[ARC] Add checking for LP_COUNT reg usage, improve error reporting.
[deliverable/binutils-gdb.git] / gdb / probe.c
1 /* Generic static probe support for GDB.
2
3 Copyright (C) 2012-2016 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 "probe.h"
22 #include "command.h"
23 #include "cli/cli-cmds.h"
24 #include "cli/cli-utils.h"
25 #include "objfiles.h"
26 #include "symtab.h"
27 #include "progspace.h"
28 #include "filenames.h"
29 #include "linespec.h"
30 #include "gdb_regex.h"
31 #include "frame.h"
32 #include "arch-utils.h"
33 #include "value.h"
34 #include "ax.h"
35 #include "ax-gdb.h"
36 #include "location.h"
37 #include <ctype.h>
38 #include <algorithm>
39
40 typedef struct bound_probe bound_probe_s;
41 DEF_VEC_O (bound_probe_s);
42
43 \f
44
45 /* A helper for parse_probes that decodes a probe specification in
46 SEARCH_PSPACE. It appends matching SALs to RESULT. */
47
48 static void
49 parse_probes_in_pspace (const struct probe_ops *probe_ops,
50 struct program_space *search_pspace,
51 const char *objfile_namestr,
52 const char *provider,
53 const char *name,
54 struct symtabs_and_lines *result)
55 {
56 struct objfile *objfile;
57
58 ALL_PSPACE_OBJFILES (search_pspace, objfile)
59 {
60 VEC (probe_p) *probes;
61 struct probe *probe;
62 int ix;
63
64 if (!objfile->sf || !objfile->sf->sym_probe_fns)
65 continue;
66
67 if (objfile_namestr
68 && FILENAME_CMP (objfile_name (objfile), objfile_namestr) != 0
69 && FILENAME_CMP (lbasename (objfile_name (objfile)),
70 objfile_namestr) != 0)
71 continue;
72
73 probes = objfile->sf->sym_probe_fns->sym_get_probes (objfile);
74
75 for (ix = 0; VEC_iterate (probe_p, probes, ix, probe); ix++)
76 {
77 struct symtab_and_line *sal;
78
79 if (probe_ops != &probe_ops_any && probe->pops != probe_ops)
80 continue;
81
82 if (provider && strcmp (probe->provider, provider) != 0)
83 continue;
84
85 if (strcmp (probe->name, name) != 0)
86 continue;
87
88 ++result->nelts;
89 result->sals = XRESIZEVEC (struct symtab_and_line, result->sals,
90 result->nelts);
91 sal = &result->sals[result->nelts - 1];
92
93 init_sal (sal);
94
95 sal->pc = get_probe_address (probe, objfile);
96 sal->explicit_pc = 1;
97 sal->section = find_pc_overlay (sal->pc);
98 sal->pspace = search_pspace;
99 sal->probe = probe;
100 sal->objfile = objfile;
101 }
102 }
103 }
104
105 /* See definition in probe.h. */
106
107 struct symtabs_and_lines
108 parse_probes (const struct event_location *location,
109 struct program_space *search_pspace,
110 struct linespec_result *canonical)
111 {
112 char *arg_end, *arg;
113 char *objfile_namestr = NULL, *provider = NULL, *name, *p;
114 struct cleanup *cleanup;
115 struct symtabs_and_lines result;
116 const struct probe_ops *probe_ops;
117 const char *arg_start, *cs;
118
119 result.sals = NULL;
120 result.nelts = 0;
121
122 gdb_assert (event_location_type (location) == PROBE_LOCATION);
123 arg_start = get_probe_location (location);
124
125 cs = arg_start;
126 probe_ops = probe_linespec_to_ops (&cs);
127 if (probe_ops == NULL)
128 error (_("'%s' is not a probe linespec"), arg_start);
129
130 arg = (char *) cs;
131 arg = skip_spaces (arg);
132 if (!*arg)
133 error (_("argument to `%s' missing"), arg_start);
134
135 arg_end = skip_to_space (arg);
136
137 /* We make a copy here so we can write over parts with impunity. */
