xref: /netbsd-src/external/gpl3/gdb/dist/gdb/break-catch-sig.c (revision bdc22b2e01993381dcefeff2bc9b56ca75a4235c)
1 /* Everything about signal catchpoints, for GDB.
2 
3    Copyright (C) 2011-2017 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 <ctype.h>
23 #include "breakpoint.h"
24 #include "gdbcmd.h"
25 #include "inferior.h"
26 #include "infrun.h"
27 #include "annotate.h"
28 #include "valprint.h"
29 #include "cli/cli-utils.h"
30 #include "completer.h"
31 
32 #include <string>
33 
34 #define INTERNAL_SIGNAL(x) ((x) == GDB_SIGNAL_TRAP || (x) == GDB_SIGNAL_INT)
35 
36 typedef enum gdb_signal gdb_signal_type;
37 
38 DEF_VEC_I (gdb_signal_type);
39 
40 /* An instance of this type is used to represent a signal catchpoint.
41    It includes a "struct breakpoint" as a kind of base class; users
42    downcast to "struct breakpoint *" when needed.  A breakpoint is
43    really of this type iff its ops pointer points to
44    SIGNAL_CATCHPOINT_OPS.  */
45 
46 struct signal_catchpoint
47 {
48   /* The base class.  */
49 
50   struct breakpoint base;
51 
52   /* Signal numbers used for the 'catch signal' feature.  If no signal
53      has been specified for filtering, its value is NULL.  Otherwise,
54      it holds a list of all signals to be caught.  */
55 
56   VEC (gdb_signal_type) *signals_to_be_caught;
57 
58   /* If SIGNALS_TO_BE_CAUGHT is NULL, then all "ordinary" signals are
59      caught.  If CATCH_ALL is non-zero, then internal signals are
60      caught as well.  If SIGNALS_TO_BE_CAUGHT is non-NULL, then this
61      field is ignored.  */
62 
63   int catch_all;
64 };
65 
66 /* The breakpoint_ops structure to be used in signal catchpoints.  */
67 
68 static struct breakpoint_ops signal_catchpoint_ops;
69 
70 /* Count of each signal.  */
71 
72 static unsigned int *signal_catch_counts;
73 
74 
75 
76 /* A convenience wrapper for gdb_signal_to_name that returns the
77    integer value if the name is not known.  */
78 
79 static const char *
80 signal_to_name_or_int (enum gdb_signal sig)
81 {
82   const char *result = gdb_signal_to_name (sig);
83 
84   if (strcmp (result, "?") == 0)
85     result = plongest (sig);
86 
87   return result;
88 }
89 
90 
91 
92 /* Implement the "dtor" breakpoint_ops method for signal
93    catchpoints.  */
94 
95 static void
96 signal_catchpoint_dtor (struct breakpoint *b)
97 {
98   struct signal_catchpoint *c = (struct signal_catchpoint *) b;
99 
100   VEC_free (gdb_signal_type, c->signals_to_be_caught);
101 
102   base_breakpoint_ops.dtor (b);
103 }
104 
105 /* Implement the "insert_location" breakpoint_ops method for signal
106    catchpoints.  */
107 
108 static int
109 signal_catchpoint_insert_location (struct bp_location *bl)
110 {
111   struct signal_catchpoint *c = (struct signal_catchpoint *) bl->owner;
112   int i;
113 
114   if (c->signals_to_be_caught != NULL)
115     {
116       gdb_signal_type iter;
117 
118       for (i = 0;
119 	   VEC_iterate (gdb_signal_type, c->signals_to_be_caught, i, iter);
120 	   i++)
121 	++signal_catch_counts[iter];
122     }
123   else
124     {
125       for (i = 0; i < GDB_SIGNAL_LAST; ++i)
126 	{
127 	  if (c->catch_all || !INTERNAL_SIGNAL (i))
128 	    ++signal_catch_counts[i];
129 	}
130     }
131 
132   signal_catch_update (signal_catch_counts);
133 
134   return 0;
135 }
136 
137 /* Implement the "remove_location" breakpoint_ops method for signal
138    catchpoints.  */
139 
140 static int
141 signal_catchpoint_remove_location (struct bp_location *bl,
142 				   enum remove_bp_reason reason)
143 {
144   struct signal_catchpoint *c = (struct signal_catchpoint *) bl->owner;
145   int i;
146 
147   if (c->signals_to_be_caught != NULL)
