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/tmp/gdb-8.1/gdb/btrace.c
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1 /* Branch trace support for GDB, the GNU debugger.
2 
3  Copyright (C) 2013-2018 Free Software Foundation, Inc.
4 
5  Contributed by Intel Corp. <markus.t.metzger@intel.com>
6 
7  This file is part of GDB.
8 
9  This program is free software; you can redistribute it and/or modify
10  it under the terms of the GNU General Public License as published by
11  the Free Software Foundation; either version 3 of the License, or
12  (at your option) any later version.
13 
14  This program is distributed in the hope that it will be useful,
15  but WITHOUT ANY WARRANTY; without even the implied warranty of
16  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17  GNU General Public License for more details.
18 
19  You should have received a copy of the GNU General Public License
20  along with this program. If not, see <http://www.gnu.org/licenses/>. */
21 
22 #include "defs.h"
23 #include "btrace.h"
24 #include "gdbthread.h"
25 #include "inferior.h"
26 #include "target.h"
27 #include "record.h"
28 #include "symtab.h"
29 #include "disasm.h"
30 #include "source.h"
31 #include "filenames.h"
32 #include "xml-support.h"
33 #include "regcache.h"
34 #include "rsp-low.h"
35 #include "gdbcmd.h"
36 #include "cli/cli-utils.h"
37 
38 #include <inttypes.h>
39 #include <ctype.h>
40 #include <algorithm>
41 
42 /* Command lists for btrace maintenance commands. */
48 
49 /* Control whether to skip PAD packets when computing the packet history. */
50 static int maint_btrace_pt_skip_pad = 1;
51 
52 static void btrace_add_pc (struct thread_info *tp);
53 
54 /* Print a record debug message. Use do ... while (0) to avoid ambiguities
55  when used in if statements. */
56 
57 #define DEBUG(msg, args...) \
58  do \
59  { \
60  if (record_debug != 0) \
61  fprintf_unfiltered (gdb_stdlog, \
62  "[btrace] " msg "\n", ##args); \
63  } \
64  while (0)
65 
66 #define DEBUG_FTRACE(msg, args...) DEBUG ("[ftrace] " msg, ##args)
67 
68 /* Return the function name of a recorded function segment for printing.
69  This function never returns NULL. */
70 
71 static const char *
73 {
74  struct minimal_symbol *msym;
75  struct symbol *sym;
76 
77  msym = bfun->msym;
78  sym = bfun->sym;
79 
80  if (sym != NULL)
81  return SYMBOL_PRINT_NAME (sym);
82 
83  if (msym != NULL)
84  return MSYMBOL_PRINT_NAME (msym);
85 
86  return "<unknown>";
87 }
88 
89 /* Return the file name of a recorded function segment for printing.
90  This function never returns NULL. */
91 
92 static const char *
94 {
95  struct symbol *sym;
96  const char *filename;
97 
98  sym = bfun->sym;
99 
100  if (sym != NULL)
102  else
103  filename = "<unknown>";
104 
105  return filename;
106 }
107 
108 /* Return a string representation of the address of an instruction.
109  This function never returns NULL. */
110 
111 static const char *
113 {
114  if (insn == NULL)
115  return "<nil>";
116 
117  return core_addr_to_string_nz (insn->pc);
118 }
119 
120 /* Print an ftrace debug status message. */
121 
122 static void
123 ftrace_debug (const struct btrace_function *bfun, const char *prefix)
124 {
125  const char *fun, *file;
126  unsigned int ibegin, iend;
127  int level;
128 
129  fun = ftrace_print_function_name (bfun);
130  file = ftrace_print_filename (bfun);
131  level = bfun->level;
132 
133  ibegin = bfun->insn_offset;
134  iend = ibegin + bfun->insn.size ();
135 
136  DEBUG_FTRACE ("%s: fun = %s, file = %s, level = %d, insn = [%u; %u)",
137  prefix, fun, file, level, ibegin, iend);
138 }
139 
140 /* Return the number of instructions in a given function call segment. */
141 
142 static unsigned int
144 {
145  if (bfun == NULL)
146  return 0;
147 
148  /* A gap is always counted as one instruction. */
149  if (bfun->errcode != 0)
150  return 1;
151 
152  return bfun->insn.size ();
153 }
154 
155 /* Return the function segment with the given NUMBER or NULL if no such segment
156  exists. BTINFO is the branch trace information for the current thread. */
157 
158 static struct btrace_function *
160  unsigned int number)
161 {
162  if (number == 0 || number > btinfo->functions.size ())
163  return NULL;
164 
165  return &btinfo->functions[number - 1];
166 }
167 
168 /* A const version of the function above. */
169 
170 static const struct btrace_function *
172  unsigned int number)
173 {
174  if (number == 0 || number > btinfo->functions.size ())
175  return NULL;
176 
177  return &btinfo->functions[number - 1];
178 }
179 
180 /* Return non-zero if BFUN does not match MFUN and FUN,
181  return zero otherwise. */
182 
183 static int
185  const struct minimal_symbol *mfun,
186  const struct symbol *fun)
187 {
188  struct minimal_symbol *msym;
189  struct symbol *sym;
190 
191  msym = bfun->msym;
192  sym = bfun->sym;
193 
194  /* If the minimal symbol changed, we certainly switched functions. */
195  if (mfun != NULL && msym != NULL
196  && strcmp (MSYMBOL_LINKAGE_NAME (mfun), MSYMBOL_LINKAGE_NAME (msym)) != 0)
197  return 1;
198 
199  /* If the symbol changed, we certainly switched functions. */
200  if (fun != NULL && sym != NULL)
201  {
202  const char *bfname, *fname;
203 
204  /* Check the function name. */
205  if (strcmp (SYMBOL_LINKAGE_NAME (fun), SYMBOL_LINKAGE_NAME (sym)) != 0)
206  return 1;
207 
208  /* Check the location of those functions, as well. */
209  bfname = symtab_to_fullname (symbol_symtab (sym));
210  fname = symtab_to_fullname (symbol_symtab (fun));
211  if (filename_cmp (fname, bfname) != 0)
212  return 1;
213  }
214 
215  /* If we lost symbol information, we switched functions. */
216  if (!(msym == NULL && sym == NULL) && mfun == NULL && fun == NULL)
217  return 1;
218 
219  /* If we gained symbol information, we switched functions. */
220  if (msym == NULL && sym == NULL && !(mfun == NULL && fun == NULL))
221  return 1;
222 
223  return 0;
224 }
225 
226 /* Allocate and initialize a new branch trace function segment at the end of
227  the trace.
228  BTINFO is the branch trace information for the current thread.
229  MFUN and FUN are the symbol information we have for this function.
230  This invalidates all struct btrace_function pointer currently held. */
231 
232 static struct btrace_function *
234  struct minimal_symbol *mfun,
235  struct symbol *fun)
236 {
237  int level;
238  unsigned int number, insn_offset;
239 
240  if (btinfo->functions.empty ())
241  {
242  /* Start counting NUMBER and INSN_OFFSET at one. */
243  level = 0;
244  number = 1;
245  insn_offset = 1;
246  }
247  else
248  {
249  const struct btrace_function *prev = &btinfo->functions.back ();
250  level = prev->level;
251  number = prev->number + 1;
252  insn_offset = prev->insn_offset + ftrace_call_num_insn (prev);
253  }
254 
255  btinfo->functions.emplace_back (mfun, fun, number, insn_offset, level);
256  return &btinfo->functions.back ();
257 }
258 
259 /* Update the UP field of a function segment. */
260 
261 static void
263  struct btrace_function *caller,
265 {
266  if (bfun->up != 0)
267  ftrace_debug (bfun, "updating caller");
268 
269  bfun->up = caller->number;
270  bfun->flags = flags;
271 
272  ftrace_debug (bfun, "set caller");
273  ftrace_debug (caller, "..to");
274 }
275 
276 /* Fix up the caller for all segments of a function. */
277 
278 static void
280  struct btrace_function *bfun,
281  struct btrace_function *caller,
283 {
284  unsigned int prev, next;
285 
286  prev = bfun->prev;
287  next = bfun->next;
288  ftrace_update_caller (bfun, caller, flags);
289 
290  /* Update all function segments belonging to the same function. */
291  for (; prev != 0; prev = bfun->prev)
292  {
293  bfun = ftrace_find_call_by_number (btinfo, prev);
294  ftrace_update_caller (bfun, caller, flags);
295  }
296 
297  for (; next != 0; next = bfun->next)
298  {
299  bfun = ftrace_find_call_by_number (btinfo, next);
300  ftrace_update_caller (bfun, caller, flags);
301  }
302 }
303 
304 /* Add a new function segment for a call at the end of the trace.
305  BTINFO is the branch trace information for the current thread.
306  MFUN and FUN are the symbol information we have for this function. */
307 
308 static struct btrace_function *
310  struct minimal_symbol *mfun,
311  struct symbol *fun)
312 {
313  const unsigned int length = btinfo->functions.size ();
314  struct btrace_function *bfun = ftrace_new_function (btinfo, mfun, fun);
315 
316  bfun->up = length;
317  bfun->level += 1;
318 
319  ftrace_debug (bfun, "new call");
320 
321  return bfun;
322 }
323 
324 /* Add a new function segment for a tail call at the end of the trace.
325  BTINFO is the branch trace information for the current thread.
326  MFUN and FUN are the symbol information we have for this function. */
327 
328 static struct btrace_function *
330  struct minimal_symbol *mfun,
331  struct symbol *fun)
332 {
333  const unsigned int length = btinfo->functions.size ();
334  struct btrace_function *bfun = ftrace_new_function (btinfo, mfun, fun);
335 
336  bfun->up = length;
337  bfun->level += 1;
339 
340  ftrace_debug (bfun, "new tail call");
341 
342  return bfun;
343 }
344 
345 /* Return the caller of BFUN or NULL if there is none. This function skips
346  tail calls in the call chain. BTINFO is the branch trace information for
347  the current thread. */
348 static struct btrace_function *
350  struct btrace_function *bfun)
351 {
352  for (; bfun != NULL; bfun = ftrace_find_call_by_number (btinfo, bfun->up))
353  if ((bfun->flags & BFUN_UP_LINKS_TO_TAILCALL) == 0)
354  return ftrace_find_call_by_number (btinfo, bfun->up);
355 
356  return NULL;
357 }
358 
359 /* Find the innermost caller in the back trace of BFUN with MFUN/FUN
360  symbol information. BTINFO is the branch trace information for the current
361  thread. */
362 
363 static struct btrace_function *
365  struct btrace_function *bfun,
366  struct minimal_symbol *mfun,
367  struct symbol *fun)
368 {
369  for (; bfun != NULL; bfun = ftrace_find_call_by_number (btinfo, bfun->up))
370  {
371  /* Skip functions with incompatible symbol information. */
372  if (ftrace_function_switched (bfun, mfun, fun))
373  continue;
374 
375  /* This is the function segment we're looking for. */
376  break;
377  }
378 
379  return bfun;
380 }
381 
382 /* Find the innermost caller in the back trace of BFUN, skipping all
383  function segments that do not end with a call instruction (e.g.
384  tail calls ending with a jump). BTINFO is the branch trace information for
385  the current thread. */
386 
387 static struct btrace_function *
389  struct btrace_function *bfun)
390 {
391  for (; bfun != NULL; bfun = ftrace_find_call_by_number (btinfo, bfun->up))
392  {
393  /* Skip gaps. */
394  if (bfun->errcode != 0)
395  continue;
396 
397  btrace_insn &last = bfun->insn.back ();
398 
399  if (last.iclass == BTRACE_INSN_CALL)
400  break;
401  }
402 
403  return bfun;
404 }
405 
406 /* Add a continuation segment for a function into which we return at the end of
407  the trace.
408  BTINFO is the branch trace information for the current thread.
409  MFUN and FUN are the symbol information we have for this function. */
410 
411 static struct btrace_function *
413  struct minimal_symbol *mfun,
414  struct symbol *fun)
415 {
416  struct btrace_function *prev, *bfun, *caller;
417 
418  bfun = ftrace_new_function (btinfo, mfun, fun);
419  prev = ftrace_find_call_by_number (btinfo, bfun->number - 1);
420 
421  /* It is important to start at PREV's caller. Otherwise, we might find
422  PREV itself, if PREV is a recursive function. */
423  caller = ftrace_find_call_by_number (btinfo, prev->up);
424  caller = ftrace_find_caller (btinfo, caller, mfun, fun);
425  if (caller != NULL)
426  {
427  /* The caller of PREV is the preceding btrace function segment in this
428  function instance. */
429  gdb_assert (caller->next == 0);
430 
431  caller->next = bfun->number;
432  bfun->prev = caller->number;
433 
434  /* Maintain the function level. */
435  bfun->level = caller->level;
436 
437  /* Maintain the call stack. */
438  bfun->up = caller->up;
439  bfun->flags = caller->flags;
440 
441  ftrace_debug (bfun, "new return");
442  }
443  else
444  {
445  /* We did not find a caller. This could mean that something went
446  wrong or that the call is simply not included in the trace. */
447 
448  /* Let's search for some actual call. */
449  caller = ftrace_find_call_by_number (btinfo, prev->up);
450  caller = ftrace_find_call (btinfo, caller);
451  if (caller == NULL)
452  {
453  /* There is no call in PREV's back trace. We assume that the
454  branch trace did not include it. */
455 
456  /* Let's find the topmost function and add a new caller for it.
457  This should handle a series of initial tail calls. */
458  while (prev->up != 0)
459  prev = ftrace_find_call_by_number (btinfo, prev->up);
460 
461  bfun->level = prev->level - 1;
462 
463  /* Fix up the call stack for PREV. */
465 
466  ftrace_debug (bfun, "new return - no caller");
467  }
468  else
469  {
470  /* There is a call in PREV's back trace to which we should have
471  returned but didn't. Let's start a new, separate back trace
472  from PREV's level. */
473  bfun->level = prev->level - 1;
474 
475  /* We fix up the back trace for PREV but leave other function segments
476  on the same level as they are.
477  This should handle things like schedule () correctly where we're
478  switching contexts. */
479  prev->up = bfun->number;
480  prev->flags = BFUN_UP_LINKS_TO_RET;
481 
482  ftrace_debug (bfun, "new return - unknown caller");
483  }
484  }
485 
486  return bfun;
487 }
488 
489 /* Add a new function segment for a function switch at the end of the trace.
490  BTINFO is the branch trace information for the current thread.
491  MFUN and FUN are the symbol information we have for this function. */
492 
493 static struct btrace_function *
495  struct minimal_symbol *mfun,
496  struct symbol *fun)
497 {
498  struct btrace_function *prev, *bfun;
499 
500  /* This is an unexplained function switch. We can't really be sure about the
501  call stack, yet the best I can think of right now is to preserve it. */
502  bfun = ftrace_new_function (btinfo, mfun, fun);
503  prev = ftrace_find_call_by_number (btinfo, bfun->number - 1);
504  bfun->up = prev->up;
505  bfun->flags = prev->flags;
506 
507  ftrace_debug (bfun, "new switch");
508 
509  return bfun;
510 }
511 
512 /* Add a new function segment for a gap in the trace due to a decode error at
513  the end of the trace.
514  BTINFO is the branch trace information for the current thread.
515  ERRCODE is the format-specific error code. */
516 
517 static struct btrace_function *
519  std::vector<unsigned int> &gaps)
520 {
521  struct btrace_function *bfun;
522 
523  if (btinfo->functions.empty ())
524  bfun = ftrace_new_function (btinfo, NULL, NULL);
525  else
526  {
527  /* We hijack the previous function segment if it was empty. */
528  bfun = &btinfo->functions.back ();
529  if (bfun->errcode != 0 || !bfun->insn.empty ())
530  bfun = ftrace_new_function (btinfo, NULL, NULL);
531  }
532 
533  bfun->errcode = errcode;
534  gaps.push_back (bfun->number);
535 
536  ftrace_debug (bfun, "new gap");
537 
538  return bfun;
539 }
540 
541 /* Update the current function segment at the end of the trace in BTINFO with
542  respect to the instruction at PC. This may create new function segments.
543  Return the chronologically latest function segment, never NULL. */
544 
545 static struct btrace_function *
547 {
548  struct bound_minimal_symbol bmfun;
549  struct minimal_symbol *mfun;
550  struct symbol *fun;
551  struct btrace_function *bfun;
552 
553  /* Try to determine the function we're in. We use both types of symbols
554  to avoid surprises when we sometimes get a full symbol and sometimes
555  only a minimal symbol. */
556  fun = find_pc_function (pc);
557  bmfun = lookup_minimal_symbol_by_pc (pc);
558  mfun = bmfun.minsym;
559 
560  if (fun == NULL && mfun == NULL)
561  DEBUG_FTRACE ("no symbol at %s", core_addr_to_string_nz (pc));
562 
563  /* If we didn't have a function, we create one. */
564  if (btinfo->functions.empty ())
565  return ftrace_new_function (btinfo, mfun, fun);
566 
567  /* If we had a gap before, we create a function. */
568  bfun = &btinfo->functions.back ();
569  if (bfun->errcode != 0)
570  return ftrace_new_function (btinfo, mfun, fun);
571 
572  /* Check the last instruction, if we have one.
