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02d27625
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1/* Branch trace support for GDB, the GNU debugger.
2
b811d2c2 3 Copyright (C) 2013-2020 Free Software Foundation, Inc.
02d27625
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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
d41f6d8e 22#include "defs.h"
02d27625
MM
23#include "btrace.h"
24#include "gdbthread.h"
02d27625 25#include "inferior.h"
4de283e4 26#include "target.h"
02d27625 27#include "record.h"
d55e5aa6 28#include "symtab.h"
4de283e4
TT
29#include "disasm.h"
30#include "source.h"
31#include "filenames.h"
c12a2917 32#include "xml-support.h"
4de283e4 33#include "regcache.h"
268a13a5 34#include "gdbsupport/rsp-low.h"
4de283e4
TT
35#include "gdbcmd.h"
36#include "cli/cli-utils.h"
0d12e84c 37#include "gdbarch.h"
b20a6524 38
4a4495d6
MM
39/* For maintenance commands. */
40#include "record-btrace.h"
41
b20a6524 42#include <inttypes.h>
b0627500 43#include <ctype.h>
325fac50 44#include <algorithm>
b0627500
MM
45
46/* Command lists for btrace maintenance commands. */
47static struct cmd_list_element *maint_btrace_cmdlist;
48static struct cmd_list_element *maint_btrace_set_cmdlist;
49static struct cmd_list_element *maint_btrace_show_cmdlist;
50static struct cmd_list_element *maint_btrace_pt_set_cmdlist;
51static struct cmd_list_element *maint_btrace_pt_show_cmdlist;
52
53/* Control whether to skip PAD packets when computing the packet history. */
491144b5 54static bool maint_btrace_pt_skip_pad = true;
b20a6524
MM
55
56static void btrace_add_pc (struct thread_info *tp);
02d27625
MM
57
58/* Print a record debug message. Use do ... while (0) to avoid ambiguities
59 when used in if statements. */
60
61#define DEBUG(msg, args...) \
62 do \
63 { \
64 if (record_debug != 0) \
65 fprintf_unfiltered (gdb_stdlog, \
66 "[btrace] " msg "\n", ##args); \
67 } \
68 while (0)
69
70#define DEBUG_FTRACE(msg, args...) DEBUG ("[ftrace] " msg, ##args)
71
02d27625
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72/* Return the function name of a recorded function segment for printing.
73 This function never returns NULL. */
74
75static const char *
23a7fe75 76ftrace_print_function_name (const struct btrace_function *bfun)
02d27625
MM
77{
78 struct minimal_symbol *msym;
79 struct symbol *sym;
80
81 msym = bfun->msym;
82 sym = bfun->sym;
83
84 if (sym != NULL)
987012b8 85 return sym->print_name ();
02d27625
MM
86
87 if (msym != NULL)
c9d95fa3 88 return msym->print_name ();
02d27625
MM
89
90 return "<unknown>";
91}
92
93/* Return the file name of a recorded function segment for printing.
94 This function never returns NULL. */
95
96static const char *
23a7fe75 97ftrace_print_filename (const struct btrace_function *bfun)
02d27625
MM
98{
99 struct symbol *sym;
100 const char *filename;
101
102 sym = bfun->sym;
103
104 if (sym != NULL)
08be3fe3 105 filename = symtab_to_filename_for_display (symbol_symtab (sym));
02d27625
MM
106 else
107 filename = "<unknown>";
108
109 return filename;
110}
111
23a7fe75
MM
112/* Return a string representation of the address of an instruction.
113 This function never returns NULL. */
02d27625 114
23a7fe75
MM
115static const char *
116ftrace_print_insn_addr (const struct btrace_insn *insn)
02d27625 117{
23a7fe75
MM
118 if (insn == NULL)
119 return "<nil>";
120
121 return core_addr_to_string_nz (insn->pc);
02d27625
MM
122}
123
23a7fe75 124/* Print an ftrace debug status message. */
02d27625
MM
125
126static void
23a7fe75 127ftrace_debug (const struct btrace_function *bfun, const char *prefix)
02d27625 128{
23a7fe75
MM
129 const char *fun, *file;
130 unsigned int ibegin, iend;
ce0dfbea 131 int level;
23a7fe75
MM
132
133 fun = ftrace_print_function_name (bfun);
134 file = ftrace_print_filename (bfun);
135 level = bfun->level;
136
23a7fe75 137 ibegin = bfun->insn_offset;
0860c437 138 iend = ibegin + bfun->insn.size ();
23a7fe75 139
ce0dfbea
MM
140 DEBUG_FTRACE ("%s: fun = %s, file = %s, level = %d, insn = [%u; %u)",
141 prefix, fun, file, level, ibegin, iend);
02d27625
MM
142}
143
69090cee
TW
144/* Return the number of instructions in a given function call segment. */
145
146static unsigned int
147ftrace_call_num_insn (const struct btrace_function* bfun)
148{
149 if (bfun == NULL)
150 return 0;
151
152 /* A gap is always counted as one instruction. */
153 if (bfun->errcode != 0)
154 return 1;
155
0860c437 156 return bfun->insn.size ();
69090cee
TW
157}
158
42bfe59e
TW
159/* Return the function segment with the given NUMBER or NULL if no such segment
160 exists. BTINFO is the branch trace information for the current thread. */
161
162static struct btrace_function *
08c3f6d2
TW
163ftrace_find_call_by_number (struct btrace_thread_info *btinfo,
164 unsigned int number)
165{
166 if (number == 0 || number > btinfo->functions.size ())
167 return NULL;
168
169 return &btinfo->functions[number - 1];
170}
171
172/* A const version of the function above. */
173
174static const struct btrace_function *
42bfe59e
TW
175ftrace_find_call_by_number (const struct btrace_thread_info *btinfo,
176 unsigned int number)
177{
178 if (number == 0 || number > btinfo->functions.size ())
179 return NULL;
180
08c3f6d2 181 return &btinfo->functions[number - 1];
42bfe59e
TW
182}
183
23a7fe75
MM
184/* Return non-zero if BFUN does not match MFUN and FUN,
185 return zero otherwise. */
02d27625
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186
187static int
23a7fe75
MM
188ftrace_function_switched (const struct btrace_function *bfun,
189 const struct minimal_symbol *mfun,
190 const struct symbol *fun)
02d27625
MM
191{
192 struct minimal_symbol *msym;
193 struct symbol *sym;
194
02d27625
MM
195 msym = bfun->msym;
196 sym = bfun->sym;
197
198 /* If the minimal symbol changed, we certainly switched functions. */
199 if (mfun != NULL && msym != NULL
c9d95fa3 200 && strcmp (mfun->linkage_name (), msym->linkage_name ()) != 0)
02d27625
MM
201 return 1;
202
203 /* If the symbol changed, we certainly switched functions. */
204 if (fun != NULL && sym != NULL)
205 {
206 const char *bfname, *fname;
207
208 /* Check the function name. */
987012b8 209 if (strcmp (fun->linkage_name (), sym->linkage_name ()) != 0)
02d27625
MM
210 return 1;
211
212 /* Check the location of those functions, as well. */
08be3fe3
DE
213 bfname = symtab_to_fullname (symbol_symtab (sym));
214 fname = symtab_to_fullname (symbol_symtab (fun));
02d27625
MM
215 if (filename_cmp (fname, bfname) != 0)
216 return 1;
217 }
218
23a7fe75
MM
219 /* If we lost symbol information, we switched functions. */
220 if (!(msym == NULL && sym == NULL) && mfun == NULL && fun == NULL)
221 return 1;
222
223 /* If we gained symbol information, we switched functions. */
224 if (msym == NULL && sym == NULL && !(mfun == NULL && fun == NULL))
225 return 1;
226
02d27625
MM
227 return 0;
228}
229
8286623c
TW
230/* Allocate and initialize a new branch trace function segment at the end of
231 the trace.
17b89b34 232 BTINFO is the branch trace information for the current thread.
08c3f6d2
TW
233 MFUN and FUN are the symbol information we have for this function.
234 This invalidates all struct btrace_function pointer currently held. */
23a7fe75
MM
235
236static struct btrace_function *
17b89b34 237ftrace_new_function (struct btrace_thread_info *btinfo,
23a7fe75
MM
238 struct minimal_symbol *mfun,
239 struct symbol *fun)
240{
08c3f6d2
TW
241 int level;
242 unsigned int number, insn_offset;
23a7fe75 243
b54b03bd 244 if (btinfo->functions.empty ())
5de9129b 245 {
08c3f6d2
TW
246 /* Start counting NUMBER and INSN_OFFSET at one. */
247 level = 0;
248 number = 1;
249 insn_offset = 1;
5de9129b
MM
250 }
251 else
23a7fe75 252 {
08c3f6d2
TW
253 const struct btrace_function *prev = &btinfo->functions.back ();
254 level = prev->level;
255 number = prev->number + 1;
256 insn_offset = prev->insn_offset + ftrace_call_num_insn (prev);
23a7fe75
MM
257 }
258
08c3f6d2
TW
259 btinfo->functions.emplace_back (mfun, fun, number, insn_offset, level);
260 return &btinfo->functions.back ();
02d27625
MM
261}
262
23a7fe75 263/* Update the UP field of a function segment. */
02d27625 264
23a7fe75
MM
265static void
266ftrace_update_caller (struct btrace_function *bfun,
267 struct btrace_function *caller,
268 enum btrace_function_flag flags)
02d27625 269{
42bfe59e 270 if (bfun->up != 0)
23a7fe75 271 ftrace_debug (bfun, "updating caller");
02d27625 272
42bfe59e 273 bfun->up = caller->number;
23a7fe75
MM
274 bfun->flags = flags;
275
276 ftrace_debug (bfun, "set caller");
d87fdac3 277 ftrace_debug (caller, "..to");
23a7fe75
MM
278}
279
280/* Fix up the caller for all segments of a function. */
281
282static void
4aeb0dfc
TW
283ftrace_fixup_caller (struct btrace_thread_info *btinfo,
284 struct btrace_function *bfun,
23a7fe75
MM
285 struct btrace_function *caller,
286 enum btrace_function_flag flags)
287{
4aeb0dfc 288 unsigned int prev, next;
23a7fe75 289
4aeb0dfc
TW
290 prev = bfun->prev;
291 next = bfun->next;
23a7fe75
MM
292 ftrace_update_caller (bfun, caller, flags);
293
294 /* Update all function segments belonging to the same function. */
4aeb0dfc
TW
295 for (; prev != 0; prev = bfun->prev)
296 {
297 bfun = ftrace_find_call_by_number (btinfo, prev);
298 ftrace_update_caller (bfun, caller, flags);
299 }
23a7fe75 300
4aeb0dfc
TW
301 for (; next != 0; next = bfun->next)
302 {
303 bfun = ftrace_find_call_by_number (btinfo, next);
304 ftrace_update_caller (bfun, caller, flags);
305 }
23a7fe75
MM
306}
307
8286623c 308/* Add a new function segment for a call at the end of the trace.
17b89b34 309 BTINFO is the branch trace information for the current thread.
23a7fe75
MM
310 MFUN and FUN are the symbol information we have for this function. */
311
312static struct btrace_function *
17b89b34 313ftrace_new_call (struct btrace_thread_info *btinfo,
23a7fe75
MM
314 struct minimal_symbol *mfun,
315 struct symbol *fun)
316{
b54b03bd 317 const unsigned int length = btinfo->functions.size ();
8286623c 318 struct btrace_function *bfun = ftrace_new_function (btinfo, mfun, fun);
23a7fe75 319
42bfe59e 320 bfun->up = length;
31fd9caa 321 bfun->level += 1;
23a7fe75
MM
322
323 ftrace_debug (bfun, "new call");
324
325 return bfun;
326}
327
8286623c 328/* Add a new function segment for a tail call at the end of the trace.
17b89b34 329 BTINFO is the branch trace information for the current thread.
23a7fe75
MM
330 MFUN and FUN are the symbol information we have for this function. */
331
332static struct btrace_function *
17b89b34 333ftrace_new_tailcall (struct btrace_thread_info *btinfo,
23a7fe75
MM
334 struct minimal_symbol *mfun,
335 struct symbol *fun)
336{
b54b03bd 337 const unsigned int length = btinfo->functions.size ();
8286623c 338 struct btrace_function *bfun = ftrace_new_function (btinfo, mfun, fun);
02d27625 339
42bfe59e 340 bfun->up = length;
31fd9caa 341 bfun->level += 1;
23a7fe75 342 bfun->flags |= BFUN_UP_LINKS_TO_TAILCALL;
02d27625 343
23a7fe75
MM
344 ftrace_debug (bfun, "new tail call");
345
346 return bfun;
347}
348
d87fdac3 349/* Return the caller of BFUN or NULL if there is none. This function skips
42bfe59e
TW
350 tail calls in the call chain. BTINFO is the branch trace information for
351 the current thread. */
d87fdac3 352static struct btrace_function *
42bfe59e
TW
353ftrace_get_caller (struct btrace_thread_info *btinfo,
354 struct btrace_function *bfun)
d87fdac3 355{
42bfe59e 356 for (; bfun != NULL; bfun = ftrace_find_call_by_number (btinfo, bfun->up))
d87fdac3 357 if ((bfun->flags & BFUN_UP_LINKS_TO_TAILCALL) == 0)
42bfe59e 358 return ftrace_find_call_by_number (btinfo, bfun->up);
d87fdac3
MM
359
360 return NULL;
361}
362
23a7fe75 363/* Find the innermost caller in the back trace of BFUN with MFUN/FUN
42bfe59e
TW
364 symbol information. BTINFO is the branch trace information for the current
365 thread. */
23a7fe75
MM
366
367static struct btrace_function *
42bfe59e
TW
368ftrace_find_caller (struct btrace_thread_info *btinfo,
369 struct btrace_function *bfun,
23a7fe75
MM
370 struct minimal_symbol *mfun,
371 struct symbol *fun)
372{
42bfe59e 373 for (; bfun != NULL; bfun = ftrace_find_call_by_number (btinfo, bfun->up))
23a7fe75
MM
374 {
375 /* Skip functions with incompatible symbol information. */
376 if (ftrace_function_switched (bfun, mfun, fun))
377 continue;
378
379 /* This is the function segment we're looking for. */
380 break;
381 }
382
383 return bfun;
384}
385
386/* Find the innermost caller in the back trace of BFUN, skipping all
387 function segments that do not end with a call instruction (e.g.
42bfe59e
TW
388 tail calls ending with a jump). BTINFO is the branch trace information for
389 the current thread. */
23a7fe75
MM
390
391static struct btrace_function *
42bfe59e
TW
392ftrace_find_call (struct btrace_thread_info *btinfo,
393 struct btrace_function *bfun)
23a7fe75 394{
42bfe59e 395 for (; bfun != NULL; bfun = ftrace_find_call_by_number (btinfo, bfun->up))
02d27625 396 {
31fd9caa
MM
397 /* Skip gaps. */
398 if (bfun->errcode != 0)
399 continue;
23a7fe75 400
0860c437 401 btrace_insn &last = bfun->insn.back ();
02d27625 402
0860c437 403 if (last.iclass == BTRACE_INSN_CALL)
23a7fe75
MM
404 break;
405 }
406
407 return bfun;
408}
409
8286623c
TW
410/* Add a continuation segment for a function into which we return at the end of
411 the trace.
17b89b34 412 BTINFO is the branch trace information for the current thread.
23a7fe75
MM
413 MFUN and FUN are the symbol information we have for this function. */
414
415static struct btrace_function *
17b89b34 416ftrace_new_return (struct btrace_thread_info *btinfo,
23a7fe75
MM
417 struct minimal_symbol *mfun,
418 struct symbol *fun)
419{
08c3f6d2 420 struct btrace_function *prev, *bfun, *caller;
23a7fe75 421
8286623c 422 bfun = ftrace_new_function (btinfo, mfun, fun);
08c3f6d2 423 prev = ftrace_find_call_by_number (btinfo, bfun->number - 1);
23a7fe75
MM
424
425 /* It is important to start at PREV's caller. Otherwise, we might find
426 PREV itself, if PREV is a recursive function. */
42bfe59e
TW
427 caller = ftrace_find_call_by_number (btinfo, prev->up);
428 caller = ftrace_find_caller (btinfo, caller, mfun, fun);
23a7fe75
MM
429 if (caller != NULL)
430 {
431 /* The caller of PREV is the preceding btrace function segment in this
432 function instance. */
4aeb0dfc 433 gdb_assert (caller->next == 0);
23a7fe75 434
4aeb0dfc
TW
435 caller->next = bfun->number;
436 bfun->prev = caller->number;
23a7fe75
MM
437
438 /* Maintain the function level. */
439 bfun->level = caller->level;
440
441 /* Maintain the call stack. */
442 bfun->up = caller->up;
443 bfun->flags = caller->flags;
444
445 ftrace_debug (bfun, "new return");
446 }
447 else
448 {
449 /* We did not find a caller. This could mean that something went
450 wrong or that the call is simply not included in the trace. */
02d27625 451
23a7fe75 452 /* Let's search for some actual call. */
42bfe59e
TW
453 caller = ftrace_find_call_by_number (btinfo, prev->up);
454 caller = ftrace_find_call (btinfo, caller);
23a7fe75 455 if (caller == NULL)
02d27625 456 {
23a7fe75
MM
457 /* There is no call in PREV's back trace. We assume that the
458 branch trace did not include it. */
459
259ba1e8
MM
460 /* Let's find the topmost function and add a new caller for it.
