Disable readline's SIGWINCH handler
[deliverable/binutils-gdb.git] / gdb / utils.c
CommitLineData
c906108c 1/* General utility routines for GDB, the GNU debugger.
1bac305b 2
32d0add0 3 Copyright (C) 1986-2015 Free Software Foundation, Inc.
c906108c 4
c5aa993b 5 This file is part of GDB.
c906108c 6
c5aa993b
JM
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
c5aa993b 10 (at your option) any later version.
c906108c 11
c5aa993b
JM
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
c906108c 16
c5aa993b 17 You should have received a copy of the GNU General Public License
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c 19
4e8f7a8b 20#include "defs.h"
5a56e9c5 21#include "dyn-string.h"
4e8f7a8b 22#include <ctype.h>
0b6cb71e 23#include "gdb_wait.h"
4e8f7a8b 24#include "event-top.h"
95e54da7 25#include "gdbthread.h"
202cbf1c 26#include "fnmatch.h"
cbb099e8 27#include "gdb_bfd.h"
7991dee7
JK
28#ifdef HAVE_SYS_RESOURCE_H
29#include <sys/resource.h>
30#endif /* HAVE_SYS_RESOURCE_H */
4e8f7a8b 31
6a83354a
AC
32#ifdef TUI
33#include "tui/tui.h" /* For tui_get_command_dimension. */
34#endif
35
9d271fd8
AC
36#ifdef __GO32__
37#include <pc.h>
38#endif
39
042be3a9 40#include <signal.h>
0a1c4d10 41#include "timeval-utils.h"
c906108c
SS
42#include "gdbcmd.h"
43#include "serial.h"
44#include "bfd.h"
45#include "target.h"
50f182aa 46#include "gdb-demangle.h"
c906108c
SS
47#include "expression.h"
48#include "language.h"
234b45d4 49#include "charset.h"
c906108c 50#include "annotate.h"
303c8ebd 51#include "filenames.h"
7b90c3f9 52#include "symfile.h"
ae5a43e0 53#include "gdb_obstack.h"
9544c605 54#include "gdbcore.h"
698ba934 55#include "top.h"
7c953934 56#include "main.h"
cb08cc53 57#include "solist.h"
c906108c 58
8731e58e 59#include "inferior.h" /* for signed_pointer_to_address */
ac2e2ef7 60
3b78cdbb 61#include "gdb_curses.h"
020cc13c 62
dbda9972 63#include "readline/readline.h"
c906108c 64
75feb17d
DJ
65#include <sys/time.h>
66#include <time.h>
67
8626589c 68#include "gdb_usleep.h"
390a8aca 69#include "interps.h"
dc92e161 70#include "gdb_regex.h"
8626589c 71
a3828db0 72#if !HAVE_DECL_MALLOC
5ac79d78 73extern PTR malloc (); /* ARI: PTR */
3c37485b 74#endif
a3828db0 75#if !HAVE_DECL_REALLOC
5ac79d78 76extern PTR realloc (); /* ARI: PTR */
0e52036f 77#endif
a3828db0 78#if !HAVE_DECL_FREE
81b8eb80
AC
79extern void free ();
80#endif
81b8eb80 81
9a4105ab 82void (*deprecated_error_begin_hook) (void);
c906108c
SS
83
84/* Prototypes for local functions */
85
d9fcf2fb 86static void vfprintf_maybe_filtered (struct ui_file *, const char *,
a0b31db1 87 va_list, int) ATTRIBUTE_PRINTF (2, 0);
c906108c 88
d9fcf2fb 89static void fputs_maybe_filtered (const char *, struct ui_file *, int);
c906108c 90
a14ed312 91static void prompt_for_continue (void);
c906108c 92
eb0d3137 93static void set_screen_size (void);
a14ed312 94static void set_width (void);
c906108c 95
260c0b2a
DE
96/* Time spent in prompt_for_continue in the currently executing command
97 waiting for user to respond.
98 Initialized in make_command_stats_cleanup.
99 Modified in prompt_for_continue and defaulted_query.
100 Used in report_command_stats. */
101
102static struct timeval prompt_for_continue_wait_time;
103
75feb17d
DJ
104/* A flag indicating whether to timestamp debugging messages. */
105
106static int debug_timestamp = 0;
107
581e13c1 108/* Nonzero if we have job control. */
c906108c
SS
109
110int job_control;
111
c906108c
SS
112/* Nonzero means quit immediately if Control-C is typed now, rather
113 than waiting until QUIT is executed. Be careful in setting this;
114 code which executes with immediate_quit set has to be very careful
115 about being able to deal with being interrupted at any time. It is
116 almost always better to use QUIT; the only exception I can think of
117 is being able to quit out of a system call (using EINTR loses if
118 the SIGINT happens between the previous QUIT and the system call).
119 To immediately quit in the case in which a SIGINT happens between
120 the previous QUIT and setting immediate_quit (desirable anytime we
121 expect to block), call QUIT after setting immediate_quit. */
122
123int immediate_quit;
124
c906108c
SS
125/* Nonzero means that strings with character values >0x7F should be printed
126 as octal escapes. Zero means just print the value (e.g. it's an
127 international character, and the terminal or window can cope.) */
128
129int sevenbit_strings = 0;
920d2a44
AC
130static void
131show_sevenbit_strings (struct ui_file *file, int from_tty,
132 struct cmd_list_element *c, const char *value)
133{
3e43a32a
MS
134 fprintf_filtered (file, _("Printing of 8-bit characters "
135 "in strings as \\nnn is %s.\n"),
920d2a44
AC
136 value);
137}
c906108c 138
c906108c
SS
139/* String to be printed before warning messages, if any. */
140
141char *warning_pre_print = "\nwarning: ";
142
143int pagination_enabled = 1;
920d2a44
AC
144static void
145show_pagination_enabled (struct ui_file *file, int from_tty,
146 struct cmd_list_element *c, const char *value)
147{
148 fprintf_filtered (file, _("State of pagination is %s.\n"), value);
149}
150
c906108c 151\f
c27f5738 152/* Cleanup utilities.
c5aa993b 153
c27f5738
DE
154 These are not defined in cleanups.c (nor declared in cleanups.h)
155 because while they use the "cleanup API" they are not part of the
156 "cleanup API". */
7a292a7a 157
7a292a7a 158static void
fba45db2 159do_freeargv (void *arg)
7a292a7a 160{
c5aa993b 161 freeargv ((char **) arg);
7a292a7a
SS
162}
163
164struct cleanup *
fba45db2 165make_cleanup_freeargv (char **arg)
7a292a7a 166{
e0088cfd 167 return make_cleanup (do_freeargv, arg);
7a292a7a
SS
168}
169
5a56e9c5
DE
170static void
171do_dyn_string_delete (void *arg)
172{
173 dyn_string_delete ((dyn_string_t) arg);
174}
175
176struct cleanup *
177make_cleanup_dyn_string_delete (dyn_string_t arg)
178{
e0088cfd 179 return make_cleanup (do_dyn_string_delete, arg);
5a56e9c5
DE
180}
181
5c65bbb6
AC
182static void
183do_bfd_close_cleanup (void *arg)
184{
cbb099e8 185 gdb_bfd_unref (arg);
5c65bbb6
AC
186}
187
188struct cleanup *
f9a062ff 189make_cleanup_bfd_unref (bfd *abfd)
5c65bbb6
AC
190{
191 return make_cleanup (do_bfd_close_cleanup, abfd);
192}
193
f5ff8c83
AC
194static void
195do_close_cleanup (void *arg)
196{
f042532c 197 int *fd = arg;
e0627e85 198
f042532c 199 close (*fd);
f5ff8c83
AC
200}
201
202struct cleanup *
203make_cleanup_close (int fd)
204{
f042532c 205 int *saved_fd = xmalloc (sizeof (fd));
e0627e85 206
f042532c 207 *saved_fd = fd;
a05016c0 208 return make_cleanup_dtor (do_close_cleanup, saved_fd, xfree);
f5ff8c83
AC
209}
210
7c8a8b04
TT
211/* Helper function which does the work for make_cleanup_fclose. */
212
213static void
214do_fclose_cleanup (void *arg)
215{
c02866a0 216 FILE *file = arg;
e0627e85 217
c02866a0 218 fclose (file);
7c8a8b04
TT
219}
220
221/* Return a new cleanup that closes FILE. */
222
223struct cleanup *
224make_cleanup_fclose (FILE *file)
225{
226 return make_cleanup (do_fclose_cleanup, file);
227}
228
16ad9370
TT
229/* Helper function which does the work for make_cleanup_obstack_free. */
230
231static void
232do_obstack_free (void *arg)
233{
234 struct obstack *ob = arg;
e0627e85 235
16ad9370
TT
236 obstack_free (ob, NULL);
237}
238
239/* Return a new cleanup that frees OBSTACK. */
240
241struct cleanup *
242make_cleanup_obstack_free (struct obstack *obstack)
243{
244 return make_cleanup (do_obstack_free, obstack);
245}
246
11cf8741 247static void
d9fcf2fb 248do_ui_file_delete (void *arg)
11cf8741 249{
d9fcf2fb 250 ui_file_delete (arg);
11cf8741
JM
251}
252
253struct cleanup *
d9fcf2fb 254make_cleanup_ui_file_delete (struct ui_file *arg)
11cf8741 255{
e0088cfd 256 return make_cleanup (do_ui_file_delete, arg);
11cf8741
JM
257}
258
8d4d924b
JK
259/* Helper function for make_cleanup_ui_out_redirect_pop. */
260
261static void
262do_ui_out_redirect_pop (void *arg)
263{
264 struct ui_out *uiout = arg;
265
266 if (ui_out_redirect (uiout, NULL) < 0)
267 warning (_("Cannot restore redirection of the current output protocol"));
268}
269
270/* Return a new cleanup that pops the last redirection by ui_out_redirect
271 with NULL parameter. */
272
273struct cleanup *
274make_cleanup_ui_out_redirect_pop (struct ui_out *uiout)
275{
e0088cfd 276 return make_cleanup (do_ui_out_redirect_pop, uiout);
8d4d924b
JK
277}
278
7b90c3f9
JB
279static void
280do_free_section_addr_info (void *arg)
281{
282 free_section_addr_info (arg);
283}
284
285struct cleanup *
286make_cleanup_free_section_addr_info (struct section_addr_info *addrs)
287{
e0088cfd 288 return make_cleanup (do_free_section_addr_info, addrs);
7b90c3f9
JB
289}
290
0b080f59
VP
291struct restore_integer_closure
292{
293 int *variable;
294 int value;
295};
296
297static void
298restore_integer (void *p)
299{
300 struct restore_integer_closure *closure = p;
e0627e85 301
0b080f59
VP
302 *(closure->variable) = closure->value;
303}
7b90c3f9 304
3e43a32a
MS
305/* Remember the current value of *VARIABLE and make it restored when
306 the cleanup is run. */
5da1313b 307
c906108c 308struct cleanup *
0b080f59
VP
309make_cleanup_restore_integer (int *variable)
310{
311 struct restore_integer_closure *c =
312 xmalloc (sizeof (struct restore_integer_closure));
e0627e85 313
0b080f59
VP
314 c->variable = variable;
315 c->value = *variable;
316
e0088cfd 317 return make_cleanup_dtor (restore_integer, (void *) c, xfree);
0b080f59
VP
318}
319
3e43a32a
MS
320/* Remember the current value of *VARIABLE and make it restored when
321 the cleanup is run. */
5da1313b
JK
322
323struct cleanup *
324make_cleanup_restore_uinteger (unsigned int *variable)
325{
326 return make_cleanup_restore_integer ((int *) variable);
327}
328
c0edd9ed
JK
329/* Helper for make_cleanup_unpush_target. */
330
331static void
332do_unpush_target (void *arg)
333{
334 struct target_ops *ops = arg;
335
336 unpush_target (ops);
337}
338
339/* Return a new cleanup that unpushes OPS. */
340
341struct cleanup *
342make_cleanup_unpush_target (struct target_ops *ops)
343{
e0088cfd 344 return make_cleanup (do_unpush_target, ops);
c0edd9ed
JK
345}
346
8e3b41a9
JK
347/* Helper for make_cleanup_htab_delete compile time checking the types. */
348
349static void
350do_htab_delete_cleanup (void *htab_voidp)
351{
352 htab_t htab = htab_voidp;
353
354 htab_delete (htab);
355}
356
357/* Return a new cleanup that deletes HTAB. */
358
359struct cleanup *
360make_cleanup_htab_delete (htab_t htab)
361{
362 return make_cleanup (do_htab_delete_cleanup, htab);
363}
364
5da1313b
JK
365struct restore_ui_file_closure
366{
367 struct ui_file **variable;
368 struct ui_file *value;
369};
370
371static void
372do_restore_ui_file (void *p)
373{
374 struct restore_ui_file_closure *closure = p;
375
376 *(closure->variable) = closure->value;
377}
378
379/* Remember the current value of *VARIABLE and make it restored when
380 the cleanup is run. */
381
382struct cleanup *
383make_cleanup_restore_ui_file (struct ui_file **variable)
384{
385 struct restore_ui_file_closure *c = XNEW (struct restore_ui_file_closure);
386
387 c->variable = variable;
388 c->value = *variable;
389
390 return make_cleanup_dtor (do_restore_ui_file, (void *) c, xfree);
391}
392
028d0ed5
TJB
393/* Helper for make_cleanup_value_free_to_mark. */
394
395static void
396do_value_free_to_mark (void *value)
397{
398 value_free_to_mark ((struct value *) value);
399}
400
401/* Free all values allocated since MARK was obtained by value_mark
402 (except for those released) when the cleanup is run. */
403
404struct cleanup *
405make_cleanup_value_free_to_mark (struct value *mark)
406{
e0088cfd 407 return make_cleanup (do_value_free_to_mark, mark);
028d0ed5
TJB
408}
409
72fc29ff
TT
410/* Helper for make_cleanup_value_free. */
411
412static void
413do_value_free (void *value)
414{
415 value_free (value);
416}
417
418/* Free VALUE. */
419
420struct cleanup *
421make_cleanup_value_free (struct value *value)
422{
e0088cfd 423 return make_cleanup (do_value_free, value);
72fc29ff
TT
424}
425
cb08cc53
JK
426/* Helper for make_cleanup_free_so. */
427
428static void
429do_free_so (void *arg)
430{
431 struct so_list *so = arg;
432
433 free_so (so);
434}
435
436/* Make cleanup handler calling free_so for SO. */
437
438struct cleanup *
439make_cleanup_free_so (struct so_list *so)
440{
e0088cfd 441 return make_cleanup (do_free_so, so);
cb08cc53
JK
442}
443
5b12a61c
JK
444/* Helper for make_cleanup_restore_current_language. */
445
446static void
447do_restore_current_language (void *p)
448{
449 enum language saved_lang = (uintptr_t) p;
450
451 set_language (saved_lang);
452}
453
454/* Remember the current value of CURRENT_LANGUAGE and make it restored when
455 the cleanup is run. */
456
457struct cleanup *
458make_cleanup_restore_current_language (void)
459{
460 enum language saved_lang = current_language->la_language;
461
462 return make_cleanup (do_restore_current_language,
463 (void *) (uintptr_t) saved_lang);
464}
465
410a0ff2
SDJ
466/* Helper function for make_cleanup_clear_parser_state. */
467
468static void
469do_clear_parser_state (void *ptr)
470{
471 struct parser_state **p = (struct parser_state **) ptr;
472
473 *p = NULL;
474}
475
476/* Clean (i.e., set to NULL) the parser state variable P. */
477
478struct cleanup *
479make_cleanup_clear_parser_state (struct parser_state **p)
480{
481 return make_cleanup (do_clear_parser_state, (void *) p);
482}
483
c906108c
SS
484/* This function is useful for cleanups.
