2011-01-10 Michael Snyder <msnyder@vmware.com>
[deliverable/binutils-gdb.git] / gdb / remote-sim.c
1 /* Generic remote debugging interface for simulators.
2
3 Copyright (C) 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002,
4 2004, 2005, 2006, 2007, 2008, 2009, 2010, 2011
5 Free Software Foundation, Inc.
6
7 Contributed by Cygnus Support.
8 Steve Chamberlain (sac@cygnus.com).
9
10 This file is part of GDB.
11
12 This program is free software; you can redistribute it and/or modify
13 it under the terms of the GNU General Public License as published by
14 the Free Software Foundation; either version 3 of the License, or
15 (at your option) any later version.
16
17 This program is distributed in the hope that it will be useful,
18 but WITHOUT ANY WARRANTY; without even the implied warranty of
19 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 GNU General Public License for more details.
21
22 You should have received a copy of the GNU General Public License
23 along with this program. If not, see <http://www.gnu.org/licenses/>. */
24
25 #include "defs.h"
26 #include "inferior.h"
27 #include "value.h"
28 #include "gdb_string.h"
29 #include <ctype.h>
30 #include <fcntl.h>
31 #include <signal.h>
32 #include <setjmp.h>
33 #include <errno.h>
34 #include "terminal.h"
35 #include "target.h"
36 #include "gdbcore.h"
37 #include "gdb/callback.h"
38 #include "gdb/remote-sim.h"
39 #include "command.h"
40 #include "regcache.h"
41 #include "gdb_assert.h"
42 #include "sim-regno.h"
43 #include "arch-utils.h"
44 #include "readline/readline.h"
45 #include "gdbthread.h"
46
47 /* Prototypes */
48
49 extern void _initialize_remote_sim (void);
50
51 static void dump_mem (char *buf, int len);
52
53 static void init_callbacks (void);
54
55 static void end_callbacks (void);
56
57 static int gdb_os_write_stdout (host_callback *, const char *, int);
58
59 static void gdb_os_flush_stdout (host_callback *);
60
61 static int gdb_os_write_stderr (host_callback *, const char *, int);
62
63 static void gdb_os_flush_stderr (host_callback *);
64
65 static int gdb_os_poll_quit (host_callback *);
66
67 /* printf_filtered is depreciated. */
68 static void gdb_os_printf_filtered (host_callback *, const char *, ...);
69
70 static void gdb_os_vprintf_filtered (host_callback *, const char *, va_list);
71
72 static void gdb_os_evprintf_filtered (host_callback *, const char *, va_list);
73
74 static void gdb_os_error (host_callback *, const char *, ...)
75 ATTRIBUTE_NORETURN;
76
77 static void gdbsim_kill (struct target_ops *);
78
79 static void gdbsim_load (char *prog, int fromtty);
80
81 static void gdbsim_open (char *args, int from_tty);
82
83 static void gdbsim_close (int quitting);
84
85 static void gdbsim_detach (struct target_ops *ops, char *args, int from_tty);
86
87 static void gdbsim_prepare_to_store (struct regcache *regcache);
88
89 static void gdbsim_files_info (struct target_ops *target);
90
91 static void gdbsim_mourn_inferior (struct target_ops *target);
92
93 static void gdbsim_stop (ptid_t ptid);
94
95 void simulator_command (char *args, int from_tty);
96
97 /* Naming convention:
98
99 sim_* are the interface to the simulator (see remote-sim.h).
100 gdbsim_* are stuff which is internal to gdb. */
101
102 /* Forward data declarations */
103 extern struct target_ops gdbsim_ops;
104
105 static const struct inferior_data *sim_inferior_data_key;
106
107 /* Simulator-specific, per-inferior state. */
108 struct sim_inferior_data {
109 /* Flag which indicates whether or not the program has been loaded. */
110 int program_loaded;
111
112 /* Simulator descriptor for this inferior. */
113 SIM_DESC gdbsim_desc;
114
115 /* This is the ptid we use for this particular simulator instance. Its
116 value is somewhat arbitrary, as the simulator target don't have a
117 notion of tasks or threads, but we need something non-null to place
118 in inferior_ptid. For simulators which permit multiple instances,
119 we also need a unique identifier to use for each inferior. */
120 ptid_t remote_sim_ptid;
121
122 /* Signal with which to resume. */
123 enum target_signal resume_siggnal;
124
125 /* Flag which indicates whether resume should step or not. */
126 int resume_step;
127 };
128
129 /* Flag indicating the "open" status of this module. It's set to 1
130 in gdbsim_open() and 0 in gdbsim_close(). */
131 static int gdbsim_is_open = 0;
132
133 /* Value of the next pid to allocate for an inferior. As indicated
134 elsewhere, its initial value is somewhat arbitrary; it's critical
135 though that it's not zero or negative. */
136 static int next_pid;
137 #define INITIAL_PID 42000
138
139 /* Argument list to pass to sim_open(). It is allocated in gdbsim_open()
140 and deallocated in gdbsim_close(). The lifetime needs to extend beyond
141 the call to gdbsim_open() due to the fact that other sim instances other
142 than the first will be allocated after the gdbsim_open() call. */
143 static char **sim_argv = NULL;
144
145 /* OS-level callback functions for write, flush, etc. */
146 static host_callback gdb_callback;
147 static int callbacks_initialized = 0;
148
149 /* Callback for iterate_over_inferiors. It checks to see if the sim
150 descriptor passed via ARG is the same as that for the inferior
151 designated by INF. Return true if so; false otherwise. */
152
153 static int
154 check_for_duplicate_sim_descriptor (struct inferior *inf, void *arg)
155 {
156 struct sim_inferior_data *sim_data;
157 SIM_DESC new_sim_desc = arg;
158
159 sim_data = inferior_data (inf, sim_inferior_data_key);
160
161 return (sim_data != NULL && sim_data->gdbsim_desc == new_sim_desc);
162 }
163
164 /* Flags indicating whether or not a sim instance is needed. One of these
165 flags should be passed to get_sim_inferior_data(). */
166
167 enum {SIM_INSTANCE_NOT_NEEDED = 0, SIM_INSTANCE_NEEDED = 1};
168
169 /* Obtain pointer to per-inferior simulator data, allocating it if necessary.
