Constify add_setshow_*
[deliverable/binutils-gdb.git] / gdb / tracepoint.c
1 /* Tracing functionality for remote targets in custom GDB protocol
2
3 Copyright (C) 1997-2017 Free Software Foundation, Inc.
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
19
20 #include "defs.h"
21 #include "arch-utils.h"
22 #include "symtab.h"
23 #include "frame.h"
24 #include "gdbtypes.h"
25 #include "expression.h"
26 #include "gdbcmd.h"
27 #include "value.h"
28 #include "target.h"
29 #include "target-dcache.h"
30 #include "language.h"
31 #include "inferior.h"
32 #include "breakpoint.h"
33 #include "tracepoint.h"
34 #include "linespec.h"
35 #include "regcache.h"
36 #include "completer.h"
37 #include "block.h"
38 #include "dictionary.h"
39 #include "observer.h"
40 #include "user-regs.h"
41 #include "valprint.h"
42 #include "gdbcore.h"
43 #include "objfiles.h"
44 #include "filenames.h"
45 #include "gdbthread.h"
46 #include "stack.h"
47 #include "remote.h"
48 #include "source.h"
49 #include "ax.h"
50 #include "ax-gdb.h"
51 #include "memrange.h"
52 #include "cli/cli-utils.h"
53 #include "probe.h"
54 #include "ctf.h"
55 #include "filestuff.h"
56 #include "rsp-low.h"
57 #include "tracefile.h"
58 #include "location.h"
59 #include <algorithm>
60
61 /* readline include files */
62 #include "readline/readline.h"
63 #include "readline/history.h"
64
65 /* readline defines this. */
66 #undef savestring
67
68 #include <unistd.h>
69
70 /* Maximum length of an agent aexpression.
71 This accounts for the fact that packets are limited to 400 bytes
72 (which includes everything -- including the checksum), and assumes
73 the worst case of maximum length for each of the pieces of a
74 continuation packet.
75
76 NOTE: expressions get mem2hex'ed otherwise this would be twice as
77 large. (400 - 31)/2 == 184 */
78 #define MAX_AGENT_EXPR_LEN 184
79
80 /* A hook used to notify the UI of tracepoint operations. */
81
82 void (*deprecated_trace_find_hook) (char *arg, int from_tty);
83 void (*deprecated_trace_start_stop_hook) (int start, int from_tty);
84
85 /*
86 Tracepoint.c:
87
88 This module defines the following debugger commands:
89 trace : set a tracepoint on a function, line, or address.
90 info trace : list all debugger-defined tracepoints.
91 delete trace : delete one or more tracepoints.
92 enable trace : enable one or more tracepoints.
93 disable trace : disable one or more tracepoints.
94 actions : specify actions to be taken at a tracepoint.
95 passcount : specify a pass count for a tracepoint.
96 tstart : start a trace experiment.
97 tstop : stop a trace experiment.
98 tstatus : query the status of a trace experiment.
99 tfind : find a trace frame in the trace buffer.
100 tdump : print everything collected at the current tracepoint.
101 save-tracepoints : write tracepoint setup into a file.
102
103 This module defines the following user-visible debugger variables:
104 $trace_frame : sequence number of trace frame currently being debugged.
105 $trace_line : source line of trace frame currently being debugged.
106 $trace_file : source file of trace frame currently being debugged.
107 $tracepoint : tracepoint number of trace frame currently being debugged.
108 */
109
110
111 /* ======= Important global variables: ======= */
112
113 /* The list of all trace state variables. We don't retain pointers to
114 any of these for any reason - API is by name or number only - so it
115 works to have a vector of objects. */
116
117 typedef struct trace_state_variable tsv_s;
118 DEF_VEC_O(tsv_s);
119
120 static VEC(tsv_s) *tvariables;
121
122 /* The next integer to assign to a variable. */
123
124 static int next_tsv_number = 1;
125
126 /* Number of last traceframe collected. */
127 static int traceframe_number;
128
129 /* Tracepoint for last traceframe collected. */
130 static int tracepoint_number;
131
132 /* The traceframe info of the current traceframe. NULL if we haven't
133 yet attempted to fetch it, or if the target does not support
134 fetching this object, or if we're not inspecting a traceframe
135 presently. */
136 static traceframe_info_up current_traceframe_info;
137
138 /* Tracing command lists. */
139 static struct cmd_list_element *tfindlist;
140
141 /* List of expressions to collect by default at each tracepoint hit. */
142 char *default_collect;
143
144 static int disconnected_tracing;
145
146 /* This variable controls whether we ask the target for a linear or
147 circular trace buffer. */
148
149 static int circular_trace_buffer;
150
151 /* This variable is the requested trace buffer size, or -1 to indicate
152 that we don't care and leave it up to the target to set a size. */
153
154 static int trace_buffer_size = -1;
155
156 /* Textual notes applying to the current and/or future trace runs. */
157
158 char *trace_user = NULL;
159
160 /* Textual notes applying to the current and/or future trace runs. */
161
162 char *trace_notes = NULL;
163
164 /* Textual notes applying to the stopping of a trace. */
165
166 char *trace_stop_notes = NULL;
167
168 /* support routines */
169
170 struct collection_list;
171 static char *mem2hex (gdb_byte *, char *, int);
172
173 static struct command_line *
174 all_tracepoint_actions_and_cleanup (struct breakpoint *t);
175
176 static struct trace_status trace_status;
177
178 const char *stop_reason_names[] = {
179 "tunknown",
180 "tnotrun",
181 "tstop",
182 "tfull",
183 "tdisconnected",
184 "tpasscount",
185 "terror"
186 };
187
188 struct trace_status *
189 current_trace_status (void)
190 {
191 return &trace_status;
192 }
193
194 /* Free and clear the traceframe info cache of the current
195 traceframe. */
196
197 static void
198 clear_traceframe_info (void)
199 {
200 current_traceframe_info = NULL;
201 }
202
203 /* Set traceframe number to NUM. */
204 static void
205 set_traceframe_num (int num)
206 {
207 traceframe_number = num;
208 set_internalvar_integer (lookup_internalvar ("trace_frame"), num);
209 }
210
211 /* Set tracepoint number to NUM. */
212 static void
213 set_tracepoint_num (int num)
214 {
215 tracepoint_number = num;
216 set_internalvar_integer (lookup_internalvar ("tracepoint"), num);
217 }
218
219 /* Set externally visible debug variables for querying/printing
220 the traceframe context (line, function, file). */
221
222 static void
223 set_traceframe_context (struct frame_info *trace_frame)
224 {
225 CORE_ADDR trace_pc;
226 struct symbol *traceframe_fun;
227 symtab_and_line traceframe_sal;
228
229 /* Save as globals for internal use. */
230 if (trace_frame != NULL
231 && get_frame_pc_if_available (trace_frame, &trace_pc))
232 {
233 traceframe_sal = find_pc_line (trace_pc, 0);
234 traceframe_fun = find_pc_function (trace_pc);
235
236 /* Save linenumber as "$trace_line", a debugger variable visible to
237 users. */
238 set_internalvar_integer (lookup_internalvar ("trace_line"),
239 traceframe_sal.line);
240 }
241 else
242 {
243 traceframe_fun = NULL;
244 set_internalvar_integer (lookup_internalvar ("trace_line"), -1);
245 }
246
247 /* Save func name as "$trace_func", a debugger variable visible to
248 users. */
249 if (traceframe_fun == NULL
250 || SYMBOL_LINKAGE_NAME (traceframe_fun) == NULL)
251 clear_internalvar (lookup_internalvar ("trace_func"));
252 else
253 set_internalvar_string (lookup_internalvar ("trace_func"),
254 SYMBOL_LINKAGE_NAME (traceframe_fun));
255
256 /* Save file name as "$trace_file", a debugger variable visible to
257 users. */
258 if (traceframe_sal.symtab == NULL)
259 clear_internalvar (lookup_internalvar ("trace_file"));
260 else
261 set_internalvar_string (lookup_internalvar ("trace_file"),
262 symtab_to_filename_for_display (traceframe_sal.symtab));
263 }
264
265 /* Create a new trace state variable with the given name. */
266
267 struct trace_state_variable *
268 create_trace_state_variable (const char *name)
269 {
270 struct trace_state_variable tsv;
271
272 memset (&tsv, 0, sizeof (tsv));
273 tsv.name = xstrdup (name);
274 tsv.number = next_tsv_number++;
275 return VEC_safe_push (tsv_s, tvariables, &tsv);
276 }
277
278 /* Look for a trace state variable of the given name. */
279
280 struct trace_state_variable *
281 find_trace_state_variable (const char *name)
282 {
283 struct trace_state_variable *tsv;
284 int ix;
285
286 for (ix = 0; VEC_iterate (tsv_s, tvariables, ix, tsv); ++ix)
287 if (strcmp (name, tsv->name) == 0)
288 return tsv;
289
290 return NULL;
291 }
292
293 /* Look for a trace state variable of the given number. Return NULL if
294 not found. */
295
296 struct trace_state_variable *
297 find_trace_state_variable_by_number (int number)
298 {
299 struct trace_state_variable *tsv;
300 int ix;
301
302 for (ix = 0; VEC_iterate (tsv_s, tvariables, ix, tsv); ++ix)
303 if (tsv->number == number)
304 return tsv;
305
306 return NULL;
307 }
308
309 static void
310 delete_trace_state_variable (const char *name)
311 {
312 struct trace_state_variable *tsv;
313 int ix;
314
315 for (ix = 0; VEC_iterate (tsv_s, tvariables, ix, tsv); ++ix)
316 if (strcmp (name, tsv->name) == 0)
317 {
318 observer_notify_tsv_deleted (tsv);
319
320 xfree ((void *)tsv->name);
321 VEC_unordered_remove (tsv_s, tvariables, ix);
322
323 return;
324 }
325
326 warning (_("No trace variable named \"$%s\", not deleting"), name);
327 }
328
329 /* Throws an error if NAME is not valid syntax for a trace state
330 variable's name. */
331
332 void
333 validate_trace_state_variable_name (const char *name)
334 {
335 const char *p;
336
337 if (*name == '\0')
338 error (_("Must supply a non-empty variable name"));
339
340 /* All digits in the name is reserved for value history
341 references. */
342 for (p = name; isdigit (*p); p++)
343 ;
344 if (*p == '\0')
345 error (_("$%s is not a valid trace state variable name"), name);
346
347 for (p = name; isalnum (*p) || *p == '_'; p++)
348 ;
349 if (*p != '\0')
350 error (_("$%s is not a valid trace state variable name"), name);
351 }
352
353 /* The 'tvariable' command collects a name and optional expression to
354 evaluate into an initial value. */
355
356 static void
357 trace_variable_command (const char *args, int from_tty)
358 {
359 LONGEST initval = 0;
360 struct trace_state_variable *tsv;
361 const char *name_start, *p;
362
363 if (!args || !*args)
364 error_no_arg (_("Syntax is $NAME [ = EXPR ]"));
365
366 /* Only allow two syntaxes; "$name" and "$name=value". */
367 p = skip_spaces (args);
368
369 if (*p++ != '$')
370 error (_("Name of trace variable should start with '$'"));
371
372 name_start = p;
373 while (isalnum (*p) || *p == '_')
374 p++;
375 std::string name (name_start, p - name_start);
376
377 p = skip_spaces (p);
378 if (*p != '=' && *p != '\0')
379 error (_("Syntax must be $NAME [ = EXPR ]"));
380
381 validate_trace_state_variable_name (name.c_str ());
382
383 if (*p == '=')
384 initval = value_as_long (parse_and_eval (++p));
385
386 /* If the variable already exists, just change its initial value. */
387 tsv = find_trace_state_variable (name.c_str ());
388 if (tsv)
389 {
390 if (tsv->initial_value != initval)
391 {
392 tsv->initial_value = initval;
393 observer_notify_tsv_modified (tsv);
394 }
395 printf_filtered (_("Trace state variable $%s "
396 "now has initial value %s.\n"),
397 tsv->name, plongest (tsv->initial_value));
398 return;
399 }
400
401 /* Create a new variable. */
402 tsv = create_trace_state_variable (name.c_str ());
403 tsv->initial_value = initval;
404
405 observer_notify_tsv_created (tsv);
406
407 printf_filtered (_("Trace state variable $%s "
408 "created, with initial value %s.\n"),
409 tsv->name, plongest (tsv->initial_value));
410 }
411
412 static void
413 delete_trace_variable_command (const char *args, int from_tty)
414 {
415 if (args == NULL)
416 {
417 if (query (_("Delete all trace state variables? ")))
418 VEC_free (tsv_s, tvariables);
419 dont_repeat ();
420 observer_notify_tsv_deleted (NULL);
421 return;
422 }
423
424 gdb_argv argv (args);
425
426 for (char *arg : argv)
427 {
428 if (*arg == '$')
429 delete_trace_state_variable (arg + 1);
430 else
431 warning (_("Name \"%s\" not prefixed with '$', ignoring"), arg);
432 }
433
434 dont_repeat ();
435 }
436
437 void
438 tvariables_info_1 (void)
439 {
440 struct trace_state_variable *tsv;
441 int ix;
442 int count = 0;
443 struct ui_out *uiout = current_uiout;
444
445 if (VEC_length (tsv_s, tvariables) == 0 && !uiout->is_mi_like_p ())
446 {
447 printf_filtered (_("No trace state variables.\n"));
448 return;
449 }
450
451 /* Try to acquire values from the target. */
452 for (ix = 0; VEC_iterate (tsv_s, tvariables, ix, tsv); ++ix, ++count)
453 tsv->value_known = target_get_trace_state_variable_value (tsv->number,
454 &(tsv->value));
455
456 ui_out_emit_table table_emitter (uiout, 3, count, "trace-variables");
457 uiout->table_header (15, ui_left, "name", "Name");
458 uiout->table_header (11, ui_left, "initial", "Initial");
459 uiout->table_header (11, ui_left, "current", "Current");
460
461 uiout->table_body ();
462
463 for (ix = 0; VEC_iterate (tsv_s, tvariables, ix, tsv); ++ix)
464 {
465 const char *c;
466
467 ui_out_emit_tuple tuple_emitter (uiout, "variable");
468
469 std::string name = std::string ("$") + tsv->name;
470 uiout->field_string ("name", name.c_str ());
471 uiout->field_string ("initial", plongest (tsv->initial_value));
472
473 if (tsv->value_known)
474 c = plongest (tsv->value);
475 else if (uiout->is_mi_like_p ())
476 /* For MI, we prefer not to use magic string constants, but rather
477 omit the field completely. The difference between unknown and
478 undefined does not seem important enough to represent. */
479 c = NULL;
480 else if (current_trace_status ()->running || traceframe_number >= 0)
481 /* The value is/was defined, but we don't have it. */
482 c = "<unknown>";
483 else
484 /* It is not meaningful to ask about the value. */
485 c = "<undefined>";
486 if (c)
487 uiout->field_string ("current", c);
488 uiout->text ("\n");
489 }
490 }
491
492 /* List all the trace state variables. */
493
494 static void
495 info_tvariables_command (const char *args, int from_tty)
496 {
497 tvariables_info_1 ();
498 }
499
500 /* Stash definitions of tsvs into the given file. */
501
502 void
503 save_trace_state_variables (struct ui_file *fp)
504 {
505 struct trace_state_variable *tsv;
506 int ix;
507
508 for (ix = 0; VEC_iterate (tsv_s, tvariables, ix, tsv); ++ix)
509 {
510 fprintf_unfiltered (fp, "tvariable $%s", tsv->name);
511 if (tsv->initial_value)
512 fprintf_unfiltered (fp, " = %s", plongest (tsv->initial_value));
513 fprintf_unfiltered (fp, "\n");
514 }
515 }
516
517 /* ACTIONS functions: */
518
519 /* The three functions:
520 collect_pseudocommand,
521 while_stepping_pseudocommand, and
522 end_actions_pseudocommand
523 are placeholders for "commands" that are actually ONLY to be used
524 within a tracepoint action list. If the actual function is ever called,
525 it means that somebody issued the "command" at the top level,
526 which is always an error. */
527
528 static void
529 end_actions_pseudocommand (const char *args, int from_tty)
530 {
531 error (_("This command cannot be used at the top level."));
532 }
533
534 static void
535 while_stepping_pseudocommand (const char *args, int from_tty)
536 {
537 error (_("This command can only be used in a tracepoint actions list."));
538 }
539
540 static void
541 collect_pseudocommand (const char *args, int from_tty)
542 {
543 error (_("This command can only be used in a tracepoint actions list."));
544 }
545
546 static void
547 teval_pseudocommand (const char *args, int from_tty)
548 {
549 error (_("This command can only be used in a tracepoint actions list."));
550 }
551
552 /* Parse any collection options, such as /s for strings. */
553
554 const char *
555 decode_agent_options (const char *exp, int *trace_string)
556 {
557 struct value_print_options opts;
558
559 *trace_string = 0;
560
561 if (*exp != '/')
562 return exp;
563
564 /* Call this to borrow the print elements default for collection
565 size. */
566 get_user_print_options (&opts);
567
568 exp++;
569 if (*exp == 's')
570 {
571 if (target_supports_string_tracing ())
572 {
573 /* Allow an optional decimal number giving an explicit maximum
574 string length, defaulting it to the "print elements" value;
575 so "collect/s80 mystr" gets at most 80 bytes of string. */
576 *trace_string = opts.print_max;
577 exp++;
578 if (*exp >= '0' && *exp <= '9')
579 *trace_string = atoi (exp);
580 while (*exp >= '0' && *exp <= '9')
581 exp++;
582 }
583 else
584 error (_("Target does not support \"/s\" option for string tracing."));
585 }
586 else
587 error (_("Undefined collection format \"%c\"."), *exp);
588
589 exp = skip_spaces (exp);
590
591 return exp;
592 }
593
