]> git.ipfire.org Git - thirdparty/binutils-gdb.git/blob - gdb/break-catch-syscall.c
Update copyright year range in all GDB files
[thirdparty/binutils-gdb.git] / gdb / break-catch-syscall.c
1 /* Everything about syscall catchpoints, for GDB.
2
3 Copyright (C) 2009-2018 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 <ctype.h>
22 #include "breakpoint.h"
23 #include "gdbcmd.h"
24 #include "inferior.h"
25 #include "cli/cli-utils.h"
26 #include "annotate.h"
27 #include "mi/mi-common.h"
28 #include "valprint.h"
29 #include "arch-utils.h"
30 #include "observer.h"
31 #include "xml-syscall.h"
32
33 /* An instance of this type is used to represent a syscall catchpoint.
34 A breakpoint is really of this type iff its ops pointer points to
35 CATCH_SYSCALL_BREAKPOINT_OPS. */
36
37 struct syscall_catchpoint : public breakpoint
38 {
39 /* Syscall numbers used for the 'catch syscall' feature. If no
40 syscall has been specified for filtering, it is empty.
41 Otherwise, it holds a list of all syscalls to be caught. */
42 std::vector<int> syscalls_to_be_caught;
43 };
44
45 static const struct inferior_data *catch_syscall_inferior_data = NULL;
46
47 struct catch_syscall_inferior_data
48 {
49 /* We keep a count of the number of times the user has requested a
50 particular syscall to be tracked, and pass this information to the
51 target. This lets capable targets implement filtering directly. */
52
53 /* Number of times that "any" syscall is requested. */
54 int any_syscall_count;
55
56 /* Count of each system call. */
57 std::vector<int> syscalls_counts;
58
59 /* This counts all syscall catch requests, so we can readily determine
60 if any catching is necessary. */
61 int total_syscalls_count;
62 };
63
64 static struct catch_syscall_inferior_data *
65 get_catch_syscall_inferior_data (struct inferior *inf)
66 {
67 struct catch_syscall_inferior_data *inf_data;
68
69 inf_data = ((struct catch_syscall_inferior_data *)
70 inferior_data (inf, catch_syscall_inferior_data));
71 if (inf_data == NULL)
72 {
73 inf_data = new struct catch_syscall_inferior_data ();
74 set_inferior_data (inf, catch_syscall_inferior_data, inf_data);
75 }
76
77 return inf_data;
78 }
79
80 static void
81 catch_syscall_inferior_data_cleanup (struct inferior *inf, void *arg)
82 {
83 struct catch_syscall_inferior_data *inf_data
84 = (struct catch_syscall_inferior_data *) arg;
85 delete inf_data;
86 }
87
88
89 /* Implement the "insert" breakpoint_ops method for syscall
90 catchpoints. */
91
92 static int
93 insert_catch_syscall (struct bp_location *bl)
94 {
95 struct syscall_catchpoint *c = (struct syscall_catchpoint *) bl->owner;
96 struct inferior *inf = current_inferior ();
97 struct catch_syscall_inferior_data *inf_data
98 = get_catch_syscall_inferior_data (inf);
99
100 ++inf_data->total_syscalls_count;
101 if (c->syscalls_to_be_caught.empty ())
102 ++inf_data->any_syscall_count;
103 else
104 {
105 for (int iter : c->syscalls_to_be_caught)
106 {
107 if (iter >= inf_data->syscalls_counts.size ())
108 inf_data->syscalls_counts.resize (iter + 1);
109 ++inf_data->syscalls_counts[iter];
110 }
111 }
112
113 return target_set_syscall_catchpoint (ptid_get_pid (inferior_ptid),
114 inf_data->total_syscalls_count != 0,
115 inf_data->any_syscall_count,
116 inf_data->syscalls_counts);
117 }
118
119 /* Implement the "remove" breakpoint_ops method for syscall
120 catchpoints. */
121
122 static int
123 remove_catch_syscall (struct bp_location *bl, enum remove_bp_reason reason)
124 {
125 struct syscall_catchpoint *c = (struct syscall_catchpoint *) bl->owner;
126 struct inferior *inf = current_inferior ();
127 struct catch_syscall_inferior_data *inf_data
128 = get_catch_syscall_inferior_data (inf);
129
130 --inf_data->total_syscalls_count;
131 if (c->syscalls_to_be_caught.empty ())