461 This should handle a series of initial tail calls. */
42bfe59e
TW
462 while (prev->up != 0)
463 prev = ftrace_find_call_by_number (btinfo, prev->up);
02d27625 464
259ba1e8 465 bfun->level = prev->level - 1;
23a7fe75
MM
466
467 /* Fix up the call stack for PREV. */
4aeb0dfc 468 ftrace_fixup_caller (btinfo, prev, bfun, BFUN_UP_LINKS_TO_RET);
23a7fe75
MM
469
470 ftrace_debug (bfun, "new return - no caller");
471 }
472 else
02d27625 473 {
23a7fe75 474 /* There is a call in PREV's back trace to which we should have
259ba1e8
MM
475 returned but didn't. Let's start a new, separate back trace
476 from PREV's level. */
477 bfun->level = prev->level - 1;
478
479 /* We fix up the back trace for PREV but leave other function segments
480 on the same level as they are.
481 This should handle things like schedule () correctly where we're
482 switching contexts. */
42bfe59e 483 prev->up = bfun->number;
259ba1e8 484 prev->flags = BFUN_UP_LINKS_TO_RET;
02d27625 485
23a7fe75 486 ftrace_debug (bfun, "new return - unknown caller");
02d27625 487 }
23a7fe75
MM
488 }
489
490 return bfun;
491}
492
8286623c 493/* Add a new function segment for a function switch at the end of the trace.
17b89b34 494 BTINFO is the branch trace information for the current thread.
23a7fe75
MM
495 MFUN and FUN are the symbol information we have for this function. */
496
497static struct btrace_function *
17b89b34 498ftrace_new_switch (struct btrace_thread_info *btinfo,
23a7fe75
MM
499 struct minimal_symbol *mfun,
500 struct symbol *fun)
501{
08c3f6d2 502 struct btrace_function *prev, *bfun;
23a7fe75 503
4c2c7ac6
MM
504 /* This is an unexplained function switch. We can't really be sure about the
505 call stack, yet the best I can think of right now is to preserve it. */
8286623c 506 bfun = ftrace_new_function (btinfo, mfun, fun);
08c3f6d2 507 prev = ftrace_find_call_by_number (btinfo, bfun->number - 1);
4c2c7ac6
MM
508 bfun->up = prev->up;
509 bfun->flags = prev->flags;
02d27625 510
23a7fe75
MM
511 ftrace_debug (bfun, "new switch");
512
513 return bfun;
514}
515
8286623c
TW
516/* Add a new function segment for a gap in the trace due to a decode error at
517 the end of the trace.
17b89b34 518 BTINFO is the branch trace information for the current thread.
31fd9caa
MM
519 ERRCODE is the format-specific error code. */
520
521static struct btrace_function *
8ffd39f2
TW
522ftrace_new_gap (struct btrace_thread_info *btinfo, int errcode,
523 std::vector<unsigned int> &gaps)
31fd9caa
MM
524{
525 struct btrace_function *bfun;
526
b54b03bd 527 if (btinfo->functions.empty ())
8286623c 528 bfun = ftrace_new_function (btinfo, NULL, NULL);
b54b03bd
TW
529 else
530 {
531 /* We hijack the previous function segment if it was empty. */
08c3f6d2 532 bfun = &btinfo->functions.back ();
0860c437 533 if (bfun->errcode != 0 || !bfun->insn.empty ())
b54b03bd
TW
534 bfun = ftrace_new_function (btinfo, NULL, NULL);
535 }
31fd9caa
MM
536
537 bfun->errcode = errcode;
8ffd39f2 538 gaps.push_back (bfun->number);
31fd9caa
MM
539
540 ftrace_debug (bfun, "new gap");
541
542 return bfun;
543}
544
8286623c
TW
545/* Update the current function segment at the end of the trace in BTINFO with
546 respect to the instruction at PC. This may create new function segments.
23a7fe75
MM
547 Return the chronologically latest function segment, never NULL. */
548
549static struct btrace_function *
8286623c 550ftrace_update_function (struct btrace_thread_info *btinfo, CORE_ADDR pc)
23a7fe75
MM
551{
552 struct bound_minimal_symbol bmfun;
553 struct minimal_symbol *mfun;
554 struct symbol *fun;
b54b03bd 555 struct btrace_function *bfun;
23a7fe75
MM
556
557 /* Try to determine the function we're in. We use both types of symbols
558 to avoid surprises when we sometimes get a full symbol and sometimes
559 only a minimal symbol. */
560 fun = find_pc_function (pc);
561 bmfun = lookup_minimal_symbol_by_pc (pc);
562 mfun = bmfun.minsym;
563
564 if (fun == NULL && mfun == NULL)
565 DEBUG_FTRACE ("no symbol at %s", core_addr_to_string_nz (pc));
566
b54b03bd
TW
567 /* If we didn't have a function, we create one. */
568 if (btinfo->functions.empty ())
569 return ftrace_new_function (btinfo, mfun, fun);
570
571 /* If we had a gap before, we create a function. */
08c3f6d2 572 bfun = &btinfo->functions.back ();
b54b03bd 573 if (bfun->errcode != 0)
8286623c 574 return ftrace_new_function (btinfo, mfun, fun);
23a7fe75
MM
575
576 /* Check the last instruction, if we have one.
577 We do this check first, since it allows us to fill in the call stack
578 links in addition to the normal flow links. */
0860c437
SM
579 btrace_insn *last = NULL;
580 if (!bfun->insn.empty ())
581 last = &bfun->insn.back ();
23a7fe75
MM
582
583 if (last != NULL)
584 {
7d5c24b3
MM
585 switch (last->iclass)
586 {
587 case BTRACE_INSN_RETURN:
986b6601
MM
588 {
589 const char *fname;
590
591 /* On some systems, _dl_runtime_resolve returns to the resolved
592 function instead of jumping to it. From our perspective,
593 however, this is a tailcall.
594 If we treated it as return, we wouldn't be able to find the
595 resolved function in our stack back trace. Hence, we would
596 lose the current stack back trace and start anew with an empty
597 back trace. When the resolved function returns, we would then
598 create a stack back trace with the same function names but
599 different frame id's. This will confuse stepping. */
600 fname = ftrace_print_function_name (bfun);
601 if (strcmp (fname, "_dl_runtime_resolve") == 0)
8286623c 602 return ftrace_new_tailcall (btinfo, mfun, fun);
986b6601 603
8286623c 604 return ftrace_new_return (btinfo, mfun, fun);
986b6601 605 }
23a7fe75 606
7d5c24b3
MM
607 case BTRACE_INSN_CALL:
608 /* Ignore calls to the next instruction. They are used for PIC. */
609 if (last->pc + last->size == pc)
610 break;
23a7fe75 611
8286623c 612 return ftrace_new_call (btinfo, mfun, fun);
23a7fe75 613
7d5c24b3
MM
614 case BTRACE_INSN_JUMP:
615 {
616 CORE_ADDR start;
23a7fe75 617
7d5c24b3 618 start = get_pc_function_start (pc);
23a7fe75 619
2dfdb47a
MM
620 /* A jump to the start of a function is (typically) a tail call. */
621 if (start == pc)
8286623c 622 return ftrace_new_tailcall (btinfo, mfun, fun);
2dfdb47a 623
2cb2ba9a
MM
624 /* Some versions of _Unwind_RaiseException use an indirect
625 jump to 'return' to the exception handler of the caller
626 handling the exception instead of a return. Let's restrict
627 this heuristic to that and related functions. */
628 const char *fname = ftrace_print_function_name (bfun);
629 if (strncmp (fname, "_Unwind_", strlen ("_Unwind_")) == 0)
630 {
631 struct btrace_function *caller
632 = ftrace_find_call_by_number (btinfo, bfun->up);
633 caller = ftrace_find_caller (btinfo, caller, mfun, fun);
634 if (caller != NULL)
635 return ftrace_new_return (btinfo, mfun, fun);
636 }
637
7d5c24b3 638 /* If we can't determine the function for PC, we treat a jump at
2dfdb47a
MM
639 the end of the block as tail call if we're switching functions
640 and as an intra-function branch if we don't. */
641 if (start == 0 && ftrace_function_switched (bfun, mfun, fun))
8286623c 642 return ftrace_new_tailcall (btinfo, mfun, fun);
2dfdb47a
MM
643
644 break;
7d5c24b3 645 }
02d27625 646 }
23a7fe75
MM
647 }
648
649 /* Check if we're switching functions for some other reason. */
650 if (ftrace_function_switched (bfun, mfun, fun))
651 {
652 DEBUG_FTRACE ("switching from %s in %s at %s",
653 ftrace_print_insn_addr (last),
654 ftrace_print_function_name (bfun),
655 ftrace_print_filename (bfun));
02d27625 656
8286623c 657 return ftrace_new_switch (btinfo, mfun, fun);
23a7fe75
MM
658 }
659
660 return bfun;
661}
662
23a7fe75
MM
663/* Add the instruction at PC to BFUN's instructions. */
664
665static void
0860c437 666ftrace_update_insns (struct btrace_function *bfun, const btrace_insn &insn)
23a7fe75 667{
0860c437 668 bfun->insn.push_back (insn);
23a7fe75
MM
669
670 if (record_debug > 1)
671 ftrace_debug (bfun, "update insn");
672}
673
7d5c24b3
MM
674/* Classify the instruction at PC. */
675
676static enum btrace_insn_class
677ftrace_classify_insn (struct gdbarch *gdbarch, CORE_ADDR pc)
678{
7d5c24b3
MM
679 enum btrace_insn_class iclass;
680
681 iclass = BTRACE_INSN_OTHER;
a70b8144 682 try
7d5c24b3
MM
683 {
684 if (gdbarch_insn_is_call (gdbarch, pc))
685 iclass = BTRACE_INSN_CALL;
686 else if (gdbarch_insn_is_ret (gdbarch, pc))
687 iclass = BTRACE_INSN_RETURN;
688 else if (gdbarch_insn_is_jump (gdbarch, pc))
689 iclass = BTRACE_INSN_JUMP;
690 }
230d2906 691 catch (const gdb_exception_error &error)
492d29ea
PA
692 {
693 }
7d5c24b3
MM
694
695 return iclass;
696}
697
d87fdac3
MM
698/* Try to match the back trace at LHS to the back trace at RHS. Returns the
699 number of matching function segments or zero if the back traces do not
42bfe59e 700 match. BTINFO is the branch trace information for the current thread. */
d87fdac3
MM
701
702static int
42bfe59e
TW
703ftrace_match_backtrace (struct btrace_thread_info *btinfo,
704 struct btrace_function *lhs,
d87fdac3
MM
705 struct btrace_function *rhs)
706{
707 int matches;
708
709 for (matches = 0; lhs != NULL && rhs != NULL; ++matches)
710 {
711 if (ftrace_function_switched (lhs, rhs->msym, rhs->sym))
712 return 0;
713
42bfe59e
TW
714 lhs = ftrace_get_caller (btinfo, lhs);
715 rhs = ftrace_get_caller (btinfo, rhs);
d87fdac3
MM
716 }
717
718 return matches;
719}
720
eb8f2b9c
TW
721/* Add ADJUSTMENT to the level of BFUN and succeeding function segments.
722 BTINFO is the branch trace information for the current thread. */
d87fdac3
MM
723
724static void
eb8f2b9c
TW
725ftrace_fixup_level (struct btrace_thread_info *btinfo,
726 struct btrace_function *bfun, int adjustment)
d87fdac3
MM
727{
728 if (adjustment == 0)
729 return;
730
731 DEBUG_FTRACE ("fixup level (%+d)", adjustment);
732 ftrace_debug (bfun, "..bfun");
733
eb8f2b9c
TW
734 while (bfun != NULL)
735 {
736 bfun->level += adjustment;
737 bfun = ftrace_find_call_by_number (btinfo, bfun->number + 1);
738 }
d87fdac3
MM
739}
740
741/* Recompute the global level offset. Traverse the function trace and compute
742 the global level offset as the negative of the minimal function level. */
743
744static void
745ftrace_compute_global_level_offset (struct btrace_thread_info *btinfo)
746{
b54b03bd 747 int level = INT_MAX;
d87fdac3
MM
748
749 if (btinfo == NULL)
750 return;
751
b54b03bd 752 if (btinfo->functions.empty ())
d87fdac3
MM
753 return;
754
b54b03bd
TW
755 unsigned int length = btinfo->functions.size() - 1;
756 for (unsigned int i = 0; i < length; ++i)
08c3f6d2 757 level = std::min (level, btinfo->functions[i].level);
b54b03bd 758
d87fdac3
MM
759 /* The last function segment contains the current instruction, which is not
760 really part of the trace. If it contains just this one instruction, we
b54b03bd 761 ignore the segment. */
08c3f6d2 762 struct btrace_function *last = &btinfo->functions.back();
0860c437 763 if (last->insn.size () != 1)
b54b03bd 764 level = std::min (level, last->level);
d87fdac3
MM
765
766 DEBUG_FTRACE ("setting global level offset: %d", -level);
767 btinfo->level = -level;
768}
769
770/* Connect the function segments PREV and NEXT in a bottom-to-top walk as in
42bfe59e
TW
771 ftrace_connect_backtrace. BTINFO is the branch trace information for the
772 current thread. */
d87fdac3
MM
773
774static void
42bfe59e
TW
775ftrace_connect_bfun (struct btrace_thread_info *btinfo,
776 struct btrace_function *prev,
d87fdac3
MM
777 struct btrace_function *next)
778{
779 DEBUG_FTRACE ("connecting...");
780 ftrace_debug (prev, "..prev");
781 ftrace_debug (next, "..next");
782
783 /* The function segments are not yet connected. */
4aeb0dfc
TW
784 gdb_assert (prev->next == 0);
785 gdb_assert (next->prev == 0);
d87fdac3 786
4aeb0dfc
TW
787 prev->next = next->number;
788 next->prev = prev->number;
d87fdac3
MM
789
790 /* We may have moved NEXT to a different function level. */
eb8f2b9c 791 ftrace_fixup_level (btinfo, next, prev->level - next->level);
d87fdac3
MM
792
793 /* If we run out of back trace for one, let's use the other's. */
42bfe59e 794 if (prev->up == 0)
d87fdac3 795 {
42bfe59e
TW
796 const btrace_function_flags flags = next->flags;
797
798 next = ftrace_find_call_by_number (btinfo, next->up);
799 if (next != NULL)
d87fdac3
MM
800 {
801 DEBUG_FTRACE ("using next's callers");
4aeb0dfc 802 ftrace_fixup_caller (btinfo, prev, next, flags);
d87fdac3
MM
803 }
804 }
42bfe59e 805 else if (next->up == 0)
d87fdac3 806 {
42bfe59e
TW
807 const btrace_function_flags flags = prev->flags;
808
809 prev = ftrace_find_call_by_number (btinfo, prev->up);
810 if (prev != NULL)
d87fdac3
MM
811 {
812 DEBUG_FTRACE ("using prev's callers");
4aeb0dfc 813 ftrace_fixup_caller (btinfo, next, prev, flags);
d87fdac3
MM
814 }
815 }
816 else
817 {
818 /* PREV may have a tailcall caller, NEXT can't. If it does, fixup the up
819 link to add the tail callers to NEXT's back trace.
820
821 This removes NEXT->UP from NEXT's back trace. It will be added back
822 when connecting NEXT and PREV's callers - provided they exist.
823
824 If PREV's back trace consists of a series of tail calls without an
825 actual call, there will be no further connection and NEXT's caller will
826 be removed for good. To catch this case, we handle it here and connect
827 the top of PREV's back trace to NEXT's caller. */
828 if ((prev->flags & BFUN_UP_LINKS_TO_TAILCALL) != 0)
829 {
830 struct btrace_function *caller;
42bfe59e 831 btrace_function_flags next_flags, prev_flags;
d87fdac3
MM
832
833 /* We checked NEXT->UP above so CALLER can't be NULL. */
42bfe59e
TW
834 caller = ftrace_find_call_by_number (btinfo, next->up);
835 next_flags = next->flags;
836 prev_flags = prev->flags;
d87fdac3
MM
837
838 DEBUG_FTRACE ("adding prev's tail calls to next");
839
42bfe59e 840 prev = ftrace_find_call_by_number (btinfo, prev->up);
4aeb0dfc 841 ftrace_fixup_caller (btinfo, next, prev, prev_flags);
d87fdac3 842
42bfe59e
TW
843 for (; prev != NULL; prev = ftrace_find_call_by_number (btinfo,
844 prev->up))
d87fdac3
MM
845 {
846 /* At the end of PREV's back trace, continue with CALLER. */
42bfe59e 847 if (prev->up == 0)
d87fdac3
MM
848 {
849 DEBUG_FTRACE ("fixing up link for tailcall chain");
850 ftrace_debug (prev, "..top");
851 ftrace_debug (caller, "..up");
852
4aeb0dfc 853 ftrace_fixup_caller (btinfo, prev, caller, next_flags);
d87fdac3
MM
854
855 /* If we skipped any tail calls, this may move CALLER to a
856 different function level.