170 Attempt to open the sim if SIM_INSTANCE_NEEDED is true. */
171
172 static struct sim_inferior_data *
173 get_sim_inferior_data (struct inferior *inf, int sim_instance_needed)
174 {
175 SIM_DESC sim_desc = NULL;
176 struct sim_inferior_data *sim_data
177 = inferior_data (inf, sim_inferior_data_key);
178
179 /* Try to allocate a new sim instance, if needed. We do this ahead of
180 a potential allocation of a sim_inferior_data struct in order to
181 avoid needlessly allocating that struct in the event that the sim
182 instance allocation fails. */
183 if (sim_instance_needed == SIM_INSTANCE_NEEDED
184 && (sim_data == NULL || sim_data->gdbsim_desc == NULL))
185 {
186 struct inferior *idup;
187 sim_desc = sim_open (SIM_OPEN_DEBUG, &gdb_callback, exec_bfd, sim_argv);
188 if (sim_desc == NULL)
189 error (_("Unable to create simulator instance for inferior %d."),
190 inf->num);
191
192 idup = iterate_over_inferiors (check_for_duplicate_sim_descriptor,
193 sim_desc);
194 if (idup != NULL)
195 {
196 /* We don't close the descriptor due to the fact that it's
197 shared with some other inferior. If we were to close it,
198 that might needlessly muck up the other inferior. Of
199 course, it's possible that the damage has already been
200 done... Note that it *will* ultimately be closed during
201 cleanup of the other inferior. */
202 sim_desc = NULL;
203 error (
204 _("Inferior %d and inferior %d would have identical simulator state.\n"
205 "(This simulator does not support the running of more than one inferior.)"),
206 inf->num, idup->num);
207 }
208 }
209
210 if (sim_data == NULL)
211 {
212 sim_data = XZALLOC(struct sim_inferior_data);
213 set_inferior_data (inf, sim_inferior_data_key, sim_data);
214
215 /* Allocate a ptid for this inferior. */
216 sim_data->remote_sim_ptid = ptid_build (next_pid, 0, next_pid);
217 next_pid++;
218
219 /* Initialize the other instance variables. */
220 sim_data->program_loaded = 0;
221 sim_data->gdbsim_desc = sim_desc;
222 sim_data->resume_siggnal = TARGET_SIGNAL_0;
223 sim_data->resume_step = 0;
224 }
225 else if (sim_desc)
226 {
227 /* This handles the case where sim_data was allocated prior to
228 needing a sim instance. */
229 sim_data->gdbsim_desc = sim_desc;
230 }
231
232
233 return sim_data;
234 }
235
236 /* Return pointer to per-inferior simulator data using PTID to find the
237 inferior in question. Return NULL when no inferior is found or
238 when ptid has a zero or negative pid component. */
239
240 static struct sim_inferior_data *
241 get_sim_inferior_data_by_ptid (ptid_t ptid, int sim_instance_needed)
242 {
243 struct inferior *inf;
244 int pid = ptid_get_pid (ptid);
245
246 if (pid <= 0)
247 return NULL;
248
249 inf = find_inferior_pid (pid);
250
251 if (inf)
252 return get_sim_inferior_data (inf, sim_instance_needed);
253 else
254 return NULL;
255 }
256
257 /* Free the per-inferior simulator data. */
258
259 static void
260 sim_inferior_data_cleanup (struct inferior *inf, void *data)
261 {
262 struct sim_inferior_data *sim_data = data;
263
264 if (sim_data != NULL)
265 {
266 if (sim_data->gdbsim_desc)
267 {
268 sim_close (sim_data->gdbsim_desc, 0);
269 sim_data->gdbsim_desc = NULL;
270 }
271 xfree (sim_data);
272 }
273 }
274
275 static void
276 dump_mem (char *buf, int len)
277 {
278 if (len <= 8)
279 {
280 if (len == 8 || len == 4)
281 {
282 long l[2];
283
284 memcpy (l, buf, len);
285 printf_filtered ("\t0x%lx", l[0]);
286 if (len == 8)
287 printf_filtered (" 0x%lx", l[1]);
288 printf_filtered ("\n");
289 }
290 else
291 {
292 int i;
293
294 printf_filtered ("\t");
295 for (i = 0; i < len; i++)
296 printf_filtered ("0x%x ", buf[i]);
297 printf_filtered ("\n");
298 }
299 }
300 }
301
302 /* Initialize gdb_callback. */
303
304 static void
305 init_callbacks (void)
306 {
307 if (!callbacks_initialized)
308 {
309 gdb_callback = default_callback;
310 gdb_callback.init (&gdb_callback);
311 gdb_callback.write_stdout = gdb_os_write_stdout;
312 gdb_callback.flush_stdout = gdb_os_flush_stdout;
313 gdb_callback.write_stderr = gdb_os_write_stderr;
314 gdb_callback.flush_stderr = gdb_os_flush_stderr;
315 gdb_callback.printf_filtered = gdb_os_printf_filtered;
316 gdb_callback.vprintf_filtered = gdb_os_vprintf_filtered;
317 gdb_callback.evprintf_filtered = gdb_os_evprintf_filtered;
318 gdb_callback.error = gdb_os_error;
319 gdb_callback.poll_quit = gdb_os_poll_quit;
320 gdb_callback.magic = HOST_CALLBACK_MAGIC;
321 callbacks_initialized = 1;
322 }
323 }
324
325 /* Release callbacks (free resources used by them). */
326
327 static void
328 end_callbacks (void)
329 {
330 if (callbacks_initialized)
331 {
332 gdb_callback.shutdown (&gdb_callback);
333 callbacks_initialized = 0;
334 }
335 }
336
337 /* GDB version of os_write_stdout callback. */
338
339 static int
340 gdb_os_write_stdout (host_callback *p, const char *buf, int len)
341 {
342 int i;
343 char b[2];
344
345 ui_file_write (gdb_stdtarg, buf, len);
346 return len;
347 }
348
349 /* GDB version of os_flush_stdout callback. */
350
351 static void
352 gdb_os_flush_stdout (host_callback *p)
353 {
354 gdb_flush (gdb_stdtarg);
355 }
356
357 /* GDB version of os_write_stderr callback. */
358
359 static int
360 gdb_os_write_stderr (host_callback *p, const char *buf, int len)
361 {
362 int i;
363 char b[2];
364
365 for (i = 0; i < len; i++)
366 {
367 b[0] = buf[i];
368 b[1] = 0;
369 fputs_unfiltered (b, gdb_stdtargerr);
370 }
371 return len;
372 }
373
374 /* GDB version of os_flush_stderr callback. */
375
376 static void
377 gdb_os_flush_stderr (host_callback *p)
378 {
379 gdb_flush (gdb_stdtargerr);
380 }
381
382 /* GDB version of printf_filtered callback. */
383
384 static void
385 gdb_os_printf_filtered (host_callback * p, const char *format,...)
