Remove make_cleanup_restore_current_ui
[deliverable/binutils-gdb.git] / gdb / mi / mi-interp.c
CommitLineData
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1/* MI Interpreter Definitions and Commands for GDB, the GNU debugger.
2
618f726f 3 Copyright (C) 2002-2016 Free Software Foundation, Inc.
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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
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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/>. */
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19
20#include "defs.h"
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21#include "interps.h"
22#include "event-top.h"
23#include "event-loop.h"
24#include "inferior.h"
45741a9c 25#include "infrun.h"
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26#include "ui-out.h"
27#include "top.h"
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28#include "mi-main.h"
29#include "mi-cmds.h"
30#include "mi-out.h"
31#include "mi-console.h"
66bb093b 32#include "mi-common.h"
683f2885
VP
33#include "observer.h"
34#include "gdbthread.h"
c86cf029 35#include "solist.h"
8d3788bd 36#include "gdb.h"
8de0566d 37#include "objfiles.h"
134a2066 38#include "tracepoint.h"
17b2616c 39#include "cli-out.h"
243a9253 40#include "thread-fsm.h"
26cde2cc 41#include "cli/cli-interp.h"
4a8f6654 42
2b03b41d
SS
43/* These are the interpreter setup, etc. functions for the MI
44 interpreter. */
45
ee047554 46static void mi_execute_command_wrapper (const char *cmd);
e837f12a 47static void mi_execute_command_input_handler (char *cmd);
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48
49/* These are hooks that we put in place while doing interpreter_exec
2b03b41d
SS
50 so we can report interesting things that happened "behind the MI's
51 back" in this command. */
52
bee0189a 53static int mi_interp_query_hook (const char *ctlstr, va_list ap)
2b03b41d 54 ATTRIBUTE_PRINTF (1, 0);
4a8f6654 55
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56static void mi_insert_notify_hooks (void);
57static void mi_remove_notify_hooks (void);
fd664c91
PA
58
59static void mi_on_signal_received (enum gdb_signal siggnal);
60static void mi_on_end_stepping_range (void);
61static void mi_on_signal_exited (enum gdb_signal siggnal);
62static void mi_on_exited (int exitstatus);
1d33d6ba 63static void mi_on_normal_stop (struct bpstats *bs, int print_frame);
fd664c91 64static void mi_on_no_history (void);
4a8f6654 65
683f2885 66static void mi_new_thread (struct thread_info *t);
a07daef3 67static void mi_thread_exit (struct thread_info *t, int silent);
38b022b4
SM
68static void mi_record_changed (struct inferior*, int, const char *,
69 const char *);
a79b8f6e
VP
70static void mi_inferior_added (struct inferior *inf);
71static void mi_inferior_appeared (struct inferior *inf);
72static void mi_inferior_exit (struct inferior *inf);
73static void mi_inferior_removed (struct inferior *inf);
e1ac3328 74static void mi_on_resume (ptid_t ptid);
c86cf029
VP
75static void mi_solib_loaded (struct so_list *solib);
76static void mi_solib_unloaded (struct so_list *solib);
f3b1572e 77static void mi_about_to_proceed (void);
201b4506 78static void mi_traceframe_changed (int tfnum, int tpnum);
134a2066
YQ
79static void mi_tsv_created (const struct trace_state_variable *tsv);
80static void mi_tsv_deleted (const struct trace_state_variable *tsv);
81static void mi_tsv_modified (const struct trace_state_variable *tsv);
8d3788bd
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82static void mi_breakpoint_created (struct breakpoint *b);
83static void mi_breakpoint_deleted (struct breakpoint *b);
84static void mi_breakpoint_modified (struct breakpoint *b);
5b9afe8a 85static void mi_command_param_changed (const char *param, const char *value);
8de0566d
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86static void mi_memory_changed (struct inferior *inf, CORE_ADDR memaddr,
87 ssize_t len, const bfd_byte *myaddr);
329ea579 88static void mi_on_sync_execution_done (void);
683f2885 89
a79b8f6e
VP
90static int report_initial_inferior (struct inferior *inf, void *closure);
91
05beb275
PA
92/* Display the MI prompt. */
93
94static void
9204d692 95display_mi_prompt (struct mi_interp *mi)
05beb275 96{
3b12939d
PA
97 struct ui *ui = current_ui;
98
9204d692
PA
99 fputs_unfiltered ("(gdb) \n", mi->raw_stdout);
100 gdb_flush (mi->raw_stdout);
3b12939d 101 ui->prompt_state = PROMPTED;
05beb275
PA
102}
103
73ab01a0
PA
104/* Returns the INTERP's data cast as mi_interp if INTERP is an MI, and
105 returns NULL otherwise. */
106
107static struct mi_interp *
108as_mi_interp (struct interp *interp)
109{
110 if (ui_out_is_mi_like_p (interp_ui_out (interp)))
111 return (struct mi_interp *) interp_data (interp);
112 return NULL;
113}
114
4a8f6654 115static void *
4801a9a3 116mi_interpreter_init (struct interp *interp, int top_level)
4a8f6654 117{
70ba0933 118 struct mi_interp *mi = XNEW (struct mi_interp);
4801a9a3
PA
119 const char *name;
120 int mi_version;
4a8f6654 121
9204d692
PA
122 /* Store the current output channel, so that we can create a console
123 channel that encapsulates and prefixes all gdb_output-type bits
124 coming from the rest of the debugger. */
125 mi->raw_stdout = gdb_stdout;
4a8f6654 126
2b03b41d
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127 /* Create MI console channels, each with a different prefix so they
128 can be distinguished. */
9204d692
PA
129 mi->out = mi_console_file_new (mi->raw_stdout, "~", '"');
130 mi->err = mi_console_file_new (mi->raw_stdout, "&", '"');
4a8f6654 131 mi->log = mi->err;
9204d692
PA
132 mi->targ = mi_console_file_new (mi->raw_stdout, "@", '"');
133 mi->event_channel = mi_console_file_new (mi->raw_stdout, "=", 0);
4a8f6654 134
4801a9a3
PA
135 name = interp_name (interp);
136 /* INTERP_MI selects the most recent released version. "mi2" was
137 released as part of GDB 6.0. */
138 if (strcmp (name, INTERP_MI) == 0)
139 mi_version = 2;
140 else if (strcmp (name, INTERP_MI1) == 0)
141 mi_version = 1;
