gdb/
[deliverable/binutils-gdb.git] / gdb / breakpoint.c
CommitLineData
c906108c 1/* Everything about breakpoints, for GDB.
8926118c 2
0b302171 3 Copyright (C) 1986-2012 Free Software Foundation, Inc.
c906108c 4
c5aa993b 5 This file is part of GDB.
c906108c 6
c5aa993b
JM
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
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
c5aa993b 10 (at your option) any later version.
c906108c 11
c5aa993b
JM
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.
c906108c 16
c5aa993b 17 You should have received a copy of the GNU General Public License
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
19
20#include "defs.h"
a6d9a66e 21#include "arch-utils.h"
c906108c 22#include <ctype.h>
776592bf 23#include "hashtab.h"
c906108c
SS
24#include "symtab.h"
25#include "frame.h"
26#include "breakpoint.h"
1042e4c0 27#include "tracepoint.h"
c906108c
SS
28#include "gdbtypes.h"
29#include "expression.h"
30#include "gdbcore.h"
31#include "gdbcmd.h"
32#include "value.h"
33#include "command.h"
34#include "inferior.h"
35#include "gdbthread.h"
36#include "target.h"
37#include "language.h"
38#include "gdb_string.h"
50f182aa 39#include "gdb-demangle.h"
0ba1096a 40#include "filenames.h"
c906108c
SS
41#include "annotate.h"
42#include "symfile.h"
43#include "objfiles.h"
0378c332 44#include "source.h"
c5f0f3d0 45#include "linespec.h"
c94fdfd0 46#include "completer.h"
5b7f31a4 47#include "gdb.h"
8b93c638 48#include "ui-out.h"
e1507482 49#include "cli/cli-script.h"
0225421b 50#include "gdb_assert.h"
fe898f56 51#include "block.h"
a77053c2 52#include "solib.h"
84acb35a
JJ
53#include "solist.h"
54#include "observer.h"
60250e8b 55#include "exceptions.h"
765dc015 56#include "memattr.h"
f7f9143b 57#include "ada-lang.h"
d1aa2f50 58#include "top.h"
79a45b7d 59#include "valprint.h"
4efc6507 60#include "jit.h"
a96d9b2e 61#include "xml-syscall.h"
65d79d4b 62#include "parser-defs.h"
55aa24fb
SDJ
63#include "gdb_regex.h"
64#include "probe.h"
e9cafbcc 65#include "cli/cli-utils.h"
be34f849 66#include "continuations.h"
1bfeeb0f
JL
67#include "stack.h"
68#include "skip.h"
edcc5120 69#include "gdb_regex.h"
b775012e 70#include "ax-gdb.h"
c906108c 71
1042e4c0
SS
72/* readline include files */
73#include "readline/readline.h"
74#include "readline/history.h"
75
76/* readline defines this. */
77#undef savestring
78
034dad6f 79#include "mi/mi-common.h"
7371cf6d 80#include "python/python.h"
104c1213 81
4a64f543 82/* Prototypes for local functions. */
c906108c 83
a14ed312 84static void enable_delete_command (char *, int);
c906108c 85
a14ed312 86static void enable_once_command (char *, int);
c906108c 87
816338b5
SS
88static void enable_count_command (char *, int);
89
a14ed312 90static void disable_command (char *, int);
c906108c 91
a14ed312 92static void enable_command (char *, int);
c906108c 93
95a42b64
TT
94static void map_breakpoint_numbers (char *, void (*) (struct breakpoint *,
95 void *),
96 void *);
c906108c 97
a14ed312 98static void ignore_command (char *, int);
c906108c 99
4efb68b1 100static int breakpoint_re_set_one (void *);
c906108c 101
348d480f
PA
102static void breakpoint_re_set_default (struct breakpoint *);
103
983af33b
SDJ
104static void create_sals_from_address_default (char **,
105 struct linespec_result *,
106 enum bptype, char *,
107 char **);
108
109static void create_breakpoints_sal_default (struct gdbarch *,
110 struct linespec_result *,
111 struct linespec_sals *,
e7e0cddf 112 char *, char *, enum bptype,
983af33b
SDJ
113 enum bpdisp, int, int,
114 int,
115 const struct breakpoint_ops *,
44f238bb 116 int, int, int, unsigned);
983af33b
SDJ
117
118static void decode_linespec_default (struct breakpoint *, char **,
119 struct symtabs_and_lines *);
120
a14ed312 121static void clear_command (char *, int);
c906108c 122
a14ed312 123static void catch_command (char *, int);
c906108c 124
a9634178 125static int can_use_hardware_watchpoint (struct value *);
c906108c 126
98deb0da 127static void break_command_1 (char *, int, int);
c906108c 128
a14ed312 129static void mention (struct breakpoint *);
c906108c 130
348d480f
PA
131static struct breakpoint *set_raw_breakpoint_without_location (struct gdbarch *,
132 enum bptype,
c0a91b2b 133 const struct breakpoint_ops *);
3742cc8b
YQ
134static struct bp_location *add_location_to_breakpoint (struct breakpoint *,
135 const struct symtab_and_line *);
136
4a64f543
MS
137/* This function is used in gdbtk sources and thus can not be made
138 static. */
63c252f8 139struct breakpoint *set_raw_breakpoint (struct gdbarch *gdbarch,
348d480f 140 struct symtab_and_line,
c0a91b2b
TT
141 enum bptype,
142 const struct breakpoint_ops *);
c906108c 143
06edf0c0
PA
144static struct breakpoint *
145 momentary_breakpoint_from_master (struct breakpoint *orig,
146 enum bptype type,
c0a91b2b 147 const struct breakpoint_ops *ops);
06edf0c0 148
76897487
KB
149static void breakpoint_adjustment_warning (CORE_ADDR, CORE_ADDR, int, int);
150
a6d9a66e
UW
151static CORE_ADDR adjust_breakpoint_address (struct gdbarch *gdbarch,
152 CORE_ADDR bpaddr,
88f7da05 153 enum bptype bptype);
76897487 154
6c95b8df
PA
155static void describe_other_breakpoints (struct gdbarch *,
156 struct program_space *, CORE_ADDR,
5af949e3 157 struct obj_section *, int);
c906108c 158
6c95b8df
PA
159static int breakpoint_address_match (struct address_space *aspace1,
160 CORE_ADDR addr1,
161 struct address_space *aspace2,
162 CORE_ADDR addr2);
163
85d721b8
PA
164static int watchpoint_locations_match (struct bp_location *loc1,
165 struct bp_location *loc2);
166
f1310107
TJB
167static int breakpoint_location_address_match (struct bp_location *bl,
168 struct address_space *aspace,
169 CORE_ADDR addr);
170
a14ed312 171static void breakpoints_info (char *, int);
c906108c 172
d77f58be
SS
173static void watchpoints_info (char *, int);
174
e5a67952
MS
175static int breakpoint_1 (char *, int,
176 int (*) (const struct breakpoint *));
c906108c 177
4efb68b1 178static int breakpoint_cond_eval (void *);
c906108c 179
4efb68b1 180static void cleanup_executing_breakpoints (void *);
c906108c 181
a14ed312 182static void commands_command (char *, int);
c906108c 183
a14ed312 184static void condition_command (char *, int);
c906108c 185
c5aa993b
JM
186typedef enum
187 {
188 mark_inserted,
189 mark_uninserted
190 }
191insertion_state_t;
c906108c 192
0bde7532 193static int remove_breakpoint (struct bp_location *, insertion_state_t);
6c95b8df 194static int remove_breakpoint_1 (struct bp_location *, insertion_state_t);
c906108c 195
e514a9d6 196static enum print_stop_action print_bp_stop_message (bpstat bs);
c906108c 197
4efb68b1 198static int watchpoint_check (void *);
c906108c 199
a14ed312 200static void maintenance_info_breakpoints (char *, int);
c906108c 201
a14ed312 202static int hw_breakpoint_used_count (void);
c906108c 203
a1398e0c
PA
204static int hw_watchpoint_use_count (struct breakpoint *);
205
206static int hw_watchpoint_used_count_others (struct breakpoint *except,
207 enum bptype type,
208 int *other_type_used);
c906108c 209
a14ed312 210static void hbreak_command (char *, int);
c906108c 211
a14ed312 212static void thbreak_command (char *, int);
c906108c 213
816338b5
SS
214static void enable_breakpoint_disp (struct breakpoint *, enum bpdisp,
215 int count);
c906108c 216
a14ed312 217static void stop_command (char *arg, int from_tty);
7a292a7a 218
a14ed312 219static void stopin_command (char *arg, int from_tty);
7a292a7a 220
a14ed312 221static void stopat_command (char *arg, int from_tty);
7a292a7a 222
a14ed312 223static char *ep_parse_optional_if_clause (char **arg);
7a292a7a 224
d85310f7
MS
225static void catch_exception_command_1 (enum exception_event_kind ex_event,
226 char *arg, int tempflag, int from_tty);
7a292a7a 227
a14ed312 228static void tcatch_command (char *arg, int from_tty);
7a292a7a 229
d03285ec
UW
230static void detach_single_step_breakpoints (void);
231
6c95b8df
PA
232static int single_step_breakpoint_inserted_here_p (struct address_space *,
233 CORE_ADDR pc);
1aafd4da 234
fe3f5fa8 235static void free_bp_location (struct bp_location *loc);
f431efe5
PA
236static void incref_bp_location (struct bp_location *loc);
237static void decref_bp_location (struct bp_location **loc);
fe3f5fa8 238
39d61571 239static struct bp_location *allocate_bp_location (struct breakpoint *bpt);
a5606eee 240
b60e7edf 241static void update_global_location_list (int);
a5606eee 242
b60e7edf 243static void update_global_location_list_nothrow (int);
74960c60 244
d77f58be 245static int is_hardware_watchpoint (const struct breakpoint *bpt);
74960c60
VP
246
247static void insert_breakpoint_locations (void);
a5606eee 248
a96d9b2e
SDJ
249static int syscall_catchpoint_p (struct breakpoint *b);
250
1042e4c0
SS
251static void tracepoints_info (char *, int);
252
253static void delete_trace_command (char *, int);
254
255static void enable_trace_command (char *, int);
256
257static void disable_trace_command (char *, int);
258
259static void trace_pass_command (char *, int);
260
9c06b0b4
TJB
261static int is_masked_watchpoint (const struct breakpoint *b);
262
b775012e
LM
263static struct bp_location **get_first_locp_gte_addr (CORE_ADDR address);
264
983af33b
SDJ
265/* Return 1 if B refers to a static tracepoint set by marker ("-m"), zero
266 otherwise. */
267
268static int strace_marker_p (struct breakpoint *b);
0fb4aa4b 269
edcc5120
TT
270static void init_catchpoint (struct breakpoint *b,
271 struct gdbarch *gdbarch, int tempflag,
272 char *cond_string,
273 const struct breakpoint_ops *ops);
274
2060206e
PA
275/* The abstract base class all breakpoint_ops structures inherit
276 from. */
277static struct breakpoint_ops base_breakpoint_ops;
278
279/* The breakpoint_ops structure to be inherited by all breakpoint_ops
280 that are implemented on top of software or hardware breakpoints
281 (user breakpoints, internal and momentary breakpoints, etc.). */
282static struct breakpoint_ops bkpt_base_breakpoint_ops;
283
284/* Internal breakpoints class type. */
06edf0c0 285static struct breakpoint_ops internal_breakpoint_ops;
2060206e
PA
286
287/* Momentary breakpoints class type. */
06edf0c0
PA
288static struct breakpoint_ops momentary_breakpoint_ops;
289
2060206e
PA
290/* The breakpoint_ops structure to be used in regular user created
291 breakpoints. */
292struct breakpoint_ops bkpt_breakpoint_ops;
293
55aa24fb
SDJ
294/* Breakpoints set on probes. */
295static struct breakpoint_ops bkpt_probe_breakpoint_ops;
296
e7e0cddf
SS
297/* Dynamic printf class type. */
298static struct breakpoint_ops dprintf_breakpoint_ops;
299
5cea2a26
PA
300/* A reference-counted struct command_line. This lets multiple
301 breakpoints share a single command list. */
302struct counted_command_line
303{
304 /* The reference count. */
305 int refc;
306
307 /* The command list. */
308 struct command_line *commands;
309};
310
311struct command_line *
312breakpoint_commands (struct breakpoint *b)
313{
314 return b->commands ? b->commands->commands : NULL;
315}
3daf8fe5 316
f3b1572e
PA
317/* Flag indicating that a command has proceeded the inferior past the
318 current breakpoint. */
319
320static int breakpoint_proceeded;
321
956a9fb9 322const char *
2cec12e5
AR
323bpdisp_text (enum bpdisp disp)
324{
4a64f543
MS
325 /* NOTE: the following values are a part of MI protocol and
326 represent values of 'disp' field returned when inferior stops at
327 a breakpoint. */
bc043ef3 328 static const char * const bpdisps[] = {"del", "dstp", "dis", "keep"};
cc59ec59 329
2cec12e5
AR
330 return bpdisps[(int) disp];
331}
c906108c 332
4a64f543 333/* Prototypes for exported functions. */
c906108c 334/* If FALSE, gdb will not use hardware support for watchpoints, even
4a64f543 335 if such is available. */
c906108c
SS
336static int can_use_hw_watchpoints;
337
920d2a44
AC
338static void
339show_can_use_hw_watchpoints (struct ui_file *file, int from_tty,
340 struct cmd_list_element *c,
341 const char *value)
342{
3e43a32a
MS
343 fprintf_filtered (file,
344 _("Debugger's willingness to use "
345 "watchpoint hardware is %s.\n"),
920d2a44
AC
346 value);
347}
348
fa8d40ab
JJ
349/* If AUTO_BOOLEAN_FALSE, gdb will not attempt to create pending breakpoints.
350 If AUTO_BOOLEAN_TRUE, gdb will automatically create pending breakpoints
4a64f543 351 for unrecognized breakpoint locations.
fa8d40ab
JJ
352 If AUTO_BOOLEAN_AUTO, gdb will query when breakpoints are unrecognized. */
353static enum auto_boolean pending_break_support;
920d2a44
AC
354static void
355show_pending_break_support (struct ui_file *file, int from_tty,
356 struct cmd_list_element *c,
357 const char *value)
358{
3e43a32a
MS
359 fprintf_filtered (file,
360 _("Debugger's behavior regarding "
361 "pending breakpoints is %s.\n"),
920d2a44
AC
362 value);
363}
fa8d40ab 364
765dc015 365/* If 1, gdb will automatically use hardware breakpoints for breakpoints
4a64f543 366 set with "break" but falling in read-only memory.
765dc015
VP
367 If 0, gdb will warn about such breakpoints, but won't automatically
368 use hardware breakpoints. */
369static int automatic_hardware_breakpoints;
370static void
371show_automatic_hardware_breakpoints (struct ui_file *file, int from_tty,
372 struct cmd_list_element *c,
373 const char *value)
374{
3e43a32a
MS
375 fprintf_filtered (file,
376 _("Automatic usage of hardware breakpoints is %s.\n"),
765dc015
VP
377 value);
378}
379
33e5cbd6
PA
380/* If on, gdb will keep breakpoints inserted even as inferior is
381 stopped, and immediately insert any new breakpoints. If off, gdb
382 will insert breakpoints into inferior only when resuming it, and
383 will remove breakpoints upon stop. If auto, GDB will behave as ON
384 if in non-stop mode, and as OFF if all-stop mode.*/
385
386static const char always_inserted_auto[] = "auto";
387static const char always_inserted_on[] = "on";
388static const char always_inserted_off[] = "off";
40478521 389static const char *const always_inserted_enums[] = {
33e5cbd6
PA
390 always_inserted_auto,
391 always_inserted_off,
392 always_inserted_on,
393 NULL
394};
395static const char *always_inserted_mode = always_inserted_auto;
396static void
74960c60 397show_always_inserted_mode (struct ui_file *file, int from_tty,
33e5cbd6 398 struct cmd_list_element *c, const char *value)
74960c60 399{
33e5cbd6 400 if (always_inserted_mode == always_inserted_auto)
3e43a32a
MS
401 fprintf_filtered (file,
402 _("Always inserted breakpoint "
403 "mode is %s (currently %s).\n"),
33e5cbd6
PA
404 value,
405 breakpoints_always_inserted_mode () ? "on" : "off");
406 else
3e43a32a
MS
407 fprintf_filtered (file, _("Always inserted breakpoint mode is %s.\n"),
408 value);
74960c60
VP
409}
410
33e5cbd6
PA
411int
412breakpoints_always_inserted_mode (void)
413{
20388dd6
YQ
414 return (always_inserted_mode == always_inserted_on
415 || (always_inserted_mode == always_inserted_auto && non_stop));
33e5cbd6 416}
765dc015 417
b775012e
LM
418static const char condition_evaluation_both[] = "host or target";
419
420/* Modes for breakpoint condition evaluation. */
421static const char condition_evaluation_auto[] = "auto";
422static const char condition_evaluation_host[] = "host";
423static const char condition_evaluation_target[] = "target";
424static const char *const condition_evaluation_enums[] = {
425 condition_evaluation_auto,
426 condition_evaluation_host,
427 condition_evaluation_target,
428 NULL
429};
430
431/* Global that holds the current mode for breakpoint condition evaluation. */
432static const char *condition_evaluation_mode_1 = condition_evaluation_auto;
433
434/* Global that we use to display information to the user (gets its value from
435 condition_evaluation_mode_1. */
436static const char *condition_evaluation_mode = condition_evaluation_auto;
437
438/* Translate a condition evaluation mode MODE into either "host"
439 or "target". This is used mostly to translate from "auto" to the
440 real setting that is being used. It returns the translated
441 evaluation mode. */
442
443static const char *
444translate_condition_evaluation_mode (const char *mode)
445{
446 if (mode == condition_evaluation_auto)
447 {
448 if (target_supports_evaluation_of_breakpoint_conditions ())
449 return condition_evaluation_target;
450 else
451 return condition_evaluation_host;
452 }
453 else
454 return mode;
455}
456
457/* Discovers what condition_evaluation_auto translates to. */
458
459static const char *
460breakpoint_condition_evaluation_mode (void)
461{
462 return translate_condition_evaluation_mode (condition_evaluation_mode);
463}
464
465/* Return true if GDB should evaluate breakpoint conditions or false
466 otherwise. */
467
468static int
469gdb_evaluates_breakpoint_condition_p (void)
470{
471 const char *mode = breakpoint_condition_evaluation_mode ();
472
473 return (mode == condition_evaluation_host);
474}
475
a14ed312 476void _initialize_breakpoint (void);
c906108c 477
c906108c
SS
478/* Are we executing breakpoint commands? */
479static int executing_breakpoint_commands;
480
c02f5703
MS
481/* Are overlay event breakpoints enabled? */
482static int overlay_events_enabled;
483
e09342b5
TJB
484/* See description in breakpoint.h. */
485int target_exact_watchpoints = 0;
486
c906108c 487/* Walk the following statement or block through all breakpoints.
e5dd4106 488 ALL_BREAKPOINTS_SAFE does so even if the statement deletes the
4a64f543 489 current breakpoint. */
c906108c 490
5c44784c 491#define ALL_BREAKPOINTS(B) for (B = breakpoint_chain; B; B = B->next)
c906108c 492
5c44784c
JM
493#define ALL_BREAKPOINTS_SAFE(B,TMP) \
494 for (B = breakpoint_chain; \
495 B ? (TMP=B->next, 1): 0; \
496 B = TMP)
c906108c 497
4a64f543
MS
498/* Similar iterator for the low-level breakpoints. SAFE variant is
499 not provided so update_global_location_list must not be called
500 while executing the block of ALL_BP_LOCATIONS. */
7cc221ef 501
876fa593
JK
502#define ALL_BP_LOCATIONS(B,BP_TMP) \
503 for (BP_TMP = bp_location; \
504 BP_TMP < bp_location + bp_location_count && (B = *BP_TMP); \
505 BP_TMP++)
7cc221ef 506
b775012e
LM
507/* Iterates through locations with address ADDRESS for the currently selected
508 program space. BP_LOCP_TMP points to each object. BP_LOCP_START points
509 to where the loop should start from.
510 If BP_LOCP_START is a NULL pointer, the macro automatically seeks the
511 appropriate location to start with. */
512
513#define ALL_BP_LOCATIONS_AT_ADDR(BP_LOCP_TMP, BP_LOCP_START, ADDRESS) \
514 for (BP_LOCP_START = BP_LOCP_START == NULL ? get_first_locp_gte_addr (ADDRESS) : BP_LOCP_START, \
515 BP_LOCP_TMP = BP_LOCP_START; \
516 BP_LOCP_START \
517 && (BP_LOCP_TMP < bp_location + bp_location_count \
518 && (*BP_LOCP_TMP)->address == ADDRESS); \
519 BP_LOCP_TMP++)
520
1042e4c0
SS
521/* Iterator for tracepoints only. */
522
523#define ALL_TRACEPOINTS(B) \
524 for (B = breakpoint_chain; B; B = B->next) \
d77f58be 525 if (is_tracepoint (B))
1042e4c0 526
7cc221ef 527/* Chains of all breakpoints defined. */
c906108c
SS
528
529struct breakpoint *breakpoint_chain;
530
876fa593
JK
531/* Array is sorted by bp_location_compare - primarily by the ADDRESS. */
532
533static struct bp_location **bp_location;
534
535/* Number of elements of BP_LOCATION. */
536
537static unsigned bp_location_count;
538
4a64f543
MS
539/* Maximum alignment offset between bp_target_info.PLACED_ADDRESS and
540 ADDRESS for the current elements of BP_LOCATION which get a valid
541 result from bp_location_has_shadow. You can use it for roughly
542 limiting the subrange of BP_LOCATION to scan for shadow bytes for
543 an address you need to read. */
876fa593
JK
544
545static CORE_ADDR bp_location_placed_address_before_address_max;
546
4a64f543
MS
547/* Maximum offset plus alignment between bp_target_info.PLACED_ADDRESS
548 + bp_target_info.SHADOW_LEN and ADDRESS for the current elements of
549 BP_LOCATION which get a valid result from bp_location_has_shadow.
550 You can use it for roughly limiting the subrange of BP_LOCATION to
551 scan for shadow bytes for an address you need to read. */
876fa593
JK
552
553static CORE_ADDR bp_location_shadow_len_after_address_max;
7cc221ef 554
4a64f543
MS
555/* The locations that no longer correspond to any breakpoint, unlinked
556 from bp_location array, but for which a hit may still be reported
557 by a target. */
20874c92
VP
558VEC(bp_location_p) *moribund_locations = NULL;
559
c906108c
SS
560/* Number of last breakpoint made. */
561
95a42b64
TT
562static int breakpoint_count;
563
86b17b60
PA
564/* The value of `breakpoint_count' before the last command that
565 created breakpoints. If the last (break-like) command created more
566 than one breakpoint, then the difference between BREAKPOINT_COUNT
567 and PREV_BREAKPOINT_COUNT is more than one. */
568static int prev_breakpoint_count;
c906108c 569
1042e4c0
SS
570/* Number of last tracepoint made. */
571
95a42b64 572static int tracepoint_count;
1042e4c0 573
6149aea9
PA
574static struct cmd_list_element *breakpoint_set_cmdlist;
575static struct cmd_list_element *breakpoint_show_cmdlist;
9291a0cd 576struct cmd_list_element *save_cmdlist;
6149aea9 577
468d015d
JJ
578/* Return whether a breakpoint is an active enabled breakpoint. */
579static int
580breakpoint_enabled (struct breakpoint *b)
581{
0d381245 582 return (b->enable_state == bp_enabled);
468d015d
JJ
583}
584
c906108c
SS
585/* Set breakpoint count to NUM. */
586
95a42b64 587static void
fba45db2 588set_breakpoint_count (int num)
c906108c 589{
86b17b60 590 prev_breakpoint_count = breakpoint_count;
c906108c 591 breakpoint_count = num;
4fa62494 592 set_internalvar_integer (lookup_internalvar ("bpnum"), num);
c906108c
SS
593}
594
86b17b60
PA
595/* Used by `start_rbreak_breakpoints' below, to record the current
596 breakpoint count before "rbreak" creates any breakpoint. */
597static int rbreak_start_breakpoint_count;
598
95a42b64
TT
599/* Called at the start an "rbreak" command to record the first
600 breakpoint made. */
86b17b60 601
95a42b64
TT
602void
603start_rbreak_breakpoints (void)
604{
86b17b60 605 rbreak_start_breakpoint_count = breakpoint_count;
95a42b64
TT
606}
607
608/* Called at the end of an "rbreak" command to record the last
609 breakpoint made. */
86b17b60 610
95a42b64
TT
611void
612end_rbreak_breakpoints (void)
613{
86b17b60 614 prev_breakpoint_count = rbreak_start_breakpoint_count;
95a42b64
TT
615}
616
4a64f543 617/* Used in run_command to zero the hit count when a new run starts. */
c906108c
SS
618
619void
fba45db2 620clear_breakpoint_hit_counts (void)
c906108c
SS
621{
622 struct breakpoint *b;
623
624 ALL_BREAKPOINTS (b)
625 b->hit_count = 0;
626}
627
9add0f1b
TT
628/* Allocate a new counted_command_line with reference count of 1.
629 The new structure owns COMMANDS. */
630
631static struct counted_command_line *
632alloc_counted_command_line (struct command_line *commands)
633{
634 struct counted_command_line *result
635 = xmalloc (sizeof (struct counted_command_line));
cc59ec59 636
9add0f1b
TT
637 result->refc = 1;
638 result->commands = commands;
639 return result;
640}
641
642/* Increment reference count. This does nothing if CMD is NULL. */
643
644static void
645incref_counted_command_line (struct counted_command_line *cmd)
646{
647 if (cmd)
648 ++cmd->refc;
649}
650
651/* Decrement reference count. If the reference count reaches 0,
652 destroy the counted_command_line. Sets *CMDP to NULL. This does
653 nothing if *CMDP is NULL. */
654
655static void
656decref_counted_command_line (struct counted_command_line **cmdp)
657{
658 if (*cmdp)
659 {
660 if (--(*cmdp)->refc == 0)
661 {
662 free_command_lines (&(*cmdp)->commands);
663 xfree (*cmdp);
664 }
665 *cmdp = NULL;
666 }
667}
668
669/* A cleanup function that calls decref_counted_command_line. */
670
671static void
672do_cleanup_counted_command_line (void *arg)
673{
674 decref_counted_command_line (arg);
675}
676
677/* Create a cleanup that calls decref_counted_command_line on the
678 argument. */
679
680static struct cleanup *
681make_cleanup_decref_counted_command_line (struct counted_command_line **cmdp)
682{
683 return make_cleanup (do_cleanup_counted_command_line, cmdp);
684}
685
c906108c 686\f
48cb2d85
VP
687/* Return the breakpoint with the specified number, or NULL
688 if the number does not refer to an existing breakpoint. */
689
690struct breakpoint *
691get_breakpoint (int num)
692{
693 struct breakpoint *b;
694
695 ALL_BREAKPOINTS (b)
696 if (b->number == num)
697 return b;
698
699 return NULL;
700}
5c44784c 701
c906108c 702\f
adc36818 703
b775012e
LM
704/* Mark locations as "conditions have changed" in case the target supports
705 evaluating conditions on its side. */
706
707static void
708mark_breakpoint_modified (struct breakpoint *b)
709{
710 struct bp_location *loc;
711
712 /* This is only meaningful if the target is
713 evaluating conditions and if the user has
714 opted for condition evaluation on the target's
715 side. */
716 if (gdb_evaluates_breakpoint_condition_p ()
717 || !target_supports_evaluation_of_breakpoint_conditions ())
718 return;
719
720 if (!is_breakpoint (b))
721 return;
722
723 for (loc = b->loc; loc; loc = loc->next)
724 loc->condition_changed = condition_modified;
725}
726
727/* Mark location as "conditions have changed" in case the target supports
728 evaluating conditions on its side. */
729
730static void
731mark_breakpoint_location_modified (struct bp_location *loc)
732{
733 /* This is only meaningful if the target is
734 evaluating conditions and if the user has
735 opted for condition evaluation on the target's
736 side. */
737 if (gdb_evaluates_breakpoint_condition_p ()
738 || !target_supports_evaluation_of_breakpoint_conditions ())
739
740 return;
741
742 if (!is_breakpoint (loc->owner))
743 return;
744
745 loc->condition_changed = condition_modified;
746}
747
748/* Sets the condition-evaluation mode using the static global
749 condition_evaluation_mode. */
750
751static void
752set_condition_evaluation_mode (char *args, int from_tty,
753 struct cmd_list_element *c)
754{
b775012e
LM
755 const char *old_mode, *new_mode;
756
757 if ((condition_evaluation_mode_1 == condition_evaluation_target)
758 && !target_supports_evaluation_of_breakpoint_conditions ())
759 {
760 condition_evaluation_mode_1 = condition_evaluation_mode;
761 warning (_("Target does not support breakpoint condition evaluation.\n"
762 "Using host evaluation mode instead."));
763 return;
764 }
765
766 new_mode = translate_condition_evaluation_mode (condition_evaluation_mode_1);
767 old_mode = translate_condition_evaluation_mode (condition_evaluation_mode);
768
abf1152a
JK
769 /* Flip the switch. Flip it even if OLD_MODE == NEW_MODE as one of the
770 settings was "auto". */
771 condition_evaluation_mode = condition_evaluation_mode_1;
772
b775012e
LM
773 /* Only update the mode if the user picked a different one. */
774 if (new_mode != old_mode)
775 {
776 struct bp_location *loc, **loc_tmp;
777 /* If the user switched to a different evaluation mode, we
778 need to synch the changes with the target as follows:
779
780 "host" -> "target": Send all (valid) conditions to the target.
781 "target" -> "host": Remove all the conditions from the target.
782 */
783
b775012e
LM
784 if (new_mode == condition_evaluation_target)
785 {
786 /* Mark everything modified and synch conditions with the
787 target. */
788 ALL_BP_LOCATIONS (loc, loc_tmp)
789 mark_breakpoint_location_modified (loc);
790 }
791 else
792 {
793 /* Manually mark non-duplicate locations to synch conditions
794 with the target. We do this to remove all the conditions the
795 target knows about. */
796 ALL_BP_LOCATIONS (loc, loc_tmp)
797 if (is_breakpoint (loc->owner) && loc->inserted)
798 loc->needs_update = 1;
799 }
800
801 /* Do the update. */
802 update_global_location_list (1);
803 }
804
805 return;
806}
807
808/* Shows the current mode of breakpoint condition evaluation. Explicitly shows
809 what "auto" is translating to. */
810
811static void
812show_condition_evaluation_mode (struct ui_file *file, int from_tty,
813 struct cmd_list_element *c, const char *value)
814{
815 if (condition_evaluation_mode == condition_evaluation_auto)
816 fprintf_filtered (file,
817 _("Breakpoint condition evaluation "
818 "mode is %s (currently %s).\n"),
819 value,
820 breakpoint_condition_evaluation_mode ());
821 else
822 fprintf_filtered (file, _("Breakpoint condition evaluation mode is %s.\n"),
823 value);
824}
825
826/* A comparison function for bp_location AP and BP that is used by
827 bsearch. This comparison function only cares about addresses, unlike
828 the more general bp_location_compare function. */
829
830static int
831bp_location_compare_addrs (const void *ap, const void *bp)
832{
833 struct bp_location *a = *(void **) ap;
834 struct bp_location *b = *(void **) bp;
835
836 if (a->address == b->address)
837 return 0;
838 else
839 return ((a->address > b->address) - (a->address < b->address));
840}
841
842/* Helper function to skip all bp_locations with addresses
843 less than ADDRESS. It returns the first bp_location that
844 is greater than or equal to ADDRESS. If none is found, just
845 return NULL. */
846
847static struct bp_location **
848get_first_locp_gte_addr (CORE_ADDR address)
849{
850 struct bp_location dummy_loc;
851 struct bp_location *dummy_locp = &dummy_loc;
852 struct bp_location **locp_found = NULL;
853
854 /* Initialize the dummy location's address field. */
855 memset (&dummy_loc, 0, sizeof (struct bp_location));
856 dummy_loc.address = address;
857
858 /* Find a close match to the first location at ADDRESS. */
859 locp_found = bsearch (&dummy_locp, bp_location, bp_location_count,
860 sizeof (struct bp_location **),
861 bp_location_compare_addrs);
862
863 /* Nothing was found, nothing left to do. */
864 if (locp_found == NULL)
865 return NULL;
866
867 /* We may have found a location that is at ADDRESS but is not the first in the
868 location's list. Go backwards (if possible) and locate the first one. */
869 while ((locp_found - 1) >= bp_location
870 && (*(locp_found - 1))->address == address)
871 locp_found--;
872
873 return locp_found;
874}
875
adc36818
PM
876void
877set_breakpoint_condition (struct breakpoint *b, char *exp,
878 int from_tty)
879{
3a5c3e22
PA
880 xfree (b->cond_string);
881 b->cond_string = NULL;
adc36818 882
3a5c3e22 883 if (is_watchpoint (b))
adc36818 884 {
3a5c3e22
PA
885 struct watchpoint *w = (struct watchpoint *) b;
886
887 xfree (w->cond_exp);
888 w->cond_exp = NULL;
889 }
890 else
891 {
892 struct bp_location *loc;
893
894 for (loc = b->loc; loc; loc = loc->next)
895 {
896 xfree (loc->cond);
897 loc->cond = NULL;
b775012e
LM
898
899 /* No need to free the condition agent expression
900 bytecode (if we have one). We will handle this
901 when we go through update_global_location_list. */
3a5c3e22 902 }
adc36818 903 }
adc36818
PM
904
905 if (*exp == 0)
906 {
907 if (from_tty)
908 printf_filtered (_("Breakpoint %d now unconditional.\n"), b->number);
909 }
910 else
911 {
912 char *arg = exp;
cc59ec59 913
adc36818
PM
914 /* I don't know if it matters whether this is the string the user
915 typed in or the decompiled expression. */
916 b->cond_string = xstrdup (arg);
917 b->condition_not_parsed = 0;
918
919 if (is_watchpoint (b))
920 {
3a5c3e22
PA
921 struct watchpoint *w = (struct watchpoint *) b;
922
adc36818
PM
923 innermost_block = NULL;
924 arg = exp;
3a5c3e22 925 w->cond_exp = parse_exp_1 (&arg, 0, 0);
adc36818
PM
926 if (*arg)
927 error (_("Junk at end of expression"));
3a5c3e22 928 w->cond_exp_valid_block = innermost_block;
adc36818
PM
929 }
930 else
931 {
3a5c3e22
PA
932 struct bp_location *loc;
933
adc36818
PM
934 for (loc = b->loc; loc; loc = loc->next)
935 {
936 arg = exp;
937 loc->cond =
938 parse_exp_1 (&arg, block_for_pc (loc->address), 0);
939 if (*arg)
940 error (_("Junk at end of expression"));
941 }
942 }
943 }
b775012e
LM
944 mark_breakpoint_modified (b);
945
adc36818 946 breakpoints_changed ();
8d3788bd 947 observer_notify_breakpoint_modified (b);
adc36818
PM
948}
949
c906108c
SS
950/* condition N EXP -- set break condition of breakpoint N to EXP. */
951
952static void
fba45db2 953condition_command (char *arg, int from_tty)
c906108c 954{
52f0bd74 955 struct breakpoint *b;
c906108c 956 char *p;
52f0bd74 957 int bnum;
c906108c
SS
958
959 if (arg == 0)
e2e0b3e5 960 error_no_arg (_("breakpoint number"));
c906108c
SS
961
962 p = arg;
963 bnum = get_number (&p);
5c44784c 964 if (bnum == 0)
8a3fe4f8 965 error (_("Bad breakpoint argument: '%s'"), arg);
c906108c
SS
966
967 ALL_BREAKPOINTS (b)
968 if (b->number == bnum)
2f069f6f 969 {
7371cf6d
PM
970 /* Check if this breakpoint has a Python object assigned to
971 it, and if it has a definition of the "stop"
972 method. This method and conditions entered into GDB from
973 the CLI are mutually exclusive. */
974 if (b->py_bp_object
975 && gdbpy_breakpoint_has_py_cond (b->py_bp_object))
976 error (_("Cannot set a condition where a Python 'stop' "
977 "method has been defined in the breakpoint."));
2566ad2d 978 set_breakpoint_condition (b, p, from_tty);
b775012e
LM
979
980 if (is_breakpoint (b))
981 update_global_location_list (1);
982
2f069f6f
JB
983 return;
984 }
c906108c 985
8a3fe4f8 986 error (_("No breakpoint number %d."), bnum);
c906108c
SS
987}
988
a7bdde9e
VP
989/* Check that COMMAND do not contain commands that are suitable
990 only for tracepoints and not suitable for ordinary breakpoints.
4a64f543
MS
991 Throw if any such commands is found. */
992
a7bdde9e
VP
993static void
994check_no_tracepoint_commands (struct command_line *commands)
995{
996 struct command_line *c;
cc59ec59 997
a7bdde9e
VP
998 for (c = commands; c; c = c->next)
999 {
1000 int i;
1001
1002 if (c->control_type == while_stepping_control)
3e43a32a
MS
1003 error (_("The 'while-stepping' command can "
1004 "only be used for tracepoints"));
a7bdde9e
VP
1005
1006 for (i = 0; i < c->body_count; ++i)
1007 check_no_tracepoint_commands ((c->body_list)[i]);
1008
1009 /* Not that command parsing removes leading whitespace and comment
4a64f543 1010 lines and also empty lines. So, we only need to check for
a7bdde9e
VP
1011 command directly. */
1012 if (strstr (c->line, "collect ") == c->line)
1013 error (_("The 'collect' command can only be used for tracepoints"));
1014
51661e93
VP
1015 if (strstr (c->line, "teval ") == c->line)
1016 error (_("The 'teval' command can only be used for tracepoints"));
a7bdde9e
VP
1017 }
1018}
1019
d77f58be
SS
1020/* Encapsulate tests for different types of tracepoints. */
1021
d9b3f62e
PA
1022static int
1023is_tracepoint_type (enum bptype type)
1024{
1025 return (type == bp_tracepoint
1026 || type == bp_fast_tracepoint
1027 || type == bp_static_tracepoint);
1028}
1029
a7bdde9e 1030int
d77f58be 1031is_tracepoint (const struct breakpoint *b)
a7bdde9e 1032{
d9b3f62e 1033 return is_tracepoint_type (b->type);
a7bdde9e 1034}
d9b3f62e 1035
e5dd4106 1036/* A helper function that validates that COMMANDS are valid for a
95a42b64
TT
1037 breakpoint. This function will throw an exception if a problem is
1038 found. */
48cb2d85 1039
95a42b64
TT
1040static void
1041validate_commands_for_breakpoint (struct breakpoint *b,
1042 struct command_line *commands)
48cb2d85 1043{
d77f58be 1044 if (is_tracepoint (b))
a7bdde9e 1045 {
4a64f543
MS
1046 /* We need to verify that each top-level element of commands is
1047 valid for tracepoints, that there's at most one
1048 while-stepping element, and that while-stepping's body has
1049 valid tracing commands excluding nested while-stepping. */
a7bdde9e
VP
1050 struct command_line *c;
1051 struct command_line *while_stepping = 0;
1052 for (c = commands; c; c = c->next)
1053 {
a7bdde9e
VP
1054 if (c->control_type == while_stepping_control)
1055 {
1056 if (b->type == bp_fast_tracepoint)
3e43a32a
MS
1057 error (_("The 'while-stepping' command "
1058 "cannot be used for fast tracepoint"));
0fb4aa4b 1059 else if (b->type == bp_static_tracepoint)
3e43a32a
MS
1060 error (_("The 'while-stepping' command "
1061 "cannot be used for static tracepoint"));
a7bdde9e
VP
1062
1063 if (while_stepping)
3e43a32a
MS
1064 error (_("The 'while-stepping' command "
1065 "can be used only once"));
a7bdde9e
VP
1066 else
1067 while_stepping = c;
1068 }
1069 }
1070 if (while_stepping)
1071 {
1072 struct command_line *c2;
1073
1074 gdb_assert (while_stepping->body_count == 1);
1075 c2 = while_stepping->body_list[0];
1076 for (; c2; c2 = c2->next)
1077 {
a7bdde9e
VP
1078 if (c2->control_type == while_stepping_control)
1079 error (_("The 'while-stepping' command cannot be nested"));
1080 }
1081 }
1082 }
1083 else
1084 {
1085 check_no_tracepoint_commands (commands);
1086 }
95a42b64
TT
1087}
1088
0fb4aa4b
PA
1089/* Return a vector of all the static tracepoints set at ADDR. The
1090 caller is responsible for releasing the vector. */
1091
1092VEC(breakpoint_p) *
1093static_tracepoints_here (CORE_ADDR addr)
1094{
1095 struct breakpoint *b;
1096 VEC(breakpoint_p) *found = 0;
1097 struct bp_location *loc;
1098
1099 ALL_BREAKPOINTS (b)
1100 if (b->type == bp_static_tracepoint)
1101 {
1102 for (loc = b->loc; loc; loc = loc->next)
1103 if (loc->address == addr)
1104 VEC_safe_push(breakpoint_p, found, b);
1105 }
1106
1107 return found;
1108}
1109
95a42b64 1110/* Set the command list of B to COMMANDS. If breakpoint is tracepoint,
4a64f543 1111 validate that only allowed commands are included. */
95a42b64
TT
1112
1113void
4a64f543
MS
1114breakpoint_set_commands (struct breakpoint *b,
1115 struct command_line *commands)
95a42b64
TT
1116{
1117 validate_commands_for_breakpoint (b, commands);
a7bdde9e 1118
9add0f1b
TT
1119 decref_counted_command_line (&b->commands);
1120 b->commands = alloc_counted_command_line (commands);
48cb2d85 1121 breakpoints_changed ();
8d3788bd 1122 observer_notify_breakpoint_modified (b);
48cb2d85
VP
1123}
1124
45a43567
TT
1125/* Set the internal `silent' flag on the breakpoint. Note that this
1126 is not the same as the "silent" that may appear in the breakpoint's
1127 commands. */
1128
1129void
1130breakpoint_set_silent (struct breakpoint *b, int silent)
1131{
1132 int old_silent = b->silent;
1133
1134 b->silent = silent;
1135 if (old_silent != silent)
8d3788bd 1136 observer_notify_breakpoint_modified (b);
45a43567
TT
1137}
1138
1139/* Set the thread for this breakpoint. If THREAD is -1, make the
1140 breakpoint work for any thread. */
1141
1142void
1143breakpoint_set_thread (struct breakpoint *b, int thread)
1144{
1145 int old_thread = b->thread;
1146
1147 b->thread = thread;
1148 if (old_thread != thread)
8d3788bd 1149 observer_notify_breakpoint_modified (b);
45a43567
TT
1150}
1151
1152/* Set the task for this breakpoint. If TASK is 0, make the
1153 breakpoint work for any task. */
1154
1155void
1156breakpoint_set_task (struct breakpoint *b, int task)
1157{
1158 int old_task = b->task;
1159
1160 b->task = task;
1161 if (old_task != task)
8d3788bd 1162 observer_notify_breakpoint_modified (b);
45a43567
TT
1163}
1164
95a42b64
TT
1165void
1166check_tracepoint_command (char *line, void *closure)
a7bdde9e
VP
1167{
1168 struct breakpoint *b = closure;
cc59ec59 1169
a7bdde9e
VP
1170 validate_actionline (&line, b);
1171}
1172
95a42b64
TT
1173/* A structure used to pass information through
1174 map_breakpoint_numbers. */
1175
1176struct commands_info
1177{
1178 /* True if the command was typed at a tty. */
1179 int from_tty;
86b17b60
PA
1180
1181 /* The breakpoint range spec. */
1182 char *arg;
1183
95a42b64
TT
1184 /* Non-NULL if the body of the commands are being read from this
1185 already-parsed command. */
1186 struct command_line *control;
86b17b60 1187
95a42b64
TT
1188 /* The command lines read from the user, or NULL if they have not
1189 yet been read. */
1190 struct counted_command_line *cmd;
1191};
1192
1193/* A callback for map_breakpoint_numbers that sets the commands for
1194 commands_command. */
1195
c906108c 1196static void
95a42b64 1197do_map_commands_command (struct breakpoint *b, void *data)
c906108c 1198{
95a42b64 1199 struct commands_info *info = data;
c906108c 1200
95a42b64
TT
1201 if (info->cmd == NULL)
1202 {
1203 struct command_line *l;
5c44784c 1204
95a42b64
TT
1205 if (info->control != NULL)
1206 l = copy_command_lines (info->control->body_list[0]);
1207 else
86b17b60
PA
1208 {
1209 struct cleanup *old_chain;
1210 char *str;
c5aa993b 1211
3e43a32a
MS
1212 str = xstrprintf (_("Type commands for breakpoint(s) "
1213 "%s, one per line."),
86b17b60
PA
1214 info->arg);
1215
1216 old_chain = make_cleanup (xfree, str);
1217
1218 l = read_command_lines (str,
1219 info->from_tty, 1,
d77f58be 1220 (is_tracepoint (b)
86b17b60
PA
1221 ? check_tracepoint_command : 0),
1222 b);
1223
1224 do_cleanups (old_chain);
1225 }
a7bdde9e 1226
95a42b64
TT
1227 info->cmd = alloc_counted_command_line (l);
1228 }
1229
1230 /* If a breakpoint was on the list more than once, we don't need to
1231 do anything. */
1232 if (b->commands != info->cmd)
1233 {
1234 validate_commands_for_breakpoint (b, info->cmd->commands);
1235 incref_counted_command_line (info->cmd);
1236 decref_counted_command_line (&b->commands);
1237 b->commands = info->cmd;
1238 breakpoints_changed ();
8d3788bd 1239 observer_notify_breakpoint_modified (b);
c5aa993b 1240 }
95a42b64
TT
1241}
1242
1243static void
4a64f543
MS
1244commands_command_1 (char *arg, int from_tty,
1245 struct command_line *control)
95a42b64
TT
1246{
1247 struct cleanup *cleanups;
1248 struct commands_info info;
1249
1250 info.from_tty = from_tty;
1251 info.control = control;
1252 info.cmd = NULL;
1253 /* If we read command lines from the user, then `info' will hold an
1254 extra reference to the commands that we must clean up. */
1255 cleanups = make_cleanup_decref_counted_command_line (&info.cmd);
1256
1257 if (arg == NULL || !*arg)
1258 {
86b17b60 1259 if (breakpoint_count - prev_breakpoint_count > 1)
4a64f543
MS
1260 arg = xstrprintf ("%d-%d", prev_breakpoint_count + 1,
1261 breakpoint_count);
95a42b64
TT
1262 else if (breakpoint_count > 0)
1263 arg = xstrprintf ("%d", breakpoint_count);
86b17b60
PA
1264 else
1265 {
1266 /* So that we don't try to free the incoming non-NULL
1267 argument in the cleanup below. Mapping breakpoint
1268 numbers will fail in this case. */
1269 arg = NULL;
1270 }
95a42b64 1271 }
9766ced4
SS
1272 else
1273 /* The command loop has some static state, so we need to preserve
1274 our argument. */
1275 arg = xstrdup (arg);
86b17b60
PA
1276
1277 if (arg != NULL)
1278 make_cleanup (xfree, arg);
1279
1280 info.arg = arg;
95a42b64
TT
1281
1282 map_breakpoint_numbers (arg, do_map_commands_command, &info);
1283
1284 if (info.cmd == NULL)
1285 error (_("No breakpoints specified."));
1286
1287 do_cleanups (cleanups);
1288}
1289
1290static void
1291commands_command (char *arg, int from_tty)
1292{
1293 commands_command_1 (arg, from_tty, NULL);
c906108c 1294}
40c03ae8
EZ
1295
1296/* Like commands_command, but instead of reading the commands from
1297 input stream, takes them from an already parsed command structure.
1298
1299 This is used by cli-script.c to DTRT with breakpoint commands
1300 that are part of if and while bodies. */
1301enum command_control_type
1302commands_from_control_command (char *arg, struct command_line *cmd)
1303{
95a42b64
TT
1304 commands_command_1 (arg, 0, cmd);
1305 return simple_control;
40c03ae8 1306}
876fa593
JK
1307
1308/* Return non-zero if BL->TARGET_INFO contains valid information. */
1309
1310static int
1311bp_location_has_shadow (struct bp_location *bl)
1312{
1313 if (bl->loc_type != bp_loc_software_breakpoint)
1314 return 0;
1315 if (!bl->inserted)
1316 return 0;
1317 if (bl->target_info.shadow_len == 0)
e5dd4106 1318 /* BL isn't valid, or doesn't shadow memory. */
876fa593
JK
1319 return 0;
1320 return 1;
1321}
1322
8defab1a 1323/* Update BUF, which is LEN bytes read from the target address MEMADDR,
876fa593
JK
1324 by replacing any memory breakpoints with their shadowed contents.
1325
35c63cd8
JB
1326 If READBUF is not NULL, this buffer must not overlap with any of
1327 the breakpoint location's shadow_contents buffers. Otherwise,
1328 a failed assertion internal error will be raised.
1329
876fa593 1330 The range of shadowed area by each bp_location is:
35df4500
TJB
1331 bl->address - bp_location_placed_address_before_address_max
1332 up to bl->address + bp_location_shadow_len_after_address_max
876fa593
JK
1333 The range we were requested to resolve shadows for is:
1334 memaddr ... memaddr + len
1335 Thus the safe cutoff boundaries for performance optimization are
35df4500
TJB
1336 memaddr + len <= (bl->address
1337 - bp_location_placed_address_before_address_max)
876fa593 1338 and:
35df4500 1339 bl->address + bp_location_shadow_len_after_address_max <= memaddr */
c906108c 1340
8defab1a 1341void
f0ba3972
PA
1342breakpoint_xfer_memory (gdb_byte *readbuf, gdb_byte *writebuf,
1343 const gdb_byte *writebuf_org,
1344 ULONGEST memaddr, LONGEST len)
c906108c 1345{
4a64f543
MS
1346 /* Left boundary, right boundary and median element of our binary
1347 search. */
876fa593
JK
1348 unsigned bc_l, bc_r, bc;
1349
4a64f543
MS
1350 /* Find BC_L which is a leftmost element which may affect BUF
1351 content. It is safe to report lower value but a failure to
1352 report higher one. */
876fa593
JK
1353
1354 bc_l = 0;
1355 bc_r = bp_location_count;
1356 while (bc_l + 1 < bc_r)
1357 {
35df4500 1358 struct bp_location *bl;
876fa593
JK
1359
1360 bc = (bc_l + bc_r) / 2;
35df4500 1361 bl = bp_location[bc];
876fa593 1362
4a64f543
MS
1363 /* Check first BL->ADDRESS will not overflow due to the added
1364 constant. Then advance the left boundary only if we are sure
1365 the BC element can in no way affect the BUF content (MEMADDR
1366 to MEMADDR + LEN range).
876fa593 1367
4a64f543
MS
1368 Use the BP_LOCATION_SHADOW_LEN_AFTER_ADDRESS_MAX safety
1369 offset so that we cannot miss a breakpoint with its shadow
1370 range tail still reaching MEMADDR. */
c5aa993b 1371
35df4500
TJB
1372 if ((bl->address + bp_location_shadow_len_after_address_max
1373 >= bl->address)
1374 && (bl->address + bp_location_shadow_len_after_address_max
1375 <= memaddr))
876fa593
JK
1376 bc_l = bc;
1377 else
1378 bc_r = bc;
1379 }
1380
128070bb
PA
1381 /* Due to the binary search above, we need to make sure we pick the
1382 first location that's at BC_L's address. E.g., if there are
1383 multiple locations at the same address, BC_L may end up pointing
1384 at a duplicate location, and miss the "master"/"inserted"
1385 location. Say, given locations L1, L2 and L3 at addresses A and
1386 B:
1387
1388 L1@A, L2@A, L3@B, ...
1389
1390 BC_L could end up pointing at location L2, while the "master"
1391 location could be L1. Since the `loc->inserted' flag is only set
1392 on "master" locations, we'd forget to restore the shadow of L1
1393 and L2. */
1394 while (bc_l > 0
1395 && bp_location[bc_l]->address == bp_location[bc_l - 1]->address)
1396 bc_l--;
1397
876fa593
JK
1398 /* Now do full processing of the found relevant range of elements. */
1399
1400 for (bc = bc_l; bc < bp_location_count; bc++)
c5aa993b 1401 {
35df4500 1402 struct bp_location *bl = bp_location[bc];
876fa593
JK
1403 CORE_ADDR bp_addr = 0;
1404 int bp_size = 0;
1405 int bptoffset = 0;
1406
35df4500
TJB
1407 /* bp_location array has BL->OWNER always non-NULL. */
1408 if (bl->owner->type == bp_none)
8a3fe4f8 1409 warning (_("reading through apparently deleted breakpoint #%d?"),
35df4500 1410 bl->owner->number);
ffce0d52 1411
e5dd4106 1412 /* Performance optimization: any further element can no longer affect BUF
876fa593
JK
1413 content. */
1414
35df4500
TJB
1415 if (bl->address >= bp_location_placed_address_before_address_max
1416 && memaddr + len <= (bl->address
1417 - bp_location_placed_address_before_address_max))
876fa593
JK
1418 break;
1419
35df4500 1420 if (!bp_location_has_shadow (bl))
c5aa993b 1421 continue;
35df4500 1422 if (!breakpoint_address_match (bl->target_info.placed_address_space, 0,
6c95b8df
PA
1423 current_program_space->aspace, 0))
1424 continue;
1425
c5aa993b
JM
1426 /* Addresses and length of the part of the breakpoint that
1427 we need to copy. */
35df4500
TJB
1428 bp_addr = bl->target_info.placed_address;
1429 bp_size = bl->target_info.shadow_len;
8defab1a 1430
c5aa993b
JM
1431 if (bp_addr + bp_size <= memaddr)
1432 /* The breakpoint is entirely before the chunk of memory we
1433 are reading. */
1434 continue;
8defab1a 1435
c5aa993b
JM
1436 if (bp_addr >= memaddr + len)
1437 /* The breakpoint is entirely after the chunk of memory we are
4a64f543 1438 reading. */
c5aa993b 1439 continue;
c5aa993b 1440
8defab1a
DJ
1441 /* Offset within shadow_contents. */
1442 if (bp_addr < memaddr)
1443 {
1444 /* Only copy the second part of the breakpoint. */
1445 bp_size -= memaddr - bp_addr;
1446 bptoffset = memaddr - bp_addr;
1447 bp_addr = memaddr;
1448 }
c5aa993b 1449
8defab1a
DJ
1450 if (bp_addr + bp_size > memaddr + len)
1451 {
1452 /* Only copy the first part of the breakpoint. */
1453 bp_size -= (bp_addr + bp_size) - (memaddr + len);
1454 }
c5aa993b 1455
f0ba3972
PA
1456 if (readbuf != NULL)
1457 {
35c63cd8
JB
1458 /* Verify that the readbuf buffer does not overlap with
1459 the shadow_contents buffer. */
1460 gdb_assert (bl->target_info.shadow_contents >= readbuf + len
1461 || readbuf >= (bl->target_info.shadow_contents
1462 + bl->target_info.shadow_len));
1463
f0ba3972
PA
1464 /* Update the read buffer with this inserted breakpoint's
1465 shadow. */
1466 memcpy (readbuf + bp_addr - memaddr,
1467 bl->target_info.shadow_contents + bptoffset, bp_size);
1468 }
1469 else
1470 {
1471 struct gdbarch *gdbarch = bl->gdbarch;
1472 const unsigned char *bp;
1473 CORE_ADDR placed_address = bl->target_info.placed_address;
1474 unsigned placed_size = bl->target_info.placed_size;
1475
1476 /* Update the shadow with what we want to write to memory. */
1477 memcpy (bl->target_info.shadow_contents + bptoffset,
1478 writebuf_org + bp_addr - memaddr, bp_size);
1479
1480 /* Determine appropriate breakpoint contents and size for this
1481 address. */
1482 bp = gdbarch_breakpoint_from_pc (gdbarch, &placed_address, &placed_size);
1483
1484 /* Update the final write buffer with this inserted
1485 breakpoint's INSN. */
1486 memcpy (writebuf + bp_addr - memaddr, bp + bptoffset, bp_size);
1487 }
c5aa993b 1488 }
c906108c 1489}
c906108c 1490\f
c5aa993b 1491
b775012e
LM
1492/* Return true if BPT is either a software breakpoint or a hardware
1493 breakpoint. */
1494
1495int
1496is_breakpoint (const struct breakpoint *bpt)
1497{
1498 return (bpt->type == bp_breakpoint
e7e0cddf
SS
1499 || bpt->type == bp_hardware_breakpoint
1500 || bpt->type == bp_dprintf);
b775012e
LM
1501}
1502
60e1c644
PA
1503/* Return true if BPT is of any hardware watchpoint kind. */
1504
a5606eee 1505static int
d77f58be 1506is_hardware_watchpoint (const struct breakpoint *bpt)
a5606eee
VP
1507{
1508 return (bpt->type == bp_hardware_watchpoint
1509 || bpt->type == bp_read_watchpoint
1510 || bpt->type == bp_access_watchpoint);
1511}
7270d8f2 1512
60e1c644
PA
1513/* Return true if BPT is of any watchpoint kind, hardware or
1514 software. */
1515
3a5c3e22 1516int
d77f58be 1517is_watchpoint (const struct breakpoint *bpt)
60e1c644
PA
1518{
1519 return (is_hardware_watchpoint (bpt)
1520 || bpt->type == bp_watchpoint);
1521}
1522
3a5c3e22
PA
1523/* Returns true if the current thread and its running state are safe
1524 to evaluate or update watchpoint B. Watchpoints on local
1525 expressions need to be evaluated in the context of the thread that
1526 was current when the watchpoint was created, and, that thread needs
1527 to be stopped to be able to select the correct frame context.
1528 Watchpoints on global expressions can be evaluated on any thread,
1529 and in any state. It is presently left to the target allowing
1530 memory accesses when threads are running. */
f6bc2008
PA
1531
1532static int
3a5c3e22 1533watchpoint_in_thread_scope (struct watchpoint *b)
f6bc2008 1534{
d0d8b0c6
JK
1535 return (b->base.pspace == current_program_space
1536 && (ptid_equal (b->watchpoint_thread, null_ptid)
1537 || (ptid_equal (inferior_ptid, b->watchpoint_thread)
1538 && !is_executing (inferior_ptid))));
f6bc2008
PA
1539}
1540
d0fb5eae
JK
1541/* Set watchpoint B to disp_del_at_next_stop, even including its possible
1542 associated bp_watchpoint_scope breakpoint. */
1543
1544static void
3a5c3e22 1545watchpoint_del_at_next_stop (struct watchpoint *w)
d0fb5eae 1546{
3a5c3e22 1547 struct breakpoint *b = &w->base;
d0fb5eae
JK
1548
1549 if (b->related_breakpoint != b)
1550 {
1551 gdb_assert (b->related_breakpoint->type == bp_watchpoint_scope);
1552 gdb_assert (b->related_breakpoint->related_breakpoint == b);
1553 b->related_breakpoint->disposition = disp_del_at_next_stop;
1554 b->related_breakpoint->related_breakpoint = b->related_breakpoint;
1555 b->related_breakpoint = b;
1556 }
1557 b->disposition = disp_del_at_next_stop;
1558}
1559
567e1b4e
JB
1560/* Assuming that B is a watchpoint:
1561 - Reparse watchpoint expression, if REPARSE is non-zero
a5606eee 1562 - Evaluate expression and store the result in B->val
567e1b4e
JB
1563 - Evaluate the condition if there is one, and store the result
1564 in b->loc->cond.
a5606eee
VP
1565 - Update the list of values that must be watched in B->loc.
1566
4a64f543
MS
1567 If the watchpoint disposition is disp_del_at_next_stop, then do
1568 nothing. If this is local watchpoint that is out of scope, delete
1569 it.
1570
1571 Even with `set breakpoint always-inserted on' the watchpoints are
1572 removed + inserted on each stop here. Normal breakpoints must
1573 never be removed because they might be missed by a running thread
1574 when debugging in non-stop mode. On the other hand, hardware
1575 watchpoints (is_hardware_watchpoint; processed here) are specific
1576 to each LWP since they are stored in each LWP's hardware debug
1577 registers. Therefore, such LWP must be stopped first in order to
1578 be able to modify its hardware watchpoints.
1579
1580 Hardware watchpoints must be reset exactly once after being
1581 presented to the user. It cannot be done sooner, because it would
1582 reset the data used to present the watchpoint hit to the user. And
1583 it must not be done later because it could display the same single
1584 watchpoint hit during multiple GDB stops. Note that the latter is
1585 relevant only to the hardware watchpoint types bp_read_watchpoint
1586 and bp_access_watchpoint. False hit by bp_hardware_watchpoint is
1587 not user-visible - its hit is suppressed if the memory content has
1588 not changed.
1589
1590 The following constraints influence the location where we can reset
1591 hardware watchpoints:
1592
1593 * target_stopped_by_watchpoint and target_stopped_data_address are
1594 called several times when GDB stops.
1595
1596 [linux]
1597 * Multiple hardware watchpoints can be hit at the same time,
1598 causing GDB to stop. GDB only presents one hardware watchpoint
1599 hit at a time as the reason for stopping, and all the other hits
1600 are presented later, one after the other, each time the user
1601 requests the execution to be resumed. Execution is not resumed
1602 for the threads still having pending hit event stored in
1603 LWP_INFO->STATUS. While the watchpoint is already removed from
1604 the inferior on the first stop the thread hit event is kept being
1605 reported from its cached value by linux_nat_stopped_data_address
1606 until the real thread resume happens after the watchpoint gets
1607 presented and thus its LWP_INFO->STATUS gets reset.
1608
1609 Therefore the hardware watchpoint hit can get safely reset on the
1610 watchpoint removal from inferior. */
a79d3c27 1611
b40ce68a 1612static void
3a5c3e22 1613update_watchpoint (struct watchpoint *b, int reparse)
7270d8f2 1614{
a5606eee 1615 int within_current_scope;
a5606eee 1616 struct frame_id saved_frame_id;
66076460 1617 int frame_saved;
a5606eee 1618
f6bc2008
PA
1619 /* If this is a local watchpoint, we only want to check if the
1620 watchpoint frame is in scope if the current thread is the thread
1621 that was used to create the watchpoint. */
1622 if (!watchpoint_in_thread_scope (b))
1623 return;
1624
3a5c3e22 1625 if (b->base.disposition == disp_del_at_next_stop)
a5606eee
VP
1626 return;
1627
66076460 1628 frame_saved = 0;
a5606eee
VP
1629
1630 /* Determine if the watchpoint is within scope. */
1631 if (b->exp_valid_block == NULL)
1632 within_current_scope = 1;
1633 else
1634 {
b5db5dfc
UW
1635 struct frame_info *fi = get_current_frame ();
1636 struct gdbarch *frame_arch = get_frame_arch (fi);
1637 CORE_ADDR frame_pc = get_frame_pc (fi);
1638
1639 /* If we're in a function epilogue, unwinding may not work
1640 properly, so do not attempt to recreate locations at this
1641 point. See similar comments in watchpoint_check. */
1642 if (gdbarch_in_function_epilogue_p (frame_arch, frame_pc))
1643 return;
66076460
DJ
1644
1645 /* Save the current frame's ID so we can restore it after
1646 evaluating the watchpoint expression on its own frame. */
1647 /* FIXME drow/2003-09-09: It would be nice if evaluate_expression
1648 took a frame parameter, so that we didn't have to change the
1649 selected frame. */
1650 frame_saved = 1;
1651 saved_frame_id = get_frame_id (get_selected_frame (NULL));
1652
a5606eee
VP
1653 fi = frame_find_by_id (b->watchpoint_frame);
1654 within_current_scope = (fi != NULL);
1655 if (within_current_scope)
1656 select_frame (fi);
1657 }
1658
b5db5dfc
UW
1659 /* We don't free locations. They are stored in the bp_location array
1660 and update_global_location_list will eventually delete them and
1661 remove breakpoints if needed. */
3a5c3e22 1662 b->base.loc = NULL;
b5db5dfc 1663
a5606eee
VP
1664 if (within_current_scope && reparse)
1665 {
1666 char *s;
d63d0675 1667
a5606eee
VP
1668 if (b->exp)
1669 {
1670 xfree (b->exp);
1671 b->exp = NULL;
1672 }
d63d0675 1673 s = b->exp_string_reparse ? b->exp_string_reparse : b->exp_string;
a5606eee
VP
1674 b->exp = parse_exp_1 (&s, b->exp_valid_block, 0);
1675 /* If the meaning of expression itself changed, the old value is
1676 no longer relevant. We don't want to report a watchpoint hit
1677 to the user when the old value and the new value may actually
1678 be completely different objects. */
1679 value_free (b->val);
fa4727a6
DJ
1680 b->val = NULL;
1681 b->val_valid = 0;
60e1c644
PA
1682
1683 /* Note that unlike with breakpoints, the watchpoint's condition
1684 expression is stored in the breakpoint object, not in the
1685 locations (re)created below. */
3a5c3e22 1686 if (b->base.cond_string != NULL)
60e1c644
PA
1687 {
1688 if (b->cond_exp != NULL)
1689 {
1690 xfree (b->cond_exp);
1691 b->cond_exp = NULL;
1692 }
1693
3a5c3e22 1694 s = b->base.cond_string;
60e1c644
PA
1695 b->cond_exp = parse_exp_1 (&s, b->cond_exp_valid_block, 0);
1696 }
a5606eee 1697 }
a5606eee
VP
1698
1699 /* If we failed to parse the expression, for example because
1700 it refers to a global variable in a not-yet-loaded shared library,
1701 don't try to insert watchpoint. We don't automatically delete
1702 such watchpoint, though, since failure to parse expression
1703 is different from out-of-scope watchpoint. */
2d134ed3
PA
1704 if ( !target_has_execution)
1705 {
1706 /* Without execution, memory can't change. No use to try and
1707 set watchpoint locations. The watchpoint will be reset when
1708 the target gains execution, through breakpoint_re_set. */
1709 }
1710 else if (within_current_scope && b->exp)
a5606eee 1711 {
0cf6dd15 1712 int pc = 0;
fa4727a6 1713 struct value *val_chain, *v, *result, *next;
2d134ed3 1714 struct program_space *frame_pspace;
a5606eee 1715
0cf6dd15 1716 fetch_subexp_value (b->exp, &pc, &v, &result, &val_chain);
a5606eee 1717
a5606eee
VP
1718 /* Avoid setting b->val if it's already set. The meaning of
1719 b->val is 'the last value' user saw, and we should update
1720 it only if we reported that last value to user. As it
9c06b0b4
TJB
1721 happens, the code that reports it updates b->val directly.
1722 We don't keep track of the memory value for masked
1723 watchpoints. */
3a5c3e22 1724 if (!b->val_valid && !is_masked_watchpoint (&b->base))
fa4727a6
DJ
1725 {
1726 b->val = v;
1727 b->val_valid = 1;
1728 }
a5606eee 1729
2d134ed3
PA
1730 frame_pspace = get_frame_program_space (get_selected_frame (NULL));
1731
a5606eee 1732 /* Look at each value on the value chain. */
9fa40276 1733 for (v = val_chain; v; v = value_next (v))
a5606eee
VP
1734 {
1735 /* If it's a memory location, and GDB actually needed
1736 its contents to evaluate the expression, then we
fa4727a6
DJ
1737 must watch it. If the first value returned is
1738 still lazy, that means an error occurred reading it;
1739 watch it anyway in case it becomes readable. */
a5606eee 1740 if (VALUE_LVAL (v) == lval_memory
fa4727a6 1741 && (v == val_chain || ! value_lazy (v)))
a5606eee
VP
1742 {
1743 struct type *vtype = check_typedef (value_type (v));
7270d8f2 1744
a5606eee
VP
1745 /* We only watch structs and arrays if user asked
1746 for it explicitly, never if they just happen to
1747 appear in the middle of some value chain. */
fa4727a6 1748 if (v == result
a5606eee
VP
1749 || (TYPE_CODE (vtype) != TYPE_CODE_STRUCT
1750 && TYPE_CODE (vtype) != TYPE_CODE_ARRAY))
1751 {
1752 CORE_ADDR addr;
1753 int len, type;
1754 struct bp_location *loc, **tmp;
1755
42ae5230 1756 addr = value_address (v);
a5606eee
VP
1757 len = TYPE_LENGTH (value_type (v));
1758 type = hw_write;
3a5c3e22 1759 if (b->base.type == bp_read_watchpoint)
a5606eee 1760 type = hw_read;
3a5c3e22 1761 else if (b->base.type == bp_access_watchpoint)
a5606eee 1762 type = hw_access;
3a5c3e22
PA
1763
1764 loc = allocate_bp_location (&b->base);
1765 for (tmp = &(b->base.loc); *tmp != NULL; tmp = &((*tmp)->next))
a5606eee
VP
1766 ;
1767 *tmp = loc;
a6d9a66e 1768 loc->gdbarch = get_type_arch (value_type (v));
6c95b8df
PA
1769
1770 loc->pspace = frame_pspace;
a5606eee
VP
1771 loc->address = addr;
1772 loc->length = len;
1773 loc->watchpoint_type = type;
1774 }
1775 }
9fa40276
TJB
1776 }
1777
1778 /* Change the type of breakpoint between hardware assisted or
1779 an ordinary watchpoint depending on the hardware support
1780 and free hardware slots. REPARSE is set when the inferior
1781 is started. */
a9634178 1782 if (reparse)
9fa40276 1783 {
e09342b5 1784 int reg_cnt;
9fa40276
TJB
1785 enum bp_loc_type loc_type;
1786 struct bp_location *bl;
a5606eee 1787
a9634178 1788 reg_cnt = can_use_hardware_watchpoint (val_chain);
e09342b5
TJB
1789
1790 if (reg_cnt)
9fa40276
TJB
1791 {
1792 int i, target_resources_ok, other_type_used;
a1398e0c 1793 enum bptype type;
9fa40276 1794
a9634178
TJB
1795 /* Use an exact watchpoint when there's only one memory region to be
1796 watched, and only one debug register is needed to watch it. */
1797 b->exact = target_exact_watchpoints && reg_cnt == 1;
1798
9fa40276 1799 /* We need to determine how many resources are already
e09342b5
TJB
1800 used for all other hardware watchpoints plus this one
1801 to see if we still have enough resources to also fit
a1398e0c
PA
1802 this watchpoint in as well. */
1803
1804 /* If this is a software watchpoint, we try to turn it
1805 to a hardware one -- count resources as if B was of
1806 hardware watchpoint type. */
1807 type = b->base.type;
1808 if (type == bp_watchpoint)
1809 type = bp_hardware_watchpoint;
1810
1811 /* This watchpoint may or may not have been placed on
1812 the list yet at this point (it won't be in the list
1813 if we're trying to create it for the first time,
1814 through watch_command), so always account for it
1815 manually. */
1816
1817 /* Count resources used by all watchpoints except B. */
1818 i = hw_watchpoint_used_count_others (&b->base, type, &other_type_used);
1819
1820 /* Add in the resources needed for B. */
1821 i += hw_watchpoint_use_count (&b->base);
1822
1823 target_resources_ok
1824 = target_can_use_hardware_watchpoint (type, i, other_type_used);
e09342b5 1825 if (target_resources_ok <= 0)
a9634178 1826 {
3a5c3e22 1827 int sw_mode = b->base.ops->works_in_software_mode (&b->base);
9c06b0b4
TJB
1828
1829 if (target_resources_ok == 0 && !sw_mode)
a9634178
TJB
1830 error (_("Target does not support this type of "
1831 "hardware watchpoint."));
9c06b0b4
TJB
1832 else if (target_resources_ok < 0 && !sw_mode)
1833 error (_("There are not enough available hardware "
1834 "resources for this watchpoint."));
a1398e0c
PA
1835
1836 /* Downgrade to software watchpoint. */
1837 b->base.type = bp_watchpoint;
1838 }
1839 else
1840 {
1841 /* If this was a software watchpoint, we've just
1842 found we have enough resources to turn it to a
1843 hardware watchpoint. Otherwise, this is a
1844 nop. */
1845 b->base.type = type;
a9634178 1846 }
9fa40276 1847 }
3a5c3e22 1848 else if (!b->base.ops->works_in_software_mode (&b->base))
a9634178
TJB
1849 error (_("Expression cannot be implemented with "
1850 "read/access watchpoint."));
9fa40276 1851 else
3a5c3e22 1852 b->base.type = bp_watchpoint;
9fa40276 1853
3a5c3e22 1854 loc_type = (b->base.type == bp_watchpoint? bp_loc_other
9fa40276 1855 : bp_loc_hardware_watchpoint);
3a5c3e22 1856 for (bl = b->base.loc; bl; bl = bl->next)
9fa40276
TJB
1857 bl->loc_type = loc_type;
1858 }
1859
1860 for (v = val_chain; v; v = next)
1861 {
a5606eee
VP
1862 next = value_next (v);
1863 if (v != b->val)
1864 value_free (v);
1865 }
1866
c7437ca6
PA
1867 /* If a software watchpoint is not watching any memory, then the
1868 above left it without any location set up. But,
1869 bpstat_stop_status requires a location to be able to report
1870 stops, so make sure there's at least a dummy one. */
3a5c3e22 1871 if (b->base.type == bp_watchpoint && b->base.loc == NULL)
c7437ca6 1872 {
3a5c3e22
PA
1873 struct breakpoint *base = &b->base;
1874 base->loc = allocate_bp_location (base);
1875 base->loc->pspace = frame_pspace;
1876 base->loc->address = -1;
1877 base->loc->length = -1;
1878 base->loc->watchpoint_type = -1;
c7437ca6 1879 }
a5606eee
VP
1880 }
1881 else if (!within_current_scope)
7270d8f2 1882 {
ac74f770
MS
1883 printf_filtered (_("\
1884Watchpoint %d deleted because the program has left the block\n\
1885in which its expression is valid.\n"),
3a5c3e22 1886 b->base.number);
d0fb5eae 1887 watchpoint_del_at_next_stop (b);
7270d8f2 1888 }
a5606eee
VP
1889
1890 /* Restore the selected frame. */
66076460
DJ
1891 if (frame_saved)
1892 select_frame (frame_find_by_id (saved_frame_id));
7270d8f2
OF
1893}
1894
a5606eee 1895
74960c60 1896/* Returns 1 iff breakpoint location should be
1e4d1764
YQ
1897 inserted in the inferior. We don't differentiate the type of BL's owner
1898 (breakpoint vs. tracepoint), although insert_location in tracepoint's
1899 breakpoint_ops is not defined, because in insert_bp_location,
1900 tracepoint's insert_location will not be called. */
74960c60 1901static int
35df4500 1902should_be_inserted (struct bp_location *bl)
74960c60 1903{
35df4500 1904 if (bl->owner == NULL || !breakpoint_enabled (bl->owner))
74960c60
VP
1905 return 0;
1906
35df4500 1907 if (bl->owner->disposition == disp_del_at_next_stop)
74960c60
VP
1908 return 0;
1909
35df4500 1910 if (!bl->enabled || bl->shlib_disabled || bl->duplicate)
74960c60
VP
1911 return 0;
1912
f8eba3c6
TT
1913 if (user_breakpoint_p (bl->owner) && bl->pspace->executing_startup)
1914 return 0;
1915
56710373
PA
1916 /* This is set for example, when we're attached to the parent of a
1917 vfork, and have detached from the child. The child is running
1918 free, and we expect it to do an exec or exit, at which point the
1919 OS makes the parent schedulable again (and the target reports
1920 that the vfork is done). Until the child is done with the shared
1921 memory region, do not insert breakpoints in the parent, otherwise
1922 the child could still trip on the parent's breakpoints. Since
1923 the parent is blocked anyway, it won't miss any breakpoint. */
35df4500 1924 if (bl->pspace->breakpoints_not_allowed)
56710373
PA
1925 return 0;
1926
74960c60
VP
1927 return 1;
1928}
1929
934709f0
PW
1930/* Same as should_be_inserted but does the check assuming
1931 that the location is not duplicated. */
1932
1933static int
1934unduplicated_should_be_inserted (struct bp_location *bl)
1935{
1936 int result;
1937 const int save_duplicate = bl->duplicate;
1938
1939 bl->duplicate = 0;
1940 result = should_be_inserted (bl);
1941 bl->duplicate = save_duplicate;
1942 return result;
1943}
1944
b775012e
LM
1945/* Parses a conditional described by an expression COND into an
1946 agent expression bytecode suitable for evaluation
1947 by the bytecode interpreter. Return NULL if there was
1948 any error during parsing. */
1949
1950static struct agent_expr *
1951parse_cond_to_aexpr (CORE_ADDR scope, struct expression *cond)
1952{
1953 struct agent_expr *aexpr = NULL;
1954 struct cleanup *old_chain = NULL;
1955 volatile struct gdb_exception ex;
1956
1957 if (!cond)
1958 return NULL;
1959
1960 /* We don't want to stop processing, so catch any errors
1961 that may show up. */
1962 TRY_CATCH (ex, RETURN_MASK_ERROR)
1963 {
1964 aexpr = gen_eval_for_expr (scope, cond);
1965 }
1966
1967 if (ex.reason < 0)
1968 {
1969 /* If we got here, it means the condition could not be parsed to a valid
1970 bytecode expression and thus can't be evaluated on the target's side.
1971 It's no use iterating through the conditions. */
1972 return NULL;
1973 }
1974
1975 /* We have a valid agent expression. */
1976 return aexpr;
1977}
1978
1979/* Based on location BL, create a list of breakpoint conditions to be
1980 passed on to the target. If we have duplicated locations with different
1981 conditions, we will add such conditions to the list. The idea is that the
1982 target will evaluate the list of conditions and will only notify GDB when
1983 one of them is true. */
1984
1985static void
1986build_target_condition_list (struct bp_location *bl)
1987{
1988 struct bp_location **locp = NULL, **loc2p;
1989 int null_condition_or_parse_error = 0;
1990 int modified = bl->needs_update;
1991 struct bp_location *loc;
1992
1993 /* This is only meaningful if the target is
1994 evaluating conditions and if the user has
1995 opted for condition evaluation on the target's
1996 side. */
1997 if (gdb_evaluates_breakpoint_condition_p ()
1998 || !target_supports_evaluation_of_breakpoint_conditions ())
1999 return;
2000
2001 /* Do a first pass to check for locations with no assigned
2002 conditions or conditions that fail to parse to a valid agent expression
2003 bytecode. If any of these happen, then it's no use to send conditions
2004 to the target since this location will always trigger and generate a
2005 response back to GDB. */
2006 ALL_BP_LOCATIONS_AT_ADDR (loc2p, locp, bl->address)
2007 {
2008 loc = (*loc2p);
2009 if (is_breakpoint (loc->owner) && loc->pspace->num == bl->pspace->num)
2010 {
2011 if (modified)
2012 {
2013 struct agent_expr *aexpr;
2014
2015 /* Re-parse the conditions since something changed. In that
2016 case we already freed the condition bytecodes (see
2017 force_breakpoint_reinsertion). We just
2018 need to parse the condition to bytecodes again. */
2019 aexpr = parse_cond_to_aexpr (bl->address, loc->cond);
2020 loc->cond_bytecode = aexpr;
2021
2022 /* Check if we managed to parse the conditional expression
2023 correctly. If not, we will not send this condition
2024 to the target. */
2025 if (aexpr)
2026 continue;
2027 }
2028
2029 /* If we have a NULL bytecode expression, it means something
2030 went wrong or we have a null condition expression. */
2031 if (!loc->cond_bytecode)
2032 {
2033 null_condition_or_parse_error = 1;
2034 break;
2035 }
2036 }
2037 }
2038
2039 /* If any of these happened, it means we will have to evaluate the conditions
2040 for the location's address on gdb's side. It is no use keeping bytecodes
2041 for all the other duplicate locations, thus we free all of them here.
2042
2043 This is so we have a finer control over which locations' conditions are
2044 being evaluated by GDB or the remote stub. */
2045 if (null_condition_or_parse_error)
2046 {
2047 ALL_BP_LOCATIONS_AT_ADDR (loc2p, locp, bl->address)
2048 {
2049 loc = (*loc2p);
2050 if (is_breakpoint (loc->owner) && loc->pspace->num == bl->pspace->num)
2051 {
2052 /* Only go as far as the first NULL bytecode is
2053 located. */
2054 if (!loc->cond_bytecode)
2055 return;
2056
2057 free_agent_expr (loc->cond_bytecode);
2058 loc->cond_bytecode = NULL;
2059 }
2060 }
2061 }
2062
2063 /* No NULL conditions or failed bytecode generation. Build a condition list
2064 for this location's address. */
2065 ALL_BP_LOCATIONS_AT_ADDR (loc2p, locp, bl->address)
2066 {
2067 loc = (*loc2p);
2068 if (loc->cond
2069 && is_breakpoint (loc->owner)
2070 && loc->pspace->num == bl->pspace->num
2071 && loc->owner->enable_state == bp_enabled
2072 && loc->enabled)
2073 /* Add the condition to the vector. This will be used later to send the
2074 conditions to the target. */
2075 VEC_safe_push (agent_expr_p, bl->target_info.conditions,
2076 loc->cond_bytecode);
2077 }
2078
2079 return;
2080}
2081
35df4500
TJB
2082/* Insert a low-level "breakpoint" of some type. BL is the breakpoint
2083 location. Any error messages are printed to TMP_ERROR_STREAM; and
3fbb6ffa 2084 DISABLED_BREAKS, and HW_BREAKPOINT_ERROR are used to report problems.
c30eee59
TJB
2085 Returns 0 for success, 1 if the bp_location type is not supported or
2086 -1 for failure.
879bfdc2 2087
4a64f543
MS
2088 NOTE drow/2003-09-09: This routine could be broken down to an
2089 object-style method for each breakpoint or catchpoint type. */
26bb91f3 2090static int
35df4500 2091insert_bp_location (struct bp_location *bl,
26bb91f3 2092 struct ui_file *tmp_error_stream,
3fbb6ffa 2093 int *disabled_breaks,
26bb91f3 2094 int *hw_breakpoint_error)
879bfdc2
DJ
2095{
2096 int val = 0;
2097
b775012e 2098 if (!should_be_inserted (bl) || (bl->inserted && !bl->needs_update))
879bfdc2
DJ
2099 return 0;
2100
35c63cd8
JB
2101 /* Note we don't initialize bl->target_info, as that wipes out
2102 the breakpoint location's shadow_contents if the breakpoint
2103 is still inserted at that location. This in turn breaks
2104 target_read_memory which depends on these buffers when
2105 a memory read is requested at the breakpoint location:
2106 Once the target_info has been wiped, we fail to see that
2107 we have a breakpoint inserted at that address and thus
2108 read the breakpoint instead of returning the data saved in
2109 the breakpoint location's shadow contents. */
35df4500
TJB
2110 bl->target_info.placed_address = bl->address;
2111 bl->target_info.placed_address_space = bl->pspace->aspace;
f1310107 2112 bl->target_info.length = bl->length;
8181d85f 2113
b775012e
LM
2114 /* When working with target-side conditions, we must pass all the conditions
2115 for the same breakpoint address down to the target since GDB will not
2116 insert those locations. With a list of breakpoint conditions, the target
2117 can decide when to stop and notify GDB. */
2118
2119 if (is_breakpoint (bl->owner))
2120 {
2121 build_target_condition_list (bl);
2122 /* Reset the condition modification marker. */
2123 bl->needs_update = 0;
2124 }
2125
35df4500
TJB
2126 if (bl->loc_type == bp_loc_software_breakpoint
2127 || bl->loc_type == bp_loc_hardware_breakpoint)
879bfdc2 2128 {
35df4500 2129 if (bl->owner->type != bp_hardware_breakpoint)
765dc015
VP
2130 {
2131 /* If the explicitly specified breakpoint type
2132 is not hardware breakpoint, check the memory map to see
2133 if the breakpoint address is in read only memory or not.