573  We do this check first, since it allows us to fill in the call stack
574  links in addition to the normal flow links. */
575  btrace_insn *last = NULL;
576  if (!bfun->insn.empty ())
577  last = &bfun->insn.back ();
578 
579  if (last != NULL)
580  {
581  switch (last->iclass)
582  {
583  case BTRACE_INSN_RETURN:
584  {
585  const char *fname;
586 
587  /* On some systems, _dl_runtime_resolve returns to the resolved
588  function instead of jumping to it. From our perspective,
589  however, this is a tailcall.
590  If we treated it as return, we wouldn't be able to find the
591  resolved function in our stack back trace. Hence, we would
592  lose the current stack back trace and start anew with an empty
593  back trace. When the resolved function returns, we would then
594  create a stack back trace with the same function names but
595  different frame id's. This will confuse stepping. */
596  fname = ftrace_print_function_name (bfun);
597  if (strcmp (fname, "_dl_runtime_resolve") == 0)
598  return ftrace_new_tailcall (btinfo, mfun, fun);
599 
600  return ftrace_new_return (btinfo, mfun, fun);
601  }
602 
603  case BTRACE_INSN_CALL:
604  /* Ignore calls to the next instruction. They are used for PIC. */
605  if (last->pc + last->size == pc)
606  break;
607 
608  return ftrace_new_call (btinfo, mfun, fun);
609 
610  case BTRACE_INSN_JUMP:
611  {
612  CORE_ADDR start;
613 
614  start = get_pc_function_start (pc);
615 
616  /* A jump to the start of a function is (typically) a tail call. */
617  if (start == pc)
618  return ftrace_new_tailcall (btinfo, mfun, fun);
619 
620  /* If we can't determine the function for PC, we treat a jump at
621  the end of the block as tail call if we're switching functions
622  and as an intra-function branch if we don't. */
623  if (start == 0 && ftrace_function_switched (bfun, mfun, fun))
624  return ftrace_new_tailcall (btinfo, mfun, fun);
625 
626  break;
627  }
628  }
629  }
630 
631  /* Check if we're switching functions for some other reason. */
632  if (ftrace_function_switched (bfun, mfun, fun))
633  {
634  DEBUG_FTRACE ("switching from %s in %s at %s",
635  ftrace_print_insn_addr (last),
637  ftrace_print_filename (bfun));
638 
639  return ftrace_new_switch (btinfo, mfun, fun);
640  }
641 
642  return bfun;
643 }
644 
645 /* Add the instruction at PC to BFUN's instructions. */
646 
647 static void
649 {
650  bfun->insn.push_back (insn);
651 
652  if (record_debug > 1)
653  ftrace_debug (bfun, "update insn");
654 }
655 
656 /* Classify the instruction at PC. */
657 
658 static enum btrace_insn_class
660 {
661  enum btrace_insn_class iclass;
662 
663  iclass = BTRACE_INSN_OTHER;
664  TRY
665  {
666  if (gdbarch_insn_is_call (gdbarch, pc))
667  iclass = BTRACE_INSN_CALL;
668  else if (gdbarch_insn_is_ret (gdbarch, pc))
669  iclass = BTRACE_INSN_RETURN;
670  else if (gdbarch_insn_is_jump (gdbarch, pc))
671  iclass = BTRACE_INSN_JUMP;
672  }
674  {
675  }
676  END_CATCH
677 
678  return iclass;
679 }
680 
681 /* Try to match the back trace at LHS to the back trace at RHS. Returns the
682  number of matching function segments or zero if the back traces do not
683  match. BTINFO is the branch trace information for the current thread. */
684 
685 static int
687  struct btrace_function *lhs,
688  struct btrace_function *rhs)
689 {
690  int matches;
691 
692  for (matches = 0; lhs != NULL && rhs != NULL; ++matches)
693  {
694  if (ftrace_function_switched (lhs, rhs->msym, rhs->sym))
695  return 0;
696 
697  lhs = ftrace_get_caller (btinfo, lhs);
698  rhs = ftrace_get_caller (btinfo, rhs);
699  }
700 
701  return matches;
702 }
703 
704 /* Add ADJUSTMENT to the level of BFUN and succeeding function segments.
705  BTINFO is the branch trace information for the current thread. */
706 
707 static void
709  struct btrace_function *bfun, int adjustment)
710 {
711  if (adjustment == 0)
712  return;
713 
714  DEBUG_FTRACE ("fixup level (%+d)", adjustment);
715  ftrace_debug (bfun, "..bfun");
716 
717  while (bfun != NULL)
718  {
719  bfun->level += adjustment;
720  bfun = ftrace_find_call_by_number (btinfo, bfun->number + 1);
721  }
722 }
723 
724 /* Recompute the global level offset. Traverse the function trace and compute
725  the global level offset as the negative of the minimal function level. */
726 
727 static void
729 {
730  int level = INT_MAX;
731 
732  if (btinfo == NULL)
733  return;
734 
735  if (btinfo->functions.empty ())
736  return;
737 
738  unsigned int length = btinfo->functions.size() - 1;
739  for (unsigned int i = 0; i < length; ++i)
740  level = std::min (level, btinfo->functions[i].level);
741 
742  /* The last function segment contains the current instruction, which is not
743  really part of the trace. If it contains just this one instruction, we
744  ignore the segment. */
745  struct btrace_function *last = &btinfo->functions.back();
746  if (last->insn.size () != 1)
747  level = std::min (level, last->level);
748 
749  DEBUG_FTRACE ("setting global level offset: %d", -level);
750  btinfo->level = -level;
751 }
752 
753 /* Connect the function segments PREV and NEXT in a bottom-to-top walk as in
754  ftrace_connect_backtrace. BTINFO is the branch trace information for the
755  current thread. */
756 
757 static void
759  struct btrace_function *prev,
760  struct btrace_function *next)
761 {
762  DEBUG_FTRACE ("connecting...");
763  ftrace_debug (prev, "..prev");
764  ftrace_debug (next, "..next");
765 
766  /* The function segments are not yet connected. */
767  gdb_assert (prev->next == 0);
768  gdb_assert (next->prev == 0);
769 
770  prev->next = next->number;
771  next->prev = prev->number;
772 
773  /* We may have moved NEXT to a different function level. */
774  ftrace_fixup_level (btinfo, next, prev->level - next->level);
775 
776  /* If we run out of back trace for one, let's use the other's. */
777  if (prev->up == 0)
778  {
779  const btrace_function_flags flags = next->flags;
780 
781  next = ftrace_find_call_by_number (btinfo, next->up);
782  if (next != NULL)
783  {
784  DEBUG_FTRACE ("using next's callers");
785  ftrace_fixup_caller (btinfo, prev, next, flags);
786  }
787  }
788  else if (next->up == 0)
789  {
790  const btrace_function_flags flags = prev->flags;
791 
792  prev = ftrace_find_call_by_number (btinfo, prev->up);
793  if (prev != NULL)
794  {
795  DEBUG_FTRACE ("using prev's callers");
796  ftrace_fixup_caller (btinfo, next, prev, flags);
797  }
798  }
799  else
800  {
801  /* PREV may have a tailcall caller, NEXT can't. If it does, fixup the up
802  link to add the tail callers to NEXT's back trace.
803 
804  This removes NEXT->UP from NEXT's back trace. It will be added back
805  when connecting NEXT and PREV's callers - provided they exist.
806 
807  If PREV's back trace consists of a series of tail calls without an
808  actual call, there will be no further connection and NEXT's caller will
809  be removed for good. To catch this case, we handle it here and connect
810  the top of PREV's back trace to NEXT's caller. */
811  if ((prev->flags & BFUN_UP_LINKS_TO_TAILCALL) != 0)
812  {
813  struct btrace_function *caller;
814  btrace_function_flags next_flags, prev_flags;
815 
816  /* We checked NEXT->UP above so CALLER can't be NULL. */
817  caller = ftrace_find_call_by_number (btinfo, next->up);
818  next_flags = next->flags;
819  prev_flags = prev->flags;
820 
821  DEBUG_FTRACE ("adding prev's tail calls to next");
822 
823  prev = ftrace_find_call_by_number (btinfo, prev->up);
824  ftrace_fixup_caller (btinfo, next, prev, prev_flags);
825 
826  for (; prev != NULL; prev = ftrace_find_call_by_number (btinfo,
827  prev->up))
828  {
829  /* At the end of PREV's back trace, continue with CALLER. */
830  if (prev->up == 0)
831  {
832  DEBUG_FTRACE ("fixing up link for tailcall chain");
833  ftrace_debug (prev, "..top");
834  ftrace_debug (caller, "..up");
835 
836  ftrace_fixup_caller (btinfo, prev, caller, next_flags);
837 
838  /* If we skipped any tail calls, this may move CALLER to a
839  different function level.
840 
841  Note that changing CALLER's level is only OK because we
842  know that this is the last iteration of the bottom-to-top
843  walk in ftrace_connect_backtrace.
844 
845  Otherwise we will fix up CALLER's level when we connect it
846  to PREV's caller in the next iteration. */
847  ftrace_fixup_level (btinfo, caller,
848  prev->level - caller->level - 1);
849  break;
850  }
851 
852  /* There's nothing to do if we find a real call. */
853  if ((prev->flags & BFUN_UP_LINKS_TO_TAILCALL) == 0)
854  {
855  DEBUG_FTRACE ("will fix up link in next iteration");
856  break;
857  }
858  }
859  }
860  }
861 }
862 
863 /* Connect function segments on the same level in the back trace at LHS and RHS.
864  The back traces at LHS and RHS are expected to match according to
865  ftrace_match_backtrace. BTINFO is the branch trace information for the
866  current thread. */
867 
868 static void
870  struct btrace_function *lhs,
871  struct btrace_function *rhs)
872 {
873  while (lhs != NULL && rhs != NULL)
874  {
875  struct btrace_function *prev, *next;
876 
877  gdb_assert (!ftrace_function_switched (lhs, rhs->msym, rhs->sym));
878 
879  /* Connecting LHS and RHS may change the up link. */
880  prev = lhs;
881  next = rhs;
882 
883  lhs = ftrace_get_caller (btinfo, lhs);
884  rhs = ftrace_get_caller (btinfo, rhs);
885 
886  ftrace_connect_bfun (btinfo, prev, next);
887  }
888 }
889 
890 /* Bridge the gap between two function segments left and right of a gap if their
891  respective back traces match in at least MIN_MATCHES functions. BTINFO is
892  the branch trace information for the current thread.
893 
894  Returns non-zero if the gap could be bridged, zero otherwise. */
895 
896 static int
898  struct btrace_function *lhs, struct btrace_function *rhs,
899  int min_matches)
900 {
901  struct btrace_function *best_l, *best_r, *cand_l, *cand_r;
902  int best_matches;
903 
904  DEBUG_FTRACE ("checking gap at insn %u (req matches: %d)",
905  rhs->insn_offset - 1, min_matches);
906 
907  best_matches = 0;
908  best_l = NULL;
909  best_r = NULL;
910 
911  /* We search the back traces of LHS and RHS for valid connections and connect
912  the two functon segments that give the longest combined back trace. */
913 
914  for (cand_l = lhs; cand_l != NULL;
915  cand_l = ftrace_get_caller (btinfo, cand_l))
916  for (cand_r = rhs; cand_r != NULL;
917  cand_r = ftrace_get_caller (btinfo, cand_r))
918  {
919  int matches;
920 
921  matches = ftrace_match_backtrace (btinfo, cand_l, cand_r);
922  if (best_matches < matches)
923  {
924  best_matches = matches;
925  best_l = cand_l;
926  best_r = cand_r;
927  }
928  }
929 
930  /* We need at least MIN_MATCHES matches. */
931  gdb_assert (min_matches > 0);
932  if (best_matches < min_matches)
933  return 0;
934 
935  DEBUG_FTRACE ("..matches: %d", best_matches);
936 
937  /* We will fix up the level of BEST_R and succeeding function segments such
938  that BEST_R's level matches BEST_L's when we connect BEST_L to BEST_R.
939 
940  This will ignore the level of RHS and following if BEST_R != RHS. I.e. if
941  BEST_R is a successor of RHS in the back trace of RHS (phases 1 and 3).
942 
943  To catch this, we already fix up the level here where we can start at RHS
944  instead of at BEST_R. We will ignore the level fixup when connecting
945  BEST_L to BEST_R as they will already be on the same level. */
946  ftrace_fixup_level (btinfo, rhs, best_l->level - best_r->level);
947 
948  ftrace_connect_backtrace (btinfo, best_l, best_r);
949 
950  return best_matches;
951 }
952 
953 /* Try to bridge gaps due to overflow or decode errors by connecting the
954  function segments that are separated by the gap. */
955 
956 static void
957 btrace_bridge_gaps (struct thread_info *tp, std::vector<unsigned int> &gaps)
958 {
959  struct btrace_thread_info *btinfo = &tp->btrace;
960  std::vector<unsigned int> remaining;
961  int min_matches;
962 
963  DEBUG ("bridge gaps");
964 
965  /* We require a minimum amount of matches for bridging a gap. The number of
966  required matches will be lowered with each iteration.
967 
968  The more matches the higher our confidence that the bridging is correct.
969  For big gaps or small traces, however, it may not be feasible to require a
970  high number of matches. */
971  for (min_matches = 5; min_matches > 0; --min_matches)
972  {
973  /* Let's try to bridge as many gaps as we can. In some cases, we need to
974  skip a gap and revisit it again after we closed later gaps. */
975  while (!gaps.empty ())
976  {
977  for (const unsigned int number : gaps)
978  {
979  struct btrace_function *gap, *lhs, *rhs;
980  int bridged;
981 
982  gap = ftrace_find_call_by_number (btinfo, number);
983 
984  /* We may have a sequence of gaps if we run from one error into
985  the next as we try to re-sync onto the trace stream. Ignore
986  all but the leftmost gap in such a sequence.
987 
988  Also ignore gaps at the beginning of the trace. */
989  lhs = ftrace_find_call_by_number (btinfo, gap->number - 1);
990  if (lhs == NULL || lhs->errcode != 0)
991  continue;
992 
993  /* Skip gaps to the right. */
994  rhs = ftrace_find_call_by_number (btinfo, gap->number + 1);
995  while (rhs != NULL && rhs->errcode != 0)
996  rhs = ftrace_find_call_by_number (btinfo, rhs->number + 1);
997 
998  /* Ignore gaps at the end of the trace. */
999  if (rhs == NULL)
1000  continue;
1001 
1002  bridged = ftrace_bridge_gap (btinfo, lhs, rhs, min_matches);
1003 
1004  /* Keep track of gaps we were not able to bridge and try again.
1005  If we just pushed them to the end of GAPS we would risk an
1006  infinite loop in case we simply cannot bridge a gap. */
1007  if (bridged == 0)
1008  remaining.push_back (number);
1009  }
1010 
1011  /* Let's see if we made any progress. */
1012  if (remaining.size () == gaps.size ())
1013  break;
1014 
1015  gaps.clear ();
1016  gaps.swap (remaining);
1017  }
1018 
1019  /* We get here if either GAPS is empty or if GAPS equals REMAINING. */
1020  if (gaps.empty ())
1021  break;
1022 
1023  remaining.clear ();
1024  }
1025 
1026  /* We may omit this in some cases. Not sure it is worth the extra
1027  complication, though. */
1029 }
1030 
1031 /* Compute the function branch trace from BTS trace. */
1032 
1033 static void
1035  const struct btrace_data_bts *btrace,
1036  std::vector<unsigned int> &gaps)
1037 {
1038  struct btrace_thread_info *btinfo;
1039  struct gdbarch *gdbarch;
1040  unsigned int blk;
1041  int level;
1042 
1043  gdbarch = target_gdbarch ();
1044  btinfo = &tp->btrace;
1045  blk = VEC_length (btrace_block_s, btrace->blocks);
1046 
1047  if (btinfo->functions.empty ())
1048  level = INT_MAX;
1049  else
1050  level = -btinfo->level;
1051 
1052  while (blk != 0)
1053  {
1055  CORE_ADDR pc;
1056 
1057  blk -= 1;
1058 
1059  block = VEC_index (btrace_block_s, btrace->blocks, blk);
1060  pc = block->begin;
1061 
1062  for (;;)
1063  {
1064  struct btrace_function *bfun;
1065  struct btrace_insn insn;
1066  int size;
1067 
1068  /* We should hit the end of the block. Warn if we went too far. */
1069  if (block->end < pc)
1070  {
1071  /* Indicate the gap in the trace. */
1072  bfun = ftrace_new_gap (btinfo, BDE_BTS_OVERFLOW, gaps);
1073 
1074  warning (_("Recorded trace may be corrupted at instruction "
1075  "%u (pc = %s)."), bfun->insn_offset - 1,
1077 
1078  break;
1079  }
1080 
1081  bfun = ftrace_update_function (btinfo, pc);
1082 
1083  /* Maintain the function level offset.