142 else if (strcmp (name, INTERP_MI2) == 0)
143 mi_version = 2;
144 else if (strcmp (name, INTERP_MI3) == 0)
145 mi_version = 3;
146 else
147 gdb_assert_not_reached ("unhandled MI version");
148
fd664c91
PA
149 mi->mi_uiout = mi_out_new (mi_version);
150 mi->cli_uiout = cli_out_new (mi->out);
151
683f2885 152 if (top_level)
063bfe2e 153 {
2b03b41d
SS
154 /* The initial inferior is created before this function is
155 called, so we need to report it explicitly. Use iteration in
156 case future version of GDB creates more than one inferior
157 up-front. */
a79b8f6e 158 iterate_over_inferiors (report_initial_inferior, mi);
063bfe2e 159 }
683f2885 160
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161 return mi;
162}
163
164static int
165mi_interpreter_resume (void *data)
166{
19ba03f4 167 struct mi_interp *mi = (struct mi_interp *) data;
a74e1786 168 struct ui *ui = current_ui;
4a8f6654 169
2b03b41d
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170 /* As per hack note in mi_interpreter_init, swap in the output
171 channels... */
3c216924 172 gdb_setup_readline (0);
4a8f6654 173
a74e1786
PA
174 ui->call_readline = gdb_readline_no_editing_callback;
175 ui->input_handler = mi_execute_command_input_handler;
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176
177 gdb_stdout = mi->out;
2b03b41d 178 /* Route error and log output through the MI. */
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179 gdb_stderr = mi->err;
180 gdb_stdlog = mi->log;
2b03b41d 181 /* Route target output through the MI. */
4a8f6654 182 gdb_stdtarg = mi->targ;
2b03b41d 183 /* Route target error through the MI as well. */
1f20321b 184 gdb_stdtargerr = mi->targ;
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185
186 /* Replace all the hooks that we know about. There really needs to
187 be a better way of doing this... */
188 clear_interpreter_hooks ();
189
9a4105ab 190 deprecated_show_load_progress = mi_load_progress;
4a8f6654 191
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192 return 1;
193}
194
195static int
196mi_interpreter_suspend (void *data)
197{
198 gdb_disable_readline ();
199 return 1;
200}
201
71fff37b 202static struct gdb_exception
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203mi_interpreter_exec (void *data, const char *command)
204{
ee047554 205 mi_execute_command_wrapper (command);
c1043fc2 206 return exception_none;
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207}
208
ce8f13f8 209void
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210mi_cmd_interpreter_exec (char *command, char **argv, int argc)
211{
212 struct interp *interp_to_use;
4a8f6654 213 int i;
a13e061a
PA
214 char *mi_error_message = NULL;
215 struct cleanup *old_chain;
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216
217 if (argc < 2)
1b05df00 218 error (_("-interpreter-exec: "
9b20d036 219 "Usage: -interpreter-exec interp command"));
4a8f6654 220
8322445e 221 interp_to_use = interp_lookup (current_ui, argv[0]);
4a8f6654 222 if (interp_to_use == NULL)
1b05df00 223 error (_("-interpreter-exec: could not find interpreter \"%s\""),
9a2b4c1b 224 argv[0]);
4a8f6654 225
17b2616c
PA
226 /* Note that unlike the CLI version of this command, we don't
227 actually set INTERP_TO_USE as the current interpreter, as we
228 still want gdb_stdout, etc. to point at MI streams. */
229
2b03b41d
SS
230 /* Insert the MI out hooks, making sure to also call the
231 interpreter's hooks if it has any. */
232 /* KRS: We shouldn't need this... Events should be installed and
233 they should just ALWAYS fire something out down the MI
234 channel. */
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235 mi_insert_notify_hooks ();
236
2b03b41d 237 /* Now run the code. */
4a8f6654 238
a13e061a 239 old_chain = make_cleanup (null_cleanup, 0);
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240 for (i = 1; i < argc; i++)
241 {
32c1e744 242 struct gdb_exception e = interp_exec (interp_to_use, argv[i]);
102040f0 243
32c1e744
VP
244 if (e.reason < 0)
245 {
246 mi_error_message = xstrdup (e.message);
a13e061a 247 make_cleanup (xfree, mi_error_message);
32c1e744
VP
248 break;
249 }
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250 }
251
252 mi_remove_notify_hooks ();
253
a13e061a
PA
254 if (mi_error_message != NULL)
255 error ("%s", mi_error_message);
256 do_cleanups (old_chain);
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257}
258
2b03b41d
SS
259/* This inserts a number of hooks that are meant to produce
260 async-notify ("=") MI messages while running commands in another
261 interpreter using mi_interpreter_exec. The canonical use for this
262 is to allow access to the gdb CLI interpreter from within the MI,
263 while still producing MI style output when actions in the CLI
264 command change GDB's state. */
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265
266static void
267mi_insert_notify_hooks (void)
268{
9a4105ab 269 deprecated_query_hook = mi_interp_query_hook;
4a8f6654
AC
270}
271
272static void
11308a41 273mi_remove_notify_hooks (void)
4a8f6654 274{
9a4105ab 275 deprecated_query_hook = NULL;
4a8f6654
AC
276}
277
278static int
279mi_interp_query_hook (const char *ctlstr, va_list ap)
280{
281 return 1;
282}
283
4a8f6654 284static void
ee047554 285mi_execute_command_wrapper (const char *cmd)
4a8f6654 286{
f38d3ad1
PA
287 struct ui *ui = current_ui;
288
268a799a 289 mi_execute_command (cmd, ui->instream == ui->stdin_stream);
4a8f6654
AC
290}
291
329ea579
PA
292/* Observer for the synchronous_command_done notification. */
293
294static void
295mi_on_sync_execution_done (void)
296{
73ab01a0
PA
297 struct ui *ui = current_ui;
298 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
299
300 if (mi == NULL)
301 return;
302
0b333c5e
PA
303 /* If MI is sync, then output the MI prompt now, indicating we're
304 ready for further input. */
329ea579 305 if (!mi_async_p ())
9204d692 306 display_mi_prompt (mi);
329ea579
PA
307}
308
e837f12a
JK
309/* mi_execute_command_wrapper wrapper suitable for INPUT_HANDLER. */
310
311static void
312mi_execute_command_input_handler (char *cmd)
