU;
3044}
3045
3046/* The "show record btrace cpu" command. */
3047
3048static void
3049cmd_show_record_btrace_cpu (const char *args, int from_tty)
3050{
4a4495d6
MM
3051 if (args != nullptr && *args != 0)
3052 error (_("Trailing junk: '%s'."), args);
3053
3054 switch (record_btrace_cpu_state)
3055 {
3056 case CS_AUTO:
3057 printf_unfiltered (_("btrace cpu is 'auto'.\n"));
3058 return;
3059
3060 case CS_NONE:
3061 printf_unfiltered (_("btrace cpu is 'none'.\n"));
3062 return;
3063
3064 case CS_CPU:
3065 switch (record_btrace_cpu.vendor)
3066 {
3067 case CV_INTEL:
3068 if (record_btrace_cpu.stepping == 0)
3069 printf_unfiltered (_("btrace cpu is 'intel: %u/%u'.\n"),
3070 record_btrace_cpu.family,
3071 record_btrace_cpu.model);
3072 else
3073 printf_unfiltered (_("btrace cpu is 'intel: %u/%u/%u'.\n"),
3074 record_btrace_cpu.family,
3075 record_btrace_cpu.model,
3076 record_btrace_cpu.stepping);
3077 return;
3078 }
3079 }
3080
3081 error (_("Internal error: bad cpu state."));
3082}
3083
b20a6524
MM
3084/* The "record bts buffer-size" show value function. */
3085
3086static void
3087show_record_bts_buffer_size_value (struct ui_file *file, int from_tty,
3088 struct cmd_list_element *c,
3089 const char *value)
3090{
3091 fprintf_filtered (file, _("The record/replay bts buffer size is %s.\n"),
3092 value);
3093}
3094
3095/* The "record pt buffer-size" show value function. */
3096
3097static void
3098show_record_pt_buffer_size_value (struct ui_file *file, int from_tty,
3099 struct cmd_list_element *c,
3100 const char *value)
3101{
3102 fprintf_filtered (file, _("The record/replay pt buffer size is %s.\n"),
3103 value);
3104}
3105
afedecd3
MM
3106/* Initialize btrace commands. */
3107
6c265988 3108void _initialize_record_btrace ();
afedecd3 3109void
6c265988 3110_initialize_record_btrace ()
afedecd3 3111{
f4abbc16
MM
3112 add_prefix_cmd ("btrace", class_obscure, cmd_record_btrace_start,
3113 _("Start branch trace recording."), &record_btrace_cmdlist,
2f822da5 3114 0, &record_cmdlist);
afedecd3
MM
3115 add_alias_cmd ("b", "btrace", class_obscure, 1, &record_cmdlist);
3116
f4abbc16
MM
3117 add_cmd ("bts", class_obscure, cmd_record_btrace_bts_start,
3118 _("\
3119Start branch trace recording in Branch Trace Store (BTS) format.\n\n\
3120The processor stores a from/to record for each branch into a cyclic buffer.\n\
3121This format may not be available on all processors."),
3122 &record_btrace_cmdlist);
3123 add_alias_cmd ("bts", "btrace bts", class_obscure, 1, &record_cmdlist);
3124
b20a6524
MM
3125 add_cmd ("pt", class_obscure, cmd_record_btrace_pt_start,
3126 _("\
bc504a31 3127Start branch trace recording in Intel Processor Trace format.\n\n\
b20a6524
MM
3128This format may not be available on all processors."),
3129 &record_btrace_cmdlist);
3130 add_alias_cmd ("pt", "btrace pt", class_obscure, 1, &record_cmdlist);
3131
0743fc83
TT
3132 add_basic_prefix_cmd ("btrace", class_support,
3133 _("Set record options."), &set_record_btrace_cmdlist,
2f822da5 3134 0, &set_record_cmdlist);
67b5c0c1 3135
0743fc83
TT
3136 add_show_prefix_cmd ("btrace", class_support,
3137 _("Show record options."), &show_record_btrace_cmdlist,
2f822da5 3138 0, &show_record_cmdlist);
67b5c0c1
MM
3139
3140 add_setshow_enum_cmd ("replay-memory-access", no_class,
3141 replay_memory_access_types, &replay_memory_access, _("\
3142Set what memory accesses are allowed during replay."), _("\
3143Show what memory accesses are allowed during replay."),
3144 _("Default is READ-ONLY.\n\n\
3145The btrace record target does not trace data.\n\
3146The memory therefore corresponds to the live target and not \
3147to the current replay position.\n\n\
3148When READ-ONLY, allow accesses to read-only memory during replay.\n\
3149When READ-WRITE, allow accesses to read-only and read-write memory during \
3150replay."),