1084  For all but the last block, we do it here. */
1085  if (blk != 0)
1086  level = std::min (level, bfun->level);
1087 
1088  size = 0;
1089  TRY
1090  {
1092  }
1094  {
1095  }
1096  END_CATCH
1097 
1098  insn.pc = pc;
1099  insn.size = size;
1101  insn.flags = 0;
1102 
1103  ftrace_update_insns (bfun, insn);
1104 
1105  /* We're done once we pushed the instruction at the end. */
1106  if (block->end == pc)
1107  break;
1108 
1109  /* We can't continue if we fail to compute the size. */
1110  if (size <= 0)
1111  {
1112  /* Indicate the gap in the trace. We just added INSN so we're
1113  not at the beginning. */
1114  bfun = ftrace_new_gap (btinfo, BDE_BTS_INSN_SIZE, gaps);
1115 
1116  warning (_("Recorded trace may be incomplete at instruction %u "
1117  "(pc = %s)."), bfun->insn_offset - 1,
1119 
1120  break;
1121  }
1122 
1123  pc += size;
1124 
1125  /* Maintain the function level offset.
1126  For the last block, we do it here to not consider the last
1127  instruction.
1128  Since the last instruction corresponds to the current instruction
1129  and is not really part of the execution history, it shouldn't
1130  affect the level. */
1131  if (blk == 0)
1132  level = std::min (level, bfun->level);
1133  }
1134  }
1135 
1136  /* LEVEL is the minimal function level of all btrace function segments.
1137  Define the global level offset to -LEVEL so all function levels are
1138  normalized to start at zero. */
1139  btinfo->level = -level;
1140 }
1141 
1142 #if defined (HAVE_LIBIPT)
1143 
1144 static enum btrace_insn_class
1145 pt_reclassify_insn (enum pt_insn_class iclass)
1146 {
1147  switch (iclass)
1148  {
1149  case ptic_call:
1150  return BTRACE_INSN_CALL;
1151 
1152  case ptic_return:
1153  return BTRACE_INSN_RETURN;
1154 
1155  case ptic_jump:
1156  return BTRACE_INSN_JUMP;
1157 
1158  default:
1159  return BTRACE_INSN_OTHER;
1160  }
1161 }
1162 
1163 /* Return the btrace instruction flags for INSN. */
1164 
1165 static btrace_insn_flags
1166 pt_btrace_insn_flags (const struct pt_insn &insn)
1167 {
1168  btrace_insn_flags flags = 0;
1169 
1170  if (insn.speculative)
1172 
1173  return flags;
1174 }
1175 
1176 /* Return the btrace instruction for INSN. */
1177 
1178 static btrace_insn
1179 pt_btrace_insn (const struct pt_insn &insn)
1180 {
1181  return {(CORE_ADDR) insn.ip, (gdb_byte) insn.size,
1182  pt_reclassify_insn (insn.iclass),
1183  pt_btrace_insn_flags (insn)};
1184 }
1185 
1186 /* Handle instruction decode events (libipt-v2). */
1187 
1188 static int
1189 handle_pt_insn_events (struct btrace_thread_info *btinfo,
1190  struct pt_insn_decoder *decoder,
1191  std::vector<unsigned int> &gaps, int status)
1192 {
1193 #if defined (HAVE_PT_INSN_EVENT)
1194  while (status & pts_event_pending)
1195  {
1196  struct btrace_function *bfun;
1197  struct pt_event event;
1198  uint64_t offset;
1199 
1200  status = pt_insn_event (decoder, &event, sizeof (event));
1201  if (status < 0)
1202  break;
1203 
1204  switch (event.type)
1205  {
1206  default:
1207  break;
1208 
1209  case ptev_enabled:
1210  if (event.variant.enabled.resumed == 0 && !btinfo->functions.empty ())
1211  {
1212  bfun = ftrace_new_gap (btinfo, BDE_PT_DISABLED, gaps);
1213 
1214  pt_insn_get_offset (decoder, &offset);
1215 
1216  warning (_("Non-contiguous trace at instruction %u (offset = 0x%"
1217  PRIx64 ")."), bfun->insn_offset - 1, offset);
1218  }
1219 
1220  break;
1221 
1222  case ptev_overflow:
1223  bfun = ftrace_new_gap (btinfo, BDE_PT_OVERFLOW, gaps);
1224 
1225  pt_insn_get_offset (decoder, &offset);
1226 
1227  warning (_("Overflow at instruction %u (offset = 0x%" PRIx64 ")."),
1228  bfun->insn_offset - 1, offset);
1229 
1230  break;
1231  }
1232  }
1233 #endif /* defined (HAVE_PT_INSN_EVENT) */
1234 
1235  return status;
1236 }
1237 
1238 /* Handle events indicated by flags in INSN (libipt-v1). */
1239 
1240 static void
1241 handle_pt_insn_event_flags (struct btrace_thread_info *btinfo,
1242  struct pt_insn_decoder *decoder,
1243  const struct pt_insn &insn,
1244  std::vector<unsigned int> &gaps)
1245 {
1246 #if defined (HAVE_STRUCT_PT_INSN_ENABLED)
1247  /* Tracing is disabled and re-enabled each time we enter the kernel. Most
1248  times, we continue from the same instruction we stopped before. This is
1249  indicated via the RESUMED instruction flag. The ENABLED instruction flag
1250  means that we continued from some other instruction. Indicate this as a
1251  trace gap except when tracing just started. */
1252  if (insn.enabled && !btinfo->functions.empty ())
1253  {
1254  struct btrace_function *bfun;
1255  uint64_t offset;
1256 
1257  bfun = ftrace_new_gap (btinfo, BDE_PT_DISABLED, gaps);
1258 
1259  pt_insn_get_offset (decoder, &offset);
1260 
1261  warning (_("Non-contiguous trace at instruction %u (offset = 0x%" PRIx64
1262  ", pc = 0x%" PRIx64 ")."), bfun->insn_offset - 1, offset,
1263  insn.ip);
1264  }
1265 #endif /* defined (HAVE_STRUCT_PT_INSN_ENABLED) */
1266 
1267 #if defined (HAVE_STRUCT_PT_INSN_RESYNCED)
1268  /* Indicate trace overflows. */
1269  if (insn.resynced)
1270  {
1271  struct btrace_function *bfun;
1272  uint64_t offset;
1273 
1274  bfun = ftrace_new_gap (btinfo, BDE_PT_OVERFLOW, gaps);
1275 
1276  pt_insn_get_offset (decoder, &offset);
1277 
1278  warning (_("Overflow at instruction %u (offset = 0x%" PRIx64 ", pc = 0x%"
1279  PRIx64 ")."), bfun->insn_offset - 1, offset, insn.ip);
1280  }
1281 #endif /* defined (HAVE_STRUCT_PT_INSN_RESYNCED) */
1282 }
1283 
1284 /* Add function branch trace to BTINFO using DECODER. */
1285 
1286 static void
1287 ftrace_add_pt (struct btrace_thread_info *btinfo,
1288  struct pt_insn_decoder *decoder,
1289  int *plevel,
1290  std::vector<unsigned int> &gaps)
1291 {
1292  struct btrace_function *bfun;
1293  uint64_t offset;
1294  int status;
1295 
1296  for (;;)
1297  {
1298  struct pt_insn insn;
1299 
1300  status = pt_insn_sync_forward (decoder);
1301  if (status < 0)
1302  {
1303  if (status != -pte_eos)
1304  warning (_("Failed to synchronize onto the Intel Processor "
1305  "Trace stream: %s."), pt_errstr (pt_errcode (status)));
1306  break;
1307  }
1308 
1309  for (;;)
1310  {
1311  /* Handle events from the previous iteration or synchronization. */
1312  status = handle_pt_insn_events (btinfo, decoder, gaps, status);
1313  if (status < 0)
1314  break;
1315 
1316  status = pt_insn_next (decoder, &insn, sizeof(insn));
1317  if (status < 0)
1318  break;
1319 
1320  /* Handle events indicated by flags in INSN. */
1321  handle_pt_insn_event_flags (btinfo, decoder, insn, gaps);
1322 
1323  bfun = ftrace_update_function (btinfo, insn.ip);
1324 
1325  /* Maintain the function level offset. */
1326  *plevel = std::min (*plevel, bfun->level);
1327 
1328  ftrace_update_insns (bfun, pt_btrace_insn (insn));
1329  }
1330 
1331  if (status == -pte_eos)
1332  break;
1333 
1334  /* Indicate the gap in the trace. */
1335  bfun = ftrace_new_gap (btinfo, status, gaps);
1336 
1337  pt_insn_get_offset (decoder, &offset);
1338 
1339  warning (_("Decode error (%d) at instruction %u (offset = 0x%" PRIx64
1340  ", pc = 0x%" PRIx64 "): %s."), status, bfun->insn_offset - 1,
1341  offset, insn.ip, pt_errstr (pt_errcode (status)));
1342  }
1343 }
1344 
1345 /* A callback function to allow the trace decoder to read the inferior's
1346  memory. */
1347 
1348 static int
1349 btrace_pt_readmem_callback (gdb_byte *buffer, size_t size,
1350  const struct pt_asid *asid, uint64_t pc,
1351  void *context)
1352 {
1353  int result, errcode;
1354 
1355  result = (int) size;
1356  TRY
1357  {
1358  errcode = target_read_code ((CORE_ADDR) pc, buffer, size);
1359  if (errcode != 0)
1360  result = -pte_nomap;
1361  }
1363  {
1364  result = -pte_nomap;
1365  }
1366  END_CATCH
1367 
1368  return result;
1369 }
1370 
1371 /* Translate the vendor from one enum to another. */
1372 
1373 static enum pt_cpu_vendor
1374 pt_translate_cpu_vendor (enum btrace_cpu_vendor vendor)
1375 {
1376  switch (vendor)
1377  {
1378  default:
1379  return pcv_unknown;
1380 
1381  case CV_INTEL:
1382  return pcv_intel;
1383  }
1384 }
1385 
1386 /* Finalize the function branch trace after decode. */
1387 
1388 static void btrace_finalize_ftrace_pt (struct pt_insn_decoder *decoder,
1389  struct thread_info *tp, int level)
1390 {
1391  pt_insn_free_decoder (decoder);
1392 
1393  /* LEVEL is the minimal function level of all btrace function segments.
1394  Define the global level offset to -LEVEL so all function levels are
1395  normalized to start at zero. */
1396  tp->btrace.level = -level;
1397 
1398  /* Add a single last instruction entry for the current PC.
1399  This allows us to compute the backtrace at the current PC using both
1400  standard unwind and btrace unwind.
1401  This extra entry is ignored by all record commands. */
1402  btrace_add_pc (tp);
1403 }
1404 
1405 /* Compute the function branch trace from Intel Processor Trace
1406  format. */
1407 
1408 static void
1410  const struct btrace_data_pt *btrace,
1411  std::vector<unsigned int> &gaps)
1412 {
1413  struct btrace_thread_info *btinfo;
1414  struct pt_insn_decoder *decoder;
1415  struct pt_config config;
1416  int level, errcode;
1417 
1418  if (btrace->size == 0)
1419  return;
1420 
1421  btinfo = &tp->btrace;
1422  if (btinfo->functions.empty ())
1423  level = INT_MAX;
1424  else
1425  level = -btinfo->level;
1426 
1427  pt_config_init(&config);
1428  config.begin = btrace->data;
1429  config.end = btrace->data + btrace->size;
1430 
1431  config.cpu.vendor = pt_translate_cpu_vendor (btrace->config.cpu.vendor);
1432  config.cpu.family = btrace->config.cpu.family;
1433  config.cpu.model = btrace->config.cpu.model;
1434  config.cpu.stepping = btrace->config.cpu.stepping;
1435 
1436  errcode = pt_cpu_errata (&config.errata, &config.cpu);
1437  if (errcode < 0)
1438  error (_("Failed to configure the Intel Processor Trace decoder: %s."),
1439  pt_errstr (pt_errcode (errcode)));
1440 
1441  decoder = pt_insn_alloc_decoder (&config);
1442  if (decoder == NULL)
1443  error (_("Failed to allocate the Intel Processor Trace decoder."));
1444 
1445  TRY
1446  {
1447  struct pt_image *image;
1448 
1449  image = pt_insn_get_image(decoder);
1450  if (image == NULL)
1451  error (_("Failed to configure the Intel Processor Trace decoder."));
1452 
1453  errcode = pt_image_set_callback(image, btrace_pt_readmem_callback, NULL);
1454  if (errcode < 0)
1455  error (_("Failed to configure the Intel Processor Trace decoder: "
1456  "%s."), pt_errstr (pt_errcode (errcode)));
1457 
1458  ftrace_add_pt (btinfo, decoder, &level, gaps);
1459  }
1461  {
1462  /* Indicate a gap in the trace if we quit trace processing. */
1463  if (error.reason == RETURN_QUIT && !btinfo->functions.empty ())
1464  ftrace_new_gap (btinfo, BDE_PT_USER_QUIT, gaps);
1465 
1466  btrace_finalize_ftrace_pt (decoder, tp, level);
1467 
1469  }
1470  END_CATCH
1471 
1472  btrace_finalize_ftrace_pt (decoder, tp, level);
1473 }
1474 
1475 #else /* defined (HAVE_LIBIPT) */
1476 
1477 static void
1479  const struct btrace_data_pt *btrace,
1480  std::vector<unsigned int> &gaps)
1481 {
1482  internal_error (__FILE__, __LINE__, _("Unexpected branch trace format."));
1483 }
1484 
1485 #endif /* defined (HAVE_LIBIPT) */
1486 
1487 /* Compute the function branch trace from a block branch trace BTRACE for
1488  a thread given by BTINFO. */
1489 
1490 static void
1492  std::vector<unsigned int> &gaps)
1493 {
1494  DEBUG ("compute ftrace");
1495 
1496  switch (btrace->format)
1497  {
1498  case BTRACE_FORMAT_NONE:
1499  return;
1500 
1501  case BTRACE_FORMAT_BTS:
1502  btrace_compute_ftrace_bts (tp, &btrace->variant.bts, gaps);
1503  return;
1504 
1505  case BTRACE_FORMAT_PT:
1506  btrace_compute_ftrace_pt (tp, &btrace->variant.pt, gaps);
1507  return;
1508  }
1509 
1510  internal_error (__FILE__, __LINE__, _("Unkown branch trace format."));
1511 }
1512 
1513 static void
1514 btrace_finalize_ftrace (struct thread_info *tp, std::vector<unsigned int> &gaps)
1515 {
1516  if (!gaps.empty ())
1517  {
1518  tp->btrace.ngaps += gaps.size ();
1519  btrace_bridge_gaps (tp, gaps);
1520  }
1521 }
1522 
1523 static void
1524 btrace_compute_ftrace (struct thread_info *tp, struct btrace_data *btrace)
1525 {
1526  std::vector<unsigned int> gaps;
1527 
1528  TRY
1529  {
1530  btrace_compute_ftrace_1 (tp, btrace, gaps);
1531  }
1533  {
1534  btrace_finalize_ftrace (tp, gaps);
1535 
1537  }
1538  END_CATCH
1539 
1540  btrace_finalize_ftrace (tp, gaps);
1541 }
1542 
1543 /* Add an entry for the current PC. */
1544 
1545 static void
1547 {
1548  struct btrace_data btrace;
1549  struct btrace_block *block;
1550  struct regcache *regcache;
1551  struct cleanup *cleanup;
1552  CORE_ADDR pc;
1553 
1555  pc = regcache_read_pc (regcache);
1556 
1557  btrace_data_init (&btrace);
1558  btrace.format = BTRACE_FORMAT_BTS;
1559  btrace.variant.bts.blocks = NULL;
1560 
1561  cleanup = make_cleanup_btrace_data (&btrace);
1562 
1563  block = VEC_safe_push (btrace_block_s, btrace.variant.bts.blocks, NULL);
1564  block->begin = pc;
1565  block->end = pc;
1566 
1567  btrace_compute_ftrace (tp, &btrace);
1568 
1569  do_cleanups (cleanup);
1570 }
1571 
1572 /* See btrace.h. */
1573 
1574 void
1575 btrace_enable (struct thread_info *tp, const struct btrace_config *conf)
1576 {
1577  if (tp->btrace.target != NULL)
1578  return;
1579 
1580 #if !defined (HAVE_LIBIPT)
1581  if (conf->format == BTRACE_FORMAT_PT)
1582  error (_("GDB does not support Intel Processor Trace."));
1583 #endif /* !defined (HAVE_LIBIPT) */
1584 
1585  if (!target_supports_btrace (conf->format))
1586  error (_("Target does not support branch tracing."));
1587 
1588  DEBUG ("enable thread %s (%s)", print_thread_id (tp),
1589  target_pid_to_str (tp->ptid));
1590 
1591  tp->btrace.target = target_enable_btrace (tp->ptid, conf);
1592 
1593  /* We're done if we failed to enable tracing. */
1594  if (tp->btrace.target == NULL)
1595  return;
1596 
1597  /* We need to undo the enable in case of errors. */
1598  TRY
1599  {
1600  /* Add an entry for the current PC so we start tracing from where we
1601  enabled it.