594 /* Enter a list of actions for a tracepoint. */
595 static void
596 actions_command (const char *args, int from_tty)
597 {
598 struct tracepoint *t;
599
600 t = get_tracepoint_by_number (&args, NULL);
601 if (t)
602 {
603 std::string tmpbuf =
604 string_printf ("Enter actions for tracepoint %d, one per line.",
605 t->number);
606
607 command_line_up l = read_command_lines (&tmpbuf[0], from_tty, 1,
608 check_tracepoint_command, t);
609 breakpoint_set_commands (t, std::move (l));
610 }
611 /* else just return */
612 }
613
614 /* Report the results of checking the agent expression, as errors or
615 internal errors. */
616
617 static void
618 report_agent_reqs_errors (struct agent_expr *aexpr)
619 {
620 /* All of the "flaws" are serious bytecode generation issues that
621 should never occur. */
622 if (aexpr->flaw != agent_flaw_none)
623 internal_error (__FILE__, __LINE__, _("expression is malformed"));
624
625 /* If analysis shows a stack underflow, GDB must have done something
626 badly wrong in its bytecode generation. */
627 if (aexpr->min_height < 0)
628 internal_error (__FILE__, __LINE__,
629 _("expression has min height < 0"));
630
631 /* Issue this error if the stack is predicted to get too deep. The
632 limit is rather arbitrary; a better scheme might be for the
633 target to report how much stack it will have available. The
634 depth roughly corresponds to parenthesization, so a limit of 20
635 amounts to 20 levels of expression nesting, which is actually
636 a pretty big hairy expression. */
637 if (aexpr->max_height > 20)
638 error (_("Expression is too complicated."));
639 }
640
641 /* worker function */
642 void
643 validate_actionline (const char *line, struct breakpoint *b)
644 {
645 struct cmd_list_element *c;
646 const char *tmp_p;
647 const char *p;
648 struct bp_location *loc;
649 struct tracepoint *t = (struct tracepoint *) b;
650
651 /* If EOF is typed, *line is NULL. */
652 if (line == NULL)
653 return;
654
655 p = skip_spaces (line);
656
657 /* Symbol lookup etc. */
658 if (*p == '\0') /* empty line: just prompt for another line. */
659 return;
660
661 if (*p == '#') /* comment line */
662 return;
663
664 c = lookup_cmd (&p, cmdlist, "", -1, 1);
665 if (c == 0)
666 error (_("`%s' is not a tracepoint action, or is ambiguous."), p);
667
668 if (cmd_cfunc_eq (c, collect_pseudocommand))
669 {
670 int trace_string = 0;
671
672 if (*p == '/')
673 p = decode_agent_options (p, &trace_string);
674
675 do
676 { /* Repeat over a comma-separated list. */
677 QUIT; /* Allow user to bail out with ^C. */
678 p = skip_spaces (p);
679
680 if (*p == '$') /* Look for special pseudo-symbols. */
681 {
682 if (0 == strncasecmp ("reg", p + 1, 3)
683 || 0 == strncasecmp ("arg", p + 1, 3)
684 || 0 == strncasecmp ("loc", p + 1, 3)
685 || 0 == strncasecmp ("_ret", p + 1, 4)
686 || 0 == strncasecmp ("_sdata", p + 1, 6))
687 {
688 p = strchr (p, ',');
689 continue;
690 }
691 /* else fall thru, treat p as an expression and parse it! */
692 }
693 tmp_p = p;
694 for (loc = t->loc; loc; loc = loc->next)
695 {
696 p = tmp_p;
697 expression_up exp = parse_exp_1 (&p, loc->address,
698 block_for_pc (loc->address), 1);
699
700 if (exp->elts[0].opcode == OP_VAR_VALUE)
701 {
702 if (SYMBOL_CLASS (exp->elts[2].symbol) == LOC_CONST)
703 {
704 error (_("constant `%s' (value %s) "
705 "will not be collected."),
706 SYMBOL_PRINT_NAME (exp->elts[2].symbol),
707 plongest (SYMBOL_VALUE (exp->elts[2].symbol)));
708 }
709 else if (SYMBOL_CLASS (exp->elts[2].symbol)
710 == LOC_OPTIMIZED_OUT)
711 {
712 error (_("`%s' is optimized away "
713 "and cannot be collected."),
714 SYMBOL_PRINT_NAME (exp->elts[2].symbol));
715 }
716 }
717
718 /* We have something to collect, make sure that the expr to
719 bytecode translator can handle it and that it's not too
720 long. */
721 agent_expr_up aexpr = gen_trace_for_expr (loc->address,
722 exp.get (),
723 trace_string);
724
725 if (aexpr->len > MAX_AGENT_EXPR_LEN)
726 error (_("Expression is too complicated."));
727
728 ax_reqs (aexpr.get ());
729
730 report_agent_reqs_errors (aexpr.get ());
731 }
732 }
733 while (p && *p++ == ',');
734 }
735
736 else if (cmd_cfunc_eq (c, teval_pseudocommand))
737 {
738 do
739 { /* Repeat over a comma-separated list. */
740 QUIT; /* Allow user to bail out with ^C. */
741 p = skip_spaces (p);
742
743 tmp_p = p;
744 for (loc = t->loc; loc; loc = loc->next)
745 {
746 p = tmp_p;
747
748 /* Only expressions are allowed for this action. */
749 expression_up exp = parse_exp_1 (&p, loc->address,
750 block_for_pc (loc->address), 1);
751
752 /* We have something to evaluate, make sure that the expr to
753 bytecode translator can handle it and that it's not too
754 long. */
755 agent_expr_up aexpr = gen_eval_for_expr (loc->address, exp.get ());
756
757 if (aexpr->len > MAX_AGENT_EXPR_LEN)
758 error (_("Expression is too complicated."));
759
760 ax_reqs (aexpr.get ());
761 report_agent_reqs_errors (aexpr.get ());
762 }
763 }
764 while (p && *p++ == ',');
765 }
766
767 else if (cmd_cfunc_eq (c, while_stepping_pseudocommand))
768 {
769 char *endp;
770
771 p = skip_spaces (p);
772 t->step_count = strtol (p, &endp, 0);
773 if (endp == p || t->step_count == 0)
774 error (_("while-stepping step count `%s' is malformed."), line);
775 p = endp;
776 }
777
778 else if (cmd_cfunc_eq (c, end_actions_pseudocommand))
779 ;
780
781 else
782 error (_("`%s' is not a supported tracepoint action."), line);
783 }
784
785 enum {
786 memrange_absolute = -1
787 };
788
789 /* MEMRANGE functions: */
790
791 /* Compare memranges for std::sort. */
792
793 static bool
794 memrange_comp (const memrange &a, const memrange &b)
795 {
796 if (a.type == b.type)
797 {
798 if (a.type == memrange_absolute)
799 return (bfd_vma) a.start < (bfd_vma) b.start;
800 else
801 return a.start < b.start;
802 }
803
804 return a.type < b.type;
805 }
806
807 /* Sort the memrange list using std::sort, and merge adjacent memranges. */
808
809 static void
810 memrange_sortmerge (std::vector<memrange> &memranges)
811 {
812 if (!memranges.empty ())
813 {
814 int a, b;
815
816 std::sort (memranges.begin (), memranges.end (), memrange_comp);
817
818 for (a = 0, b = 1; b < memranges.size (); b++)
819 {
820 /* If memrange b overlaps or is adjacent to memrange a,
821 merge them. */
822 if (memranges[a].type == memranges[b].type
823 && memranges[b].start <= memranges[a].end)
824 {
825 if (memranges[b].end > memranges[a].end)
826 memranges[a].end = memranges[b].end;
827 continue; /* next b, same a */
828 }
829 a++; /* next a */
830 if (a != b)
831 memranges[a] = memranges[b];
832 }
833 memranges.resize (a + 1);
834 }
835 }
836
837 /* Add a register to a collection list. */
838
839 void
840 collection_list::add_register (unsigned int regno)
841 {
842 if (info_verbose)
843 printf_filtered ("collect register %d\n", regno);
844 if (regno >= (8 * sizeof (m_regs_mask)))
845 error (_("Internal: register number %d too large for tracepoint"),
846 regno);
847 m_regs_mask[regno / 8] |= 1 << (regno % 8);
848 }
849
850 /* Add a memrange to a collection list. */
851
852 void
853 collection_list::add_memrange (struct gdbarch *gdbarch,
854 int type, bfd_signed_vma base,
855 unsigned long len)
856 {
857 if (info_verbose)
858 printf_filtered ("(%d,%s,%ld)\n", type, paddress (gdbarch, base), len);
859
860 /* type: memrange_absolute == memory, other n == basereg */
861 /* base: addr if memory, offset if reg relative. */
862 /* len: we actually save end (base + len) for convenience */
863 m_memranges.emplace_back (type, base, base + len);
864
865 if (type != memrange_absolute) /* Better collect the base register! */
866 add_register (type);
867 }
868
869 /* Add a symbol to a collection list. */
870
871 void
872 collection_list::collect_symbol (struct symbol *sym,
873 struct gdbarch *gdbarch,
874 long frame_regno, long frame_offset,
875 CORE_ADDR scope,
876 int trace_string)
877 {
878 unsigned long len;
879 unsigned int reg;
880 bfd_signed_vma offset;
881 int treat_as_expr = 0;
882
883 len = TYPE_LENGTH (check_typedef (SYMBOL_TYPE (sym)));
884 switch (SYMBOL_CLASS (sym))
885 {
886 default:
887 printf_filtered ("%s: don't know symbol class %d\n",
888 SYMBOL_PRINT_NAME (sym),
889 SYMBOL_CLASS (sym));
890 break;
891 case LOC_CONST:
892 printf_filtered ("constant %s (value %s) will not be collected.\n",
893 SYMBOL_PRINT_NAME (sym), plongest (SYMBOL_VALUE (sym)));
894 break;
895 case LOC_STATIC:
896 offset = SYMBOL_VALUE_ADDRESS (sym);
897 if (info_verbose)
898 {
899 printf_filtered ("LOC_STATIC %s: collect %ld bytes at %s.\n",
900 SYMBOL_PRINT_NAME (sym), len,
901 paddress (gdbarch, offset));
902 }
903 /* A struct may be a C++ class with static fields, go to general
904 expression handling. */
905 if (TYPE_CODE (SYMBOL_TYPE (sym)) == TYPE_CODE_STRUCT)
906 treat_as_expr = 1;
907 else
908 add_memrange (gdbarch, memrange_absolute, offset, len);
909 break;
910 case LOC_REGISTER:
911 reg = SYMBOL_REGISTER_OPS (sym)->register_number (sym, gdbarch);
912 if (info_verbose)
913 printf_filtered ("LOC_REG[parm] %s: ",
914 SYMBOL_PRINT_NAME (sym));
915 add_register (reg);
916 /* Check for doubles stored in two registers. */
917 /* FIXME: how about larger types stored in 3 or more regs? */
918 if (TYPE_CODE (SYMBOL_TYPE (sym)) == TYPE_CODE_FLT &&
919 len > register_size (gdbarch, reg))
920 add_register (reg + 1);
921 break;
922 case LOC_REF_ARG:
923 printf_filtered ("Sorry, don't know how to do LOC_REF_ARG yet.\n");
924 printf_filtered (" (will not collect %s)\n",
925 SYMBOL_PRINT_NAME (sym));
926 break;
927 case LOC_ARG:
928 reg = frame_regno;
929 offset = frame_offset + SYMBOL_VALUE (sym);
930 if (info_verbose)
931 {
932 printf_filtered ("LOC_LOCAL %s: Collect %ld bytes at offset %s"
933 " from frame ptr reg %d\n",
934 SYMBOL_PRINT_NAME (sym), len,
935 paddress (gdbarch, offset), reg);
936 }
937 add_memrange (gdbarch, reg, offset, len);
938 break;
939 case LOC_REGPARM_ADDR:
940 reg = SYMBOL_VALUE (sym);
941 offset = 0;
942 if (info_verbose)
943 {
944 printf_filtered ("LOC_REGPARM_ADDR %s: Collect %ld bytes at offset %s"
945 " from reg %d\n",
946 SYMBOL_PRINT_NAME (sym), len,
947 paddress (gdbarch, offset), reg);
948 }
949 add_memrange (gdbarch, reg, offset, len);
950 break;
951 case LOC_LOCAL:
952 reg = frame_regno;
953 offset = frame_offset + SYMBOL_VALUE (sym);
954 if (info_verbose)
955 {
956 printf_filtered ("LOC_LOCAL %s: Collect %ld bytes at offset %s"
957 " from frame ptr reg %d\n",
958 SYMBOL_PRINT_NAME (sym), len,
959 paddress (gdbarch, offset), reg);
960 }
961 add_memrange (gdbarch, reg, offset, len);
962 break;
963
964 case LOC_UNRESOLVED:
965 treat_as_expr = 1;
966 break;
967
968 case LOC_OPTIMIZED_OUT:
969 printf_filtered ("%s has been optimized out of existence.\n",
970 SYMBOL_PRINT_NAME (sym));
971 break;
972
973 case LOC_COMPUTED:
974 treat_as_expr = 1;
975 break;
976 }
977
978 /* Expressions are the most general case. */
979 if (treat_as_expr)
980 {
981 agent_expr_up aexpr = gen_trace_for_var (scope, gdbarch,
982 sym, trace_string);
983
984 /* It can happen that the symbol is recorded as a computed
985 location, but it's been optimized away and doesn't actually
986 have a location expression. */
987 if (!aexpr)
988 {
989 printf_filtered ("%s has been optimized out of existence.\n",
990 SYMBOL_PRINT_NAME (sym));
991 return;
992 }
993
994 ax_reqs (aexpr.get ());
995
996 report_agent_reqs_errors (aexpr.get ());
997
998 /* Take care of the registers. */
999 if (aexpr->reg_mask_len > 0)
1000 {
1001 for (int ndx1 = 0; ndx1 < aexpr->reg_mask_len; ndx1++)
1002 {
1003 QUIT; /* Allow user to bail out with ^C. */
1004 if (aexpr->reg_mask[ndx1] != 0)
1005 {
1006 /* Assume chars have 8 bits. */
1007 for (int ndx2 = 0; ndx2 < 8; ndx2++)
1008 if (aexpr->reg_mask[ndx1] & (1 << ndx2))
1009 /* It's used -- record it. */
1010 add_register (ndx1 * 8 + ndx2);
1011 }
1012 }
1013 }
1014
1015 add_aexpr (std::move (aexpr));
1016 }
1017 }
1018
1019 /* Data to be passed around in the calls to the locals and args
1020 iterators. */
1021
1022 struct add_local_symbols_data
1023 {
1024 struct collection_list *collect;
1025 struct gdbarch *gdbarch;
1026 CORE_ADDR pc;
1027 long frame_regno;
1028 long frame_offset;
1029 int count;
1030 int trace_string;
1031 };
1032
1033 /* The callback for the locals and args iterators. */
1034
1035 static void
1036 do_collect_symbol (const char *print_name,
1037 struct symbol *sym,
1038 void *cb_data)
1039 {
1040 struct add_local_symbols_data *p = (struct add_local_symbols_data *) cb_data;
1041
1042 p->collect->collect_symbol (sym, p->gdbarch, p->frame_regno,
1043 p->frame_offset, p->pc, p->trace_string);
1044 p->count++;
1045
1046 p->collect->add_wholly_collected (print_name);
1047 }
1048
1049 void
1050 collection_list::add_wholly_collected (const char *print_name)
1051 {
1052 m_wholly_collected.push_back (print_name);
1053 }
1054
1055 /* Add all locals (or args) symbols to collection list. */
1056
1057 void
1058 collection_list::add_local_symbols (struct gdbarch *gdbarch, CORE_ADDR pc,
1059 long frame_regno, long frame_offset, int type,
1060 int trace_string)
1061 {
1062 const struct block *block;
1063 struct add_local_symbols_data cb_data;
1064
1065 cb_data.collect = this;
1066 cb_data.gdbarch = gdbarch;
1067 cb_data.pc = pc;
1068 cb_data.frame_regno = frame_regno;
1069 cb_data.frame_offset = frame_offset;
1070 cb_data.count = 0;
1071 cb_data.trace_string = trace_string;
1072
1073 if (type == 'L')
1074 {
1075 block = block_for_pc (pc);
1076 if (block == NULL)
1077 {
1078 warning (_("Can't collect locals; "
1079 "no symbol table info available.\n"));
1080 return;
1081 }
1082
1083 iterate_over_block_local_vars (block, do_collect_symbol, &cb_data);
1084 if (cb_data.count == 0)
1085 warning (_("No locals found in scope."));
1086 }
1087 else
1088 {
1089 pc = get_pc_function_start (pc);
1090 block = block_for_pc (pc);
1091 if (block == NULL)
1092 {
1093 warning (_("Can't collect args; no symbol table info available."));
1094 return;
1095 }
1096
1097 iterate_over_block_arg_vars (block, do_collect_symbol, &cb_data);
1098 if (cb_data.count == 0)
1099 warning (_("No args found in scope."));
1100 }
1101 }
1102
1103 void
1104 collection_list::add_static_trace_data ()
1105 {
1106 if (info_verbose)
1107 printf_filtered ("collect static trace data\n");
1108 m_strace_data = true;
1109 }
1110
1111 collection_list::collection_list ()
1112 : m_regs_mask (),
1113 m_strace_data (false)
1114 {
1115 m_memranges.reserve (128);
1116 m_aexprs.reserve (128);
1117 }
1118
1119 /* Reduce a collection list to string form (for gdb protocol). */
1120
1121 char **
1122 collection_list::stringify ()
1123 {
1124 char temp_buf[2048];
1125 int count;
1126 int ndx = 0;
1127 char *(*str_list)[];
1128 char *end;
1129 long i;
1130
1131 count = 1 + 1 + m_memranges.size () + m_aexprs.size () + 1;
1132 str_list = (char *(*)[]) xmalloc (count * sizeof (char *));
1133
1134 if (m_strace_data)
1135 {
1136 if (info_verbose)
1137 printf_filtered ("\nCollecting static trace data\n");
1138 end = temp_buf;
1139 *end++ = 'L';
1140 (*str_list)[ndx] = savestring (temp_buf, end - temp_buf);
1141 ndx++;
1142 }
1143
1144 for (i = sizeof (m_regs_mask) - 1; i > 0; i--)
1145 if (m_regs_mask[i] != 0) /* Skip leading zeroes in regs_mask. */
1146 break;
1147 if (m_regs_mask[i] != 0) /* Prepare to send regs_mask to the stub. */
1148 {
1149 if (info_verbose)
1150 printf_filtered ("\nCollecting registers (mask): 0x");
1151 end = temp_buf;
1152 *end++ = 'R';
1153 for (; i >= 0; i--)
1154 {
1155 QUIT; /* Allow user to bail out with ^C. */
1156 if (info_verbose)
1157 printf_filtered ("%02X", m_regs_mask[i]);
1158 sprintf (end, "%02X", m_regs_mask[i]);
1159 end += 2;
1160 }
1161 (*str_list)[ndx] = xstrdup (temp_buf);
1162 ndx++;
1163 }
1164 if (info_verbose)
1165 printf_filtered ("\n");
1166 if (!m_memranges.empty () && info_verbose)
1167 printf_filtered ("Collecting memranges: \n");
1168 for (i = 0, count = 0, end = temp_buf; i < m_memranges.size (); i++)
1169 {
1170 QUIT; /* Allow user to bail out with ^C. */
1171 if (info_verbose)
1172 {
1173 printf_filtered ("(%d, %s, %ld)\n",
1174 m_memranges[i].type,
1175 paddress (target_gdbarch (),
1176 m_memranges[i].start),
1177 (long) (m_memranges[i].end
1178 - m_memranges[i].start));
1179 }
1180 if (count + 27 > MAX_AGENT_EXPR_LEN)
1181 {
1182 (*str_list)[ndx] = savestring (temp_buf, count);
1183 ndx++;
1184 count = 0;
1185 end = temp_buf;
1186 }
1187
1188 {
1189 bfd_signed_vma length
1190 = m_memranges[i].end - m_memranges[i].start;
1191
1192 /* The "%X" conversion specifier expects an unsigned argument,
1193 so passing -1 (memrange_absolute) to it directly gives you
1194 "FFFFFFFF" (or more, depending on sizeof (unsigned)).