138 arg = savestring (arg, arg_end - arg);
139 cleanup = make_cleanup (xfree, arg);
140
141 /* Extract each word from the argument, separated by ":"s. */
142 p = strchr (arg, ':');
143 if (p == NULL)
144 {
145 /* This is `-p name'. */
146 name = arg;
147 }
148 else
149 {
150 char *hold = p + 1;
151
152 *p = '\0';
153 p = strchr (hold, ':');
154 if (p == NULL)
155 {
156 /* This is `-p provider:name'. */
157 provider = arg;
158 name = hold;
159 }
160 else
161 {
162 /* This is `-p objfile:provider:name'. */
163 *p = '\0';
164 objfile_namestr = arg;
165 provider = hold;
166 name = p + 1;
167 }
168 }
169
170 if (*name == '\0')
171 error (_("no probe name specified"));
172 if (provider && *provider == '\0')
173 error (_("invalid provider name"));
174 if (objfile_namestr && *objfile_namestr == '\0')
175 error (_("invalid objfile name"));
176
177 if (search_pspace != NULL)
178 {
179 parse_probes_in_pspace (probe_ops, search_pspace, objfile_namestr,
180 provider, name, &result);
181 }
182 else
183 {
184 struct program_space *pspace;
185
186 ALL_PSPACES (pspace)
187 parse_probes_in_pspace (probe_ops, pspace, objfile_namestr,
188 provider, name, &result);
189 }
190
191 if (result.nelts == 0)
192 {
193 throw_error (NOT_FOUND_ERROR,
194 _("No probe matching objfile=`%s', provider=`%s', name=`%s'"),
195 objfile_namestr ? objfile_namestr : _("<any>"),
196 provider ? provider : _("<any>"),
197 name);
198 }
199
200 if (canonical)
201 {
202 char *canon;
203
204 canon = savestring (arg_start, arg_end - arg_start);
205 make_cleanup (xfree, canon);
206 canonical->special_display = 1;
207 canonical->pre_expanded = 1;
208 canonical->location = new_probe_location (canon);
209 }
210
211 do_cleanups (cleanup);
212
213 return result;
214 }
215
216 /* See definition in probe.h. */
217
218 VEC (probe_p) *
219 find_probes_in_objfile (struct objfile *objfile, const char *provider,
220 const char *name)
221 {
222 VEC (probe_p) *probes, *result = NULL;
223 int ix;
224 struct probe *probe;
225
226 if (!objfile->sf || !objfile->sf->sym_probe_fns)
227 return NULL;
228
229 probes = objfile->sf->sym_probe_fns->sym_get_probes (objfile);
230 for (ix = 0; VEC_iterate (probe_p, probes, ix, probe); ix++)
231 {
232 if (strcmp (probe->provider, provider) != 0)
233 continue;
234
235 if (strcmp (probe->name, name) != 0)
236 continue;
237
238 VEC_safe_push (probe_p, result, probe);
239 }
240
241 return result;
242 }
243
244 /* See definition in probe.h. */
245
246 struct bound_probe
247 find_probe_by_pc (CORE_ADDR pc)
248 {
249 struct objfile *objfile;
250 struct bound_probe result;
251
252 result.objfile = NULL;
253 result.probe = NULL;
254
255 ALL_OBJFILES (objfile)
256 {
257 VEC (probe_p) *probes;
258 int ix;
259 struct probe *probe;
260
261 if (!objfile->sf || !objfile->sf->sym_probe_fns
262 || objfile->sect_index_text == -1)
263 continue;
264
265 /* If this proves too inefficient, we can replace with a hash. */
266 probes = objfile->sf->sym_probe_fns->sym_get_probes (objfile);
267 for (ix = 0; VEC_iterate (probe_p, probes, ix, probe); ix++)
268 if (get_probe_address (probe, objfile) == pc)
269 {
270 result.objfile = objfile;
271 result.probe = probe;
272 return result;
273 }
274 }
275
276 return result;
277 }
278
279 \f
280
281 /* Make a vector of probes matching OBJNAME, PROVIDER, and PROBE_NAME.
