* ada-lang.c (ada_read_renaming_var_value): Pass const
[deliverable/binutils-gdb.git] / gdb / mi / mi-interp.c
CommitLineData
4a8f6654
AC
1/* MI Interpreter Definitions and Commands for GDB, the GNU debugger.
2
28e7fd62 3 Copyright (C) 2002-2013 Free Software Foundation, Inc.
4a8f6654
AC
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
4a8f6654
AC
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
4a8f6654
AC
19
20#include "defs.h"
21#include "gdb_string.h"
22#include "interps.h"
23#include "event-top.h"
24#include "event-loop.h"
25#include "inferior.h"
26#include "ui-out.h"
27#include "top.h"
c1043fc2 28#include "exceptions.h"
4a8f6654
AC
29#include "mi-main.h"
30#include "mi-cmds.h"
31#include "mi-out.h"
32#include "mi-console.h"
66bb093b 33#include "mi-common.h"
683f2885
VP
34#include "observer.h"
35#include "gdbthread.h"
c86cf029 36#include "solist.h"
8d3788bd 37#include "gdb.h"
8de0566d 38#include "objfiles.h"
134a2066 39#include "tracepoint.h"
4a8f6654 40
2b03b41d
SS
41/* These are the interpreter setup, etc. functions for the MI
42 interpreter. */
43
4a8f6654 44static void mi_execute_command_wrapper (char *cmd);
e837f12a 45static void mi_execute_command_input_handler (char *cmd);
4a8f6654 46static void mi_command_loop (int mi_version);
4a8f6654
AC
47
48/* These are hooks that we put in place while doing interpreter_exec
2b03b41d
SS
49 so we can report interesting things that happened "behind the MI's
50 back" in this command. */
51
bee0189a 52static int mi_interp_query_hook (const char *ctlstr, va_list ap)
2b03b41d 53 ATTRIBUTE_PRINTF (1, 0);
4a8f6654 54
f786f615 55static void mi3_command_loop (void);
4a8f6654
AC
56static void mi2_command_loop (void);
57static void mi1_command_loop (void);
58
59static void mi_insert_notify_hooks (void);
60static void mi_remove_notify_hooks (void);
1d33d6ba 61static void mi_on_normal_stop (struct bpstats *bs, int print_frame);
4a8f6654 62
683f2885 63static void mi_new_thread (struct thread_info *t);
a07daef3 64static void mi_thread_exit (struct thread_info *t, int silent);
82a90ccf 65static void mi_record_changed (struct inferior*, int);
a79b8f6e
VP
66static void mi_inferior_added (struct inferior *inf);
67static void mi_inferior_appeared (struct inferior *inf);
68static void mi_inferior_exit (struct inferior *inf);
69static void mi_inferior_removed (struct inferior *inf);
e1ac3328 70static void mi_on_resume (ptid_t ptid);
c86cf029
VP
71static void mi_solib_loaded (struct so_list *solib);
72static void mi_solib_unloaded (struct so_list *solib);
f3b1572e 73static void mi_about_to_proceed (void);
201b4506 74static void mi_traceframe_changed (int tfnum, int tpnum);
134a2066
YQ
75static void mi_tsv_created (const struct trace_state_variable *tsv);
76static void mi_tsv_deleted (const struct trace_state_variable *tsv);
77static void mi_tsv_modified (const struct trace_state_variable *tsv);
8d3788bd
VP
78static void mi_breakpoint_created (struct breakpoint *b);
79static void mi_breakpoint_deleted (struct breakpoint *b);
80static void mi_breakpoint_modified (struct breakpoint *b);
5b9afe8a 81static void mi_command_param_changed (const char *param, const char *value);
8de0566d
YQ
82static void mi_memory_changed (struct inferior *inf, CORE_ADDR memaddr,
83 ssize_t len, const bfd_byte *myaddr);
683f2885 84
a79b8f6e
VP
85static int report_initial_inferior (struct inferior *inf, void *closure);
86
4a8f6654 87static void *
4801a9a3 88mi_interpreter_init (struct interp *interp, int top_level)
4a8f6654
AC
89{
90 struct mi_interp *mi = XMALLOC (struct mi_interp);
4801a9a3
PA
91 const char *name;
92 int mi_version;
4a8f6654 93
bf6309af
SS
94 /* Assign the output channel created at startup to its own global,
95 so that we can create a console channel that encapsulates and
96 prefixes all gdb_output-type bits coming from the rest of the
97 debugger. */
4a8f6654 98
bf6309af 99 raw_stdout = gdb_stdout;
4a8f6654 100
2b03b41d
SS
101 /* Create MI console channels, each with a different prefix so they
102 can be distinguished. */
4a8f6654
AC
103 mi->out = mi_console_file_new (raw_stdout, "~", '"');
104 mi->err = mi_console_file_new (raw_stdout, "&", '"');
105 mi->log = mi->err;