386 {
387 va_list args;
388
389 va_start (args, format);
390 vfprintf_filtered (gdb_stdout, format, args);
391 va_end (args);
392 }
393
394 /* GDB version of error vprintf_filtered. */
395
396 static void
397 gdb_os_vprintf_filtered (host_callback * p, const char *format, va_list ap)
398 {
399 vfprintf_filtered (gdb_stdout, format, ap);
400 }
401
402 /* GDB version of error evprintf_filtered. */
403
404 static void
405 gdb_os_evprintf_filtered (host_callback * p, const char *format, va_list ap)
406 {
407 vfprintf_filtered (gdb_stderr, format, ap);
408 }
409
410 /* GDB version of error callback. */
411
412 static void
413 gdb_os_error (host_callback * p, const char *format, ...)
414 {
415 va_list args;
416
417 va_start (args, format);
418 verror (format, args);
419 va_end (args);
420 }
421
422 int
423 one2one_register_sim_regno (struct gdbarch *gdbarch, int regnum)
424 {
425 /* Only makes sense to supply raw registers. */
426 gdb_assert (regnum >= 0 && regnum < gdbarch_num_regs (gdbarch));
427 return regnum;
428 }
429
430 static void
431 gdbsim_fetch_register (struct target_ops *ops,
432 struct regcache *regcache, int regno)
433 {
434 struct gdbarch *gdbarch = get_regcache_arch (regcache);
435 struct sim_inferior_data *sim_data
436 = get_sim_inferior_data (current_inferior (), SIM_INSTANCE_NEEDED);
437
438 if (regno == -1)
439 {
440 for (regno = 0; regno < gdbarch_num_regs (gdbarch); regno++)
441 gdbsim_fetch_register (ops, regcache, regno);
442 return;
443 }
444
445 switch (gdbarch_register_sim_regno (gdbarch, regno))
446 {
447 case LEGACY_SIM_REGNO_IGNORE:
448 break;
449 case SIM_REGNO_DOES_NOT_EXIST:
450 {
451 /* For moment treat a `does not exist' register the same way
452 as an ``unavailable'' register. */
453 char buf[MAX_REGISTER_SIZE];
454 int nr_bytes;
455
456 memset (buf, 0, MAX_REGISTER_SIZE);
457 regcache_raw_supply (regcache, regno, buf);
458 break;
459 }
460
461 default:
462 {
463 static int warn_user = 1;
464 char buf[MAX_REGISTER_SIZE];
465 int nr_bytes;
466
467 gdb_assert (regno >= 0 && regno < gdbarch_num_regs (gdbarch));
468 memset (buf, 0, MAX_REGISTER_SIZE);
469 nr_bytes = sim_fetch_register (sim_data->gdbsim_desc,
470 gdbarch_register_sim_regno
471 (gdbarch, regno),
472 buf,
473 register_size (gdbarch, regno));
474 if (nr_bytes > 0
475 && nr_bytes != register_size (gdbarch, regno) && warn_user)
476 {
477 fprintf_unfiltered (gdb_stderr,
478 "Size of register %s (%d/%d) "
479 "incorrect (%d instead of %d))",
480 gdbarch_register_name (gdbarch, regno),
481 regno,
482 gdbarch_register_sim_regno
483 (gdbarch, regno),
484 nr_bytes, register_size (gdbarch, regno));
485 warn_user = 0;
486 }
487 /* FIXME: cagney/2002-05-27: Should check `nr_bytes == 0'
488 indicating that GDB and the SIM have different ideas about
489 which registers are fetchable. */
490 /* Else if (nr_bytes < 0): an old simulator, that doesn't
491 think to return the register size. Just assume all is ok. */
492 regcache_raw_supply (regcache, regno, buf);
493 if (remote_debug)
494 {
495 printf_filtered ("gdbsim_fetch_register: %d", regno);
496 /* FIXME: We could print something more intelligible. */
497 dump_mem (buf, register_size (gdbarch, regno));
498 }
499 break;
500 }
501 }
502 }
503
504
505 static void
506 gdbsim_store_register (struct target_ops *ops,
507 struct regcache *regcache, int regno)
508 {
509 struct gdbarch *gdbarch = get_regcache_arch (regcache);
510 struct sim_inferior_data *sim_data
511 = get_sim_inferior_data (current_inferior (), SIM_INSTANCE_NEEDED);
512
513 if (regno == -1)
514 {
515 for (regno = 0; regno < gdbarch_num_regs (gdbarch); regno++)
516 gdbsim_store_register (ops, regcache, regno);
517 return;
518 }
519 else if (gdbarch_register_sim_regno (gdbarch, regno) >= 0)
520 {
521 char tmp[MAX_REGISTER_SIZE];
522 int nr_bytes;
523
524 regcache_cooked_read (regcache, regno, tmp);
525 nr_bytes = sim_store_register (sim_data->gdbsim_desc,
526 gdbarch_register_sim_regno
527 (gdbarch, regno),
528 tmp, register_size (gdbarch, regno));
529 if (nr_bytes > 0 && nr_bytes != register_size (gdbarch, regno))
530 internal_error (__FILE__, __LINE__,
