1 /* Everything about catch/throw catchpoints, for GDB. 2 3 Copyright (C) 1986-2019 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 "annotate.h" 27 #include "valprint.h" 28 #include "cli/cli-utils.h" 29 #include "completer.h" 30 #include "gdb_obstack.h" 31 #include "mi/mi-common.h" 32 #include "linespec.h" 33 #include "probe.h" 34 #include "objfiles.h" 35 #include "cp-abi.h" 36 #include "gdb_regex.h" 37 #include "cp-support.h" 38 #include "location.h" 39 40 /* Enums for exception-handling support. */ 41 enum exception_event_kind 42 { 43 EX_EVENT_THROW, 44 EX_EVENT_RETHROW, 45 EX_EVENT_CATCH 46 }; 47 48 /* Each spot where we may place an exception-related catchpoint has 49 two names: the SDT probe point and the function name. This 50 structure holds both. */ 51 52 struct exception_names 53 { 54 /* The name of the probe point to try, in the form accepted by 55 'parse_probes'. */ 56 57 const char *probe; 58 59 /* The name of the corresponding function. */ 60 61 const char *function; 62 }; 63 64 /* Names of the probe points and functions on which to break. This is 65 indexed by exception_event_kind. */ 66 static const struct exception_names exception_functions[] = 67 { 68 { "-probe-stap libstdcxx:throw", "__cxa_throw" }, 69 { "-probe-stap libstdcxx:rethrow", "__cxa_rethrow" }, 70 { "-probe-stap libstdcxx:catch", "__cxa_begin_catch" } 71 }; 72 73 static struct breakpoint_ops gnu_v3_exception_catchpoint_ops; 74 75 /* The type of an exception catchpoint. */ 76 77 struct exception_catchpoint : public breakpoint 78 { 79 /* The kind of exception catchpoint. */ 80 81 enum exception_event_kind kind; 82 83 /* If not empty, a string holding the source form of the regular 84 expression to match against. */ 85 86 std::string exception_rx; 87 88 /* If non-NULL, a compiled regular expression which is used to 89 determine which exceptions to stop on. */ 90 91 std::unique_ptr<compiled_regex> pattern; 92 }; 93 94 95 96 /* A helper function that fetches exception probe arguments. This 97 fills in *ARG0 (if non-NULL) and *ARG1 (which must be non-NULL). 98 It will throw an exception on any kind of failure. */ 99 100 static void 101 fetch_probe_arguments (struct value **arg0, struct value **arg1) 102 { 103 struct frame_info *frame = get_selected_frame (_("No frame selected")); 104 CORE_ADDR pc = get_frame_pc (frame); 105 struct bound_probe pc_probe; 106 unsigned n_args; 107 108 pc_probe = find_probe_by_pc (pc); 109 if (pc_probe.prob == NULL 110 || pc_probe.prob->get_provider () != "libstdcxx" 111 || (pc_probe.prob->get_name () != "catch" 112 && pc_probe.prob->get_name () != "throw" 113 && pc_probe.prob->get_name () != "rethrow")) 114 error (_("not stopped at a C++ exception catchpoint")); 115 116 n_args = pc_probe.prob->get_argument_count (frame); 117 if (n_args < 2) 118 error (_("C++ exception catchpoint has too few arguments")); 119 120 if (arg0 != NULL) 121 *arg0 = pc_probe.prob->evaluate_argument (0, frame); 122 *arg1 = pc_probe.prob->evaluate_argument (1, frame); 123 124 if ((arg0 != NULL && *arg0 == NULL) || *arg1 == NULL) 125 error (_("error computing probe argument at c++ exception catchpoint")); 126 } 127 128 129 130 /* A helper function that returns a value indicating the kind of the 131 exception catchpoint B. */ 132 133 static enum exception_event_kind 134 classify_exception_breakpoint (struct breakpoint *b) 135 { 136 struct exception_catchpoint *cp = (struct exception_catchpoint *) b; 137 138 return cp->kind; 139 } 140 141 /* Implement the 'check_status' method. */ 142 143 static void 144 check_status_exception_catchpoint (struct bpstats *bs) 145 { 146 struct exception_catchpoint *self 147 = (struct exception_catchpoint *) bs->breakpoint_at; 148 std::string type_name; 149 150 bkpt_breakpoint_ops.check_status (bs); 151 if (bs->stop == 0) 152 return; 153 154 if (self->pattern == NULL) 155 return; 156 157 