106 mi->targ = mi_console_file_new (raw_stdout, "@", '"');
107 mi->event_channel = mi_console_file_new (raw_stdout, "=", 0);
108
4801a9a3
PA
109 name = interp_name (interp);
110 /* INTERP_MI selects the most recent released version. "mi2" was
111 released as part of GDB 6.0. */
112 if (strcmp (name, INTERP_MI) == 0)
113 mi_version = 2;
114 else if (strcmp (name, INTERP_MI1) == 0)
115 mi_version = 1;
116 else if (strcmp (name, INTERP_MI2) == 0)
117 mi_version = 2;
118 else if (strcmp (name, INTERP_MI3) == 0)
119 mi_version = 3;
120 else
121 gdb_assert_not_reached ("unhandled MI version");
122
123 mi->uiout = mi_out_new (mi_version);
124
683f2885 125 if (top_level)
063bfe2e
VP
126 {
127 observer_attach_new_thread (mi_new_thread);
128 observer_attach_thread_exit (mi_thread_exit);
a79b8f6e 129 observer_attach_inferior_added (mi_inferior_added);
6c95b8df 130 observer_attach_inferior_appeared (mi_inferior_appeared);
4a92f99b 131 observer_attach_inferior_exit (mi_inferior_exit);
a79b8f6e 132 observer_attach_inferior_removed (mi_inferior_removed);
82a90ccf 133 observer_attach_record_changed (mi_record_changed);
f7f9a841 134 observer_attach_normal_stop (mi_on_normal_stop);
e1ac3328 135 observer_attach_target_resumed (mi_on_resume);
c86cf029
VP
136 observer_attach_solib_loaded (mi_solib_loaded);
137 observer_attach_solib_unloaded (mi_solib_unloaded);
f3b1572e 138 observer_attach_about_to_proceed (mi_about_to_proceed);
201b4506 139 observer_attach_traceframe_changed (mi_traceframe_changed);
bb25a15c
YQ
140 observer_attach_tsv_created (mi_tsv_created);
141 observer_attach_tsv_deleted (mi_tsv_deleted);
134a2066 142 observer_attach_tsv_modified (mi_tsv_modified);
8d3788bd
VP
143 observer_attach_breakpoint_created (mi_breakpoint_created);
144 observer_attach_breakpoint_deleted (mi_breakpoint_deleted);
145 observer_attach_breakpoint_modified (mi_breakpoint_modified);
5b9afe8a 146 observer_attach_command_param_changed (mi_command_param_changed);
8de0566d 147 observer_attach_memory_changed (mi_memory_changed);
a79b8f6e 148
2b03b41d
SS
149 /* The initial inferior is created before this function is
150 called, so we need to report it explicitly. Use iteration in
151 case future version of GDB creates more than one inferior
152 up-front. */
a79b8f6e 153 iterate_over_inferiors (report_initial_inferior, mi);
063bfe2e 154 }
683f2885 155
4a8f6654
AC
156 return mi;
157}
158
159static int
160mi_interpreter_resume (void *data)
161{
162 struct mi_interp *mi = data;
4a8f6654 163
2b03b41d
SS
164 /* As per hack note in mi_interpreter_init, swap in the output
165 channels... */
4a8f6654
AC
166 gdb_setup_readline ();
167
362646f5
AC
168 /* These overwrite some of the initialization done in
169 _intialize_event_loop. */
170 call_readline = gdb_readline2;
e837f12a 171 input_handler = mi_execute_command_input_handler;
362646f5
AC
172 add_file_handler (input_fd, stdin_event_handler, 0);
173 async_command_editing_p = 0;
174 /* FIXME: This is a total hack for now. PB's use of the MI
175 implicitly relies on a bug in the async support which allows
176 asynchronous commands to leak through the commmand loop. The bug
177 involves (but is not limited to) the fact that sync_execution was
178 erroneously initialized to 0. Duplicate by initializing it thus
179 here... */
180 sync_execution = 0;
4a8f6654
AC
181
182 gdb_stdout = mi->out;
2b03b41d 183 /* Route error and log output through the MI. */
4a8f6654
AC
184 gdb_stderr = mi->err;
185 gdb_stdlog = mi->log;
2b03b41d 186 /* Route target output through the MI. */
4a8f6654 187 gdb_stdtarg = mi->targ;
2b03b41d 188 /* Route target error through the MI as well. */
1f20321b 189 gdb_stdtargerr = mi->targ;
4a8f6654
AC
190
191 /* Replace all the hooks that we know about. There really needs to
192 be a better way of doing this... */
193 clear_interpreter_hooks ();
194
9a4105ab 195 deprecated_show_load_progress = mi_load_progress;
4a8f6654 196
2b03b41d 197 /* If we're _the_ interpreter, take control. */
4a8f6654 198 if (current_interp_named_p (INTERP_MI1))
9a4105ab 199 deprecated_command_loop_hook = mi1_command_loop;
f786f615 200 else if (current_interp_named_p (INTERP_MI2))
9a4105ab 201 deprecated_command_loop_hook = mi2_command_loop;