531 _("Register size different to expected"));
532 /* FIXME: cagney/2002-05-27: Should check `nr_bytes == 0'
533 indicating that GDB and the SIM have different ideas about
534 which registers are fetchable. */
535 if (remote_debug)
536 {
537 printf_filtered ("gdbsim_store_register: %d", regno);
538 /* FIXME: We could print something more intelligible. */
539 dump_mem (tmp, register_size (gdbarch, regno));
540 }
541 }
542 }
543
544 /* Kill the running program. This may involve closing any open files
545 and releasing other resources acquired by the simulated program. */
546
547 static void
548 gdbsim_kill (struct target_ops *ops)
549 {
550 if (remote_debug)
551 printf_filtered ("gdbsim_kill\n");
552
553 /* There is no need to `kill' running simulator - the simulator is
554 not running. Mourning it is enough. */
555 target_mourn_inferior ();
556 }
557
558 /* Load an executable file into the target process. This is expected to
559 not only bring new code into the target process, but also to update
560 GDB's symbol tables to match. */
561
562 static void
563 gdbsim_load (char *args, int fromtty)
564 {
565 char **argv;
566 char *prog;
567 struct sim_inferior_data *sim_data
568 = get_sim_inferior_data (current_inferior (), SIM_INSTANCE_NEEDED);
569
570 if (args == NULL)
571 error_no_arg (_("program to load"));
572
573 argv = gdb_buildargv (args);
574 make_cleanup_freeargv (argv);
575
576 prog = tilde_expand (argv[0]);
577
578 if (argv[1] != NULL)
579 error (_("GDB sim does not yet support a load offset."));
580
581 if (remote_debug)
582 printf_filtered ("gdbsim_load: prog \"%s\"\n", prog);
583
584 /* FIXME: We will print two messages on error.
585 Need error to either not print anything if passed NULL or need
586 another routine that doesn't take any arguments. */
587 if (sim_load (sim_data->gdbsim_desc, prog, NULL, fromtty) == SIM_RC_FAIL)
588 error (_("unable to load program"));
589
590 /* FIXME: If a load command should reset the targets registers then
591 a call to sim_create_inferior() should go here. */
592
593 sim_data->program_loaded = 1;
594 }
595
596
597 /* Start an inferior process and set inferior_ptid to its pid.
598 EXEC_FILE is the file to run.
599 ARGS is a string containing the arguments to the program.
600 ENV is the environment vector to pass. Errors reported with error().
601 On VxWorks and various standalone systems, we ignore exec_file. */
602 /* This is called not only when we first attach, but also when the
603 user types "run" after having attached. */
604
605 static void
606 gdbsim_create_inferior (struct target_ops *target, char *exec_file, char *args,
607 char **env, int from_tty)
608 {
609 struct sim_inferior_data *sim_data
610 = get_sim_inferior_data (current_inferior (), SIM_INSTANCE_NEEDED);
611 int len;
612 char *arg_buf, **argv;
613
614 if (exec_file == 0 || exec_bfd == 0)
615 warning (_("No executable file specified."));
616 if (!sim_data->program_loaded)
617 warning (_("No program loaded."));
618
619 if (remote_debug)
620 printf_filtered ("gdbsim_create_inferior: exec_file \"%s\", args \"%s\"\n",
621 (exec_file ? exec_file : "(NULL)"),
622 args);
623
624 if (ptid_equal (inferior_ptid, sim_data->remote_sim_ptid))
625 gdbsim_kill (target);
626 remove_breakpoints ();
627 init_wait_for_inferior ();
628
629 if (exec_file != NULL)
630 {
631 len = strlen (exec_file) + 1 + strlen (args) + 1 + /*slop */ 10;
632 arg_buf = (char *) alloca (len);
633 arg_buf[0] = '\0';
634 strcat (arg_buf, exec_file);
635 strcat (arg_buf, " ");
636 strcat (arg_buf, args);
637 argv = gdb_buildargv (arg_buf);
638 make_cleanup_freeargv (argv);
639 }
640 else
641 argv = NULL;
642 sim_create_inferior (sim_data->gdbsim_desc, exec_bfd, argv, env);
643
644 inferior_ptid = sim_data->remote_sim_ptid;
645 inferior_appeared (current_inferior (), ptid_get_pid (inferior_ptid));
646 add_thread_silent (inferior_ptid);
647
648 insert_breakpoints (); /* Needed to get correct instruction
649 in cache. */
650
651 clear_proceed_status ();
652 }
653
654 /* The open routine takes the rest of the parameters from the command,
655 and (if successful) pushes a new target onto the stack.