4a64f543 2134
765dc015
VP
2135 Two important cases are:
2136 - location type is not hardware breakpoint, memory
2137 is readonly. We change the type of the location to
2138 hardware breakpoint.
4a64f543
MS
2139 - location type is hardware breakpoint, memory is
2140 read-write. This means we've previously made the
2141 location hardware one, but then the memory map changed,
2142 so we undo.
765dc015 2143
4a64f543
MS
2144 When breakpoints are removed, remove_breakpoints will use
2145 location types we've just set here, the only possible
2146 problem is that memory map has changed during running
2147 program, but it's not going to work anyway with current
2148 gdb. */
765dc015 2149 struct mem_region *mr
35df4500 2150 = lookup_mem_region (bl->target_info.placed_address);
765dc015
VP
2151
2152 if (mr)
2153 {
2154 if (automatic_hardware_breakpoints)
2155 {
765dc015
VP
2156 enum bp_loc_type new_type;
2157
2158 if (mr->attrib.mode != MEM_RW)
2159 new_type = bp_loc_hardware_breakpoint;
2160 else
2161 new_type = bp_loc_software_breakpoint;
2162
35df4500 2163 if (new_type != bl->loc_type)
765dc015
VP
2164 {
2165 static int said = 0;
cc59ec59 2166
35df4500 2167 bl->loc_type = new_type;
765dc015
VP
2168 if (!said)
2169 {
3e43a32a
MS
2170 fprintf_filtered (gdb_stdout,
2171 _("Note: automatically using "
2172 "hardware breakpoints for "
2173 "read-only addresses.\n"));
765dc015
VP
2174 said = 1;
2175 }
2176 }
2177 }
35df4500 2178 else if (bl->loc_type == bp_loc_software_breakpoint
765dc015 2179 && mr->attrib.mode != MEM_RW)
3e43a32a
MS
2180 warning (_("cannot set software breakpoint "
2181 "at readonly address %s"),
35df4500 2182 paddress (bl->gdbarch, bl->address));
765dc015
VP
2183 }
2184 }
2185
879bfdc2
DJ
2186 /* First check to see if we have to handle an overlay. */
2187 if (overlay_debugging == ovly_off
35df4500
TJB
2188 || bl->section == NULL
2189 || !(section_is_overlay (bl->section)))
879bfdc2
DJ
2190 {
2191 /* No overlay handling: just set the breakpoint. */
2192
348d480f 2193 val = bl->owner->ops->insert_location (bl);
879bfdc2
DJ
2194 }
2195 else
2196 {
4a64f543 2197 /* This breakpoint is in an overlay section.
879bfdc2
DJ
2198 Shall we set a breakpoint at the LMA? */
2199 if (!overlay_events_enabled)
2200 {
2201 /* Yes -- overlay event support is not active,
2202 so we must try to set a breakpoint at the LMA.
2203 This will not work for a hardware breakpoint. */
35df4500 2204 if (bl->loc_type == bp_loc_hardware_breakpoint)
8a3fe4f8 2205 warning (_("hardware breakpoint %d not supported in overlay!"),
35df4500 2206 bl->owner->number);
879bfdc2
DJ
2207 else
2208 {
35df4500
TJB
2209 CORE_ADDR addr = overlay_unmapped_address (bl->address,
2210 bl->section);
879bfdc2 2211 /* Set a software (trap) breakpoint at the LMA. */
35df4500
TJB
2212 bl->overlay_target_info = bl->target_info;
2213 bl->overlay_target_info.placed_address = addr;
2214 val = target_insert_breakpoint (bl->gdbarch,
2215 &bl->overlay_target_info);
879bfdc2 2216 if (val != 0)
99361f52 2217 fprintf_unfiltered (tmp_error_stream,
3e43a32a
MS
2218 "Overlay breakpoint %d "
2219 "failed: in ROM?\n",
35df4500 2220 bl->owner->number);
879bfdc2
DJ
2221 }
2222 }
2223 /* Shall we set a breakpoint at the VMA? */
35df4500 2224 if (section_is_mapped (bl->section))
879bfdc2
DJ
2225 {
2226 /* Yes. This overlay section is mapped into memory. */
348d480f 2227 val = bl->owner->ops->insert_location (bl);
879bfdc2
DJ
2228 }
2229 else
2230 {
2231 /* No. This breakpoint will not be inserted.
2232 No error, but do not mark the bp as 'inserted'. */
2233 return 0;
2234 }
2235 }
2236
2237 if (val)
2238 {
2239 /* Can't set the breakpoint. */
35df4500 2240 if (solib_name_from_address (bl->pspace, bl->address))
879bfdc2 2241 {
4a64f543 2242 /* See also: disable_breakpoints_in_shlibs. */
879bfdc2 2243 val = 0;
35df4500 2244 bl->shlib_disabled = 1;
8d3788bd 2245 observer_notify_breakpoint_modified (bl->owner);
3fbb6ffa
TJB
2246 if (!*disabled_breaks)
2247 {
2248 fprintf_unfiltered (tmp_error_stream,
2249 "Cannot insert breakpoint %d.\n",
2250 bl->owner->number);
2251 fprintf_unfiltered (tmp_error_stream,
2252 "Temporarily disabling shared "
2253 "library breakpoints:\n");
2254 }
2255 *disabled_breaks = 1;
879bfdc2 2256 fprintf_unfiltered (tmp_error_stream,
35df4500 2257 "breakpoint #%d\n", bl->owner->number);
879bfdc2
DJ
2258 }
2259 else
879bfdc2 2260 {
35df4500 2261 if (bl->loc_type == bp_loc_hardware_breakpoint)
879bfdc2
DJ
2262 {
2263 *hw_breakpoint_error = 1;
3e43a32a
MS
2264 fprintf_unfiltered (tmp_error_stream,
2265 "Cannot insert hardware "
2266 "breakpoint %d.\n",
35df4500 2267 bl->owner->number);
879bfdc2
DJ
2268 }
2269 else
2270 {
2271 fprintf_unfiltered (tmp_error_stream,
2272 "Cannot insert breakpoint %d.\n",
35df4500 2273 bl->owner->number);
879bfdc2
DJ
2274 fprintf_filtered (tmp_error_stream,
2275 "Error accessing memory address ");
35df4500 2276 fputs_filtered (paddress (bl->gdbarch, bl->address),
5af949e3 2277 tmp_error_stream);
879bfdc2
DJ
2278 fprintf_filtered (tmp_error_stream, ": %s.\n",
2279 safe_strerror (val));
2280 }
2281
2282 }
2283 }
2284 else
35df4500 2285 bl->inserted = 1;
879bfdc2
DJ
2286
2287 return val;
2288 }
2289
35df4500 2290 else if (bl->loc_type == bp_loc_hardware_watchpoint
879bfdc2 2291 /* NOTE drow/2003-09-08: This state only exists for removing
4a64f543 2292 watchpoints. It's not clear that it's necessary... */
35df4500 2293 && bl->owner->disposition != disp_del_at_next_stop)
879bfdc2 2294 {
77b06cd7
TJB
2295 gdb_assert (bl->owner->ops != NULL
2296 && bl->owner->ops->insert_location != NULL);
2297
2298 val = bl->owner->ops->insert_location (bl);
85d721b8
PA
2299
2300 /* If trying to set a read-watchpoint, and it turns out it's not
2301 supported, try emulating one with an access watchpoint. */
35df4500 2302 if (val == 1 && bl->watchpoint_type == hw_read)
85d721b8
PA
2303 {
2304 struct bp_location *loc, **loc_temp;
2305
2306 /* But don't try to insert it, if there's already another
2307 hw_access location that would be considered a duplicate
2308 of this one. */
2309 ALL_BP_LOCATIONS (loc, loc_temp)
35df4500 2310 if (loc != bl
85d721b8 2311 && loc->watchpoint_type == hw_access
35df4500 2312 && watchpoint_locations_match (bl, loc))
85d721b8 2313 {
35df4500
TJB
2314 bl->duplicate = 1;
2315 bl->inserted = 1;
2316 bl->target_info = loc->target_info;
2317 bl->watchpoint_type = hw_access;
85d721b8
PA
2318 val = 0;
2319 break;
2320 }
2321
2322 if (val == 1)
2323 {
77b06cd7
TJB
2324 bl->watchpoint_type = hw_access;
2325 val = bl->owner->ops->insert_location (bl);
2326
2327 if (val)
2328 /* Back to the original value. */
2329 bl->watchpoint_type = hw_read;
85d721b8
PA
2330 }
2331 }
2332
35df4500 2333 bl->inserted = (val == 0);
879bfdc2
DJ
2334 }
2335
35df4500 2336 else if (bl->owner->type == bp_catchpoint)
879bfdc2 2337 {
77b06cd7
TJB
2338 gdb_assert (bl->owner->ops != NULL
2339 && bl->owner->ops->insert_location != NULL);
2340
2341 val = bl->owner->ops->insert_location (bl);
2342 if (val)
2343 {
2344 bl->owner->enable_state = bp_disabled;
2345
2346 if (val == 1)
2347 warning (_("\
2348Error inserting catchpoint %d: Your system does not support this type\n\
2349of catchpoint."), bl->owner->number);
2350 else
2351 warning (_("Error inserting catchpoint %d."), bl->owner->number);
2352 }
2353
2354 bl->inserted = (val == 0);
1640b821
DJ
2355
2356 /* We've already printed an error message if there was a problem
2357 inserting this catchpoint, and we've disabled the catchpoint,
2358 so just return success. */
2359 return 0;
879bfdc2
DJ
2360 }
2361
2362 return 0;
2363}
2364
6c95b8df
PA
2365/* This function is called when program space PSPACE is about to be
2366 deleted. It takes care of updating breakpoints to not reference
2367 PSPACE anymore. */
2368
2369void
2370breakpoint_program_space_exit (struct program_space *pspace)
2371{
2372 struct breakpoint *b, *b_temp;
876fa593 2373 struct bp_location *loc, **loc_temp;
6c95b8df
PA
2374
2375 /* Remove any breakpoint that was set through this program space. */
2376 ALL_BREAKPOINTS_SAFE (b, b_temp)
2377 {
2378 if (b->pspace == pspace)
2379 delete_breakpoint (b);
2380 }
2381
2382 /* Breakpoints set through other program spaces could have locations
2383 bound to PSPACE as well. Remove those. */
876fa593 2384 ALL_BP_LOCATIONS (loc, loc_temp)
6c95b8df
PA
2385 {
2386 struct bp_location *tmp;
2387
2388 if (loc->pspace == pspace)
2389 {
2bdf28a0 2390 /* ALL_BP_LOCATIONS bp_location has LOC->OWNER always non-NULL. */
6c95b8df
PA
2391 if (loc->owner->loc == loc)
2392 loc->owner->loc = loc->next;
2393 else
2394 for (tmp = loc->owner->loc; tmp->next != NULL; tmp = tmp->next)
2395 if (tmp->next == loc)
2396 {
2397 tmp->next = loc->next;
2398 break;
2399 }
2400 }
2401 }
2402
2403 /* Now update the global location list to permanently delete the
2404 removed locations above. */
2405 update_global_location_list (0);
2406}
2407
74960c60
VP
2408/* Make sure all breakpoints are inserted in inferior.
2409 Throws exception on any error.
2410 A breakpoint that is already inserted won't be inserted
2411 again, so calling this function twice is safe. */
2412void
2413insert_breakpoints (void)
2414{
2415 struct breakpoint *bpt;
2416
2417 ALL_BREAKPOINTS (bpt)
2418 if (is_hardware_watchpoint (bpt))
3a5c3e22
PA
2419 {
2420 struct watchpoint *w = (struct watchpoint *) bpt;
2421
2422 update_watchpoint (w, 0 /* don't reparse. */);
2423 }
74960c60 2424
b60e7edf 2425 update_global_location_list (1);
74960c60 2426
c35b1492
PA
2427 /* update_global_location_list does not insert breakpoints when
2428 always_inserted_mode is not enabled. Explicitly insert them
2429 now. */
2430 if (!breakpoints_always_inserted_mode ())
74960c60
VP
2431 insert_breakpoint_locations ();
2432}
2433
20388dd6
YQ
2434/* Invoke CALLBACK for each of bp_location. */
2435
2436void
2437iterate_over_bp_locations (walk_bp_location_callback callback)
2438{
2439 struct bp_location *loc, **loc_tmp;
2440
2441 ALL_BP_LOCATIONS (loc, loc_tmp)
2442 {
2443 callback (loc, NULL);
2444 }
2445}
2446
b775012e
LM
2447/* This is used when we need to synch breakpoint conditions between GDB and the
2448 target. It is the case with deleting and disabling of breakpoints when using
2449 always-inserted mode. */
2450
2451static void
2452update_inserted_breakpoint_locations (void)
2453{
2454 struct bp_location *bl, **blp_tmp;
2455 int error_flag = 0;
2456 int val = 0;
2457 int disabled_breaks = 0;
2458 int hw_breakpoint_error = 0;
2459
2460 struct ui_file *tmp_error_stream = mem_fileopen ();
2461 struct cleanup *cleanups = make_cleanup_ui_file_delete (tmp_error_stream);
2462
2463 /* Explicitly mark the warning -- this will only be printed if
2464 there was an error. */
2465 fprintf_unfiltered (tmp_error_stream, "Warning:\n");
2466
2467 save_current_space_and_thread ();
2468
2469 ALL_BP_LOCATIONS (bl, blp_tmp)
2470 {
2471 /* We only want to update software breakpoints and hardware
2472 breakpoints. */
2473 if (!is_breakpoint (bl->owner))
2474 continue;
2475
2476 /* We only want to update locations that are already inserted
2477 and need updating. This is to avoid unwanted insertion during
2478 deletion of breakpoints. */
2479 if (!bl->inserted || (bl->inserted && !bl->needs_update))
2480 continue;
2481
2482 switch_to_program_space_and_thread (bl->pspace);
2483
2484 /* For targets that support global breakpoints, there's no need
2485 to select an inferior to insert breakpoint to. In fact, even
2486 if we aren't attached to any process yet, we should still
2487 insert breakpoints. */
2488 if (!gdbarch_has_global_breakpoints (target_gdbarch)
2489 && ptid_equal (inferior_ptid, null_ptid))
2490 continue;
2491
2492 val = insert_bp_location (bl, tmp_error_stream, &disabled_breaks,
2493 &hw_breakpoint_error);
2494 if (val)
2495 error_flag = val;
2496 }
2497
2498 if (error_flag)
2499 {
2500 target_terminal_ours_for_output ();
2501 error_stream (tmp_error_stream);
2502 }
2503
2504 do_cleanups (cleanups);
2505}
2506
c30eee59 2507/* Used when starting or continuing the program. */
c906108c 2508
74960c60
VP
2509static void
2510insert_breakpoint_locations (void)
c906108c 2511{
a5606eee 2512 struct breakpoint *bpt;
35df4500 2513 struct bp_location *bl, **blp_tmp;
eacd795a 2514 int error_flag = 0;
c906108c 2515 int val = 0;
3fbb6ffa 2516 int disabled_breaks = 0;
81d0cc19 2517 int hw_breakpoint_error = 0;
c906108c 2518
81d0cc19 2519 struct ui_file *tmp_error_stream = mem_fileopen ();
f7545552 2520 struct cleanup *cleanups = make_cleanup_ui_file_delete (tmp_error_stream);
74960c60 2521
81d0cc19
GS
2522 /* Explicitly mark the warning -- this will only be printed if
2523 there was an error. */
2524 fprintf_unfiltered (tmp_error_stream, "Warning:\n");
6c95b8df
PA
2525
2526 save_current_space_and_thread ();
2527
35df4500 2528 ALL_BP_LOCATIONS (bl, blp_tmp)
879bfdc2 2529 {
b775012e 2530 if (!should_be_inserted (bl) || (bl->inserted && !bl->needs_update))
879bfdc2
DJ
2531 continue;
2532
4a64f543
MS
2533 /* There is no point inserting thread-specific breakpoints if
2534 the thread no longer exists. ALL_BP_LOCATIONS bp_location
2535 has BL->OWNER always non-NULL. */
35df4500
TJB
2536 if (bl->owner->thread != -1
2537 && !valid_thread_id (bl->owner->thread))
f365de73
AS
2538 continue;
2539
35df4500 2540 switch_to_program_space_and_thread (bl->pspace);
6c95b8df
PA
2541
2542 /* For targets that support global breakpoints, there's no need
2543 to select an inferior to insert breakpoint to. In fact, even
2544 if we aren't attached to any process yet, we should still
2545 insert breakpoints. */
2546 if (!gdbarch_has_global_breakpoints (target_gdbarch)
2547 && ptid_equal (inferior_ptid, null_ptid))
2548 continue;
2549
3fbb6ffa
TJB
2550 val = insert_bp_location (bl, tmp_error_stream, &disabled_breaks,
2551 &hw_breakpoint_error);
879bfdc2 2552 if (val)
eacd795a 2553 error_flag = val;
879bfdc2 2554 }
c906108c 2555
4a64f543
MS
2556 /* If we failed to insert all locations of a watchpoint, remove
2557 them, as half-inserted watchpoint is of limited use. */
a5606eee
VP
2558 ALL_BREAKPOINTS (bpt)
2559 {
2560 int some_failed = 0;
2561 struct bp_location *loc;
2562
2563 if (!is_hardware_watchpoint (bpt))
2564 continue;
2565
d6b74ac4 2566 if (!breakpoint_enabled (bpt))
a5606eee 2567 continue;
74960c60
VP
2568
2569 if (bpt->disposition == disp_del_at_next_stop)
2570 continue;
a5606eee
VP
2571
2572 for (loc = bpt->loc; loc; loc = loc->next)
56710373 2573 if (!loc->inserted && should_be_inserted (loc))
a5606eee
VP
2574 {
2575 some_failed = 1;
2576 break;
2577 }
2578 if (some_failed)
2579 {
2580 for (loc = bpt->loc; loc; loc = loc->next)
2581 if (loc->inserted)
2582 remove_breakpoint (loc, mark_uninserted);
2583
2584 hw_breakpoint_error = 1;
2585 fprintf_unfiltered (tmp_error_stream,
2586 "Could not insert hardware watchpoint %d.\n",
2587 bpt->number);
eacd795a 2588 error_flag = -1;
a5606eee
VP
2589 }
2590 }
2591
eacd795a 2592 if (error_flag)
81d0cc19
GS
2593 {
2594 /* If a hardware breakpoint or watchpoint was inserted, add a
2595 message about possibly exhausted resources. */
879bfdc2 2596 if (hw_breakpoint_error)
81d0cc19 2597 {
c6510018
MS
2598 fprintf_unfiltered (tmp_error_stream,
2599 "Could not insert hardware breakpoints:\n\
2600You may have requested too many hardware breakpoints/watchpoints.\n");
81d0cc19 2601 }
81d0cc19
GS
2602 target_terminal_ours_for_output ();
2603 error_stream (tmp_error_stream);
2604 }
f7545552
TT
2605
2606 do_cleanups (cleanups);
c906108c
SS
2607}
2608
c30eee59
TJB
2609/* Used when the program stops.
2610 Returns zero if successful, or non-zero if there was a problem
2611 removing a breakpoint location. */
2612
c906108c 2613int
fba45db2 2614remove_breakpoints (void)
c906108c 2615{
35df4500 2616 struct bp_location *bl, **blp_tmp;
3a1bae8e 2617 int val = 0;
c906108c 2618
35df4500 2619 ALL_BP_LOCATIONS (bl, blp_tmp)
c5aa993b 2620 {
1e4d1764 2621 if (bl->inserted && !is_tracepoint (bl->owner))
35df4500 2622 val |= remove_breakpoint (bl, mark_uninserted);
c5aa993b 2623 }
3a1bae8e 2624 return val;
c906108c
SS
2625}
2626
6c95b8df
PA
2627/* Remove breakpoints of process PID. */
2628
2629int
2630remove_breakpoints_pid (int pid)
2631{
35df4500 2632 struct bp_location *bl, **blp_tmp;
6c95b8df
PA
2633 int val;
2634 struct inferior *inf = find_inferior_pid (pid);
2635
35df4500 2636 ALL_BP_LOCATIONS (bl, blp_tmp)
6c95b8df 2637 {
35df4500 2638 if (bl->pspace != inf->pspace)
6c95b8df
PA
2639 continue;
2640
35df4500 2641 if (bl->inserted)
6c95b8df 2642 {
35df4500 2643 val = remove_breakpoint (bl, mark_uninserted);
6c95b8df
PA
2644 if (val != 0)
2645 return val;
2646 }
2647 }
2648 return 0;
2649}
2650
c906108c 2651int
fba45db2 2652reattach_breakpoints (int pid)
c906108c 2653{
6c95b8df 2654 struct cleanup *old_chain;
35df4500 2655 struct bp_location *bl, **blp_tmp;
c906108c 2656 int val;
86b887df 2657 struct ui_file *tmp_error_stream;
3fbb6ffa 2658 int dummy1 = 0, dummy2 = 0;
6c95b8df
PA
2659 struct inferior *inf;
2660 struct thread_info *tp;
2661
2662 tp = any_live_thread_of_process (pid);
2663 if (tp == NULL)
2664 return 1;
2665
2666 inf = find_inferior_pid (pid);
2667 old_chain = save_inferior_ptid ();
2668
2669 inferior_ptid = tp->ptid;
a4954f26 2670
86b887df 2671 tmp_error_stream = mem_fileopen ();
a4954f26 2672 make_cleanup_ui_file_delete (tmp_error_stream);
c906108c 2673
35df4500 2674 ALL_BP_LOCATIONS (bl, blp_tmp)
c5aa993b 2675 {
35df4500 2676 if (bl->pspace != inf->pspace)
6c95b8df
PA
2677 continue;
2678
35df4500 2679 if (bl->inserted)
c5aa993b 2680 {
35df4500 2681 bl->inserted = 0;
3fbb6ffa 2682 val = insert_bp_location (bl, tmp_error_stream, &dummy1, &dummy2);
c5aa993b
JM
2683 if (val != 0)
2684 {
ce696e05 2685 do_cleanups (old_chain);
c5aa993b
JM
2686 return val;
2687 }
2688 }
2689 }
ce696e05 2690 do_cleanups (old_chain);
c906108c
SS
2691 return 0;
2692}
2693
e58b0e63
PA
2694static int internal_breakpoint_number = -1;
2695
84f4c1fe
PM
2696/* Set the breakpoint number of B, depending on the value of INTERNAL.
2697 If INTERNAL is non-zero, the breakpoint number will be populated
2698 from internal_breakpoint_number and that variable decremented.
e5dd4106 2699 Otherwise the breakpoint number will be populated from
84f4c1fe
PM
2700 breakpoint_count and that value incremented. Internal breakpoints
2701 do not set the internal var bpnum. */
2702static void
2703set_breakpoint_number (int internal, struct breakpoint *b)
2704{
2705 if (internal)
2706 b->number = internal_breakpoint_number--;
2707 else
2708 {
2709 set_breakpoint_count (breakpoint_count + 1);
2710 b->number = breakpoint_count;
2711 }
2712}
2713
e62c965a 2714static struct breakpoint *
a6d9a66e 2715create_internal_breakpoint (struct gdbarch *gdbarch,
06edf0c0 2716 CORE_ADDR address, enum bptype type,
c0a91b2b 2717 const struct breakpoint_ops *ops)
e62c965a 2718{
e62c965a
PP
2719 struct symtab_and_line sal;
2720 struct breakpoint *b;
2721
4a64f543 2722 init_sal (&sal); /* Initialize to zeroes. */
e62c965a
PP
2723
2724 sal.pc = address;
2725 sal.section = find_pc_overlay (sal.pc);
6c95b8df 2726 sal.pspace = current_program_space;
e62c965a 2727
06edf0c0 2728 b = set_raw_breakpoint (gdbarch, sal, type, ops);
e62c965a
PP
2729 b->number = internal_breakpoint_number--;
2730 b->disposition = disp_donttouch;
2731
2732 return b;
2733}
2734
17450429
PP
2735static const char *const longjmp_names[] =
2736 {
2737 "longjmp", "_longjmp", "siglongjmp", "_siglongjmp"
2738 };
2739#define NUM_LONGJMP_NAMES ARRAY_SIZE(longjmp_names)
2740
2741/* Per-objfile data private to breakpoint.c. */
2742struct breakpoint_objfile_data
2743{
2744 /* Minimal symbol for "_ovly_debug_event" (if any). */
2745 struct minimal_symbol *overlay_msym;
2746
2747 /* Minimal symbol(s) for "longjmp", "siglongjmp", etc. (if any). */
2748 struct minimal_symbol *longjmp_msym[NUM_LONGJMP_NAMES];
2749
28106bc2
SDJ
2750 /* True if we have looked for longjmp probes. */
2751 int longjmp_searched;
2752
2753 /* SystemTap probe points for longjmp (if any). */
2754 VEC (probe_p) *longjmp_probes;
2755
17450429
PP
2756 /* Minimal symbol for "std::terminate()" (if any). */
2757 struct minimal_symbol *terminate_msym;
2758
2759 /* Minimal symbol for "_Unwind_DebugHook" (if any). */
2760 struct minimal_symbol *exception_msym;
28106bc2
SDJ
2761
2762 /* True if we have looked for exception probes. */
2763 int exception_searched;
2764
2765 /* SystemTap probe points for unwinding (if any). */
2766 VEC (probe_p) *exception_probes;
17450429
PP
2767};
2768
2769static const struct objfile_data *breakpoint_objfile_key;
2770
2771/* Minimal symbol not found sentinel. */
2772static struct minimal_symbol msym_not_found;
2773
2774/* Returns TRUE if MSYM point to the "not found" sentinel. */
2775
2776static int
2777msym_not_found_p (const struct minimal_symbol *msym)
2778{
2779 return msym == &msym_not_found;
2780}
2781
2782/* Return per-objfile data needed by breakpoint.c.
2783 Allocate the data if necessary. */
2784
2785static struct breakpoint_objfile_data *
2786get_breakpoint_objfile_data (struct objfile *objfile)
2787{
2788 struct breakpoint_objfile_data *bp_objfile_data;
2789
2790 bp_objfile_data = objfile_data (objfile, breakpoint_objfile_key);
2791 if (bp_objfile_data == NULL)
2792 {
2793 bp_objfile_data = obstack_alloc (&objfile->objfile_obstack,
2794 sizeof (*bp_objfile_data));
2795
2796 memset (bp_objfile_data, 0, sizeof (*bp_objfile_data));
2797 set_objfile_data (objfile, breakpoint_objfile_key, bp_objfile_data);
2798 }
2799 return bp_objfile_data;
2800}
2801
28106bc2
SDJ
2802static void
2803free_breakpoint_probes (struct objfile *obj, void *data)
2804{
2805 struct breakpoint_objfile_data *bp_objfile_data = data;
2806
2807 VEC_free (probe_p, bp_objfile_data->longjmp_probes);
2808 VEC_free (probe_p, bp_objfile_data->exception_probes);
2809}
2810
e62c965a 2811static void
af02033e 2812create_overlay_event_breakpoint (void)
e62c965a 2813{
69de3c6a 2814 struct objfile *objfile;
af02033e 2815 const char *const func_name = "_ovly_debug_event";
e62c965a 2816
69de3c6a
PP
2817 ALL_OBJFILES (objfile)
2818 {
2819 struct breakpoint *b;
17450429
PP
2820 struct breakpoint_objfile_data *bp_objfile_data;
2821 CORE_ADDR addr;
69de3c6a 2822
17450429
PP
2823 bp_objfile_data = get_breakpoint_objfile_data (objfile);
2824
2825 if (msym_not_found_p (bp_objfile_data->overlay_msym))
2826 continue;
2827
2828 if (bp_objfile_data->overlay_msym == NULL)
2829 {
2830 struct minimal_symbol *m;
2831
2832 m = lookup_minimal_symbol_text (func_name, objfile);
2833 if (m == NULL)
2834 {
2835 /* Avoid future lookups in this objfile. */
2836 bp_objfile_data->overlay_msym = &msym_not_found;
2837 continue;
2838 }
2839 bp_objfile_data->overlay_msym = m;
2840 }
e62c965a 2841
17450429
PP
2842 addr = SYMBOL_VALUE_ADDRESS (bp_objfile_data->overlay_msym);
2843 b = create_internal_breakpoint (get_objfile_arch (objfile), addr,
06edf0c0
PA
2844 bp_overlay_event,
2845 &internal_breakpoint_ops);
69de3c6a 2846 b->addr_string = xstrdup (func_name);
e62c965a 2847
69de3c6a
PP
2848 if (overlay_debugging == ovly_auto)
2849 {
2850 b->enable_state = bp_enabled;
2851 overlay_events_enabled = 1;
2852 }
2853 else
2854 {
2855 b->enable_state = bp_disabled;
2856 overlay_events_enabled = 0;
2857 }
e62c965a
PP
2858 }
2859 update_global_location_list (1);
2860}
2861
0fd8e87f 2862static void
af02033e 2863create_longjmp_master_breakpoint (void)
0fd8e87f 2864{
6c95b8df 2865 struct program_space *pspace;
6c95b8df
PA
2866 struct cleanup *old_chain;
2867
2868 old_chain = save_current_program_space ();
0fd8e87f 2869
6c95b8df 2870 ALL_PSPACES (pspace)
af02033e
PP
2871 {
2872 struct objfile *objfile;
2873
2874 set_current_program_space (pspace);
2875
2876 ALL_OBJFILES (objfile)
0fd8e87f 2877 {
af02033e
PP
2878 int i;
2879 struct gdbarch *gdbarch;
17450429 2880 struct breakpoint_objfile_data *bp_objfile_data;
0fd8e87f 2881
af02033e
PP
2882 gdbarch = get_objfile_arch (objfile);
2883 if (!gdbarch_get_longjmp_target_p (gdbarch))
0fd8e87f
UW
2884 continue;
2885
17450429
PP
2886 bp_objfile_data = get_breakpoint_objfile_data (objfile);
2887
28106bc2
SDJ
2888 if (!bp_objfile_data->longjmp_searched)
2889 {
2890 bp_objfile_data->longjmp_probes
2891 = find_probes_in_objfile (objfile, "libc", "longjmp");
2892 bp_objfile_data->longjmp_searched = 1;
2893 }
2894
2895 if (bp_objfile_data->longjmp_probes != NULL)
2896 {
2897 int i;
2898 struct probe *probe;
2899 struct gdbarch *gdbarch = get_objfile_arch (objfile);
2900
2901 for (i = 0;
2902 VEC_iterate (probe_p,
2903 bp_objfile_data->longjmp_probes,
2904 i, probe);
2905 ++i)
2906 {
2907 struct breakpoint *b;
2908
2909 b = create_internal_breakpoint (gdbarch, probe->address,
2910 bp_longjmp_master,
2911 &internal_breakpoint_ops);
2912 b->addr_string = xstrdup ("-probe-stap libc:longjmp");
2913 b->enable_state = bp_disabled;
2914 }
2915
2916 continue;
2917 }
2918
17450429 2919 for (i = 0; i < NUM_LONGJMP_NAMES; i++)
af02033e
PP
2920 {
2921 struct breakpoint *b;
af02033e 2922 const char *func_name;
17450429 2923 CORE_ADDR addr;
6c95b8df 2924
17450429 2925 if (msym_not_found_p (bp_objfile_data->longjmp_msym[i]))
af02033e 2926 continue;
0fd8e87f 2927
17450429
PP
2928 func_name = longjmp_names[i];
2929 if (bp_objfile_data->longjmp_msym[i] == NULL)
2930 {
2931 struct minimal_symbol *m;
2932
2933 m = lookup_minimal_symbol_text (func_name, objfile);
2934 if (m == NULL)
2935 {
2936 /* Prevent future lookups in this objfile. */
2937 bp_objfile_data->longjmp_msym[i] = &msym_not_found;
2938 continue;
2939 }
2940 bp_objfile_data->longjmp_msym[i] = m;
2941 }
2942
2943 addr = SYMBOL_VALUE_ADDRESS (bp_objfile_data->longjmp_msym[i]);
06edf0c0
PA
2944 b = create_internal_breakpoint (gdbarch, addr, bp_longjmp_master,
2945 &internal_breakpoint_ops);
af02033e
PP
2946 b->addr_string = xstrdup (func_name);
2947 b->enable_state = bp_disabled;
2948 }
0fd8e87f 2949 }
af02033e 2950 }
0fd8e87f 2951 update_global_location_list (1);
6c95b8df
PA
2952
2953 do_cleanups (old_chain);
0fd8e87f
UW
2954}
2955
af02033e 2956/* Create a master std::terminate breakpoint. */
aa7d318d 2957static void
af02033e 2958create_std_terminate_master_breakpoint (void)
aa7d318d
TT
2959{
2960 struct program_space *pspace;
aa7d318d 2961 struct cleanup *old_chain;
af02033e 2962 const char *const func_name = "std::terminate()";
aa7d318d
TT
2963
2964 old_chain = save_current_program_space ();
2965
2966 ALL_PSPACES (pspace)
17450429
PP
2967 {
2968 struct objfile *objfile;
2969 CORE_ADDR addr;
2970
2971 set_current_program_space (pspace);
2972
aa7d318d
TT
2973 ALL_OBJFILES (objfile)
2974 {
2975 struct breakpoint *b;
17450429 2976 struct breakpoint_objfile_data *bp_objfile_data;
aa7d318d 2977
17450429 2978 bp_objfile_data = get_breakpoint_objfile_data (objfile);
aa7d318d 2979
17450429
PP
2980 if (msym_not_found_p (bp_objfile_data->terminate_msym))
2981 continue;
2982
2983 if (bp_objfile_data->terminate_msym == NULL)
2984 {
2985 struct minimal_symbol *m;
2986
2987 m = lookup_minimal_symbol (func_name, NULL, objfile);
2988 if (m == NULL || (MSYMBOL_TYPE (m) != mst_text
2989 && MSYMBOL_TYPE (m) != mst_file_text))
2990 {
2991 /* Prevent future lookups in this objfile. */
2992 bp_objfile_data->terminate_msym = &msym_not_found;
2993 continue;
2994 }
2995 bp_objfile_data->terminate_msym = m;
2996 }
aa7d318d 2997
17450429
PP
2998 addr = SYMBOL_VALUE_ADDRESS (bp_objfile_data->terminate_msym);
2999 b = create_internal_breakpoint (get_objfile_arch (objfile), addr,
06edf0c0
PA
3000 bp_std_terminate_master,
3001 &internal_breakpoint_ops);
aa7d318d
TT
3002 b->addr_string = xstrdup (func_name);
3003 b->enable_state = bp_disabled;
3004 }
17450429
PP
3005 }
3006
aa7d318d
TT
3007 update_global_location_list (1);
3008
3009 do_cleanups (old_chain);
3010}
3011
186c406b
TT
3012/* Install a master breakpoint on the unwinder's debug hook. */
3013
70221824 3014static void
186c406b
TT
3015create_exception_master_breakpoint (void)
3016{
3017 struct objfile *objfile;
17450429 3018 const char *const func_name = "_Unwind_DebugHook";
186c406b
TT
3019
3020 ALL_OBJFILES (objfile)
3021 {
17450429
PP
3022 struct breakpoint *b;
3023 struct gdbarch *gdbarch;
3024 struct breakpoint_objfile_data *bp_objfile_data;
3025 CORE_ADDR addr;
3026
3027 bp_objfile_data = get_breakpoint_objfile_data (objfile);
3028
28106bc2
SDJ
3029 /* We prefer the SystemTap probe point if it exists. */
3030 if (!bp_objfile_data->exception_searched)
3031 {
3032 bp_objfile_data->exception_probes
3033 = find_probes_in_objfile (objfile, "libgcc", "unwind");
3034 bp_objfile_data->exception_searched = 1;
3035 }
3036
3037 if (bp_objfile_data->exception_probes != NULL)
3038 {
3039 struct gdbarch *gdbarch = get_objfile_arch (objfile);
3040 int i;
3041 struct probe *probe;
3042
3043 for (i = 0;
3044 VEC_iterate (probe_p,
3045 bp_objfile_data->exception_probes,
3046 i, probe);
3047 ++i)
3048 {
3049 struct breakpoint *b;
3050
3051 b = create_internal_breakpoint (gdbarch, probe->address,
3052 bp_exception_master,
3053 &internal_breakpoint_ops);
3054 b->addr_string = xstrdup ("-probe-stap libgcc:unwind");
3055 b->enable_state = bp_disabled;
3056 }
3057
3058 continue;
3059 }
3060
3061 /* Otherwise, try the hook function. */
3062
17450429
PP
3063 if (msym_not_found_p (bp_objfile_data->exception_msym))
3064 continue;
3065
3066 gdbarch = get_objfile_arch (objfile);
186c406b 3067
17450429 3068 if (bp_objfile_data->exception_msym == NULL)
186c406b 3069 {
17450429 3070 struct minimal_symbol *debug_hook;
186c406b 3071
17450429
PP
3072 debug_hook = lookup_minimal_symbol (func_name, NULL, objfile);
3073 if (debug_hook == NULL)
3074 {
3075 bp_objfile_data->exception_msym = &msym_not_found;
3076 continue;
3077 }
3078
3079 bp_objfile_data->exception_msym = debug_hook;
186c406b 3080 }
17450429
PP
3081
3082 addr = SYMBOL_VALUE_ADDRESS (bp_objfile_data->exception_msym);
3083 addr = gdbarch_convert_from_func_ptr_addr (gdbarch, addr,
3084 &current_target);
06edf0c0
PA
3085 b = create_internal_breakpoint (gdbarch, addr, bp_exception_master,
3086 &internal_breakpoint_ops);
17450429
PP
3087 b->addr_string = xstrdup (func_name);
3088 b->enable_state = bp_disabled;
186c406b
TT
3089 }
3090
3091 update_global_location_list (1);
3092}
3093
c906108c 3094void
fba45db2 3095update_breakpoints_after_exec (void)
c906108c 3096{
35df4500 3097 struct breakpoint *b, *b_tmp;
876fa593 3098 struct bp_location *bploc, **bplocp_tmp;
c906108c 3099
25b22b0a
PA
3100 /* We're about to delete breakpoints from GDB's lists. If the
3101 INSERTED flag is true, GDB will try to lift the breakpoints by
3102 writing the breakpoints' "shadow contents" back into memory. The
3103 "shadow contents" are NOT valid after an exec, so GDB should not
3104 do that. Instead, the target is responsible from marking
3105 breakpoints out as soon as it detects an exec. We don't do that
3106 here instead, because there may be other attempts to delete
3107 breakpoints after detecting an exec and before reaching here. */
876fa593 3108 ALL_BP_LOCATIONS (bploc, bplocp_tmp)
6c95b8df
PA
3109 if (bploc->pspace == current_program_space)
3110 gdb_assert (!bploc->inserted);
c906108c 3111
35df4500 3112 ALL_BREAKPOINTS_SAFE (b, b_tmp)
c5aa993b 3113 {
6c95b8df
PA
3114 if (b->pspace != current_program_space)
3115 continue;
3116
4a64f543 3117 /* Solib breakpoints must be explicitly reset after an exec(). */
c5aa993b
JM
3118 if (b->type == bp_shlib_event)
3119 {
3120 delete_breakpoint (b);
3121 continue;
3122 }
c906108c 3123
4a64f543 3124 /* JIT breakpoints must be explicitly reset after an exec(). */
4efc6507
DE
3125 if (b->type == bp_jit_event)
3126 {
3127 delete_breakpoint (b);
3128 continue;
3129 }
3130
1900040c 3131 /* Thread event breakpoints must be set anew after an exec(),
0fd8e87f
UW
3132 as must overlay event and longjmp master breakpoints. */
3133 if (b->type == bp_thread_event || b->type == bp_overlay_event
186c406b
TT
3134 || b->type == bp_longjmp_master || b->type == bp_std_terminate_master
3135 || b->type == bp_exception_master)
c4093a6a
JM
3136 {
3137 delete_breakpoint (b);
3138 continue;
3139 }
3140
4a64f543 3141 /* Step-resume breakpoints are meaningless after an exec(). */
2c03e5be 3142 if (b->type == bp_step_resume || b->type == bp_hp_step_resume)
c5aa993b
JM
3143 {
3144 delete_breakpoint (b);
3145 continue;
3146 }
3147
611c83ae
PA
3148 /* Longjmp and longjmp-resume breakpoints are also meaningless
3149 after an exec. */
186c406b
TT
3150 if (b->type == bp_longjmp || b->type == bp_longjmp_resume
3151 || b->type == bp_exception || b->type == bp_exception_resume)
611c83ae
PA
3152 {
3153 delete_breakpoint (b);
3154 continue;
3155 }
3156
ce78b96d
JB
3157 if (b->type == bp_catchpoint)
3158 {
3159 /* For now, none of the bp_catchpoint breakpoints need to
3160 do anything at this point. In the future, if some of
3161 the catchpoints need to something, we will need to add
3162 a new method, and call this method from here. */
3163 continue;
3164 }
3165
c5aa993b
JM
3166 /* bp_finish is a special case. The only way we ought to be able
3167 to see one of these when an exec() has happened, is if the user
3168 caught a vfork, and then said "finish". Ordinarily a finish just
3169 carries them to the call-site of the current callee, by setting
3170 a temporary bp there and resuming. But in this case, the finish
3171 will carry them entirely through the vfork & exec.
3172
3173 We don't want to allow a bp_finish to remain inserted now. But
3174 we can't safely delete it, 'cause finish_command has a handle to
3175 the bp on a bpstat, and will later want to delete it. There's a
3176 chance (and I've seen it happen) that if we delete the bp_finish
3177 here, that its storage will get reused by the time finish_command
3178 gets 'round to deleting the "use to be a bp_finish" breakpoint.
3179 We really must allow finish_command to delete a bp_finish.
3180
e5dd4106 3181 In the absence of a general solution for the "how do we know
53a5351d
JM
3182 it's safe to delete something others may have handles to?"
3183 problem, what we'll do here is just uninsert the bp_finish, and
3184 let finish_command delete it.
3185
3186 (We know the bp_finish is "doomed" in the sense that it's
3187 momentary, and will be deleted as soon as finish_command sees
3188 the inferior stopped. So it doesn't matter that the bp's
3189 address is probably bogus in the new a.out, unlike e.g., the
3190 solib breakpoints.) */
c5aa993b 3191
c5aa993b
JM
3192 if (b->type == bp_finish)
3193 {
3194 continue;
3195 }
3196
3197 /* Without a symbolic address, we have little hope of the
3198 pre-exec() address meaning the same thing in the post-exec()
4a64f543 3199 a.out. */
c5aa993b
JM
3200 if (b->addr_string == NULL)
3201 {
3202 delete_breakpoint (b);
3203 continue;
3204 }
c5aa993b 3205 }
1900040c 3206 /* FIXME what about longjmp breakpoints? Re-create them here? */
af02033e
PP
3207 create_overlay_event_breakpoint ();
3208 create_longjmp_master_breakpoint ();
3209 create_std_terminate_master_breakpoint ();
186c406b 3210 create_exception_master_breakpoint ();
c906108c
SS
3211}
3212
3213int
fba45db2 3214detach_breakpoints (int pid)
c906108c 3215{
35df4500 3216 struct bp_location *bl, **blp_tmp;
3a1bae8e 3217 int val = 0;
ce696e05 3218 struct cleanup *old_chain = save_inferior_ptid ();
6c95b8df 3219 struct inferior *inf = current_inferior ();
c5aa993b 3220
39f77062 3221 if (pid == PIDGET (inferior_ptid))
8a3fe4f8 3222 error (_("Cannot detach breakpoints of inferior_ptid"));
c5aa993b 3223
6c95b8df 3224 /* Set inferior_ptid; remove_breakpoint_1 uses this global. */
ce696e05 3225 inferior_ptid = pid_to_ptid (pid);
35df4500 3226 ALL_BP_LOCATIONS (bl, blp_tmp)
c5aa993b 3227 {
35df4500 3228 if (bl->pspace != inf->pspace)
6c95b8df
PA
3229 continue;
3230
35df4500
TJB
3231 if (bl->inserted)
3232 val |= remove_breakpoint_1 (bl, mark_inserted);
c5aa993b 3233 }
d03285ec
UW
3234
3235 /* Detach single-step breakpoints as well. */
3236 detach_single_step_breakpoints ();
3237
ce696e05 3238 do_cleanups (old_chain);
3a1bae8e 3239 return val;
c906108c
SS
3240}
3241
35df4500 3242/* Remove the breakpoint location BL from the current address space.
6c95b8df
PA
3243 Note that this is used to detach breakpoints from a child fork.
3244 When we get here, the child isn't in the inferior list, and neither
3245 do we have objects to represent its address space --- we should
35df4500 3246 *not* look at bl->pspace->aspace here. */
6c95b8df 3247
c906108c 3248static int
35df4500 3249remove_breakpoint_1 (struct bp_location *bl, insertion_state_t is)
c906108c
SS
3250{
3251 int val;
c5aa993b 3252
35df4500
TJB
3253 /* BL is never in moribund_locations by our callers. */
3254 gdb_assert (bl->owner != NULL);
2bdf28a0 3255
35df4500 3256 if (bl->owner->enable_state == bp_permanent)
c2c6d25f
JM
3257 /* Permanent breakpoints cannot be inserted or removed. */
3258 return 0;
3259
74960c60
VP
3260 /* The type of none suggests that owner is actually deleted.
3261 This should not ever happen. */
35df4500 3262 gdb_assert (bl->owner->type != bp_none);
0bde7532 3263
35df4500
TJB
3264 if (bl->loc_type == bp_loc_software_breakpoint
3265 || bl->loc_type == bp_loc_hardware_breakpoint)
c906108c 3266 {
c02f5703
MS
3267 /* "Normal" instruction breakpoint: either the standard
3268 trap-instruction bp (bp_breakpoint), or a
3269 bp_hardware_breakpoint. */
3270
3271 /* First check to see if we have to handle an overlay. */
3272 if (overlay_debugging == ovly_off
35df4500
TJB
3273 || bl->section == NULL
3274 || !(section_is_overlay (bl->section)))
c02f5703
MS
3275 {
3276 /* No overlay handling: just remove the breakpoint. */
348d480f 3277 val = bl->owner->ops->remove_location (bl);
c02f5703 3278 }
c906108c
SS
3279 else
3280 {
4a64f543 3281 /* This breakpoint is in an overlay section.
c02f5703
MS
3282 Did we set a breakpoint at the LMA? */
3283 if (!overlay_events_enabled)
3284 {
3285 /* Yes -- overlay event support is not active, so we
3286 should have set a breakpoint at the LMA. Remove it.
3287 */
c02f5703
MS
3288 /* Ignore any failures: if the LMA is in ROM, we will
3289 have already warned when we failed to insert it. */
35df4500
TJB
3290 if (bl->loc_type == bp_loc_hardware_breakpoint)
3291 target_remove_hw_breakpoint (bl->gdbarch,
3292 &bl->overlay_target_info);
c02f5703 3293 else
35df4500
TJB
3294 target_remove_breakpoint (bl->gdbarch,
3295 &bl->overlay_target_info);
c02f5703
MS
3296 }
3297 /* Did we set a breakpoint at the VMA?
3298 If so, we will have marked the breakpoint 'inserted'. */
35df4500 3299 if (bl->inserted)
c906108c 3300 {
c02f5703
MS
3301 /* Yes -- remove it. Previously we did not bother to
3302 remove the breakpoint if the section had been
3303 unmapped, but let's not rely on that being safe. We
3304 don't know what the overlay manager might do. */
aa67235e
UW
3305
3306 /* However, we should remove *software* breakpoints only
3307 if the section is still mapped, or else we overwrite
3308 wrong code with the saved shadow contents. */
348d480f
PA
3309 if (bl->loc_type == bp_loc_hardware_breakpoint
3310 || section_is_mapped (bl->section))
3311 val = bl->owner->ops->remove_location (bl);
aa67235e
UW
3312 else
3313 val = 0;
c906108c 3314 }
c02f5703
MS
3315 else
3316 {
3317 /* No -- not inserted, so no need to remove. No error. */
3318 val = 0;
3319 }
c906108c 3320 }
879d1e6b
UW
3321
3322 /* In some cases, we might not be able to remove a breakpoint
3323 in a shared library that has already been removed, but we
3324 have not yet processed the shlib unload event. */
35df4500 3325 if (val && solib_name_from_address (bl->pspace, bl->address))
879d1e6b
UW
3326 val = 0;
3327
c906108c
SS
3328 if (val)
3329 return val;
35df4500 3330 bl->inserted = (is == mark_inserted);
c906108c 3331 }
35df4500 3332 else if (bl->loc_type == bp_loc_hardware_watchpoint)
c906108c 3333 {
77b06cd7
TJB
3334 gdb_assert (bl->owner->ops != NULL
3335 && bl->owner->ops->remove_location != NULL);
3336
35df4500 3337 bl->inserted = (is == mark_inserted);
77b06cd7 3338 bl->owner->ops->remove_location (bl);
2e70b7b9 3339
c906108c 3340 /* Failure to remove any of the hardware watchpoints comes here. */
35df4500 3341 if ((is == mark_uninserted) && (bl->inserted))
8a3fe4f8 3342 warning (_("Could not remove hardware watchpoint %d."),
35df4500 3343 bl->owner->number);
c906108c 3344 }
35df4500
TJB
3345 else if (bl->owner->type == bp_catchpoint
3346 && breakpoint_enabled (bl->owner)
3347 && !bl->duplicate)
ce78b96d 3348 {
77b06cd7
TJB
3349 gdb_assert (bl->owner->ops != NULL
3350 && bl->owner->ops->remove_location != NULL);
ce78b96d 3351
77b06cd7 3352 val = bl->owner->ops->remove_location (bl);
ce78b96d
JB
3353 if (val)
3354 return val;
77b06cd7 3355
35df4500 3356 bl->inserted = (is == mark_inserted);
ce78b96d 3357 }
c906108c
SS
3358
3359 return 0;
3360}
3361
6c95b8df 3362static int
35df4500 3363remove_breakpoint (struct bp_location *bl, insertion_state_t is)
6c95b8df
PA
3364{
3365 int ret;
3366 struct cleanup *old_chain;
3367
35df4500
TJB
3368 /* BL is never in moribund_locations by our callers. */
3369 gdb_assert (bl->owner != NULL);
2bdf28a0 3370
35df4500 3371 if (bl->owner->enable_state == bp_permanent)
6c95b8df
PA
3372 /* Permanent breakpoints cannot be inserted or removed. */
3373 return 0;
3374
3375 /* The type of none suggests that owner is actually deleted.
3376 This should not ever happen. */
35df4500 3377 gdb_assert (bl->owner->type != bp_none);
6c95b8df
PA
3378
3379 old_chain = save_current_space_and_thread ();
3380
35df4500 3381 switch_to_program_space_and_thread (bl->pspace);
6c95b8df 3382
35df4500 3383 ret = remove_breakpoint_1 (bl, is);
6c95b8df
PA
3384
3385 do_cleanups (old_chain);
3386 return ret;
3387}
3388
c906108c
SS
3389/* Clear the "inserted" flag in all breakpoints. */
3390
25b22b0a 3391void
fba45db2 3392mark_breakpoints_out (void)
c906108c 3393{
35df4500 3394 struct bp_location *bl, **blp_tmp;
c906108c 3395
35df4500
TJB
3396 ALL_BP_LOCATIONS (bl, blp_tmp)
3397 if (bl->pspace == current_program_space)
3398 bl->inserted = 0;
c906108c
SS
3399}
3400
53a5351d
JM
3401/* Clear the "inserted" flag in all breakpoints and delete any
3402 breakpoints which should go away between runs of the program.
c906108c
SS
3403
3404 Plus other such housekeeping that has to be done for breakpoints
3405 between runs.
3406
53a5351d
JM
3407 Note: this function gets called at the end of a run (by
3408 generic_mourn_inferior) and when a run begins (by
4a64f543 3409 init_wait_for_inferior). */
c906108c
SS
3410
3411
3412
3413void
fba45db2 3414breakpoint_init_inferior (enum inf_context context)
c906108c 3415{
35df4500
TJB
3416 struct breakpoint *b, *b_tmp;
3417 struct bp_location *bl, **blp_tmp;
1c5cfe86 3418 int ix;
6c95b8df 3419 struct program_space *pspace = current_program_space;
c906108c 3420
50c71eaf
PA
3421 /* If breakpoint locations are shared across processes, then there's
3422 nothing to do. */
2567c7d9 3423 if (gdbarch_has_global_breakpoints (target_gdbarch))
50c71eaf
PA
3424 return;
3425
35df4500 3426 ALL_BP_LOCATIONS (bl, blp_tmp)
6c95b8df 3427 {
35df4500
TJB
3428 /* ALL_BP_LOCATIONS bp_location has BL->OWNER always non-NULL. */
3429 if (bl->pspace == pspace
3430 && bl->owner->enable_state != bp_permanent)
3431 bl->inserted = 0;
6c95b8df 3432 }
075f6582 3433
35df4500 3434 ALL_BREAKPOINTS_SAFE (b, b_tmp)
c5aa993b 3435 {
6c95b8df
PA
3436 if (b->loc && b->loc->pspace != pspace)
3437 continue;
3438
c5aa993b
JM
3439 switch (b->type)
3440 {
3441 case bp_call_dummy:
c906108c 3442
c5aa993b 3443 /* If the call dummy breakpoint is at the entry point it will
ab92d69b
PA
3444 cause problems when the inferior is rerun, so we better get
3445 rid of it. */
3446
3447 case bp_watchpoint_scope:
3448
3449 /* Also get rid of scope breakpoints. */
3450
3451 case bp_shlib_event:
3452
3453 /* Also remove solib event breakpoints. Their addresses may
3454 have changed since the last time we ran the program.
3455 Actually we may now be debugging against different target;
3456 and so the solib backend that installed this breakpoint may
3457 not be used in by the target. E.g.,
3458
3459 (gdb) file prog-linux
3460 (gdb) run # native linux target
3461 ...
3462 (gdb) kill
3463 (gdb) file prog-win.exe
3464 (gdb) tar rem :9999 # remote Windows gdbserver.
3465 */
c906108c 3466
f59f708a
PA
3467 case bp_step_resume:
3468
3469 /* Also remove step-resume breakpoints. */
3470
c5aa993b
JM
3471 delete_breakpoint (b);
3472 break;
c906108c 3473
c5aa993b
JM
3474 case bp_watchpoint:
3475 case bp_hardware_watchpoint:
3476 case bp_read_watchpoint:
3477 case bp_access_watchpoint:
3a5c3e22
PA
3478 {
3479 struct watchpoint *w = (struct watchpoint *) b;
c906108c 3480
3a5c3e22
PA
3481 /* Likewise for watchpoints on local expressions. */
3482 if (w->exp_valid_block != NULL)
3483 delete_breakpoint (b);
3484 else if (context == inf_starting)
3485 {
3486 /* Reset val field to force reread of starting value in
3487 insert_breakpoints. */
3488 if (w->val)
3489 value_free (w->val);
3490 w->val = NULL;
3491 w->val_valid = 0;
c860120c 3492 }
3a5c3e22 3493 }
c5aa993b
JM
3494 break;
3495 default:
c5aa993b
JM
3496 break;
3497 }
3498 }
1c5cfe86
PA
3499
3500 /* Get rid of the moribund locations. */
35df4500
TJB
3501 for (ix = 0; VEC_iterate (bp_location_p, moribund_locations, ix, bl); ++ix)
3502 decref_bp_location (&bl);
1c5cfe86 3503 VEC_free (bp_location_p, moribund_locations);
c906108c
SS
3504}
3505
6c95b8df
PA
3506/* These functions concern about actual breakpoints inserted in the
3507 target --- to e.g. check if we need to do decr_pc adjustment or if
3508 we need to hop over the bkpt --- so we check for address space
3509 match, not program space. */
3510
c2c6d25f
JM
3511/* breakpoint_here_p (PC) returns non-zero if an enabled breakpoint
3512 exists at PC. It returns ordinary_breakpoint_here if it's an
3513 ordinary breakpoint, or permanent_breakpoint_here if it's a
3514 permanent breakpoint.
3515 - When continuing from a location with an ordinary breakpoint, we
3516 actually single step once before calling insert_breakpoints.
e5dd4106 3517 - When continuing from a location with a permanent breakpoint, we
c2c6d25f
JM
3518 need to use the `SKIP_PERMANENT_BREAKPOINT' macro, provided by
3519 the target, to advance the PC past the breakpoint. */
c906108c 3520
c2c6d25f 3521enum breakpoint_here
6c95b8df 3522breakpoint_here_p (struct address_space *aspace, CORE_ADDR pc)
c906108c 3523{
35df4500 3524 struct bp_location *bl, **blp_tmp;
c2c6d25f 3525 int any_breakpoint_here = 0;
c906108c 3526
35df4500 3527 ALL_BP_LOCATIONS (bl, blp_tmp)
075f6582 3528 {
35df4500
TJB
3529 if (bl->loc_type != bp_loc_software_breakpoint
3530 && bl->loc_type != bp_loc_hardware_breakpoint)
075f6582
DJ
3531 continue;
3532
f1310107 3533 /* ALL_BP_LOCATIONS bp_location has BL->OWNER always non-NULL. */
35df4500
TJB
3534 if ((breakpoint_enabled (bl->owner)
3535 || bl->owner->enable_state == bp_permanent)
f1310107 3536 && breakpoint_location_address_match (bl, aspace, pc))
075f6582
DJ
3537 {
3538 if (overlay_debugging
35df4500
TJB
3539 && section_is_overlay (bl->section)
3540 && !section_is_mapped (bl->section))
075f6582 3541 continue; /* unmapped overlay -- can't be a match */
35df4500 3542 else if (bl->owner->enable_state == bp_permanent)
075f6582
DJ
3543 return permanent_breakpoint_here;
3544 else
3545 any_breakpoint_here = 1;
3546 }
3547 }
c906108c 3548
c2c6d25f 3549 return any_breakpoint_here ? ordinary_breakpoint_here : 0;
c906108c
SS
3550}
3551
1c5cfe86
PA
3552/* Return true if there's a moribund breakpoint at PC. */
3553
3554int
6c95b8df 3555moribund_breakpoint_here_p (struct address_space *aspace, CORE_ADDR pc)
1c5cfe86
PA
3556{
3557 struct bp_location *loc;
3558 int ix;
3559
3560 for (ix = 0; VEC_iterate (bp_location_p, moribund_locations, ix, loc); ++ix)
f1310107 3561 if (breakpoint_location_address_match (loc, aspace, pc))
1c5cfe86
PA
3562 return 1;
3563
3564 return 0;
3565}
c2c6d25f 3566
c36b740a 3567/* Returns non-zero if there's a breakpoint inserted at PC, which is
4a64f543
MS
3568 inserted using regular breakpoint_chain / bp_location array
3569 mechanism. This does not check for single-step breakpoints, which
3570 are inserted and removed using direct target manipulation. */
c906108c
SS
3571
3572int
4a64f543
MS
3573regular_breakpoint_inserted_here_p (struct address_space *aspace,
3574 CORE_ADDR pc)
c906108c 3575{
35df4500 3576 struct bp_location *bl, **blp_tmp;
c906108c 3577
35df4500 3578 ALL_BP_LOCATIONS (bl, blp_tmp)
c5aa993b 3579 {
35df4500
TJB
3580 if (bl->loc_type != bp_loc_software_breakpoint
3581 && bl->loc_type != bp_loc_hardware_breakpoint)
075f6582
DJ
3582 continue;
3583
35df4500 3584 if (bl->inserted
f1310107 3585 && breakpoint_location_address_match (bl, aspace, pc))
075f6582
DJ
3586 {
3587 if (overlay_debugging
35df4500
TJB
3588 && section_is_overlay (bl->section)
3589 && !section_is_mapped (bl->section))
075f6582
DJ
3590 continue; /* unmapped overlay -- can't be a match */
3591 else
3592 return 1;
3593 }
c5aa993b 3594 }
c36b740a
VP
3595 return 0;
3596}
3597
3598/* Returns non-zero iff there's either regular breakpoint
3599 or a single step breakpoint inserted at PC. */
3600
3601int
6c95b8df 3602breakpoint_inserted_here_p (struct address_space *aspace, CORE_ADDR pc)
c36b740a 3603{
6c95b8df 3604 if (regular_breakpoint_inserted_here_p (aspace, pc))
c36b740a 3605 return 1;
c906108c 3606
6c95b8df 3607 if (single_step_breakpoint_inserted_here_p (aspace, pc))
1aafd4da
UW
3608 return 1;
3609
c906108c
SS
3610 return 0;
3611}
3612
4fa8626c
DJ
3613/* This function returns non-zero iff there is a software breakpoint
3614 inserted at PC. */
3615
3616int
3e43a32a
MS
3617software_breakpoint_inserted_here_p (struct address_space *aspace,
3618 CORE_ADDR pc)
4fa8626c 3619{
35df4500 3620 struct bp_location *bl, **blp_tmp;
4fa8626c 3621
35df4500 3622 ALL_BP_LOCATIONS (bl, blp_tmp)
4fa8626c 3623 {
35df4500 3624 if (bl->loc_type != bp_loc_software_breakpoint)
4fa8626c
DJ
3625 continue;
3626
35df4500
TJB
3627 if (bl->inserted
3628 && breakpoint_address_match (bl->pspace->aspace, bl->address,
6c95b8df 3629 aspace, pc))
4fa8626c
DJ
3630 {
3631 if (overlay_debugging
35df4500
TJB
3632 && section_is_overlay (bl->section)
3633 && !section_is_mapped (bl->section))
4fa8626c
DJ
3634 continue; /* unmapped overlay -- can't be a match */
3635 else
3636 return 1;
3637 }
3638 }
3639
1aafd4da 3640 /* Also check for software single-step breakpoints. */
6c95b8df 3641 if (single_step_breakpoint_inserted_here_p (aspace, pc))
1aafd4da
UW
3642 return 1;
3643
4fa8626c
DJ
3644 return 0;
3645}
3646
9093389c
PA
3647int
3648hardware_watchpoint_inserted_in_range (struct address_space *aspace,
3649 CORE_ADDR addr, ULONGEST len)
3650{
3651 struct breakpoint *bpt;
3652
3653 ALL_BREAKPOINTS (bpt)
3654 {
3655 struct bp_location *loc;
3656
3657 if (bpt->type != bp_hardware_watchpoint
3658 && bpt->type != bp_access_watchpoint)
3659 continue;
3660
3661 if (!breakpoint_enabled (bpt))
3662 continue;
3663
3664 for (loc = bpt->loc; loc; loc = loc->next)
3665 if (loc->pspace->aspace == aspace && loc->inserted)
3666 {
3667 CORE_ADDR l, h;
3668
3669 /* Check for intersection. */
3670 l = max (loc->address, addr);
3671 h = min (loc->address + loc->length, addr + len);
3672 if (l < h)
3673 return 1;
3674 }
3675 }
3676 return 0;
3677}
3678
075f6582
DJ
3679/* breakpoint_thread_match (PC, PTID) returns true if the breakpoint at
3680 PC is valid for process/thread PTID. */
c906108c
SS
3681
3682int
6c95b8df
PA
3683breakpoint_thread_match (struct address_space *aspace, CORE_ADDR pc,
3684 ptid_t ptid)
c906108c 3685{
35df4500 3686 struct bp_location *bl, **blp_tmp;
4a306c9a 3687 /* The thread and task IDs associated to PTID, computed lazily. */
a6f1cd96 3688 int thread = -1;
4a306c9a 3689 int task = 0;
a6f1cd96 3690
35df4500 3691 ALL_BP_LOCATIONS (bl, blp_tmp)
c5aa993b 3692 {
35df4500
TJB
3693 if (bl->loc_type != bp_loc_software_breakpoint
3694 && bl->loc_type != bp_loc_hardware_breakpoint)
075f6582
DJ
3695 continue;
3696
35df4500
TJB
3697 /* ALL_BP_LOCATIONS bp_location has bl->OWNER always non-NULL. */
3698 if (!breakpoint_enabled (bl->owner)
3699 && bl->owner->enable_state != bp_permanent)
a6f1cd96
JB
3700 continue;
3701
f1310107 3702 if (!breakpoint_location_address_match (bl, aspace, pc))
a6f1cd96
JB
3703 continue;
3704
35df4500 3705 if (bl->owner->thread != -1)
075f6582 3706 {
a6f1cd96
JB
3707 /* This is a thread-specific breakpoint. Check that ptid
3708 matches that thread. If thread hasn't been computed yet,
3709 it is now time to do so. */
3710 if (thread == -1)
3711 thread = pid_to_thread_id (ptid);
35df4500 3712 if (bl->owner->thread != thread)
a6f1cd96 3713 continue;
075f6582 3714 }
a6f1cd96 3715
35df4500 3716 if (bl->owner->task != 0)
4a306c9a
JB
3717 {
3718 /* This is a task-specific breakpoint. Check that ptid
3719 matches that task. If task hasn't been computed yet,
3720 it is now time to do so. */
3721 if (task == 0)
3722 task = ada_get_task_number (ptid);
35df4500 3723 if (bl->owner->task != task)
4a306c9a
JB
3724 continue;
3725 }
3726
a6f1cd96 3727 if (overlay_debugging
35df4500
TJB
3728 && section_is_overlay (bl->section)
3729 && !section_is_mapped (bl->section))
a6f1cd96
JB
3730 continue; /* unmapped overlay -- can't be a match */
3731
3732 return 1;
c5aa993b 3733 }
c906108c
SS
3734
3735 return 0;
3736}
c906108c 3737\f
c5aa993b 3738
c906108c
SS
3739/* bpstat stuff. External routines' interfaces are documented
3740 in breakpoint.h. */
3741
3742int
c326b90e 3743is_catchpoint (struct breakpoint *ep)
c906108c 3744{
533be4dd 3745 return (ep->type == bp_catchpoint);
c906108c
SS
3746}
3747
f431efe5
PA
3748/* Frees any storage that is part of a bpstat. Does not walk the
3749 'next' chain. */
3750
3751static void
198757a8
VP
3752bpstat_free (bpstat bs)
3753{
3754 if (bs->old_val != NULL)
3755 value_free (bs->old_val);
9add0f1b 3756 decref_counted_command_line (&bs->commands);
f431efe5 3757 decref_bp_location (&bs->bp_location_at);
198757a8
VP
3758 xfree (bs);
3759}
3760
c906108c
SS
3761/* Clear a bpstat so that it says we are not at any breakpoint.
3762 Also free any storage that is part of a bpstat. */
3763
3764void
fba45db2 3765bpstat_clear (bpstat *bsp)
c906108c
SS
3766{
3767 bpstat p;
3768 bpstat q;
3769
3770 if (bsp == 0)
3771 return;
3772 p = *bsp;
3773 while (p != NULL)
3774 {
3775 q = p->next;
198757a8 3776 bpstat_free (p);
c906108c
SS
3777 p = q;
3778 }
3779 *bsp = NULL;
3780}
3781
3782/* Return a copy of a bpstat. Like "bs1 = bs2" but all storage that
3783 is part of the bpstat is copied as well. */
3784
3785bpstat
fba45db2 3786bpstat_copy (bpstat bs)
c906108c
SS
3787{
3788 bpstat p = NULL;
3789 bpstat tmp;
3790 bpstat retval = NULL;
3791
3792 if (bs == NULL)
3793 return bs;
3794
3795 for (; bs != NULL; bs = bs->next)
3796 {
3797 tmp = (bpstat) xmalloc (sizeof (*tmp));
3798 memcpy (tmp, bs, sizeof (*tmp));
9add0f1b 3799 incref_counted_command_line (tmp->commands);
f431efe5 3800 incref_bp_location (tmp->bp_location_at);
31cc81e9 3801 if (bs->old_val != NULL)
3c3185ac
JK
3802 {
3803 tmp->old_val = value_copy (bs->old_val);
3804 release_value (tmp->old_val);
3805 }
31cc81e9 3806
c906108c
SS
3807 if (p == NULL)
3808 /* This is the first thing in the chain. */
3809 retval = tmp;
3810 else
3811 p->next = tmp;
3812 p = tmp;
3813 }
3814 p->next = NULL;
3815 return retval;
3816}
3817
4a64f543 3818/* Find the bpstat associated with this breakpoint. */
c906108c
SS
3819
3820bpstat
fba45db2 3821bpstat_find_breakpoint (bpstat bsp, struct breakpoint *breakpoint)
c906108c 3822{
c5aa993b
JM
3823 if (bsp == NULL)
3824 return NULL;
c906108c 3825
c5aa993b
JM
3826 for (; bsp != NULL; bsp = bsp->next)
3827 {
f431efe5 3828 if (bsp->breakpoint_at == breakpoint)
c5aa993b
JM
3829 return bsp;
3830 }
c906108c
SS
3831 return NULL;
3832}
3833
4a64f543
MS
3834/* Put in *NUM the breakpoint number of the first breakpoint we are
3835 stopped at. *BSP upon return is a bpstat which points to the
3836 remaining breakpoints stopped at (but which is not guaranteed to be
3837 good for anything but further calls to bpstat_num).
3838
8671a17b
PA
3839 Return 0 if passed a bpstat which does not indicate any breakpoints.
3840 Return -1 if stopped at a breakpoint that has been deleted since
3841 we set it.
3842 Return 1 otherwise. */
c906108c
SS
3843
3844int
8671a17b 3845bpstat_num (bpstat *bsp, int *num)
c906108c
SS
3846{
3847 struct breakpoint *b;
3848
3849 if ((*bsp) == NULL)
3850 return 0; /* No more breakpoint values */
8671a17b 3851
4a64f543
MS
3852 /* We assume we'll never have several bpstats that correspond to a
3853 single breakpoint -- otherwise, this function might return the
3854 same number more than once and this will look ugly. */
f431efe5 3855 b = (*bsp)->breakpoint_at;
8671a17b
PA
3856 *bsp = (*bsp)->next;
3857 if (b == NULL)
3858 return -1; /* breakpoint that's been deleted since */
3859
3860 *num = b->number; /* We have its number */
3861 return 1;
c906108c
SS
3862}
3863
e93ca019 3864/* See breakpoint.h. */
c906108c
SS
3865
3866void
e93ca019 3867bpstat_clear_actions (void)
c906108c 3868{
e93ca019
JK
3869 struct thread_info *tp;
3870 bpstat bs;
3871
3872 if (ptid_equal (inferior_ptid, null_ptid))
3873 return;
3874
3875 tp = find_thread_ptid (inferior_ptid);
3876 if (tp == NULL)
3877 return;
3878
3879 for (bs = tp->control.stop_bpstat; bs != NULL; bs = bs->next)
c906108c 3880 {
9add0f1b 3881 decref_counted_command_line (&bs->commands);
abf85f46 3882
c906108c
SS
3883 if (bs->old_val != NULL)
3884 {
3885 value_free (bs->old_val);
3886 bs->old_val = NULL;
3887 }
3888 }
3889}
3890
f3b1572e
PA
3891/* Called when a command is about to proceed the inferior. */
3892
3893static void
3894breakpoint_about_to_proceed (void)
3895{
3896 if (!ptid_equal (inferior_ptid, null_ptid))
3897 {
3898 struct thread_info *tp = inferior_thread ();
3899
3900 /* Allow inferior function calls in breakpoint commands to not
3901 interrupt the command list. When the call finishes
3902 successfully, the inferior will be standing at the same
3903 breakpoint as if nothing happened. */
16c381f0 3904 if (tp->control.in_infcall)
f3b1572e
PA
3905 return;
3906 }
3907
3908 breakpoint_proceeded = 1;
3909}
3910
4a64f543
MS
3911/* Stub for cleaning up our state if we error-out of a breakpoint
3912 command. */
c906108c 3913static void
4efb68b1 3914cleanup_executing_breakpoints (void *ignore)
c906108c
SS
3915{
3916 executing_breakpoint_commands = 0;
3917}
3918
abf85f46
JK
3919/* Return non-zero iff CMD as the first line of a command sequence is `silent'
3920 or its equivalent. */
3921
3922static int
3923command_line_is_silent (struct command_line *cmd)
3924{
3925 return cmd && (strcmp ("silent", cmd->line) == 0
3926 || (xdb_commands && strcmp ("Q", cmd->line) == 0));
3927}
3928
4a64f543
MS
3929/* Execute all the commands associated with all the breakpoints at
3930 this location. Any of these commands could cause the process to
3931 proceed beyond this point, etc. We look out for such changes by
3932 checking the global "breakpoint_proceeded" after each command.
c906108c 3933
347bddb7
PA
3934 Returns true if a breakpoint command resumed the inferior. In that
3935 case, it is the caller's responsibility to recall it again with the
3936 bpstat of the current thread. */
3937
3938static int
3939bpstat_do_actions_1 (bpstat *bsp)
c906108c
SS
3940{
3941 bpstat bs;
3942 struct cleanup *old_chain;
347bddb7 3943 int again = 0;
c906108c
SS
3944
3945 /* Avoid endless recursion if a `source' command is contained
3946 in bs->commands. */
3947 if (executing_breakpoint_commands)
347bddb7 3948 return 0;
c906108c
SS
3949
3950 executing_breakpoint_commands = 1;
3951 old_chain = make_cleanup (cleanup_executing_breakpoints, 0);
3952
cf6c5ffb
TT
3953 prevent_dont_repeat ();
3954
4a64f543 3955 /* This pointer will iterate over the list of bpstat's. */
c906108c
SS
3956 bs = *bsp;
3957
3958 breakpoint_proceeded = 0;
3959 for (; bs != NULL; bs = bs->next)
3960 {
9add0f1b 3961 struct counted_command_line *ccmd;
6c50ab1c
JB
3962 struct command_line *cmd;
3963 struct cleanup *this_cmd_tree_chain;
3964
3965 /* Take ownership of the BSP's command tree, if it has one.
3966
3967 The command tree could legitimately contain commands like
3968 'step' and 'next', which call clear_proceed_status, which
3969 frees stop_bpstat's command tree. To make sure this doesn't
3970 free the tree we're executing out from under us, we need to
3971 take ownership of the tree ourselves. Since a given bpstat's
3972 commands are only executed once, we don't need to copy it; we
3973 can clear the pointer in the bpstat, and make sure we free
3974 the tree when we're done. */
9add0f1b
TT
3975 ccmd = bs->commands;
3976 bs->commands = NULL;
abf85f46
JK
3977 this_cmd_tree_chain = make_cleanup_decref_counted_command_line (&ccmd);
3978 cmd = ccmd ? ccmd->commands : NULL;
3979 if (command_line_is_silent (cmd))
3980 {
3981 /* The action has been already done by bpstat_stop_status. */
3982 cmd = cmd->next;
3983 }
6c50ab1c 3984
c906108c
SS
3985 while (cmd != NULL)
3986 {
3987 execute_control_command (cmd);
3988
3989 if (breakpoint_proceeded)
3990 break;
3991 else
3992 cmd = cmd->next;
3993 }
6c50ab1c
JB
3994
3995 /* We can free this command tree now. */
3996 do_cleanups (this_cmd_tree_chain);
3997
c906108c 3998 if (breakpoint_proceeded)
32c1e744
VP
3999 {
4000 if (target_can_async_p ())
347bddb7
PA
4001 /* If we are in async mode, then the target might be still
4002 running, not stopped at any breakpoint, so nothing for
4003 us to do here -- just return to the event loop. */
4004 ;
32c1e744
VP
4005 else
4006 /* In sync mode, when execute_control_command returns
4007 we're already standing on the next breakpoint.
347bddb7
PA
4008 Breakpoint commands for that stop were not run, since
4009 execute_command does not run breakpoint commands --
4010 only command_line_handler does, but that one is not
4011 involved in execution of breakpoint commands. So, we
4012 can now execute breakpoint commands. It should be
4013 noted that making execute_command do bpstat actions is
4014 not an option -- in this case we'll have recursive
4015 invocation of bpstat for each breakpoint with a
4016 command, and can easily blow up GDB stack. Instead, we
4017 return true, which will trigger the caller to recall us
4018 with the new stop_bpstat. */
4019 again = 1;
4020 break;
32c1e744 4021 }
c906108c 4022 }
c2b8ed2c 4023 do_cleanups (old_chain);
347bddb7
PA
4024 return again;
4025}
4026
4027void
4028bpstat_do_actions (void)
4029{
353d1d73
JK
4030 struct cleanup *cleanup_if_error = make_bpstat_clear_actions_cleanup ();
4031
347bddb7
PA
4032 /* Do any commands attached to breakpoint we are stopped at. */
4033 while (!ptid_equal (inferior_ptid, null_ptid)
4034 && target_has_execution
4035 && !is_exited (inferior_ptid)
4036 && !is_executing (inferior_ptid))
4037 /* Since in sync mode, bpstat_do_actions may resume the inferior,
4038 and only return when it is stopped at the next breakpoint, we
4039 keep doing breakpoint actions until it returns false to
4040 indicate the inferior was not resumed. */
16c381f0 4041 if (!bpstat_do_actions_1 (&inferior_thread ()->control.stop_bpstat))
347bddb7 4042 break;
353d1d73
JK
4043
4044 discard_cleanups (cleanup_if_error);
c906108c
SS
4045}
4046
fa4727a6
DJ
4047/* Print out the (old or new) value associated with a watchpoint. */
4048
4049static void
4050watchpoint_value_print (struct value *val, struct ui_file *stream)
4051{
4052 if (val == NULL)
4053 fprintf_unfiltered (stream, _("<unreadable>"));
4054 else
79a45b7d
TT
4055 {
4056 struct value_print_options opts;
4057 get_user_print_options (&opts);
4058 value_print (val, stream, &opts);
4059 }
fa4727a6
DJ
4060}
4061
e514a9d6 4062/* Generic routine for printing messages indicating why we
4a64f543 4063 stopped. The behavior of this function depends on the value
e514a9d6
JM
4064 'print_it' in the bpstat structure. Under some circumstances we
4065 may decide not to print anything here and delegate the task to
4a64f543 4066 normal_stop(). */
e514a9d6
JM
4067
4068static enum print_stop_action
4069print_bp_stop_message (bpstat bs)
4070{
4071 switch (bs->print_it)
4072 {
4073 case print_it_noop:
4a64f543 4074 /* Nothing should be printed for this bpstat entry. */
e514a9d6
JM
4075 return PRINT_UNKNOWN;
4076 break;
4077
4078 case print_it_done:
4079 /* We still want to print the frame, but we already printed the
4a64f543 4080 relevant messages. */
e514a9d6
JM
4081 return PRINT_SRC_AND_LOC;
4082 break;
4083
4084 case print_it_normal:
4f8d1dc6 4085 {
f431efe5
PA
4086 struct breakpoint *b = bs->breakpoint_at;
4087
1a6a67de
TJB
4088 /* bs->breakpoint_at can be NULL if it was a momentary breakpoint
4089 which has since been deleted. */
4090 if (b == NULL)
4091 return PRINT_UNKNOWN;
4092
348d480f
PA
4093 /* Normal case. Call the breakpoint's print_it method. */
4094 return b->ops->print_it (bs);
4f8d1dc6 4095 }
348d480f 4096 break;
3086aeae 4097
e514a9d6 4098 default:
8e65ff28 4099 internal_error (__FILE__, __LINE__,
e2e0b3e5 4100 _("print_bp_stop_message: unrecognized enum value"));
e514a9d6 4101 break;
c906108c 4102 }
c906108c
SS
4103}
4104
edcc5120
TT
4105/* A helper function that prints a shared library stopped event. */
4106
4107static void
4108print_solib_event (int is_catchpoint)
4109{
4110 int any_deleted
4111 = !VEC_empty (char_ptr, current_program_space->deleted_solibs);
4112 int any_added
4113 = !VEC_empty (so_list_ptr, current_program_space->added_solibs);
4114
4115 if (!is_catchpoint)
4116 {
4117 if (any_added || any_deleted)
4118 ui_out_text (current_uiout,
4119 _("Stopped due to shared library event:\n"));
4120 else
4121 ui_out_text (current_uiout,
4122 _("Stopped due to shared library event (no "
4123 "libraries added or removed)\n"));
4124 }
4125
4126 if (ui_out_is_mi_like_p (current_uiout))
4127 ui_out_field_string (current_uiout, "reason",
4128 async_reason_lookup (EXEC_ASYNC_SOLIB_EVENT));
4129
4130 if (any_deleted)
4131 {
4132 struct cleanup *cleanup;
4133 char *name;
4134 int ix;
4135
4136 ui_out_text (current_uiout, _(" Inferior unloaded "));
4137 cleanup = make_cleanup_ui_out_list_begin_end (current_uiout,
4138 "removed");
4139 for (ix = 0;
4140 VEC_iterate (char_ptr, current_program_space->deleted_solibs,
4141 ix, name);
4142 ++ix)
4143 {
4144 if (ix > 0)
4145 ui_out_text (current_uiout, " ");
4146 ui_out_field_string (current_uiout, "library", name);
4147 ui_out_text (current_uiout, "\n");
4148 }
4149
4150 do_cleanups (cleanup);
4151 }
4152
4153 if (any_added)
4154 {
4155 struct so_list *iter;
4156 int ix;
4157 struct cleanup *cleanup;
4158
4159 ui_out_text (current_uiout, _(" Inferior loaded "));
4160 cleanup = make_cleanup_ui_out_list_begin_end (current_uiout,
4161 "added");
4162 for (ix = 0;
4163 VEC_iterate (so_list_ptr, current_program_space->added_solibs,
4164 ix, iter);
4165 ++ix)
4166 {
4167 if (ix > 0)
4168 ui_out_text (current_uiout, " ");
4169 ui_out_field_string (current_uiout, "library", iter->so_name);
4170 ui_out_text (current_uiout, "\n");
4171 }
4172
4173 do_cleanups (cleanup);
4174 }
4175}
4176
e514a9d6
JM
4177/* Print a message indicating what happened. This is called from
4178 normal_stop(). The input to this routine is the head of the bpstat
36dfb11c
TT
4179 list - a list of the eventpoints that caused this stop. KIND is
4180 the target_waitkind for the stopping event. This
e514a9d6
JM
4181 routine calls the generic print routine for printing a message
4182 about reasons for stopping. This will print (for example) the
4183 "Breakpoint n," part of the output. The return value of this
4184 routine is one of:
c906108c 4185
4a64f543 4186 PRINT_UNKNOWN: Means we printed nothing.
917317f4 4187 PRINT_SRC_AND_LOC: Means we printed something, and expect subsequent
4a64f543 4188 code to print the location. An example is
c5aa993b
JM
4189 "Breakpoint 1, " which should be followed by
4190 the location.
917317f4 4191 PRINT_SRC_ONLY: Means we printed something, but there is no need
c5aa993b
JM
4192 to also print the location part of the message.