1602 
1603  If we can't access TP's registers, TP is most likely running. In this
1604  case, we can't really say where tracing was enabled so it should be
1605  safe to simply skip this step.
1606 
1607  This is not relevant for BTRACE_FORMAT_PT since the trace will already
1608  start at the PC at which tracing was enabled. */
1609  if (conf->format != BTRACE_FORMAT_PT
1611  btrace_add_pc (tp);
1612  }
1613  CATCH (exception, RETURN_MASK_ALL)
1614  {
1615  btrace_disable (tp);
1616 
1617  throw_exception (exception);
1618  }
1619  END_CATCH
1620 }
1621 
1622 /* See btrace.h. */
1623 
1624 const struct btrace_config *
1625 btrace_conf (const struct btrace_thread_info *btinfo)
1626 {
1627  if (btinfo->target == NULL)
1628  return NULL;
1629 
1630  return target_btrace_conf (btinfo->target);
1631 }
1632 
1633 /* See btrace.h. */
1634 
1635 void
1637 {
1638  struct btrace_thread_info *btp = &tp->btrace;
1639 
1640  if (btp->target == NULL)
1641  return;
1642 
1643  DEBUG ("disable thread %s (%s)", print_thread_id (tp),
1644  target_pid_to_str (tp->ptid));
1645 
1647  btp->target = NULL;
1648 
1649  btrace_clear (tp);
1650 }
1651 
1652 /* See btrace.h. */
1653 
1654 void
1656 {
1657  struct btrace_thread_info *btp = &tp->btrace;
1658 
1659  if (btp->target == NULL)
1660  return;
1661 
1662  DEBUG ("teardown thread %s (%s)", print_thread_id (tp),
1663  target_pid_to_str (tp->ptid));
1664 
1666  btp->target = NULL;
1667 
1668  btrace_clear (tp);
1669 }
1670 
1671 /* Stitch branch trace in BTS format. */
1672 
1673 static int
1674 btrace_stitch_bts (struct btrace_data_bts *btrace, struct thread_info *tp)
1675 {
1676  struct btrace_thread_info *btinfo;
1677  struct btrace_function *last_bfun;
1678  btrace_block_s *first_new_block;
1679 
1680  btinfo = &tp->btrace;
1681  gdb_assert (!btinfo->functions.empty ());
1682  gdb_assert (!VEC_empty (btrace_block_s, btrace->blocks));
1683 
1684  last_bfun = &btinfo->functions.back ();
1685 
1686  /* If the existing trace ends with a gap, we just glue the traces
1687  together. We need to drop the last (i.e. chronologically first) block
1688  of the new trace, though, since we can't fill in the start address.*/
1689  if (last_bfun->insn.empty ())
1690  {
1691  VEC_pop (btrace_block_s, btrace->blocks);
1692  return 0;
1693  }
1694 
1695  /* Beware that block trace starts with the most recent block, so the
1696  chronologically first block in the new trace is the last block in
1697  the new trace's block vector. */
1698  first_new_block = VEC_last (btrace_block_s, btrace->blocks);
1699  const btrace_insn &last_insn = last_bfun->insn.back ();
1700 
1701  /* If the current PC at the end of the block is the same as in our current
1702  trace, there are two explanations:
1703  1. we executed the instruction and some branch brought us back.
1704  2. we have not made any progress.
1705  In the first case, the delta trace vector should contain at least two
1706  entries.
1707  In the second case, the delta trace vector should contain exactly one
1708  entry for the partial block containing the current PC. Remove it. */
1709  if (first_new_block->end == last_insn.pc
1710  && VEC_length (btrace_block_s, btrace->blocks) == 1)
1711  {
1712  VEC_pop (btrace_block_s, btrace->blocks);
1713  return 0;
1714  }
1715 
1716  DEBUG ("stitching %s to %s", ftrace_print_insn_addr (&last_insn),
1717  core_addr_to_string_nz (first_new_block->end));
1718 
1719  /* Do a simple sanity check to make sure we don't accidentally end up
1720  with a bad block. This should not occur in practice. */
1721  if (first_new_block->end < last_insn.pc)
1722  {
1723  warning (_("Error while trying to read delta trace. Falling back to "
1724  "a full read."));
1725  return -1;
1726  }
1727 
1728  /* We adjust the last block to start at the end of our current trace. */
1729  gdb_assert (first_new_block->begin == 0);
1730  first_new_block->begin = last_insn.pc;
1731 
1732  /* We simply pop the last insn so we can insert it again as part of
1733  the normal branch trace computation.
1734  Since instruction iterators are based on indices in the instructions
1735  vector, we don't leave any pointers dangling. */
1736  DEBUG ("pruning insn at %s for stitching",
1737  ftrace_print_insn_addr (&last_insn));
1738 
1739  last_bfun->insn.pop_back ();
1740 
1741  /* The instructions vector may become empty temporarily if this has
1742  been the only instruction in this function segment.
1743  This violates the invariant but will be remedied shortly by
1744  btrace_compute_ftrace when we add the new trace. */
1745 
1746  /* The only case where this would hurt is if the entire trace consisted
1747  of just that one instruction. If we remove it, we might turn the now
1748  empty btrace function segment into a gap. But we don't want gaps at
1749  the beginning. To avoid this, we remove the entire old trace. */
1750  if (last_bfun->number == 1 && last_bfun->insn.empty ())
1751  btrace_clear (tp);
1752 
1753  return 0;
1754 }
1755 
1756 /* Adjust the block trace in order to stitch old and new trace together.
1757  BTRACE is the new delta trace between the last and the current stop.
1758  TP is the traced thread.
1759  May modifx BTRACE as well as the existing trace in TP.
1760  Return 0 on success, -1 otherwise. */
1761 
1762 static int
1763 btrace_stitch_trace (struct btrace_data *btrace, struct thread_info *tp)
1764 {
1765  /* If we don't have trace, there's nothing to do. */
1766  if (btrace_data_empty (btrace))
1767  return 0;
1768 
1769  switch (btrace->format)
1770  {
1771  case BTRACE_FORMAT_NONE:
1772  return 0;
1773 
1774  case BTRACE_FORMAT_BTS:
1775  return btrace_stitch_bts (&btrace->variant.bts, tp);
1776 
1777  case BTRACE_FORMAT_PT:
1778  /* Delta reads are not supported. */
1779  return -1;
1780  }
1781 
1782  internal_error (__FILE__, __LINE__, _("Unkown branch trace format."));
1783 }
1784 
1785 /* Clear the branch trace histories in BTINFO. */
1786 
1787 static void
1789 {
1790  xfree (btinfo->insn_history);
1791  xfree (btinfo->call_history);
1792  xfree (btinfo->replay);
1793 
1794  btinfo->insn_history = NULL;
1795  btinfo->call_history = NULL;
1796  btinfo->replay = NULL;
1797 }
1798 
1799 /* Clear the branch trace maintenance histories in BTINFO. */
1800 
1801 static void
1803 {
1804  switch (btinfo->data.format)
1805  {
1806  default:
1807  break;
1808 
1809  case BTRACE_FORMAT_BTS:
1810  btinfo->maint.variant.bts.packet_history.begin = 0;
1811  btinfo->maint.variant.bts.packet_history.end = 0;
1812  break;
1813 
1814 #if defined (HAVE_LIBIPT)
1815  case BTRACE_FORMAT_PT:
1816  xfree (btinfo->maint.variant.pt.packets);
1817 
1818  btinfo->maint.variant.pt.packets = NULL;
1819  btinfo->maint.variant.pt.packet_history.begin = 0;
1820  btinfo->maint.variant.pt.packet_history.end = 0;
1821  break;
1822 #endif /* defined (HAVE_LIBIPT) */
1823  }
1824 }
1825 
1826 /* See btrace.h. */
1827 
1828 const char *
1830 {
1831  switch (format)
1832  {
1833  case BTRACE_FORMAT_BTS:
1834  switch (errcode)
1835  {
1836  case BDE_BTS_OVERFLOW:
1837  return _("instruction overflow");
1838 
1839  case BDE_BTS_INSN_SIZE:
1840  return _("unknown instruction");
1841 
1842  default:
1843  break;
1844  }
1845  break;
1846 
1847 #if defined (HAVE_LIBIPT)
1848  case BTRACE_FORMAT_PT:
1849  switch (errcode)
1850  {
1851  case BDE_PT_USER_QUIT:
1852  return _("trace decode cancelled");
1853 
1854  case BDE_PT_DISABLED:
1855  return _("disabled");
1856 
1857  case BDE_PT_OVERFLOW:
1858  return _("overflow");
1859 
1860  default:
1861  if (errcode < 0)
1862  return pt_errstr (pt_errcode (errcode));
1863  break;
1864  }
1865  break;
1866 #endif /* defined (HAVE_LIBIPT) */
1867 
1868  default:
1869  break;
1870  }
1871 
1872  return _("unknown");
1873 }
1874 
1875 /* See btrace.h. */
1876 
1877 void
1879 {
1880  struct btrace_thread_info *btinfo;
1881  struct btrace_target_info *tinfo;
1882  struct btrace_data btrace;
1883  struct cleanup *cleanup;
1884  int errcode;
1885 
1886  DEBUG ("fetch thread %s (%s)", print_thread_id (tp),
1887  target_pid_to_str (tp->ptid));
1888 
1889  btinfo = &tp->btrace;
1890  tinfo = btinfo->target;
1891  if (tinfo == NULL)
1892  return;
1893 
1894  /* There's no way we could get new trace while replaying.
1895  On the other hand, delta trace would return a partial record with the
1896  current PC, which is the replay PC, not the last PC, as expected. */
1897  if (btinfo->replay != NULL)
1898  return;
1899 
1900  /* With CLI usage, TP->PTID always equals INFERIOR_PTID here. Now that we
1901  can store a gdb.Record object in Python referring to a different thread
1902  than the current one, temporarily set INFERIOR_PTID. */
1903  scoped_restore save_inferior_ptid = make_scoped_restore (&inferior_ptid);
1904  inferior_ptid = tp->ptid;
1905 
1906  /* We should not be called on running or exited threads. */
1908 
1909  btrace_data_init (&btrace);
1910  cleanup = make_cleanup_btrace_data (&btrace);
1911 
1912  /* Let's first try to extend the trace we already have. */
1913  if (!btinfo->functions.empty ())
1914  {
1915  errcode = target_read_btrace (&btrace, tinfo, BTRACE_READ_DELTA);
1916  if (errcode == 0)
1917  {
1918  /* Success. Let's try to stitch the traces together. */
1919  errcode = btrace_stitch_trace (&btrace, tp);
1920  }
1921  else
1922  {
1923  /* We failed to read delta trace. Let's try to read new trace. */
1924  errcode = target_read_btrace (&btrace, tinfo, BTRACE_READ_NEW);
1925 
1926  /* If we got any new trace, discard what we have. */
1927  if (errcode == 0 && !btrace_data_empty (&btrace))
1928  btrace_clear (tp);
1929  }
1930 
1931  /* If we were not able to read the trace, we start over. */
1932  if (errcode != 0)
1933  {
1934  btrace_clear (tp);
1935  errcode = target_read_btrace (&btrace, tinfo, BTRACE_READ_ALL);
1936  }
1937  }
1938  else
1939  errcode = target_read_btrace (&btrace, tinfo, BTRACE_READ_ALL);
1940 
1941  /* If we were not able to read the branch trace, signal an error. */
1942  if (errcode != 0)
1943  error (_("Failed to read branch trace."));
1944 
1945  /* Compute the trace, provided we have any. */
1946  if (!btrace_data_empty (&btrace))
1947  {
1948  /* Store the raw trace data. The stored data will be cleared in
1949  btrace_clear, so we always append the new trace. */
1950  btrace_data_append (&btinfo->data, &btrace);
1951  btrace_maint_clear (btinfo);
1952 
1953  btrace_clear_history (btinfo);
1954  btrace_compute_ftrace (tp, &btrace);
1955  }
1956 
1957  do_cleanups (cleanup);
1958 }
1959 
1960 /* See btrace.h. */
1961 
1962 void
1964 {
1965  struct btrace_thread_info *btinfo;
1966 
1967  DEBUG ("clear thread %s (%s)", print_thread_id (tp),
1968  target_pid_to_str (tp->ptid));
1969 
1970  /* Make sure btrace frames that may hold a pointer into the branch
1971  trace data are destroyed. */
1972  reinit_frame_cache ();
1973 
1974  btinfo = &tp->btrace;
1975 
1976  btinfo->functions.clear ();
1977  btinfo->ngaps = 0;
1978 
1979  /* Must clear the maint data before - it depends on BTINFO->DATA. */
1980  btrace_maint_clear (btinfo);
1981  btrace_data_clear (&btinfo->data);
1982  btrace_clear_history (btinfo);
1983 }
1984 
1985 /* See btrace.h. */
1986 
1987 void
1989 {
1990  struct thread_info *tp;
1991 
1992  DEBUG ("free objfile");
1993 
1995  btrace_clear (tp);
1996 }
1997 
1998 #if defined (HAVE_LIBEXPAT)
1999 
2000 /* Check the btrace document version. */
2001 
2002 static void
2004  const struct gdb_xml_element *element,
2005  void *user_data, VEC (gdb_xml_value_s) *attributes)
2006 {
2007  const char *version
2008  = (const char *) xml_find_attribute (attributes, "version")->value;
2009 
2010  if (strcmp (version, "1.0") != 0)
2011  gdb_xml_error (parser, _("Unsupported btrace version: \"%s\""), version);
2012 }
2013 
2014 /* Parse a btrace "block" xml record. */
2015 
2016 static void
2018  const struct gdb_xml_element *element,
2019  void *user_data, VEC (gdb_xml_value_s) *attributes)
2020 {
2021  struct btrace_data *btrace;
2022  struct btrace_block *block;
2023  ULONGEST *begin, *end;
2024 
2025  btrace = (struct btrace_data *) user_data;
2026 
2027  switch (btrace->format)
2028  {
2029  case BTRACE_FORMAT_BTS:
2030  break;
2031 
2032  case BTRACE_FORMAT_NONE:
2033  btrace->format = BTRACE_FORMAT_BTS;
2034  btrace->variant.bts.blocks = NULL;
2035  break;
2036 
2037  default:
2038  gdb_xml_error (parser, _("Btrace format error."));
2039  }
2040 
2041  begin = (ULONGEST *) xml_find_attribute (attributes, "begin")->value;
2042  end = (ULONGEST *) xml_find_attribute (attributes, "end")->value;
2043 
2044  block = VEC_safe_push (btrace_block_s, btrace->variant.bts.blocks, NULL);
2045  block->begin = *begin;
2046  block->end = *end;
2047 }
2048 
2049 /* Parse a "raw" xml record. */
2050 
2051 static void
2052 parse_xml_raw (struct gdb_xml_parser *parser, const char *body_text,
2053  gdb_byte **pdata, size_t *psize)
2054 {
2055  struct cleanup *cleanup;
2056  gdb_byte *data, *bin;
2057  size_t len, size;
2058 
2059  len = strlen (body_text);
2060  if (len % 2 != 0)
2061  gdb_xml_error (parser, _("Bad raw data size."));
2062 
2063  size = len / 2;
2064 
2065  bin = data = (gdb_byte *) xmalloc (size);
2066  cleanup = make_cleanup (xfree, data);
2067 
2068  /* We use hex encoding - see common/rsp-low.h. */
2069  while (len > 0)
2070  {
2071  char hi, lo;
2072 
2073  hi = *body_text++;
2074  lo = *body_text++;
2075 
2076  if (hi == 0 || lo == 0)
2077  gdb_xml_error (parser, _("Bad hex encoding."));
2078 
2079  *bin++ = fromhex (hi) * 16 + fromhex (lo);
2080  len -= 2;
2081  }
2082 
2084 
2085  *pdata = data;
2086  *psize = size;
2087 }
2088 
2089 /* Parse a btrace pt-config "cpu" xml record. */
2090 
2091 static void
2093  const struct gdb_xml_element *element,
2094  void *user_data,
2095  VEC (gdb_xml_value_s) *attributes)
2096 {
2097  struct btrace_data *btrace;
2098  const char *vendor;
2099  ULONGEST *family, *model, *stepping;
2100 
2101  vendor = (const char *) xml_find_attribute (attributes, "vendor")->value;
2102  family = (ULONGEST *) xml_find_attribute (attributes, "family")->value;
2103  model = (ULONGEST *) xml_find_attribute (attributes, "model")->value;
2104  stepping = (ULONGEST *) xml_find_attribute (attributes, "stepping")->value;
2105 
2106  btrace = (struct btrace_data *) user_data;
2107 
2108  if (strcmp (vendor, "GenuineIntel") == 0)
2109  btrace->variant.pt.config.cpu.vendor = CV_INTEL;
2110 
2111  btrace->variant.pt.config.cpu.family = *family;
2112  btrace->variant.pt.config.cpu.model = *model;