857
858 Note that changing CALLER's level is only OK because we
859 know that this is the last iteration of the bottom-to-top
860 walk in ftrace_connect_backtrace.
861
862 Otherwise we will fix up CALLER's level when we connect it
863 to PREV's caller in the next iteration. */
eb8f2b9c
TW
864 ftrace_fixup_level (btinfo, caller,
865 prev->level - caller->level - 1);
d87fdac3
MM
866 break;
867 }
868
869 /* There's nothing to do if we find a real call. */
870 if ((prev->flags & BFUN_UP_LINKS_TO_TAILCALL) == 0)
871 {
872 DEBUG_FTRACE ("will fix up link in next iteration");
873 break;
874 }
875 }
876 }
877 }
878}
879
880/* Connect function segments on the same level in the back trace at LHS and RHS.
881 The back traces at LHS and RHS are expected to match according to
42bfe59e
TW
882 ftrace_match_backtrace. BTINFO is the branch trace information for the
883 current thread. */
d87fdac3
MM
884
885static void
42bfe59e
TW
886ftrace_connect_backtrace (struct btrace_thread_info *btinfo,
887 struct btrace_function *lhs,
d87fdac3
MM
888 struct btrace_function *rhs)
889{
890 while (lhs != NULL && rhs != NULL)
891 {
892 struct btrace_function *prev, *next;
893
894 gdb_assert (!ftrace_function_switched (lhs, rhs->msym, rhs->sym));
895
896 /* Connecting LHS and RHS may change the up link. */
897 prev = lhs;
898 next = rhs;
899
42bfe59e
TW
900 lhs = ftrace_get_caller (btinfo, lhs);
901 rhs = ftrace_get_caller (btinfo, rhs);
d87fdac3 902
42bfe59e 903 ftrace_connect_bfun (btinfo, prev, next);
d87fdac3
MM
904 }
905}
906
907/* Bridge the gap between two function segments left and right of a gap if their
42bfe59e
TW
908 respective back traces match in at least MIN_MATCHES functions. BTINFO is
909 the branch trace information for the current thread.
d87fdac3
MM
910
911 Returns non-zero if the gap could be bridged, zero otherwise. */
912
913static int
42bfe59e
TW
914ftrace_bridge_gap (struct btrace_thread_info *btinfo,
915 struct btrace_function *lhs, struct btrace_function *rhs,
d87fdac3
MM
916 int min_matches)
917{
918 struct btrace_function *best_l, *best_r, *cand_l, *cand_r;
919 int best_matches;
920
921 DEBUG_FTRACE ("checking gap at insn %u (req matches: %d)",
922 rhs->insn_offset - 1, min_matches);
923
924 best_matches = 0;
925 best_l = NULL;
926 best_r = NULL;
927
928 /* We search the back traces of LHS and RHS for valid connections and connect
85102364 929 the two function segments that give the longest combined back trace. */
d87fdac3 930
42bfe59e
TW
931 for (cand_l = lhs; cand_l != NULL;
932 cand_l = ftrace_get_caller (btinfo, cand_l))
933 for (cand_r = rhs; cand_r != NULL;
934 cand_r = ftrace_get_caller (btinfo, cand_r))
d87fdac3
MM
935 {
936 int matches;
937
42bfe59e 938 matches = ftrace_match_backtrace (btinfo, cand_l, cand_r);
d87fdac3
MM
939 if (best_matches < matches)
940 {
941 best_matches = matches;
942 best_l = cand_l;
943 best_r = cand_r;
944 }
945 }
946
947 /* We need at least MIN_MATCHES matches. */
948 gdb_assert (min_matches > 0);
949 if (best_matches < min_matches)
950 return 0;
951
952 DEBUG_FTRACE ("..matches: %d", best_matches);
953
954 /* We will fix up the level of BEST_R and succeeding function segments such
955 that BEST_R's level matches BEST_L's when we connect BEST_L to BEST_R.
956
957 This will ignore the level of RHS and following if BEST_R != RHS. I.e. if
958 BEST_R is a successor of RHS in the back trace of RHS (phases 1 and 3).
959
960 To catch this, we already fix up the level here where we can start at RHS
961 instead of at BEST_R. We will ignore the level fixup when connecting
962 BEST_L to BEST_R as they will already be on the same level. */
eb8f2b9c 963 ftrace_fixup_level (btinfo, rhs, best_l->level - best_r->level);
d87fdac3 964
42bfe59e 965 ftrace_connect_backtrace (btinfo, best_l, best_r);
d87fdac3
MM
966
967 return best_matches;
968}
969
970/* Try to bridge gaps due to overflow or decode errors by connecting the
971 function segments that are separated by the gap. */
972
973static void
8ffd39f2 974btrace_bridge_gaps (struct thread_info *tp, std::vector<unsigned int> &gaps)
d87fdac3 975{
4aeb0dfc 976 struct btrace_thread_info *btinfo = &tp->btrace;
8ffd39f2 977 std::vector<unsigned int> remaining;
d87fdac3
MM
978 int min_matches;
979
980 DEBUG ("bridge gaps");
981
d87fdac3
MM
982 /* We require a minimum amount of matches for bridging a gap. The number of
983 required matches will be lowered with each iteration.
984
985 The more matches the higher our confidence that the bridging is correct.
986 For big gaps or small traces, however, it may not be feasible to require a
987 high number of matches. */
988 for (min_matches = 5; min_matches > 0; --min_matches)
989 {
990 /* Let's try to bridge as many gaps as we can. In some cases, we need to
991 skip a gap and revisit it again after we closed later gaps. */
8ffd39f2 992 while (!gaps.empty ())
d87fdac3 993 {
8ffd39f2 994 for (const unsigned int number : gaps)
d87fdac3 995 {
8ffd39f2 996 struct btrace_function *gap, *lhs, *rhs;
d87fdac3
MM
997 int bridged;
998
8ffd39f2
TW
999 gap = ftrace_find_call_by_number (btinfo, number);
1000
d87fdac3
MM
1001 /* We may have a sequence of gaps if we run from one error into
1002 the next as we try to re-sync onto the trace stream. Ignore
1003 all but the leftmost gap in such a sequence.
1004
1005 Also ignore gaps at the beginning of the trace. */
eb8f2b9c 1006 lhs = ftrace_find_call_by_number (btinfo, gap->number - 1);
d87fdac3
MM
1007 if (lhs == NULL || lhs->errcode != 0)
1008 continue;
1009
1010 /* Skip gaps to the right. */
eb8f2b9c
TW
1011 rhs = ftrace_find_call_by_number (btinfo, gap->number + 1);
1012 while (rhs != NULL && rhs->errcode != 0)
1013 rhs = ftrace_find_call_by_number (btinfo, rhs->number + 1);
d87fdac3
MM
1014
1015 /* Ignore gaps at the end of the trace. */
1016 if (rhs == NULL)
1017 continue;
1018
eb8f2b9c 1019 bridged = ftrace_bridge_gap (btinfo, lhs, rhs, min_matches);
d87fdac3
MM
1020
1021 /* Keep track of gaps we were not able to bridge and try again.
1022 If we just pushed them to the end of GAPS we would risk an
1023 infinite loop in case we simply cannot bridge a gap. */
1024 if (bridged == 0)
8ffd39f2 1025 remaining.push_back (number);
d87fdac3
MM
1026 }
1027
1028 /* Let's see if we made any progress. */
8ffd39f2 1029 if (remaining.size () == gaps.size ())
d87fdac3
MM
1030 break;
1031
8ffd39f2
TW
1032 gaps.clear ();
1033 gaps.swap (remaining);
d87fdac3
MM
1034 }
1035
1036 /* We get here if either GAPS is empty or if GAPS equals REMAINING. */
8ffd39f2 1037 if (gaps.empty ())
d87fdac3
MM
1038 break;
1039
8ffd39f2 1040 remaining.clear ();
d87fdac3
MM
1041 }
1042
d87fdac3
MM
1043 /* We may omit this in some cases. Not sure it is worth the extra
1044 complication, though. */
eb8f2b9c 1045 ftrace_compute_global_level_offset (btinfo);
d87fdac3
MM
1046}
1047
734b0e4b 1048/* Compute the function branch trace from BTS trace. */
23a7fe75
MM
1049
1050static void
76235df1 1051btrace_compute_ftrace_bts (struct thread_info *tp,
d87fdac3 1052 const struct btrace_data_bts *btrace,
8ffd39f2 1053 std::vector<unsigned int> &gaps)
23a7fe75 1054{
76235df1 1055 struct btrace_thread_info *btinfo;
23a7fe75 1056 struct gdbarch *gdbarch;
d87fdac3 1057 unsigned int blk;
23a7fe75
MM
1058 int level;
1059
23a7fe75 1060 gdbarch = target_gdbarch ();
76235df1 1061 btinfo = &tp->btrace;
46f29a9a 1062 blk = btrace->blocks->size ();
23a7fe75 1063
b54b03bd
TW
1064 if (btinfo->functions.empty ())
1065 level = INT_MAX;
1066 else
1067 level = -btinfo->level;
1068
23a7fe75
MM
1069 while (blk != 0)
1070 {
23a7fe75
MM
1071 CORE_ADDR pc;
1072
1073 blk -= 1;
1074
46f29a9a
AB
1075 const btrace_block &block = btrace->blocks->at (blk);
1076 pc = block.begin;
23a7fe75
MM
1077
1078 for (;;)
1079 {
b54b03bd 1080 struct btrace_function *bfun;
7d5c24b3 1081 struct btrace_insn insn;
23a7fe75
MM
1082 int size;
1083
1084 /* We should hit the end of the block. Warn if we went too far. */
46f29a9a 1085 if (block.end < pc)
23a7fe75 1086 {
b61ce85c 1087 /* Indicate the gap in the trace. */
8ffd39f2 1088 bfun = ftrace_new_gap (btinfo, BDE_BTS_OVERFLOW, gaps);
b61ce85c
MM
1089
1090 warning (_("Recorded trace may be corrupted at instruction "
b54b03bd 1091 "%u (pc = %s)."), bfun->insn_offset - 1,
b61ce85c 1092 core_addr_to_string_nz (pc));
63ab433e 1093
23a7fe75
MM
1094 break;
1095 }
1096
b54b03bd 1097 bfun = ftrace_update_function (btinfo, pc);
23a7fe75 1098
8710b709
MM
1099 /* Maintain the function level offset.
1100 For all but the last block, we do it here. */
1101 if (blk != 0)
b54b03bd 1102 level = std::min (level, bfun->level);
23a7fe75 1103
7d5c24b3 1104 size = 0;
a70b8144 1105 try
492d29ea
PA
1106 {
1107 size = gdb_insn_length (gdbarch, pc);
1108 }
230d2906 1109 catch (const gdb_exception_error &error)
492d29ea
PA
1110 {
1111 }
7d5c24b3
MM
1112
1113 insn.pc = pc;
1114 insn.size = size;
1115 insn.iclass = ftrace_classify_insn (gdbarch, pc);
da8c46d2 1116 insn.flags = 0;
7d5c24b3 1117
0860c437 1118 ftrace_update_insns (bfun, insn);
23a7fe75
MM
1119
1120 /* We're done once we pushed the instruction at the end. */
46f29a9a 1121 if (block.end == pc)
23a7fe75
MM
1122 break;
1123
7d5c24b3 1124 /* We can't continue if we fail to compute the size. */
23a7fe75
MM
1125 if (size <= 0)
1126 {
31fd9caa
MM
1127 /* Indicate the gap in the trace. We just added INSN so we're
1128 not at the beginning. */
8ffd39f2 1129 bfun = ftrace_new_gap (btinfo, BDE_BTS_INSN_SIZE, gaps);
31fd9caa 1130
63ab433e 1131 warning (_("Recorded trace may be incomplete at instruction %u "
b54b03bd 1132 "(pc = %s)."), bfun->insn_offset - 1,
63ab433e
MM
1133 core_addr_to_string_nz (pc));
1134
23a7fe75
MM
1135 break;
1136 }
1137
1138 pc += size;
8710b709
MM
1139
1140 /* Maintain the function level offset.
1141 For the last block, we do it here to not consider the last
1142 instruction.
1143 Since the last instruction corresponds to the current instruction
1144 and is not really part of the execution history, it shouldn't
1145 affect the level. */
1146 if (blk == 0)
b54b03bd 1147 level = std::min (level, bfun->level);
23a7fe75 1148 }
02d27625
MM
1149 }
1150
23a7fe75
MM
1151 /* LEVEL is the minimal function level of all btrace function segments.