4193 An example is the catch/throw messages, which
4a64f543 4194 don't require a location appended to the end.
917317f4 4195 PRINT_NOTHING: We have done some printing and we don't need any
4a64f543 4196 further info to be printed. */
c906108c 4197
917317f4 4198enum print_stop_action
36dfb11c 4199bpstat_print (bpstat bs, int kind)
c906108c
SS
4200{
4201 int val;
c5aa993b 4202
c906108c 4203 /* Maybe another breakpoint in the chain caused us to stop.
53a5351d
JM
4204 (Currently all watchpoints go on the bpstat whether hit or not.
4205 That probably could (should) be changed, provided care is taken
c906108c 4206 with respect to bpstat_explains_signal). */
e514a9d6
JM
4207 for (; bs; bs = bs->next)
4208 {
4209 val = print_bp_stop_message (bs);
4210 if (val == PRINT_SRC_ONLY
4211 || val == PRINT_SRC_AND_LOC
4212 || val == PRINT_NOTHING)
4213 return val;
4214 }
c906108c 4215
36dfb11c
TT
4216 /* If we had hit a shared library event breakpoint,
4217 print_bp_stop_message would print out this message. If we hit an
4218 OS-level shared library event, do the same thing. */
4219 if (kind == TARGET_WAITKIND_LOADED)
4220 {
edcc5120 4221 print_solib_event (0);
36dfb11c
TT
4222 return PRINT_NOTHING;
4223 }
4224
e514a9d6 4225 /* We reached the end of the chain, or we got a null BS to start
4a64f543 4226 with and nothing was printed. */
917317f4 4227 return PRINT_UNKNOWN;
c906108c
SS
4228}
4229
4a64f543
MS
4230/* Evaluate the expression EXP and return 1 if value is zero. This is
4231 used inside a catch_errors to evaluate the breakpoint condition.
4232 The argument is a "struct expression *" that has been cast to a
4233 "char *" to make it pass through catch_errors. */
c906108c
SS
4234
4235static int
4efb68b1 4236breakpoint_cond_eval (void *exp)
c906108c 4237{
278cd55f 4238 struct value *mark = value_mark ();
c5aa993b 4239 int i = !value_true (evaluate_expression ((struct expression *) exp));
cc59ec59 4240
c906108c
SS
4241 value_free_to_mark (mark);
4242 return i;
4243}
4244
5760d0ab 4245/* Allocate a new bpstat. Link it to the FIFO list by BS_LINK_POINTER. */
c906108c
SS
4246
4247static bpstat
5760d0ab 4248bpstat_alloc (struct bp_location *bl, bpstat **bs_link_pointer)
c906108c
SS
4249{
4250 bpstat bs;
4251
4252 bs = (bpstat) xmalloc (sizeof (*bs));
5760d0ab
JK
4253 bs->next = NULL;
4254 **bs_link_pointer = bs;
4255 *bs_link_pointer = &bs->next;
f431efe5
PA
4256 bs->breakpoint_at = bl->owner;
4257 bs->bp_location_at = bl;
4258 incref_bp_location (bl);
c906108c
SS
4259 /* If the condition is false, etc., don't do the commands. */
4260 bs->commands = NULL;
4261 bs->old_val = NULL;
4262 bs->print_it = print_it_normal;
4263 return bs;
4264}
4265\f
d983da9c
DJ
4266/* The target has stopped with waitstatus WS. Check if any hardware
4267 watchpoints have triggered, according to the target. */
4268
4269int
4270watchpoints_triggered (struct target_waitstatus *ws)
4271{
d92524f1 4272 int stopped_by_watchpoint = target_stopped_by_watchpoint ();
d983da9c
DJ
4273 CORE_ADDR addr;
4274 struct breakpoint *b;
4275
4276 if (!stopped_by_watchpoint)
4277 {
4278 /* We were not stopped by a watchpoint. Mark all watchpoints
4279 as not triggered. */
4280 ALL_BREAKPOINTS (b)
cc60f2e3 4281 if (is_hardware_watchpoint (b))
3a5c3e22
PA
4282 {
4283 struct watchpoint *w = (struct watchpoint *) b;
4284
4285 w->watchpoint_triggered = watch_triggered_no;
4286 }
d983da9c
DJ
4287
4288 return 0;
4289 }
4290
4291 if (!target_stopped_data_address (&current_target, &addr))
4292 {
4293 /* We were stopped by a watchpoint, but we don't know where.
4294 Mark all watchpoints as unknown. */
4295 ALL_BREAKPOINTS (b)
cc60f2e3 4296 if (is_hardware_watchpoint (b))
3a5c3e22
PA
4297 {
4298 struct watchpoint *w = (struct watchpoint *) b;
4299
4300 w->watchpoint_triggered = watch_triggered_unknown;
4301 }
d983da9c
DJ
4302
4303 return stopped_by_watchpoint;
4304 }
4305
4306 /* The target could report the data address. Mark watchpoints
4307 affected by this data address as triggered, and all others as not
4308 triggered. */
4309
4310 ALL_BREAKPOINTS (b)
cc60f2e3 4311 if (is_hardware_watchpoint (b))
d983da9c 4312 {
3a5c3e22 4313 struct watchpoint *w = (struct watchpoint *) b;
a5606eee 4314 struct bp_location *loc;
d983da9c 4315
3a5c3e22 4316 w->watchpoint_triggered = watch_triggered_no;
a5606eee 4317 for (loc = b->loc; loc; loc = loc->next)
9c06b0b4 4318 {
3a5c3e22 4319 if (is_masked_watchpoint (b))
9c06b0b4 4320 {
3a5c3e22
PA
4321 CORE_ADDR newaddr = addr & w->hw_wp_mask;
4322 CORE_ADDR start = loc->address & w->hw_wp_mask;
9c06b0b4
TJB
4323
4324 if (newaddr == start)
4325 {
3a5c3e22 4326 w->watchpoint_triggered = watch_triggered_yes;
9c06b0b4
TJB
4327 break;
4328 }
4329 }
4330 /* Exact match not required. Within range is sufficient. */
4331 else if (target_watchpoint_addr_within_range (&current_target,
4332 addr, loc->address,
4333 loc->length))
4334 {
3a5c3e22 4335 w->watchpoint_triggered = watch_triggered_yes;
9c06b0b4
TJB
4336 break;
4337 }
4338 }
d983da9c
DJ
4339 }
4340
4341 return 1;
4342}
4343
c906108c
SS
4344/* Possible return values for watchpoint_check (this can't be an enum
4345 because of check_errors). */
4346/* The watchpoint has been deleted. */
4347#define WP_DELETED 1
4348/* The value has changed. */
4349#define WP_VALUE_CHANGED 2
4350/* The value has not changed. */
4351#define WP_VALUE_NOT_CHANGED 3
60e1c644
PA
4352/* Ignore this watchpoint, no matter if the value changed or not. */
4353#define WP_IGNORE 4
c906108c
SS
4354
4355#define BP_TEMPFLAG 1
4356#define BP_HARDWAREFLAG 2
4357
4a64f543
MS
4358/* Evaluate watchpoint condition expression and check if its value
4359 changed.
553e4c11
JB
4360
4361 P should be a pointer to struct bpstat, but is defined as a void *
4362 in order for this function to be usable with catch_errors. */
c906108c
SS
4363
4364static int
4efb68b1 4365watchpoint_check (void *p)
c906108c
SS
4366{
4367 bpstat bs = (bpstat) p;
3a5c3e22 4368 struct watchpoint *b;
c906108c
SS
4369 struct frame_info *fr;
4370 int within_current_scope;
4371
f431efe5 4372 /* BS is built from an existing struct breakpoint. */
2bdf28a0 4373 gdb_assert (bs->breakpoint_at != NULL);
3a5c3e22 4374 b = (struct watchpoint *) bs->breakpoint_at;
d0fb5eae 4375
f6bc2008
PA
4376 /* If this is a local watchpoint, we only want to check if the
4377 watchpoint frame is in scope if the current thread is the thread
4378 that was used to create the watchpoint. */
4379 if (!watchpoint_in_thread_scope (b))
60e1c644 4380 return WP_IGNORE;
f6bc2008 4381
c906108c
SS
4382 if (b->exp_valid_block == NULL)
4383 within_current_scope = 1;
4384 else
4385 {
edb3359d
DJ
4386 struct frame_info *frame = get_current_frame ();
4387 struct gdbarch *frame_arch = get_frame_arch (frame);
4388 CORE_ADDR frame_pc = get_frame_pc (frame);
4389
4a64f543
MS
4390 /* in_function_epilogue_p() returns a non-zero value if we're
4391 still in the function but the stack frame has already been
4392 invalidated. Since we can't rely on the values of local
4393 variables after the stack has been destroyed, we are treating
4394 the watchpoint in that state as `not changed' without further
4395 checking. Don't mark watchpoints as changed if the current
4396 frame is in an epilogue - even if they are in some other
4397 frame, our view of the stack is likely to be wrong and
4398 frame_find_by_id could error out. */
a0f49112 4399 if (gdbarch_in_function_epilogue_p (frame_arch, frame_pc))
60e1c644 4400 return WP_IGNORE;
a0f49112 4401
101dcfbe 4402 fr = frame_find_by_id (b->watchpoint_frame);
c906108c 4403 within_current_scope = (fr != NULL);
69fbadd5
DJ
4404
4405 /* If we've gotten confused in the unwinder, we might have
4406 returned a frame that can't describe this variable. */
edb3359d
DJ
4407 if (within_current_scope)
4408 {
4409 struct symbol *function;
4410
4411 function = get_frame_function (fr);
4412 if (function == NULL
4413 || !contained_in (b->exp_valid_block,
4414 SYMBOL_BLOCK_VALUE (function)))
4415 within_current_scope = 0;
4416 }
69fbadd5 4417
edb3359d 4418 if (within_current_scope)
c906108c
SS
4419 /* If we end up stopping, the current frame will get selected
4420 in normal_stop. So this call to select_frame won't affect
4421 the user. */
0f7d239c 4422 select_frame (fr);
c906108c 4423 }
c5aa993b 4424
c906108c
SS
4425 if (within_current_scope)
4426 {
4a64f543
MS
4427 /* We use value_{,free_to_}mark because it could be a *long*
4428 time before we return to the command level and call
4429 free_all_values. We can't call free_all_values because we
4430 might be in the middle of evaluating a function call. */
c906108c 4431
0cf6dd15 4432 int pc = 0;
9c06b0b4 4433 struct value *mark;
fa4727a6
DJ
4434 struct value *new_val;
4435
3a5c3e22 4436 if (is_masked_watchpoint (&b->base))
9c06b0b4
TJB
4437 /* Since we don't know the exact trigger address (from
4438 stopped_data_address), just tell the user we've triggered
4439 a mask watchpoint. */
4440 return WP_VALUE_CHANGED;
4441
4442 mark = value_mark ();
0cf6dd15 4443 fetch_subexp_value (b->exp, &pc, &new_val, NULL, NULL);
218d2fc6 4444
4a64f543
MS
4445 /* We use value_equal_contents instead of value_equal because
4446 the latter coerces an array to a pointer, thus comparing just
4447 the address of the array instead of its contents. This is
4448 not what we want. */
fa4727a6 4449 if ((b->val != NULL) != (new_val != NULL)
218d2fc6 4450 || (b->val != NULL && !value_equal_contents (b->val, new_val)))
c906108c 4451 {
fa4727a6
DJ
4452 if (new_val != NULL)
4453 {
4454 release_value (new_val);
4455 value_free_to_mark (mark);
4456 }
c906108c
SS
4457 bs->old_val = b->val;
4458 b->val = new_val;
fa4727a6 4459 b->val_valid = 1;
c906108c
SS
4460 return WP_VALUE_CHANGED;
4461 }
4462 else
4463 {
60e1c644 4464 /* Nothing changed. */
c906108c 4465 value_free_to_mark (mark);
c906108c
SS
4466 return WP_VALUE_NOT_CHANGED;
4467 }
4468 }
4469 else
4470 {
79a45e25
PA
4471 struct ui_out *uiout = current_uiout;
4472
c906108c 4473 /* This seems like the only logical thing to do because
c5aa993b
JM
4474 if we temporarily ignored the watchpoint, then when
4475 we reenter the block in which it is valid it contains
4476 garbage (in the case of a function, it may have two
4477 garbage values, one before and one after the prologue).
4478 So we can't even detect the first assignment to it and
4479 watch after that (since the garbage may or may not equal
4480 the first value assigned). */
348d480f
PA
4481 /* We print all the stop information in
4482 breakpoint_ops->print_it, but in this case, by the time we
4483 call breakpoint_ops->print_it this bp will be deleted
4484 already. So we have no choice but print the information
4485 here. */
9dc5e2a9 4486 if (ui_out_is_mi_like_p (uiout))
034dad6f
BR
4487 ui_out_field_string
4488 (uiout, "reason", async_reason_lookup (EXEC_ASYNC_WATCHPOINT_SCOPE));
8b93c638 4489 ui_out_text (uiout, "\nWatchpoint ");
3a5c3e22 4490 ui_out_field_int (uiout, "wpnum", b->base.number);
3e43a32a
MS
4491 ui_out_text (uiout,
4492 " deleted because the program has left the block in\n\
8b93c638 4493which its expression is valid.\n");
4ce44c66 4494
cdac0397 4495 /* Make sure the watchpoint's commands aren't executed. */
3a5c3e22 4496 decref_counted_command_line (&b->base.commands);
d0fb5eae 4497 watchpoint_del_at_next_stop (b);
c906108c
SS
4498
4499 return WP_DELETED;
4500 }
4501}
4502
18a18393 4503/* Return true if it looks like target has stopped due to hitting
348d480f
PA
4504 breakpoint location BL. This function does not check if we should
4505 stop, only if BL explains the stop. */
4506
18a18393 4507static int
6c95b8df 4508bpstat_check_location (const struct bp_location *bl,
09ac7c10
TT
4509 struct address_space *aspace, CORE_ADDR bp_addr,
4510 const struct target_waitstatus *ws)
18a18393
VP
4511{
4512 struct breakpoint *b = bl->owner;
4513
348d480f 4514 /* BL is from an existing breakpoint. */
2bdf28a0
JK
4515 gdb_assert (b != NULL);
4516
09ac7c10 4517 return b->ops->breakpoint_hit (bl, aspace, bp_addr, ws);
18a18393
VP
4518}
4519
3a5c3e22
PA
4520/* Determine if the watched values have actually changed, and we
4521 should stop. If not, set BS->stop to 0. */
4522
18a18393
VP
4523static void
4524bpstat_check_watchpoint (bpstat bs)
4525{
2bdf28a0 4526 const struct bp_location *bl;
3a5c3e22 4527 struct watchpoint *b;
2bdf28a0
JK
4528
4529 /* BS is built for existing struct breakpoint. */
f431efe5 4530 bl = bs->bp_location_at;
2bdf28a0 4531 gdb_assert (bl != NULL);
3a5c3e22 4532 b = (struct watchpoint *) bs->breakpoint_at;
2bdf28a0 4533 gdb_assert (b != NULL);
18a18393 4534
18a18393 4535 {
18a18393
VP
4536 int must_check_value = 0;
4537
3a5c3e22 4538 if (b->base.type == bp_watchpoint)
18a18393
VP
4539 /* For a software watchpoint, we must always check the
4540 watched value. */
4541 must_check_value = 1;
4542 else if (b->watchpoint_triggered == watch_triggered_yes)
4543 /* We have a hardware watchpoint (read, write, or access)
4544 and the target earlier reported an address watched by
4545 this watchpoint. */
4546 must_check_value = 1;
4547 else if (b->watchpoint_triggered == watch_triggered_unknown
3a5c3e22 4548 && b->base.type == bp_hardware_watchpoint)
18a18393
VP
4549 /* We were stopped by a hardware watchpoint, but the target could
4550 not report the data address. We must check the watchpoint's
4551 value. Access and read watchpoints are out of luck; without
4552 a data address, we can't figure it out. */
4553 must_check_value = 1;
3a5c3e22 4554
18a18393
VP
4555 if (must_check_value)
4556 {
3e43a32a
MS
4557 char *message
4558 = xstrprintf ("Error evaluating expression for watchpoint %d\n",
3a5c3e22 4559 b->base.number);
18a18393
VP
4560 struct cleanup *cleanups = make_cleanup (xfree, message);
4561 int e = catch_errors (watchpoint_check, bs, message,
4562 RETURN_MASK_ALL);
4563 do_cleanups (cleanups);
4564 switch (e)
4565 {
4566 case WP_DELETED:
4567 /* We've already printed what needs to be printed. */
4568 bs->print_it = print_it_done;
4569 /* Stop. */
4570 break;
60e1c644
PA
4571 case WP_IGNORE:
4572 bs->print_it = print_it_noop;
4573 bs->stop = 0;
4574 break;
18a18393 4575 case WP_VALUE_CHANGED:
3a5c3e22 4576 if (b->base.type == bp_read_watchpoint)
18a18393 4577 {
85d721b8
PA
4578 /* There are two cases to consider here:
4579
4a64f543 4580 1. We're watching the triggered memory for reads.
85d721b8
PA
4581 In that case, trust the target, and always report
4582 the watchpoint hit to the user. Even though
4583 reads don't cause value changes, the value may
4584 have changed since the last time it was read, and
4585 since we're not trapping writes, we will not see
4586 those, and as such we should ignore our notion of
4587 old value.
4588
4a64f543 4589 2. We're watching the triggered memory for both
85d721b8
PA
4590 reads and writes. There are two ways this may
4591 happen:
4592
4a64f543 4593 2.1. This is a target that can't break on data
85d721b8
PA
4594 reads only, but can break on accesses (reads or
4595 writes), such as e.g., x86. We detect this case
4596 at the time we try to insert read watchpoints.
4597
4a64f543 4598 2.2. Otherwise, the target supports read
85d721b8
PA
4599 watchpoints, but, the user set an access or write
4600 watchpoint watching the same memory as this read
4601 watchpoint.
4602
4603 If we're watching memory writes as well as reads,
4604 ignore watchpoint hits when we find that the
4605 value hasn't changed, as reads don't cause
4606 changes. This still gives false positives when
4607 the program writes the same value to memory as
4608 what there was already in memory (we will confuse
4609 it for a read), but it's much better than
4610 nothing. */
4611
4612 int other_write_watchpoint = 0;
4613
4614 if (bl->watchpoint_type == hw_read)
4615 {
4616 struct breakpoint *other_b;
4617
4618 ALL_BREAKPOINTS (other_b)
3a5c3e22
PA
4619 if (other_b->type == bp_hardware_watchpoint
4620 || other_b->type == bp_access_watchpoint)
85d721b8 4621 {
3a5c3e22
PA
4622 struct watchpoint *other_w =
4623 (struct watchpoint *) other_b;
4624
4625 if (other_w->watchpoint_triggered
4626 == watch_triggered_yes)
4627 {
4628 other_write_watchpoint = 1;
4629 break;
4630 }
85d721b8
PA
4631 }
4632 }
4633
4634 if (other_write_watchpoint
4635 || bl->watchpoint_type == hw_access)
4636 {
4637 /* We're watching the same memory for writes,
4638 and the value changed since the last time we
4639 updated it, so this trap must be for a write.
4640 Ignore it. */
4641 bs->print_it = print_it_noop;
4642 bs->stop = 0;
4643 }
18a18393
VP
4644 }
4645 break;
4646 case WP_VALUE_NOT_CHANGED:
3a5c3e22
PA
4647 if (b->base.type == bp_hardware_watchpoint
4648 || b->base.type == bp_watchpoint)
18a18393
VP
4649 {
4650 /* Don't stop: write watchpoints shouldn't fire if
4651 the value hasn't changed. */
4652 bs->print_it = print_it_noop;
4653 bs->stop = 0;
4654 }
4655 /* Stop. */
4656 break;
4657 default:
4658 /* Can't happen. */
4659 case 0:
4660 /* Error from catch_errors. */
3a5c3e22 4661 printf_filtered (_("Watchpoint %d deleted.\n"), b->base.number);
d0fb5eae 4662 watchpoint_del_at_next_stop (b);
18a18393
VP
4663 /* We've already printed what needs to be printed. */
4664 bs->print_it = print_it_done;
4665 break;
4666 }
4667 }
4668 else /* must_check_value == 0 */
4669 {
4670 /* This is a case where some watchpoint(s) triggered, but
4671 not at the address of this watchpoint, or else no
4672 watchpoint triggered after all. So don't print
4673 anything for this watchpoint. */
4674 bs->print_it = print_it_noop;
4675 bs->stop = 0;
4676 }
4677 }
4678}
4679
4680
4681/* Check conditions (condition proper, frame, thread and ignore count)
4682 of breakpoint referred to by BS. If we should not stop for this
4683 breakpoint, set BS->stop to 0. */
f431efe5 4684
18a18393
VP
4685static void
4686bpstat_check_breakpoint_conditions (bpstat bs, ptid_t ptid)
4687{
4688 int thread_id = pid_to_thread_id (ptid);
2bdf28a0
JK
4689 const struct bp_location *bl;
4690 struct breakpoint *b;
4691
4692 /* BS is built for existing struct breakpoint. */
f431efe5 4693 bl = bs->bp_location_at;
2bdf28a0 4694 gdb_assert (bl != NULL);
f431efe5 4695 b = bs->breakpoint_at;
2bdf28a0 4696 gdb_assert (b != NULL);
18a18393 4697
b775012e
LM
4698 /* Even if the target evaluated the condition on its end and notified GDB, we
4699 need to do so again since GDB does not know if we stopped due to a
4700 breakpoint or a single step breakpoint. */
4701
18a18393 4702 if (frame_id_p (b->frame_id)
edb3359d 4703 && !frame_id_eq (b->frame_id, get_stack_frame_id (get_current_frame ())))
18a18393
VP
4704 bs->stop = 0;
4705 else if (bs->stop)
4706 {
4707 int value_is_zero = 0;
60e1c644
PA
4708 struct expression *cond;
4709
7371cf6d
PM
4710 /* Evaluate Python breakpoints that have a "stop"
4711 method implemented. */
4712 if (b->py_bp_object)
4713 bs->stop = gdbpy_should_stop (b->py_bp_object);
4714
60e1c644 4715 if (is_watchpoint (b))
3a5c3e22
PA
4716 {
4717 struct watchpoint *w = (struct watchpoint *) b;
4718
4719 cond = w->cond_exp;
4720 }
60e1c644
PA
4721 else
4722 cond = bl->cond;
4723
f431efe5 4724 if (cond && b->disposition != disp_del_at_next_stop)
18a18393 4725 {
60e1c644 4726 int within_current_scope = 1;
3a5c3e22 4727 struct watchpoint * w;
60e1c644 4728
c5bc3a77
DJ
4729 /* We use value_mark and value_free_to_mark because it could
4730 be a long time before we return to the command level and
4731 call free_all_values. We can't call free_all_values
4732 because we might be in the middle of evaluating a
4733 function call. */
4734 struct value *mark = value_mark ();
4735
3a5c3e22
PA
4736 if (is_watchpoint (b))
4737 w = (struct watchpoint *) b;
4738 else
4739 w = NULL;
4740
edb3359d
DJ
4741 /* Need to select the frame, with all that implies so that
4742 the conditions will have the right context. Because we
4743 use the frame, we will not see an inlined function's
4744 variables when we arrive at a breakpoint at the start
4745 of the inlined function; the current frame will be the
4746 call site. */
3a5c3e22 4747 if (w == NULL || w->cond_exp_valid_block == NULL)
60e1c644
PA
4748 select_frame (get_current_frame ());
4749 else
4750 {
4751 struct frame_info *frame;
4752
4753 /* For local watchpoint expressions, which particular
4754 instance of a local is being watched matters, so we
4755 keep track of the frame to evaluate the expression
4756 in. To evaluate the condition however, it doesn't
4757 really matter which instantiation of the function
4758 where the condition makes sense triggers the
4759 watchpoint. This allows an expression like "watch
4760 global if q > 10" set in `func', catch writes to
4761 global on all threads that call `func', or catch
4762 writes on all recursive calls of `func' by a single
4763 thread. We simply always evaluate the condition in
4764 the innermost frame that's executing where it makes
4765 sense to evaluate the condition. It seems
4766 intuitive. */
3a5c3e22 4767 frame = block_innermost_frame (w->cond_exp_valid_block);
60e1c644
PA
4768 if (frame != NULL)
4769 select_frame (frame);
4770 else
4771 within_current_scope = 0;
4772 }
4773 if (within_current_scope)
4774 value_is_zero
4775 = catch_errors (breakpoint_cond_eval, cond,
4776 "Error in testing breakpoint condition:\n",
4777 RETURN_MASK_ALL);
4778 else
4779 {
4780 warning (_("Watchpoint condition cannot be tested "
4781 "in the current scope"));
4782 /* If we failed to set the right context for this
4783 watchpoint, unconditionally report it. */
4784 value_is_zero = 0;
4785 }
4a64f543 4786 /* FIXME-someday, should give breakpoint #. */
c5bc3a77 4787 value_free_to_mark (mark);
18a18393 4788 }
60e1c644
PA
4789
4790 if (cond && value_is_zero)
18a18393
VP
4791 {
4792 bs->stop = 0;
4793 }
4794 else if (b->thread != -1 && b->thread != thread_id)
4795 {
4796 bs->stop = 0;
4797 }
4798 else if (b->ignore_count > 0)
4799 {
4800 b->ignore_count--;
4801 annotate_ignore_count_change ();
4802 bs->stop = 0;
4a64f543 4803 /* Increase the hit count even though we don't stop. */
18a18393 4804 ++(b->hit_count);
8d3788bd 4805 observer_notify_breakpoint_modified (b);
18a18393
VP
4806 }
4807 }
4808}
4809
4810
9709f61c 4811/* Get a bpstat associated with having just stopped at address
d983da9c 4812 BP_ADDR in thread PTID.
c906108c 4813
d983da9c 4814 Determine whether we stopped at a breakpoint, etc, or whether we
4a64f543
MS
4815 don't understand this stop. Result is a chain of bpstat's such
4816 that:
c906108c 4817
c5aa993b 4818 if we don't understand the stop, the result is a null pointer.
c906108c 4819
c5aa993b 4820 if we understand why we stopped, the result is not null.
c906108c 4821
c5aa993b
JM
4822 Each element of the chain refers to a particular breakpoint or
4823 watchpoint at which we have stopped. (We may have stopped for
4824 several reasons concurrently.)
c906108c 4825
c5aa993b
JM
4826 Each element of the chain has valid next, breakpoint_at,
4827 commands, FIXME??? fields. */
c906108c
SS
4828
4829bpstat
6c95b8df 4830bpstat_stop_status (struct address_space *aspace,
09ac7c10
TT
4831 CORE_ADDR bp_addr, ptid_t ptid,
4832 const struct target_waitstatus *ws)
c906108c 4833{
0d381245 4834 struct breakpoint *b = NULL;
afe38095 4835 struct bp_location *bl;
20874c92 4836 struct bp_location *loc;
5760d0ab
JK
4837 /* First item of allocated bpstat's. */
4838 bpstat bs_head = NULL, *bs_link = &bs_head;
c906108c 4839 /* Pointer to the last thing in the chain currently. */
5760d0ab 4840 bpstat bs;
20874c92 4841 int ix;
429374b8 4842 int need_remove_insert;
f431efe5 4843 int removed_any;
c906108c 4844
f431efe5
PA
4845 /* First, build the bpstat chain with locations that explain a
4846 target stop, while being careful to not set the target running,
4847 as that may invalidate locations (in particular watchpoint
4848 locations are recreated). Resuming will happen here with
4849 breakpoint conditions or watchpoint expressions that include
4850 inferior function calls. */
c5aa993b 4851
429374b8
JK
4852 ALL_BREAKPOINTS (b)
4853 {
4854 if (!breakpoint_enabled (b) && b->enable_state != bp_permanent)
4855 continue;
a5606eee 4856
429374b8
JK
4857 for (bl = b->loc; bl != NULL; bl = bl->next)
4858 {
4a64f543
MS
4859 /* For hardware watchpoints, we look only at the first
4860 location. The watchpoint_check function will work on the
4861 entire expression, not the individual locations. For
4862 read watchpoints, the watchpoints_triggered function has
4863 checked all locations already. */
429374b8
JK
4864 if (b->type == bp_hardware_watchpoint && bl != b->loc)
4865 break;
18a18393 4866
429374b8
JK
4867 if (bl->shlib_disabled)
4868 continue;
c5aa993b 4869
09ac7c10 4870 if (!bpstat_check_location (bl, aspace, bp_addr, ws))
429374b8 4871 continue;
c5aa993b 4872
4a64f543
MS
4873 /* Come here if it's a watchpoint, or if the break address
4874 matches. */
c5aa993b 4875
4a64f543
MS
4876 bs = bpstat_alloc (bl, &bs_link); /* Alloc a bpstat to
4877 explain stop. */
c5aa993b 4878
f431efe5
PA
4879 /* Assume we stop. Should we find a watchpoint that is not
4880 actually triggered, or if the condition of the breakpoint
4881 evaluates as false, we'll reset 'stop' to 0. */
429374b8
JK
4882 bs->stop = 1;
4883 bs->print = 1;
d983da9c 4884
f431efe5
PA
4885 /* If this is a scope breakpoint, mark the associated
4886 watchpoint as triggered so that we will handle the
4887 out-of-scope event. We'll get to the watchpoint next
4888 iteration. */
d0fb5eae 4889 if (b->type == bp_watchpoint_scope && b->related_breakpoint != b)
3a5c3e22
PA
4890 {
4891 struct watchpoint *w = (struct watchpoint *) b->related_breakpoint;
4892
4893 w->watchpoint_triggered = watch_triggered_yes;
4894 }
f431efe5
PA
4895 }
4896 }
4897
4898 for (ix = 0; VEC_iterate (bp_location_p, moribund_locations, ix, loc); ++ix)
4899 {
f1310107 4900 if (breakpoint_location_address_match (loc, aspace, bp_addr))
f431efe5 4901 {
5760d0ab 4902 bs = bpstat_alloc (loc, &bs_link);
f431efe5
PA
4903 /* For hits of moribund locations, we should just proceed. */
4904 bs->stop = 0;
4905 bs->print = 0;
4906 bs->print_it = print_it_noop;
4907 }
4908 }
4909
edcc5120
TT
4910 /* A bit of special processing for shlib breakpoints. We need to
4911 process solib loading here, so that the lists of loaded and
4912 unloaded libraries are correct before we handle "catch load" and
4913 "catch unload". */
4914 for (bs = bs_head; bs != NULL; bs = bs->next)
4915 {
5d268276 4916 if (bs->breakpoint_at && bs->breakpoint_at->type == bp_shlib_event)
edcc5120
TT
4917 {
4918 handle_solib_event ();
4919 break;
4920 }
4921 }
4922
f431efe5
PA
4923 /* Now go through the locations that caused the target to stop, and
4924 check whether we're interested in reporting this stop to higher
4925 layers, or whether we should resume the target transparently. */
4926
4927 removed_any = 0;
4928
5760d0ab 4929 for (bs = bs_head; bs != NULL; bs = bs->next)
f431efe5
PA
4930 {
4931 if (!bs->stop)
4932 continue;
4933
f431efe5 4934 b = bs->breakpoint_at;
348d480f
PA
4935 b->ops->check_status (bs);
4936 if (bs->stop)
28010a5d 4937 {
348d480f 4938 bpstat_check_breakpoint_conditions (bs, ptid);
f431efe5 4939
429374b8
JK
4940 if (bs->stop)
4941 {
4942 ++(b->hit_count);
8d3788bd 4943 observer_notify_breakpoint_modified (b);
c906108c 4944
4a64f543 4945 /* We will stop here. */
429374b8
JK
4946 if (b->disposition == disp_disable)
4947 {
816338b5
SS
4948 --(b->enable_count);
4949 if (b->enable_count <= 0
4950 && b->enable_state != bp_permanent)
429374b8 4951 b->enable_state = bp_disabled;
f431efe5 4952 removed_any = 1;
429374b8
JK
4953 }
4954 if (b->silent)
4955 bs->print = 0;
4956 bs->commands = b->commands;
9add0f1b 4957 incref_counted_command_line (bs->commands);
abf85f46
JK
4958 if (command_line_is_silent (bs->commands
4959 ? bs->commands->commands : NULL))
4960 bs->print = 0;
429374b8
JK
4961 }
4962
348d480f 4963 }
a9b3a50f
PA
4964
4965 /* Print nothing for this entry if we don't stop or don't
4966 print. */
4967 if (!bs->stop || !bs->print)
4968 bs->print_it = print_it_noop;
429374b8 4969 }
876fa593 4970
d983da9c
DJ
4971 /* If we aren't stopping, the value of some hardware watchpoint may
4972 not have changed, but the intermediate memory locations we are
4973 watching may have. Don't bother if we're stopping; this will get
4974 done later. */
d832cb68 4975 need_remove_insert = 0;
5760d0ab
JK
4976 if (! bpstat_causes_stop (bs_head))
4977 for (bs = bs_head; bs != NULL; bs = bs->next)
d983da9c 4978 if (!bs->stop
f431efe5
PA
4979 && bs->breakpoint_at
4980 && is_hardware_watchpoint (bs->breakpoint_at))
d983da9c 4981 {
3a5c3e22
PA
4982 struct watchpoint *w = (struct watchpoint *) bs->breakpoint_at;
4983
4984 update_watchpoint (w, 0 /* don't reparse. */);
d832cb68 4985 need_remove_insert = 1;
d983da9c
DJ
4986 }
4987
d832cb68 4988 if (need_remove_insert)
2d134ed3 4989 update_global_location_list (1);
f431efe5
PA
4990 else if (removed_any)
4991 update_global_location_list (0);
d832cb68 4992
5760d0ab 4993 return bs_head;
c906108c 4994}
628fe4e4
JK
4995
4996static void
4997handle_jit_event (void)
4998{
4999 struct frame_info *frame;
5000 struct gdbarch *gdbarch;
5001
5002 /* Switch terminal for any messages produced by
5003 breakpoint_re_set. */
5004 target_terminal_ours_for_output ();
5005
5006 frame = get_current_frame ();
5007 gdbarch = get_frame_arch (frame);
5008
5009 jit_event_handler (gdbarch);
5010
5011 target_terminal_inferior ();
5012}
5013
edcc5120
TT
5014/* Handle an solib event by calling solib_add. */
5015
5016void
5017handle_solib_event (void)
5018{
5019 clear_program_space_solib_cache (current_inferior ()->pspace);
5020
5021 /* Check for any newly added shared libraries if we're supposed to
5022 be adding them automatically. Switch terminal for any messages
5023 produced by breakpoint_re_set. */
5024 target_terminal_ours_for_output ();
5025#ifdef SOLIB_ADD
5026 SOLIB_ADD (NULL, 0, &current_target, auto_solib_add);
5027#else
5028 solib_add (NULL, 0, &current_target, auto_solib_add);
5029#endif
5030 target_terminal_inferior ();
5031}
5032
628fe4e4
JK
5033/* Prepare WHAT final decision for infrun. */
5034
5035/* Decide what infrun needs to do with this bpstat. */
5036
c906108c 5037struct bpstat_what
0e30163f 5038bpstat_what (bpstat bs_head)
c906108c 5039{
c906108c 5040 struct bpstat_what retval;
628fe4e4 5041 int jit_event = 0;
0e30163f 5042 bpstat bs;
c906108c 5043
628fe4e4 5044 retval.main_action = BPSTAT_WHAT_KEEP_CHECKING;
aa7d318d 5045 retval.call_dummy = STOP_NONE;
186c406b 5046 retval.is_longjmp = 0;
628fe4e4 5047
0e30163f 5048 for (bs = bs_head; bs != NULL; bs = bs->next)
c906108c 5049 {
628fe4e4
JK
5050 /* Extract this BS's action. After processing each BS, we check
5051 if its action overrides all we've seem so far. */
5052 enum bpstat_what_main_action this_action = BPSTAT_WHAT_KEEP_CHECKING;
5053 enum bptype bptype;
5054
c906108c 5055 if (bs->breakpoint_at == NULL)
628fe4e4
JK
5056 {
5057 /* I suspect this can happen if it was a momentary
5058 breakpoint which has since been deleted. */
5059 bptype = bp_none;
5060 }
20874c92 5061 else
f431efe5 5062 bptype = bs->breakpoint_at->type;
628fe4e4
JK
5063
5064 switch (bptype)
c906108c
SS
5065 {
5066 case bp_none:
628fe4e4 5067 break;
c906108c
SS
5068 case bp_breakpoint:
5069 case bp_hardware_breakpoint:
5070 case bp_until:
5071 case bp_finish:
a9b3a50f 5072 case bp_shlib_event:
c906108c
SS
5073 if (bs->stop)
5074 {
5075 if (bs->print)
628fe4e4 5076 this_action = BPSTAT_WHAT_STOP_NOISY;
c906108c 5077 else
628fe4e4 5078 this_action = BPSTAT_WHAT_STOP_SILENT;
c906108c
SS
5079 }
5080 else
628fe4e4 5081 this_action = BPSTAT_WHAT_SINGLE;
c906108c
SS
5082 break;
5083 case bp_watchpoint:
5084 case bp_hardware_watchpoint:
5085 case bp_read_watchpoint:
5086 case bp_access_watchpoint:
5087 if (bs->stop)
5088 {
5089 if (bs->print)
628fe4e4 5090 this_action = BPSTAT_WHAT_STOP_NOISY;
c906108c 5091 else
628fe4e4 5092 this_action = BPSTAT_WHAT_STOP_SILENT;
c906108c
SS
5093 }
5094 else
628fe4e4
JK
5095 {
5096 /* There was a watchpoint, but we're not stopping.
5097 This requires no further action. */
5098 }
c906108c
SS
5099 break;
5100 case bp_longjmp:
186c406b 5101 case bp_exception:
628fe4e4 5102 this_action = BPSTAT_WHAT_SET_LONGJMP_RESUME;
186c406b 5103 retval.is_longjmp = bptype == bp_longjmp;
c906108c
SS
5104 break;
5105 case bp_longjmp_resume:
186c406b 5106 case bp_exception_resume:
628fe4e4 5107 this_action = BPSTAT_WHAT_CLEAR_LONGJMP_RESUME;
186c406b 5108 retval.is_longjmp = bptype == bp_longjmp_resume;
c906108c
SS
5109 break;
5110 case bp_step_resume:
5111 if (bs->stop)
628fe4e4
JK
5112 this_action = BPSTAT_WHAT_STEP_RESUME;
5113 else
c906108c 5114 {
628fe4e4
JK
5115 /* It is for the wrong frame. */
5116 this_action = BPSTAT_WHAT_SINGLE;
c906108c 5117 }
c906108c 5118 break;
2c03e5be
PA
5119 case bp_hp_step_resume:
5120 if (bs->stop)
5121 this_action = BPSTAT_WHAT_HP_STEP_RESUME;
5122 else
5123 {
5124 /* It is for the wrong frame. */
5125 this_action = BPSTAT_WHAT_SINGLE;
5126 }
5127 break;
c906108c 5128 case bp_watchpoint_scope:
c4093a6a 5129 case bp_thread_event:
1900040c 5130 case bp_overlay_event:
0fd8e87f 5131 case bp_longjmp_master:
aa7d318d 5132 case bp_std_terminate_master:
186c406b 5133 case bp_exception_master:
628fe4e4 5134 this_action = BPSTAT_WHAT_SINGLE;
c4093a6a 5135 break;
ce78b96d 5136 case bp_catchpoint:
c5aa993b
JM
5137 if (bs->stop)
5138 {
5139 if (bs->print)
628fe4e4 5140 this_action = BPSTAT_WHAT_STOP_NOISY;
c5aa993b 5141 else
628fe4e4 5142 this_action = BPSTAT_WHAT_STOP_SILENT;
c5aa993b
JM
5143 }
5144 else
628fe4e4
JK
5145 {
5146 /* There was a catchpoint, but we're not stopping.
5147 This requires no further action. */
5148 }
5149 break;
628fe4e4
JK
5150 case bp_jit_event:
5151 jit_event = 1;
5152 this_action = BPSTAT_WHAT_SINGLE;
c5aa993b 5153 break;
c906108c 5154 case bp_call_dummy:
53a5351d
JM
5155 /* Make sure the action is stop (silent or noisy),
5156 so infrun.c pops the dummy frame. */
aa7d318d 5157 retval.call_dummy = STOP_STACK_DUMMY;
628fe4e4 5158 this_action = BPSTAT_WHAT_STOP_SILENT;
aa7d318d
TT
5159 break;
5160 case bp_std_terminate:
5161 /* Make sure the action is stop (silent or noisy),
5162 so infrun.c pops the dummy frame. */
aa7d318d 5163 retval.call_dummy = STOP_STD_TERMINATE;
628fe4e4 5164 this_action = BPSTAT_WHAT_STOP_SILENT;
c906108c 5165 break;
1042e4c0 5166 case bp_tracepoint:
7a697b8d 5167 case bp_fast_tracepoint:
0fb4aa4b 5168 case bp_static_tracepoint:
1042e4c0
SS
5169 /* Tracepoint hits should not be reported back to GDB, and
5170 if one got through somehow, it should have been filtered
5171 out already. */
5172 internal_error (__FILE__, __LINE__,
7a697b8d 5173 _("bpstat_what: tracepoint encountered"));
0e30163f
JK
5174 break;
5175 case bp_gnu_ifunc_resolver:
5176 /* Step over it (and insert bp_gnu_ifunc_resolver_return). */
5177 this_action = BPSTAT_WHAT_SINGLE;
5178 break;
5179 case bp_gnu_ifunc_resolver_return:
5180 /* The breakpoint will be removed, execution will restart from the
5181 PC of the former breakpoint. */
5182 this_action = BPSTAT_WHAT_KEEP_CHECKING;
5183 break;
e7e0cddf
SS
5184
5185 case bp_dprintf:
5186 this_action = BPSTAT_WHAT_STOP_SILENT;
5187 break;
5188
628fe4e4
JK
5189 default:
5190 internal_error (__FILE__, __LINE__,
5191 _("bpstat_what: unhandled bptype %d"), (int) bptype);
c906108c 5192 }
628fe4e4
JK
5193
5194 retval.main_action = max (retval.main_action, this_action);
c906108c 5195 }
628fe4e4 5196
0e30163f
JK
5197 /* These operations may affect the bs->breakpoint_at state so they are
5198 delayed after MAIN_ACTION is decided above. */
5199
628fe4e4
JK
5200 if (jit_event)
5201 {
5202 if (debug_infrun)
5203 fprintf_unfiltered (gdb_stdlog, "bpstat_what: bp_jit_event\n");
5204
5205 handle_jit_event ();
5206 }
5207
0e30163f
JK
5208 for (bs = bs_head; bs != NULL; bs = bs->next)
5209 {
5210 struct breakpoint *b = bs->breakpoint_at;
5211
5212 if (b == NULL)
5213 continue;
5214 switch (b->type)
5215 {
5216 case bp_gnu_ifunc_resolver:
5217 gnu_ifunc_resolver_stop (b);
5218 break;
5219 case bp_gnu_ifunc_resolver_return:
5220 gnu_ifunc_resolver_return_stop (b);
5221 break;
5222 }
5223 }
5224
c906108c
SS
5225 return retval;
5226}
5227
5228/* Nonzero if we should step constantly (e.g. watchpoints on machines
5229 without hardware support). This isn't related to a specific bpstat,
5230 just to things like whether watchpoints are set. */
5231
c5aa993b 5232int
fba45db2 5233bpstat_should_step (void)
c906108c
SS
5234{
5235 struct breakpoint *b;
cc59ec59 5236
c906108c 5237 ALL_BREAKPOINTS (b)
717a8278 5238 if (breakpoint_enabled (b) && b->type == bp_watchpoint && b->loc != NULL)
3172dc30 5239 return 1;
c906108c
SS
5240 return 0;
5241}
5242
67822962
PA
5243int
5244bpstat_causes_stop (bpstat bs)
5245{
5246 for (; bs != NULL; bs = bs->next)
5247 if (bs->stop)
5248 return 1;
5249
5250 return 0;
5251}
5252
c906108c 5253\f
c5aa993b 5254
170b53b2
UW
5255/* Compute a string of spaces suitable to indent the next line
5256 so it starts at the position corresponding to the table column
5257 named COL_NAME in the currently active table of UIOUT. */
5258
5259static char *
5260wrap_indent_at_field (struct ui_out *uiout, const char *col_name)
5261{
5262 static char wrap_indent[80];
5263 int i, total_width, width, align;
5264 char *text;
5265
5266 total_width = 0;
5267 for (i = 1; ui_out_query_field (uiout, i, &width, &align, &text); i++)
5268 {
5269 if (strcmp (text, col_name) == 0)
5270 {
5271 gdb_assert (total_width < sizeof wrap_indent);
5272 memset (wrap_indent, ' ', total_width);
5273 wrap_indent[total_width] = 0;
5274
5275 return wrap_indent;
5276 }
5277
5278 total_width += width + 1;
5279 }
5280
5281 return NULL;
5282}
5283
b775012e
LM
5284/* Determine if the locations of this breakpoint will have their conditions
5285 evaluated by the target, host or a mix of both. Returns the following:
5286
5287 "host": Host evals condition.
5288 "host or target": Host or Target evals condition.
5289 "target": Target evals condition.
5290*/
5291
5292static const char *
5293bp_condition_evaluator (struct breakpoint *b)
5294{
5295 struct bp_location *bl;
5296 char host_evals = 0;
5297 char target_evals = 0;
5298
5299 if (!b)
5300 return NULL;
5301
5302 if (!is_breakpoint (b))
5303 return NULL;
5304
5305 if (gdb_evaluates_breakpoint_condition_p ()
5306 || !target_supports_evaluation_of_breakpoint_conditions ())
5307 return condition_evaluation_host;
5308
5309 for (bl = b->loc; bl; bl = bl->next)
5310 {
5311 if (bl->cond_bytecode)
5312 target_evals++;
5313 else
5314 host_evals++;
5315 }
5316
5317 if (host_evals && target_evals)
5318 return condition_evaluation_both;
5319 else if (target_evals)
5320 return condition_evaluation_target;
5321 else
5322 return condition_evaluation_host;
5323}
5324
5325/* Determine the breakpoint location's condition evaluator. This is
5326 similar to bp_condition_evaluator, but for locations. */
5327
5328static const char *
5329bp_location_condition_evaluator (struct bp_location *bl)
5330{
5331 if (bl && !is_breakpoint (bl->owner))
5332 return NULL;
5333
5334 if (gdb_evaluates_breakpoint_condition_p ()
5335 || !target_supports_evaluation_of_breakpoint_conditions ())
5336 return condition_evaluation_host;
5337
5338 if (bl && bl->cond_bytecode)
5339 return condition_evaluation_target;
5340 else
5341 return condition_evaluation_host;
5342}
5343
859825b8
JK
5344/* Print the LOC location out of the list of B->LOC locations. */
5345
170b53b2
UW
5346static void
5347print_breakpoint_location (struct breakpoint *b,
5348 struct bp_location *loc)
0d381245 5349{
79a45e25 5350 struct ui_out *uiout = current_uiout;
6c95b8df
PA
5351 struct cleanup *old_chain = save_current_program_space ();
5352
859825b8
JK
5353 if (loc != NULL && loc->shlib_disabled)
5354 loc = NULL;
5355
6c95b8df
PA
5356 if (loc != NULL)
5357 set_current_program_space (loc->pspace);
5358
56435ebe
TT
5359 if (b->display_canonical)
5360 ui_out_field_string (uiout, "what", b->addr_string);
f8eba3c6 5361 else if (loc && loc->source_file)
0d381245
VP
5362 {
5363 struct symbol *sym
5364 = find_pc_sect_function (loc->address, loc->section);
5365 if (sym)
5366 {
5367 ui_out_text (uiout, "in ");
5368 ui_out_field_string (uiout, "func",
5369 SYMBOL_PRINT_NAME (sym));
170b53b2
UW
5370 ui_out_text (uiout, " ");
5371 ui_out_wrap_hint (uiout, wrap_indent_at_field (uiout, "what"));
5372 ui_out_text (uiout, "at ");
0d381245 5373 }
f8eba3c6 5374 ui_out_field_string (uiout, "file", loc->source_file);
0d381245
VP
5375 ui_out_text (uiout, ":");
5376
5377 if (ui_out_is_mi_like_p (uiout))
5378 {
5379 struct symtab_and_line sal = find_pc_line (loc->address, 0);
5380 char *fullname = symtab_to_fullname (sal.symtab);
5381
5382 if (fullname)
5383 ui_out_field_string (uiout, "fullname", fullname);
5384 }
5385
f8eba3c6 5386 ui_out_field_int (uiout, "line", loc->line_number);
0d381245 5387 }
859825b8 5388 else if (loc)
0d381245 5389 {
f99d8bf4
PA
5390 struct ui_file *stb = mem_fileopen ();
5391 struct cleanup *stb_chain = make_cleanup_ui_file_delete (stb);
170b53b2 5392
f99d8bf4 5393 print_address_symbolic (loc->gdbarch, loc->address, stb,
22e722e1 5394 demangle, "");
0d381245 5395 ui_out_field_stream (uiout, "at", stb);
170b53b2
UW
5396
5397 do_cleanups (stb_chain);
0d381245 5398 }
859825b8
JK
5399 else
5400 ui_out_field_string (uiout, "pending", b->addr_string);
6c95b8df 5401
b775012e
LM
5402 if (loc && is_breakpoint (b)
5403 && breakpoint_condition_evaluation_mode () == condition_evaluation_target
5404 && bp_condition_evaluator (b) == condition_evaluation_both)
5405 {
5406 ui_out_text (uiout, " (");
5407 ui_out_field_string (uiout, "evaluated-by",
5408 bp_location_condition_evaluator (loc));
5409 ui_out_text (uiout, ")");
5410 }
5411
6c95b8df 5412 do_cleanups (old_chain);
0d381245
VP
5413}
5414
269b11a2
PA
5415static const char *
5416bptype_string (enum bptype type)
c906108c 5417{
c4093a6a
JM
5418 struct ep_type_description
5419 {
5420 enum bptype type;
5421 char *description;
5422 };
5423 static struct ep_type_description bptypes[] =
c906108c 5424 {
c5aa993b
JM
5425 {bp_none, "?deleted?"},
5426 {bp_breakpoint, "breakpoint"},
c906108c 5427 {bp_hardware_breakpoint, "hw breakpoint"},
c5aa993b
JM
5428 {bp_until, "until"},
5429 {bp_finish, "finish"},
5430 {bp_watchpoint, "watchpoint"},
c906108c 5431 {bp_hardware_watchpoint, "hw watchpoint"},
c5aa993b
JM
5432 {bp_read_watchpoint, "read watchpoint"},
5433 {bp_access_watchpoint, "acc watchpoint"},
5434 {bp_longjmp, "longjmp"},
5435 {bp_longjmp_resume, "longjmp resume"},
186c406b
TT
5436 {bp_exception, "exception"},
5437 {bp_exception_resume, "exception resume"},
c5aa993b 5438 {bp_step_resume, "step resume"},
2c03e5be 5439 {bp_hp_step_resume, "high-priority step resume"},
c5aa993b
JM
5440 {bp_watchpoint_scope, "watchpoint scope"},
5441 {bp_call_dummy, "call dummy"},
aa7d318d 5442 {bp_std_terminate, "std::terminate"},
c5aa993b 5443 {bp_shlib_event, "shlib events"},
c4093a6a 5444 {bp_thread_event, "thread events"},
1900040c 5445 {bp_overlay_event, "overlay events"},
0fd8e87f 5446 {bp_longjmp_master, "longjmp master"},
aa7d318d 5447 {bp_std_terminate_master, "std::terminate master"},
186c406b 5448 {bp_exception_master, "exception master"},
ce78b96d 5449 {bp_catchpoint, "catchpoint"},
1042e4c0 5450 {bp_tracepoint, "tracepoint"},
7a697b8d 5451 {bp_fast_tracepoint, "fast tracepoint"},
0fb4aa4b 5452 {bp_static_tracepoint, "static tracepoint"},
e7e0cddf 5453 {bp_dprintf, "dprintf"},
4efc6507 5454 {bp_jit_event, "jit events"},
0e30163f
JK
5455 {bp_gnu_ifunc_resolver, "STT_GNU_IFUNC resolver"},
5456 {bp_gnu_ifunc_resolver_return, "STT_GNU_IFUNC resolver return"},
c5aa993b 5457 };
269b11a2
PA
5458
5459 if (((int) type >= (sizeof (bptypes) / sizeof (bptypes[0])))
5460 || ((int) type != bptypes[(int) type].type))
5461 internal_error (__FILE__, __LINE__,
5462 _("bptypes table does not describe type #%d."),
5463 (int) type);
5464
5465 return bptypes[(int) type].description;
5466}
5467
5468/* Print B to gdb_stdout. */
5469
5470static void
5471print_one_breakpoint_location (struct breakpoint *b,
5472 struct bp_location *loc,
5473 int loc_number,
5474 struct bp_location **last_loc,
269b11a2
PA
5475 int allflag)
5476{
5477 struct command_line *l;
c2c6d25f 5478 static char bpenables[] = "nynny";
c906108c 5479
79a45e25 5480 struct ui_out *uiout = current_uiout;
0d381245
VP
5481 int header_of_multiple = 0;
5482 int part_of_multiple = (loc != NULL);
79a45b7d
TT
5483 struct value_print_options opts;
5484
5485 get_user_print_options (&opts);
0d381245
VP
5486
5487 gdb_assert (!loc || loc_number != 0);
4a64f543
MS
5488 /* See comment in print_one_breakpoint concerning treatment of
5489 breakpoints with single disabled location. */
0d381245
VP
5490 if (loc == NULL
5491 && (b->loc != NULL
5492 && (b->loc->next != NULL || !b->loc->enabled)))
5493 header_of_multiple = 1;
5494 if (loc == NULL)
5495 loc = b->loc;
5496
c4093a6a
JM
5497 annotate_record ();
5498
5499 /* 1 */
5500 annotate_field (0);
0d381245
VP
5501 if (part_of_multiple)
5502 {
5503 char *formatted;
0c6773c1 5504 formatted = xstrprintf ("%d.%d", b->number, loc_number);
0d381245
VP
5505 ui_out_field_string (uiout, "number", formatted);
5506 xfree (formatted);
5507 }
5508 else
5509 {
5510 ui_out_field_int (uiout, "number", b->number);
5511 }
c4093a6a
JM
5512
5513 /* 2 */
5514 annotate_field (1);
0d381245
VP
5515 if (part_of_multiple)
5516 ui_out_field_skip (uiout, "type");
269b11a2
PA
5517 else
5518 ui_out_field_string (uiout, "type", bptype_string (b->type));
c4093a6a
JM
5519
5520 /* 3 */
5521 annotate_field (2);
0d381245
VP
5522 if (part_of_multiple)
5523 ui_out_field_skip (uiout, "disp");
5524 else
2cec12e5 5525 ui_out_field_string (uiout, "disp", bpdisp_text (b->disposition));
0d381245 5526
c4093a6a
JM
5527
5528 /* 4 */
5529 annotate_field (3);
0d381245 5530 if (part_of_multiple)
54e52265 5531 ui_out_field_string (uiout, "enabled", loc->enabled ? "y" : "n");
0d381245 5532 else
4a64f543
MS
5533 ui_out_field_fmt (uiout, "enabled", "%c",
5534 bpenables[(int) b->enable_state]);
54e52265 5535 ui_out_spaces (uiout, 2);
0d381245 5536
c4093a6a
JM
5537
5538 /* 5 and 6 */
3086aeae 5539 if (b->ops != NULL && b->ops->print_one != NULL)
0d381245 5540 {
4a64f543
MS
5541 /* Although the print_one can possibly print all locations,
5542 calling it here is not likely to get any nice result. So,
5543 make sure there's just one location. */
0d381245 5544 gdb_assert (b->loc == NULL || b->loc->next == NULL);
a6d9a66e 5545 b->ops->print_one (b, last_loc);
0d381245 5546 }
3086aeae
DJ
5547 else
5548 switch (b->type)
5549 {
5550 case bp_none:
5551 internal_error (__FILE__, __LINE__,
e2e0b3e5 5552 _("print_one_breakpoint: bp_none encountered\n"));
3086aeae 5553 break;
c906108c 5554
3086aeae
DJ
5555 case bp_watchpoint:
5556 case bp_hardware_watchpoint:
5557 case bp_read_watchpoint:
5558 case bp_access_watchpoint:
3a5c3e22
PA
5559 {
5560 struct watchpoint *w = (struct watchpoint *) b;
5561
5562 /* Field 4, the address, is omitted (which makes the columns
5563 not line up too nicely with the headers, but the effect
5564 is relatively readable). */
5565 if (opts.addressprint)
5566 ui_out_field_skip (uiout, "addr");
5567 annotate_field (5);
5568 ui_out_field_string (uiout, "what", w->exp_string);
5569 }
3086aeae
DJ
5570 break;
5571
3086aeae
DJ
5572 case bp_breakpoint:
5573 case bp_hardware_breakpoint:
5574 case bp_until:
5575 case bp_finish:
5576 case bp_longjmp:
5577 case bp_longjmp_resume:
186c406b
TT
5578 case bp_exception:
5579 case bp_exception_resume:
3086aeae 5580 case bp_step_resume:
2c03e5be 5581 case bp_hp_step_resume:
3086aeae
DJ
5582 case bp_watchpoint_scope:
5583 case bp_call_dummy:
aa7d318d 5584 case bp_std_terminate:
3086aeae
DJ
5585 case bp_shlib_event:
5586 case bp_thread_event:
5587 case bp_overlay_event:
0fd8e87f 5588 case bp_longjmp_master:
aa7d318d 5589 case bp_std_terminate_master:
186c406b 5590 case bp_exception_master:
1042e4c0 5591 case bp_tracepoint:
7a697b8d 5592 case bp_fast_tracepoint:
0fb4aa4b 5593 case bp_static_tracepoint:
e7e0cddf 5594 case bp_dprintf:
4efc6507 5595 case bp_jit_event:
0e30163f
JK
5596 case bp_gnu_ifunc_resolver:
5597 case bp_gnu_ifunc_resolver_return:
79a45b7d 5598 if (opts.addressprint)
3086aeae
DJ
5599 {
5600 annotate_field (4);
54e52265 5601 if (header_of_multiple)
0d381245 5602 ui_out_field_string (uiout, "addr", "<MULTIPLE>");
e9bbd7c5 5603 else if (b->loc == NULL || loc->shlib_disabled)
54e52265 5604 ui_out_field_string (uiout, "addr", "<PENDING>");
0101ce28 5605 else
5af949e3
UW
5606 ui_out_field_core_addr (uiout, "addr",
5607 loc->gdbarch, loc->address);
3086aeae
DJ
5608 }
5609 annotate_field (5);
0d381245 5610 if (!header_of_multiple)
170b53b2 5611 print_breakpoint_location (b, loc);
0d381245 5612 if (b->loc)
a6d9a66e 5613 *last_loc = b->loc;
3086aeae
DJ
5614 break;
5615 }
c906108c 5616
6c95b8df
PA
5617
5618 /* For backward compatibility, don't display inferiors unless there
5619 are several. */
5620 if (loc != NULL
5621 && !header_of_multiple
5622 && (allflag
5623 || (!gdbarch_has_global_breakpoints (target_gdbarch)
5624 && (number_of_program_spaces () > 1
5625 || number_of_inferiors () > 1)
4a64f543
MS
5626 /* LOC is for existing B, it cannot be in
5627 moribund_locations and thus having NULL OWNER. */
6c95b8df
PA
5628 && loc->owner->type != bp_catchpoint)))
5629 {
5630 struct inferior *inf;
5631 int first = 1;
5632
5633 for (inf = inferior_list; inf != NULL; inf = inf->next)
5634 {
5635 if (inf->pspace == loc->pspace)
5636 {
5637 if (first)
5638 {
5639 first = 0;
5640 ui_out_text (uiout, " inf ");
5641 }
5642 else
5643 ui_out_text (uiout, ", ");
5644 ui_out_text (uiout, plongest (inf->num));
5645 }
5646 }
5647 }
5648
4a306c9a 5649 if (!part_of_multiple)
c4093a6a 5650 {
4a306c9a
JB
5651 if (b->thread != -1)
5652 {
5653 /* FIXME: This seems to be redundant and lost here; see the
4a64f543 5654 "stop only in" line a little further down. */
4a306c9a
JB
5655 ui_out_text (uiout, " thread ");
5656 ui_out_field_int (uiout, "thread", b->thread);
5657 }
5658 else if (b->task != 0)
5659 {
5660 ui_out_text (uiout, " task ");
5661 ui_out_field_int (uiout, "task", b->task);
5662 }
c4093a6a 5663 }
f1310107 5664
8b93c638 5665 ui_out_text (uiout, "\n");
f1310107 5666
348d480f 5667 if (!part_of_multiple)
f1310107
TJB
5668 b->ops->print_one_detail (b, uiout);
5669
0d381245 5670 if (part_of_multiple && frame_id_p (b->frame_id))
c4093a6a
JM
5671 {
5672 annotate_field (6);
8b93c638 5673 ui_out_text (uiout, "\tstop only in stack frame at ");
e5dd4106 5674 /* FIXME: cagney/2002-12-01: Shouldn't be poking around inside
818dd999 5675 the frame ID. */
5af949e3
UW
5676 ui_out_field_core_addr (uiout, "frame",
5677 b->gdbarch, b->frame_id.stack_addr);
8b93c638 5678 ui_out_text (uiout, "\n");
c4093a6a
JM
5679 }
5680
28010a5d 5681 if (!part_of_multiple && b->cond_string)
c4093a6a
JM
5682 {
5683 annotate_field (7);
d77f58be 5684 if (is_tracepoint (b))
1042e4c0
SS
5685 ui_out_text (uiout, "\ttrace only if ");
5686 else
5687 ui_out_text (uiout, "\tstop only if ");
0101ce28 5688 ui_out_field_string (uiout, "cond", b->cond_string);
b775012e
LM
5689
5690 /* Print whether the target is doing the breakpoint's condition
5691 evaluation. If GDB is doing the evaluation, don't print anything. */
5692 if (is_breakpoint (b)
5693 && breakpoint_condition_evaluation_mode ()
5694 == condition_evaluation_target)
5695 {
5696 ui_out_text (uiout, " (");
5697 ui_out_field_string (uiout, "evaluated-by",
5698 bp_condition_evaluator (b));
5699 ui_out_text (uiout, " evals)");
5700 }
0101ce28
JJ
5701 ui_out_text (uiout, "\n");
5702 }
5703
0d381245 5704 if (!part_of_multiple && b->thread != -1)
c4093a6a 5705 {
4a64f543 5706 /* FIXME should make an annotation for this. */
8b93c638
JM
5707 ui_out_text (uiout, "\tstop only in thread ");
5708 ui_out_field_int (uiout, "thread", b->thread);
5709 ui_out_text (uiout, "\n");
c4093a6a
JM
5710 }
5711
63c715c6 5712 if (!part_of_multiple && b->hit_count)
c4093a6a 5713 {
4a64f543 5714 /* FIXME should make an annotation for this. */
c326b90e 5715 if (is_catchpoint (b))
8b93c638 5716 ui_out_text (uiout, "\tcatchpoint");
f196051f
SS
5717 else if (is_tracepoint (b))
5718 ui_out_text (uiout, "\ttracepoint");
8b93c638
JM
5719 else
5720 ui_out_text (uiout, "\tbreakpoint");
5721 ui_out_text (uiout, " already hit ");
5722 ui_out_field_int (uiout, "times", b->hit_count);
5723 if (b->hit_count == 1)
5724 ui_out_text (uiout, " time\n");
5725 else
5726 ui_out_text (uiout, " times\n");
c4093a6a
JM
5727 }
5728
4a64f543
MS
5729 /* Output the count also if it is zero, but only if this is mi.
5730 FIXME: Should have a better test for this. */
9dc5e2a9 5731 if (ui_out_is_mi_like_p (uiout))
63c715c6 5732 if (!part_of_multiple && b->hit_count == 0)
fb40c209 5733 ui_out_field_int (uiout, "times", b->hit_count);
8b93c638 5734
0d381245 5735 if (!part_of_multiple && b->ignore_count)
c4093a6a
JM
5736 {
5737 annotate_field (8);
8b93c638
JM
5738 ui_out_text (uiout, "\tignore next ");
5739 ui_out_field_int (uiout, "ignore", b->ignore_count);
5740 ui_out_text (uiout, " hits\n");
c4093a6a 5741 }
059fb39f 5742
816338b5
SS
5743 /* Note that an enable count of 1 corresponds to "enable once"
5744 behavior, which is reported by the combination of enablement and
5745 disposition, so we don't need to mention it here. */
5746 if (!part_of_multiple && b->enable_count > 1)
5747 {
5748 annotate_field (8);
5749 ui_out_text (uiout, "\tdisable after ");
5750 /* Tweak the wording to clarify that ignore and enable counts
5751 are distinct, and have additive effect. */
5752 if (b->ignore_count)
5753 ui_out_text (uiout, "additional ");
5754 else
5755 ui_out_text (uiout, "next ");
5756 ui_out_field_int (uiout, "enable", b->enable_count);
5757 ui_out_text (uiout, " hits\n");
5758 }
5759
f196051f
SS
5760 if (!part_of_multiple && is_tracepoint (b))
5761 {
5762 struct tracepoint *tp = (struct tracepoint *) b;
5763
5764 if (tp->traceframe_usage)
5765 {
5766 ui_out_text (uiout, "\ttrace buffer usage ");
5767 ui_out_field_int (uiout, "traceframe-usage", tp->traceframe_usage);
5768 ui_out_text (uiout, " bytes\n");
5769 }
5770 }
5771
9add0f1b 5772 l = b->commands ? b->commands->commands : NULL;
059fb39f 5773 if (!part_of_multiple && l)
c4093a6a 5774 {
3b31d625
EZ
5775 struct cleanup *script_chain;
5776
c4093a6a 5777 annotate_field (9);
3b31d625 5778 script_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "script");
8b93c638 5779 print_command_lines (uiout, l, 4);
3b31d625 5780 do_cleanups (script_chain);
c4093a6a 5781 }
d24317b4 5782
d9b3f62e 5783 if (is_tracepoint (b))
1042e4c0 5784 {
d9b3f62e
PA
5785 struct tracepoint *t = (struct tracepoint *) b;
5786
5787 if (!part_of_multiple && t->pass_count)
5788 {
5789 annotate_field (10);
5790 ui_out_text (uiout, "\tpass count ");
5791 ui_out_field_int (uiout, "pass", t->pass_count);
5792 ui_out_text (uiout, " \n");
5793 }
1042e4c0
SS
5794 }
5795
d24317b4
VP
5796 if (ui_out_is_mi_like_p (uiout) && !part_of_multiple)
5797 {
3a5c3e22
PA
5798 if (is_watchpoint (b))
5799 {
5800 struct watchpoint *w = (struct watchpoint *) b;
5801
5802 ui_out_field_string (uiout, "original-location", w->exp_string);
5803 }
5804 else if (b->addr_string)
d24317b4 5805 ui_out_field_string (uiout, "original-location", b->addr_string);
d24317b4 5806 }
c4093a6a 5807}
c5aa993b 5808
0d381245
VP
5809static void
5810print_one_breakpoint (struct breakpoint *b,
4a64f543 5811 struct bp_location **last_loc,
6c95b8df 5812 int allflag)
0d381245 5813{
8d3788bd 5814 struct cleanup *bkpt_chain;
79a45e25 5815 struct ui_out *uiout = current_uiout;
8d3788bd
VP
5816
5817 bkpt_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "bkpt");
5818
12c5a436 5819 print_one_breakpoint_location (b, NULL, 0, last_loc, allflag);
8d3788bd 5820 do_cleanups (bkpt_chain);
0d381245
VP
5821
5822 /* If this breakpoint has custom print function,
5823 it's already printed. Otherwise, print individual
5824 locations, if any. */
5825 if (b->ops == NULL || b->ops->print_one == NULL)
5826 {
4a64f543
MS
5827 /* If breakpoint has a single location that is disabled, we
5828 print it as if it had several locations, since otherwise it's
5829 hard to represent "breakpoint enabled, location disabled"
5830 situation.
5831
5832 Note that while hardware watchpoints have several locations
a3be7890 5833 internally, that's not a property exposed to user. */
0d381245 5834 if (b->loc
a5606eee 5835 && !is_hardware_watchpoint (b)
8d3788bd 5836 && (b->loc->next || !b->loc->enabled))
0d381245
VP
5837 {
5838 struct bp_location *loc;
5839 int n = 1;
8d3788bd 5840
0d381245 5841 for (loc = b->loc; loc; loc = loc->next, ++n)
8d3788bd
VP
5842 {
5843 struct cleanup *inner2 =
5844 make_cleanup_ui_out_tuple_begin_end (uiout, NULL);
5845 print_one_breakpoint_location (b, loc, n, last_loc, allflag);
5846 do_cleanups (inner2);
5847 }
0d381245
VP
5848 }
5849 }
5850}
5851
a6d9a66e
UW
5852static int
5853breakpoint_address_bits (struct breakpoint *b)
5854{
5855 int print_address_bits = 0;
5856 struct bp_location *loc;
5857
5858 for (loc = b->loc; loc; loc = loc->next)
5859 {
c7437ca6
PA
5860 int addr_bit;
5861
5862 /* Software watchpoints that aren't watching memory don't have
5863 an address to print. */
5864 if (b->type == bp_watchpoint && loc->watchpoint_type == -1)
5865 continue;
5866
5867 addr_bit = gdbarch_addr_bit (loc->gdbarch);
a6d9a66e
UW
5868 if (addr_bit > print_address_bits)
5869 print_address_bits = addr_bit;
5870 }
5871
5872 return print_address_bits;
5873}
0d381245 5874
c4093a6a
JM
5875struct captured_breakpoint_query_args
5876 {
5877 int bnum;
5878 };
c5aa993b 5879
c4093a6a 5880static int
2b65245e 5881do_captured_breakpoint_query (struct ui_out *uiout, void *data)
c4093a6a
JM
5882{
5883 struct captured_breakpoint_query_args *args = data;
52f0bd74 5884 struct breakpoint *b;
a6d9a66e 5885 struct bp_location *dummy_loc = NULL;
cc59ec59 5886
c4093a6a
JM
5887 ALL_BREAKPOINTS (b)
5888 {
5889 if (args->bnum == b->number)
c5aa993b 5890 {
12c5a436 5891 print_one_breakpoint (b, &dummy_loc, 0);
c4093a6a 5892 return GDB_RC_OK;
c5aa993b 5893 }
c4093a6a
JM
5894 }
5895 return GDB_RC_NONE;
5896}
c5aa993b 5897
c4093a6a 5898enum gdb_rc
4a64f543
MS
5899gdb_breakpoint_query (struct ui_out *uiout, int bnum,
5900 char **error_message)
c4093a6a
JM
5901{
5902 struct captured_breakpoint_query_args args;
cc59ec59 5903
c4093a6a
JM
5904 args.bnum = bnum;
5905 /* For the moment we don't trust print_one_breakpoint() to not throw
4a64f543 5906 an error. */
b0b13bb4
DJ
5907 if (catch_exceptions_with_msg (uiout, do_captured_breakpoint_query, &args,
5908 error_message, RETURN_MASK_ALL) < 0)
5909 return GDB_RC_FAIL;
5910 else
5911 return GDB_RC_OK;
c4093a6a 5912}
c5aa993b 5913
09d682a4
TT
5914/* Return true if this breakpoint was set by the user, false if it is
5915 internal or momentary. */
5916
5917int
5918user_breakpoint_p (struct breakpoint *b)
5919{
46c6471b 5920 return b->number > 0;
09d682a4
TT
5921}
5922
7f3b0473 5923/* Print information on user settable breakpoint (watchpoint, etc)
d77f58be
SS
5924 number BNUM. If BNUM is -1 print all user-settable breakpoints.
5925 If ALLFLAG is non-zero, include non-user-settable breakpoints. If
5926 FILTER is non-NULL, call it on each breakpoint and only include the
5927 ones for which it returns non-zero. Return the total number of
5928 breakpoints listed. */
c906108c 5929
d77f58be 5930static int
e5a67952 5931breakpoint_1 (char *args, int allflag,
4a64f543 5932 int (*filter) (const struct breakpoint *))
c4093a6a 5933{
52f0bd74 5934 struct breakpoint *b;
a6d9a66e 5935 struct bp_location *last_loc = NULL;
7f3b0473 5936 int nr_printable_breakpoints;
3b31d625 5937 struct cleanup *bkpttbl_chain;
79a45b7d 5938 struct value_print_options opts;
a6d9a66e 5939 int print_address_bits = 0;
269b11a2 5940 int print_type_col_width = 14;
79a45e25 5941 struct ui_out *uiout = current_uiout;
269b11a2 5942
79a45b7d
TT
5943 get_user_print_options (&opts);
5944
4a64f543
MS
5945 /* Compute the number of rows in the table, as well as the size
5946 required for address fields. */
7f3b0473
AC
5947 nr_printable_breakpoints = 0;
5948 ALL_BREAKPOINTS (b)
e5a67952
MS
5949 {
5950 /* If we have a filter, only list the breakpoints it accepts. */
5951 if (filter && !filter (b))
5952 continue;
5953
5954 /* If we have an "args" string, it is a list of breakpoints to
5955 accept. Skip the others. */
5956 if (args != NULL && *args != '\0')
5957 {
5958 if (allflag && parse_and_eval_long (args) != b->number)
5959 continue;
5960 if (!allflag && !number_is_in_list (args, b->number))
5961 continue;
5962 }
269b11a2 5963
e5a67952
MS
5964 if (allflag || user_breakpoint_p (b))
5965 {
5966 int addr_bit, type_len;
a6d9a66e 5967
e5a67952
MS
5968 addr_bit = breakpoint_address_bits (b);
5969 if (addr_bit > print_address_bits)
5970 print_address_bits = addr_bit;
269b11a2 5971
e5a67952
MS
5972 type_len = strlen (bptype_string (b->type));
5973 if (type_len > print_type_col_width)
5974 print_type_col_width = type_len;
5975
5976 nr_printable_breakpoints++;
5977 }
5978 }
7f3b0473 5979
79a45b7d 5980 if (opts.addressprint)
3b31d625 5981 bkpttbl_chain
3e43a32a
MS
5982 = make_cleanup_ui_out_table_begin_end (uiout, 6,
5983 nr_printable_breakpoints,
3b31d625 5984 "BreakpointTable");
8b93c638 5985 else
3b31d625 5986 bkpttbl_chain
3e43a32a
MS
5987 = make_cleanup_ui_out_table_begin_end (uiout, 5,
5988 nr_printable_breakpoints,
3b31d625 5989 "BreakpointTable");
8b93c638 5990
7f3b0473 5991 if (nr_printable_breakpoints > 0)
d7faa9e7
AC
5992 annotate_breakpoints_headers ();
5993 if (nr_printable_breakpoints > 0)
5994 annotate_field (0);
4a64f543 5995 ui_out_table_header (uiout, 7, ui_left, "number", "Num"); /* 1 */
d7faa9e7
AC
5996 if (nr_printable_breakpoints > 0)
5997 annotate_field (1);
269b11a2 5998 ui_out_table_header (uiout, print_type_col_width, ui_left,
4a64f543 5999 "type", "Type"); /* 2 */
d7faa9e7
AC
6000 if (nr_printable_breakpoints > 0)
6001 annotate_field (2);
4a64f543 6002 ui_out_table_header (uiout, 4, ui_left, "disp", "Disp"); /* 3 */
d7faa9e7
AC
6003 if (nr_printable_breakpoints > 0)
6004 annotate_field (3);
54e52265 6005 ui_out_table_header (uiout, 3, ui_left, "enabled", "Enb"); /* 4 */
79a45b7d 6006 if (opts.addressprint)
e5a67952
MS
6007 {
6008 if (nr_printable_breakpoints > 0)
6009 annotate_field (4);
6010 if (print_address_bits <= 32)
6011 ui_out_table_header (uiout, 10, ui_left,
6012 "addr", "Address"); /* 5 */
6013 else
6014 ui_out_table_header (uiout, 18, ui_left,
6015 "addr", "Address"); /* 5 */
6016 }
d7faa9e7
AC
6017 if (nr_printable_breakpoints > 0)
6018 annotate_field (5);
6019 ui_out_table_header (uiout, 40, ui_noalign, "what", "What"); /* 6 */
6020 ui_out_table_body (uiout);
6021 if (nr_printable_breakpoints > 0)
6022 annotate_breakpoints_table ();
7f3b0473 6023
c4093a6a 6024 ALL_BREAKPOINTS (b)
e5a67952
MS
6025 {
6026 QUIT;
6027 /* If we have a filter, only list the breakpoints it accepts. */
6028 if (filter && !filter (b))
6029 continue;
6030
6031 /* If we have an "args" string, it is a list of breakpoints to
6032 accept. Skip the others. */
6033
6034 if (args != NULL && *args != '\0')
6035 {
6036 if (allflag) /* maintenance info breakpoint */
6037 {
6038 if (parse_and_eval_long (args) != b->number)
6039 continue;
6040 }
6041 else /* all others */
6042 {
6043 if (!number_is_in_list (args, b->number))
6044 continue;
6045 }
6046 }
6047 /* We only print out user settable breakpoints unless the
6048 allflag is set. */
6049 if (allflag || user_breakpoint_p (b))
12c5a436 6050 print_one_breakpoint (b, &last_loc, allflag);
e5a67952
MS
6051 }
6052
3b31d625 6053 do_cleanups (bkpttbl_chain);
698384cd 6054
7f3b0473 6055 if (nr_printable_breakpoints == 0)
c906108c 6056 {
4a64f543
MS
6057 /* If there's a filter, let the caller decide how to report
6058 empty list. */
d77f58be
SS
6059 if (!filter)
6060 {
e5a67952 6061 if (args == NULL || *args == '\0')
d77f58be
SS
6062 ui_out_message (uiout, 0, "No breakpoints or watchpoints.\n");
6063 else
4a64f543 6064 ui_out_message (uiout, 0,
e5a67952
MS
6065 "No breakpoint or watchpoint matching '%s'.\n",
6066 args);
d77f58be 6067 }
c906108c
SS
6068 }
6069 else
c4093a6a 6070 {
a6d9a66e
UW
6071 if (last_loc && !server_command)
6072 set_next_address (last_loc->gdbarch, last_loc->address);
c4093a6a 6073 }
c906108c 6074
4a64f543 6075 /* FIXME? Should this be moved up so that it is only called when
c4093a6a 6076 there have been breakpoints? */
c906108c 6077 annotate_breakpoints_table_end ();
d77f58be
SS
6078
6079 return nr_printable_breakpoints;
c906108c
SS
6080}
6081
ad443146
SS
6082/* Display the value of default-collect in a way that is generally
6083 compatible with the breakpoint list. */
6084
6085static void
6086default_collect_info (void)
6087{
79a45e25
PA
6088 struct ui_out *uiout = current_uiout;
6089
ad443146
SS
6090 /* If it has no value (which is frequently the case), say nothing; a
6091 message like "No default-collect." gets in user's face when it's
6092 not wanted. */
6093 if (!*default_collect)
6094 return;
6095
6096 /* The following phrase lines up nicely with per-tracepoint collect
6097 actions. */
6098 ui_out_text (uiout, "default collect ");
6099 ui_out_field_string (uiout, "default-collect", default_collect);
6100 ui_out_text (uiout, " \n");
6101}
6102
c906108c 6103static void
e5a67952 6104breakpoints_info (char *args, int from_tty)
c906108c 6105{
e5a67952 6106 breakpoint_1 (args, 0, NULL);
ad443146
SS
6107
6108 default_collect_info ();
d77f58be
SS
6109}
6110
6111static void
e5a67952 6112watchpoints_info (char *args, int from_tty)
d77f58be 6113{
e5a67952 6114 int num_printed = breakpoint_1 (args, 0, is_watchpoint);
79a45e25 6115 struct ui_out *uiout = current_uiout;
d77f58be
SS
6116
6117 if (num_printed == 0)
6118 {
e5a67952 6119 if (args == NULL || *args == '\0')
d77f58be
SS
6120 ui_out_message (uiout, 0, "No watchpoints.\n");
6121 else
e5a67952 6122 ui_out_message (uiout, 0, "No watchpoint matching '%s'.\n", args);
d77f58be 6123 }
c906108c
SS
6124}
6125
7a292a7a 6126static void
e5a67952 6127maintenance_info_breakpoints (char *args, int from_tty)
c906108c 6128{
e5a67952 6129 breakpoint_1 (args, 1, NULL);
ad443146
SS
6130
6131 default_collect_info ();
c906108c
SS
6132}
6133
0d381245 6134static int
714835d5 6135breakpoint_has_pc (struct breakpoint *b,
6c95b8df 6136 struct program_space *pspace,
714835d5 6137 CORE_ADDR pc, struct obj_section *section)
0d381245
VP
6138{
6139 struct bp_location *bl = b->loc;
cc59ec59 6140
0d381245
VP
6141 for (; bl; bl = bl->next)
6142 {
6c95b8df
PA
6143 if (bl->pspace == pspace
6144 && bl->address == pc
0d381245
VP
6145 && (!overlay_debugging || bl->section == section))
6146 return 1;
6147 }
6148 return 0;
6149}
6150
672f9b60 6151/* Print a message describing any user-breakpoints set at PC. This
6c95b8df
PA
6152 concerns with logical breakpoints, so we match program spaces, not
6153 address spaces. */
c906108c
SS
6154
6155static void
6c95b8df
PA
6156describe_other_breakpoints (struct gdbarch *gdbarch,
6157 struct program_space *pspace, CORE_ADDR pc,
5af949e3 6158 struct obj_section *section, int thread)
c906108c 6159{
52f0bd74
AC
6160 int others = 0;
6161 struct breakpoint *b;
c906108c
SS
6162
6163 ALL_BREAKPOINTS (b)
672f9b60
KP
6164 others += (user_breakpoint_p (b)
6165 && breakpoint_has_pc (b, pspace, pc, section));
c906108c
SS
6166 if (others > 0)
6167 {
a3f17187
AC
6168 if (others == 1)
6169 printf_filtered (_("Note: breakpoint "));
6170 else /* if (others == ???) */
6171 printf_filtered (_("Note: breakpoints "));
c906108c 6172 ALL_BREAKPOINTS (b)
672f9b60 6173 if (user_breakpoint_p (b) && breakpoint_has_pc (b, pspace, pc, section))
0d381245
VP
6174 {
6175 others--;
6176 printf_filtered ("%d", b->number);
6177 if (b->thread == -1 && thread != -1)
6178 printf_filtered (" (all threads)");
6179 else if (b->thread != -1)
6180 printf_filtered (" (thread %d)", b->thread);
6181 printf_filtered ("%s%s ",
059fb39f 6182 ((b->enable_state == bp_disabled
f8eba3c6 6183 || b->enable_state == bp_call_disabled)
0d381245
VP
6184 ? " (disabled)"
6185 : b->enable_state == bp_permanent
6186 ? " (permanent)"
6187 : ""),
6188 (others > 1) ? ","
6189 : ((others == 1) ? " and" : ""));
6190 }
a3f17187 6191 printf_filtered (_("also set at pc "));
5af949e3 6192 fputs_filtered (paddress (gdbarch, pc), gdb_stdout);
c906108c
SS
6193 printf_filtered (".\n");
6194 }
6195}
6196\f
c906108c 6197
e4f237da
KB
6198/* Return true iff it is meaningful to use the address member of
6199 BPT. For some breakpoint types, the address member is irrelevant
6200 and it makes no sense to attempt to compare it to other addresses
6201 (or use it for any other purpose either).