485 Do
486
c5aa993b
JM
487 foo = xmalloc (...);
488 old_chain = make_cleanup (free_current_contents, &foo);
c906108c
SS
489
490 to arrange to free the object thus allocated. */
491
492void
2f9429ae 493free_current_contents (void *ptr)
c906108c 494{
2f9429ae 495 void **location = ptr;
e0627e85 496
e2f9c474 497 if (location == NULL)
8e65ff28 498 internal_error (__FILE__, __LINE__,
e2e0b3e5 499 _("free_current_contents: NULL pointer"));
2f9429ae 500 if (*location != NULL)
e2f9c474 501 {
b8c9b27d 502 xfree (*location);
e2f9c474
AC
503 *location = NULL;
504 }
c906108c 505}
c906108c 506\f
c5aa993b 507
8731e58e 508
f5a96129
AC
509/* Print a warning message. The first argument STRING is the warning
510 message, used as an fprintf format string, the second is the
511 va_list of arguments for that string. A warning is unfiltered (not
512 paginated) so that the user does not need to page through each
513 screen full of warnings when there are lots of them. */
c906108c
SS
514
515void
f5a96129 516vwarning (const char *string, va_list args)
c906108c 517{
9a4105ab
AC
518 if (deprecated_warning_hook)
519 (*deprecated_warning_hook) (string, args);
f5a96129
AC
520 else
521 {
0d2f5c07
GB
522 if (target_supports_terminal_ours ())
523 target_terminal_ours ();
524 if (filtered_printing_initialized ())
525 wrap_here (""); /* Force out any buffered output. */
f5a96129
AC
526 gdb_flush (gdb_stdout);
527 if (warning_pre_print)
306d9ac5 528 fputs_unfiltered (warning_pre_print, gdb_stderr);
f5a96129
AC
529 vfprintf_unfiltered (gdb_stderr, string, args);
530 fprintf_unfiltered (gdb_stderr, "\n");
f5a96129 531 }
c906108c
SS
532}
533
c906108c
SS
534/* Print an error message and return to command level.
535 The first argument STRING is the error message, used as a fprintf string,
536 and the remaining args are passed as arguments to it. */
537
c25c4a8b 538void
4ce44c66
JM
539verror (const char *string, va_list args)
540{
6b1b7650 541 throw_verror (GENERIC_ERROR, string, args);
4ce44c66
JM
542}
543
c25c4a8b 544void
d75e3c94 545error_stream (struct ui_file *stream)
2acceee2 546{
759ef836 547 char *message = ui_file_xstrdup (stream, NULL);
e0627e85 548
6b1b7650 549 make_cleanup (xfree, message);
8a3fe4f8 550 error (("%s"), message);
2acceee2 551}
c906108c 552
2437fd32
GB
553/* Emit a message and abort. */
554
555static void ATTRIBUTE_NORETURN
556abort_with_message (const char *msg)
557{
558 if (gdb_stderr == NULL)
559 fputs (msg, stderr);
560 else
561 fputs_unfiltered (msg, gdb_stderr);
562
563 abort (); /* NOTE: GDB has only three calls to abort(). */
564}
565
7991dee7
JK
566/* Dump core trying to increase the core soft limit to hard limit first. */
567
eae7090b 568void
7991dee7
JK
569dump_core (void)
570{
571#ifdef HAVE_SETRLIMIT
572 struct rlimit rlim = { RLIM_INFINITY, RLIM_INFINITY };
573
574 setrlimit (RLIMIT_CORE, &rlim);
575#endif /* HAVE_SETRLIMIT */
576
577 abort (); /* NOTE: GDB has only three calls to abort(). */
578}
579
3e43a32a 580/* Check whether GDB will be able to dump core using the dump_core
eae7090b
GB
581 function. Returns zero if GDB cannot or should not dump core.
582 If LIMIT_KIND is LIMIT_CUR the user's soft limit will be respected.
583 If LIMIT_KIND is LIMIT_MAX only the hard limit will be respected. */
7991dee7 584
eae7090b
GB
585int
586can_dump_core (enum resource_limit_kind limit_kind)
7991dee7
JK
587{
588#ifdef HAVE_GETRLIMIT
589 struct rlimit rlim;
590
591 /* Be quiet and assume we can dump if an error is returned. */
592 if (getrlimit (RLIMIT_CORE, &rlim) != 0)
593 return 1;
594
eae7090b 595 switch (limit_kind)
7991dee7 596 {
eae7090b
GB
597 case LIMIT_CUR:
598 if (rlim.rlim_cur == 0)
599 return 0;
600
601 case LIMIT_MAX:
602 if (rlim.rlim_max == 0)
603 return 0;
7991dee7
JK
604 }
605#endif /* HAVE_GETRLIMIT */
606
607 return 1;
608}
609
eae7090b
GB
610/* Print a warning that we cannot dump core. */
611
612void
613warn_cant_dump_core (const char *reason)
614{
615 fprintf_unfiltered (gdb_stderr,
616 _("%s\nUnable to dump core, use `ulimit -c"
617 " unlimited' before executing GDB next time.\n"),
618 reason);
619}
620
621/* Check whether GDB will be able to dump core using the dump_core
622 function, and print a warning if we cannot. */
623
624static int
625can_dump_core_warn (enum resource_limit_kind limit_kind,
626 const char *reason)
627{
628 int core_dump_allowed = can_dump_core (limit_kind);
629
630 if (!core_dump_allowed)
631 warn_cant_dump_core (reason);
632
633 return core_dump_allowed;
634}
635
3c16cced
PA
636/* Allow the user to configure the debugger behavior with respect to
637 what to do when an internal problem is detected. */
638
639const char internal_problem_ask[] = "ask";
640const char internal_problem_yes[] = "yes";
641const char internal_problem_no[] = "no";
40478521 642static const char *const internal_problem_modes[] =
3c16cced
PA
643{
644 internal_problem_ask,
645 internal_problem_yes,
646 internal_problem_no,
647 NULL
648};
3c16cced 649
581e13c1 650/* Print a message reporting an internal error/warning. Ask the user
dec43320
AC
651 if they want to continue, dump core, or just exit. Return
652 something to indicate a quit. */
c906108c 653
dec43320 654struct internal_problem
c906108c 655{
dec43320 656 const char *name;
57fcfb1b 657 int user_settable_should_quit;
3c16cced 658 const char *should_quit;
57fcfb1b 659 int user_settable_should_dump_core;
3c16cced 660 const char *should_dump_core;
dec43320
AC
661};
662
663/* Report a problem, internal to GDB, to the user. Once the problem
664 has been reported, and assuming GDB didn't quit, the caller can
665 either allow execution to resume or throw an error. */
666
a0b31db1 667static void ATTRIBUTE_PRINTF (4, 0)
dec43320 668internal_vproblem (struct internal_problem *problem,
8731e58e 669 const char *file, int line, const char *fmt, va_list ap)
dec43320 670{
dec43320 671 static int dejavu;
375fc983 672 int quit_p;
7be570e7 673 int dump_core_p;
714b1282 674 char *reason;
48be7c1b 675 struct cleanup *cleanup = make_cleanup (null_cleanup, NULL);
c906108c 676
dec43320 677 /* Don't allow infinite error/warning recursion. */
714b1282
AC
678 {
679 static char msg[] = "Recursive internal problem.\n";
5d502164 680
714b1282
AC
681 switch (dejavu)
682 {
683 case 0:
684 dejavu = 1;
685 break;
686 case 1:
687 dejavu = 2;
2437fd32 688 abort_with_message (msg);
714b1282
AC
689 default:
690 dejavu = 3;
bf1d7d9c
JB
691 /* Newer GLIBC versions put the warn_unused_result attribute
692 on write, but this is one of those rare cases where
693 ignoring the return value is correct. Casting to (void)
694 does not fix this problem. This is the solution suggested
695 at http://gcc.gnu.org/bugzilla/show_bug.cgi?id=25509. */
696 if (write (STDERR_FILENO, msg, sizeof (msg)) != sizeof (msg))
7991dee7 697 abort (); /* NOTE: GDB has only three calls to abort(). */
714b1282
AC
698 exit (1);
699 }
700 }
c906108c 701
714b1282
AC
702 /* Create a string containing the full error/warning message. Need
703 to call query with this full string, as otherwize the reason
704 (error/warning) and question become separated. Format using a
705 style similar to a compiler error message. Include extra detail
706 so that the user knows that they are living on the edge. */
707 {
708 char *msg;
5d502164 709
e623b504 710 msg = xstrvprintf (fmt, ap);
3e43a32a
MS
711 reason = xstrprintf ("%s:%d: %s: %s\n"
712 "A problem internal to GDB has been detected,\n"
713 "further debugging may prove unreliable.",
714 file, line, problem->name, msg);
714b1282
AC
715 xfree (msg);
716 make_cleanup (xfree, reason);
717 }
7be570e7 718
2437fd32
GB
719 /* Fall back to abort_with_message if gdb_stderr is not set up. */
720 if (gdb_stderr == NULL)
721 {
722 fputs (reason, stderr);
723 abort_with_message ("\n");
724 }
725
726 /* Try to get the message out and at the start of a new line. */
727 if (target_supports_terminal_ours ())
728 target_terminal_ours ();
729 if (filtered_printing_initialized ())
730 begin_line ();
731
196a707b 732 /* Emit the message unless query will emit it below. */
2437fd32
GB
733 if (problem->should_quit != internal_problem_ask
734 || !confirm
735 || !filtered_printing_initialized ())
196a707b
GB
736 fprintf_unfiltered (gdb_stderr, "%s\n", reason);
737
3c16cced 738 if (problem->should_quit == internal_problem_ask)
dec43320 739 {
dec43320 740 /* Default (yes/batch case) is to quit GDB. When in batch mode
3c16cced
PA
741 this lessens the likelihood of GDB going into an infinite
742 loop. */
2437fd32 743 if (!confirm || !filtered_printing_initialized ())
196a707b 744 quit_p = 1;
26bb68be
PP
745 else
746 quit_p = query (_("%s\nQuit this debugging session? "), reason);
dec43320 747 }
3c16cced
PA
748 else if (problem->should_quit == internal_problem_yes)
749 quit_p = 1;
750 else if (problem->should_quit == internal_problem_no)
751 quit_p = 0;
752 else
753 internal_error (__FILE__, __LINE__, _("bad switch"));
dec43320 754
add6c04d
GB
755 fputs_unfiltered (_("\nThis is a bug, please report it."), gdb_stderr);
756 if (REPORT_BUGS_TO[0])
757 fprintf_unfiltered (gdb_stderr, _(" For instructions, see:\n%s."),
758 REPORT_BUGS_TO);
759 fputs_unfiltered ("\n\n", gdb_stderr);
760
3c16cced 761 if (problem->should_dump_core == internal_problem_ask)
dec43320 762 {
eae7090b 763 if (!can_dump_core_warn (LIMIT_MAX, reason))
7991dee7 764 dump_core_p = 0;
2437fd32
GB
765 else if (!filtered_printing_initialized ())
766 dump_core_p = 1;
7991dee7
JK
767 else
768 {
769 /* Default (yes/batch case) is to dump core. This leaves a GDB
770 `dropping' so that it is easier to see that something went
771 wrong in GDB. */
772 dump_core_p = query (_("%s\nCreate a core file of GDB? "), reason);
773 }
dec43320 774 }
3c16cced 775 else if (problem->should_dump_core == internal_problem_yes)
eae7090b 776 dump_core_p = can_dump_core_warn (LIMIT_MAX, reason);
3c16cced
PA
777 else if (problem->should_dump_core == internal_problem_no)
778 dump_core_p = 0;
779 else
780 internal_error (__FILE__, __LINE__, _("bad switch"));
7be570e7 781
375fc983 782 if (quit_p)
7be570e7
JM
783 {
784 if (dump_core_p)
7991dee7 785 dump_core ();
375fc983
AC
786 else
787 exit (1);
7be570e7
JM
788 }
789 else
790 {
791 if (dump_core_p)
375fc983 792 {
9b265ec2 793#ifdef HAVE_WORKING_FORK
375fc983 794 if (fork () == 0)
7991dee7 795 dump_core ();
9b265ec2 796#endif
375fc983 797 }
7be570e7 798 }
96baa820
JM
799
800 dejavu = 0;
48be7c1b 801 do_cleanups (cleanup);
dec43320
AC
802}
803
804static struct internal_problem internal_error_problem = {
57fcfb1b 805 "internal-error", 1, internal_problem_ask, 1, internal_problem_ask
dec43320
AC
806};
807
c25c4a8b 808void
8731e58e 809internal_verror (const char *file, int line, const char *fmt, va_list ap)
dec43320
AC
810{
811 internal_vproblem (&internal_error_problem, file, line, fmt, ap);
2c51604d 812 throw_quit (_("Command aborted."));
c906108c
SS
813}
814
dec43320 815static struct internal_problem internal_warning_problem = {
57fcfb1b 816 "internal-warning", 1, internal_problem_ask, 1, internal_problem_ask
dec43320
AC
817};
818
819void
8731e58e 820internal_vwarning (const char *file, int line, const char *fmt, va_list ap)
dec43320
AC
821{
822 internal_vproblem (&internal_warning_problem, file, line, fmt, ap);
823}
824
57fcfb1b
GB
825static struct internal_problem demangler_warning_problem = {
826 "demangler-warning", 1, internal_problem_ask, 0, internal_problem_no
827};
828
829void
830demangler_vwarning (const char *file, int line, const char *fmt, va_list ap)
831{
832 internal_vproblem (&demangler_warning_problem, file, line, fmt, ap);
833}
834
835void
836demangler_warning (const char *file, int line, const char *string, ...)
837{
838 va_list ap;
839
840 va_start (ap, string);
841 demangler_vwarning (file, line, string, ap);
842 va_end (ap);
843}
844
3c16cced
PA
845/* Dummy functions to keep add_prefix_cmd happy. */
846
847static void
848set_internal_problem_cmd (char *args, int from_tty)
849{
850}
851
852static void
853show_internal_problem_cmd (char *args, int from_tty)
854{
855}
856
857/* When GDB reports an internal problem (error or warning) it gives
858 the user the opportunity to quit GDB and/or create a core file of
859 the current debug session. This function registers a few commands
860 that make it possible to specify that GDB should always or never
861 quit or create a core file, without asking. The commands look
862 like:
863
864 maint set PROBLEM-NAME quit ask|yes|no
865 maint show PROBLEM-NAME quit
866 maint set PROBLEM-NAME corefile ask|yes|no
867 maint show PROBLEM-NAME corefile
868
869 Where PROBLEM-NAME is currently "internal-error" or
870 "internal-warning". */
871
872static void
873add_internal_problem_command (struct internal_problem *problem)
874{
875 struct cmd_list_element **set_cmd_list;
876 struct cmd_list_element **show_cmd_list;
877 char *set_doc;
878 char *show_doc;
879
880 set_cmd_list = xmalloc (sizeof (*set_cmd_list));
881 show_cmd_list = xmalloc (sizeof (*set_cmd_list));
882 *set_cmd_list = NULL;
883 *show_cmd_list = NULL;
884
885 set_doc = xstrprintf (_("Configure what GDB does when %s is detected."),
886 problem->name);
887
888 show_doc = xstrprintf (_("Show what GDB does when %s is detected."),
889 problem->name);
890
891 add_prefix_cmd ((char*) problem->name,
892 class_maintenance, set_internal_problem_cmd, set_doc,
893 set_cmd_list,
c4f7c687
MK
894 concat ("maintenance set ", problem->name, " ",
895 (char *) NULL),
3c16cced
PA
896 0/*allow-unknown*/, &maintenance_set_cmdlist);
897
898 add_prefix_cmd ((char*) problem->name,
899 class_maintenance, show_internal_problem_cmd, show_doc,
900 show_cmd_list,
c4f7c687
MK
901 concat ("maintenance show ", problem->name, " ",
902 (char *) NULL),
3c16cced
PA
903 0/*allow-unknown*/, &maintenance_show_cmdlist);
904
57fcfb1b
GB
905 if (problem->user_settable_should_quit)
906 {
907 set_doc = xstrprintf (_("Set whether GDB should quit "
908 "when an %s is detected"),
909 problem->name);
910 show_doc = xstrprintf (_("Show whether GDB will quit "
911 "when an %s is detected"),
912 problem->name);
913 add_setshow_enum_cmd ("quit", class_maintenance,
914 internal_problem_modes,
915 &problem->should_quit,
916 set_doc,
917 show_doc,
918 NULL, /* help_doc */
919 NULL, /* setfunc */
920 NULL, /* showfunc */
921 set_cmd_list,
922 show_cmd_list);
923
924 xfree (set_doc);
925 xfree (show_doc);
926 }
1eefb858 927
57fcfb1b
GB
928 if (problem->user_settable_should_dump_core)
929 {
930 set_doc = xstrprintf (_("Set whether GDB should create a core "
931 "file of GDB when %s is detected"),
932 problem->name);
933 show_doc = xstrprintf (_("Show whether GDB will create a core "
934 "file of GDB when %s is detected"),
935 problem->name);
936 add_setshow_enum_cmd ("corefile", class_maintenance,
937 internal_problem_modes,
938 &problem->should_dump_core,
939 set_doc,
940 show_doc,
941 NULL, /* help_doc */
942 NULL, /* setfunc */
943 NULL, /* showfunc */
944 set_cmd_list,
945 show_cmd_list);
946
947 xfree (set_doc);
948 xfree (show_doc);
949 }
3c16cced
PA
950}
951
0cf4063e
JB
952/* Return a newly allocated string, containing the PREFIX followed
953 by the system error message for errno (separated by a colon).