656 Targets should supply this routine, if only to provide an error message. */
657 /* Called when selecting the simulator. E.g. (gdb) target sim name. */
658
659 static void
660 gdbsim_open (char *args, int from_tty)
661 {
662 int len;
663 char *arg_buf;
664 struct sim_inferior_data *sim_data;
665 SIM_DESC gdbsim_desc;
666
667 if (remote_debug)
668 printf_filtered ("gdbsim_open: args \"%s\"\n", args ? args : "(null)");
669
670 /* Ensure that the sim target is not on the target stack. This is
671 necessary, because if it is on the target stack, the call to
672 push_target below will invoke sim_close(), thus freeing various
673 state (including a sim instance) that we allocate prior to
674 invoking push_target(). We want to delay the push_target()
675 operation until after we complete those operations which could
676 error out. */
677 if (gdbsim_is_open)
678 unpush_target (&gdbsim_ops);
679
680 len = (7 + 1 /* gdbsim */
681 + strlen (" -E little")
682 + strlen (" --architecture=xxxxxxxxxx")
683 + (args ? strlen (args) : 0)
684 + 50) /* slack */ ;
685 arg_buf = (char *) alloca (len);
686 strcpy (arg_buf, "gdbsim"); /* 7 */
687 /* Specify the byte order for the target when it is explicitly
688 specified by the user (not auto detected). */
689 switch (selected_byte_order ())
690 {
691 case BFD_ENDIAN_BIG:
692 strcat (arg_buf, " -E big");
693 break;
694 case BFD_ENDIAN_LITTLE:
695 strcat (arg_buf, " -E little");
696 break;
697 case BFD_ENDIAN_UNKNOWN:
698 break;
699 }
700 /* Specify the architecture of the target when it has been
701 explicitly specified */
702 if (selected_architecture_name () != NULL)
703 {
704 strcat (arg_buf, " --architecture=");
705 strcat (arg_buf, selected_architecture_name ());
706 }
707 /* finally, any explicit args */
708 if (args)
709 {
710 strcat (arg_buf, " "); /* 1 */
711 strcat (arg_buf, args);
712 }
713 sim_argv = gdb_buildargv (arg_buf);
714
715 init_callbacks ();
716 gdbsim_desc = sim_open (SIM_OPEN_DEBUG, &gdb_callback, exec_bfd, sim_argv);
717
718 if (gdbsim_desc == 0)
719 {
720 freeargv (sim_argv);
721 sim_argv = NULL;
722 error (_("unable to create simulator instance"));
723 }
724
725 /* Reset the pid numberings for this batch of sim instances. */
726 next_pid = INITIAL_PID;
727
728 /* Allocate the inferior data, but do not allocate a sim instance
729 since we've already just done that. */
730 sim_data = get_sim_inferior_data (current_inferior (),
731 SIM_INSTANCE_NOT_NEEDED);
732
733 sim_data->gdbsim_desc = gdbsim_desc;
734
735 push_target (&gdbsim_ops);
736 printf_filtered ("Connected to the simulator.\n");
737
738 /* There's nothing running after "target sim" or "load"; not until
739 "run". */
740 inferior_ptid = null_ptid;
741
742 gdbsim_is_open = 1;
743 }
744
745 /* Callback for iterate_over_inferiors. Called (indirectly) by
746 gdbsim_close(). */
747
748 static int
749 gdbsim_close_inferior (struct inferior *inf, void *arg)
750 {
751 struct sim_inferior_data *sim_data = inferior_data (inf,
752 sim_inferior_data_key);
753 if (sim_data != NULL)
754 {
755 ptid_t ptid = sim_data->remote_sim_ptid;
756
757 sim_inferior_data_cleanup (inf, sim_data);
758 set_inferior_data (inf, sim_inferior_data_key, NULL);
759
760 /* Having a ptid allocated and stored in remote_sim_ptid does
761 not mean that a corresponding inferior was ever created.
762 Thus we need to verify the existence of an inferior using the
763 pid in question before setting inferior_ptid via
764 switch_to_thread() or mourning the inferior. */
765 if (find_inferior_pid (ptid_get_pid (ptid)) != NULL)
766 {
767 switch_to_thread (ptid);
768 generic_mourn_inferior ();
769 }
770 }
771
772 return 0;
773 }
774
775 /* Does whatever cleanup is required for a target that we are no longer
776 going to be calling. Argument says whether we are quitting gdb and
777 should not get hung in case of errors, or whether we want a clean
778 termination even if it takes a while. This routine is automatically
779 always called just before a routine is popped off the target stack.
780 Closing file descriptors and freeing memory are typical things it should
781 do. */
782 /* Close out all files and local state before this target loses control. */
783
784 static void
785 gdbsim_close (int quitting)
786 {
787 struct sim_inferior_data *sim_data
788 = get_sim_inferior_data (current_inferior (), SIM_INSTANCE_NOT_NEEDED);
789
790 if (remote_debug)
791 printf_filtered ("gdbsim_close: quitting %d\n", quitting);
792
793 iterate_over_inferiors (gdbsim_close_inferior, NULL);
794
795 if (sim_argv != NULL)
796 {
797 freeargv (sim_argv);
798 sim_argv = NULL;
799 }
800
801 end_callbacks ();
802
803 gdbsim_is_open = 0;
804 }
805
806 /* Takes a program previously attached to and detaches it.
807 The program may resume execution (some targets do, some don't) and will
808 no longer stop on signals, etc. We better not have left any breakpoints
809 in the program or it'll die when it hits one. ARGS is arguments
810 typed by the user (e.g. a signal to send the process). FROM_TTY
811 says whether to be verbose or not. */
812 /* Terminate the open connection to the remote debugger.