1152 Define the global level offset to -LEVEL so all function levels are
1153 normalized to start at zero. */
1154 btinfo->level = -level;
02d27625
MM
1155}
1156
b20a6524
MM
1157#if defined (HAVE_LIBIPT)
1158
1159static enum btrace_insn_class
1160pt_reclassify_insn (enum pt_insn_class iclass)
1161{
1162 switch (iclass)
1163 {
1164 case ptic_call:
1165 return BTRACE_INSN_CALL;
1166
1167 case ptic_return:
1168 return BTRACE_INSN_RETURN;
1169
1170 case ptic_jump:
1171 return BTRACE_INSN_JUMP;
1172
1173 default:
1174 return BTRACE_INSN_OTHER;
1175 }
1176}
1177
da8c46d2
MM
1178/* Return the btrace instruction flags for INSN. */
1179
d7abe101 1180static btrace_insn_flags
b5c36682 1181pt_btrace_insn_flags (const struct pt_insn &insn)
da8c46d2 1182{
d7abe101 1183 btrace_insn_flags flags = 0;
da8c46d2 1184
b5c36682 1185 if (insn.speculative)
da8c46d2
MM
1186 flags |= BTRACE_INSN_FLAG_SPECULATIVE;
1187
1188 return flags;
1189}
1190
b5c36682
PA
1191/* Return the btrace instruction for INSN. */
1192
1193static btrace_insn
1194pt_btrace_insn (const struct pt_insn &insn)
1195{
1196 return {(CORE_ADDR) insn.ip, (gdb_byte) insn.size,
1197 pt_reclassify_insn (insn.iclass),
1198 pt_btrace_insn_flags (insn)};
1199}
1200
13ace077
MM
1201/* Handle instruction decode events (libipt-v2). */
1202
1203static int
1204handle_pt_insn_events (struct btrace_thread_info *btinfo,
1205 struct pt_insn_decoder *decoder,
1206 std::vector<unsigned int> &gaps, int status)
1207{
1208#if defined (HAVE_PT_INSN_EVENT)
1209 while (status & pts_event_pending)
1210 {
1211 struct btrace_function *bfun;
1212 struct pt_event event;
1213 uint64_t offset;
1214
1215 status = pt_insn_event (decoder, &event, sizeof (event));
1216 if (status < 0)
1217 break;
1218
1219 switch (event.type)
1220 {
1221 default:
1222 break;
1223
1224 case ptev_enabled:
1225 if (event.variant.enabled.resumed == 0 && !btinfo->functions.empty ())
1226 {
1227 bfun = ftrace_new_gap (btinfo, BDE_PT_DISABLED, gaps);
1228
1229 pt_insn_get_offset (decoder, &offset);
1230
1231 warning (_("Non-contiguous trace at instruction %u (offset = 0x%"
1232 PRIx64 ")."), bfun->insn_offset - 1, offset);
1233 }
1234
1235 break;
1236
1237 case ptev_overflow:
1238 bfun = ftrace_new_gap (btinfo, BDE_PT_OVERFLOW, gaps);
1239
1240 pt_insn_get_offset (decoder, &offset);
1241
1242 warning (_("Overflow at instruction %u (offset = 0x%" PRIx64 ")."),
1243 bfun->insn_offset - 1, offset);
1244
1245 break;
1246 }
1247 }
1248#endif /* defined (HAVE_PT_INSN_EVENT) */
1249
1250 return status;
1251}
1252
1253/* Handle events indicated by flags in INSN (libipt-v1). */
1254
1255static void
1256handle_pt_insn_event_flags (struct btrace_thread_info *btinfo,
1257 struct pt_insn_decoder *decoder,
1258 const struct pt_insn &insn,
1259 std::vector<unsigned int> &gaps)
1260{
1261#if defined (HAVE_STRUCT_PT_INSN_ENABLED)
1262 /* Tracing is disabled and re-enabled each time we enter the kernel. Most
1263 times, we continue from the same instruction we stopped before. This is
1264 indicated via the RESUMED instruction flag. The ENABLED instruction flag
1265 means that we continued from some other instruction. Indicate this as a
1266 trace gap except when tracing just started. */
1267 if (insn.enabled && !btinfo->functions.empty ())
1268 {
1269 struct btrace_function *bfun;
1270 uint64_t offset;
1271
1272 bfun = ftrace_new_gap (btinfo, BDE_PT_DISABLED, gaps);
1273
1274 pt_insn_get_offset (decoder, &offset);
1275
1276 warning (_("Non-contiguous trace at instruction %u (offset = 0x%" PRIx64
1277 ", pc = 0x%" PRIx64 ")."), bfun->insn_offset - 1, offset,
1278 insn.ip);
1279 }
1280#endif /* defined (HAVE_STRUCT_PT_INSN_ENABLED) */
1281
1282#if defined (HAVE_STRUCT_PT_INSN_RESYNCED)
1283 /* Indicate trace overflows. */
1284 if (insn.resynced)
1285 {
1286 struct btrace_function *bfun;
1287 uint64_t offset;
1288
1289 bfun = ftrace_new_gap (btinfo, BDE_PT_OVERFLOW, gaps);
1290
1291 pt_insn_get_offset (decoder, &offset);
1292
1293 warning (_("Overflow at instruction %u (offset = 0x%" PRIx64 ", pc = 0x%"
1294 PRIx64 ")."), bfun->insn_offset - 1, offset, insn.ip);
1295 }
1296#endif /* defined (HAVE_STRUCT_PT_INSN_RESYNCED) */
1297}
b5c36682 1298
17b89b34 1299/* Add function branch trace to BTINFO using DECODER. */
b20a6524
MM
1300
1301static void
17b89b34
TW
1302ftrace_add_pt (struct btrace_thread_info *btinfo,
1303 struct pt_insn_decoder *decoder,
b54b03bd 1304 int *plevel,
8ffd39f2 1305 std::vector<unsigned int> &gaps)
b20a6524 1306{
b54b03bd 1307 struct btrace_function *bfun;
b20a6524 1308 uint64_t offset;
13ace077 1309 int status;
b20a6524 1310
b20a6524
MM
1311 for (;;)
1312 {
b20a6524
MM
1313 struct pt_insn insn;
1314
13ace077
MM
1315 status = pt_insn_sync_forward (decoder);
1316 if (status < 0)
b20a6524 1317 {
13ace077 1318 if (status != -pte_eos)
bc504a31 1319 warning (_("Failed to synchronize onto the Intel Processor "
13ace077 1320 "Trace stream: %s."), pt_errstr (pt_errcode (status)));
b20a6524
MM
1321 break;
1322 }
1323
b20a6524
MM
1324 for (;;)
1325 {
13ace077
MM
1326 /* Handle events from the previous iteration or synchronization. */
1327 status = handle_pt_insn_events (btinfo, decoder, gaps, status);
1328 if (status < 0)
b20a6524
MM
1329 break;
1330
13ace077
MM
1331 status = pt_insn_next (decoder, &insn, sizeof(insn));
1332 if (status < 0)
1333 break;
b61ce85c 1334
13ace077
MM
1335 /* Handle events indicated by flags in INSN. */
1336 handle_pt_insn_event_flags (btinfo, decoder, insn, gaps);
b20a6524 1337
b54b03bd 1338 bfun = ftrace_update_function (btinfo, insn.ip);
b20a6524
MM
1339
1340 /* Maintain the function level offset. */
b54b03bd 1341 *plevel = std::min (*plevel, bfun->level);
b20a6524 1342
7525b645 1343 ftrace_update_insns (bfun, pt_btrace_insn (insn));
b20a6524
MM
1344 }
1345
13ace077 1346 if (status == -pte_eos)
b20a6524
MM
1347 break;
1348
b20a6524 1349 /* Indicate the gap in the trace. */
13ace077 1350 bfun = ftrace_new_gap (btinfo, status, gaps);
b20a6524 1351
63ab433e
MM
1352 pt_insn_get_offset (decoder, &offset);
1353
1354 warning (_("Decode error (%d) at instruction %u (offset = 0x%" PRIx64
13ace077
MM
1355 ", pc = 0x%" PRIx64 "): %s."), status, bfun->insn_offset - 1,
1356 offset, insn.ip, pt_errstr (pt_errcode (status)));
63ab433e 1357 }
b20a6524
MM
1358}
1359
1360/* A callback function to allow the trace decoder to read the inferior's
1361 memory. */
1362
1363static int
1364btrace_pt_readmem_callback (gdb_byte *buffer, size_t size,
80a2b330 1365 const struct pt_asid *asid, uint64_t pc,
b20a6524
MM
1366 void *context)
1367{
43368e1d 1368 int result, errcode;
b20a6524 1369
43368e1d 1370 result = (int) size;
a70b8144 1371 try
b20a6524 1372 {
80a2b330 1373 errcode = target_read_code ((CORE_ADDR) pc, buffer, size);
b20a6524 1374 if (errcode != 0)
43368e1d 1375 result = -pte_nomap;
b20a6524 1376 }
230d2906 1377 catch (const gdb_exception_error &error)
b20a6524 1378 {
43368e1d 1379 result = -pte_nomap;
b20a6524 1380 }
b20a6524 1381
43368e1d 1382 return result;
b20a6524
MM
1383}
1384
1385/* Translate the vendor from one enum to another. */
1386
1387static enum pt_cpu_vendor
1388pt_translate_cpu_vendor (enum btrace_cpu_vendor vendor)
1389{
1390 switch (vendor)
1391 {
1392 default:
1393 return pcv_unknown;
1394
1395 case CV_INTEL:
1396 return pcv_intel;
1397 }
1398}
1399
1400/* Finalize the function branch trace after decode. */
1401
1402static void btrace_finalize_ftrace_pt (struct pt_insn_decoder *decoder,
1403 struct thread_info *tp, int level)
1404{
1405 pt_insn_free_decoder (decoder);
1406
1407 /* LEVEL is the minimal function level of all btrace function segments.
1408 Define the global level offset to -LEVEL so all function levels are
1409 normalized to start at zero. */
1410 tp->btrace.level = -level;
1411
1412 /* Add a single last instruction entry for the current PC.
1413 This allows us to compute the backtrace at the current PC using both
1414 standard unwind and btrace unwind.
1415 This extra entry is ignored by all record commands. */
1416 btrace_add_pc (tp);
1417}
1418
bc504a31
PA
1419/* Compute the function branch trace from Intel Processor Trace
1420 format. */
b20a6524
MM
1421
1422static void
1423btrace_compute_ftrace_pt (struct thread_info *tp,
d87fdac3 1424 const struct btrace_data_pt *btrace,
8ffd39f2 1425 std::vector<unsigned int> &gaps)
b20a6524
MM
1426{
1427 struct btrace_thread_info *btinfo;
1428 struct pt_insn_decoder *decoder;
1429 struct pt_config config;
1430 int level, errcode;
1431
1432 if (btrace->size == 0)
1433 return;
1434
1435 btinfo = &tp->btrace;
b54b03bd
TW
1436 if (btinfo->functions.empty ())
1437 level = INT_MAX;
1438 else
1439 level = -btinfo->level;
b20a6524
MM
1440
1441 pt_config_init(&config);
1442 config.begin = btrace->data;
1443 config.end = btrace->data + btrace->size;
1444
4a4495d6
MM
1445 /* We treat an unknown vendor as 'no errata'. */
1446 if (btrace->config.cpu.vendor != CV_UNKNOWN)
1447 {
1448 config.cpu.vendor
1449 = pt_translate_cpu_vendor (btrace->config.cpu.vendor);
1450 config.cpu.family = btrace->config.cpu.family;
1451 config.cpu.model = btrace->config.cpu.model;
1452 config.cpu.stepping = btrace->config.cpu.stepping;
b20a6524 1453
4a4495d6
MM
1454 errcode = pt_cpu_errata (&config.errata, &config.cpu);
1455 if (errcode < 0)
1456 error (_("Failed to configure the Intel Processor Trace "
1457 "decoder: %s."), pt_errstr (pt_errcode (errcode)));
1458 }
b20a6524
MM
1459
1460 decoder = pt_insn_alloc_decoder (&config);
1461 if (decoder == NULL)
bc504a31 1462 error (_("Failed to allocate the Intel Processor Trace decoder."));
b20a6524 1463
a70b8144 1464 try
b20a6524
MM
1465 {
1466 struct pt_image *image;
1467
1468 image = pt_insn_get_image(decoder);
1469 if (image == NULL)
bc504a31 1470 error (_("Failed to configure the Intel Processor Trace decoder."));
b20a6524
MM
1471
1472 errcode = pt_image_set_callback(image, btrace_pt_readmem_callback, NULL);
1473 if (errcode < 0)
bc504a31 1474 error (_("Failed to configure the Intel Processor Trace decoder: "
b20a6524
MM
1475 "%s."), pt_errstr (pt_errcode (errcode)));
1476
b54b03bd 1477 ftrace_add_pt (btinfo, decoder, &level, gaps);
b20a6524 1478 }
230d2906 1479 catch (const gdb_exception &error)
b20a6524
MM
1480 {
1481 /* Indicate a gap in the trace if we quit trace processing. */
b54b03bd 1482 if (error.reason == RETURN_QUIT && !btinfo->functions.empty ())
8ffd39f2 1483 ftrace_new_gap (btinfo, BDE_PT_USER_QUIT, gaps);
b20a6524
MM
1484
1485 btrace_finalize_ftrace_pt (decoder, tp, level);
1486
eedc3f4f 1487 throw;
b20a6524 1488 }
b20a6524
MM
1489
1490 btrace_finalize_ftrace_pt (decoder, tp, level);
1491}
1492
1493#else /* defined (HAVE_LIBIPT) */
1494
1495static void
1496btrace_compute_ftrace_pt (struct thread_info *tp,
d87fdac3 1497 const struct btrace_data_pt *btrace,
8ffd39f2 1498 std::vector<unsigned int> &gaps)
b20a6524
MM
1499{
1500 internal_error (__FILE__, __LINE__, _("Unexpected branch trace format."));
1501}
1502
1503#endif /* defined (HAVE_LIBIPT) */
1504
734b0e4b 1505/* Compute the function branch trace from a block branch trace BTRACE for
4a4495d6
MM
1506 a thread given by BTINFO. If CPU is not NULL, overwrite the cpu in the
1507 branch trace configuration. This is currently only used for the PT
1508 format. */
734b0e4b
MM
1509
1510static void
4a4495d6
MM
1511btrace_compute_ftrace_1 (struct thread_info *tp,
1512 struct btrace_data *btrace,
1513 const struct btrace_cpu *cpu,
8ffd39f2 1514 std::vector<unsigned int> &gaps)
734b0e4b
MM
1515{
1516 DEBUG ("compute ftrace");
1517
1518 switch (btrace->format)
1519 {
1520 case BTRACE_FORMAT_NONE:
1521 return;
1522
1523 case BTRACE_FORMAT_BTS:
d87fdac3 1524 btrace_compute_ftrace_bts (tp, &btrace->variant.bts, gaps);
734b0e4b 1525 return;
b20a6524
MM
1526
1527 case BTRACE_FORMAT_PT:
4a4495d6
MM
1528 /* Overwrite the cpu we use for enabling errata workarounds. */
1529 if (cpu != nullptr)
1530 btrace->variant.pt.config.cpu = *cpu;
1531
d87fdac3 1532 btrace_compute_ftrace_pt (tp, &btrace->variant.pt, gaps);
b20a6524 1533 return;
734b0e4b
MM
1534 }
1535
40c94099 1536 internal_error (__FILE__, __LINE__, _("Unknown branch trace format."));
734b0e4b
MM
1537}
1538
d87fdac3 1539static void
8ffd39f2 1540btrace_finalize_ftrace (struct thread_info *tp, std::vector<unsigned int> &gaps)
d87fdac3 1541{
8ffd39f2 1542 if (!gaps.empty ())
d87fdac3 1543 {
8ffd39f2 1544 tp->btrace.ngaps += gaps.size ();
d87fdac3
MM
1545 btrace_bridge_gaps (tp, gaps);
1546 }
1547}
1548
1549static void
4a4495d6
MM
1550btrace_compute_ftrace (struct thread_info *tp, struct btrace_data *btrace,
1551 const struct btrace_cpu *cpu)
d87fdac3 1552{
8ffd39f2 1553 std::vector<unsigned int> gaps;
d87fdac3 1554
a70b8144 1555 try
d87fdac3 1556 {
4a4495d6 1557 btrace_compute_ftrace_1 (tp, btrace, cpu, gaps);
d87fdac3 1558 }
230d2906 1559 catch (const gdb_exception &error)
d87fdac3 1560 {
8ffd39f2 1561 btrace_finalize_ftrace (tp, gaps);
d87fdac3 1562
eedc3f4f 1563 throw;
d87fdac3 1564 }
d87fdac3 1565
8ffd39f2 1566 btrace_finalize_ftrace (tp, gaps);
d87fdac3
MM
1567}
1568
6e07b1d2
MM
1569/* Add an entry for the current PC. */
1570
1571static void
1572btrace_add_pc (struct thread_info *tp)
1573{
734b0e4b 1574 struct btrace_data btrace;
6e07b1d2 1575 struct regcache *regcache;
6e07b1d2
MM
1576 CORE_ADDR pc;
1577
00431a78 1578 regcache = get_thread_regcache (tp);
6e07b1d2
MM
1579 pc = regcache_read_pc (regcache);
1580
734b0e4b 1581 btrace.format = BTRACE_FORMAT_BTS;
a8b3b8e9 1582 btrace.variant.bts.blocks = new std::vector<btrace_block>;
6e07b1d2 1583
46f29a9a 1584 btrace.variant.bts.blocks->emplace_back (pc, pc);
6e07b1d2 1585
4a4495d6 1586 btrace_compute_ftrace (tp, &btrace, NULL);
6e07b1d2
MM
1587}
1588
02d27625
MM
1589/* See btrace.h. */
1590
1591void
f4abbc16 1592btrace_enable (struct thread_info *tp, const struct btrace_config *conf)
02d27625
MM
1593{
1594 if (tp->btrace.target != NULL)
5897fd49
MM
1595 error (_("Recording already enabled on thread %s (%s)."),
1596 print_thread_id (tp), target_pid_to_str (tp->ptid).c_str ());
02d27625 1597
46a3515b
MM
1598#if !defined (HAVE_LIBIPT)
1599 if (conf->format == BTRACE_FORMAT_PT)
c4e12631 1600 error (_("Intel Processor Trace support was disabled at compile time."));
46a3515b
MM
1601#endif /* !defined (HAVE_LIBIPT) */
1602
43792cf0 1603 DEBUG ("enable thread %s (%s)", print_thread_id (tp),
a068643d 1604 target_pid_to_str (tp->ptid).c_str ());
02d27625 1605
f4abbc16 1606 tp->btrace.target = target_enable_btrace (tp->ptid, conf);
6e07b1d2 1607
cd4007e4 1608 if (tp->btrace.target == NULL)
5897fd49
MM
1609 error (_("Failed to enable recording on thread %s (%s)."),
1610 print_thread_id (tp), target_pid_to_str (tp->ptid).c_str ());
cd4007e4
MM
1611
1612 /* We need to undo the enable in case of errors. */
a70b8144 1613 try
cd4007e4
MM
1614 {
1615 /* Add an entry for the current PC so we start tracing from where we
1616 enabled it.
1617
1618 If we can't access TP's registers, TP is most likely running. In this
1619 case, we can't really say where tracing was enabled so it should be
1620 safe to simply skip this step.
1621
1622 This is not relevant for BTRACE_FORMAT_PT since the trace will already
1623 start at the PC at which tracing was enabled. */
1624 if (conf->format != BTRACE_FORMAT_PT
00431a78 1625 && can_access_registers_thread (tp))
cd4007e4
MM
1626 btrace_add_pc (tp);
1627 }
230d2906 1628 catch (const gdb_exception &exception)
cd4007e4
MM
1629 {
1630 btrace_disable (tp);
1631
eedc3f4f 1632 throw;
cd4007e4 1633 }
02d27625
MM
1634}
1635
1636/* See btrace.h. */
1637
f4abbc16
MM
1638const struct btrace_config *
1639btrace_conf (const struct btrace_thread_info *btinfo)
1640{
1641 if (btinfo->target == NULL)
1642 return NULL;
1643
1644 return target_btrace_conf (btinfo->target);
1645}
1646
1647/* See btrace.h. */
1648
02d27625
MM
1649void
1650btrace_disable (struct thread_info *tp)
1651{
1652 struct btrace_thread_info *btp = &tp->btrace;
02d27625
MM
1653
1654 if (btp->target == NULL)
5897fd49
MM
1655 error (_("Recording not enabled on thread %s (%s)."),
1656 print_thread_id (tp), target_pid_to_str (tp->ptid).c_str ());
02d27625 1657
43792cf0 1658 DEBUG ("disable thread %s (%s)", print_thread_id (tp),
a068643d 1659 target_pid_to_str (tp->ptid).c_str ());
02d27625
MM
1660
1661 target_disable_btrace (btp->target);
1662 btp->target = NULL;
1663
1664 btrace_clear (tp);
1665}
1666
1667/* See btrace.h. */
1668
1669void
1670btrace_teardown (struct thread_info *tp)
1671{
1672 struct btrace_thread_info *btp = &tp->btrace;
02d27625
MM
1673
1674 if (btp->target == NULL)
1675 return;
1676
43792cf0 1677 DEBUG ("teardown thread %s (%s)", print_thread_id (tp),
a068643d 1678 target_pid_to_str (tp->ptid).c_str ());
02d27625
MM
1679
1680 target_teardown_btrace (btp->target);
1681 btp->target = NULL;
1682
1683 btrace_clear (tp);
1684}
1685
734b0e4b 1686/* Stitch branch trace in BTS format. */
969c39fb
MM
1687
1688static int
31fd9caa 1689btrace_stitch_bts (struct btrace_data_bts *btrace, struct thread_info *tp)
969c39fb 1690{
31fd9caa 1691 struct btrace_thread_info *btinfo;
969c39fb 1692 struct btrace_function *last_bfun;
46f29a9a 1693 btrace_block *first_new_block;
969c39fb 1694
31fd9caa 1695 btinfo = &tp->btrace;
b54b03bd 1696 gdb_assert (!btinfo->functions.empty ());
46f29a9a 1697 gdb_assert (!btrace->blocks->empty ());
31fd9caa 1698
08c3f6d2 1699 last_bfun = &btinfo->functions.back ();
b54b03bd 1700
31fd9caa
MM
1701 /* If the existing trace ends with a gap, we just glue the traces
1702 together. We need to drop the last (i.e. chronologically first) block
1703 of the new trace, though, since we can't fill in the start address.*/
0860c437 1704 if (last_bfun->insn.empty ())
31fd9caa 1705 {
46f29a9a 1706 btrace->blocks->pop_back ();
31fd9caa
MM
1707 return 0;
1708 }
969c39fb
MM
1709
1710 /* Beware that block trace starts with the most recent block, so the
1711 chronologically first block in the new trace is the last block in
1712 the new trace's block vector. */
46f29a9a 1713 first_new_block = &btrace->blocks->back ();
0860c437 1714 const btrace_insn &last_insn = last_bfun->insn.back ();
969c39fb
MM
1715
1716 /* If the current PC at the end of the block is the same as in our current
1717 trace, there are two explanations:
1718 1. we executed the instruction and some branch brought us back.