6202
4a64f543
MS
6203 More specifically, each of the following breakpoint types will
6204 always have a zero valued address and we don't want to mark
6205 breakpoints of any of these types to be a duplicate of an actual
6206 breakpoint at address zero:
e4f237da
KB
6207
6208 bp_watchpoint
2d134ed3
PA
6209 bp_catchpoint
6210
6211*/
e4f237da
KB
6212
6213static int
6214breakpoint_address_is_meaningful (struct breakpoint *bpt)
6215{
6216 enum bptype type = bpt->type;
6217
2d134ed3
PA
6218 return (type != bp_watchpoint && type != bp_catchpoint);
6219}
6220
6221/* Assuming LOC1 and LOC2's owners are hardware watchpoints, returns
6222 true if LOC1 and LOC2 represent the same watchpoint location. */
6223
6224static int
4a64f543
MS
6225watchpoint_locations_match (struct bp_location *loc1,
6226 struct bp_location *loc2)
2d134ed3 6227{
3a5c3e22
PA
6228 struct watchpoint *w1 = (struct watchpoint *) loc1->owner;
6229 struct watchpoint *w2 = (struct watchpoint *) loc2->owner;
6230
6231 /* Both of them must exist. */
6232 gdb_assert (w1 != NULL);
6233 gdb_assert (w2 != NULL);
2bdf28a0 6234
4a64f543
MS
6235 /* If the target can evaluate the condition expression in hardware,
6236 then we we need to insert both watchpoints even if they are at
6237 the same place. Otherwise the watchpoint will only trigger when
6238 the condition of whichever watchpoint was inserted evaluates to
6239 true, not giving a chance for GDB to check the condition of the
6240 other watchpoint. */
3a5c3e22 6241 if ((w1->cond_exp
4a64f543
MS
6242 && target_can_accel_watchpoint_condition (loc1->address,
6243 loc1->length,
0cf6dd15 6244 loc1->watchpoint_type,
3a5c3e22
PA
6245 w1->cond_exp))
6246 || (w2->cond_exp
4a64f543
MS
6247 && target_can_accel_watchpoint_condition (loc2->address,
6248 loc2->length,
0cf6dd15 6249 loc2->watchpoint_type,
3a5c3e22 6250 w2->cond_exp)))
0cf6dd15
TJB
6251 return 0;
6252
85d721b8
PA
6253 /* Note that this checks the owner's type, not the location's. In
6254 case the target does not support read watchpoints, but does
6255 support access watchpoints, we'll have bp_read_watchpoint
6256 watchpoints with hw_access locations. Those should be considered
6257 duplicates of hw_read locations. The hw_read locations will
6258 become hw_access locations later. */
2d134ed3
PA
6259 return (loc1->owner->type == loc2->owner->type
6260 && loc1->pspace->aspace == loc2->pspace->aspace
6261 && loc1->address == loc2->address
6262 && loc1->length == loc2->length);
e4f237da
KB
6263}
6264
6c95b8df
PA
6265/* Returns true if {ASPACE1,ADDR1} and {ASPACE2,ADDR2} represent the
6266 same breakpoint location. In most targets, this can only be true
6267 if ASPACE1 matches ASPACE2. On targets that have global
6268 breakpoints, the address space doesn't really matter. */
6269
6270static int
6271breakpoint_address_match (struct address_space *aspace1, CORE_ADDR addr1,
6272 struct address_space *aspace2, CORE_ADDR addr2)
6273{
6274 return ((gdbarch_has_global_breakpoints (target_gdbarch)
6275 || aspace1 == aspace2)
6276 && addr1 == addr2);
6277}
6278
f1310107
TJB
6279/* Returns true if {ASPACE2,ADDR2} falls within the range determined by
6280 {ASPACE1,ADDR1,LEN1}. In most targets, this can only be true if ASPACE1
6281 matches ASPACE2. On targets that have global breakpoints, the address
6282 space doesn't really matter. */
6283
6284static int
6285breakpoint_address_match_range (struct address_space *aspace1, CORE_ADDR addr1,
6286 int len1, struct address_space *aspace2,
6287 CORE_ADDR addr2)
6288{
6289 return ((gdbarch_has_global_breakpoints (target_gdbarch)
6290 || aspace1 == aspace2)
6291 && addr2 >= addr1 && addr2 < addr1 + len1);
6292}
6293
6294/* Returns true if {ASPACE,ADDR} matches the breakpoint BL. BL may be
6295 a ranged breakpoint. In most targets, a match happens only if ASPACE
6296 matches the breakpoint's address space. On targets that have global
6297 breakpoints, the address space doesn't really matter. */
6298
6299static int
6300breakpoint_location_address_match (struct bp_location *bl,
6301 struct address_space *aspace,
6302 CORE_ADDR addr)
6303{
6304 return (breakpoint_address_match (bl->pspace->aspace, bl->address,
6305 aspace, addr)
6306 || (bl->length
6307 && breakpoint_address_match_range (bl->pspace->aspace,
6308 bl->address, bl->length,
6309 aspace, addr)));
6310}
6311
1e4d1764
YQ
6312/* If LOC1 and LOC2's owners are not tracepoints, returns false directly.
6313 Then, if LOC1 and LOC2 represent the same tracepoint location, returns
6314 true, otherwise returns false. */
6315
6316static int
6317tracepoint_locations_match (struct bp_location *loc1,
6318 struct bp_location *loc2)
6319{
6320 if (is_tracepoint (loc1->owner) && is_tracepoint (loc2->owner))
6321 /* Since tracepoint locations are never duplicated with others', tracepoint
6322 locations at the same address of different tracepoints are regarded as
6323 different locations. */
6324 return (loc1->address == loc2->address && loc1->owner == loc2->owner);
6325 else
6326 return 0;
6327}
6328
2d134ed3
PA
6329/* Assuming LOC1 and LOC2's types' have meaningful target addresses
6330 (breakpoint_address_is_meaningful), returns true if LOC1 and LOC2
6331 represent the same location. */
6332
6333static int
4a64f543
MS
6334breakpoint_locations_match (struct bp_location *loc1,
6335 struct bp_location *loc2)
2d134ed3 6336{
2bdf28a0
JK
6337 int hw_point1, hw_point2;
6338
6339 /* Both of them must not be in moribund_locations. */
6340 gdb_assert (loc1->owner != NULL);
6341 gdb_assert (loc2->owner != NULL);
6342
6343 hw_point1 = is_hardware_watchpoint (loc1->owner);
6344 hw_point2 = is_hardware_watchpoint (loc2->owner);
2d134ed3
PA
6345
6346 if (hw_point1 != hw_point2)
6347 return 0;
6348 else if (hw_point1)
6349 return watchpoint_locations_match (loc1, loc2);
1e4d1764
YQ
6350 else if (is_tracepoint (loc1->owner) || is_tracepoint (loc2->owner))
6351 return tracepoint_locations_match (loc1, loc2);
2d134ed3 6352 else
f1310107
TJB
6353 /* We compare bp_location.length in order to cover ranged breakpoints. */
6354 return (breakpoint_address_match (loc1->pspace->aspace, loc1->address,
6355 loc2->pspace->aspace, loc2->address)
6356 && loc1->length == loc2->length);
2d134ed3
PA
6357}
6358
76897487
KB
6359static void
6360breakpoint_adjustment_warning (CORE_ADDR from_addr, CORE_ADDR to_addr,
6361 int bnum, int have_bnum)
6362{
f63fbe86
MS
6363 /* The longest string possibly returned by hex_string_custom
6364 is 50 chars. These must be at least that big for safety. */
6365 char astr1[64];
6366 char astr2[64];
76897487 6367
bb599908
PH
6368 strcpy (astr1, hex_string_custom ((unsigned long) from_addr, 8));
6369 strcpy (astr2, hex_string_custom ((unsigned long) to_addr, 8));
76897487 6370 if (have_bnum)
8a3fe4f8 6371 warning (_("Breakpoint %d address previously adjusted from %s to %s."),
76897487
KB
6372 bnum, astr1, astr2);
6373 else
8a3fe4f8 6374 warning (_("Breakpoint address adjusted from %s to %s."), astr1, astr2);
76897487
KB
6375}
6376
4a64f543
MS
6377/* Adjust a breakpoint's address to account for architectural
6378 constraints on breakpoint placement. Return the adjusted address.
6379 Note: Very few targets require this kind of adjustment. For most
6380 targets, this function is simply the identity function. */
76897487
KB
6381
6382static CORE_ADDR
a6d9a66e
UW
6383adjust_breakpoint_address (struct gdbarch *gdbarch,
6384 CORE_ADDR bpaddr, enum bptype bptype)
76897487 6385{
a6d9a66e 6386 if (!gdbarch_adjust_breakpoint_address_p (gdbarch))
76897487
KB
6387 {
6388 /* Very few targets need any kind of breakpoint adjustment. */
6389 return bpaddr;
6390 }
88f7da05
KB
6391 else if (bptype == bp_watchpoint
6392 || bptype == bp_hardware_watchpoint
6393 || bptype == bp_read_watchpoint
6394 || bptype == bp_access_watchpoint
fe798b75 6395 || bptype == bp_catchpoint)
88f7da05
KB
6396 {
6397 /* Watchpoints and the various bp_catch_* eventpoints should not
6398 have their addresses modified. */
6399 return bpaddr;
6400 }
76897487
KB
6401 else
6402 {
6403 CORE_ADDR adjusted_bpaddr;
6404
6405 /* Some targets have architectural constraints on the placement
6406 of breakpoint instructions. Obtain the adjusted address. */
a6d9a66e 6407 adjusted_bpaddr = gdbarch_adjust_breakpoint_address (gdbarch, bpaddr);
76897487
KB
6408
6409 /* An adjusted breakpoint address can significantly alter
6410 a user's expectations. Print a warning if an adjustment
6411 is required. */
6412 if (adjusted_bpaddr != bpaddr)
6413 breakpoint_adjustment_warning (bpaddr, adjusted_bpaddr, 0, 0);
6414
6415 return adjusted_bpaddr;
6416 }
6417}
6418
28010a5d
PA
6419void
6420init_bp_location (struct bp_location *loc, const struct bp_location_ops *ops,
6421 struct breakpoint *owner)
7cc221ef 6422{
7cc221ef
DJ
6423 memset (loc, 0, sizeof (*loc));
6424
348d480f
PA
6425 gdb_assert (ops != NULL);
6426
28010a5d
PA
6427 loc->ops = ops;
6428 loc->owner = owner;
511a6cd4 6429 loc->cond = NULL;
b775012e 6430 loc->cond_bytecode = NULL;
0d381245
VP
6431 loc->shlib_disabled = 0;
6432 loc->enabled = 1;
e049a4b5 6433
28010a5d 6434 switch (owner->type)
e049a4b5
DJ
6435 {
6436 case bp_breakpoint:
6437 case bp_until:
6438 case bp_finish:
6439 case bp_longjmp:
6440 case bp_longjmp_resume:
186c406b
TT
6441 case bp_exception:
6442 case bp_exception_resume:
e049a4b5 6443 case bp_step_resume:
2c03e5be 6444 case bp_hp_step_resume:
e049a4b5
DJ
6445 case bp_watchpoint_scope:
6446 case bp_call_dummy:
aa7d318d 6447 case bp_std_terminate:
e049a4b5
DJ
6448 case bp_shlib_event:
6449 case bp_thread_event:
6450 case bp_overlay_event:
4efc6507 6451 case bp_jit_event:
0fd8e87f 6452 case bp_longjmp_master:
aa7d318d 6453 case bp_std_terminate_master:
186c406b 6454 case bp_exception_master:
0e30163f
JK
6455 case bp_gnu_ifunc_resolver:
6456 case bp_gnu_ifunc_resolver_return:
e7e0cddf 6457 case bp_dprintf:
e049a4b5 6458 loc->loc_type = bp_loc_software_breakpoint;
b775012e 6459 mark_breakpoint_location_modified (loc);
e049a4b5
DJ
6460 break;
6461 case bp_hardware_breakpoint:
6462 loc->loc_type = bp_loc_hardware_breakpoint;
b775012e 6463 mark_breakpoint_location_modified (loc);
e049a4b5
DJ
6464 break;
6465 case bp_hardware_watchpoint:
6466 case bp_read_watchpoint:
6467 case bp_access_watchpoint:
6468 loc->loc_type = bp_loc_hardware_watchpoint;
6469 break;
6470 case bp_watchpoint:
ce78b96d 6471 case bp_catchpoint:
15c3d785
PA
6472 case bp_tracepoint:
6473 case bp_fast_tracepoint:
0fb4aa4b 6474 case bp_static_tracepoint:
e049a4b5
DJ
6475 loc->loc_type = bp_loc_other;
6476 break;
6477 default:
e2e0b3e5 6478 internal_error (__FILE__, __LINE__, _("unknown breakpoint type"));
e049a4b5
DJ
6479 }
6480
f431efe5 6481 loc->refc = 1;
28010a5d
PA
6482}
6483
6484/* Allocate a struct bp_location. */
6485
6486static struct bp_location *
6487allocate_bp_location (struct breakpoint *bpt)
6488{
348d480f
PA
6489 return bpt->ops->allocate_location (bpt);
6490}
7cc221ef 6491
f431efe5
PA
6492static void
6493free_bp_location (struct bp_location *loc)
fe3f5fa8 6494{
348d480f 6495 loc->ops->dtor (loc);
fe3f5fa8
VP
6496 xfree (loc);
6497}
6498
f431efe5
PA
6499/* Increment reference count. */
6500
6501static void
6502incref_bp_location (struct bp_location *bl)
6503{
6504 ++bl->refc;
6505}
6506
6507/* Decrement reference count. If the reference count reaches 0,
6508 destroy the bp_location. Sets *BLP to NULL. */
6509
6510static void
6511decref_bp_location (struct bp_location **blp)
6512{
0807b50c
PA
6513 gdb_assert ((*blp)->refc > 0);
6514
f431efe5
PA
6515 if (--(*blp)->refc == 0)
6516 free_bp_location (*blp);
6517 *blp = NULL;
6518}
6519
346774a9 6520/* Add breakpoint B at the end of the global breakpoint chain. */
c906108c 6521
346774a9
PA
6522static void
6523add_to_breakpoint_chain (struct breakpoint *b)
c906108c 6524{
346774a9 6525 struct breakpoint *b1;
c906108c 6526
346774a9
PA
6527 /* Add this breakpoint to the end of the chain so that a list of
6528 breakpoints will come out in order of increasing numbers. */
6529
6530 b1 = breakpoint_chain;
6531 if (b1 == 0)
6532 breakpoint_chain = b;
6533 else
6534 {
6535 while (b1->next)
6536 b1 = b1->next;
6537 b1->next = b;
6538 }
6539}
6540
6541/* Initializes breakpoint B with type BPTYPE and no locations yet. */
6542
6543static void
6544init_raw_breakpoint_without_location (struct breakpoint *b,
6545 struct gdbarch *gdbarch,
28010a5d 6546 enum bptype bptype,
c0a91b2b 6547 const struct breakpoint_ops *ops)
346774a9 6548{
c906108c 6549 memset (b, 0, sizeof (*b));
2219d63c 6550
348d480f
PA
6551 gdb_assert (ops != NULL);
6552
28010a5d 6553 b->ops = ops;
4d28f7a8 6554 b->type = bptype;
a6d9a66e 6555 b->gdbarch = gdbarch;
c906108c
SS
6556 b->language = current_language->la_language;
6557 b->input_radix = input_radix;
6558 b->thread = -1;
b5de0fa7 6559 b->enable_state = bp_enabled;
c906108c
SS
6560 b->next = 0;
6561 b->silent = 0;
6562 b->ignore_count = 0;
6563 b->commands = NULL;
818dd999 6564 b->frame_id = null_frame_id;
0d381245 6565 b->condition_not_parsed = 0;
84f4c1fe 6566 b->py_bp_object = NULL;
d0fb5eae 6567 b->related_breakpoint = b;
346774a9
PA
6568}
6569
6570/* Helper to set_raw_breakpoint below. Creates a breakpoint
6571 that has type BPTYPE and has no locations as yet. */
346774a9
PA
6572
6573static struct breakpoint *
6574set_raw_breakpoint_without_location (struct gdbarch *gdbarch,
348d480f 6575 enum bptype bptype,
c0a91b2b 6576 const struct breakpoint_ops *ops)
346774a9
PA
6577{
6578 struct breakpoint *b = XNEW (struct breakpoint);
6579
348d480f 6580 init_raw_breakpoint_without_location (b, gdbarch, bptype, ops);
c56053d2 6581 add_to_breakpoint_chain (b);
0d381245
VP
6582 return b;
6583}
6584
0e30163f
JK
6585/* Initialize loc->function_name. EXPLICIT_LOC says no indirect function
6586 resolutions should be made as the user specified the location explicitly
6587 enough. */
6588
0d381245 6589static void
0e30163f 6590set_breakpoint_location_function (struct bp_location *loc, int explicit_loc)
0d381245 6591{
2bdf28a0
JK
6592 gdb_assert (loc->owner != NULL);
6593
0d381245 6594 if (loc->owner->type == bp_breakpoint
1042e4c0 6595 || loc->owner->type == bp_hardware_breakpoint
d77f58be 6596 || is_tracepoint (loc->owner))
0d381245 6597 {
0e30163f 6598 int is_gnu_ifunc;
2c02bd72 6599 const char *function_name;
6a3a010b 6600 CORE_ADDR func_addr;
0e30163f 6601
2c02bd72 6602 find_pc_partial_function_gnu_ifunc (loc->address, &function_name,
6a3a010b 6603 &func_addr, NULL, &is_gnu_ifunc);
0e30163f
JK
6604
6605 if (is_gnu_ifunc && !explicit_loc)
6606 {
6607 struct breakpoint *b = loc->owner;
6608
6609 gdb_assert (loc->pspace == current_program_space);
2c02bd72 6610 if (gnu_ifunc_resolve_name (function_name,
0e30163f
JK
6611 &loc->requested_address))
6612 {
6613 /* Recalculate ADDRESS based on new REQUESTED_ADDRESS. */
6614 loc->address = adjust_breakpoint_address (loc->gdbarch,
6615 loc->requested_address,
6616 b->type);
6617 }
6618 else if (b->type == bp_breakpoint && b->loc == loc
6619 && loc->next == NULL && b->related_breakpoint == b)
6620 {
6621 /* Create only the whole new breakpoint of this type but do not
6622 mess more complicated breakpoints with multiple locations. */
6623 b->type = bp_gnu_ifunc_resolver;
6a3a010b
MR
6624 /* Remember the resolver's address for use by the return
6625 breakpoint. */
6626 loc->related_address = func_addr;
0e30163f
JK
6627 }
6628 }
6629
2c02bd72
DE
6630 if (function_name)
6631 loc->function_name = xstrdup (function_name);
0d381245
VP
6632 }
6633}
6634
a6d9a66e 6635/* Attempt to determine architecture of location identified by SAL. */
1bfeeb0f 6636struct gdbarch *
a6d9a66e
UW
6637get_sal_arch (struct symtab_and_line sal)
6638{
6639 if (sal.section)
6640 return get_objfile_arch (sal.section->objfile);
6641 if (sal.symtab)
6642 return get_objfile_arch (sal.symtab->objfile);
6643
6644 return NULL;
6645}
6646
346774a9
PA
6647/* Low level routine for partially initializing a breakpoint of type
6648 BPTYPE. The newly created breakpoint's address, section, source
c56053d2 6649 file name, and line number are provided by SAL.
0d381245
VP
6650
6651 It is expected that the caller will complete the initialization of
6652 the newly created breakpoint struct as well as output any status
c56053d2 6653 information regarding the creation of a new breakpoint. */
0d381245 6654
346774a9
PA
6655static void
6656init_raw_breakpoint (struct breakpoint *b, struct gdbarch *gdbarch,
28010a5d 6657 struct symtab_and_line sal, enum bptype bptype,
c0a91b2b 6658 const struct breakpoint_ops *ops)
0d381245 6659{
28010a5d 6660 init_raw_breakpoint_without_location (b, gdbarch, bptype, ops);
346774a9 6661
3742cc8b 6662 add_location_to_breakpoint (b, &sal);
0d381245 6663
6c95b8df
PA
6664 if (bptype != bp_catchpoint)
6665 gdb_assert (sal.pspace != NULL);
6666
f8eba3c6
TT
6667 /* Store the program space that was used to set the breakpoint,
6668 except for ordinary breakpoints, which are independent of the
6669 program space. */
6670 if (bptype != bp_breakpoint && bptype != bp_hardware_breakpoint)
6671 b->pspace = sal.pspace;
0d381245 6672
c906108c 6673 breakpoints_changed ();
346774a9 6674}
c906108c 6675
346774a9
PA
6676/* set_raw_breakpoint is a low level routine for allocating and
6677 partially initializing a breakpoint of type BPTYPE. The newly
6678 created breakpoint's address, section, source file name, and line
6679 number are provided by SAL. The newly created and partially
6680 initialized breakpoint is added to the breakpoint chain and
6681 is also returned as the value of this function.
6682
6683 It is expected that the caller will complete the initialization of
6684 the newly created breakpoint struct as well as output any status
6685 information regarding the creation of a new breakpoint. In
6686 particular, set_raw_breakpoint does NOT set the breakpoint
6687 number! Care should be taken to not allow an error to occur
6688 prior to completing the initialization of the breakpoint. If this
6689 should happen, a bogus breakpoint will be left on the chain. */
6690
6691struct breakpoint *
6692set_raw_breakpoint (struct gdbarch *gdbarch,
348d480f 6693 struct symtab_and_line sal, enum bptype bptype,
c0a91b2b 6694 const struct breakpoint_ops *ops)
346774a9
PA
6695{
6696 struct breakpoint *b = XNEW (struct breakpoint);
6697
348d480f 6698 init_raw_breakpoint (b, gdbarch, sal, bptype, ops);
c56053d2 6699 add_to_breakpoint_chain (b);
c906108c
SS
6700 return b;
6701}
6702
c2c6d25f
JM
6703
6704/* Note that the breakpoint object B describes a permanent breakpoint
6705 instruction, hard-wired into the inferior's code. */
6706void
6707make_breakpoint_permanent (struct breakpoint *b)
6708{
0d381245 6709 struct bp_location *bl;
cc59ec59 6710
b5de0fa7 6711 b->enable_state = bp_permanent;
c2c6d25f 6712
4a64f543
MS
6713 /* By definition, permanent breakpoints are already present in the
6714 code. Mark all locations as inserted. For now,
6715 make_breakpoint_permanent is called in just one place, so it's
6716 hard to say if it's reasonable to have permanent breakpoint with
e5dd4106 6717 multiple locations or not, but it's easy to implement. */
0d381245
VP
6718 for (bl = b->loc; bl; bl = bl->next)
6719 bl->inserted = 1;
c2c6d25f
JM
6720}
6721
53a5351d 6722/* Call this routine when stepping and nexting to enable a breakpoint
186c406b
TT
6723 if we do a longjmp() or 'throw' in TP. FRAME is the frame which
6724 initiated the operation. */
c906108c
SS
6725
6726void
186c406b 6727set_longjmp_breakpoint (struct thread_info *tp, struct frame_id frame)
c906108c 6728{
35df4500 6729 struct breakpoint *b, *b_tmp;
186c406b 6730 int thread = tp->num;
0fd8e87f
UW
6731
6732 /* To avoid having to rescan all objfile symbols at every step,
6733 we maintain a list of continually-inserted but always disabled
6734 longjmp "master" breakpoints. Here, we simply create momentary
6735 clones of those and enable them for the requested thread. */
35df4500 6736 ALL_BREAKPOINTS_SAFE (b, b_tmp)
6c95b8df 6737 if (b->pspace == current_program_space
186c406b
TT
6738 && (b->type == bp_longjmp_master
6739 || b->type == bp_exception_master))
0fd8e87f 6740 {
06edf0c0
PA
6741 enum bptype type = b->type == bp_longjmp_master ? bp_longjmp : bp_exception;
6742 struct breakpoint *clone;
cc59ec59 6743
06edf0c0
PA
6744 clone = momentary_breakpoint_from_master (b, type,
6745 &momentary_breakpoint_ops);
0fd8e87f
UW
6746 clone->thread = thread;
6747 }
186c406b
TT
6748
6749 tp->initiating_frame = frame;
c906108c
SS
6750}
6751
611c83ae 6752/* Delete all longjmp breakpoints from THREAD. */
c906108c 6753void
611c83ae 6754delete_longjmp_breakpoint (int thread)
c906108c 6755{
35df4500 6756 struct breakpoint *b, *b_tmp;
c906108c 6757
35df4500 6758 ALL_BREAKPOINTS_SAFE (b, b_tmp)
186c406b 6759 if (b->type == bp_longjmp || b->type == bp_exception)
611c83ae
PA
6760 {
6761 if (b->thread == thread)
6762 delete_breakpoint (b);
6763 }
c906108c
SS
6764}
6765
f59f708a
PA
6766void
6767delete_longjmp_breakpoint_at_next_stop (int thread)
6768{
6769 struct breakpoint *b, *b_tmp;
6770
6771 ALL_BREAKPOINTS_SAFE (b, b_tmp)
6772 if (b->type == bp_longjmp || b->type == bp_exception)
6773 {
6774 if (b->thread == thread)
6775 b->disposition = disp_del_at_next_stop;
6776 }
6777}
6778
1900040c
MS
6779void
6780enable_overlay_breakpoints (void)
6781{
52f0bd74 6782 struct breakpoint *b;
1900040c
MS
6783
6784 ALL_BREAKPOINTS (b)
6785 if (b->type == bp_overlay_event)
6786 {
6787 b->enable_state = bp_enabled;
b60e7edf 6788 update_global_location_list (1);
c02f5703 6789 overlay_events_enabled = 1;
1900040c
MS
6790 }
6791}
6792
6793void
6794disable_overlay_breakpoints (void)
6795{
52f0bd74 6796 struct breakpoint *b;
1900040c
MS
6797
6798 ALL_BREAKPOINTS (b)
6799 if (b->type == bp_overlay_event)
6800 {
6801 b->enable_state = bp_disabled;
b60e7edf 6802 update_global_location_list (0);
c02f5703 6803 overlay_events_enabled = 0;
1900040c
MS
6804 }
6805}
6806
aa7d318d
TT
6807/* Set an active std::terminate breakpoint for each std::terminate
6808 master breakpoint. */
6809void
6810set_std_terminate_breakpoint (void)
6811{
35df4500 6812 struct breakpoint *b, *b_tmp;
aa7d318d 6813
35df4500 6814 ALL_BREAKPOINTS_SAFE (b, b_tmp)
aa7d318d
TT
6815 if (b->pspace == current_program_space
6816 && b->type == bp_std_terminate_master)
6817 {
06edf0c0
PA
6818 momentary_breakpoint_from_master (b, bp_std_terminate,
6819 &momentary_breakpoint_ops);
aa7d318d
TT
6820 }
6821}
6822
6823/* Delete all the std::terminate breakpoints. */
6824void
6825delete_std_terminate_breakpoint (void)
6826{
35df4500 6827 struct breakpoint *b, *b_tmp;
aa7d318d 6828
35df4500 6829 ALL_BREAKPOINTS_SAFE (b, b_tmp)
aa7d318d
TT
6830 if (b->type == bp_std_terminate)
6831 delete_breakpoint (b);
6832}
6833
c4093a6a 6834struct breakpoint *
a6d9a66e 6835create_thread_event_breakpoint (struct gdbarch *gdbarch, CORE_ADDR address)
c4093a6a
JM
6836{
6837 struct breakpoint *b;
c4093a6a 6838
06edf0c0
PA
6839 b = create_internal_breakpoint (gdbarch, address, bp_thread_event,
6840 &internal_breakpoint_ops);
6841
b5de0fa7 6842 b->enable_state = bp_enabled;
c4093a6a 6843 /* addr_string has to be used or breakpoint_re_set will delete me. */
5af949e3
UW
6844 b->addr_string
6845 = xstrprintf ("*%s", paddress (b->loc->gdbarch, b->loc->address));
c4093a6a 6846
b60e7edf 6847 update_global_location_list_nothrow (1);
74960c60 6848
c4093a6a
JM
6849 return b;
6850}
6851
6852void
6853remove_thread_event_breakpoints (void)
6854{
35df4500 6855 struct breakpoint *b, *b_tmp;
c4093a6a 6856
35df4500 6857 ALL_BREAKPOINTS_SAFE (b, b_tmp)
6c95b8df
PA
6858 if (b->type == bp_thread_event
6859 && b->loc->pspace == current_program_space)
c4093a6a
JM
6860 delete_breakpoint (b);
6861}
6862
0101ce28
JJ
6863struct lang_and_radix
6864 {
6865 enum language lang;
6866 int radix;
6867 };
6868
4efc6507
DE
6869/* Create a breakpoint for JIT code registration and unregistration. */
6870
6871struct breakpoint *
6872create_jit_event_breakpoint (struct gdbarch *gdbarch, CORE_ADDR address)
6873{
6874 struct breakpoint *b;
6875
06edf0c0
PA
6876 b = create_internal_breakpoint (gdbarch, address, bp_jit_event,
6877 &internal_breakpoint_ops);
4efc6507
DE
6878 update_global_location_list_nothrow (1);
6879 return b;
6880}
0101ce28 6881
03673fc7
PP
6882/* Remove JIT code registration and unregistration breakpoint(s). */
6883
6884void
6885remove_jit_event_breakpoints (void)
6886{
6887 struct breakpoint *b, *b_tmp;
6888
6889 ALL_BREAKPOINTS_SAFE (b, b_tmp)
6890 if (b->type == bp_jit_event
6891 && b->loc->pspace == current_program_space)
6892 delete_breakpoint (b);
6893}
6894
cae688ec
JJ
6895void
6896remove_solib_event_breakpoints (void)
6897{
35df4500 6898 struct breakpoint *b, *b_tmp;
cae688ec 6899
35df4500 6900 ALL_BREAKPOINTS_SAFE (b, b_tmp)
6c95b8df
PA
6901 if (b->type == bp_shlib_event
6902 && b->loc->pspace == current_program_space)
cae688ec
JJ
6903 delete_breakpoint (b);
6904}
6905
6906struct breakpoint *
a6d9a66e 6907create_solib_event_breakpoint (struct gdbarch *gdbarch, CORE_ADDR address)
cae688ec
JJ
6908{
6909 struct breakpoint *b;
6910
06edf0c0
PA
6911 b = create_internal_breakpoint (gdbarch, address, bp_shlib_event,
6912 &internal_breakpoint_ops);
b60e7edf 6913 update_global_location_list_nothrow (1);
cae688ec
JJ
6914 return b;
6915}
6916
6917/* Disable any breakpoints that are on code in shared libraries. Only
6918 apply to enabled breakpoints, disabled ones can just stay disabled. */
6919
6920void
cb851954 6921disable_breakpoints_in_shlibs (void)
cae688ec 6922{
876fa593 6923 struct bp_location *loc, **locp_tmp;
cae688ec 6924
876fa593 6925 ALL_BP_LOCATIONS (loc, locp_tmp)
cae688ec 6926 {
2bdf28a0 6927 /* ALL_BP_LOCATIONS bp_location has LOC->OWNER always non-NULL. */
0d381245 6928 struct breakpoint *b = loc->owner;
2bdf28a0 6929
4a64f543
MS
6930 /* We apply the check to all breakpoints, including disabled for
6931 those with loc->duplicate set. This is so that when breakpoint
6932 becomes enabled, or the duplicate is removed, gdb will try to
6933 insert all breakpoints. If we don't set shlib_disabled here,
6934 we'll try to insert those breakpoints and fail. */
1042e4c0 6935 if (((b->type == bp_breakpoint)
508ccb1f 6936 || (b->type == bp_jit_event)
1042e4c0 6937 || (b->type == bp_hardware_breakpoint)
d77f58be 6938 || (is_tracepoint (b)))
6c95b8df 6939 && loc->pspace == current_program_space
0d381245 6940 && !loc->shlib_disabled
a77053c2 6941#ifdef PC_SOLIB
0d381245 6942 && PC_SOLIB (loc->address)
a77053c2 6943#else
6c95b8df 6944 && solib_name_from_address (loc->pspace, loc->address)
a77053c2
MK
6945#endif
6946 )
0d381245
VP
6947 {
6948 loc->shlib_disabled = 1;
6949 }
cae688ec
JJ
6950 }
6951}
6952
1e4d1764
YQ
6953/* Disable any breakpoints and tracepoints that are in an unloaded shared
6954 library. Only apply to enabled breakpoints, disabled ones can just stay
4a64f543 6955 disabled. */
84acb35a 6956
75149521 6957static void
84acb35a
JJ
6958disable_breakpoints_in_unloaded_shlib (struct so_list *solib)
6959{
876fa593 6960 struct bp_location *loc, **locp_tmp;
84acb35a
JJ
6961 int disabled_shlib_breaks = 0;
6962
c86cf029
VP
6963 /* SunOS a.out shared libraries are always mapped, so do not
6964 disable breakpoints; they will only be reported as unloaded
6965 through clear_solib when GDB discards its shared library
6966 list. See clear_solib for more information. */
6967 if (exec_bfd != NULL
6968 && bfd_get_flavour (exec_bfd) == bfd_target_aout_flavour)
6969 return;
6970
876fa593 6971 ALL_BP_LOCATIONS (loc, locp_tmp)
84acb35a 6972 {
2bdf28a0 6973 /* ALL_BP_LOCATIONS bp_location has LOC->OWNER always non-NULL. */
0d381245 6974 struct breakpoint *b = loc->owner;
cc59ec59 6975
1e4d1764 6976 if (solib->pspace == loc->pspace
e2dd7057 6977 && !loc->shlib_disabled
1e4d1764
YQ
6978 && (((b->type == bp_breakpoint
6979 || b->type == bp_jit_event
6980 || b->type == bp_hardware_breakpoint)
6981 && (loc->loc_type == bp_loc_hardware_breakpoint
6982 || loc->loc_type == bp_loc_software_breakpoint))
6983 || is_tracepoint (b))
e2dd7057 6984 && solib_contains_address_p (solib, loc->address))
84acb35a 6985 {
e2dd7057
PP
6986 loc->shlib_disabled = 1;
6987 /* At this point, we cannot rely on remove_breakpoint
6988 succeeding so we must mark the breakpoint as not inserted
6989 to prevent future errors occurring in remove_breakpoints. */
6990 loc->inserted = 0;
8d3788bd
VP
6991
6992 /* This may cause duplicate notifications for the same breakpoint. */
6993 observer_notify_breakpoint_modified (b);
6994
e2dd7057
PP
6995 if (!disabled_shlib_breaks)
6996 {
6997 target_terminal_ours_for_output ();
3e43a32a
MS
6998 warning (_("Temporarily disabling breakpoints "
6999 "for unloaded shared library \"%s\""),
e2dd7057 7000 solib->so_name);
84acb35a 7001 }
e2dd7057 7002 disabled_shlib_breaks = 1;
84acb35a
JJ
7003 }
7004 }
84acb35a
JJ
7005}
7006
ce78b96d
JB
7007/* FORK & VFORK catchpoints. */
7008
e29a4733
PA
7009/* An instance of this type is used to represent a fork or vfork
7010 catchpoint. It includes a "struct breakpoint" as a kind of base
7011 class; users downcast to "struct breakpoint *" when needed. A
7012 breakpoint is really of this type iff its ops pointer points to
7013 CATCH_FORK_BREAKPOINT_OPS. */
7014
7015struct fork_catchpoint
7016{
7017 /* The base class. */
7018 struct breakpoint base;
7019
7020 /* Process id of a child process whose forking triggered this
7021 catchpoint. This field is only valid immediately after this
7022 catchpoint has triggered. */
7023 ptid_t forked_inferior_pid;
7024};
7025
4a64f543
MS
7026/* Implement the "insert" breakpoint_ops method for fork
7027 catchpoints. */
ce78b96d 7028
77b06cd7
TJB
7029static int
7030insert_catch_fork (struct bp_location *bl)
ce78b96d 7031{
77b06cd7 7032 return target_insert_fork_catchpoint (PIDGET (inferior_ptid));
ce78b96d
JB
7033}
7034
4a64f543
MS
7035/* Implement the "remove" breakpoint_ops method for fork
7036 catchpoints. */
ce78b96d
JB
7037
7038static int
77b06cd7 7039remove_catch_fork (struct bp_location *bl)
ce78b96d
JB
7040{
7041 return target_remove_fork_catchpoint (PIDGET (inferior_ptid));
7042}
7043
7044/* Implement the "breakpoint_hit" breakpoint_ops method for fork
7045 catchpoints. */
7046
7047static int
f1310107 7048breakpoint_hit_catch_fork (const struct bp_location *bl,
09ac7c10
TT
7049 struct address_space *aspace, CORE_ADDR bp_addr,
7050 const struct target_waitstatus *ws)
ce78b96d 7051{
e29a4733
PA
7052 struct fork_catchpoint *c = (struct fork_catchpoint *) bl->owner;
7053
f90263c1
TT
7054 if (ws->kind != TARGET_WAITKIND_FORKED)
7055 return 0;
7056
7057 c->forked_inferior_pid = ws->value.related_pid;
7058 return 1;
ce78b96d
JB
7059}
7060
4a64f543
MS
7061/* Implement the "print_it" breakpoint_ops method for fork
7062 catchpoints. */
ce78b96d
JB
7063
7064static enum print_stop_action
348d480f 7065print_it_catch_fork (bpstat bs)
ce78b96d 7066{
36dfb11c 7067 struct ui_out *uiout = current_uiout;
348d480f
PA
7068 struct breakpoint *b = bs->breakpoint_at;
7069 struct fork_catchpoint *c = (struct fork_catchpoint *) bs->breakpoint_at;
e29a4733 7070
ce78b96d 7071 annotate_catchpoint (b->number);
36dfb11c
TT
7072 if (b->disposition == disp_del)
7073 ui_out_text (uiout, "\nTemporary catchpoint ");
7074 else
7075 ui_out_text (uiout, "\nCatchpoint ");
7076 if (ui_out_is_mi_like_p (uiout))
7077 {
7078 ui_out_field_string (uiout, "reason",
7079 async_reason_lookup (EXEC_ASYNC_FORK));
7080 ui_out_field_string (uiout, "disp", bpdisp_text (b->disposition));
7081 }
7082 ui_out_field_int (uiout, "bkptno", b->number);
7083 ui_out_text (uiout, " (forked process ");
7084 ui_out_field_int (uiout, "newpid", ptid_get_pid (c->forked_inferior_pid));
7085 ui_out_text (uiout, "), ");
ce78b96d
JB
7086 return PRINT_SRC_AND_LOC;
7087}
7088
4a64f543
MS
7089/* Implement the "print_one" breakpoint_ops method for fork
7090 catchpoints. */
ce78b96d
JB
7091
7092static void
a6d9a66e 7093print_one_catch_fork (struct breakpoint *b, struct bp_location **last_loc)
ce78b96d 7094{
e29a4733 7095 struct fork_catchpoint *c = (struct fork_catchpoint *) b;
79a45b7d 7096 struct value_print_options opts;
79a45e25 7097 struct ui_out *uiout = current_uiout;
79a45b7d
TT
7098
7099 get_user_print_options (&opts);
7100
4a64f543
MS
7101 /* Field 4, the address, is omitted (which makes the columns not
7102 line up too nicely with the headers, but the effect is relatively
7103 readable). */
79a45b7d 7104 if (opts.addressprint)
ce78b96d
JB
7105 ui_out_field_skip (uiout, "addr");
7106 annotate_field (5);
7107 ui_out_text (uiout, "fork");
e29a4733 7108 if (!ptid_equal (c->forked_inferior_pid, null_ptid))
ce78b96d
JB
7109 {
7110 ui_out_text (uiout, ", process ");
7111 ui_out_field_int (uiout, "what",
e29a4733 7112 ptid_get_pid (c->forked_inferior_pid));
ce78b96d
JB
7113 ui_out_spaces (uiout, 1);
7114 }
7115}
7116
7117/* Implement the "print_mention" breakpoint_ops method for fork
7118 catchpoints. */
7119
7120static void
7121print_mention_catch_fork (struct breakpoint *b)
7122{
7123 printf_filtered (_("Catchpoint %d (fork)"), b->number);
7124}
7125
6149aea9
PA
7126/* Implement the "print_recreate" breakpoint_ops method for fork
7127 catchpoints. */
7128
7129static void
7130print_recreate_catch_fork (struct breakpoint *b, struct ui_file *fp)
7131{
7132 fprintf_unfiltered (fp, "catch fork");
d9b3f62e 7133 print_recreate_thread (b, fp);
6149aea9
PA
7134}
7135
ce78b96d
JB
7136/* The breakpoint_ops structure to be used in fork catchpoints. */
7137
2060206e 7138static struct breakpoint_ops catch_fork_breakpoint_ops;
ce78b96d 7139
4a64f543
MS
7140/* Implement the "insert" breakpoint_ops method for vfork
7141 catchpoints. */
ce78b96d 7142
77b06cd7
TJB
7143static int
7144insert_catch_vfork (struct bp_location *bl)
ce78b96d 7145{
77b06cd7 7146 return target_insert_vfork_catchpoint (PIDGET (inferior_ptid));
ce78b96d
JB
7147}
7148
4a64f543
MS
7149/* Implement the "remove" breakpoint_ops method for vfork
7150 catchpoints. */
ce78b96d
JB
7151
7152static int
77b06cd7 7153remove_catch_vfork (struct bp_location *bl)
ce78b96d
JB
7154{
7155 return target_remove_vfork_catchpoint (PIDGET (inferior_ptid));
7156}
7157
7158/* Implement the "breakpoint_hit" breakpoint_ops method for vfork
7159 catchpoints. */
7160
7161static int
f1310107 7162breakpoint_hit_catch_vfork (const struct bp_location *bl,
09ac7c10
TT
7163 struct address_space *aspace, CORE_ADDR bp_addr,
7164 const struct target_waitstatus *ws)
ce78b96d 7165{
e29a4733
PA
7166 struct fork_catchpoint *c = (struct fork_catchpoint *) bl->owner;
7167
f90263c1
TT
7168 if (ws->kind != TARGET_WAITKIND_VFORKED)
7169 return 0;
7170
7171 c->forked_inferior_pid = ws->value.related_pid;
7172 return 1;
ce78b96d
JB
7173}
7174
4a64f543
MS
7175/* Implement the "print_it" breakpoint_ops method for vfork
7176 catchpoints. */
ce78b96d
JB
7177
7178static enum print_stop_action
348d480f 7179print_it_catch_vfork (bpstat bs)
ce78b96d 7180{
36dfb11c 7181 struct ui_out *uiout = current_uiout;
348d480f 7182 struct breakpoint *b = bs->breakpoint_at;
e29a4733
PA
7183 struct fork_catchpoint *c = (struct fork_catchpoint *) b;
7184
ce78b96d 7185 annotate_catchpoint (b->number);
36dfb11c
TT
7186 if (b->disposition == disp_del)
7187 ui_out_text (uiout, "\nTemporary catchpoint ");
7188 else
7189 ui_out_text (uiout, "\nCatchpoint ");
7190 if (ui_out_is_mi_like_p (uiout))
7191 {
7192 ui_out_field_string (uiout, "reason",
7193 async_reason_lookup (EXEC_ASYNC_VFORK));
7194 ui_out_field_string (uiout, "disp", bpdisp_text (b->disposition));
7195 }
7196 ui_out_field_int (uiout, "bkptno", b->number);
7197 ui_out_text (uiout, " (vforked process ");
7198 ui_out_field_int (uiout, "newpid", ptid_get_pid (c->forked_inferior_pid));
7199 ui_out_text (uiout, "), ");
ce78b96d
JB
7200 return PRINT_SRC_AND_LOC;
7201}
7202
4a64f543
MS
7203/* Implement the "print_one" breakpoint_ops method for vfork
7204 catchpoints. */
ce78b96d
JB
7205
7206static void
a6d9a66e 7207print_one_catch_vfork (struct breakpoint *b, struct bp_location **last_loc)
ce78b96d 7208{
e29a4733 7209 struct fork_catchpoint *c = (struct fork_catchpoint *) b;
79a45b7d 7210 struct value_print_options opts;
79a45e25 7211 struct ui_out *uiout = current_uiout;
79a45b7d
TT
7212
7213 get_user_print_options (&opts);
4a64f543
MS
7214 /* Field 4, the address, is omitted (which makes the columns not
7215 line up too nicely with the headers, but the effect is relatively
7216 readable). */
79a45b7d 7217 if (opts.addressprint)
ce78b96d
JB
7218 ui_out_field_skip (uiout, "addr");
7219 annotate_field (5);
7220 ui_out_text (uiout, "vfork");
e29a4733 7221 if (!ptid_equal (c->forked_inferior_pid, null_ptid))
ce78b96d
JB
7222 {
7223 ui_out_text (uiout, ", process ");
7224 ui_out_field_int (uiout, "what",
e29a4733 7225 ptid_get_pid (c->forked_inferior_pid));
ce78b96d
JB
7226 ui_out_spaces (uiout, 1);
7227 }
7228}
7229
7230/* Implement the "print_mention" breakpoint_ops method for vfork
7231 catchpoints. */
7232
7233static void
7234print_mention_catch_vfork (struct breakpoint *b)
7235{
7236 printf_filtered (_("Catchpoint %d (vfork)"), b->number);
7237}
7238
6149aea9
PA
7239/* Implement the "print_recreate" breakpoint_ops method for vfork
7240 catchpoints. */
7241
7242static void
7243print_recreate_catch_vfork (struct breakpoint *b, struct ui_file *fp)
7244{
7245 fprintf_unfiltered (fp, "catch vfork");
d9b3f62e 7246 print_recreate_thread (b, fp);
6149aea9
PA
7247}
7248
ce78b96d
JB
7249/* The breakpoint_ops structure to be used in vfork catchpoints. */
7250
2060206e 7251static struct breakpoint_ops catch_vfork_breakpoint_ops;
ce78b96d 7252
edcc5120
TT
7253/* An instance of this type is used to represent an solib catchpoint.
7254 It includes a "struct breakpoint" as a kind of base class; users
7255 downcast to "struct breakpoint *" when needed. A breakpoint is
7256 really of this type iff its ops pointer points to
7257 CATCH_SOLIB_BREAKPOINT_OPS. */
7258
7259struct solib_catchpoint
7260{
7261 /* The base class. */
7262 struct breakpoint base;
7263
7264 /* True for "catch load", false for "catch unload". */
7265 unsigned char is_load;
7266
7267 /* Regular expression to match, if any. COMPILED is only valid when
7268 REGEX is non-NULL. */
7269 char *regex;
7270 regex_t compiled;
7271};
7272
7273static void
7274dtor_catch_solib (struct breakpoint *b)
7275{
7276 struct solib_catchpoint *self = (struct solib_catchpoint *) b;
7277
7278 if (self->regex)
7279 regfree (&self->compiled);
7280 xfree (self->regex);
7281
7282 base_breakpoint_ops.dtor (b);
7283}
7284
7285static int
7286insert_catch_solib (struct bp_location *ignore)
7287{
7288 return 0;
7289}
7290
7291static int
7292remove_catch_solib (struct bp_location *ignore)
7293{
7294 return 0;
7295}
7296
7297static int
7298breakpoint_hit_catch_solib (const struct bp_location *bl,
7299 struct address_space *aspace,
7300 CORE_ADDR bp_addr,
7301 const struct target_waitstatus *ws)
7302{
7303 struct solib_catchpoint *self = (struct solib_catchpoint *) bl->owner;
7304 struct breakpoint *other;
7305
7306 if (ws->kind == TARGET_WAITKIND_LOADED)
7307 return 1;
7308
7309 ALL_BREAKPOINTS (other)
7310 {
7311 struct bp_location *other_bl;
7312
7313 if (other == bl->owner)
7314 continue;
7315
7316 if (other->type != bp_shlib_event)
7317 continue;
7318
7319 if (self->base.pspace != NULL && other->pspace != self->base.pspace)
7320 continue;
7321
7322 for (other_bl = other->loc; other_bl != NULL; other_bl = other_bl->next)
7323 {
7324 if (other->ops->breakpoint_hit (other_bl, aspace, bp_addr, ws))
7325 return 1;
7326 }
7327 }
7328
7329 return 0;
7330}
7331
7332static void
7333check_status_catch_solib (struct bpstats *bs)
7334{
7335 struct solib_catchpoint *self
7336 = (struct solib_catchpoint *) bs->breakpoint_at;
7337 int ix;
7338
7339 if (self->is_load)
7340 {
7341 struct so_list *iter;
7342
7343 for (ix = 0;
7344 VEC_iterate (so_list_ptr, current_program_space->added_solibs,
7345 ix, iter);
7346 ++ix)
7347 {
7348 if (!self->regex
7349 || regexec (&self->compiled, iter->so_name, 0, NULL, 0) == 0)
7350 return;
7351 }
7352 }
7353 else
7354 {
7355 char *iter;
7356
7357 for (ix = 0;
7358 VEC_iterate (char_ptr, current_program_space->deleted_solibs,
7359 ix, iter);
7360 ++ix)
7361 {
7362 if (!self->regex
7363 || regexec (&self->compiled, iter, 0, NULL, 0) == 0)
7364 return;
7365 }
7366 }
7367
7368 bs->stop = 0;
7369 bs->print_it = print_it_noop;
7370}
7371
7372static enum print_stop_action
7373print_it_catch_solib (bpstat bs)
7374{
7375 struct breakpoint *b = bs->breakpoint_at;
7376 struct ui_out *uiout = current_uiout;
7377
7378 annotate_catchpoint (b->number);
7379 if (b->disposition == disp_del)
7380 ui_out_text (uiout, "\nTemporary catchpoint ");
7381 else
7382 ui_out_text (uiout, "\nCatchpoint ");
7383 ui_out_field_int (uiout, "bkptno", b->number);
7384 ui_out_text (uiout, "\n");
7385 if (ui_out_is_mi_like_p (uiout))
7386 ui_out_field_string (uiout, "disp", bpdisp_text (b->disposition));
7387 print_solib_event (1);
7388 return PRINT_SRC_AND_LOC;
7389}
7390
7391static void
7392print_one_catch_solib (struct breakpoint *b, struct bp_location **locs)
7393{
7394 struct solib_catchpoint *self = (struct solib_catchpoint *) b;
7395 struct value_print_options opts;
7396 struct ui_out *uiout = current_uiout;
7397 char *msg;
7398
7399 get_user_print_options (&opts);
7400 /* Field 4, the address, is omitted (which makes the columns not
7401 line up too nicely with the headers, but the effect is relatively
7402 readable). */
7403 if (opts.addressprint)
7404 {
7405 annotate_field (4);
7406 ui_out_field_skip (uiout, "addr");
7407 }
7408
7409 annotate_field (5);
7410 if (self->is_load)
7411 {
7412 if (self->regex)
7413 msg = xstrprintf (_("load of library matching %s"), self->regex);
7414 else
7415 msg = xstrdup (_("load of library"));
7416 }
7417 else
7418 {
7419 if (self->regex)
7420 msg = xstrprintf (_("unload of library matching %s"), self->regex);
7421 else
7422 msg = xstrdup (_("unload of library"));
7423 }
7424 ui_out_field_string (uiout, "what", msg);
7425 xfree (msg);
7426}
7427
7428static void
7429print_mention_catch_solib (struct breakpoint *b)
7430{
7431 struct solib_catchpoint *self = (struct solib_catchpoint *) b;
7432
7433 printf_filtered (_("Catchpoint %d (%s)"), b->number,
7434 self->is_load ? "load" : "unload");
7435}
7436
7437static void
7438print_recreate_catch_solib (struct breakpoint *b, struct ui_file *fp)
7439{
7440 struct solib_catchpoint *self = (struct solib_catchpoint *) b;
7441
7442 fprintf_unfiltered (fp, "%s %s",
7443 b->disposition == disp_del ? "tcatch" : "catch",
7444 self->is_load ? "load" : "unload");
7445 if (self->regex)
7446 fprintf_unfiltered (fp, " %s", self->regex);
7447 fprintf_unfiltered (fp, "\n");
7448}
7449
7450static struct breakpoint_ops catch_solib_breakpoint_ops;
7451
7452/* A helper function that does all the work for "catch load" and
7453 "catch unload". */
7454
7455static void
7456catch_load_or_unload (char *arg, int from_tty, int is_load,
7457 struct cmd_list_element *command)
7458{
7459 struct solib_catchpoint *c;
7460 struct gdbarch *gdbarch = get_current_arch ();
7461 int tempflag;
edcc5120
TT
7462 struct cleanup *cleanup;
7463
7464 tempflag = get_cmd_context (command) == CATCH_TEMPORARY;
7465
7466 if (!arg)
7467 arg = "";
7468 arg = skip_spaces (arg);
7469
7470 c = XCNEW (struct solib_catchpoint);
7471 cleanup = make_cleanup (xfree, c);
7472
7473 if (*arg != '\0')
7474 {
7475 int errcode;
7476
7477 errcode = regcomp (&c->compiled, arg, REG_NOSUB);
7478 if (errcode != 0)
7479 {
7480 char *err = get_regcomp_error (errcode, &c->compiled);
7481
7482 make_cleanup (xfree, err);
7483 error (_("Invalid regexp (%s): %s"), err, arg);
7484 }
7485 c->regex = xstrdup (arg);
7486 }
7487
7488 c->is_load = is_load;
7489 init_catchpoint (&c->base, gdbarch, tempflag, NULL,
7490 &catch_solib_breakpoint_ops);
7491
7492 discard_cleanups (cleanup);
7493 install_breakpoint (0, &c->base, 1);
7494}
7495
7496static void
7497catch_load_command_1 (char *arg, int from_tty,
7498 struct cmd_list_element *command)
7499{
7500 catch_load_or_unload (arg, from_tty, 1, command);
7501}
7502
7503static void
7504catch_unload_command_1 (char *arg, int from_tty,
7505 struct cmd_list_element *command)
7506{
7507 catch_load_or_unload (arg, from_tty, 0, command);
7508}
7509
fa3064dd
YQ
7510DEF_VEC_I(int);
7511
be5c67c1
PA
7512/* An instance of this type is used to represent a syscall catchpoint.
7513 It includes a "struct breakpoint" as a kind of base class; users
7514 downcast to "struct breakpoint *" when needed. A breakpoint is
7515 really of this type iff its ops pointer points to
7516 CATCH_SYSCALL_BREAKPOINT_OPS. */
7517
7518struct syscall_catchpoint
7519{
7520 /* The base class. */
7521 struct breakpoint base;
7522
7523 /* Syscall numbers used for the 'catch syscall' feature. If no
7524 syscall has been specified for filtering, its value is NULL.
7525 Otherwise, it holds a list of all syscalls to be caught. The
7526 list elements are allocated with xmalloc. */
7527 VEC(int) *syscalls_to_be_caught;
7528};
7529
7530/* Implement the "dtor" breakpoint_ops method for syscall
7531 catchpoints. */
7532
7533static void
7534dtor_catch_syscall (struct breakpoint *b)
7535{
7536 struct syscall_catchpoint *c = (struct syscall_catchpoint *) b;
7537
7538 VEC_free (int, c->syscalls_to_be_caught);
348d480f 7539
2060206e 7540 base_breakpoint_ops.dtor (b);
be5c67c1
PA
7541}
7542
fa3064dd
YQ
7543static const struct inferior_data *catch_syscall_inferior_data = NULL;
7544
7545struct catch_syscall_inferior_data
7546{
7547 /* We keep a count of the number of times the user has requested a
7548 particular syscall to be tracked, and pass this information to the
7549 target. This lets capable targets implement filtering directly. */
7550
7551 /* Number of times that "any" syscall is requested. */
7552 int any_syscall_count;
7553
7554 /* Count of each system call. */
7555 VEC(int) *syscalls_counts;
7556
7557 /* This counts all syscall catch requests, so we can readily determine
7558 if any catching is necessary. */
7559 int total_syscalls_count;
7560};
7561
7562static struct catch_syscall_inferior_data*
7563get_catch_syscall_inferior_data (struct inferior *inf)
7564{
7565 struct catch_syscall_inferior_data *inf_data;
7566
7567 inf_data = inferior_data (inf, catch_syscall_inferior_data);
7568 if (inf_data == NULL)
7569 {
7570 inf_data = XZALLOC (struct catch_syscall_inferior_data);
7571 set_inferior_data (inf, catch_syscall_inferior_data, inf_data);
7572 }
7573
7574 return inf_data;
7575}
7576
7577static void
7578catch_syscall_inferior_data_cleanup (struct inferior *inf, void *arg)
7579{
7580 xfree (arg);
7581}
7582
7583
a96d9b2e
SDJ
7584/* Implement the "insert" breakpoint_ops method for syscall
7585 catchpoints. */
7586
77b06cd7
TJB
7587static int
7588insert_catch_syscall (struct bp_location *bl)
a96d9b2e 7589{
be5c67c1 7590 struct syscall_catchpoint *c = (struct syscall_catchpoint *) bl->owner;
a96d9b2e 7591 struct inferior *inf = current_inferior ();
fa3064dd
YQ
7592 struct catch_syscall_inferior_data *inf_data
7593 = get_catch_syscall_inferior_data (inf);
a96d9b2e 7594
fa3064dd 7595 ++inf_data->total_syscalls_count;
be5c67c1 7596 if (!c->syscalls_to_be_caught)
fa3064dd 7597 ++inf_data->any_syscall_count;
a96d9b2e
SDJ
7598 else
7599 {
7600 int i, iter;
cc59ec59 7601
a96d9b2e 7602 for (i = 0;
be5c67c1 7603 VEC_iterate (int, c->syscalls_to_be_caught, i, iter);
a96d9b2e
SDJ
7604 i++)
7605 {
7606 int elem;
cc59ec59 7607
fa3064dd 7608 if (iter >= VEC_length (int, inf_data->syscalls_counts))
a96d9b2e 7609 {
fa3064dd 7610 int old_size = VEC_length (int, inf_data->syscalls_counts);
3e43a32a
MS
7611 uintptr_t vec_addr_offset
7612 = old_size * ((uintptr_t) sizeof (int));
a96d9b2e 7613 uintptr_t vec_addr;
fa3064dd
YQ
7614 VEC_safe_grow (int, inf_data->syscalls_counts, iter + 1);
7615 vec_addr = ((uintptr_t) VEC_address (int,
7616 inf_data->syscalls_counts)
7617 + vec_addr_offset);
a96d9b2e
SDJ
7618 memset ((void *) vec_addr, 0,
7619 (iter + 1 - old_size) * sizeof (int));
7620 }
fa3064dd
YQ
7621 elem = VEC_index (int, inf_data->syscalls_counts, iter);
7622 VEC_replace (int, inf_data->syscalls_counts, iter, ++elem);
a96d9b2e
SDJ
7623 }
7624 }
7625
77b06cd7 7626 return target_set_syscall_catchpoint (PIDGET (inferior_ptid),
fa3064dd
YQ
7627 inf_data->total_syscalls_count != 0,
7628 inf_data->any_syscall_count,
7629 VEC_length (int,
7630 inf_data->syscalls_counts),
7631 VEC_address (int,
7632 inf_data->syscalls_counts));
a96d9b2e
SDJ
7633}
7634
7635/* Implement the "remove" breakpoint_ops method for syscall
7636 catchpoints. */
7637
7638static int
77b06cd7 7639remove_catch_syscall (struct bp_location *bl)
a96d9b2e 7640{
be5c67c1 7641 struct syscall_catchpoint *c = (struct syscall_catchpoint *) bl->owner;
a96d9b2e 7642 struct inferior *inf = current_inferior ();
fa3064dd
YQ
7643 struct catch_syscall_inferior_data *inf_data
7644 = get_catch_syscall_inferior_data (inf);
a96d9b2e 7645
fa3064dd 7646 --inf_data->total_syscalls_count;
be5c67c1 7647 if (!c->syscalls_to_be_caught)
fa3064dd 7648 --inf_data->any_syscall_count;
a96d9b2e
SDJ
7649 else
7650 {
7651 int i, iter;
cc59ec59 7652
a96d9b2e 7653 for (i = 0;
be5c67c1 7654 VEC_iterate (int, c->syscalls_to_be_caught, i, iter);
a96d9b2e
SDJ
7655 i++)
7656 {
7657 int elem;
fa3064dd 7658 if (iter >= VEC_length (int, inf_data->syscalls_counts))
a96d9b2e
SDJ
7659 /* Shouldn't happen. */
7660 continue;
fa3064dd
YQ
7661 elem = VEC_index (int, inf_data->syscalls_counts, iter);
7662 VEC_replace (int, inf_data->syscalls_counts, iter, --elem);
a96d9b2e
SDJ
7663 }
7664 }
7665
7666 return target_set_syscall_catchpoint (PIDGET (inferior_ptid),
fa3064dd
YQ
7667 inf_data->total_syscalls_count != 0,
7668 inf_data->any_syscall_count,
7669 VEC_length (int,
7670 inf_data->syscalls_counts),
3e43a32a 7671 VEC_address (int,
fa3064dd 7672 inf_data->syscalls_counts));
a96d9b2e
SDJ
7673}
7674
7675/* Implement the "breakpoint_hit" breakpoint_ops method for syscall
7676 catchpoints. */
7677
7678static int
f1310107 7679breakpoint_hit_catch_syscall (const struct bp_location *bl,
09ac7c10
TT
7680 struct address_space *aspace, CORE_ADDR bp_addr,
7681 const struct target_waitstatus *ws)
a96d9b2e 7682{
4a64f543
MS
7683 /* We must check if we are catching specific syscalls in this
7684 breakpoint. If we are, then we must guarantee that the called
7685 syscall is the same syscall we are catching. */
a96d9b2e 7686 int syscall_number = 0;
be5c67c1
PA
7687 const struct syscall_catchpoint *c
7688 = (const struct syscall_catchpoint *) bl->owner;
a96d9b2e 7689
f90263c1
TT
7690 if (ws->kind != TARGET_WAITKIND_SYSCALL_ENTRY
7691 && ws->kind != TARGET_WAITKIND_SYSCALL_RETURN)
a96d9b2e
SDJ
7692 return 0;
7693
f90263c1
TT
7694 syscall_number = ws->value.syscall_number;
7695
a96d9b2e 7696 /* Now, checking if the syscall is the same. */
be5c67c1 7697 if (c->syscalls_to_be_caught)
a96d9b2e
SDJ
7698 {
7699 int i, iter;
cc59ec59 7700
a96d9b2e 7701 for (i = 0;
be5c67c1 7702 VEC_iterate (int, c->syscalls_to_be_caught, i, iter);
a96d9b2e
SDJ
7703 i++)
7704 if (syscall_number == iter)
7705 break;
7706 /* Not the same. */
7707 if (!iter)
7708 return 0;
7709 }
7710
7711 return 1;
7712}
7713
7714/* Implement the "print_it" breakpoint_ops method for syscall
7715 catchpoints. */
7716
7717static enum print_stop_action
348d480f 7718print_it_catch_syscall (bpstat bs)
a96d9b2e 7719{
36dfb11c 7720 struct ui_out *uiout = current_uiout;
348d480f 7721 struct breakpoint *b = bs->breakpoint_at;
a96d9b2e
SDJ
7722 /* These are needed because we want to know in which state a
7723 syscall is. It can be in the TARGET_WAITKIND_SYSCALL_ENTRY
7724 or TARGET_WAITKIND_SYSCALL_RETURN, and depending on it we
7725 must print "called syscall" or "returned from syscall". */
7726 ptid_t ptid;
7727 struct target_waitstatus last;
7728 struct syscall s;
a96d9b2e
SDJ
7729
7730 get_last_target_status (&ptid, &last);
7731
7732 get_syscall_by_number (last.value.syscall_number, &s);
7733
7734 annotate_catchpoint (b->number);
7735
36dfb11c
TT
7736 if (b->disposition == disp_del)
7737 ui_out_text (uiout, "\nTemporary catchpoint ");
a96d9b2e 7738 else
36dfb11c
TT
7739 ui_out_text (uiout, "\nCatchpoint ");
7740 if (ui_out_is_mi_like_p (uiout))
7741 {
7742 ui_out_field_string (uiout, "reason",
7743 async_reason_lookup (last.kind == TARGET_WAITKIND_SYSCALL_ENTRY
7744 ? EXEC_ASYNC_SYSCALL_ENTRY
7745 : EXEC_ASYNC_SYSCALL_RETURN));
7746 ui_out_field_string (uiout, "disp", bpdisp_text (b->disposition));
7747 }
7748 ui_out_field_int (uiout, "bkptno", b->number);
a96d9b2e
SDJ
7749
7750 if (last.kind == TARGET_WAITKIND_SYSCALL_ENTRY)
36dfb11c
TT
7751 ui_out_text (uiout, " (call to syscall ");
7752 else
7753 ui_out_text (uiout, " (returned from syscall ");
a96d9b2e 7754
36dfb11c
TT
7755 if (s.name == NULL || ui_out_is_mi_like_p (uiout))
7756 ui_out_field_int (uiout, "syscall-number", last.value.syscall_number);
7757 if (s.name != NULL)
7758 ui_out_field_string (uiout, "syscall-name", s.name);
7759
7760 ui_out_text (uiout, "), ");
a96d9b2e
SDJ
7761
7762 return PRINT_SRC_AND_LOC;
7763}
7764
7765/* Implement the "print_one" breakpoint_ops method for syscall
7766 catchpoints. */
7767
7768static void
7769print_one_catch_syscall (struct breakpoint *b,
f1310107 7770 struct bp_location **last_loc)
a96d9b2e 7771{
be5c67c1 7772 struct syscall_catchpoint *c = (struct syscall_catchpoint *) b;
a96d9b2e 7773 struct value_print_options opts;
79a45e25 7774 struct ui_out *uiout = current_uiout;
a96d9b2e
SDJ
7775
7776 get_user_print_options (&opts);
4a64f543
MS
7777 /* Field 4, the address, is omitted (which makes the columns not
7778 line up too nicely with the headers, but the effect is relatively
7779 readable). */
a96d9b2e
SDJ
7780 if (opts.addressprint)
7781 ui_out_field_skip (uiout, "addr");
7782 annotate_field (5);
7783
be5c67c1
PA
7784 if (c->syscalls_to_be_caught
7785 && VEC_length (int, c->syscalls_to_be_caught) > 1)
a96d9b2e
SDJ
7786 ui_out_text (uiout, "syscalls \"");
7787 else
7788 ui_out_text (uiout, "syscall \"");
7789
be5c67c1 7790 if (c->syscalls_to_be_caught)
a96d9b2e
SDJ
7791 {
7792 int i, iter;
7793 char *text = xstrprintf ("%s", "");
cc59ec59 7794
a96d9b2e 7795 for (i = 0;
be5c67c1 7796 VEC_iterate (int, c->syscalls_to_be_caught, i, iter);
a96d9b2e
SDJ
7797 i++)
7798 {
7799 char *x = text;
7800 struct syscall s;
7801 get_syscall_by_number (iter, &s);
7802
7803 if (s.name != NULL)
7804 text = xstrprintf ("%s%s, ", text, s.name);
7805 else
7806 text = xstrprintf ("%s%d, ", text, iter);
7807
7808 /* We have to xfree the last 'text' (now stored at 'x')
e5dd4106 7809 because xstrprintf dynamically allocates new space for it
a96d9b2e
SDJ
7810 on every call. */
7811 xfree (x);
7812 }
7813 /* Remove the last comma. */
7814 text[strlen (text) - 2] = '\0';
7815 ui_out_field_string (uiout, "what", text);
7816 }
7817 else
7818 ui_out_field_string (uiout, "what", "<any syscall>");
7819 ui_out_text (uiout, "\" ");
7820}
7821
7822/* Implement the "print_mention" breakpoint_ops method for syscall
7823 catchpoints. */
7824
7825static void
7826print_mention_catch_syscall (struct breakpoint *b)
7827{
be5c67c1
PA
7828 struct syscall_catchpoint *c = (struct syscall_catchpoint *) b;
7829
7830 if (c->syscalls_to_be_caught)
a96d9b2e
SDJ
7831 {
7832 int i, iter;
7833
be5c67c1 7834 if (VEC_length (int, c->syscalls_to_be_caught) > 1)
a96d9b2e
SDJ
7835 printf_filtered (_("Catchpoint %d (syscalls"), b->number);
7836 else
7837 printf_filtered (_("Catchpoint %d (syscall"), b->number);
7838
7839 for (i = 0;
be5c67c1 7840 VEC_iterate (int, c->syscalls_to_be_caught, i, iter);
a96d9b2e
SDJ
7841 i++)
7842 {
7843 struct syscall s;
7844 get_syscall_by_number (iter, &s);
7845
7846 if (s.name)
7847 printf_filtered (" '%s' [%d]", s.name, s.number);
7848 else
7849 printf_filtered (" %d", s.number);
7850 }
7851 printf_filtered (")");
7852 }
7853 else
7854 printf_filtered (_("Catchpoint %d (any syscall)"),
7855 b->number);
7856}
7857
6149aea9
PA
7858/* Implement the "print_recreate" breakpoint_ops method for syscall
7859 catchpoints. */
7860
7861static void
7862print_recreate_catch_syscall (struct breakpoint *b, struct ui_file *fp)
7863{
be5c67c1
PA
7864 struct syscall_catchpoint *c = (struct syscall_catchpoint *) b;
7865
6149aea9
PA
7866 fprintf_unfiltered (fp, "catch syscall");
7867
be5c67c1 7868 if (c->syscalls_to_be_caught)
6149aea9
PA
7869 {
7870 int i, iter;
7871
7872 for (i = 0;
be5c67c1 7873 VEC_iterate (int, c->syscalls_to_be_caught, i, iter);
6149aea9
PA
7874 i++)
7875 {
7876 struct syscall s;
7877
7878 get_syscall_by_number (iter, &s);
7879 if (s.name)
7880 fprintf_unfiltered (fp, " %s", s.name);
7881 else
7882 fprintf_unfiltered (fp, " %d", s.number);
7883 }
7884 }
d9b3f62e 7885 print_recreate_thread (b, fp);
6149aea9
PA
7886}
7887
a96d9b2e
SDJ
7888/* The breakpoint_ops structure to be used in syscall catchpoints. */
7889
2060206e 7890static struct breakpoint_ops catch_syscall_breakpoint_ops;
a96d9b2e
SDJ
7891
7892/* Returns non-zero if 'b' is a syscall catchpoint. */
7893
7894static int
7895syscall_catchpoint_p (struct breakpoint *b)
7896{
7897 return (b->ops == &catch_syscall_breakpoint_ops);
7898}
7899
346774a9
PA
7900/* Initialize a new breakpoint of the bp_catchpoint kind. If TEMPFLAG
7901 is non-zero, then make the breakpoint temporary. If COND_STRING is
7902 not NULL, then store it in the breakpoint. OPS, if not NULL, is
7903 the breakpoint_ops structure associated to the catchpoint. */
ce78b96d 7904
346774a9
PA
7905static void
7906init_catchpoint (struct breakpoint *b,
7907 struct gdbarch *gdbarch, int tempflag,
7908 char *cond_string,
c0a91b2b 7909 const struct breakpoint_ops *ops)
c906108c 7910{
c5aa993b 7911 struct symtab_and_line sal;
346774a9 7912
fe39c653 7913 init_sal (&sal);
6c95b8df 7914 sal.pspace = current_program_space;
c5aa993b 7915
28010a5d 7916 init_raw_breakpoint (b, gdbarch, sal, bp_catchpoint, ops);
ce78b96d 7917
1b36a34b 7918 b->cond_string = (cond_string == NULL) ? NULL : xstrdup (cond_string);
b5de0fa7 7919 b->disposition = tempflag ? disp_del : disp_donttouch;
346774a9
PA
7920}
7921
28010a5d 7922void
3ea46bff 7923install_breakpoint (int internal, struct breakpoint *b, int update_gll)
c56053d2
PA
7924{
7925 add_to_breakpoint_chain (b);
3a5c3e22
PA
7926 set_breakpoint_number (internal, b);
7927 if (!internal)
7928 mention (b);
c56053d2 7929 observer_notify_breakpoint_created (b);
3ea46bff
YQ
7930
7931 if (update_gll)
7932 update_global_location_list (1);
c56053d2
PA
7933}
7934
9b70b993 7935static void
a6d9a66e
UW
7936create_fork_vfork_event_catchpoint (struct gdbarch *gdbarch,
7937 int tempflag, char *cond_string,
c0a91b2b 7938 const struct breakpoint_ops *ops)
c906108c 7939{
e29a4733 7940 struct fork_catchpoint *c = XNEW (struct fork_catchpoint);
ce78b96d 7941
e29a4733
PA
7942 init_catchpoint (&c->base, gdbarch, tempflag, cond_string, ops);
7943
7944 c->forked_inferior_pid = null_ptid;
7945
3ea46bff 7946 install_breakpoint (0, &c->base, 1);
c906108c
SS
7947}
7948
fe798b75
JB
7949/* Exec catchpoints. */
7950
b4d90040
PA
7951/* An instance of this type is used to represent an exec catchpoint.
7952 It includes a "struct breakpoint" as a kind of base class; users
7953 downcast to "struct breakpoint *" when needed. A breakpoint is
7954 really of this type iff its ops pointer points to
7955 CATCH_EXEC_BREAKPOINT_OPS. */
7956
7957struct exec_catchpoint
7958{
7959 /* The base class. */
7960 struct breakpoint base;
7961
7962 /* Filename of a program whose exec triggered this catchpoint.
7963 This field is only valid immediately after this catchpoint has
7964 triggered. */
7965 char *exec_pathname;
7966};
7967
7968/* Implement the "dtor" breakpoint_ops method for exec
7969 catchpoints. */
7970
7971static void
7972dtor_catch_exec (struct breakpoint *b)
7973{
7974 struct exec_catchpoint *c = (struct exec_catchpoint *) b;
7975
7976 xfree (c->exec_pathname);
348d480f 7977
2060206e 7978 base_breakpoint_ops.dtor (b);
b4d90040
PA
7979}
7980
77b06cd7
TJB
7981static int
7982insert_catch_exec (struct bp_location *bl)
c906108c 7983{
77b06cd7 7984 return target_insert_exec_catchpoint (PIDGET (inferior_ptid));
fe798b75 7985}
c906108c 7986
fe798b75 7987static int
77b06cd7 7988remove_catch_exec (struct bp_location *bl)
fe798b75
JB
7989{
7990 return target_remove_exec_catchpoint (PIDGET (inferior_ptid));
7991}
c906108c 7992
fe798b75 7993static int
f1310107 7994breakpoint_hit_catch_exec (const struct bp_location *bl,
09ac7c10
TT
7995 struct address_space *aspace, CORE_ADDR bp_addr,
7996 const struct target_waitstatus *ws)
fe798b75 7997{
b4d90040
PA
7998 struct exec_catchpoint *c = (struct exec_catchpoint *) bl->owner;
7999
f90263c1
TT
8000 if (ws->kind != TARGET_WAITKIND_EXECD)
8001 return 0;
8002
8003 c->exec_pathname = xstrdup (ws->value.execd_pathname);
8004 return 1;
fe798b75 8005}
c906108c 8006
fe798b75 8007static enum print_stop_action
348d480f 8008print_it_catch_exec (bpstat bs)
fe798b75 8009{
36dfb11c 8010 struct ui_out *uiout = current_uiout;
348d480f 8011 struct breakpoint *b = bs->breakpoint_at;
b4d90040
PA
8012 struct exec_catchpoint *c = (struct exec_catchpoint *) b;
8013
fe798b75 8014 annotate_catchpoint (b->number);
36dfb11c
TT
8015 if (b->disposition == disp_del)
8016 ui_out_text (uiout, "\nTemporary catchpoint ");
8017 else
8018 ui_out_text (uiout, "\nCatchpoint ");
8019 if (ui_out_is_mi_like_p (uiout))
8020 {
8021 ui_out_field_string (uiout, "reason",
8022 async_reason_lookup (EXEC_ASYNC_EXEC));
8023 ui_out_field_string (uiout, "disp", bpdisp_text (b->disposition));
8024 }
8025 ui_out_field_int (uiout, "bkptno", b->number);
8026 ui_out_text (uiout, " (exec'd ");
8027 ui_out_field_string (uiout, "new-exec", c->exec_pathname);
8028 ui_out_text (uiout, "), ");
8029
fe798b75 8030 return PRINT_SRC_AND_LOC;
c906108c
SS
8031}
8032
fe798b75 8033static void
a6d9a66e 8034print_one_catch_exec (struct breakpoint *b, struct bp_location **last_loc)
fe798b75 8035{
b4d90040 8036 struct exec_catchpoint *c = (struct exec_catchpoint *) b;
fe798b75 8037 struct value_print_options opts;
79a45e25 8038 struct ui_out *uiout = current_uiout;
fe798b75
JB
8039
8040 get_user_print_options (&opts);
8041
8042 /* Field 4, the address, is omitted (which makes the columns
8043 not line up too nicely with the headers, but the effect
8044 is relatively readable). */
8045 if (opts.addressprint)
8046 ui_out_field_skip (uiout, "addr");
8047 annotate_field (5);
8048 ui_out_text (uiout, "exec");
b4d90040 8049 if (c->exec_pathname != NULL)
fe798b75
JB
8050 {
8051 ui_out_text (uiout, ", program \"");
b4d90040 8052 ui_out_field_string (uiout, "what", c->exec_pathname);
fe798b75
JB
8053 ui_out_text (uiout, "\" ");
8054 }
8055}
8056
8057static void
8058print_mention_catch_exec (struct breakpoint *b)
8059{
8060 printf_filtered (_("Catchpoint %d (exec)"), b->number);
8061}
8062
6149aea9
PA
8063/* Implement the "print_recreate" breakpoint_ops method for exec
8064 catchpoints. */
8065
8066static void
8067print_recreate_catch_exec (struct breakpoint *b, struct ui_file *fp)
8068{
8069 fprintf_unfiltered (fp, "catch exec");
d9b3f62e 8070 print_recreate_thread (b, fp);
6149aea9
PA
8071}
8072
2060206e 8073static struct breakpoint_ops catch_exec_breakpoint_ops;
fe798b75 8074
a96d9b2e
SDJ
8075static void
8076create_syscall_event_catchpoint (int tempflag, VEC(int) *filter,
c0a91b2b 8077 const struct breakpoint_ops *ops)
a96d9b2e 8078{
be5c67c1 8079 struct syscall_catchpoint *c;
a96d9b2e 8080 struct gdbarch *gdbarch = get_current_arch ();
a96d9b2e 8081
be5c67c1
PA
8082 c = XNEW (struct syscall_catchpoint);
8083 init_catchpoint (&c->base, gdbarch, tempflag, NULL, ops);
8084 c->syscalls_to_be_caught = filter;
a96d9b2e 8085
3ea46bff 8086 install_breakpoint (0, &c->base, 1);
a96d9b2e
SDJ
8087}
8088
c906108c 8089static int
fba45db2 8090hw_breakpoint_used_count (void)
c906108c 8091{
c906108c 8092 int i = 0;
f1310107
TJB
8093 struct breakpoint *b;
8094 struct bp_location *bl;
c906108c
SS
8095
8096 ALL_BREAKPOINTS (b)
c5aa993b 8097 {
d6b74ac4 8098 if (b->type == bp_hardware_breakpoint && breakpoint_enabled (b))
f1310107
TJB
8099 for (bl = b->loc; bl; bl = bl->next)
8100 {
8101 /* Special types of hardware breakpoints may use more than
8102 one register. */
348d480f 8103 i += b->ops->resources_needed (bl);
f1310107 8104 }
c5aa993b 8105 }
c906108c
SS
8106
8107 return i;
8108}
8109
a1398e0c
PA
8110/* Returns the resources B would use if it were a hardware
8111 watchpoint. */
8112
c906108c 8113static int
a1398e0c 8114hw_watchpoint_use_count (struct breakpoint *b)
c906108c 8115{
c906108c 8116 int i = 0;
e09342b5 8117 struct bp_location *bl;
c906108c 8118
a1398e0c
PA
8119 if (!breakpoint_enabled (b))
8120 return 0;
8121
8122 for (bl = b->loc; bl; bl = bl->next)
8123 {
8124 /* Special types of hardware watchpoints may use more than
8125 one register. */
8126 i += b->ops->resources_needed (bl);
8127 }
8128
8129 return i;
8130}
8131
8132/* Returns the sum the used resources of all hardware watchpoints of
8133 type TYPE in the breakpoints list. Also returns in OTHER_TYPE_USED
8134 the sum of the used resources of all hardware watchpoints of other
8135 types _not_ TYPE. */
8136
8137static int
8138hw_watchpoint_used_count_others (struct breakpoint *except,
8139 enum bptype type, int *other_type_used)
8140{
8141 int i = 0;
8142 struct breakpoint *b;
8143
c906108c
SS
8144 *other_type_used = 0;
8145 ALL_BREAKPOINTS (b)
e09342b5 8146 {
a1398e0c
PA
8147 if (b == except)
8148 continue;
e09342b5
TJB
8149 if (!breakpoint_enabled (b))
8150 continue;
8151
a1398e0c
PA
8152 if (b->type == type)
8153 i += hw_watchpoint_use_count (b);
8154 else if (is_hardware_watchpoint (b))
8155 *other_type_used = 1;
e09342b5
TJB
8156 }
8157
c906108c
SS
8158 return i;
8159}
8160
c906108c 8161void
fba45db2 8162disable_watchpoints_before_interactive_call_start (void)
c906108c 8163{
c5aa993b 8164 struct breakpoint *b;
c906108c
SS
8165
8166 ALL_BREAKPOINTS (b)
c5aa993b 8167 {
cc60f2e3 8168 if (is_watchpoint (b) && breakpoint_enabled (b))
c5aa993b 8169 {
b5de0fa7 8170 b->enable_state = bp_call_disabled;
b60e7edf 8171 update_global_location_list (0);
c5aa993b
JM
8172 }
8173 }
c906108c
SS
8174}
8175
8176void
fba45db2 8177enable_watchpoints_after_interactive_call_stop (void)
c906108c 8178{
c5aa993b 8179 struct breakpoint *b;
c906108c
SS
8180
8181 ALL_BREAKPOINTS (b)
c5aa993b 8182 {
cc60f2e3 8183 if (is_watchpoint (b) && b->enable_state == bp_call_disabled)
c5aa993b 8184 {
b5de0fa7 8185 b->enable_state = bp_enabled;
b60e7edf 8186 update_global_location_list (1);
c5aa993b
JM
8187 }
8188 }
c906108c
SS
8189}
8190
8bea4e01
UW
8191void
8192disable_breakpoints_before_startup (void)
8193{
6c95b8df 8194 current_program_space->executing_startup = 1;
f8eba3c6 8195 update_global_location_list (0);
8bea4e01
UW
8196}
8197
8198void
8199enable_breakpoints_after_startup (void)
8200{
6c95b8df 8201 current_program_space->executing_startup = 0;
f8eba3c6 8202 breakpoint_re_set ();
8bea4e01
UW
8203}
8204
c906108c
SS
8205
8206/* Set a breakpoint that will evaporate an end of command
8207 at address specified by SAL.