282 If POPS is not NULL, only probes of this certain probe_ops will match.
283 Each argument is a regexp, or NULL, which matches anything. */
284
285 static VEC (bound_probe_s) *
286 collect_probes (char *objname, char *provider, char *probe_name,
287 const struct probe_ops *pops)
288 {
289 struct objfile *objfile;
290 VEC (bound_probe_s) *result = NULL;
291 struct cleanup *cleanup, *cleanup_temps;
292 regex_t obj_pat, prov_pat, probe_pat;
293
294 cleanup = make_cleanup (VEC_cleanup (bound_probe_s), &result);
295
296 cleanup_temps = make_cleanup (null_cleanup, NULL);
297 if (provider != NULL)
298 compile_rx_or_error (&prov_pat, provider, _("Invalid provider regexp"));
299 if (probe_name != NULL)
300 compile_rx_or_error (&probe_pat, probe_name, _("Invalid probe regexp"));
301 if (objname != NULL)
302 compile_rx_or_error (&obj_pat, objname, _("Invalid object file regexp"));
303
304 ALL_OBJFILES (objfile)
305 {
306 VEC (probe_p) *probes;
307 struct probe *probe;
308 int ix;
309
310 if (! objfile->sf || ! objfile->sf->sym_probe_fns)
311 continue;
312
313 if (objname)
314 {
315 if (regexec (&obj_pat, objfile_name (objfile), 0, NULL, 0) != 0)
316 continue;
317 }
318
319 probes = objfile->sf->sym_probe_fns->sym_get_probes (objfile);
320
321 for (ix = 0; VEC_iterate (probe_p, probes, ix, probe); ix++)
322 {
323 struct bound_probe bound;
324
325 if (pops != NULL && probe->pops != pops)
326 continue;
327
328 if (provider
329 && regexec (&prov_pat, probe->provider, 0, NULL, 0) != 0)
330 continue;
331
332 if (probe_name
333 && regexec (&probe_pat, probe->name, 0, NULL, 0) != 0)
334 continue;
335
336 bound.objfile = objfile;
337 bound.probe = probe;
338 VEC_safe_push (bound_probe_s, result, &bound);
339 }
340 }
341
342 do_cleanups (cleanup_temps);
343 discard_cleanups (cleanup);
344 return result;
345 }
346
347 /* A qsort comparison function for bound_probe_s objects. */
348
349 static int
350 compare_probes (const void *a, const void *b)
351 {
352 const struct bound_probe *pa = (const struct bound_probe *) a;
353 const struct bound_probe *pb = (const struct bound_probe *) b;
354 int v;
355
356 v = strcmp (pa->probe->provider, pb->probe->provider);
357 if (v)
358 return v;
359
360 v = strcmp (pa->probe->name, pb->probe->name);
361 if (v)
362 return v;
363
364 if (pa->probe->address < pb->probe->address)
365 return -1;
366 if (pa->probe->address > pb->probe->address)
367 return 1;
368
369 return strcmp (objfile_name (pa->objfile), objfile_name (pb->objfile));
370 }
371
372 /* Helper function that generate entries in the ui_out table being
373 crafted by `info_probes_for_ops'. */
374
375 static void
376 gen_ui_out_table_header_info (VEC (bound_probe_s) *probes,
377 const struct probe_ops *p)
378 {
379 /* `headings' refers to the names of the columns when printing `info
380 probes'. */
381 VEC (info_probe_column_s) *headings = NULL;
382 struct cleanup *c;
383 info_probe_column_s *column;
384 size_t headings_size;
385 int ix;
386
387 gdb_assert (p != NULL);
388
389 if (p->gen_info_probes_table_header == NULL
390 && p->gen_info_probes_table_values == NULL)
391 return;
392
393 gdb_assert (p->gen_info_probes_table_header != NULL
394 && p->gen_info_probes_table_values != NULL);
395
396 c = make_cleanup (VEC_cleanup (info_probe_column_s), &headings);
397 p->gen_info_probes_table_header (&headings);
398
399 headings_size = VEC_length (info_probe_column_s, headings);
400
401 for (ix = 0;
402 VEC_iterate (info_probe_column_s, headings, ix, column);
403 ++ix)
404 {
405 struct bound_probe *probe;
406 int jx;
407 size_t size_max = strlen (column->print_name);
408
409 for (jx = 0; VEC_iterate (bound_probe_s, probes, jx, probe); ++jx)
410 {
411 /* `probe_fields' refers to the values of each new field that this
412 probe will display. */
413 VEC (const_char_ptr) *probe_fields = NULL;
414 struct cleanup *c2;
415 const char *val;
416 int kx;
417
418 if (probe->probe->pops != p)
419 continue;
420
421 c2 = make_cleanup (VEC_cleanup (const_char_ptr), &probe_fields);
422 p->gen_info_probes_table_values (probe->probe, &probe_fields);
423
424 gdb_assert (VEC_length (const_char_ptr, probe_fields)
425 == headings_size);
426
427 for (kx = 0; VEC_iterate (const_char_ptr, probe_fields, kx, val);
428 ++kx)
429 {
430 /* It is valid to have a NULL value here, which means that the
431 backend does not have something to write and this particular
432 field should be skipped. */
433 if (val == NULL)
434 continue;
435
436 size_max = std::max (strlen (val), size_max);
437 }
438 do_cleanups (c2);
439 }
440
441 ui_out_table_header (current_uiout, size_max, ui_left,
442 column->field_name, column->print_name);
443 }
444
445 do_cleanups (c);
446 }
447
448 /* Helper function to print not-applicable strings for all the extra
449 columns defined in a probe_ops. */
450
451 static void
452 print_ui_out_not_applicables (const struct probe_ops *pops)