313{
9204d692 314 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
3b12939d
PA
315 struct ui *ui = current_ui;
316
317 ui->prompt_state = PROMPT_NEEDED;
9204d692 318
e837f12a
JK
319 mi_execute_command_wrapper (cmd);
320
0b333c5e
PA
321 /* Print a prompt, indicating we're ready for further input, unless
322 we just started a synchronous command. In that case, we're about
323 to go back to the event loop and will output the prompt in the
324 'synchronous_command_done' observer when the target next
325 stops. */
3b12939d 326 if (ui->prompt_state == PROMPT_NEEDED)
9204d692 327 display_mi_prompt (mi);
e837f12a
JK
328}
329
4a8f6654 330static void
b2d86570 331mi_interpreter_pre_command_loop (struct interp *self)
4a8f6654 332{
b2d86570 333 struct mi_interp *mi = (struct mi_interp *) interp_data (self);
9204d692 334
4a8f6654 335 /* Turn off 8 bit strings in quoted output. Any character with the
2b03b41d 336 high bit set is printed using C's octal format. */
4a8f6654 337 sevenbit_strings = 1;
2b03b41d
SS
338
339 /* Tell the world that we're alive. */
9204d692 340 display_mi_prompt (mi);
4a8f6654
AC
341}
342
683f2885
VP
343static void
344mi_new_thread (struct thread_info *t)
345{
c9657e70 346 struct inferior *inf = find_inferior_ptid (t->ptid);
a79b8f6e
VP
347
348 gdb_assert (inf);
683f2885 349
0e454242 350 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
351 {
352 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
353 struct cleanup *old_chain;
5fe96654 354
73ab01a0
PA
355 if (mi == NULL)
356 continue;
5fe96654 357
73ab01a0
PA
358 old_chain = make_cleanup_restore_target_terminal ();
359 target_terminal_ours_for_output ();
360
361 fprintf_unfiltered (mi->event_channel,
362 "thread-created,id=\"%d\",group-id=\"i%d\"",
363 t->global_num, inf->num);
364 gdb_flush (mi->event_channel);
365
366 do_cleanups (old_chain);
367 }
683f2885
VP
368}
369
063bfe2e 370static void
a07daef3 371mi_thread_exit (struct thread_info *t, int silent)
063bfe2e 372{
a07daef3
PA
373 if (silent)
374 return;
375
0e454242 376 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
377 {
378 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
379 struct cleanup *old_chain;
a79b8f6e 380
73ab01a0
PA
381 if (mi == NULL)
382 continue;
5fe96654 383
73ab01a0
PA
384 old_chain = make_cleanup_restore_target_terminal ();
385 target_terminal_ours_for_output ();
386 fprintf_unfiltered (mi->event_channel,
387 "thread-exited,id=\"%d\",group-id=\"i%d\"",
388 t->global_num, t->inf->num);
389 gdb_flush (mi->event_channel);
1abf3a14 390
73ab01a0
PA
391 do_cleanups (old_chain);
392 }
063bfe2e
VP
393}
394
82a90ccf
YQ
395/* Emit notification on changing the state of record. */
396
397static void
38b022b4
SM
398mi_record_changed (struct inferior *inferior, int started, const char *method,
399 const char *format)
82a90ccf 400{
0e454242 401 SWITCH_THRU_ALL_UIS ()
38b022b4 402 {
73ab01a0
PA
403 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
404 struct cleanup *old_chain;
405
406 if (mi == NULL)
407 continue;
408
409 old_chain = make_cleanup_restore_target_terminal ();
410 target_terminal_ours_for_output ();
411
412 if (started)
1aec0b6a 413 {
73ab01a0
PA
414 if (format != NULL)
415 {
416 fprintf_unfiltered (mi->event_channel,
417 "record-started,thread-group=\"i%d\","
418 "method=\"%s\",format=\"%s\"",
419 inferior->num, method, format);
420 }
421 else
422 {
423 fprintf_unfiltered (mi->event_channel,
424 "record-started,thread-group=\"i%d\","
425 "method=\"%s\"",
426 inferior->num, method);
427 }
1aec0b6a 428 }
38b022b4 429 else
1aec0b6a 430 {
73ab01a0
PA
431 fprintf_unfiltered (mi->event_channel,
432 "record-stopped,thread-group=\"i%d\"",
433 inferior->num);
1aec0b6a 434 }
38b022b4 435
73ab01a0 436 gdb_flush (mi->event_channel);
82a90ccf 437
73ab01a0
PA
438 do_cleanups (old_chain);
439 }
82a90ccf
YQ
440}
441
a79b8f6e
VP
442static void
443mi_inferior_added (struct inferior *inf)
444{
0e454242 445 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
446 {
447 struct interp *interp;
448 struct mi_interp *mi;
449 struct cleanup *old_chain;
102040f0 450
73ab01a0
PA
451 /* We'll be called once for the initial inferior, before the top
452 level interpreter is set. */
453 interp = top_level_interpreter ();
454 if (interp == NULL)
455 continue;
5fe96654 456
73ab01a0
PA
457 mi = as_mi_interp (interp);
458 if (mi == NULL)
459 continue;
460
461 old_chain = make_cleanup_restore_target_terminal ();
462 target_terminal_ours_for_output ();
463
464 fprintf_unfiltered (mi->event_channel,
465 "thread-group-added,id=\"i%d\"",
466 inf->num);
467 gdb_flush (mi->event_channel);
468
469 do_cleanups (old_chain);
470 }
a79b8f6e
VP
471}
472
473static void
474mi_inferior_appeared (struct inferior *inf)
4a92f99b 475{
0e454242 476 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
477 {
478 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
479 struct cleanup *old_chain;
102040f0 480
73ab01a0
PA
481 if (mi == NULL)
482 continue;
5fe96654 483
73ab01a0
PA
484 old_chain = make_cleanup_restore_target_terminal ();
485 target_terminal_ours_for_output ();
486
487 fprintf_unfiltered (mi->event_channel,
488 "thread-group-started,id=\"i%d\",pid=\"%d\"",
489 inf->num, inf->pid);
490 gdb_flush (mi->event_channel);
491 do_cleanups (old_chain);
492 }
4a92f99b
VP
493}
494
495static void
a79b8f6e 496mi_inferior_exit (struct inferior *inf)
4a92f99b 497{
0e454242 498 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
499 {
500 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
501 struct cleanup *old_chain;
102040f0 502
73ab01a0
PA
503 if (mi == NULL)
504 continue;
8cf64490 505
73ab01a0
PA
506 old_chain = make_cleanup_restore_target_terminal ();
507 target_terminal_ours_for_output ();
508
509 if (inf->has_exit_code)
510 fprintf_unfiltered (mi->event_channel,
511 "thread-group-exited,id=\"i%d\",exit-code=\"%s\"",
512 inf->num, int_string (inf->exit_code, 8, 0, 0, 1));
513 else
514 fprintf_unfiltered (mi->event_channel,
515 "thread-group-exited,id=\"i%d\"", inf->num);
516
517 gdb_flush (mi->event_channel);
518 do_cleanups (old_chain);