954
955 The result must be deallocated after use. */
956
957static char *
958perror_string (const char *prefix)
959{
960 char *err;
961 char *combined;
962
963 err = safe_strerror (errno);
964 combined = (char *) xmalloc (strlen (err) + strlen (prefix) + 3);
965 strcpy (combined, prefix);
966 strcat (combined, ": ");
967 strcat (combined, err);
968
969 return combined;
970}
971
c906108c 972/* Print the system error message for errno, and also mention STRING
598d3636
JK
973 as the file name for which the error was encountered. Use ERRCODE
974 for the thrown exception. Then return to command level. */
c906108c 975
c25c4a8b 976void
598d3636 977throw_perror_with_name (enum errors errcode, const char *string)
c906108c 978{
c906108c
SS
979 char *combined;
980
0cf4063e
JB
981 combined = perror_string (string);
982 make_cleanup (xfree, combined);
c906108c
SS
983
984 /* I understand setting these is a matter of taste. Still, some people
985 may clear errno but not know about bfd_error. Doing this here is not
581e13c1 986 unreasonable. */
c906108c
SS
987 bfd_set_error (bfd_error_no_error);
988 errno = 0;
989
598d3636
JK
990 throw_error (errcode, _("%s."), combined);
991}
992
993/* See throw_perror_with_name, ERRCODE defaults here to GENERIC_ERROR. */
994
995void
996perror_with_name (const char *string)
997{
998 throw_perror_with_name (GENERIC_ERROR, string);
c906108c
SS
999}
1000
7c647d61
JB
1001/* Same as perror_with_name except that it prints a warning instead
1002 of throwing an error. */
1003
1004void
1005perror_warning_with_name (const char *string)
1006{
1007 char *combined;
1008
1009 combined = perror_string (string);
1010 warning (_("%s"), combined);
1011 xfree (combined);
1012}
1013
c906108c
SS
1014/* Print the system error message for ERRCODE, and also mention STRING
1015 as the file name for which the error was encountered. */
1016
1017void
6972bc8b 1018print_sys_errmsg (const char *string, int errcode)
c906108c
SS
1019{
1020 char *err;
1021 char *combined;
1022
1023 err = safe_strerror (errcode);
1024 combined = (char *) alloca (strlen (err) + strlen (string) + 3);
1025 strcpy (combined, string);
1026 strcat (combined, ": ");
1027 strcat (combined, err);
1028
1029 /* We want anything which was printed on stdout to come out first, before
1030 this message. */
1031 gdb_flush (gdb_stdout);
1032 fprintf_unfiltered (gdb_stderr, "%s.\n", combined);
1033}
1034
1035/* Control C eventually causes this to be called, at a convenient time. */
1036
1037void
fba45db2 1038quit (void)
c906108c 1039{
06c868a8
JK
1040 if (sync_quit_force_run)
1041 {
1042 sync_quit_force_run = 0;
1043 quit_force (NULL, stdin == instream);
1044 }
1045
7be570e7
JM
1046#ifdef __MSDOS__
1047 /* No steenking SIGINT will ever be coming our way when the
1048 program is resumed. Don't lie. */
2c51604d 1049 throw_quit ("Quit");
7be570e7 1050#else
c906108c 1051 if (job_control
8731e58e
AC
1052 /* If there is no terminal switching for this target, then we can't
1053 possibly get screwed by the lack of job control. */
b0ed115f 1054 || !target_supports_terminal_ours ())
2c51604d 1055 throw_quit ("Quit");
c906108c 1056 else
2c51604d 1057 throw_quit ("Quit (expect signal SIGINT when the program is resumed)");
7be570e7 1058#endif
c906108c
SS
1059}
1060
c906108c 1061\f
c906108c 1062/* Called when a memory allocation fails, with the number of bytes of
581e13c1 1063 memory requested in SIZE. */
c906108c 1064
c25c4a8b 1065void
d26e3629 1066malloc_failure (long size)
c906108c
SS
1067{
1068 if (size > 0)
1069 {
8e65ff28 1070 internal_error (__FILE__, __LINE__,
e2e0b3e5 1071 _("virtual memory exhausted: can't allocate %ld bytes."),
8731e58e 1072 size);
c906108c
SS
1073 }
1074 else
1075 {
e2e0b3e5 1076 internal_error (__FILE__, __LINE__, _("virtual memory exhausted."));
c906108c
SS
1077 }
1078}
1079
c906108c
SS
1080/* My replacement for the read system call.
1081 Used like `read' but keeps going if `read' returns too soon. */
1082
1083int
fba45db2 1084myread (int desc, char *addr, int len)
c906108c 1085{
52f0bd74 1086 int val;
c906108c
SS
1087 int orglen = len;
1088
1089 while (len > 0)
1090 {
1091 val = read (desc, addr, len);
1092 if (val < 0)
1093 return val;
1094 if (val == 0)
1095 return orglen - len;
1096 len -= val;
1097 addr += val;
1098 }
1099 return orglen;
1100}
d26e3629 1101
c906108c 1102void
aa1ee363 1103print_spaces (int n, struct ui_file *file)
c906108c 1104{
392a587b 1105 fputs_unfiltered (n_spaces (n), file);
c906108c
SS
1106}
1107
1108/* Print a host address. */
1109
1110void
ac16bf07 1111gdb_print_host_address (const void *addr, struct ui_file *stream)
c906108c 1112{
ea8992ce 1113 fprintf_filtered (stream, "%s", host_address_to_string (addr));
c906108c 1114}
7c50a931
DE
1115
1116/* See utils.h. */
1117
1118char *
1119make_hex_string (const gdb_byte *data, size_t length)
1120{
1121 char *result = xmalloc (length * 2 + 1);
1122 char *p;
1123 size_t i;
1124
1125 p = result;
1126 for (i = 0; i < length; ++i)
dc4d6886 1127 p += xsnprintf (p, 3, "%02x", data[i]);
7c50a931
DE
1128 *p = '\0';
1129 return result;
1130}
1131
c906108c 1132\f
c5aa993b 1133
dc92e161
TT
1134/* A cleanup function that calls regfree. */
1135
1136static void
1137do_regfree_cleanup (void *r)
1138{
1139 regfree (r);
1140}
1141
1142/* Create a new cleanup that frees the compiled regular expression R. */
1143
1144struct cleanup *
1145make_regfree_cleanup (regex_t *r)
1146{
1147 return make_cleanup (do_regfree_cleanup, r);
1148}
1149
1150/* Return an xmalloc'd error message resulting from a regular
1151 expression compilation failure. */
1152
1153char *
1154get_regcomp_error (int code, regex_t *rx)
1155{
1156 size_t length = regerror (code, rx, NULL, 0);
1157 char *result = xmalloc (length);
1158
1159 regerror (code, rx, result, length);
1160 return result;
1161}
1162
cc16e6c9 1163/* Compile a regexp and throw an exception on error. This returns a
db26349c
TT
1164 cleanup to free the resulting pattern on success. RX must not be
1165 NULL. */
cc16e6c9
TT
1166
1167struct cleanup *
1168compile_rx_or_error (regex_t *pattern, const char *rx, const char *message)
1169{
1170 int code;
1171
db26349c 1172 gdb_assert (rx != NULL);
cc16e6c9
TT
1173
1174 code = regcomp (pattern, rx, REG_NOSUB);
1175 if (code != 0)
1176 {
1177 char *err = get_regcomp_error (code, pattern);
1178
1179 make_cleanup (xfree, err);
1180 error (("%s: %s"), message, err);
1181 }
1182
1183 return make_regfree_cleanup (pattern);
1184}
1185
dc92e161
TT
1186\f
1187
981c7f5a 1188/* This function supports the query, nquery, and yquery functions.
cbdeadca 1189 Ask user a y-or-n question and return 0 if answer is no, 1 if
981c7f5a
DJ
1190 answer is yes, or default the answer to the specified default
1191 (for yquery or nquery). DEFCHAR may be 'y' or 'n' to provide a
1192 default answer, or '\0' for no default.
cbdeadca
JJ
1193 CTLSTR is the control string and should end in "? ". It should
1194 not say how to answer, because we do that.
1195 ARGS are the arguments passed along with the CTLSTR argument to
1196 printf. */
1197
a0b31db1 1198static int ATTRIBUTE_PRINTF (1, 0)
cbdeadca
JJ
1199defaulted_query (const char *ctlstr, const char defchar, va_list args)
1200{
cbdeadca
JJ
1201 int ans2;
1202 int retval;
1203 int def_value;
1204 char def_answer, not_def_answer;
588dcc3e 1205 char *y_string, *n_string, *question, *prompt;
260c0b2a
DE
1206 /* Used to add duration we waited for user to respond to
1207 prompt_for_continue_wait_time. */
1208 struct timeval prompt_started, prompt_ended, prompt_delta;
cbdeadca
JJ
1209
1210 /* Set up according to which answer is the default. */
981c7f5a
DJ
1211 if (defchar == '\0')
1212 {
1213 def_value = 1;
1214 def_answer = 'Y';
1215 not_def_answer = 'N';
1216 y_string = "y";
1217 n_string = "n";
1218 }
1219 else if (defchar == 'y')
cbdeadca
JJ
1220 {
1221 def_value = 1;
1222 def_answer = 'Y';
1223 not_def_answer = 'N';
1224 y_string = "[y]";
1225 n_string = "n";
1226 }
1227 else
1228 {
1229 def_value = 0;
1230 def_answer = 'N';
1231 not_def_answer = 'Y';
1232 y_string = "y";
1233 n_string = "[n]";
1234 }
1235
981c7f5a 1236 /* Automatically answer the default value if the user did not want
a502cf95 1237 prompts or the command was issued with the server prefix. */
e360902b 1238 if (!confirm || server_command)
981c7f5a
DJ
1239 return def_value;
1240
1241 /* If input isn't coming from the user directly, just say what
7a01c6e0 1242 question we're asking, and then answer the default automatically. This
981c7f5a
DJ
1243 way, important error messages don't get lost when talking to GDB
1244 over a pipe. */
c63a1f86 1245 if (! input_from_terminal_p ())
981c7f5a
DJ
1246 {
1247 wrap_here ("");
1248 vfprintf_filtered (gdb_stdout, ctlstr, args);
1249
3e43a32a
MS
1250 printf_filtered (_("(%s or %s) [answered %c; "
1251 "input not from terminal]\n"),
981c7f5a
DJ
1252 y_string, n_string, def_answer);
1253 gdb_flush (gdb_stdout);
1254
1255 return def_value;
1256 }
1257
9a4105ab 1258 if (deprecated_query_hook)
cbdeadca 1259 {
9a4105ab 1260 return deprecated_query_hook (ctlstr, args);
cbdeadca
JJ
1261 }
1262
981c7f5a
DJ
1263 /* Format the question outside of the loop, to avoid reusing args. */
1264 question = xstrvprintf (ctlstr, args);
588dcc3e
PP
1265 prompt = xstrprintf (_("%s%s(%s or %s) %s"),
1266 annotation_level > 1 ? "\n\032\032pre-query\n" : "",
1267 question, y_string, n_string,
1268 annotation_level > 1 ? "\n\032\032query\n" : "");
1269 xfree (question);
981c7f5a 1270
260c0b2a
DE
1271 /* Used for calculating time spend waiting for user. */
1272 gettimeofday (&prompt_started, NULL);
1273
cbdeadca
JJ
1274 while (1)
1275 {
588dcc3e 1276 char *response, answer;
cbdeadca 1277
cbdeadca 1278 gdb_flush (gdb_stdout);
588dcc3e 1279 response = gdb_readline_wrapper (prompt);
cbdeadca 1280
588dcc3e 1281 if (response == NULL) /* C-d */
cbdeadca 1282 {
fa3fd85b 1283 printf_filtered ("EOF [assumed %c]\n", def_answer);
cbdeadca
JJ
1284 retval = def_value;
1285 break;
1286 }
588dcc3e
PP
1287
1288 answer = response[0];
1289 xfree (response);
cbdeadca
JJ
1290
1291 if (answer >= 'a')
1292 answer -= 040;
1293 /* Check answer. For the non-default, the user must specify
1294 the non-default explicitly. */
1295 if (answer == not_def_answer)
1296 {
1297 retval = !def_value;
1298 break;
1299 }
981c7f5a
DJ
1300 /* Otherwise, if a default was specified, the user may either
1301 specify the required input or have it default by entering
1302 nothing. */
1303 if (answer == def_answer
588dcc3e 1304 || (defchar != '\0' && answer == '\0'))
cbdeadca
JJ
1305 {
1306 retval = def_value;
1307 break;
1308 }
1309 /* Invalid entries are not defaulted and require another selection. */
a3f17187 1310 printf_filtered (_("Please answer %s or %s.\n"),
cbdeadca
JJ
1311 y_string, n_string);
1312 }
1313
260c0b2a
DE
1314 /* Add time spend in this routine to prompt_for_continue_wait_time. */
1315 gettimeofday (&prompt_ended, NULL);
1316 timeval_sub (&prompt_delta, &prompt_ended, &prompt_started);
1317 timeval_add (&prompt_for_continue_wait_time,
1318 &prompt_for_continue_wait_time, &prompt_delta);
1319
588dcc3e 1320 xfree (prompt);
cbdeadca 1321 if (annotation_level > 1)
a3f17187 1322 printf_filtered (("\n\032\032post-query\n"));
cbdeadca
JJ
1323 return retval;
1324}
1325\f
1326
1327/* Ask user a y-or-n question and return 0 if answer is no, 1 if
1328 answer is yes, or 0 if answer is defaulted.
1329 Takes three args which are given to printf to print the question.
1330 The first, a control string, should end in "? ".
1331 It should not say how to answer, because we do that. */
1332
1333int
1334nquery (const char *ctlstr, ...)
1335{
1336 va_list args;
899500d6 1337 int ret;
cbdeadca
JJ
1338
1339 va_start (args, ctlstr);
899500d6 1340 ret = defaulted_query (ctlstr, 'n', args);
cbdeadca 1341 va_end (args);
899500d6 1342 return ret;
cbdeadca
JJ
1343}
1344
1345/* Ask user a y-or-n question and return 0 if answer is no, 1 if
1346 answer is yes, or 1 if answer is defaulted.
1347 Takes three args which are given to printf to print the question.
1348 The first, a control string, should end in "? ".
1349 It should not say how to answer, because we do that. */
1350
1351int
1352yquery (const char *ctlstr, ...)