1719 2. we have not made any progress.
1720 In the first case, the delta trace vector should contain at least two
1721 entries.
1722 In the second case, the delta trace vector should contain exactly one
1723 entry for the partial block containing the current PC. Remove it. */
46f29a9a 1724 if (first_new_block->end == last_insn.pc && btrace->blocks->size () == 1)
969c39fb 1725 {
46f29a9a 1726 btrace->blocks->pop_back ();
969c39fb
MM
1727 return 0;
1728 }
1729
0860c437 1730 DEBUG ("stitching %s to %s", ftrace_print_insn_addr (&last_insn),
969c39fb
MM
1731 core_addr_to_string_nz (first_new_block->end));
1732
1733 /* Do a simple sanity check to make sure we don't accidentally end up
1734 with a bad block. This should not occur in practice. */
0860c437 1735 if (first_new_block->end < last_insn.pc)
969c39fb
MM
1736 {
1737 warning (_("Error while trying to read delta trace. Falling back to "
1738 "a full read."));
1739 return -1;
1740 }
1741
1742 /* We adjust the last block to start at the end of our current trace. */
1743 gdb_assert (first_new_block->begin == 0);
0860c437 1744 first_new_block->begin = last_insn.pc;
969c39fb
MM
1745
1746 /* We simply pop the last insn so we can insert it again as part of
1747 the normal branch trace computation.
1748 Since instruction iterators are based on indices in the instructions
1749 vector, we don't leave any pointers dangling. */
1750 DEBUG ("pruning insn at %s for stitching",
0860c437 1751 ftrace_print_insn_addr (&last_insn));
969c39fb 1752
0860c437 1753 last_bfun->insn.pop_back ();
969c39fb
MM
1754
1755 /* The instructions vector may become empty temporarily if this has
1756 been the only instruction in this function segment.
1757 This violates the invariant but will be remedied shortly by
1758 btrace_compute_ftrace when we add the new trace. */
31fd9caa
MM
1759
1760 /* The only case where this would hurt is if the entire trace consisted
1761 of just that one instruction. If we remove it, we might turn the now
1762 empty btrace function segment into a gap. But we don't want gaps at
1763 the beginning. To avoid this, we remove the entire old trace. */
0860c437 1764 if (last_bfun->number == 1 && last_bfun->insn.empty ())
31fd9caa
MM
1765 btrace_clear (tp);
1766
969c39fb
MM
1767 return 0;
1768}
1769
734b0e4b
MM
1770/* Adjust the block trace in order to stitch old and new trace together.
1771 BTRACE is the new delta trace between the last and the current stop.
31fd9caa
MM
1772 TP is the traced thread.
1773 May modifx BTRACE as well as the existing trace in TP.
734b0e4b
MM
1774 Return 0 on success, -1 otherwise. */
1775
1776static int
31fd9caa 1777btrace_stitch_trace (struct btrace_data *btrace, struct thread_info *tp)
734b0e4b
MM
1778{
1779 /* If we don't have trace, there's nothing to do. */
8dcc53b3 1780 if (btrace->empty ())
734b0e4b
MM
1781 return 0;
1782
1783 switch (btrace->format)
1784 {
1785 case BTRACE_FORMAT_NONE:
1786 return 0;
1787
1788 case BTRACE_FORMAT_BTS:
31fd9caa 1789 return btrace_stitch_bts (&btrace->variant.bts, tp);
b20a6524
MM
1790
1791 case BTRACE_FORMAT_PT:
1792 /* Delta reads are not supported. */
1793 return -1;
734b0e4b
MM
1794 }
1795
40c94099 1796 internal_error (__FILE__, __LINE__, _("Unknown branch trace format."));
734b0e4b
MM
1797}
1798
969c39fb
MM
1799/* Clear the branch trace histories in BTINFO. */
1800
1801static void
1802btrace_clear_history (struct btrace_thread_info *btinfo)
1803{
1804 xfree (btinfo->insn_history);
1805 xfree (btinfo->call_history);
1806 xfree (btinfo->replay);
1807
1808 btinfo->insn_history = NULL;
1809 btinfo->call_history = NULL;
1810 btinfo->replay = NULL;
1811}
1812
b0627500
MM
1813/* Clear the branch trace maintenance histories in BTINFO. */
1814
1815static void
1816btrace_maint_clear (struct btrace_thread_info *btinfo)
1817{
1818 switch (btinfo->data.format)
1819 {
1820 default:
1821 break;
1822
1823 case BTRACE_FORMAT_BTS:
1824 btinfo->maint.variant.bts.packet_history.begin = 0;
1825 btinfo->maint.variant.bts.packet_history.end = 0;
1826 break;
1827
1828#if defined (HAVE_LIBIPT)
1829 case BTRACE_FORMAT_PT:
554ac434 1830 delete btinfo->maint.variant.pt.packets;
b0627500
MM
1831
1832 btinfo->maint.variant.pt.packets = NULL;
1833 btinfo->maint.variant.pt.packet_history.begin = 0;
1834 btinfo->maint.variant.pt.packet_history.end = 0;
1835 break;
1836#endif /* defined (HAVE_LIBIPT) */
1837 }
1838}
1839
02d27625
MM
1840/* See btrace.h. */
1841
508352a9
TW
1842const char *
1843btrace_decode_error (enum btrace_format format, int errcode)
1844{
1845 switch (format)
1846 {
1847 case BTRACE_FORMAT_BTS:
1848 switch (errcode)
1849 {
1850 case BDE_BTS_OVERFLOW:
1851 return _("instruction overflow");
1852
1853 case BDE_BTS_INSN_SIZE:
1854 return _("unknown instruction");
1855
1856 default:
1857 break;
1858 }
1859 break;
1860
1861#if defined (HAVE_LIBIPT)
1862 case BTRACE_FORMAT_PT:
1863 switch (errcode)
1864 {
1865 case BDE_PT_USER_QUIT:
1866 return _("trace decode cancelled");
1867
1868 case BDE_PT_DISABLED:
1869 return _("disabled");
1870
1871 case BDE_PT_OVERFLOW:
1872 return _("overflow");
1873
1874 default:
1875 if (errcode < 0)
1876 return pt_errstr (pt_errcode (errcode));
1877 break;
1878 }
1879 break;
1880#endif /* defined (HAVE_LIBIPT) */
1881
1882 default:
1883 break;
1884 }
1885
1886 return _("unknown");
1887}
1888
1889/* See btrace.h. */
1890
02d27625 1891void
4a4495d6 1892btrace_fetch (struct thread_info *tp, const struct btrace_cpu *cpu)
02d27625
MM
1893{
1894 struct btrace_thread_info *btinfo;
969c39fb 1895 struct btrace_target_info *tinfo;
734b0e4b 1896 struct btrace_data btrace;
969c39fb 1897 int errcode;
02d27625 1898
43792cf0 1899 DEBUG ("fetch thread %s (%s)", print_thread_id (tp),
a068643d 1900 target_pid_to_str (tp->ptid).c_str ());
02d27625
MM
1901
1902 btinfo = &tp->btrace;
969c39fb
MM
1903 tinfo = btinfo->target;
1904 if (tinfo == NULL)
1905 return;
1906
1907 /* There's no way we could get new trace while replaying.
1908 On the other hand, delta trace would return a partial record with the
1909 current PC, which is the replay PC, not the last PC, as expected. */
1910 if (btinfo->replay != NULL)
02d27625
MM
1911 return;
1912
ae20e79a
TW
1913 /* With CLI usage, TP->PTID always equals INFERIOR_PTID here. Now that we
1914 can store a gdb.Record object in Python referring to a different thread
1915 than the current one, temporarily set INFERIOR_PTID. */
2989a365 1916 scoped_restore save_inferior_ptid = make_scoped_restore (&inferior_ptid);
ae20e79a
TW
1917 inferior_ptid = tp->ptid;
1918
cd4007e4 1919 /* We should not be called on running or exited threads. */
00431a78 1920 gdb_assert (can_access_registers_thread (tp));
cd4007e4 1921
969c39fb 1922 /* Let's first try to extend the trace we already have. */
b54b03bd 1923 if (!btinfo->functions.empty ())
969c39fb
MM
1924 {
1925 errcode = target_read_btrace (&btrace, tinfo, BTRACE_READ_DELTA);
1926 if (errcode == 0)
1927 {
1928 /* Success. Let's try to stitch the traces together. */
31fd9caa 1929 errcode = btrace_stitch_trace (&btrace, tp);
969c39fb
MM
1930 }
1931 else
1932 {
1933 /* We failed to read delta trace. Let's try to read new trace. */
1934 errcode = target_read_btrace (&btrace, tinfo, BTRACE_READ_NEW);
1935
1936 /* If we got any new trace, discard what we have. */
8dcc53b3 1937 if (errcode == 0 && !btrace.empty ())
969c39fb
MM
1938 btrace_clear (tp);
1939 }
1940
1941 /* If we were not able to read the trace, we start over. */
1942 if (errcode != 0)
1943 {
1944 btrace_clear (tp);
1945 errcode = target_read_btrace (&btrace, tinfo, BTRACE_READ_ALL);
1946 }
1947 }
1948 else
1949 errcode = target_read_btrace (&btrace, tinfo, BTRACE_READ_ALL);
1950
1951 /* If we were not able to read the branch trace, signal an error. */
1952 if (errcode != 0)
1953 error (_("Failed to read branch trace."));
1954
1955 /* Compute the trace, provided we have any. */
8dcc53b3 1956 if (!btrace.empty ())
23a7fe75 1957 {
9be54cae
MM
1958 /* Store the raw trace data. The stored data will be cleared in
1959 btrace_clear, so we always append the new trace. */
1960 btrace_data_append (&btinfo->data, &btrace);
b0627500 1961 btrace_maint_clear (btinfo);
9be54cae 1962
969c39fb 1963 btrace_clear_history (btinfo);
4a4495d6 1964 btrace_compute_ftrace (tp, &btrace, cpu);
23a7fe75 1965 }
02d27625
MM
1966}
1967
1968/* See btrace.h. */
1969
1970void
1971btrace_clear (struct thread_info *tp)
1972{
1973 struct btrace_thread_info *btinfo;
1974
43792cf0 1975 DEBUG ("clear thread %s (%s)", print_thread_id (tp),
a068643d 1976 target_pid_to_str (tp->ptid).c_str ());
02d27625 1977
0b722aec
MM
1978 /* Make sure btrace frames that may hold a pointer into the branch
1979 trace data are destroyed. */
1980 reinit_frame_cache ();
1981
02d27625 1982 btinfo = &tp->btrace;
23a7fe75 1983
17b89b34 1984 btinfo->functions.clear ();
31fd9caa 1985 btinfo->ngaps = 0;
23a7fe75 1986
b0627500
MM
1987 /* Must clear the maint data before - it depends on BTINFO->DATA. */
1988 btrace_maint_clear (btinfo);
8dcc53b3 1989 btinfo->data.clear ();
969c39fb 1990 btrace_clear_history (btinfo);
02d27625
MM
1991}
1992
1993/* See btrace.h. */
1994
1995void
1996btrace_free_objfile (struct objfile *objfile)
1997{
02d27625
MM
1998 DEBUG ("free objfile");
1999
08036331 2000 for (thread_info *tp : all_non_exited_threads ())
02d27625
MM
2001 btrace_clear (tp);
2002}
c12a2917
MM
2003
2004#if defined (HAVE_LIBEXPAT)
2005
2006/* Check the btrace document version. */
2007
2008static void
2009check_xml_btrace_version (struct gdb_xml_parser *parser,
2010 const struct gdb_xml_element *element,
4d0fdd9b
SM
2011 void *user_data,
2012 std::vector<gdb_xml_value> &attributes)
c12a2917 2013{
9a3c8263 2014 const char *version
4d0fdd9b 2015 = (const char *) xml_find_attribute (attributes, "version")->value.get ();
c12a2917
MM
2016
2017 if (strcmp (version, "1.0") != 0)
2018 gdb_xml_error (parser, _("Unsupported btrace version: \"%s\""), version);
2019}
2020
2021/* Parse a btrace "block" xml record. */
2022
2023static void
2024parse_xml_btrace_block (struct gdb_xml_parser *parser,
2025 const struct gdb_xml_element *element,
4d0fdd9b
SM
2026 void *user_data,
2027 std::vector<gdb_xml_value> &attributes)
c12a2917 2028{
734b0e4b 2029 struct btrace_data *btrace;
c12a2917
MM
2030 ULONGEST *begin, *end;
2031
9a3c8263 2032 btrace = (struct btrace_data *) user_data;
734b0e4b
MM
2033
2034 switch (btrace->format)
2035 {
2036 case BTRACE_FORMAT_BTS:
2037 break;
2038
2039 case BTRACE_FORMAT_NONE:
2040 btrace->format = BTRACE_FORMAT_BTS;
a8b3b8e9 2041 btrace->variant.bts.blocks = new std::vector<btrace_block>;
734b0e4b
MM
2042 break;
2043
2044 default:
2045 gdb_xml_error (parser, _("Btrace format error."));
2046 }
c12a2917 2047
4d0fdd9b
SM
2048 begin = (ULONGEST *) xml_find_attribute (attributes, "begin")->value.get ();
2049 end = (ULONGEST *) xml_find_attribute (attributes, "end")->value.get ();
46f29a9a 2050 btrace->variant.bts.blocks->emplace_back (*begin, *end);
c12a2917
MM
2051}
2052
b20a6524
MM
2053/* Parse a "raw" xml record. */
2054
2055static void
2056parse_xml_raw (struct gdb_xml_parser *parser, const char *body_text,
e7b01ce0 2057 gdb_byte **pdata, size_t *psize)
b20a6524 2058{
343b0027 2059 gdb_byte *bin;
e7b01ce0 2060 size_t len, size;
b20a6524
MM
2061
2062 len = strlen (body_text);
e7b01ce0 2063 if (len % 2 != 0)
b20a6524
MM
2064 gdb_xml_error (parser, _("Bad raw data size."));
2065
e7b01ce0
MM
2066 size = len / 2;
2067
343b0027
TT
2068 gdb::unique_xmalloc_ptr<gdb_byte> data ((gdb_byte *) xmalloc (size));
2069 bin = data.get ();
b20a6524 2070
268a13a5 2071 /* We use hex encoding - see gdbsupport/rsp-low.h. */
b20a6524
MM
2072 while (len > 0)
2073 {
2074 char hi, lo;
2075
2076 hi = *body_text++;
2077 lo = *body_text++;
2078
2079 if (hi == 0 || lo == 0)
2080 gdb_xml_error (parser, _("Bad hex encoding."));
2081
2082 *bin++ = fromhex (hi) * 16 + fromhex (lo);
2083 len -= 2;
2084 }
2085
343b0027 2086 *pdata = data.release ();
b20a6524
MM
2087 *psize = size;
2088}
2089
2090/* Parse a btrace pt-config "cpu" xml record. */
2091
2092static void
2093parse_xml_btrace_pt_config_cpu (struct gdb_xml_parser *parser,
2094 const struct gdb_xml_element *element,