519 }
4a92f99b
VP
520}
521
a79b8f6e
VP
522static void
523mi_inferior_removed (struct inferior *inf)
524{
0e454242 525 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
526 {
527 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
528 struct cleanup *old_chain;
102040f0 529
73ab01a0
PA
530 if (mi == NULL)
531 continue;
5fe96654 532
73ab01a0
PA
533 old_chain = make_cleanup_restore_target_terminal ();
534 target_terminal_ours_for_output ();
535
536 fprintf_unfiltered (mi->event_channel,
537 "thread-group-removed,id=\"i%d\"",
538 inf->num);
539 gdb_flush (mi->event_channel);
540
541 do_cleanups (old_chain);
542 }
a79b8f6e
VP
543}
544
fd664c91
PA
545/* Return the MI interpreter, if it is active -- either because it's
546 the top-level interpreter or the interpreter executing the current
547 command. Returns NULL if the MI interpreter is not being used. */
548
73ab01a0
PA
549static struct mi_interp *
550find_mi_interp (void)
fd664c91 551{
73ab01a0 552 struct mi_interp *mi;
fd664c91 553
73ab01a0
PA
554 mi = as_mi_interp (top_level_interpreter ());
555 if (mi != NULL)
556 return mi;
fd664c91 557
73ab01a0
PA
558 mi = as_mi_interp (command_interp ());
559 if (mi != NULL)
560 return mi;
fd664c91 561
fd664c91
PA
562 return NULL;
563}
564
565/* Observers for several run control events that print why the
566 inferior has stopped to both the the MI event channel and to the MI
567 console. If the MI interpreter is not active, print nothing. */
568
569/* Observer for the signal_received notification. */
570
571static void
572mi_on_signal_received (enum gdb_signal siggnal)
573{
0e454242 574 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
575 {
576 struct mi_interp *mi = find_mi_interp ();
577
578 if (mi == NULL)
579 continue;
fd664c91 580
73ab01a0
PA
581 print_signal_received_reason (mi->mi_uiout, siggnal);
582 print_signal_received_reason (mi->cli_uiout, siggnal);
583 }
fd664c91
PA
584}
585
586/* Observer for the end_stepping_range notification. */
587
588static void
589mi_on_end_stepping_range (void)
590{
0e454242 591 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
592 {
593 struct mi_interp *mi = find_mi_interp ();
594
595 if (mi == NULL)
596 continue;
fd664c91 597
73ab01a0
PA
598 print_end_stepping_range_reason (mi->mi_uiout);
599 print_end_stepping_range_reason (mi->cli_uiout);
600 }
fd664c91
PA
601}
602
603/* Observer for the signal_exited notification. */
17b2616c
PA
604
605static void
fd664c91 606mi_on_signal_exited (enum gdb_signal siggnal)
17b2616c 607{
0e454242 608 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
609 {
610 struct mi_interp *mi = find_mi_interp ();
611
612 if (mi == NULL)
613 continue;
fd664c91 614
73ab01a0
PA
615 print_signal_exited_reason (mi->mi_uiout, siggnal);
616 print_signal_exited_reason (mi->cli_uiout, siggnal);
617 }
fd664c91
PA
618}
619
620/* Observer for the exited notification. */
621
622static void
623mi_on_exited (int exitstatus)
624{
0e454242 625 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
626 {
627 struct mi_interp *mi = find_mi_interp ();
628
629 if (mi == NULL)
630 continue;
fd664c91 631
73ab01a0
PA
632 print_exited_reason (mi->mi_uiout, exitstatus);
633 print_exited_reason (mi->cli_uiout, exitstatus);
634 }
fd664c91
PA
635}
636
637/* Observer for the no_history notification. */
638
639static void
640mi_on_no_history (void)
641{
0e454242 642 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
643 {
644 struct mi_interp *mi = find_mi_interp ();
fd664c91 645
73ab01a0
PA
646 if (mi == NULL)
647 continue;
648
649 print_no_history_reason (mi->mi_uiout);
650 print_no_history_reason (mi->cli_uiout);
651 }
17b2616c
PA
652}
653
f7f9a841 654static void
73ab01a0 655mi_on_normal_stop_1 (struct bpstats *bs, int print_frame)
f7f9a841
VP
656{
657 /* Since this can be called when CLI command is executing,
658 using cli interpreter, be sure to use MI uiout for output,
659 not the current one. */
1d33d6ba 660 struct ui_out *mi_uiout = interp_ui_out (top_level_interpreter ());
9204d692 661 struct mi_interp *mi = (struct mi_interp *) top_level_interpreter_data ();
f7f9a841 662
1d33d6ba
VP
663 if (print_frame)
664 {
243a9253 665 struct thread_info *tp;
dc146f7c 666 int core;
26cde2cc 667 struct interp *console_interp;
102040f0 668
243a9253 669 tp = inferior_thread ();
36dfb11c 670
243a9253
PA
671 if (tp->thread_fsm != NULL
672 && thread_fsm_finished_p (tp->thread_fsm))
673 {
674 enum async_reply_reason reason;
36dfb11c 675
243a9253
PA
676 reason = thread_fsm_async_reply_reason (tp->thread_fsm);
677 ui_out_field_string (mi_uiout, "reason",
678 async_reason_lookup (reason));
1d33d6ba 679 }
243a9253
PA
680 print_stop_event (mi_uiout);
681
26cde2cc
PA
682 console_interp = interp_lookup (current_ui, INTERP_CONSOLE);
683 if (should_print_stop_to_console (console_interp, tp))
9204d692 684 print_stop_event (mi->cli_uiout);
1d33d6ba 685
5d5658a1 686 ui_out_field_int (mi_uiout, "thread-id", tp->global_num);
1d33d6ba
VP
687 if (non_stop)
688 {
689 struct cleanup *back_to = make_cleanup_ui_out_list_begin_end
690 (mi_uiout, "stopped-threads");
102040f0 691
5d5658a1 692 ui_out_field_int (mi_uiout, NULL, tp->global_num);
1d33d6ba
VP
693 do_cleanups (back_to);
694 }
695 else
696 ui_out_field_string (mi_uiout, "stopped-threads", "all");
dc146f7c
VP
697
698 core = target_core_of_thread (inferior_ptid);
699 if (core != -1)
700 ui_out_field_int (mi_uiout, "core", core);
1d33d6ba
VP
701 }
702
9204d692
PA
703 fputs_unfiltered ("*stopped", mi->raw_stdout);
704 mi_out_put (mi_uiout, mi->raw_stdout);
1d33d6ba 705 mi_out_rewind (mi_uiout);
9204d692
PA
706 mi_print_timing_maybe (mi->raw_stdout);
707 fputs_unfiltered ("\n", mi->raw_stdout);
708 gdb_flush (mi->raw_stdout);
f7f9a841
VP
709}
710
73ab01a0
PA
711static void
712mi_on_normal_stop (struct bpstats *bs, int print_frame)
713{
0e454242 714 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
715 {
716 if (as_mi_interp (top_level_interpreter ()) == NULL)
717 continue;
718
719 mi_on_normal_stop_1 (bs, print_frame);
720 }
721}
722
f3b1572e
PA
723static void