1195 Special-case it. */
1196 if (m_memranges[i].type == memrange_absolute)
1197 sprintf (end, "M-1,%s,%lX", phex_nz (m_memranges[i].start, 0),
1198 (long) length);
1199 else
1200 sprintf (end, "M%X,%s,%lX", m_memranges[i].type,
1201 phex_nz (m_memranges[i].start, 0), (long) length);
1202 }
1203
1204 count += strlen (end);
1205 end = temp_buf + count;
1206 }
1207
1208 for (i = 0; i < m_aexprs.size (); i++)
1209 {
1210 QUIT; /* Allow user to bail out with ^C. */
1211 if ((count + 10 + 2 * m_aexprs[i]->len) > MAX_AGENT_EXPR_LEN)
1212 {
1213 (*str_list)[ndx] = savestring (temp_buf, count);
1214 ndx++;
1215 count = 0;
1216 end = temp_buf;
1217 }
1218 sprintf (end, "X%08X,", m_aexprs[i]->len);
1219 end += 10; /* 'X' + 8 hex digits + ',' */
1220 count += 10;
1221
1222 end = mem2hex (m_aexprs[i]->buf, end, m_aexprs[i]->len);
1223 count += 2 * m_aexprs[i]->len;
1224 }
1225
1226 if (count != 0)
1227 {
1228 (*str_list)[ndx] = savestring (temp_buf, count);
1229 ndx++;
1230 count = 0;
1231 end = temp_buf;
1232 }
1233 (*str_list)[ndx] = NULL;
1234
1235 if (ndx == 0)
1236 {
1237 xfree (str_list);
1238 return NULL;
1239 }
1240 else
1241 return *str_list;
1242 }
1243
1244 /* Add the printed expression EXP to *LIST. */
1245
1246 void
1247 collection_list::append_exp (struct expression *exp)
1248 {
1249 string_file tmp_stream;
1250
1251 print_expression (exp, &tmp_stream);
1252
1253 m_computed.push_back (std::move (tmp_stream.string ()));
1254 }
1255
1256 void
1257 collection_list::finish ()
1258 {
1259 memrange_sortmerge (m_memranges);
1260 }
1261
1262 static void
1263 encode_actions_1 (struct command_line *action,
1264 struct bp_location *tloc,
1265 int frame_reg,
1266 LONGEST frame_offset,
1267 struct collection_list *collect,
1268 struct collection_list *stepping_list)
1269 {
1270 const char *action_exp;
1271 int i;
1272 struct value *tempval;
1273 struct cmd_list_element *cmd;
1274
1275 for (; action; action = action->next)
1276 {
1277 QUIT; /* Allow user to bail out with ^C. */
1278 action_exp = action->line;
1279 action_exp = skip_spaces (action_exp);
1280
1281 cmd = lookup_cmd (&action_exp, cmdlist, "", -1, 1);
1282 if (cmd == 0)
1283 error (_("Bad action list item: %s"), action_exp);
1284
1285 if (cmd_cfunc_eq (cmd, collect_pseudocommand))
1286 {
1287 int trace_string = 0;
1288
1289 if (*action_exp == '/')
1290 action_exp = decode_agent_options (action_exp, &trace_string);
1291
1292 do
1293 { /* Repeat over a comma-separated list. */
1294 QUIT; /* Allow user to bail out with ^C. */
1295 action_exp = skip_spaces (action_exp);
1296
1297 if (0 == strncasecmp ("$reg", action_exp, 4))
1298 {
1299 for (i = 0; i < gdbarch_num_regs (target_gdbarch ()); i++)
1300 collect->add_register (i);
1301 action_exp = strchr (action_exp, ','); /* more? */
1302 }
1303 else if (0 == strncasecmp ("$arg", action_exp, 4))
1304 {
1305 collect->add_local_symbols (target_gdbarch (),
1306 tloc->address,
1307 frame_reg,
1308 frame_offset,
1309 'A',
1310 trace_string);
1311 action_exp = strchr (action_exp, ','); /* more? */
1312 }
1313 else if (0 == strncasecmp ("$loc", action_exp, 4))
1314 {
1315 collect->add_local_symbols (target_gdbarch (),
1316 tloc->address,
1317 frame_reg,
1318 frame_offset,
1319 'L',
1320 trace_string);
1321 action_exp = strchr (action_exp, ','); /* more? */
1322 }
1323 else if (0 == strncasecmp ("$_ret", action_exp, 5))
1324 {
1325 agent_expr_up aexpr
1326 = gen_trace_for_return_address (tloc->address,
1327 target_gdbarch (),
1328 trace_string);
1329
1330 ax_reqs (aexpr.get ());
1331 report_agent_reqs_errors (aexpr.get ());
1332
1333 /* take care of the registers */
1334 if (aexpr->reg_mask_len > 0)
1335 {
1336 for (int ndx1 = 0; ndx1 < aexpr->reg_mask_len; ndx1++)
1337 {
1338 QUIT; /* allow user to bail out with ^C */
1339 if (aexpr->reg_mask[ndx1] != 0)
1340 {
1341 /* assume chars have 8 bits */
1342 for (int ndx2 = 0; ndx2 < 8; ndx2++)
1343 if (aexpr->reg_mask[ndx1] & (1 << ndx2))
1344 {
1345 /* It's used -- record it. */
1346 collect->add_register (ndx1 * 8 + ndx2);
1347 }
1348 }
1349 }
1350 }
1351
1352 collect->add_aexpr (std::move (aexpr));
1353 action_exp = strchr (action_exp, ','); /* more? */
1354 }
1355 else if (0 == strncasecmp ("$_sdata", action_exp, 7))
1356 {
1357 collect->add_static_trace_data ();
1358 action_exp = strchr (action_exp, ','); /* more? */
1359 }
1360 else
1361 {
1362 unsigned long addr;
1363
1364 expression_up exp = parse_exp_1 (&action_exp, tloc->address,
1365 block_for_pc (tloc->address),
1366 1);
1367
1368 switch (exp->elts[0].opcode)
1369 {
1370 case OP_REGISTER:
1371 {
1372 const char *name = &exp->elts[2].string;
1373
1374 i = user_reg_map_name_to_regnum (target_gdbarch (),
1375 name, strlen (name));
1376 if (i == -1)
1377 internal_error (__FILE__, __LINE__,
1378 _("Register $%s not available"),
1379 name);
1380 if (info_verbose)
1381 printf_filtered ("OP_REGISTER: ");
1382 collect->add_register (i);
1383 break;
1384 }
1385
1386 case UNOP_MEMVAL:
1387 /* Safe because we know it's a simple expression. */
1388 tempval = evaluate_expression (exp.get ());
1389 addr = value_address (tempval);
1390 /* Initialize the TYPE_LENGTH if it is a typedef. */
1391 check_typedef (exp->elts[1].type);
1392 collect->add_memrange (target_gdbarch (),
1393 memrange_absolute, addr,
1394 TYPE_LENGTH (exp->elts[1].type));
1395 collect->append_exp (exp.get ());
1396 break;
1397
1398 case OP_VAR_VALUE:
1399 {
1400 struct symbol *sym = exp->elts[2].symbol;
1401 char_ptr name = (char_ptr) SYMBOL_NATURAL_NAME (sym);
1402
1403 collect->collect_symbol (exp->elts[2].symbol,
1404 target_gdbarch (),
1405 frame_reg,
1406 frame_offset,
1407 tloc->address,
1408 trace_string);
1409 collect->add_wholly_collected (name);
1410 }
1411 break;
1412
1413 default: /* Full-fledged expression. */
1414 agent_expr_up aexpr = gen_trace_for_expr (tloc->address,
1415 exp.get (),
1416 trace_string);
1417
1418 ax_reqs (aexpr.get ());
1419
1420 report_agent_reqs_errors (aexpr.get ());
1421
1422 /* Take care of the registers. */
1423 if (aexpr->reg_mask_len > 0)
1424 {
1425 for (int ndx1 = 0; ndx1 < aexpr->reg_mask_len; ndx1++)
1426 {
1427 QUIT; /* Allow user to bail out with ^C. */
1428 if (aexpr->reg_mask[ndx1] != 0)
1429 {
1430 /* Assume chars have 8 bits. */
1431 for (int ndx2 = 0; ndx2 < 8; ndx2++)
1432 if (aexpr->reg_mask[ndx1] & (1 << ndx2))
1433 {
1434 /* It's used -- record it. */
1435 collect->add_register (ndx1 * 8 + ndx2);
1436 }
1437 }
1438 }
1439 }
1440
1441 collect->add_aexpr (std::move (aexpr));
1442 collect->append_exp (exp.get ());
1443 break;
1444 } /* switch */
1445 } /* do */
1446 }
1447 while (action_exp && *action_exp++ == ',');
1448 } /* if */
1449 else if (cmd_cfunc_eq (cmd, teval_pseudocommand))
1450 {
1451 do
1452 { /* Repeat over a comma-separated list. */
1453 QUIT; /* Allow user to bail out with ^C. */
1454 action_exp = skip_spaces (action_exp);
1455
1456 {
1457 expression_up exp = parse_exp_1 (&action_exp, tloc->address,
1458 block_for_pc (tloc->address),
1459 1);
1460
1461 agent_expr_up aexpr = gen_eval_for_expr (tloc->address,
1462 exp.get ());
1463
1464 ax_reqs (aexpr.get ());
1465 report_agent_reqs_errors (aexpr.get ());
1466
1467 /* Even though we're not officially collecting, add
1468 to the collect list anyway. */
1469 collect->add_aexpr (std::move (aexpr));
1470 } /* do */
1471 }
1472 while (action_exp && *action_exp++ == ',');
1473 } /* if */
1474 else if (cmd_cfunc_eq (cmd, while_stepping_pseudocommand))
1475 {
1476 /* We check against nested while-stepping when setting
1477 breakpoint action, so no way to run into nested
1478 here. */
1479 gdb_assert (stepping_list);
1480
1481 encode_actions_1 (action->body_list[0], tloc, frame_reg,
1482 frame_offset, stepping_list, NULL);
1483 }
1484 else
1485 error (_("Invalid tracepoint command '%s'"), action->line);
1486 } /* for */
1487 }
1488
1489 /* Encode actions of tracepoint TLOC->owner and fill TRACEPOINT_LIST
1490 and STEPPING_LIST. */
1491
1492 void
1493 encode_actions (struct bp_location *tloc,
1494 struct collection_list *tracepoint_list,
1495 struct collection_list *stepping_list)
1496 {
1497 struct command_line *actions;
1498 int frame_reg;
1499 LONGEST frame_offset;
1500
1501 gdbarch_virtual_frame_pointer (tloc->gdbarch,
1502 tloc->address, &frame_reg, &frame_offset);
1503
1504 actions = all_tracepoint_actions_and_cleanup (tloc->owner);
1505
1506 encode_actions_1 (actions, tloc, frame_reg, frame_offset,
1507 tracepoint_list, stepping_list);
1508
1509 tracepoint_list->finish ();
1510 stepping_list->finish ();
1511 }
1512
1513 /* Render all actions into gdb protocol. */
1514
1515 void
1516 encode_actions_rsp (struct bp_location *tloc, char ***tdp_actions,
1517 char ***stepping_actions)
1518 {
1519 struct collection_list tracepoint_list, stepping_list;
1520
1521 *tdp_actions = NULL;
1522 *stepping_actions = NULL;
1523
1524 encode_actions (tloc, &tracepoint_list, &stepping_list);
1525
1526 *tdp_actions = tracepoint_list.stringify ();
1527 *stepping_actions = stepping_list.stringify ();
1528 }
1529
1530 void
1531 collection_list::add_aexpr (agent_expr_up aexpr)
1532 {
1533 m_aexprs.push_back (std::move (aexpr));
1534 }
1535
1536 static void
1537 process_tracepoint_on_disconnect (void)
1538 {
1539 VEC(breakpoint_p) *tp_vec = NULL;
1540 int ix;
1541 struct breakpoint *b;
1542 int has_pending_p = 0;
1543
1544 /* Check whether we still have pending tracepoint. If we have, warn the
1545 user that pending tracepoint will no longer work. */
1546 tp_vec = all_tracepoints ();
1547 for (ix = 0; VEC_iterate (breakpoint_p, tp_vec, ix, b); ix++)
1548 {
1549 if (b->loc == NULL)
1550 {
1551 has_pending_p = 1;
1552 break;
1553 }
1554 else
1555 {
1556 struct bp_location *loc1;
1557
1558 for (loc1 = b->loc; loc1; loc1 = loc1->next)
1559 {
1560 if (loc1->shlib_disabled)
1561 {
1562 has_pending_p = 1;
1563 break;
1564 }
1565 }
1566
1567 if (has_pending_p)
1568 break;
1569 }
1570 }
1571 VEC_free (breakpoint_p, tp_vec);
1572
1573 if (has_pending_p)
1574 warning (_("Pending tracepoints will not be resolved while"
1575 " GDB is disconnected\n"));
1576 }
1577
1578 /* Reset local state of tracing. */
1579
1580 void
1581 trace_reset_local_state (void)
1582 {
1583 set_traceframe_num (-1);
1584 set_tracepoint_num (-1);
1585 set_traceframe_context (NULL);
1586 clear_traceframe_info ();
1587 }
1588
1589 void
1590 start_tracing (const char *notes)
1591 {
1592 VEC(breakpoint_p) *tp_vec = NULL;
1593 int ix;
1594 struct breakpoint *b;
1595 struct trace_state_variable *tsv;
1596 int any_enabled = 0, num_to_download = 0;
1597 int ret;
1598
1599 tp_vec = all_tracepoints ();
1600
1601 /* No point in tracing without any tracepoints... */
1602 if (VEC_length (breakpoint_p, tp_vec) == 0)
1603 {
1604 VEC_free (breakpoint_p, tp_vec);
1605 error (_("No tracepoints defined, not starting trace"));
1606 }
1607
1608 for (ix = 0; VEC_iterate (breakpoint_p, tp_vec, ix, b); ix++)
1609 {
1610 if (b->enable_state == bp_enabled)
1611 any_enabled = 1;
1612
1613 if ((b->type == bp_fast_tracepoint
1614 ? may_insert_fast_tracepoints
1615 : may_insert_tracepoints))
1616 ++num_to_download;
1617 else
1618 warning (_("May not insert %stracepoints, skipping tracepoint %d"),
1619 (b->type == bp_fast_tracepoint ? "fast " : ""), b->number);
1620 }
1621
1622 if (!any_enabled)
1623 {
1624 if (target_supports_enable_disable_tracepoint ())
1625 warning (_("No tracepoints enabled"));
1626 else
1627 {
1628 /* No point in tracing with only disabled tracepoints that
1629 cannot be re-enabled. */
1630 VEC_free (breakpoint_p, tp_vec);
1631 error (_("No tracepoints enabled, not starting trace"));
1632 }
1633 }
1634
1635 if (num_to_download <= 0)
1636 {
1637 VEC_free (breakpoint_p, tp_vec);
1638 error (_("No tracepoints that may be downloaded, not starting trace"));
1639 }
1640
1641 target_trace_init ();
1642
1643 for (ix = 0; VEC_iterate (breakpoint_p, tp_vec, ix, b); ix++)
1644 {
1645 struct tracepoint *t = (struct tracepoint *) b;
1646 struct bp_location *loc;
1647 int bp_location_downloaded = 0;
1648
1649 /* Clear `inserted' flag. */
1650 for (loc = b->loc; loc; loc = loc->next)
1651 loc->inserted = 0;
1652
1653 if ((b->type == bp_fast_tracepoint
1654 ? !may_insert_fast_tracepoints
1655 : !may_insert_tracepoints))
1656 continue;
1657
1658 t->number_on_target = 0;
1659
1660 for (loc = b->loc; loc; loc = loc->next)
1661 {
1662 /* Since tracepoint locations are never duplicated, `inserted'
1663 flag should be zero. */
1664 gdb_assert (!loc->inserted);
1665
1666 target_download_tracepoint (loc);
1667
1668 loc->inserted = 1;
1669 bp_location_downloaded = 1;
1670 }
1671
1672 t->number_on_target = b->number;
1673
1674 for (loc = b->loc; loc; loc = loc->next)
1675 if (loc->probe.probe != NULL
1676 && loc->probe.probe->pops->set_semaphore != NULL)
1677 loc->probe.probe->pops->set_semaphore (loc->probe.probe,
1678 loc->probe.objfile,
1679 loc->gdbarch);
1680
1681 if (bp_location_downloaded)
1682 observer_notify_breakpoint_modified (b);
1683 }
1684 VEC_free (breakpoint_p, tp_vec);
1685
1686 /* Send down all the trace state variables too. */
1687 for (ix = 0; VEC_iterate (tsv_s, tvariables, ix, tsv); ++ix)
1688 {
1689 target_download_trace_state_variable (tsv);
1690 }
1691
1692 /* Tell target to treat text-like sections as transparent. */
1693 target_trace_set_readonly_regions ();
1694 /* Set some mode flags. */
1695 target_set_disconnected_tracing (disconnected_tracing);
1696 target_set_circular_trace_buffer (circular_trace_buffer);
1697 target_set_trace_buffer_size (trace_buffer_size);
1698
1699 if (!notes)
1700 notes = trace_notes;
1701 ret = target_set_trace_notes (trace_user, notes, NULL);
1702
1703 if (!ret && (trace_user || notes))
1704 warning (_("Target does not support trace user/notes, info ignored"));
1705
1706 /* Now insert traps and begin collecting data. */
1707 target_trace_start ();
1708
1709 /* Reset our local state. */
1710 trace_reset_local_state ();
1711 current_trace_status()->running = 1;
1712 }
1713
1714 /* The tstart command requests the target to start a new trace run.