453 {
454 struct cleanup *c;
455 VEC (info_probe_column_s) *headings = NULL;
456 info_probe_column_s *column;
457 int ix;
458
459 if (pops->gen_info_probes_table_header == NULL)
460 return;
461
462 c = make_cleanup (VEC_cleanup (info_probe_column_s), &headings);
463 pops->gen_info_probes_table_header (&headings);
464
465 for (ix = 0;
466 VEC_iterate (info_probe_column_s, headings, ix, column);
467 ++ix)
468 ui_out_field_string (current_uiout, column->field_name, _("n/a"));
469
470 do_cleanups (c);
471 }
472
473 /* Helper function to print extra information about a probe and an objfile
474 represented by PROBE. */
475
476 static void
477 print_ui_out_info (struct probe *probe)
478 {
479 int ix;
480 int j = 0;
481 /* `values' refers to the actual values of each new field in the output
482 of `info probe'. `headings' refers to the names of each new field. */
483 VEC (const_char_ptr) *values = NULL;
484 VEC (info_probe_column_s) *headings = NULL;
485 info_probe_column_s *column;
486 struct cleanup *c;
487
488 gdb_assert (probe != NULL);
489 gdb_assert (probe->pops != NULL);
490
491 if (probe->pops->gen_info_probes_table_header == NULL
492 && probe->pops->gen_info_probes_table_values == NULL)
493 return;
494
495 gdb_assert (probe->pops->gen_info_probes_table_header != NULL
496 && probe->pops->gen_info_probes_table_values != NULL);
497
498 c = make_cleanup (VEC_cleanup (info_probe_column_s), &headings);
499 make_cleanup (VEC_cleanup (const_char_ptr), &values);
500
501 probe->pops->gen_info_probes_table_header (&headings);
502 probe->pops->gen_info_probes_table_values (probe, &values);
503
504 gdb_assert (VEC_length (info_probe_column_s, headings)
505 == VEC_length (const_char_ptr, values));
506
507 for (ix = 0;
508 VEC_iterate (info_probe_column_s, headings, ix, column);
509 ++ix)
510 {
511 const char *val = VEC_index (const_char_ptr, values, j++);
512
513 if (val == NULL)
514 ui_out_field_skip (current_uiout, column->field_name);
515 else
516 ui_out_field_string (current_uiout, column->field_name, val);
517 }
518
519 do_cleanups (c);
520 }
521
522 /* Helper function that returns the number of extra fields which POPS will
523 need. */
524
525 static int
526 get_number_extra_fields (const struct probe_ops *pops)
527 {
528 VEC (info_probe_column_s) *headings = NULL;
529 struct cleanup *c;
530 int n;
531
532 if (pops->gen_info_probes_table_header == NULL)
533 return 0;
534
535 c = make_cleanup (VEC_cleanup (info_probe_column_s), &headings);
536 pops->gen_info_probes_table_header (&headings);
537
538 n = VEC_length (info_probe_column_s, headings);
539
540 do_cleanups (c);
541
542 return n;
543 }
544
545 /* Helper function that returns 1 if there is a probe in PROBES
546 featuring the given POPS. It returns 0 otherwise. */
547
548 static int
549 exists_probe_with_pops (VEC (bound_probe_s) *probes,
550 const struct probe_ops *pops)
551 {
552 struct bound_probe *probe;
553 int ix;
554
555 for (ix = 0; VEC_iterate (bound_probe_s, probes, ix, probe); ++ix)
556 if (probe->probe->pops == pops)
557 return 1;
558
559 return 0;
560 }
561
562 /* Helper function that parses a probe linespec of the form [PROVIDER
563 [PROBE [OBJNAME]]] from the provided string STR. */
564
565 static void
566 parse_probe_linespec (const char *str, char **provider,
567 char **probe_name, char **objname)
568 {
569 *probe_name = *objname = NULL;
570
571 *provider = extract_arg_const (&str);
572 if (*provider != NULL)
573 {
574 *probe_name = extract_arg_const (&str);
575 if (*probe_name != NULL)
576 *objname = extract_arg_const (&str);
577 }
578 }
579
580 /* See comment in probe.h. */
581
582 void
583 info_probes_for_ops (const char *arg, int from_tty,
584 const struct probe_ops *pops)
585 {
586 char *provider, *probe_name = NULL, *objname = NULL;
587 struct cleanup *cleanup = make_cleanup (null_cleanup, NULL);
588 VEC (bound_probe_s) *probes;
589 int i, any_found;
590 int ui_out_extra_fields = 0;
591 size_t size_addr;
592 size_t size_name = strlen ("Name");
593 size_t size_objname = strlen ("Object");
594 size_t size_provider = strlen ("Provider");
595 size_t size_type = strlen ("Type");
596 struct bound_probe *probe;
597 struct gdbarch *gdbarch = get_current_arch ();
598
599 parse_probe_linespec (arg, &provider, &probe_name, &objname);
600 make_cleanup (xfree, provider);
601 make_cleanup (xfree, probe_name);
602 make_cleanup (xfree, objname);
603
604 probes = collect_probes (objname, provider, probe_name, pops);
605 make_cleanup (VEC_cleanup (probe_p), &probes);
606
607 if (pops == NULL)
608 {
609 const struct probe_ops *po;
610 int ix;
611
612 /* If the probe_ops is NULL, it means the user has requested a "simple"
613 `info probes', i.e., she wants to print all information about all
614 probes. For that, we have to identify how many extra fields we will
615 need to add in the ui_out table.