724mi_about_to_proceed (void)
725{
726 /* Suppress output while calling an inferior function. */
727
728 if (!ptid_equal (inferior_ptid, null_ptid))
729 {
730 struct thread_info *tp = inferior_thread ();
102040f0 731
16c381f0 732 if (tp->control.in_infcall)
f3b1572e
PA
733 return;
734 }
735
736 mi_proceeded = 1;
737}
738
5b9afe8a
YQ
739/* When the element is non-zero, no MI notifications will be emitted in
740 response to the corresponding observers. */
2b03b41d 741
5b9afe8a
YQ
742struct mi_suppress_notification mi_suppress_notification =
743 {
744 0,
745 0,
201b4506 746 0,
4034d0ff 747 0,
5b9afe8a 748 };
8d3788bd 749
201b4506
YQ
750/* Emit notification on changing a traceframe. */
751
752static void
753mi_traceframe_changed (int tfnum, int tpnum)
754{
201b4506
YQ
755 if (mi_suppress_notification.traceframe)
756 return;
757
0e454242 758 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
759 {
760 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
761 struct cleanup *old_chain;
201b4506 762
73ab01a0
PA
763 if (mi == NULL)
764 continue;
201b4506 765
73ab01a0
PA
766 old_chain = make_cleanup_restore_target_terminal ();
767 target_terminal_ours_for_output ();
5fe96654 768
73ab01a0
PA
769 if (tfnum >= 0)
770 fprintf_unfiltered (mi->event_channel, "traceframe-changed,"
771 "num=\"%d\",tracepoint=\"%d\"\n",
772 tfnum, tpnum);
773 else
774 fprintf_unfiltered (mi->event_channel, "traceframe-changed,end");
775
776 gdb_flush (mi->event_channel);
777
778 do_cleanups (old_chain);
779 }
201b4506
YQ
780}
781
bb25a15c
YQ
782/* Emit notification on creating a trace state variable. */
783
784static void
134a2066 785mi_tsv_created (const struct trace_state_variable *tsv)
bb25a15c 786{
0e454242 787 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
788 {
789 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
790 struct cleanup *old_chain;
bb25a15c 791
73ab01a0
PA
792 if (mi == NULL)
793 continue;
bb25a15c 794
73ab01a0
PA
795 old_chain = make_cleanup_restore_target_terminal ();
796 target_terminal_ours_for_output ();
5fe96654 797
73ab01a0
PA
798 fprintf_unfiltered (mi->event_channel, "tsv-created,"
799 "name=\"%s\",initial=\"%s\"\n",
800 tsv->name, plongest (tsv->initial_value));
801
802 gdb_flush (mi->event_channel);
803
804 do_cleanups (old_chain);
805 }
bb25a15c
YQ
806}
807
808/* Emit notification on deleting a trace state variable. */
809
810static void
134a2066 811mi_tsv_deleted (const struct trace_state_variable *tsv)
bb25a15c 812{
0e454242 813 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
814 {
815 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
816 struct cleanup *old_chain;
bb25a15c 817
73ab01a0
PA
818 if (mi == NULL)
819 continue;
bb25a15c 820
73ab01a0
PA
821 old_chain = make_cleanup_restore_target_terminal ();
822 target_terminal_ours_for_output ();
5fe96654 823
73ab01a0
PA
824 if (tsv != NULL)
825 fprintf_unfiltered (mi->event_channel, "tsv-deleted,"
826 "name=\"%s\"\n", tsv->name);
827 else
828 fprintf_unfiltered (mi->event_channel, "tsv-deleted\n");
829
830 gdb_flush (mi->event_channel);
831
832 do_cleanups (old_chain);
833 }
bb25a15c
YQ
834}
835
134a2066
YQ
836/* Emit notification on modifying a trace state variable. */
837
838static void
839mi_tsv_modified (const struct trace_state_variable *tsv)
840{
0e454242 841 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
842 {
843 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
844 struct ui_out *mi_uiout;
845 struct cleanup *old_chain;
134a2066 846
73ab01a0
PA
847 if (mi == NULL)
848 continue;
134a2066 849
73ab01a0 850 mi_uiout = interp_ui_out (top_level_interpreter ());
134a2066 851
73ab01a0
PA
852 old_chain = make_cleanup_restore_target_terminal ();
853 target_terminal_ours_for_output ();
134a2066 854
73ab01a0
PA
855 fprintf_unfiltered (mi->event_channel,
856 "tsv-modified");
134a2066 857
73ab01a0 858 ui_out_redirect (mi_uiout, mi->event_channel);
5fe96654 859
73ab01a0
PA
860 ui_out_field_string (mi_uiout, "name", tsv->name);
861 ui_out_field_string (mi_uiout, "initial",
862 plongest (tsv->initial_value));
863 if (tsv->value_known)
864 ui_out_field_string (mi_uiout, "current", plongest (tsv->value));
865
866 ui_out_redirect (mi_uiout, NULL);
867
868 gdb_flush (mi->event_channel);
869
870 do_cleanups (old_chain);
871 }
134a2066
YQ
872}
873
8d3788bd 874/* Emit notification about a created breakpoint. */
2b03b41d 875
8d3788bd
VP
876static void
877mi_breakpoint_created (struct breakpoint *b)
878{
5b9afe8a 879 if (mi_suppress_notification.breakpoint)
8d3788bd
VP
880 return;
881
882 if (b->number <= 0)
883 return;
884
0e454242 885 SWITCH_THRU_ALL_UIS ()
492d29ea 886 {
73ab01a0
PA
887 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
888 struct ui_out *mi_uiout;
889 struct cleanup *old_chain;
492d29ea 890
73ab01a0
PA
891 if (mi == NULL)
892 continue;
8d3788bd 893
73ab01a0 894 mi_uiout = interp_ui_out (top_level_interpreter ());
5fe96654 895
73ab01a0
PA
896 old_chain = make_cleanup_restore_target_terminal ();
897 target_terminal_ours_for_output ();
898
899 fprintf_unfiltered (mi->event_channel,
900 "breakpoint-created");
901 /* We want the output from gdb_breakpoint_query to go to
902 mi->event_channel. One approach would be to just call
903 gdb_breakpoint_query, and then use mi_out_put to send the current
904 content of mi_outout into mi->event_channel. However, that will
905 break if anything is output to mi_uiout prior to calling the
906 breakpoint_created notifications. So, we use
907 ui_out_redirect. */
908 ui_out_redirect (mi_uiout, mi->event_channel);
909 TRY
910 {
911 gdb_breakpoint_query (mi_uiout, b->number, NULL);
912 }
913 CATCH (e, RETURN_MASK_ERROR)
914 {
915 }
916 END_CATCH
917
918 ui_out_redirect (mi_uiout, NULL);
919
920 gdb_flush (mi->event_channel);
921
922 do_cleanups (old_chain);
923 }
8d3788bd
VP
924}
925
926/* Emit notification about deleted breakpoint. */
2b03b41d 927
8d3788bd
VP
928static void
929mi_breakpoint_deleted (struct breakpoint *b)
930{
5b9afe8a 931 if (mi_suppress_notification.breakpoint)
8d3788bd
VP
932 return;
933
934 if (b->number <= 0)
935 return;
936