f786f615 202 else if (current_interp_named_p (INTERP_MI3))
9a4105ab 203 deprecated_command_loop_hook = mi3_command_loop;
4a8f6654 204 else
9a4105ab 205 deprecated_command_loop_hook = mi2_command_loop;
4a8f6654
AC
206
207 return 1;
208}
209
210static int
211mi_interpreter_suspend (void *data)
212{
213 gdb_disable_readline ();
214 return 1;
215}
216
71fff37b 217static struct gdb_exception
4a8f6654
AC
218mi_interpreter_exec (void *data, const char *command)
219{
220 char *tmp = alloca (strlen (command) + 1);
102040f0 221
4a8f6654
AC
222 strcpy (tmp, command);
223 mi_execute_command_wrapper (tmp);
c1043fc2 224 return exception_none;
4a8f6654
AC
225}
226
2b03b41d
SS
227/* Never display the default GDB prompt in MI case. */
228
4a8f6654
AC
229static int
230mi_interpreter_prompt_p (void *data)
231{
232 return 0;
233}
234
ce8f13f8 235void
4a8f6654
AC
236mi_cmd_interpreter_exec (char *command, char **argv, int argc)
237{
238 struct interp *interp_to_use;
4a8f6654 239 int i;
a13e061a
PA
240 char *mi_error_message = NULL;
241 struct cleanup *old_chain;
4a8f6654
AC
242
243 if (argc < 2)
1b05df00 244 error (_("-interpreter-exec: "
9b20d036 245 "Usage: -interpreter-exec interp command"));
4a8f6654
AC
246
247 interp_to_use = interp_lookup (argv[0]);
248 if (interp_to_use == NULL)
1b05df00 249 error (_("-interpreter-exec: could not find interpreter \"%s\""),
9a2b4c1b 250 argv[0]);
4a8f6654
AC
251
252 if (!interp_exec_p (interp_to_use))
1b05df00 253 error (_("-interpreter-exec: interpreter \"%s\" "
9b20d036 254 "does not support command execution"),
a13e061a 255 argv[0]);
4a8f6654 256
2b03b41d
SS
257 /* Insert the MI out hooks, making sure to also call the
258 interpreter's hooks if it has any. */
259 /* KRS: We shouldn't need this... Events should be installed and
260 they should just ALWAYS fire something out down the MI
261 channel. */
4a8f6654
AC
262 mi_insert_notify_hooks ();
263
2b03b41d 264 /* Now run the code. */
4a8f6654 265
a13e061a 266 old_chain = make_cleanup (null_cleanup, 0);
4a8f6654
AC
267 for (i = 1; i < argc; i++)
268 {
32c1e744 269 struct gdb_exception e = interp_exec (interp_to_use, argv[i]);
102040f0 270
32c1e744
VP
271 if (e.reason < 0)
272 {
273 mi_error_message = xstrdup (e.message);
a13e061a 274 make_cleanup (xfree, mi_error_message);
32c1e744
VP
275 break;
276 }
4a8f6654
AC
277 }
278
279 mi_remove_notify_hooks ();
280
a13e061a
PA
281 if (mi_error_message != NULL)
282 error ("%s", mi_error_message);
283 do_cleanups (old_chain);
4a8f6654
AC
284}
285
2b03b41d
SS
286/* This inserts a number of hooks that are meant to produce
287 async-notify ("=") MI messages while running commands in another
288 interpreter using mi_interpreter_exec. The canonical use for this
289 is to allow access to the gdb CLI interpreter from within the MI,
290 while still producing MI style output when actions in the CLI
291 command change GDB's state. */
4a8f6654
AC
292
293static void
294mi_insert_notify_hooks (void)
295{
9a4105ab 296 deprecated_query_hook = mi_interp_query_hook;
4a8f6654
AC
297}
298
299static void
11308a41 300mi_remove_notify_hooks (void)
4a8f6654 301{
9a4105ab 302 deprecated_query_hook = NULL;
4a8f6654
AC
303}
304
305static int
306mi_interp_query_hook (const char *ctlstr, va_list ap)
307{
308 return 1;
309}
310
4a8f6654
AC
311static void
312mi_execute_command_wrapper (char *cmd)
313{
314 mi_execute_command (cmd, stdin == instream);
315}
316
e837f12a
JK
317/* mi_execute_command_wrapper wrapper suitable for INPUT_HANDLER. */
318
319static void
320mi_execute_command_input_handler (char *cmd)
321{
322 mi_execute_command_wrapper (cmd);
323
324 fputs_unfiltered ("(gdb) \n", raw_stdout);
325 gdb_flush (raw_stdout);
326}
327
4a8f6654
AC
328static void
329mi1_command_loop (void)
330{
331 mi_command_loop (1);
332}
333
334static void
335mi2_command_loop (void)
336{
337 mi_command_loop (2);
338}
339
f786f615
AC
340static void
341mi3_command_loop (void)
342{
343 mi_command_loop (3);
344}
345
4a8f6654
AC
346static void
347mi_command_loop (int mi_version)
348{
4a8f6654 349 /* Turn off 8 bit strings in quoted output. Any character with the
2b03b41d 350 high bit set is printed using C's octal format. */