132 --inf_data->any_syscall_count;
133 else
134 {
135 for (int iter : c->syscalls_to_be_caught)
136 {
137 if (iter >= inf_data->syscalls_counts.size ())
138 /* Shouldn't happen. */
139 continue;
140 --inf_data->syscalls_counts[iter];
141 }
142 }
143
144 return target_set_syscall_catchpoint (ptid_get_pid (inferior_ptid),
145 inf_data->total_syscalls_count != 0,
146 inf_data->any_syscall_count,
147 inf_data->syscalls_counts);
148 }
149
150 /* Implement the "breakpoint_hit" breakpoint_ops method for syscall
151 catchpoints. */
152
153 static int
154 breakpoint_hit_catch_syscall (const struct bp_location *bl,
155 const address_space *aspace, CORE_ADDR bp_addr,
156 const struct target_waitstatus *ws)
157 {
158 /* We must check if we are catching specific syscalls in this
159 breakpoint. If we are, then we must guarantee that the called
160 syscall is the same syscall we are catching. */
161 int syscall_number = 0;
162 const struct syscall_catchpoint *c
163 = (const struct syscall_catchpoint *) bl->owner;
164
165 if (ws->kind != TARGET_WAITKIND_SYSCALL_ENTRY
166 && ws->kind != TARGET_WAITKIND_SYSCALL_RETURN)
167 return 0;
168
169 syscall_number = ws->value.syscall_number;
170
171 /* Now, checking if the syscall is the same. */
172 if (!c->syscalls_to_be_caught.empty ())
173 {
174 for (int iter : c->syscalls_to_be_caught)
175 if (syscall_number == iter)
176 return 1;
177
178 return 0;
179 }
180
181 return 1;
182 }
183
184 /* Implement the "print_it" breakpoint_ops method for syscall
185 catchpoints. */
186
187 static enum print_stop_action
188 print_it_catch_syscall (bpstat bs)
189 {
190 struct ui_out *uiout = current_uiout;
191 struct breakpoint *b = bs->breakpoint_at;
192 /* These are needed because we want to know in which state a
193 syscall is. It can be in the TARGET_WAITKIND_SYSCALL_ENTRY
194 or TARGET_WAITKIND_SYSCALL_RETURN, and depending on it we
195 must print "called syscall" or "returned from syscall". */
196 ptid_t ptid;
197 struct target_waitstatus last;
198 struct syscall s;
199 struct gdbarch *gdbarch = bs->bp_location_at->gdbarch;
200
201 get_last_target_status (&ptid, &last);
202
203 get_syscall_by_number (gdbarch, last.value.syscall_number, &s);
204
205 annotate_catchpoint (b->number);
206 maybe_print_thread_hit_breakpoint (uiout);
207
208 if (b->disposition == disp_del)
209 uiout->text ("Temporary catchpoint ");
210 else
211 uiout->text ("Catchpoint ");
212 if (uiout->is_mi_like_p ())
213 {
214 uiout->field_string ("reason",
215 async_reason_lookup (last.kind == TARGET_WAITKIND_SYSCALL_ENTRY
216 ? EXEC_ASYNC_SYSCALL_ENTRY
217 : EXEC_ASYNC_SYSCALL_RETURN));
218 uiout->field_string ("disp", bpdisp_text (b->disposition));
219 }
220 uiout->field_int ("bkptno", b->number);
221
222 if (last.kind == TARGET_WAITKIND_SYSCALL_ENTRY)
223 uiout->text (" (call to syscall ");
224 else
225 uiout->text (" (returned from syscall ");
226
227 if (s.name == NULL || uiout->is_mi_like_p ())
228 uiout->field_int ("syscall-number", last.value.syscall_number);
229 if (s.name != NULL)
230 uiout->field_string ("syscall-name", s.name);
231
232 uiout->text ("), ");
233
234 return PRINT_SRC_AND_LOC;
235 }
236
237 /* Implement the "print_one" breakpoint_ops method for syscall
238 catchpoints. */
239
240 static void
241 print_one_catch_syscall (struct breakpoint *b,
242 struct bp_location **last_loc)
243 {
244 struct syscall_catchpoint *c = (struct syscall_catchpoint *) b;
245 struct value_print_options opts;
246 struct ui_out *uiout = current_uiout;
247 struct gdbarch *gdbarch = b->loc->gdbarch;
248
249 get_user_print_options (&opts);
250 /* Field 4, the address, is omitted (which makes the columns not
251 line up too nicely with the headers, but the effect is relatively
252 readable). */
253 if (opts.addressprint)
254 uiout->field_skip ("addr");
255 annotate_field (5);