148     {
149       gdb_signal_type iter;
150 
151       for (i = 0;
152 	   VEC_iterate (gdb_signal_type, c->signals_to_be_caught, i, iter);
153 	   i++)
154 	{
155 	  gdb_assert (signal_catch_counts[iter] > 0);
156 	  --signal_catch_counts[iter];
157 	}
158     }
159   else
160     {
161       for (i = 0; i < GDB_SIGNAL_LAST; ++i)
162 	{
163 	  if (c->catch_all || !INTERNAL_SIGNAL (i))
164 	    {
165 	      gdb_assert (signal_catch_counts[i] > 0);
166 	      --signal_catch_counts[i];
167 	    }
168 	}
169     }
170 
171   signal_catch_update (signal_catch_counts);
172 
173   return 0;
174 }
175 
176 /* Implement the "breakpoint_hit" breakpoint_ops method for signal
177    catchpoints.  */
178 
179 static int
180 signal_catchpoint_breakpoint_hit (const struct bp_location *bl,
181 				  struct address_space *aspace,
182 				  CORE_ADDR bp_addr,
183 				  const struct target_waitstatus *ws)
184 {
185   const struct signal_catchpoint *c
186     = (const struct signal_catchpoint *) bl->owner;
187   gdb_signal_type signal_number;
188 
189   if (ws->kind != TARGET_WAITKIND_STOPPED)
190     return 0;
191 
192   signal_number = ws->value.sig;
193 
194   /* If we are catching specific signals in this breakpoint, then we
195      must guarantee that the called signal is the same signal we are
196      catching.  */
197   if (c->signals_to_be_caught)
198     {
199       int i;
200       gdb_signal_type iter;
201 
202       for (i = 0;
203            VEC_iterate (gdb_signal_type, c->signals_to_be_caught, i, iter);
204            i++)
205 	if (signal_number == iter)
206 	  return 1;
207       /* Not the same.  */
208       gdb_assert (!iter);
209       return 0;
210     }
211   else
212     return c->catch_all || !INTERNAL_SIGNAL (signal_number);
213 }
214 
215 /* Implement the "print_it" breakpoint_ops method for signal
216    catchpoints.  */
217 
218 static enum print_stop_action
219 signal_catchpoint_print_it (bpstat bs)
220 {
221   struct breakpoint *b = bs->breakpoint_at;
222   ptid_t ptid;
223   struct target_waitstatus last;
224   const char *signal_name;
225   struct ui_out *uiout = current_uiout;
226 
227   get_last_target_status (&ptid, &last);
228 
229   signal_name = signal_to_name_or_int (last.value.sig);
230 
231   annotate_catchpoint (b->number);
232   maybe_print_thread_hit_breakpoint (uiout);
233 
234   printf_filtered (_("Catchpoint %d (signal %s), "), b->number, signal_name);
235 
236   return PRINT_SRC_AND_LOC;
237 }
238 
239 /* Implement the "print_one" breakpoint_ops method for signal
240    catchpoints.  */
241 
242 static void
243 signal_catchpoint_print_one (struct breakpoint *b,
244 			     struct bp_location **last_loc)
245 {
246   struct signal_catchpoint *c = (struct signal_catchpoint *) b;
247   struct value_print_options opts;
248   struct ui_out *uiout = current_uiout;
249 
250   get_user_print_options (&opts);
251 
252   /* Field 4, the address, is omitted (which makes the columns
253      not line up too nicely with the headers, but the effect
254      is relatively readable).  */
255   if (opts.addressprint)
256     uiout->field_skip ("addr");
257   annotate_field (5);
258 
259   if (c->signals_to_be_caught
260       && VEC_length (gdb_signal_type, c->signals_to_be_caught) > 1)
261     uiout->text ("signals \"");
262   else
263     uiout->text ("signal \"");
264 
265   if (c->signals_to_be_caught)
266     {
267       int i;
268       gdb_signal_type iter;
269       std::string text;
270 
271       for (i = 0;
272            VEC_iterate (gdb_signal_type, c->signals_to_be_caught, i, iter);
273            i++)
274         {
275 	  const char *name = signal_to_name_or_int (iter);
276 
277 	  if (i > 0)