616
617 To do that, we iterate over all probe_ops, querying each one about
618 its extra fields, and incrementing `ui_out_extra_fields' to reflect
619 that number. But note that we ignore the probe_ops for which no probes
620 are defined with the given search criteria. */
621
622 for (ix = 0; VEC_iterate (probe_ops_cp, all_probe_ops, ix, po); ++ix)
623 if (exists_probe_with_pops (probes, po))
624 ui_out_extra_fields += get_number_extra_fields (po);
625 }
626 else
627 ui_out_extra_fields = get_number_extra_fields (pops);
628
629 make_cleanup_ui_out_table_begin_end (current_uiout,
630 5 + ui_out_extra_fields,
631 VEC_length (bound_probe_s, probes),
632 "StaticProbes");
633
634 if (!VEC_empty (bound_probe_s, probes))
635 qsort (VEC_address (bound_probe_s, probes),
636 VEC_length (bound_probe_s, probes),
637 sizeof (bound_probe_s), compare_probes);
638
639 /* What's the size of an address in our architecture? */
640 size_addr = gdbarch_addr_bit (gdbarch) == 64 ? 18 : 10;
641
642 /* Determining the maximum size of each field (`type', `provider',
643 `name' and `objname'). */
644 for (i = 0; VEC_iterate (bound_probe_s, probes, i, probe); ++i)
645 {
646 const char *probe_type = probe->probe->pops->type_name (probe->probe);
647
648 size_type = std::max (strlen (probe_type), size_type);
649 size_name = std::max (strlen (probe->probe->name), size_name);
650 size_provider = std::max (strlen (probe->probe->provider), size_provider);
651 size_objname = std::max (strlen (objfile_name (probe->objfile)),
652 size_objname);
653 }
654
655 ui_out_table_header (current_uiout, size_type, ui_left, "type", _("Type"));
656 ui_out_table_header (current_uiout, size_provider, ui_left, "provider",
657 _("Provider"));
658 ui_out_table_header (current_uiout, size_name, ui_left, "name", _("Name"));
659 ui_out_table_header (current_uiout, size_addr, ui_left, "addr", _("Where"));
660
661 if (pops == NULL)
662 {
663 const struct probe_ops *po;
664 int ix;
665
666 /* We have to generate the table header for each new probe type
667 that we will print. Note that this excludes probe types not
668 having any defined probe with the search criteria. */
669 for (ix = 0; VEC_iterate (probe_ops_cp, all_probe_ops, ix, po); ++ix)
670 if (exists_probe_with_pops (probes, po))
671 gen_ui_out_table_header_info (probes, po);
672 }
673 else
674 gen_ui_out_table_header_info (probes, pops);
675
676 ui_out_table_header (current_uiout, size_objname, ui_left, "object",
677 _("Object"));
678 ui_out_table_body (current_uiout);
679
680 for (i = 0; VEC_iterate (bound_probe_s, probes, i, probe); ++i)
681 {
682 struct cleanup *inner;
683 const char *probe_type = probe->probe->pops->type_name (probe->probe);
684
685 inner = make_cleanup_ui_out_tuple_begin_end (current_uiout, "probe");
686
687 ui_out_field_string (current_uiout, "type",probe_type);
688 ui_out_field_string (current_uiout, "provider", probe->probe->provider);
689 ui_out_field_string (current_uiout, "name", probe->probe->name);
690 ui_out_field_core_addr (current_uiout, "addr",
691 probe->probe->arch,
692 get_probe_address (probe->probe, probe->objfile));
693
694 if (pops == NULL)
695 {
696 const struct probe_ops *po;
697 int ix;
698
699 for (ix = 0; VEC_iterate (probe_ops_cp, all_probe_ops, ix, po);
700 ++ix)
701 if (probe->probe->pops == po)
702 print_ui_out_info (probe->probe);
703 else if (exists_probe_with_pops (probes, po))
704 print_ui_out_not_applicables (po);
705 }
706 else
707 print_ui_out_info (probe->probe);
708
709 ui_out_field_string (current_uiout, "object",
710 objfile_name (probe->objfile));
711 ui_out_text (current_uiout, "\n");
712
713 do_cleanups (inner);
714 }
715
716 any_found = !VEC_empty (bound_probe_s, probes);
717 do_cleanups (cleanup);
718
719 if (!any_found)
720 ui_out_message (current_uiout, _("No probes matched.\n"));
721 }
722
723 /* Implementation of the `info probes' command. */