1715 The command passes any arguments it has to the target verbatim, as
1716 an optional "trace note". This is useful as for instance a warning
1717 to other users if the trace runs disconnected, and you don't want
1718 anybody else messing with the target. */
1719
1720 static void
1721 tstart_command (const char *args, int from_tty)
1722 {
1723 dont_repeat (); /* Like "run", dangerous to repeat accidentally. */
1724
1725 if (current_trace_status ()->running)
1726 {
1727 if (from_tty
1728 && !query (_("A trace is running already. Start a new run? ")))
1729 error (_("New trace run not started."));
1730 }
1731
1732 start_tracing (args);
1733 }
1734
1735 /* The tstop command stops the tracing run. The command passes any
1736 supplied arguments to the target verbatim as a "stop note"; if the
1737 target supports trace notes, then it will be reported back as part
1738 of the trace run's status. */
1739
1740 static void
1741 tstop_command (const char *args, int from_tty)
1742 {
1743 if (!current_trace_status ()->running)
1744 error (_("Trace is not running."));
1745
1746 stop_tracing (args);
1747 }
1748
1749 void
1750 stop_tracing (const char *note)
1751 {
1752 int ret;
1753 VEC(breakpoint_p) *tp_vec = NULL;
1754 int ix;
1755 struct breakpoint *t;
1756
1757 target_trace_stop ();
1758
1759 tp_vec = all_tracepoints ();
1760 for (ix = 0; VEC_iterate (breakpoint_p, tp_vec, ix, t); ix++)
1761 {
1762 struct bp_location *loc;
1763
1764 if ((t->type == bp_fast_tracepoint
1765 ? !may_insert_fast_tracepoints
1766 : !may_insert_tracepoints))
1767 continue;
1768
1769 for (loc = t->loc; loc; loc = loc->next)
1770 {
1771 /* GDB can be totally absent in some disconnected trace scenarios,
1772 but we don't really care if this semaphore goes out of sync.
1773 That's why we are decrementing it here, but not taking care
1774 in other places. */
1775 if (loc->probe.probe != NULL
1776 && loc->probe.probe->pops->clear_semaphore != NULL)
1777 loc->probe.probe->pops->clear_semaphore (loc->probe.probe,
1778 loc->probe.objfile,
1779 loc->gdbarch);
1780 }
1781 }
1782
1783 VEC_free (breakpoint_p, tp_vec);
1784
1785 if (!note)
1786 note = trace_stop_notes;
1787 ret = target_set_trace_notes (NULL, NULL, note);
1788
1789 if (!ret && note)
1790 warning (_("Target does not support trace notes, note ignored"));
1791
1792 /* Should change in response to reply? */
1793 current_trace_status ()->running = 0;
1794 }
1795
1796 /* tstatus command */
1797 static void
1798 tstatus_command (const char *args, int from_tty)
1799 {
1800 struct trace_status *ts = current_trace_status ();
1801 int status, ix;
1802 VEC(breakpoint_p) *tp_vec = NULL;
1803 struct breakpoint *t;
1804
1805 status = target_get_trace_status (ts);
1806
1807 if (status == -1)
1808 {
1809 if (ts->filename != NULL)
1810 printf_filtered (_("Using a trace file.\n"));
1811 else
1812 {
1813 printf_filtered (_("Trace can not be run on this target.\n"));
1814 return;
1815 }
1816 }
1817
1818 if (!ts->running_known)
1819 {
1820 printf_filtered (_("Run/stop status is unknown.\n"));
1821 }
1822 else if (ts->running)
1823 {
1824 printf_filtered (_("Trace is running on the target.\n"));
1825 }
1826 else
1827 {
1828 switch (ts->stop_reason)
1829 {
1830 case trace_never_run:
1831 printf_filtered (_("No trace has been run on the target.\n"));
1832 break;
1833 case trace_stop_command:
1834 if (ts->stop_desc)
1835 printf_filtered (_("Trace stopped by a tstop command (%s).\n"),
1836 ts->stop_desc);
1837 else
1838 printf_filtered (_("Trace stopped by a tstop command.\n"));
1839 break;
1840 case trace_buffer_full:
1841 printf_filtered (_("Trace stopped because the buffer was full.\n"));
1842 break;
1843 case trace_disconnected:
1844 printf_filtered (_("Trace stopped because of disconnection.\n"));
1845 break;
1846 case tracepoint_passcount:
1847 printf_filtered (_("Trace stopped by tracepoint %d.\n"),
1848 ts->stopping_tracepoint);
1849 break;
1850 case tracepoint_error:
1851 if (ts->stopping_tracepoint)
1852 printf_filtered (_("Trace stopped by an "
1853 "error (%s, tracepoint %d).\n"),
1854 ts->stop_desc, ts->stopping_tracepoint);
1855 else
1856 printf_filtered (_("Trace stopped by an error (%s).\n"),
1857 ts->stop_desc);
1858 break;
1859 case trace_stop_reason_unknown:
1860 printf_filtered (_("Trace stopped for an unknown reason.\n"));
1861 break;
1862 default:
1863 printf_filtered (_("Trace stopped for some other reason (%d).\n"),
1864 ts->stop_reason);
1865 break;
1866 }
1867 }
1868
1869 if (ts->traceframes_created >= 0
1870 && ts->traceframe_count != ts->traceframes_created)
1871 {
1872 printf_filtered (_("Buffer contains %d trace "
1873 "frames (of %d created total).\n"),
1874 ts->traceframe_count, ts->traceframes_created);
1875 }
1876 else if (ts->traceframe_count >= 0)
1877 {
1878 printf_filtered (_("Collected %d trace frames.\n"),
1879 ts->traceframe_count);
1880 }
1881
1882 if (ts->buffer_free >= 0)
1883 {
1884 if (ts->buffer_size >= 0)
1885 {
1886 printf_filtered (_("Trace buffer has %d bytes of %d bytes free"),
1887 ts->buffer_free, ts->buffer_size);
1888 if (ts->buffer_size > 0)
1889 printf_filtered (_(" (%d%% full)"),
1890 ((int) ((((long long) (ts->buffer_size
1891 - ts->buffer_free)) * 100)
1892 / ts->buffer_size)));
1893 printf_filtered (_(".\n"));
1894 }
1895 else
1896 printf_filtered (_("Trace buffer has %d bytes free.\n"),
1897 ts->buffer_free);
1898 }
1899
1900 if (ts->disconnected_tracing)
1901 printf_filtered (_("Trace will continue if GDB disconnects.\n"));
1902 else
1903 printf_filtered (_("Trace will stop if GDB disconnects.\n"));
1904
1905 if (ts->circular_buffer)
1906 printf_filtered (_("Trace buffer is circular.\n"));
1907
1908 if (ts->user_name && strlen (ts->user_name) > 0)
1909 printf_filtered (_("Trace user is %s.\n"), ts->user_name);
1910
1911 if (ts->notes && strlen (ts->notes) > 0)
1912 printf_filtered (_("Trace notes: %s.\n"), ts->notes);
1913
1914 /* Now report on what we're doing with tfind. */
1915 if (traceframe_number >= 0)
1916 printf_filtered (_("Looking at trace frame %d, tracepoint %d.\n"),
1917 traceframe_number, tracepoint_number);
1918 else
1919 printf_filtered (_("Not looking at any trace frame.\n"));
1920
1921 /* Report start/stop times if supplied. */
1922 if (ts->start_time)
1923 {
1924 if (ts->stop_time)
1925 {
1926 LONGEST run_time = ts->stop_time - ts->start_time;
1927
1928 /* Reporting a run time is more readable than two long numbers. */
1929 printf_filtered (_("Trace started at %ld.%06ld secs, stopped %ld.%06ld secs later.\n"),
1930 (long int) (ts->start_time / 1000000),
1931 (long int) (ts->start_time % 1000000),
1932 (long int) (run_time / 1000000),
1933 (long int) (run_time % 1000000));
1934 }
1935 else
1936 printf_filtered (_("Trace started at %ld.%06ld secs.\n"),
1937 (long int) (ts->start_time / 1000000),
1938 (long int) (ts->start_time % 1000000));
1939 }
1940 else if (ts->stop_time)
1941 printf_filtered (_("Trace stopped at %ld.%06ld secs.\n"),
1942 (long int) (ts->stop_time / 1000000),
1943 (long int) (ts->stop_time % 1000000));
1944
1945 /* Now report any per-tracepoint status available. */
1946 tp_vec = all_tracepoints ();
1947
1948 for (ix = 0; VEC_iterate (breakpoint_p, tp_vec, ix, t); ix++)
1949 target_get_tracepoint_status (t, NULL);
1950
1951 VEC_free (breakpoint_p, tp_vec);
1952 }
1953
1954 /* Report the trace status to uiout, in a way suitable for MI, and not
1955 suitable for CLI. If ON_STOP is true, suppress a few fields that
1956 are not meaningful in the -trace-stop response.
1957
1958 The implementation is essentially parallel to trace_status_command, but
1959 merging them will result in unreadable code. */
1960 void
1961 trace_status_mi (int on_stop)
1962 {
1963 struct ui_out *uiout = current_uiout;
1964 struct trace_status *ts = current_trace_status ();
1965 int status;
1966
1967 status = target_get_trace_status (ts);
1968
1969 if (status == -1 && ts->filename == NULL)
1970 {
1971 uiout->field_string ("supported", "0");
1972 return;
1973 }
1974
1975 if (ts->filename != NULL)
1976 uiout->field_string ("supported", "file");
1977 else if (!on_stop)
1978 uiout->field_string ("supported", "1");
1979
1980 if (ts->filename != NULL)
1981 uiout->field_string ("trace-file", ts->filename);
1982
1983 gdb_assert (ts->running_known);
1984
1985 if (ts->running)
1986 {
1987 uiout->field_string ("running", "1");
1988
1989 /* Unlike CLI, do not show the state of 'disconnected-tracing' variable.
1990 Given that the frontend gets the status either on -trace-stop, or from
1991 -trace-status after re-connection, it does not seem like this
1992 information is necessary for anything. It is not necessary for either
1993 figuring the vital state of the target nor for navigation of trace
1994 frames. If the frontend wants to show the current state is some
1995 configure dialog, it can request the value when such dialog is
1996 invoked by the user. */
1997 }
1998 else
1999 {
2000 const char *stop_reason = NULL;
2001 int stopping_tracepoint = -1;
2002
2003 if (!on_stop)
2004 uiout->field_string ("running", "0");
2005
2006 if (ts->stop_reason != trace_stop_reason_unknown)
2007 {
2008 switch (ts->stop_reason)
2009 {
2010 case trace_stop_command:
2011 stop_reason = "request";
2012 break;
2013 case trace_buffer_full:
2014 stop_reason = "overflow";
2015 break;
2016 case trace_disconnected:
2017 stop_reason = "disconnection";
2018 break;
2019 case tracepoint_passcount:
2020 stop_reason = "passcount";
2021 stopping_tracepoint = ts->stopping_tracepoint;
2022 break;
2023 case tracepoint_error:
2024 stop_reason = "error";
2025 stopping_tracepoint = ts->stopping_tracepoint;
2026 break;
2027 }
2028
2029 if (stop_reason)
2030 {
2031 uiout->field_string ("stop-reason", stop_reason);
2032 if (stopping_tracepoint != -1)
2033 uiout->field_int ("stopping-tracepoint",
2034 stopping_tracepoint);
2035 if (ts->stop_reason == tracepoint_error)
2036 uiout->field_string ("error-description",
2037 ts->stop_desc);
2038 }
2039 }
2040 }
2041
2042 if (ts->traceframe_count != -1)
2043 uiout->field_int ("frames", ts->traceframe_count);
2044 if (ts->traceframes_created != -1)
2045 uiout->field_int ("frames-created", ts->traceframes_created);
2046 if (ts->buffer_size != -1)
2047 uiout->field_int ("buffer-size", ts->buffer_size);
2048 if (ts->buffer_free != -1)
2049 uiout->field_int ("buffer-free", ts->buffer_free);
2050
2051 uiout->field_int ("disconnected", ts->disconnected_tracing);
2052 uiout->field_int ("circular", ts->circular_buffer);
2053
2054 uiout->field_string ("user-name", ts->user_name);
2055 uiout->field_string ("notes", ts->notes);
2056
2057 {
2058 char buf[100];
2059
2060 xsnprintf (buf, sizeof buf, "%ld.%06ld",
2061 (long int) (ts->start_time / 1000000),
2062 (long int) (ts->start_time % 1000000));
2063 uiout->field_string ("start-time", buf);
2064 xsnprintf (buf, sizeof buf, "%ld.%06ld",
2065 (long int) (ts->stop_time / 1000000),
2066 (long int) (ts->stop_time % 1000000));
2067 uiout->field_string ("stop-time", buf);
2068 }
2069 }
2070
2071 /* Check if a trace run is ongoing. If so, and FROM_TTY, query the
2072 user if she really wants to detach. */
2073
2074 void
2075 query_if_trace_running (int from_tty)
2076 {
2077 if (!from_tty)
2078 return;
2079
2080 /* It can happen that the target that was tracing went away on its
2081 own, and we didn't notice. Get a status update, and if the
2082 current target doesn't even do tracing, then assume it's not
2083 running anymore. */
2084 if (target_get_trace_status (current_trace_status ()) < 0)
2085 current_trace_status ()->running = 0;
2086
2087 /* If running interactively, give the user the option to cancel and
2088 then decide what to do differently with the run. Scripts are
2089 just going to disconnect and let the target deal with it,
2090 according to how it's been instructed previously via
2091 disconnected-tracing. */
2092 if (current_trace_status ()->running)
2093 {
2094 process_tracepoint_on_disconnect ();
2095
2096 if (current_trace_status ()->disconnected_tracing)
2097 {
2098 if (!query (_("Trace is running and will "
2099 "continue after detach; detach anyway? ")))
2100 error (_("Not confirmed."));
2101 }
2102 else
2103 {
2104 if (!query (_("Trace is running but will "
2105 "stop on detach; detach anyway? ")))
2106 error (_("Not confirmed."));
2107 }
2108 }
2109 }
2110
2111 /* This function handles the details of what to do about an ongoing
2112 tracing run if the user has asked to detach or otherwise disconnect
2113 from the target. */
2114
2115 void
2116 disconnect_tracing (void)
2117 {
2118 /* Also we want to be out of tfind mode, otherwise things can get
2119 confusing upon reconnection. Just use these calls instead of
2120 full tfind_1 behavior because we're in the middle of detaching,
2121 and there's no point to updating current stack frame etc. */
2122 trace_reset_local_state ();
2123 }
2124
2125 /* Worker function for the various flavors of the tfind command. */
2126 void
2127 tfind_1 (enum trace_find_type type, int num,
2128 CORE_ADDR addr1, CORE_ADDR addr2,
2129 int from_tty)
2130 {
2131 int target_frameno = -1, target_tracept = -1;
2132 struct frame_id old_frame_id = null_frame_id;
2133 struct tracepoint *tp;
2134 struct ui_out *uiout = current_uiout;
2135
2136 /* Only try to get the current stack frame if we have a chance of
2137 succeeding. In particular, if we're trying to get a first trace
2138 frame while all threads are running, it's not going to succeed,
2139 so leave it with a default value and let the frame comparison
2140 below (correctly) decide to print out the source location of the
2141 trace frame. */
2142 if (!(type == tfind_number && num == -1)
2143 && (has_stack_frames () || traceframe_number >= 0))
2144 old_frame_id = get_frame_id (get_current_frame ());
2145
2146 target_frameno = target_trace_find (type, num, addr1, addr2,
2147 &target_tracept);
2148
2149 if (type == tfind_number
2150 && num == -1
2151 && target_frameno == -1)
2152 {
2153 /* We told the target to get out of tfind mode, and it did. */
2154 }
2155 else if (target_frameno == -1)
2156 {
2157 /* A request for a non-existent trace frame has failed.
2158 Our response will be different, depending on FROM_TTY:
2159
2160 If FROM_TTY is true, meaning that this command was
2161 typed interactively by the user, then give an error
2162 and DO NOT change the state of traceframe_number etc.
2163
2164 However if FROM_TTY is false, meaning that we're either
2165 in a script, a loop, or a user-defined command, then
2166 DON'T give an error, but DO change the state of
2167 traceframe_number etc. to invalid.
2168
2169 The rationalle is that if you typed the command, you
2170 might just have committed a typo or something, and you'd
2171 like to NOT lose your current debugging state. However
2172 if you're in a user-defined command or especially in a
2173 loop, then you need a way to detect that the command
2174 failed WITHOUT aborting. This allows you to write
2175 scripts that search thru the trace buffer until the end,
2176 and then continue on to do something else. */
2177
2178 if (from_tty)
2179 error (_("Target failed to find requested trace frame."));
2180 else
2181 {
2182 if (info_verbose)
2183 printf_filtered ("End of trace buffer.\n");
2184 #if 0 /* dubious now? */
2185 /* The following will not recurse, since it's
2186 special-cased. */
2187 tfind_command ("-1", from_tty);
2188 #endif
2189 }
2190 }
2191
2192 tp = get_tracepoint_by_number_on_target (target_tracept);
2193
2194 reinit_frame_cache ();
2195 target_dcache_invalidate ();
2196
2197 set_tracepoint_num (tp ? tp->number : target_tracept);
2198
2199 if (target_frameno != get_traceframe_number ())
2200 observer_notify_traceframe_changed (target_frameno, tracepoint_number);
2201
2202 set_current_traceframe (target_frameno);
2203
2204 if (target_frameno == -1)
2205 set_traceframe_context (NULL);
2206 else
2207 set_traceframe_context (get_current_frame ());
2208
2209 if (traceframe_number >= 0)
2210 {
2211 /* Use different branches for MI and CLI to make CLI messages
2212 i18n-eable. */
2213 if (uiout->is_mi_like_p ())
2214 {
2215 uiout->field_string ("found", "1");
2216 uiout->field_int ("tracepoint", tracepoint_number);
2217 uiout->field_int ("traceframe", traceframe_number);
2218 }
2219 else
2220 {
2221 printf_unfiltered (_("Found trace frame %d, tracepoint %d\n"),
2222 traceframe_number, tracepoint_number);
2223 }
2224 }
2225 else
2226 {
2227 if (uiout->is_mi_like_p ())
2228 uiout->field_string ("found", "0");
2229 else if (type == tfind_number && num == -1)
2230 printf_unfiltered (_("No longer looking at any trace frame\n"));
2231 else /* This case may never occur, check. */
2232 printf_unfiltered (_("No trace frame found\n"));
2233 }
2234
2235 /* If we're in nonstop mode and getting out of looking at trace
2236 frames, there won't be any current frame to go back to and
2237 display. */
2238 if (from_tty
2239 && (has_stack_frames () || traceframe_number >= 0))
2240 {
2241 enum print_what print_what;
2242
2243 /* NOTE: in imitation of the step command, try to determine
2244 whether we have made a transition from one function to
2245 another. If so, we'll print the "stack frame" (ie. the new
2246 function and it's arguments) -- otherwise we'll just show the
2247 new source line. */
2248
2249 if (frame_id_eq (old_frame_id,
2250 get_frame_id (get_current_frame ())))
2251 print_what = SRC_LINE;
2252 else
2253 print_what = SRC_AND_LOC;
2254
2255 print_stack_frame (get_selected_frame (NULL), 1, print_what, 1);
2256 do_displays ();
2257 }
2258 }
2259
2260 /* Error on looking at traceframes while trace is running. */
2261
2262 void
2263 check_trace_running (struct trace_status *status)
2264 {
2265 if (status->running && status->filename == NULL)
2266 error (_("May not look at trace frames while trace is running."));
2267 }
2268
2269 /* trace_find_command takes a trace frame number n,
2270 sends "QTFrame:<n>" to the target,
2271 and accepts a reply that may contain several optional pieces
2272 of information: a frame number, a tracepoint number, and an
2273 indication of whether this is a trap frame or a stepping frame.