4a8f6654 351 sevenbit_strings = 1;
2b03b41d
SS
352
353 /* Tell the world that we're alive. */
4a8f6654
AC
354 fputs_unfiltered ("(gdb) \n", raw_stdout);
355 gdb_flush (raw_stdout);
2b03b41d 356
362646f5 357 start_event_loop ();
4a8f6654
AC
358}
359
683f2885
VP
360static void
361mi_new_thread (struct thread_info *t)
362{
363 struct mi_interp *mi = top_level_interpreter_data ();
a79b8f6e
VP
364 struct inferior *inf = find_inferior_pid (ptid_get_pid (t->ptid));
365
366 gdb_assert (inf);
683f2885 367
3d043ef6 368 fprintf_unfiltered (mi->event_channel,
a79b8f6e
VP
369 "thread-created,id=\"%d\",group-id=\"i%d\"",
370 t->num, inf->num);
683f2885
VP
371 gdb_flush (mi->event_channel);
372}
373
063bfe2e 374static void
a07daef3 375mi_thread_exit (struct thread_info *t, int silent)
063bfe2e 376{
a07daef3 377 struct mi_interp *mi;
a79b8f6e 378 struct inferior *inf;
a07daef3
PA
379
380 if (silent)
381 return;
382
a79b8f6e
VP
383 inf = find_inferior_pid (ptid_get_pid (t->ptid));
384
a07daef3 385 mi = top_level_interpreter_data ();
063bfe2e 386 target_terminal_ours ();
3d043ef6 387 fprintf_unfiltered (mi->event_channel,
a79b8f6e
VP
388 "thread-exited,id=\"%d\",group-id=\"i%d\"",
389 t->num, inf->num);
063bfe2e
VP
390 gdb_flush (mi->event_channel);
391}
392
82a90ccf
YQ
393/* Emit notification on changing the state of record. */
394
395static void
396mi_record_changed (struct inferior *inferior, int started)
397{
398 struct mi_interp *mi = top_level_interpreter_data ();
399
400 fprintf_unfiltered (mi->event_channel, "record-%s,thread-group=\"i%d\"",
401 started ? "started" : "stopped", inferior->num);
402
403 gdb_flush (mi->event_channel);
404}
405
a79b8f6e
VP
406static void
407mi_inferior_added (struct inferior *inf)
408{
409 struct mi_interp *mi = top_level_interpreter_data ();
102040f0 410
a79b8f6e
VP
411 target_terminal_ours ();
412 fprintf_unfiltered (mi->event_channel,
413 "thread-group-added,id=\"i%d\"",
414 inf->num);
415 gdb_flush (mi->event_channel);
416}
417
418static void
419mi_inferior_appeared (struct inferior *inf)
4a92f99b
VP
420{
421 struct mi_interp *mi = top_level_interpreter_data ();
102040f0 422
4a92f99b 423 target_terminal_ours ();
a79b8f6e
VP
424 fprintf_unfiltered (mi->event_channel,
425 "thread-group-started,id=\"i%d\",pid=\"%d\"",
426 inf->num, inf->pid);
4a92f99b
VP
427 gdb_flush (mi->event_channel);
428}
429
430static void
a79b8f6e 431mi_inferior_exit (struct inferior *inf)
4a92f99b
VP
432{
433 struct mi_interp *mi = top_level_interpreter_data ();
102040f0 434
4a92f99b 435 target_terminal_ours ();
8cf64490
TT
436 if (inf->has_exit_code)
437 fprintf_unfiltered (mi->event_channel,
438 "thread-group-exited,id=\"i%d\",exit-code=\"%s\"",
439 inf->num, int_string (inf->exit_code, 8, 0, 0, 1));
440 else
441 fprintf_unfiltered (mi->event_channel,
442 "thread-group-exited,id=\"i%d\"", inf->num);
443
4a92f99b
VP
444 gdb_flush (mi->event_channel);
445}
446
a79b8f6e
VP
447static void
448mi_inferior_removed (struct inferior *inf)
449{
450 struct mi_interp *mi = top_level_interpreter_data ();
102040f0 451
a79b8f6e
VP
452 target_terminal_ours ();
453 fprintf_unfiltered (mi->event_channel,
454 "thread-group-removed,id=\"i%d\"",
455 inf->num);
456 gdb_flush (mi->event_channel);
457}
458
f7f9a841 459static void
1d33d6ba 460mi_on_normal_stop (struct bpstats *bs, int print_frame)
f7f9a841
VP
461{
462 /* Since this can be called when CLI command is executing,
463 using cli interpreter, be sure to use MI uiout for output,
464 not the current one. */
1d33d6ba 465 struct ui_out *mi_uiout = interp_ui_out (top_level_interpreter ());
f7f9a841 466
1d33d6ba
VP
467 if (print_frame)
468 {
dc146f7c 469 int core;
102040f0 470
79a45e25 471 if (current_uiout != mi_uiout)
1d33d6ba 472 {
2b03b41d
SS
473 /* The normal_stop function has printed frame information
474 into CLI uiout, or some other non-MI uiout. There's no
475 way we can extract proper fields from random uiout
476 object, so we print the frame again. In practice, this
477 can only happen when running a CLI command in MI. */
79a45e25 478 struct ui_out *saved_uiout = current_uiout;
36dfb11c
TT
479 struct target_waitstatus last;
480 ptid_t last_ptid;
102040f0 481