0e454242 937 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
938 {
939 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
940 struct cleanup *old_chain;
8d3788bd 941
73ab01a0
PA
942 if (mi == NULL)
943 continue;
8d3788bd 944
73ab01a0
PA
945 old_chain = make_cleanup_restore_target_terminal ();
946 target_terminal_ours_for_output ();
5fe96654 947
73ab01a0
PA
948 fprintf_unfiltered (mi->event_channel, "breakpoint-deleted,id=\"%d\"",
949 b->number);
950
951 gdb_flush (mi->event_channel);
952
953 do_cleanups (old_chain);
954 }
8d3788bd
VP
955}
956
957/* Emit notification about modified breakpoint. */
2b03b41d 958
8d3788bd
VP
959static void
960mi_breakpoint_modified (struct breakpoint *b)
961{
5b9afe8a 962 if (mi_suppress_notification.breakpoint)
8d3788bd
VP
963 return;
964
965 if (b->number <= 0)
966 return;
967
0e454242 968 SWITCH_THRU_ALL_UIS ()
492d29ea 969 {
73ab01a0
PA
970 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
971 struct cleanup *old_chain;
492d29ea 972
73ab01a0
PA
973 if (mi == NULL)
974 continue;
8d3788bd 975
73ab01a0
PA
976 old_chain = make_cleanup_restore_target_terminal ();
977 target_terminal_ours_for_output ();
978 fprintf_unfiltered (mi->event_channel,
979 "breakpoint-modified");
980 /* We want the output from gdb_breakpoint_query to go to
981 mi->event_channel. One approach would be to just call
982 gdb_breakpoint_query, and then use mi_out_put to send the current
983 content of mi_outout into mi->event_channel. However, that will
984 break if anything is output to mi_uiout prior to calling the
985 breakpoint_created notifications. So, we use
986 ui_out_redirect. */
987 ui_out_redirect (mi->mi_uiout, mi->event_channel);
988 TRY
989 {
990 gdb_breakpoint_query (mi->mi_uiout, b->number, NULL);
991 }
992 CATCH (e, RETURN_MASK_ERROR)
993 {
994 }
995 END_CATCH
5fe96654 996
73ab01a0
PA
997 ui_out_redirect (mi->mi_uiout, NULL);
998
999 gdb_flush (mi->event_channel);
1000
1001 do_cleanups (old_chain);
1002 }
8d3788bd
VP
1003}
1004
d90e17a7
PA
1005static int
1006mi_output_running_pid (struct thread_info *info, void *arg)
1007{
19ba03f4 1008 ptid_t *ptid = (ptid_t *) arg;
d90e17a7 1009
0e454242 1010 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
1011 {
1012 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
1013
1014 if (mi == NULL)
1015 continue;
1016
1017 if (ptid_get_pid (*ptid) == ptid_get_pid (info->ptid))
9204d692 1018 fprintf_unfiltered (mi->raw_stdout,
73ab01a0
PA
1019 "*running,thread-id=\"%d\"\n",
1020 info->global_num);
1021 }
d90e17a7
PA
1022
1023 return 0;
1024}
1025
1026static int
1027mi_inferior_count (struct inferior *inf, void *arg)
1028{
1029 if (inf->pid != 0)
1030 {
19ba03f4 1031 int *count_p = (int *) arg;
d90e17a7
PA
1032 (*count_p)++;
1033 }
1034
1035 return 0;
1036}
1037
e1ac3328 1038static void
9204d692 1039mi_on_resume_1 (struct mi_interp *mi, ptid_t ptid)
e1ac3328 1040{
a2840c35
VP
1041 /* To cater for older frontends, emit ^running, but do it only once
1042 per each command. We do it here, since at this point we know
1043 that the target was successfully resumed, and in non-async mode,
1044 we won't return back to MI interpreter code until the target
1045 is done running, so delaying the output of "^running" until then
1046 will make it impossible for frontend to know what's going on.
1047
1048 In future (MI3), we'll be outputting "^done" here. */
f3b1572e 1049 if (!running_result_record_printed && mi_proceeded)
a2840c35 1050 {
9204d692 1051 fprintf_unfiltered (mi->raw_stdout, "%s^running\n",
c271b6e2 1052 current_token ? current_token : "");
a2840c35
VP
1053 }
1054
dfd4cc63 1055 if (ptid_get_pid (ptid) == -1)
9204d692 1056 fprintf_unfiltered (mi->raw_stdout, "*running,thread-id=\"all\"\n");
d90e17a7 1057 else if (ptid_is_pid (ptid))
bb599c81 1058 {
ab730e72 1059 int count = 0;
d90e17a7
PA
1060
1061 /* Backwards compatibility. If there's only one inferior,
1062 output "all", otherwise, output each resumed thread
1063 individually. */
1064 iterate_over_inferiors (mi_inferior_count, &count);
1065
1066 if (count == 1)
9204d692 1067 fprintf_unfiltered (mi->raw_stdout, "*running,thread-id=\"all\"\n");
d90e17a7
PA
1068 else
1069 iterate_over_threads (mi_output_running_pid, &ptid);
bb599c81 1070 }
e1ac3328
VP
1071 else
1072 {
e09875d4 1073 struct thread_info *ti = find_thread_ptid (ptid);
102040f0 1074
e1ac3328 1075 gdb_assert (ti);
9204d692 1076 fprintf_unfiltered (mi->raw_stdout, "*running,thread-id=\"%d\"\n",
5d5658a1 1077 ti->global_num);
e1ac3328 1078 }
a2840c35 1079
f3b1572e 1080 if (!running_result_record_printed && mi_proceeded)
a2840c35
VP
1081 {
1082 running_result_record_printed = 1;
3b12939d
PA
1083 /* This is what gdb used to do historically -- printing prompt
1084 even if it cannot actually accept any input. This will be
1085 surely removed for MI3, and may be removed even earlier. */
1086 if (current_ui->prompt_state == PROMPT_BLOCKED)
9204d692 1087 fputs_unfiltered ("(gdb) \n", mi->raw_stdout);
a2840c35 1088 }
9204d692 1089 gdb_flush (mi->raw_stdout);
e1ac3328
VP
1090}
1091
c86cf029 1092static void
73ab01a0 1093mi_on_resume (ptid_t ptid)
c86cf029 1094{
73ab01a0 1095 struct thread_info *tp = NULL;
6ef284bd 1096
73ab01a0
PA
1097 if (ptid_equal (ptid, minus_one_ptid) || ptid_is_pid (ptid))
1098 tp = inferior_thread ();
1099 else
1100 tp = find_thread_ptid (ptid);
6ef284bd 1101
73ab01a0
PA
1102 /* Suppress output while calling an inferior function. */
1103 if (tp->control.in_infcall)
1104 return;
6ef284bd 1105
0e454242 1106 SWITCH_THRU_ALL_UIS ()
6ef284bd 1107 {
73ab01a0
PA
1108 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
1109 struct cleanup *old_chain;
1110
1111 if (mi == NULL)
1112 continue;
1113
1114 old_chain = make_cleanup_restore_target_terminal ();
1115 target_terminal_ours_for_output ();
1116
9204d692 1117 mi_on_resume_1 (mi, ptid);
73ab01a0
PA
1118
1119 do_cleanups (old_chain);
6ef284bd 1120 }
73ab01a0 1121}
6ef284bd 1122
73ab01a0
PA
1123static void
1124mi_solib_loaded (struct so_list *solib)
1125{
0e454242 1126 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