2095 void *user_data,
4d0fdd9b 2096 std::vector<gdb_xml_value> &attributes)
b20a6524
MM
2097{
2098 struct btrace_data *btrace;
2099 const char *vendor;
2100 ULONGEST *family, *model, *stepping;
2101
4d0fdd9b
SM
2102 vendor =
2103 (const char *) xml_find_attribute (attributes, "vendor")->value.get ();
2104 family
2105 = (ULONGEST *) xml_find_attribute (attributes, "family")->value.get ();
2106 model
2107 = (ULONGEST *) xml_find_attribute (attributes, "model")->value.get ();
2108 stepping
2109 = (ULONGEST *) xml_find_attribute (attributes, "stepping")->value.get ();
b20a6524 2110
9a3c8263 2111 btrace = (struct btrace_data *) user_data;
b20a6524
MM
2112
2113 if (strcmp (vendor, "GenuineIntel") == 0)
2114 btrace->variant.pt.config.cpu.vendor = CV_INTEL;
2115
2116 btrace->variant.pt.config.cpu.family = *family;
2117 btrace->variant.pt.config.cpu.model = *model;
2118 btrace->variant.pt.config.cpu.stepping = *stepping;
2119}
2120
2121/* Parse a btrace pt "raw" xml record. */
2122
2123static void
2124parse_xml_btrace_pt_raw (struct gdb_xml_parser *parser,
2125 const struct gdb_xml_element *element,
2126 void *user_data, const char *body_text)
2127{
2128 struct btrace_data *btrace;
2129
9a3c8263 2130 btrace = (struct btrace_data *) user_data;
b20a6524
MM
2131 parse_xml_raw (parser, body_text, &btrace->variant.pt.data,
2132 &btrace->variant.pt.size);
2133}
2134
2135/* Parse a btrace "pt" xml record. */
2136
2137static void
2138parse_xml_btrace_pt (struct gdb_xml_parser *parser,
2139 const struct gdb_xml_element *element,
4d0fdd9b
SM
2140 void *user_data,
2141 std::vector<gdb_xml_value> &attributes)
b20a6524
MM
2142{
2143 struct btrace_data *btrace;
2144
9a3c8263 2145 btrace = (struct btrace_data *) user_data;
b20a6524
MM
2146 btrace->format = BTRACE_FORMAT_PT;
2147 btrace->variant.pt.config.cpu.vendor = CV_UNKNOWN;
2148 btrace->variant.pt.data = NULL;
2149 btrace->variant.pt.size = 0;
2150}
2151
c12a2917
MM
2152static const struct gdb_xml_attribute block_attributes[] = {
2153 { "begin", GDB_XML_AF_NONE, gdb_xml_parse_attr_ulongest, NULL },
2154 { "end", GDB_XML_AF_NONE, gdb_xml_parse_attr_ulongest, NULL },
2155 { NULL, GDB_XML_AF_NONE, NULL, NULL }
2156};
2157
b20a6524
MM
2158static const struct gdb_xml_attribute btrace_pt_config_cpu_attributes[] = {
2159 { "vendor", GDB_XML_AF_NONE, NULL, NULL },
2160 { "family", GDB_XML_AF_NONE, gdb_xml_parse_attr_ulongest, NULL },
2161 { "model", GDB_XML_AF_NONE, gdb_xml_parse_attr_ulongest, NULL },
2162 { "stepping", GDB_XML_AF_NONE, gdb_xml_parse_attr_ulongest, NULL },
2163 { NULL, GDB_XML_AF_NONE, NULL, NULL }
2164};
2165
2166static const struct gdb_xml_element btrace_pt_config_children[] = {
2167 { "cpu", btrace_pt_config_cpu_attributes, NULL, GDB_XML_EF_OPTIONAL,
2168 parse_xml_btrace_pt_config_cpu, NULL },
2169 { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
2170};
2171
2172static const struct gdb_xml_element btrace_pt_children[] = {
2173 { "pt-config", NULL, btrace_pt_config_children, GDB_XML_EF_OPTIONAL, NULL,
2174 NULL },
2175 { "raw", NULL, NULL, GDB_XML_EF_OPTIONAL, NULL, parse_xml_btrace_pt_raw },
2176 { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
2177};
2178
c12a2917
MM
2179static const struct gdb_xml_attribute btrace_attributes[] = {
2180 { "version", GDB_XML_AF_NONE, NULL, NULL },
2181 { NULL, GDB_XML_AF_NONE, NULL, NULL }
2182};
2183
2184static const struct gdb_xml_element btrace_children[] = {
2185 { "block", block_attributes, NULL,
2186 GDB_XML_EF_REPEATABLE | GDB_XML_EF_OPTIONAL, parse_xml_btrace_block, NULL },
b20a6524
MM
2187 { "pt", NULL, btrace_pt_children, GDB_XML_EF_OPTIONAL, parse_xml_btrace_pt,
2188 NULL },
c12a2917
MM
2189 { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
2190};
2191
2192static const struct gdb_xml_element btrace_elements[] = {
2193 { "btrace", btrace_attributes, btrace_children, GDB_XML_EF_NONE,
2194 check_xml_btrace_version, NULL },
2195 { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
2196};
2197
2198#endif /* defined (HAVE_LIBEXPAT) */
2199
2200/* See btrace.h. */
2201
734b0e4b
MM
2202void
2203parse_xml_btrace (struct btrace_data *btrace, const char *buffer)
c12a2917 2204{
c12a2917
MM
2205#if defined (HAVE_LIBEXPAT)
2206
15766370 2207 int errcode;
8dcc53b3
TT
2208 btrace_data result;
2209 result.format = BTRACE_FORMAT_NONE;
734b0e4b 2210
c12a2917 2211 errcode = gdb_xml_parse_quick (_("btrace"), "btrace.dtd", btrace_elements,
8dcc53b3 2212 buffer, &result);
c12a2917 2213 if (errcode != 0)
969c39fb 2214 error (_("Error parsing branch trace."));
c12a2917
MM
2215
2216 /* Keep parse results. */
8dcc53b3 2217 *btrace = std::move (result);
c12a2917
MM
2218
2219#else /* !defined (HAVE_LIBEXPAT) */
2220
c4e12631
MM
2221 error (_("Cannot process branch trace. XML support was disabled at "
2222 "compile time."));
c12a2917
MM
2223
2224#endif /* !defined (HAVE_LIBEXPAT) */
c12a2917 2225}
23a7fe75 2226
f4abbc16
MM
2227#if defined (HAVE_LIBEXPAT)
2228
2229/* Parse a btrace-conf "bts" xml record. */
2230
2231static void
2232parse_xml_btrace_conf_bts (struct gdb_xml_parser *parser,
2233 const struct gdb_xml_element *element,
4d0fdd9b
SM
2234 void *user_data,
2235 std::vector<gdb_xml_value> &attributes)
f4abbc16
MM
2236{
2237 struct btrace_config *conf;
d33501a5 2238 struct gdb_xml_value *size;
f4abbc16 2239
9a3c8263 2240 conf = (struct btrace_config *) user_data;
f4abbc16 2241 conf->format = BTRACE_FORMAT_BTS;
d33501a5
MM
2242 conf->bts.size = 0;
2243
2244 size = xml_find_attribute (attributes, "size");
2245 if (size != NULL)
4d0fdd9b 2246 conf->bts.size = (unsigned int) *(ULONGEST *) size->value.get ();
f4abbc16
MM
2247}
2248
b20a6524
MM
2249/* Parse a btrace-conf "pt" xml record. */
2250
2251static void
2252parse_xml_btrace_conf_pt (struct gdb_xml_parser *parser,
2253 const struct gdb_xml_element *element,
4d0fdd9b
SM
2254 void *user_data,
2255 std::vector<gdb_xml_value> &attributes)
b20a6524
MM
2256{
2257 struct btrace_config *conf;
2258 struct gdb_xml_value *size;
2259
9a3c8263 2260 conf = (struct btrace_config *) user_data;
b20a6524
MM
2261 conf->format = BTRACE_FORMAT_PT;
2262 conf->pt.size = 0;
2263
2264 size = xml_find_attribute (attributes, "size");
2265 if (size != NULL)
4d0fdd9b 2266 conf->pt.size = (unsigned int) *(ULONGEST *) size->value.get ();
b20a6524
MM
2267}
2268
2269static const struct gdb_xml_attribute btrace_conf_pt_attributes[] = {
2270 { "size", GDB_XML_AF_OPTIONAL, gdb_xml_parse_attr_ulongest, NULL },
2271 { NULL, GDB_XML_AF_NONE, NULL, NULL }
2272};
2273
d33501a5
MM
2274static const struct gdb_xml_attribute btrace_conf_bts_attributes[] = {
2275 { "size", GDB_XML_AF_OPTIONAL, gdb_xml_parse_attr_ulongest, NULL },
2276 { NULL, GDB_XML_AF_NONE, NULL, NULL }
2277};
2278
f4abbc16 2279static const struct gdb_xml_element btrace_conf_children[] = {
d33501a5
MM
2280 { "bts", btrace_conf_bts_attributes, NULL, GDB_XML_EF_OPTIONAL,
2281 parse_xml_btrace_conf_bts, NULL },
b20a6524
MM
2282 { "pt", btrace_conf_pt_attributes, NULL, GDB_XML_EF_OPTIONAL,
2283 parse_xml_btrace_conf_pt, NULL },
f4abbc16
MM
2284 { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
2285};
2286
2287static const struct gdb_xml_attribute btrace_conf_attributes[] = {
2288 { "version", GDB_XML_AF_NONE, NULL, NULL },
2289 { NULL, GDB_XML_AF_NONE, NULL, NULL }
2290};
2291
2292static const struct gdb_xml_element btrace_conf_elements[] = {
2293 { "btrace-conf", btrace_conf_attributes, btrace_conf_children,
2294 GDB_XML_EF_NONE, NULL, NULL },
2295 { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
2296};
2297
2298#endif /* defined (HAVE_LIBEXPAT) */
2299
2300/* See btrace.h. */
2301
2302void
2303parse_xml_btrace_conf (struct btrace_config *conf, const char *xml)
2304{
f4abbc16
MM
2305#if defined (HAVE_LIBEXPAT)
2306
15766370 2307 int errcode;
f4abbc16
MM
2308 errcode = gdb_xml_parse_quick (_("btrace-conf"), "btrace-conf.dtd",
2309 btrace_conf_elements, xml, conf);
2310 if (errcode != 0)
2311 error (_("Error parsing branch trace configuration."));
2312
2313#else /* !defined (HAVE_LIBEXPAT) */
2314
c4e12631
MM
2315 error (_("Cannot process the branch trace configuration. XML support "
2316 "was disabled at compile time."));
f4abbc16
MM
2317
2318#endif /* !defined (HAVE_LIBEXPAT) */
2319}
2320
23a7fe75
MM
2321/* See btrace.h. */
2322
2323const struct btrace_insn *
2324btrace_insn_get (const struct btrace_insn_iterator *it)
2325{
2326 const struct btrace_function *bfun;
2327 unsigned int index, end;
2328
a0f1b963 2329 index = it->insn_index;
08c3f6d2 2330 bfun = &it->btinfo->functions[it->call_index];
23a7fe75 2331
31fd9caa
MM
2332 /* Check if the iterator points to a gap in the trace. */
2333 if (bfun->errcode != 0)
2334 return NULL;
2335
23a7fe75 2336 /* The index is within the bounds of this function's instruction vector. */
0860c437 2337 end = bfun->insn.size ();
23a7fe75
MM
2338 gdb_assert (0 < end);
2339 gdb_assert (index < end);
2340
0860c437 2341 return &bfun->insn[index];
23a7fe75
MM
2342}
2343
2344/* See btrace.h. */
2345
69090cee
TW
2346int
2347btrace_insn_get_error (const struct btrace_insn_iterator *it)
23a7fe75 2348{
08c3f6d2 2349 return it->btinfo->functions[it->call_index].errcode;
69090cee 2350}
31fd9caa 2351
69090cee 2352/* See btrace.h. */
31fd9caa 2353
69090cee
TW
2354unsigned int
2355btrace_insn_number (const struct btrace_insn_iterator *it)
2356{
08c3f6d2 2357 return it->btinfo->functions[it->call_index].insn_offset + it->insn_index;
23a7fe75
MM
2358}
2359
2360/* See btrace.h. */
2361
2362void
2363btrace_insn_begin (struct btrace_insn_iterator *it,
2364 const struct btrace_thread_info *btinfo)
2365{
b54b03bd 2366 if (btinfo->functions.empty ())
23a7fe75
MM
2367 error (_("No trace."));
2368
521103fd 2369 it->btinfo = btinfo;
a0f1b963
TW
2370 it->call_index = 0;
2371 it->insn_index = 0;
23a7fe75
MM
2372}
2373
2374/* See btrace.h. */
2375
2376void
2377btrace_insn_end (struct btrace_insn_iterator *it,
2378 const struct btrace_thread_info *btinfo)
2379{
2380 const struct btrace_function *bfun;
2381 unsigned int length;
2382
b54b03bd 2383 if (btinfo->functions.empty ())
23a7fe75
MM
2384 error (_("No trace."));
2385
08c3f6d2 2386 bfun = &btinfo->functions.back ();
0860c437 2387 length = bfun->insn.size ();
23a7fe75 2388
31fd9caa
MM
2389 /* The last function may either be a gap or it contains the current
2390 instruction, which is one past the end of the execution trace; ignore
2391 it. */
2392 if (length > 0)
2393 length -= 1;
2394
521103fd 2395 it->btinfo = btinfo;
a0f1b963
TW
2396 it->call_index = bfun->number - 1;
2397 it->insn_index = length;
23a7fe75
MM
2398}
2399
2400/* See btrace.h. */
2401
2402unsigned int
2403btrace_insn_next (struct btrace_insn_iterator *it, unsigned int stride)
2404{
2405 const struct btrace_function *bfun;
2406 unsigned int index, steps;
2407
08c3f6d2 2408 bfun = &it->btinfo->functions[it->call_index];
23a7fe75 2409 steps = 0;
a0f1b963 2410 index = it->insn_index;
23a7fe75
MM
2411
2412 while (stride != 0)
2413 {
2414 unsigned int end, space, adv;
2415
0860c437 2416 end = bfun->insn.size ();
23a7fe75 2417
31fd9caa
MM
2418 /* An empty function segment represents a gap in the trace. We count
2419 it as one instruction. */
2420 if (end == 0)
2421 {
2422 const struct btrace_function *next;
2423
eb8f2b9c 2424 next = ftrace_find_call_by_number (it->btinfo, bfun->number + 1);
31fd9caa
MM
2425 if (next == NULL)
2426 break;
2427
2428 stride -= 1;
2429 steps += 1;
2430
2431 bfun = next;
2432 index = 0;
2433
2434 continue;
2435 }
2436
23a7fe75
MM
2437 gdb_assert (0 < end);
2438 gdb_assert (index < end);
2439
2440 /* Compute the number of instructions remaining in this segment. */
2441 space = end - index;
2442
2443 /* Advance the iterator as far as possible within this segment. */
325fac50 2444 adv = std::min (space, stride);
23a7fe75
MM
2445 stride -= adv;
2446 index += adv;
2447 steps += adv;
2448
2449 /* Move to the next function if we're at the end of this one. */
2450 if (index == end)
2451 {
2452 const struct btrace_function *next;
2453
eb8f2b9c 2454 next = ftrace_find_call_by_number (it->btinfo, bfun->number + 1);
23a7fe75
MM
2455 if (next == NULL)
2456 {
2457 /* We stepped past the last function.