2274
2275 The minimal response is just "OK" (which indicates that the
2276 target does not give us a frame number or a tracepoint number).
2277 Instead of that, the target may send us a string containing
2278 any combination of:
2279 F<hexnum> (gives the selected frame number)
2280 T<hexnum> (gives the selected tracepoint number)
2281 */
2282
2283 /* tfind command */
2284 static void
2285 tfind_command_1 (const char *args, int from_tty)
2286 { /* This should only be called with a numeric argument. */
2287 int frameno = -1;
2288
2289 check_trace_running (current_trace_status ());
2290
2291 if (args == 0 || *args == 0)
2292 { /* TFIND with no args means find NEXT trace frame. */
2293 if (traceframe_number == -1)
2294 frameno = 0; /* "next" is first one. */
2295 else
2296 frameno = traceframe_number + 1;
2297 }
2298 else if (0 == strcmp (args, "-"))
2299 {
2300 if (traceframe_number == -1)
2301 error (_("not debugging trace buffer"));
2302 else if (from_tty && traceframe_number == 0)
2303 error (_("already at start of trace buffer"));
2304
2305 frameno = traceframe_number - 1;
2306 }
2307 /* A hack to work around eval's need for fp to have been collected. */
2308 else if (0 == strcmp (args, "-1"))
2309 frameno = -1;
2310 else
2311 frameno = parse_and_eval_long (args);
2312
2313 if (frameno < -1)
2314 error (_("invalid input (%d is less than zero)"), frameno);
2315
2316 tfind_1 (tfind_number, frameno, 0, 0, from_tty);
2317 }
2318
2319 static void
2320 tfind_command (const char *args, int from_tty)
2321 {
2322 tfind_command_1 (args, from_tty);
2323 }
2324
2325 /* tfind end */
2326 static void
2327 tfind_end_command (const char *args, int from_tty)
2328 {
2329 tfind_command_1 ("-1", from_tty);
2330 }
2331
2332 /* tfind start */
2333 static void
2334 tfind_start_command (const char *args, int from_tty)
2335 {
2336 tfind_command_1 ("0", from_tty);
2337 }
2338
2339 /* tfind pc command */
2340 static void
2341 tfind_pc_command (const char *args, int from_tty)
2342 {
2343 CORE_ADDR pc;
2344
2345 check_trace_running (current_trace_status ());
2346
2347 if (args == 0 || *args == 0)
2348 pc = regcache_read_pc (get_current_regcache ());
2349 else
2350 pc = parse_and_eval_address (args);
2351
2352 tfind_1 (tfind_pc, 0, pc, 0, from_tty);
2353 }
2354
2355 /* tfind tracepoint command */
2356 static void
2357 tfind_tracepoint_command (const char *args, int from_tty)
2358 {
2359 int tdp;
2360 struct tracepoint *tp;
2361
2362 check_trace_running (current_trace_status ());
2363
2364 if (args == 0 || *args == 0)
2365 {
2366 if (tracepoint_number == -1)
2367 error (_("No current tracepoint -- please supply an argument."));
2368 else
2369 tdp = tracepoint_number; /* Default is current TDP. */
2370 }
2371 else
2372 tdp = parse_and_eval_long (args);
2373
2374 /* If we have the tracepoint on hand, use the number that the
2375 target knows about (which may be different if we disconnected
2376 and reconnected). */
2377 tp = get_tracepoint (tdp);
2378 if (tp)
2379 tdp = tp->number_on_target;
2380
2381 tfind_1 (tfind_tp, tdp, 0, 0, from_tty);
2382 }
2383
2384 /* TFIND LINE command:
2385
2386 This command will take a sourceline for argument, just like BREAK
2387 or TRACE (ie. anything that "decode_line_1" can handle).
2388
2389 With no argument, this command will find the next trace frame
2390 corresponding to a source line OTHER THAN THE CURRENT ONE. */
2391
2392 static void
2393 tfind_line_command (const char *args, int from_tty)
2394 {
2395 check_trace_running (current_trace_status ());
2396
2397 symtab_and_line sal;
2398 if (args == 0 || *args == 0)
2399 {
2400 sal = find_pc_line (get_frame_pc (get_current_frame ()), 0);
2401 }
2402 else
2403 {
2404 std::vector<symtab_and_line> sals
2405 = decode_line_with_current_source (args, DECODE_LINE_FUNFIRSTLINE);
2406 sal = sals[0];
2407 }
2408
2409 if (sal.symtab == 0)
2410 error (_("No line number information available."));
2411
2412 CORE_ADDR start_pc, end_pc;
2413 if (sal.line > 0 && find_line_pc_range (sal, &start_pc, &end_pc))
2414 {
2415 if (start_pc == end_pc)
2416 {
2417 printf_filtered ("Line %d of \"%s\"",
2418 sal.line,
2419 symtab_to_filename_for_display (sal.symtab));
2420 wrap_here (" ");
2421 printf_filtered (" is at address ");
2422 print_address (get_current_arch (), start_pc, gdb_stdout);
2423 wrap_here (" ");
2424 printf_filtered (" but contains no code.\n");
2425 sal = find_pc_line (start_pc, 0);
2426 if (sal.line > 0
2427 && find_line_pc_range (sal, &start_pc, &end_pc)
2428 && start_pc != end_pc)
2429 printf_filtered ("Attempting to find line %d instead.\n",
2430 sal.line);
2431 else
2432 error (_("Cannot find a good line."));
2433 }
2434 }
2435 else
2436 /* Is there any case in which we get here, and have an address
2437 which the user would want to see? If we have debugging
2438 symbols and no line numbers? */
2439 error (_("Line number %d is out of range for \"%s\"."),
2440 sal.line, symtab_to_filename_for_display (sal.symtab));
2441
2442 /* Find within range of stated line. */
2443 if (args && *args)
2444 tfind_1 (tfind_range, 0, start_pc, end_pc - 1, from_tty);
2445 else
2446 tfind_1 (tfind_outside, 0, start_pc, end_pc - 1, from_tty);
2447 }
2448
2449 /* tfind range command */
2450 static void
2451 tfind_range_command (const char *args, int from_tty)
2452 {
2453 static CORE_ADDR start, stop;
2454 const char *tmp;
2455
2456 check_trace_running (current_trace_status ());
2457
2458 if (args == 0 || *args == 0)
2459 { /* XXX FIXME: what should default behavior be? */
2460 printf_filtered ("Usage: tfind range <startaddr>,<endaddr>\n");
2461 return;
2462 }
2463
2464 if (0 != (tmp = strchr (args, ',')))
2465 {
2466 std::string start_addr (args, tmp);
2467 ++tmp;
2468 tmp = skip_spaces (tmp);
2469 start = parse_and_eval_address (start_addr.c_str ());
2470 stop = parse_and_eval_address (tmp);
2471 }
2472 else
2473 { /* No explicit end address? */
2474 start = parse_and_eval_address (args);
2475 stop = start + 1; /* ??? */
2476 }
2477
2478 tfind_1 (tfind_range, 0, start, stop, from_tty);
2479 }
2480
2481 /* tfind outside command */
2482 static void
2483 tfind_outside_command (const char *args, int from_tty)
2484 {
2485 CORE_ADDR start, stop;
2486 const char *tmp;
2487
2488 if (current_trace_status ()->running
2489 && current_trace_status ()->filename == NULL)
2490 error (_("May not look at trace frames while trace is running."));
2491
2492 if (args == 0 || *args == 0)
2493 { /* XXX FIXME: what should default behavior be? */
2494 printf_filtered ("Usage: tfind outside <startaddr>,<endaddr>\n");
2495 return;
2496 }
2497
2498 if (0 != (tmp = strchr (args, ',')))
2499 {
2500 std::string start_addr (args, tmp);
2501 ++tmp;
2502 tmp = skip_spaces (tmp);
2503 start = parse_and_eval_address (start_addr.c_str ());
2504 stop = parse_and_eval_address (tmp);
2505 }
2506 else
2507 { /* No explicit end address? */
2508 start = parse_and_eval_address (args);
2509 stop = start + 1; /* ??? */
2510 }
2511
2512 tfind_1 (tfind_outside, 0, start, stop, from_tty);
2513 }
2514
2515 /* info scope command: list the locals for a scope. */
2516 static void
2517 info_scope_command (const char *args_in, int from_tty)
2518 {
2519 struct symbol *sym;
2520 struct bound_minimal_symbol msym;
2521 const struct block *block;
2522 const char *symname;
2523 const char *save_args = args_in;
2524 struct block_iterator iter;
2525 int j, count = 0;
2526 struct gdbarch *gdbarch;
2527 int regno;
2528 const char *args = args_in;
2529
2530 if (args == 0 || *args == 0)
2531 error (_("requires an argument (function, "
2532 "line or *addr) to define a scope"));
2533
2534 event_location_up location = string_to_event_location (&args,
2535 current_language);
2536 std::vector<symtab_and_line> sals
2537 = decode_line_1 (location.get (), DECODE_LINE_FUNFIRSTLINE,
2538 NULL, NULL, 0);
2539 if (sals.empty ())
2540 {
2541 /* Presumably decode_line_1 has already warned. */
2542 return;
2543 }
2544
2545 /* Resolve line numbers to PC. */
2546 resolve_sal_pc (&sals[0]);
2547 block = block_for_pc (sals[0].pc);
2548
2549 while (block != 0)
2550 {
2551 QUIT; /* Allow user to bail out with ^C. */
2552 ALL_BLOCK_SYMBOLS (block, iter, sym)
2553 {
2554 QUIT; /* Allow user to bail out with ^C. */
2555 if (count == 0)
2556 printf_filtered ("Scope for %s:\n", save_args);
2557 count++;
2558
2559 symname = SYMBOL_PRINT_NAME (sym);
2560 if (symname == NULL || *symname == '\0')
2561 continue; /* Probably botched, certainly useless. */
2562
2563 gdbarch = symbol_arch (sym);
2564
2565 printf_filtered ("Symbol %s is ", symname);
2566
2567 if (SYMBOL_COMPUTED_OPS (sym) != NULL)
2568 SYMBOL_COMPUTED_OPS (sym)->describe_location (sym,
2569 BLOCK_START (block),
2570 gdb_stdout);
2571 else
2572 {
2573 switch (SYMBOL_CLASS (sym))
2574 {
2575 default:
2576 case LOC_UNDEF: /* Messed up symbol? */
2577 printf_filtered ("a bogus symbol, class %d.\n",
2578 SYMBOL_CLASS (sym));
2579 count--; /* Don't count this one. */
2580 continue;
2581 case LOC_CONST:
2582 printf_filtered ("a constant with value %s (%s)",
2583 plongest (SYMBOL_VALUE (sym)),
2584 hex_string (SYMBOL_VALUE (sym)));
2585 break;
2586 case LOC_CONST_BYTES:
2587 printf_filtered ("constant bytes: ");
2588 if (SYMBOL_TYPE (sym))
2589 for (j = 0; j < TYPE_LENGTH (SYMBOL_TYPE (sym)); j++)
2590 fprintf_filtered (gdb_stdout, " %02x",
2591 (unsigned) SYMBOL_VALUE_BYTES (sym)[j]);
2592 break;
2593 case LOC_STATIC:
2594 printf_filtered ("in static storage at address ");
2595 printf_filtered ("%s", paddress (gdbarch,
2596 SYMBOL_VALUE_ADDRESS (sym)));
2597 break;
2598 case LOC_REGISTER:
2599 /* GDBARCH is the architecture associated with the objfile
2600 the symbol is defined in; the target architecture may be
2601 different, and may provide additional registers. However,
2602 we do not know the target architecture at this point.
2603 We assume the objfile architecture will contain all the
2604 standard registers that occur in debug info in that
2605 objfile. */
2606 regno = SYMBOL_REGISTER_OPS (sym)->register_number (sym,
2607 gdbarch);
2608
2609 if (SYMBOL_IS_ARGUMENT (sym))
2610 printf_filtered ("an argument in register $%s",
2611 gdbarch_register_name (gdbarch, regno));
2612 else
2613 printf_filtered ("a local variable in register $%s",
2614 gdbarch_register_name (gdbarch, regno));
2615 break;
2616 case LOC_ARG:
2617 printf_filtered ("an argument at stack/frame offset %s",
2618 plongest (SYMBOL_VALUE (sym)));
2619 break;
2620 case LOC_LOCAL:
2621 printf_filtered ("a local variable at frame offset %s",
2622 plongest (SYMBOL_VALUE (sym)));
2623 break;
2624 case LOC_REF_ARG:
2625 printf_filtered ("a reference argument at offset %s",
2626 plongest (SYMBOL_VALUE (sym)));
2627 break;
2628 case LOC_REGPARM_ADDR:
2629 /* Note comment at LOC_REGISTER. */
2630 regno = SYMBOL_REGISTER_OPS (sym)->register_number (sym,
2631 gdbarch);
2632 printf_filtered ("the address of an argument, in register $%s",
2633 gdbarch_register_name (gdbarch, regno));
2634 break;
2635 case LOC_TYPEDEF:
2636 printf_filtered ("a typedef.\n");
2637 continue;
2638 case LOC_LABEL:
2639 printf_filtered ("a label at address ");
2640 printf_filtered ("%s", paddress (gdbarch,
2641 SYMBOL_VALUE_ADDRESS (sym)));
2642 break;
2643 case LOC_BLOCK:
2644 printf_filtered ("a function at address ");
2645 printf_filtered ("%s",
2646 paddress (gdbarch, BLOCK_START (SYMBOL_BLOCK_VALUE (sym))));
2647 break;
2648 case LOC_UNRESOLVED:
2649 msym = lookup_minimal_symbol (SYMBOL_LINKAGE_NAME (sym),
2650 NULL, NULL);
2651 if (msym.minsym == NULL)
2652 printf_filtered ("Unresolved Static");
2653 else
2654 {
2655 printf_filtered ("static storage at address ");
2656 printf_filtered ("%s",
2657 paddress (gdbarch,
2658 BMSYMBOL_VALUE_ADDRESS (msym)));
2659 }
2660 break;
2661 case LOC_OPTIMIZED_OUT:
2662 printf_filtered ("optimized out.\n");
2663 continue;
2664 case LOC_COMPUTED:
2665 gdb_assert_not_reached (_("LOC_COMPUTED variable missing a method"));
2666 }
2667 }
2668 if (SYMBOL_TYPE (sym))
2669 printf_filtered (", length %d.\n",
2670 TYPE_LENGTH (check_typedef (SYMBOL_TYPE (sym))));
2671 }
2672 if (BLOCK_FUNCTION (block))
2673 break;
2674 else
2675 block = BLOCK_SUPERBLOCK (block);
2676 }
2677 if (count <= 0)
2678 printf_filtered ("Scope for %s contains no locals or arguments.\n",
2679 save_args);
2680 }
2681
2682 /* Helper for trace_dump_command. Dump the action list starting at
2683 ACTION. STEPPING_ACTIONS is true if we're iterating over the
2684 actions of the body of a while-stepping action. STEPPING_FRAME is
2685 set if the current traceframe was determined to be a while-stepping
2686 traceframe. */
2687
2688 static void
2689 trace_dump_actions (struct command_line *action,
2690 int stepping_actions, int stepping_frame,
2691 int from_tty)
2692 {
2693 const char *action_exp, *next_comma;
2694
2695 for (; action != NULL; action = action->next)
2696 {
2697 struct cmd_list_element *cmd;
2698
2699 QUIT; /* Allow user to bail out with ^C. */
2700 action_exp = action->line;
2701 action_exp = skip_spaces (action_exp);
2702
2703 /* The collection actions to be done while stepping are
2704 bracketed by the commands "while-stepping" and "end". */
2705
2706 if (*action_exp == '#') /* comment line */
2707 continue;
2708
2709 cmd = lookup_cmd (&action_exp, cmdlist, "", -1, 1);
2710 if (cmd == 0)
2711 error (_("Bad action list item: %s"), action_exp);
2712
2713 if (cmd_cfunc_eq (cmd, while_stepping_pseudocommand))
2714 {
2715 int i;
2716
2717 for (i = 0; i < action->body_count; ++i)
2718 trace_dump_actions (action->body_list[i],
2719 1, stepping_frame, from_tty);
2720 }
2721 else if (cmd_cfunc_eq (cmd, collect_pseudocommand))
2722 {
2723 /* Display the collected data.