256
257 if (c->syscalls_to_be_caught.size () > 1)
258 uiout->text ("syscalls \"");
259 else
260 uiout->text ("syscall \"");
261
262 if (!c->syscalls_to_be_caught.empty ())
263 {
264 char *text = xstrprintf ("%s", "");
265
266 for (int iter : c->syscalls_to_be_caught)
267 {
268 char *x = text;
269 struct syscall s;
270 get_syscall_by_number (gdbarch, iter, &s);
271
272 if (s.name != NULL)
273 text = xstrprintf ("%s%s, ", text, s.name);
274 else
275 text = xstrprintf ("%s%d, ", text, iter);
276
277 /* We have to xfree the last 'text' (now stored at 'x')
278 because xstrprintf dynamically allocates new space for it
279 on every call. */
280 xfree (x);
281 }
282 /* Remove the last comma. */
283 text[strlen (text) - 2] = '\0';
284 uiout->field_string ("what", text);
285 }
286 else
287 uiout->field_string ("what", "<any syscall>");
288 uiout->text ("\" ");
289
290 if (uiout->is_mi_like_p ())
291 uiout->field_string ("catch-type", "syscall");
292 }
293
294 /* Implement the "print_mention" breakpoint_ops method for syscall
295 catchpoints. */
296
297 static void
298 print_mention_catch_syscall (struct breakpoint *b)
299 {
300 struct syscall_catchpoint *c = (struct syscall_catchpoint *) b;
301 struct gdbarch *gdbarch = b->loc->gdbarch;
302
303 if (!c->syscalls_to_be_caught.empty ())
304 {
305 if (c->syscalls_to_be_caught.size () > 1)
306 printf_filtered (_("Catchpoint %d (syscalls"), b->number);
307 else
308 printf_filtered (_("Catchpoint %d (syscall"), b->number);
309
310 for (int iter : c->syscalls_to_be_caught)
311 {
312 struct syscall s;
313 get_syscall_by_number (gdbarch, iter, &s);
314
315 if (s.name != NULL)
316 printf_filtered (" '%s' [%d]", s.name, s.number);
317 else
318 printf_filtered (" %d", s.number);
319 }
320 printf_filtered (")");
321 }
322 else
323 printf_filtered (_("Catchpoint %d (any syscall)"),
324 b->number);
325 }
326
327 /* Implement the "print_recreate" breakpoint_ops method for syscall
328 catchpoints. */
329
330 static void
331 print_recreate_catch_syscall (struct breakpoint *b, struct ui_file *fp)
332 {
333 struct syscall_catchpoint *c = (struct syscall_catchpoint *) b;
334 struct gdbarch *gdbarch = b->loc->gdbarch;
335
336 fprintf_unfiltered (fp, "catch syscall");
337
338 for (int iter : c->syscalls_to_be_caught)
339 {
340 struct syscall s;
341
342 get_syscall_by_number (gdbarch, iter, &s);
343 if (s.name != NULL)
344 fprintf_unfiltered (fp, " %s", s.name);
345 else
346 fprintf_unfiltered (fp, " %d", s.number);
347 }
348
349 print_recreate_thread (b, fp);
350 }
351
352 /* The breakpoint_ops structure to be used in syscall catchpoints. */
353
354 static struct breakpoint_ops catch_syscall_breakpoint_ops;
355
356 /* Returns non-zero if 'b' is a syscall catchpoint. */
357
358 static int
359 syscall_catchpoint_p (struct breakpoint *b)
360 {
361 return (b->ops == &catch_syscall_breakpoint_ops);
362 }
363
364 static void
365 create_syscall_event_catchpoint (int tempflag, std::vector<int> &&filter,
366 const struct breakpoint_ops *ops)
367 {
368 struct gdbarch *gdbarch = get_current_arch ();
369
370 std::unique_ptr<syscall_catchpoint> c (new syscall_catchpoint ());
371 init_catchpoint (c.get (), gdbarch, tempflag, NULL, ops);
372 c->syscalls_to_be_caught = std::move (filter);
373
374 install_breakpoint (0, std::move (c), 1);
375 }
376
377 /* Splits the argument using space as delimiter. */
378
379 static std::vector<int>
380 catch_syscall_split_args (const char *arg)
381 {
382 std::vector<int> result;
383 struct gdbarch *gdbarch = target_gdbarch ();
384
385 while (*arg != '\0')
386 {
387 int i, syscall_number;
388 char *endptr;
389 char cur_name[128];
390 struct syscall s;
391
392 /* Skip whitespace. */
393 arg = skip_spaces (arg);
394
395 for (i = 0; i < 127 && arg[i] && !isspace (arg[i]); ++i)
396 cur_name[i] = arg[i];