2458
2459 Let's adjust the index to point to the last instruction in
2460 the previous function. */
2461 index -= 1;
2462 steps -= 1;
2463 break;
2464 }
2465
2466 /* We now point to the first instruction in the new function. */
2467 bfun = next;
2468 index = 0;
2469 }
2470
2471 /* We did make progress. */
2472 gdb_assert (adv > 0);
2473 }
2474
2475 /* Update the iterator. */
a0f1b963
TW
2476 it->call_index = bfun->number - 1;
2477 it->insn_index = index;
23a7fe75
MM
2478
2479 return steps;
2480}
2481
2482/* See btrace.h. */
2483
2484unsigned int
2485btrace_insn_prev (struct btrace_insn_iterator *it, unsigned int stride)
2486{
2487 const struct btrace_function *bfun;
2488 unsigned int index, steps;
2489
08c3f6d2 2490 bfun = &it->btinfo->functions[it->call_index];
23a7fe75 2491 steps = 0;
a0f1b963 2492 index = it->insn_index;
23a7fe75
MM
2493
2494 while (stride != 0)
2495 {
2496 unsigned int adv;
2497
2498 /* Move to the previous function if we're at the start of this one. */
2499 if (index == 0)
2500 {
2501 const struct btrace_function *prev;
2502
eb8f2b9c 2503 prev = ftrace_find_call_by_number (it->btinfo, bfun->number - 1);
23a7fe75
MM
2504 if (prev == NULL)
2505 break;
2506
2507 /* We point to one after the last instruction in the new function. */
2508 bfun = prev;
0860c437 2509 index = bfun->insn.size ();
23a7fe75 2510
31fd9caa
MM
2511 /* An empty function segment represents a gap in the trace. We count
2512 it as one instruction. */
2513 if (index == 0)
2514 {
2515 stride -= 1;
2516 steps += 1;
2517
2518 continue;
2519 }
23a7fe75
MM
2520 }
2521
2522 /* Advance the iterator as far as possible within this segment. */
325fac50 2523 adv = std::min (index, stride);
31fd9caa 2524
23a7fe75
MM
2525 stride -= adv;
2526 index -= adv;
2527 steps += adv;
2528
2529 /* We did make progress. */
2530 gdb_assert (adv > 0);
2531 }
2532
2533 /* Update the iterator. */
a0f1b963
TW
2534 it->call_index = bfun->number - 1;
2535 it->insn_index = index;
23a7fe75
MM
2536
2537 return steps;
2538}
2539
2540/* See btrace.h. */
2541
2542int
2543btrace_insn_cmp (const struct btrace_insn_iterator *lhs,
2544 const struct btrace_insn_iterator *rhs)
2545{
a0f1b963 2546 gdb_assert (lhs->btinfo == rhs->btinfo);
23a7fe75 2547
a0f1b963
TW
2548 if (lhs->call_index != rhs->call_index)
2549 return lhs->call_index - rhs->call_index;
23a7fe75 2550
a0f1b963 2551 return lhs->insn_index - rhs->insn_index;
23a7fe75
MM
2552}
2553
2554/* See btrace.h. */
2555
2556int
2557btrace_find_insn_by_number (struct btrace_insn_iterator *it,
2558 const struct btrace_thread_info *btinfo,
2559 unsigned int number)
2560{
2561 const struct btrace_function *bfun;
fdd2bd92 2562 unsigned int upper, lower;
23a7fe75 2563
2b51eddc 2564 if (btinfo->functions.empty ())
fdd2bd92 2565 return 0;
23a7fe75 2566
fdd2bd92 2567 lower = 0;
08c3f6d2 2568 bfun = &btinfo->functions[lower];
fdd2bd92 2569 if (number < bfun->insn_offset)
23a7fe75
MM
2570 return 0;
2571
2b51eddc 2572 upper = btinfo->functions.size () - 1;
08c3f6d2 2573 bfun = &btinfo->functions[upper];
fdd2bd92 2574 if (number >= bfun->insn_offset + ftrace_call_num_insn (bfun))
23a7fe75
MM
2575 return 0;
2576
fdd2bd92
TW
2577 /* We assume that there are no holes in the numbering. */
2578 for (;;)
2579 {
2580 const unsigned int average = lower + (upper - lower) / 2;
2581
08c3f6d2 2582 bfun = &btinfo->functions[average];
fdd2bd92
TW
2583
2584 if (number < bfun->insn_offset)
2585 {
2586 upper = average - 1;
2587 continue;
2588 }
2589
2590 if (number >= bfun->insn_offset + ftrace_call_num_insn (bfun))
2591 {
2592 lower = average + 1;
2593 continue;
2594 }
2595
2596 break;
2597 }
2598
521103fd 2599 it->btinfo = btinfo;
a0f1b963
TW
2600 it->call_index = bfun->number - 1;
2601 it->insn_index = number - bfun->insn_offset;
23a7fe75
MM
2602 return 1;
2603}
2604
f158f208
TW
2605/* Returns true if the recording ends with a function segment that
2606 contains only a single (i.e. the current) instruction. */
2607
2608static bool
2609btrace_ends_with_single_insn (const struct btrace_thread_info *btinfo)
2610{
2611 const btrace_function *bfun;
2612
2613 if (btinfo->functions.empty ())
2614 return false;
2615
08c3f6d2 2616 bfun = &btinfo->functions.back ();
f158f208
TW
2617 if (bfun->errcode != 0)
2618 return false;
2619
2620 return ftrace_call_num_insn (bfun) == 1;
2621}
2622
23a7fe75
MM
2623/* See btrace.h. */
2624
2625const struct btrace_function *
2626btrace_call_get (const struct btrace_call_iterator *it)
2627{
f158f208
TW
2628 if (it->index >= it->btinfo->functions.size ())
2629 return NULL;
2630
08c3f6d2 2631 return &it->btinfo->functions[it->index];
23a7fe75
MM
2632}
2633
2634/* See btrace.h. */
2635
2636unsigned int
2637btrace_call_number (const struct btrace_call_iterator *it)
2638{
f158f208 2639 const unsigned int length = it->btinfo->functions.size ();
23a7fe75 2640
f158f208
TW
2641 /* If the last function segment contains only a single instruction (i.e. the
2642 current instruction), skip it. */
2643 if ((it->index == length) && btrace_ends_with_single_insn (it->btinfo))
2644 return length;
23a7fe75 2645
f158f208 2646 return it->index + 1;
23a7fe75
MM
2647}
2648
2649/* See btrace.h. */
2650
2651void
2652btrace_call_begin (struct btrace_call_iterator *it,
2653 const struct btrace_thread_info *btinfo)
2654{
f158f208 2655 if (btinfo->functions.empty ())
23a7fe75
MM
2656 error (_("No trace."));
2657
2658 it->btinfo = btinfo;
f158f208 2659 it->index = 0;
23a7fe75
MM
2660}
2661
2662/* See btrace.h. */
2663
2664void
2665btrace_call_end (struct btrace_call_iterator *it,
2666 const struct btrace_thread_info *btinfo)
2667{
f158f208 2668 if (btinfo->functions.empty ())
23a7fe75
MM
2669 error (_("No trace."));
2670
2671 it->btinfo = btinfo;
f158f208 2672 it->index = btinfo->functions.size ();
23a7fe75
MM
2673}
2674
2675/* See btrace.h. */
2676
2677unsigned int
2678btrace_call_next (struct btrace_call_iterator *it, unsigned int stride)
2679{
f158f208 2680 const unsigned int length = it->btinfo->functions.size ();
23a7fe75 2681
f158f208
TW
2682 if (it->index + stride < length - 1)
2683 /* Default case: Simply advance the iterator. */
2684 it->index += stride;
2685 else if (it->index + stride == length - 1)
23a7fe75 2686 {
f158f208
TW
2687 /* We land exactly at the last function segment. If it contains only one
2688 instruction (i.e. the current instruction) it is not actually part of
2689 the trace. */
2690 if (btrace_ends_with_single_insn (it->btinfo))
2691 it->index = length;
2692 else
2693 it->index = length - 1;
2694 }
2695 else
2696 {
2697 /* We land past the last function segment and have to adjust the stride.
2698 If the last function segment contains only one instruction (i.e. the
2699 current instruction) it is not actually part of the trace. */
2700 if (btrace_ends_with_single_insn (it->btinfo))
2701 stride = length - it->index - 1;
2702 else
2703 stride = length - it->index;
23a7fe75 2704
f158f208 2705 it->index = length;
23a7fe75
MM
2706 }
2707
f158f208 2708 return stride;
23a7fe75
MM
2709}
2710
2711/* See btrace.h. */
2712
2713unsigned int
2714btrace_call_prev (struct btrace_call_iterator *it, unsigned int stride)
2715{
f158f208
TW
2716 const unsigned int length = it->btinfo->functions.size ();
2717 int steps = 0;
23a7fe75 2718
f158f208 2719 gdb_assert (it->index <= length);
23a7fe75 2720
f158f208
TW
2721 if (stride == 0 || it->index == 0)
2722 return 0;
23a7fe75 2723
f158f208
TW
2724 /* If we are at the end, the first step is a special case. If the last
2725 function segment contains only one instruction (i.e. the current
2726 instruction) it is not actually part of the trace. To be able to step
2727 over this instruction, we need at least one more function segment. */
2728 if ((it->index == length) && (length > 1))
23a7fe75 2729 {
f158f208
TW
2730 if (btrace_ends_with_single_insn (it->btinfo))
2731 it->index = length - 2;
2732 else
2733 it->index = length - 1;
23a7fe75 2734
f158f208
TW
2735 steps = 1;
2736 stride -= 1;
23a7fe75
MM
2737 }
2738
f158f208
TW
2739 stride = std::min (stride, it->index);
2740
2741 it->index -= stride;
2742 return steps + stride;
23a7fe75
MM
2743}
2744
2745/* See btrace.h. */
2746
2747int
2748btrace_call_cmp (const struct btrace_call_iterator *lhs,
2749 const struct btrace_call_iterator *rhs)
2750{
f158f208
TW
2751 gdb_assert (lhs->btinfo == rhs->btinfo);
2752 return (int) (lhs->index - rhs->index);
23a7fe75
MM
2753}
2754
2755/* See btrace.h. */
2756
2757int
2758btrace_find_call_by_number (struct btrace_call_iterator *it,
2759 const struct btrace_thread_info *btinfo,
2760 unsigned int number)
2761{
f158f208 2762 const unsigned int length = btinfo->functions.size ();
23a7fe75 2763
f158f208
TW
2764 if ((number == 0) || (number > length))
2765 return 0;
23a7fe75 2766
f158f208
TW
2767 it->btinfo = btinfo;
2768 it->index = number - 1;
2769 return 1;
23a7fe75
MM
2770}
2771
2772/* See btrace.h. */
2773
2774void
2775btrace_set_insn_history (struct btrace_thread_info *btinfo,
2776 const struct btrace_insn_iterator *begin,
2777 const struct btrace_insn_iterator *end)
2778{
2779 if (btinfo->insn_history == NULL)
8d749320 2780 btinfo->insn_history = XCNEW (struct btrace_insn_history);
23a7fe75
MM
2781
2782 btinfo->insn_history->begin = *begin;
2783 btinfo->insn_history->end = *end;
2784}
2785
2786/* See btrace.h. */
2787
2788void
2789btrace_set_call_history (struct btrace_thread_info *btinfo,
2790 const struct btrace_call_iterator *begin,
2791 const struct btrace_call_iterator *end)
2792{
2793 gdb_assert (begin->btinfo == end->btinfo);
2794
2795 if (btinfo->call_history == NULL)
8d749320 2796 btinfo->call_history = XCNEW (struct btrace_call_history);
23a7fe75
MM
2797
2798 btinfo->call_history->begin = *begin;
2799 btinfo->call_history->end = *end;
2800}
07bbe694
MM
2801
2802/* See btrace.h. */
2803
2804int
2805btrace_is_replaying (struct thread_info *tp)
2806{
2807 return tp->btrace.replay != NULL;
2808}
6e07b1d2
MM
2809
2810/* See btrace.h. */
2811
2812int
2813btrace_is_empty (struct thread_info *tp)
2814{
2815 struct btrace_insn_iterator begin, end;
2816 struct btrace_thread_info *btinfo;
2817
2818 btinfo = &tp->btrace;
2819
b54b03bd 2820 if (btinfo->functions.empty ())
6e07b1d2
MM
2821 return 1;
2822
2823 btrace_insn_begin (&begin, btinfo);
2824 btrace_insn_end (&end, btinfo);
2825
2826 return btrace_insn_cmp (&begin, &end) == 0;
2827}
734b0e4b 2828
b0627500
MM
2829#if defined (HAVE_LIBIPT)
2830
2831/* Print a single packet. */
2832
2833static void
2834pt_print_packet (const struct pt_packet *packet)
2835{
2836 switch (packet->type)
2837 {
2838 default:
2839 printf_unfiltered (("[??: %x]"), packet->type);
2840 break;
2841
2842 case ppt_psb:
2843 printf_unfiltered (("psb"));
2844 break;
2845
2846 case ppt_psbend:
2847 printf_unfiltered (("psbend"));
2848 break;
2849
2850 case ppt_pad:
2851 printf_unfiltered (("pad"));
2852 break;
2853
2854 case ppt_tip:
2855 printf_unfiltered (("tip %u: 0x%" PRIx64 ""),
2856 packet->payload.ip.ipc,
2857 packet->payload.ip.ip);
2858 break;
2859
2860 case ppt_tip_pge:
2861 printf_unfiltered (("tip.pge %u: 0x%" PRIx64 ""),
2862 packet->payload.ip.ipc,
2863 packet->payload.ip.ip);
2864 break;
2865
2866 case ppt_tip_pgd:
2867 printf_unfiltered (("tip.pgd %u: 0x%" PRIx64 ""),
2868 packet->payload.ip.ipc,
2869 packet->payload.ip.ip);
2870 break;
2871
2872 case ppt_fup:
2873 printf_unfiltered (("fup %u: 0x%" PRIx64 ""),
2874 packet->payload.ip.ipc,
2875 packet->payload.ip.ip);
2876 break;
2877
2878 case ppt_tnt_8:
2879 printf_unfiltered (("tnt-8 %u: 0x%" PRIx64 ""),
2880 packet->payload.tnt.bit_size,
2881 packet->payload.tnt.payload);
2882 break;
2883
2884 case ppt_tnt_64:
2885 printf_unfiltered (("tnt-64 %u: 0x%" PRIx64 ""),
2886 packet->payload.tnt.bit_size,
2887 packet->payload.tnt.payload);
2888 break;
2889
2890 case ppt_pip:
37fdfe4c
MM
2891 printf_unfiltered (("pip %" PRIx64 "%s"), packet->payload.pip.cr3,
2892 packet->payload.pip.nr ? (" nr") : (""));
b0627500
MM
2893 break;
2894
2895 case ppt_tsc:
2896 printf_unfiltered (("tsc %" PRIx64 ""), packet->payload.tsc.tsc);
2897 break;
2898
2899 case ppt_cbr:
2900 printf_unfiltered (("cbr %u"), packet->payload.cbr.ratio);
2901 break;
2902
2903 case ppt_mode:
2904 switch (packet->payload.mode.leaf)
2905 {
2906 default:
2907 printf_unfiltered (("mode %u"), packet->payload.mode.leaf);
2908 break;
2909
2910 case pt_mol_exec:
2911 printf_unfiltered (("mode.exec%s%s"),
2912 packet->payload.mode.bits.exec.csl
2913 ? (" cs.l") : (""),
2914 packet->payload.mode.bits.exec.csd
2915 ? (" cs.d") : (""));
2916 break;
2917
2918 case pt_mol_tsx:
2919 printf_unfiltered (("mode.tsx%s%s"),
2920 packet->payload.mode.bits.tsx.intx
2921 ? (" intx") : (""),
2922 packet->payload.mode.bits.tsx.abrt
2923 ? (" abrt") : (""));
2924 break;
2925 }
2926 break;
2927
2928 case ppt_ovf:
2929 printf_unfiltered (("ovf"));
2930 break;
2931
37fdfe4c
MM
2932 case ppt_stop:
2933 printf_unfiltered (("stop"));
2934 break;
2935
2936 case ppt_vmcs:
2937 printf_unfiltered (("vmcs %" PRIx64 ""), packet->payload.vmcs.base);
2938 break;
2939
2940 case ppt_tma:
2941 printf_unfiltered (("tma %x %x"), packet->payload.tma.ctc,
2942 packet->payload.tma.fc);
2943 break;
2944
2945 case ppt_mtc:
2946 printf_unfiltered (("mtc %x"), packet->payload.mtc.ctc);
2947 break;
2948
2949 case ppt_cyc:
2950 printf_unfiltered (("cyc %" PRIx64 ""), packet->payload.cyc.value);
2951 break;
2952
2953 case ppt_mnt:
2954 printf_unfiltered (("mnt %" PRIx64 ""), packet->payload.mnt.payload);
2955 break;
b0627500
MM
2956 }
2957}
2958
2959/* Decode packets into MAINT using DECODER. */
2960
2961static void
2962btrace_maint_decode_pt (struct btrace_maint_info *maint,
2963 struct pt_packet_decoder *decoder)
2964{
2965 int errcode;
2966
554ac434 2967 if (maint->variant.pt.packets == NULL)
a8b3b8e9 2968 maint->variant.pt.packets = new std::vector<btrace_pt_packet>;
554ac434 2969
b0627500
MM
2970 for (;;)
2971 {
2972 struct btrace_pt_packet packet;
2973
2974 errcode = pt_pkt_sync_forward (decoder);
2975 if (errcode < 0)
2976 break;
2977
2978 for (;;)
2979 {
2980 pt_pkt_get_offset (decoder, &packet.offset);
2981
2982 errcode = pt_pkt_next (decoder, &packet.packet,
2983 sizeof(packet.packet));
2984 if (errcode < 0)
2985 break;
2986
2987 if (maint_btrace_pt_skip_pad == 0 || packet.packet.type != ppt_pad)
2988 {
2989 packet.errcode = pt_errcode (errcode);
554ac434 2990 maint->variant.pt.packets->push_back (packet);
b0627500
MM
2991 }
2992 }
2993
2994 if (errcode == -pte_eos)
2995 break;
2996