2724 For the trap frame, display only what was collected at
2725 the trap. Likewise for stepping frames, display only
2726 what was collected while stepping. This means that the
2727 two boolean variables, STEPPING_FRAME and
2728 STEPPING_ACTIONS should be equal. */
2729 if (stepping_frame == stepping_actions)
2730 {
2731 char *cmd = NULL;
2732 struct cleanup *old_chain
2733 = make_cleanup (free_current_contents, &cmd);
2734 int trace_string = 0;
2735
2736 if (*action_exp == '/')
2737 action_exp = decode_agent_options (action_exp, &trace_string);
2738
2739 do
2740 { /* Repeat over a comma-separated list. */
2741 QUIT; /* Allow user to bail out with ^C. */
2742 if (*action_exp == ',')
2743 action_exp++;
2744 action_exp = skip_spaces (action_exp);
2745
2746 next_comma = strchr (action_exp, ',');
2747
2748 if (0 == strncasecmp (action_exp, "$reg", 4))
2749 registers_info (NULL, from_tty);
2750 else if (0 == strncasecmp (action_exp, "$_ret", 5))
2751 ;
2752 else if (0 == strncasecmp (action_exp, "$loc", 4))
2753 info_locals_command (NULL, from_tty);
2754 else if (0 == strncasecmp (action_exp, "$arg", 4))
2755 info_args_command (NULL, from_tty);
2756 else
2757 { /* variable */
2758 if (next_comma != NULL)
2759 {
2760 size_t len = next_comma - action_exp;
2761
2762 cmd = (char *) xrealloc (cmd, len + 1);
2763 memcpy (cmd, action_exp, len);
2764 cmd[len] = 0;
2765 }
2766 else
2767 {
2768 size_t len = strlen (action_exp);
2769
2770 cmd = (char *) xrealloc (cmd, len + 1);
2771 memcpy (cmd, action_exp, len + 1);
2772 }
2773
2774 printf_filtered ("%s = ", cmd);
2775 output_command_const (cmd, from_tty);
2776 printf_filtered ("\n");
2777 }
2778 action_exp = next_comma;
2779 }
2780 while (action_exp && *action_exp == ',');
2781
2782 do_cleanups (old_chain);
2783 }
2784 }
2785 }
2786 }
2787
2788 /* Return bp_location of the tracepoint associated with the current
2789 traceframe. Set *STEPPING_FRAME_P to 1 if the current traceframe
2790 is a stepping traceframe. */
2791
2792 struct bp_location *
2793 get_traceframe_location (int *stepping_frame_p)
2794 {
2795 struct tracepoint *t;
2796 struct bp_location *tloc;
2797 struct regcache *regcache;
2798
2799 if (tracepoint_number == -1)
2800 error (_("No current trace frame."));
2801
2802 t = get_tracepoint (tracepoint_number);
2803
2804 if (t == NULL)
2805 error (_("No known tracepoint matches 'current' tracepoint #%d."),
2806 tracepoint_number);
2807
2808 /* The current frame is a trap frame if the frame PC is equal to the
2809 tracepoint PC. If not, then the current frame was collected
2810 during single-stepping. */
2811 regcache = get_current_regcache ();
2812
2813 /* If the traceframe's address matches any of the tracepoint's
2814 locations, assume it is a direct hit rather than a while-stepping
2815 frame. (FIXME this is not reliable, should record each frame's
2816 type.) */
2817 for (tloc = t->loc; tloc; tloc = tloc->next)
2818 if (tloc->address == regcache_read_pc (regcache))
2819 {
2820 *stepping_frame_p = 0;
2821 return tloc;
2822 }
2823
2824 /* If this is a stepping frame, we don't know which location
2825 triggered. The first is as good (or bad) a guess as any... */
2826 *stepping_frame_p = 1;
2827 return t->loc;
2828 }
2829
2830 /* Return all the actions, including default collect, of a tracepoint
2831 T. It constructs cleanups into the chain, and leaves the caller to
2832 handle them (call do_cleanups). */
2833
2834 static struct command_line *
2835 all_tracepoint_actions_and_cleanup (struct breakpoint *t)
2836 {
2837 struct command_line *actions;
2838
2839 actions = breakpoint_commands (t);
2840
2841 /* If there are default expressions to collect, make up a collect
2842 action and prepend to the action list to encode. Note that since
2843 validation is per-tracepoint (local var "xyz" might be valid for
2844 one tracepoint and not another, etc), we make up the action on
2845 the fly, and don't cache it. */
2846 if (*default_collect)
2847 {
2848 struct command_line *default_collect_action;
2849 char *default_collect_line;
2850
2851 default_collect_line = xstrprintf ("collect %s", default_collect);
2852 make_cleanup (xfree, default_collect_line);
2853
2854 validate_actionline (default_collect_line, t);
2855 default_collect_action = XNEW (struct command_line);
2856 make_cleanup (xfree, default_collect_action);
2857 default_collect_action->next = actions;
2858 default_collect_action->line = default_collect_line;
2859 actions = default_collect_action;
2860 }
2861
2862 return actions;
2863 }
2864
2865 /* The tdump command. */
2866
2867 static void
2868 tdump_command (const char *args, int from_tty)
2869 {
2870 int stepping_frame = 0;
2871 struct bp_location *loc;
2872 struct command_line *actions;
2873
2874 /* This throws an error is not inspecting a trace frame. */
2875 loc = get_traceframe_location (&stepping_frame);
2876
2877 printf_filtered ("Data collected at tracepoint %d, trace frame %d:\n",
2878 tracepoint_number, traceframe_number);
2879
2880 /* This command only makes sense for the current frame, not the
2881 selected frame. */
2882 scoped_restore_current_thread restore_thread;
2883
2884 select_frame (get_current_frame ());
2885
2886 actions = all_tracepoint_actions_and_cleanup (loc->owner);
2887
2888 trace_dump_actions (actions, 0, stepping_frame, from_tty);
2889 }
2890
2891 /* Encode a piece of a tracepoint's source-level definition in a form
2892 that is suitable for both protocol and saving in files. */
2893 /* This version does not do multiple encodes for long strings; it should
2894 return an offset to the next piece to encode. FIXME */
2895
2896 int
2897 encode_source_string (int tpnum, ULONGEST addr,
2898 const char *srctype, const char *src,
2899 char *buf, int buf_size)
2900 {
2901 if (80 + strlen (srctype) > buf_size)
2902 error (_("Buffer too small for source encoding"));
2903 sprintf (buf, "%x:%s:%s:%x:%x:",
2904 tpnum, phex_nz (addr, sizeof (addr)),
2905 srctype, 0, (int) strlen (src));
2906 if (strlen (buf) + strlen (src) * 2 >= buf_size)
2907 error (_("Source string too long for buffer"));
2908 bin2hex ((gdb_byte *) src, buf + strlen (buf), strlen (src));
2909 return -1;
2910 }
2911
2912 /* Tell the target what to do with an ongoing tracing run if GDB
2913 disconnects for some reason. */
2914
2915 static void
2916 set_disconnected_tracing (const char *args, int from_tty,
2917 struct cmd_list_element *c)
2918 {
2919 target_set_disconnected_tracing (disconnected_tracing);
2920 }
2921
2922 static void
2923 set_circular_trace_buffer (const char *args, int from_tty,
2924 struct cmd_list_element *c)
2925 {
2926 target_set_circular_trace_buffer (circular_trace_buffer);
2927 }
2928
2929 static void
2930 set_trace_buffer_size (const char *args, int from_tty,
2931 struct cmd_list_element *c)
2932 {
2933 target_set_trace_buffer_size (trace_buffer_size);
2934 }
2935
2936 static void
2937 set_trace_user (const char *args, int from_tty,
2938 struct cmd_list_element *c)
2939 {
2940 int ret;
2941
2942 ret = target_set_trace_notes (trace_user, NULL, NULL);
2943
2944 if (!ret)
2945 warning (_("Target does not support trace notes, user ignored"));
2946 }
2947
2948 static void
2949 set_trace_notes (const char *args, int from_tty,
2950 struct cmd_list_element *c)
2951 {
2952 int ret;
2953
2954 ret = target_set_trace_notes (NULL, trace_notes, NULL);
2955
2956 if (!ret)
2957 warning (_("Target does not support trace notes, note ignored"));
2958 }
2959
2960 static void
2961 set_trace_stop_notes (const char *args, int from_tty,
2962 struct cmd_list_element *c)
2963 {
2964 int ret;
2965
2966 ret = target_set_trace_notes (NULL, NULL, trace_stop_notes);
2967
2968 if (!ret)
2969 warning (_("Target does not support trace notes, stop note ignored"));
2970 }
2971
2972 /* Convert the memory pointed to by mem into hex, placing result in buf.
2973 * Return a pointer to the last char put in buf (null)
2974 * "stolen" from sparc-stub.c
2975 */
2976
2977 static const char hexchars[] = "0123456789abcdef";
2978
2979 static char *
2980 mem2hex (gdb_byte *mem, char *buf, int count)
2981 {
2982 gdb_byte ch;
2983
2984 while (count-- > 0)
2985 {
2986 ch = *mem++;
2987
2988 *buf++ = hexchars[ch >> 4];
2989 *buf++ = hexchars[ch & 0xf];
2990 }
2991
2992 *buf = 0;
2993
2994 return buf;
2995 }
2996
2997 int
2998 get_traceframe_number (void)
2999 {
3000 return traceframe_number;
3001 }
3002
3003 int
3004 get_tracepoint_number (void)
3005 {
3006 return tracepoint_number;
3007 }
3008
3009 /* Make the traceframe NUM be the current trace frame. Does nothing
3010 if NUM is already current. */
3011
3012 void
3013 set_current_traceframe (int num)
3014 {
3015 int newnum;
3016
3017 if (traceframe_number == num)
3018 {
3019 /* Nothing to do. */
3020 return;
3021 }
3022
3023 newnum = target_trace_find (tfind_number, num, 0, 0, NULL);
3024
3025 if (newnum != num)
3026 warning (_("could not change traceframe"));
3027
3028 set_traceframe_num (newnum);
3029
3030 /* Changing the traceframe changes our view of registers and of the
3031 frame chain. */
3032 registers_changed ();
3033
3034 clear_traceframe_info ();
3035 }
3036
3037 /* A cleanup used when switching away and back from tfind mode. */
3038
3039 struct current_traceframe_cleanup
3040 {
3041 /* The traceframe we were inspecting. */
3042 int traceframe_number;
3043 };
3044
3045 static void
3046 do_restore_current_traceframe_cleanup (void *arg)
3047 {
3048 struct current_traceframe_cleanup *old
3049 = (struct current_traceframe_cleanup *) arg;
3050
3051 set_current_traceframe (old->traceframe_number);
3052 }
3053
3054 static void
3055 restore_current_traceframe_cleanup_dtor (void *arg)
3056 {
3057 struct current_traceframe_cleanup *old
3058 = (struct current_traceframe_cleanup *) arg;
3059
3060 xfree (old);
3061 }
3062
3063 struct cleanup *
3064 make_cleanup_restore_current_traceframe (void)
3065 {
3066 struct current_traceframe_cleanup *old =
3067 XNEW (struct current_traceframe_cleanup);
3068
3069 old->traceframe_number = traceframe_number;
3070
3071 return make_cleanup_dtor (do_restore_current_traceframe_cleanup, old,
3072 restore_current_traceframe_cleanup_dtor);
3073 }
3074
3075 /* Given a number and address, return an uploaded tracepoint with that
3076 number, creating if necessary. */
3077
3078 struct uploaded_tp *
3079 get_uploaded_tp (int num, ULONGEST addr, struct uploaded_tp **utpp)
3080 {
3081 struct uploaded_tp *utp;
3082
3083 for (utp = *utpp; utp; utp = utp->next)
3084 if (utp->number == num && utp->addr == addr)
3085 return utp;
3086
3087 utp = XCNEW (struct uploaded_tp);
3088 utp->number = num;
3089 utp->addr = addr;
3090 utp->actions = NULL;
3091 utp->step_actions = NULL;
3092 utp->cmd_strings = NULL;
3093 utp->next = *utpp;
3094 *utpp = utp;
3095
3096 return utp;
3097 }
3098
3099 void
3100 free_uploaded_tps (struct uploaded_tp **utpp)
3101 {
3102 struct uploaded_tp *next_one;
3103
3104 while (*utpp)
3105 {
3106 next_one = (*utpp)->next;
3107 xfree (*utpp);
3108 *utpp = next_one;
3109 }
3110 }
3111
3112 /* Given a number and address, return an uploaded tracepoint with that
3113 number, creating if necessary. */
3114
3115 struct uploaded_tsv *
3116 get_uploaded_tsv (int num, struct uploaded_tsv **utsvp)
3117 {
3118 struct uploaded_tsv *utsv;
3119
3120 for (utsv = *utsvp; utsv; utsv = utsv->next)
3121 if (utsv->number == num)
3122 return utsv;
3123
3124 utsv = XCNEW (struct uploaded_tsv);
3125 utsv->number = num;
3126 utsv->next = *utsvp;
3127 *utsvp = utsv;
3128
3129 return utsv;
3130 }
3131
3132 void
3133 free_uploaded_tsvs (struct uploaded_tsv **utsvp)
3134 {
3135 struct uploaded_tsv *next_one;
3136
3137 while (*utsvp)
3138 {
3139 next_one = (*utsvp)->next;
3140 xfree (*utsvp);
3141 *utsvp = next_one;
3142 }
3143 }
3144
3145 /* FIXME this function is heuristic and will miss the cases where the
3146 conditional is semantically identical but differs in whitespace,
3147 such as "x == 0" vs "x==0". */
3148
3149 static int
3150 cond_string_is_same (char *str1, char *str2)
3151 {
3152 if (str1 == NULL || str2 == NULL)
3153 return (str1 == str2);
3154
3155 return (strcmp (str1, str2) == 0);
3156 }
3157
3158 /* Look for an existing tracepoint that seems similar enough to the
3159 uploaded one. Enablement isn't compared, because the user can
3160 toggle that freely, and may have done so in anticipation of the
3161 next trace run. Return the location of matched tracepoint. */
3162
3163 static struct bp_location *
3164 find_matching_tracepoint_location (struct uploaded_tp *utp)
3165 {
3166 VEC(breakpoint_p) *tp_vec = all_tracepoints ();
3167 int ix;
3168 struct breakpoint *b;
3169 struct bp_location *loc;
3170
3171 for (ix = 0; VEC_iterate (breakpoint_p, tp_vec, ix, b); ix++)
3172 {
3173 struct tracepoint *t = (struct tracepoint *) b;
3174
3175 if (b->type == utp->type
3176 && t->step_count == utp->step
3177 && t->pass_count == utp->pass
3178 && cond_string_is_same (t->cond_string, utp->cond_string)
3179 /* FIXME also test actions. */
3180 )
3181 {
3182 /* Scan the locations for an address match. */
3183 for (loc = b->loc; loc; loc = loc->next)
3184 {
3185 if (loc->address == utp->addr)
3186 return loc;
3187 }
3188 }
3189 }
3190 return NULL;
3191 }
3192
3193 /* Given a list of tracepoints uploaded from a target, attempt to
3194 match them up with existing tracepoints, and create new ones if not
3195 found. */
3196
3197 void
3198 merge_uploaded_tracepoints (struct uploaded_tp **uploaded_tps)
3199 {
3200 struct uploaded_tp *utp;
3201 /* A set of tracepoints which are modified. */
3202 VEC(breakpoint_p) *modified_tp = NULL;
3203 int ix;
3204 struct breakpoint *b;
3205
3206 /* Look for GDB tracepoints that match up with our uploaded versions. */
3207 for (utp = *uploaded_tps; utp; utp = utp->next)
3208 {
3209 struct bp_location *loc;
3210 struct tracepoint *t;
3211
3212 loc = find_matching_tracepoint_location (utp);
3213 if (loc)
3214 {
3215 int found = 0;
3216
3217 /* Mark this location as already inserted. */
3218 loc->inserted = 1;
3219 t = (struct tracepoint *) loc->owner;
3220 printf_filtered (_("Assuming tracepoint %d is same "
3221 "as target's tracepoint %d at %s.\n"),
3222 loc->owner->number, utp->number,
3223 paddress (loc->gdbarch, utp->addr));
3224
3225 /* The tracepoint LOC->owner was modified (the location LOC
3226 was marked as inserted in the target). Save it in
3227 MODIFIED_TP if not there yet. The 'breakpoint-modified'
3228 observers will be notified later once for each tracepoint
3229 saved in MODIFIED_TP. */
3230 for (ix = 0;
3231 VEC_iterate (breakpoint_p, modified_tp, ix, b);
3232 ix++)
3233 if (b == loc->owner)
3234 {
3235 found = 1;
3236 break;
3237 }
3238 if (!found)
3239 VEC_safe_push (breakpoint_p, modified_tp, loc->owner);
3240 }
3241 else
3242 {
3243 t = create_tracepoint_from_upload (utp);
3244 if (t)
3245 printf_filtered (_("Created tracepoint %d for "
3246 "target's tracepoint %d at %s.\n"),
3247 t->number, utp->number,
3248 paddress (get_current_arch (), utp->addr));
3249 else
3250 printf_filtered (_("Failed to create tracepoint for target's "
3251 "tracepoint %d at %s, skipping it.\n"),
3252 utp->number,
3253 paddress (get_current_arch (), utp->addr));
3254 }
3255 /* Whether found or created, record the number used by the
3256 target, to help with mapping target tracepoints back to their
3257 counterparts here. */
3258 if (t)
3259 t->number_on_target = utp->number;
3260 }
3261
3262 /* Notify 'breakpoint-modified' observer that at least one of B's
3263 locations was changed. */
3264 for (ix = 0; VEC_iterate (breakpoint_p, modified_tp, ix, b); ix++)
3265 observer_notify_breakpoint_modified (b);
3266
3267 VEC_free (breakpoint_p, modified_tp);
3268 free_uploaded_tps (uploaded_tps);
3269 }
3270
3271 /* Trace state variables don't have much to identify them beyond their
3272 name, so just use that to detect matches. */
3273
3274 static struct trace_state_variable *
3275 find_matching_tsv (struct uploaded_tsv *utsv)
3276 {
3277 if (!utsv->name)
3278 return NULL;
3279
3280 return find_trace_state_variable (utsv->name);
3281 }
3282
3283 static struct trace_state_variable *
3284 create_tsv_from_upload (struct uploaded_tsv *utsv)
3285 {
3286 const char *namebase;
3287 std::string buf;
3288 int try_num = 0;
3289 struct trace_state_variable *tsv;
3290 struct cleanup *old_chain;
3291
3292 if (utsv->name)
3293 {
3294 namebase = utsv->name;
3295 buf = namebase;
3296 }
3297 else
3298 {
3299 namebase = "__tsv";