79a45e25 482 current_uiout = mi_uiout;
36dfb11c
TT
483
484 get_last_target_status (&last_ptid, &last);
485 bpstat_print (bs, last.kind);
486
1d33d6ba 487 print_stack_frame (get_selected_frame (NULL), 0, SRC_AND_LOC);
79a45e25 488 current_uiout = saved_uiout;
1d33d6ba
VP
489 }
490
491 ui_out_field_int (mi_uiout, "thread-id",
492 pid_to_thread_id (inferior_ptid));
493 if (non_stop)
494 {
495 struct cleanup *back_to = make_cleanup_ui_out_list_begin_end
496 (mi_uiout, "stopped-threads");
102040f0 497
1d33d6ba 498 ui_out_field_int (mi_uiout, NULL,
102040f0 499 pid_to_thread_id (inferior_ptid));
1d33d6ba
VP
500 do_cleanups (back_to);
501 }
502 else
503 ui_out_field_string (mi_uiout, "stopped-threads", "all");
dc146f7c
VP
504
505 core = target_core_of_thread (inferior_ptid);
506 if (core != -1)
507 ui_out_field_int (mi_uiout, "core", core);
1d33d6ba
VP
508 }
509
f7f9a841 510 fputs_unfiltered ("*stopped", raw_stdout);
1d33d6ba
VP
511 mi_out_put (mi_uiout, raw_stdout);
512 mi_out_rewind (mi_uiout);
4333ada3 513 mi_print_timing_maybe ();
f7f9a841
VP
514 fputs_unfiltered ("\n", raw_stdout);
515 gdb_flush (raw_stdout);
516}
517
f3b1572e
PA
518static void
519mi_about_to_proceed (void)
520{
521 /* Suppress output while calling an inferior function. */
522
523 if (!ptid_equal (inferior_ptid, null_ptid))
524 {
525 struct thread_info *tp = inferior_thread ();
102040f0 526
16c381f0 527 if (tp->control.in_infcall)
f3b1572e
PA
528 return;
529 }
530
531 mi_proceeded = 1;
532}
533
5b9afe8a
YQ
534/* When the element is non-zero, no MI notifications will be emitted in
535 response to the corresponding observers. */
2b03b41d 536
5b9afe8a
YQ
537struct mi_suppress_notification mi_suppress_notification =
538 {
539 0,
540 0,
201b4506 541 0,
5b9afe8a 542 };
8d3788bd 543
201b4506
YQ
544/* Emit notification on changing a traceframe. */
545
546static void
547mi_traceframe_changed (int tfnum, int tpnum)
548{
549 struct mi_interp *mi = top_level_interpreter_data ();
550
551 if (mi_suppress_notification.traceframe)
552 return;
553
554 target_terminal_ours ();
555
556 if (tfnum >= 0)
557 fprintf_unfiltered (mi->event_channel, "traceframe-changed,"
558 "num=\"%d\",tracepoint=\"%d\"\n",
559 tfnum, tpnum);
560 else
561 fprintf_unfiltered (mi->event_channel, "traceframe-changed,end");
562
563 gdb_flush (mi->event_channel);
564}
565
bb25a15c
YQ
566/* Emit notification on creating a trace state variable. */
567
568static void
134a2066 569mi_tsv_created (const struct trace_state_variable *tsv)
bb25a15c
YQ
570{
571 struct mi_interp *mi = top_level_interpreter_data ();
572
573 target_terminal_ours ();
574
575 fprintf_unfiltered (mi->event_channel, "tsv-created,"
134a2066
YQ
576 "name=\"%s\",initial=\"%s\"\n",
577 tsv->name, plongest (tsv->initial_value));
bb25a15c
YQ
578
579 gdb_flush (mi->event_channel);
580}
581
582/* Emit notification on deleting a trace state variable. */
583
584static void
134a2066 585mi_tsv_deleted (const struct trace_state_variable *tsv)
bb25a15c
YQ
586{
587 struct mi_interp *mi = top_level_interpreter_data ();
588
589 target_terminal_ours ();
590
134a2066 591 if (tsv != NULL)
bb25a15c 592 fprintf_unfiltered (mi->event_channel, "tsv-deleted,"
134a2066 593 "name=\"%s\"\n", tsv->name);
bb25a15c
YQ
594 else
595 fprintf_unfiltered (mi->event_channel, "tsv-deleted\n");
596
597 gdb_flush (mi->event_channel);
598}
599
134a2066
YQ
600/* Emit notification on modifying a trace state variable. */
601
602static void
603mi_tsv_modified (const struct trace_state_variable *tsv)
604{
605 struct mi_interp *mi = top_level_interpreter_data ();
606 struct ui_out *mi_uiout = interp_ui_out (top_level_interpreter ());
607
608 target_terminal_ours ();
609
610 fprintf_unfiltered (mi->event_channel,
611 "tsv-modified");
612
613 ui_out_redirect (mi_uiout, mi->event_channel);
614
615 ui_out_field_string (mi_uiout, "name", tsv->name);
616 ui_out_field_string (mi_uiout, "initial",
617 plongest (tsv->initial_value));
618 if (tsv->value_known)
619 ui_out_field_string (mi_uiout, "current", plongest (tsv->value));
620
621 ui_out_redirect (mi_uiout, NULL);
622
623 gdb_flush (mi->event_channel);
624}
625
8d3788bd 626/* Emit notification about a created breakpoint. */