2997 packet.errcode = pt_errcode (errcode);
554ac434 2998 maint->variant.pt.packets->push_back (packet);
b0627500
MM
2999
3000 warning (_("Error at trace offset 0x%" PRIx64 ": %s."),
3001 packet.offset, pt_errstr (packet.errcode));
3002 }
3003
3004 if (errcode != -pte_eos)
bc504a31 3005 warning (_("Failed to synchronize onto the Intel Processor Trace "
b0627500
MM
3006 "stream: %s."), pt_errstr (pt_errcode (errcode)));
3007}
3008
3009/* Update the packet history in BTINFO. */
3010
3011static void
3012btrace_maint_update_pt_packets (struct btrace_thread_info *btinfo)
3013{
b0627500 3014 struct pt_packet_decoder *decoder;
4a4495d6 3015 const struct btrace_cpu *cpu;
b0627500
MM
3016 struct btrace_data_pt *pt;
3017 struct pt_config config;
3018 int errcode;
3019
3020 pt = &btinfo->data.variant.pt;
3021
3022 /* Nothing to do if there is no trace. */
3023 if (pt->size == 0)
3024 return;
3025
3026 memset (&config, 0, sizeof(config));
3027
3028 config.size = sizeof (config);
3029 config.begin = pt->data;
3030 config.end = pt->data + pt->size;
3031
4a4495d6
MM
3032 cpu = record_btrace_get_cpu ();
3033 if (cpu == nullptr)
3034 cpu = &pt->config.cpu;
3035
3036 /* We treat an unknown vendor as 'no errata'. */
3037 if (cpu->vendor != CV_UNKNOWN)
3038 {
3039 config.cpu.vendor = pt_translate_cpu_vendor (cpu->vendor);
3040 config.cpu.family = cpu->family;
3041 config.cpu.model = cpu->model;
3042 config.cpu.stepping = cpu->stepping;
b0627500 3043
4a4495d6
MM
3044 errcode = pt_cpu_errata (&config.errata, &config.cpu);
3045 if (errcode < 0)
3046 error (_("Failed to configure the Intel Processor Trace "
3047 "decoder: %s."), pt_errstr (pt_errcode (errcode)));
3048 }
b0627500
MM
3049
3050 decoder = pt_pkt_alloc_decoder (&config);
3051 if (decoder == NULL)
bc504a31 3052 error (_("Failed to allocate the Intel Processor Trace decoder."));
b0627500 3053
a70b8144 3054 try
b0627500
MM
3055 {
3056 btrace_maint_decode_pt (&btinfo->maint, decoder);
3057 }
230d2906 3058 catch (const gdb_exception &except)
b0627500
MM
3059 {
3060 pt_pkt_free_decoder (decoder);
3061
3062 if (except.reason < 0)
eedc3f4f 3063 throw;
b0627500 3064 }
b0627500
MM
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
3075static void
3076btrace_maint_update_packets (struct btrace_thread_info *btinfo,
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;
46f29a9a 3092 *end = btinfo->data.variant.bts.blocks->size ();
b0627500
MM
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:
554ac434 3099 if (btinfo->maint.variant.pt.packets == nullptr)
a8b3b8e9 3100 btinfo->maint.variant.pt.packets = new std::vector<btrace_pt_packet>;
554ac434
AB
3101
3102 if (btinfo->maint.variant.pt.packets->empty ())
b0627500
MM
3103 btrace_maint_update_pt_packets (btinfo);
3104
3105 *begin = 0;
554ac434 3106 *end = btinfo->maint.variant.pt.packets->size ();
b0627500
MM
3107 *from = btinfo->maint.variant.pt.packet_history.begin;
3108 *to = btinfo->maint.variant.pt.packet_history.end;
3109 break;
3110#endif /* defined (HAVE_LIBIPT) */
3111 }
3112}
3113
3114/* Print packets in BTINFO from BEGIN (inclusive) until END (exclusive) and
3115 update the current iterator position. */
3116
3117static void
3118btrace_maint_print_packets (struct btrace_thread_info *btinfo,
3119 unsigned int begin, unsigned int end)
3120{
3121 switch (btinfo->data.format)
3122 {
3123 default:
3124 break;
3125
3126 case BTRACE_FORMAT_BTS:
3127 {
a8b3b8e9 3128 const std::vector<btrace_block> &blocks
46f29a9a 3129 = *btinfo->data.variant.bts.blocks;
b0627500
MM
3130 unsigned int blk;
3131
b0627500
MM
3132 for (blk = begin; blk < end; ++blk)
3133 {
46f29a9a 3134 const btrace_block &block = blocks.at (blk);
b0627500
MM
3135
3136 printf_unfiltered ("%u\tbegin: %s, end: %s\n", blk,
46f29a9a
AB
3137 core_addr_to_string_nz (block.begin),
3138 core_addr_to_string_nz (block.end));
b0627500
MM
3139 }
3140
3141 btinfo->maint.variant.bts.packet_history.begin = begin;
3142 btinfo->maint.variant.bts.packet_history.end = end;
3143 }
3144 break;
3145
3146#if defined (HAVE_LIBIPT)
3147 case BTRACE_FORMAT_PT:
3148 {
a8b3b8e9 3149 const std::vector<btrace_pt_packet> &packets
554ac434 3150 = *btinfo->maint.variant.pt.packets;
b0627500
MM
3151 unsigned int pkt;
3152
b0627500
MM
3153 for (pkt = begin; pkt < end; ++pkt)
3154 {
554ac434 3155 const struct btrace_pt_packet &packet = packets.at (pkt);
b0627500
MM
3156
3157 printf_unfiltered ("%u\t", pkt);
554ac434 3158 printf_unfiltered ("0x%" PRIx64 "\t", packet.offset);
b0627500 3159
554ac434
AB
3160 if (packet.errcode == pte_ok)
3161 pt_print_packet (&packet.packet);
b0627500 3162 else
554ac434 3163 printf_unfiltered ("[error: %s]", pt_errstr (packet.errcode));
b0627500
MM
3164
3165 printf_unfiltered ("\n");
3166 }
3167
3168 btinfo->maint.variant.pt.packet_history.begin = begin;
3169 btinfo->maint.variant.pt.packet_history.end = end;
3170 }
3171 break;
3172#endif /* defined (HAVE_LIBIPT) */
3173 }
3174}
3175
3176/* Read a number from an argument string. */
3177
3178static unsigned int
f938677d 3179get_uint (const char **arg)
b0627500 3180{
f938677d
TT
3181 const char *begin, *pos;
3182 char *end;
b0627500
MM
3183 unsigned long number;
3184
3185 begin = *arg;
3186 pos = skip_spaces (begin);
3187
3188 if (!isdigit (*pos))
3189 error (_("Expected positive number, got: %s."), pos);
3190
3191 number = strtoul (pos, &end, 10);
3192 if (number > UINT_MAX)
3193 error (_("Number too big."));
3194
3195 *arg += (end - begin);
3196
3197 return (unsigned int) number;
3198}
3199
3200/* Read a context size from an argument string. */
3201
3202static int
f938677d 3203get_context_size (const char **arg)
b0627500 3204{
f938677d 3205 const char *pos = skip_spaces (*arg);
b0627500
MM
3206
3207 if (!isdigit (*pos))
3208 error (_("Expected positive number, got: %s."), pos);
3209
f938677d
TT
3210 char *end;
3211 long result = strtol (pos, &end, 10);
3212 *arg = end;
3213 return result;
b0627500
MM
3214}
3215
3216/* Complain about junk at the end of an argument string. */
3217
3218static void
f938677d 3219no_chunk (const char *arg)
b0627500
MM
3220{
3221 if (*arg != 0)
3222 error (_("Junk after argument: %s."), arg);
3223}
3224
3225/* The "maintenance btrace packet-history" command. */
3226
3227static void
f938677d 3228maint_btrace_packet_history_cmd (const char *arg, int from_tty)
b0627500
MM
3229{
3230 struct btrace_thread_info *btinfo;
b0627500
MM
3231 unsigned int size, begin, end, from, to;
3232
5b6d1e4f 3233 thread_info *tp = find_thread_ptid (current_inferior (), inferior_ptid);
b0627500
MM
3234 if (tp == NULL)
3235 error (_("No thread."));
3236
3237 size = 10;
3238 btinfo = &tp->btrace;
3239
3240 btrace_maint_update_packets (btinfo, &begin, &end, &from, &to);
3241 if (begin == end)
3242 {
3243 printf_unfiltered (_("No trace.\n"));
3244 return;
3245 }
3246
3247 if (arg == NULL || *arg == 0 || strcmp (arg, "+") == 0)
3248 {
3249 from = to;
3250
3251 if (end - from < size)
3252 size = end - from;
3253 to = from + size;
3254 }
3255 else if (strcmp (arg, "-") == 0)
3256 {
3257 to = from;
3258
3259 if (to - begin < size)
3260 size = to - begin;
3261 from = to - size;
3262 }
3263 else
3264 {
3265 from = get_uint (&arg);
3266 if (end <= from)
3267 error (_("'%u' is out of range."), from);
3268
3269 arg = skip_spaces (arg);
3270 if (*arg == ',')
3271 {
3272 arg = skip_spaces (++arg);
3273
3274 if (*arg == '+')
3275 {
3276 arg += 1;
3277 size = get_context_size (&arg);
3278
3279 no_chunk (arg);
3280
3281 if (end - from < size)
3282 size = end - from;
3283 to = from + size;
3284 }
3285 else if (*arg == '-')
3286 {
3287 arg += 1;
3288 size = get_context_size (&arg);
3289
3290 no_chunk (arg);
3291
3292 /* Include the packet given as first argument. */
3293 from += 1;
3294 to = from;
3295
3296 if (to - begin < size)
3297 size = to - begin;
3298 from = to - size;
3299 }
3300 else
3301 {
3302 to = get_uint (&arg);
3303
3304 /* Include the packet at the second argument and silently
3305 truncate the range. */
3306 if (to < end)
3307 to += 1;
3308 else
3309 to = end;
3310
3311 no_chunk (arg);
3312 }
3313 }
3314 else
3315 {
3316 no_chunk (arg);
3317
3318 if (end - from < size)
3319 size = end - from;
3320 to = from + size;
3321 }
3322
3323 dont_repeat ();
3324 }
3325
3326 btrace_maint_print_packets (btinfo, from, to);
3327}
3328
3329/* The "maintenance btrace clear-packet-history" command. */
3330
3331static void
f938677d 3332maint_btrace_clear_packet_history_cmd (const char *args, int from_tty)
b0627500 3333{
b0627500
MM
3334 if (args != NULL && *args != 0)
3335 error (_("Invalid argument."));
3336
00431a78 3337 if (inferior_ptid == null_ptid)
b0627500
MM
3338 error (_("No thread."));
3339
00431a78
PA
3340 thread_info *tp = inferior_thread ();
3341 btrace_thread_info *btinfo = &tp->btrace;
b0627500
MM
3342
3343 /* Must clear the maint data before - it depends on BTINFO->DATA. */
3344 btrace_maint_clear (btinfo);
8dcc53b3 3345 btinfo->data.clear ();
b0627500
MM
3346}
3347
3348/* The "maintenance btrace clear" command. */
3349
3350static void
f938677d 3351maint_btrace_clear_cmd (const char *args, int from_tty)
b0627500 3352{
b0627500
MM
3353 if (args != NULL && *args != 0)
3354 error (_("Invalid argument."));
3355
00431a78 3356 if (inferior_ptid == null_ptid)
b0627500
MM
3357 error (_("No thread."));
3358
00431a78 3359 thread_info *tp = inferior_thread ();
b0627500
MM
3360 btrace_clear (tp);
3361}
3362
b0627500
MM
3363/* The "maintenance info btrace" command. */
3364
3365static void
f938677d 3366maint_info_btrace_cmd (const char *args, int from_tty)
b0627500
MM
3367{
3368 struct btrace_thread_info *btinfo;
b0627500
MM
3369 const struct btrace_config *conf;
3370
3371 if (args != NULL && *args != 0)
3372 error (_("Invalid argument."));
3373
00431a78 3374 if (inferior_ptid == null_ptid)
b0627500
MM
3375 error (_("No thread."));
3376
00431a78
PA
3377 thread_info *tp = inferior_thread ();
3378
b0627500
MM
3379 btinfo = &tp->btrace;
3380
3381 conf = btrace_conf (btinfo);
3382 if (conf == NULL)
3383 error (_("No btrace configuration."));
3384
3385 printf_unfiltered (_("Format: %s.\n"),
3386 btrace_format_string (conf->format));
3387
3388 switch (conf->format)
3389 {
3390 default:
3391 break;
3392
3393 case BTRACE_FORMAT_BTS:
46f29a9a
AB
3394 printf_unfiltered (_("Number of packets: %zu.\n"),
3395 btinfo->data.variant.bts.blocks->size ());
b0627500
MM
3396 break;
3397
3398#if defined (HAVE_LIBIPT)
3399 case BTRACE_FORMAT_PT:
3400 {
3401 struct pt_version version;
3402
3403 version = pt_library_version ();
3404 printf_unfiltered (_("Version: %u.%u.%u%s.\n"), version.major,
3405 version.minor, version.build,
3406 version.ext != NULL ? version.ext : "");
3407
3408 btrace_maint_update_pt_packets (btinfo);
554ac434
AB
3409 printf_unfiltered (_("Number of packets: %zu.\n"),
3410 ((btinfo->maint.variant.pt.packets == nullptr)
3411 ? 0 : btinfo->maint.variant.pt.packets->size ()));
b0627500
MM
3412 }
3413 break;
3414#endif /* defined (HAVE_LIBIPT) */
3415 }
3416}
3417
3418/* The "maint show btrace pt skip-pad" show value function. */
3419
3420static void
3421show_maint_btrace_pt_skip_pad (struct ui_file *file, int from_tty,
3422 struct cmd_list_element *c,
3423 const char *value)
3424{
3425 fprintf_filtered (file, _("Skip PAD packets is %s.\n"), value);
3426}
3427
3428
3429/* Initialize btrace maintenance commands. */
3430
6c265988 3431void _initialize_btrace ();
b0627500 3432void
6c265988 3433_initialize_btrace ()
b0627500
MM
3434{
3435 add_cmd ("btrace", class_maintenance, maint_info_btrace_cmd,
3436 _("Info about branch tracing data."), &maintenanceinfolist);
3437
0743fc83
TT
3438 add_basic_prefix_cmd ("btrace", class_maintenance,
3439 _("Branch tracing maintenance commands."),
3440 &maint_btrace_cmdlist, "maintenance btrace ",
3441 0, &maintenancelist);
b0627500 3442
0743fc83 3443 add_basic_prefix_cmd ("btrace", class_maintenance, _("\
b0627500 3444Set branch tracing specific variables."),
0743fc83
TT
3445 &maint_btrace_set_cmdlist, "maintenance set btrace ",
3446 0, &maintenance_set_cmdlist);
b0627500 3447
0743fc83 3448 add_basic_prefix_cmd ("pt", class_maintenance, _("\
bc504a31 3449Set Intel Processor Trace specific variables."),
0743fc83
TT
3450 &maint_btrace_pt_set_cmdlist,
3451 "maintenance set btrace pt ",
3452 0, &maint_btrace_set_cmdlist);
b0627500 3453
0743fc83 3454 add_show_prefix_cmd ("btrace", class_maintenance, _("\
b0627500 3455Show branch tracing specific variables."),
0743fc83
TT
3456 &maint_btrace_show_cmdlist, "maintenance show btrace ",
3457 0, &maintenance_show_cmdlist);
b0627500 3458
0743fc83 3459 add_show_prefix_cmd ("pt", class_maintenance, _("\
bc504a31 3460Show Intel Processor Trace specific variables."),
0743fc83
TT
3461 &maint_btrace_pt_show_cmdlist,
3462 "maintenance show btrace pt ",
3463 0, &maint_btrace_show_cmdlist);
b0627500
MM
3464
3465 add_setshow_boolean_cmd ("skip-pad", class_maintenance,
3466 &maint_btrace_pt_skip_pad, _("\
3467Set whether PAD packets should be skipped in the btrace packet history."), _("\
3468Show whether PAD packets should be skipped in the btrace packet history."),_("\
3469When enabled, PAD packets are ignored in the btrace packet history."),
3470 NULL, show_maint_btrace_pt_skip_pad,
3471 &maint_btrace_pt_set_cmdlist,
3472 &maint_btrace_pt_show_cmdlist);
3473
3474 add_cmd ("packet-history", class_maintenance, maint_btrace_packet_history_cmd,
3475 _("Print the raw branch tracing data.\n\
3476With no argument, print ten more packets after the previous ten-line print.\n\
3477With '-' as argument print ten packets before a previous ten-line print.\n\
3478One argument specifies the starting packet of a ten-line print.\n\
3479Two arguments with comma between specify starting and ending packets to \
3480print.\n\
3481Preceded with '+'/'-' the second argument specifies the distance from the \
89549d7f 3482first."),
b0627500
MM
3483 &maint_btrace_cmdlist);
3484
3485 add_cmd ("clear-packet-history", class_maintenance,
3486 maint_btrace_clear_packet_history_cmd,
3487 _("Clears the branch tracing packet history.\n\
89549d7f 3488Discards the raw branch tracing data but not the execution history data."),
b0627500
MM
3489 &maint_btrace_cmdlist);
3490
3491 add_cmd ("clear", class_maintenance, maint_btrace_clear_cmd,
3492 _("Clears the branch tracing data.\n\
3493Discards the raw branch tracing data and the execution history data.\n\
89549d7f 3494The next 'record' command will fetch the branch tracing data anew."),
b0627500
MM
3495 &maint_btrace_cmdlist);
3496
3497}