8208 Restrict it to frame FRAME if FRAME is nonzero. */
8209
8210struct breakpoint *
a6d9a66e
UW
8211set_momentary_breakpoint (struct gdbarch *gdbarch, struct symtab_and_line sal,
8212 struct frame_id frame_id, enum bptype type)
c906108c 8213{
52f0bd74 8214 struct breakpoint *b;
edb3359d
DJ
8215
8216 /* If FRAME_ID is valid, it should be a real frame, not an inlined
8217 one. */
8218 gdb_assert (!frame_id_inlined_p (frame_id));
8219
06edf0c0 8220 b = set_raw_breakpoint (gdbarch, sal, type, &momentary_breakpoint_ops);
b5de0fa7
EZ
8221 b->enable_state = bp_enabled;
8222 b->disposition = disp_donttouch;
818dd999 8223 b->frame_id = frame_id;
c906108c 8224
4a64f543
MS
8225 /* If we're debugging a multi-threaded program, then we want
8226 momentary breakpoints to be active in only a single thread of
8227 control. */
39f77062
KB
8228 if (in_thread_list (inferior_ptid))
8229 b->thread = pid_to_thread_id (inferior_ptid);
c906108c 8230
b60e7edf 8231 update_global_location_list_nothrow (1);
74960c60 8232
c906108c
SS
8233 return b;
8234}
611c83ae 8235
06edf0c0
PA
8236/* Make a momentary breakpoint based on the master breakpoint ORIG.
8237 The new breakpoint will have type TYPE, and use OPS as it
8238 breakpoint_ops. */
e58b0e63 8239
06edf0c0
PA
8240static struct breakpoint *
8241momentary_breakpoint_from_master (struct breakpoint *orig,
8242 enum bptype type,
c0a91b2b 8243 const struct breakpoint_ops *ops)
e58b0e63
PA
8244{
8245 struct breakpoint *copy;
8246
06edf0c0 8247 copy = set_raw_breakpoint_without_location (orig->gdbarch, type, ops);
e58b0e63 8248 copy->loc = allocate_bp_location (copy);
0e30163f 8249 set_breakpoint_location_function (copy->loc, 1);
e58b0e63 8250
a6d9a66e 8251 copy->loc->gdbarch = orig->loc->gdbarch;
e58b0e63
PA
8252 copy->loc->requested_address = orig->loc->requested_address;
8253 copy->loc->address = orig->loc->address;
8254 copy->loc->section = orig->loc->section;
6c95b8df 8255 copy->loc->pspace = orig->loc->pspace;
55aa24fb 8256 copy->loc->probe = orig->loc->probe;
e58b0e63 8257
f8eba3c6
TT
8258 if (orig->loc->source_file != NULL)
8259 copy->loc->source_file = xstrdup (orig->loc->source_file);
e58b0e63 8260
f8eba3c6 8261 copy->loc->line_number = orig->loc->line_number;
e58b0e63
PA
8262 copy->frame_id = orig->frame_id;
8263 copy->thread = orig->thread;
6c95b8df 8264 copy->pspace = orig->pspace;
e58b0e63
PA
8265
8266 copy->enable_state = bp_enabled;
8267 copy->disposition = disp_donttouch;
8268 copy->number = internal_breakpoint_number--;
8269
8270 update_global_location_list_nothrow (0);
8271 return copy;
8272}
8273
06edf0c0
PA
8274/* Make a deep copy of momentary breakpoint ORIG. Returns NULL if
8275 ORIG is NULL. */
8276
8277struct breakpoint *
8278clone_momentary_breakpoint (struct breakpoint *orig)
8279{
8280 /* If there's nothing to clone, then return nothing. */
8281 if (orig == NULL)
8282 return NULL;
8283
8284 return momentary_breakpoint_from_master (orig, orig->type, orig->ops);
8285}
8286
611c83ae 8287struct breakpoint *
a6d9a66e
UW
8288set_momentary_breakpoint_at_pc (struct gdbarch *gdbarch, CORE_ADDR pc,
8289 enum bptype type)
611c83ae
PA
8290{
8291 struct symtab_and_line sal;
8292
8293 sal = find_pc_line (pc, 0);
8294 sal.pc = pc;
8295 sal.section = find_pc_overlay (pc);
8296 sal.explicit_pc = 1;
8297
a6d9a66e 8298 return set_momentary_breakpoint (gdbarch, sal, null_frame_id, type);
611c83ae 8299}
c906108c 8300\f
c5aa993b 8301
c906108c
SS
8302/* Tell the user we have just set a breakpoint B. */
8303
8304static void
fba45db2 8305mention (struct breakpoint *b)
c906108c 8306{
348d480f 8307 b->ops->print_mention (b);
79a45e25 8308 if (ui_out_is_mi_like_p (current_uiout))
fb40c209 8309 return;
c906108c
SS
8310 printf_filtered ("\n");
8311}
c906108c 8312\f
c5aa993b 8313
0d381245 8314static struct bp_location *
39d61571 8315add_location_to_breakpoint (struct breakpoint *b,
0d381245
VP
8316 const struct symtab_and_line *sal)
8317{
8318 struct bp_location *loc, **tmp;
3742cc8b
YQ
8319 CORE_ADDR adjusted_address;
8320 struct gdbarch *loc_gdbarch = get_sal_arch (*sal);
8321
8322 if (loc_gdbarch == NULL)
8323 loc_gdbarch = b->gdbarch;
8324
8325 /* Adjust the breakpoint's address prior to allocating a location.
8326 Once we call allocate_bp_location(), that mostly uninitialized
8327 location will be placed on the location chain. Adjustment of the
8328 breakpoint may cause target_read_memory() to be called and we do
8329 not want its scan of the location chain to find a breakpoint and
8330 location that's only been partially initialized. */
8331 adjusted_address = adjust_breakpoint_address (loc_gdbarch,
8332 sal->pc, b->type);
0d381245 8333
39d61571 8334 loc = allocate_bp_location (b);
0d381245
VP
8335 for (tmp = &(b->loc); *tmp != NULL; tmp = &((*tmp)->next))
8336 ;
8337 *tmp = loc;
3742cc8b 8338
0d381245 8339 loc->requested_address = sal->pc;
3742cc8b 8340 loc->address = adjusted_address;
6c95b8df 8341 loc->pspace = sal->pspace;
55aa24fb 8342 loc->probe = sal->probe;
6c95b8df 8343 gdb_assert (loc->pspace != NULL);
0d381245 8344 loc->section = sal->section;
3742cc8b 8345 loc->gdbarch = loc_gdbarch;
f8eba3c6
TT
8346
8347 if (sal->symtab != NULL)
8348 loc->source_file = xstrdup (sal->symtab->filename);
8349 loc->line_number = sal->line;
8350
0e30163f
JK
8351 set_breakpoint_location_function (loc,
8352 sal->explicit_pc || sal->explicit_line);
0d381245
VP
8353 return loc;
8354}
514f746b
AR
8355\f
8356
8357/* Return 1 if LOC is pointing to a permanent breakpoint,
8358 return 0 otherwise. */
8359
8360static int
8361bp_loc_is_permanent (struct bp_location *loc)
8362{
8363 int len;
8364 CORE_ADDR addr;
1afeeb75 8365 const gdb_byte *bpoint;
514f746b 8366 gdb_byte *target_mem;
939c61fa
JK
8367 struct cleanup *cleanup;
8368 int retval = 0;
514f746b
AR
8369
8370 gdb_assert (loc != NULL);
8371
8372 addr = loc->address;
1afeeb75 8373 bpoint = gdbarch_breakpoint_from_pc (loc->gdbarch, &addr, &len);
514f746b 8374
939c61fa 8375 /* Software breakpoints unsupported? */
1afeeb75 8376 if (bpoint == NULL)
939c61fa
JK
8377 return 0;
8378
514f746b
AR
8379 target_mem = alloca (len);
8380
939c61fa
JK
8381 /* Enable the automatic memory restoration from breakpoints while
8382 we read the memory. Otherwise we could say about our temporary
8383 breakpoints they are permanent. */
6c95b8df
PA
8384 cleanup = save_current_space_and_thread ();
8385
8386 switch_to_program_space_and_thread (loc->pspace);
8387 make_show_memory_breakpoints_cleanup (0);
939c61fa 8388
514f746b 8389 if (target_read_memory (loc->address, target_mem, len) == 0
1afeeb75 8390 && memcmp (target_mem, bpoint, len) == 0)
939c61fa 8391 retval = 1;
514f746b 8392
939c61fa
JK
8393 do_cleanups (cleanup);
8394
8395 return retval;
514f746b
AR
8396}
8397
e7e0cddf
SS
8398/* The style in which to perform a dynamic printf. This is a user
8399 option because different output options have different tradeoffs;
8400 if GDB does the printing, there is better error handling if there
8401 is a problem with any of the arguments, but using an inferior
8402 function lets you have special-purpose printers and sending of
8403 output to the same place as compiled-in print functions. (Future
8404 styles may include the ability to do a target-side printf.) */
8405
8406static const char dprintf_style_gdb[] = "gdb";
8407static const char dprintf_style_call[] = "call";
8408static const char *const dprintf_style_enums[] = {
8409 dprintf_style_gdb,
8410 dprintf_style_call,
8411 NULL
8412};
8413static const char *dprintf_style = dprintf_style_gdb;
8414
8415/* The function to use for dynamic printf if the preferred style is to
8416 call into the inferior. The value is simply a string that is
8417 copied into the command, so it can be anything that GDB can
8418 evaluate to a callable address, not necessarily a function name. */
8419
8420static char *dprintf_function = "";
8421
8422/* The channel to use for dynamic printf if the preferred style is to
8423 call into the inferior; if a nonempty string, it will be passed to
8424 the call as the first argument, with the format string as the
8425 second. As with the dprintf function, this can be anything that
8426 GDB knows how to evaluate, so in addition to common choices like
8427 "stderr", this could be an app-specific expression like
8428 "mystreams[curlogger]". */
514f746b 8429
e7e0cddf
SS
8430static char *dprintf_channel = "";
8431
8432/* Build a command list for the dprintf corresponding to the current
8433 settings of the dprintf style options. */
8434
8435static void
8436update_dprintf_command_list (struct breakpoint *b)
8437{
8438 char *dprintf_args = b->extra_string;
8439 char *printf_line = NULL;
8440
8441 if (!dprintf_args)
8442 return;
8443
8444 dprintf_args = skip_spaces (dprintf_args);
8445
8446 /* Allow a comma, as it may have terminated a location, but don't
8447 insist on it. */
8448 if (*dprintf_args == ',')
8449 ++dprintf_args;
8450 dprintf_args = skip_spaces (dprintf_args);
8451
8452 if (*dprintf_args != '"')
8453 error (_("Bad format string, missing '\"'."));
8454
8455 if (strcmp (dprintf_style, "gdb") == 0)
8456 printf_line = xstrprintf ("printf %s", dprintf_args);
8457 else if (strcmp (dprintf_style, "call") == 0)
8458 {
8459 if (!dprintf_function)
8460 error (_("No function supplied for dprintf call"));
8461
8462 if (dprintf_channel && strlen (dprintf_channel) > 0)
8463 printf_line = xstrprintf ("call (void) %s (%s,%s)",
8464 dprintf_function,
8465 dprintf_channel,
8466 dprintf_args);
8467 else
8468 printf_line = xstrprintf ("call (void) %s (%s)",
8469 dprintf_function,
8470 dprintf_args);
8471 }
8472 else
8473 internal_error (__FILE__, __LINE__,
8474 _("Invalid dprintf style."));
8475
8476 /* Manufacture a printf/continue sequence. */
8477 if (printf_line)
8478 {
8479 struct command_line *printf_cmd_line, *cont_cmd_line = NULL;
8480
8481 cont_cmd_line = xmalloc (sizeof (struct command_line));
8482 cont_cmd_line->control_type = simple_control;
8483 cont_cmd_line->body_count = 0;
8484 cont_cmd_line->body_list = NULL;
8485 cont_cmd_line->next = NULL;
8486 cont_cmd_line->line = xstrdup ("continue");
8487
8488 printf_cmd_line = xmalloc (sizeof (struct command_line));
8489 printf_cmd_line->control_type = simple_control;
8490 printf_cmd_line->body_count = 0;
8491 printf_cmd_line->body_list = NULL;
8492 printf_cmd_line->next = cont_cmd_line;
8493 printf_cmd_line->line = printf_line;
8494
8495 breakpoint_set_commands (b, printf_cmd_line);
8496 }
8497}
8498
8499/* Update all dprintf commands, making their command lists reflect
8500 current style settings. */
8501
8502static void
8503update_dprintf_commands (char *args, int from_tty,
8504 struct cmd_list_element *c)
8505{
8506 struct breakpoint *b;
8507
8508 ALL_BREAKPOINTS (b)
8509 {
8510 if (b->type == bp_dprintf)
8511 update_dprintf_command_list (b);
8512 }
8513}
c3f6f71d 8514
018d34a4
VP
8515/* Create a breakpoint with SAL as location. Use ADDR_STRING
8516 as textual description of the location, and COND_STRING
db107f19 8517 as condition expression. */
018d34a4
VP
8518
8519static void
d9b3f62e
PA
8520init_breakpoint_sal (struct breakpoint *b, struct gdbarch *gdbarch,
8521 struct symtabs_and_lines sals, char *addr_string,
f8eba3c6 8522 char *filter, char *cond_string,
e7e0cddf 8523 char *extra_string,
d9b3f62e
PA
8524 enum bptype type, enum bpdisp disposition,
8525 int thread, int task, int ignore_count,
c0a91b2b 8526 const struct breakpoint_ops *ops, int from_tty,
44f238bb
PA
8527 int enabled, int internal, unsigned flags,
8528 int display_canonical)
018d34a4 8529{
0d381245 8530 int i;
018d34a4
VP
8531
8532 if (type == bp_hardware_breakpoint)
8533 {
fbbd034e
AS
8534 int target_resources_ok;
8535
8536 i = hw_breakpoint_used_count ();
8537 target_resources_ok =
8538 target_can_use_hardware_watchpoint (bp_hardware_breakpoint,
018d34a4
VP
8539 i + 1, 0);
8540 if (target_resources_ok == 0)
8541 error (_("No hardware breakpoint support in the target."));
8542 else if (target_resources_ok < 0)
8543 error (_("Hardware breakpoints used exceeds limit."));
8544 }
8545
6c95b8df
PA
8546 gdb_assert (sals.nelts > 0);
8547
0d381245
VP
8548 for (i = 0; i < sals.nelts; ++i)
8549 {
8550 struct symtab_and_line sal = sals.sals[i];
8551 struct bp_location *loc;
8552
8553 if (from_tty)
5af949e3
UW
8554 {
8555 struct gdbarch *loc_gdbarch = get_sal_arch (sal);
8556 if (!loc_gdbarch)
8557 loc_gdbarch = gdbarch;
8558
8559 describe_other_breakpoints (loc_gdbarch,
6c95b8df 8560 sal.pspace, sal.pc, sal.section, thread);
5af949e3 8561 }
0d381245
VP
8562
8563 if (i == 0)
8564 {
d9b3f62e 8565 init_raw_breakpoint (b, gdbarch, sal, type, ops);
0d381245 8566 b->thread = thread;
4a306c9a 8567 b->task = task;
855a6e68 8568
0d381245 8569 b->cond_string = cond_string;
e7e0cddf 8570 b->extra_string = extra_string;
0d381245 8571 b->ignore_count = ignore_count;
41447f92 8572 b->enable_state = enabled ? bp_enabled : bp_disabled;
0d381245 8573 b->disposition = disposition;
6c95b8df 8574
44f238bb
PA
8575 if ((flags & CREATE_BREAKPOINT_FLAGS_INSERTED) != 0)
8576 b->loc->inserted = 1;
8577
0fb4aa4b
PA
8578 if (type == bp_static_tracepoint)
8579 {
d9b3f62e 8580 struct tracepoint *t = (struct tracepoint *) b;
0fb4aa4b
PA
8581 struct static_tracepoint_marker marker;
8582
983af33b 8583 if (strace_marker_p (b))
0fb4aa4b
PA
8584 {
8585 /* We already know the marker exists, otherwise, we
8586 wouldn't see a sal for it. */
8587 char *p = &addr_string[3];
8588 char *endp;
8589 char *marker_str;
0fb4aa4b 8590
e9cafbcc 8591 p = skip_spaces (p);
0fb4aa4b 8592
e9cafbcc 8593 endp = skip_to_space (p);
0fb4aa4b
PA
8594
8595 marker_str = savestring (p, endp - p);
d9b3f62e 8596 t->static_trace_marker_id = marker_str;
0fb4aa4b 8597
3e43a32a
MS
8598 printf_filtered (_("Probed static tracepoint "
8599 "marker \"%s\"\n"),
d9b3f62e 8600 t->static_trace_marker_id);
0fb4aa4b
PA
8601 }
8602 else if (target_static_tracepoint_marker_at (sal.pc, &marker))
8603 {
d9b3f62e 8604 t->static_trace_marker_id = xstrdup (marker.str_id);
0fb4aa4b
PA
8605 release_static_tracepoint_marker (&marker);
8606
3e43a32a
MS
8607 printf_filtered (_("Probed static tracepoint "
8608 "marker \"%s\"\n"),
d9b3f62e 8609 t->static_trace_marker_id);
0fb4aa4b
PA
8610 }
8611 else
3e43a32a
MS
8612 warning (_("Couldn't determine the static "
8613 "tracepoint marker to probe"));
0fb4aa4b
PA
8614 }
8615
0d381245
VP
8616 loc = b->loc;
8617 }
8618 else
018d34a4 8619 {
39d61571 8620 loc = add_location_to_breakpoint (b, &sal);
44f238bb
PA
8621 if ((flags & CREATE_BREAKPOINT_FLAGS_INSERTED) != 0)
8622 loc->inserted = 1;
0d381245
VP
8623 }
8624
514f746b
AR
8625 if (bp_loc_is_permanent (loc))
8626 make_breakpoint_permanent (b);
8627
0d381245
VP
8628 if (b->cond_string)
8629 {
8630 char *arg = b->cond_string;
d32a6982 8631 loc->cond = parse_exp_1 (&arg, block_for_pc (loc->address), 0);
0d381245 8632 if (*arg)
588ae58c 8633 error (_("Garbage '%s' follows condition"), arg);
018d34a4 8634 }
e7e0cddf
SS
8635
8636 /* Dynamic printf requires and uses additional arguments on the
8637 command line, otherwise it's an error. */
8638 if (type == bp_dprintf)
8639 {
8640 if (b->extra_string)
8641 update_dprintf_command_list (b);
8642 else
8643 error (_("Format string required"));
8644 }
8645 else if (b->extra_string)
588ae58c 8646 error (_("Garbage '%s' at end of command"), b->extra_string);
855a6e68 8647 }
018d34a4 8648
56435ebe 8649 b->display_canonical = display_canonical;
018d34a4
VP
8650 if (addr_string)
8651 b->addr_string = addr_string;
8652 else
8653 /* addr_string has to be used or breakpoint_re_set will delete
8654 me. */
5af949e3
UW
8655 b->addr_string
8656 = xstrprintf ("*%s", paddress (b->loc->gdbarch, b->loc->address));
f8eba3c6 8657 b->filter = filter;
d9b3f62e 8658}
018d34a4 8659
d9b3f62e
PA
8660static void
8661create_breakpoint_sal (struct gdbarch *gdbarch,
8662 struct symtabs_and_lines sals, char *addr_string,
f8eba3c6 8663 char *filter, char *cond_string,
e7e0cddf 8664 char *extra_string,
d9b3f62e
PA
8665 enum bptype type, enum bpdisp disposition,
8666 int thread, int task, int ignore_count,
c0a91b2b 8667 const struct breakpoint_ops *ops, int from_tty,
44f238bb
PA
8668 int enabled, int internal, unsigned flags,
8669 int display_canonical)
d9b3f62e
PA
8670{
8671 struct breakpoint *b;
8672 struct cleanup *old_chain;
8673
8674 if (is_tracepoint_type (type))
8675 {
8676 struct tracepoint *t;
8677
8678 t = XCNEW (struct tracepoint);
8679 b = &t->base;
8680 }
8681 else
8682 b = XNEW (struct breakpoint);
8683
8684 old_chain = make_cleanup (xfree, b);
8685
8686 init_breakpoint_sal (b, gdbarch,
8687 sals, addr_string,
e7e0cddf 8688 filter, cond_string, extra_string,
d9b3f62e
PA
8689 type, disposition,
8690 thread, task, ignore_count,
8691 ops, from_tty,
44f238bb
PA
8692 enabled, internal, flags,
8693 display_canonical);
d9b3f62e
PA
8694 discard_cleanups (old_chain);
8695
3ea46bff 8696 install_breakpoint (internal, b, 0);
018d34a4
VP
8697}
8698
8699/* Add SALS.nelts breakpoints to the breakpoint table. For each
8700 SALS.sal[i] breakpoint, include the corresponding ADDR_STRING[i]
8701 value. COND_STRING, if not NULL, specified the condition to be
8702 used for all breakpoints. Essentially the only case where
8703 SALS.nelts is not 1 is when we set a breakpoint on an overloaded
8704 function. In that case, it's still not possible to specify
8705 separate conditions for different overloaded functions, so
8706 we take just a single condition string.
8707
c3f6f71d 8708 NOTE: If the function succeeds, the caller is expected to cleanup
018d34a4 8709 the arrays ADDR_STRING, COND_STRING, and SALS (but not the
c3f6f71d
JM
8710 array contents). If the function fails (error() is called), the
8711 caller is expected to cleanups both the ADDR_STRING, COND_STRING,
4a64f543 8712 COND and SALS arrays and each of those arrays contents. */
c906108c
SS
8713
8714static void
8cdf0e15 8715create_breakpoints_sal (struct gdbarch *gdbarch,
7efd8fc2 8716 struct linespec_result *canonical,
e7e0cddf 8717 char *cond_string, char *extra_string,
8cdf0e15
VP
8718 enum bptype type, enum bpdisp disposition,
8719 int thread, int task, int ignore_count,
c0a91b2b 8720 const struct breakpoint_ops *ops, int from_tty,
44f238bb 8721 int enabled, int internal, unsigned flags)
c906108c 8722{
018d34a4 8723 int i;
f8eba3c6 8724 struct linespec_sals *lsal;
cc59ec59 8725
f8eba3c6
TT
8726 if (canonical->pre_expanded)
8727 gdb_assert (VEC_length (linespec_sals, canonical->sals) == 1);
8728
8729 for (i = 0; VEC_iterate (linespec_sals, canonical->sals, i, lsal); ++i)
c3f6f71d 8730 {
f8eba3c6
TT
8731 /* Note that 'addr_string' can be NULL in the case of a plain
8732 'break', without arguments. */
8733 char *addr_string = (canonical->addr_string
8734 ? xstrdup (canonical->addr_string)
8735 : NULL);
8736 char *filter_string = lsal->canonical ? xstrdup (lsal->canonical) : NULL;
8737 struct cleanup *inner = make_cleanup (xfree, addr_string);
0d381245 8738
f8eba3c6
TT
8739 make_cleanup (xfree, filter_string);
8740 create_breakpoint_sal (gdbarch, lsal->sals,
8741 addr_string,
8742 filter_string,
e7e0cddf
SS
8743 cond_string, extra_string,
8744 type, disposition,
84f4c1fe 8745 thread, task, ignore_count, ops,
44f238bb 8746 from_tty, enabled, internal, flags,
56435ebe 8747 canonical->special_display);
f8eba3c6 8748 discard_cleanups (inner);
c3f6f71d 8749 }
c3f6f71d 8750}
c906108c 8751
9998af43 8752/* Parse ADDRESS which is assumed to be a SAL specification possibly
c3f6f71d 8753 followed by conditionals. On return, SALS contains an array of SAL
4a64f543 8754 addresses found. ADDR_STRING contains a vector of (canonical)
9998af43
TJB
8755 address strings. ADDRESS points to the end of the SAL.
8756
8757 The array and the line spec strings are allocated on the heap, it is
8758 the caller's responsibility to free them. */
c906108c 8759
b9362cc7 8760static void
c3f6f71d 8761parse_breakpoint_sals (char **address,
58438ac1 8762 struct linespec_result *canonical)
c3f6f71d
JM
8763{
8764 char *addr_start = *address;
cc59ec59 8765
c3f6f71d 8766 /* If no arg given, or if first arg is 'if ', use the default
4a64f543 8767 breakpoint. */
c3f6f71d
JM
8768 if ((*address) == NULL
8769 || (strncmp ((*address), "if", 2) == 0 && isspace ((*address)[2])))
c906108c 8770 {
1bfeeb0f
JL
8771 /* The last displayed codepoint, if it's valid, is our default breakpoint
8772 address. */
8773 if (last_displayed_sal_is_valid ())
c906108c 8774 {
f8eba3c6 8775 struct linespec_sals lsal;
c3f6f71d 8776 struct symtab_and_line sal;
cc59ec59 8777
4a64f543 8778 init_sal (&sal); /* Initialize to zeroes. */
f8eba3c6 8779 lsal.sals.sals = (struct symtab_and_line *)
c906108c 8780 xmalloc (sizeof (struct symtab_and_line));
1bfeeb0f
JL
8781
8782 /* Set sal's pspace, pc, symtab, and line to the values
8783 corresponding to the last call to print_frame_info. */
8784 get_last_displayed_sal (&sal);
8785 sal.section = find_pc_overlay (sal.pc);
00903456 8786
4a64f543 8787 /* "break" without arguments is equivalent to "break *PC"
1bfeeb0f
JL
8788 where PC is the last displayed codepoint's address. So
8789 make sure to set sal.explicit_pc to prevent GDB from
8790 trying to expand the list of sals to include all other
8791 instances with the same symtab and line. */
00903456
JK
8792 sal.explicit_pc = 1;
8793
f8eba3c6
TT
8794 lsal.sals.sals[0] = sal;
8795 lsal.sals.nelts = 1;
8796 lsal.canonical = NULL;
8797
8798 VEC_safe_push (linespec_sals, canonical->sals, &lsal);
c906108c
SS
8799 }
8800 else
8a3fe4f8 8801 error (_("No default breakpoint address now."));
c906108c
SS
8802 }
8803 else
8804 {
c906108c 8805 /* Force almost all breakpoints to be in terms of the
4a64f543
MS
8806 current_source_symtab (which is decode_line_1's default).
8807 This should produce the results we want almost all of the
f8eba3c6
TT
8808 time while leaving default_breakpoint_* alone. */
8809 if (last_displayed_sal_is_valid ())
8810 decode_line_full (address, DECODE_LINE_FUNFIRSTLINE,
8811 get_last_displayed_symtab (),
8812 get_last_displayed_line (),
8813 canonical, NULL, NULL);
c906108c 8814 else
f8eba3c6
TT
8815 decode_line_full (address, DECODE_LINE_FUNFIRSTLINE,
8816 (struct symtab *) NULL, 0,
8817 canonical, NULL, NULL);
c906108c 8818 }
c3f6f71d 8819}
c906108c 8820
c906108c 8821
c3f6f71d 8822/* Convert each SAL into a real PC. Verify that the PC can be
4a64f543 8823 inserted as a breakpoint. If it can't throw an error. */
c906108c 8824
b9362cc7 8825static void
23e7acfb 8826breakpoint_sals_to_pc (struct symtabs_and_lines *sals)
c3f6f71d
JM
8827{
8828 int i;
cc59ec59 8829
c3f6f71d 8830 for (i = 0; i < sals->nelts; i++)
ee53e872 8831 resolve_sal_pc (&sals->sals[i]);
c3f6f71d
JM
8832}
8833
7a697b8d
SS
8834/* Fast tracepoints may have restrictions on valid locations. For
8835 instance, a fast tracepoint using a jump instead of a trap will
8836 likely have to overwrite more bytes than a trap would, and so can
8837 only be placed where the instruction is longer than the jump, or a
8838 multi-instruction sequence does not have a jump into the middle of
8839 it, etc. */
8840
8841static void
8842check_fast_tracepoint_sals (struct gdbarch *gdbarch,
8843 struct symtabs_and_lines *sals)
8844{
8845 int i, rslt;
8846 struct symtab_and_line *sal;
8847 char *msg;
8848 struct cleanup *old_chain;
8849
8850 for (i = 0; i < sals->nelts; i++)
8851 {
f8eba3c6
TT
8852 struct gdbarch *sarch;
8853
7a697b8d
SS
8854 sal = &sals->sals[i];
8855
f8eba3c6
TT
8856 sarch = get_sal_arch (*sal);
8857 /* We fall back to GDBARCH if there is no architecture
8858 associated with SAL. */
8859 if (sarch == NULL)
8860 sarch = gdbarch;
8861 rslt = gdbarch_fast_tracepoint_valid_at (sarch, sal->pc,
7a697b8d
SS
8862 NULL, &msg);
8863 old_chain = make_cleanup (xfree, msg);
8864
8865 if (!rslt)
8866 error (_("May not have a fast tracepoint at 0x%s%s"),
f8eba3c6 8867 paddress (sarch, sal->pc), (msg ? msg : ""));
7a697b8d
SS
8868
8869 do_cleanups (old_chain);
8870 }
8871}
8872
018d34a4
VP
8873/* Given TOK, a string specification of condition and thread, as
8874 accepted by the 'break' command, extract the condition
8875 string and thread number and set *COND_STRING and *THREAD.
4a64f543 8876 PC identifies the context at which the condition should be parsed.
018d34a4
VP
8877 If no condition is found, *COND_STRING is set to NULL.
8878 If no thread is found, *THREAD is set to -1. */
d634f2de
JB
8879
8880static void
8881find_condition_and_thread (char *tok, CORE_ADDR pc,
e7e0cddf
SS
8882 char **cond_string, int *thread, int *task,
8883 char **rest)
018d34a4
VP
8884{
8885 *cond_string = NULL;
8886 *thread = -1;
8887 while (tok && *tok)
8888 {
8889 char *end_tok;
8890 int toklen;
8891 char *cond_start = NULL;
8892 char *cond_end = NULL;
cc59ec59 8893
e9cafbcc 8894 tok = skip_spaces (tok);
e7e0cddf
SS
8895
8896 if ((*tok == '"' || *tok == ',') && rest)
8897 {
8898 *rest = savestring (tok, strlen (tok));
8899 return;
8900 }
8901
e9cafbcc 8902 end_tok = skip_to_space (tok);
d634f2de 8903
018d34a4 8904 toklen = end_tok - tok;
d634f2de 8905
018d34a4
VP
8906 if (toklen >= 1 && strncmp (tok, "if", toklen) == 0)
8907 {
f7545552
TT
8908 struct expression *expr;
8909
018d34a4 8910 tok = cond_start = end_tok + 1;
f7545552
TT
8911 expr = parse_exp_1 (&tok, block_for_pc (pc), 0);
8912 xfree (expr);
018d34a4 8913 cond_end = tok;
d634f2de 8914 *cond_string = savestring (cond_start, cond_end - cond_start);
018d34a4
VP
8915 }
8916 else if (toklen >= 1 && strncmp (tok, "thread", toklen) == 0)
8917 {
8918 char *tmptok;
d634f2de 8919
018d34a4
VP
8920 tok = end_tok + 1;
8921 tmptok = tok;
8922 *thread = strtol (tok, &tok, 0);
8923 if (tok == tmptok)
8924 error (_("Junk after thread keyword."));
8925 if (!valid_thread_id (*thread))
8926 error (_("Unknown thread %d."), *thread);
8927 }
4a306c9a
JB
8928 else if (toklen >= 1 && strncmp (tok, "task", toklen) == 0)
8929 {
8930 char *tmptok;
8931
8932 tok = end_tok + 1;
8933 tmptok = tok;
8934 *task = strtol (tok, &tok, 0);
8935 if (tok == tmptok)
8936 error (_("Junk after task keyword."));
8937 if (!valid_task_id (*task))
b6199126 8938 error (_("Unknown task %d."), *task);
4a306c9a 8939 }
e7e0cddf
SS
8940 else if (rest)
8941 {
8942 *rest = savestring (tok, strlen (tok));
8943 tok += toklen;
8944 }
018d34a4
VP
8945 else
8946 error (_("Junk at end of arguments."));
8947 }
8948}
8949
0fb4aa4b
PA
8950/* Decode a static tracepoint marker spec. */
8951
8952static struct symtabs_and_lines
8953decode_static_tracepoint_spec (char **arg_p)
8954{
8955 VEC(static_tracepoint_marker_p) *markers = NULL;
8956 struct symtabs_and_lines sals;
0fb4aa4b
PA
8957 struct cleanup *old_chain;
8958 char *p = &(*arg_p)[3];
8959 char *endp;
8960 char *marker_str;
8961 int i;
8962
e9cafbcc 8963 p = skip_spaces (p);
0fb4aa4b 8964
e9cafbcc 8965 endp = skip_to_space (p);
0fb4aa4b
PA
8966
8967 marker_str = savestring (p, endp - p);
8968 old_chain = make_cleanup (xfree, marker_str);
8969
8970 markers = target_static_tracepoint_markers_by_strid (marker_str);
8971 if (VEC_empty(static_tracepoint_marker_p, markers))
8972 error (_("No known static tracepoint marker named %s"), marker_str);
8973
8974 sals.nelts = VEC_length(static_tracepoint_marker_p, markers);
8975 sals.sals = xmalloc (sizeof *sals.sals * sals.nelts);
8976
8977 for (i = 0; i < sals.nelts; i++)
8978 {
8979 struct static_tracepoint_marker *marker;
8980
8981 marker = VEC_index (static_tracepoint_marker_p, markers, i);
8982
8983 init_sal (&sals.sals[i]);
8984
8985 sals.sals[i] = find_pc_line (marker->address, 0);
8986 sals.sals[i].pc = marker->address;
8987
8988 release_static_tracepoint_marker (marker);
8989 }
8990
8991 do_cleanups (old_chain);
8992
8993 *arg_p = endp;
8994 return sals;
8995}
8996
fd9b8c24
PA
8997/* Set a breakpoint. This function is shared between CLI and MI
8998 functions for setting a breakpoint. This function has two major
8999 modes of operations, selected by the PARSE_CONDITION_AND_THREAD
9000 parameter. If non-zero, the function will parse arg, extracting
4a64f543
MS
9001 breakpoint location, address and thread. Otherwise, ARG is just
9002 the location of breakpoint, with condition and thread specified by
9003 the COND_STRING and THREAD parameters. If INTERNAL is non-zero,
9004 the breakpoint number will be allocated from the internal
9005 breakpoint count. Returns true if any breakpoint was created;
9006 false otherwise. */
0101ce28 9007
8cdf0e15
VP
9008int
9009create_breakpoint (struct gdbarch *gdbarch,
e7e0cddf
SS
9010 char *arg, char *cond_string,
9011 int thread, char *extra_string,
8cdf0e15 9012 int parse_condition_and_thread,
0fb4aa4b 9013 int tempflag, enum bptype type_wanted,
8cdf0e15
VP
9014 int ignore_count,
9015 enum auto_boolean pending_break_support,
c0a91b2b 9016 const struct breakpoint_ops *ops,
44f238bb
PA
9017 int from_tty, int enabled, int internal,
9018 unsigned flags)
c3f6f71d 9019{
b78a6381 9020 volatile struct gdb_exception e;
f8eba3c6 9021 char *copy_arg = NULL;
c3f6f71d 9022 char *addr_start = arg;
7efd8fc2 9023 struct linespec_result canonical;
c3f6f71d 9024 struct cleanup *old_chain;
80c99de1 9025 struct cleanup *bkpt_chain = NULL;
0101ce28 9026 int pending = 0;
4a306c9a 9027 int task = 0;
86b17b60 9028 int prev_bkpt_count = breakpoint_count;
c3f6f71d 9029
348d480f
PA
9030 gdb_assert (ops != NULL);
9031
7efd8fc2 9032 init_linespec_result (&canonical);
c3f6f71d 9033
b78a6381
TT
9034 TRY_CATCH (e, RETURN_MASK_ALL)
9035 {
983af33b
SDJ
9036 ops->create_sals_from_address (&arg, &canonical, type_wanted,
9037 addr_start, &copy_arg);
b78a6381 9038 }
0101ce28
JJ
9039
9040 /* If caller is interested in rc value from parse, set value. */
05ff989b 9041 switch (e.reason)
0101ce28 9042 {
983af33b
SDJ
9043 case GDB_NO_ERROR:
9044 if (VEC_empty (linespec_sals, canonical.sals))
9045 return 0;
9046 break;
05ff989b
AC
9047 case RETURN_ERROR:
9048 switch (e.error)
0101ce28 9049 {
05ff989b 9050 case NOT_FOUND_ERROR:
0101ce28 9051
05ff989b
AC
9052 /* If pending breakpoint support is turned off, throw
9053 error. */
fa8d40ab
JJ
9054
9055 if (pending_break_support == AUTO_BOOLEAN_FALSE)
723a2275
VP
9056 throw_exception (e);
9057
9058 exception_print (gdb_stderr, e);
fa8d40ab 9059
05ff989b
AC
9060 /* If pending breakpoint support is auto query and the user
9061 selects no, then simply return the error code. */
059fb39f 9062 if (pending_break_support == AUTO_BOOLEAN_AUTO
bfccc43c
YQ
9063 && !nquery (_("Make %s pending on future shared library load? "),
9064 bptype_string (type_wanted)))
fd9b8c24 9065 return 0;
fa8d40ab 9066
05ff989b
AC
9067 /* At this point, either the user was queried about setting
9068 a pending breakpoint and selected yes, or pending
9069 breakpoint behavior is on and thus a pending breakpoint
9070 is defaulted on behalf of the user. */
f8eba3c6
TT
9071 {
9072 struct linespec_sals lsal;
9073
9074 copy_arg = xstrdup (addr_start);
9075 lsal.canonical = xstrdup (copy_arg);
9076 lsal.sals.nelts = 1;
9077 lsal.sals.sals = XNEW (struct symtab_and_line);
9078 init_sal (&lsal.sals.sals[0]);
9079 pending = 1;
9080 VEC_safe_push (linespec_sals, canonical.sals, &lsal);
9081 }
05ff989b
AC
9082 break;
9083 default:
98deb0da 9084 throw_exception (e);
0101ce28 9085 }
2abae994 9086 break;
05ff989b 9087 default:
983af33b 9088 throw_exception (e);
0101ce28 9089 }
c3f6f71d 9090
4a64f543 9091 /* Create a chain of things that always need to be cleaned up. */
f8eba3c6 9092 old_chain = make_cleanup_destroy_linespec_result (&canonical);
c3f6f71d 9093
c3f6f71d
JM
9094 /* ----------------------------- SNIP -----------------------------
9095 Anything added to the cleanup chain beyond this point is assumed
9096 to be part of a breakpoint. If the breakpoint create succeeds
80c99de1
PA
9097 then the memory is not reclaimed. */
9098 bkpt_chain = make_cleanup (null_cleanup, 0);
c3f6f71d 9099
c3f6f71d
JM
9100 /* Resolve all line numbers to PC's and verify that the addresses
9101 are ok for the target. */
0101ce28 9102 if (!pending)
f8eba3c6
TT
9103 {
9104 int ix;
9105 struct linespec_sals *iter;
9106
9107 for (ix = 0; VEC_iterate (linespec_sals, canonical.sals, ix, iter); ++ix)
9108 breakpoint_sals_to_pc (&iter->sals);
9109 }
c3f6f71d 9110
7a697b8d 9111 /* Fast tracepoints may have additional restrictions on location. */
bfccc43c 9112 if (!pending && type_wanted == bp_fast_tracepoint)
f8eba3c6
TT
9113 {
9114 int ix;
9115 struct linespec_sals *iter;
9116
9117 for (ix = 0; VEC_iterate (linespec_sals, canonical.sals, ix, iter); ++ix)
9118 check_fast_tracepoint_sals (gdbarch, &iter->sals);
9119 }
7a697b8d 9120
c3f6f71d
JM
9121 /* Verify that condition can be parsed, before setting any
9122 breakpoints. Allocate a separate condition expression for each
4a64f543 9123 breakpoint. */
0101ce28 9124 if (!pending)
c3f6f71d 9125 {
f8eba3c6
TT
9126 struct linespec_sals *lsal;
9127
9128 lsal = VEC_index (linespec_sals, canonical.sals, 0);
9129
2f069f6f 9130 if (parse_condition_and_thread)
72b2ff0e 9131 {
e7e0cddf 9132 char *rest;
72b2ff0e
VP
9133 /* Here we only parse 'arg' to separate condition
9134 from thread number, so parsing in context of first
9135 sal is OK. When setting the breakpoint we'll
9136 re-parse it in context of each sal. */
9137 cond_string = NULL;
9138 thread = -1;
e7e0cddf 9139 rest = NULL;
f8eba3c6 9140 find_condition_and_thread (arg, lsal->sals.sals[0].pc, &cond_string,
e7e0cddf 9141 &thread, &task, &rest);
72b2ff0e
VP
9142 if (cond_string)
9143 make_cleanup (xfree, cond_string);
e7e0cddf
SS
9144 if (rest)
9145 make_cleanup (xfree, rest);
9146 if (rest)
9147 extra_string = rest;
72b2ff0e 9148 }
2f069f6f 9149 else
72b2ff0e
VP
9150 {
9151 /* Create a private copy of condition string. */
9152 if (cond_string)
9153 {
9154 cond_string = xstrdup (cond_string);
9155 make_cleanup (xfree, cond_string);
9156 }
e7e0cddf
SS
9157 /* Create a private copy of any extra string. */
9158 if (extra_string)
9159 {
9160 extra_string = xstrdup (extra_string);
9161 make_cleanup (xfree, extra_string);
9162 }
72b2ff0e 9163 }
0fb4aa4b 9164
983af33b 9165 ops->create_breakpoints_sal (gdbarch, &canonical, lsal,
e7e0cddf 9166 cond_string, extra_string, type_wanted,
d9b3f62e
PA
9167 tempflag ? disp_del : disp_donttouch,
9168 thread, task, ignore_count, ops,
44f238bb 9169 from_tty, enabled, internal, flags);
c906108c 9170 }
0101ce28
JJ
9171 else
9172 {
0101ce28
JJ
9173 struct breakpoint *b;
9174
0101ce28
JJ
9175 make_cleanup (xfree, copy_arg);
9176
bfccc43c
YQ
9177 if (is_tracepoint_type (type_wanted))
9178 {
9179 struct tracepoint *t;
9180
9181 t = XCNEW (struct tracepoint);
9182 b = &t->base;
9183 }
9184 else
9185 b = XNEW (struct breakpoint);
9186
9187 init_raw_breakpoint_without_location (b, gdbarch, type_wanted, ops);
9188
f8eba3c6 9189 b->addr_string = copy_arg;
72b2ff0e 9190 b->cond_string = NULL;
e7e0cddf 9191 b->extra_string = NULL;
0101ce28 9192 b->ignore_count = ignore_count;
0101ce28 9193 b->disposition = tempflag ? disp_del : disp_donttouch;
0d381245 9194 b->condition_not_parsed = 1;
41447f92 9195 b->enable_state = enabled ? bp_enabled : bp_disabled;
cc72b2a2
KP
9196 if ((type_wanted != bp_breakpoint
9197 && type_wanted != bp_hardware_breakpoint) || thread != -1)
f8eba3c6 9198 b->pspace = current_program_space;
8bea4e01 9199
bfccc43c 9200 install_breakpoint (internal, b, 0);
0101ce28
JJ
9201 }
9202
f8eba3c6 9203 if (VEC_length (linespec_sals, canonical.sals) > 1)
95a42b64 9204 {
3e43a32a
MS
9205 warning (_("Multiple breakpoints were set.\nUse the "
9206 "\"delete\" command to delete unwanted breakpoints."));
86b17b60 9207 prev_breakpoint_count = prev_bkpt_count;
95a42b64
TT
9208 }
9209
80c99de1
PA
9210 /* That's it. Discard the cleanups for data inserted into the
9211 breakpoint. */
9212 discard_cleanups (bkpt_chain);
9213 /* But cleanup everything else. */
c3f6f71d 9214 do_cleanups (old_chain);
217dc9e2 9215
80c99de1 9216 /* error call may happen here - have BKPT_CHAIN already discarded. */
217dc9e2 9217 update_global_location_list (1);
fd9b8c24
PA
9218
9219 return 1;
c3f6f71d 9220}
c906108c 9221
348d480f 9222/* Set a breakpoint.
72b2ff0e
VP
9223 ARG is a string describing breakpoint address,
9224 condition, and thread.
9225 FLAG specifies if a breakpoint is hardware on,
9226 and if breakpoint is temporary, using BP_HARDWARE_FLAG
9227 and BP_TEMPFLAG. */
348d480f 9228
98deb0da 9229static void
72b2ff0e 9230break_command_1 (char *arg, int flag, int from_tty)
c3f6f71d 9231{
72b2ff0e 9232 int tempflag = flag & BP_TEMPFLAG;
0fb4aa4b
PA
9233 enum bptype type_wanted = (flag & BP_HARDWAREFLAG
9234 ? bp_hardware_breakpoint
9235 : bp_breakpoint);
55aa24fb
SDJ
9236 struct breakpoint_ops *ops;
9237 const char *arg_cp = arg;
9238
9239 /* Matching breakpoints on probes. */
9240 if (arg && probe_linespec_to_ops (&arg_cp) != NULL)
9241 ops = &bkpt_probe_breakpoint_ops;
9242 else
9243 ops = &bkpt_breakpoint_ops;
c3f6f71d 9244
8cdf0e15
VP
9245 create_breakpoint (get_current_arch (),
9246 arg,
e7e0cddf 9247 NULL, 0, NULL, 1 /* parse arg */,
0fb4aa4b 9248 tempflag, type_wanted,
8cdf0e15
VP
9249 0 /* Ignore count */,
9250 pending_break_support,
55aa24fb 9251 ops,
8cdf0e15 9252 from_tty,
84f4c1fe 9253 1 /* enabled */,
44f238bb
PA
9254 0 /* internal */,
9255 0);
c906108c
SS
9256}
9257
c906108c
SS
9258/* Helper function for break_command_1 and disassemble_command. */
9259
9260void
fba45db2 9261resolve_sal_pc (struct symtab_and_line *sal)
c906108c
SS
9262{
9263 CORE_ADDR pc;
9264
9265 if (sal->pc == 0 && sal->symtab != NULL)
9266 {
9267 if (!find_line_pc (sal->symtab, sal->line, &pc))
8a3fe4f8 9268 error (_("No line %d in file \"%s\"."),
c906108c
SS
9269 sal->line, sal->symtab->filename);
9270 sal->pc = pc;
6a048695 9271
4a64f543
MS
9272 /* If this SAL corresponds to a breakpoint inserted using a line
9273 number, then skip the function prologue if necessary. */
6a048695 9274 if (sal->explicit_line)
059acae7 9275 skip_prologue_sal (sal);
c906108c
SS
9276 }
9277
9278 if (sal->section == 0 && sal->symtab != NULL)
9279 {
9280 struct blockvector *bv;
c5aa993b
JM
9281 struct block *b;
9282 struct symbol *sym;
c906108c 9283
801e3a5b 9284 bv = blockvector_for_pc_sect (sal->pc, 0, &b, sal->symtab);
c906108c
SS
9285 if (bv != NULL)
9286 {
7f0df278 9287 sym = block_linkage_function (b);
c906108c
SS
9288 if (sym != NULL)
9289 {
9290 fixup_symbol_section (sym, sal->symtab->objfile);
714835d5 9291 sal->section = SYMBOL_OBJ_SECTION (sym);
c906108c
SS
9292 }
9293 else
9294 {
4a64f543
MS
9295 /* It really is worthwhile to have the section, so we'll
9296 just have to look harder. This case can be executed
9297 if we have line numbers but no functions (as can
9298 happen in assembly source). */
c906108c 9299
c5aa993b 9300 struct minimal_symbol *msym;
6c95b8df
PA
9301 struct cleanup *old_chain = save_current_space_and_thread ();
9302
9303 switch_to_program_space_and_thread (sal->pspace);
c906108c
SS
9304
9305 msym = lookup_minimal_symbol_by_pc (sal->pc);
9306 if (msym)
714835d5 9307 sal->section = SYMBOL_OBJ_SECTION (msym);
6c95b8df
PA
9308
9309 do_cleanups (old_chain);
c906108c
SS
9310 }
9311 }
9312 }
9313}
9314
9315void
fba45db2 9316break_command (char *arg, int from_tty)
c906108c 9317{
db107f19 9318 break_command_1 (arg, 0, from_tty);
c906108c
SS
9319}
9320
c906108c 9321void
fba45db2 9322tbreak_command (char *arg, int from_tty)
c906108c 9323{
db107f19 9324 break_command_1 (arg, BP_TEMPFLAG, from_tty);
c906108c
SS
9325}
9326
c906108c 9327static void
fba45db2 9328hbreak_command (char *arg, int from_tty)
c906108c 9329{
db107f19 9330 break_command_1 (arg, BP_HARDWAREFLAG, from_tty);
c906108c
SS
9331}
9332
9333static void
fba45db2 9334thbreak_command (char *arg, int from_tty)
c906108c 9335{
db107f19 9336 break_command_1 (arg, (BP_TEMPFLAG | BP_HARDWAREFLAG), from_tty);
c906108c
SS
9337}
9338
9339static void
fba45db2 9340stop_command (char *arg, int from_tty)
c906108c 9341{
a3f17187 9342 printf_filtered (_("Specify the type of breakpoint to set.\n\
c906108c 9343Usage: stop in <function | address>\n\
a3f17187 9344 stop at <line>\n"));
c906108c
SS
9345}
9346
9347static void
fba45db2 9348stopin_command (char *arg, int from_tty)
c906108c
SS
9349{
9350 int badInput = 0;
9351
c5aa993b 9352 if (arg == (char *) NULL)
c906108c
SS
9353 badInput = 1;
9354 else if (*arg != '*')
9355 {
9356 char *argptr = arg;
9357 int hasColon = 0;
9358
4a64f543 9359 /* Look for a ':'. If this is a line number specification, then
53a5351d 9360 say it is bad, otherwise, it should be an address or
4a64f543 9361 function/method name. */
c906108c 9362 while (*argptr && !hasColon)
c5aa993b
JM
9363 {
9364 hasColon = (*argptr == ':');
9365 argptr++;
9366 }
c906108c
SS
9367
9368 if (hasColon)
c5aa993b 9369 badInput = (*argptr != ':'); /* Not a class::method */
c906108c 9370 else
c5aa993b 9371 badInput = isdigit (*arg); /* a simple line number */
c906108c
SS
9372 }
9373
9374 if (badInput)
a3f17187 9375 printf_filtered (_("Usage: stop in <function | address>\n"));
c906108c 9376 else
db107f19 9377 break_command_1 (arg, 0, from_tty);
c906108c
SS
9378}
9379
9380static void
fba45db2 9381stopat_command (char *arg, int from_tty)
c906108c
SS
9382{
9383 int badInput = 0;
9384
c5aa993b 9385 if (arg == (char *) NULL || *arg == '*') /* no line number */
c906108c
SS
9386 badInput = 1;
9387 else
9388 {
9389 char *argptr = arg;
9390 int hasColon = 0;
9391
4a64f543
MS
9392 /* Look for a ':'. If there is a '::' then get out, otherwise
9393 it is probably a line number. */
c906108c 9394 while (*argptr && !hasColon)
c5aa993b
JM
9395 {
9396 hasColon = (*argptr == ':');
9397 argptr++;
9398 }
c906108c
SS
9399
9400 if (hasColon)
c5aa993b 9401 badInput = (*argptr == ':'); /* we have class::method */
c906108c 9402 else
c5aa993b 9403 badInput = !isdigit (*arg); /* not a line number */
c906108c
SS
9404 }
9405
9406 if (badInput)
a3f17187 9407 printf_filtered (_("Usage: stop at <line>\n"));
c906108c 9408 else
db107f19 9409 break_command_1 (arg, 0, from_tty);
c906108c
SS
9410}
9411
e7e0cddf
SS
9412void dprintf_command (char *arg, int from_tty);
9413
9414/* The dynamic printf command is mostly like a regular breakpoint, but
9415 with a prewired command list consisting of a single output command,
9416 built from extra arguments supplied on the dprintf command
9417 line. */
9418
9419void
9420dprintf_command (char *arg, int from_tty)
9421{
9422 create_breakpoint (get_current_arch (),
9423 arg,
9424 NULL, 0, NULL, 1 /* parse arg */,
9425 0, bp_dprintf,
9426 0 /* Ignore count */,
9427 pending_break_support,
9428 &dprintf_breakpoint_ops,
9429 from_tty,
9430 1 /* enabled */,
9431 0 /* internal */,
9432 0);
9433}
9434
f1310107
TJB
9435/* Implement the "breakpoint_hit" breakpoint_ops method for
9436 ranged breakpoints. */
9437
9438static int
9439breakpoint_hit_ranged_breakpoint (const struct bp_location *bl,
9440 struct address_space *aspace,
09ac7c10
TT
9441 CORE_ADDR bp_addr,
9442 const struct target_waitstatus *ws)
f1310107 9443{
09ac7c10
TT
9444 if (ws->kind != TARGET_WAITKIND_STOPPED
9445 || ws->value.sig != TARGET_SIGNAL_TRAP)
9446 return 0;
9447
f1310107
TJB
9448 return breakpoint_address_match_range (bl->pspace->aspace, bl->address,
9449 bl->length, aspace, bp_addr);
9450}
9451
9452/* Implement the "resources_needed" breakpoint_ops method for
9453 ranged breakpoints. */
9454
9455static int
9456resources_needed_ranged_breakpoint (const struct bp_location *bl)
9457{
9458 return target_ranged_break_num_registers ();
9459}
9460
9461/* Implement the "print_it" breakpoint_ops method for
9462 ranged breakpoints. */
9463
9464static enum print_stop_action
348d480f 9465print_it_ranged_breakpoint (bpstat bs)
f1310107 9466{
348d480f 9467 struct breakpoint *b = bs->breakpoint_at;
f1310107 9468 struct bp_location *bl = b->loc;
79a45e25 9469 struct ui_out *uiout = current_uiout;
f1310107
TJB
9470
9471 gdb_assert (b->type == bp_hardware_breakpoint);
9472
9473 /* Ranged breakpoints have only one location. */
9474 gdb_assert (bl && bl->next == NULL);
9475
9476 annotate_breakpoint (b->number);
9477 if (b->disposition == disp_del)
9478 ui_out_text (uiout, "\nTemporary ranged breakpoint ");
9479 else
9480 ui_out_text (uiout, "\nRanged breakpoint ");
9481 if (ui_out_is_mi_like_p (uiout))
9482 {
9483 ui_out_field_string (uiout, "reason",
9484 async_reason_lookup (EXEC_ASYNC_BREAKPOINT_HIT));
9485 ui_out_field_string (uiout, "disp", bpdisp_text (b->disposition));
9486 }
9487 ui_out_field_int (uiout, "bkptno", b->number);
9488 ui_out_text (uiout, ", ");
9489
9490 return PRINT_SRC_AND_LOC;
9491}
9492
9493/* Implement the "print_one" breakpoint_ops method for
9494 ranged breakpoints. */
9495
9496static void
9497print_one_ranged_breakpoint (struct breakpoint *b,
9498 struct bp_location **last_loc)
9499{
9500 struct bp_location *bl = b->loc;
9501 struct value_print_options opts;
79a45e25 9502 struct ui_out *uiout = current_uiout;
f1310107
TJB
9503
9504 /* Ranged breakpoints have only one location. */
9505 gdb_assert (bl && bl->next == NULL);
9506
9507 get_user_print_options (&opts);
9508
9509 if (opts.addressprint)
9510 /* We don't print the address range here, it will be printed later
9511 by print_one_detail_ranged_breakpoint. */
9512 ui_out_field_skip (uiout, "addr");
9513 annotate_field (5);
9514 print_breakpoint_location (b, bl);
9515 *last_loc = bl;
9516}
9517
9518/* Implement the "print_one_detail" breakpoint_ops method for
9519 ranged breakpoints. */
9520
9521static void
9522print_one_detail_ranged_breakpoint (const struct breakpoint *b,
9523 struct ui_out *uiout)
9524{
9525 CORE_ADDR address_start, address_end;
9526 struct bp_location *bl = b->loc;
f99d8bf4
PA
9527 struct ui_file *stb = mem_fileopen ();
9528 struct cleanup *cleanup = make_cleanup_ui_file_delete (stb);
f1310107
TJB
9529
9530 gdb_assert (bl);
9531
9532 address_start = bl->address;
9533 address_end = address_start + bl->length - 1;
9534
9535 ui_out_text (uiout, "\taddress range: ");
f99d8bf4 9536 fprintf_unfiltered (stb, "[%s, %s]",
f1310107
TJB
9537 print_core_address (bl->gdbarch, address_start),
9538 print_core_address (bl->gdbarch, address_end));
9539 ui_out_field_stream (uiout, "addr", stb);
9540 ui_out_text (uiout, "\n");
9541
9542 do_cleanups (cleanup);
9543}
9544
9545/* Implement the "print_mention" breakpoint_ops method for
9546 ranged breakpoints. */
9547
9548static void
9549print_mention_ranged_breakpoint (struct breakpoint *b)
9550{
9551 struct bp_location *bl = b->loc;
79a45e25 9552 struct ui_out *uiout = current_uiout;
f1310107
TJB
9553
9554 gdb_assert (bl);
9555 gdb_assert (b->type == bp_hardware_breakpoint);
9556
9557 if (ui_out_is_mi_like_p (uiout))
9558 return;
9559
9560 printf_filtered (_("Hardware assisted ranged breakpoint %d from %s to %s."),
9561 b->number, paddress (bl->gdbarch, bl->address),
9562 paddress (bl->gdbarch, bl->address + bl->length - 1));
9563}
9564
9565/* Implement the "print_recreate" breakpoint_ops method for
9566 ranged breakpoints. */
9567
9568static void
9569print_recreate_ranged_breakpoint (struct breakpoint *b, struct ui_file *fp)
9570{
9571 fprintf_unfiltered (fp, "break-range %s, %s", b->addr_string,
9572 b->addr_string_range_end);
d9b3f62e 9573 print_recreate_thread (b, fp);
f1310107
TJB
9574}
9575
9576/* The breakpoint_ops structure to be used in ranged breakpoints. */
9577
2060206e 9578static struct breakpoint_ops ranged_breakpoint_ops;
f1310107
TJB
9579
9580/* Find the address where the end of the breakpoint range should be
9581 placed, given the SAL of the end of the range. This is so that if
9582 the user provides a line number, the end of the range is set to the
9583 last instruction of the given line. */
9584
9585static CORE_ADDR
9586find_breakpoint_range_end (struct symtab_and_line sal)
9587{
9588 CORE_ADDR end;
9589
9590 /* If the user provided a PC value, use it. Otherwise,
9591 find the address of the end of the given location. */
9592 if (sal.explicit_pc)
9593 end = sal.pc;
9594 else
9595 {
9596 int ret;
9597 CORE_ADDR start;
9598
9599 ret = find_line_pc_range (sal, &start, &end);
9600 if (!ret)
9601 error (_("Could not find location of the end of the range."));
9602
9603 /* find_line_pc_range returns the start of the next line. */
9604 end--;
9605 }
9606
9607 return end;
9608}
9609
9610/* Implement the "break-range" CLI command. */
9611
9612static void
9613break_range_command (char *arg, int from_tty)
9614{
9615 char *arg_start, *addr_string_start, *addr_string_end;
9616 struct linespec_result canonical_start, canonical_end;
9617 int bp_count, can_use_bp, length;
9618 CORE_ADDR end;
9619 struct breakpoint *b;
9620 struct symtab_and_line sal_start, sal_end;
f1310107 9621 struct cleanup *cleanup_bkpt;
f8eba3c6 9622 struct linespec_sals *lsal_start, *lsal_end;
f1310107
TJB
9623
9624 /* We don't support software ranged breakpoints. */
9625 if (target_ranged_break_num_registers () < 0)
9626 error (_("This target does not support hardware ranged breakpoints."));
9627
9628 bp_count = hw_breakpoint_used_count ();
9629 bp_count += target_ranged_break_num_registers ();
9630 can_use_bp = target_can_use_hardware_watchpoint (bp_hardware_breakpoint,
9631 bp_count, 0);
9632 if (can_use_bp < 0)
9633 error (_("Hardware breakpoints used exceeds limit."));
9634
f8eba3c6 9635 arg = skip_spaces (arg);
f1310107
TJB
9636 if (arg == NULL || arg[0] == '\0')
9637 error(_("No address range specified."));
9638
f1310107
TJB
9639 init_linespec_result (&canonical_start);
9640
f8eba3c6
TT
9641 arg_start = arg;
9642 parse_breakpoint_sals (&arg, &canonical_start);
f1310107 9643
f8eba3c6 9644 cleanup_bkpt = make_cleanup_destroy_linespec_result (&canonical_start);
f1310107
TJB
9645
9646 if (arg[0] != ',')
9647 error (_("Too few arguments."));
f8eba3c6 9648 else if (VEC_empty (linespec_sals, canonical_start.sals))
f1310107 9649 error (_("Could not find location of the beginning of the range."));
f8eba3c6
TT
9650
9651 lsal_start = VEC_index (linespec_sals, canonical_start.sals, 0);
9652
9653 if (VEC_length (linespec_sals, canonical_start.sals) > 1
9654 || lsal_start->sals.nelts != 1)
f1310107
TJB
9655 error (_("Cannot create a ranged breakpoint with multiple locations."));
9656
f8eba3c6
TT
9657 sal_start = lsal_start->sals.sals[0];
9658 addr_string_start = savestring (arg_start, arg - arg_start);
9659 make_cleanup (xfree, addr_string_start);
f1310107
TJB
9660
9661 arg++; /* Skip the comma. */
f8eba3c6 9662 arg = skip_spaces (arg);
f1310107
TJB
9663
9664 /* Parse the end location. */
9665
f1310107
TJB
9666 init_linespec_result (&canonical_end);
9667 arg_start = arg;
9668
f8eba3c6 9669 /* We call decode_line_full directly here instead of using
f1310107
TJB
9670 parse_breakpoint_sals because we need to specify the start location's
9671 symtab and line as the default symtab and line for the end of the
9672 range. This makes it possible to have ranges like "foo.c:27, +14",
9673 where +14 means 14 lines from the start location. */
f8eba3c6
TT
9674 decode_line_full (&arg, DECODE_LINE_FUNFIRSTLINE,
9675 sal_start.symtab, sal_start.line,
9676 &canonical_end, NULL, NULL);
9677
9678 make_cleanup_destroy_linespec_result (&canonical_end);
f1310107 9679
f8eba3c6 9680 if (VEC_empty (linespec_sals, canonical_end.sals))
f1310107 9681 error (_("Could not find location of the end of the range."));
f8eba3c6
TT
9682
9683 lsal_end = VEC_index (linespec_sals, canonical_end.sals, 0);
9684 if (VEC_length (linespec_sals, canonical_end.sals) > 1
9685 || lsal_end->sals.nelts != 1)
f1310107
TJB
9686 error (_("Cannot create a ranged breakpoint with multiple locations."));
9687
f8eba3c6
TT
9688 sal_end = lsal_end->sals.sals[0];
9689 addr_string_end = savestring (arg_start, arg - arg_start);
9690 make_cleanup (xfree, addr_string_end);
f1310107
TJB
9691
9692 end = find_breakpoint_range_end (sal_end);
9693 if (sal_start.pc > end)
177b42fe 9694 error (_("Invalid address range, end precedes start."));
f1310107
TJB
9695
9696 length = end - sal_start.pc + 1;
9697 if (length < 0)
9698 /* Length overflowed. */
9699 error (_("Address range too large."));
9700 else if (length == 1)
9701 {
9702 /* This range is simple enough to be handled by
9703 the `hbreak' command. */
9704 hbreak_command (addr_string_start, 1);
9705
9706 do_cleanups (cleanup_bkpt);
9707
9708 return;
9709 }
9710
9711 /* Now set up the breakpoint. */
9712 b = set_raw_breakpoint (get_current_arch (), sal_start,
348d480f 9713 bp_hardware_breakpoint, &ranged_breakpoint_ops);
f1310107
TJB
9714 set_breakpoint_count (breakpoint_count + 1);
9715 b->number = breakpoint_count;
9716 b->disposition = disp_donttouch;
f8eba3c6
TT
9717 b->addr_string = xstrdup (addr_string_start);
9718 b->addr_string_range_end = xstrdup (addr_string_end);
f1310107
TJB
9719 b->loc->length = length;
9720
f8eba3c6 9721 do_cleanups (cleanup_bkpt);
f1310107
TJB
9722
9723 mention (b);
8d3788bd 9724 observer_notify_breakpoint_created (b);
f1310107
TJB
9725 update_global_location_list (1);
9726}
9727
4a64f543
MS
9728/* Return non-zero if EXP is verified as constant. Returned zero
9729 means EXP is variable. Also the constant detection may fail for
9730 some constant expressions and in such case still falsely return
9731 zero. */
2e6e3d9c 9732
65d79d4b
SDJ
9733static int
9734watchpoint_exp_is_const (const struct expression *exp)
9735{
9736 int i = exp->nelts;
9737
9738 while (i > 0)
9739 {
9740 int oplenp, argsp;
9741
9742 /* We are only interested in the descriptor of each element. */
9743 operator_length (exp, i, &oplenp, &argsp);
9744 i -= oplenp;
9745
9746 switch (exp->elts[i].opcode)
9747 {
9748 case BINOP_ADD:
9749 case BINOP_SUB:
9750 case BINOP_MUL:
9751 case BINOP_DIV:
9752 case BINOP_REM:
9753 case BINOP_MOD:
9754 case BINOP_LSH:
9755 case BINOP_RSH:
9756 case BINOP_LOGICAL_AND:
9757 case BINOP_LOGICAL_OR:
9758 case BINOP_BITWISE_AND:
9759 case BINOP_BITWISE_IOR:
9760 case BINOP_BITWISE_XOR:
9761 case BINOP_EQUAL:
9762 case BINOP_NOTEQUAL:
9763 case BINOP_LESS:
9764 case BINOP_GTR:
9765 case BINOP_LEQ:
9766 case BINOP_GEQ:
9767 case BINOP_REPEAT:
9768 case BINOP_COMMA:
9769 case BINOP_EXP:
9770 case BINOP_MIN:
9771 case BINOP_MAX:
9772 case BINOP_INTDIV:
9773 case BINOP_CONCAT:
9774 case BINOP_IN:
9775 case BINOP_RANGE:
9776 case TERNOP_COND:
9777 case TERNOP_SLICE:
9778 case TERNOP_SLICE_COUNT:
9779
9780 case OP_LONG:
9781 case OP_DOUBLE:
9782 case OP_DECFLOAT:
9783 case OP_LAST:
9784 case OP_COMPLEX:
9785 case OP_STRING:
9786 case OP_BITSTRING:
9787 case OP_ARRAY:
9788 case OP_TYPE:
9789 case OP_NAME:
9790 case OP_OBJC_NSSTRING:
9791
9792 case UNOP_NEG:
9793 case UNOP_LOGICAL_NOT:
9794 case UNOP_COMPLEMENT:
9795 case UNOP_ADDR:
9796 case UNOP_HIGH:
aeaa2474 9797 case UNOP_CAST:
4a64f543
MS
9798 /* Unary, binary and ternary operators: We have to check
9799 their operands. If they are constant, then so is the
9800 result of that operation. For instance, if A and B are
9801 determined to be constants, then so is "A + B".
9802
9803 UNOP_IND is one exception to the rule above, because the
9804 value of *ADDR is not necessarily a constant, even when
9805 ADDR is. */
65d79d4b
SDJ
9806 break;
9807
9808 case OP_VAR_VALUE:
9809 /* Check whether the associated symbol is a constant.
4a64f543 9810
65d79d4b 9811 We use SYMBOL_CLASS rather than TYPE_CONST because it's
4a64f543
MS
9812 possible that a buggy compiler could mark a variable as
9813 constant even when it is not, and TYPE_CONST would return
9814 true in this case, while SYMBOL_CLASS wouldn't.
9815
9816 We also have to check for function symbols because they
9817 are always constant. */
65d79d4b
SDJ
9818 {
9819 struct symbol *s = exp->elts[i + 2].symbol;
9820
9821 if (SYMBOL_CLASS (s) != LOC_BLOCK
9822 && SYMBOL_CLASS (s) != LOC_CONST
9823 && SYMBOL_CLASS (s) != LOC_CONST_BYTES)
9824 return 0;
9825 break;
9826 }
9827
9828 /* The default action is to return 0 because we are using
9829 the optimistic approach here: If we don't know something,
9830 then it is not a constant. */
9831 default:
9832 return 0;
9833 }
9834 }
9835
9836 return 1;
9837}
9838
3a5c3e22
PA
9839/* Implement the "dtor" breakpoint_ops method for watchpoints. */
9840
9841static void
9842dtor_watchpoint (struct breakpoint *self)
9843{
9844 struct watchpoint *w = (struct watchpoint *) self;
9845
9846 xfree (w->cond_exp);
9847 xfree (w->exp);
9848 xfree (w->exp_string);
9849 xfree (w->exp_string_reparse);
9850 value_free (w->val);
9851
9852 base_breakpoint_ops.dtor (self);
9853}
9854
348d480f
PA
9855/* Implement the "re_set" breakpoint_ops method for watchpoints. */
9856
9857static void
9858re_set_watchpoint (struct breakpoint *b)
9859{
3a5c3e22
PA
9860 struct watchpoint *w = (struct watchpoint *) b;
9861
348d480f
PA
9862 /* Watchpoint can be either on expression using entirely global
9863 variables, or it can be on local variables.
9864
9865 Watchpoints of the first kind are never auto-deleted, and even
9866 persist across program restarts. Since they can use variables
9867 from shared libraries, we need to reparse expression as libraries
9868 are loaded and unloaded.
9869
9870 Watchpoints on local variables can also change meaning as result
9871 of solib event. For example, if a watchpoint uses both a local
9872 and a global variables in expression, it's a local watchpoint,
9873 but unloading of a shared library will make the expression
9874 invalid. This is not a very common use case, but we still
9875 re-evaluate expression, to avoid surprises to the user.
9876
9877 Note that for local watchpoints, we re-evaluate it only if
9878 watchpoints frame id is still valid. If it's not, it means the
9879 watchpoint is out of scope and will be deleted soon. In fact,
9880 I'm not sure we'll ever be called in this case.
9881
9882 If a local watchpoint's frame id is still valid, then
3a5c3e22 9883 w->exp_valid_block is likewise valid, and we can safely use it.
348d480f 9884
3a5c3e22
PA
9885 Don't do anything about disabled watchpoints, since they will be
9886 reevaluated again when enabled. */
9887 update_watchpoint (w, 1 /* reparse */);
348d480f
PA
9888}
9889
77b06cd7
TJB
9890/* Implement the "insert" breakpoint_ops method for hardware watchpoints. */
9891
9892static int
9893insert_watchpoint (struct bp_location *bl)
9894{
3a5c3e22
PA
9895 struct watchpoint *w = (struct watchpoint *) bl->owner;
9896 int length = w->exact ? 1 : bl->length;
e09342b5
TJB
9897
9898 return target_insert_watchpoint (bl->address, length, bl->watchpoint_type,
3a5c3e22 9899 w->cond_exp);
77b06cd7
TJB
9900}
9901
9902/* Implement the "remove" breakpoint_ops method for hardware watchpoints. */
9903
9904static int
9905remove_watchpoint (struct bp_location *bl)
9906{
3a5c3e22
PA
9907 struct watchpoint *w = (struct watchpoint *) bl->owner;
9908 int length = w->exact ? 1 : bl->length;
e09342b5
TJB
9909
9910 return target_remove_watchpoint (bl->address, length, bl->watchpoint_type,
3a5c3e22 9911 w->cond_exp);
e09342b5
TJB
9912}
9913
e09342b5 9914static int
348d480f 9915breakpoint_hit_watchpoint (const struct bp_location *bl,
09ac7c10
TT
9916 struct address_space *aspace, CORE_ADDR bp_addr,
9917 const struct target_waitstatus *ws)
e09342b5 9918{
348d480f 9919 struct breakpoint *b = bl->owner;
3a5c3e22 9920 struct watchpoint *w = (struct watchpoint *) b;
77b06cd7 9921
348d480f
PA
9922 /* Continuable hardware watchpoints are treated as non-existent if the
9923 reason we stopped wasn't a hardware watchpoint (we didn't stop on
9924 some data address). Otherwise gdb won't stop on a break instruction
9925 in the code (not from a breakpoint) when a hardware watchpoint has
9926 been defined. Also skip watchpoints which we know did not trigger
9927 (did not match the data address). */
9928 if (is_hardware_watchpoint (b)
3a5c3e22 9929 && w->watchpoint_triggered == watch_triggered_no)
348d480f 9930 return 0;
9c06b0b4 9931
348d480f 9932 return 1;
9c06b0b4
TJB
9933}
9934
348d480f
PA
9935static void
9936check_status_watchpoint (bpstat bs)
9c06b0b4 9937{
348d480f 9938 gdb_assert (is_watchpoint (bs->breakpoint_at));
9c06b0b4 9939
348d480f 9940 bpstat_check_watchpoint (bs);
9c06b0b4
TJB
9941}
9942
9943/* Implement the "resources_needed" breakpoint_ops method for
348d480f 9944 hardware watchpoints. */
9c06b0b4
TJB
9945
9946static int
348d480f 9947resources_needed_watchpoint (const struct bp_location *bl)
9c06b0b4 9948{
3a5c3e22
PA
9949 struct watchpoint *w = (struct watchpoint *) bl->owner;
9950 int length = w->exact? 1 : bl->length;
348d480f
PA
9951
9952 return target_region_ok_for_hw_watchpoint (bl->address, length);
9c06b0b4
TJB
9953}
9954
9955/* Implement the "works_in_software_mode" breakpoint_ops method for
348d480f 9956 hardware watchpoints. */
9c06b0b4
TJB
9957
9958static int
348d480f 9959works_in_software_mode_watchpoint (const struct breakpoint *b)
9c06b0b4 9960{
efa80663
PA
9961 /* Read and access watchpoints only work with hardware support. */
9962 return b->type == bp_watchpoint || b->type == bp_hardware_watchpoint;
9c06b0b4
TJB
9963}
9964
9c06b0b4 9965static enum print_stop_action
348d480f 9966print_it_watchpoint (bpstat bs)
9c06b0b4 9967{
348d480f
PA
9968 struct cleanup *old_chain;
9969 struct breakpoint *b;
9970 const struct bp_location *bl;
f99d8bf4 9971 struct ui_file *stb;
348d480f 9972 enum print_stop_action result;
3a5c3e22 9973 struct watchpoint *w;
79a45e25 9974 struct ui_out *uiout = current_uiout;
348d480f
PA
9975
9976 gdb_assert (bs->bp_location_at != NULL);
9977
9978 bl = bs->bp_location_at;
9979 b = bs->breakpoint_at;
3a5c3e22 9980 w = (struct watchpoint *) b;
348d480f 9981
f99d8bf4
PA
9982 stb = mem_fileopen ();
9983 old_chain = make_cleanup_ui_file_delete (stb);
9c06b0b4
TJB
9984
9985 switch (b->type)
9986 {
348d480f 9987 case bp_watchpoint:
9c06b0b4
TJB
9988 case bp_hardware_watchpoint:
9989 annotate_watchpoint (b->number);
9990 if (ui_out_is_mi_like_p (uiout))
9991 ui_out_field_string
9992 (uiout, "reason",
9993 async_reason_lookup (EXEC_ASYNC_WATCHPOINT_TRIGGER));
348d480f
PA
9994 mention (b);
9995 make_cleanup_ui_out_tuple_begin_end (uiout, "value");
9996 ui_out_text (uiout, "\nOld value = ");
f99d8bf4 9997 watchpoint_value_print (bs->old_val, stb);
348d480f
PA
9998 ui_out_field_stream (uiout, "old", stb);
9999 ui_out_text (uiout, "\nNew value = ");
f99d8bf4 10000 watchpoint_value_print (w->val, stb);
348d480f
PA
10001 ui_out_field_stream (uiout, "new", stb);
10002 ui_out_text (uiout, "\n");
10003 /* More than one watchpoint may have been triggered. */
10004 result = PRINT_UNKNOWN;
9c06b0b4
TJB
10005 break;
10006
10007 case bp_read_watchpoint:
10008 if (ui_out_is_mi_like_p (uiout))
10009 ui_out_field_string
10010 (uiout, "reason",
10011 async_reason_lookup (EXEC_ASYNC_READ_WATCHPOINT_TRIGGER));
348d480f
PA
10012 mention (b);
10013 make_cleanup_ui_out_tuple_begin_end (uiout, "value");
10014 ui_out_text (uiout, "\nValue = ");
f99d8bf4 10015 watchpoint_value_print (w->val, stb);
348d480f
PA
10016 ui_out_field_stream (uiout, "value", stb);
10017 ui_out_text (uiout, "\n");
10018 result = PRINT_UNKNOWN;
9c06b0b4
TJB
10019 break;
10020
10021 case bp_access_watchpoint:
348d480f
PA
10022 if (bs->old_val != NULL)
10023 {
10024 annotate_watchpoint (b->number);
10025 if (ui_out_is_mi_like_p (uiout))
10026 ui_out_field_string
10027 (uiout, "reason",
10028 async_reason_lookup (EXEC_ASYNC_ACCESS_WATCHPOINT_TRIGGER));
10029 mention (b);
10030 make_cleanup_ui_out_tuple_begin_end (uiout, "value");
10031 ui_out_text (uiout, "\nOld value = ");
f99d8bf4 10032 watchpoint_value_print (bs->old_val, stb);
348d480f
PA
10033 ui_out_field_stream (uiout, "old", stb);
10034 ui_out_text (uiout, "\nNew value = ");
10035 }
10036 else
10037 {
10038 mention (b);
10039 if (ui_out_is_mi_like_p (uiout))
10040 ui_out_field_string
10041 (uiout, "reason",
10042 async_reason_lookup (EXEC_ASYNC_ACCESS_WATCHPOINT_TRIGGER));
10043 make_cleanup_ui_out_tuple_begin_end (uiout, "value");
10044 ui_out_text (uiout, "\nValue = ");
10045 }
f99d8bf4 10046 watchpoint_value_print (w->val, stb);
348d480f
PA
10047 ui_out_field_stream (uiout, "new", stb);
10048 ui_out_text (uiout, "\n");
10049 result = PRINT_UNKNOWN;
9c06b0b4
TJB
10050 break;
10051 default:
348d480f 10052 result = PRINT_UNKNOWN;
9c06b0b4
TJB
10053 }
10054
348d480f
PA
10055 do_cleanups (old_chain);
10056 return result;
10057}
10058
10059/* Implement the "print_mention" breakpoint_ops method for hardware
10060 watchpoints. */
10061
10062static void
10063print_mention_watchpoint (struct breakpoint *b)
10064{
10065 struct cleanup *ui_out_chain;
3a5c3e22 10066 struct watchpoint *w = (struct watchpoint *) b;
79a45e25 10067 struct ui_out *uiout = current_uiout;
348d480f
PA
10068
10069 switch (b->type)
10070 {
10071 case bp_watchpoint:
10072 ui_out_text (uiout, "Watchpoint ");
10073 ui_out_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "wpt");
10074 break;
10075 case bp_hardware_watchpoint:
10076 ui_out_text (uiout, "Hardware watchpoint ");
10077 ui_out_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "wpt");
10078 break;
10079 case bp_read_watchpoint:
10080 ui_out_text (uiout, "Hardware read watchpoint ");
10081 ui_out_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "hw-rwpt");
10082 break;
10083 case bp_access_watchpoint:
10084 ui_out_text (uiout, "Hardware access (read/write) watchpoint ");
10085 ui_out_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "hw-awpt");
10086 break;
10087 default:
10088 internal_error (__FILE__, __LINE__,
10089 _("Invalid hardware watchpoint type."));
10090 }
10091
10092 ui_out_field_int (uiout, "number", b->number);
10093 ui_out_text (uiout, ": ");
3a5c3e22 10094 ui_out_field_string (uiout, "exp", w->exp_string);
348d480f
PA
10095 do_cleanups (ui_out_chain);
10096}
10097
10098/* Implement the "print_recreate" breakpoint_ops method for
10099 watchpoints. */
10100
10101static void
10102print_recreate_watchpoint (struct breakpoint *b, struct ui_file *fp)
10103{
3a5c3e22
PA
10104 struct watchpoint *w = (struct watchpoint *) b;
10105
348d480f
PA
10106 switch (b->type)
10107 {
10108 case bp_watchpoint:
10109 case bp_hardware_watchpoint:
10110 fprintf_unfiltered (fp, "watch");
10111 break;
10112 case bp_read_watchpoint:
10113 fprintf_unfiltered (fp, "rwatch");
10114 break;
10115 case bp_access_watchpoint:
10116 fprintf_unfiltered (fp, "awatch");
10117 break;
10118 default:
10119 internal_error (__FILE__, __LINE__,
10120 _("Invalid watchpoint type."));
10121 }
10122
3a5c3e22 10123 fprintf_unfiltered (fp, " %s", w->exp_string);
d9b3f62e 10124 print_recreate_thread (b, fp);
348d480f
PA
10125}
10126
10127/* The breakpoint_ops structure to be used in hardware watchpoints. */
10128
2060206e 10129static struct breakpoint_ops watchpoint_breakpoint_ops;
348d480f
PA
10130
10131/* Implement the "insert" breakpoint_ops method for
10132 masked hardware watchpoints. */
10133
10134static int
10135insert_masked_watchpoint (struct bp_location *bl)
10136{
3a5c3e22
PA
10137 struct watchpoint *w = (struct watchpoint *) bl->owner;
10138
10139 return target_insert_mask_watchpoint (bl->address, w->hw_wp_mask,
348d480f
PA
10140 bl->watchpoint_type);
10141}
10142
10143/* Implement the "remove" breakpoint_ops method for
10144 masked hardware watchpoints. */
10145
10146static int
10147remove_masked_watchpoint (struct bp_location *bl)
10148{
3a5c3e22
PA
10149 struct watchpoint *w = (struct watchpoint *) bl->owner;
10150
10151 return target_remove_mask_watchpoint (bl->address, w->hw_wp_mask,
348d480f
PA
10152 bl->watchpoint_type);
10153}
10154
10155/* Implement the "resources_needed" breakpoint_ops method for
10156 masked hardware watchpoints. */
10157
10158static int
10159resources_needed_masked_watchpoint (const struct bp_location *bl)
10160{
3a5c3e22
PA
10161 struct watchpoint *w = (struct watchpoint *) bl->owner;
10162
10163 return target_masked_watch_num_registers (bl->address, w->hw_wp_mask);
348d480f
PA
10164}
10165
10166/* Implement the "works_in_software_mode" breakpoint_ops method for
10167 masked hardware watchpoints. */
10168
10169static int
10170works_in_software_mode_masked_watchpoint (const struct breakpoint *b)
10171{
10172 return 0;
10173}
10174
10175/* Implement the "print_it" breakpoint_ops method for
10176 masked hardware watchpoints. */
10177
10178static enum print_stop_action
10179print_it_masked_watchpoint (bpstat bs)
10180{
10181 struct breakpoint *b = bs->breakpoint_at;
79a45e25 10182 struct ui_out *uiout = current_uiout;
348d480f
PA
10183
10184 /* Masked watchpoints have only one location. */
10185 gdb_assert (b->loc && b->loc->next == NULL);
10186
10187 switch (b->type)
10188 {
10189 case bp_hardware_watchpoint:
10190 annotate_watchpoint (b->number);
10191 if (ui_out_is_mi_like_p (uiout))
10192 ui_out_field_string
10193 (uiout, "reason",
10194 async_reason_lookup (EXEC_ASYNC_WATCHPOINT_TRIGGER));
10195 break;
10196
10197 case bp_read_watchpoint:
10198 if (ui_out_is_mi_like_p (uiout))
10199 ui_out_field_string
10200 (uiout, "reason",
10201 async_reason_lookup (EXEC_ASYNC_READ_WATCHPOINT_TRIGGER));
10202 break;
10203
10204 case bp_access_watchpoint:
10205 if (ui_out_is_mi_like_p (uiout))
10206 ui_out_field_string
10207 (uiout, "reason",
10208 async_reason_lookup (EXEC_ASYNC_ACCESS_WATCHPOINT_TRIGGER));
10209 break;
10210 default:
10211 internal_error (__FILE__, __LINE__,
10212 _("Invalid hardware watchpoint type."));
10213 }
10214
10215 mention (b);
9c06b0b4
TJB
10216 ui_out_text (uiout, _("\n\
10217Check the underlying instruction at PC for the memory\n\
10218address and value which triggered this watchpoint.\n"));
10219 ui_out_text (uiout, "\n");
10220
10221 /* More than one watchpoint may have been triggered. */
10222 return PRINT_UNKNOWN;
10223}
10224
10225/* Implement the "print_one_detail" breakpoint_ops method for
10226 masked hardware watchpoints. */
10227
10228static void
10229print_one_detail_masked_watchpoint (const struct breakpoint *b,
10230 struct ui_out *uiout)
10231{
3a5c3e22
PA
10232 struct watchpoint *w = (struct watchpoint *) b;
10233
9c06b0b4
TJB
10234 /* Masked watchpoints have only one location. */
10235 gdb_assert (b->loc && b->loc->next == NULL);
10236
10237 ui_out_text (uiout, "\tmask ");
3a5c3e22 10238 ui_out_field_core_addr (uiout, "mask", b->loc->gdbarch, w->hw_wp_mask);
9c06b0b4
TJB
10239 ui_out_text (uiout, "\n");
10240}
10241
10242/* Implement the "print_mention" breakpoint_ops method for
10243 masked hardware watchpoints. */
10244
10245static void
10246print_mention_masked_watchpoint (struct breakpoint *b)
10247{
3a5c3e22 10248 struct watchpoint *w = (struct watchpoint *) b;
79a45e25 10249 struct ui_out *uiout = current_uiout;
9c06b0b4
TJB
10250 struct cleanup *ui_out_chain;
10251
10252 switch (b->type)
10253 {
10254 case bp_hardware_watchpoint:
10255 ui_out_text (uiout, "Masked hardware watchpoint ");
10256 ui_out_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "wpt");
10257 break;
10258 case bp_read_watchpoint:
10259 ui_out_text (uiout, "Masked hardware read watchpoint ");
10260 ui_out_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "hw-rwpt");
10261 break;
10262 case bp_access_watchpoint:
10263 ui_out_text (uiout, "Masked hardware access (read/write) watchpoint ");
10264 ui_out_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "hw-awpt");
10265 break;
10266 default:
10267 internal_error (__FILE__, __LINE__,
10268 _("Invalid hardware watchpoint type."));
10269 }
10270
10271 ui_out_field_int (uiout, "number", b->number);
10272 ui_out_text (uiout, ": ");
3a5c3e22 10273 ui_out_field_string (uiout, "exp", w->exp_string);
9c06b0b4
TJB
10274 do_cleanups (ui_out_chain);
10275}
10276
10277/* Implement the "print_recreate" breakpoint_ops method for
10278 masked hardware watchpoints. */
10279
10280static void
10281print_recreate_masked_watchpoint (struct breakpoint *b, struct ui_file *fp)
10282{
3a5c3e22 10283 struct watchpoint *w = (struct watchpoint *) b;
9c06b0b4
TJB
10284 char tmp[40];
10285
10286 switch (b->type)
10287 {
10288 case bp_hardware_watchpoint:
10289 fprintf_unfiltered (fp, "watch");
10290 break;
10291 case bp_read_watchpoint:
10292 fprintf_unfiltered (fp, "rwatch");
10293 break;
10294 case bp_access_watchpoint:
10295 fprintf_unfiltered (fp, "awatch");
10296 break;
10297 default:
10298 internal_error (__FILE__, __LINE__,
10299 _("Invalid hardware watchpoint type."));
10300 }
10301
3a5c3e22
PA
10302 sprintf_vma (tmp, w->hw_wp_mask);
10303 fprintf_unfiltered (fp, " %s mask 0x%s", w->exp_string, tmp);
d9b3f62e 10304 print_recreate_thread (b, fp);
9c06b0b4
TJB
10305}
10306
10307/* The breakpoint_ops structure to be used in masked hardware watchpoints. */
10308
2060206e 10309static struct breakpoint_ops masked_watchpoint_breakpoint_ops;
9c06b0b4
TJB
10310
10311/* Tell whether the given watchpoint is a masked hardware watchpoint. */
10312
10313static int
10314is_masked_watchpoint (const struct breakpoint *b)
10315{
10316 return b->ops == &masked_watchpoint_breakpoint_ops;
10317}
10318
53a5351d
JM
10319/* accessflag: hw_write: watch write,
10320 hw_read: watch read,
10321 hw_access: watch access (read or write) */
c906108c 10322static void
84f4c1fe
PM
10323watch_command_1 (char *arg, int accessflag, int from_tty,
10324 int just_location, int internal)
c906108c 10325{
a9634178 10326 volatile struct gdb_exception e;
d983da9c 10327 struct breakpoint *b, *scope_breakpoint = NULL;
c906108c 10328 struct expression *exp;
60e1c644 10329 struct block *exp_valid_block = NULL, *cond_exp_valid_block = NULL;
a1442452 10330 struct value *val, *mark, *result;
c906108c 10331 struct frame_info *frame;
c906108c
SS
10332 char *exp_start = NULL;
10333 char *exp_end = NULL;
9c06b0b4
TJB
10334 char *tok, *end_tok;
10335 int toklen = -1;
c906108c
SS
10336 char *cond_start = NULL;
10337 char *cond_end = NULL;
c906108c 10338 enum bptype bp_type;
37e4754d 10339 int thread = -1;
0cf6dd15 10340 int pc = 0;
9c06b0b4
TJB
10341 /* Flag to indicate whether we are going to use masks for
10342 the hardware watchpoint. */
10343 int use_mask = 0;
10344 CORE_ADDR mask = 0;
3a5c3e22 10345 struct watchpoint *w;
c906108c 10346
37e4754d
LM
10347 /* Make sure that we actually have parameters to parse. */
10348 if (arg != NULL && arg[0] != '\0')
10349 {
9c06b0b4 10350 char *value_start;
37e4754d 10351
9c06b0b4
TJB
10352 /* Look for "parameter value" pairs at the end
10353 of the arguments string. */
10354 for (tok = arg + strlen (arg) - 1; tok > arg; tok--)
10355 {
10356 /* Skip whitespace at the end of the argument list. */
10357 while (tok > arg && (*tok == ' ' || *tok == '\t'))
10358 tok--;
10359
10360 /* Find the beginning of the last token.