2b03b41d 627
8d3788bd
VP
628static void
629mi_breakpoint_created (struct breakpoint *b)
630{
631 struct mi_interp *mi = top_level_interpreter_data ();
632 struct ui_out *mi_uiout = interp_ui_out (top_level_interpreter ());
bfd189b1 633 volatile struct gdb_exception e;
8d3788bd 634
5b9afe8a 635 if (mi_suppress_notification.breakpoint)
8d3788bd
VP
636 return;
637
638 if (b->number <= 0)
639 return;
640
641 target_terminal_ours ();
642 fprintf_unfiltered (mi->event_channel,
643 "breakpoint-created");
644 /* We want the output from gdb_breakpoint_query to go to
2b03b41d
SS
645 mi->event_channel. One approach would be to just call
646 gdb_breakpoint_query, and then use mi_out_put to send the current
647 content of mi_outout into mi->event_channel. However, that will
648 break if anything is output to mi_uiout prior to calling the
649 breakpoint_created notifications. So, we use
650 ui_out_redirect. */
8d3788bd
VP
651 ui_out_redirect (mi_uiout, mi->event_channel);
652 TRY_CATCH (e, RETURN_MASK_ERROR)
653 gdb_breakpoint_query (mi_uiout, b->number, NULL);
654 ui_out_redirect (mi_uiout, NULL);
655
656 gdb_flush (mi->event_channel);
657}
658
659/* Emit notification about deleted breakpoint. */
2b03b41d 660
8d3788bd
VP
661static void
662mi_breakpoint_deleted (struct breakpoint *b)
663{
664 struct mi_interp *mi = top_level_interpreter_data ();
665
5b9afe8a 666 if (mi_suppress_notification.breakpoint)
8d3788bd
VP
667 return;
668
669 if (b->number <= 0)
670 return;
671
672 target_terminal_ours ();
673
674 fprintf_unfiltered (mi->event_channel, "breakpoint-deleted,id=\"%d\"",
675 b->number);
676
677 gdb_flush (mi->event_channel);
678}
679
680/* Emit notification about modified breakpoint. */
2b03b41d 681
8d3788bd
VP
682static void
683mi_breakpoint_modified (struct breakpoint *b)
684{
685 struct mi_interp *mi = top_level_interpreter_data ();
686 struct ui_out *mi_uiout = interp_ui_out (top_level_interpreter ());
bfd189b1 687 volatile struct gdb_exception e;
8d3788bd 688
5b9afe8a 689 if (mi_suppress_notification.breakpoint)
8d3788bd
VP
690 return;
691
692 if (b->number <= 0)
693 return;
694
695 target_terminal_ours ();
696 fprintf_unfiltered (mi->event_channel,
697 "breakpoint-modified");
698 /* We want the output from gdb_breakpoint_query to go to
2b03b41d
SS
699 mi->event_channel. One approach would be to just call
700 gdb_breakpoint_query, and then use mi_out_put to send the current
701 content of mi_outout into mi->event_channel. However, that will
702 break if anything is output to mi_uiout prior to calling the
703 breakpoint_created notifications. So, we use
704 ui_out_redirect. */
8d3788bd
VP
705 ui_out_redirect (mi_uiout, mi->event_channel);
706 TRY_CATCH (e, RETURN_MASK_ERROR)
707 gdb_breakpoint_query (mi_uiout, b->number, NULL);
708 ui_out_redirect (mi_uiout, NULL);
709
710 gdb_flush (mi->event_channel);
711}
712
d90e17a7
PA
713static int
714mi_output_running_pid (struct thread_info *info, void *arg)
715{
716 ptid_t *ptid = arg;
717
718 if (ptid_get_pid (*ptid) == ptid_get_pid (info->ptid))
719 fprintf_unfiltered (raw_stdout,
720 "*running,thread-id=\"%d\"\n",
721 info->num);
722
723 return 0;
724}
725
726static int
727mi_inferior_count (struct inferior *inf, void *arg)
728{
729 if (inf->pid != 0)
730 {
731 int *count_p = arg;
732 (*count_p)++;
733 }
734
735 return 0;
736}
737
e1ac3328
VP
738static void
739mi_on_resume (ptid_t ptid)
740{
c5a4d20b
PA
741 struct thread_info *tp = NULL;
742
9944e9c2 743 if (ptid_equal (ptid, minus_one_ptid) || ptid_is_pid (ptid))
c5a4d20b
PA
744 tp = inferior_thread ();
745 else
e09875d4 746 tp = find_thread_ptid (ptid);
c5a4d20b
PA
747
748 /* Suppress output while calling an inferior function. */
16c381f0 749 if (tp->control.in_infcall)
c5a4d20b
PA
750 return;
751
a2840c35
VP
752 /* To cater for older frontends, emit ^running, but do it only once
753 per each command. We do it here, since at this point we know
754 that the target was successfully resumed, and in non-async mode,
755 we won't return back to MI interpreter code until the target
756 is done running, so delaying the output of "^running" until then
757 will make it impossible for frontend to know what's going on.