TRY 158 { 159 struct value *typeinfo_arg; 160 std::string canon; 161 162 fetch_probe_arguments (NULL, &typeinfo_arg); 163 type_name = cplus_typename_from_type_info (typeinfo_arg); 164 165 canon = cp_canonicalize_string (type_name.c_str ()); 166 if (!canon.empty ()) 167 std::swap (type_name, canon); 168 } 169 CATCH (e, RETURN_MASK_ERROR) 170 { 171 exception_print (gdb_stderr, e); 172 } 173 END_CATCH 174 175 if (!type_name.empty ()) 176 { 177 if (self->pattern->exec (type_name.c_str (), 0, NULL, 0) != 0) 178 bs->stop = 0; 179 } 180 } 181 182 /* Implement the 're_set' method. */ 183 184 static void 185 re_set_exception_catchpoint (struct breakpoint *self) 186 { 187 std::vector<symtab_and_line> sals; 188 enum exception_event_kind kind = classify_exception_breakpoint (self); 189 struct program_space *filter_pspace = current_program_space; 190 191 /* We first try to use the probe interface. */ 192 TRY 193 { 194 event_location_up location 195 = new_probe_location (exception_functions[kind].probe); 196 sals = parse_probes (location.get (), filter_pspace, NULL); 197 } 198 CATCH (e, RETURN_MASK_ERROR) 199 { 200 /* Using the probe interface failed. Let's fallback to the normal 201 catchpoint mode. */ 202 TRY 203 { 204 struct explicit_location explicit_loc; 205 206 initialize_explicit_location (&explicit_loc); 207 explicit_loc.function_name 208 = ASTRDUP (exception_functions[kind].function); 209 event_location_up location = new_explicit_location (&explicit_loc); 210 sals = self->ops->decode_location (self, location.get (), 211 filter_pspace); 212 } 213 CATCH (ex, RETURN_MASK_ERROR) 214 { 215 /* NOT_FOUND_ERROR just means the breakpoint will be 216 pending, so let it through. */ 217 if (ex.error != NOT_FOUND_ERROR) 218 throw_exception (ex); 219 } 220 END_CATCH 221 } 222 END_CATCH 223 224 update_breakpoint_locations (self, filter_pspace, sals, {}); 225 } 226 227 static enum print_stop_action 228 print_it_exception_catchpoint (bpstat bs) 229 { 230 struct ui_out *uiout = current_uiout; 231 struct breakpoint *b = bs->breakpoint_at; 232 int bp_temp; 233 enum exception_event_kind kind = classify_exception_breakpoint (b); 234 235 annotate_catchpoint (b->number); 236 maybe_print_thread_hit_breakpoint (uiout); 237 238 bp_temp = b->disposition == disp_del; 239 uiout->text (bp_temp ? "Temporary catchpoint " 240 : "Catchpoint "); 241 uiout->field_int ("bkptno", b->number); 242 uiout->text ((kind == EX_EVENT_THROW ? " (exception thrown), " 243 : (kind == EX_EVENT_CATCH ? " (exception caught), " 244 : " (exception rethrown), "))); 245 if (uiout->is_mi_like_p ()) 246 { 247 uiout->field_string ("reason", 248 async_reason_lookup (EXEC_ASYNC_BREAKPOINT_HIT)); 249 uiout->field_string ("disp", bpdisp_text (b->disposition)); 250 } 251 return PRINT_SRC_AND_LOC; 252 } 253 254 static void 255 print_one_exception_catchpoint (struct breakpoint *b, 256 struct bp_location **last_loc) 257 { 258 struct value_print_options opts; 259 struct ui_out *uiout = current_uiout; 260 enum exception_event_kind kind = classify_exception_breakpoint (b); 261 262 get_user_print_options (&opts); 263 if (opts.addressprint) 264 { 265 annotate_field (4); 266 if (b->loc == NULL || b->loc->shlib_disabled) 267 uiout->field_string ("addr", "<PENDING>"); 268 else 269 uiout->field_core_addr ("addr", 270 b->loc->gdbarch, b->loc->address); 271 } 272 annotate_field (5); 273 if (b->loc) 274 *last_loc = b->loc; 275 276 switch (kind) 277 { 278 case EX_EVENT_THROW: 279 uiout->field_string ("what", "exception throw"); 280 if (uiout->is_mi_like_p ()) 281 uiout->field_string ("catch-type", "throw"); 282 break; 283 284 case EX_EVENT_RETHROW: 285 uiout->field_string ("what", "exception rethrow"); 286 if (uiout->is_mi_like_p ()) 287 uiout->field_string ("catch-type", "rethrow"); 288 break; 289 290 case EX_EVENT_CATCH: 291 uiout->field_string ("what", "exception catch"); 292 if (uiout->is_mi_like_p ()) 293 uiout->field_string ("catch-type", "catch"); 294 break; 295 } 296 } 297 298 /* Implement the 'print_one_detail' method. */ 299 300 static void 301 print_one_detail_exception_catchpoint (const struct breakpoint *b, 302 struct ui_out *uiout) 303 { 304 const struct exception_catchpoint *cp 305 = (const struct exception_catchpoint *) b; 306 307 if (!cp->exception_rx.empty ()) 308 { 309 uiout->text (_("\tmatching: ")); 310 uiout->field_string ("regexp", cp->exception_rx.c_str ()); 311 uiout->text ("\n"); 312 } 313 } 314 315 static void 316 print_mention_exception_catchpoint (struct breakpoint *b) 317 { 318 struct ui_out *uiout = current_uiout; 319 int bp_temp; 320 enum exception_event_kind kind = classify_exception_breakpoint (b); 321 322 bp_temp = b->disposition == disp_del; 323 uiout->text (bp_temp ? _("Temporary catchpoint ") 324 : _("Catchpoint ")); 325 uiout->field_int ("bkptno", b->number); 326 uiout->text ((kind == EX_EVENT_THROW ? _(" (throw)") 327 : (kind == EX_EVENT_CATCH ? _(" (catch)") 328 : _(" (rethrow)")))); 329 } 330 331 /* Implement the "print_recreate" breakpoint_ops method for throw and 332 catch catchpoints. */ 333 334 static void 335 print_recreate_exception_catchpoint (struct breakpoint *b, 336 struct ui_file *fp) 337 { 338 int bp_temp; 339 enum exception_event_kind kind = classify_exception_breakpoint (b); 340 341 bp_temp = b->disposition == disp_del; 342 fprintf_unfiltered (fp, bp_temp ? "tcatch " : "catch "); 343 switch (kind) 344 { 345 case EX_EVENT_THROW: 346 fprintf_unfiltered (fp, "throw"); 347 break; 348 case EX_EVENT_CATCH: 349 fprintf_unfiltered (fp, "catch"); 350 break; 351 case EX_EVENT_RETHROW: 352 fprintf_unfiltered (fp, "rethrow"); 353 break; 354 } 355 print_recreate_thread (b, fp); 356 } 357 358 static void 359 handle_gnu_v3_exceptions (int tempflag, std::string &&except_rx, 360 const char *cond_string, 361 enum exception_event_kind ex_event, int from_tty) 362 { 363 std::unique_ptr<compiled_regex> pattern; 364 365 if (!except_rx.empty ()) 366 { 367 pattern.reset (new compiled_regex (except_rx.c_str (), REG_NOSUB, 368 _("invalid type-matching regexp"))); 369 } 370 371 std::unique_ptr<exception_catchpoint> cp (new exception_catchpoint ()); 372 373 init_catchpoint (cp.get (), get_current_arch (), tempflag, cond_string, 374 &gnu_v3_exception_catchpoint_ops); 375 /* We need to reset 'type' in order for code in breakpoint.c to do 376 the right thing. */ 377 cp->type = bp_breakpoint; 378 cp->kind = ex_event; 379 cp->exception_rx = std::move (except_rx); 380 cp->pattern = std::move (pattern); 381 382 re_set_exception_catchpoint (cp.get ()); 383 384 install_breakpoint (0, std::move (cp), 1); 385 } 386 387 /* Look for an "if" token in *STRING. The "if" token must be preceded 388 by whitespace. 389 390 If there is any non-whitespace text between *STRING and the "if" 391 token, then it is returned in a newly-xmalloc'd string. Otherwise, 392 this returns NULL. 393 394 STRING is updated to point to the "if" token, if it exists, or to 395 the end of the string. */ 396 397 static std::string 398 extract_exception_regexp (const char **string) 399 { 400 const char *start; 401 const char *last, *last_space; 402 403 start = skip_spaces (*string); 404 405 last = start; 406 last_space = start; 407 while (*last != '\0') 408 { 409 const char *if_token = last; 410 411 /* Check for the "if". */ 412 if (check_for_argument (&if_token, "if", 2)) 413 break; 414 415 /* No "if" token here. Skip to the next word start. */ 416 last_space = skip_to_space (last); 417 last = skip_spaces (last_space); 418 } 419 420 *string = last; 421 if (last_space > start) 422 return std::string (start, last_space - start); 423 return std::string (); 424 } 425 426 /* Deal with "catch catch", "catch throw", and "catch rethrow" 427 commands. */ 428 429 static void 430 catch_exception_command_1 (enum exception_event_kind ex_event, 431 const char *arg, 432 int tempflag, int from_tty) 433 { 434 const char *cond_string = NULL; 435 436 if (!arg) 437 arg = ""; 438 arg = skip_spaces (arg); 439 440 std::string except_rx = extract_exception_regexp (&arg); 441 442 cond_string = ep_parse_optional_if_clause (&arg); 443 444 if ((*arg != '\0') && !isspace (*arg)) 445 error (_("Junk at end of arguments.")); 446 447 if (ex_event != EX_EVENT_THROW 448 && ex_event != EX_EVENT_CATCH 449 && ex_event != EX_EVENT_RETHROW) 450 error (_("Unsupported or unknown exception event; cannot catch it")); 451 452 handle_gnu_v3_exceptions (tempflag, std::move (except_rx), cond_string, 453 ex_event, from_tty); 454 } 455 456 /* Implementation of "catch catch" command. */ 457 458 static void 459 catch_catch_command (const char *arg, int from_tty, 460 struct cmd_list_element *command) 461 { 462 int tempflag = get_cmd_context (command) == CATCH_TEMPORARY; 463 464 catch_exception_command_1 (EX_EVENT_CATCH, arg, tempflag, from_tty); 465 } 466 467 /* Implementation of "catch throw" command. */ 468 469 static void 470 catch_throw_command (const char *arg, int from_tty, 471 struct cmd_list_element *command) 472 { 473 int tempflag = get_cmd_context (command) == CATCH_TEMPORARY; 474 475 catch_exception_command_1 (EX_EVENT_THROW, arg, tempflag, from_tty); 476 } 477 478 /* Implementation of "catch rethrow" command. */ 479 480 static void 481 catch_rethrow_command (const char *arg, int from_tty, 482 struct cmd_list_element *command) 483 { 484 int tempflag = get_cmd_context (command) == CATCH_TEMPORARY; 485 486 catch_exception_command_1 (EX_EVENT_RETHROW, arg, tempflag, from_tty); 487 } 488 489 490 491 /* Implement the 'make_value' method for the $_exception 492 internalvar. */ 493 494 static struct value * 495 compute_exception (struct gdbarch *argc, struct internalvar *var, void *ignore) 496 { 497 struct value *arg0, *arg1; 498 struct type *obj_type; 499 500 fetch_probe_arguments (&arg0, &arg1); 501 502 /* ARG0 is a pointer to the exception object. ARG1 is a pointer to 503 the std::type_info for the exception. Now we find the type from 504 the type_info and cast the result. */ 505 obj_type = cplus_type_from_type_info (arg1); 506 return value_ind (value_cast (make_pointer_type (obj_type, NULL), arg0)); 507 } 508 509 /* Implementation of the '$_exception' variable. */ 510 511 static const struct internalvar_funcs exception_funcs = 512 { 513 compute_exception, 514 NULL, 515 NULL 516 }; 517 518 519 520 static void 521 initialize_throw_catchpoint_ops (void) 522 { 523 struct breakpoint_ops *ops; 524 525 initialize_breakpoint_ops (); 526 527 /* GNU v3 exception catchpoints. */ 528 ops = &gnu_v3_exception_catchpoint_ops; 529 *ops = bkpt_breakpoint_ops; 530 ops->re_set = re_set_exception_catchpoint; 531 ops->print_it = print_it_exception_catchpoint; 532 ops->print_one = print_one_exception_catchpoint; 533 ops->print_mention = print_mention_exception_catchpoint; 534 ops->print_recreate = print_recreate_exception_catchpoint; 535 ops->print_one_detail = print_one_detail_exception_catchpoint; 536 ops->check_status = check_status_exception_catchpoint; 537 } 538 539 void 540 _initialize_break_catch_throw (void) 541 { 542 initialize_throw_catchpoint_ops (); 543 544 /* Add catch and tcatch sub-commands. */ 545 add_catch_command ("catch", _("\ 546 Catch an exception, when caught."), 547 catch_catch_command, 548 NULL, 549 CATCH_PERMANENT, 550 CATCH_TEMPORARY); 551 add_catch_command ("throw", _("\ 552 Catch an exception, when thrown."), 553 catch_throw_command, 554 NULL, 555 CATCH_PERMANENT, 556 CATCH_TEMPORARY); 557 add_catch_command ("rethrow", _("\ 558 Catch an exception, when rethrown."), 559 catch_rethrow_command, 560 NULL, 561 CATCH_PERMANENT, 562 CATCH_TEMPORARY); 563 564 create_internalvar_type_lazy ("_exception", &exception_funcs, NULL); 565 } 566