10361 This is the value of the parameter. */
10362 while (tok > arg && (*tok != ' ' && *tok != '\t'))
10363 tok--;
10364 value_start = tok + 1;
10365
10366 /* Skip whitespace. */
10367 while (tok > arg && (*tok == ' ' || *tok == '\t'))
10368 tok--;
10369
10370 end_tok = tok;
10371
10372 /* Find the beginning of the second to last token.
10373 This is the parameter itself. */
10374 while (tok > arg && (*tok != ' ' && *tok != '\t'))
10375 tok--;
10376 tok++;
10377 toklen = end_tok - tok + 1;
10378
10379 if (toklen == 6 && !strncmp (tok, "thread", 6))
10380 {
10381 /* At this point we've found a "thread" token, which means
10382 the user is trying to set a watchpoint that triggers
10383 only in a specific thread. */
10384 char *endp;
37e4754d 10385
9c06b0b4
TJB
10386 if (thread != -1)
10387 error(_("You can specify only one thread."));
37e4754d 10388
9c06b0b4
TJB
10389 /* Extract the thread ID from the next token. */
10390 thread = strtol (value_start, &endp, 0);
37e4754d 10391
9c06b0b4
TJB
10392 /* Check if the user provided a valid numeric value for the
10393 thread ID. */
10394 if (*endp != ' ' && *endp != '\t' && *endp != '\0')
10395 error (_("Invalid thread ID specification %s."), value_start);
10396
10397 /* Check if the thread actually exists. */
10398 if (!valid_thread_id (thread))
10399 error (_("Unknown thread %d."), thread);
10400 }
10401 else if (toklen == 4 && !strncmp (tok, "mask", 4))
10402 {
10403 /* We've found a "mask" token, which means the user wants to
10404 create a hardware watchpoint that is going to have the mask
10405 facility. */
10406 struct value *mask_value, *mark;
37e4754d 10407
9c06b0b4
TJB
10408 if (use_mask)
10409 error(_("You can specify only one mask."));
37e4754d 10410
9c06b0b4 10411 use_mask = just_location = 1;
37e4754d 10412
9c06b0b4
TJB
10413 mark = value_mark ();
10414 mask_value = parse_to_comma_and_eval (&value_start);
10415 mask = value_as_address (mask_value);
10416 value_free_to_mark (mark);
10417 }
10418 else
10419 /* We didn't recognize what we found. We should stop here. */
10420 break;
37e4754d 10421
9c06b0b4
TJB
10422 /* Truncate the string and get rid of the "parameter value" pair before
10423 the arguments string is parsed by the parse_exp_1 function. */
10424 *tok = '\0';
10425 }
37e4754d
LM
10426 }
10427
10428 /* Parse the rest of the arguments. */
c906108c
SS
10429 innermost_block = NULL;
10430 exp_start = arg;
10431 exp = parse_exp_1 (&arg, 0, 0);
10432 exp_end = arg;
fa8a61dc
TT
10433 /* Remove trailing whitespace from the expression before saving it.
10434 This makes the eventual display of the expression string a bit
10435 prettier. */
10436 while (exp_end > exp_start && (exp_end[-1] == ' ' || exp_end[-1] == '\t'))
10437 --exp_end;
10438
65d79d4b
SDJ
10439 /* Checking if the expression is not constant. */
10440 if (watchpoint_exp_is_const (exp))
10441 {
10442 int len;
10443
10444 len = exp_end - exp_start;
10445 while (len > 0 && isspace (exp_start[len - 1]))
10446 len--;
10447 error (_("Cannot watch constant value `%.*s'."), len, exp_start);
10448 }
10449
c906108c
SS
10450 exp_valid_block = innermost_block;
10451 mark = value_mark ();
a1442452 10452 fetch_subexp_value (exp, &pc, &val, &result, NULL);
06a64a0b
TT
10453
10454 if (just_location)
10455 {
9c06b0b4
TJB
10456 int ret;
10457
06a64a0b 10458 exp_valid_block = NULL;
a1442452 10459 val = value_addr (result);
06a64a0b
TT
10460 release_value (val);
10461 value_free_to_mark (mark);
9c06b0b4
TJB
10462
10463 if (use_mask)
10464 {
10465 ret = target_masked_watch_num_registers (value_as_address (val),
10466 mask);
10467 if (ret == -1)
10468 error (_("This target does not support masked watchpoints."));
10469 else if (ret == -2)
10470 error (_("Invalid mask or memory region."));
10471 }
06a64a0b
TT
10472 }
10473 else if (val != NULL)
fa4727a6 10474 release_value (val);
c906108c 10475
e9cafbcc
TT
10476 tok = skip_spaces (arg);
10477 end_tok = skip_to_space (tok);
c906108c
SS
10478
10479 toklen = end_tok - tok;
10480 if (toklen >= 1 && strncmp (tok, "if", toklen) == 0)
10481 {
2d134ed3
PA
10482 struct expression *cond;
10483
60e1c644 10484 innermost_block = NULL;
c906108c
SS
10485 tok = cond_start = end_tok + 1;
10486 cond = parse_exp_1 (&tok, 0, 0);
60e1c644
PA
10487
10488 /* The watchpoint expression may not be local, but the condition
10489 may still be. E.g.: `watch global if local > 0'. */
10490 cond_exp_valid_block = innermost_block;
10491
2d134ed3 10492 xfree (cond);
c906108c
SS
10493 cond_end = tok;
10494 }
10495 if (*tok)
8a3fe4f8 10496 error (_("Junk at end of command."));
c906108c 10497
53a5351d 10498 if (accessflag == hw_read)
c5aa993b 10499 bp_type = bp_read_watchpoint;
53a5351d 10500 else if (accessflag == hw_access)
c5aa993b
JM
10501 bp_type = bp_access_watchpoint;
10502 else
10503 bp_type = bp_hardware_watchpoint;
c906108c 10504
d983da9c 10505 frame = block_innermost_frame (exp_valid_block);
d983da9c
DJ
10506
10507 /* If the expression is "local", then set up a "watchpoint scope"
10508 breakpoint at the point where we've left the scope of the watchpoint
10509 expression. Create the scope breakpoint before the watchpoint, so
10510 that we will encounter it first in bpstat_stop_status. */
60e1c644 10511 if (exp_valid_block && frame)
d983da9c 10512 {
edb3359d
DJ
10513 if (frame_id_p (frame_unwind_caller_id (frame)))
10514 {
10515 scope_breakpoint
a6d9a66e
UW
10516 = create_internal_breakpoint (frame_unwind_caller_arch (frame),
10517 frame_unwind_caller_pc (frame),
06edf0c0
PA
10518 bp_watchpoint_scope,
10519 &momentary_breakpoint_ops);
d983da9c 10520
edb3359d 10521 scope_breakpoint->enable_state = bp_enabled;
d983da9c 10522
edb3359d
DJ
10523 /* Automatically delete the breakpoint when it hits. */
10524 scope_breakpoint->disposition = disp_del;
d983da9c 10525
edb3359d
DJ
10526 /* Only break in the proper frame (help with recursion). */
10527 scope_breakpoint->frame_id = frame_unwind_caller_id (frame);
d983da9c 10528
edb3359d 10529 /* Set the address at which we will stop. */
a6d9a66e
UW
10530 scope_breakpoint->loc->gdbarch
10531 = frame_unwind_caller_arch (frame);
edb3359d
DJ
10532 scope_breakpoint->loc->requested_address
10533 = frame_unwind_caller_pc (frame);
10534 scope_breakpoint->loc->address
a6d9a66e
UW
10535 = adjust_breakpoint_address (scope_breakpoint->loc->gdbarch,
10536 scope_breakpoint->loc->requested_address,
edb3359d
DJ
10537 scope_breakpoint->type);
10538 }
d983da9c
DJ
10539 }
10540
c906108c 10541 /* Now set up the breakpoint. */
3a5c3e22
PA
10542
10543 w = XCNEW (struct watchpoint);
10544 b = &w->base;
348d480f 10545 if (use_mask)
3a5c3e22
PA
10546 init_raw_breakpoint_without_location (b, NULL, bp_type,
10547 &masked_watchpoint_breakpoint_ops);
348d480f 10548 else
3a5c3e22
PA
10549 init_raw_breakpoint_without_location (b, NULL, bp_type,
10550 &watchpoint_breakpoint_ops);
37e4754d 10551 b->thread = thread;
b5de0fa7 10552 b->disposition = disp_donttouch;
348d480f 10553 b->pspace = current_program_space;
3a5c3e22
PA
10554 w->exp = exp;
10555 w->exp_valid_block = exp_valid_block;
10556 w->cond_exp_valid_block = cond_exp_valid_block;
06a64a0b
TT
10557 if (just_location)
10558 {
10559 struct type *t = value_type (val);
10560 CORE_ADDR addr = value_as_address (val);
10561 char *name;
10562
10563 t = check_typedef (TYPE_TARGET_TYPE (check_typedef (t)));
10564 name = type_to_string (t);
10565
3a5c3e22 10566 w->exp_string_reparse = xstrprintf ("* (%s *) %s", name,
d63d0675 10567 core_addr_to_string (addr));
06a64a0b
TT
10568 xfree (name);
10569
3a5c3e22 10570 w->exp_string = xstrprintf ("-location %.*s",
d63d0675
JK
10571 (int) (exp_end - exp_start), exp_start);
10572
06a64a0b
TT
10573 /* The above expression is in C. */
10574 b->language = language_c;
10575 }
10576 else
3a5c3e22 10577 w->exp_string = savestring (exp_start, exp_end - exp_start);
9c06b0b4
TJB
10578
10579 if (use_mask)
10580 {
3a5c3e22 10581 w->hw_wp_mask = mask;
9c06b0b4
TJB
10582 }
10583 else
10584 {
3a5c3e22
PA
10585 w->val = val;
10586 w->val_valid = 1;
9c06b0b4 10587 }
77b06cd7 10588
c906108c
SS
10589 if (cond_start)
10590 b->cond_string = savestring (cond_start, cond_end - cond_start);
10591 else
10592 b->cond_string = 0;
c5aa993b 10593
c906108c 10594 if (frame)
f6bc2008 10595 {
3a5c3e22
PA
10596 w->watchpoint_frame = get_frame_id (frame);
10597 w->watchpoint_thread = inferior_ptid;
f6bc2008 10598 }
c906108c 10599 else
f6bc2008 10600 {
3a5c3e22
PA
10601 w->watchpoint_frame = null_frame_id;
10602 w->watchpoint_thread = null_ptid;
f6bc2008 10603 }
c906108c 10604
d983da9c 10605 if (scope_breakpoint != NULL)
c906108c 10606 {
d983da9c
DJ
10607 /* The scope breakpoint is related to the watchpoint. We will
10608 need to act on them together. */
10609 b->related_breakpoint = scope_breakpoint;
10610 scope_breakpoint->related_breakpoint = b;
c906108c 10611 }
d983da9c 10612
06a64a0b
TT
10613 if (!just_location)
10614 value_free_to_mark (mark);
2d134ed3 10615
a9634178
TJB
10616 TRY_CATCH (e, RETURN_MASK_ALL)
10617 {
10618 /* Finally update the new watchpoint. This creates the locations
10619 that should be inserted. */
3a5c3e22 10620 update_watchpoint (w, 1);
a9634178
TJB
10621 }
10622 if (e.reason < 0)
10623 {
10624 delete_breakpoint (b);
10625 throw_exception (e);
10626 }
10627
3ea46bff 10628 install_breakpoint (internal, b, 1);
c906108c
SS
10629}
10630
e09342b5 10631/* Return count of debug registers needed to watch the given expression.
e09342b5 10632 If the watchpoint cannot be handled in hardware return zero. */
c906108c 10633
c906108c 10634static int
a9634178 10635can_use_hardware_watchpoint (struct value *v)
c906108c
SS
10636{
10637 int found_memory_cnt = 0;
2e70b7b9 10638 struct value *head = v;
c906108c
SS
10639
10640 /* Did the user specifically forbid us to use hardware watchpoints? */
c5aa993b 10641 if (!can_use_hw_watchpoints)
c906108c 10642 return 0;
c5aa993b 10643
5c44784c
JM
10644 /* Make sure that the value of the expression depends only upon
10645 memory contents, and values computed from them within GDB. If we
10646 find any register references or function calls, we can't use a
10647 hardware watchpoint.
10648
10649 The idea here is that evaluating an expression generates a series
10650 of values, one holding the value of every subexpression. (The
10651 expression a*b+c has five subexpressions: a, b, a*b, c, and
10652 a*b+c.) GDB's values hold almost enough information to establish
10653 the criteria given above --- they identify memory lvalues,
10654 register lvalues, computed values, etcetera. So we can evaluate
10655 the expression, and then scan the chain of values that leaves
10656 behind to decide whether we can detect any possible change to the
10657 expression's final value using only hardware watchpoints.
10658
10659 However, I don't think that the values returned by inferior
10660 function calls are special in any way. So this function may not
10661 notice that an expression involving an inferior function call
10662 can't be watched with hardware watchpoints. FIXME. */
17cf0ecd 10663 for (; v; v = value_next (v))
c906108c 10664 {
5c44784c 10665 if (VALUE_LVAL (v) == lval_memory)
c906108c 10666 {
8464be76
DJ
10667 if (v != head && value_lazy (v))
10668 /* A lazy memory lvalue in the chain is one that GDB never
10669 needed to fetch; we either just used its address (e.g.,
10670 `a' in `a.b') or we never needed it at all (e.g., `a'
10671 in `a,b'). This doesn't apply to HEAD; if that is
10672 lazy then it was not readable, but watch it anyway. */
5c44784c 10673 ;
53a5351d 10674 else
5c44784c
JM
10675 {
10676 /* Ahh, memory we actually used! Check if we can cover
10677 it with hardware watchpoints. */
df407dfe 10678 struct type *vtype = check_typedef (value_type (v));
2e70b7b9
MS
10679
10680 /* We only watch structs and arrays if user asked for it
10681 explicitly, never if they just happen to appear in a
10682 middle of some value chain. */
10683 if (v == head
10684 || (TYPE_CODE (vtype) != TYPE_CODE_STRUCT
10685 && TYPE_CODE (vtype) != TYPE_CODE_ARRAY))
10686 {
42ae5230 10687 CORE_ADDR vaddr = value_address (v);
e09342b5
TJB
10688 int len;
10689 int num_regs;
10690
a9634178 10691 len = (target_exact_watchpoints
e09342b5
TJB
10692 && is_scalar_type_recursive (vtype))?
10693 1 : TYPE_LENGTH (value_type (v));
2e70b7b9 10694
e09342b5
TJB
10695 num_regs = target_region_ok_for_hw_watchpoint (vaddr, len);
10696 if (!num_regs)
2e70b7b9
MS
10697 return 0;
10698 else
e09342b5 10699 found_memory_cnt += num_regs;
2e70b7b9 10700 }
5c44784c 10701 }
c5aa993b 10702 }
5086187c
AC
10703 else if (VALUE_LVAL (v) != not_lval
10704 && deprecated_value_modifiable (v) == 0)
38b6c3b3 10705 return 0; /* These are values from the history (e.g., $1). */
5086187c 10706 else if (VALUE_LVAL (v) == lval_register)
38b6c3b3 10707 return 0; /* Cannot watch a register with a HW watchpoint. */
c906108c
SS
10708 }
10709
10710 /* The expression itself looks suitable for using a hardware
10711 watchpoint, but give the target machine a chance to reject it. */
10712 return found_memory_cnt;
10713}
10714
8b93c638 10715void
84f4c1fe 10716watch_command_wrapper (char *arg, int from_tty, int internal)
8b93c638 10717{
84f4c1fe 10718 watch_command_1 (arg, hw_write, from_tty, 0, internal);
06a64a0b
TT
10719}
10720
10721/* A helper function that looks for an argument at the start of a
10722 string. The argument must also either be at the end of the string,
10723 or be followed by whitespace. Returns 1 if it finds the argument,
10724 0 otherwise. If the argument is found, it updates *STR. */
10725
10726static int
10727check_for_argument (char **str, char *arg, int arg_len)
10728{
10729 if (strncmp (*str, arg, arg_len) == 0
10730 && ((*str)[arg_len] == '\0' || isspace ((*str)[arg_len])))
10731 {
10732 *str += arg_len;
10733 return 1;
10734 }
10735 return 0;
10736}
10737
10738/* A helper function that looks for the "-location" argument and then
10739 calls watch_command_1. */
10740
10741static void
10742watch_maybe_just_location (char *arg, int accessflag, int from_tty)
10743{
10744 int just_location = 0;
10745
10746 if (arg
10747 && (check_for_argument (&arg, "-location", sizeof ("-location") - 1)
10748 || check_for_argument (&arg, "-l", sizeof ("-l") - 1)))
10749 {
e9cafbcc 10750 arg = skip_spaces (arg);
06a64a0b
TT
10751 just_location = 1;
10752 }
10753
84f4c1fe 10754 watch_command_1 (arg, accessflag, from_tty, just_location, 0);
8b93c638 10755}
8926118c 10756
c5aa993b 10757static void
fba45db2 10758watch_command (char *arg, int from_tty)
c906108c 10759{
06a64a0b 10760 watch_maybe_just_location (arg, hw_write, from_tty);
c906108c
SS
10761}
10762
8b93c638 10763void
84f4c1fe 10764rwatch_command_wrapper (char *arg, int from_tty, int internal)
8b93c638 10765{
84f4c1fe 10766 watch_command_1 (arg, hw_read, from_tty, 0, internal);
8b93c638 10767}
8926118c 10768
c5aa993b 10769static void
fba45db2 10770rwatch_command (char *arg, int from_tty)
c906108c 10771{
06a64a0b 10772 watch_maybe_just_location (arg, hw_read, from_tty);
c906108c
SS
10773}
10774
8b93c638 10775void
84f4c1fe 10776awatch_command_wrapper (char *arg, int from_tty, int internal)
8b93c638 10777{
84f4c1fe 10778 watch_command_1 (arg, hw_access, from_tty, 0, internal);
8b93c638 10779}
8926118c 10780
c5aa993b 10781static void
fba45db2 10782awatch_command (char *arg, int from_tty)
c906108c 10783{
06a64a0b 10784 watch_maybe_just_location (arg, hw_access, from_tty);
c906108c 10785}
c906108c 10786\f
c5aa993b 10787
43ff13b4 10788/* Helper routines for the until_command routine in infcmd.c. Here
c906108c
SS
10789 because it uses the mechanisms of breakpoints. */
10790
bfec99b2
PA
10791struct until_break_command_continuation_args
10792{
10793 struct breakpoint *breakpoint;
10794 struct breakpoint *breakpoint2;
186c406b 10795 int thread_num;
bfec99b2
PA
10796};
10797
43ff13b4 10798/* This function is called by fetch_inferior_event via the
4a64f543 10799 cmd_continuation pointer, to complete the until command. It takes
43ff13b4 10800 care of cleaning up the temporary breakpoints set up by the until
4a64f543 10801 command. */
c2c6d25f 10802static void
fa4cd53f 10803until_break_command_continuation (void *arg, int err)
43ff13b4 10804{
bfec99b2
PA
10805 struct until_break_command_continuation_args *a = arg;
10806
10807 delete_breakpoint (a->breakpoint);
10808 if (a->breakpoint2)
10809 delete_breakpoint (a->breakpoint2);
186c406b 10810 delete_longjmp_breakpoint (a->thread_num);
43ff13b4
JM
10811}
10812
c906108c 10813void
ae66c1fc 10814until_break_command (char *arg, int from_tty, int anywhere)
c906108c
SS
10815{
10816 struct symtabs_and_lines sals;
10817 struct symtab_and_line sal;
206415a3 10818 struct frame_info *frame = get_selected_frame (NULL);
883bc8d1
PA
10819 struct gdbarch *frame_gdbarch = get_frame_arch (frame);
10820 struct frame_id stack_frame_id = get_stack_frame_id (frame);
10821 struct frame_id caller_frame_id = frame_unwind_caller_id (frame);
c906108c 10822 struct breakpoint *breakpoint;
f107f563 10823 struct breakpoint *breakpoint2 = NULL;
c906108c 10824 struct cleanup *old_chain;
186c406b
TT
10825 int thread;
10826 struct thread_info *tp;
c906108c
SS
10827
10828 clear_proceed_status ();
10829
10830 /* Set a breakpoint where the user wants it and at return from
4a64f543 10831 this function. */
c5aa993b 10832
1bfeeb0f 10833 if (last_displayed_sal_is_valid ())
f8eba3c6 10834 sals = decode_line_1 (&arg, DECODE_LINE_FUNFIRSTLINE,
1bfeeb0f 10835 get_last_displayed_symtab (),
f8eba3c6 10836 get_last_displayed_line ());
c906108c 10837 else
f8eba3c6
TT
10838 sals = decode_line_1 (&arg, DECODE_LINE_FUNFIRSTLINE,
10839 (struct symtab *) NULL, 0);
c5aa993b 10840
c906108c 10841 if (sals.nelts != 1)
8a3fe4f8 10842 error (_("Couldn't get information on specified line."));
c5aa993b 10843
c906108c 10844 sal = sals.sals[0];
4a64f543 10845 xfree (sals.sals); /* malloc'd, so freed. */
c5aa993b 10846
c906108c 10847 if (*arg)
8a3fe4f8 10848 error (_("Junk at end of arguments."));
c5aa993b 10849
c906108c 10850 resolve_sal_pc (&sal);
c5aa993b 10851
186c406b
TT
10852 tp = inferior_thread ();
10853 thread = tp->num;
10854
883bc8d1
PA
10855 old_chain = make_cleanup (null_cleanup, NULL);
10856
10857 /* Installing a breakpoint invalidates the frame chain (as it may
10858 need to switch threads), so do any frame handling first. */
10859
ae66c1fc
EZ
10860 /* Keep within the current frame, or in frames called by the current
10861 one. */
edb3359d 10862
883bc8d1 10863 if (frame_id_p (caller_frame_id))
c906108c 10864 {
883bc8d1
PA
10865 struct symtab_and_line sal2;
10866
10867 sal2 = find_pc_line (frame_unwind_caller_pc (frame), 0);
10868 sal2.pc = frame_unwind_caller_pc (frame);
a6d9a66e 10869 breakpoint2 = set_momentary_breakpoint (frame_unwind_caller_arch (frame),
883bc8d1
PA
10870 sal2,
10871 caller_frame_id,
f107f563
VP
10872 bp_until);
10873 make_cleanup_delete_breakpoint (breakpoint2);
186c406b 10874
883bc8d1 10875 set_longjmp_breakpoint (tp, caller_frame_id);
186c406b 10876 make_cleanup (delete_longjmp_breakpoint_cleanup, &thread);
c906108c 10877 }
c5aa993b 10878
c70a6932
JK
10879 /* set_momentary_breakpoint could invalidate FRAME. */
10880 frame = NULL;
10881
883bc8d1
PA
10882 if (anywhere)
10883 /* If the user told us to continue until a specified location,
10884 we don't specify a frame at which we need to stop. */
10885 breakpoint = set_momentary_breakpoint (frame_gdbarch, sal,
10886 null_frame_id, bp_until);
10887 else
10888 /* Otherwise, specify the selected frame, because we want to stop
10889 only at the very same frame. */
10890 breakpoint = set_momentary_breakpoint (frame_gdbarch, sal,
10891 stack_frame_id, bp_until);
10892 make_cleanup_delete_breakpoint (breakpoint);
10893
c906108c 10894 proceed (-1, TARGET_SIGNAL_DEFAULT, 0);
f107f563 10895
4a64f543
MS
10896 /* If we are running asynchronously, and proceed call above has
10897 actually managed to start the target, arrange for breakpoints to
10898 be deleted when the target stops. Otherwise, we're already
10899 stopped and delete breakpoints via cleanup chain. */
f107f563 10900
8ea051c5 10901 if (target_can_async_p () && is_running (inferior_ptid))
f107f563 10902 {
bfec99b2
PA
10903 struct until_break_command_continuation_args *args;
10904 args = xmalloc (sizeof (*args));
f107f563 10905
bfec99b2
PA
10906 args->breakpoint = breakpoint;
10907 args->breakpoint2 = breakpoint2;
186c406b 10908 args->thread_num = thread;
f107f563
VP
10909
10910 discard_cleanups (old_chain);
95e54da7
PA
10911 add_continuation (inferior_thread (),
10912 until_break_command_continuation, args,
604ead4a 10913 xfree);
f107f563
VP
10914 }
10915 else
c5aa993b 10916 do_cleanups (old_chain);
c906108c 10917}
ae66c1fc 10918
c906108c
SS
10919/* This function attempts to parse an optional "if <cond>" clause
10920 from the arg string. If one is not found, it returns NULL.
c5aa993b 10921
c906108c
SS
10922 Else, it returns a pointer to the condition string. (It does not
10923 attempt to evaluate the string against a particular block.) And,
10924 it updates arg to point to the first character following the parsed
4a64f543 10925 if clause in the arg string. */
53a5351d 10926
c906108c 10927static char *
fba45db2 10928ep_parse_optional_if_clause (char **arg)
c906108c 10929{
c5aa993b
JM
10930 char *cond_string;
10931
10932 if (((*arg)[0] != 'i') || ((*arg)[1] != 'f') || !isspace ((*arg)[2]))
c906108c 10933 return NULL;
c5aa993b 10934
4a64f543 10935 /* Skip the "if" keyword. */
c906108c 10936 (*arg) += 2;
c5aa993b 10937
c906108c 10938 /* Skip any extra leading whitespace, and record the start of the
4a64f543 10939 condition string. */
e9cafbcc 10940 *arg = skip_spaces (*arg);
c906108c 10941 cond_string = *arg;
c5aa993b 10942
4a64f543
MS
10943 /* Assume that the condition occupies the remainder of the arg
10944 string. */
c906108c 10945 (*arg) += strlen (cond_string);
c5aa993b 10946
c906108c
SS
10947 return cond_string;
10948}
c5aa993b 10949
c906108c
SS
10950/* Commands to deal with catching events, such as signals, exceptions,
10951 process start/exit, etc. */
c5aa993b
JM
10952
10953typedef enum
10954{
44feb3ce
TT
10955 catch_fork_temporary, catch_vfork_temporary,
10956 catch_fork_permanent, catch_vfork_permanent
c5aa993b
JM
10957}
10958catch_fork_kind;
10959
c906108c 10960static void
cc59ec59
MS
10961catch_fork_command_1 (char *arg, int from_tty,
10962 struct cmd_list_element *command)
c906108c 10963{
a6d9a66e 10964 struct gdbarch *gdbarch = get_current_arch ();
c5aa993b 10965 char *cond_string = NULL;
44feb3ce
TT
10966 catch_fork_kind fork_kind;
10967 int tempflag;
10968
10969 fork_kind = (catch_fork_kind) (uintptr_t) get_cmd_context (command);
10970 tempflag = (fork_kind == catch_fork_temporary
10971 || fork_kind == catch_vfork_temporary);
c5aa993b 10972
44feb3ce
TT
10973 if (!arg)
10974 arg = "";
e9cafbcc 10975 arg = skip_spaces (arg);
c5aa993b 10976
c906108c 10977 /* The allowed syntax is:
c5aa993b
JM
10978 catch [v]fork
10979 catch [v]fork if <cond>
10980
4a64f543 10981 First, check if there's an if clause. */
c906108c 10982 cond_string = ep_parse_optional_if_clause (&arg);
c5aa993b 10983
c906108c 10984 if ((*arg != '\0') && !isspace (*arg))
8a3fe4f8 10985 error (_("Junk at end of arguments."));
c5aa993b 10986
c906108c 10987 /* If this target supports it, create a fork or vfork catchpoint
4a64f543 10988 and enable reporting of such events. */
c5aa993b
JM
10989 switch (fork_kind)
10990 {
44feb3ce
TT
10991 case catch_fork_temporary:
10992 case catch_fork_permanent:
a6d9a66e 10993 create_fork_vfork_event_catchpoint (gdbarch, tempflag, cond_string,
ce78b96d 10994 &catch_fork_breakpoint_ops);
c906108c 10995 break;
44feb3ce
TT
10996 case catch_vfork_temporary:
10997 case catch_vfork_permanent:
a6d9a66e 10998 create_fork_vfork_event_catchpoint (gdbarch, tempflag, cond_string,
ce78b96d 10999 &catch_vfork_breakpoint_ops);
c906108c 11000 break;
c5aa993b 11001 default:
8a3fe4f8 11002 error (_("unsupported or unknown fork kind; cannot catch it"));
c906108c 11003 break;
c5aa993b 11004 }
c906108c
SS
11005}
11006
11007static void
cc59ec59
MS
11008catch_exec_command_1 (char *arg, int from_tty,
11009 struct cmd_list_element *command)
c906108c 11010{
b4d90040 11011 struct exec_catchpoint *c;
a6d9a66e 11012 struct gdbarch *gdbarch = get_current_arch ();
44feb3ce 11013 int tempflag;
c5aa993b 11014 char *cond_string = NULL;
c906108c 11015
44feb3ce
TT
11016 tempflag = get_cmd_context (command) == CATCH_TEMPORARY;
11017
11018 if (!arg)
11019 arg = "";
e9cafbcc 11020 arg = skip_spaces (arg);
c906108c
SS
11021
11022 /* The allowed syntax is:
c5aa993b
JM
11023 catch exec
11024 catch exec if <cond>
c906108c 11025
4a64f543 11026 First, check if there's an if clause. */
c906108c
SS
11027 cond_string = ep_parse_optional_if_clause (&arg);
11028
11029 if ((*arg != '\0') && !isspace (*arg))
8a3fe4f8 11030 error (_("Junk at end of arguments."));
c906108c 11031
b4d90040
PA
11032 c = XNEW (struct exec_catchpoint);
11033 init_catchpoint (&c->base, gdbarch, tempflag, cond_string,
11034 &catch_exec_breakpoint_ops);
11035 c->exec_pathname = NULL;
11036
3ea46bff 11037 install_breakpoint (0, &c->base, 1);
c906108c 11038}
c5aa993b 11039
3086aeae 11040static enum print_stop_action
348d480f 11041print_it_exception_catchpoint (bpstat bs)
3086aeae 11042{
79a45e25 11043 struct ui_out *uiout = current_uiout;
348d480f 11044 struct breakpoint *b = bs->breakpoint_at;
ade92717 11045 int bp_temp, bp_throw;
3086aeae 11046
ade92717 11047 annotate_catchpoint (b->number);
3086aeae 11048
ade92717
AR
11049 bp_throw = strstr (b->addr_string, "throw") != NULL;
11050 if (b->loc->address != b->loc->requested_address)
11051 breakpoint_adjustment_warning (b->loc->requested_address,
11052 b->loc->address,
11053 b->number, 1);
df2b6d2d 11054 bp_temp = b->disposition == disp_del;
ade92717
AR
11055 ui_out_text (uiout,
11056 bp_temp ? "Temporary catchpoint "
11057 : "Catchpoint ");
11058 if (!ui_out_is_mi_like_p (uiout))
11059 ui_out_field_int (uiout, "bkptno", b->number);
11060 ui_out_text (uiout,
c0b37c48
AR
11061 bp_throw ? " (exception thrown), "
11062 : " (exception caught), ");
ade92717
AR
11063 if (ui_out_is_mi_like_p (uiout))
11064 {
11065 ui_out_field_string (uiout, "reason",
11066 async_reason_lookup (EXEC_ASYNC_BREAKPOINT_HIT));
11067 ui_out_field_string (uiout, "disp", bpdisp_text (b->disposition));
11068 ui_out_field_int (uiout, "bkptno", b->number);
11069 }
3086aeae
DJ
11070 return PRINT_SRC_AND_LOC;
11071}
11072
11073static void
cc59ec59
MS
11074print_one_exception_catchpoint (struct breakpoint *b,
11075 struct bp_location **last_loc)
3086aeae 11076{
79a45b7d 11077 struct value_print_options opts;
79a45e25 11078 struct ui_out *uiout = current_uiout;
cc59ec59 11079
79a45b7d
TT
11080 get_user_print_options (&opts);
11081 if (opts.addressprint)
3086aeae
DJ
11082 {
11083 annotate_field (4);
604133b5
AR
11084 if (b->loc == NULL || b->loc->shlib_disabled)
11085 ui_out_field_string (uiout, "addr", "<PENDING>");
11086 else
5af949e3
UW
11087 ui_out_field_core_addr (uiout, "addr",
11088 b->loc->gdbarch, b->loc->address);
3086aeae
DJ
11089 }
11090 annotate_field (5);
604133b5 11091 if (b->loc)
a6d9a66e 11092 *last_loc = b->loc;
3086aeae
DJ
11093 if (strstr (b->addr_string, "throw") != NULL)
11094 ui_out_field_string (uiout, "what", "exception throw");
11095 else
11096 ui_out_field_string (uiout, "what", "exception catch");
11097}
11098
11099static void
11100print_mention_exception_catchpoint (struct breakpoint *b)
11101{
79a45e25 11102 struct ui_out *uiout = current_uiout;
ade92717
AR
11103 int bp_temp;
11104 int bp_throw;
11105
df2b6d2d 11106 bp_temp = b->disposition == disp_del;
ade92717
AR
11107 bp_throw = strstr (b->addr_string, "throw") != NULL;
11108 ui_out_text (uiout, bp_temp ? _("Temporary catchpoint ")
11109 : _("Catchpoint "));
11110 ui_out_field_int (uiout, "bkptno", b->number);
11111 ui_out_text (uiout, bp_throw ? _(" (throw)")
11112 : _(" (catch)"));
3086aeae
DJ
11113}
11114
6149aea9
PA
11115/* Implement the "print_recreate" breakpoint_ops method for throw and
11116 catch catchpoints. */
11117
11118static void
4a64f543
MS
11119print_recreate_exception_catchpoint (struct breakpoint *b,
11120 struct ui_file *fp)
6149aea9
PA
11121{
11122 int bp_temp;
11123 int bp_throw;
11124
11125 bp_temp = b->disposition == disp_del;
11126 bp_throw = strstr (b->addr_string, "throw") != NULL;
11127 fprintf_unfiltered (fp, bp_temp ? "tcatch " : "catch ");
11128 fprintf_unfiltered (fp, bp_throw ? "throw" : "catch");
d9b3f62e 11129 print_recreate_thread (b, fp);
6149aea9
PA
11130}
11131
2060206e 11132static struct breakpoint_ops gnu_v3_exception_catchpoint_ops;
3086aeae
DJ
11133
11134static int
11135handle_gnu_v3_exceptions (int tempflag, char *cond_string,
11136 enum exception_event_kind ex_event, int from_tty)
11137{
604133b5
AR
11138 char *trigger_func_name;
11139
3086aeae 11140 if (ex_event == EX_EVENT_CATCH)
604133b5 11141 trigger_func_name = "__cxa_begin_catch";
3086aeae 11142 else
604133b5 11143 trigger_func_name = "__cxa_throw";
3086aeae 11144
8cdf0e15 11145 create_breakpoint (get_current_arch (),
e7e0cddf 11146 trigger_func_name, cond_string, -1, NULL,
8cdf0e15 11147 0 /* condition and thread are valid. */,
0fb4aa4b 11148 tempflag, bp_breakpoint,
8cdf0e15
VP
11149 0,
11150 AUTO_BOOLEAN_TRUE /* pending */,
11151 &gnu_v3_exception_catchpoint_ops, from_tty,
84f4c1fe 11152 1 /* enabled */,
44f238bb
PA
11153 0 /* internal */,
11154 0);
3086aeae 11155
3086aeae
DJ
11156 return 1;
11157}
11158
4a64f543 11159/* Deal with "catch catch" and "catch throw" commands. */
c906108c
SS
11160
11161static void
fba45db2
KB
11162catch_exception_command_1 (enum exception_event_kind ex_event, char *arg,
11163 int tempflag, int from_tty)
c906108c 11164{
c5aa993b 11165 char *cond_string = NULL;
c5aa993b 11166
44feb3ce
TT
11167 if (!arg)
11168 arg = "";
e9cafbcc 11169 arg = skip_spaces (arg);
c5aa993b 11170
c906108c
SS
11171 cond_string = ep_parse_optional_if_clause (&arg);
11172
11173 if ((*arg != '\0') && !isspace (*arg))
8a3fe4f8 11174 error (_("Junk at end of arguments."));
c906108c 11175
059fb39f
PM
11176 if (ex_event != EX_EVENT_THROW
11177 && ex_event != EX_EVENT_CATCH)
8a3fe4f8 11178 error (_("Unsupported or unknown exception event; cannot catch it"));
c906108c 11179
3086aeae
DJ
11180 if (handle_gnu_v3_exceptions (tempflag, cond_string, ex_event, from_tty))
11181 return;
11182
8a3fe4f8 11183 warning (_("Unsupported with this platform/compiler combination."));
c906108c
SS
11184}
11185
44feb3ce
TT
11186/* Implementation of "catch catch" command. */
11187
11188static void
11189catch_catch_command (char *arg, int from_tty, struct cmd_list_element *command)
11190{
11191 int tempflag = get_cmd_context (command) == CATCH_TEMPORARY;
cc59ec59 11192
44feb3ce
TT
11193 catch_exception_command_1 (EX_EVENT_CATCH, arg, tempflag, from_tty);
11194}
11195
11196/* Implementation of "catch throw" command. */
11197
11198static void
11199catch_throw_command (char *arg, int from_tty, struct cmd_list_element *command)
11200{
11201 int tempflag = get_cmd_context (command) == CATCH_TEMPORARY;
cc59ec59 11202
44feb3ce
TT
11203 catch_exception_command_1 (EX_EVENT_THROW, arg, tempflag, from_tty);
11204}
11205
9ac4176b 11206void
28010a5d
PA
11207init_ada_exception_breakpoint (struct breakpoint *b,
11208 struct gdbarch *gdbarch,
11209 struct symtab_and_line sal,
11210 char *addr_string,
c0a91b2b 11211 const struct breakpoint_ops *ops,
28010a5d
PA
11212 int tempflag,
11213 int from_tty)
f7f9143b 11214{
f7f9143b
JB
11215 if (from_tty)
11216 {
5af949e3
UW
11217 struct gdbarch *loc_gdbarch = get_sal_arch (sal);
11218 if (!loc_gdbarch)
11219 loc_gdbarch = gdbarch;
11220
6c95b8df
PA
11221 describe_other_breakpoints (loc_gdbarch,
11222 sal.pspace, sal.pc, sal.section, -1);
f7f9143b
JB
11223 /* FIXME: brobecker/2006-12-28: Actually, re-implement a special
11224 version for exception catchpoints, because two catchpoints
11225 used for different exception names will use the same address.
11226 In this case, a "breakpoint ... also set at..." warning is
4a64f543 11227 unproductive. Besides, the warning phrasing is also a bit
e5dd4106 11228 inappropriate, we should use the word catchpoint, and tell
f7f9143b
JB
11229 the user what type of catchpoint it is. The above is good
11230 enough for now, though. */
11231 }
11232
28010a5d 11233 init_raw_breakpoint (b, gdbarch, sal, bp_breakpoint, ops);
f7f9143b
JB
11234
11235 b->enable_state = bp_enabled;
11236 b->disposition = tempflag ? disp_del : disp_donttouch;
f7f9143b
JB
11237 b->addr_string = addr_string;
11238 b->language = language_ada;
f7f9143b
JB
11239}
11240
a96d9b2e
SDJ
11241/* Splits the argument using space as delimiter. Returns an xmalloc'd
11242 filter list, or NULL if no filtering is required. */
11243static VEC(int) *
11244catch_syscall_split_args (char *arg)
11245{
11246 VEC(int) *result = NULL;
29d0bb3d 11247 struct cleanup *cleanup = make_cleanup (VEC_cleanup (int), &result);
a96d9b2e
SDJ
11248
11249 while (*arg != '\0')
11250 {
11251 int i, syscall_number;
11252 char *endptr;
11253 char cur_name[128];
11254 struct syscall s;
11255
11256 /* Skip whitespace. */
11257 while (isspace (*arg))
11258 arg++;
11259
11260 for (i = 0; i < 127 && arg[i] && !isspace (arg[i]); ++i)
11261 cur_name[i] = arg[i];
11262 cur_name[i] = '\0';
11263 arg += i;
11264
11265 /* Check if the user provided a syscall name or a number. */
11266 syscall_number = (int) strtol (cur_name, &endptr, 0);
11267 if (*endptr == '\0')
bccd0dd2 11268 get_syscall_by_number (syscall_number, &s);
a96d9b2e
SDJ
11269 else
11270 {
11271 /* We have a name. Let's check if it's valid and convert it
11272 to a number. */
11273 get_syscall_by_name (cur_name, &s);
11274
11275 if (s.number == UNKNOWN_SYSCALL)
4a64f543
MS
11276 /* Here we have to issue an error instead of a warning,
11277 because GDB cannot do anything useful if there's no
11278 syscall number to be caught. */
a96d9b2e
SDJ
11279 error (_("Unknown syscall name '%s'."), cur_name);
11280 }
11281
11282 /* Ok, it's valid. */
11283 VEC_safe_push (int, result, s.number);
11284 }
11285
11286 discard_cleanups (cleanup);
11287 return result;
11288}
11289
11290/* Implement the "catch syscall" command. */
11291
11292static void
cc59ec59
MS
11293catch_syscall_command_1 (char *arg, int from_tty,
11294 struct cmd_list_element *command)
a96d9b2e
SDJ
11295{
11296 int tempflag;
11297 VEC(int) *filter;
11298 struct syscall s;
11299 struct gdbarch *gdbarch = get_current_arch ();
11300
11301 /* Checking if the feature if supported. */
11302 if (gdbarch_get_syscall_number_p (gdbarch) == 0)
11303 error (_("The feature 'catch syscall' is not supported on \
ea666128 11304this architecture yet."));
a96d9b2e
SDJ
11305
11306 tempflag = get_cmd_context (command) == CATCH_TEMPORARY;
11307
e9cafbcc 11308 arg = skip_spaces (arg);
a96d9b2e
SDJ
11309
11310 /* We need to do this first "dummy" translation in order
11311 to get the syscall XML file loaded or, most important,
11312 to display a warning to the user if there's no XML file
11313 for his/her architecture. */
11314 get_syscall_by_number (0, &s);
11315
11316 /* The allowed syntax is:
11317 catch syscall
11318 catch syscall <name | number> [<name | number> ... <name | number>]
11319
11320 Let's check if there's a syscall name. */
11321
11322 if (arg != NULL)
11323 filter = catch_syscall_split_args (arg);
11324 else
11325 filter = NULL;
11326
11327 create_syscall_event_catchpoint (tempflag, filter,
11328 &catch_syscall_breakpoint_ops);
11329}
11330
c906108c 11331static void
fba45db2 11332catch_command (char *arg, int from_tty)
c906108c 11333{
44feb3ce 11334 error (_("Catch requires an event name."));
c906108c
SS
11335}
11336\f
11337
11338static void
fba45db2 11339tcatch_command (char *arg, int from_tty)
c906108c 11340{
44feb3ce 11341 error (_("Catch requires an event name."));
c906108c
SS
11342}
11343
8a2c437b
TT
11344/* A qsort comparison function that sorts breakpoints in order. */
11345
11346static int
11347compare_breakpoints (const void *a, const void *b)
11348{
11349 const breakpoint_p *ba = a;
11350 uintptr_t ua = (uintptr_t) *ba;
11351 const breakpoint_p *bb = b;
11352 uintptr_t ub = (uintptr_t) *bb;
11353
11354 if ((*ba)->number < (*bb)->number)
11355 return -1;
11356 else if ((*ba)->number > (*bb)->number)
11357 return 1;
11358
11359 /* Now sort by address, in case we see, e..g, two breakpoints with
11360 the number 0. */
11361 if (ua < ub)
11362 return -1;
11363 return ub > ub ? 1 : 0;
11364}
11365
80f8a6eb 11366/* Delete breakpoints by address or line. */
c906108c
SS
11367
11368static void
fba45db2 11369clear_command (char *arg, int from_tty)
c906108c 11370{
8a2c437b 11371 struct breakpoint *b, *prev;
d6e956e5
VP
11372 VEC(breakpoint_p) *found = 0;
11373 int ix;
c906108c
SS
11374 int default_match;
11375 struct symtabs_and_lines sals;
11376 struct symtab_and_line sal;
c906108c 11377 int i;
8a2c437b 11378 struct cleanup *cleanups = make_cleanup (null_cleanup, NULL);
c906108c
SS
11379
11380 if (arg)
11381 {
f8eba3c6
TT
11382 sals = decode_line_spec (arg, (DECODE_LINE_FUNFIRSTLINE
11383 | DECODE_LINE_LIST_MODE));
c906108c
SS
11384 default_match = 0;
11385 }
11386 else
11387 {
c5aa993b 11388 sals.sals = (struct symtab_and_line *)
c906108c 11389 xmalloc (sizeof (struct symtab_and_line));
80f8a6eb 11390 make_cleanup (xfree, sals.sals);
4a64f543 11391 init_sal (&sal); /* Initialize to zeroes. */
1bfeeb0f
JL
11392
11393 /* Set sal's line, symtab, pc, and pspace to the values
11394 corresponding to the last call to print_frame_info. If the
11395 codepoint is not valid, this will set all the fields to 0. */
11396 get_last_displayed_sal (&sal);
c906108c 11397 if (sal.symtab == 0)
8a3fe4f8 11398 error (_("No source file specified."));
c906108c
SS
11399
11400 sals.sals[0] = sal;
11401 sals.nelts = 1;
11402
11403 default_match = 1;
11404 }
11405
4a64f543
MS
11406 /* We don't call resolve_sal_pc here. That's not as bad as it
11407 seems, because all existing breakpoints typically have both
11408 file/line and pc set. So, if clear is given file/line, we can
11409 match this to existing breakpoint without obtaining pc at all.
ed0616c6
VP
11410
11411 We only support clearing given the address explicitly
11412 present in breakpoint table. Say, we've set breakpoint
4a64f543 11413 at file:line. There were several PC values for that file:line,
ed0616c6 11414 due to optimization, all in one block.
4a64f543
MS
11415
11416 We've picked one PC value. If "clear" is issued with another
ed0616c6
VP
11417 PC corresponding to the same file:line, the breakpoint won't
11418 be cleared. We probably can still clear the breakpoint, but
11419 since the other PC value is never presented to user, user
11420 can only find it by guessing, and it does not seem important
11421 to support that. */
11422
4a64f543
MS
11423 /* For each line spec given, delete bps which correspond to it. Do
11424 it in two passes, solely to preserve the current behavior that
11425 from_tty is forced true if we delete more than one
11426 breakpoint. */
c906108c 11427
80f8a6eb 11428 found = NULL;
8a2c437b 11429 make_cleanup (VEC_cleanup (breakpoint_p), &found);
c906108c
SS
11430 for (i = 0; i < sals.nelts; i++)
11431 {
4aac40c8
TT
11432 int is_abs, sal_name_len;
11433
c906108c 11434 /* If exact pc given, clear bpts at that pc.
c5aa993b
JM
11435 If line given (pc == 0), clear all bpts on specified line.
11436 If defaulting, clear all bpts on default line
c906108c 11437 or at default pc.
c5aa993b
JM
11438
11439 defaulting sal.pc != 0 tests to do
11440
11441 0 1 pc
11442 1 1 pc _and_ line
11443 0 0 line
11444 1 0 <can't happen> */
c906108c
SS
11445
11446 sal = sals.sals[i];
4aac40c8
TT
11447 is_abs = sal.symtab == NULL ? 1 : IS_ABSOLUTE_PATH (sal.symtab->filename);
11448 sal_name_len = is_abs ? 0 : strlen (sal.symtab->filename);
c906108c 11449
4a64f543 11450 /* Find all matching breakpoints and add them to 'found'. */
d6e956e5 11451 ALL_BREAKPOINTS (b)
c5aa993b 11452 {
0d381245 11453 int match = 0;
4a64f543 11454 /* Are we going to delete b? */
cc60f2e3 11455 if (b->type != bp_none && !is_watchpoint (b))
0d381245
VP
11456 {
11457 struct bp_location *loc = b->loc;
11458 for (; loc; loc = loc->next)
11459 {
f8eba3c6
TT
11460 /* If the user specified file:line, don't allow a PC
11461 match. This matches historical gdb behavior. */
11462 int pc_match = (!sal.explicit_line
11463 && sal.pc
11464 && (loc->pspace == sal.pspace)
11465 && (loc->address == sal.pc)
11466 && (!section_is_overlay (loc->section)
11467 || loc->section == sal.section));
4aac40c8
TT
11468 int line_match = 0;
11469
11470 if ((default_match || sal.explicit_line)
11471 && loc->source_file != NULL
11472 && sal.symtab != NULL
11473 && sal.pspace == loc->pspace
11474 && loc->line_number == sal.line)
11475 {
11476 if (filename_cmp (loc->source_file,
11477 sal.symtab->filename) == 0)
11478 line_match = 1;
11479 else if (!IS_ABSOLUTE_PATH (sal.symtab->filename)
11480 && compare_filenames_for_search (loc->source_file,
11481 sal.symtab->filename,
11482 sal_name_len))
11483 line_match = 1;
11484 }
11485
0d381245
VP
11486 if (pc_match || line_match)
11487 {
11488 match = 1;
11489 break;
11490 }
11491 }
11492 }
11493
11494 if (match)
d6e956e5 11495 VEC_safe_push(breakpoint_p, found, b);
c906108c 11496 }
80f8a6eb 11497 }
8a2c437b 11498
80f8a6eb 11499 /* Now go thru the 'found' chain and delete them. */
d6e956e5 11500 if (VEC_empty(breakpoint_p, found))
80f8a6eb
MS
11501 {
11502 if (arg)
8a3fe4f8 11503 error (_("No breakpoint at %s."), arg);
80f8a6eb 11504 else
8a3fe4f8 11505 error (_("No breakpoint at this line."));
80f8a6eb 11506 }
c906108c 11507
8a2c437b
TT
11508 /* Remove duplicates from the vec. */
11509 qsort (VEC_address (breakpoint_p, found),
11510 VEC_length (breakpoint_p, found),
11511 sizeof (breakpoint_p),
11512 compare_breakpoints);
11513 prev = VEC_index (breakpoint_p, found, 0);
11514 for (ix = 1; VEC_iterate (breakpoint_p, found, ix, b); ++ix)
11515 {
11516 if (b == prev)
11517 {
11518 VEC_ordered_remove (breakpoint_p, found, ix);
11519 --ix;
11520 }
11521 }
11522
d6e956e5 11523 if (VEC_length(breakpoint_p, found) > 1)
4a64f543 11524 from_tty = 1; /* Always report if deleted more than one. */
80f8a6eb 11525 if (from_tty)
a3f17187 11526 {
d6e956e5 11527 if (VEC_length(breakpoint_p, found) == 1)
a3f17187
AC
11528 printf_unfiltered (_("Deleted breakpoint "));
11529 else
11530 printf_unfiltered (_("Deleted breakpoints "));
11531 }
80f8a6eb 11532 breakpoints_changed ();
d6e956e5
VP
11533
11534 for (ix = 0; VEC_iterate(breakpoint_p, found, ix, b); ix++)
80f8a6eb 11535 {
c5aa993b 11536 if (from_tty)
d6e956e5
VP
11537 printf_unfiltered ("%d ", b->number);
11538 delete_breakpoint (b);
c906108c 11539 }
80f8a6eb
MS
11540 if (from_tty)
11541 putchar_unfiltered ('\n');
8a2c437b
TT
11542
11543 do_cleanups (cleanups);
c906108c
SS
11544}
11545\f
11546/* Delete breakpoint in BS if they are `delete' breakpoints and
11547 all breakpoints that are marked for deletion, whether hit or not.
11548 This is called after any breakpoint is hit, or after errors. */
11549
11550void
fba45db2 11551breakpoint_auto_delete (bpstat bs)
c906108c 11552{
35df4500 11553 struct breakpoint *b, *b_tmp;
c906108c
SS
11554
11555 for (; bs; bs = bs->next)
f431efe5
PA
11556 if (bs->breakpoint_at
11557 && bs->breakpoint_at->disposition == disp_del
c906108c 11558 && bs->stop)
f431efe5 11559 delete_breakpoint (bs->breakpoint_at);
c906108c 11560
35df4500 11561 ALL_BREAKPOINTS_SAFE (b, b_tmp)
c5aa993b 11562 {
b5de0fa7 11563 if (b->disposition == disp_del_at_next_stop)
c5aa993b
JM
11564 delete_breakpoint (b);
11565 }
c906108c
SS
11566}
11567
4a64f543
MS
11568/* A comparison function for bp_location AP and BP being interfaced to
11569 qsort. Sort elements primarily by their ADDRESS (no matter what
11570 does breakpoint_address_is_meaningful say for its OWNER),
11571 secondarily by ordering first bp_permanent OWNERed elements and
11572 terciarily just ensuring the array is sorted stable way despite
e5dd4106 11573 qsort being an unstable algorithm. */
876fa593
JK
11574
11575static int
494cfb0f 11576bp_location_compare (const void *ap, const void *bp)
876fa593 11577{
494cfb0f
JK
11578 struct bp_location *a = *(void **) ap;
11579 struct bp_location *b = *(void **) bp;
2bdf28a0 11580 /* A and B come from existing breakpoints having non-NULL OWNER. */
876fa593
JK
11581 int a_perm = a->owner->enable_state == bp_permanent;
11582 int b_perm = b->owner->enable_state == bp_permanent;
11583
11584 if (a->address != b->address)
11585 return (a->address > b->address) - (a->address < b->address);
11586
dea2aa5f
LM
11587 /* Sort locations at the same address by their pspace number, keeping
11588 locations of the same inferior (in a multi-inferior environment)
11589 grouped. */
11590
11591 if (a->pspace->num != b->pspace->num)
11592 return ((a->pspace->num > b->pspace->num)
11593 - (a->pspace->num < b->pspace->num));
11594
876fa593
JK
11595 /* Sort permanent breakpoints first. */
11596 if (a_perm != b_perm)
11597 return (a_perm < b_perm) - (a_perm > b_perm);
11598
c56a97f9
JK
11599 /* Make the internal GDB representation stable across GDB runs
11600 where A and B memory inside GDB can differ. Breakpoint locations of
11601 the same type at the same address can be sorted in arbitrary order. */
876fa593
JK
11602
11603 if (a->owner->number != b->owner->number)
c56a97f9
JK
11604 return ((a->owner->number > b->owner->number)
11605 - (a->owner->number < b->owner->number));
876fa593
JK
11606
11607 return (a > b) - (a < b);
11608}
11609
876fa593 11610/* Set bp_location_placed_address_before_address_max and
4a64f543
MS
11611 bp_location_shadow_len_after_address_max according to the current
11612 content of the bp_location array. */
f7545552
TT
11613
11614static void
876fa593 11615bp_location_target_extensions_update (void)
f7545552 11616{
876fa593
JK
11617 struct bp_location *bl, **blp_tmp;
11618
11619 bp_location_placed_address_before_address_max = 0;
11620 bp_location_shadow_len_after_address_max = 0;
11621
11622 ALL_BP_LOCATIONS (bl, blp_tmp)
11623 {
11624 CORE_ADDR start, end, addr;
11625
11626 if (!bp_location_has_shadow (bl))
11627 continue;
11628
11629 start = bl->target_info.placed_address;
11630 end = start + bl->target_info.shadow_len;
11631
11632 gdb_assert (bl->address >= start);
11633 addr = bl->address - start;
11634 if (addr > bp_location_placed_address_before_address_max)
11635 bp_location_placed_address_before_address_max = addr;
11636
11637 /* Zero SHADOW_LEN would not pass bp_location_has_shadow. */
11638
11639 gdb_assert (bl->address < end);
11640 addr = end - bl->address;
11641 if (addr > bp_location_shadow_len_after_address_max)
11642 bp_location_shadow_len_after_address_max = addr;
11643 }
f7545552
TT
11644}
11645
1e4d1764
YQ
11646/* Download tracepoint locations if they haven't been. */
11647
11648static void
11649download_tracepoint_locations (void)
11650{
11651 struct bp_location *bl, **blp_tmp;
11652 struct cleanup *old_chain;
11653
11654 if (!target_can_download_tracepoint ())
11655 return;
11656
11657 old_chain = save_current_space_and_thread ();
11658
11659 ALL_BP_LOCATIONS (bl, blp_tmp)
11660 {
11661 struct tracepoint *t;
11662
11663 if (!is_tracepoint (bl->owner))
11664 continue;
11665
11666 if ((bl->owner->type == bp_fast_tracepoint
11667 ? !may_insert_fast_tracepoints
11668 : !may_insert_tracepoints))
11669 continue;
11670
11671 /* In tracepoint, locations are _never_ duplicated, so
11672 should_be_inserted is equivalent to
11673 unduplicated_should_be_inserted. */
11674 if (!should_be_inserted (bl) || bl->inserted)
11675 continue;
11676
11677 switch_to_program_space_and_thread (bl->pspace);
11678
11679 target_download_tracepoint (bl);
11680
11681 bl->inserted = 1;
11682 t = (struct tracepoint *) bl->owner;
11683 t->number_on_target = bl->owner->number;
11684 }
11685
11686 do_cleanups (old_chain);
11687}
11688
934709f0
PW
11689/* Swap the insertion/duplication state between two locations. */
11690
11691static void
11692swap_insertion (struct bp_location *left, struct bp_location *right)
11693{
11694 const int left_inserted = left->inserted;
11695 const int left_duplicate = left->duplicate;
b775012e 11696 const int left_needs_update = left->needs_update;
934709f0
PW
11697 const struct bp_target_info left_target_info = left->target_info;
11698
1e4d1764
YQ
11699 /* Locations of tracepoints can never be duplicated. */
11700 if (is_tracepoint (left->owner))
11701 gdb_assert (!left->duplicate);
11702 if (is_tracepoint (right->owner))
11703 gdb_assert (!right->duplicate);
11704
934709f0
PW
11705 left->inserted = right->inserted;
11706 left->duplicate = right->duplicate;
b775012e 11707 left->needs_update = right->needs_update;
934709f0
PW
11708 left->target_info = right->target_info;
11709 right->inserted = left_inserted;
11710 right->duplicate = left_duplicate;
b775012e 11711 right->needs_update = left_needs_update;
934709f0
PW
11712 right->target_info = left_target_info;
11713}
11714
b775012e
LM
11715/* Force the re-insertion of the locations at ADDRESS. This is called
11716 once a new/deleted/modified duplicate location is found and we are evaluating
11717 conditions on the target's side. Such conditions need to be updated on
11718 the target. */
11719
11720static void
11721force_breakpoint_reinsertion (struct bp_location *bl)
11722{
11723 struct bp_location **locp = NULL, **loc2p;
11724 struct bp_location *loc;
11725 CORE_ADDR address = 0;
11726 int pspace_num;
11727
11728 address = bl->address;
11729 pspace_num = bl->pspace->num;
11730
11731 /* This is only meaningful if the target is
11732 evaluating conditions and if the user has
11733 opted for condition evaluation on the target's
11734 side. */
11735 if (gdb_evaluates_breakpoint_condition_p ()
11736 || !target_supports_evaluation_of_breakpoint_conditions ())
11737 return;
11738
11739 /* Flag all breakpoint locations with this address and
11740 the same program space as the location
11741 as "its condition has changed". We need to
11742 update the conditions on the target's side. */
11743 ALL_BP_LOCATIONS_AT_ADDR (loc2p, locp, address)
11744 {
11745 loc = *loc2p;
11746
11747 if (!is_breakpoint (loc->owner)
11748 || pspace_num != loc->pspace->num)
11749 continue;
11750
11751 /* Flag the location appropriately. We use a different state to
11752 let everyone know that we already updated the set of locations
11753 with addr bl->address and program space bl->pspace. This is so
11754 we don't have to keep calling these functions just to mark locations
11755 that have already been marked. */
11756 loc->condition_changed = condition_updated;
11757
11758 /* Free the agent expression bytecode as well. We will compute
11759 it later on. */
11760 if (loc->cond_bytecode)
11761 {
11762 free_agent_expr (loc->cond_bytecode);
11763 loc->cond_bytecode = NULL;
11764 }
11765 }
11766}
11767
4cd9bd08 11768/* If SHOULD_INSERT is false, do not insert any breakpoint locations
b60e7edf
PA
11769 into the inferior, only remove already-inserted locations that no
11770 longer should be inserted. Functions that delete a breakpoint or
11771 breakpoints should pass false, so that deleting a breakpoint
11772 doesn't have the side effect of inserting the locations of other
11773 breakpoints that are marked not-inserted, but should_be_inserted
11774 returns true on them.
11775
11776 This behaviour is useful is situations close to tear-down -- e.g.,
11777 after an exec, while the target still has execution, but breakpoint
11778 shadows of the previous executable image should *NOT* be restored
11779 to the new image; or before detaching, where the target still has
11780 execution and wants to delete breakpoints from GDB's lists, and all
11781 breakpoints had already been removed from the inferior. */
11782
0d381245 11783static void
b60e7edf 11784update_global_location_list (int should_insert)
0d381245 11785{
74960c60 11786 struct breakpoint *b;
876fa593 11787 struct bp_location **locp, *loc;
f7545552 11788 struct cleanup *cleanups;
b775012e
LM
11789 /* Last breakpoint location address that was marked for update. */
11790 CORE_ADDR last_addr = 0;
11791 /* Last breakpoint location program space that was marked for update. */
11792 int last_pspace_num = -1;
f7545552 11793
2d134ed3
PA
11794 /* Used in the duplicates detection below. When iterating over all
11795 bp_locations, points to the first bp_location of a given address.
11796 Breakpoints and watchpoints of different types are never
11797 duplicates of each other. Keep one pointer for each type of
11798 breakpoint/watchpoint, so we only need to loop over all locations
11799 once. */
11800 struct bp_location *bp_loc_first; /* breakpoint */
11801 struct bp_location *wp_loc_first; /* hardware watchpoint */
11802 struct bp_location *awp_loc_first; /* access watchpoint */
11803 struct bp_location *rwp_loc_first; /* read watchpoint */
876fa593 11804
4a64f543
MS
11805 /* Saved former bp_location array which we compare against the newly
11806 built bp_location from the current state of ALL_BREAKPOINTS. */
876fa593
JK
11807 struct bp_location **old_location, **old_locp;
11808 unsigned old_location_count;
11809
11810 old_location = bp_location;
11811 old_location_count = bp_location_count;
11812 bp_location = NULL;
11813 bp_location_count = 0;
11814 cleanups = make_cleanup (xfree, old_location);
0d381245 11815
74960c60 11816 ALL_BREAKPOINTS (b)
876fa593
JK
11817 for (loc = b->loc; loc; loc = loc->next)
11818 bp_location_count++;
11819
11820 bp_location = xmalloc (sizeof (*bp_location) * bp_location_count);
11821 locp = bp_location;
11822 ALL_BREAKPOINTS (b)
11823 for (loc = b->loc; loc; loc = loc->next)
11824 *locp++ = loc;
11825 qsort (bp_location, bp_location_count, sizeof (*bp_location),
494cfb0f 11826 bp_location_compare);
876fa593
JK
11827
11828 bp_location_target_extensions_update ();
74960c60 11829
4a64f543
MS
11830 /* Identify bp_location instances that are no longer present in the
11831 new list, and therefore should be freed. Note that it's not
11832 necessary that those locations should be removed from inferior --
11833 if there's another location at the same address (previously
11834 marked as duplicate), we don't need to remove/insert the
11835 location.
876fa593 11836
4a64f543
MS
11837 LOCP is kept in sync with OLD_LOCP, each pointing to the current
11838 and former bp_location array state respectively. */
876fa593
JK
11839
11840 locp = bp_location;
11841 for (old_locp = old_location; old_locp < old_location + old_location_count;
11842 old_locp++)
74960c60 11843 {
876fa593 11844 struct bp_location *old_loc = *old_locp;
c7d46a38 11845 struct bp_location **loc2p;
876fa593 11846
e5dd4106 11847 /* Tells if 'old_loc' is found among the new locations. If
4a64f543 11848 not, we have to free it. */
c7d46a38 11849 int found_object = 0;
20874c92
VP
11850 /* Tells if the location should remain inserted in the target. */
11851 int keep_in_target = 0;
11852 int removed = 0;
876fa593 11853
4a64f543
MS
11854 /* Skip LOCP entries which will definitely never be needed.
11855 Stop either at or being the one matching OLD_LOC. */
876fa593 11856 while (locp < bp_location + bp_location_count
c7d46a38 11857 && (*locp)->address < old_loc->address)
876fa593 11858 locp++;
c7d46a38
PA
11859
11860 for (loc2p = locp;
11861 (loc2p < bp_location + bp_location_count
11862 && (*loc2p)->address == old_loc->address);
11863 loc2p++)
11864 {
b775012e
LM
11865 /* Check if this is a new/duplicated location or a duplicated
11866 location that had its condition modified. If so, we want to send
11867 its condition to the target if evaluation of conditions is taking
11868 place there. */
11869 if ((*loc2p)->condition_changed == condition_modified
11870 && (last_addr != old_loc->address
11871 || last_pspace_num != old_loc->pspace->num))
c7d46a38 11872 {
b775012e
LM
11873 force_breakpoint_reinsertion (*loc2p);
11874 last_pspace_num = old_loc->pspace->num;
c7d46a38 11875 }
b775012e
LM
11876
11877 if (*loc2p == old_loc)
11878 found_object = 1;
c7d46a38 11879 }
74960c60 11880
b775012e
LM
11881 /* We have already handled this address, update it so that we don't
11882 have to go through updates again. */
11883 last_addr = old_loc->address;
11884
11885 /* Target-side condition evaluation: Handle deleted locations. */
11886 if (!found_object)
11887 force_breakpoint_reinsertion (old_loc);
11888
4a64f543
MS
11889 /* If this location is no longer present, and inserted, look if
11890 there's maybe a new location at the same address. If so,
11891 mark that one inserted, and don't remove this one. This is
11892 needed so that we don't have a time window where a breakpoint
11893 at certain location is not inserted. */
74960c60 11894
876fa593 11895 if (old_loc->inserted)
0d381245 11896 {
4a64f543
MS
11897 /* If the location is inserted now, we might have to remove
11898 it. */
74960c60 11899
876fa593 11900 if (found_object && should_be_inserted (old_loc))
74960c60 11901 {
4a64f543
MS
11902 /* The location is still present in the location list,
11903 and still should be inserted. Don't do anything. */
20874c92 11904 keep_in_target = 1;
74960c60
VP
11905 }
11906 else
11907 {
b775012e
LM
11908 /* This location still exists, but it won't be kept in the
11909 target since it may have been disabled. We proceed to
11910 remove its target-side condition. */
11911
4a64f543
MS
11912 /* The location is either no longer present, or got
11913 disabled. See if there's another location at the
11914 same address, in which case we don't need to remove
11915 this one from the target. */
876fa593 11916
2bdf28a0 11917 /* OLD_LOC comes from existing struct breakpoint. */
876fa593
JK
11918 if (breakpoint_address_is_meaningful (old_loc->owner))
11919 {
876fa593 11920 for (loc2p = locp;
c7d46a38
PA
11921 (loc2p < bp_location + bp_location_count
11922 && (*loc2p)->address == old_loc->address);
876fa593
JK
11923 loc2p++)
11924 {
11925 struct bp_location *loc2 = *loc2p;
11926
2d134ed3 11927 if (breakpoint_locations_match (loc2, old_loc))
c7d46a38 11928 {
85d721b8
PA
11929 /* Read watchpoint locations are switched to
11930 access watchpoints, if the former are not
11931 supported, but the latter are. */
11932 if (is_hardware_watchpoint (old_loc->owner))
11933 {
11934 gdb_assert (is_hardware_watchpoint (loc2->owner));
11935 loc2->watchpoint_type = old_loc->watchpoint_type;
11936 }
11937
934709f0
PW
11938 /* loc2 is a duplicated location. We need to check
11939 if it should be inserted in case it will be
11940 unduplicated. */
11941 if (loc2 != old_loc
11942 && unduplicated_should_be_inserted (loc2))
c7d46a38 11943 {
934709f0 11944 swap_insertion (old_loc, loc2);
c7d46a38
PA
11945 keep_in_target = 1;
11946 break;
11947 }
876fa593
JK
11948 }
11949 }
11950 }
74960c60
VP
11951 }
11952
20874c92
VP
11953 if (!keep_in_target)
11954 {
876fa593 11955 if (remove_breakpoint (old_loc, mark_uninserted))
20874c92 11956 {
4a64f543
MS
11957 /* This is just about all we can do. We could keep
11958 this location on the global list, and try to
11959 remove it next time, but there's no particular
11960 reason why we will succeed next time.
20874c92 11961
4a64f543
MS
11962 Note that at this point, old_loc->owner is still
11963 valid, as delete_breakpoint frees the breakpoint
11964 only after calling us. */
3e43a32a
MS
11965 printf_filtered (_("warning: Error removing "
11966 "breakpoint %d\n"),
876fa593 11967 old_loc->owner->number);
20874c92
VP
11968 }
11969 removed = 1;
11970 }
0d381245 11971 }
74960c60
VP
11972
11973 if (!found_object)
1c5cfe86 11974 {
db82e815
PA
11975 if (removed && non_stop
11976 && breakpoint_address_is_meaningful (old_loc->owner)
11977 && !is_hardware_watchpoint (old_loc->owner))
20874c92 11978 {
db82e815
PA
11979 /* This location was removed from the target. In
11980 non-stop mode, a race condition is possible where
11981 we've removed a breakpoint, but stop events for that
11982 breakpoint are already queued and will arrive later.
11983 We apply an heuristic to be able to distinguish such
11984 SIGTRAPs from other random SIGTRAPs: we keep this
11985 breakpoint location for a bit, and will retire it
11986 after we see some number of events. The theory here
11987 is that reporting of events should, "on the average",
11988 be fair, so after a while we'll see events from all
11989 threads that have anything of interest, and no longer
11990 need to keep this breakpoint location around. We
11991 don't hold locations forever so to reduce chances of
11992 mistaking a non-breakpoint SIGTRAP for a breakpoint
11993 SIGTRAP.
11994
11995 The heuristic failing can be disastrous on
11996 decr_pc_after_break targets.
11997
11998 On decr_pc_after_break targets, like e.g., x86-linux,
11999 if we fail to recognize a late breakpoint SIGTRAP,
12000 because events_till_retirement has reached 0 too
12001 soon, we'll fail to do the PC adjustment, and report
12002 a random SIGTRAP to the user. When the user resumes
12003 the inferior, it will most likely immediately crash
2dec564e 12004 with SIGILL/SIGBUS/SIGSEGV, or worse, get silently
db82e815
PA
12005 corrupted, because of being resumed e.g., in the
12006 middle of a multi-byte instruction, or skipped a
12007 one-byte instruction. This was actually seen happen
12008 on native x86-linux, and should be less rare on
12009 targets that do not support new thread events, like
12010 remote, due to the heuristic depending on
12011 thread_count.
12012
12013 Mistaking a random SIGTRAP for a breakpoint trap
12014 causes similar symptoms (PC adjustment applied when
12015 it shouldn't), but then again, playing with SIGTRAPs
12016 behind the debugger's back is asking for trouble.
12017
12018 Since hardware watchpoint traps are always
12019 distinguishable from other traps, so we don't need to
12020 apply keep hardware watchpoint moribund locations
12021 around. We simply always ignore hardware watchpoint
12022 traps we can no longer explain. */
12023
876fa593
JK
12024 old_loc->events_till_retirement = 3 * (thread_count () + 1);
12025 old_loc->owner = NULL;
20874c92 12026
876fa593 12027 VEC_safe_push (bp_location_p, moribund_locations, old_loc);
1c5cfe86
PA
12028 }
12029 else
f431efe5
PA
12030 {
12031 old_loc->owner = NULL;
12032 decref_bp_location (&old_loc);
12033 }
20874c92 12034 }
74960c60 12035 }
1c5cfe86 12036
348d480f
PA
12037 /* Rescan breakpoints at the same address and section, marking the
12038 first one as "first" and any others as "duplicates". This is so
12039 that the bpt instruction is only inserted once. If we have a
12040 permanent breakpoint at the same place as BPT, make that one the
12041 official one, and the rest as duplicates. Permanent breakpoints
12042 are sorted first for the same address.
12043
12044 Do the same for hardware watchpoints, but also considering the
12045 watchpoint's type (regular/access/read) and length. */
12046
12047 bp_loc_first = NULL;
12048 wp_loc_first = NULL;
12049 awp_loc_first = NULL;
12050 rwp_loc_first = NULL;
12051 ALL_BP_LOCATIONS (loc, locp)
12052 {
12053 /* ALL_BP_LOCATIONS bp_location has LOC->OWNER always
12054 non-NULL. */
348d480f 12055 struct bp_location **loc_first_p;
d3fbdd86 12056 b = loc->owner;
348d480f 12057
f8eba3c6 12058 if (!should_be_inserted (loc)
348d480f 12059 || !breakpoint_address_is_meaningful (b)
1e4d1764
YQ
12060 /* Don't detect duplicate for tracepoint locations because they are
12061 never duplicated. See the comments in field `duplicate' of
12062 `struct bp_location'. */
348d480f 12063 || is_tracepoint (b))
b775012e
LM
12064 {
12065 /* Clear the condition modification flag. */
12066 loc->condition_changed = condition_unchanged;
12067 continue;
12068 }
348d480f
PA
12069
12070 /* Permanent breakpoint should always be inserted. */
12071 if (b->enable_state == bp_permanent && ! loc->inserted)
12072 internal_error (__FILE__, __LINE__,
12073 _("allegedly permanent breakpoint is not "
12074 "actually inserted"));
12075
12076 if (b->type == bp_hardware_watchpoint)
12077 loc_first_p = &wp_loc_first;
12078 else if (b->type == bp_read_watchpoint)
12079 loc_first_p = &rwp_loc_first;
12080 else if (b->type == bp_access_watchpoint)
12081 loc_first_p = &awp_loc_first;
12082 else
12083 loc_first_p = &bp_loc_first;
12084
12085 if (*loc_first_p == NULL
12086 || (overlay_debugging && loc->section != (*loc_first_p)->section)
12087 || !breakpoint_locations_match (loc, *loc_first_p))
12088 {
12089 *loc_first_p = loc;
12090 loc->duplicate = 0;
b775012e
LM
12091
12092 if (is_breakpoint (loc->owner) && loc->condition_changed)
12093 {
12094 loc->needs_update = 1;
12095 /* Clear the condition modification flag. */
12096 loc->condition_changed = condition_unchanged;
12097 }
348d480f
PA
12098 continue;
12099 }
12100
934709f0
PW
12101
12102 /* This and the above ensure the invariant that the first location
12103 is not duplicated, and is the inserted one.