1127 {
1128 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
1129 struct ui_out *uiout;
1130 struct cleanup *old_chain;
5fe96654 1131
73ab01a0
PA
1132 if (mi == NULL)
1133 continue;
1134
1135 uiout = interp_ui_out (top_level_interpreter ());
1136
1137 old_chain = make_cleanup_restore_target_terminal ();
1138 target_terminal_ours_for_output ();
1139
1140 fprintf_unfiltered (mi->event_channel, "library-loaded");
1141
1142 ui_out_redirect (uiout, mi->event_channel);
1143
1144 ui_out_field_string (uiout, "id", solib->so_original_name);
1145 ui_out_field_string (uiout, "target-name", solib->so_original_name);
1146 ui_out_field_string (uiout, "host-name", solib->so_name);
1147 ui_out_field_int (uiout, "symbols-loaded", solib->symbols_loaded);
1148 if (!gdbarch_has_global_solist (target_gdbarch ()))
1149 {
1150 ui_out_field_fmt (uiout, "thread-group", "i%d",
1151 current_inferior ()->num);
1152 }
1153
1154 ui_out_redirect (uiout, NULL);
1155
1156 gdb_flush (mi->event_channel);
1157
1158 do_cleanups (old_chain);
1159 }
c86cf029
VP
1160}
1161
1162static void
1163mi_solib_unloaded (struct so_list *solib)
1164{
0e454242 1165 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
1166 {
1167 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
1168 struct ui_out *uiout;
1169 struct cleanup *old_chain;
6ef284bd 1170
73ab01a0
PA
1171 if (mi == NULL)
1172 continue;
6ef284bd 1173
73ab01a0 1174 uiout = interp_ui_out (top_level_interpreter ());
6ef284bd 1175
73ab01a0
PA
1176 old_chain = make_cleanup_restore_target_terminal ();
1177 target_terminal_ours_for_output ();
6ef284bd 1178
73ab01a0 1179 fprintf_unfiltered (mi->event_channel, "library-unloaded");
a79b8f6e 1180
73ab01a0 1181 ui_out_redirect (uiout, mi->event_channel);
5fe96654 1182
73ab01a0
PA
1183 ui_out_field_string (uiout, "id", solib->so_original_name);
1184 ui_out_field_string (uiout, "target-name", solib->so_original_name);
1185 ui_out_field_string (uiout, "host-name", solib->so_name);
1186 if (!gdbarch_has_global_solist (target_gdbarch ()))
1187 {
1188 ui_out_field_fmt (uiout, "thread-group", "i%d",
1189 current_inferior ()->num);
1190 }
1191
1192 ui_out_redirect (uiout, NULL);
1193
1194 gdb_flush (mi->event_channel);
1195
1196 do_cleanups (old_chain);
1197 }
c86cf029
VP
1198}
1199
5b9afe8a
YQ
1200/* Emit notification about the command parameter change. */
1201
1202static void
1203mi_command_param_changed (const char *param, const char *value)
1204{
5b9afe8a
YQ
1205 if (mi_suppress_notification.cmd_param_changed)
1206 return;
1207
0e454242 1208 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
1209 {
1210 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
1211 struct ui_out *mi_uiout;
1212 struct cleanup *old_chain;
5b9afe8a 1213
73ab01a0
PA
1214 if (mi == NULL)
1215 continue;
5b9afe8a 1216
73ab01a0 1217 mi_uiout = interp_ui_out (top_level_interpreter ());
5b9afe8a 1218
73ab01a0
PA
1219 old_chain = make_cleanup_restore_target_terminal ();
1220 target_terminal_ours_for_output ();
5b9afe8a 1221
73ab01a0 1222 fprintf_unfiltered (mi->event_channel, "cmd-param-changed");
5b9afe8a 1223
73ab01a0 1224 ui_out_redirect (mi_uiout, mi->event_channel);
5fe96654 1225
73ab01a0
PA
1226 ui_out_field_string (mi_uiout, "param", param);
1227 ui_out_field_string (mi_uiout, "value", value);
1228
1229 ui_out_redirect (mi_uiout, NULL);
1230
1231 gdb_flush (mi->event_channel);
1232
1233 do_cleanups (old_chain);
1234 }
5b9afe8a
YQ
1235}
1236
8de0566d
YQ
1237/* Emit notification about the target memory change. */
1238
1239static void
1240mi_memory_changed (struct inferior *inferior, CORE_ADDR memaddr,
1241 ssize_t len, const bfd_byte *myaddr)
1242{
8de0566d
YQ
1243 if (mi_suppress_notification.memory)
1244 return;
1245
0e454242 1246 SWITCH_THRU_ALL_UIS ()
73ab01a0
PA
1247 {
1248 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
1249 struct ui_out *mi_uiout;
1250 struct obj_section *sec;
1251 struct cleanup *old_chain;
8de0566d 1252
73ab01a0
PA
1253 if (mi == NULL)
1254 continue;
8de0566d 1255
73ab01a0 1256 mi_uiout = interp_ui_out (top_level_interpreter ());
8de0566d 1257
73ab01a0
PA
1258 old_chain = make_cleanup_restore_target_terminal ();
1259 target_terminal_ours_for_output ();
8de0566d 1260
73ab01a0 1261 fprintf_unfiltered (mi->event_channel, "memory-changed");
8de0566d 1262
73ab01a0 1263 ui_out_redirect (mi_uiout, mi->event_channel);
8de0566d 1264
73ab01a0
PA
1265 ui_out_field_fmt (mi_uiout, "thread-group", "i%d", inferior->num);
1266 ui_out_field_core_addr (mi_uiout, "addr", target_gdbarch (), memaddr);
1267 ui_out_field_fmt (mi_uiout, "len", "%s", hex_string (len));
8de0566d 1268
73ab01a0
PA
1269 /* Append 'type=code' into notification if MEMADDR falls in the range of
1270 sections contain code. */
1271 sec = find_pc_section (memaddr);
1272 if (sec != NULL && sec->objfile != NULL)
1273 {
1274 flagword flags = bfd_get_section_flags (sec->objfile->obfd,
1275 sec->the_bfd_section);
5fe96654 1276
73ab01a0
PA
1277 if (flags & SEC_CODE)
1278 ui_out_field_string (mi_uiout, "type", "code");
1279 }
1280
1281 ui_out_redirect (mi_uiout, NULL);
1282
1283 gdb_flush (mi->event_channel);
1284
1285 do_cleanups (old_chain);
1286 }
8de0566d
YQ
1287}
1288
4034d0ff
AT
1289/* Emit an event when the selection context (inferior, thread, frame)
1290 changed. */
1291
1292static void
1293mi_user_selected_context_changed (user_selected_what selection)
1294{
4034d0ff
AT
1295 struct thread_info *tp;
1296
1297 /* Don't send an event if we're responding to an MI command. */
1298 if (mi_suppress_notification.user_selected_context)
1299 return;
1300
1301 tp = find_thread_ptid (inferior_ptid);
1302
0e454242 1303 SWITCH_THRU_ALL_UIS ()
4034d0ff
AT
1304 {
1305 struct mi_interp *mi = as_mi_interp (top_level_interpreter ());
1306 struct ui_out *mi_uiout;
1307 struct cleanup *old_chain;
1308
1309 if (mi == NULL)
1310 continue;
1311
1312 mi_uiout = interp_ui_out (top_level_interpreter ());
1313
1314 ui_out_redirect (mi_uiout, mi->event_channel);
1315
1316 old_chain = make_cleanup_ui_out_redirect_pop (mi_uiout);
1317
1318 make_cleanup_restore_target_terminal ();