3300 buf = string_printf ("%s_%d", namebase, try_num++);
3301 }
3302
3303 /* Fish for a name that is not in use. */
3304 /* (should check against all internal vars?) */
3305 while (find_trace_state_variable (buf.c_str ()))
3306 buf = string_printf ("%s_%d", namebase, try_num++);
3307
3308 /* We have an available name, create the variable. */
3309 tsv = create_trace_state_variable (buf.c_str ());
3310 tsv->initial_value = utsv->initial_value;
3311 tsv->builtin = utsv->builtin;
3312
3313 observer_notify_tsv_created (tsv);
3314
3315 return tsv;
3316 }
3317
3318 /* Given a list of uploaded trace state variables, try to match them
3319 up with existing variables, or create additional ones. */
3320
3321 void
3322 merge_uploaded_trace_state_variables (struct uploaded_tsv **uploaded_tsvs)
3323 {
3324 int ix;
3325 struct uploaded_tsv *utsv;
3326 struct trace_state_variable *tsv;
3327 int highest;
3328
3329 /* Most likely some numbers will have to be reassigned as part of
3330 the merge, so clear them all in anticipation. */
3331 for (ix = 0; VEC_iterate (tsv_s, tvariables, ix, tsv); ++ix)
3332 tsv->number = 0;
3333
3334 for (utsv = *uploaded_tsvs; utsv; utsv = utsv->next)
3335 {
3336 tsv = find_matching_tsv (utsv);
3337 if (tsv)
3338 {
3339 if (info_verbose)
3340 printf_filtered (_("Assuming trace state variable $%s "
3341 "is same as target's variable %d.\n"),
3342 tsv->name, utsv->number);
3343 }
3344 else
3345 {
3346 tsv = create_tsv_from_upload (utsv);
3347 if (info_verbose)
3348 printf_filtered (_("Created trace state variable "
3349 "$%s for target's variable %d.\n"),
3350 tsv->name, utsv->number);
3351 }
3352 /* Give precedence to numberings that come from the target. */
3353 if (tsv)
3354 tsv->number = utsv->number;
3355 }
3356
3357 /* Renumber everything that didn't get a target-assigned number. */
3358 highest = 0;
3359 for (ix = 0; VEC_iterate (tsv_s, tvariables, ix, tsv); ++ix)
3360 if (tsv->number > highest)
3361 highest = tsv->number;
3362
3363 ++highest;
3364 for (ix = 0; VEC_iterate (tsv_s, tvariables, ix, tsv); ++ix)
3365 if (tsv->number == 0)
3366 tsv->number = highest++;
3367
3368 free_uploaded_tsvs (uploaded_tsvs);
3369 }
3370
3371 /* Parse the part of trace status syntax that is shared between
3372 the remote protocol and the trace file reader. */
3373
3374 void
3375 parse_trace_status (const char *line, struct trace_status *ts)
3376 {
3377 const char *p = line, *p1, *p2, *p3, *p_temp;
3378 int end;
3379 ULONGEST val;
3380
3381 ts->running_known = 1;
3382 ts->running = (*p++ == '1');
3383 ts->stop_reason = trace_stop_reason_unknown;
3384 xfree (ts->stop_desc);
3385 ts->stop_desc = NULL;
3386 ts->traceframe_count = -1;
3387 ts->traceframes_created = -1;
3388 ts->buffer_free = -1;
3389 ts->buffer_size = -1;
3390 ts->disconnected_tracing = 0;
3391 ts->circular_buffer = 0;
3392 xfree (ts->user_name);
3393 ts->user_name = NULL;
3394 xfree (ts->notes);
3395 ts->notes = NULL;
3396 ts->start_time = ts->stop_time = 0;
3397
3398 while (*p++)
3399 {
3400 p1 = strchr (p, ':');
3401 if (p1 == NULL)
3402 error (_("Malformed trace status, at %s\n\
3403 Status line: '%s'\n"), p, line);
3404 p3 = strchr (p, ';');
3405 if (p3 == NULL)
3406 p3 = p + strlen (p);
3407 if (strncmp (p, stop_reason_names[trace_buffer_full], p1 - p) == 0)
3408 {
3409 p = unpack_varlen_hex (++p1, &val);
3410 ts->stop_reason = trace_buffer_full;
3411 }
3412 else if (strncmp (p, stop_reason_names[trace_never_run], p1 - p) == 0)
3413 {
3414 p = unpack_varlen_hex (++p1, &val);
3415 ts->stop_reason = trace_never_run;
3416 }
3417 else if (strncmp (p, stop_reason_names[tracepoint_passcount],
3418 p1 - p) == 0)
3419 {
3420 p = unpack_varlen_hex (++p1, &val);
3421 ts->stop_reason = tracepoint_passcount;
3422 ts->stopping_tracepoint = val;
3423 }
3424 else if (strncmp (p, stop_reason_names[trace_stop_command], p1 - p) == 0)
3425 {
3426 p2 = strchr (++p1, ':');
3427 if (!p2 || p2 > p3)
3428 {
3429 /*older style*/
3430 p2 = p1;
3431 }
3432 else if (p2 != p1)
3433 {
3434 ts->stop_desc = (char *) xmalloc (strlen (line));
3435 end = hex2bin (p1, (gdb_byte *) ts->stop_desc, (p2 - p1) / 2);
3436 ts->stop_desc[end] = '\0';
3437 }
3438 else
3439 ts->stop_desc = xstrdup ("");
3440
3441 p = unpack_varlen_hex (++p2, &val);
3442 ts->stop_reason = trace_stop_command;
3443 }
3444 else if (strncmp (p, stop_reason_names[trace_disconnected], p1 - p) == 0)
3445 {
3446 p = unpack_varlen_hex (++p1, &val);
3447 ts->stop_reason = trace_disconnected;
3448 }
3449 else if (strncmp (p, stop_reason_names[tracepoint_error], p1 - p) == 0)
3450 {
3451 p2 = strchr (++p1, ':');
3452 if (p2 != p1)
3453 {
3454 ts->stop_desc = (char *) xmalloc ((p2 - p1) / 2 + 1);
3455 end = hex2bin (p1, (gdb_byte *) ts->stop_desc, (p2 - p1) / 2);
3456 ts->stop_desc[end] = '\0';
3457 }
3458 else
3459 ts->stop_desc = xstrdup ("");
3460
3461 p = unpack_varlen_hex (++p2, &val);
3462 ts->stopping_tracepoint = val;
3463 ts->stop_reason = tracepoint_error;
3464 }
3465 else if (strncmp (p, "tframes", p1 - p) == 0)
3466 {
3467 p = unpack_varlen_hex (++p1, &val);
3468 ts->traceframe_count = val;
3469 }
3470 else if (strncmp (p, "tcreated", p1 - p) == 0)
3471 {
3472 p = unpack_varlen_hex (++p1, &val);
3473 ts->traceframes_created = val;
3474 }
3475 else if (strncmp (p, "tfree", p1 - p) == 0)
3476 {
3477 p = unpack_varlen_hex (++p1, &val);
3478 ts->buffer_free = val;
3479 }
3480 else if (strncmp (p, "tsize", p1 - p) == 0)
3481 {
3482 p = unpack_varlen_hex (++p1, &val);
3483 ts->buffer_size = val;
3484 }
3485 else if (strncmp (p, "disconn", p1 - p) == 0)
3486 {
3487 p = unpack_varlen_hex (++p1, &val);
3488 ts->disconnected_tracing = val;
3489 }
3490 else if (strncmp (p, "circular", p1 - p) == 0)
3491 {
3492 p = unpack_varlen_hex (++p1, &val);
3493 ts->circular_buffer = val;
3494 }
3495 else if (strncmp (p, "starttime", p1 - p) == 0)
3496 {
3497 p = unpack_varlen_hex (++p1, &val);
3498 ts->start_time = val;
3499 }
3500 else if (strncmp (p, "stoptime", p1 - p) == 0)
3501 {
3502 p = unpack_varlen_hex (++p1, &val);
3503 ts->stop_time = val;
3504 }
3505 else if (strncmp (p, "username", p1 - p) == 0)
3506 {
3507 ++p1;
3508 ts->user_name = (char *) xmalloc (strlen (p) / 2);
3509 end = hex2bin (p1, (gdb_byte *) ts->user_name, (p3 - p1) / 2);
3510 ts->user_name[end] = '\0';
3511 p = p3;
3512 }
3513 else if (strncmp (p, "notes", p1 - p) == 0)
3514 {
3515 ++p1;
3516 ts->notes = (char *) xmalloc (strlen (p) / 2);
3517 end = hex2bin (p1, (gdb_byte *) ts->notes, (p3 - p1) / 2);
3518 ts->notes[end] = '\0';
3519 p = p3;
3520 }
3521 else
3522 {
3523 /* Silently skip unknown optional info. */
3524 p_temp = strchr (p1 + 1, ';');
3525 if (p_temp)
3526 p = p_temp;
3527 else
3528 /* Must be at the end. */
3529 break;
3530 }
3531 }
3532 }
3533
3534 void
3535 parse_tracepoint_status (const char *p, struct breakpoint *bp,
3536 struct uploaded_tp *utp)
3537 {
3538 ULONGEST uval;
3539 struct tracepoint *tp = (struct tracepoint *) bp;
3540
3541 p = unpack_varlen_hex (p, &uval);
3542 if (tp)
3543 tp->hit_count += uval;
3544 else
3545 utp->hit_count += uval;
3546 p = unpack_varlen_hex (p + 1, &uval);
3547 if (tp)
3548 tp->traceframe_usage += uval;
3549 else
3550 utp->traceframe_usage += uval;
3551 /* Ignore any extra, allowing for future extensions. */
3552 }
3553
3554 /* Given a line of text defining a part of a tracepoint, parse it into
3555 an "uploaded tracepoint". */
3556
3557 void
3558 parse_tracepoint_definition (const char *line, struct uploaded_tp **utpp)
3559 {
3560 const char *p;
3561 char piece;
3562 ULONGEST num, addr, step, pass, orig_size, xlen, start;
3563 int enabled, end;
3564 enum bptype type;
3565 const char *srctype;
3566 char *cond, *buf;
3567 struct uploaded_tp *utp = NULL;
3568
3569 p = line;
3570 /* Both tracepoint and action definitions start with the same number
3571 and address sequence. */
3572 piece = *p++;
3573 p = unpack_varlen_hex (p, &num);
3574 p++; /* skip a colon */
3575 p = unpack_varlen_hex (p, &addr);
3576 p++; /* skip a colon */
3577 if (piece == 'T')
3578 {
3579 enabled = (*p++ == 'E');
3580 p++; /* skip a colon */
3581 p = unpack_varlen_hex (p, &step);
3582 p++; /* skip a colon */
3583 p = unpack_varlen_hex (p, &pass);
3584 type = bp_tracepoint;
3585 cond = NULL;
3586 /* Thumb through optional fields. */
3587 while (*p == ':')
3588 {
3589 p++; /* skip a colon */
3590 if (*p == 'F')
3591 {
3592 type = bp_fast_tracepoint;
3593 p++;
3594 p = unpack_varlen_hex (p, &orig_size);
3595 }
3596 else if (*p == 'S')
3597 {
3598 type = bp_static_tracepoint;
3599 p++;
3600 }
3601 else if (*p == 'X')
3602 {
3603 p++;
3604 p = unpack_varlen_hex (p, &xlen);
3605 p++; /* skip a comma */
3606 cond = (char *) xmalloc (2 * xlen + 1);
3607 strncpy (cond, p, 2 * xlen);
3608 cond[2 * xlen] = '\0';
3609 p += 2 * xlen;
3610 }
3611 else
3612 warning (_("Unrecognized char '%c' in tracepoint "
3613 "definition, skipping rest"), *p);
3614 }
3615 utp = get_uploaded_tp (num, addr, utpp);
3616 utp->type = type;
3617 utp->enabled = enabled;
3618 utp->step = step;
3619 utp->pass = pass;
3620 utp->cond = cond;
3621 }
3622 else if (piece == 'A')
3623 {
3624 utp = get_uploaded_tp (num, addr, utpp);
3625 VEC_safe_push (char_ptr, utp->actions, xstrdup (p));
3626 }
3627 else if (piece == 'S')
3628 {
3629 utp = get_uploaded_tp (num, addr, utpp);
3630 VEC_safe_push (char_ptr, utp->step_actions, xstrdup (p));
3631 }
3632 else if (piece == 'Z')
3633 {
3634 /* Parse a chunk of source form definition. */
3635 utp = get_uploaded_tp (num, addr, utpp);
3636 srctype = p;
3637 p = strchr (p, ':');
3638 p++; /* skip a colon */
3639 p = unpack_varlen_hex (p, &start);
3640 p++; /* skip a colon */
3641 p = unpack_varlen_hex (p, &xlen);
3642 p++; /* skip a colon */
3643
3644 buf = (char *) alloca (strlen (line));
3645
3646 end = hex2bin (p, (gdb_byte *) buf, strlen (p) / 2);
3647 buf[end] = '\0';
3648
3649 if (startswith (srctype, "at:"))
3650 utp->at_string = xstrdup (buf);
3651 else if (startswith (srctype, "cond:"))
3652 utp->cond_string = xstrdup (buf);
3653 else if (startswith (srctype, "cmd:"))
3654 VEC_safe_push (char_ptr, utp->cmd_strings, xstrdup (buf));
3655 }
3656 else if (piece == 'V')
3657 {
3658 utp = get_uploaded_tp (num, addr, utpp);
3659
3660 parse_tracepoint_status (p, NULL, utp);
3661 }
3662 else
3663 {
3664 /* Don't error out, the target might be sending us optional
3665 info that we don't care about. */
3666 warning (_("Unrecognized tracepoint piece '%c', ignoring"), piece);
3667 }
3668 }
3669
3670 /* Convert a textual description of a trace state variable into an
3671 uploaded object. */
3672
3673 void
3674 parse_tsv_definition (const char *line, struct uploaded_tsv **utsvp)
3675 {
3676 const char *p;
3677 char *buf;
3678 ULONGEST num, initval, builtin;
3679 int end;
3680 struct uploaded_tsv *utsv = NULL;
3681
3682 buf = (char *) alloca (strlen (line));
3683
3684 p = line;
3685 p = unpack_varlen_hex (p, &num);
3686 p++; /* skip a colon */
3687 p = unpack_varlen_hex (p, &initval);
3688 p++; /* skip a colon */
3689 p = unpack_varlen_hex (p, &builtin);
3690 p++; /* skip a colon */
3691 end = hex2bin (p, (gdb_byte *) buf, strlen (p) / 2);
3692 buf[end] = '\0';
3693
3694 utsv = get_uploaded_tsv (num, utsvp);
3695 utsv->initial_value = initval;
3696 utsv->builtin = builtin;
3697 utsv->name = xstrdup (buf);
3698 }
3699
3700 void
3701 free_current_marker (void *arg)
3702 {
3703 struct static_tracepoint_marker **marker_p
3704 = (struct static_tracepoint_marker **) arg;
3705
3706 if (*marker_p != NULL)
3707 {
3708 release_static_tracepoint_marker (*marker_p);
3709 xfree (*marker_p);
3710 }
3711 else
3712 *marker_p = NULL;
3713 }
3714
3715 /* Given a line of text defining a static tracepoint marker, parse it
3716 into a "static tracepoint marker" object. Throws an error is
3717 parsing fails. If PP is non-null, it points to one past the end of
3718 the parsed marker definition. */
3719
3720 void
3721 parse_static_tracepoint_marker_definition (const char *line, const char **pp,
3722 struct static_tracepoint_marker *marker)
3723 {
3724 const char *p, *endp;
3725 ULONGEST addr;
3726 int end;
3727
3728 p = line;
3729 p = unpack_varlen_hex (p, &addr);
3730 p++; /* skip a colon */
3731
3732 marker->gdbarch = target_gdbarch ();
3733 marker->address = (CORE_ADDR) addr;
3734
3735 endp = strchr (p, ':');
3736 if (endp == NULL)
3737 error (_("bad marker definition: %s"), line);
3738
3739 marker->str_id = (char *) xmalloc (endp - p + 1);
3740 end = hex2bin (p, (gdb_byte *) marker->str_id, (endp - p + 1) / 2);
3741 marker->str_id[end] = '\0';
3742
3743 p += 2 * end;
3744 p++; /* skip a colon */
3745
3746 marker->extra = (char *) xmalloc (strlen (p) + 1);
3747 end = hex2bin (p, (gdb_byte *) marker->extra, strlen (p) / 2);
3748 marker->extra[end] = '\0';
3749
3750 if (pp)
3751 *pp = p;
3752 }
3753
3754 /* Release a static tracepoint marker's contents. Note that the
3755 object itself isn't released here. There objects are usually on
3756 the stack. */
3757
3758 void
3759 release_static_tracepoint_marker (struct static_tracepoint_marker *marker)
3760 {
3761 xfree (marker->str_id);
3762 marker->str_id = NULL;
3763 }
3764
3765 /* Print MARKER to gdb_stdout. */
3766
3767 static void
3768 print_one_static_tracepoint_marker (int count,
3769 struct static_tracepoint_marker *marker)
3770 {
3771 struct symbol *sym;
3772
3773 char wrap_indent[80];
3774 char extra_field_indent[80];
3775 struct ui_out *uiout = current_uiout;
3776 VEC(breakpoint_p) *tracepoints;
3777
3778 symtab_and_line sal;
3779 sal.pc = marker->address;
3780
3781 tracepoints = static_tracepoints_here (marker->address);
3782
3783 ui_out_emit_tuple tuple_emitter (uiout, "marker");
3784
3785 /* A counter field to help readability. This is not a stable
3786 identifier! */
3787 uiout->field_int ("count", count);
3788
3789 uiout->field_string ("marker-id", marker->str_id);
3790
3791 uiout->field_fmt ("enabled", "%c",
3792 !VEC_empty (breakpoint_p, tracepoints) ? 'y' : 'n');
3793 uiout->spaces (2);
3794
3795 strcpy (wrap_indent, " ");
3796
3797 if (gdbarch_addr_bit (marker->gdbarch) <= 32)
3798 strcat (wrap_indent, " ");
3799 else
3800 strcat (wrap_indent, " ");
3801
3802 strcpy (extra_field_indent, " ");
3803
3804 uiout->field_core_addr ("addr", marker->gdbarch, marker->address);
3805
3806 sal = find_pc_line (marker->address, 0);
3807 sym = find_pc_sect_function (marker->address, NULL);
3808 if (sym)
3809 {
3810 uiout->text ("in ");
3811 uiout->field_string ("func",
3812 SYMBOL_PRINT_NAME (sym));
3813 uiout->wrap_hint (wrap_indent);
3814 uiout->text (" at ");
3815 }
3816 else
3817 uiout->field_skip ("func");
3818
3819 if (sal.symtab != NULL)
3820 {
3821 uiout->field_string ("file",
3822 symtab_to_filename_for_display (sal.symtab));
3823 uiout->text (":");
3824
3825 if (uiout->is_mi_like_p ())
3826 {
3827 const char *fullname = symtab_to_fullname (sal.symtab);
3828
3829 uiout->field_string ("fullname", fullname);
3830 }
3831 else
3832 uiout->field_skip ("fullname");
3833
3834 uiout->field_int ("line", sal.line);
3835 }
3836 else
3837 {
3838 uiout->field_skip ("fullname");
3839 uiout->field_skip ("line");
3840 }
3841
3842 uiout->text ("\n");
3843 uiout->text (extra_field_indent);
3844 uiout->text (_("Data: \""));
3845 uiout->field_string ("extra-data", marker->extra);
3846 uiout->text ("\"\n");
3847
3848 if (!VEC_empty (breakpoint_p, tracepoints))
3849 {
3850 int ix;
3851 struct breakpoint *b;
3852
3853 {
3854 ui_out_emit_tuple tuple_emitter (uiout, "tracepoints-at");
3855
3856 uiout->text (extra_field_indent);
3857 uiout->text (_("Probed by static tracepoints: "));
3858 for (ix = 0; VEC_iterate(breakpoint_p, tracepoints, ix, b); ix++)
3859 {
3860 if (ix > 0)
3861 uiout->text (", ");
3862 uiout->text ("#");
3863 uiout->field_int ("tracepoint-id", b->number);
3864 }
3865 }
3866
3867 if (uiout->is_mi_like_p ())
3868 uiout->field_int ("number-of-tracepoints",
3869 VEC_length(breakpoint_p, tracepoints));
3870 else
3871 uiout->text ("\n");
3872 }
3873 VEC_free (breakpoint_p, tracepoints);
3874 }
3875
3876 static void
3877 info_static_tracepoint_markers_command (const char *arg, int from_tty)
3878 {
3879 VEC(static_tracepoint_marker_p) *markers;
3880 struct cleanup *old_chain;
3881 struct static_tracepoint_marker *marker;
3882 struct ui_out *uiout = current_uiout;
3883 int i;
3884
3885 /* We don't have to check target_can_use_agent and agent's capability on
3886 static tracepoint here, in order to be compatible with older GDBserver.