813 Use this when you want to detach and do something else with your gdb. */
814
815 static void
816 gdbsim_detach (struct target_ops *ops, char *args, int from_tty)
817 {
818 if (remote_debug)
819 printf_filtered ("gdbsim_detach: args \"%s\"\n", args);
820
821 pop_target (); /* calls gdbsim_close to do the real work */
822 if (from_tty)
823 printf_filtered ("Ending simulator %s debugging\n", target_shortname);
824 }
825
826 /* Resume execution of the target process. STEP says whether to single-step
827 or to run free; SIGGNAL is the signal value (e.g. SIGINT) to be given
828 to the target, or zero for no signal. */
829
830 struct resume_data
831 {
832 enum target_signal siggnal;
833 int step;
834 };
835
836 static int
837 gdbsim_resume_inferior (struct inferior *inf, void *arg)
838 {
839 struct sim_inferior_data *sim_data
840 = get_sim_inferior_data (inf, SIM_INSTANCE_NOT_NEEDED);
841 struct resume_data *rd = arg;
842
843 if (sim_data)
844 {
845 sim_data->resume_siggnal = rd->siggnal;
846 sim_data->resume_step = rd->step;
847
848 if (remote_debug)
849 printf_filtered (_("gdbsim_resume: pid %d, step %d, signal %d\n"),
850 inf->pid, rd->step, rd->siggnal);
851 }
852
853 /* When called from iterate_over_inferiors, a zero return causes the
854 iteration process to proceed until there are no more inferiors to
855 consider. */
856 return 0;
857 }
858
859 static void
860 gdbsim_resume (struct target_ops *ops,
861 ptid_t ptid, int step, enum target_signal siggnal)
862 {
863 struct resume_data rd;
864 struct sim_inferior_data *sim_data
865 = get_sim_inferior_data_by_ptid (ptid, SIM_INSTANCE_NOT_NEEDED);
866
867 rd.siggnal = siggnal;
868 rd.step = step;
869
870 /* We don't access any sim_data members within this function.
871 What's of interest is whether or not the call to
872 get_sim_inferior_data_by_ptid(), above, is able to obtain a
873 non-NULL pointer. If it managed to obtain a non-NULL pointer, we
874 know we have a single inferior to consider. If it's NULL, we
875 either have multiple inferiors to resume or an error condition. */
876
877 if (sim_data)
878 gdbsim_resume_inferior (find_inferior_pid (ptid_get_pid (ptid)), &rd);
879 else if (ptid_equal (ptid, minus_one_ptid))
880 iterate_over_inferiors (gdbsim_resume_inferior, &rd);
881 else
882 error (_("The program is not being run."));
883 }
884
885 /* Notify the simulator of an asynchronous request to stop.
886
887 The simulator shall ensure that the stop request is eventually
888 delivered to the simulator. If the call is made while the
889 simulator is not running then the stop request is processed when
890 the simulator is next resumed.
891
892 For simulators that do not support this operation, just abort. */
893
894 static int
895 gdbsim_stop_inferior (struct inferior *inf, void *arg)
896 {
897 struct sim_inferior_data *sim_data
898 = get_sim_inferior_data (inf, SIM_INSTANCE_NEEDED);
899
900 if (sim_data)
901 {
902 if (!sim_stop (sim_data->gdbsim_desc))
903 {
904 quit ();
905 }
906 }
907
908 /* When called from iterate_over_inferiors, a zero return causes the
909 iteration process to proceed until there are no more inferiors to
910 consider. */
911 return 0;
912 }
913
914 static void
915 gdbsim_stop (ptid_t ptid)
916 {
917 struct sim_inferior_data *sim_data;
918
919 if (ptid_equal (ptid, minus_one_ptid))
920 {
921 iterate_over_inferiors (gdbsim_stop_inferior, NULL);
922 }
923 else
924 {
925 struct inferior *inf = find_inferior_pid (ptid_get_pid (ptid));
926
927 if (inf == NULL)
928 error (_("Can't stop pid %d. No inferior found."),
929 ptid_get_pid (ptid));
930
931 gdbsim_stop_inferior (inf, NULL);
932 }
933 }
934
935 /* GDB version of os_poll_quit callback.
936 Taken from gdb/util.c - should be in a library. */
937
938 static int
939 gdb_os_poll_quit (host_callback *p)
940 {
941 if (deprecated_ui_loop_hook != NULL)
942 deprecated_ui_loop_hook (0);
943
944 if (quit_flag) /* gdb's idea of quit */
945 {
946 quit_flag = 0; /* we've stolen it */
947 return 1;
948 }
949 else if (immediate_quit)
950 {
951 return 1;
952 }
953 return 0;
954 }
955
956 /* Wait for inferior process to do something. Return pid of child,
957 or -1 in case of error; store status through argument pointer STATUS,
958 just as `wait' would. */
959
960 static void
961 gdbsim_cntrl_c (int signo)
962 {
963 gdbsim_stop (minus_one_ptid);
964 }
965
966 static ptid_t
967 gdbsim_wait (struct target_ops *ops,
968 ptid_t ptid, struct target_waitstatus *status, int options)
969 {
970 struct sim_inferior_data *sim_data;
971 static RETSIGTYPE (*prev_sigint) ();
972 int sigrc = 0;
973 enum sim_stop reason = sim_running;
974
975 /* This target isn't able to (yet) resume more than one inferior at a time.