758
759 In future (MI3), we'll be outputting "^done" here. */
f3b1572e 760 if (!running_result_record_printed && mi_proceeded)
a2840c35 761 {
c271b6e2
VP
762 fprintf_unfiltered (raw_stdout, "%s^running\n",
763 current_token ? current_token : "");
a2840c35
VP
764 }
765
e1ac3328
VP
766 if (PIDGET (ptid) == -1)
767 fprintf_unfiltered (raw_stdout, "*running,thread-id=\"all\"\n");
d90e17a7 768 else if (ptid_is_pid (ptid))
bb599c81 769 {
ab730e72 770 int count = 0;
d90e17a7
PA
771
772 /* Backwards compatibility. If there's only one inferior,
773 output "all", otherwise, output each resumed thread
774 individually. */
775 iterate_over_inferiors (mi_inferior_count, &count);
776
777 if (count == 1)
778 fprintf_unfiltered (raw_stdout, "*running,thread-id=\"all\"\n");
779 else
780 iterate_over_threads (mi_output_running_pid, &ptid);
bb599c81 781 }
e1ac3328
VP
782 else
783 {
e09875d4 784 struct thread_info *ti = find_thread_ptid (ptid);
102040f0 785
e1ac3328
VP
786 gdb_assert (ti);
787 fprintf_unfiltered (raw_stdout, "*running,thread-id=\"%d\"\n", ti->num);
788 }
a2840c35 789
f3b1572e 790 if (!running_result_record_printed && mi_proceeded)
a2840c35
VP
791 {
792 running_result_record_printed = 1;
793 /* This is what gdb used to do historically -- printing prompt even if
794 it cannot actually accept any input. This will be surely removed
795 for MI3, and may be removed even earler. */
796 /* FIXME: review the use of target_is_async_p here -- is that
797 what we want? */
798 if (!target_is_async_p ())
799 fputs_unfiltered ("(gdb) \n", raw_stdout);
800 }
c1828f25 801 gdb_flush (raw_stdout);
e1ac3328
VP
802}
803
c86cf029
VP
804static void
805mi_solib_loaded (struct so_list *solib)
806{
807 struct mi_interp *mi = top_level_interpreter_data ();
102040f0 808
c86cf029 809 target_terminal_ours ();
f5656ead 810 if (gdbarch_has_global_solist (target_gdbarch ()))
a79b8f6e
VP
811 fprintf_unfiltered (mi->event_channel,
812 "library-loaded,id=\"%s\",target-name=\"%s\","
813 "host-name=\"%s\",symbols-loaded=\"%d\"",
814 solib->so_original_name, solib->so_original_name,
815 solib->so_name, solib->symbols_loaded);
816 else
817 fprintf_unfiltered (mi->event_channel,
818 "library-loaded,id=\"%s\",target-name=\"%s\","
819 "host-name=\"%s\",symbols-loaded=\"%d\","
820 "thread-group=\"i%d\"",
821 solib->so_original_name, solib->so_original_name,
822 solib->so_name, solib->symbols_loaded,
823 current_inferior ()->num);
824
c86cf029
VP
825 gdb_flush (mi->event_channel);
826}
827
828static void
829mi_solib_unloaded (struct so_list *solib)
830{
831 struct mi_interp *mi = top_level_interpreter_data ();
102040f0 832
c86cf029 833 target_terminal_ours ();
f5656ead 834 if (gdbarch_has_global_solist (target_gdbarch ()))
a79b8f6e
VP
835 fprintf_unfiltered (mi->event_channel,
836 "library-unloaded,id=\"%s\",target-name=\"%s\","
837 "host-name=\"%s\"",
838 solib->so_original_name, solib->so_original_name,
839 solib->so_name);
840 else
841 fprintf_unfiltered (mi->event_channel,
842 "library-unloaded,id=\"%s\",target-name=\"%s\","
843 "host-name=\"%s\",thread-group=\"i%d\"",
844 solib->so_original_name, solib->so_original_name,
845 solib->so_name, current_inferior ()->num);
846
c86cf029
VP
847 gdb_flush (mi->event_channel);
848}
849
5b9afe8a
YQ
850/* Emit notification about the command parameter change. */
851
852static void
853mi_command_param_changed (const char *param, const char *value)
854{
855 struct mi_interp *mi = top_level_interpreter_data ();
856 struct ui_out *mi_uiout = interp_ui_out (top_level_interpreter ());
857
858 if (mi_suppress_notification.cmd_param_changed)
859 return;
860
861 target_terminal_ours ();
862
863 fprintf_unfiltered (mi->event_channel,
864 "cmd-param-changed");
865
866 ui_out_redirect (mi_uiout, mi->event_channel);
867
868 ui_out_field_string (mi_uiout, "param", param);
869 ui_out_field_string (mi_uiout, "value", value);
870
871 ui_out_redirect (mi_uiout, NULL);
872
873 gdb_flush (mi->event_channel);
874}
875
8de0566d
YQ
876/* Emit notification about the target memory change. */
877
878static void
879mi_memory_changed (struct inferior *inferior, CORE_ADDR memaddr,