278 	    text += " ";
279 	  text += name;
280         }
281       uiout->field_string ("what", text.c_str ());
282     }
283   else
284     uiout->field_string ("what",
285 			 c->catch_all ? "<any signal>" : "<standard signals>");
286   uiout->text ("\" ");
287 
288   if (uiout->is_mi_like_p ())
289     uiout->field_string ("catch-type", "signal");
290 }
291 
292 /* Implement the "print_mention" breakpoint_ops method for signal
293    catchpoints.  */
294 
295 static void
296 signal_catchpoint_print_mention (struct breakpoint *b)
297 {
298   struct signal_catchpoint *c = (struct signal_catchpoint *) b;
299 
300   if (c->signals_to_be_caught)
301     {
302       int i;
303       gdb_signal_type iter;
304 
305       if (VEC_length (gdb_signal_type, c->signals_to_be_caught) > 1)
306         printf_filtered (_("Catchpoint %d (signals"), b->number);
307       else
308         printf_filtered (_("Catchpoint %d (signal"), b->number);
309 
310       for (i = 0;
311            VEC_iterate (gdb_signal_type, c->signals_to_be_caught, i, iter);
312            i++)
313         {
314 	  const char *name = signal_to_name_or_int (iter);
315 
316 	  printf_filtered (" %s", name);
317         }
318       printf_filtered (")");
319     }
320   else if (c->catch_all)
321     printf_filtered (_("Catchpoint %d (any signal)"), b->number);
322   else
323     printf_filtered (_("Catchpoint %d (standard signals)"), b->number);
324 }
325 
326 /* Implement the "print_recreate" breakpoint_ops method for signal
327    catchpoints.  */
328 
329 static void
330 signal_catchpoint_print_recreate (struct breakpoint *b, struct ui_file *fp)
331 {
332   struct signal_catchpoint *c = (struct signal_catchpoint *) b;
333 
334   fprintf_unfiltered (fp, "catch signal");
335 
336   if (c->signals_to_be_caught)
337     {
338       int i;
339       gdb_signal_type iter;
340 
341       for (i = 0;
342            VEC_iterate (gdb_signal_type, c->signals_to_be_caught, i, iter);
343            i++)
344 	fprintf_unfiltered (fp, " %s", signal_to_name_or_int (iter));
345     }
346   else if (c->catch_all)
347     fprintf_unfiltered (fp, " all");
348   fputc_unfiltered ('\n', fp);
349 }
350 
351 /* Implement the "explains_signal" breakpoint_ops method for signal
352    catchpoints.  */
353 
354 static int
355 signal_catchpoint_explains_signal (struct breakpoint *b, enum gdb_signal sig)
356 {
357   return 1;
358 }
359 
360 /* Create a new signal catchpoint.  TEMPFLAG is true if this should be
361    a temporary catchpoint.  FILTER is the list of signals to catch; it
362    can be NULL, meaning all signals.  CATCH_ALL is a flag indicating
363    whether signals used internally by gdb should be caught; it is only
364    valid if FILTER is NULL.  If FILTER is NULL and CATCH_ALL is zero,
365    then internal signals like SIGTRAP are not caught.  */
366 
367 static void
368 create_signal_catchpoint (int tempflag, VEC (gdb_signal_type) *filter,
369 			  int catch_all)
370 {
371   struct signal_catchpoint *c;
372   struct gdbarch *gdbarch = get_current_arch ();
373 
374   c = new signal_catchpoint ();
375   init_catchpoint (&c->base, gdbarch, tempflag, NULL, &signal_catchpoint_ops);
376   c->signals_to_be_caught = filter;
377   c->catch_all = catch_all;
378 
379   install_breakpoint (0, &c->base, 1);
380 }
381 
382 
383 /* Splits the argument using space as delimiter.  Returns an xmalloc'd
384    filter list, or NULL if no filtering is required.  */
385 
386 static VEC (gdb_signal_type) *
387 catch_signal_split_args (char *arg, int *catch_all)
388 {
389   VEC (gdb_signal_type) *result = NULL;
390   struct cleanup *cleanup = make_cleanup (VEC_cleanup (gdb_signal_type),