1319 target_terminal_ours_for_output ();
1320
1321 if (selection & USER_SELECTED_INFERIOR)
1322 print_selected_inferior (mi->cli_uiout);
1323
1324 if (tp != NULL
1325 && (selection & (USER_SELECTED_THREAD | USER_SELECTED_FRAME)))
1326 {
1327 print_selected_thread_frame (mi->cli_uiout, selection);
1328
1329 fprintf_unfiltered (mi->event_channel,
1330 "thread-selected,id=\"%d\"",
1331 tp->global_num);
1332
1333 if (tp->state != THREAD_RUNNING)
1334 {
1335 if (has_stack_frames ())
1336 print_stack_frame_to_uiout (mi_uiout, get_selected_frame (NULL),
1337 1, SRC_AND_LOC, 1);
1338 }
1339 }
1340
1341 gdb_flush (mi->event_channel);
1342 do_cleanups (old_chain);
1343 }
1344}
1345
a79b8f6e
VP
1346static int
1347report_initial_inferior (struct inferior *inf, void *closure)
1348{
73ab01a0 1349 /* This function is called from mi_interpreter_init, and since
a79b8f6e
VP
1350 mi_inferior_added assumes that inferior is fully initialized
1351 and top_level_interpreter_data is set, we cannot call
1352 it here. */
19ba03f4 1353 struct mi_interp *mi = (struct mi_interp *) closure;
5fe96654
PA
1354 struct cleanup *old_chain;
1355
1356 old_chain = make_cleanup_restore_target_terminal ();
1357 target_terminal_ours_for_output ();
102040f0 1358
a79b8f6e
VP
1359 fprintf_unfiltered (mi->event_channel,
1360 "thread-group-added,id=\"i%d\"",
1361 inf->num);
1362 gdb_flush (mi->event_channel);
5fe96654
PA
1363
1364 do_cleanups (old_chain);
a79b8f6e
VP
1365 return 0;
1366}
c86cf029 1367
4801a9a3
PA
1368static struct ui_out *
1369mi_ui_out (struct interp *interp)
1370{
19ba03f4 1371 struct mi_interp *mi = (struct mi_interp *) interp_data (interp);
4801a9a3 1372
fd664c91 1373 return mi->mi_uiout;
4801a9a3
PA
1374}
1375
37ce89eb
SS
1376/* Do MI-specific logging actions; save raw_stdout, and change all
1377 the consoles to use the supplied ui-file(s). */
1378
1379static int
1380mi_set_logging (struct interp *interp, int start_log,
1381 struct ui_file *out, struct ui_file *logfile)
1382{
19ba03f4 1383 struct mi_interp *mi = (struct mi_interp *) interp_data (interp);
37ce89eb
SS
1384
1385 if (!mi)
1386 return 0;
1387
1388 if (start_log)
1389 {
1390 /* The tee created already is based on gdb_stdout, which for MI
1391 is a console and so we end up in an infinite loop of console
1392 writing to ui_file writing to console etc. So discard the
1393 existing tee (it hasn't been used yet, and MI won't ever use
1394 it), and create one based on raw_stdout instead. */
1395 if (logfile)
1396 {
1397 ui_file_delete (out);
9204d692 1398 out = tee_file_new (mi->raw_stdout, 0, logfile, 0);
37ce89eb
SS
1399 }
1400
9204d692
PA
1401 mi->saved_raw_stdout = mi->raw_stdout;
1402 mi->raw_stdout = out;
37ce89eb
SS
1403 }
1404 else
1405 {
9204d692
PA
1406 mi->raw_stdout = mi->saved_raw_stdout;
1407 mi->saved_raw_stdout = NULL;
37ce89eb
SS
1408 }
1409
9204d692
PA
1410 mi_console_set_raw (mi->out, mi->raw_stdout);
1411 mi_console_set_raw (mi->err, mi->raw_stdout);
1412 mi_console_set_raw (mi->log, mi->raw_stdout);
1413 mi_console_set_raw (mi->targ, mi->raw_stdout);
1414 mi_console_set_raw (mi->event_channel, mi->raw_stdout);
37ce89eb
SS
1415
1416 return 1;
1417}
1418
8322445e
PA
1419/* The MI interpreter's vtable. */
1420
1421static const struct interp_procs mi_interp_procs =
1422{
1423 mi_interpreter_init, /* init_proc */
1424 mi_interpreter_resume, /* resume_proc */
1425 mi_interpreter_suspend, /* suspend_proc */
1426 mi_interpreter_exec, /* exec_proc */
1427 mi_ui_out, /* ui_out_proc */
1428 mi_set_logging, /* set_logging_proc */
b2d86570 1429 mi_interpreter_pre_command_loop /* pre_command_loop_proc */
8322445e
PA
1430};
1431
1432/* Factory for MI interpreters. */
1433
1434static struct interp *
1435mi_interp_factory (const char *name)
1436{
1437 return interp_new (name, &mi_interp_procs, NULL);
1438}
1439
b9362cc7
AC
1440extern initialize_file_ftype _initialize_mi_interp; /* -Wmissing-prototypes */
1441
4a8f6654
AC
1442void
1443_initialize_mi_interp (void)
1444{
2fcf52f0 1445 /* The various interpreter levels. */
8322445e
PA
1446 interp_factory_register (INTERP_MI1, mi_interp_factory);
1447 interp_factory_register (INTERP_MI2, mi_interp_factory);
1448 interp_factory_register (INTERP_MI3, mi_interp_factory);
1449 interp_factory_register (INTERP_MI, mi_interp_factory);
73ab01a0
PA
1450
1451 observer_attach_signal_received (mi_on_signal_received);
1452 observer_attach_end_stepping_range (mi_on_end_stepping_range);
1453 observer_attach_signal_exited (mi_on_signal_exited);
1454 observer_attach_exited (mi_on_exited);
1455 observer_attach_no_history (mi_on_no_history);
1456 observer_attach_new_thread (mi_new_thread);
1457 observer_attach_thread_exit (mi_thread_exit);
1458 observer_attach_inferior_added (mi_inferior_added);
1459 observer_attach_inferior_appeared (mi_inferior_appeared);
1460 observer_attach_inferior_exit (mi_inferior_exit);
1461 observer_attach_inferior_removed (mi_inferior_removed);
1462 observer_attach_record_changed (mi_record_changed);
1463 observer_attach_normal_stop (mi_on_normal_stop);
1464 observer_attach_target_resumed (mi_on_resume);
1465 observer_attach_solib_loaded (mi_solib_loaded);
1466 observer_attach_solib_unloaded (mi_solib_unloaded);
1467 observer_attach_about_to_proceed (mi_about_to_proceed);
1468 observer_attach_traceframe_changed (mi_traceframe_changed);
1469 observer_attach_tsv_created (mi_tsv_created);
1470 observer_attach_tsv_deleted (mi_tsv_deleted);
1471 observer_attach_tsv_modified (mi_tsv_modified);
1472 observer_attach_breakpoint_created (mi_breakpoint_created);
1473 observer_attach_breakpoint_deleted (mi_breakpoint_deleted);
1474 observer_attach_breakpoint_modified (mi_breakpoint_modified);
1475 observer_attach_command_param_changed (mi_command_param_changed);
1476 observer_attach_memory_changed (mi_memory_changed);
1477 observer_attach_sync_execution_done (mi_on_sync_execution_done);
4034d0ff
AT
1478 observer_attach_user_selected_context_changed
1479 (mi_user_selected_context_changed);
4a8f6654 1480}
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