724
725 static void
726 info_probes_command (char *arg, int from_tty)
727 {
728 info_probes_for_ops (arg, from_tty, NULL);
729 }
730
731 /* Implementation of the `enable probes' command. */
732
733 static void
734 enable_probes_command (char *arg, int from_tty)
735 {
736 char *provider, *probe_name = NULL, *objname = NULL;
737 struct cleanup *cleanup = make_cleanup (null_cleanup, NULL);
738 VEC (bound_probe_s) *probes;
739 struct bound_probe *probe;
740 int i;
741
742 parse_probe_linespec ((const char *) arg, &provider, &probe_name, &objname);
743 make_cleanup (xfree, provider);
744 make_cleanup (xfree, probe_name);
745 make_cleanup (xfree, objname);
746
747 probes = collect_probes (objname, provider, probe_name, NULL);
748 if (VEC_empty (bound_probe_s, probes))
749 {
750 ui_out_message (current_uiout, _("No probes matched.\n"));
751 do_cleanups (cleanup);
752 return;
753 }
754
755 /* Enable the selected probes, provided their backends support the
756 notion of enabling a probe. */
757 for (i = 0; VEC_iterate (bound_probe_s, probes, i, probe); ++i)
758 {
759 const struct probe_ops *pops = probe->probe->pops;
760
761 if (pops->enable_probe != NULL)
762 {
763 pops->enable_probe (probe->probe);
764 ui_out_message (current_uiout,
765 _("Probe %s:%s enabled.\n"),
766 probe->probe->provider, probe->probe->name);
767 }
768 else
769 ui_out_message (current_uiout,
770 _("Probe %s:%s cannot be enabled.\n"),
771 probe->probe->provider, probe->probe->name);
772 }
773
774 do_cleanups (cleanup);
775 }
776
777 /* Implementation of the `disable probes' command. */
778
779 static void
780 disable_probes_command (char *arg, int from_tty)
781 {
782 char *provider, *probe_name = NULL, *objname = NULL;
783 struct cleanup *cleanup = make_cleanup (null_cleanup, NULL);
784 VEC (bound_probe_s) *probes;
785 struct bound_probe *probe;
786 int i;
787
788 parse_probe_linespec ((const char *) arg, &provider, &probe_name, &objname);
789 make_cleanup (xfree, provider);
790 make_cleanup (xfree, probe_name);
791 make_cleanup (xfree, objname);
792
793 probes = collect_probes (objname, provider, probe_name, NULL /* pops */);
794 if (VEC_empty (bound_probe_s, probes))
795 {
796 ui_out_message (current_uiout, _("No probes matched.\n"));
797 do_cleanups (cleanup);
798 return;
799 }
800
801 /* Disable the selected probes, provided their backends support the
802 notion of enabling a probe. */
803 for (i = 0; VEC_iterate (bound_probe_s, probes, i, probe); ++i)
804 {
805 const struct probe_ops *pops = probe->probe->pops;
806
807 if (pops->disable_probe != NULL)
808 {
809 pops->disable_probe (probe->probe);
810 ui_out_message (current_uiout,
811 _("Probe %s:%s disabled.\n"),
812 probe->probe->provider, probe->probe->name);
813 }
814 else
815 ui_out_message (current_uiout,
816 _("Probe %s:%s cannot be disabled.\n"),
817 probe->probe->provider, probe->probe->name);
818 }
819
820 do_cleanups (cleanup);
821 }
822
823 /* See comments in probe.h. */
824
825 CORE_ADDR
826 get_probe_address (struct probe *probe, struct objfile *objfile)
827 {
828 return probe->pops->get_probe_address (probe, objfile);
829 }
830
831 /* See comments in probe.h. */
832
833 unsigned
834 get_probe_argument_count (struct probe *probe, struct frame_info *frame)
835 {
836 return probe->pops->get_probe_argument_count (probe, frame);
837 }
838
839 /* See comments in probe.h. */
840
841 int
842 can_evaluate_probe_arguments (struct probe *probe)
843 {
844 return probe->pops->can_evaluate_probe_arguments (probe);
845 }
846
847 /* See comments in probe.h. */
848
849 struct value *
850 evaluate_probe_argument (struct probe *probe, unsigned n,
851 struct frame_info *frame)
852 {
853 return probe->pops->evaluate_probe_argument (probe, n, frame);
854 }
855
856 /* See comments in probe.h. */
857
858 struct value *