397 cur_name[i] = '\0';
398 arg += i;
399
400 /* Check if the user provided a syscall name, group, or a number. */
401 syscall_number = (int) strtol (cur_name, &endptr, 0);
402 if (*endptr == '\0')
403 {
404 get_syscall_by_number (gdbarch, syscall_number, &s);
405 result.push_back (s.number);
406 }
407 else if (startswith (cur_name, "g:")
408 || startswith (cur_name, "group:"))
409 {
410 /* We have a syscall group. Let's expand it into a syscall
411 list before inserting. */
412 struct syscall *syscall_list;
413 const char *group_name;
414
415 /* Skip over "g:" and "group:" prefix strings. */
416 group_name = strchr (cur_name, ':') + 1;
417
418 syscall_list = get_syscalls_by_group (gdbarch, group_name);
419
420 if (syscall_list == NULL)
421 error (_("Unknown syscall group '%s'."), group_name);
422
423 for (i = 0; syscall_list[i].name != NULL; i++)
424 {
425 /* Insert each syscall that are part of the group. No
426 need to check if it is valid. */
427 result.push_back (syscall_list[i].number);
428 }
429
430 xfree (syscall_list);
431 }
432 else
433 {
434 /* We have a name. Let's check if it's valid and convert it
435 to a number. */
436 get_syscall_by_name (gdbarch, cur_name, &s);
437
438 if (s.number == UNKNOWN_SYSCALL)
439 /* Here we have to issue an error instead of a warning,
440 because GDB cannot do anything useful if there's no
441 syscall number to be caught. */
442 error (_("Unknown syscall name '%s'."), cur_name);
443
444 /* Ok, it's valid. */
445 result.push_back (s.number);
446 }
447 }
448
449 return result;
450 }
451
452 /* Implement the "catch syscall" command. */
453
454 static void
455 catch_syscall_command_1 (const char *arg, int from_tty,
456 struct cmd_list_element *command)
457 {
458 int tempflag;
459 std::vector<int> filter;
460 struct syscall s;
461 struct gdbarch *gdbarch = get_current_arch ();
462
463 /* Checking if the feature if supported. */
464 if (gdbarch_get_syscall_number_p (gdbarch) == 0)
465 error (_("The feature 'catch syscall' is not supported on \
466 this architecture yet."));
467
468 tempflag = get_cmd_context (command) == CATCH_TEMPORARY;
469
470 arg = skip_spaces (arg);
471
472 /* We need to do this first "dummy" translation in order
473 to get the syscall XML file loaded or, most important,
474 to display a warning to the user if there's no XML file
475 for his/her architecture. */
476 get_syscall_by_number (gdbarch, 0, &s);
477
478 /* The allowed syntax is:
479 catch syscall
480 catch syscall <name | number> [<name | number> ... <name | number>]
481
482 Let's check if there's a syscall name. */
483
484 if (arg != NULL)
485 filter = catch_syscall_split_args (arg);
486
487 create_syscall_event_catchpoint (tempflag, std::move (filter),
488 &catch_syscall_breakpoint_ops);
489 }
490
491
492 /* Returns 0 if 'bp' is NOT a syscall catchpoint,
493 non-zero otherwise. */
494 static int
495 is_syscall_catchpoint_enabled (struct breakpoint *bp)
496 {
497 if (syscall_catchpoint_p (bp)
498 && bp->enable_state != bp_disabled
499 && bp->enable_state != bp_call_disabled)
500 return 1;
501 else
502 return 0;
503 }
504
505 int
506 catch_syscall_enabled (void)
507 {
508 struct catch_syscall_inferior_data *inf_data
509 = get_catch_syscall_inferior_data (current_inferior ());
510
511 return inf_data->total_syscalls_count != 0;
512 }
513
514 /* Helper function for catching_syscall_number. If B is a syscall
515 catchpoint for SYSCALL_NUMBER, return 1 (which will make
516 'breakpoint_find_if' return). Otherwise, return 0. */
517
518 static int
519 catching_syscall_number_1 (struct breakpoint *b,
520 void *data)
521 {
522 int syscall_number = (int) (uintptr_t) data;
523
524 if (is_syscall_catchpoint_enabled (b))
525 {
526 struct syscall_catchpoint *c = (struct syscall_catchpoint *) b;
527
528 if (!c->syscalls_to_be_caught.empty ())