2113  btrace->variant.pt.config.cpu.stepping = *stepping;
2114 }
2115 
2116 /* Parse a btrace pt "raw" xml record. */
2117 
2118 static void
2120  const struct gdb_xml_element *element,
2121  void *user_data, const char *body_text)
2122 {
2123  struct btrace_data *btrace;
2124 
2125  btrace = (struct btrace_data *) user_data;
2126  parse_xml_raw (parser, body_text, &btrace->variant.pt.data,
2127  &btrace->variant.pt.size);
2128 }
2129 
2130 /* Parse a btrace "pt" xml record. */
2131 
2132 static void
2134  const struct gdb_xml_element *element,
2135  void *user_data, VEC (gdb_xml_value_s) *attributes)
2136 {
2137  struct btrace_data *btrace;
2138 
2139  btrace = (struct btrace_data *) user_data;
2140  btrace->format = BTRACE_FORMAT_PT;
2141  btrace->variant.pt.config.cpu.vendor = CV_UNKNOWN;
2142  btrace->variant.pt.data = NULL;
2143  btrace->variant.pt.size = 0;
2144 }
2145 
2146 static const struct gdb_xml_attribute block_attributes[] = {
2147  { "begin", GDB_XML_AF_NONE, gdb_xml_parse_attr_ulongest, NULL },
2148  { "end", GDB_XML_AF_NONE, gdb_xml_parse_attr_ulongest, NULL },
2149  { NULL, GDB_XML_AF_NONE, NULL, NULL }
2150 };
2151 
2153  { "vendor", GDB_XML_AF_NONE, NULL, NULL },
2154  { "family", GDB_XML_AF_NONE, gdb_xml_parse_attr_ulongest, NULL },
2155  { "model", GDB_XML_AF_NONE, gdb_xml_parse_attr_ulongest, NULL },
2156  { "stepping", GDB_XML_AF_NONE, gdb_xml_parse_attr_ulongest, NULL },
2157  { NULL, GDB_XML_AF_NONE, NULL, NULL }
2158 };
2159 
2163  { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
2164 };
2165 
2166 static const struct gdb_xml_element btrace_pt_children[] = {
2167  { "pt-config", NULL, btrace_pt_config_children, GDB_XML_EF_OPTIONAL, NULL,
2168  NULL },
2169  { "raw", NULL, NULL, GDB_XML_EF_OPTIONAL, NULL, parse_xml_btrace_pt_raw },
2170  { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
2171 };
2172 
2173 static const struct gdb_xml_attribute btrace_attributes[] = {
2174  { "version", GDB_XML_AF_NONE, NULL, NULL },
2175  { NULL, GDB_XML_AF_NONE, NULL, NULL }
2176 };
2177 
2178 static const struct gdb_xml_element btrace_children[] = {
2179  { "block", block_attributes, NULL,
2182  NULL },
2183  { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
2184 };
2185 
2186 static const struct gdb_xml_element btrace_elements[] = {
2188  check_xml_btrace_version, NULL },
2189  { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
2190 };
2191 
2192 #endif /* defined (HAVE_LIBEXPAT) */
2193 
2194 /* See btrace.h. */
2195 
2196 void
2197 parse_xml_btrace (struct btrace_data *btrace, const char *buffer)
2198 {
2199  struct cleanup *cleanup;
2200  int errcode;
2201 
2202 #if defined (HAVE_LIBEXPAT)
2203 
2204  btrace->format = BTRACE_FORMAT_NONE;
2205 
2206  cleanup = make_cleanup_btrace_data (btrace);
2207  errcode = gdb_xml_parse_quick (_("btrace"), "btrace.dtd", btrace_elements,
2208  buffer, btrace);
2209  if (errcode != 0)
2210  error (_("Error parsing branch trace."));
2211 
2212  /* Keep parse results. */
2214 
2215 #else /* !defined (HAVE_LIBEXPAT) */
2216 
2217  error (_("Cannot process branch trace. XML parsing is not supported."));
2218 
2219 #endif /* !defined (HAVE_LIBEXPAT) */
2220 }
2221 
2222 #if defined (HAVE_LIBEXPAT)
2223 
2224 /* Parse a btrace-conf "bts" xml record. */
2225 
2226 static void
2228  const struct gdb_xml_element *element,
2229  void *user_data, VEC (gdb_xml_value_s) *attributes)
2230 {
2231  struct btrace_config *conf;
2232  struct gdb_xml_value *size;
2233 
2234  conf = (struct btrace_config *) user_data;
2235  conf->format = BTRACE_FORMAT_BTS;
2236  conf->bts.size = 0;
2237 
2238  size = xml_find_attribute (attributes, "size");
2239  if (size != NULL)
2240  conf->bts.size = (unsigned int) *(ULONGEST *) size->value;
2241 }
2242 
2243 /* Parse a btrace-conf "pt" xml record. */
2244 
2245 static void
2247  const struct gdb_xml_element *element,
2248  void *user_data, VEC (gdb_xml_value_s) *attributes)
2249 {
2250  struct btrace_config *conf;
2251  struct gdb_xml_value *size;
2252 
2253  conf = (struct btrace_config *) user_data;
2254  conf->format = BTRACE_FORMAT_PT;
2255  conf->pt.size = 0;
2256 
2257  size = xml_find_attribute (attributes, "size");
2258  if (size != NULL)
2259  conf->pt.size = (unsigned int) *(ULONGEST *) size->value;
2260 }
2261 
2264  { NULL, GDB_XML_AF_NONE, NULL, NULL }
2265 };
2266 
2269  { NULL, GDB_XML_AF_NONE, NULL, NULL }
2270 };
2271 
2272 static const struct gdb_xml_element btrace_conf_children[] = {
2274  parse_xml_btrace_conf_bts, NULL },
2276  parse_xml_btrace_conf_pt, NULL },
2277  { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
2278 };
2279 
2281  { "version", GDB_XML_AF_NONE, NULL, NULL },
2282  { NULL, GDB_XML_AF_NONE, NULL, NULL }
2283 };
2284 
2285 static const struct gdb_xml_element btrace_conf_elements[] = {
2286  { "btrace-conf", btrace_conf_attributes, btrace_conf_children,
2287  GDB_XML_EF_NONE, NULL, NULL },
2288  { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
2289 };
2290 
2291 #endif /* defined (HAVE_LIBEXPAT) */
2292 
2293 /* See btrace.h. */
2294 
2295 void
2296 parse_xml_btrace_conf (struct btrace_config *conf, const char *xml)
2297 {
2298  int errcode;
2299 
2300 #if defined (HAVE_LIBEXPAT)
2301 
2302  errcode = gdb_xml_parse_quick (_("btrace-conf"), "btrace-conf.dtd",
2303  btrace_conf_elements, xml, conf);
2304  if (errcode != 0)
2305  error (_("Error parsing branch trace configuration."));
2306 
2307 #else /* !defined (HAVE_LIBEXPAT) */
2308 
2309  error (_("XML parsing is not supported."));
2310 
2311 #endif /* !defined (HAVE_LIBEXPAT) */
2312 }
2313 
2314 /* See btrace.h. */
2315 
2316 const struct btrace_insn *
2318 {
2319  const struct btrace_function *bfun;
2320  unsigned int index, end;
2321 
2322  index = it->insn_index;
2323  bfun = &it->btinfo->functions[it->call_index];
2324 
2325  /* Check if the iterator points to a gap in the trace. */
2326  if (bfun->errcode != 0)
2327  return NULL;
2328 
2329  /* The index is within the bounds of this function's instruction vector. */
2330  end = bfun->insn.size ();
2331  gdb_assert (0 < end);
2332  gdb_assert (index < end);
2333 
2334  return &bfun->insn[index];
2335 }
2336 
2337 /* See btrace.h. */
2338 
2339 int
2341 {
2342  return it->btinfo->functions[it->call_index].errcode;
2343 }
2344 
2345 /* See btrace.h. */
2346 
2347 unsigned int
2349 {
2350  return it->btinfo->functions[it->call_index].insn_offset + it->insn_index;
2351 }
2352 
2353 /* See btrace.h. */
2354 
2355 void
2357  const struct btrace_thread_info *btinfo)
2358 {
2359  if (btinfo->functions.empty ())
2360  error (_("No trace."));
2361 
2362  it->btinfo = btinfo;
2363  it->call_index = 0;
2364  it->insn_index = 0;
2365 }
2366 
2367 /* See btrace.h. */
2368 
2369 void
2371  const struct btrace_thread_info *btinfo)
2372 {
2373  const struct btrace_function *bfun;
2374  unsigned int length;
2375 
2376  if (btinfo->functions.empty ())
2377  error (_("No trace."));
2378 
2379  bfun = &btinfo->functions.back ();
2380  length = bfun->insn.size ();
2381 
2382  /* The last function may either be a gap or it contains the current
2383  instruction, which is one past the end of the execution trace; ignore
2384  it. */
2385  if (length > 0)
2386  length -= 1;
2387 
2388  it->btinfo = btinfo;
2389  it->call_index = bfun->number - 1;
2390  it->insn_index = length;
2391 }
2392 
2393 /* See btrace.h. */
2394 
2395 unsigned int
2396 btrace_insn_next (struct btrace_insn_iterator *it, unsigned int stride)
2397 {
2398  const struct btrace_function *bfun;
2399  unsigned int index, steps;
2400 
2401  bfun = &it->btinfo->functions[it->call_index];
2402  steps = 0;
2403  index = it->insn_index;
2404 
2405  while (stride != 0)
2406  {
2407  unsigned int end, space, adv;
2408 
2409  end = bfun->insn.size ();
2410 
2411  /* An empty function segment represents a gap in the trace. We count
2412  it as one instruction. */
2413  if (end == 0)
2414  {
2415  const struct btrace_function *next;
2416 
2417  next = ftrace_find_call_by_number (it->btinfo, bfun->number + 1);
2418  if (next == NULL)
2419  break;
2420 
2421  stride -= 1;
2422  steps += 1;
2423 
2424  bfun = next;
2425  index = 0;
2426 
2427  continue;
2428  }
2429 
2430  gdb_assert (0 < end);
2431  gdb_assert (index < end);
2432 
2433  /* Compute the number of instructions remaining in this segment. */
2434  space = end - index;
2435 
2436  /* Advance the iterator as far as possible within this segment. */
2437  adv = std::min (space, stride);
2438  stride -= adv;
2439  index += adv;
2440  steps += adv;
2441 
2442  /* Move to the next function if we're at the end of this one. */
2443  if (index == end)
2444  {
2445  const struct btrace_function *next;
2446 
2447  next = ftrace_find_call_by_number (it->btinfo, bfun->number + 1);
2448  if (next == NULL)
2449  {
2450  /* We stepped past the last function.
2451 
2452  Let's adjust the index to point to the last instruction in
2453  the previous function. */
2454  index -= 1;
2455  steps -= 1;
2456  break;
2457  }
2458 
2459  /* We now point to the first instruction in the new function. */
2460  bfun = next;
2461  index = 0;
2462  }
2463 
2464  /* We did make progress. */
2465  gdb_assert (adv > 0);
2466  }
2467 
2468  /* Update the iterator. */
2469  it->call_index = bfun->number - 1;
2470  it->insn_index = index;
2471 
2472  return steps;
2473 }
2474 
2475 /* See btrace.h. */
2476 
2477 unsigned int
2478 btrace_insn_prev (struct btrace_insn_iterator *it, unsigned int stride)
2479 {
2480  const struct btrace_function *bfun;
2481  unsigned int index, steps;
2482 
2483  bfun = &it->btinfo->functions[it->call_index];
2484  steps = 0;
2485  index = it->insn_index;
2486 
2487  while (stride != 0)
2488  {
2489  unsigned int adv;
2490 
2491  /* Move to the previous function if we're at the start of this one. */
2492  if (index == 0)
2493  {
2494  const struct btrace_function *prev;
2495 
2496  prev = ftrace_find_call_by_number (it->btinfo, bfun->number - 1);
2497  if (prev == NULL)
2498  break;
2499 
2500  /* We point to one after the last instruction in the new function. */
2501  bfun = prev;
2502  index = bfun->insn.size ();
2503 
2504  /* An empty function segment represents a gap in the trace. We count
2505  it as one instruction. */
2506  if (index == 0)
2507  {
2508  stride -= 1;
2509  steps += 1;
2510 
2511  continue;
2512  }
2513  }
2514 
2515  /* Advance the iterator as far as possible within this segment. */
2516  adv = std::min (index, stride);
2517 
2518  stride -= adv;
2519  index -= adv;
2520  steps += adv;
2521 
2522  /* We did make progress. */
2523  gdb_assert (adv > 0);
2524  }
2525 
2526  /* Update the iterator. */
2527  it->call_index = bfun->number - 1;
2528  it->insn_index = index;
2529 
2530  return steps;
2531 }
2532 
2533 /* See btrace.h. */
2534 
2535 int
2537  const struct btrace_insn_iterator *rhs)
2538 {
2539  gdb_assert (lhs->btinfo == rhs->btinfo);
2540 
2541  if (lhs->call_index != rhs->call_index)
2542  return lhs->call_index - rhs->call_index;
2543 
2544  return lhs->insn_index - rhs->insn_index;
2545 }
2546 
2547 /* See btrace.h. */
2548 
2549 int
2551  const struct btrace_thread_info *btinfo,
2552  unsigned int number)
2553 {
2554  const struct btrace_function *bfun;
2555  unsigned int upper, lower;
2556 
2557  if (btinfo->functions.empty ())
2558  return 0;
2559 
2560  lower = 0;
2561  bfun = &btinfo->functions[lower];
2562  if (number < bfun->insn_offset)
2563  return 0;
2564 
2565  upper = btinfo->functions.size () - 1;
2566  bfun = &btinfo->functions[upper];
2567  if (number >= bfun->insn_offset + ftrace_call_num_insn (bfun))
2568  return 0;
2569 
2570  /* We assume that there are no holes in the numbering. */
2571  for (;;)
2572  {
2573  const unsigned int average = lower + (upper - lower) / 2;
2574 
2575  bfun = &btinfo->functions[average];
2576 
2577  if (number < bfun->insn_offset)
2578  {
2579  upper = average - 1;
2580  continue;
2581  }
2582 
2583  if (number >= bfun->insn_offset + ftrace_call_num_insn (bfun))
2584  {
2585  lower = average + 1;
2586  continue;
2587  }
2588 
2589  break;
2590  }
2591 
2592  it->btinfo = btinfo;
2593  it->call_index = bfun->number - 1;
2594  it->insn_index = number - bfun->insn_offset;
2595  return 1;
2596 }
2597 
2598 /* Returns true if the recording ends with a function segment that
2599  contains only a single (i.e. the current) instruction. */
2600 
2601 static bool
2603 {
2604  const btrace_function *bfun;
2605 
2606  if (btinfo->functions.empty ())
2607  return false;
2608 
2609  bfun = &btinfo->functions.back ();
2610  if (bfun->errcode != 0)
2611  return false;
2612 
2613  return ftrace_call_num_insn (bfun) == 1;
2614 }
2615 
2616 /* See btrace.h. */
2617 
2618 const struct btrace_function *
2620 {
2621  if (it->index >= it->btinfo->functions.size ())
2622  return NULL;
2623 
2624  return &it->btinfo->functions[it->index];
2625 }
2626 
2627 /* See btrace.h. */
2628 
2629 unsigned int
2631 {
2632  const unsigned int length = it->btinfo->functions.size ();
2633 
2634  /* If the last function segment contains only a single instruction (i.e. the
2635  current instruction), skip it. */
2636  if ((it->index == length) && btrace_ends_with_single_insn (it->btinfo))
2637  return length;
2638 
2639  return it->index + 1;
2640 }
2641 
2642 /* See btrace.h. */
2643 
2644 void
2646  const struct btrace_thread_info *btinfo)
2647 {
2648  if (btinfo->functions.empty ())
2649  error (_("No trace."));
2650 
2651  it->btinfo = btinfo;
2652  it->index = 0;
2653 }
2654 
2655 /* See btrace.h. */
2656 
2657 void
2659  const struct btrace_thread_info *btinfo)
2660 {
2661  if (btinfo->functions.empty ())
2662  error (_("No trace."));
2663 
2664  it->btinfo = btinfo;
2665  it->index = btinfo->functions.size ();
2666 }
2667 
2668 /* See btrace.h. */
2669 
2670 unsigned int
2671 btrace_call_next (struct btrace_call_iterator *it, unsigned int stride)
2672 {
2673  const unsigned int length = it->btinfo->functions.size ();
2674 
2675  if (it->index + stride < length - 1)
2676  /* Default case: Simply advance the iterator. */
2677  it->index += stride;
2678  else if (it->index + stride == length - 1)
2679  {
2680  /* We land exactly at the last function segment. If it contains only one
2681  instruction (i.e. the current instruction) it is not actually part of
2682  the trace. */
2684  it->index = length;
2685  else
2686  it->index = length - 1;
2687  }
2688  else
2689  {
2690  /* We land past the last function segment and have to adjust the stride.