12104 All following are marked as duplicated, and are not inserted. */
12105 if (loc->inserted)
12106 swap_insertion (loc, *loc_first_p);
348d480f
PA
12107 loc->duplicate = 1;
12108
b775012e
LM
12109 /* Clear the condition modification flag. */
12110 loc->condition_changed = condition_unchanged;
12111
348d480f
PA
12112 if ((*loc_first_p)->owner->enable_state == bp_permanent && loc->inserted
12113 && b->enable_state != bp_permanent)
12114 internal_error (__FILE__, __LINE__,
12115 _("another breakpoint was inserted on top of "
12116 "a permanent breakpoint"));
12117 }
12118
b775012e 12119 if (breakpoints_always_inserted_mode ()
348d480f
PA
12120 && (have_live_inferiors ()
12121 || (gdbarch_has_global_breakpoints (target_gdbarch))))
b775012e
LM
12122 {
12123 if (should_insert)
12124 insert_breakpoint_locations ();
12125 else
12126 {
12127 /* Though should_insert is false, we may need to update conditions
12128 on the target's side if it is evaluating such conditions. We
12129 only update conditions for locations that are marked
12130 "needs_update". */
12131 update_inserted_breakpoint_locations ();
12132 }
12133 }
348d480f 12134
1e4d1764
YQ
12135 if (should_insert)
12136 download_tracepoint_locations ();
12137
348d480f
PA
12138 do_cleanups (cleanups);
12139}
12140
12141void
12142breakpoint_retire_moribund (void)
12143{
12144 struct bp_location *loc;
12145 int ix;
12146
12147 for (ix = 0; VEC_iterate (bp_location_p, moribund_locations, ix, loc); ++ix)
12148 if (--(loc->events_till_retirement) == 0)
12149 {
12150 decref_bp_location (&loc);
12151 VEC_unordered_remove (bp_location_p, moribund_locations, ix);
12152 --ix;
12153 }
12154}
12155
12156static void
12157update_global_location_list_nothrow (int inserting)
12158{
bfd189b1 12159 volatile struct gdb_exception e;
348d480f
PA
12160
12161 TRY_CATCH (e, RETURN_MASK_ERROR)
12162 update_global_location_list (inserting);
12163}
12164
12165/* Clear BKP from a BPS. */
12166
12167static void
12168bpstat_remove_bp_location (bpstat bps, struct breakpoint *bpt)
12169{
12170 bpstat bs;
12171
12172 for (bs = bps; bs; bs = bs->next)
12173 if (bs->breakpoint_at == bpt)
12174 {
12175 bs->breakpoint_at = NULL;
12176 bs->old_val = NULL;
12177 /* bs->commands will be freed later. */
12178 }
12179}
12180
12181/* Callback for iterate_over_threads. */
12182static int
12183bpstat_remove_breakpoint_callback (struct thread_info *th, void *data)
12184{
12185 struct breakpoint *bpt = data;
12186
12187 bpstat_remove_bp_location (th->control.stop_bpstat, bpt);
12188 return 0;
12189}
12190
12191/* Helper for breakpoint and tracepoint breakpoint_ops->mention
12192 callbacks. */
12193
12194static void
12195say_where (struct breakpoint *b)
12196{
79a45e25 12197 struct ui_out *uiout = current_uiout;
348d480f
PA
12198 struct value_print_options opts;
12199
12200 get_user_print_options (&opts);
12201
12202 /* i18n: cagney/2005-02-11: Below needs to be merged into a
12203 single string. */
12204 if (b->loc == NULL)
12205 {
12206 printf_filtered (_(" (%s) pending."), b->addr_string);
12207 }
12208 else
12209 {
f8eba3c6 12210 if (opts.addressprint || b->loc->source_file == NULL)
348d480f
PA
12211 {
12212 printf_filtered (" at ");
12213 fputs_filtered (paddress (b->loc->gdbarch, b->loc->address),
12214 gdb_stdout);
12215 }
f8eba3c6
TT
12216 if (b->loc->source_file)
12217 {
12218 /* If there is a single location, we can print the location
12219 more nicely. */
12220 if (b->loc->next == NULL)
12221 printf_filtered (": file %s, line %d.",
12222 b->loc->source_file, b->loc->line_number);
12223 else
12224 /* This is not ideal, but each location may have a
12225 different file name, and this at least reflects the
12226 real situation somewhat. */
12227 printf_filtered (": %s.", b->addr_string);
12228 }
348d480f
PA
12229
12230 if (b->loc->next)
12231 {
12232 struct bp_location *loc = b->loc;
12233 int n = 0;
12234 for (; loc; loc = loc->next)
12235 ++n;
12236 printf_filtered (" (%d locations)", n);
12237 }
12238 }
12239}
12240
348d480f
PA
12241/* Default bp_location_ops methods. */
12242
12243static void
12244bp_location_dtor (struct bp_location *self)
12245{
12246 xfree (self->cond);
b775012e
LM
12247 if (self->cond_bytecode)
12248 free_agent_expr (self->cond_bytecode);
348d480f 12249 xfree (self->function_name);
f8eba3c6 12250 xfree (self->source_file);
348d480f
PA
12251}
12252
12253static const struct bp_location_ops bp_location_ops =
12254{
12255 bp_location_dtor
12256};
12257
2060206e
PA
12258/* Default breakpoint_ops methods all breakpoint_ops ultimately
12259 inherit from. */
348d480f 12260
2060206e
PA
12261static void
12262base_breakpoint_dtor (struct breakpoint *self)
348d480f
PA
12263{
12264 decref_counted_command_line (&self->commands);
12265 xfree (self->cond_string);
348d480f 12266 xfree (self->addr_string);
f8eba3c6 12267 xfree (self->filter);
348d480f 12268 xfree (self->addr_string_range_end);
348d480f
PA
12269}
12270
2060206e
PA
12271static struct bp_location *
12272base_breakpoint_allocate_location (struct breakpoint *self)
348d480f
PA
12273{
12274 struct bp_location *loc;
12275
12276 loc = XNEW (struct bp_location);
12277 init_bp_location (loc, &bp_location_ops, self);
12278 return loc;
12279}
12280
2060206e
PA
12281static void
12282base_breakpoint_re_set (struct breakpoint *b)
12283{
12284 /* Nothing to re-set. */
12285}
12286
12287#define internal_error_pure_virtual_called() \
12288 gdb_assert_not_reached ("pure virtual function called")
12289
12290static int
12291base_breakpoint_insert_location (struct bp_location *bl)
12292{
12293 internal_error_pure_virtual_called ();
12294}
12295
12296static int
12297base_breakpoint_remove_location (struct bp_location *bl)
12298{
12299 internal_error_pure_virtual_called ();
12300}
12301
12302static int
12303base_breakpoint_breakpoint_hit (const struct bp_location *bl,
12304 struct address_space *aspace,
09ac7c10
TT
12305 CORE_ADDR bp_addr,
12306 const struct target_waitstatus *ws)
2060206e
PA
12307{
12308 internal_error_pure_virtual_called ();
12309}
12310
12311static void
12312base_breakpoint_check_status (bpstat bs)
12313{
12314 /* Always stop. */
12315}
12316
12317/* A "works_in_software_mode" breakpoint_ops method that just internal
12318 errors. */
12319
12320static int
12321base_breakpoint_works_in_software_mode (const struct breakpoint *b)
12322{
12323 internal_error_pure_virtual_called ();
12324}
12325
12326/* A "resources_needed" breakpoint_ops method that just internal
12327 errors. */
12328
12329static int
12330base_breakpoint_resources_needed (const struct bp_location *bl)
12331{
12332 internal_error_pure_virtual_called ();
12333}
12334
12335static enum print_stop_action
12336base_breakpoint_print_it (bpstat bs)
12337{
12338 internal_error_pure_virtual_called ();
12339}
12340
12341static void
12342base_breakpoint_print_one_detail (const struct breakpoint *self,
12343 struct ui_out *uiout)
12344{
12345 /* nothing */
12346}
12347
12348static void
12349base_breakpoint_print_mention (struct breakpoint *b)
12350{
12351 internal_error_pure_virtual_called ();
12352}
12353
12354static void
12355base_breakpoint_print_recreate (struct breakpoint *b, struct ui_file *fp)
12356{
12357 internal_error_pure_virtual_called ();
12358}
12359
983af33b
SDJ
12360static void
12361base_breakpoint_create_sals_from_address (char **arg,
12362 struct linespec_result *canonical,
12363 enum bptype type_wanted,
12364 char *addr_start,
12365 char **copy_arg)
12366{
12367 internal_error_pure_virtual_called ();
12368}
12369
12370static void
12371base_breakpoint_create_breakpoints_sal (struct gdbarch *gdbarch,
12372 struct linespec_result *c,
12373 struct linespec_sals *lsal,
12374 char *cond_string,
e7e0cddf 12375 char *extra_string,
983af33b
SDJ
12376 enum bptype type_wanted,
12377 enum bpdisp disposition,
12378 int thread,
12379 int task, int ignore_count,
12380 const struct breakpoint_ops *o,
12381 int from_tty, int enabled,
44f238bb 12382 int internal, unsigned flags)
983af33b
SDJ
12383{
12384 internal_error_pure_virtual_called ();
12385}
12386
12387static void
12388base_breakpoint_decode_linespec (struct breakpoint *b, char **s,
12389 struct symtabs_and_lines *sals)
12390{
12391 internal_error_pure_virtual_called ();
12392}
12393
2060206e
PA
12394static struct breakpoint_ops base_breakpoint_ops =
12395{
12396 base_breakpoint_dtor,
12397 base_breakpoint_allocate_location,
12398 base_breakpoint_re_set,
12399 base_breakpoint_insert_location,
12400 base_breakpoint_remove_location,
12401 base_breakpoint_breakpoint_hit,
12402 base_breakpoint_check_status,
12403 base_breakpoint_resources_needed,
12404 base_breakpoint_works_in_software_mode,
12405 base_breakpoint_print_it,
12406 NULL,
12407 base_breakpoint_print_one_detail,
12408 base_breakpoint_print_mention,
983af33b
SDJ
12409 base_breakpoint_print_recreate,
12410 base_breakpoint_create_sals_from_address,
12411 base_breakpoint_create_breakpoints_sal,
12412 base_breakpoint_decode_linespec,
2060206e
PA
12413};
12414
12415/* Default breakpoint_ops methods. */
12416
12417static void
348d480f
PA
12418bkpt_re_set (struct breakpoint *b)
12419{
06edf0c0
PA
12420 /* FIXME: is this still reachable? */
12421 if (b->addr_string == NULL)
12422 {
12423 /* Anything without a string can't be re-set. */
348d480f 12424 delete_breakpoint (b);
06edf0c0 12425 return;
348d480f 12426 }
06edf0c0
PA
12427
12428 breakpoint_re_set_default (b);
348d480f
PA
12429}
12430
2060206e 12431static int
348d480f
PA
12432bkpt_insert_location (struct bp_location *bl)
12433{
12434 if (bl->loc_type == bp_loc_hardware_breakpoint)
12435 return target_insert_hw_breakpoint (bl->gdbarch,
12436 &bl->target_info);
12437 else
12438 return target_insert_breakpoint (bl->gdbarch,
12439 &bl->target_info);
12440}
12441
2060206e 12442static int
348d480f
PA
12443bkpt_remove_location (struct bp_location *bl)
12444{
12445 if (bl->loc_type == bp_loc_hardware_breakpoint)
12446 return target_remove_hw_breakpoint (bl->gdbarch, &bl->target_info);
12447 else
12448 return target_remove_breakpoint (bl->gdbarch, &bl->target_info);
12449}
12450
2060206e 12451static int
348d480f 12452bkpt_breakpoint_hit (const struct bp_location *bl,
09ac7c10
TT
12453 struct address_space *aspace, CORE_ADDR bp_addr,
12454 const struct target_waitstatus *ws)
348d480f
PA
12455{
12456 struct breakpoint *b = bl->owner;
12457
09ac7c10
TT
12458 if (ws->kind != TARGET_WAITKIND_STOPPED
12459 || ws->value.sig != TARGET_SIGNAL_TRAP)
12460 return 0;
12461
348d480f
PA
12462 if (!breakpoint_address_match (bl->pspace->aspace, bl->address,
12463 aspace, bp_addr))
12464 return 0;
12465
12466 if (overlay_debugging /* unmapped overlay section */
12467 && section_is_overlay (bl->section)
12468 && !section_is_mapped (bl->section))
12469 return 0;
12470
12471 return 1;
12472}
12473
2060206e 12474static int
348d480f
PA
12475bkpt_resources_needed (const struct bp_location *bl)
12476{
12477 gdb_assert (bl->owner->type == bp_hardware_breakpoint);
12478
12479 return 1;
12480}
12481
2060206e 12482static enum print_stop_action
348d480f
PA
12483bkpt_print_it (bpstat bs)
12484{
348d480f
PA
12485 struct breakpoint *b;
12486 const struct bp_location *bl;
001c8c33 12487 int bp_temp;
79a45e25 12488 struct ui_out *uiout = current_uiout;
348d480f
PA
12489
12490 gdb_assert (bs->bp_location_at != NULL);
12491
12492 bl = bs->bp_location_at;
12493 b = bs->breakpoint_at;
12494
001c8c33
PA
12495 bp_temp = b->disposition == disp_del;
12496 if (bl->address != bl->requested_address)
12497 breakpoint_adjustment_warning (bl->requested_address,
12498 bl->address,
12499 b->number, 1);
12500 annotate_breakpoint (b->number);
12501 if (bp_temp)
12502 ui_out_text (uiout, "\nTemporary breakpoint ");
12503 else
12504 ui_out_text (uiout, "\nBreakpoint ");
12505 if (ui_out_is_mi_like_p (uiout))
348d480f 12506 {
001c8c33
PA
12507 ui_out_field_string (uiout, "reason",
12508 async_reason_lookup (EXEC_ASYNC_BREAKPOINT_HIT));
12509 ui_out_field_string (uiout, "disp", bpdisp_text (b->disposition));
06edf0c0 12510 }
001c8c33
PA
12511 ui_out_field_int (uiout, "bkptno", b->number);
12512 ui_out_text (uiout, ", ");
06edf0c0 12513
001c8c33 12514 return PRINT_SRC_AND_LOC;
06edf0c0
PA
12515}
12516
2060206e 12517static void
06edf0c0
PA
12518bkpt_print_mention (struct breakpoint *b)
12519{
79a45e25 12520 if (ui_out_is_mi_like_p (current_uiout))
06edf0c0
PA
12521 return;
12522
12523 switch (b->type)
12524 {
12525 case bp_breakpoint:
12526 case bp_gnu_ifunc_resolver:
12527 if (b->disposition == disp_del)
12528 printf_filtered (_("Temporary breakpoint"));
12529 else
12530 printf_filtered (_("Breakpoint"));
12531 printf_filtered (_(" %d"), b->number);
12532 if (b->type == bp_gnu_ifunc_resolver)
12533 printf_filtered (_(" at gnu-indirect-function resolver"));
12534 break;
12535 case bp_hardware_breakpoint:
12536 printf_filtered (_("Hardware assisted breakpoint %d"), b->number);
12537 break;
e7e0cddf
SS
12538 case bp_dprintf:
12539 printf_filtered (_("Dprintf %d"), b->number);
12540 break;
06edf0c0
PA
12541 }
12542
12543 say_where (b);
12544}
12545
2060206e 12546static void
06edf0c0
PA
12547bkpt_print_recreate (struct breakpoint *tp, struct ui_file *fp)
12548{
12549 if (tp->type == bp_breakpoint && tp->disposition == disp_del)
12550 fprintf_unfiltered (fp, "tbreak");
12551 else if (tp->type == bp_breakpoint)
12552 fprintf_unfiltered (fp, "break");
12553 else if (tp->type == bp_hardware_breakpoint
12554 && tp->disposition == disp_del)
12555 fprintf_unfiltered (fp, "thbreak");
12556 else if (tp->type == bp_hardware_breakpoint)
12557 fprintf_unfiltered (fp, "hbreak");
12558 else
12559 internal_error (__FILE__, __LINE__,
12560 _("unhandled breakpoint type %d"), (int) tp->type);
12561
2060206e 12562 fprintf_unfiltered (fp, " %s", tp->addr_string);
dd11a36c 12563 print_recreate_thread (tp, fp);
06edf0c0
PA
12564}
12565
983af33b
SDJ
12566static void
12567bkpt_create_sals_from_address (char **arg,
12568 struct linespec_result *canonical,
12569 enum bptype type_wanted,
12570 char *addr_start, char **copy_arg)
12571{
12572 create_sals_from_address_default (arg, canonical, type_wanted,
12573 addr_start, copy_arg);
12574}
12575
12576static void
12577bkpt_create_breakpoints_sal (struct gdbarch *gdbarch,
12578 struct linespec_result *canonical,
12579 struct linespec_sals *lsal,
12580 char *cond_string,
e7e0cddf 12581 char *extra_string,
983af33b
SDJ
12582 enum bptype type_wanted,
12583 enum bpdisp disposition,
12584 int thread,
12585 int task, int ignore_count,
12586 const struct breakpoint_ops *ops,
12587 int from_tty, int enabled,
44f238bb 12588 int internal, unsigned flags)
983af33b
SDJ
12589{
12590 create_breakpoints_sal_default (gdbarch, canonical, lsal,
e7e0cddf
SS
12591 cond_string, extra_string,
12592 type_wanted,
983af33b
SDJ
12593 disposition, thread, task,
12594 ignore_count, ops, from_tty,
44f238bb 12595 enabled, internal, flags);
983af33b
SDJ
12596}
12597
12598static void
12599bkpt_decode_linespec (struct breakpoint *b, char **s,
12600 struct symtabs_and_lines *sals)
12601{
12602 decode_linespec_default (b, s, sals);
12603}
12604
06edf0c0
PA
12605/* Virtual table for internal breakpoints. */
12606
12607static void
12608internal_bkpt_re_set (struct breakpoint *b)
12609{
12610 switch (b->type)
12611 {
12612 /* Delete overlay event and longjmp master breakpoints; they
12613 will be reset later by breakpoint_re_set. */
12614 case bp_overlay_event:
12615 case bp_longjmp_master:
12616 case bp_std_terminate_master:
12617 case bp_exception_master:
12618 delete_breakpoint (b);
12619 break;
12620
12621 /* This breakpoint is special, it's set up when the inferior
12622 starts and we really don't want to touch it. */
12623 case bp_shlib_event:
12624
12625 /* Like bp_shlib_event, this breakpoint type is special. Once
12626 it is set up, we do not want to touch it. */
12627 case bp_thread_event:
12628 break;
12629 }
12630}
12631
12632static void
12633internal_bkpt_check_status (bpstat bs)
12634{
a9b3a50f
PA
12635 if (bs->breakpoint_at->type == bp_shlib_event)
12636 {
12637 /* If requested, stop when the dynamic linker notifies GDB of
12638 events. This allows the user to get control and place
12639 breakpoints in initializer routines for dynamically loaded
12640 objects (among other things). */
12641 bs->stop = stop_on_solib_events;
12642 bs->print = stop_on_solib_events;
12643 }
12644 else
12645 bs->stop = 0;
06edf0c0
PA
12646}
12647
12648static enum print_stop_action
12649internal_bkpt_print_it (bpstat bs)
12650{
36dfb11c 12651 struct ui_out *uiout = current_uiout;
06edf0c0 12652 struct breakpoint *b;
06edf0c0 12653
06edf0c0
PA
12654 b = bs->breakpoint_at;
12655
06edf0c0
PA
12656 switch (b->type)
12657 {
348d480f
PA
12658 case bp_shlib_event:
12659 /* Did we stop because the user set the stop_on_solib_events
12660 variable? (If so, we report this as a generic, "Stopped due
12661 to shlib event" message.) */
edcc5120 12662 print_solib_event (0);
348d480f
PA
12663 break;
12664
12665 case bp_thread_event:
12666 /* Not sure how we will get here.
12667 GDB should not stop for these breakpoints. */
12668 printf_filtered (_("Thread Event Breakpoint: gdb should not stop!\n"));
348d480f
PA
12669 break;
12670
12671 case bp_overlay_event:
12672 /* By analogy with the thread event, GDB should not stop for these. */
12673 printf_filtered (_("Overlay Event Breakpoint: gdb should not stop!\n"));
348d480f
PA
12674 break;
12675
12676 case bp_longjmp_master:
12677 /* These should never be enabled. */
12678 printf_filtered (_("Longjmp Master Breakpoint: gdb should not stop!\n"));
348d480f
PA
12679 break;
12680
12681 case bp_std_terminate_master:
12682 /* These should never be enabled. */
12683 printf_filtered (_("std::terminate Master Breakpoint: "
12684 "gdb should not stop!\n"));
348d480f
PA
12685 break;
12686
12687 case bp_exception_master:
12688 /* These should never be enabled. */
12689 printf_filtered (_("Exception Master Breakpoint: "
12690 "gdb should not stop!\n"));
06edf0c0
PA
12691 break;
12692 }
12693
001c8c33 12694 return PRINT_NOTHING;
06edf0c0
PA
12695}
12696
12697static void
12698internal_bkpt_print_mention (struct breakpoint *b)
12699{
12700 /* Nothing to mention. These breakpoints are internal. */
12701}
12702
06edf0c0
PA
12703/* Virtual table for momentary breakpoints */
12704
12705static void
12706momentary_bkpt_re_set (struct breakpoint *b)
12707{
12708 /* Keep temporary breakpoints, which can be encountered when we step
12709 over a dlopen call and SOLIB_ADD is resetting the breakpoints.
12710 Otherwise these should have been blown away via the cleanup chain
12711 or by breakpoint_init_inferior when we rerun the executable. */
12712}
12713
12714static void
12715momentary_bkpt_check_status (bpstat bs)
12716{
12717 /* Nothing. The point of these breakpoints is causing a stop. */
12718}
12719
12720static enum print_stop_action
12721momentary_bkpt_print_it (bpstat bs)
12722{
79a45e25
PA
12723 struct ui_out *uiout = current_uiout;
12724
001c8c33 12725 if (ui_out_is_mi_like_p (uiout))
06edf0c0 12726 {
001c8c33 12727 struct breakpoint *b = bs->breakpoint_at;
348d480f 12728
001c8c33
PA
12729 switch (b->type)
12730 {
12731 case bp_finish:
12732 ui_out_field_string
12733 (uiout, "reason",
12734 async_reason_lookup (EXEC_ASYNC_FUNCTION_FINISHED));
12735 break;
348d480f 12736
001c8c33
PA
12737 case bp_until:
12738 ui_out_field_string
12739 (uiout, "reason",
12740 async_reason_lookup (EXEC_ASYNC_LOCATION_REACHED));
12741 break;
12742 }
348d480f
PA
12743 }
12744
001c8c33 12745 return PRINT_UNKNOWN;
348d480f
PA
12746}
12747
06edf0c0
PA
12748static void
12749momentary_bkpt_print_mention (struct breakpoint *b)
348d480f 12750{
06edf0c0 12751 /* Nothing to mention. These breakpoints are internal. */
348d480f
PA
12752}
12753
55aa24fb
SDJ
12754/* Specific methods for probe breakpoints. */
12755
12756static int
12757bkpt_probe_insert_location (struct bp_location *bl)
12758{
12759 int v = bkpt_insert_location (bl);
12760
12761 if (v == 0)
12762 {
12763 /* The insertion was successful, now let's set the probe's semaphore
12764 if needed. */
12765 bl->probe->pops->set_semaphore (bl->probe, bl->gdbarch);
12766 }
12767
12768 return v;
12769}
12770
12771static int
12772bkpt_probe_remove_location (struct bp_location *bl)
12773{
12774 /* Let's clear the semaphore before removing the location. */
12775 bl->probe->pops->clear_semaphore (bl->probe, bl->gdbarch);
12776
12777 return bkpt_remove_location (bl);
12778}
12779
12780static void
12781bkpt_probe_create_sals_from_address (char **arg,
12782 struct linespec_result *canonical,
12783 enum bptype type_wanted,
12784 char *addr_start, char **copy_arg)
12785{
12786 struct linespec_sals lsal;
12787
12788 lsal.sals = parse_probes (arg, canonical);
12789
12790 *copy_arg = xstrdup (canonical->addr_string);
12791 lsal.canonical = xstrdup (*copy_arg);
12792
12793 VEC_safe_push (linespec_sals, canonical->sals, &lsal);
12794}
12795
12796static void
12797bkpt_probe_decode_linespec (struct breakpoint *b, char **s,
12798 struct symtabs_and_lines *sals)
12799{
12800 *sals = parse_probes (s, NULL);
12801 if (!sals->sals)
12802 error (_("probe not found"));
12803}
12804
348d480f 12805/* The breakpoint_ops structure to be used in tracepoints. */
876fa593 12806
348d480f
PA
12807static void
12808tracepoint_re_set (struct breakpoint *b)
12809{
12810 breakpoint_re_set_default (b);
12811}
876fa593 12812
348d480f
PA
12813static int
12814tracepoint_breakpoint_hit (const struct bp_location *bl,
09ac7c10
TT
12815 struct address_space *aspace, CORE_ADDR bp_addr,
12816 const struct target_waitstatus *ws)
348d480f
PA
12817{
12818 /* By definition, the inferior does not report stops at
12819 tracepoints. */
12820 return 0;
74960c60
VP
12821}
12822
12823static void
348d480f
PA
12824tracepoint_print_one_detail (const struct breakpoint *self,
12825 struct ui_out *uiout)
74960c60 12826{
d9b3f62e
PA
12827 struct tracepoint *tp = (struct tracepoint *) self;
12828 if (tp->static_trace_marker_id)
348d480f
PA
12829 {
12830 gdb_assert (self->type == bp_static_tracepoint);
cc59ec59 12831
348d480f
PA
12832 ui_out_text (uiout, "\tmarker id is ");
12833 ui_out_field_string (uiout, "static-tracepoint-marker-string-id",
d9b3f62e 12834 tp->static_trace_marker_id);
348d480f
PA
12835 ui_out_text (uiout, "\n");
12836 }
0d381245
VP
12837}
12838
a474d7c2 12839static void
348d480f 12840tracepoint_print_mention (struct breakpoint *b)
a474d7c2 12841{
79a45e25 12842 if (ui_out_is_mi_like_p (current_uiout))
348d480f 12843 return;
cc59ec59 12844
348d480f
PA
12845 switch (b->type)
12846 {
12847 case bp_tracepoint:
12848 printf_filtered (_("Tracepoint"));
12849 printf_filtered (_(" %d"), b->number);
12850 break;
12851 case bp_fast_tracepoint:
12852 printf_filtered (_("Fast tracepoint"));
12853 printf_filtered (_(" %d"), b->number);
12854 break;
12855 case bp_static_tracepoint:
12856 printf_filtered (_("Static tracepoint"));
12857 printf_filtered (_(" %d"), b->number);
12858 break;
12859 default:
12860 internal_error (__FILE__, __LINE__,
12861 _("unhandled tracepoint type %d"), (int) b->type);
12862 }
12863
12864 say_where (b);
a474d7c2
PA
12865}
12866
348d480f 12867static void
d9b3f62e 12868tracepoint_print_recreate (struct breakpoint *self, struct ui_file *fp)
a474d7c2 12869{
d9b3f62e
PA
12870 struct tracepoint *tp = (struct tracepoint *) self;
12871
12872 if (self->type == bp_fast_tracepoint)
348d480f 12873 fprintf_unfiltered (fp, "ftrace");
d9b3f62e 12874 if (self->type == bp_static_tracepoint)
348d480f 12875 fprintf_unfiltered (fp, "strace");
d9b3f62e 12876 else if (self->type == bp_tracepoint)
348d480f
PA
12877 fprintf_unfiltered (fp, "trace");
12878 else
12879 internal_error (__FILE__, __LINE__,
d9b3f62e 12880 _("unhandled tracepoint type %d"), (int) self->type);
cc59ec59 12881
d9b3f62e
PA
12882 fprintf_unfiltered (fp, " %s", self->addr_string);
12883 print_recreate_thread (self, fp);
12884
12885 if (tp->pass_count)
12886 fprintf_unfiltered (fp, " passcount %d\n", tp->pass_count);
a474d7c2
PA
12887}
12888
983af33b
SDJ
12889static void
12890tracepoint_create_sals_from_address (char **arg,
12891 struct linespec_result *canonical,
12892 enum bptype type_wanted,
12893 char *addr_start, char **copy_arg)
12894{
12895 create_sals_from_address_default (arg, canonical, type_wanted,
12896 addr_start, copy_arg);
12897}
12898
12899static void
12900tracepoint_create_breakpoints_sal (struct gdbarch *gdbarch,
12901 struct linespec_result *canonical,
12902 struct linespec_sals *lsal,
12903 char *cond_string,
e7e0cddf 12904 char *extra_string,
983af33b
SDJ
12905 enum bptype type_wanted,
12906 enum bpdisp disposition,
12907 int thread,
12908 int task, int ignore_count,
12909 const struct breakpoint_ops *ops,
12910 int from_tty, int enabled,
44f238bb 12911 int internal, unsigned flags)
983af33b
SDJ
12912{
12913 create_breakpoints_sal_default (gdbarch, canonical, lsal,
e7e0cddf
SS
12914 cond_string, extra_string,
12915 type_wanted,
983af33b
SDJ
12916 disposition, thread, task,
12917 ignore_count, ops, from_tty,
44f238bb 12918 enabled, internal, flags);
983af33b
SDJ
12919}
12920
12921static void
12922tracepoint_decode_linespec (struct breakpoint *b, char **s,
12923 struct symtabs_and_lines *sals)
12924{
12925 decode_linespec_default (b, s, sals);
12926}
12927
2060206e 12928struct breakpoint_ops tracepoint_breakpoint_ops;
348d480f 12929
55aa24fb
SDJ
12930/* The breakpoint_ops structure to be use on tracepoints placed in a
12931 static probe. */
12932
12933static void
12934tracepoint_probe_create_sals_from_address (char **arg,
12935 struct linespec_result *canonical,
12936 enum bptype type_wanted,
12937 char *addr_start, char **copy_arg)
12938{
12939 /* We use the same method for breakpoint on probes. */
12940 bkpt_probe_create_sals_from_address (arg, canonical, type_wanted,
12941 addr_start, copy_arg);
12942}
12943
12944static void
12945tracepoint_probe_decode_linespec (struct breakpoint *b, char **s,
12946 struct symtabs_and_lines *sals)
12947{
12948 /* We use the same method for breakpoint on probes. */
12949 bkpt_probe_decode_linespec (b, s, sals);
12950}
12951
12952static struct breakpoint_ops tracepoint_probe_breakpoint_ops;
12953
983af33b
SDJ
12954/* The breakpoint_ops structure to be used on static tracepoints with
12955 markers (`-m'). */
12956
12957static void
12958strace_marker_create_sals_from_address (char **arg,
12959 struct linespec_result *canonical,
12960 enum bptype type_wanted,
12961 char *addr_start, char **copy_arg)
12962{
12963 struct linespec_sals lsal;
12964
12965 lsal.sals = decode_static_tracepoint_spec (arg);
12966
12967 *copy_arg = savestring (addr_start, *arg - addr_start);
12968
12969 canonical->addr_string = xstrdup (*copy_arg);
12970 lsal.canonical = xstrdup (*copy_arg);
12971 VEC_safe_push (linespec_sals, canonical->sals, &lsal);
12972}
12973
12974static void
12975strace_marker_create_breakpoints_sal (struct gdbarch *gdbarch,
12976 struct linespec_result *canonical,
12977 struct linespec_sals *lsal,
12978 char *cond_string,
e7e0cddf 12979 char *extra_string,
983af33b
SDJ
12980 enum bptype type_wanted,
12981 enum bpdisp disposition,
12982 int thread,
12983 int task, int ignore_count,
12984 const struct breakpoint_ops *ops,
12985 int from_tty, int enabled,
44f238bb 12986 int internal, unsigned flags)
983af33b
SDJ
12987{
12988 int i;
12989
12990 /* If the user is creating a static tracepoint by marker id
12991 (strace -m MARKER_ID), then store the sals index, so that
12992 breakpoint_re_set can try to match up which of the newly
12993 found markers corresponds to this one, and, don't try to
12994 expand multiple locations for each sal, given than SALS
12995 already should contain all sals for MARKER_ID. */
12996
12997 for (i = 0; i < lsal->sals.nelts; ++i)
12998 {
12999 struct symtabs_and_lines expanded;
13000 struct tracepoint *tp;
13001 struct cleanup *old_chain;
13002 char *addr_string;
13003
13004 expanded.nelts = 1;
13005 expanded.sals = &lsal->sals.sals[i];
13006
13007 addr_string = xstrdup (canonical->addr_string);
13008 old_chain = make_cleanup (xfree, addr_string);
13009
13010 tp = XCNEW (struct tracepoint);
13011 init_breakpoint_sal (&tp->base, gdbarch, expanded,
13012 addr_string, NULL,
e7e0cddf
SS
13013 cond_string, extra_string,
13014 type_wanted, disposition,
983af33b 13015 thread, task, ignore_count, ops,
44f238bb 13016 from_tty, enabled, internal, flags,
983af33b
SDJ
13017 canonical->special_display);
13018 /* Given that its possible to have multiple markers with
13019 the same string id, if the user is creating a static
13020 tracepoint by marker id ("strace -m MARKER_ID"), then
13021 store the sals index, so that breakpoint_re_set can
13022 try to match up which of the newly found markers
13023 corresponds to this one */
13024 tp->static_trace_marker_id_idx = i;
13025
13026 install_breakpoint (internal, &tp->base, 0);
13027
13028 discard_cleanups (old_chain);
13029 }
13030}
13031
13032static void
13033strace_marker_decode_linespec (struct breakpoint *b, char **s,
13034 struct symtabs_and_lines *sals)
13035{
13036 struct tracepoint *tp = (struct tracepoint *) b;
13037
13038 *sals = decode_static_tracepoint_spec (s);
13039 if (sals->nelts > tp->static_trace_marker_id_idx)
13040 {
13041 sals->sals[0] = sals->sals[tp->static_trace_marker_id_idx];
13042 sals->nelts = 1;
13043 }
13044 else
13045 error (_("marker %s not found"), tp->static_trace_marker_id);
13046}
13047
13048static struct breakpoint_ops strace_marker_breakpoint_ops;
13049
13050static int
13051strace_marker_p (struct breakpoint *b)
13052{
13053 return b->ops == &strace_marker_breakpoint_ops;
13054}
13055
53a5351d 13056/* Delete a breakpoint and clean up all traces of it in the data
f431efe5 13057 structures. */
c906108c
SS
13058
13059void
fba45db2 13060delete_breakpoint (struct breakpoint *bpt)
c906108c 13061{
52f0bd74 13062 struct breakpoint *b;
c906108c 13063
8a3fe4f8 13064 gdb_assert (bpt != NULL);
c906108c 13065
4a64f543
MS
13066 /* Has this bp already been deleted? This can happen because
13067 multiple lists can hold pointers to bp's. bpstat lists are
13068 especial culprits.
13069
13070 One example of this happening is a watchpoint's scope bp. When
13071 the scope bp triggers, we notice that the watchpoint is out of
13072 scope, and delete it. We also delete its scope bp. But the
13073 scope bp is marked "auto-deleting", and is already on a bpstat.
13074 That bpstat is then checked for auto-deleting bp's, which are
13075 deleted.
13076
13077 A real solution to this problem might involve reference counts in
13078 bp's, and/or giving them pointers back to their referencing
13079 bpstat's, and teaching delete_breakpoint to only free a bp's
13080 storage when no more references were extent. A cheaper bandaid
13081 was chosen. */
c906108c
SS
13082 if (bpt->type == bp_none)
13083 return;
13084
4a64f543
MS
13085 /* At least avoid this stale reference until the reference counting
13086 of breakpoints gets resolved. */
d0fb5eae 13087 if (bpt->related_breakpoint != bpt)
e5a0a904 13088 {
d0fb5eae 13089 struct breakpoint *related;
3a5c3e22 13090 struct watchpoint *w;
d0fb5eae
JK
13091
13092 if (bpt->type == bp_watchpoint_scope)
3a5c3e22 13093 w = (struct watchpoint *) bpt->related_breakpoint;
d0fb5eae 13094 else if (bpt->related_breakpoint->type == bp_watchpoint_scope)
3a5c3e22
PA
13095 w = (struct watchpoint *) bpt;
13096 else
13097 w = NULL;
13098 if (w != NULL)
13099 watchpoint_del_at_next_stop (w);
d0fb5eae
JK
13100
13101 /* Unlink bpt from the bpt->related_breakpoint ring. */
13102 for (related = bpt; related->related_breakpoint != bpt;
13103 related = related->related_breakpoint);
13104 related->related_breakpoint = bpt->related_breakpoint;
13105 bpt->related_breakpoint = bpt;
e5a0a904
JK
13106 }
13107
a9634178
TJB
13108 /* watch_command_1 creates a watchpoint but only sets its number if
13109 update_watchpoint succeeds in creating its bp_locations. If there's
13110 a problem in that process, we'll be asked to delete the half-created
13111 watchpoint. In that case, don't announce the deletion. */
13112 if (bpt->number)
13113 observer_notify_breakpoint_deleted (bpt);
c906108c 13114
c906108c
SS
13115 if (breakpoint_chain == bpt)
13116 breakpoint_chain = bpt->next;
13117
c906108c
SS
13118 ALL_BREAKPOINTS (b)
13119 if (b->next == bpt)
c5aa993b
JM
13120 {
13121 b->next = bpt->next;
13122 break;
13123 }
c906108c 13124
f431efe5
PA
13125 /* Be sure no bpstat's are pointing at the breakpoint after it's
13126 been freed. */
13127 /* FIXME, how can we find all bpstat's? We just check stop_bpstat
e5dd4106 13128 in all threads for now. Note that we cannot just remove bpstats
f431efe5
PA
13129 pointing at bpt from the stop_bpstat list entirely, as breakpoint
13130 commands are associated with the bpstat; if we remove it here,
13131 then the later call to bpstat_do_actions (&stop_bpstat); in
13132 event-top.c won't do anything, and temporary breakpoints with
13133 commands won't work. */
13134
13135 iterate_over_threads (bpstat_remove_breakpoint_callback, bpt);
13136
4a64f543
MS
13137 /* Now that breakpoint is removed from breakpoint list, update the
13138 global location list. This will remove locations that used to
13139 belong to this breakpoint. Do this before freeing the breakpoint
13140 itself, since remove_breakpoint looks at location's owner. It
13141 might be better design to have location completely
13142 self-contained, but it's not the case now. */
b60e7edf 13143 update_global_location_list (0);
74960c60 13144
348d480f 13145 bpt->ops->dtor (bpt);
4a64f543
MS
13146 /* On the chance that someone will soon try again to delete this
13147 same bp, we mark it as deleted before freeing its storage. */
c906108c 13148 bpt->type = bp_none;
b8c9b27d 13149 xfree (bpt);
c906108c
SS
13150}
13151
4d6140d9
AC
13152static void
13153do_delete_breakpoint_cleanup (void *b)
13154{
13155 delete_breakpoint (b);
13156}
13157
13158struct cleanup *
13159make_cleanup_delete_breakpoint (struct breakpoint *b)
13160{
13161 return make_cleanup (do_delete_breakpoint_cleanup, b);
13162}
13163
51be5b68
PA
13164/* Iterator function to call a user-provided callback function once
13165 for each of B and its related breakpoints. */
13166
13167static void
13168iterate_over_related_breakpoints (struct breakpoint *b,
13169 void (*function) (struct breakpoint *,
13170 void *),
13171 void *data)
13172{
13173 struct breakpoint *related;
13174
13175 related = b;
13176 do
13177 {
13178 struct breakpoint *next;
13179
13180 /* FUNCTION may delete RELATED. */
13181 next = related->related_breakpoint;
13182
13183 if (next == related)
13184 {
13185 /* RELATED is the last ring entry. */
13186 function (related, data);
13187
13188 /* FUNCTION may have deleted it, so we'd never reach back to
13189 B. There's nothing left to do anyway, so just break
13190 out. */
13191 break;
13192 }
13193 else
13194 function (related, data);
13195
13196 related = next;
13197 }
13198 while (related != b);
13199}
95a42b64
TT
13200
13201static void
13202do_delete_breakpoint (struct breakpoint *b, void *ignore)
13203{
13204 delete_breakpoint (b);
13205}
13206
51be5b68
PA
13207/* A callback for map_breakpoint_numbers that calls
13208 delete_breakpoint. */
13209
13210static void
13211do_map_delete_breakpoint (struct breakpoint *b, void *ignore)
13212{
13213 iterate_over_related_breakpoints (b, do_delete_breakpoint, NULL);
13214}
13215
c906108c 13216void
fba45db2 13217delete_command (char *arg, int from_tty)
c906108c 13218{
35df4500 13219 struct breakpoint *b, *b_tmp;
c906108c 13220
ea9365bb
TT
13221 dont_repeat ();
13222
c906108c
SS
13223 if (arg == 0)
13224 {
13225 int breaks_to_delete = 0;
13226
46c6471b
PA
13227 /* Delete all breakpoints if no argument. Do not delete
13228 internal breakpoints, these have to be deleted with an
13229 explicit breakpoint number argument. */
c5aa993b 13230 ALL_BREAKPOINTS (b)
46c6471b 13231 if (user_breakpoint_p (b))
973d738b
DJ
13232 {
13233 breaks_to_delete = 1;
13234 break;
13235 }
c906108c
SS
13236
13237 /* Ask user only if there are some breakpoints to delete. */
13238 if (!from_tty
e2e0b3e5 13239 || (breaks_to_delete && query (_("Delete all breakpoints? "))))
c906108c 13240 {
35df4500 13241 ALL_BREAKPOINTS_SAFE (b, b_tmp)
46c6471b 13242 if (user_breakpoint_p (b))
c5aa993b 13243 delete_breakpoint (b);
c906108c
SS
13244 }
13245 }
13246 else
51be5b68 13247 map_breakpoint_numbers (arg, do_map_delete_breakpoint, NULL);
c906108c
SS
13248}
13249
0d381245
VP
13250static int
13251all_locations_are_pending (struct bp_location *loc)
fe3f5fa8 13252{
0d381245 13253 for (; loc; loc = loc->next)
8645ff69
UW
13254 if (!loc->shlib_disabled
13255 && !loc->pspace->executing_startup)
0d381245
VP
13256 return 0;
13257 return 1;
fe3f5fa8
VP
13258}
13259
776592bf
DE
13260/* Subroutine of update_breakpoint_locations to simplify it.
13261 Return non-zero if multiple fns in list LOC have the same name.
13262 Null names are ignored. */
13263
13264static int
13265ambiguous_names_p (struct bp_location *loc)
13266{
13267 struct bp_location *l;
13268 htab_t htab = htab_create_alloc (13, htab_hash_string,
cc59ec59
MS
13269 (int (*) (const void *,
13270 const void *)) streq,
776592bf
DE
13271 NULL, xcalloc, xfree);
13272
13273 for (l = loc; l != NULL; l = l->next)
13274 {
13275 const char **slot;
13276 const char *name = l->function_name;
13277
13278 /* Allow for some names to be NULL, ignore them. */
13279 if (name == NULL)
13280 continue;
13281
13282 slot = (const char **) htab_find_slot (htab, (const void *) name,
13283 INSERT);
4a64f543
MS
13284 /* NOTE: We can assume slot != NULL here because xcalloc never
13285 returns NULL. */
776592bf
DE
13286 if (*slot != NULL)
13287 {
13288 htab_delete (htab);
13289 return 1;
13290 }
13291 *slot = name;
13292 }
13293
13294 htab_delete (htab);
13295 return 0;
13296}
13297
0fb4aa4b
PA
13298/* When symbols change, it probably means the sources changed as well,
13299 and it might mean the static tracepoint markers are no longer at
13300 the same address or line numbers they used to be at last we
13301 checked. Losing your static tracepoints whenever you rebuild is
13302 undesirable. This function tries to resync/rematch gdb static
13303 tracepoints with the markers on the target, for static tracepoints
13304 that have not been set by marker id. Static tracepoint that have
13305 been set by marker id are reset by marker id in breakpoint_re_set.
13306 The heuristic is:
13307
13308 1) For a tracepoint set at a specific address, look for a marker at
13309 the old PC. If one is found there, assume to be the same marker.
13310 If the name / string id of the marker found is different from the
13311 previous known name, assume that means the user renamed the marker
13312 in the sources, and output a warning.
13313
13314 2) For a tracepoint set at a given line number, look for a marker
13315 at the new address of the old line number. If one is found there,
13316 assume to be the same marker. If the name / string id of the
13317 marker found is different from the previous known name, assume that
13318 means the user renamed the marker in the sources, and output a
13319 warning.
13320
13321 3) If a marker is no longer found at the same address or line, it
13322 may mean the marker no longer exists. But it may also just mean
13323 the code changed a bit. Maybe the user added a few lines of code
13324 that made the marker move up or down (in line number terms). Ask
13325 the target for info about the marker with the string id as we knew
13326 it. If found, update line number and address in the matching
13327 static tracepoint. This will get confused if there's more than one
13328 marker with the same ID (possible in UST, although unadvised
13329 precisely because it confuses tools). */
13330
13331static struct symtab_and_line
13332update_static_tracepoint (struct breakpoint *b, struct symtab_and_line sal)
13333{
d9b3f62e 13334 struct tracepoint *tp = (struct tracepoint *) b;
0fb4aa4b
PA
13335 struct static_tracepoint_marker marker;
13336 CORE_ADDR pc;
0fb4aa4b
PA
13337
13338 pc = sal.pc;
13339 if (sal.line)
13340 find_line_pc (sal.symtab, sal.line, &pc);
13341
13342 if (target_static_tracepoint_marker_at (pc, &marker))
13343 {
d9b3f62e 13344 if (strcmp (tp->static_trace_marker_id, marker.str_id) != 0)
0fb4aa4b
PA
13345 warning (_("static tracepoint %d changed probed marker from %s to %s"),
13346 b->number,
d9b3f62e 13347 tp->static_trace_marker_id, marker.str_id);
0fb4aa4b 13348
d9b3f62e
PA
13349 xfree (tp->static_trace_marker_id);
13350 tp->static_trace_marker_id = xstrdup (marker.str_id);
0fb4aa4b
PA
13351 release_static_tracepoint_marker (&marker);
13352
13353 return sal;
13354 }
13355
13356 /* Old marker wasn't found on target at lineno. Try looking it up
13357 by string ID. */
13358 if (!sal.explicit_pc
13359 && sal.line != 0
13360 && sal.symtab != NULL
d9b3f62e 13361 && tp->static_trace_marker_id != NULL)
0fb4aa4b
PA
13362 {
13363 VEC(static_tracepoint_marker_p) *markers;
13364
13365 markers
d9b3f62e 13366 = target_static_tracepoint_markers_by_strid (tp->static_trace_marker_id);
0fb4aa4b
PA
13367
13368 if (!VEC_empty(static_tracepoint_marker_p, markers))
13369 {
80e1d417 13370 struct symtab_and_line sal2;
0fb4aa4b 13371 struct symbol *sym;
80e1d417 13372 struct static_tracepoint_marker *tpmarker;
79a45e25 13373 struct ui_out *uiout = current_uiout;
0fb4aa4b 13374
80e1d417 13375 tpmarker = VEC_index (static_tracepoint_marker_p, markers, 0);
0fb4aa4b 13376
d9b3f62e 13377 xfree (tp->static_trace_marker_id);
80e1d417 13378 tp->static_trace_marker_id = xstrdup (tpmarker->str_id);
0fb4aa4b
PA
13379
13380 warning (_("marker for static tracepoint %d (%s) not "
13381 "found at previous line number"),
d9b3f62e 13382 b->number, tp->static_trace_marker_id);
0fb4aa4b 13383
80e1d417 13384 init_sal (&sal2);
0fb4aa4b 13385
80e1d417 13386 sal2.pc = tpmarker->address;
0fb4aa4b 13387
80e1d417
AS
13388 sal2 = find_pc_line (tpmarker->address, 0);
13389 sym = find_pc_sect_function (tpmarker->address, NULL);
0fb4aa4b
PA
13390 ui_out_text (uiout, "Now in ");
13391 if (sym)
13392 {
13393 ui_out_field_string (uiout, "func",
13394 SYMBOL_PRINT_NAME (sym));
13395 ui_out_text (uiout, " at ");
13396 }
80e1d417 13397 ui_out_field_string (uiout, "file", sal2.symtab->filename);
0fb4aa4b
PA
13398 ui_out_text (uiout, ":");
13399
13400 if (ui_out_is_mi_like_p (uiout))
13401 {
80e1d417 13402 char *fullname = symtab_to_fullname (sal2.symtab);
0fb4aa4b
PA
13403
13404 if (fullname)
13405 ui_out_field_string (uiout, "fullname", fullname);
13406 }
13407
80e1d417 13408 ui_out_field_int (uiout, "line", sal2.line);
0fb4aa4b
PA
13409 ui_out_text (uiout, "\n");
13410
80e1d417 13411 b->loc->line_number = sal2.line;
0fb4aa4b 13412
f8eba3c6 13413 xfree (b->loc->source_file);
0fb4aa4b 13414 if (sym)
80e1d417 13415 b->loc->source_file = xstrdup (sal2.symtab->filename);
0fb4aa4b 13416 else
f8eba3c6 13417 b->loc->source_file = NULL;
0fb4aa4b
PA
13418
13419 xfree (b->addr_string);
13420 b->addr_string = xstrprintf ("%s:%d",
80e1d417 13421 sal2.symtab->filename,
f8eba3c6 13422 b->loc->line_number);
0fb4aa4b
PA
13423
13424 /* Might be nice to check if function changed, and warn if
13425 so. */
13426
80e1d417 13427 release_static_tracepoint_marker (tpmarker);
0fb4aa4b
PA
13428 }
13429 }
13430 return sal;
13431}
13432
8d3788bd
VP
13433/* Returns 1 iff locations A and B are sufficiently same that
13434 we don't need to report breakpoint as changed. */
13435
13436static int
13437locations_are_equal (struct bp_location *a, struct bp_location *b)
13438{
13439 while (a && b)
13440 {
13441 if (a->address != b->address)
13442 return 0;
13443
13444 if (a->shlib_disabled != b->shlib_disabled)
13445 return 0;
13446
13447 if (a->enabled != b->enabled)
13448 return 0;
13449
13450 a = a->next;
13451 b = b->next;
13452 }
13453
13454 if ((a == NULL) != (b == NULL))
13455 return 0;
13456
13457 return 1;
13458}
13459
f1310107
TJB
13460/* Create new breakpoint locations for B (a hardware or software breakpoint)
13461 based on SALS and SALS_END. If SALS_END.NELTS is not zero, then B is
13462 a ranged breakpoint. */
13463
0e30163f 13464void
0d381245 13465update_breakpoint_locations (struct breakpoint *b,
f1310107
TJB
13466 struct symtabs_and_lines sals,
13467 struct symtabs_and_lines sals_end)
fe3f5fa8
VP
13468{
13469 int i;
0d381245
VP
13470 struct bp_location *existing_locations = b->loc;
13471
f8eba3c6
TT
13472 if (sals_end.nelts != 0 && (sals.nelts != 1 || sals_end.nelts != 1))
13473 {
13474 /* Ranged breakpoints have only one start location and one end
13475 location. */
13476 b->enable_state = bp_disabled;
13477 update_global_location_list (1);
13478 printf_unfiltered (_("Could not reset ranged breakpoint %d: "
13479 "multiple locations found\n"),
13480 b->number);
13481 return;
13482 }
f1310107 13483
4a64f543
MS
13484 /* If there's no new locations, and all existing locations are
13485 pending, don't do anything. This optimizes the common case where
13486 all locations are in the same shared library, that was unloaded.
13487 We'd like to retain the location, so that when the library is
13488 loaded again, we don't loose the enabled/disabled status of the
13489 individual locations. */
0d381245 13490 if (all_locations_are_pending (existing_locations) && sals.nelts == 0)
fe3f5fa8
VP
13491 return;
13492
fe3f5fa8
VP
13493 b->loc = NULL;
13494
0d381245 13495 for (i = 0; i < sals.nelts; ++i)
fe3f5fa8 13496 {
f8eba3c6
TT
13497 struct bp_location *new_loc;
13498
13499 switch_to_program_space_and_thread (sals.sals[i].pspace);
13500
13501 new_loc = add_location_to_breakpoint (b, &(sals.sals[i]));
fe3f5fa8 13502
0d381245
VP
13503 /* Reparse conditions, they might contain references to the
13504 old symtab. */
13505 if (b->cond_string != NULL)
13506 {
f1310107 13507 char *s;
bfd189b1 13508 volatile struct gdb_exception e;
fe3f5fa8 13509
0d381245
VP
13510 s = b->cond_string;
13511 TRY_CATCH (e, RETURN_MASK_ERROR)
13512 {
13513 new_loc->cond = parse_exp_1 (&s, block_for_pc (sals.sals[i].pc),
13514 0);
13515 }
13516 if (e.reason < 0)
13517 {
3e43a32a
MS
13518 warning (_("failed to reevaluate condition "
13519 "for breakpoint %d: %s"),
0d381245
VP
13520 b->number, e.message);
13521 new_loc->enabled = 0;
13522 }
13523 }
fe3f5fa8 13524
f1310107
TJB
13525 if (sals_end.nelts)
13526 {
13527 CORE_ADDR end = find_breakpoint_range_end (sals_end.sals[0]);
13528
13529 new_loc->length = end - sals.sals[0].pc + 1;
13530 }
0d381245 13531 }
fe3f5fa8 13532
514f746b
AR
13533 /* Update locations of permanent breakpoints. */
13534 if (b->enable_state == bp_permanent)
13535 make_breakpoint_permanent (b);
13536
4a64f543
MS
13537 /* If possible, carry over 'disable' status from existing
13538 breakpoints. */
0d381245
VP
13539 {
13540 struct bp_location *e = existing_locations;
776592bf
DE
13541 /* If there are multiple breakpoints with the same function name,
13542 e.g. for inline functions, comparing function names won't work.
13543 Instead compare pc addresses; this is just a heuristic as things
13544 may have moved, but in practice it gives the correct answer
13545 often enough until a better solution is found. */
13546 int have_ambiguous_names = ambiguous_names_p (b->loc);
13547
0d381245
VP
13548 for (; e; e = e->next)
13549 {
13550 if (!e->enabled && e->function_name)
13551 {
13552 struct bp_location *l = b->loc;
776592bf
DE
13553 if (have_ambiguous_names)
13554 {
13555 for (; l; l = l->next)
f1310107 13556 if (breakpoint_locations_match (e, l))
776592bf
DE
13557 {
13558 l->enabled = 0;
13559 break;
13560 }
13561 }
13562 else
13563 {
13564 for (; l; l = l->next)
13565 if (l->function_name
13566 && strcmp (e->function_name, l->function_name) == 0)
13567 {
13568 l->enabled = 0;
13569 break;
13570 }
13571 }
0d381245
VP
13572 }
13573 }
13574 }
fe3f5fa8 13575
8d3788bd
VP
13576 if (!locations_are_equal (existing_locations, b->loc))
13577 observer_notify_breakpoint_modified (b);
13578
b60e7edf 13579 update_global_location_list (1);
fe3f5fa8
VP
13580}
13581
ef23e705
TJB
13582/* Find the SaL locations corresponding to the given ADDR_STRING.
13583 On return, FOUND will be 1 if any SaL was found, zero otherwise. */
13584
13585static struct symtabs_and_lines
13586addr_string_to_sals (struct breakpoint *b, char *addr_string, int *found)
13587{
13588 char *s;
02d20e4a 13589 struct symtabs_and_lines sals = {0};
f8eba3c6 13590 volatile struct gdb_exception e;
ef23e705 13591
983af33b 13592 gdb_assert (b->ops != NULL);
ef23e705 13593 s = addr_string;
ef23e705
TJB
13594
13595 TRY_CATCH (e, RETURN_MASK_ERROR)
13596 {
983af33b 13597 b->ops->decode_linespec (b, &s, &sals);
ef23e705
TJB
13598 }
13599 if (e.reason < 0)
13600 {
13601 int not_found_and_ok = 0;
13602 /* For pending breakpoints, it's expected that parsing will
13603 fail until the right shared library is loaded. User has
13604 already told to create pending breakpoints and don't need
13605 extra messages. If breakpoint is in bp_shlib_disabled
13606 state, then user already saw the message about that
13607 breakpoint being disabled, and don't want to see more
13608 errors. */
58438ac1 13609 if (e.error == NOT_FOUND_ERROR
ef23e705
TJB
13610 && (b->condition_not_parsed
13611 || (b->loc && b->loc->shlib_disabled)
f8eba3c6 13612 || (b->loc && b->loc->pspace->executing_startup)
ef23e705
TJB
13613 || b->enable_state == bp_disabled))
13614 not_found_and_ok = 1;
13615
13616 if (!not_found_and_ok)
13617 {
13618 /* We surely don't want to warn about the same breakpoint
13619 10 times. One solution, implemented here, is disable
13620 the breakpoint on error. Another solution would be to
13621 have separate 'warning emitted' flag. Since this
13622 happens only when a binary has changed, I don't know
13623 which approach is better. */
13624 b->enable_state = bp_disabled;
13625 throw_exception (e);
13626 }
13627 }
13628
58438ac1 13629 if (e.reason == 0 || e.error != NOT_FOUND_ERROR)
ef23e705 13630 {
f8eba3c6 13631 int i;
ef23e705 13632
f8eba3c6
TT
13633 for (i = 0; i < sals.nelts; ++i)
13634 resolve_sal_pc (&sals.sals[i]);
ef23e705
TJB
13635 if (b->condition_not_parsed && s && s[0])
13636 {
13637 char *cond_string = 0;
13638 int thread = -1;
13639 int task = 0;
e7e0cddf 13640 char *extra_string = NULL;
ef23e705
TJB
13641
13642 find_condition_and_thread (s, sals.sals[0].pc,
e7e0cddf
SS
13643 &cond_string, &thread, &task,
13644 &extra_string);
ef23e705
TJB
13645 if (cond_string)
13646 b->cond_string = cond_string;
13647 b->thread = thread;
13648 b->task = task;
e7e0cddf
SS
13649 if (extra_string)
13650 b->extra_string = extra_string;
ef23e705
TJB
13651 b->condition_not_parsed = 0;
13652 }
13653
983af33b 13654 if (b->type == bp_static_tracepoint && !strace_marker_p (b))
ef23e705 13655 sals.sals[0] = update_static_tracepoint (b, sals.sals[0]);
ef23e705 13656
58438ac1
TT
13657 *found = 1;
13658 }
13659 else
13660 *found = 0;
ef23e705
TJB
13661
13662 return sals;
13663}
13664
348d480f
PA
13665/* The default re_set method, for typical hardware or software
13666 breakpoints. Reevaluate the breakpoint and recreate its
13667 locations. */
13668
13669static void
28010a5d 13670breakpoint_re_set_default (struct breakpoint *b)
ef23e705
TJB
13671{
13672 int found;
f1310107 13673 struct symtabs_and_lines sals, sals_end;
ef23e705 13674 struct symtabs_and_lines expanded = {0};
f1310107 13675 struct symtabs_and_lines expanded_end = {0};
ef23e705
TJB
13676
13677 sals = addr_string_to_sals (b, b->addr_string, &found);
13678 if (found)
13679 {
13680 make_cleanup (xfree, sals.sals);
f8eba3c6 13681 expanded = sals;
ef23e705
TJB
13682 }
13683
f1310107
TJB
13684 if (b->addr_string_range_end)
13685 {
13686 sals_end = addr_string_to_sals (b, b->addr_string_range_end, &found);
13687 if (found)
13688 {
13689 make_cleanup (xfree, sals_end.sals);
f8eba3c6 13690 expanded_end = sals_end;
f1310107
TJB
13691 }
13692 }
13693
13694 update_breakpoint_locations (b, expanded, expanded_end);
28010a5d
PA
13695}
13696
983af33b
SDJ
13697/* Default method for creating SALs from an address string. It basically
13698 calls parse_breakpoint_sals. Return 1 for success, zero for failure. */
13699
13700static void
13701create_sals_from_address_default (char **arg,
13702 struct linespec_result *canonical,
13703 enum bptype type_wanted,
13704 char *addr_start, char **copy_arg)
13705{
13706 parse_breakpoint_sals (arg, canonical);
13707}
13708
13709/* Call create_breakpoints_sal for the given arguments. This is the default
13710 function for the `create_breakpoints_sal' method of
13711 breakpoint_ops. */
13712
13713static void
13714create_breakpoints_sal_default (struct gdbarch *gdbarch,
13715 struct linespec_result *canonical,
13716 struct linespec_sals *lsal,
13717 char *cond_string,
e7e0cddf 13718 char *extra_string,
983af33b
SDJ
13719 enum bptype type_wanted,
13720 enum bpdisp disposition,
13721 int thread,
13722 int task, int ignore_count,
13723 const struct breakpoint_ops *ops,
13724 int from_tty, int enabled,
44f238bb 13725 int internal, unsigned flags)
983af33b
SDJ
13726{
13727 create_breakpoints_sal (gdbarch, canonical, cond_string,
e7e0cddf 13728 extra_string,
983af33b
SDJ
13729 type_wanted, disposition,
13730 thread, task, ignore_count, ops, from_tty,
44f238bb 13731 enabled, internal, flags);
983af33b
SDJ
13732}
13733
13734/* Decode the line represented by S by calling decode_line_full. This is the
13735 default function for the `decode_linespec' method of breakpoint_ops. */
13736
13737static void
13738decode_linespec_default (struct breakpoint *b, char **s,
13739 struct symtabs_and_lines *sals)
13740{
13741 struct linespec_result canonical;
13742
13743 init_linespec_result (&canonical);
13744 decode_line_full (s, DECODE_LINE_FUNFIRSTLINE,
13745 (struct symtab *) NULL, 0,
13746 &canonical, multiple_symbols_all,
13747 b->filter);
13748
13749 /* We should get 0 or 1 resulting SALs. */
13750 gdb_assert (VEC_length (linespec_sals, canonical.sals) < 2);
13751
13752 if (VEC_length (linespec_sals, canonical.sals) > 0)
13753 {
13754 struct linespec_sals *lsal;
13755
13756 lsal = VEC_index (linespec_sals, canonical.sals, 0);
13757 *sals = lsal->sals;
13758 /* Arrange it so the destructor does not free the
13759 contents. */
13760 lsal->sals.sals = NULL;
13761 }
13762
13763 destroy_linespec_result (&canonical);
13764}
13765
28010a5d
PA
13766/* Prepare the global context for a re-set of breakpoint B. */
13767
13768static struct cleanup *
13769prepare_re_set_context (struct breakpoint *b)
13770{
13771 struct cleanup *cleanups;
13772
13773 input_radix = b->input_radix;
13774 cleanups = save_current_space_and_thread ();
f8eba3c6
TT
13775 if (b->pspace != NULL)
13776 switch_to_program_space_and_thread (b->pspace);
28010a5d
PA
13777 set_language (b->language);
13778
13779 return cleanups;
ef23e705
TJB
13780}
13781
c906108c
SS
13782/* Reset a breakpoint given it's struct breakpoint * BINT.
13783 The value we return ends up being the return value from catch_errors.
13784 Unused in this case. */
13785
13786static int
4efb68b1 13787breakpoint_re_set_one (void *bint)
c906108c 13788{
4a64f543 13789 /* Get past catch_errs. */
53a5351d 13790 struct breakpoint *b = (struct breakpoint *) bint;
348d480f 13791 struct cleanup *cleanups;
c906108c 13792
348d480f
PA
13793 cleanups = prepare_re_set_context (b);
13794 b->ops->re_set (b);
13795 do_cleanups (cleanups);
c906108c
SS
13796 return 0;
13797}
13798
69de3c6a 13799/* Re-set all breakpoints after symbols have been re-loaded. */
c906108c 13800void
69de3c6a 13801breakpoint_re_set (void)
c906108c 13802{
35df4500 13803 struct breakpoint *b, *b_tmp;
c906108c
SS
13804 enum language save_language;
13805 int save_input_radix;
6c95b8df 13806 struct cleanup *old_chain;
c5aa993b 13807
c906108c
SS
13808 save_language = current_language->la_language;
13809 save_input_radix = input_radix;
6c95b8df
PA
13810 old_chain = save_current_program_space ();
13811
35df4500 13812 ALL_BREAKPOINTS_SAFE (b, b_tmp)
c5aa993b 13813 {
4a64f543 13814 /* Format possible error msg. */
fe3f5fa8 13815 char *message = xstrprintf ("Error in re-setting breakpoint %d: ",
9ebf4acf
AC
13816 b->number);
13817 struct cleanup *cleanups = make_cleanup (xfree, message);
c5aa993b 13818 catch_errors (breakpoint_re_set_one, b, message, RETURN_MASK_ALL);
9ebf4acf 13819 do_cleanups (cleanups);
c5aa993b 13820 }
c906108c
SS
13821 set_language (save_language);
13822 input_radix = save_input_radix;
e62c965a 13823
0756c555 13824 jit_breakpoint_re_set ();
4efc6507 13825
6c95b8df
PA
13826 do_cleanups (old_chain);
13827
af02033e
PP
13828 create_overlay_event_breakpoint ();
13829 create_longjmp_master_breakpoint ();
13830 create_std_terminate_master_breakpoint ();
186c406b 13831 create_exception_master_breakpoint ();
1bfeeb0f
JL
13832
13833 /* While we're at it, reset the skip list too. */
13834 skip_re_set ();
c906108c
SS
13835}
13836\f
c906108c
SS
13837/* Reset the thread number of this breakpoint:
13838
13839 - If the breakpoint is for all threads, leave it as-is.
4a64f543 13840 - Else, reset it to the current thread for inferior_ptid. */
c906108c 13841void
fba45db2 13842breakpoint_re_set_thread (struct breakpoint *b)
c906108c
SS
13843{
13844 if (b->thread != -1)
13845 {
39f77062
KB
13846 if (in_thread_list (inferior_ptid))
13847 b->thread = pid_to_thread_id (inferior_ptid);
6c95b8df
PA
13848
13849 /* We're being called after following a fork. The new fork is
13850 selected as current, and unless this was a vfork will have a
13851 different program space from the original thread. Reset that
13852 as well. */
13853 b->loc->pspace = current_program_space;
c906108c
SS
13854 }
13855}
13856
03ac34d5
MS
13857/* Set ignore-count of breakpoint number BPTNUM to COUNT.
13858 If from_tty is nonzero, it prints a message to that effect,
13859 which ends with a period (no newline). */
13860
c906108c 13861void
fba45db2 13862set_ignore_count (int bptnum, int count, int from_tty)
c906108c 13863{
52f0bd74 13864 struct breakpoint *b;
c906108c
SS
13865
13866 if (count < 0)
13867 count = 0;
13868
13869 ALL_BREAKPOINTS (b)
13870 if (b->number == bptnum)
c5aa993b 13871 {
d77f58be
SS
13872 if (is_tracepoint (b))
13873 {
13874 if (from_tty && count != 0)
13875 printf_filtered (_("Ignore count ignored for tracepoint %d."),
13876 bptnum);
13877 return;
13878 }
13879
c5aa993b 13880 b->ignore_count = count;
221ea385
KS
13881 if (from_tty)
13882 {
13883 if (count == 0)
3e43a32a
MS
13884 printf_filtered (_("Will stop next time "
13885 "breakpoint %d is reached."),
221ea385
KS
13886 bptnum);
13887 else if (count == 1)
a3f17187 13888 printf_filtered (_("Will ignore next crossing of breakpoint %d."),
221ea385
KS
13889 bptnum);
13890 else
3e43a32a
MS
13891 printf_filtered (_("Will ignore next %d "
13892 "crossings of breakpoint %d."),
221ea385
KS
13893 count, bptnum);
13894 }
c5aa993b 13895 breakpoints_changed ();
8d3788bd 13896 observer_notify_breakpoint_modified (b);
c5aa993b
JM
13897 return;
13898 }
c906108c 13899
8a3fe4f8 13900 error (_("No breakpoint number %d."), bptnum);
c906108c
SS
13901}
13902
c906108c
SS
13903/* Command to set ignore-count of breakpoint N to COUNT. */
13904
13905static void
fba45db2 13906ignore_command (char *args, int from_tty)
c906108c
SS
13907{
13908 char *p = args;
52f0bd74 13909 int num;
c906108c
SS
13910
13911 if (p == 0)
e2e0b3e5 13912 error_no_arg (_("a breakpoint number"));
c5aa993b 13913
c906108c 13914 num = get_number (&p);
5c44784c 13915 if (num == 0)
8a3fe4f8 13916 error (_("bad breakpoint number: '%s'"), args);
c906108c 13917 if (*p == 0)
8a3fe4f8 13918 error (_("Second argument (specified ignore-count) is missing."));
c906108c
SS
13919
13920 set_ignore_count (num,
13921 longest_to_int (value_as_long (parse_and_eval (p))),
13922 from_tty);
221ea385
KS
13923 if (from_tty)
13924 printf_filtered ("\n");
c906108c
SS
13925}
13926\f
13927/* Call FUNCTION on each of the breakpoints
13928 whose numbers are given in ARGS. */
13929
13930static void
95a42b64
TT
13931map_breakpoint_numbers (char *args, void (*function) (struct breakpoint *,
13932 void *),
13933 void *data)
c906108c 13934{
52f0bd74
AC
13935 int num;
13936 struct breakpoint *b, *tmp;
11cf8741 13937 int match;
197f0a60 13938 struct get_number_or_range_state state;
c906108c 13939
197f0a60 13940 if (args == 0)
e2e0b3e5 13941 error_no_arg (_("one or more breakpoint numbers"));
c906108c 13942
197f0a60
TT
13943 init_number_or_range (&state, args);
13944
13945 while (!state.finished)
c906108c 13946 {
197f0a60
TT
13947 char *p = state.string;
13948
11cf8741 13949 match = 0;
c5aa993b 13950
197f0a60 13951 num = get_number_or_range (&state);
5c44784c 13952 if (num == 0)
c5aa993b 13953 {
8a3fe4f8 13954 warning (_("bad breakpoint number at or near '%s'"), p);
5c44784c
JM
13955 }
13956 else
13957 {
13958 ALL_BREAKPOINTS_SAFE (b, tmp)
13959 if (b->number == num)
13960 {
11cf8741 13961 match = 1;
cdac0397 13962 function (b, data);
11cf8741 13963 break;
5c44784c 13964 }
11cf8741 13965 if (match == 0)
a3f17187 13966 printf_unfiltered (_("No breakpoint number %d.\n"), num);
c5aa993b 13967 }
c906108c
SS
13968 }
13969}
13970
0d381245
VP
13971static struct bp_location *
13972find_location_by_number (char *number)
13973{
13974 char *dot = strchr (number, '.');
13975 char *p1;
13976 int bp_num;
13977 int loc_num;
13978 struct breakpoint *b;
13979 struct bp_location *loc;
13980
13981 *dot = '\0';
13982
13983 p1 = number;
197f0a60 13984 bp_num = get_number (&p1);
0d381245
VP
13985 if (bp_num == 0)
13986 error (_("Bad breakpoint number '%s'"), number);
13987
13988 ALL_BREAKPOINTS (b)
13989 if (b->number == bp_num)
13990 {
13991 break;
13992 }
13993
13994 if (!b || b->number != bp_num)
13995 error (_("Bad breakpoint number '%s'"), number);
13996
13997 p1 = dot+1;
197f0a60 13998 loc_num = get_number (&p1);
0d381245
VP
13999 if (loc_num == 0)
14000 error (_("Bad breakpoint location number '%s'"), number);
14001
14002 --loc_num;
14003 loc = b->loc;
14004 for (;loc_num && loc; --loc_num, loc = loc->next)
14005 ;
14006 if (!loc)
14007 error (_("Bad breakpoint location number '%s'"), dot+1);
14008
14009 return loc;
14010}
14011
14012
1900040c
MS
14013/* Set ignore-count of breakpoint number BPTNUM to COUNT.
14014 If from_tty is nonzero, it prints a message to that effect,
14015 which ends with a period (no newline). */
14016
c906108c 14017void
fba45db2 14018disable_breakpoint (struct breakpoint *bpt)
c906108c
SS
14019{
14020 /* Never disable a watchpoint scope breakpoint; we want to
14021 hit them when we leave scope so we can delete both the
14022 watchpoint and its scope breakpoint at that time. */
14023 if (bpt->type == bp_watchpoint_scope)
14024 return;
14025
c2c6d25f 14026 /* You can't disable permanent breakpoints. */
b5de0fa7 14027 if (bpt->enable_state == bp_permanent)
c2c6d25f
JM
14028 return;
14029
b5de0fa7 14030 bpt->enable_state = bp_disabled;
c906108c 14031
b775012e
LM
14032 /* Mark breakpoint locations modified. */
14033 mark_breakpoint_modified (bpt);
14034
d248b706
KY
14035 if (target_supports_enable_disable_tracepoint ()
14036 && current_trace_status ()->running && is_tracepoint (bpt))
14037 {
14038 struct bp_location *location;
14039
14040 for (location = bpt->loc; location; location = location->next)
14041 target_disable_tracepoint (location);
14042 }
14043
b60e7edf 14044 update_global_location_list (0);
c906108c 14045
8d3788bd 14046 observer_notify_breakpoint_modified (bpt);
c906108c
SS
14047}
14048
51be5b68
PA
14049/* A callback for iterate_over_related_breakpoints. */
14050
14051static void
14052do_disable_breakpoint (struct breakpoint *b, void *ignore)
14053{
14054 disable_breakpoint (b);
14055}
14056
95a42b64
TT
14057/* A callback for map_breakpoint_numbers that calls
14058 disable_breakpoint. */
14059
14060static void
14061do_map_disable_breakpoint (struct breakpoint *b, void *ignore)
14062{
51be5b68 14063 iterate_over_related_breakpoints (b, do_disable_breakpoint, NULL);
95a42b64
TT
14064}
14065
c906108c 14066static void
fba45db2 14067disable_command (char *args, int from_tty)
c906108c 14068{
c906108c 14069 if (args == 0)
46c6471b
PA
14070 {
14071 struct breakpoint *bpt;
14072
14073 ALL_BREAKPOINTS (bpt)
14074 if (user_breakpoint_p (bpt))
14075 disable_breakpoint (bpt);
14076 }
0d381245
VP
14077 else if (strchr (args, '.'))
14078 {
14079 struct bp_location *loc = find_location_by_number (args);
14080 if (loc)
d248b706 14081 {
b775012e
LM
14082 if (loc->enabled)
14083 {
14084 loc->enabled = 0;
14085 mark_breakpoint_location_modified (loc);
14086 }
d248b706
KY
14087 if (target_supports_enable_disable_tracepoint ()
14088 && current_trace_status ()->running && loc->owner
14089 && is_tracepoint (loc->owner))
14090 target_disable_tracepoint (loc);
14091 }
b60e7edf 14092 update_global_location_list (0);
0d381245 14093 }
c906108c 14094 else
95a42b64 14095 map_breakpoint_numbers (args, do_map_disable_breakpoint, NULL);
c906108c
SS
14096}
14097
14098static void
816338b5
SS
14099enable_breakpoint_disp (struct breakpoint *bpt, enum bpdisp disposition,
14100 int count)
c906108c 14101{
afe38095 14102 int target_resources_ok;
c906108c
SS
14103
14104 if (bpt->type == bp_hardware_breakpoint)
14105 {
14106 int i;
c5aa993b 14107 i = hw_breakpoint_used_count ();
53a5351d 14108 target_resources_ok =
d92524f1 14109 target_can_use_hardware_watchpoint (bp_hardware_breakpoint,
53a5351d 14110 i + 1, 0);
c906108c 14111 if (target_resources_ok == 0)
8a3fe4f8 14112 error (_("No hardware breakpoint support in the target."));
c906108c 14113 else if (target_resources_ok < 0)
8a3fe4f8 14114 error (_("Hardware breakpoints used exceeds limit."));
c906108c
SS
14115 }
14116
cc60f2e3 14117 if (is_watchpoint (bpt))
c906108c 14118 {
d07205c2
JK
14119 /* Initialize it just to avoid a GCC false warning. */
14120 enum enable_state orig_enable_state = 0;
bfd189b1 14121 volatile struct gdb_exception e;
dde02812
ES
14122
14123 TRY_CATCH (e, RETURN_MASK_ALL)
c906108c 14124 {
3a5c3e22
PA
14125 struct watchpoint *w = (struct watchpoint *) bpt;
14126
1e718ff1
TJB
14127 orig_enable_state = bpt->enable_state;
14128 bpt->enable_state = bp_enabled;
3a5c3e22 14129 update_watchpoint (w, 1 /* reparse */);
c906108c 14130 }
dde02812 14131 if (e.reason < 0)
c5aa993b 14132 {
1e718ff1 14133 bpt->enable_state = orig_enable_state;
dde02812
ES
14134 exception_fprintf (gdb_stderr, e, _("Cannot enable watchpoint %d: "),
14135 bpt->number);
14136 return;
c5aa993b 14137 }
c906108c 14138 }
0101ce28 14139
b4c291bb
KH
14140 if (bpt->enable_state != bp_permanent)
14141 bpt->enable_state = bp_enabled;
d248b706 14142
b775012e
LM
14143 bpt->enable_state = bp_enabled;
14144
14145 /* Mark breakpoint locations modified. */
14146 mark_breakpoint_modified (bpt);
14147
d248b706
KY
14148 if (target_supports_enable_disable_tracepoint ()
14149 && current_trace_status ()->running && is_tracepoint (bpt))
14150 {
14151 struct bp_location *location;
14152
14153 for (location = bpt->loc; location; location = location->next)
14154 target_enable_tracepoint (location);
14155 }
14156
b4c291bb 14157 bpt->disposition = disposition;
816338b5 14158 bpt->enable_count = count;
b60e7edf 14159 update_global_location_list (1);
b4c291bb
KH
14160 breakpoints_changed ();
14161
8d3788bd 14162 observer_notify_breakpoint_modified (bpt);
c906108c
SS
14163}
14164
fe3f5fa8 14165
c906108c 14166void
fba45db2 14167enable_breakpoint (struct breakpoint *bpt)
c906108c 14168{
816338b5 14169 enable_breakpoint_disp (bpt, bpt->disposition, 0);
51be5b68
PA
14170}
14171
14172static void
14173do_enable_breakpoint (struct breakpoint *bpt, void *arg)
14174{
14175 enable_breakpoint (bpt);
c906108c
SS
14176}
14177
95a42b64
TT
14178/* A callback for map_breakpoint_numbers that calls
14179 enable_breakpoint. */
14180
14181static void
14182do_map_enable_breakpoint (struct breakpoint *b, void *ignore)
14183{
51be5b68 14184 iterate_over_related_breakpoints (b, do_enable_breakpoint, NULL);
95a42b64
TT
14185}
14186
c906108c
SS
14187/* The enable command enables the specified breakpoints (or all defined
14188 breakpoints) so they once again become (or continue to be) effective
1272ad14 14189 in stopping the inferior. */
c906108c 14190
c906108c 14191static void
fba45db2 14192enable_command (char *args, int from_tty)
c906108c 14193{
c906108c 14194 if (args == 0)
46c6471b
PA
14195 {
14196 struct breakpoint *bpt;
14197
14198 ALL_BREAKPOINTS (bpt)
14199 if (user_breakpoint_p (bpt))
14200 enable_breakpoint (bpt);
14201 }
0d381245
VP
14202 else if (strchr (args, '.'))
14203 {
14204 struct bp_location *loc = find_location_by_number (args);
14205 if (loc)
d248b706 14206 {
b775012e
LM
14207 if (!loc->enabled)
14208 {
14209 loc->enabled = 1;
14210 mark_breakpoint_location_modified (loc);
14211 }
d248b706
KY
14212 if (target_supports_enable_disable_tracepoint ()
14213 && current_trace_status ()->running && loc->owner
14214 && is_tracepoint (loc->owner))
14215 target_enable_tracepoint (loc);
14216 }
b60e7edf 14217 update_global_location_list (1);
0d381245 14218 }
c906108c 14219 else
95a42b64 14220 map_breakpoint_numbers (args, do_map_enable_breakpoint, NULL);
c906108c
SS
14221}
14222
816338b5
SS
14223/* This struct packages up disposition data for application to multiple
14224 breakpoints. */
14225
14226struct disp_data
14227{
14228 enum bpdisp disp;
14229 int count;
14230};
14231
c906108c 14232static void
51be5b68
PA
14233do_enable_breakpoint_disp (struct breakpoint *bpt, void *arg)
14234{
816338b5 14235 struct disp_data disp_data = *(struct disp_data *) arg;
51be5b68 14236
816338b5 14237 enable_breakpoint_disp (bpt, disp_data.disp, disp_data.count);
51be5b68
PA
14238}
14239
14240static void
14241do_map_enable_once_breakpoint (struct breakpoint *bpt, void *ignore)
c906108c 14242{
816338b5 14243 struct disp_data disp = { disp_disable, 1 };
51be5b68
PA
14244
14245 iterate_over_related_breakpoints (bpt, do_enable_breakpoint_disp, &disp);
c906108c
SS
14246}
14247
c906108c 14248static void
fba45db2 14249enable_once_command (char *args, int from_tty)
c906108c 14250{
51be5b68 14251 map_breakpoint_numbers (args, do_map_enable_once_breakpoint, NULL);
c906108c
SS
14252}
14253
816338b5
SS
14254static void
14255do_map_enable_count_breakpoint (struct breakpoint *bpt, void *countptr)
14256{
14257 struct disp_data disp = { disp_disable, *(int *) countptr };
14258
14259 iterate_over_related_breakpoints (bpt, do_enable_breakpoint_disp, &disp);
14260}
14261
14262static void
14263enable_count_command (char *args, int from_tty)
14264{
14265 int count = get_number (&args);
14266
14267 map_breakpoint_numbers (args, do_map_enable_count_breakpoint, &count);
14268}
14269
c906108c 14270static void
51be5b68 14271do_map_enable_delete_breakpoint (struct breakpoint *bpt, void *ignore)
c906108c 14272{
816338b5 14273 struct disp_data disp = { disp_del, 1 };
51be5b68
PA
14274
14275 iterate_over_related_breakpoints (bpt, do_enable_breakpoint_disp, &disp);
c906108c
SS
14276}
14277
c906108c 14278static void
fba45db2 14279enable_delete_command (char *args, int from_tty)
c906108c 14280{
51be5b68 14281 map_breakpoint_numbers (args, do_map_enable_delete_breakpoint, NULL);
c906108c
SS
14282}
14283\f
fa8d40ab
JJ
14284static void
14285set_breakpoint_cmd (char *args, int from_tty)
14286{
14287}
14288
14289static void
14290show_breakpoint_cmd (char *args, int from_tty)
14291{
14292}
14293
1f3b5d1b
PP
14294/* Invalidate last known value of any hardware watchpoint if
14295 the memory which that value represents has been written to by
14296 GDB itself. */
14297
14298static void
14299invalidate_bp_value_on_memory_change (CORE_ADDR addr, int len,
14300 const bfd_byte *data)
14301{
14302 struct breakpoint *bp;
14303
14304 ALL_BREAKPOINTS (bp)
14305 if (bp->enable_state == bp_enabled
3a5c3e22 14306 && bp->type == bp_hardware_watchpoint)
1f3b5d1b 14307 {
3a5c3e22 14308 struct watchpoint *wp = (struct watchpoint *) bp;
1f3b5d1b 14309
3a5c3e22
PA
14310 if (wp->val_valid && wp->val)
14311 {
14312 struct bp_location *loc;
14313
14314 for (loc = bp->loc; loc != NULL; loc = loc->next)
14315 if (loc->loc_type == bp_loc_hardware_watchpoint
14316 && loc->address + loc->length > addr
14317 && addr + len > loc->address)
14318 {
14319 value_free (wp->val);
14320 wp->val = NULL;
14321 wp->val_valid = 0;
14322 }
14323 }
1f3b5d1b
PP
14324 }
14325}
14326
1bfeeb0f
JL
14327/* Use the last displayed codepoint's values, or nothing
14328 if they aren't valid. */
c906108c
SS
14329
14330struct symtabs_and_lines
f8eba3c6 14331decode_line_spec_1 (char *string, int flags)
c906108c
SS
14332{
14333 struct symtabs_and_lines sals;
cc59ec59 14334
c906108c 14335 if (string == 0)
8a3fe4f8 14336 error (_("Empty line specification."));
1bfeeb0f 14337 if (last_displayed_sal_is_valid ())
f8eba3c6 14338 sals = decode_line_1 (&string, flags,
1bfeeb0f 14339 get_last_displayed_symtab (),
f8eba3c6 14340 get_last_displayed_line ());
c906108c 14341 else
f8eba3c6 14342 sals = decode_line_1 (&string, flags, (struct symtab *) NULL, 0);
c906108c 14343 if (*string)
8a3fe4f8 14344 error (_("Junk at end of line specification: %s"), string);
c906108c
SS
14345 return sals;
14346}
8181d85f
DJ
14347
14348/* Create and insert a raw software breakpoint at PC. Return an
14349 identifier, which should be used to remove the breakpoint later.