976 When ptid is minus_one_ptid, just use the current inferior. If we're
977 given an explicit pid, we'll try to find it and use that instead. */
978 if (ptid_equal (ptid, minus_one_ptid))
979 sim_data = get_sim_inferior_data (current_inferior (),
980 SIM_INSTANCE_NEEDED);
981 else
982 {
983 sim_data = get_sim_inferior_data_by_ptid (ptid, SIM_INSTANCE_NEEDED);
984 if (sim_data == NULL)
985 error (_("Unable to wait for pid %d. Inferior not found."),
986 ptid_get_pid (ptid));
987 inferior_ptid = ptid;
988 }
989
990 if (remote_debug)
991 printf_filtered ("gdbsim_wait\n");
992
993 #if defined (HAVE_SIGACTION) && defined (SA_RESTART)
994 {
995 struct sigaction sa, osa;
996 sa.sa_handler = gdbsim_cntrl_c;
997 sigemptyset (&sa.sa_mask);
998 sa.sa_flags = 0;
999 sigaction (SIGINT, &sa, &osa);
1000 prev_sigint = osa.sa_handler;
1001 }
1002 #else
1003 prev_sigint = signal (SIGINT, gdbsim_cntrl_c);
1004 #endif
1005 sim_resume (sim_data->gdbsim_desc, sim_data->resume_step,
1006 sim_data->resume_siggnal);
1007
1008 signal (SIGINT, prev_sigint);
1009 sim_data->resume_step = 0;
1010
1011 sim_stop_reason (sim_data->gdbsim_desc, &reason, &sigrc);
1012
1013 switch (reason)
1014 {
1015 case sim_exited:
1016 status->kind = TARGET_WAITKIND_EXITED;
1017 status->value.integer = sigrc;
1018 break;
1019 case sim_stopped:
1020 switch (sigrc)
1021 {
1022 case TARGET_SIGNAL_ABRT:
1023 quit ();
1024 break;
1025 case TARGET_SIGNAL_INT:
1026 case TARGET_SIGNAL_TRAP:
1027 default:
1028 status->kind = TARGET_WAITKIND_STOPPED;
1029 status->value.sig = sigrc;
1030 break;
1031 }
1032 break;
1033 case sim_signalled:
1034 status->kind = TARGET_WAITKIND_SIGNALLED;
1035 status->value.sig = sigrc;
1036 break;
1037 case sim_running:
1038 case sim_polling:
1039 /* FIXME: Is this correct? */
1040 break;
1041 }
1042
1043 return inferior_ptid;
1044 }
1045
1046 /* Get ready to modify the registers array. On machines which store
1047 individual registers, this doesn't need to do anything. On machines
1048 which store all the registers in one fell swoop, this makes sure
1049 that registers contains all the registers from the program being
1050 debugged. */
1051
1052 static void
1053 gdbsim_prepare_to_store (struct regcache *regcache)
1054 {
1055 /* Do nothing, since we can store individual regs. */
1056 }
1057
1058 /* Transfer LEN bytes between GDB address MYADDR and target address
1059 MEMADDR. If WRITE is non-zero, transfer them to the target,
1060 otherwise transfer them from the target. TARGET is unused.
1061
1062 Returns the number of bytes transferred. */
1063
1064 static int
1065 gdbsim_xfer_inferior_memory (CORE_ADDR memaddr, gdb_byte *myaddr, int len,
1066 int write, struct mem_attrib *attrib,
1067 struct target_ops *target)
1068 {
1069 struct sim_inferior_data *sim_data
1070 = get_sim_inferior_data (current_inferior (), SIM_INSTANCE_NOT_NEEDED);
1071
1072 /* If this target doesn't have memory yet, return 0 causing the
1073 request to be passed to a lower target, hopefully an exec
1074 file. */
1075 if (!target->to_has_memory (target))
1076 return 0;
1077
1078 if (!sim_data->program_loaded)
1079 error (_("No program loaded."));
1080
1081 /* Note that we obtained the sim_data pointer above using
1082 SIM_INSTANCE_NOT_NEEDED. We do this so that we don't needlessly
1083 allocate a sim instance prior to loading a program. If we
1084 get to this point in the code though, gdbsim_desc should be
1085 non-NULL. (Note that a sim instance is needed in order to load
1086 the program...) */
1087 gdb_assert (sim_data->gdbsim_desc != NULL);
1088
1089 if (remote_debug)
1090 {
1091 /* FIXME: Send to something other than STDOUT? */
1092 printf_filtered ("gdbsim_xfer_inferior_memory: myaddr 0x");
1093 gdb_print_host_address (myaddr, gdb_stdout);
1094 printf_filtered (", memaddr %s, len %d, write %d\n",
1095 paddress (target_gdbarch, memaddr), len, write);
1096 if (remote_debug && write)
1097 dump_mem (myaddr, len);
1098 }
1099
1100 if (write)
1101 {
1102 len = sim_write (sim_data->gdbsim_desc, memaddr, myaddr, len);
1103 }
1104 else
1105 {
1106 len = sim_read (sim_data->gdbsim_desc, memaddr, myaddr, len);
1107 if (remote_debug && len > 0)
1108 dump_mem (myaddr, len);
1109 }
1110 return len;
1111 }
1112
1113 static void
1114 gdbsim_files_info (struct target_ops *target)
1115 {
1116 struct sim_inferior_data *sim_data
1117 = get_sim_inferior_data (current_inferior (), SIM_INSTANCE_NEEDED);
1118 const char *file = "nothing";
1119
1120 if (exec_bfd)
1121 file = bfd_get_filename (exec_bfd);
1122
1123 if (remote_debug)
1124 printf_filtered ("gdbsim_files_info: file \"%s\"\n", file);
1125
1126 if (exec_bfd)
1127 {
1128 printf_filtered ("\tAttached to %s running program %s\n",
1129 target_shortname, file);
1130 sim_info (sim_data->gdbsim_desc, 0);
1131 }
1132 }
1133
1134 /* Clear the simulator's notion of what the break points are. */
1135
1136 static void
1137 gdbsim_mourn_inferior (struct target_ops *target)
1138 {
1139 struct sim_inferior_data *sim_data
1140 = get_sim_inferior_data (current_inferior (), SIM_INSTANCE_NOT_NEEDED);
1141
1142 if (remote_debug)
1143 printf_filtered ("gdbsim_mourn_inferior:\n");
1144
1145 remove_breakpoints ();
1146 generic_mourn_inferior ();
1147 delete_thread_silent (sim_data->remote_sim_ptid);
1148 }
1149
1150 /* Pass the command argument through to the simulator verbatim. The
1151 simulator must do any command interpretation work. */
1152
1153 void
1154 simulator_command (char *args, int from_tty)
1155 {
1156 struct sim_inferior_data *sim_data;
1157
1158 /* We use inferior_data() instead of get_sim_inferior_data() here in
1159 order to avoid attaching a sim_inferior_data struct to an
1160 inferior unnecessarily. The reason we take such care here is due
1161 to the fact that this function, simulator_command(), may be called
1162 even when the sim target is not active. If we were to use
1163 get_sim_inferior_data() here, it is possible that this call would
1164 be made either prior to gdbsim_open() or after gdbsim_close(),
1165 thus allocating memory that would not be garbage collected until
1166 the ultimate destruction of the associated inferior. */
1167
1168 sim_data = inferior_data (current_inferior (), sim_inferior_data_key);
1169 if (sim_data == NULL || sim_data->gdbsim_desc == NULL)
1170 {
1171
1172 /* PREVIOUSLY: The user may give a command before the simulator
1173 is opened. [...] (??? assuming of course one wishes to
1174 continue to allow commands to be sent to unopened simulators,
1175 which isn't entirely unreasonable). */
1176
1177 /* The simulator is a builtin abstraction of a remote target.