2691  If the last function segment contains only one instruction (i.e. the
2692  current instruction) it is not actually part of the trace. */
2694  stride = length - it->index - 1;
2695  else
2696  stride = length - it->index;
2697 
2698  it->index = length;
2699  }
2700 
2701  return stride;
2702 }
2703 
2704 /* See btrace.h. */
2705 
2706 unsigned int
2707 btrace_call_prev (struct btrace_call_iterator *it, unsigned int stride)
2708 {
2709  const unsigned int length = it->btinfo->functions.size ();
2710  int steps = 0;
2711 
2712  gdb_assert (it->index <= length);
2713 
2714  if (stride == 0 || it->index == 0)
2715  return 0;
2716 
2717  /* If we are at the end, the first step is a special case. If the last
2718  function segment contains only one instruction (i.e. the current
2719  instruction) it is not actually part of the trace. To be able to step
2720  over this instruction, we need at least one more function segment. */
2721  if ((it->index == length) && (length > 1))
2722  {
2724  it->index = length - 2;
2725  else
2726  it->index = length - 1;
2727 
2728  steps = 1;
2729  stride -= 1;
2730  }
2731 
2732  stride = std::min (stride, it->index);
2733 
2734  it->index -= stride;
2735  return steps + stride;
2736 }
2737 
2738 /* See btrace.h. */
2739 
2740 int
2742  const struct btrace_call_iterator *rhs)
2743 {
2744  gdb_assert (lhs->btinfo == rhs->btinfo);
2745  return (int) (lhs->index - rhs->index);
2746 }
2747 
2748 /* See btrace.h. */
2749 
2750 int
2752  const struct btrace_thread_info *btinfo,
2753  unsigned int number)
2754 {
2755  const unsigned int length = btinfo->functions.size ();
2756 
2757  if ((number == 0) || (number > length))
2758  return 0;
2759 
2760  it->btinfo = btinfo;
2761  it->index = number - 1;
2762  return 1;
2763 }
2764 
2765 /* See btrace.h. */
2766 
2767 void
2769  const struct btrace_insn_iterator *begin,
2770  const struct btrace_insn_iterator *end)
2771 {
2772  if (btinfo->insn_history == NULL)
2773  btinfo->insn_history = XCNEW (struct btrace_insn_history);
2774 
2775  btinfo->insn_history->begin = *begin;
2776  btinfo->insn_history->end = *end;
2777 }
2778 
2779 /* See btrace.h. */
2780 
2781 void
2783  const struct btrace_call_iterator *begin,
2784  const struct btrace_call_iterator *end)
2785 {
2786  gdb_assert (begin->btinfo == end->btinfo);
2787 
2788  if (btinfo->call_history == NULL)
2789  btinfo->call_history = XCNEW (struct btrace_call_history);
2790 
2791  btinfo->call_history->begin = *begin;
2792  btinfo->call_history->end = *end;
2793 }
2794 
2795 /* See btrace.h. */
2796 
2797 int
2799 {
2800  return tp->btrace.replay != NULL;
2801 }
2802 
2803 /* See btrace.h. */
2804 
2805 int
2807 {
2808  struct btrace_insn_iterator begin, end;
2809  struct btrace_thread_info *btinfo;
2810 
2811  btinfo = &tp->btrace;
2812 
2813  if (btinfo->functions.empty ())
2814  return 1;
2815 
2816  btrace_insn_begin (&begin, btinfo);
2817  btrace_insn_end (&end, btinfo);
2818 
2819  return btrace_insn_cmp (&begin, &end) == 0;
2820 }
2821 
2822 /* Forward the cleanup request. */
2823 
2824 static void
2826 {
2827  btrace_data_fini ((struct btrace_data *) arg);
2828 }
2829 
2830 /* See btrace.h. */
2831 
2832 struct cleanup *
2834 {
2835  return make_cleanup (do_btrace_data_cleanup, data);
2836 }
2837 
2838 #if defined (HAVE_LIBIPT)
2839 
2840 /* Print a single packet. */
2841 
2842 static void
2843 pt_print_packet (const struct pt_packet *packet)
2844 {
2845  switch (packet->type)
2846  {
2847  default:
2848  printf_unfiltered (("[??: %x]"), packet->type);
2849  break;
2850 
2851  case ppt_psb:
2852  printf_unfiltered (("psb"));
2853  break;
2854 
2855  case ppt_psbend:
2856  printf_unfiltered (("psbend"));
2857  break;
2858 
2859  case ppt_pad:
2860  printf_unfiltered (("pad"));
2861  break;
2862 
2863  case ppt_tip:
2864  printf_unfiltered (("tip %u: 0x%" PRIx64 ""),
2865  packet->payload.ip.ipc,
2866  packet->payload.ip.ip);
2867  break;
2868 
2869  case ppt_tip_pge:
2870  printf_unfiltered (("tip.pge %u: 0x%" PRIx64 ""),
2871  packet->payload.ip.ipc,
2872  packet->payload.ip.ip);
2873  break;
2874 
2875  case ppt_tip_pgd:
2876  printf_unfiltered (("tip.pgd %u: 0x%" PRIx64 ""),
2877  packet->payload.ip.ipc,
2878  packet->payload.ip.ip);
2879  break;
2880 
2881  case ppt_fup:
2882  printf_unfiltered (("fup %u: 0x%" PRIx64 ""),
2883  packet->payload.ip.ipc,
2884  packet->payload.ip.ip);
2885  break;
2886 
2887  case ppt_tnt_8:
2888  printf_unfiltered (("tnt-8 %u: 0x%" PRIx64 ""),
2889  packet->payload.tnt.bit_size,
2890  packet->payload.tnt.payload);
2891  break;
2892 
2893  case ppt_tnt_64:
2894  printf_unfiltered (("tnt-64 %u: 0x%" PRIx64 ""),
2895  packet->payload.tnt.bit_size,
2896  packet->payload.tnt.payload);
2897  break;
2898 
2899  case ppt_pip:
2900  printf_unfiltered (("pip %" PRIx64 "%s"), packet->payload.pip.cr3,
2901  packet->payload.pip.nr ? (" nr") : (""));
2902  break;
2903 
2904  case ppt_tsc:
2905  printf_unfiltered (("tsc %" PRIx64 ""), packet->payload.tsc.tsc);
2906  break;
2907 
2908  case ppt_cbr:
2909  printf_unfiltered (("cbr %u"), packet->payload.cbr.ratio);
2910  break;
2911 
2912  case ppt_mode:
2913  switch (packet->payload.mode.leaf)
2914  {
2915  default:
2916  printf_unfiltered (("mode %u"), packet->payload.mode.leaf);
2917  break;
2918 
2919  case pt_mol_exec:
2920  printf_unfiltered (("mode.exec%s%s"),
2921  packet->payload.mode.bits.exec.csl
2922  ? (" cs.l") : (""),
2923  packet->payload.mode.bits.exec.csd
2924  ? (" cs.d") : (""));
2925  break;
2926 
2927  case pt_mol_tsx:
2928  printf_unfiltered (("mode.tsx%s%s"),
2929  packet->payload.mode.bits.tsx.intx
2930  ? (" intx") : (""),
2931  packet->payload.mode.bits.tsx.abrt
2932  ? (" abrt") : (""));
2933  break;
2934  }
2935  break;
2936 
2937  case ppt_ovf:
2938  printf_unfiltered (("ovf"));
2939  break;
2940 
2941  case ppt_stop:
2942  printf_unfiltered (("stop"));
2943  break;
2944 
2945  case ppt_vmcs:
2946  printf_unfiltered (("vmcs %" PRIx64 ""), packet->payload.vmcs.base);
2947  break;
2948 
2949  case ppt_tma:
2950  printf_unfiltered (("tma %x %x"), packet->payload.tma.ctc,
2951  packet->payload.tma.fc);
2952  break;
2953 
2954  case ppt_mtc:
2955  printf_unfiltered (("mtc %x"), packet->payload.mtc.ctc);
2956  break;
2957 
2958  case ppt_cyc:
2959  printf_unfiltered (("cyc %" PRIx64 ""), packet->payload.cyc.value);
2960  break;
2961 
2962  case ppt_mnt:
2963  printf_unfiltered (("mnt %" PRIx64 ""), packet->payload.mnt.payload);
2964  break;
2965  }
2966 }
2967 
2968 /* Decode packets into MAINT using DECODER. */
2969 
2970 static void
2971 btrace_maint_decode_pt (struct btrace_maint_info *maint,
2972  struct pt_packet_decoder *decoder)
2973 {
2974  int errcode;
2975 
2976  for (;;)
2977  {
2978  struct btrace_pt_packet packet;
2979 
2980  errcode = pt_pkt_sync_forward (decoder);
2981  if (errcode < 0)
2982  break;
2983 
2984  for (;;)
2985  {
2986  pt_pkt_get_offset (decoder, &packet.offset);
2987 
2988  errcode = pt_pkt_next (decoder, &packet.packet,
2989  sizeof(packet.packet));
2990  if (errcode < 0)
2991  break;
2992 
2993  if (maint_btrace_pt_skip_pad == 0 || packet.packet.type != ppt_pad)
2994  {
2995  packet.errcode = pt_errcode (errcode);
2996  VEC_safe_push (btrace_pt_packet_s, maint->variant.pt.packets,
2997  &packet);
2998  }
2999  }
3000 
3001  if (errcode == -pte_eos)
3002  break;
3003 
3004  packet.errcode = pt_errcode (errcode);
3005  VEC_safe_push (btrace_pt_packet_s, maint->variant.pt.packets,
3006  &packet);
3007 
3008  warning (_("Error at trace offset 0x%" PRIx64 ": %s."),
3009  packet.offset, pt_errstr (packet.errcode));
3010  }
3011 
3012  if (errcode != -pte_eos)
3013  warning (_("Failed to synchronize onto the Intel Processor Trace "
3014  "stream: %s."), pt_errstr (pt_errcode (errcode)));
3015 }
3016 
3017 /* Update the packet history in BTINFO. */
3018 
3019 static void
3020 btrace_maint_update_pt_packets (struct btrace_thread_info *btinfo)
3021 {
3022  struct pt_packet_decoder *decoder;
3023  struct btrace_data_pt *pt;
3024  struct pt_config config;
3025  int errcode;
3026 
3027  pt = &btinfo->data.variant.pt;
3028 
3029  /* Nothing to do if there is no trace. */
3030  if (pt->size == 0)
3031  return;
3032 
3033  memset (&config, 0, sizeof(config));
3034 
3035  config.size = sizeof (config);
3036  config.begin = pt->data;
3037  config.end = pt->data + pt->size;
3038 
3039  config.cpu.vendor = pt_translate_cpu_vendor (pt->config.cpu.vendor);
3040  config.cpu.family = pt->config.cpu.family;
3041  config.cpu.model = pt->config.cpu.model;
3042  config.cpu.stepping = pt->config.cpu.stepping;
3043 
3044  errcode = pt_cpu_errata (&config.errata, &config.cpu);
3045  if (errcode < 0)
3046  error (_("Failed to configure the Intel Processor Trace decoder: %s."),
3047  pt_errstr (pt_errcode (errcode)));
3048 
3049  decoder = pt_pkt_alloc_decoder (&config);
3050  if (decoder == NULL)
3051  error (_("Failed to allocate the Intel Processor Trace decoder."));
3052 
3053  TRY
3054  {
3055  btrace_maint_decode_pt (&btinfo->maint, decoder);
3056  }
3057  CATCH (except, RETURN_MASK_ALL)
3058  {
3059  pt_pkt_free_decoder (decoder);
3060 
3061  if (except.reason < 0)
3062  throw_exception (except);
3063  }
3064  END_CATCH
3065 
3066  pt_pkt_free_decoder (decoder);
3067 }
3068 
3069 #endif /* !defined (HAVE_LIBIPT) */
3070 
3071 /* Update the packet maintenance information for BTINFO and store the
3072  low and high bounds into BEGIN and END, respectively.
3073  Store the current iterator state into FROM and TO. */
3074 
3075 static void
3077  unsigned int *begin, unsigned int *end,
3078  unsigned int *from, unsigned int *to)
3079 {
3080  switch (btinfo->data.format)
3081  {
3082  default:
3083  *begin = 0;
3084  *end = 0;
3085  *from = 0;
3086  *to = 0;
3087  break;
3088 
3089  case BTRACE_FORMAT_BTS:
3090  /* Nothing to do - we operate directly on BTINFO->DATA. */
3091  *begin = 0;
3092  *end = VEC_length (btrace_block_s, btinfo->data.variant.bts.blocks);
3093  *from = btinfo->maint.variant.bts.packet_history.begin;
3094  *to = btinfo->maint.variant.bts.packet_history.end;
3095  break;
3096 
3097 #if defined (HAVE_LIBIPT)
3098  case BTRACE_FORMAT_PT:
3099  if (VEC_empty (btrace_pt_packet_s, btinfo->maint.variant.pt.packets))
3100  btrace_maint_update_pt_packets (btinfo);
3101 
3102  *begin = 0;
3103  *end = VEC_length (btrace_pt_packet_s, btinfo->maint.variant.pt.packets);
3104  *from = btinfo->maint.variant.pt.packet_history.begin;
3105  *to = btinfo->maint.variant.pt.packet_history.end;
3106  break;
3107 #endif /* defined (HAVE_LIBIPT) */
3108  }
3109 }
3110 
3111 /* Print packets in BTINFO from BEGIN (inclusive) until END (exclusive) and
3112  update the current iterator position. */
3113 
3114 static void
3116  unsigned int begin, unsigned int end)
3117 {
3118  switch (btinfo->data.format)
3119  {
3120  default:
3121  break;
3122 
3123  case BTRACE_FORMAT_BTS:
3124  {
3125  VEC (btrace_block_s) *blocks;
3126  unsigned int blk;
3127 
3128  blocks = btinfo->data.variant.bts.blocks;
3129  for (blk = begin; blk < end; ++blk)
3130  {
3131  const btrace_block_s *block;
3132 
3133  block = VEC_index (btrace_block_s, blocks, blk);
3134 
3135  printf_unfiltered ("%u\tbegin: %s, end: %s\n", blk,
3136  core_addr_to_string_nz (block->begin),
3137  core_addr_to_string_nz (block->end));
3138  }
3139 
3140  btinfo->maint.variant.bts.packet_history.begin = begin;
3141  btinfo->maint.variant.bts.packet_history.end = end;
3142  }
3143  break;
3144 
3145 #if defined (HAVE_LIBIPT)
3146  case BTRACE_FORMAT_PT:
3147  {
3148  VEC (btrace_pt_packet_s) *packets;
3149  unsigned int pkt;
3150 
3151  packets = btinfo->maint.variant.pt.packets;
3152  for (pkt = begin; pkt < end; ++pkt)
3153  {
3154  const struct btrace_pt_packet *packet;
3155 
3156  packet = VEC_index (btrace_pt_packet_s, packets, pkt);
3157 
3158  printf_unfiltered ("%u\t", pkt);
3159  printf_unfiltered ("0x%" PRIx64 "\t", packet->offset);
3160 
3161  if (packet->errcode == pte_ok)
3162  pt_print_packet (&packet->packet);
3163  else
3164  printf_unfiltered ("[error: %s]", pt_errstr (packet->errcode));
3165 
3166  printf_unfiltered ("\n");
3167  }
3168 
3169  btinfo->maint.variant.pt.packet_history.begin = begin;
3170  btinfo->maint.variant.pt.packet_history.end = end;
3171  }
3172  break;
3173 #endif /* defined (HAVE_LIBIPT) */
3174  }
3175 }
3176 
3177 /* Read a number from an argument string. */
3178 
3179 static unsigned int
3180 get_uint (const char **arg)
3181 {
3182  const char *begin, *pos;
3183  char *end;
3184  unsigned long number;
3185 
3186  begin = *arg;
3187  pos = skip_spaces (begin);
3188 
3189  if (!isdigit (*pos))
3190  error (_("Expected positive number, got: %s."), pos);
3191 
3192  number = strtoul (pos, &end, 10);
3193  if (number > UINT_MAX)
3194  error (_("Number too big."));
3195 
3196  *arg += (end - begin);
3197 
3198  return (unsigned int) number;
3199 }
3200 
3201 /* Read a context size from an argument string. */
3202 
3203 static int
3204 get_context_size (const char **arg)
3205 {
3206  const char *pos = skip_spaces (*arg);
3207 
3208  if (!isdigit (*pos))
3209  error (_("Expected positive number, got: %s."), pos);
3210 
3211  char *end;
3212  long result = strtol (pos, &end, 10);
3213  *arg = end;
3214  return result;
3215 }
3216 
3217 /* Complain about junk at the end of an argument string. */
3218 
3219 static void
3220 no_chunk (const char *arg)
3221 {
3222  if (*arg != 0)
3223  error (_("Junk after argument: %s."), arg);
3224 }
3225 