1353{
1354 va_list args;
899500d6 1355 int ret;
cbdeadca
JJ
1356
1357 va_start (args, ctlstr);
899500d6 1358 ret = defaulted_query (ctlstr, 'y', args);
cbdeadca 1359 va_end (args);
899500d6 1360 return ret;
cbdeadca
JJ
1361}
1362
981c7f5a
DJ
1363/* Ask user a y-or-n question and return 1 iff answer is yes.
1364 Takes three args which are given to printf to print the question.
1365 The first, a control string, should end in "? ".
1366 It should not say how to answer, because we do that. */
1367
1368int
1369query (const char *ctlstr, ...)
1370{
1371 va_list args;
899500d6 1372 int ret;
981c7f5a
DJ
1373
1374 va_start (args, ctlstr);
899500d6 1375 ret = defaulted_query (ctlstr, '\0', args);
981c7f5a 1376 va_end (args);
899500d6 1377 return ret;
981c7f5a
DJ
1378}
1379
6c7a06a3
TT
1380/* A helper for parse_escape that converts a host character to a
1381 target character. C is the host character. If conversion is
1382 possible, then the target character is stored in *TARGET_C and the
1383 function returns 1. Otherwise, the function returns 0. */
1384
1385static int
f870a310 1386host_char_to_target (struct gdbarch *gdbarch, int c, int *target_c)
234b45d4 1387{
6c7a06a3
TT
1388 struct obstack host_data;
1389 char the_char = c;
1390 struct cleanup *cleanups;
1391 int result = 0;
234b45d4 1392
6c7a06a3
TT
1393 obstack_init (&host_data);
1394 cleanups = make_cleanup_obstack_free (&host_data);
234b45d4 1395
f870a310 1396 convert_between_encodings (target_charset (gdbarch), host_charset (),
ac91cd70
PA
1397 (gdb_byte *) &the_char, 1, 1,
1398 &host_data, translit_none);
6c7a06a3
TT
1399
1400 if (obstack_object_size (&host_data) == 1)
1401 {
1402 result = 1;
1403 *target_c = *(char *) obstack_base (&host_data);
1404 }
1405
1406 do_cleanups (cleanups);
1407 return result;
234b45d4
KB
1408}
1409
c906108c
SS
1410/* Parse a C escape sequence. STRING_PTR points to a variable
1411 containing a pointer to the string to parse. That pointer
1412 should point to the character after the \. That pointer
1413 is updated past the characters we use. The value of the
1414 escape sequence is returned.
1415
1416 A negative value means the sequence \ newline was seen,
1417 which is supposed to be equivalent to nothing at all.
1418
1419 If \ is followed by a null character, we return a negative
1420 value and leave the string pointer pointing at the null character.
1421
1422 If \ is followed by 000, we return 0 and leave the string pointer
1423 after the zeros. A value of 0 does not mean end of string. */
1424
1425int
d7561cbb 1426parse_escape (struct gdbarch *gdbarch, const char **string_ptr)
c906108c 1427{
581e13c1 1428 int target_char = -2; /* Initialize to avoid GCC warnings. */
52f0bd74 1429 int c = *(*string_ptr)++;
e0627e85 1430
6c7a06a3
TT
1431 switch (c)
1432 {
8731e58e
AC
1433 case '\n':
1434 return -2;
1435 case 0:
1436 (*string_ptr)--;
1437 return 0;
8731e58e
AC
1438
1439 case '0':
1440 case '1':
1441 case '2':
1442 case '3':
1443 case '4':
1444 case '5':
1445 case '6':
1446 case '7':
1447 {
6c7a06a3 1448 int i = host_hex_value (c);
aa1ee363 1449 int count = 0;
8731e58e
AC
1450 while (++count < 3)
1451 {
5cb316ef 1452 c = (**string_ptr);
6c7a06a3 1453 if (isdigit (c) && c != '8' && c != '9')
8731e58e 1454 {
5cb316ef 1455 (*string_ptr)++;
8731e58e 1456 i *= 8;
6c7a06a3 1457 i += host_hex_value (c);
8731e58e
AC
1458 }
1459 else
1460 {
8731e58e
AC
1461 break;
1462 }
1463 }
1464 return i;
1465 }
6c7a06a3
TT
1466
1467 case 'a':
1468 c = '\a';
1469 break;
1470 case 'b':
1471 c = '\b';
1472 break;
1473 case 'f':
1474 c = '\f';
1475 break;
1476 case 'n':
1477 c = '\n';
1478 break;
1479 case 'r':
1480 c = '\r';
1481 break;
1482 case 't':
1483 c = '\t';
1484 break;
1485 case 'v':
1486 c = '\v';
1487 break;
1488
1489 default:
1490 break;
1491 }
1492
f870a310 1493 if (!host_char_to_target (gdbarch, c, &target_char))
3351ea09
JB
1494 error (_("The escape sequence `\\%c' is equivalent to plain `%c',"
1495 " which has no equivalent\nin the `%s' character set."),
905b671b 1496 c, c, target_charset (gdbarch));
6c7a06a3 1497 return target_char;
c906108c
SS
1498}
1499\f
1500/* Print the character C on STREAM as part of the contents of a literal
1501 string whose delimiter is QUOTER. Note that this routine should only
1502 be call for printing things which are independent of the language
6ef284bd
SM
1503 of the program being debugged.
1504
1505 printchar will normally escape backslashes and instances of QUOTER. If
1506 QUOTER is 0, printchar won't escape backslashes or any quoting character.
1507 As a side effect, if you pass the backslash character as the QUOTER,
1508 printchar will escape backslashes as usual, but not any other quoting
1509 character. */
c906108c 1510
43e526b9 1511static void
74f832da 1512printchar (int c, void (*do_fputs) (const char *, struct ui_file *),
bee0189a
DJ
1513 void (*do_fprintf) (struct ui_file *, const char *, ...)
1514 ATTRIBUTE_FPTR_PRINTF_2, struct ui_file *stream, int quoter)
c906108c 1515{
c906108c
SS
1516 c &= 0xFF; /* Avoid sign bit follies */
1517
c5aa993b
JM
1518 if (c < 0x20 || /* Low control chars */
1519 (c >= 0x7F && c < 0xA0) || /* DEL, High controls */
1520 (sevenbit_strings && c >= 0x80))
1521 { /* high order bit set */
1522 switch (c)
1523 {
1524 case '\n':
43e526b9 1525 do_fputs ("\\n", stream);
c5aa993b
JM
1526 break;
1527 case '\b':
43e526b9 1528 do_fputs ("\\b", stream);
c5aa993b
JM
1529 break;
1530 case '\t':
43e526b9 1531 do_fputs ("\\t", stream);
c5aa993b
JM
1532 break;
1533 case '\f':
43e526b9 1534 do_fputs ("\\f", stream);
c5aa993b
JM
1535 break;
1536 case '\r':
43e526b9 1537 do_fputs ("\\r", stream);
c5aa993b
JM
1538 break;
1539 case '\033':
43e526b9 1540 do_fputs ("\\e", stream);
c5aa993b
JM
1541 break;
1542 case '\007':
43e526b9 1543 do_fputs ("\\a", stream);
c5aa993b
JM
1544 break;
1545 default:
43e526b9 1546 do_fprintf (stream, "\\%.3o", (unsigned int) c);
c5aa993b
JM
1547 break;
1548 }
1549 }
1550 else
1551 {
6ef284bd 1552 if (quoter != 0 && (c == '\\' || c == quoter))
43e526b9
JM
1553 do_fputs ("\\", stream);
1554 do_fprintf (stream, "%c", c);
c5aa993b 1555 }
c906108c 1556}
43e526b9
JM
1557
1558/* Print the character C on STREAM as part of the contents of a
1559 literal string whose delimiter is QUOTER. Note that these routines
1560 should only be call for printing things which are independent of
581e13c1 1561 the language of the program being debugged. */
43e526b9
JM
1562
1563void
fba45db2 1564fputstr_filtered (const char *str, int quoter, struct ui_file *stream)
43e526b9
JM
1565{
1566 while (*str)
1567 printchar (*str++, fputs_filtered, fprintf_filtered, stream, quoter);
1568}
1569
1570void
fba45db2 1571fputstr_unfiltered (const char *str, int quoter, struct ui_file *stream)
43e526b9
JM
1572{
1573 while (*str)
1574 printchar (*str++, fputs_unfiltered, fprintf_unfiltered, stream, quoter);
1575}
1576
0876f84a
DJ
1577void
1578fputstrn_filtered (const char *str, int n, int quoter,
1579 struct ui_file *stream)
1580{
1581 int i;
e0627e85 1582
0876f84a
DJ
1583 for (i = 0; i < n; i++)
1584 printchar (str[i], fputs_filtered, fprintf_filtered, stream, quoter);
1585}
1586
43e526b9 1587void
8731e58e
AC
1588fputstrn_unfiltered (const char *str, int n, int quoter,
1589 struct ui_file *stream)
43e526b9
JM
1590{
1591 int i;
5d502164 1592
43e526b9
JM
1593 for (i = 0; i < n; i++)
1594 printchar (str[i], fputs_unfiltered, fprintf_unfiltered, stream, quoter);
1595}
c906108c 1596\f
c5aa993b 1597
c906108c
SS
1598/* Number of lines per page or UINT_MAX if paging is disabled. */
1599static unsigned int lines_per_page;
920d2a44
AC
1600static void
1601show_lines_per_page (struct ui_file *file, int from_tty,
1602 struct cmd_list_element *c, const char *value)
1603{
3e43a32a
MS
1604 fprintf_filtered (file,
1605 _("Number of lines gdb thinks are in a page is %s.\n"),
920d2a44
AC
1606 value);
1607}
eb0d3137 1608
cbfbd72a 1609/* Number of chars per line or UINT_MAX if line folding is disabled. */
c906108c 1610static unsigned int chars_per_line;
920d2a44
AC
1611static void
1612show_chars_per_line (struct ui_file *file, int from_tty,
1613 struct cmd_list_element *c, const char *value)
1614{
3e43a32a
MS
1615 fprintf_filtered (file,
1616 _("Number of characters gdb thinks "
1617 "are in a line is %s.\n"),
920d2a44
AC
1618 value);
1619}
eb0d3137 1620
c906108c
SS
1621/* Current count of lines printed on this page, chars on this line. */
1622static unsigned int lines_printed, chars_printed;
1623
1624/* Buffer and start column of buffered text, for doing smarter word-
1625 wrapping. When someone calls wrap_here(), we start buffering output
1626 that comes through fputs_filtered(). If we see a newline, we just
1627 spit it out and forget about the wrap_here(). If we see another
1628 wrap_here(), we spit it out and remember the newer one. If we see
1629 the end of the line, we spit out a newline, the indent, and then
1630 the buffered output. */
1631
1632/* Malloc'd buffer with chars_per_line+2 bytes. Contains characters which
1633 are waiting to be output (they have already been counted in chars_printed).
1634 When wrap_buffer[0] is null, the buffer is empty. */
1635static char *wrap_buffer;
1636
1637/* Pointer in wrap_buffer to the next character to fill. */
1638static char *wrap_pointer;
1639
1640/* String to indent by if the wrap occurs. Must not be NULL if wrap_column
1641 is non-zero. */
1642static char *wrap_indent;
1643
1644/* Column number on the screen where wrap_buffer begins, or 0 if wrapping
1645 is not in effect. */
1646static int wrap_column;
c906108c 1647\f
c5aa993b 1648
eb0d3137
MK
1649/* Inialize the number of lines per page and chars per line. */
1650
c906108c 1651void
fba45db2 1652init_page_info (void)
c906108c 1653{
5da1313b
JK
1654 if (batch_flag)
1655 {
1656 lines_per_page = UINT_MAX;
1657 chars_per_line = UINT_MAX;
1658 }
1659 else
c906108c 1660#if defined(TUI)
5ecb1806 1661 if (!tui_get_command_dimension (&chars_per_line, &lines_per_page))
c906108c
SS
1662#endif
1663 {
eb0d3137 1664 int rows, cols;
c906108c 1665
ec145965
EZ
1666#if defined(__GO32__)
1667 rows = ScreenRows ();
1668 cols = ScreenCols ();
1669 lines_per_page = rows;
1670 chars_per_line = cols;
1671#else
eb0d3137
MK
1672 /* Make sure Readline has initialized its terminal settings. */
1673 rl_reset_terminal (NULL);
c906108c 1674
eb0d3137
MK
1675 /* Get the screen size from Readline. */
1676 rl_get_screen_size (&rows, &cols);
1677 lines_per_page = rows;
1678 chars_per_line = cols;
c906108c 1679
1a66331e
PM
1680 /* Readline should have fetched the termcap entry for us.
1681 Only try to use tgetnum function if rl_get_screen_size
1682 did not return a useful value. */
1683 if (((rows <= 0) && (tgetnum ("li") < 0))
1684 /* Also disable paging if inside EMACS. */
1685 || getenv ("EMACS"))
eb0d3137 1686 {
1a66331e
PM
1687 /* The number of lines per page is not mentioned in the terminal
1688 description or EMACS evironment variable is set. This probably
1689 means that paging is not useful, so disable paging. */
eb0d3137
MK
1690 lines_per_page = UINT_MAX;
1691 }
c906108c 1692
c906108c 1693 /* If the output is not a terminal, don't paginate it. */
d9fcf2fb 1694 if (!ui_file_isatty (gdb_stdout))
c5aa993b 1695 lines_per_page = UINT_MAX;
eb0d3137 1696#endif
ec145965 1697 }
eb0d3137 1698
24b73f8e
PP
1699 /* We handle SIGWINCH ourselves. */
1700 rl_catch_sigwinch = 0;
1701
eb0d3137 1702 set_screen_size ();
c5aa993b 1703 set_width ();
c906108c
SS
1704}
1705
2437fd32
GB
1706/* Return nonzero if filtered printing is initialized. */
1707int
1708filtered_printing_initialized (void)
1709{
1710 return wrap_buffer != NULL;
1711}
1712
5da1313b
JK
1713/* Helper for make_cleanup_restore_page_info. */
1714
1715static void
1716do_restore_page_info_cleanup (void *arg)
1717{
1718 set_screen_size ();
1719 set_width ();
1720}
1721
1722/* Provide cleanup for restoring the terminal size. */
1723
1724struct cleanup *
1725make_cleanup_restore_page_info (void)
1726{
1727 struct cleanup *back_to;
1728
1729 back_to = make_cleanup (do_restore_page_info_cleanup, NULL);
1730 make_cleanup_restore_uinteger (&lines_per_page);
1731 make_cleanup_restore_uinteger (&chars_per_line);
1732
1733 return back_to;
1734}
1735
1736/* Temporarily set BATCH_FLAG and the associated unlimited terminal size.