859 probe_safe_evaluate_at_pc (struct frame_info *frame, unsigned n)
860 {
861 struct bound_probe probe;
862 unsigned n_args;
863
864 probe = find_probe_by_pc (get_frame_pc (frame));
865 if (!probe.probe)
866 return NULL;
867
868 n_args = get_probe_argument_count (probe.probe, frame);
869 if (n >= n_args)
870 return NULL;
871
872 return evaluate_probe_argument (probe.probe, n, frame);
873 }
874
875 /* See comment in probe.h. */
876
877 const struct probe_ops *
878 probe_linespec_to_ops (const char **linespecp)
879 {
880 int ix;
881 const struct probe_ops *probe_ops;
882
883 for (ix = 0; VEC_iterate (probe_ops_cp, all_probe_ops, ix, probe_ops); ix++)
884 if (probe_ops->is_linespec (linespecp))
885 return probe_ops;
886
887 return NULL;
888 }
889
890 /* See comment in probe.h. */
891
892 int
893 probe_is_linespec_by_keyword (const char **linespecp, const char *const *keywords)
894 {
895 const char *s = *linespecp;
896 const char *const *csp;
897
898 for (csp = keywords; *csp; csp++)
899 {
900 const char *keyword = *csp;
901 size_t len = strlen (keyword);
902
903 if (strncmp (s, keyword, len) == 0 && isspace (s[len]))
904 {
905 *linespecp += len + 1;
906 return 1;
907 }
908 }
909
910 return 0;
911 }
912
913 /* Implementation of `is_linespec' method for `struct probe_ops'. */
914
915 static int
916 probe_any_is_linespec (const char **linespecp)
917 {
918 static const char *const keywords[] = { "-p", "-probe", NULL };
919
920 return probe_is_linespec_by_keyword (linespecp, keywords);
921 }
922
923 /* Dummy method used for `probe_ops_any'. */
924
925 static void
926 probe_any_get_probes (VEC (probe_p) **probesp, struct objfile *objfile)
927 {
928 /* No probes can be provided by this dummy backend. */
929 }
930
931 /* Operations associated with a generic probe. */
932
933 const struct probe_ops probe_ops_any =
934 {
935 probe_any_is_linespec,
936 probe_any_get_probes,
937 };
938
939 /* See comments in probe.h. */
940
941 struct cmd_list_element **
942 info_probes_cmdlist_get (void)
943 {
944 static struct cmd_list_element *info_probes_cmdlist;
945
946 if (info_probes_cmdlist == NULL)
947 add_prefix_cmd ("probes", class_info, info_probes_command,
948 _("\
949 Show available static probes.\n\
950 Usage: info probes [all|TYPE [ARGS]]\n\
951 TYPE specifies the type of the probe, and can be one of the following:\n\
952 - stap\n\
953 If you specify TYPE, there may be additional arguments needed by the\n\
954 subcommand.\n\
955 If you do not specify any argument, or specify `all', then the command\n\
956 will show information about all types of probes."),
957 &info_probes_cmdlist, "info probes ",
958 0/*allow-unknown*/, &infolist);
959
960 return &info_probes_cmdlist;
961 }
962
963 \f
964
965 /* This is called to compute the value of one of the $_probe_arg*
966 convenience variables. */
967
968 static struct value *
969 compute_probe_arg (struct gdbarch *arch, struct internalvar *ivar,
970 void *data)
971 {
972 struct frame_info *frame = get_selected_frame (_("No frame selected"));
973 CORE_ADDR pc = get_frame_pc (frame);
974 int sel = (int) (uintptr_t) data;
975 struct bound_probe pc_probe;
976 const struct sym_probe_fns *pc_probe_fns;
977 unsigned n_args;
978
979 /* SEL == -1 means "_probe_argc". */
980 gdb_assert (sel >= -1);
981
982 pc_probe = find_probe_by_pc (pc);
983 if (pc_probe.probe == NULL)
984 error (_("No probe at PC %s"), core_addr_to_string (pc));
985
986 n_args = get_probe_argument_count (pc_probe.probe, frame);
987 if (sel == -1)
988 return value_from_longest (builtin_type (arch)->builtin_int, n_args);
989
990 if (sel >= n_args)
991 error (_("Invalid probe argument %d -- probe has %u arguments available"),
992 sel, n_args);
993
994 return evaluate_probe_argument (pc_probe.probe, sel, frame);
995 }
996
997 /* This is called to compile one of the $_probe_arg* convenience
998 variables into an agent expression. */
999