3887 We don't check USE_AGENT is true or not, because static tracepoints
3888 don't work without in-process agent, so we don't bother users to type
3889 `set agent on' when to use static tracepoint. */
3890
3891 ui_out_emit_table table_emitter (uiout, 5, -1,
3892 "StaticTracepointMarkersTable");
3893
3894 uiout->table_header (7, ui_left, "counter", "Cnt");
3895
3896 uiout->table_header (40, ui_left, "marker-id", "ID");
3897
3898 uiout->table_header (3, ui_left, "enabled", "Enb");
3899 if (gdbarch_addr_bit (target_gdbarch ()) <= 32)
3900 uiout->table_header (10, ui_left, "addr", "Address");
3901 else
3902 uiout->table_header (18, ui_left, "addr", "Address");
3903 uiout->table_header (40, ui_noalign, "what", "What");
3904
3905 uiout->table_body ();
3906
3907 markers = target_static_tracepoint_markers_by_strid (NULL);
3908 old_chain = make_cleanup (VEC_cleanup (static_tracepoint_marker_p), &markers);
3909
3910 for (i = 0;
3911 VEC_iterate (static_tracepoint_marker_p,
3912 markers, i, marker);
3913 i++)
3914 {
3915 print_one_static_tracepoint_marker (i + 1, marker);
3916 release_static_tracepoint_marker (marker);
3917 }
3918
3919 do_cleanups (old_chain);
3920 }
3921
3922 /* The $_sdata convenience variable is a bit special. We don't know
3923 for sure type of the value until we actually have a chance to fetch
3924 the data --- the size of the object depends on what has been
3925 collected. We solve this by making $_sdata be an internalvar that
3926 creates a new value on access. */
3927
3928 /* Return a new value with the correct type for the sdata object of
3929 the current trace frame. Return a void value if there's no object
3930 available. */
3931
3932 static struct value *
3933 sdata_make_value (struct gdbarch *gdbarch, struct internalvar *var,
3934 void *ignore)
3935 {
3936 LONGEST size;
3937 gdb_byte *buf;
3938
3939 /* We need to read the whole object before we know its size. */
3940 size = target_read_alloc (&current_target,
3941 TARGET_OBJECT_STATIC_TRACE_DATA,
3942 NULL, &buf);
3943 if (size >= 0)
3944 {
3945 struct value *v;
3946 struct type *type;
3947
3948 type = init_vector_type (builtin_type (gdbarch)->builtin_true_char,
3949 size);
3950 v = allocate_value (type);
3951 memcpy (value_contents_raw (v), buf, size);
3952 xfree (buf);
3953 return v;
3954 }
3955 else
3956 return allocate_value (builtin_type (gdbarch)->builtin_void);
3957 }
3958
3959 #if !defined(HAVE_LIBEXPAT)
3960
3961 struct std::unique_ptr<traceframe_info>
3962 parse_traceframe_info (const char *tframe_info)
3963 {
3964 static int have_warned;
3965
3966 if (!have_warned)
3967 {
3968 have_warned = 1;
3969 warning (_("Can not parse XML trace frame info; XML support "
3970 "was disabled at compile time"));
3971 }
3972
3973 return NULL;
3974 }
3975
3976 #else /* HAVE_LIBEXPAT */
3977
3978 #include "xml-support.h"
3979
3980 /* Handle the start of a <memory> element. */
3981
3982 static void
3983 traceframe_info_start_memory (struct gdb_xml_parser *parser,
3984 const struct gdb_xml_element *element,
3985 void *user_data, VEC(gdb_xml_value_s) *attributes)
3986 {
3987 struct traceframe_info *info = (struct traceframe_info *) user_data;
3988 ULONGEST *start_p, *length_p;
3989
3990 start_p
3991 = (ULONGEST *) xml_find_attribute (attributes, "start")->value;
3992 length_p
3993 = (ULONGEST *) xml_find_attribute (attributes, "length")->value;
3994
3995 info->memory.emplace_back (*start_p, *length_p);
3996 }
3997
3998 /* Handle the start of a <tvar> element. */
3999
4000 static void
4001 traceframe_info_start_tvar (struct gdb_xml_parser *parser,
4002 const struct gdb_xml_element *element,
4003 void *user_data,
4004 VEC(gdb_xml_value_s) *attributes)
4005 {
4006 struct traceframe_info *info = (struct traceframe_info *) user_data;
4007 const char *id_attrib
4008 = (const char *) xml_find_attribute (attributes, "id")->value;
4009 int id = gdb_xml_parse_ulongest (parser, id_attrib);
4010
4011 info->tvars.push_back (id);
4012 }
4013
4014 /* The allowed elements and attributes for an XML memory map. */
4015
4016 static const struct gdb_xml_attribute memory_attributes[] = {
4017 { "start", GDB_XML_AF_NONE, gdb_xml_parse_attr_ulongest, NULL },
4018 { "length", GDB_XML_AF_NONE, gdb_xml_parse_attr_ulongest, NULL },
4019 { NULL, GDB_XML_AF_NONE, NULL, NULL }
4020 };
4021
4022 static const struct gdb_xml_attribute tvar_attributes[] = {
4023 { "id", GDB_XML_AF_NONE, NULL, NULL },
4024 { NULL, GDB_XML_AF_NONE, NULL, NULL }
4025 };
4026
4027 static const struct gdb_xml_element traceframe_info_children[] = {
4028 { "memory", memory_attributes, NULL,
4029 GDB_XML_EF_REPEATABLE | GDB_XML_EF_OPTIONAL,
4030 traceframe_info_start_memory, NULL },
4031 { "tvar", tvar_attributes, NULL,
4032 GDB_XML_EF_REPEATABLE | GDB_XML_EF_OPTIONAL,
4033 traceframe_info_start_tvar, NULL },
4034 { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
4035 };
4036
4037 static const struct gdb_xml_element traceframe_info_elements[] = {
4038 { "traceframe-info", NULL, traceframe_info_children, GDB_XML_EF_NONE,
4039 NULL, NULL },
4040 { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
4041 };
4042
4043 /* Parse a traceframe-info XML document. */
4044
4045 traceframe_info_up
4046 parse_traceframe_info (const char *tframe_info)
4047 {
4048 traceframe_info_up result (new traceframe_info);
4049
4050 if (gdb_xml_parse_quick (_("trace frame info"),
4051 "traceframe-info.dtd", traceframe_info_elements,
4052 tframe_info, result.get ()) == 0)
4053 return result;
4054
4055 return NULL;
4056 }
4057
4058 #endif /* HAVE_LIBEXPAT */
4059
4060 /* Returns the traceframe_info object for the current traceframe.
4061 This is where we avoid re-fetching the object from the target if we
4062 already have it cached. */
4063
4064 struct traceframe_info *
4065 get_traceframe_info (void)
4066 {
4067 if (current_traceframe_info == NULL)
4068 current_traceframe_info = target_traceframe_info ();
4069
4070 return current_traceframe_info.get ();
4071 }
4072
4073 /* If the target supports the query, return in RESULT the set of
4074 collected memory in the current traceframe, found within the LEN
4075 bytes range starting at MEMADDR. Returns true if the target
4076 supports the query, otherwise returns false, and RESULT is left
4077 undefined. */
4078
4079 int
4080 traceframe_available_memory (std::vector<mem_range> *result,
4081 CORE_ADDR memaddr, ULONGEST len)
4082 {
4083 struct traceframe_info *info = get_traceframe_info ();
4084
4085 if (info != NULL)
4086 {
4087 result->clear ();
4088
4089 for (mem_range &r : info->memory)
4090 if (mem_ranges_overlap (r.start, r.length, memaddr, len))
4091 {
4092 ULONGEST lo1, hi1, lo2, hi2;
4093
4094 lo1 = memaddr;
4095 hi1 = memaddr + len;
4096
4097 lo2 = r.start;
4098 hi2 = r.start + r.length;
4099
4100 CORE_ADDR start = std::max (lo1, lo2);
4101 int length = std::min (hi1, hi2) - start;
4102
4103 result->emplace_back (start, length);
4104 }
4105
4106 normalize_mem_ranges (result);
4107 return 1;
4108 }
4109
4110 return 0;
4111 }
4112
4113 /* Implementation of `sdata' variable. */
4114
4115 static const struct internalvar_funcs sdata_funcs =
4116 {
4117 sdata_make_value,
4118 NULL,
4119 NULL
4120 };
4121
4122 /* module initialization */
4123 void
4124 _initialize_tracepoint (void)
4125 {
4126 struct cmd_list_element *c;
4127
4128 /* Explicitly create without lookup, since that tries to create a
4129 value with a void typed value, and when we get here, gdbarch
4130 isn't initialized yet. At this point, we're quite sure there
4131 isn't another convenience variable of the same name. */
4132 create_internalvar_type_lazy ("_sdata", &sdata_funcs, NULL);
4133
4134 traceframe_number = -1;
4135 tracepoint_number = -1;
4136
4137 add_info ("scope", info_scope_command,
4138 _("List the variables local to a scope"));
4139
4140 add_cmd ("tracepoints", class_trace,
4141 _("Tracing of program execution without stopping the program."),
4142 &cmdlist);
4143
4144 add_com ("tdump", class_trace, tdump_command,
4145 _("Print everything collected at the current tracepoint."));
4146
4147 c = add_com ("tvariable", class_trace, trace_variable_command,_("\
4148 Define a trace state variable.\n\
4149 Argument is a $-prefixed name, optionally followed\n\
4150 by '=' and an expression that sets the initial value\n\
4151 at the start of tracing."));
4152 set_cmd_completer (c, expression_completer);
4153
4154 add_cmd ("tvariable", class_trace, delete_trace_variable_command, _("\
4155 Delete one or more trace state variables.\n\
4156 Arguments are the names of the variables to delete.\n\
4157 If no arguments are supplied, delete all variables."), &deletelist);
4158 /* FIXME add a trace variable completer. */
4159
4160 add_info ("tvariables", info_tvariables_command, _("\
4161 Status of trace state variables and their values.\n\
4162 "));
4163
4164 add_info ("static-tracepoint-markers",
4165 info_static_tracepoint_markers_command, _("\
4166 List target static tracepoints markers.\n\
4167 "));
4168
4169 add_prefix_cmd ("tfind", class_trace, tfind_command, _("\
4170 Select a trace frame;\n\
4171 No argument means forward by one frame; '-' means backward by one frame."),
4172 &tfindlist, "tfind ", 1, &cmdlist);
4173
4174 add_cmd ("outside", class_trace, tfind_outside_command, _("\
4175 Select a trace frame whose PC is outside the given range (exclusive).\n\
4176 Usage: tfind outside addr1, addr2"),
4177 &tfindlist);
4178
4179 add_cmd ("range", class_trace, tfind_range_command, _("\
4180 Select a trace frame whose PC is in the given range (inclusive).\n\
4181 Usage: tfind range addr1,addr2"),
4182 &tfindlist);
4183
4184 add_cmd ("line", class_trace, tfind_line_command, _("\
4185 Select a trace frame by source line.\n\
4186 Argument can be a line number (with optional source file),\n\
4187 a function name, or '*' followed by an address.\n\
4188 Default argument is 'the next source line that was traced'."),
4189 &tfindlist);
4190
4191 add_cmd ("tracepoint", class_trace, tfind_tracepoint_command, _("\
4192 Select a trace frame by tracepoint number.\n\
4193 Default is the tracepoint for the current trace frame."),
4194 &tfindlist);
4195
4196 add_cmd ("pc", class_trace, tfind_pc_command, _("\
4197 Select a trace frame by PC.\n\
4198 Default is the current PC, or the PC of the current trace frame."),
4199 &tfindlist);
4200
4201 add_cmd ("end", class_trace, tfind_end_command, _("\
4202 De-select any trace frame and resume 'live' debugging."),
4203 &tfindlist);
4204
4205 add_alias_cmd ("none", "end", class_trace, 0, &tfindlist);
4206
4207 add_cmd ("start", class_trace, tfind_start_command,
4208 _("Select the first trace frame in the trace buffer."),
4209 &tfindlist);
4210
4211 add_com ("tstatus", class_trace, tstatus_command,
4212 _("Display the status of the current trace data collection."));
4213
4214 add_com ("tstop", class_trace, tstop_command, _("\
4215 Stop trace data collection.\n\
4216 Usage: tstop [ <notes> ... ]\n\
4217 Any arguments supplied are recorded with the trace as a stop reason and\n\
4218 reported by tstatus (if the target supports trace notes)."));
4219
4220 add_com ("tstart", class_trace, tstart_command, _("\
4221 Start trace data collection.\n\
4222 Usage: tstart [ <notes> ... ]\n\
4223 Any arguments supplied are recorded with the trace as a note and\n\
4224 reported by tstatus (if the target supports trace notes)."));
4225
4226 add_com ("end", class_trace, end_actions_pseudocommand, _("\
4227 Ends a list of commands or actions.\n\
4228 Several GDB commands allow you to enter a list of commands or actions.\n\
4229 Entering \"end\" on a line by itself is the normal way to terminate\n\
4230 such a list.\n\n\
4231 Note: the \"end\" command cannot be used at the gdb prompt."));
4232
4233 add_com ("while-stepping", class_trace, while_stepping_pseudocommand, _("\
4234 Specify single-stepping behavior at a tracepoint.\n\
4235 Argument is number of instructions to trace in single-step mode\n\
4236 following the tracepoint. This command is normally followed by\n\
4237 one or more \"collect\" commands, to specify what to collect\n\
4238 while single-stepping.\n\n\
4239 Note: this command can only be used in a tracepoint \"actions\" list."));
4240
4241 add_com_alias ("ws", "while-stepping", class_alias, 0);
4242 add_com_alias ("stepping", "while-stepping", class_alias, 0);
4243
4244 add_com ("collect", class_trace, collect_pseudocommand, _("\
4245 Specify one or more data items to be collected at a tracepoint.\n\
4246 Accepts a comma-separated list of (one or more) expressions. GDB will\n\
4247 collect all data (variables, registers) referenced by that expression.\n\
4248 Also accepts the following special arguments:\n\
4249 $regs -- all registers.\n\
4250 $args -- all function arguments.\n\
4251 $locals -- all variables local to the block/function scope.\n\
4252 $_sdata -- static tracepoint data (ignored for non-static tracepoints).\n\
4253 Note: this command can only be used in a tracepoint \"actions\" list."));
4254
4255 add_com ("teval", class_trace, teval_pseudocommand, _("\
4256 Specify one or more expressions to be evaluated at a tracepoint.\n\
4257 Accepts a comma-separated list of (one or more) expressions.\n\
4258 The result of each evaluation will be discarded.\n\
4259 Note: this command can only be used in a tracepoint \"actions\" list."));
4260
4261 add_com ("actions", class_trace, actions_command, _("\
4262 Specify the actions to be taken at a tracepoint.\n\
4263 Tracepoint actions may include collecting of specified data,\n\
4264 single-stepping, or enabling/disabling other tracepoints,\n\
4265 depending on target's capabilities."));
4266
4267 default_collect = xstrdup ("");
4268 add_setshow_string_cmd ("default-collect", class_trace,
4269 &default_collect, _("\
4270 Set the list of expressions to collect by default"), _("\
4271 Show the list of expressions to collect by default"), NULL,
4272 NULL, NULL,
4273 &setlist, &showlist);
4274
4275 add_setshow_boolean_cmd ("disconnected-tracing", no_class,
4276 &disconnected_tracing, _("\
4277 Set whether tracing continues after GDB disconnects."), _("\
4278 Show whether tracing continues after GDB disconnects."), _("\
4279 Use this to continue a tracing run even if GDB disconnects\n\
4280 or detaches from the target. You can reconnect later and look at\n\
4281 trace data collected in the meantime."),
4282 set_disconnected_tracing,
4283 NULL,
4284 &setlist,
4285 &showlist);
4286
4287 add_setshow_boolean_cmd ("circular-trace-buffer", no_class,
4288 &circular_trace_buffer, _("\
4289 Set target's use of circular trace buffer."), _("\
4290 Show target's use of circular trace buffer."), _("\
4291 Use this to make the trace buffer into a circular buffer,\n\
4292 which will discard traceframes (oldest first) instead of filling\n\
4293 up and stopping the trace run."),
4294 set_circular_trace_buffer,
4295 NULL,
4296 &setlist,
4297 &showlist);
4298
4299 add_setshow_zuinteger_unlimited_cmd ("trace-buffer-size", no_class,
4300 &trace_buffer_size, _("\
4301 Set requested size of trace buffer."), _("\
4302 Show requested size of trace buffer."), _("\
4303 Use this to choose a size for the trace buffer. Some targets\n\
4304 may have fixed or limited buffer sizes. Specifying \"unlimited\" or -1\n\
4305 disables any attempt to set the buffer size and lets the target choose."),
4306 set_trace_buffer_size, NULL,
4307 &setlist, &showlist);
4308
4309 add_setshow_string_cmd ("trace-user", class_trace,
4310 &trace_user, _("\
4311 Set the user name to use for current and future trace runs"), _("\
4312 Show the user name to use for current and future trace runs"), NULL,
4313 set_trace_user, NULL,
4314 &setlist, &showlist);
4315
4316 add_setshow_string_cmd ("trace-notes", class_trace,
4317 &trace_notes, _("\
4318 Set notes string to use for current and future trace runs"), _("\
4319 Show the notes string to use for current and future trace runs"), NULL,
4320 set_trace_notes, NULL,
4321 &setlist, &showlist);
4322
4323 add_setshow_string_cmd ("trace-stop-notes", class_trace,
4324 &trace_stop_notes, _("\
4325 Set notes string to use for future tstop commands"), _("\
4326 Show the notes string to use for future tstop commands"), NULL,
4327 set_trace_stop_notes, NULL,
4328 &setlist, &showlist);
4329 }
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