1737 Provide cleanup for restoring the original state. */
1738
1739struct cleanup *
1740set_batch_flag_and_make_cleanup_restore_page_info (void)
1741{
1742 struct cleanup *back_to = make_cleanup_restore_page_info ();
1743
1744 make_cleanup_restore_integer (&batch_flag);
1745 batch_flag = 1;
1746 init_page_info ();
1747
1748 return back_to;
1749}
1750
eb0d3137
MK
1751/* Set the screen size based on LINES_PER_PAGE and CHARS_PER_LINE. */
1752
1753static void
1754set_screen_size (void)
1755{
1756 int rows = lines_per_page;
1757 int cols = chars_per_line;
1758
1759 if (rows <= 0)
1760 rows = INT_MAX;
1761
1762 if (cols <= 0)
0caa462c 1763 cols = INT_MAX;
eb0d3137
MK
1764
1765 /* Update Readline's idea of the terminal size. */
1766 rl_set_screen_size (rows, cols);
1767}
1768
1769/* Reinitialize WRAP_BUFFER according to the current value of
1770 CHARS_PER_LINE. */
1771
c906108c 1772static void
fba45db2 1773set_width (void)
c906108c
SS
1774{
1775 if (chars_per_line == 0)
c5aa993b 1776 init_page_info ();
c906108c
SS
1777
1778 if (!wrap_buffer)
1779 {
1780 wrap_buffer = (char *) xmalloc (chars_per_line + 2);
1781 wrap_buffer[0] = '\0';
1782 }
1783 else
1784 wrap_buffer = (char *) xrealloc (wrap_buffer, chars_per_line + 2);
eb0d3137 1785 wrap_pointer = wrap_buffer; /* Start it at the beginning. */
c906108c
SS
1786}
1787
c5aa993b 1788static void
fba45db2 1789set_width_command (char *args, int from_tty, struct cmd_list_element *c)
c906108c 1790{
eb0d3137 1791 set_screen_size ();
c906108c
SS
1792 set_width ();
1793}
1794
eb0d3137
MK
1795static void
1796set_height_command (char *args, int from_tty, struct cmd_list_element *c)
1797{
1798 set_screen_size ();
1799}
1800
d6e5e7f7
PP
1801/* See utils.h. */
1802
1803void
1804set_screen_width_and_height (int width, int height)
1805{
1806 lines_per_page = height;
1807 chars_per_line = width;
1808
1809 set_screen_size ();
1810 set_width ();
1811}
1812
c906108c
SS
1813/* Wait, so the user can read what's on the screen. Prompt the user
1814 to continue by pressing RETURN. */
1815
1816static void
fba45db2 1817prompt_for_continue (void)
c906108c
SS
1818{
1819 char *ignore;
1820 char cont_prompt[120];
260c0b2a
DE
1821 /* Used to add duration we waited for user to respond to
1822 prompt_for_continue_wait_time. */
1823 struct timeval prompt_started, prompt_ended, prompt_delta;
1824
1825 gettimeofday (&prompt_started, NULL);
c906108c
SS
1826
1827 if (annotation_level > 1)
a3f17187 1828 printf_unfiltered (("\n\032\032pre-prompt-for-continue\n"));
c906108c
SS
1829
1830 strcpy (cont_prompt,
1831 "---Type <return> to continue, or q <return> to quit---");
1832 if (annotation_level > 1)
1833 strcat (cont_prompt, "\n\032\032prompt-for-continue\n");
1834
1835 /* We must do this *before* we call gdb_readline, else it will eventually
1836 call us -- thinking that we're trying to print beyond the end of the
1837 screen. */
1838 reinitialize_more_filter ();
1839
1840 immediate_quit++;
522002f9 1841 QUIT;
82584158
PA
1842
1843 /* We'll need to handle input. */
1844 target_terminal_ours ();
1845
c906108c
SS
1846 /* On a real operating system, the user can quit with SIGINT.
1847 But not on GO32.
1848
1849 'q' is provided on all systems so users don't have to change habits
1850 from system to system, and because telling them what to do in
1851 the prompt is more user-friendly than expecting them to think of
1852 SIGINT. */
1853 /* Call readline, not gdb_readline, because GO32 readline handles control-C
1854 whereas control-C to gdb_readline will cause the user to get dumped
1855 out to DOS. */
b4f5539f 1856 ignore = gdb_readline_wrapper (cont_prompt);
c906108c 1857
260c0b2a
DE
1858 /* Add time spend in this routine to prompt_for_continue_wait_time. */
1859 gettimeofday (&prompt_ended, NULL);
1860 timeval_sub (&prompt_delta, &prompt_ended, &prompt_started);
1861 timeval_add (&prompt_for_continue_wait_time,
1862 &prompt_for_continue_wait_time, &prompt_delta);
1863
c906108c 1864 if (annotation_level > 1)
a3f17187 1865 printf_unfiltered (("\n\032\032post-prompt-for-continue\n"));
c906108c
SS
1866
1867 if (ignore)
1868 {
1869 char *p = ignore;
5d502164 1870
c906108c
SS
1871 while (*p == ' ' || *p == '\t')
1872 ++p;
1873 if (p[0] == 'q')
522002f9 1874 quit ();
b8c9b27d 1875 xfree (ignore);
c906108c
SS
1876 }
1877 immediate_quit--;
1878
1879 /* Now we have to do this again, so that GDB will know that it doesn't
1880 need to save the ---Type <return>--- line at the top of the screen. */
1881 reinitialize_more_filter ();
1882
581e13c1 1883 dont_repeat (); /* Forget prev cmd -- CR won't repeat it. */
c906108c
SS
1884}
1885
bd712aed
DE
1886/* Initalize timer to keep track of how long we waited for the user. */
1887
1888void
1889reset_prompt_for_continue_wait_time (void)
1890{
1891 static const struct timeval zero_timeval = { 0 };
1892
1893 prompt_for_continue_wait_time = zero_timeval;
1894}
1895
1896/* Fetch the cumulative time spent in prompt_for_continue. */
1897
1898struct timeval
1899get_prompt_for_continue_wait_time (void)
1900{
1901 return prompt_for_continue_wait_time;
1902}
1903
c906108c
SS
1904/* Reinitialize filter; ie. tell it to reset to original values. */
1905
1906void
fba45db2 1907reinitialize_more_filter (void)
c906108c
SS
1908{
1909 lines_printed = 0;
1910 chars_printed = 0;
1911}
1912
1913/* Indicate that if the next sequence of characters overflows the line,
581e13c1 1914 a newline should be inserted here rather than when it hits the end.
c906108c
SS
1915 If INDENT is non-null, it is a string to be printed to indent the
1916 wrapped part on the next line. INDENT must remain accessible until
1917 the next call to wrap_here() or until a newline is printed through
1918 fputs_filtered().
1919
1920 If the line is already overfull, we immediately print a newline and
1921 the indentation, and disable further wrapping.
1922
1923 If we don't know the width of lines, but we know the page height,
1924 we must not wrap words, but should still keep track of newlines
1925 that were explicitly printed.
1926
1927 INDENT should not contain tabs, as that will mess up the char count
1928 on the next line. FIXME.
1929
1930 This routine is guaranteed to force out any output which has been
1931 squirreled away in the wrap_buffer, so wrap_here ((char *)0) can be
1932 used to force out output from the wrap_buffer. */
1933
1934void
fba45db2 1935wrap_here (char *indent)
c906108c 1936{
581e13c1 1937 /* This should have been allocated, but be paranoid anyway. */
c906108c 1938 if (!wrap_buffer)
3e43a32a
MS
1939 internal_error (__FILE__, __LINE__,
1940 _("failed internal consistency check"));
c906108c
SS
1941
1942 if (wrap_buffer[0])
1943 {
1944 *wrap_pointer = '\0';
1945 fputs_unfiltered (wrap_buffer, gdb_stdout);
1946 }
1947 wrap_pointer = wrap_buffer;
1948 wrap_buffer[0] = '\0';
3e43a32a 1949 if (chars_per_line == UINT_MAX) /* No line overflow checking. */
c906108c
SS
1950 {
1951 wrap_column = 0;
1952 }
1953 else if (chars_printed >= chars_per_line)
1954 {
1955 puts_filtered ("\n");
1956 if (indent != NULL)
1957 puts_filtered (indent);
1958 wrap_column = 0;
1959 }
1960 else
1961 {
1962 wrap_column = chars_printed;
1963 if (indent == NULL)
1964 wrap_indent = "";
1965 else
1966 wrap_indent = indent;
1967 }
1968}
1969
4a351cef 1970/* Print input string to gdb_stdout, filtered, with wrap,
581e13c1 1971 arranging strings in columns of n chars. String can be
4a351cef
AF
1972 right or left justified in the column. Never prints
1973 trailing spaces. String should never be longer than
1974 width. FIXME: this could be useful for the EXAMINE
581e13c1 1975 command, which currently doesn't tabulate very well. */
4a351cef
AF
1976
1977void
1978puts_filtered_tabular (char *string, int width, int right)
1979{
1980 int spaces = 0;
1981 int stringlen;
1982 char *spacebuf;
1983
1984 gdb_assert (chars_per_line > 0);
1985 if (chars_per_line == UINT_MAX)
1986 {
1987 fputs_filtered (string, gdb_stdout);
1988 fputs_filtered ("\n", gdb_stdout);
1989 return;
1990 }
1991
1992 if (((chars_printed - 1) / width + 2) * width >= chars_per_line)
1993 fputs_filtered ("\n", gdb_stdout);
1994
1995 if (width >= chars_per_line)
1996 width = chars_per_line - 1;
1997
1998 stringlen = strlen (string);
1999
2000 if (chars_printed > 0)
2001 spaces = width - (chars_printed - 1) % width - 1;
2002 if (right)
2003 spaces += width - stringlen;
2004
2005 spacebuf = alloca (spaces + 1);
2006 spacebuf[spaces] = '\0';
2007 while (spaces--)
2008 spacebuf[spaces] = ' ';
2009
2010 fputs_filtered (spacebuf, gdb_stdout);
2011 fputs_filtered (string, gdb_stdout);
2012}
2013
2014
c906108c 2015/* Ensure that whatever gets printed next, using the filtered output
581e13c1 2016 commands, starts at the beginning of the line. I.e. if there is
c906108c 2017 any pending output for the current line, flush it and start a new
581e13c1 2018 line. Otherwise do nothing. */
c906108c
SS
2019
2020void
fba45db2 2021begin_line (void)
c906108c
SS
2022{
2023 if (chars_printed > 0)
2024 {
2025 puts_filtered ("\n");
2026 }
2027}
2028
ac9a91a7 2029
c906108c
SS
2030/* Like fputs but if FILTER is true, pause after every screenful.
2031
2032 Regardless of FILTER can wrap at points other than the final
2033 character of a line.
2034
2035 Unlike fputs, fputs_maybe_filtered does not return a value.
2036 It is OK for LINEBUFFER to be NULL, in which case just don't print
2037 anything.
2038
2039 Note that a longjmp to top level may occur in this routine (only if
2040 FILTER is true) (since prompt_for_continue may do so) so this
2041 routine should not be called when cleanups are not in place. */
2042
2043static void
fba45db2
KB
2044fputs_maybe_filtered (const char *linebuffer, struct ui_file *stream,
2045 int filter)
c906108c
SS
2046{
2047 const char *lineptr;
2048
2049 if (linebuffer == 0)
2050 return;
2051
2052 /* Don't do any filtering if it is disabled. */
390a8aca 2053 if (stream != gdb_stdout
b2e7f004
JK
2054 || !pagination_enabled
2055 || batch_flag
390a8aca 2056 || (lines_per_page == UINT_MAX && chars_per_line == UINT_MAX)
58dadb1b 2057 || top_level_interpreter () == NULL
390a8aca 2058 || ui_out_is_mi_like_p (interp_ui_out (top_level_interpreter ())))
c906108c
SS
2059 {
2060 fputs_unfiltered (linebuffer, stream);
2061 return;
2062 }
2063
2064 /* Go through and output each character. Show line extension
2065 when this is necessary; prompt user for new page when this is
2066 necessary. */
c5aa993b 2067
c906108c
SS
2068 lineptr = linebuffer;
2069 while (*lineptr)
2070 {
2071 /* Possible new page. */
8731e58e 2072 if (filter && (lines_printed >= lines_per_page - 1))
c906108c
SS
2073 prompt_for_continue ();
2074
2075 while (*lineptr && *lineptr != '\n')
2076 {
2077 /* Print a single line. */
2078 if (*lineptr == '\t')
2079 {
2080 if (wrap_column)
2081 *wrap_pointer++ = '\t';
2082 else
2083 fputc_unfiltered ('\t', stream);
2084 /* Shifting right by 3 produces the number of tab stops
2085 we have already passed, and then adding one and
c5aa993b 2086 shifting left 3 advances to the next tab stop. */
c906108c
SS
2087 chars_printed = ((chars_printed >> 3) + 1) << 3;
2088 lineptr++;
2089 }
2090 else
2091 {
2092 if (wrap_column)
2093 *wrap_pointer++ = *lineptr;
2094 else
c5aa993b 2095 fputc_unfiltered (*lineptr, stream);
c906108c
SS
2096 chars_printed++;
2097 lineptr++;
2098 }
c5aa993b 2099
c906108c
SS
2100 if (chars_printed >= chars_per_line)
2101 {
2102 unsigned int save_chars = chars_printed;
2103
2104 chars_printed = 0;
2105 lines_printed++;
2106 /* If we aren't actually wrapping, don't output newline --
c5aa993b
JM
2107 if chars_per_line is right, we probably just overflowed
2108 anyway; if it's wrong, let us keep going. */
c906108c
SS
2109 if (wrap_column)
2110 fputc_unfiltered ('\n', stream);
2111
2112 /* Possible new page. */
2113 if (lines_printed >= lines_per_page - 1)
2114 prompt_for_continue ();
2115
581e13c1 2116 /* Now output indentation and wrapped string. */
c906108c
SS
2117 if (wrap_column)
2118 {
2119 fputs_unfiltered (wrap_indent, stream);
581e13c1
MS
2120 *wrap_pointer = '\0'; /* Null-terminate saved stuff, */
2121 fputs_unfiltered (wrap_buffer, stream); /* and eject it. */
c906108c
SS
2122 /* FIXME, this strlen is what prevents wrap_indent from
2123 containing tabs. However, if we recurse to print it
2124 and count its chars, we risk trouble if wrap_indent is
581e13c1 2125 longer than (the user settable) chars_per_line.
c906108c
SS
2126 Note also that this can set chars_printed > chars_per_line
2127 if we are printing a long string. */
2128 chars_printed = strlen (wrap_indent)
c5aa993b 2129 + (save_chars - wrap_column);
c906108c
SS
2130 wrap_pointer = wrap_buffer; /* Reset buffer */
2131 wrap_buffer[0] = '\0';
c5aa993b
JM
2132 wrap_column = 0; /* And disable fancy wrap */
2133 }
c906108c
SS
2134 }
2135 }
2136
2137 if (*lineptr == '\n')
2138 {
2139 chars_printed = 0;
3e43a32a
MS
2140 wrap_here ((char *) 0); /* Spit out chars, cancel
2141 further wraps. */
c906108c
SS
2142 lines_printed++;
2143 fputc_unfiltered ('\n', stream);
2144 lineptr++;
2145 }
2146 }
2147}
2148
2149void
fba45db2 2150fputs_filtered (const char *linebuffer, struct ui_file *stream)
c906108c
SS
2151{
2152 fputs_maybe_filtered (linebuffer, stream, 1);
2153}
2154
2155int
fba45db2 2156putchar_unfiltered (int c)
c906108c 2157{
11cf8741 2158 char buf = c;
e0627e85 2159
d9fcf2fb 2160 ui_file_write (gdb_stdout, &buf, 1);
c906108c
SS
2161 return c;
2162}
2163
d1f4cff8
AC
2164/* Write character C to gdb_stdout using GDB's paging mechanism and return C.