3226 /* The "maintenance btrace packet-history" command. */
3227 
3228 static void
3229 maint_btrace_packet_history_cmd (const char *arg, int from_tty)
3230 {
3231  struct btrace_thread_info *btinfo;
3232  struct thread_info *tp;
3233  unsigned int size, begin, end, from, to;
3234 
3236  if (tp == NULL)
3237  error (_("No thread."));
3238 
3239  size = 10;
3240  btinfo = &tp->btrace;
3241 
3242  btrace_maint_update_packets (btinfo, &begin, &end, &from, &to);
3243  if (begin == end)
3244  {
3245  printf_unfiltered (_("No trace.\n"));
3246  return;
3247  }
3248 
3249  if (arg == NULL || *arg == 0 || strcmp (arg, "+") == 0)
3250  {
3251  from = to;
3252 
3253  if (end - from < size)
3254  size = end - from;
3255  to = from + size;
3256  }
3257  else if (strcmp (arg, "-") == 0)
3258  {
3259  to = from;
3260 
3261  if (to - begin < size)
3262  size = to - begin;
3263  from = to - size;
3264  }
3265  else
3266  {
3267  from = get_uint (&arg);
3268  if (end <= from)
3269  error (_("'%u' is out of range."), from);
3270 
3271  arg = skip_spaces (arg);
3272  if (*arg == ',')
3273  {
3274  arg = skip_spaces (++arg);
3275 
3276  if (*arg == '+')
3277  {
3278  arg += 1;
3279  size = get_context_size (&arg);
3280 
3281  no_chunk (arg);
3282 
3283  if (end - from < size)
3284  size = end - from;
3285  to = from + size;
3286  }
3287  else if (*arg == '-')
3288  {
3289  arg += 1;
3290  size = get_context_size (&arg);
3291 
3292  no_chunk (arg);
3293 
3294  /* Include the packet given as first argument. */
3295  from += 1;
3296  to = from;
3297 
3298  if (to - begin < size)
3299  size = to - begin;
3300  from = to - size;
3301  }
3302  else
3303  {
3304  to = get_uint (&arg);
3305 
3306  /* Include the packet at the second argument and silently
3307  truncate the range. */
3308  if (to < end)
3309  to += 1;
3310  else
3311  to = end;
3312 
3313  no_chunk (arg);
3314  }
3315  }
3316  else
3317  {
3318  no_chunk (arg);
3319 
3320  if (end - from < size)
3321  size = end - from;
3322  to = from + size;
3323  }
3324 
3325  dont_repeat ();
3326  }
3327 
3328  btrace_maint_print_packets (btinfo, from, to);
3329 }
3330 
3331 /* The "maintenance btrace clear-packet-history" command. */
3332 
3333 static void
3334 maint_btrace_clear_packet_history_cmd (const char *args, int from_tty)
3335 {
3336  struct btrace_thread_info *btinfo;
3337  struct thread_info *tp;
3338 
3339  if (args != NULL && *args != 0)
3340  error (_("Invalid argument."));
3341 
3343  if (tp == NULL)
3344  error (_("No thread."));
3345 
3346  btinfo = &tp->btrace;
3347 
3348  /* Must clear the maint data before - it depends on BTINFO->DATA. */
3349  btrace_maint_clear (btinfo);
3350  btrace_data_clear (&btinfo->data);
3351 }
3352 
3353 /* The "maintenance btrace clear" command. */
3354 
3355 static void
3356 maint_btrace_clear_cmd (const char *args, int from_tty)
3357 {
3358  struct thread_info *tp;
3359 
3360  if (args != NULL && *args != 0)
3361  error (_("Invalid argument."));
3362 
3364  if (tp == NULL)
3365  error (_("No thread."));
3366 
3367  btrace_clear (tp);
3368 }
3369 
3370 /* The "maintenance btrace" command. */
3371 
3372 static void
3373 maint_btrace_cmd (const char *args, int from_tty)
3374 {
3375  help_list (maint_btrace_cmdlist, "maintenance btrace ", all_commands,
3376  gdb_stdout);
3377 }
3378 
3379 /* The "maintenance set btrace" command. */
3380 
3381 static void
3382 maint_btrace_set_cmd (const char *args, int from_tty)
3383 {
3384  help_list (maint_btrace_set_cmdlist, "maintenance set btrace ", all_commands,
3385  gdb_stdout);
3386 }
3387 
3388 /* The "maintenance show btrace" command. */
3389 
3390 static void
3391 maint_btrace_show_cmd (const char *args, int from_tty)
3392 {
3393  help_list (maint_btrace_show_cmdlist, "maintenance show btrace ",
3395 }
3396 
3397 /* The "maintenance set btrace pt" command. */
3398 
3399 static void
3400 maint_btrace_pt_set_cmd (const char *args, int from_tty)
3401 {
3402  help_list (maint_btrace_pt_set_cmdlist, "maintenance set btrace pt ",
3404 }
3405 
3406 /* The "maintenance show btrace pt" command. */
3407 
3408 static void
3409 maint_btrace_pt_show_cmd (const char *args, int from_tty)
3410 {
3411  help_list (maint_btrace_pt_show_cmdlist, "maintenance show btrace pt ",
3413 }
3414 
3415 /* The "maintenance info btrace" command. */
3416 
3417 static void
3418 maint_info_btrace_cmd (const char *args, int from_tty)
3419 {
3420  struct btrace_thread_info *btinfo;
3421  struct thread_info *tp;
3422  const struct btrace_config *conf;
3423 
3424  if (args != NULL && *args != 0)
3425  error (_("Invalid argument."));
3426 
3428  if (tp == NULL)
3429  error (_("No thread."));
3430 
3431  btinfo = &tp->btrace;
3432 
3433  conf = btrace_conf (btinfo);
3434  if (conf == NULL)
3435  error (_("No btrace configuration."));
3436 
3437  printf_unfiltered (_("Format: %s.\n"),
3438  btrace_format_string (conf->format));
3439 
3440  switch (conf->format)
3441  {
3442  default:
3443  break;
3444 
3445  case BTRACE_FORMAT_BTS:
3446  printf_unfiltered (_("Number of packets: %u.\n"),
3448  btinfo->data.variant.bts.blocks));
3449  break;
3450 
3451 #if defined (HAVE_LIBIPT)
3452  case BTRACE_FORMAT_PT:
3453  {
3454  struct pt_version version;
3455 
3456  version = pt_library_version ();
3457  printf_unfiltered (_("Version: %u.%u.%u%s.\n"), version.major,
3458  version.minor, version.build,
3459  version.ext != NULL ? version.ext : "");
3460 
3461  btrace_maint_update_pt_packets (btinfo);
3462  printf_unfiltered (_("Number of packets: %u.\n"),
3463  VEC_length (btrace_pt_packet_s,
3464  btinfo->maint.variant.pt.packets));
3465  }
3466  break;
3467 #endif /* defined (HAVE_LIBIPT) */
3468  }
3469 }
3470 
3471 /* The "maint show btrace pt skip-pad" show value function. */
3472 
3473 static void
3474 show_maint_btrace_pt_skip_pad (struct ui_file *file, int from_tty,
3475  struct cmd_list_element *c,
3476  const char *value)
3477 {
3478  fprintf_filtered (file, _("Skip PAD packets is %s.\n"), value);
3479 }
3480 
3481 
3482 /* Initialize btrace maintenance commands. */
3483 
3484 void
3486 {
3488  _("Info about branch tracing data."), &maintenanceinfolist);
3489 
3491  _("Branch tracing maintenance commands."),
3492  &maint_btrace_cmdlist, "maintenance btrace ",
3493  0, &maintenancelist);
3494 
3496 Set branch tracing specific variables."),
3497  &maint_btrace_set_cmdlist, "maintenance set btrace ",
3499 
3501 Set Intel Processor Trace specific variables."),
3502  &maint_btrace_pt_set_cmdlist, "maintenance set btrace pt ",
3504 
3506 Show branch tracing specific variables."),
3507  &maint_btrace_show_cmdlist, "maintenance show btrace ",
3509 
3511 Show Intel Processor Trace specific variables."),
3512  &maint_btrace_pt_show_cmdlist, "maintenance show btrace pt ",
3514 
3517 Set whether PAD packets should be skipped in the btrace packet history."), _("\
3518 Show whether PAD packets should be skipped in the btrace packet history."),_("\
3519 When enabled, PAD packets are ignored in the btrace packet history."),
3523 
3525  _("Print the raw branch tracing data.\n\
3526 With no argument, print ten more packets after the previous ten-line print.\n\
3527 With '-' as argument print ten packets before a previous ten-line print.\n\
3528 One argument specifies the starting packet of a ten-line print.\n\
3529 Two arguments with comma between specify starting and ending packets to \
3530 print.\n\
3531 Preceded with '+'/'-' the second argument specifies the distance from the \
3532 first.\n"),
3534 
3535  add_cmd ("clear-packet-history", class_maintenance,
3537  _("Clears the branch tracing packet history.\n\
3538 Discards the raw branch tracing data but not the execution history data.\n\
3539 "),
3541 
3543  _("Clears the branch tracing data.\n\
3544 Discards the raw branch tracing data and the execution history data.\n\
3545 The next 'record' command will fetch the branch tracing data anew.\n\
3546 "),
3548 
3549 }
static const char * ftrace_print_function_name(const struct btrace_function *bfun)
Definition: btrace.c:72
struct gdbarch * target_gdbarch(void)
Definition: gdbarch.c:5467
static struct cmd_list_element * maint_btrace_cmdlist
Definition: btrace.c:43
static const char * ftrace_print_insn_addr(const struct btrace_insn *insn)
Definition: btrace.c:112
union btrace_data::@24 variant
static void no_chunk(const char *arg)
Definition: btrace.c:3220
struct btrace_config_bts bts
static void ftrace_compute_global_level_offset(struct btrace_thread_info *btinfo)
Definition: btrace.c:728
unsigned int btrace_insn_prev(struct btrace_insn_iterator *it, unsigned int stride)
Definition: btrace.c:2478
const char * symtab_to_filename_for_display(struct symtab *symtab)
Definition: source.c:1168
void target_disable_btrace(struct btrace_target_info *btinfo)
Definition: target.c:3569
static const struct gdb_xml_attribute btrace_conf_bts_attributes[]
Definition: btrace.c:2267
static const struct gdb_xml_attribute btrace_pt_config_cpu_attributes[]
Definition: btrace.c:2152
struct thread_info * find_thread_ptid(ptid_t ptid)
Definition: thread.c:514
static struct cmd_list_element * maint_btrace_set_cmdlist
Definition: btrace.c:44
static void maint_btrace_cmd(const char *args, int from_tty)
Definition: btrace.c:3373
static struct cmd_list_element * maint_btrace_show_cmdlist
Definition: btrace.c:45
static void parse_xml_raw(struct gdb_xml_parser *parser, const char *body_text, gdb_byte **pdata, size_t *psize)
Definition: btrace.c:2052
struct btrace_cpu cpu
void target_teardown_btrace(struct btrace_target_info *btinfo)
Definition: target.c:3577
#define SYMBOL_PRINT_NAME(symbol)
Definition: symtab.h:542
unsigned short family
Definition: btrace-common.h:86
void parse_xml_btrace(struct btrace_data *btrace, const char *buffer)
Definition: btrace.c:2197
#define MSYMBOL_LINKAGE_NAME(symbol)
Definition: symtab.h:707
bfd_vma CORE_ADDR
Definition: common-types.h:41
void * value
Definition: xml-support.h:78
bool can_access_registers_ptid(ptid_t ptid)
Definition: thread.c:1123
static struct btrace_function * ftrace_new_gap(struct btrace_thread_info *btinfo, int errcode, std::vector< unsigned int > &gaps)
Definition: btrace.c:518
static int get_context_size(const char **arg)
Definition: btrace.c:3204
struct regcache * get_thread_regcache(ptid_t ptid)
Definition: regcache.c:434
static void ftrace_connect_backtrace(struct btrace_thread_info *btinfo, struct btrace_function *lhs, struct btrace_function *rhs)
Definition: btrace.c:869
CORE_ADDR begin
Definition: btrace-common.h:42
void xfree(void *)
struct btrace_target_info * target_enable_btrace(ptid_t ptid, const struct btrace_config *conf)
Definition: target.c:3561
static void maint_info_btrace_cmd(const char *args, int from_tty)
Definition: btrace.c:3418
struct symbol * sym
Definition: btrace.h:143
#define INT_MAX
Definition: defs.h:477
void warning(const char *fmt,...)
Definition: errors.c:26
static int btrace_stitch_bts(struct btrace_data_bts *btrace, struct thread_info *tp)
Definition: btrace.c:1674
regcache(gdbarch *gdbarch)
Definition: regcache.h:235
int target_supports_btrace(enum btrace_format format)
Definition: target.c:3553
static void btrace_clear_history(struct btrace_thread_info *btinfo)
Definition: btrace.c:1788
void btrace_data_fini(struct btrace_data *data)
Definition: btrace-common.c:75
static const struct gdb_xml_attribute block_attributes[]
Definition: btrace.c:2146
struct btrace_insn_iterator * replay
Definition: btrace.h:356
struct cmd_list_element * maintenanceinfolist
Definition: cli-cmds.c:139
struct btrace_call_history * call_history
Definition: btrace.h:351
static int ftrace_function_switched(const struct btrace_function *bfun, const struct minimal_symbol *mfun, const struct symbol *fun)
Definition: btrace.c:184
int gdb_insn_length(struct gdbarch *gdbarch, CORE_ADDR addr)
Definition: disasm.c:826
static int btrace_stitch_trace(struct btrace_data *btrace, struct thread_info *tp)
Definition: btrace.c:1763
unsigned int size
static void parse_xml_btrace_block(struct gdb_xml_parser *parser, const struct gdb_xml_element *element, void *user_data, VEC(gdb_xml_value_s) *attributes)
Definition: btrace.c:2017
struct btrace_data_bts bts
void btrace_clear(struct thread_info *tp)
Definition: btrace.c:1963
CORE_ADDR end
Definition: btrace-common.h:45
void * memset(T *s, int c, size_t n)=delete
void internal_error(const char *file, int line, const char *fmt,...)
Definition: errors.c:50
unsigned int record_debug
Definition: record.c:33
static struct cmd_list_element * maint_btrace_pt_set_cmdlist
Definition: btrace.c:46
unsigned int btrace_call_number(const struct btrace_call_iterator *it)
Definition: btrace.c:2630
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Definition: btrace.h:43
struct cmd_list_element * add_cmd(const char *name, enum command_class theclass, const char *doc, struct cmd_list_element **list)
Definition: cli-decode.c:262
const struct btrace_thread_info * btinfo
Definition: btrace.h:206
int btrace_insn_get_error(const struct btrace_insn_iterator *it)
Definition: btrace.c:2340
static const struct gdb_xml_element btrace_elements[]
Definition: btrace.c:2186
#define VEC_safe_push(T, V, O)
Definition: vec.h:276
#define VEC(T)
Definition: vec.h:414
static void btrace_maint_print_packets(struct btrace_thread_info *btinfo, unsigned int begin, unsigned int end)
Definition: btrace.c:3115
char * skip_spaces(char *chp)
Definition: common-utils.c:337
struct btrace_call_iterator begin
Definition: btrace.h:226
#define DEBUG_FTRACE(msg, args...)