1000 static void
1001 compile_probe_arg (struct internalvar *ivar, struct agent_expr *expr,
1002 struct axs_value *value, void *data)
1003 {
1004 CORE_ADDR pc = expr->scope;
1005 int sel = (int) (uintptr_t) data;
1006 struct bound_probe pc_probe;
1007 const struct sym_probe_fns *pc_probe_fns;
1008 int n_args;
1009 struct frame_info *frame = get_selected_frame (NULL);
1010
1011 /* SEL == -1 means "_probe_argc". */
1012 gdb_assert (sel >= -1);
1013
1014 pc_probe = find_probe_by_pc (pc);
1015 if (pc_probe.probe == NULL)
1016 error (_("No probe at PC %s"), core_addr_to_string (pc));
1017
1018 n_args = get_probe_argument_count (pc_probe.probe, frame);
1019
1020 if (sel == -1)
1021 {
1022 value->kind = axs_rvalue;
1023 value->type = builtin_type (expr->gdbarch)->builtin_int;
1024 ax_const_l (expr, n_args);
1025 return;
1026 }
1027
1028 gdb_assert (sel >= 0);
1029 if (sel >= n_args)
1030 error (_("Invalid probe argument %d -- probe has %d arguments available"),
1031 sel, n_args);
1032
1033 pc_probe.probe->pops->compile_to_ax (pc_probe.probe, expr, value, sel);
1034 }
1035
1036 static const struct internalvar_funcs probe_funcs =
1037 {
1038 compute_probe_arg,
1039 compile_probe_arg,
1040 NULL
1041 };
1042
1043
1044 VEC (probe_ops_cp) *all_probe_ops;
1045
1046 void _initialize_probe (void);
1047
1048 void
1049 _initialize_probe (void)
1050 {
1051 VEC_safe_push (probe_ops_cp, all_probe_ops, &probe_ops_any);
1052
1053 create_internalvar_type_lazy ("_probe_argc", &probe_funcs,
1054 (void *) (uintptr_t) -1);
1055 create_internalvar_type_lazy ("_probe_arg0", &probe_funcs,
1056 (void *) (uintptr_t) 0);
1057 create_internalvar_type_lazy ("_probe_arg1", &probe_funcs,
1058 (void *) (uintptr_t) 1);
1059 create_internalvar_type_lazy ("_probe_arg2", &probe_funcs,
1060 (void *) (uintptr_t) 2);
1061 create_internalvar_type_lazy ("_probe_arg3", &probe_funcs,
1062 (void *) (uintptr_t) 3);
1063 create_internalvar_type_lazy ("_probe_arg4", &probe_funcs,
1064 (void *) (uintptr_t) 4);
1065 create_internalvar_type_lazy ("_probe_arg5", &probe_funcs,
1066 (void *) (uintptr_t) 5);
1067 create_internalvar_type_lazy ("_probe_arg6", &probe_funcs,
1068 (void *) (uintptr_t) 6);
1069 create_internalvar_type_lazy ("_probe_arg7", &probe_funcs,
1070 (void *) (uintptr_t) 7);
1071 create_internalvar_type_lazy ("_probe_arg8", &probe_funcs,
1072 (void *) (uintptr_t) 8);
1073 create_internalvar_type_lazy ("_probe_arg9", &probe_funcs,
1074 (void *) (uintptr_t) 9);
1075 create_internalvar_type_lazy ("_probe_arg10", &probe_funcs,
1076 (void *) (uintptr_t) 10);
1077 create_internalvar_type_lazy ("_probe_arg11", &probe_funcs,
1078 (void *) (uintptr_t) 11);
1079
1080 add_cmd ("all", class_info, info_probes_command,
1081 _("\
1082 Show information about all type of probes."),
1083 info_probes_cmdlist_get ());
1084
1085 add_cmd ("probes", class_breakpoint, enable_probes_command, _("\
1086 Enable probes.\n\
1087 Usage: enable probes [PROVIDER [NAME [OBJECT]]]\n\
1088 Each argument is a regular expression, used to select probes.\n\
1089 PROVIDER matches probe provider names.\n\
1090 NAME matches the probe names.\n\
1091 OBJECT matches the executable or shared library name.\n\
1092 If you do not specify any argument then the command will enable\n\
1093 all defined probes."),
1094 &enablelist);
1095
1096 add_cmd ("probes", class_breakpoint, disable_probes_command, _("\
1097 Disable probes.\n\
1098 Usage: disable probes [PROVIDER [NAME [OBJECT]]]\n\
1099 Each argument is a regular expression, used to select probes.\n\
1100 PROVIDER matches probe provider names.\n\
1101 NAME matches the probe names.\n\
1102 OBJECT matches the executable or shared library name.\n\
1103 If you do not specify any argument then the command will disable\n\
1104 all defined probes."),
1105 &disablelist);
1106
1107 }
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