391 					  &result);
392   int first = 1;
393 
394   while (*arg != '\0')
395     {
396       int num;
397       gdb_signal_type signal_number;
398       char *one_arg, *endptr;
399       struct cleanup *inner_cleanup;
400 
401       one_arg = extract_arg (&arg);
402       if (one_arg == NULL)
403 	break;
404       inner_cleanup = make_cleanup (xfree, one_arg);
405 
406       /* Check for the special flag "all".  */
407       if (strcmp (one_arg, "all") == 0)
408 	{
409 	  arg = skip_spaces (arg);
410 	  if (*arg != '\0' || !first)
411 	    error (_("'all' cannot be caught with other signals"));
412 	  *catch_all = 1;
413 	  gdb_assert (result == NULL);
414 	  do_cleanups (inner_cleanup);
415 	  discard_cleanups (cleanup);
416 	  return NULL;
417 	}
418 
419       first = 0;
420 
421       /* Check if the user provided a signal name or a number.  */
422       num = (int) strtol (one_arg, &endptr, 0);
423       if (*endptr == '\0')
424 	signal_number = gdb_signal_from_command (num);
425       else
426 	{
427 	  signal_number = gdb_signal_from_name (one_arg);
428 	  if (signal_number == GDB_SIGNAL_UNKNOWN)
429 	    error (_("Unknown signal name '%s'."), one_arg);
430 	}
431 
432       VEC_safe_push (gdb_signal_type, result, signal_number);
433       do_cleanups (inner_cleanup);
434     }
435 
436   discard_cleanups (cleanup);
437   return result;
438 }
439 
440 /* Implement the "catch signal" command.  */
441 
442 static void
443 catch_signal_command (char *arg, int from_tty,
444 		      struct cmd_list_element *command)
445 {
446   int tempflag, catch_all = 0;
447   VEC (gdb_signal_type) *filter;
448 
449   tempflag = get_cmd_context (command) == CATCH_TEMPORARY;
450 
451   arg = skip_spaces (arg);
452 
453   /* The allowed syntax is:
454      catch signal
455      catch signal <name | number> [<name | number> ... <name | number>]
456 
457      Let's check if there's a signal name.  */
458 
459   if (arg != NULL)
460     filter = catch_signal_split_args (arg, &catch_all);
461   else
462     filter = NULL;
463 
464   create_signal_catchpoint (tempflag, filter, catch_all);
465 }
466 
467 static void
468 initialize_signal_catchpoint_ops (void)
469 {
470   struct breakpoint_ops *ops;
471 
472   initialize_breakpoint_ops ();
473 
474   ops = &signal_catchpoint_ops;
475   *ops = base_breakpoint_ops;
476   ops->dtor = signal_catchpoint_dtor;
477   ops->insert_location = signal_catchpoint_insert_location;
478   ops->remove_location = signal_catchpoint_remove_location;
479   ops->breakpoint_hit = signal_catchpoint_breakpoint_hit;
480   ops->print_it = signal_catchpoint_print_it;
481   ops->print_one = signal_catchpoint_print_one;
482   ops->print_mention = signal_catchpoint_print_mention;
483   ops->print_recreate = signal_catchpoint_print_recreate;
484   ops->explains_signal = signal_catchpoint_explains_signal;
485 }
486 
487 initialize_file_ftype _initialize_break_catch_sig;
488 
489 void
490 _initialize_break_catch_sig (void)
491 {
492   initialize_signal_catchpoint_ops ();
493 
494   signal_catch_counts = XCNEWVEC (unsigned int, GDB_SIGNAL_LAST);
495 
496   add_catch_command ("signal", _("\
497 Catch signals by their names and/or numbers.\n\
498 Usage: catch signal [[NAME|NUMBER] [NAME|NUMBER]...|all]\n\
499 Arguments say which signals to catch.  If no arguments\n\
500 are given, every \"normal\" signal will be caught.\n\
501 The argument \"all\" means to also catch signals used by GDB.\n\
502 Arguments, if given, should be one or more signal names\n\
503 (if your system supports that), or signal numbers."),
504 		     catch_signal_command,
505 		     signal_completer,
506 		     CATCH_PERMANENT,
507 		     CATCH_TEMPORARY);
508 }
509