529 {
530 for (int iter : c->syscalls_to_be_caught)
531 if (syscall_number == iter)
532 return 1;
533 }
534 else
535 return 1;
536 }
537
538 return 0;
539 }
540
541 int
542 catching_syscall_number (int syscall_number)
543 {
544 struct breakpoint *b = breakpoint_find_if (catching_syscall_number_1,
545 (void *) (uintptr_t) syscall_number);
546
547 return b != NULL;
548 }
549
550 /* Complete syscall names. Used by "catch syscall". */
551
552 static void
553 catch_syscall_completer (struct cmd_list_element *cmd,
554 completion_tracker &tracker,
555 const char *text, const char *word)
556 {
557 struct gdbarch *gdbarch = get_current_arch ();
558 gdb::unique_xmalloc_ptr<const char *> group_list;
559 const char *prefix;
560
561 /* Completion considers ':' to be a word separator, so we use this to
562 verify whether the previous word was a group prefix. If so, we
563 build the completion list using group names only. */
564 for (prefix = word; prefix != text && prefix[-1] != ' '; prefix--)
565 ;
566
567 if (startswith (prefix, "g:") || startswith (prefix, "group:"))
568 {
569 /* Perform completion inside 'group:' namespace only. */
570 group_list.reset (get_syscall_group_names (gdbarch));
571 if (group_list != NULL)
572 complete_on_enum (tracker, group_list.get (), word, word);
573 }
574 else
575 {
576 /* Complete with both, syscall names and groups. */
577 gdb::unique_xmalloc_ptr<const char *> syscall_list
578 (get_syscall_names (gdbarch));
579 group_list.reset (get_syscall_group_names (gdbarch));
580
581 const char **group_ptr = group_list.get ();
582
583 /* Hold on to strings while we're using them. */
584 std::vector<std::string> holders;
585
586 /* Append "group:" prefix to syscall groups. */
587 for (int i = 0; group_ptr[i] != NULL; i++)
588 holders.push_back (string_printf ("group:%s", group_ptr[i]));
589
590 for (int i = 0; group_ptr[i] != NULL; i++)
591 group_ptr[i] = holders[i].c_str ();
592
593 if (syscall_list != NULL)
594 complete_on_enum (tracker, syscall_list.get (), word, word);
595 if (group_list != NULL)
596 complete_on_enum (tracker, group_ptr, word, word);
597 }
598 }
599
600 static void
601 clear_syscall_counts (struct inferior *inf)
602 {
603 struct catch_syscall_inferior_data *inf_data
604 = get_catch_syscall_inferior_data (inf);
605
606 inf_data->total_syscalls_count = 0;
607 inf_data->any_syscall_count = 0;
608 inf_data->syscalls_counts.clear ();
609 }
610
611 static void
612 initialize_syscall_catchpoint_ops (void)
613 {
614 struct breakpoint_ops *ops;
615
616 initialize_breakpoint_ops ();
617
618 /* Syscall catchpoints. */
619 ops = &catch_syscall_breakpoint_ops;
620 *ops = base_breakpoint_ops;
621 ops->insert_location = insert_catch_syscall;
622 ops->remove_location = remove_catch_syscall;
623 ops->breakpoint_hit = breakpoint_hit_catch_syscall;
624 ops->print_it = print_it_catch_syscall;
625 ops->print_one = print_one_catch_syscall;
626 ops->print_mention = print_mention_catch_syscall;
627 ops->print_recreate = print_recreate_catch_syscall;
628 }
629
630 void
631 _initialize_break_catch_syscall (void)
632 {
633 initialize_syscall_catchpoint_ops ();
634
635 observer_attach_inferior_exit (clear_syscall_counts);
636 catch_syscall_inferior_data
637 = register_inferior_data_with_cleanup (NULL,
638 catch_syscall_inferior_data_cleanup);
639
640 add_catch_command ("syscall", _("\
641 Catch system calls by their names, groups and/or numbers.\n\
642 Arguments say which system calls to catch. If no arguments are given,\n\
643 every system call will be caught. Arguments, if given, should be one\n\
644 or more system call names (if your system supports that), system call\n\
645 groups or system call numbers."),
646 catch_syscall_command_1,
647 catch_syscall_completer,
648 CATCH_PERMANENT,
649 CATCH_TEMPORARY);
650 }