2165 May return nonlocally. */
2166
2167int
2168putchar_filtered (int c)
2169{
2170 return fputc_filtered (c, gdb_stdout);
2171}
2172
c906108c 2173int
fba45db2 2174fputc_unfiltered (int c, struct ui_file *stream)
c906108c 2175{
11cf8741 2176 char buf = c;
e0627e85 2177
d9fcf2fb 2178 ui_file_write (stream, &buf, 1);
c906108c
SS
2179 return c;
2180}
2181
2182int
fba45db2 2183fputc_filtered (int c, struct ui_file *stream)
c906108c
SS
2184{
2185 char buf[2];
2186
2187 buf[0] = c;
2188 buf[1] = 0;
2189 fputs_filtered (buf, stream);
2190 return c;
2191}
2192
2193/* puts_debug is like fputs_unfiltered, except it prints special
2194 characters in printable fashion. */
2195
2196void
fba45db2 2197puts_debug (char *prefix, char *string, char *suffix)
c906108c
SS
2198{
2199 int ch;
2200
2201 /* Print prefix and suffix after each line. */
2202 static int new_line = 1;
2203 static int return_p = 0;
2204 static char *prev_prefix = "";
2205 static char *prev_suffix = "";
2206
2207 if (*string == '\n')
2208 return_p = 0;
2209
2210 /* If the prefix is changing, print the previous suffix, a new line,
2211 and the new prefix. */
c5aa993b 2212 if ((return_p || (strcmp (prev_prefix, prefix) != 0)) && !new_line)
c906108c 2213 {
9846de1b
JM
2214 fputs_unfiltered (prev_suffix, gdb_stdlog);
2215 fputs_unfiltered ("\n", gdb_stdlog);
2216 fputs_unfiltered (prefix, gdb_stdlog);
c906108c
SS
2217 }
2218
2219 /* Print prefix if we printed a newline during the previous call. */
2220 if (new_line)
2221 {
2222 new_line = 0;
9846de1b 2223 fputs_unfiltered (prefix, gdb_stdlog);
c906108c
SS
2224 }
2225
2226 prev_prefix = prefix;
2227 prev_suffix = suffix;
2228
2229 /* Output characters in a printable format. */
2230 while ((ch = *string++) != '\0')
2231 {
2232 switch (ch)
c5aa993b 2233 {
c906108c
SS
2234 default:
2235 if (isprint (ch))
9846de1b 2236 fputc_unfiltered (ch, gdb_stdlog);
c906108c
SS
2237
2238 else
9846de1b 2239 fprintf_unfiltered (gdb_stdlog, "\\x%02x", ch & 0xff);
c906108c
SS
2240 break;
2241
c5aa993b
JM
2242 case '\\':
2243 fputs_unfiltered ("\\\\", gdb_stdlog);
2244 break;
2245 case '\b':
2246 fputs_unfiltered ("\\b", gdb_stdlog);
2247 break;
2248 case '\f':
2249 fputs_unfiltered ("\\f", gdb_stdlog);
2250 break;
2251 case '\n':
2252 new_line = 1;
2253 fputs_unfiltered ("\\n", gdb_stdlog);
2254 break;
2255 case '\r':
2256 fputs_unfiltered ("\\r", gdb_stdlog);
2257 break;
2258 case '\t':
2259 fputs_unfiltered ("\\t", gdb_stdlog);
2260 break;
2261 case '\v':
2262 fputs_unfiltered ("\\v", gdb_stdlog);
2263 break;
2264 }
c906108c
SS
2265
2266 return_p = ch == '\r';
2267 }
2268
2269 /* Print suffix if we printed a newline. */
2270 if (new_line)
2271 {
9846de1b
JM
2272 fputs_unfiltered (suffix, gdb_stdlog);
2273 fputs_unfiltered ("\n", gdb_stdlog);
c906108c
SS
2274 }
2275}
2276
2277
2278/* Print a variable number of ARGS using format FORMAT. If this
2279 information is going to put the amount written (since the last call
2280 to REINITIALIZE_MORE_FILTER or the last page break) over the page size,
2281 call prompt_for_continue to get the users permision to continue.
2282
2283 Unlike fprintf, this function does not return a value.
2284
2285 We implement three variants, vfprintf (takes a vararg list and stream),
2286 fprintf (takes a stream to write on), and printf (the usual).
2287
2288 Note also that a longjmp to top level may occur in this routine
2289 (since prompt_for_continue may do so) so this routine should not be
2290 called when cleanups are not in place. */
2291
2292static void
fba45db2
KB
2293vfprintf_maybe_filtered (struct ui_file *stream, const char *format,
2294 va_list args, int filter)
c906108c
SS
2295{
2296 char *linebuffer;
2297 struct cleanup *old_cleanups;
2298
e623b504 2299 linebuffer = xstrvprintf (format, args);
b8c9b27d 2300 old_cleanups = make_cleanup (xfree, linebuffer);
c906108c
SS
2301 fputs_maybe_filtered (linebuffer, stream, filter);
2302 do_cleanups (old_cleanups);
2303}
2304
2305
2306void
fba45db2 2307vfprintf_filtered (struct ui_file *stream, const char *format, va_list args)
c906108c
SS
2308{
2309 vfprintf_maybe_filtered (stream, format, args, 1);
2310}
2311
2312void
fba45db2 2313vfprintf_unfiltered (struct ui_file *stream, const char *format, va_list args)
c906108c
SS
2314{
2315 char *linebuffer;
2316 struct cleanup *old_cleanups;
2317
e623b504 2318 linebuffer = xstrvprintf (format, args);
b8c9b27d 2319 old_cleanups = make_cleanup (xfree, linebuffer);
75feb17d
DJ
2320 if (debug_timestamp && stream == gdb_stdlog)
2321 {
2322 struct timeval tm;
2323 char *timestamp;
6e5abd65 2324 int len, need_nl;
75feb17d
DJ
2325
2326 gettimeofday (&tm, NULL);
6e5abd65
PA
2327
2328 len = strlen (linebuffer);
2329 need_nl = (len > 0 && linebuffer[len - 1] != '\n');
2330
2331 timestamp = xstrprintf ("%ld:%ld %s%s",
2332 (long) tm.tv_sec, (long) tm.tv_usec,
2333 linebuffer,
2334 need_nl ? "\n": "");
75feb17d
DJ
2335 make_cleanup (xfree, timestamp);
2336 fputs_unfiltered (timestamp, stream);
2337 }
6e5abd65
PA
2338 else
2339 fputs_unfiltered (linebuffer, stream);
c906108c
SS
2340 do_cleanups (old_cleanups);
2341}
2342
2343void
fba45db2 2344vprintf_filtered (const char *format, va_list args)
c906108c
SS
2345{
2346 vfprintf_maybe_filtered (gdb_stdout, format, args, 1);
2347}
2348
2349void
fba45db2 2350vprintf_unfiltered (const char *format, va_list args)
c906108c
SS
2351{
2352 vfprintf_unfiltered (gdb_stdout, format, args);
2353}
2354
c906108c 2355void
8731e58e 2356fprintf_filtered (struct ui_file *stream, const char *format, ...)
c906108c
SS
2357{
2358 va_list args;
e0627e85 2359
c906108c 2360 va_start (args, format);
c906108c
SS
2361 vfprintf_filtered (stream, format, args);
2362 va_end (args);
2363}
2364
c906108c 2365void
8731e58e 2366fprintf_unfiltered (struct ui_file *stream, const char *format, ...)
c906108c
SS
2367{
2368 va_list args;
e0627e85 2369
c906108c 2370 va_start (args, format);
c906108c
SS
2371 vfprintf_unfiltered (stream, format, args);
2372 va_end (args);
2373}
2374
2375/* Like fprintf_filtered, but prints its result indented.
2376 Called as fprintfi_filtered (spaces, stream, format, ...); */
2377
c906108c 2378void
8731e58e
AC
2379fprintfi_filtered (int spaces, struct ui_file *stream, const char *format,
2380 ...)
c906108c
SS
2381{
2382 va_list args;
e0627e85 2383
c906108c 2384 va_start (args, format);
c906108c
SS
2385 print_spaces_filtered (spaces, stream);
2386
2387 vfprintf_filtered (stream, format, args);
2388 va_end (args);
2389}
2390
2391
c906108c 2392void
8731e58e 2393printf_filtered (const char *format, ...)
c906108c
SS
2394{
2395 va_list args;
e0627e85 2396
c906108c 2397 va_start (args, format);
c906108c
SS
2398 vfprintf_filtered (gdb_stdout, format, args);
2399 va_end (args);
2400}
2401
2402
c906108c 2403void
8731e58e 2404printf_unfiltered (const char *format, ...)
c906108c
SS
2405{
2406 va_list args;
e0627e85 2407
c906108c 2408 va_start (args, format);
c906108c
SS
2409 vfprintf_unfiltered (gdb_stdout, format, args);
2410 va_end (args);
2411}
2412
2413/* Like printf_filtered, but prints it's result indented.
2414 Called as printfi_filtered (spaces, format, ...); */
2415
c906108c 2416void
8731e58e 2417printfi_filtered (int spaces, const char *format, ...)
c906108c
SS
2418{
2419 va_list args;
e0627e85 2420
c906108c 2421 va_start (args, format);
c906108c
SS
2422 print_spaces_filtered (spaces, gdb_stdout);
2423 vfprintf_filtered (gdb_stdout, format, args);
2424 va_end (args);
2425}
2426
2427/* Easy -- but watch out!
2428
2429 This routine is *not* a replacement for puts()! puts() appends a newline.
2430 This one doesn't, and had better not! */
2431
2432void
fba45db2 2433puts_filtered (const char *string)
c906108c
SS
2434{
2435 fputs_filtered (string, gdb_stdout);
2436}
2437
2438void
fba45db2 2439puts_unfiltered (const char *string)
c906108c
SS
2440{
2441 fputs_unfiltered (string, gdb_stdout);
2442}
2443
2444/* Return a pointer to N spaces and a null. The pointer is good
2445 until the next call to here. */
2446char *
fba45db2 2447n_spaces (int n)
c906108c 2448{
392a587b
JM
2449 char *t;
2450 static char *spaces = 0;
2451 static int max_spaces = -1;
c906108c
SS
2452
2453 if (n > max_spaces)
2454 {
2455 if (spaces)
b8c9b27d 2456 xfree (spaces);
c5aa993b
JM
2457 spaces = (char *) xmalloc (n + 1);
2458 for (t = spaces + n; t != spaces;)
c906108c
SS
2459 *--t = ' ';
2460 spaces[n] = '\0';
2461 max_spaces = n;
2462 }
2463
2464 return spaces + max_spaces - n;
2465}
2466
2467/* Print N spaces. */
2468void
fba45db2 2469print_spaces_filtered (int n, struct ui_file *stream)
c906108c
SS
2470{
2471 fputs_filtered (n_spaces (n), stream);
2472}
2473\f
4a351cef 2474/* C++/ObjC demangler stuff. */
c906108c 2475
389e51db
AC
2476/* fprintf_symbol_filtered attempts to demangle NAME, a symbol in language
2477 LANG, using demangling args ARG_MODE, and print it filtered to STREAM.
2478 If the name is not mangled, or the language for the name is unknown, or
581e13c1 2479 demangling is off, the name is printed in its "raw" form. */
c906108c
SS
2480
2481void
0d5cff50 2482fprintf_symbol_filtered (struct ui_file *stream, const char *name,
8731e58e 2483 enum language lang, int arg_mode)
c906108c
SS
2484{
2485 char *demangled;
2486
2487 if (name != NULL)
2488 {
2489 /* If user wants to see raw output, no problem. */
2490 if (!demangle)
2491 {
2492 fputs_filtered (name, stream);
2493 }
2494 else
2495 {
9a3d7dfd 2496 demangled = language_demangle (language_def (lang), name, arg_mode);
c906108c
SS
2497 fputs_filtered (demangled ? demangled : name, stream);
2498 if (demangled != NULL)
2499 {
b8c9b27d 2500 xfree (demangled);
c906108c
SS
2501 }
2502 }
2503 }
2504}
2505
2506/* Do a strcmp() type operation on STRING1 and STRING2, ignoring any
2507 differences in whitespace. Returns 0 if they match, non-zero if they
2508 don't (slightly different than strcmp()'s range of return values).
c5aa993b 2509
c906108c
SS
2510 As an extra hack, string1=="FOO(ARGS)" matches string2=="FOO".
2511 This "feature" is useful when searching for matching C++ function names
2512 (such as if the user types 'break FOO', where FOO is a mangled C++
581e13c1 2513 function). */
c906108c
SS
2514
2515int
fba45db2 2516strcmp_iw (const char *string1, const char *string2)
c906108c
SS
2517{
2518 while ((*string1 != '\0') && (*string2 != '\0'))
2519 {
2520 while (isspace (*string1))
2521 {
2522 string1++;
2523 }
2524 while (isspace (*string2))
2525 {
2526 string2++;
2527 }
559a7a62
JK
2528 if (case_sensitivity == case_sensitive_on && *string1 != *string2)
2529 break;
2530 if (case_sensitivity == case_sensitive_off
2531 && (tolower ((unsigned char) *string1)
2532 != tolower ((unsigned char) *string2)))
2533 break;
c906108c
SS
2534 if (*string1 != '\0')
2535 {
2536 string1++;
2537 string2++;
2538 }
2539 }
2540 return (*string1 != '\0' && *string1 != '(') || (*string2 != '\0');
2541}
2de7ced7 2542
0fe19209
DC
2543/* This is like strcmp except that it ignores whitespace and treats
2544 '(' as the first non-NULL character in terms of ordering. Like
2545 strcmp (and unlike strcmp_iw), it returns negative if STRING1 <
2546 STRING2, 0 if STRING2 = STRING2, and positive if STRING1 > STRING2
2547 according to that ordering.
2548
2549 If a list is sorted according to this function and if you want to
2550 find names in the list that match some fixed NAME according to
2551 strcmp_iw(LIST_ELT, NAME), then the place to start looking is right
2552 where this function would put NAME.
2553
559a7a62
JK
2554 This function must be neutral to the CASE_SENSITIVITY setting as the user
2555 may choose it during later lookup. Therefore this function always sorts
2556 primarily case-insensitively and secondarily case-sensitively.
2557
0fe19209
DC
2558 Here are some examples of why using strcmp to sort is a bad idea:
2559
2560 Whitespace example:
2561
2562 Say your partial symtab contains: "foo<char *>", "goo". Then, if
2563 we try to do a search for "foo<char*>", strcmp will locate this
2564 after "foo<char *>" and before "goo". Then lookup_partial_symbol
2565 will start looking at strings beginning with "goo", and will never
2566 see the correct match of "foo<char *>".
2567
2568 Parenthesis example:
2569
2570 In practice, this is less like to be an issue, but I'll give it a
2571 shot. Let's assume that '$' is a legitimate character to occur in
2572 symbols. (Which may well even be the case on some systems.) Then
2573 say that the partial symbol table contains "foo$" and "foo(int)".
2574 strcmp will put them in this order, since '$' < '('. Now, if the
2575 user searches for "foo", then strcmp will sort "foo" before "foo$".
2576 Then lookup_partial_symbol will notice that strcmp_iw("foo$",
2577 "foo") is false, so it won't proceed to the actual match of
2578 "foo(int)" with "foo". */
2579
2580int
2581strcmp_iw_ordered (const char *string1, const char *string2)
2582{
559a7a62
JK
2583 const char *saved_string1 = string1, *saved_string2 = string2;
2584 enum case_sensitivity case_pass = case_sensitive_off;
2585
2586 for (;;)
0fe19209 2587 {
b11b1f88
JK
2588 /* C1 and C2 are valid only if *string1 != '\0' && *string2 != '\0'.
2589 Provide stub characters if we are already at the end of one of the
2590 strings. */
2591 char c1 = 'X', c2 = 'X';
2592
2593 while (*string1 != '\0' && *string2 != '\0')
0fe19209 2594 {
b11b1f88
JK
2595 while (isspace (*string1))
2596 string1++;
2597 while (isspace (*string2))
2598 string2++;
2599
559a7a62
JK
2600 switch (case_pass)
2601 {
2602 case case_sensitive_off:
2603 c1 = tolower ((unsigned char) *string1);
2604 c2 = tolower ((unsigned char) *string2);
2605 break;
2606 case case_sensitive_on:
b11b1f88
JK
2607 c1 = *string1;
2608 c2 = *string2;
559a7a62
JK
2609 break;
2610 }
b11b1f88
JK
2611 if (c1 != c2)
2612 break;
2613
2614 if (*string1 != '\0')
2615 {
2616 string1++;
2617 string2++;
2618 }
0fe19209 2619 }
b11b1f88
JK
2620
2621 switch (*string1)
0fe19209 2622 {
b11b1f88
JK
2623 /* Characters are non-equal unless they're both '\0'; we want to
2624 make sure we get the comparison right according to our
2625 comparison in the cases where one of them is '\0' or '('. */
2626 case '\0':
2627 if (*string2 == '\0')
559a7a62 2628 break;
b11b1f88
JK
2629 else
2630 return -1;
2631 case '(':
2632 if (*string2 == '\0')
2633 return 1;
2634 else
2635 return -1;
2636 default:
2637 if (*string2 == '\0' || *string2 == '(')
2638 return 1;
559a7a62
JK
2639 else if (c1 > c2)
2640 return 1;
2641 else if (c1 < c2)
2642 return -1;
2643 /* PASSTHRU */
0fe19209 2644 }
559a7a62
JK
2645
2646 if (case_pass == case_sensitive_on)
2647 return 0;
2648
2649 /* Otherwise the strings were equal in case insensitive way, make
2650 a more fine grained comparison in a case sensitive way. */
2651
2652 case_pass = case_sensitive_on;
2653 string1 = saved_string1;
2654 string2 = saved_string2;
0fe19209 2655 }
0fe19209
DC
2656}
2657
2de7ced7
DJ
2658/* A simple comparison function with opposite semantics to strcmp. */
2659
2660int
2661streq (const char *lhs, const char *rhs)
2662{
2663 return !strcmp (lhs, rhs);
2664}
c906108c 2665\f
c5aa993b 2666
c906108c 2667/*
c5aa993b
JM
2668 ** subset_compare()
2669 ** Answer whether string_to_compare is a full or partial match to
2670 ** template_string. The partial match must be in sequence starting
2671 ** at index 0.