Definition: btrace.c:66
#define _(String)
Definition: gdb_locale.h:35
static void ftrace_fixup_level(struct btrace_thread_info *btinfo, struct btrace_function *bfun, int adjustment)
Definition: btrace.c:708
struct btrace_insn_history * insn_history
Definition: btrace.h:348
int btrace_call_cmp(const struct btrace_call_iterator *lhs, const struct btrace_call_iterator *rhs)
Definition: btrace.c:2741
static void parse_xml_btrace_conf_bts(struct gdb_xml_parser *parser, const struct gdb_xml_element *element, void *user_data, VEC(gdb_xml_value_s) *attributes)
Definition: btrace.c:2227
int gdbarch_insn_is_jump(struct gdbarch *gdbarch, CORE_ADDR addr)
Definition: gdbarch.c:4887
static void maint_btrace_packet_history_cmd(const char *arg, int from_tty)
Definition: btrace.c:3229
void btrace_insn_begin(struct btrace_insn_iterator *it, const struct btrace_thread_info *btinfo)
Definition: btrace.c:2356
btrace_format
Definition: btrace-common.h:54
void btrace_set_call_history(struct btrace_thread_info *btinfo, const struct btrace_call_iterator *begin, const struct btrace_call_iterator *end)
Definition: btrace.c:2782
#define END_CATCH
void btrace_disable(struct thread_info *tp)
Definition: btrace.c:1636
struct cmd_list_element * maintenance_set_cmdlist
Definition: maint.c:634
static struct btrace_function * ftrace_find_caller(struct btrace_thread_info *btinfo, struct btrace_function *bfun, struct minimal_symbol *mfun, struct symbol *fun)
Definition: btrace.c:364
static void maint_btrace_pt_show_cmd(const char *args, int from_tty)
Definition: btrace.c:3409
static void ftrace_connect_bfun(struct btrace_thread_info *btinfo, struct btrace_function *prev, struct btrace_function *next)
Definition: btrace.c:758
struct btrace_insn_iterator end
Definition: btrace.h:218
const char * symtab_to_fullname(struct symtab *s)
Definition: source.c:1131
static unsigned int get_uint(const char **arg)
Definition: btrace.c:3180
struct cmd_list_element * add_prefix_cmd(const char *name, enum command_class theclass, cmd_const_cfunc_ftype *fun, const char *doc, struct cmd_list_element **prefixlist, const char *prefixname, int allow_unknown, struct cmd_list_element **list)
Definition: cli-decode.c:367
int target_read_code(CORE_ADDR memaddr, gdb_byte *myaddr, ssize_t len)
Definition: target.c:1433
scoped_restore_tmpl< T > make_scoped_restore(T *var)
const struct btrace_thread_info * btinfo
Definition: btrace.h:193
unsigned int btrace_insn_number(const struct btrace_insn_iterator *it)
Definition: btrace.c:2348
mach_port_t kern_return_t mach_port_t msgports mach_port_t kern_return_t pid_t pid mach_port_t kern_return_t mach_port_t task mach_port_t kern_return_t int flags
Definition: gnu-nat.c:1891
enum btrace_cpu_vendor vendor
Definition: btrace-common.h:83
static enum btrace_insn_class ftrace_classify_insn(struct gdbarch *gdbarch, CORE_ADDR pc)
Definition: btrace.c:659
#define TRY
#define MSYMBOL_PRINT_NAME(symbol)
Definition: symtab.h:708
static const char * ftrace_print_filename(const struct btrace_function *bfun)
Definition: btrace.c:93
static struct btrace_function * ftrace_find_call_by_number(struct btrace_thread_info *btinfo, unsigned int number)
Definition: btrace.c:159
static struct btrace_function * ftrace_update_function(struct btrace_thread_info *btinfo, CORE_ADDR pc)
Definition: btrace.c:546
static void btrace_compute_ftrace(struct thread_info *tp, struct btrace_data *btrace)
Definition: btrace.c:1524
static unsigned int ftrace_call_num_insn(const struct btrace_function *bfun)
Definition: btrace.c:143
#define CATCH(EXCEPTION, MASK)
static struct btrace_function * ftrace_new_tailcall(struct btrace_thread_info *btinfo, struct minimal_symbol *mfun, struct symbol *fun)
Definition: btrace.c:329
void btrace_teardown(struct thread_info *tp)
Definition: btrace.c:1655
btrace_function_flags flags
Definition: btrace.h:186
std::vector< btrace_insn > insn
Definition: btrace.h:160
int gdb_xml_parse_quick(const char *name, const char *dtd_name, const struct gdb_xml_element *elements, const char *document, void *user_data)
Definition: xml-support.c:647
struct gdb_xml_value * xml_find_attribute(VEC(gdb_xml_value_s) *attributes, const char *name)
Definition: xml-support.c:231
struct cleanup * make_cleanup_btrace_data(struct btrace_data *data)
Definition: btrace.c:2833
void btrace_data_clear(struct btrace_data *data)
const char * btrace_format_string(enum btrace_format format)
Definition: btrace-common.c:27
static bool btrace_ends_with_single_insn(const struct btrace_thread_info *btinfo)
Definition: btrace.c:2602
#define UINT_MAX
Definition: defs.h:473
void btrace_insn_end(struct btrace_insn_iterator *it, const struct btrace_thread_info *btinfo)
Definition: btrace.c:2370
void fprintf_filtered(struct ui_file *stream, const char *format,...)
Definition: utils.c:2008
struct symbol * find_pc_function(CORE_ADDR pc)
Definition: blockframe.c:150
struct btrace_data data
Definition: btrace.h:329
enum btrace_format format
unsigned int btrace_call_prev(struct btrace_call_iterator *it, unsigned int stride)
Definition: btrace.c:2707
struct btrace_maint_packet_history packet_history
Definition: btrace.h:295
struct btrace_maint_info maint
Definition: btrace.h:362
#define VEC_length(T, V)
Definition: vec.h:140
struct cleanup * make_cleanup(make_cleanup_ftype *function, void *arg)
Definition: cleanups.c:116
static void btrace_maint_clear(struct btrace_thread_info *btinfo)
Definition: btrace.c:1802
static void do_btrace_data_cleanup(void *arg)
Definition: btrace.c:2825
const char version[]
Definition: version.c:2
unsigned int insn_index
Definition: btrace.h:199
unsigned int index
Definition: btrace.h:209
static void ftrace_update_caller(struct btrace_function *bfun, struct btrace_function *caller, enum btrace_function_flag flags)
Definition: btrace.c:262
static const struct gdb_xml_element btrace_children[]
Definition: btrace.c:2178
struct btrace_target_info * target
Definition: btrace.h:326
static void parse_xml_btrace_pt(struct gdb_xml_parser *parser, const struct gdb_xml_element *element, void *user_data, VEC(gdb_xml_value_s) *attributes)
Definition: btrace.c:2133
static struct btrace_function * ftrace_get_caller(struct btrace_thread_info *btinfo, struct btrace_function *bfun)
Definition: btrace.c:349
void btrace_call_end(struct btrace_call_iterator *it, const struct btrace_thread_info *btinfo)
Definition: btrace.c:2658
unsigned char model
Definition: btrace-common.h:89
#define VEC_index(T, V, I)
Definition: vec.h:167
struct btrace_data_pt pt
static struct cmd_list_element * maint_btrace_pt_show_cmdlist
Definition: btrace.c:47
const char * btrace_decode_error(enum btrace_format format, int errcode)
Definition: btrace.c:1829
static void maint_btrace_set_cmd(const char *args, int from_tty)
Definition: btrace.c:3382
#define SYMBOL_LINKAGE_NAME(symbol)
Definition: symtab.h:523
mach_port_t mach_port_t name mach_port_t mach_port_t name kern_return_t int status
Definition: gnu-nat.c:1822
const char * print_thread_id(struct thread_info *thr)
Definition: thread.c:1602
static void btrace_add_pc(struct thread_info *tp)
Definition: btrace.c:1546
#define VEC_pop(T, V)
Definition: vec.h:286
const struct btrace_config * btrace_conf(const struct btrace_thread_info *btinfo)
Definition: btrace.c:1625
const struct btrace_insn * btrace_insn_get(const struct btrace_insn_iterator *it)
Definition: btrace.c:2317
unsigned int call_index
Definition: btrace.h:196
ptid_t ptid
Definition: gdbthread.h:219
static const struct gdb_xml_element btrace_pt_config_children[]
Definition: btrace.c:2160
static const struct gdb_xml_element btrace_conf_elements[]
Definition: btrace.c:2285
struct minimal_symbol * msym
Definition: btrace.h:142
static void parse_xml_btrace_conf_pt(struct gdb_xml_parser *parser, const struct gdb_xml_element *element, void *user_data, VEC(gdb_xml_value_s) *attributes)
Definition: btrace.c:2246
void printf_unfiltered(const char *format,...)
Definition: utils.c:2056
unsigned int ngaps
Definition: btrace.h:342
int fromhex(int a)
Definition: rsp-low.c:26
static void btrace_finalize_ftrace(struct thread_info *tp, std::vector< unsigned int > &gaps)
Definition: btrace.c:1514
void * xmalloc(YYSIZE_T)
static struct btrace_function * ftrace_new_function(struct btrace_thread_info *btinfo, struct minimal_symbol *mfun, struct symbol *fun)
Definition: btrace.c:233
unsigned int insn_offset
Definition: btrace.h:170
static void show_maint_btrace_pt_skip_pad(struct ui_file *file, int from_tty, struct cmd_list_element *c, const char *value)
Definition: btrace.c:3474
enum btrace_error target_read_btrace(struct btrace_data *btrace, struct btrace_target_info *btinfo, enum btrace_read_type type)
Definition: target.c:3585
int btrace_data_empty(struct btrace_data *data)
Definition: btrace-common.c:98
CORE_ADDR pc
Definition: btrace.h:72
void gdb_xml_error(struct gdb_xml_parser *parser, const char *format,...)
Definition: xml-support.c:219
#define VEC_last(T, V)
Definition: vec.h:158
static int maint_btrace_pt_skip_pad
Definition: btrace.c:50
#define gdb_assert(expr)
Definition: gdb_assert.h:32
Definition: block.h:60
#define VEC_empty(T, V)
Definition: vec.h:148
Definition: value.c:169
union btrace_maint_info::@16 variant
int btrace_is_empty(struct thread_info *tp)
Definition: btrace.c:2806
unsigned int btrace_insn_next(struct btrace_insn_iterator *it, unsigned int stride)
Definition: btrace.c:2396
enum btrace_insn_class iclass
Definition: btrace.h:78
struct btrace_insn_iterator begin
Definition: btrace.h:217
static const struct gdb_xml_attribute btrace_attributes[]
Definition: btrace.c:2173
struct btrace_config_pt pt
static struct btrace_function * ftrace_new_call(struct btrace_thread_info *btinfo, struct minimal_symbol *mfun, struct symbol *fun)
Definition: btrace.c:309
void throw_exception(struct gdb_exception exception)
void _initialize_btrace(void)
Definition: btrace.c:3485
btrace_insn_flags flags
Definition: btrace.h:81
bfd_byte gdb_byte
Definition: common-types.h:38
void btrace_fetch(struct thread_info *tp)
Definition: btrace.c:1878
unsigned int btrace_call_next(struct btrace_call_iterator *it, unsigned int stride)
Definition: btrace.c:2671
void help_list(struct cmd_list_element *list, const char *cmdtype, enum command_class theclass, struct ui_file *stream)
Definition: cli-decode.c:1071
void discard_cleanups(struct cleanup *old_chain)
Definition: cleanups.c:212
unsigned int next
Definition: btrace.h:150
void btrace_enable(struct thread_info *tp, const struct btrace_config *conf)
Definition: btrace.c:1575
unsigned int size
struct btrace_maint_info::@16::@17 bts
struct bound_minimal_symbol lookup_minimal_symbol_by_pc(CORE_ADDR pc)
Definition: minsyms.c:928
btrace_cpu_vendor
Definition: btrace-common.h:69
#define ALL_NON_EXITED_THREADS(T)
Definition: gdbthread.h:490
static void maint_btrace_clear_packet_history_cmd(const char *args, int from_tty)
Definition: btrace.c:3334
int btrace_insn_cmp(const struct btrace_insn_iterator *lhs, const struct btrace_insn_iterator *rhs)
Definition: btrace.c:2536
void btrace_call_begin(struct btrace_call_iterator *it, const struct btrace_thread_info *btinfo)
Definition: btrace.c:2645
#define XCNEW(T)
Definition: poison.h:121
static void btrace_compute_ftrace_pt(struct thread_info *tp, const struct btrace_data_pt *btrace, std::vector< unsigned int > &gaps)
Definition: btrace.c:1478
int gdbarch_insn_is_call(struct gdbarch *gdbarch, CORE_ADDR addr)
Definition: gdbarch.c:4853
static const struct gdb_xml_element btrace_pt_children[]
Definition: btrace.c:2166
static void btrace_compute_ftrace_bts(struct thread_info *tp, const struct btrace_data_bts *btrace, std::vector< unsigned int > &gaps)
Definition: btrace.c:1034
static const struct gdb_xml_attribute btrace_conf_attributes[]
Definition: btrace.c:2280
void btrace_free_objfile(struct objfile *objfile)
Definition: btrace.c:1988
static void check_xml_btrace_version(struct gdb_xml_parser *parser, const struct gdb_xml_element *element, void *user_data, VEC(gdb_xml_value_s) *attributes)
Definition: btrace.c:2003
CORE_ADDR regcache_read_pc(struct regcache *regcache)
Definition: regcache.c:1229
ptid_t inferior_ptid
Definition: infcmd.c:94
struct btrace_data_pt_config config
struct minimal_symbol * minsym
Definition: minsyms.h:34
static void btrace_bridge_gaps(struct thread_info *tp, std::vector< unsigned int > &gaps)
Definition: btrace.c:957
static void parse_xml_btrace_pt_config_cpu(struct gdb_xml_parser *parser, const struct gdb_xml_element *element, void *user_data, VEC(gdb_xml_value_s) *attributes)
Definition: btrace.c:2092
const char * target_pid_to_str(ptid_t ptid)
Definition: target.c:2194
unsigned int prev
Definition: btrace.h:149
static int ftrace_match_backtrace(struct btrace_thread_info *btinfo, struct btrace_function *lhs, struct btrace_function *rhs)
Definition: btrace.c:686
int offset
Definition: agent.c:65
void add_setshow_boolean_cmd(const char *name, enum command_class theclass, int *var, const char *set_doc, const char *show_doc, const char *help_doc, cmd_const_sfunc_ftype *set_func, show_value_ftype *show_func, struct cmd_list_element **set_list, struct cmd_list_element **show_list)
Definition: cli-decode.c:569
Definition: buffer.h:23
static void maint_btrace_clear_cmd(const char *args, int from_tty)
Definition: btrace.c:3356
gdb_byte * data
const struct btrace_function * btrace_call_get(const struct btrace_call_iterator *it)
Definition: btrace.c:2619
static void ftrace_update_insns(struct btrace_function *bfun, const btrace_insn &insn)
Definition: btrace.c:648
static struct btrace_function * ftrace_new_return(struct btrace_thread_info *btinfo, struct minimal_symbol *mfun, struct symbol *fun)
Definition: btrace.c:412
void parse_xml_btrace_conf(struct btrace_config *conf, const char *xml)
Definition: btrace.c:2296
static void maint_btrace_show_cmd(const char *args, int from_tty)
Definition: btrace.c:3391
int btrace_is_replaying(struct thread_info *tp)
Definition: btrace.c:2798
gdb_xml_attribute_handler gdb_xml_parse_attr_ulongest
std::vector< btrace_function > functions
Definition: btrace.h:334
unsigned char stepping
Definition: btrace-common.h:92
unsigned long long ULONGEST
Definition: common-types.h:53
static struct btrace_function * ftrace_find_call(struct btrace_thread_info *btinfo, struct btrace_function *bfun)
Definition: btrace.c:388
gdb_byte size
Definition: btrace.h:75
struct cmd_list_element * maintenancelist
Definition: cli-cmds.c:135
void btrace_set_insn_history(struct btrace_thread_info *btinfo, const struct btrace_insn_iterator *begin, const struct btrace_insn_iterator *end)
Definition: btrace.c:2768
int btrace_find_insn_by_number(struct btrace_insn_iterator *it, const struct btrace_thread_info *btinfo, unsigned int number)
Definition: btrace.c:2550
enum btrace_format format
btrace_function_flag
Definition: btrace.h:85
unsigned int number
Definition: btrace.h:175
void dont_repeat(void)
Definition: top.c:695
void reinit_frame_cache(void)
Definition: frame.c:1809
CORE_ADDR get_pc_function_start(CORE_ADDR pc)
Definition: blockframe.c:86
static void ftrace_fixup_caller(struct btrace_thread_info *btinfo, struct btrace_function *bfun, struct btrace_function *caller, enum btrace_function_flag flags)
Definition: btrace.c:279
void btrace_data_init(struct btrace_data *data)
Definition: btrace-common.c:67
static void ftrace_debug(const struct btrace_function *bfun, const char *prefix)
Definition: btrace.c:123
static void btrace_maint_update_packets(struct btrace_thread_info *btinfo, unsigned int *begin, unsigned int *end, unsigned int *from, unsigned int *to)
Definition: btrace.c:3076
struct btrace_call_iterator end
Definition: btrace.h:227
struct symtab * symbol_symtab(const struct symbol *symbol)
Definition: symtab.c:5803
static void btrace_compute_ftrace_1(struct thread_info *tp, struct btrace_data *btrace, std::vector< unsigned int > &gaps)
Definition: btrace.c:1491
int btrace_find_call_by_number(struct btrace_call_iterator *it, const struct btrace_thread_info *btinfo, unsigned int number)
Definition: btrace.c:2751
struct cmd_list_element * maintenance_show_cmdlist
Definition: maint.c:635
static const struct gdb_xml_element btrace_conf_children[]
Definition: btrace.c:2272
const struct btrace_config * target_btrace_conf(const struct btrace_target_info *btinfo)
Definition: target.c:3595
#define DEBUG(msg, args...)
Definition: btrace.c:57
void error(const char *fmt,...)
Definition: errors.c:38
size_t size
Definition: go32-nat.c:242
static struct btrace_function * ftrace_new_switch(struct btrace_thread_info *btinfo, struct minimal_symbol *mfun, struct symbol *fun)
Definition: btrace.c:494
static void maint_btrace_pt_set_cmd(const char *args, int from_tty)
Definition: btrace.c:3400
void do_cleanups(struct cleanup *old_chain)
Definition: cleanups.c:174
static void parse_xml_btrace_pt_raw(struct gdb_xml_parser *parser, const struct gdb_xml_element *element, void *user_data, const char *body_text)
Definition: btrace.c:2119
int gdbarch_insn_is_ret(struct gdbarch *gdbarch, CORE_ADDR addr)
Definition: gdbarch.c:4870
int btrace_data_append(struct btrace_data *dst, const struct btrace_data *src)
static const struct gdb_xml_attribute btrace_conf_pt_attributes[]
Definition: btrace.c:2262
unsigned int up
Definition: btrace.h:155
#define gdb_stdout
Definition: utils.h:340
static int ftrace_bridge_gap(struct btrace_thread_info *btinfo, struct btrace_function *lhs, struct btrace_function *rhs, int min_matches)
Definition: btrace.c:897