14350 In general, places which call this should be using something on the
14351 breakpoint chain instead; this function should be eliminated
14352 someday. */
14353
14354void *
6c95b8df
PA
14355deprecated_insert_raw_breakpoint (struct gdbarch *gdbarch,
14356 struct address_space *aspace, CORE_ADDR pc)
8181d85f
DJ
14357{
14358 struct bp_target_info *bp_tgt;
14359
6c95b8df 14360 bp_tgt = XZALLOC (struct bp_target_info);
8181d85f 14361
6c95b8df 14362 bp_tgt->placed_address_space = aspace;
8181d85f 14363 bp_tgt->placed_address = pc;
6c95b8df 14364
a6d9a66e 14365 if (target_insert_breakpoint (gdbarch, bp_tgt) != 0)
8181d85f
DJ
14366 {
14367 /* Could not insert the breakpoint. */
14368 xfree (bp_tgt);
14369 return NULL;
14370 }
14371
14372 return bp_tgt;
14373}
14374
4a64f543
MS
14375/* Remove a breakpoint BP inserted by
14376 deprecated_insert_raw_breakpoint. */
8181d85f
DJ
14377
14378int
a6d9a66e 14379deprecated_remove_raw_breakpoint (struct gdbarch *gdbarch, void *bp)
8181d85f
DJ
14380{
14381 struct bp_target_info *bp_tgt = bp;
14382 int ret;
14383
a6d9a66e 14384 ret = target_remove_breakpoint (gdbarch, bp_tgt);
8181d85f
DJ
14385 xfree (bp_tgt);
14386
14387 return ret;
14388}
14389
4a64f543
MS
14390/* One (or perhaps two) breakpoints used for software single
14391 stepping. */
8181d85f
DJ
14392
14393static void *single_step_breakpoints[2];
a6d9a66e 14394static struct gdbarch *single_step_gdbarch[2];
8181d85f
DJ
14395
14396/* Create and insert a breakpoint for software single step. */
14397
14398void
6c95b8df 14399insert_single_step_breakpoint (struct gdbarch *gdbarch,
4a64f543
MS
14400 struct address_space *aspace,
14401 CORE_ADDR next_pc)
8181d85f
DJ
14402{
14403 void **bpt_p;
14404
14405 if (single_step_breakpoints[0] == NULL)
a6d9a66e
UW
14406 {
14407 bpt_p = &single_step_breakpoints[0];
14408 single_step_gdbarch[0] = gdbarch;
14409 }
8181d85f
DJ
14410 else
14411 {
14412 gdb_assert (single_step_breakpoints[1] == NULL);
14413 bpt_p = &single_step_breakpoints[1];
a6d9a66e 14414 single_step_gdbarch[1] = gdbarch;
8181d85f
DJ
14415 }
14416
4a64f543
MS
14417 /* NOTE drow/2006-04-11: A future improvement to this function would
14418 be to only create the breakpoints once, and actually put them on
14419 the breakpoint chain. That would let us use set_raw_breakpoint.
14420 We could adjust the addresses each time they were needed. Doing
14421 this requires corresponding changes elsewhere where single step
14422 breakpoints are handled, however. So, for now, we use this. */
8181d85f 14423
6c95b8df 14424 *bpt_p = deprecated_insert_raw_breakpoint (gdbarch, aspace, next_pc);
8181d85f 14425 if (*bpt_p == NULL)
5af949e3
UW
14426 error (_("Could not insert single-step breakpoint at %s"),
14427 paddress (gdbarch, next_pc));
8181d85f
DJ
14428}
14429
f02253f1
HZ
14430/* Check if the breakpoints used for software single stepping
14431 were inserted or not. */
14432
14433int
14434single_step_breakpoints_inserted (void)
14435{
14436 return (single_step_breakpoints[0] != NULL
14437 || single_step_breakpoints[1] != NULL);
14438}
14439
8181d85f
DJ
14440/* Remove and delete any breakpoints used for software single step. */
14441
14442void
14443remove_single_step_breakpoints (void)
14444{
14445 gdb_assert (single_step_breakpoints[0] != NULL);
14446
14447 /* See insert_single_step_breakpoint for more about this deprecated
14448 call. */
a6d9a66e
UW
14449 deprecated_remove_raw_breakpoint (single_step_gdbarch[0],
14450 single_step_breakpoints[0]);
14451 single_step_gdbarch[0] = NULL;
8181d85f
DJ
14452 single_step_breakpoints[0] = NULL;
14453
14454 if (single_step_breakpoints[1] != NULL)
14455 {
a6d9a66e
UW
14456 deprecated_remove_raw_breakpoint (single_step_gdbarch[1],
14457 single_step_breakpoints[1]);
14458 single_step_gdbarch[1] = NULL;
8181d85f
DJ
14459 single_step_breakpoints[1] = NULL;
14460 }
14461}
14462
d03285ec
UW
14463/* Delete software single step breakpoints without removing them from
14464 the inferior. This is intended to be used if the inferior's address
14465 space where they were inserted is already gone, e.g. after exit or
14466 exec. */
14467
14468void
14469cancel_single_step_breakpoints (void)
14470{
14471 int i;
14472
14473 for (i = 0; i < 2; i++)
14474 if (single_step_breakpoints[i])
14475 {
14476 xfree (single_step_breakpoints[i]);
14477 single_step_breakpoints[i] = NULL;
14478 single_step_gdbarch[i] = NULL;
14479 }
14480}
14481
14482/* Detach software single-step breakpoints from INFERIOR_PTID without
14483 removing them. */
14484
14485static void
14486detach_single_step_breakpoints (void)
14487{
14488 int i;
14489
14490 for (i = 0; i < 2; i++)
14491 if (single_step_breakpoints[i])
14492 target_remove_breakpoint (single_step_gdbarch[i],
14493 single_step_breakpoints[i]);
14494}
14495
4a64f543
MS
14496/* Check whether a software single-step breakpoint is inserted at
14497 PC. */
1aafd4da
UW
14498
14499static int
cc59ec59
MS
14500single_step_breakpoint_inserted_here_p (struct address_space *aspace,
14501 CORE_ADDR pc)
1aafd4da
UW
14502{
14503 int i;
14504
14505 for (i = 0; i < 2; i++)
14506 {
14507 struct bp_target_info *bp_tgt = single_step_breakpoints[i];
6c95b8df
PA
14508 if (bp_tgt
14509 && breakpoint_address_match (bp_tgt->placed_address_space,
14510 bp_tgt->placed_address,
14511 aspace, pc))
1aafd4da
UW
14512 return 1;
14513 }
14514
14515 return 0;
14516}
14517
a96d9b2e
SDJ
14518/* Returns 0 if 'bp' is NOT a syscall catchpoint,
14519 non-zero otherwise. */
14520static int
14521is_syscall_catchpoint_enabled (struct breakpoint *bp)
14522{
14523 if (syscall_catchpoint_p (bp)
14524 && bp->enable_state != bp_disabled
14525 && bp->enable_state != bp_call_disabled)
14526 return 1;
14527 else
14528 return 0;
14529}
14530
14531int
14532catch_syscall_enabled (void)
14533{
fa3064dd
YQ
14534 struct catch_syscall_inferior_data *inf_data
14535 = get_catch_syscall_inferior_data (current_inferior ());
a96d9b2e 14536
fa3064dd 14537 return inf_data->total_syscalls_count != 0;
a96d9b2e
SDJ
14538}
14539
14540int
14541catching_syscall_number (int syscall_number)
14542{
14543 struct breakpoint *bp;
14544
14545 ALL_BREAKPOINTS (bp)
14546 if (is_syscall_catchpoint_enabled (bp))
14547 {
be5c67c1
PA
14548 struct syscall_catchpoint *c = (struct syscall_catchpoint *) bp;
14549
14550 if (c->syscalls_to_be_caught)
a96d9b2e
SDJ
14551 {
14552 int i, iter;
14553 for (i = 0;
be5c67c1 14554 VEC_iterate (int, c->syscalls_to_be_caught, i, iter);
a96d9b2e
SDJ
14555 i++)
14556 if (syscall_number == iter)
14557 return 1;
14558 }
14559 else
14560 return 1;
14561 }
14562
14563 return 0;
14564}
14565
14566/* Complete syscall names. Used by "catch syscall". */
14567static char **
14568catch_syscall_completer (struct cmd_list_element *cmd,
14569 char *text, char *word)
14570{
14571 const char **list = get_syscall_names ();
c38eea1a
MS
14572 char **retlist
14573 = (list == NULL) ? NULL : complete_on_enum (list, text, word);
cc59ec59 14574
c38eea1a
MS
14575 xfree (list);
14576 return retlist;
a96d9b2e
SDJ
14577}
14578
1042e4c0
SS
14579/* Tracepoint-specific operations. */
14580
14581/* Set tracepoint count to NUM. */
14582static void
14583set_tracepoint_count (int num)
14584{
14585 tracepoint_count = num;
4fa62494 14586 set_internalvar_integer (lookup_internalvar ("tpnum"), num);
1042e4c0
SS
14587}
14588
70221824 14589static void
1042e4c0
SS
14590trace_command (char *arg, int from_tty)
14591{
55aa24fb
SDJ
14592 struct breakpoint_ops *ops;
14593 const char *arg_cp = arg;
14594
14595 if (arg && probe_linespec_to_ops (&arg_cp))
14596 ops = &tracepoint_probe_breakpoint_ops;
14597 else
14598 ops = &tracepoint_breakpoint_ops;
14599
8cdf0e15
VP
14600 if (create_breakpoint (get_current_arch (),
14601 arg,
e7e0cddf 14602 NULL, 0, NULL, 1 /* parse arg */,
0fb4aa4b
PA
14603 0 /* tempflag */,
14604 bp_tracepoint /* type_wanted */,
8cdf0e15
VP
14605 0 /* Ignore count */,
14606 pending_break_support,
55aa24fb 14607 ops,
8cdf0e15 14608 from_tty,
84f4c1fe 14609 1 /* enabled */,
44f238bb 14610 0 /* internal */, 0))
fd9b8c24 14611 set_tracepoint_count (breakpoint_count);
1042e4c0
SS
14612}
14613
70221824 14614static void
7a697b8d
SS
14615ftrace_command (char *arg, int from_tty)
14616{
8cdf0e15
VP
14617 if (create_breakpoint (get_current_arch (),
14618 arg,
e7e0cddf 14619 NULL, 0, NULL, 1 /* parse arg */,
0fb4aa4b
PA
14620 0 /* tempflag */,
14621 bp_fast_tracepoint /* type_wanted */,
14622 0 /* Ignore count */,
14623 pending_break_support,
348d480f 14624 &tracepoint_breakpoint_ops,
0fb4aa4b 14625 from_tty,
84f4c1fe 14626 1 /* enabled */,
44f238bb 14627 0 /* internal */, 0))
0fb4aa4b
PA
14628 set_tracepoint_count (breakpoint_count);
14629}
14630
14631/* strace command implementation. Creates a static tracepoint. */
14632
70221824 14633static void
0fb4aa4b
PA
14634strace_command (char *arg, int from_tty)
14635{
983af33b
SDJ
14636 struct breakpoint_ops *ops;
14637
14638 /* Decide if we are dealing with a static tracepoint marker (`-m'),
14639 or with a normal static tracepoint. */
14640 if (arg && strncmp (arg, "-m", 2) == 0 && isspace (arg[2]))
14641 ops = &strace_marker_breakpoint_ops;
14642 else
14643 ops = &tracepoint_breakpoint_ops;
14644
0fb4aa4b
PA
14645 if (create_breakpoint (get_current_arch (),
14646 arg,
e7e0cddf 14647 NULL, 0, NULL, 1 /* parse arg */,
0fb4aa4b
PA
14648 0 /* tempflag */,
14649 bp_static_tracepoint /* type_wanted */,
8cdf0e15
VP
14650 0 /* Ignore count */,
14651 pending_break_support,
983af33b 14652 ops,
8cdf0e15 14653 from_tty,
84f4c1fe 14654 1 /* enabled */,
44f238bb 14655 0 /* internal */, 0))
fd9b8c24 14656 set_tracepoint_count (breakpoint_count);
7a697b8d
SS
14657}
14658
409873ef
SS
14659/* Set up a fake reader function that gets command lines from a linked
14660 list that was acquired during tracepoint uploading. */
14661
14662static struct uploaded_tp *this_utp;
3149d8c1 14663static int next_cmd;
409873ef
SS
14664
14665static char *
14666read_uploaded_action (void)
14667{
14668 char *rslt;
14669
3149d8c1 14670 VEC_iterate (char_ptr, this_utp->cmd_strings, next_cmd, rslt);
409873ef 14671
3149d8c1 14672 next_cmd++;
409873ef
SS
14673
14674 return rslt;
14675}
14676
00bf0b85
SS
14677/* Given information about a tracepoint as recorded on a target (which
14678 can be either a live system or a trace file), attempt to create an
14679 equivalent GDB tracepoint. This is not a reliable process, since
14680 the target does not necessarily have all the information used when
14681 the tracepoint was originally defined. */
14682
d9b3f62e 14683struct tracepoint *
00bf0b85 14684create_tracepoint_from_upload (struct uploaded_tp *utp)
d5551862 14685{
409873ef 14686 char *addr_str, small_buf[100];
d9b3f62e 14687 struct tracepoint *tp;
fd9b8c24 14688
409873ef
SS
14689 if (utp->at_string)
14690 addr_str = utp->at_string;
14691 else
14692 {
14693 /* In the absence of a source location, fall back to raw
14694 address. Since there is no way to confirm that the address
14695 means the same thing as when the trace was started, warn the
14696 user. */
3e43a32a
MS
14697 warning (_("Uploaded tracepoint %d has no "
14698 "source location, using raw address"),
409873ef
SS
14699 utp->number);
14700 sprintf (small_buf, "*%s", hex_string (utp->addr));
14701 addr_str = small_buf;
14702 }
14703
14704 /* There's not much we can do with a sequence of bytecodes. */
14705 if (utp->cond && !utp->cond_string)
3e43a32a
MS
14706 warning (_("Uploaded tracepoint %d condition "
14707 "has no source form, ignoring it"),
409873ef 14708 utp->number);
d5551862 14709
8cdf0e15 14710 if (!create_breakpoint (get_current_arch (),
409873ef 14711 addr_str,
e7e0cddf
SS
14712 utp->cond_string, -1, NULL,
14713 0 /* parse cond/thread */,
8cdf0e15 14714 0 /* tempflag */,
0fb4aa4b 14715 utp->type /* type_wanted */,
8cdf0e15
VP
14716 0 /* Ignore count */,
14717 pending_break_support,
348d480f 14718 &tracepoint_breakpoint_ops,
8cdf0e15 14719 0 /* from_tty */,
84f4c1fe 14720 utp->enabled /* enabled */,
44f238bb
PA
14721 0 /* internal */,
14722 CREATE_BREAKPOINT_FLAGS_INSERTED))
fd9b8c24
PA
14723 return NULL;
14724
00bf0b85
SS
14725 set_tracepoint_count (breakpoint_count);
14726
409873ef 14727 /* Get the tracepoint we just created. */
fd9b8c24
PA
14728 tp = get_tracepoint (tracepoint_count);
14729 gdb_assert (tp != NULL);
d5551862 14730
00bf0b85
SS
14731 if (utp->pass > 0)
14732 {
d9b3f62e 14733 sprintf (small_buf, "%d %d", utp->pass, tp->base.number);
00bf0b85 14734
409873ef 14735 trace_pass_command (small_buf, 0);
00bf0b85
SS
14736 }
14737
409873ef
SS
14738 /* If we have uploaded versions of the original commands, set up a
14739 special-purpose "reader" function and call the usual command line
14740 reader, then pass the result to the breakpoint command-setting
14741 function. */
3149d8c1 14742 if (!VEC_empty (char_ptr, utp->cmd_strings))
00bf0b85 14743 {
409873ef 14744 struct command_line *cmd_list;
00bf0b85 14745
409873ef 14746 this_utp = utp;
3149d8c1 14747 next_cmd = 0;
d5551862 14748
409873ef
SS
14749 cmd_list = read_command_lines_1 (read_uploaded_action, 1, NULL, NULL);
14750
d9b3f62e 14751 breakpoint_set_commands (&tp->base, cmd_list);
00bf0b85 14752 }
3149d8c1
SS
14753 else if (!VEC_empty (char_ptr, utp->actions)
14754 || !VEC_empty (char_ptr, utp->step_actions))
3e43a32a
MS
14755 warning (_("Uploaded tracepoint %d actions "
14756 "have no source form, ignoring them"),
409873ef 14757 utp->number);
00bf0b85 14758
f196051f
SS
14759 /* Copy any status information that might be available. */
14760 tp->base.hit_count = utp->hit_count;
14761 tp->traceframe_usage = utp->traceframe_usage;
14762
00bf0b85 14763 return tp;
d9b3f62e 14764}
00bf0b85 14765
1042e4c0
SS
14766/* Print information on tracepoint number TPNUM_EXP, or all if
14767 omitted. */
14768
14769static void
e5a67952 14770tracepoints_info (char *args, int from_tty)
1042e4c0 14771{
79a45e25 14772 struct ui_out *uiout = current_uiout;
e5a67952 14773 int num_printed;
1042e4c0 14774
e5a67952 14775 num_printed = breakpoint_1 (args, 0, is_tracepoint);
d77f58be
SS
14776
14777 if (num_printed == 0)
1042e4c0 14778 {
e5a67952 14779 if (args == NULL || *args == '\0')
d77f58be
SS
14780 ui_out_message (uiout, 0, "No tracepoints.\n");
14781 else
e5a67952 14782 ui_out_message (uiout, 0, "No tracepoint matching '%s'.\n", args);
1042e4c0 14783 }
ad443146
SS
14784
14785 default_collect_info ();
1042e4c0
SS
14786}
14787
4a64f543 14788/* The 'enable trace' command enables tracepoints.
1042e4c0
SS
14789 Not supported by all targets. */
14790static void
14791enable_trace_command (char *args, int from_tty)
14792{
14793 enable_command (args, from_tty);
14794}
14795
4a64f543 14796/* The 'disable trace' command disables tracepoints.
1042e4c0
SS
14797 Not supported by all targets. */
14798static void
14799disable_trace_command (char *args, int from_tty)
14800{
14801 disable_command (args, from_tty);
14802}
14803
4a64f543 14804/* Remove a tracepoint (or all if no argument). */
1042e4c0
SS
14805static void
14806delete_trace_command (char *arg, int from_tty)
14807{
35df4500 14808 struct breakpoint *b, *b_tmp;
1042e4c0
SS
14809
14810 dont_repeat ();
14811
14812 if (arg == 0)
14813 {
14814 int breaks_to_delete = 0;
14815
14816 /* Delete all breakpoints if no argument.
14817 Do not delete internal or call-dummy breakpoints, these
4a64f543
MS
14818 have to be deleted with an explicit breakpoint number
14819 argument. */
1042e4c0 14820 ALL_TRACEPOINTS (b)
46c6471b 14821 if (is_tracepoint (b) && user_breakpoint_p (b))
1042e4c0
SS
14822 {
14823 breaks_to_delete = 1;
14824 break;
14825 }
1042e4c0
SS
14826
14827 /* Ask user only if there are some breakpoints to delete. */
14828 if (!from_tty
14829 || (breaks_to_delete && query (_("Delete all tracepoints? "))))
14830 {
35df4500 14831 ALL_BREAKPOINTS_SAFE (b, b_tmp)
46c6471b 14832 if (is_tracepoint (b) && user_breakpoint_p (b))
1042e4c0 14833 delete_breakpoint (b);
1042e4c0
SS
14834 }
14835 }
14836 else
51be5b68 14837 map_breakpoint_numbers (arg, do_map_delete_breakpoint, NULL);
1042e4c0
SS
14838}
14839
197f0a60
TT
14840/* Helper function for trace_pass_command. */
14841
14842static void
d9b3f62e 14843trace_pass_set_count (struct tracepoint *tp, int count, int from_tty)
197f0a60 14844{
d9b3f62e
PA
14845 tp->pass_count = count;
14846 observer_notify_tracepoint_modified (tp->base.number);
197f0a60
TT
14847 if (from_tty)
14848 printf_filtered (_("Setting tracepoint %d's passcount to %d\n"),
d9b3f62e 14849 tp->base.number, count);
197f0a60
TT
14850}
14851
1042e4c0
SS
14852/* Set passcount for tracepoint.
14853
14854 First command argument is passcount, second is tracepoint number.
14855 If tracepoint number omitted, apply to most recently defined.
14856 Also accepts special argument "all". */
14857
14858static void
14859trace_pass_command (char *args, int from_tty)
14860{
d9b3f62e 14861 struct tracepoint *t1;
1042e4c0 14862 unsigned int count;
1042e4c0
SS
14863
14864 if (args == 0 || *args == 0)
3e43a32a
MS
14865 error (_("passcount command requires an "
14866 "argument (count + optional TP num)"));
1042e4c0 14867
4a64f543 14868 count = strtoul (args, &args, 10); /* Count comes first, then TP num. */
1042e4c0
SS
14869
14870 while (*args && isspace ((int) *args))
14871 args++;
14872
14873 if (*args && strncasecmp (args, "all", 3) == 0)
14874 {
d9b3f62e
PA
14875 struct breakpoint *b;
14876
1042e4c0 14877 args += 3; /* Skip special argument "all". */
1042e4c0
SS
14878 if (*args)
14879 error (_("Junk at end of arguments."));
1042e4c0 14880
d9b3f62e 14881 ALL_TRACEPOINTS (b)
197f0a60 14882 {
d9b3f62e 14883 t1 = (struct tracepoint *) b;
197f0a60
TT
14884 trace_pass_set_count (t1, count, from_tty);
14885 }
14886 }
14887 else if (*args == '\0')
1042e4c0 14888 {
197f0a60 14889 t1 = get_tracepoint_by_number (&args, NULL, 1);
1042e4c0 14890 if (t1)
197f0a60
TT
14891 trace_pass_set_count (t1, count, from_tty);
14892 }
14893 else
14894 {
14895 struct get_number_or_range_state state;
14896
14897 init_number_or_range (&state, args);
14898 while (!state.finished)
1042e4c0 14899 {
197f0a60
TT
14900 t1 = get_tracepoint_by_number (&args, &state, 1);
14901 if (t1)
14902 trace_pass_set_count (t1, count, from_tty);
1042e4c0
SS
14903 }
14904 }
1042e4c0
SS
14905}
14906
d9b3f62e 14907struct tracepoint *
1042e4c0
SS
14908get_tracepoint (int num)
14909{
14910 struct breakpoint *t;
14911
14912 ALL_TRACEPOINTS (t)
14913 if (t->number == num)
d9b3f62e 14914 return (struct tracepoint *) t;
1042e4c0
SS
14915
14916 return NULL;
14917}
14918
d5551862
SS
14919/* Find the tracepoint with the given target-side number (which may be
14920 different from the tracepoint number after disconnecting and
14921 reconnecting). */
14922
d9b3f62e 14923struct tracepoint *
d5551862
SS
14924get_tracepoint_by_number_on_target (int num)
14925{
d9b3f62e 14926 struct breakpoint *b;
d5551862 14927
d9b3f62e
PA
14928 ALL_TRACEPOINTS (b)
14929 {
14930 struct tracepoint *t = (struct tracepoint *) b;
14931
14932 if (t->number_on_target == num)
14933 return t;
14934 }
d5551862
SS
14935
14936 return NULL;
14937}
14938
1042e4c0 14939/* Utility: parse a tracepoint number and look it up in the list.
197f0a60
TT
14940 If STATE is not NULL, use, get_number_or_range_state and ignore ARG.
14941 If OPTIONAL_P is true, then if the argument is missing, the most
1042e4c0 14942 recent tracepoint (tracepoint_count) is returned. */
d9b3f62e 14943struct tracepoint *
197f0a60
TT
14944get_tracepoint_by_number (char **arg,
14945 struct get_number_or_range_state *state,
14946 int optional_p)
1042e4c0
SS
14947{
14948 extern int tracepoint_count;
14949 struct breakpoint *t;
14950 int tpnum;
14951 char *instring = arg == NULL ? NULL : *arg;
14952
197f0a60
TT
14953 if (state)
14954 {
14955 gdb_assert (!state->finished);
14956 tpnum = get_number_or_range (state);
14957 }
14958 else if (arg == NULL || *arg == NULL || ! **arg)
1042e4c0
SS
14959 {
14960 if (optional_p)
14961 tpnum = tracepoint_count;
14962 else
14963 error_no_arg (_("tracepoint number"));
14964 }
14965 else
197f0a60 14966 tpnum = get_number (arg);
1042e4c0
SS
14967
14968 if (tpnum <= 0)
14969 {
14970 if (instring && *instring)
14971 printf_filtered (_("bad tracepoint number at or near '%s'\n"),
14972 instring);
14973 else
3e43a32a
MS
14974 printf_filtered (_("Tracepoint argument missing "
14975 "and no previous tracepoint\n"));
1042e4c0
SS
14976 return NULL;
14977 }
14978
14979 ALL_TRACEPOINTS (t)
14980 if (t->number == tpnum)
14981 {
d9b3f62e 14982 return (struct tracepoint *) t;
1042e4c0
SS
14983 }
14984
1042e4c0
SS
14985 printf_unfiltered ("No tracepoint number %d.\n", tpnum);
14986 return NULL;
14987}
14988
d9b3f62e
PA
14989void
14990print_recreate_thread (struct breakpoint *b, struct ui_file *fp)
14991{
14992 if (b->thread != -1)
14993 fprintf_unfiltered (fp, " thread %d", b->thread);
14994
14995 if (b->task != 0)
14996 fprintf_unfiltered (fp, " task %d", b->task);
14997
14998 fprintf_unfiltered (fp, "\n");
14999}
15000
6149aea9
PA
15001/* Save information on user settable breakpoints (watchpoints, etc) to
15002 a new script file named FILENAME. If FILTER is non-NULL, call it
15003 on each breakpoint and only include the ones for which it returns
15004 non-zero. */
15005
1042e4c0 15006static void
6149aea9
PA
15007save_breakpoints (char *filename, int from_tty,
15008 int (*filter) (const struct breakpoint *))
1042e4c0
SS
15009{
15010 struct breakpoint *tp;
6149aea9 15011 int any = 0;
a7bdde9e 15012 char *pathname;
1042e4c0 15013 struct cleanup *cleanup;
a7bdde9e 15014 struct ui_file *fp;
6149aea9 15015 int extra_trace_bits = 0;
1042e4c0 15016
6149aea9
PA
15017 if (filename == 0 || *filename == 0)
15018 error (_("Argument required (file name in which to save)"));
1042e4c0
SS
15019
15020 /* See if we have anything to save. */
6149aea9 15021 ALL_BREAKPOINTS (tp)
1042e4c0 15022 {
6149aea9 15023 /* Skip internal and momentary breakpoints. */
09d682a4 15024 if (!user_breakpoint_p (tp))
6149aea9
PA
15025 continue;
15026
15027 /* If we have a filter, only save the breakpoints it accepts. */
15028 if (filter && !filter (tp))
15029 continue;
15030
15031 any = 1;
15032
15033 if (is_tracepoint (tp))
15034 {
15035 extra_trace_bits = 1;
15036
15037 /* We can stop searching. */
15038 break;
15039 }
1042e4c0 15040 }
6149aea9
PA
15041
15042 if (!any)
1042e4c0 15043 {
6149aea9 15044 warning (_("Nothing to save."));
1042e4c0
SS
15045 return;
15046 }
15047
6149aea9 15048 pathname = tilde_expand (filename);
1042e4c0 15049 cleanup = make_cleanup (xfree, pathname);
a7bdde9e 15050 fp = gdb_fopen (pathname, "w");
059fb39f 15051 if (!fp)
6149aea9
PA
15052 error (_("Unable to open file '%s' for saving (%s)"),
15053 filename, safe_strerror (errno));
a7bdde9e 15054 make_cleanup_ui_file_delete (fp);
8bf6485c 15055
6149aea9
PA
15056 if (extra_trace_bits)
15057 save_trace_state_variables (fp);
8bf6485c 15058
6149aea9 15059 ALL_BREAKPOINTS (tp)
1042e4c0 15060 {
6149aea9 15061 /* Skip internal and momentary breakpoints. */
09d682a4 15062 if (!user_breakpoint_p (tp))
6149aea9 15063 continue;
8bf6485c 15064
6149aea9
PA
15065 /* If we have a filter, only save the breakpoints it accepts. */
15066 if (filter && !filter (tp))
15067 continue;
15068
348d480f 15069 tp->ops->print_recreate (tp, fp);
1042e4c0 15070
6149aea9
PA
15071 /* Note, we can't rely on tp->number for anything, as we can't
15072 assume the recreated breakpoint numbers will match. Use $bpnum
15073 instead. */
15074
15075 if (tp->cond_string)
15076 fprintf_unfiltered (fp, " condition $bpnum %s\n", tp->cond_string);
15077
15078 if (tp->ignore_count)
15079 fprintf_unfiltered (fp, " ignore $bpnum %d\n", tp->ignore_count);
15080
a7bdde9e 15081 if (tp->commands)
1042e4c0 15082 {
a7bdde9e
VP
15083 volatile struct gdb_exception ex;
15084
6149aea9 15085 fprintf_unfiltered (fp, " commands\n");
a7bdde9e 15086
79a45e25 15087 ui_out_redirect (current_uiout, fp);
14dba4b4 15088 TRY_CATCH (ex, RETURN_MASK_ALL)
1042e4c0 15089 {
79a45e25 15090 print_command_lines (current_uiout, tp->commands->commands, 2);
a7bdde9e 15091 }
79a45e25 15092 ui_out_redirect (current_uiout, NULL);
1042e4c0 15093
a7bdde9e
VP
15094 if (ex.reason < 0)
15095 throw_exception (ex);
1042e4c0 15096
a7bdde9e 15097 fprintf_unfiltered (fp, " end\n");
1042e4c0 15098 }
6149aea9
PA
15099
15100 if (tp->enable_state == bp_disabled)
15101 fprintf_unfiltered (fp, "disable\n");
15102
15103 /* If this is a multi-location breakpoint, check if the locations
15104 should be individually disabled. Watchpoint locations are
15105 special, and not user visible. */
15106 if (!is_watchpoint (tp) && tp->loc && tp->loc->next)
15107 {
15108 struct bp_location *loc;
15109 int n = 1;
15110
15111 for (loc = tp->loc; loc != NULL; loc = loc->next, n++)
15112 if (!loc->enabled)
15113 fprintf_unfiltered (fp, "disable $bpnum.%d\n", n);
15114 }
1042e4c0 15115 }
8bf6485c 15116
6149aea9 15117 if (extra_trace_bits && *default_collect)
8bf6485c
SS
15118 fprintf_unfiltered (fp, "set default-collect %s\n", default_collect);
15119
1042e4c0
SS
15120 do_cleanups (cleanup);
15121 if (from_tty)
6149aea9
PA
15122 printf_filtered (_("Saved to file '%s'.\n"), filename);
15123}
15124
15125/* The `save breakpoints' command. */
15126
15127static void
15128save_breakpoints_command (char *args, int from_tty)
15129{
15130 save_breakpoints (args, from_tty, NULL);
15131}
15132
15133/* The `save tracepoints' command. */
15134
15135static void
15136save_tracepoints_command (char *args, int from_tty)
15137{
15138 save_breakpoints (args, from_tty, is_tracepoint);
1042e4c0
SS
15139}
15140
15141/* Create a vector of all tracepoints. */
15142
15143VEC(breakpoint_p) *
eeae04df 15144all_tracepoints (void)
1042e4c0
SS
15145{
15146 VEC(breakpoint_p) *tp_vec = 0;
15147 struct breakpoint *tp;
15148
15149 ALL_TRACEPOINTS (tp)
15150 {
15151 VEC_safe_push (breakpoint_p, tp_vec, tp);
15152 }
15153
15154 return tp_vec;
15155}
15156
c906108c 15157\f
4a64f543
MS
15158/* This help string is used for the break, hbreak, tbreak and thbreak
15159 commands. It is defined as a macro to prevent duplication.
15160 COMMAND should be a string constant containing the name of the
15161 command. */
31e2b00f
AS
15162#define BREAK_ARGS_HELP(command) \
15163command" [LOCATION] [thread THREADNUM] [if CONDITION]\n\
15164LOCATION may be a line number, function name, or \"*\" and an address.\n\
15165If a line number is specified, break at start of code for that line.\n\
15166If a function is specified, break at start of code for that function.\n\
15167If an address is specified, break at that exact address.\n\
dc10affe
PA
15168With no LOCATION, uses current execution address of the selected\n\
15169stack frame. This is useful for breaking on return to a stack frame.\n\
31e2b00f
AS
15170\n\
15171THREADNUM is the number from \"info threads\".\n\
15172CONDITION is a boolean expression.\n\
15173\n\
d41c0fc8
PA
15174Multiple breakpoints at one place are permitted, and useful if their\n\
15175conditions are different.\n\
31e2b00f
AS
15176\n\
15177Do \"help breakpoints\" for info on other commands dealing with breakpoints."
15178
44feb3ce
TT
15179/* List of subcommands for "catch". */
15180static struct cmd_list_element *catch_cmdlist;
15181
15182/* List of subcommands for "tcatch". */
15183static struct cmd_list_element *tcatch_cmdlist;
15184
9ac4176b 15185void
44feb3ce
TT
15186add_catch_command (char *name, char *docstring,
15187 void (*sfunc) (char *args, int from_tty,
15188 struct cmd_list_element *command),
a96d9b2e
SDJ
15189 char **(*completer) (struct cmd_list_element *cmd,
15190 char *text, char *word),
44feb3ce
TT
15191 void *user_data_catch,
15192 void *user_data_tcatch)
15193{
15194 struct cmd_list_element *command;
15195
15196 command = add_cmd (name, class_breakpoint, NULL, docstring,
15197 &catch_cmdlist);
15198 set_cmd_sfunc (command, sfunc);
15199 set_cmd_context (command, user_data_catch);
a96d9b2e 15200 set_cmd_completer (command, completer);
44feb3ce
TT
15201
15202 command = add_cmd (name, class_breakpoint, NULL, docstring,
15203 &tcatch_cmdlist);
15204 set_cmd_sfunc (command, sfunc);
15205 set_cmd_context (command, user_data_tcatch);
a96d9b2e 15206 set_cmd_completer (command, completer);
44feb3ce
TT
15207}
15208
6c95b8df 15209static void
a79b8f6e 15210clear_syscall_counts (struct inferior *inf)
6c95b8df 15211{
fa3064dd
YQ
15212 struct catch_syscall_inferior_data *inf_data
15213 = get_catch_syscall_inferior_data (inf);
15214
15215 inf_data->total_syscalls_count = 0;
15216 inf_data->any_syscall_count = 0;
15217 VEC_free (int, inf_data->syscalls_counts);
6c95b8df
PA
15218}
15219
6149aea9
PA
15220static void
15221save_command (char *arg, int from_tty)
15222{
3e43a32a
MS
15223 printf_unfiltered (_("\"save\" must be followed by "
15224 "the name of a save subcommand.\n"));
6149aea9
PA
15225 help_list (save_cmdlist, "save ", -1, gdb_stdout);
15226}
15227
84f4c1fe
PM
15228struct breakpoint *
15229iterate_over_breakpoints (int (*callback) (struct breakpoint *, void *),
15230 void *data)
15231{
35df4500 15232 struct breakpoint *b, *b_tmp;
84f4c1fe 15233
35df4500 15234 ALL_BREAKPOINTS_SAFE (b, b_tmp)
84f4c1fe
PM
15235 {
15236 if ((*callback) (b, data))
15237 return b;
15238 }
15239
15240 return NULL;
15241}
15242
0574c78f
GB
15243/* Zero if any of the breakpoint's locations could be a location where
15244 functions have been inlined, nonzero otherwise. */
15245
15246static int
15247is_non_inline_function (struct breakpoint *b)
15248{
15249 /* The shared library event breakpoint is set on the address of a
15250 non-inline function. */
15251 if (b->type == bp_shlib_event)
15252 return 1;
15253
15254 return 0;
15255}
15256
15257/* Nonzero if the specified PC cannot be a location where functions
15258 have been inlined. */
15259
15260int
09ac7c10
TT
15261pc_at_non_inline_function (struct address_space *aspace, CORE_ADDR pc,
15262 const struct target_waitstatus *ws)
0574c78f
GB
15263{
15264 struct breakpoint *b;
15265 struct bp_location *bl;
15266
15267 ALL_BREAKPOINTS (b)
15268 {
15269 if (!is_non_inline_function (b))
15270 continue;
15271
15272 for (bl = b->loc; bl != NULL; bl = bl->next)
15273 {
15274 if (!bl->shlib_disabled
09ac7c10 15275 && bpstat_check_location (bl, aspace, pc, ws))
0574c78f
GB
15276 return 1;
15277 }
15278 }
15279
15280 return 0;
15281}
15282
2060206e
PA
15283void
15284initialize_breakpoint_ops (void)
15285{
15286 static int initialized = 0;
15287
15288 struct breakpoint_ops *ops;
15289
15290 if (initialized)
15291 return;
15292 initialized = 1;
15293
15294 /* The breakpoint_ops structure to be inherit by all kinds of
15295 breakpoints (real breakpoints, i.e., user "break" breakpoints,
15296 internal and momentary breakpoints, etc.). */
15297 ops = &bkpt_base_breakpoint_ops;
15298 *ops = base_breakpoint_ops;
15299 ops->re_set = bkpt_re_set;
15300 ops->insert_location = bkpt_insert_location;
15301 ops->remove_location = bkpt_remove_location;
15302 ops->breakpoint_hit = bkpt_breakpoint_hit;
983af33b
SDJ
15303 ops->create_sals_from_address = bkpt_create_sals_from_address;
15304 ops->create_breakpoints_sal = bkpt_create_breakpoints_sal;
15305 ops->decode_linespec = bkpt_decode_linespec;
2060206e
PA
15306
15307 /* The breakpoint_ops structure to be used in regular breakpoints. */
15308 ops = &bkpt_breakpoint_ops;
15309 *ops = bkpt_base_breakpoint_ops;
15310 ops->re_set = bkpt_re_set;
15311 ops->resources_needed = bkpt_resources_needed;
15312 ops->print_it = bkpt_print_it;
15313 ops->print_mention = bkpt_print_mention;
15314 ops->print_recreate = bkpt_print_recreate;
15315
15316 /* Ranged breakpoints. */
15317 ops = &ranged_breakpoint_ops;
15318 *ops = bkpt_breakpoint_ops;
15319 ops->breakpoint_hit = breakpoint_hit_ranged_breakpoint;
15320 ops->resources_needed = resources_needed_ranged_breakpoint;
15321 ops->print_it = print_it_ranged_breakpoint;
15322 ops->print_one = print_one_ranged_breakpoint;
15323 ops->print_one_detail = print_one_detail_ranged_breakpoint;
15324 ops->print_mention = print_mention_ranged_breakpoint;
15325 ops->print_recreate = print_recreate_ranged_breakpoint;
15326
15327 /* Internal breakpoints. */
15328 ops = &internal_breakpoint_ops;
15329 *ops = bkpt_base_breakpoint_ops;
15330 ops->re_set = internal_bkpt_re_set;
15331 ops->check_status = internal_bkpt_check_status;
15332 ops->print_it = internal_bkpt_print_it;
15333 ops->print_mention = internal_bkpt_print_mention;
15334
15335 /* Momentary breakpoints. */
15336 ops = &momentary_breakpoint_ops;
15337 *ops = bkpt_base_breakpoint_ops;
15338 ops->re_set = momentary_bkpt_re_set;
15339 ops->check_status = momentary_bkpt_check_status;
15340 ops->print_it = momentary_bkpt_print_it;
15341 ops->print_mention = momentary_bkpt_print_mention;
15342
55aa24fb
SDJ
15343 /* Probe breakpoints. */
15344 ops = &bkpt_probe_breakpoint_ops;
15345 *ops = bkpt_breakpoint_ops;
15346 ops->insert_location = bkpt_probe_insert_location;
15347 ops->remove_location = bkpt_probe_remove_location;
15348 ops->create_sals_from_address = bkpt_probe_create_sals_from_address;
15349 ops->decode_linespec = bkpt_probe_decode_linespec;
15350
2060206e
PA
15351 /* GNU v3 exception catchpoints. */
15352 ops = &gnu_v3_exception_catchpoint_ops;
15353 *ops = bkpt_breakpoint_ops;
15354 ops->print_it = print_it_exception_catchpoint;
15355 ops->print_one = print_one_exception_catchpoint;
15356 ops->print_mention = print_mention_exception_catchpoint;
15357 ops->print_recreate = print_recreate_exception_catchpoint;
15358
15359 /* Watchpoints. */
15360 ops = &watchpoint_breakpoint_ops;
15361 *ops = base_breakpoint_ops;
3a5c3e22 15362 ops->dtor = dtor_watchpoint;
2060206e
PA
15363 ops->re_set = re_set_watchpoint;
15364 ops->insert_location = insert_watchpoint;
15365 ops->remove_location = remove_watchpoint;
15366 ops->breakpoint_hit = breakpoint_hit_watchpoint;
15367 ops->check_status = check_status_watchpoint;
15368 ops->resources_needed = resources_needed_watchpoint;
15369 ops->works_in_software_mode = works_in_software_mode_watchpoint;
15370 ops->print_it = print_it_watchpoint;
15371 ops->print_mention = print_mention_watchpoint;
15372 ops->print_recreate = print_recreate_watchpoint;
15373
15374 /* Masked watchpoints. */
15375 ops = &masked_watchpoint_breakpoint_ops;
15376 *ops = watchpoint_breakpoint_ops;
15377 ops->insert_location = insert_masked_watchpoint;
15378 ops->remove_location = remove_masked_watchpoint;
15379 ops->resources_needed = resources_needed_masked_watchpoint;
15380 ops->works_in_software_mode = works_in_software_mode_masked_watchpoint;
15381 ops->print_it = print_it_masked_watchpoint;
15382 ops->print_one_detail = print_one_detail_masked_watchpoint;
15383 ops->print_mention = print_mention_masked_watchpoint;
15384 ops->print_recreate = print_recreate_masked_watchpoint;
15385
15386 /* Tracepoints. */
15387 ops = &tracepoint_breakpoint_ops;
15388 *ops = base_breakpoint_ops;
15389 ops->re_set = tracepoint_re_set;
15390 ops->breakpoint_hit = tracepoint_breakpoint_hit;
15391 ops->print_one_detail = tracepoint_print_one_detail;
15392 ops->print_mention = tracepoint_print_mention;
15393 ops->print_recreate = tracepoint_print_recreate;
983af33b
SDJ
15394 ops->create_sals_from_address = tracepoint_create_sals_from_address;
15395 ops->create_breakpoints_sal = tracepoint_create_breakpoints_sal;
15396 ops->decode_linespec = tracepoint_decode_linespec;
15397
55aa24fb
SDJ
15398 /* Probe tracepoints. */
15399 ops = &tracepoint_probe_breakpoint_ops;
15400 *ops = tracepoint_breakpoint_ops;
15401 ops->create_sals_from_address = tracepoint_probe_create_sals_from_address;
15402 ops->decode_linespec = tracepoint_probe_decode_linespec;
15403
983af33b
SDJ
15404 /* Static tracepoints with marker (`-m'). */
15405 ops = &strace_marker_breakpoint_ops;
15406 *ops = tracepoint_breakpoint_ops;
15407 ops->create_sals_from_address = strace_marker_create_sals_from_address;
15408 ops->create_breakpoints_sal = strace_marker_create_breakpoints_sal;
15409 ops->decode_linespec = strace_marker_decode_linespec;
2060206e
PA
15410
15411 /* Fork catchpoints. */
15412 ops = &catch_fork_breakpoint_ops;
15413 *ops = base_breakpoint_ops;
15414 ops->insert_location = insert_catch_fork;
15415 ops->remove_location = remove_catch_fork;
15416 ops->breakpoint_hit = breakpoint_hit_catch_fork;
15417 ops->print_it = print_it_catch_fork;
15418 ops->print_one = print_one_catch_fork;
15419 ops->print_mention = print_mention_catch_fork;
15420 ops->print_recreate = print_recreate_catch_fork;
15421
15422 /* Vfork catchpoints. */
15423 ops = &catch_vfork_breakpoint_ops;
15424 *ops = base_breakpoint_ops;
15425 ops->insert_location = insert_catch_vfork;
15426 ops->remove_location = remove_catch_vfork;
15427 ops->breakpoint_hit = breakpoint_hit_catch_vfork;
15428 ops->print_it = print_it_catch_vfork;
15429 ops->print_one = print_one_catch_vfork;
15430 ops->print_mention = print_mention_catch_vfork;
15431 ops->print_recreate = print_recreate_catch_vfork;
15432
15433 /* Exec catchpoints. */
15434 ops = &catch_exec_breakpoint_ops;
15435 *ops = base_breakpoint_ops;
15436 ops->dtor = dtor_catch_exec;
15437 ops->insert_location = insert_catch_exec;
15438 ops->remove_location = remove_catch_exec;
15439 ops->breakpoint_hit = breakpoint_hit_catch_exec;
15440 ops->print_it = print_it_catch_exec;
15441 ops->print_one = print_one_catch_exec;
15442 ops->print_mention = print_mention_catch_exec;
15443 ops->print_recreate = print_recreate_catch_exec;
15444
15445 /* Syscall catchpoints. */
15446 ops = &catch_syscall_breakpoint_ops;
15447 *ops = base_breakpoint_ops;
15448 ops->dtor = dtor_catch_syscall;
15449 ops->insert_location = insert_catch_syscall;
15450 ops->remove_location = remove_catch_syscall;
15451 ops->breakpoint_hit = breakpoint_hit_catch_syscall;
15452 ops->print_it = print_it_catch_syscall;
15453 ops->print_one = print_one_catch_syscall;
15454 ops->print_mention = print_mention_catch_syscall;
15455 ops->print_recreate = print_recreate_catch_syscall;
edcc5120
TT
15456
15457 /* Solib-related catchpoints. */
15458 ops = &catch_solib_breakpoint_ops;
15459 *ops = base_breakpoint_ops;
15460 ops->dtor = dtor_catch_solib;
15461 ops->insert_location = insert_catch_solib;
15462 ops->remove_location = remove_catch_solib;
15463 ops->breakpoint_hit = breakpoint_hit_catch_solib;
15464 ops->check_status = check_status_catch_solib;
15465 ops->print_it = print_it_catch_solib;
15466 ops->print_one = print_one_catch_solib;
15467 ops->print_mention = print_mention_catch_solib;
15468 ops->print_recreate = print_recreate_catch_solib;
e7e0cddf
SS
15469
15470 ops = &dprintf_breakpoint_ops;
15471 *ops = bkpt_base_breakpoint_ops;
15472 ops->re_set = bkpt_re_set;
15473 ops->resources_needed = bkpt_resources_needed;
15474 ops->print_it = bkpt_print_it;
15475 ops->print_mention = bkpt_print_mention;
15476 ops->print_recreate = bkpt_print_recreate;
2060206e
PA
15477}
15478
c906108c 15479void
fba45db2 15480_initialize_breakpoint (void)
c906108c
SS
15481{
15482 struct cmd_list_element *c;
15483
2060206e
PA
15484 initialize_breakpoint_ops ();
15485
84acb35a 15486 observer_attach_solib_unloaded (disable_breakpoints_in_unloaded_shlib);
6c95b8df 15487 observer_attach_inferior_exit (clear_syscall_counts);
1f3b5d1b 15488 observer_attach_memory_changed (invalidate_bp_value_on_memory_change);
84acb35a 15489
55aa24fb
SDJ
15490 breakpoint_objfile_key
15491 = register_objfile_data_with_cleanup (NULL, free_breakpoint_probes);
17450429 15492
fa3064dd
YQ
15493 catch_syscall_inferior_data
15494 = register_inferior_data_with_cleanup (catch_syscall_inferior_data_cleanup);
15495
c906108c
SS
15496 breakpoint_chain = 0;
15497 /* Don't bother to call set_breakpoint_count. $bpnum isn't useful
15498 before a breakpoint is set. */
15499 breakpoint_count = 0;
15500
1042e4c0
SS
15501 tracepoint_count = 0;
15502
1bedd215
AC
15503 add_com ("ignore", class_breakpoint, ignore_command, _("\
15504Set ignore-count of breakpoint number N to COUNT.\n\
15505Usage is `ignore N COUNT'."));
c906108c 15506 if (xdb_commands)
c5aa993b 15507 add_com_alias ("bc", "ignore", class_breakpoint, 1);
c906108c 15508
1bedd215
AC
15509 add_com ("commands", class_breakpoint, commands_command, _("\
15510Set commands to be executed when a breakpoint is hit.\n\
c906108c
SS
15511Give breakpoint number as argument after \"commands\".\n\
15512With no argument, the targeted breakpoint is the last one set.\n\
15513The commands themselves follow starting on the next line.\n\
15514Type a line containing \"end\" to indicate the end of them.\n\
15515Give \"silent\" as the first line to make the breakpoint silent;\n\
1bedd215 15516then no output is printed when it is hit, except what the commands print."));
c906108c 15517
1bedd215
AC
15518 add_com ("condition", class_breakpoint, condition_command, _("\
15519Specify breakpoint number N to break only if COND is true.\n\
c906108c 15520Usage is `condition N COND', where N is an integer and COND is an\n\
1bedd215 15521expression to be evaluated whenever breakpoint N is reached."));
c906108c 15522
1bedd215 15523 c = add_com ("tbreak", class_breakpoint, tbreak_command, _("\
31e2b00f 15524Set a temporary breakpoint.\n\
c906108c
SS
15525Like \"break\" except the breakpoint is only temporary,\n\
15526so it will be deleted when hit. Equivalent to \"break\" followed\n\
31e2b00f
AS
15527by using \"enable delete\" on the breakpoint number.\n\
15528\n"
15529BREAK_ARGS_HELP ("tbreak")));
5ba2abeb 15530 set_cmd_completer (c, location_completer);
c94fdfd0 15531
1bedd215 15532 c = add_com ("hbreak", class_breakpoint, hbreak_command, _("\
a3be7890 15533Set a hardware assisted breakpoint.\n\
c906108c 15534Like \"break\" except the breakpoint requires hardware support,\n\
31e2b00f
AS
15535some target hardware may not have this support.\n\
15536\n"
15537BREAK_ARGS_HELP ("hbreak")));
5ba2abeb 15538 set_cmd_completer (c, location_completer);
c906108c 15539
1bedd215 15540 c = add_com ("thbreak", class_breakpoint, thbreak_command, _("\
31e2b00f 15541Set a temporary hardware assisted breakpoint.\n\
c906108c 15542Like \"hbreak\" except the breakpoint is only temporary,\n\
31e2b00f
AS
15543so it will be deleted when hit.\n\
15544\n"
15545BREAK_ARGS_HELP ("thbreak")));
5ba2abeb 15546 set_cmd_completer (c, location_completer);
c906108c 15547
1bedd215
AC
15548 add_prefix_cmd ("enable", class_breakpoint, enable_command, _("\
15549Enable some breakpoints.\n\
c906108c
SS
15550Give breakpoint numbers (separated by spaces) as arguments.\n\
15551With no subcommand, breakpoints are enabled until you command otherwise.\n\
15552This is used to cancel the effect of the \"disable\" command.\n\
1bedd215 15553With a subcommand you can enable temporarily."),
c906108c
SS
15554 &enablelist, "enable ", 1, &cmdlist);
15555 if (xdb_commands)
1bedd215
AC
15556 add_com ("ab", class_breakpoint, enable_command, _("\
15557Enable some breakpoints.\n\
c906108c
SS
15558Give breakpoint numbers (separated by spaces) as arguments.\n\
15559With no subcommand, breakpoints are enabled until you command otherwise.\n\
15560This is used to cancel the effect of the \"disable\" command.\n\
1bedd215 15561With a subcommand you can enable temporarily."));
c906108c
SS
15562
15563 add_com_alias ("en", "enable", class_breakpoint, 1);
15564
84951ab5 15565 add_prefix_cmd ("breakpoints", class_breakpoint, enable_command, _("\
1bedd215 15566Enable some breakpoints.\n\
c906108c
SS
15567Give breakpoint numbers (separated by spaces) as arguments.\n\
15568This is used to cancel the effect of the \"disable\" command.\n\
1bedd215 15569May be abbreviated to simply \"enable\".\n"),
c5aa993b 15570 &enablebreaklist, "enable breakpoints ", 1, &enablelist);
c906108c 15571
1a966eab
AC
15572 add_cmd ("once", no_class, enable_once_command, _("\
15573Enable breakpoints for one hit. Give breakpoint numbers.\n\
15574If a breakpoint is hit while enabled in this fashion, it becomes disabled."),
c906108c
SS
15575 &enablebreaklist);
15576
1a966eab
AC
15577 add_cmd ("delete", no_class, enable_delete_command, _("\
15578Enable breakpoints and delete when hit. Give breakpoint numbers.\n\
15579If a breakpoint is hit while enabled in this fashion, it is deleted."),
c906108c
SS
15580 &enablebreaklist);
15581
816338b5
SS
15582 add_cmd ("count", no_class, enable_count_command, _("\
15583Enable breakpoints for COUNT hits. Give count and then breakpoint numbers.\n\
15584If a breakpoint is hit while enabled in this fashion,\n\
15585the count is decremented; when it reaches zero, the breakpoint is disabled."),
15586 &enablebreaklist);
15587
1a966eab
AC
15588 add_cmd ("delete", no_class, enable_delete_command, _("\
15589Enable breakpoints and delete when hit. Give breakpoint numbers.\n\
15590If a breakpoint is hit while enabled in this fashion, it is deleted."),
c906108c
SS
15591 &enablelist);
15592
1a966eab
AC
15593 add_cmd ("once", no_class, enable_once_command, _("\
15594Enable breakpoints for one hit. Give breakpoint numbers.\n\
15595If a breakpoint is hit while enabled in this fashion, it becomes disabled."),
816338b5
SS
15596 &enablelist);
15597
15598 add_cmd ("count", no_class, enable_count_command, _("\
15599Enable breakpoints for COUNT hits. Give count and then breakpoint numbers.\n\
15600If a breakpoint is hit while enabled in this fashion,\n\
15601the count is decremented; when it reaches zero, the breakpoint is disabled."),
c906108c
SS
15602 &enablelist);
15603
1bedd215
AC
15604 add_prefix_cmd ("disable", class_breakpoint, disable_command, _("\
15605Disable some breakpoints.\n\
c906108c
SS
15606Arguments are breakpoint numbers with spaces in between.\n\
15607To disable all breakpoints, give no argument.\n\
64b9b334 15608A disabled breakpoint is not forgotten, but has no effect until re-enabled."),
c906108c
SS
15609 &disablelist, "disable ", 1, &cmdlist);
15610 add_com_alias ("dis", "disable", class_breakpoint, 1);
15611 add_com_alias ("disa", "disable", class_breakpoint, 1);
15612 if (xdb_commands)
1bedd215
AC
15613 add_com ("sb", class_breakpoint, disable_command, _("\
15614Disable some breakpoints.\n\
c906108c
SS
15615Arguments are breakpoint numbers with spaces in between.\n\
15616To disable all breakpoints, give no argument.\n\
64b9b334 15617A disabled breakpoint is not forgotten, but has no effect until re-enabled."));
c906108c 15618
1a966eab
AC
15619 add_cmd ("breakpoints", class_alias, disable_command, _("\
15620Disable some breakpoints.\n\
c906108c
SS
15621Arguments are breakpoint numbers with spaces in between.\n\
15622To disable all breakpoints, give no argument.\n\
64b9b334 15623A disabled breakpoint is not forgotten, but has no effect until re-enabled.\n\
1a966eab 15624This command may be abbreviated \"disable\"."),
c906108c
SS
15625 &disablelist);
15626
1bedd215
AC
15627 add_prefix_cmd ("delete", class_breakpoint, delete_command, _("\
15628Delete some breakpoints or auto-display expressions.\n\
c906108c
SS
15629Arguments are breakpoint numbers with spaces in between.\n\
15630To delete all breakpoints, give no argument.\n\
15631\n\
15632Also a prefix command for deletion of other GDB objects.\n\
1bedd215 15633The \"unset\" command is also an alias for \"delete\"."),
c906108c
SS
15634 &deletelist, "delete ", 1, &cmdlist);
15635 add_com_alias ("d", "delete", class_breakpoint, 1);
7f198e01 15636 add_com_alias ("del", "delete", class_breakpoint, 1);
c906108c 15637 if (xdb_commands)
1bedd215
AC
15638 add_com ("db", class_breakpoint, delete_command, _("\
15639Delete some breakpoints.\n\
c906108c 15640Arguments are breakpoint numbers with spaces in between.\n\
1bedd215 15641To delete all breakpoints, give no argument.\n"));
c906108c 15642
1a966eab
AC
15643 add_cmd ("breakpoints", class_alias, delete_command, _("\
15644Delete some breakpoints or auto-display expressions.\n\
c906108c
SS
15645Arguments are breakpoint numbers with spaces in between.\n\
15646To delete all breakpoints, give no argument.\n\
1a966eab 15647This command may be abbreviated \"delete\"."),
c906108c
SS
15648 &deletelist);
15649
1bedd215
AC
15650 add_com ("clear", class_breakpoint, clear_command, _("\
15651Clear breakpoint at specified line or function.\n\
c906108c
SS
15652Argument may be line number, function name, or \"*\" and an address.\n\
15653If line number is specified, all breakpoints in that line are cleared.\n\
15654If function is specified, breakpoints at beginning of function are cleared.\n\
1bedd215
AC
15655If an address is specified, breakpoints at that address are cleared.\n\
15656\n\
15657With no argument, clears all breakpoints in the line that the selected frame\n\
c906108c
SS
15658is executing in.\n\
15659\n\
1bedd215 15660See also the \"delete\" command which clears breakpoints by number."));
a6cc4789 15661 add_com_alias ("cl", "clear", class_breakpoint, 1);
c906108c 15662
1bedd215 15663 c = add_com ("break", class_breakpoint, break_command, _("\
31e2b00f
AS
15664Set breakpoint at specified line or function.\n"
15665BREAK_ARGS_HELP ("break")));
5ba2abeb 15666 set_cmd_completer (c, location_completer);
c94fdfd0 15667
c906108c
SS
15668 add_com_alias ("b", "break", class_run, 1);
15669 add_com_alias ("br", "break", class_run, 1);
15670 add_com_alias ("bre", "break", class_run, 1);
15671 add_com_alias ("brea", "break", class_run, 1);
15672
7681d515
PM
15673 if (xdb_commands)
15674 add_com_alias ("ba", "break", class_breakpoint, 1);
c906108c
SS
15675
15676 if (dbx_commands)
15677 {
1bedd215
AC
15678 add_abbrev_prefix_cmd ("stop", class_breakpoint, stop_command, _("\
15679Break in function/address or break at a line in the current file."),
c5aa993b
JM
15680 &stoplist, "stop ", 1, &cmdlist);
15681 add_cmd ("in", class_breakpoint, stopin_command,
1a966eab 15682 _("Break in function or address."), &stoplist);
c5aa993b 15683 add_cmd ("at", class_breakpoint, stopat_command,
1a966eab 15684 _("Break at a line in the current file."), &stoplist);
1bedd215
AC
15685 add_com ("status", class_info, breakpoints_info, _("\
15686Status of user-settable breakpoints, or breakpoint number NUMBER.\n\
c906108c
SS
15687The \"Type\" column indicates one of:\n\
15688\tbreakpoint - normal breakpoint\n\
15689\twatchpoint - watchpoint\n\
15690The \"Disp\" column contains one of \"keep\", \"del\", or \"dis\" to indicate\n\
15691the disposition of the breakpoint after it gets hit. \"dis\" means that the\n\
15692breakpoint will be disabled. The \"Address\" and \"What\" columns indicate the\n\
1bedd215
AC
15693address and file/line number respectively.\n\
15694\n\
15695Convenience variable \"$_\" and default examine address for \"x\"\n\
d1aa2f50
NR
15696are set to the address of the last breakpoint listed unless the command\n\
15697is prefixed with \"server \".\n\n\
c906108c 15698Convenience variable \"$bpnum\" contains the number of the last\n\
1bedd215 15699breakpoint set."));
c906108c
SS
15700 }
15701
1bedd215 15702 add_info ("breakpoints", breakpoints_info, _("\
e5a67952 15703Status of specified breakpoints (all user-settable breakpoints if no argument).\n\
c906108c
SS
15704The \"Type\" column indicates one of:\n\
15705\tbreakpoint - normal breakpoint\n\
15706\twatchpoint - watchpoint\n\
15707The \"Disp\" column contains one of \"keep\", \"del\", or \"dis\" to indicate\n\
15708the disposition of the breakpoint after it gets hit. \"dis\" means that the\n\
15709breakpoint will be disabled. The \"Address\" and \"What\" columns indicate the\n\
1bedd215
AC
15710address and file/line number respectively.\n\
15711\n\
15712Convenience variable \"$_\" and default examine address for \"x\"\n\
d1aa2f50
NR
15713are set to the address of the last breakpoint listed unless the command\n\
15714is prefixed with \"server \".\n\n\
c906108c 15715Convenience variable \"$bpnum\" contains the number of the last\n\
1bedd215 15716breakpoint set."));
c906108c 15717
6b04bdb7
MS
15718 add_info_alias ("b", "breakpoints", 1);
15719
c906108c 15720 if (xdb_commands)
1bedd215
AC
15721 add_com ("lb", class_breakpoint, breakpoints_info, _("\
15722Status of user-settable breakpoints, or breakpoint number NUMBER.\n\
c906108c
SS
15723The \"Type\" column indicates one of:\n\
15724\tbreakpoint - normal breakpoint\n\
15725\twatchpoint - watchpoint\n\
15726The \"Disp\" column contains one of \"keep\", \"del\", or \"dis\" to indicate\n\
15727the disposition of the breakpoint after it gets hit. \"dis\" means that the\n\
15728breakpoint will be disabled. The \"Address\" and \"What\" columns indicate the\n\
1bedd215
AC
15729address and file/line number respectively.\n\
15730\n\
15731Convenience variable \"$_\" and default examine address for \"x\"\n\
d1aa2f50
NR
15732are set to the address of the last breakpoint listed unless the command\n\
15733is prefixed with \"server \".\n\n\
c906108c 15734Convenience variable \"$bpnum\" contains the number of the last\n\
1bedd215 15735breakpoint set."));
c906108c 15736
1a966eab
AC
15737 add_cmd ("breakpoints", class_maintenance, maintenance_info_breakpoints, _("\
15738Status of all breakpoints, or breakpoint number NUMBER.\n\
c906108c
SS
15739The \"Type\" column indicates one of:\n\
15740\tbreakpoint - normal breakpoint\n\
15741\twatchpoint - watchpoint\n\
15742\tlongjmp - internal breakpoint used to step through longjmp()\n\
15743\tlongjmp resume - internal breakpoint at the target of longjmp()\n\
15744\tuntil - internal breakpoint used by the \"until\" command\n\
1a966eab
AC
15745\tfinish - internal breakpoint used by the \"finish\" command\n\
15746The \"Disp\" column contains one of \"keep\", \"del\", or \"dis\" to indicate\n\
c906108c
SS
15747the disposition of the breakpoint after it gets hit. \"dis\" means that the\n\
15748breakpoint will be disabled. The \"Address\" and \"What\" columns indicate the\n\
1a966eab
AC
15749address and file/line number respectively.\n\
15750\n\
15751Convenience variable \"$_\" and default examine address for \"x\"\n\
d1aa2f50
NR
15752are set to the address of the last breakpoint listed unless the command\n\
15753is prefixed with \"server \".\n\n\
c906108c 15754Convenience variable \"$bpnum\" contains the number of the last\n\
1a966eab 15755breakpoint set."),
c906108c
SS
15756 &maintenanceinfolist);
15757
44feb3ce
TT
15758 add_prefix_cmd ("catch", class_breakpoint, catch_command, _("\
15759Set catchpoints to catch events."),
15760 &catch_cmdlist, "catch ",
15761 0/*allow-unknown*/, &cmdlist);
15762
15763 add_prefix_cmd ("tcatch", class_breakpoint, tcatch_command, _("\
15764Set temporary catchpoints to catch events."),
15765 &tcatch_cmdlist, "tcatch ",
15766 0/*allow-unknown*/, &cmdlist);
15767
15768 /* Add catch and tcatch sub-commands. */
15769 add_catch_command ("catch", _("\
88e7d25d 15770Catch an exception, when caught."),
44feb3ce 15771 catch_catch_command,
a96d9b2e 15772 NULL,
44feb3ce
TT
15773 CATCH_PERMANENT,
15774 CATCH_TEMPORARY);
15775 add_catch_command ("throw", _("\
88e7d25d 15776Catch an exception, when thrown."),
44feb3ce 15777 catch_throw_command,
a96d9b2e 15778 NULL,
44feb3ce
TT
15779 CATCH_PERMANENT,
15780 CATCH_TEMPORARY);
15781 add_catch_command ("fork", _("Catch calls to fork."),
15782 catch_fork_command_1,
a96d9b2e 15783 NULL,
44feb3ce
TT
15784 (void *) (uintptr_t) catch_fork_permanent,
15785 (void *) (uintptr_t) catch_fork_temporary);
15786 add_catch_command ("vfork", _("Catch calls to vfork."),
15787 catch_fork_command_1,
a96d9b2e 15788 NULL,
44feb3ce
TT
15789 (void *) (uintptr_t) catch_vfork_permanent,
15790 (void *) (uintptr_t) catch_vfork_temporary);
15791 add_catch_command ("exec", _("Catch calls to exec."),
15792 catch_exec_command_1,
a96d9b2e
SDJ
15793 NULL,
15794 CATCH_PERMANENT,
15795 CATCH_TEMPORARY);
edcc5120
TT
15796 add_catch_command ("load", _("Catch loads of shared libraries.\n\
15797Usage: catch load [REGEX]\n\
15798If REGEX is given, only stop for libraries matching the regular expression."),
15799 catch_load_command_1,
15800 NULL,
15801 CATCH_PERMANENT,
15802 CATCH_TEMPORARY);
15803 add_catch_command ("unload", _("Catch unloads of shared libraries.\n\
15804Usage: catch unload [REGEX]\n\
15805If REGEX is given, only stop for libraries matching the regular expression."),
15806 catch_unload_command_1,
15807 NULL,
15808 CATCH_PERMANENT,
15809 CATCH_TEMPORARY);
a96d9b2e
SDJ
15810 add_catch_command ("syscall", _("\
15811Catch system calls by their names and/or numbers.\n\
15812Arguments say which system calls to catch. If no arguments\n\
15813are given, every system call will be caught.\n\
15814Arguments, if given, should be one or more system call names\n\
15815(if your system supports that), or system call numbers."),
15816 catch_syscall_command_1,
15817 catch_syscall_completer,
44feb3ce
TT
15818 CATCH_PERMANENT,
15819 CATCH_TEMPORARY);
c5aa993b 15820
1bedd215
AC
15821 c = add_com ("watch", class_breakpoint, watch_command, _("\
15822Set a watchpoint for an expression.\n\
06a64a0b 15823Usage: watch [-l|-location] EXPRESSION\n\
c906108c 15824A watchpoint stops execution of your program whenever the value of\n\
06a64a0b
TT
15825an expression changes.\n\
15826If -l or -location is given, this evaluates EXPRESSION and watches\n\
15827the memory to which it refers."));
65d12d83 15828 set_cmd_completer (c, expression_completer);
c906108c 15829
1bedd215
AC
15830 c = add_com ("rwatch", class_breakpoint, rwatch_command, _("\
15831Set a read watchpoint for an expression.\n\
06a64a0b 15832Usage: rwatch [-l|-location] EXPRESSION\n\
c906108c 15833A watchpoint stops execution of your program whenever the value of\n\
06a64a0b
TT
15834an expression is read.\n\
15835If -l or -location is given, this evaluates EXPRESSION and watches\n\
15836the memory to which it refers."));
65d12d83 15837 set_cmd_completer (c, expression_completer);
c906108c 15838
1bedd215
AC
15839 c = add_com ("awatch", class_breakpoint, awatch_command, _("\
15840Set a watchpoint for an expression.\n\
06a64a0b 15841Usage: awatch [-l|-location] EXPRESSION\n\
c906108c 15842A watchpoint stops execution of your program whenever the value of\n\
06a64a0b
TT
15843an expression is either read or written.\n\
15844If -l or -location is given, this evaluates EXPRESSION and watches\n\
15845the memory to which it refers."));
65d12d83 15846 set_cmd_completer (c, expression_completer);
c906108c 15847
d77f58be 15848 add_info ("watchpoints", watchpoints_info, _("\
e5a67952 15849Status of specified watchpoints (all watchpoints if no argument)."));
c906108c 15850
920d2a44
AC
15851 /* XXX: cagney/2005-02-23: This should be a boolean, and should
15852 respond to changes - contrary to the description. */
85c07804
AC
15853 add_setshow_zinteger_cmd ("can-use-hw-watchpoints", class_support,
15854 &can_use_hw_watchpoints, _("\
15855Set debugger's willingness to use watchpoint hardware."), _("\
15856Show debugger's willingness to use watchpoint hardware."), _("\
c906108c
SS
15857If zero, gdb will not use hardware for new watchpoints, even if\n\
15858such is available. (However, any hardware watchpoints that were\n\
15859created before setting this to nonzero, will continue to use watchpoint\n\
85c07804
AC
15860hardware.)"),
15861 NULL,
920d2a44 15862 show_can_use_hw_watchpoints,
85c07804 15863 &setlist, &showlist);
c906108c
SS
15864
15865 can_use_hw_watchpoints = 1;
fa8d40ab 15866
1042e4c0
SS
15867 /* Tracepoint manipulation commands. */
15868
15869 c = add_com ("trace", class_breakpoint, trace_command, _("\
15870Set a tracepoint at specified line or function.\n\
15871\n"
15872BREAK_ARGS_HELP ("trace") "\n\
15873Do \"help tracepoints\" for info on other tracepoint commands."));
15874 set_cmd_completer (c, location_completer);
15875
15876 add_com_alias ("tp", "trace", class_alias, 0);
15877 add_com_alias ("tr", "trace", class_alias, 1);
15878 add_com_alias ("tra", "trace", class_alias, 1);
15879 add_com_alias ("trac", "trace", class_alias, 1);
15880
7a697b8d
SS
15881 c = add_com ("ftrace", class_breakpoint, ftrace_command, _("\
15882Set a fast tracepoint at specified line or function.\n\
15883\n"
15884BREAK_ARGS_HELP ("ftrace") "\n\
15885Do \"help tracepoints\" for info on other tracepoint commands."));
15886 set_cmd_completer (c, location_completer);
15887
0fb4aa4b
PA
15888 c = add_com ("strace", class_breakpoint, strace_command, _("\
15889Set a static tracepoint at specified line, function or marker.\n\
15890\n\
15891strace [LOCATION] [if CONDITION]\n\
15892LOCATION may be a line number, function name, \"*\" and an address,\n\
15893or -m MARKER_ID.\n\
15894If a line number is specified, probe the marker at start of code\n\
15895for that line. If a function is specified, probe the marker at start\n\
15896of code for that function. If an address is specified, probe the marker\n\
15897at that exact address. If a marker id is specified, probe the marker\n\
15898with that name. With no LOCATION, uses current execution address of\n\
15899the selected stack frame.\n\
15900Static tracepoints accept an extra collect action -- ``collect $_sdata''.\n\
15901This collects arbitrary user data passed in the probe point call to the\n\
15902tracing library. You can inspect it when analyzing the trace buffer,\n\
15903by printing the $_sdata variable like any other convenience variable.\n\
15904\n\
15905CONDITION is a boolean expression.\n\
15906\n\
d41c0fc8
PA
15907Multiple tracepoints at one place are permitted, and useful if their\n\
15908conditions are different.\n\
0fb4aa4b
PA
15909\n\
15910Do \"help breakpoints\" for info on other commands dealing with breakpoints.\n\
15911Do \"help tracepoints\" for info on other tracepoint commands."));
15912 set_cmd_completer (c, location_completer);
15913
1042e4c0 15914 add_info ("tracepoints", tracepoints_info, _("\
e5a67952 15915Status of specified tracepoints (all tracepoints if no argument).\n\
1042e4c0
SS
15916Convenience variable \"$tpnum\" contains the number of the\n\
15917last tracepoint set."));
15918
15919 add_info_alias ("tp", "tracepoints", 1);
15920
15921 add_cmd ("tracepoints", class_trace, delete_trace_command, _("\
15922Delete specified tracepoints.\n\
15923Arguments are tracepoint numbers, separated by spaces.\n\
15924No argument means delete all tracepoints."),
15925 &deletelist);
15926
15927 c = add_cmd ("tracepoints", class_trace, disable_trace_command, _("\
15928Disable specified tracepoints.\n\
15929Arguments are tracepoint numbers, separated by spaces.\n\
15930No argument means disable all tracepoints."),
15931 &disablelist);
15932 deprecate_cmd (c, "disable");
15933
15934 c = add_cmd ("tracepoints", class_trace, enable_trace_command, _("\
15935Enable specified tracepoints.\n\
15936Arguments are tracepoint numbers, separated by spaces.\n\
15937No argument means enable all tracepoints."),
15938 &enablelist);
15939 deprecate_cmd (c, "enable");
15940
15941 add_com ("passcount", class_trace, trace_pass_command, _("\
15942Set the passcount for a tracepoint.\n\
15943The trace will end when the tracepoint has been passed 'count' times.\n\
15944Usage: passcount COUNT TPNUM, where TPNUM may also be \"all\";\n\
15945if TPNUM is omitted, passcount refers to the last tracepoint defined."));
15946
6149aea9
PA
15947 add_prefix_cmd ("save", class_breakpoint, save_command,
15948 _("Save breakpoint definitions as a script."),
15949 &save_cmdlist, "save ",
15950 0/*allow-unknown*/, &cmdlist);
15951
15952 c = add_cmd ("breakpoints", class_breakpoint, save_breakpoints_command, _("\
15953Save current breakpoint definitions as a script.\n\
cce7e648 15954This includes all types of breakpoints (breakpoints, watchpoints,\n\
6149aea9
PA
15955catchpoints, tracepoints). Use the 'source' command in another debug\n\
15956session to restore them."),
15957 &save_cmdlist);
15958 set_cmd_completer (c, filename_completer);
15959
15960 c = add_cmd ("tracepoints", class_trace, save_tracepoints_command, _("\
1042e4c0 15961Save current tracepoint definitions as a script.\n\
6149aea9
PA
15962Use the 'source' command in another debug session to restore them."),
15963 &save_cmdlist);
1042e4c0
SS
15964 set_cmd_completer (c, filename_completer);
15965
6149aea9
PA
15966 c = add_com_alias ("save-tracepoints", "save tracepoints", class_trace, 0);
15967 deprecate_cmd (c, "save tracepoints");
15968
1bedd215 15969 add_prefix_cmd ("breakpoint", class_maintenance, set_breakpoint_cmd, _("\
fa8d40ab
JJ
15970Breakpoint specific settings\n\
15971Configure various breakpoint-specific variables such as\n\
1bedd215 15972pending breakpoint behavior"),
fa8d40ab
JJ
15973 &breakpoint_set_cmdlist, "set breakpoint ",
15974 0/*allow-unknown*/, &setlist);
1bedd215 15975 add_prefix_cmd ("breakpoint", class_maintenance, show_breakpoint_cmd, _("\
fa8d40ab
JJ
15976Breakpoint specific settings\n\
15977Configure various breakpoint-specific variables such as\n\
1bedd215 15978pending breakpoint behavior"),
fa8d40ab
JJ
15979 &breakpoint_show_cmdlist, "show breakpoint ",
15980 0/*allow-unknown*/, &showlist);
15981
7915a72c
AC
15982 add_setshow_auto_boolean_cmd ("pending", no_class,
15983 &pending_break_support, _("\
15984Set debugger's behavior regarding pending breakpoints."), _("\
15985Show debugger's behavior regarding pending breakpoints."), _("\
6e1d7d6c
AC
15986If on, an unrecognized breakpoint location will cause gdb to create a\n\
15987pending breakpoint. If off, an unrecognized breakpoint location results in\n\
15988an error. If auto, an unrecognized breakpoint location results in a\n\
7915a72c 15989user-query to see if a pending breakpoint should be created."),
2c5b56ce 15990 NULL,
920d2a44 15991 show_pending_break_support,
6e1d7d6c
AC
15992 &breakpoint_set_cmdlist,
15993 &breakpoint_show_cmdlist);
fa8d40ab
JJ
15994
15995 pending_break_support = AUTO_BOOLEAN_AUTO;
765dc015
VP
15996
15997 add_setshow_boolean_cmd ("auto-hw", no_class,
15998 &automatic_hardware_breakpoints, _("\
15999Set automatic usage of hardware breakpoints."), _("\
16000Show automatic usage of hardware breakpoints."), _("\
16001If set, the debugger will automatically use hardware breakpoints for\n\
16002breakpoints set with \"break\" but falling in read-only memory. If not set,\n\
16003a warning will be emitted for such breakpoints."),
16004 NULL,
16005 show_automatic_hardware_breakpoints,
16006 &breakpoint_set_cmdlist,
16007 &breakpoint_show_cmdlist);
74960c60 16008
33e5cbd6
PA
16009 add_setshow_enum_cmd ("always-inserted", class_support,
16010 always_inserted_enums, &always_inserted_mode, _("\
74960c60
VP
16011Set mode for inserting breakpoints."), _("\
16012Show mode for inserting breakpoints."), _("\
33e5cbd6
PA
16013When this mode is off, breakpoints are inserted in inferior when it is\n\
16014resumed, and removed when execution stops. When this mode is on,\n\
16015breakpoints are inserted immediately and removed only when the user\n\
16016deletes the breakpoint. When this mode is auto (which is the default),\n\
16017the behaviour depends on the non-stop setting (see help set non-stop).\n\
16018In this case, if gdb is controlling the inferior in non-stop mode, gdb\n\
16019behaves as if always-inserted mode is on; if gdb is controlling the\n\
16020inferior in all-stop mode, gdb behaves as if always-inserted mode is off."),
74960c60
VP
16021 NULL,
16022 &show_always_inserted_mode,
16023 &breakpoint_set_cmdlist,
16024 &breakpoint_show_cmdlist);
f1310107 16025
b775012e
LM
16026 add_setshow_enum_cmd ("condition-evaluation", class_breakpoint,
16027 condition_evaluation_enums,
16028 &condition_evaluation_mode_1, _("\
16029Set mode of breakpoint condition evaluation."), _("\
16030Show mode of breakpoint condition evaluation."), _("\
d1cda5d9 16031When this is set to \"host\", breakpoint conditions will be\n\
b775012e
LM
16032evaluated on the host's side by GDB. When it is set to \"target\",\n\
16033breakpoint conditions will be downloaded to the target (if the target\n\
16034supports such feature) and conditions will be evaluated on the target's side.\n\
16035If this is set to \"auto\" (default), this will be automatically set to\n\
16036\"target\" if it supports condition evaluation, otherwise it will\n\
16037be set to \"gdb\""),
16038 &set_condition_evaluation_mode,
16039 &show_condition_evaluation_mode,
16040 &breakpoint_set_cmdlist,
16041 &breakpoint_show_cmdlist);
16042
f1310107
TJB
16043 add_com ("break-range", class_breakpoint, break_range_command, _("\
16044Set a breakpoint for an address range.\n\
16045break-range START-LOCATION, END-LOCATION\n\
16046where START-LOCATION and END-LOCATION can be one of the following:\n\
16047 LINENUM, for that line in the current file,\n\
16048 FILE:LINENUM, for that line in that file,\n\
16049 +OFFSET, for that number of lines after the current line\n\
16050 or the start of the range\n\
16051 FUNCTION, for the first line in that function,\n\
16052 FILE:FUNCTION, to distinguish among like-named static functions.\n\
16053 *ADDRESS, for the instruction at that address.\n\
16054\n\
16055The breakpoint will stop execution of the inferior whenever it executes\n\
16056an instruction at any address within the [START-LOCATION, END-LOCATION]\n\
16057range (including START-LOCATION and END-LOCATION)."));
16058
e7e0cddf
SS
16059 c = add_com ("dprintf", class_breakpoint, dprintf_command, _("\
16060Set a dynamic printf at specified line or function.\n\
16061dprintf location,format string,arg1,arg2,...\n\
16062location may be a line number, function name, or \"*\" and an address.\n\
16063If a line number is specified, break at start of code for that line.\n\
16064If a function is specified, break at start of code for that function.\n\
16065"));
16066 set_cmd_completer (c, location_completer);
16067
16068 add_setshow_enum_cmd ("dprintf-style", class_support,
16069 dprintf_style_enums, &dprintf_style, _("\
16070Set the style of usage for dynamic printf."), _("\
16071Show the style of usage for dynamic printf."), _("\
16072This setting chooses how GDB will do a dynamic printf.\n\
16073If the value is \"gdb\", then the printing is done by GDB to its own\n\
16074console, as with the \"printf\" command.\n\
16075If the value is \"call\", the print is done by calling a function in your\n\
16076program; by default printf(), but you can choose a different function or\n\
16077output stream by setting dprintf-function and dprintf-channel."),
16078 update_dprintf_commands, NULL,
16079 &setlist, &showlist);
16080
16081 dprintf_function = xstrdup ("printf");
16082 add_setshow_string_cmd ("dprintf-function", class_support,
16083 &dprintf_function, _("\
16084Set the function to use for dynamic printf"), _("\
16085Show the function to use for dynamic printf"), NULL,
16086 update_dprintf_commands, NULL,
16087 &setlist, &showlist);
16088
16089 dprintf_channel = xstrdup ("");
16090 add_setshow_string_cmd ("dprintf-channel", class_support,
16091 &dprintf_channel, _("\
16092Set the channel to use for dynamic printf"), _("\
16093Show the channel to use for dynamic printf"), NULL,
16094 update_dprintf_commands, NULL,
16095 &setlist, &showlist);
16096
765dc015 16097 automatic_hardware_breakpoints = 1;
f3b1572e
PA
16098
16099 observer_attach_about_to_proceed (breakpoint_about_to_proceed);
c906108c 16100}
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