2672 */
c906108c 2673int
fba45db2 2674subset_compare (char *string_to_compare, char *template_string)
7a292a7a
SS
2675{
2676 int match;
e0627e85 2677
8731e58e
AC
2678 if (template_string != (char *) NULL && string_to_compare != (char *) NULL
2679 && strlen (string_to_compare) <= strlen (template_string))
2680 match =
61012eef 2681 (startswith (template_string, string_to_compare));
7a292a7a
SS
2682 else
2683 match = 0;
2684 return match;
2685}
c906108c 2686
75feb17d
DJ
2687static void
2688show_debug_timestamp (struct ui_file *file, int from_tty,
2689 struct cmd_list_element *c, const char *value)
2690{
3e43a32a
MS
2691 fprintf_filtered (file, _("Timestamping debugging messages is %s.\n"),
2692 value);
75feb17d 2693}
c906108c 2694\f
c5aa993b 2695
c906108c 2696void
fba45db2 2697initialize_utils (void)
c906108c 2698{
35096d9d 2699 add_setshow_uinteger_cmd ("width", class_support, &chars_per_line, _("\
77dec115
EZ
2700Set number of characters where GDB should wrap lines of its output."), _("\
2701Show number of characters where GDB should wrap lines of its output."), _("\
2702This affects where GDB wraps its output to fit the screen width.\n\
f81d1120 2703Setting this to \"unlimited\" or zero prevents GDB from wrapping its output."),
35096d9d 2704 set_width_command,
920d2a44 2705 show_chars_per_line,
35096d9d
AC
2706 &setlist, &showlist);
2707
2708 add_setshow_uinteger_cmd ("height", class_support, &lines_per_page, _("\
77dec115
EZ
2709Set number of lines in a page for GDB output pagination."), _("\
2710Show number of lines in a page for GDB output pagination."), _("\
2711This affects the number of lines after which GDB will pause\n\
2712its output and ask you whether to continue.\n\
f81d1120 2713Setting this to \"unlimited\" or zero causes GDB never pause during output."),
35096d9d 2714 set_height_command,
920d2a44 2715 show_lines_per_page,
35096d9d 2716 &setlist, &showlist);
c5aa993b 2717
5bf193a2
AC
2718 add_setshow_boolean_cmd ("pagination", class_support,
2719 &pagination_enabled, _("\
77dec115
EZ
2720Set state of GDB output pagination."), _("\
2721Show state of GDB output pagination."), _("\
2722When pagination is ON, GDB pauses at end of each screenful of\n\
2723its output and asks you whether to continue.\n\
f81d1120 2724Turning pagination off is an alternative to \"set height unlimited\"."),
5bf193a2 2725 NULL,
920d2a44 2726 show_pagination_enabled,
5bf193a2 2727 &setlist, &showlist);
4261bedc 2728
5bf193a2
AC
2729 add_setshow_boolean_cmd ("sevenbit-strings", class_support,
2730 &sevenbit_strings, _("\
2731Set printing of 8-bit characters in strings as \\nnn."), _("\
2732Show printing of 8-bit characters in strings as \\nnn."), NULL,
2733 NULL,
920d2a44 2734 show_sevenbit_strings,
5bf193a2
AC
2735 &setprintlist, &showprintlist);
2736
75feb17d
DJ
2737 add_setshow_boolean_cmd ("timestamp", class_maintenance,
2738 &debug_timestamp, _("\
2739Set timestamping of debugging messages."), _("\
2740Show timestamping of debugging messages."), _("\
2741When set, debugging messages will be marked with seconds and microseconds."),
2742 NULL,
2743 show_debug_timestamp,
2744 &setdebuglist, &showdebuglist);
c906108c
SS
2745}
2746
66bf4b3a 2747const char *
5af949e3 2748paddress (struct gdbarch *gdbarch, CORE_ADDR addr)
66bf4b3a
AC
2749{
2750 /* Truncate address to the size of a target address, avoiding shifts
2751 larger or equal than the width of a CORE_ADDR. The local
2752 variable ADDR_BIT stops the compiler reporting a shift overflow
581e13c1 2753 when it won't occur. */
66bf4b3a
AC
2754 /* NOTE: This assumes that the significant address information is
2755 kept in the least significant bits of ADDR - the upper bits were
76e71323 2756 either zero or sign extended. Should gdbarch_address_to_pointer or
66bf4b3a
AC
2757 some ADDRESS_TO_PRINTABLE() be used to do the conversion? */
2758
5af949e3 2759 int addr_bit = gdbarch_addr_bit (gdbarch);
66bf4b3a
AC
2760
2761 if (addr_bit < (sizeof (CORE_ADDR) * HOST_CHAR_BIT))
2762 addr &= ((CORE_ADDR) 1 << addr_bit) - 1;
2763 return hex_string (addr);
2764}
2765
f1310107
TJB
2766/* This function is described in "defs.h". */
2767
2768const char *
2769print_core_address (struct gdbarch *gdbarch, CORE_ADDR address)
2770{
2771 int addr_bit = gdbarch_addr_bit (gdbarch);
2772
2773 if (addr_bit < (sizeof (CORE_ADDR) * HOST_CHAR_BIT))
2774 address &= ((CORE_ADDR) 1 << addr_bit) - 1;
2775
2776 /* FIXME: cagney/2002-05-03: Need local_address_string() function
2777 that returns the language localized string formatted to a width
2778 based on gdbarch_addr_bit. */
2779 if (addr_bit <= 32)
2780 return hex_string_custom (address, 8);
2781 else
2782 return hex_string_custom (address, 16);
2783}
2784
8e3b41a9
JK
2785/* Callback hash_f for htab_create_alloc or htab_create_alloc_ex. */
2786
2787hashval_t
2788core_addr_hash (const void *ap)
2789{
2790 const CORE_ADDR *addrp = ap;
2791
2792 return *addrp;
2793}
2794
2795/* Callback eq_f for htab_create_alloc or htab_create_alloc_ex. */
2796
2797int
2798core_addr_eq (const void *ap, const void *bp)
2799{
2800 const CORE_ADDR *addr_ap = ap;
2801 const CORE_ADDR *addr_bp = bp;
2802
2803 return *addr_ap == *addr_bp;
2804}
2805
03dd37c3
AC
2806/* Convert a string back into a CORE_ADDR. */
2807CORE_ADDR
2808string_to_core_addr (const char *my_string)
2809{
2810 CORE_ADDR addr = 0;
9544c605 2811
03dd37c3
AC
2812 if (my_string[0] == '0' && tolower (my_string[1]) == 'x')
2813 {
ced572fe 2814 /* Assume that it is in hex. */
03dd37c3 2815 int i;
5d502164 2816
03dd37c3
AC
2817 for (i = 2; my_string[i] != '\0'; i++)
2818 {
2819 if (isdigit (my_string[i]))
2820 addr = (my_string[i] - '0') + (addr * 16);
8731e58e 2821 else if (isxdigit (my_string[i]))
03dd37c3
AC
2822 addr = (tolower (my_string[i]) - 'a' + 0xa) + (addr * 16);
2823 else
63f06803 2824 error (_("invalid hex \"%s\""), my_string);
03dd37c3
AC
2825 }
2826 }
2827 else
2828 {
2829 /* Assume that it is in decimal. */
2830 int i;
5d502164 2831
03dd37c3
AC
2832 for (i = 0; my_string[i] != '\0'; i++)
2833 {
2834 if (isdigit (my_string[i]))
2835 addr = (my_string[i] - '0') + (addr * 10);
2836 else
63f06803 2837 error (_("invalid decimal \"%s\""), my_string);
03dd37c3
AC
2838 }
2839 }
9544c605 2840
03dd37c3
AC
2841 return addr;
2842}
58d370e0
TT
2843
2844char *
2845gdb_realpath (const char *filename)
2846{
0fa9473f
JB
2847/* On most hosts, we rely on canonicalize_file_name to compute
2848 the FILENAME's realpath.
2849
2850 But the situation is slightly more complex on Windows, due to some
2851 versions of GCC which were reported to generate paths where
2852 backlashes (the directory separator) were doubled. For instance:
2853 c:\\some\\double\\slashes\\dir
2854 ... instead of ...
2855 c:\some\double\slashes\dir
2856 Those double-slashes were getting in the way when comparing paths,
2857 for instance when trying to insert a breakpoint as follow:
2858 (gdb) b c:/some/double/slashes/dir/foo.c:4
2859 No source file named c:/some/double/slashes/dir/foo.c:4.
2860 (gdb) b c:\some\double\slashes\dir\foo.c:4
2861 No source file named c:\some\double\slashes\dir\foo.c:4.
2862 To prevent this from happening, we need this function to always
2863 strip those extra backslashes. While canonicalize_file_name does
2864 perform this simplification, it only works when the path is valid.
2865 Since the simplification would be useful even if the path is not
2866 valid (one can always set a breakpoint on a file, even if the file
2867 does not exist locally), we rely instead on GetFullPathName to
2868 perform the canonicalization. */
2869
9c5e4386
JB
2870#if defined (_WIN32)
2871 {
2872 char buf[MAX_PATH];
2873 DWORD len = GetFullPathName (filename, MAX_PATH, buf, NULL);
2874
0fa9473f
JB
2875 /* The file system is case-insensitive but case-preserving.
2876 So it is important we do not lowercase the path. Otherwise,
2877 we might not be able to display the original casing in a given
2878 path. */
9c5e4386
JB
2879 if (len > 0 && len < MAX_PATH)
2880 return xstrdup (buf);
2881 }
abbffc89
YQ
2882#else
2883 {
2884 char *rp = canonicalize_file_name (filename);
2885
2886 if (rp != NULL)
2887 return rp;
2888 }
9c5e4386
JB
2889#endif
2890
70d35819
AC
2891 /* This system is a lost cause, just dup the buffer. */
2892 return xstrdup (filename);
58d370e0 2893}
303c8ebd 2894
4856b6bc
JK
2895/* Return a copy of FILENAME, with its directory prefix canonicalized
2896 by gdb_realpath. */
2897
2898char *
2899gdb_realpath_keepfile (const char *filename)
2900{
2901 const char *base_name = lbasename (filename);
2902 char *dir_name;
2903 char *real_path;
2904 char *result;
2905
2906 /* Extract the basename of filename, and return immediately
2907 a copy of filename if it does not contain any directory prefix. */
2908 if (base_name == filename)
2909 return xstrdup (filename);
2910
2911 dir_name = alloca ((size_t) (base_name - filename + 2));
2912 /* Allocate enough space to store the dir_name + plus one extra
2913 character sometimes needed under Windows (see below), and
2914 then the closing \000 character. */
2915 strncpy (dir_name, filename, base_name - filename);
2916 dir_name[base_name - filename] = '\000';
2917
2918#ifdef HAVE_DOS_BASED_FILE_SYSTEM
2919 /* We need to be careful when filename is of the form 'd:foo', which
2920 is equivalent of d:./foo, which is totally different from d:/foo. */
2921 if (strlen (dir_name) == 2 && isalpha (dir_name[0]) && dir_name[1] == ':')
2922 {
2923 dir_name[2] = '.';
2924 dir_name[3] = '\000';
2925 }
2926#endif
2927
2928 /* Canonicalize the directory prefix, and build the resulting
2929 filename. If the dirname realpath already contains an ending
2930 directory separator, avoid doubling it. */
2931 real_path = gdb_realpath (dir_name);
2932 if (IS_DIR_SEPARATOR (real_path[strlen (real_path) - 1]))
2933 result = concat (real_path, base_name, (char *) NULL);
2934 else
2935 result = concat (real_path, SLASH_STRING, base_name, (char *) NULL);
2936
2937 xfree (real_path);
2938 return result;
2939}
2940
04affae3
JK
2941/* Return PATH in absolute form, performing tilde-expansion if necessary.
2942 PATH cannot be NULL or the empty string.
2943 This does not resolve symlinks however, use gdb_realpath for that.
2944 Space for the result is allocated with malloc.
2945 If the path is already absolute, it is strdup'd.
2946 If there is a problem computing the absolute path, the path is returned
2947 unchanged (still strdup'd). */
2948
2949char *
2950gdb_abspath (const char *path)
2951{
2952 gdb_assert (path != NULL && path[0] != '\0');
2953
2954 if (path[0] == '~')
2955 return tilde_expand (path);
2956
2957 if (IS_ABSOLUTE_PATH (path))
2958 return xstrdup (path);
2959
2960 /* Beware the // my son, the Emacs barfs, the botch that catch... */
2961 return concat (current_directory,
2962 IS_DIR_SEPARATOR (current_directory[strlen (current_directory) - 1])
2963 ? "" : SLASH_STRING,
2964 path, (char *) NULL);
2965}
2966
5b03f266
AC
2967ULONGEST
2968align_up (ULONGEST v, int n)
2969{
2970 /* Check that N is really a power of two. */
2971 gdb_assert (n && (n & (n-1)) == 0);
2972 return (v + n - 1) & -n;
2973}
2974
2975ULONGEST
2976align_down (ULONGEST v, int n)
2977{
2978 /* Check that N is really a power of two. */
2979 gdb_assert (n && (n & (n-1)) == 0);
2980 return (v & -n);
2981}
ae5a43e0
DJ
2982
2983/* Allocation function for the libiberty hash table which uses an
2984 obstack. The obstack is passed as DATA. */
2985
2986void *
2987hashtab_obstack_allocate (void *data, size_t size, size_t count)
2988{
241fd515 2989 size_t total = size * count;
ae5a43e0 2990 void *ptr = obstack_alloc ((struct obstack *) data, total);
e0627e85 2991
ae5a43e0
DJ
2992 memset (ptr, 0, total);
2993 return ptr;
2994}
2995
2996/* Trivial deallocation function for the libiberty splay tree and hash
2997 table - don't deallocate anything. Rely on later deletion of the
2998 obstack. DATA will be the obstack, although it is not needed
2999 here. */
3000
3001void
3002dummy_obstack_deallocate (void *object, void *data)
3003{
3004 return;
3005}
253c8abb
DJ
3006
3007/* The bit offset of the highest byte in a ULONGEST, for overflow
3008 checking. */
3009
3010#define HIGH_BYTE_POSN ((sizeof (ULONGEST) - 1) * HOST_CHAR_BIT)
3011
3012/* True (non-zero) iff DIGIT is a valid digit in radix BASE,
3013 where 2 <= BASE <= 36. */
3014
3015static int
3016is_digit_in_base (unsigned char digit, int base)
3017{
3018 if (!isalnum (digit))
3019 return 0;
3020 if (base <= 10)
3021 return (isdigit (digit) && digit < base + '0');
3022 else
3023 return (isdigit (digit) || tolower (digit) < base - 10 + 'a');
3024}
3025
3026static int
3027digit_to_int (unsigned char c)
3028{
3029 if (isdigit (c))
3030 return c - '0';
3031 else
3032 return tolower (c) - 'a' + 10;
3033}
3034
3035/* As for strtoul, but for ULONGEST results. */
3036
3037ULONGEST
3038strtoulst (const char *num, const char **trailer, int base)
3039{
3040 unsigned int high_part;
3041 ULONGEST result;
3042 int minus = 0;
3043 int i = 0;
3044
3045 /* Skip leading whitespace. */
3046 while (isspace (num[i]))
3047 i++;
3048
3049 /* Handle prefixes. */
3050 if (num[i] == '+')
3051 i++;
3052 else if (num[i] == '-')
3053 {
3054 minus = 1;
3055 i++;
3056 }
3057
3058 if (base == 0 || base == 16)
3059 {
3060 if (num[i] == '0' && (num[i + 1] == 'x' || num[i + 1] == 'X'))
3061 {
3062 i += 2;
3063 if (base == 0)
3064 base = 16;
3065 }
3066 }
3067
3068 if (base == 0 && num[i] == '0')
3069 base = 8;
3070
3071 if (base == 0)
3072 base = 10;
3073
3074 if (base < 2 || base > 36)
3075 {
3076 errno = EINVAL;
3077 return 0;
3078 }
3079
3080 result = high_part = 0;
3081 for (; is_digit_in_base (num[i], base); i += 1)
3082 {
3083 result = result * base + digit_to_int (num[i]);
3084 high_part = high_part * base + (unsigned int) (result >> HIGH_BYTE_POSN);
3085 result &= ((ULONGEST) 1 << HIGH_BYTE_POSN) - 1;
3086 if (high_part > 0xff)
3087 {
3088 errno = ERANGE;
3089 result = ~ (ULONGEST) 0;
3090 high_part = 0;
3091 minus = 0;
3092 break;
3093 }
3094 }
3095
3096 if (trailer != NULL)
3097 *trailer = &num[i];
3098
3099 result = result + ((ULONGEST) high_part << HIGH_BYTE_POSN);
3100 if (minus)
3101 return -result;
3102 else
3103 return result;
3104}
e1024ff1
DJ
3105
3106/* Simple, portable version of dirname that does not modify its
3107 argument. */
3108
3109char *
3110ldirname (const char *filename)
3111{
3112 const char *base = lbasename (filename);
3113 char *dirname;
3114
3115 while (base > filename && IS_DIR_SEPARATOR (base[-1]))
3116 --base;
3117
3118 if (base == filename)
3119 return NULL;
3120
3121 dirname = xmalloc (base - filename + 2);
3122 memcpy (dirname, filename, base - filename);
3123
3124 /* On DOS based file systems, convert "d:foo" to "d:.", so that we
3125 create "d:./bar" later instead of the (different) "d:/bar". */
3126 if (base - filename == 2 && IS_ABSOLUTE_PATH (base)
3127 && !IS_DIR_SEPARATOR (filename[0]))
3128 dirname[base++ - filename] = '.';
3129
3130 dirname[base - filename] = '\0';
3131 return dirname;
3132}
d1a41061
PP
3133
3134/* Call libiberty's buildargv, and return the result.