1178 Consistent with that model, access to the simulator, via sim
1179 commands, is restricted to the period when the channel to the
1180 simulator is open. */
1181
1182 error (_("Not connected to the simulator target"));
1183 }
1184
1185 sim_do_command (sim_data->gdbsim_desc, args);
1186
1187 /* Invalidate the register cache, in case the simulator command does
1188 something funny. */
1189 registers_changed ();
1190 }
1191
1192 /* Check to see if a thread is still alive. */
1193
1194 static int
1195 gdbsim_thread_alive (struct target_ops *ops, ptid_t ptid)
1196 {
1197 struct sim_inferior_data *sim_data
1198 = get_sim_inferior_data_by_ptid (ptid, SIM_INSTANCE_NOT_NEEDED);
1199
1200 if (sim_data == NULL)
1201 return 0;
1202
1203 if (ptid_equal (ptid, sim_data->remote_sim_ptid))
1204 /* The simulators' task is always alive. */
1205 return 1;
1206
1207 return 0;
1208 }
1209
1210 /* Convert a thread ID to a string. Returns the string in a static
1211 buffer. */
1212
1213 static char *
1214 gdbsim_pid_to_str (struct target_ops *ops, ptid_t ptid)
1215 {
1216 return normal_pid_to_str (ptid);
1217 }
1218
1219 /* Simulator memory may be accessed after the program has been loaded. */
1220
1221 int
1222 gdbsim_has_all_memory (struct target_ops *ops)
1223 {
1224 struct sim_inferior_data *sim_data
1225 = get_sim_inferior_data (current_inferior (), SIM_INSTANCE_NOT_NEEDED);
1226
1227 if (!sim_data->program_loaded)
1228 return 0;
1229
1230 return 1;
1231 }
1232
1233 int
1234 gdbsim_has_memory (struct target_ops *ops)
1235 {
1236 struct sim_inferior_data *sim_data
1237 = get_sim_inferior_data (current_inferior (), SIM_INSTANCE_NOT_NEEDED);
1238
1239 if (!sim_data->program_loaded)
1240 return 0;
1241
1242 return 1;
1243 }
1244
1245 /* Define the target subroutine names. */
1246
1247 struct target_ops gdbsim_ops;
1248
1249 static void
1250 init_gdbsim_ops (void)
1251 {
1252 gdbsim_ops.to_shortname = "sim";
1253 gdbsim_ops.to_longname = "simulator";
1254 gdbsim_ops.to_doc = "Use the compiled-in simulator.";
1255 gdbsim_ops.to_open = gdbsim_open;
1256 gdbsim_ops.to_close = gdbsim_close;
1257 gdbsim_ops.to_detach = gdbsim_detach;
1258 gdbsim_ops.to_resume = gdbsim_resume;
1259 gdbsim_ops.to_wait = gdbsim_wait;
1260 gdbsim_ops.to_fetch_registers = gdbsim_fetch_register;
1261 gdbsim_ops.to_store_registers = gdbsim_store_register;
1262 gdbsim_ops.to_prepare_to_store = gdbsim_prepare_to_store;
1263 gdbsim_ops.deprecated_xfer_memory = gdbsim_xfer_inferior_memory;
1264 gdbsim_ops.to_files_info = gdbsim_files_info;
1265 gdbsim_ops.to_insert_breakpoint = memory_insert_breakpoint;
1266 gdbsim_ops.to_remove_breakpoint = memory_remove_breakpoint;
1267 gdbsim_ops.to_kill = gdbsim_kill;
1268 gdbsim_ops.to_load = gdbsim_load;
1269 gdbsim_ops.to_create_inferior = gdbsim_create_inferior;
1270 gdbsim_ops.to_mourn_inferior = gdbsim_mourn_inferior;
1271 gdbsim_ops.to_stop = gdbsim_stop;
1272 gdbsim_ops.to_thread_alive = gdbsim_thread_alive;
1273 gdbsim_ops.to_pid_to_str = gdbsim_pid_to_str;
1274 gdbsim_ops.to_stratum = process_stratum;
1275 gdbsim_ops.to_has_all_memory = gdbsim_has_all_memory;
1276 gdbsim_ops.to_has_memory = gdbsim_has_memory;
1277 gdbsim_ops.to_has_stack = default_child_has_stack;
1278 gdbsim_ops.to_has_registers = default_child_has_registers;
1279 gdbsim_ops.to_has_execution = default_child_has_execution;
1280 gdbsim_ops.to_magic = OPS_MAGIC;
1281 }
1282
1283 void
1284 _initialize_remote_sim (void)
1285 {
1286 init_gdbsim_ops ();
1287 add_target (&gdbsim_ops);
1288
1289 add_com ("sim", class_obscure, simulator_command,
1290 _("Send a command to the simulator."));
1291
1292 sim_inferior_data_key
1293 = register_inferior_data_with_cleanup (sim_inferior_data_cleanup);
1294 }
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