880 ssize_t len, const bfd_byte *myaddr)
881{
882 struct mi_interp *mi = top_level_interpreter_data ();
883 struct ui_out *mi_uiout = interp_ui_out (top_level_interpreter ());
884 struct obj_section *sec;
885
886 if (mi_suppress_notification.memory)
887 return;
888
889 target_terminal_ours ();
890
891 fprintf_unfiltered (mi->event_channel,
892 "memory-changed");
893
894 ui_out_redirect (mi_uiout, mi->event_channel);
895
896 ui_out_field_fmt (mi_uiout, "thread-group", "i%d", inferior->num);
f5656ead 897 ui_out_field_core_addr (mi_uiout, "addr", target_gdbarch (), memaddr);
8de0566d
YQ
898 ui_out_field_fmt (mi_uiout, "len", "0x%zx", len);
899
900 /* Append 'type=code' into notification if MEMADDR falls in the range of
901 sections contain code. */
902 sec = find_pc_section (memaddr);
903 if (sec != NULL && sec->objfile != NULL)
904 {
905 flagword flags = bfd_get_section_flags (sec->objfile->obfd,
906 sec->the_bfd_section);
907
908 if (flags & SEC_CODE)
909 ui_out_field_string (mi_uiout, "type", "code");
910 }
911
912 ui_out_redirect (mi_uiout, NULL);
913
914 gdb_flush (mi->event_channel);
915}
916
a79b8f6e
VP
917static int
918report_initial_inferior (struct inferior *inf, void *closure)
919{
920 /* This function is called from mi_intepreter_init, and since
921 mi_inferior_added assumes that inferior is fully initialized
922 and top_level_interpreter_data is set, we cannot call
923 it here. */
924 struct mi_interp *mi = closure;
102040f0 925
a79b8f6e
VP
926 target_terminal_ours ();
927 fprintf_unfiltered (mi->event_channel,
928 "thread-group-added,id=\"i%d\"",
929 inf->num);
930 gdb_flush (mi->event_channel);
931 return 0;
932}
c86cf029 933
4801a9a3
PA
934static struct ui_out *
935mi_ui_out (struct interp *interp)
936{
937 struct mi_interp *mi = interp_data (interp);
938
939 return mi->uiout;
940}
941
37ce89eb
SS
942/* Save the original value of raw_stdout here when logging, so we can
943 restore correctly when done. */
944
945static struct ui_file *saved_raw_stdout;
946
947/* Do MI-specific logging actions; save raw_stdout, and change all
948 the consoles to use the supplied ui-file(s). */
949
950static int
951mi_set_logging (struct interp *interp, int start_log,
952 struct ui_file *out, struct ui_file *logfile)
953{
954 struct mi_interp *mi = interp_data (interp);
955
956 if (!mi)
957 return 0;
958
959 if (start_log)
960 {
961 /* The tee created already is based on gdb_stdout, which for MI
962 is a console and so we end up in an infinite loop of console
963 writing to ui_file writing to console etc. So discard the
964 existing tee (it hasn't been used yet, and MI won't ever use
965 it), and create one based on raw_stdout instead. */
966 if (logfile)
967 {
968 ui_file_delete (out);
969 out = tee_file_new (raw_stdout, 0, logfile, 0);
970 }
971
972 saved_raw_stdout = raw_stdout;
973 raw_stdout = out;
974 }
975 else
976 {
977 raw_stdout = saved_raw_stdout;
978 saved_raw_stdout = NULL;
979 }
980
981 mi_console_set_raw (mi->out, raw_stdout);
982 mi_console_set_raw (mi->err, raw_stdout);
983 mi_console_set_raw (mi->log, raw_stdout);
984 mi_console_set_raw (mi->targ, raw_stdout);
985 mi_console_set_raw (mi->event_channel, raw_stdout);
986
987 return 1;
988}
989
b9362cc7
AC
990extern initialize_file_ftype _initialize_mi_interp; /* -Wmissing-prototypes */
991
4a8f6654
AC
992void
993_initialize_mi_interp (void)
994{
995 static const struct interp_procs procs =
2b03b41d
SS
996 {
997 mi_interpreter_init, /* init_proc */
998 mi_interpreter_resume, /* resume_proc */
999 mi_interpreter_suspend, /* suspend_proc */
1000 mi_interpreter_exec, /* exec_proc */
1001 mi_interpreter_prompt_p, /* prompt_proc_p */
37ce89eb
SS
1002 mi_ui_out, /* ui_out_proc */
1003 mi_set_logging /* set_logging_proc */
2b03b41d 1004 };
4a8f6654 1005
2fcf52f0 1006 /* The various interpreter levels. */
4801a9a3
PA
1007 interp_add (interp_new (INTERP_MI1, &procs));
1008 interp_add (interp_new (INTERP_MI2, &procs));
1009 interp_add (interp_new (INTERP_MI3, &procs));
1010 interp_add (interp_new (INTERP_MI, &procs));
4a8f6654 1011}
This page took 0.899124 seconds and 4 git commands to generate.