3135 If buildargv fails due to out-of-memory, call nomem.
3136 Therefore, the returned value is guaranteed to be non-NULL,
3137 unless the parameter itself is NULL. */
3138
3139char **
3140gdb_buildargv (const char *s)
3141{
3142 char **argv = buildargv (s);
e0627e85 3143
d1a41061 3144 if (s != NULL && argv == NULL)
d26e3629 3145 malloc_failure (0);
d1a41061
PP
3146 return argv;
3147}
3c16cced 3148
dc146f7c
VP
3149int
3150compare_positive_ints (const void *ap, const void *bp)
3151{
3152 /* Because we know we're comparing two ints which are positive,
3153 there's no danger of overflow here. */
3154 return * (int *) ap - * (int *) bp;
3155}
3156
f8eba3c6
TT
3157/* String compare function for qsort. */
3158
3159int
3160compare_strings (const void *arg1, const void *arg2)
3161{
3162 const char **s1 = (const char **) arg1;
3163 const char **s2 = (const char **) arg2;
3164
3165 return strcmp (*s1, *s2);
3166}
3167
d18b8b7a 3168#define AMBIGUOUS_MESS1 ".\nMatching formats:"
3e43a32a
MS
3169#define AMBIGUOUS_MESS2 \
3170 ".\nUse \"set gnutarget format-name\" to specify the format."
d18b8b7a
HZ
3171
3172const char *
3173gdb_bfd_errmsg (bfd_error_type error_tag, char **matching)
3174{
3175 char *ret, *retp;
3176 int ret_len;
3177 char **p;
3178
3179 /* Check if errmsg just need simple return. */
3180 if (error_tag != bfd_error_file_ambiguously_recognized || matching == NULL)
3181 return bfd_errmsg (error_tag);
3182
3183 ret_len = strlen (bfd_errmsg (error_tag)) + strlen (AMBIGUOUS_MESS1)
3184 + strlen (AMBIGUOUS_MESS2);
3185 for (p = matching; *p; p++)
3186 ret_len += strlen (*p) + 1;
3187 ret = xmalloc (ret_len + 1);
3188 retp = ret;
3189 make_cleanup (xfree, ret);
3190
3191 strcpy (retp, bfd_errmsg (error_tag));
3192 retp += strlen (retp);
3193
3194 strcpy (retp, AMBIGUOUS_MESS1);
3195 retp += strlen (retp);
3196
3197 for (p = matching; *p; p++)
3198 {
3199 sprintf (retp, " %s", *p);
3200 retp += strlen (retp);
3201 }
3202 xfree (matching);
3203
3204 strcpy (retp, AMBIGUOUS_MESS2);
3205
3206 return ret;
3207}
3208
74164c56
JK
3209/* Return ARGS parsed as a valid pid, or throw an error. */
3210
3211int
c0939df1 3212parse_pid_to_attach (const char *args)
74164c56
JK
3213{
3214 unsigned long pid;
3215 char *dummy;
3216
3217 if (!args)
3218 error_no_arg (_("process-id to attach"));
3219
c0939df1 3220 dummy = (char *) args;
74164c56
JK
3221 pid = strtoul (args, &dummy, 0);
3222 /* Some targets don't set errno on errors, grrr! */
3223 if ((pid == 0 && dummy == args) || dummy != &args[strlen (args)])
3224 error (_("Illegal process-id: %s."), args);
3225
3226 return pid;
3227}
3228
353d1d73
JK
3229/* Helper for make_bpstat_clear_actions_cleanup. */
3230
3231static void
3232do_bpstat_clear_actions_cleanup (void *unused)
3233{
3234 bpstat_clear_actions ();
3235}
3236
3237/* Call bpstat_clear_actions for the case an exception is throw. You should
3238 discard_cleanups if no exception is caught. */
3239
3240struct cleanup *
3241make_bpstat_clear_actions_cleanup (void)
3242{
3243 return make_cleanup (do_bpstat_clear_actions_cleanup, NULL);
3244}
3245
df15bd07
JK
3246/* Check for GCC >= 4.x according to the symtab->producer string. Return minor
3247 version (x) of 4.x in such case. If it is not GCC or it is GCC older than
3248 4.x return -1. If it is GCC 5.x or higher return INT_MAX. */
3249
3250int
3251producer_is_gcc_ge_4 (const char *producer)
3252{
df15bd07 3253 int major, minor;
b1ffba5a
MW
3254
3255 if (! producer_is_gcc (producer, &major, &minor))
3256 return -1;
df15bd07
JK
3257 if (major < 4)
3258 return -1;
3259 if (major > 4)
3260 return INT_MAX;
3261 return minor;
3262}
3263
cc7039d3
JB
3264/* Returns nonzero if the given PRODUCER string is GCC and sets the MAJOR
3265 and MINOR versions when not NULL. Returns zero if the given PRODUCER
b1ffba5a
MW
3266 is NULL or it isn't GCC. */
3267
cc7039d3 3268int
b1ffba5a 3269producer_is_gcc (const char *producer, int *major, int *minor)
38360086
MW
3270{
3271 const char *cs;
38360086 3272
61012eef 3273 if (producer != NULL && startswith (producer, "GNU "))
38360086 3274 {
b1ffba5a
MW
3275 int maj, min;
3276
3277 if (major == NULL)
3278 major = &maj;
3279 if (minor == NULL)
3280 minor = &min;
3281
38360086
MW
3282 /* Skip any identifier after "GNU " - such as "C11" "C++" or "Java".
3283 A full producer string might look like:
3284 "GNU C 4.7.2"
3285 "GNU Fortran 4.8.2 20140120 (Red Hat 4.8.2-16) -mtune=generic ..."
3286 "GNU C++14 5.0.0 20150123 (experimental)"
3287 */
3288 cs = &producer[strlen ("GNU ")];
3289 while (*cs && !isspace (*cs))
3290 cs++;
3291 if (*cs && isspace (*cs))
3292 cs++;
b1ffba5a 3293 if (sscanf (cs, "%d.%d", major, minor) == 2)
cc7039d3 3294 return 1;
38360086
MW
3295 }
3296
3297 /* Not recognized as GCC. */
cc7039d3 3298 return 0;
38360086
MW
3299}
3300
e4ab2fad
JK
3301/* Helper for make_cleanup_free_char_ptr_vec. */
3302
3303static void
3304do_free_char_ptr_vec (void *arg)
3305{
3306 VEC (char_ptr) *char_ptr_vec = arg;
3307
3308 free_char_ptr_vec (char_ptr_vec);
3309}
3310
3311/* Make cleanup handler calling xfree for each element of CHAR_PTR_VEC and
3312 final VEC_free for CHAR_PTR_VEC itself.
3313
3314 You must not modify CHAR_PTR_VEC after this cleanup registration as the
3315 CHAR_PTR_VEC base address may change on its updates. Contrary to VEC_free
3316 this function does not (cannot) clear the pointer. */
3317
3318struct cleanup *
3319make_cleanup_free_char_ptr_vec (VEC (char_ptr) *char_ptr_vec)
3320{
3321 return make_cleanup (do_free_char_ptr_vec, char_ptr_vec);
3322}
3323
6dea1fbd
JK
3324/* Substitute all occurences of string FROM by string TO in *STRINGP. *STRINGP
3325 must come from xrealloc-compatible allocator and it may be updated. FROM
1564a261
JK
3326 needs to be delimited by IS_DIR_SEPARATOR or DIRNAME_SEPARATOR (or be
3327 located at the start or end of *STRINGP. */
6dea1fbd
JK
3328
3329void
3330substitute_path_component (char **stringp, const char *from, const char *to)
3331{
3332 char *string = *stringp, *s;
3333 const size_t from_len = strlen (from);
3334 const size_t to_len = strlen (to);
3335
3336 for (s = string;;)
3337 {
3338 s = strstr (s, from);
3339 if (s == NULL)
3340 break;
3341
1564a261
JK
3342 if ((s == string || IS_DIR_SEPARATOR (s[-1])
3343 || s[-1] == DIRNAME_SEPARATOR)
3344 && (s[from_len] == '\0' || IS_DIR_SEPARATOR (s[from_len])
3345 || s[from_len] == DIRNAME_SEPARATOR))
6dea1fbd
JK
3346 {
3347 char *string_new;
3348
3349 string_new = xrealloc (string, (strlen (string) + to_len + 1));
3350
3351 /* Relocate the current S pointer. */
3352 s = s - string + string_new;
3353 string = string_new;
3354
3355 /* Replace from by to. */
3356 memmove (&s[to_len], &s[from_len], strlen (&s[from_len]) + 1);
3357 memcpy (s, to, to_len);
3358
3359 s += to_len;
3360 }
3361 else
3362 s++;
3363 }
3364
3365 *stringp = string;
3366}
3367
0b6cb71e
DE
3368#ifdef HAVE_WAITPID
3369
3370#ifdef SIGALRM
3371
3372/* SIGALRM handler for waitpid_with_timeout. */
3373
3374static void
3375sigalrm_handler (int signo)
3376{
3377 /* Nothing to do. */
3378}
3379
3380#endif
3381
3382/* Wrapper to wait for child PID to die with TIMEOUT.
3383 TIMEOUT is the time to stop waiting in seconds.
3384 If TIMEOUT is zero, pass WNOHANG to waitpid.
3385 Returns PID if it was successfully waited for, otherwise -1.
3386
3387 Timeouts are currently implemented with alarm and SIGALRM.
3388 If the host does not support them, this waits "forever".
3389 It would be odd though for a host to have waitpid and not SIGALRM. */
3390
3391pid_t
3392wait_to_die_with_timeout (pid_t pid, int *status, int timeout)
3393{
3394 pid_t waitpid_result;
3395
3396 gdb_assert (pid > 0);
3397 gdb_assert (timeout >= 0);
3398
3399 if (timeout > 0)
3400 {
3401#ifdef SIGALRM
3402#if defined (HAVE_SIGACTION) && defined (SA_RESTART)
3403 struct sigaction sa, old_sa;
3404
3405 sa.sa_handler = sigalrm_handler;
3406 sigemptyset (&sa.sa_mask);
3407 sa.sa_flags = 0;
3408 sigaction (SIGALRM, &sa, &old_sa);
3409#else
3410 void (*ofunc) ();
3411
3412 ofunc = (void (*)()) signal (SIGALRM, sigalrm_handler);
3413#endif
3414
3415 alarm (timeout);
3416#endif
3417
3418 waitpid_result = waitpid (pid, status, 0);
3419
3420#ifdef SIGALRM
3421 alarm (0);
3422#if defined (HAVE_SIGACTION) && defined (SA_RESTART)
3423 sigaction (SIGALRM, &old_sa, NULL);
3424#else
3425 signal (SIGALRM, ofunc);
3426#endif
3427#endif
3428 }
3429 else
3430 waitpid_result = waitpid (pid, status, WNOHANG);
3431
3432 if (waitpid_result == pid)
3433 return pid;
3434 else
3435 return -1;
3436}
3437
3438#endif /* HAVE_WAITPID */
3439
202cbf1c
JK
3440/* Provide fnmatch compatible function for FNM_FILE_NAME matching of host files.
3441 Both FNM_FILE_NAME and FNM_NOESCAPE must be set in FLAGS.
3442
3443 It handles correctly HAVE_DOS_BASED_FILE_SYSTEM and
3444 HAVE_CASE_INSENSITIVE_FILE_SYSTEM. */
3445
3446int
3447gdb_filename_fnmatch (const char *pattern, const char *string, int flags)
3448{
3449 gdb_assert ((flags & FNM_FILE_NAME) != 0);
3450
3451 /* It is unclear how '\' escaping vs. directory separator should coexist. */
3452 gdb_assert ((flags & FNM_NOESCAPE) != 0);
3453
3454#ifdef HAVE_DOS_BASED_FILE_SYSTEM
3455 {
3456 char *pattern_slash, *string_slash;
3457
3458 /* Replace '\' by '/' in both strings. */
3459
3460 pattern_slash = alloca (strlen (pattern) + 1);
3461 strcpy (pattern_slash, pattern);
3462 pattern = pattern_slash;
3463 for (; *pattern_slash != 0; pattern_slash++)
3464 if (IS_DIR_SEPARATOR (*pattern_slash))
3465 *pattern_slash = '/';
3466
3467 string_slash = alloca (strlen (string) + 1);
3468 strcpy (string_slash, string);
3469 string = string_slash;
3470 for (; *string_slash != 0; string_slash++)
3471 if (IS_DIR_SEPARATOR (*string_slash))
3472 *string_slash = '/';
3473 }
3474#endif /* HAVE_DOS_BASED_FILE_SYSTEM */
3475
3476#ifdef HAVE_CASE_INSENSITIVE_FILE_SYSTEM
3477 flags |= FNM_CASEFOLD;
3478#endif /* HAVE_CASE_INSENSITIVE_FILE_SYSTEM */
3479
3480 return fnmatch (pattern, string, flags);
3481}
3482
2c0b251b
PA
3483/* Provide a prototype to silence -Wmissing-prototypes. */
3484extern initialize_file_ftype _initialize_utils;
3485
3c16cced
PA
3486void
3487_initialize_utils (void)
3488{
3489 add_internal_problem_command (&internal_error_problem);
3490 add_internal_problem_command (&internal_warning_problem);
57fcfb1b 3491 add_internal_problem_command (&demangler_warning_problem);
3c16cced 3492}
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