3151 NULL, cmd_show_replay_memory_access,
3152 &set_record_btrace_cmdlist,
3153 &show_record_btrace_cmdlist);
3154
4a4495d6
MM
3155 add_prefix_cmd ("cpu", class_support, cmd_set_record_btrace_cpu,
3156 _("\
3157Set the cpu to be used for trace decode.\n\n\
55063ddb
TT
3158The format is \"VENDOR:IDENTIFIER\" or \"none\" or \"auto\" (default).\n\
3159For vendor \"intel\" the format is \"FAMILY/MODEL[/STEPPING]\".\n\n\
4a4495d6
MM
3160When decoding branch trace, enable errata workarounds for the specified cpu.\n\
3161The default is \"auto\", which uses the cpu on which the trace was recorded.\n\
3162When GDB does not support that cpu, this option can be used to enable\n\
3163workarounds for a similar cpu that GDB supports.\n\n\
3164When set to \"none\", errata workarounds are disabled."),
3165 &set_record_btrace_cpu_cmdlist,
2f822da5 3166 1,
4a4495d6
MM
3167 &set_record_btrace_cmdlist);
3168
3169 add_cmd ("auto", class_support, cmd_set_record_btrace_cpu_auto, _("\
3170Automatically determine the cpu to be used for trace decode."),
3171 &set_record_btrace_cpu_cmdlist);
3172
3173 add_cmd ("none", class_support, cmd_set_record_btrace_cpu_none, _("\
3174Do not enable errata workarounds for trace decode."),
3175 &set_record_btrace_cpu_cmdlist);
3176
3177 add_cmd ("cpu", class_support, cmd_show_record_btrace_cpu, _("\
3178Show the cpu to be used for trace decode."),
3179 &show_record_btrace_cmdlist);
3180
0743fc83
TT
3181 add_basic_prefix_cmd ("bts", class_support,
3182 _("Set record btrace bts options."),
3183 &set_record_btrace_bts_cmdlist,
2f822da5 3184 0,
0743fc83 3185 &set_record_btrace_cmdlist);
d33501a5 3186
0743fc83
TT
3187 add_show_prefix_cmd ("bts", class_support,
3188 _("Show record btrace bts options."),
3189 &show_record_btrace_bts_cmdlist,
2f822da5 3190 0,
0743fc83 3191 &show_record_btrace_cmdlist);
d33501a5
MM
3192
3193 add_setshow_uinteger_cmd ("buffer-size", no_class,
3194 &record_btrace_conf.bts.size,
3195 _("Set the record/replay bts buffer size."),
3196 _("Show the record/replay bts buffer size."), _("\
3197When starting recording request a trace buffer of this size. \
3198The actual buffer size may differ from the requested size. \
3199Use \"info record\" to see the actual buffer size.\n\n\
3200Bigger buffers allow longer recording but also take more time to process \
3201the recorded execution trace.\n\n\
b20a6524
MM
3202The trace buffer size may not be changed while recording."), NULL,
3203 show_record_bts_buffer_size_value,
d33501a5
MM
3204 &set_record_btrace_bts_cmdlist,
3205 &show_record_btrace_bts_cmdlist);
3206
0743fc83
TT
3207 add_basic_prefix_cmd ("pt", class_support,
3208 _("Set record btrace pt options."),
3209 &set_record_btrace_pt_cmdlist,
2f822da5 3210 0,
0743fc83
TT
3211 &set_record_btrace_cmdlist);
3212
3213 add_show_prefix_cmd ("pt", class_support,
3214 _("Show record btrace pt options."),
3215 &show_record_btrace_pt_cmdlist,
2f822da5 3216 0,
0743fc83 3217 &show_record_btrace_cmdlist);
b20a6524
MM
3218
3219 add_setshow_uinteger_cmd ("buffer-size", no_class,
3220 &record_btrace_conf.pt.size,
3221 _("Set the record/replay pt buffer size."),
3222 _("Show the record/replay pt buffer size."), _("\
3223Bigger buffers allow longer recording but also take more time to process \
3224the recorded execution.\n\
3225The actual buffer size may differ from the requested size. Use \"info record\" \
3226to see the actual buffer size."), NULL, show_record_pt_buffer_size_value,
3227 &set_record_btrace_pt_cmdlist,
3228 &show_record_btrace_pt_cmdlist);
3229
d9f719f1 3230 add_target (record_btrace_target_info, record_btrace_target_open);
0b722aec
MM
3231
3232 bfcache = htab_create_alloc (50, bfcache_hash, bfcache_eq, NULL,
3233 xcalloc, xfree);
d33501a5
MM
3234
3235 record_btrace_conf.bts.size = 64 * 1024;
b20a6524 3236 record_btrace_conf.pt.size = 16 * 1024;
afedecd3 3237}