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c906108c 1/* Print values for GNU debugger GDB.
e2ad119d 2
28e7fd62 3 Copyright (C) 1986-2013 Free Software Foundation, Inc.
c906108c 4
c5aa993b 5 This file is part of GDB.
c906108c 6
c5aa993b
JM
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
c5aa993b 10 (at your option) any later version.
c906108c 11
c5aa993b
JM
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
c906108c 16
c5aa993b 17 You should have received a copy of the GNU General Public License
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
19
20#include "defs.h"
21#include "gdb_string.h"
22#include "frame.h"
23#include "symtab.h"
24#include "gdbtypes.h"
25#include "value.h"
26#include "language.h"
27#include "expression.h"
28#include "gdbcore.h"
29#include "gdbcmd.h"
30#include "target.h"
31#include "breakpoint.h"
32#include "demangle.h"
50f182aa 33#include "gdb-demangle.h"
c906108c
SS
34#include "valprint.h"
35#include "annotate.h"
c5aa993b
JM
36#include "symfile.h" /* for overlay functions */
37#include "objfiles.h" /* ditto */
c94fdfd0 38#include "completer.h" /* for completion functions */
8b93c638 39#include "ui-out.h"
261397f8 40#include "gdb_assert.h"
fe898f56 41#include "block.h"
92bf2b80 42#include "disasm.h"
1a619819 43#include "dfp.h"
79a45b7d 44#include "valprint.h"
a3247a22
PP
45#include "exceptions.h"
46#include "observer.h"
47#include "solist.h"
a3247a22 48#include "parser-defs.h"
6c7a06a3 49#include "charset.h"
704e9165 50#include "arch-utils.h"
e9cafbcc 51#include "cli/cli-utils.h"
d3ce09f5 52#include "format.h"
05cba821 53#include "source.h"
c906108c 54
6a83354a 55#ifdef TUI
0df8b418 56#include "tui/tui.h" /* For tui_active et al. */
6a83354a
AC
57#endif
58
c906108c 59struct format_data
c5aa993b
JM
60 {
61 int count;
62 char format;
63 char size;
a6bac58e
TT
64
65 /* True if the value should be printed raw -- that is, bypassing
66 python-based formatters. */
67 unsigned char raw;
c5aa993b 68 };
c906108c
SS
69
70/* Last specified output format. */
71
a6bac58e 72static char last_format = 0;
c906108c
SS
73
74/* Last specified examination size. 'b', 'h', 'w' or `q'. */
75
76static char last_size = 'w';
77
5d3729b5 78/* Default address to examine next, and associated architecture. */
c906108c 79
5d3729b5 80static struct gdbarch *next_gdbarch;
c906108c
SS
81static CORE_ADDR next_address;
82
a4642986
MR
83/* Number of delay instructions following current disassembled insn. */
84
85static int branch_delay_insns;
86
c906108c
SS
87/* Last address examined. */
88
89static CORE_ADDR last_examine_address;
90
91/* Contents of last address examined.
92 This is not valid past the end of the `x' command! */
93
3d6d86c6 94static struct value *last_examine_value;
c906108c
SS
95
96/* Largest offset between a symbolic value and an address, that will be
97 printed as `0x1234 <symbol+offset>'. */
98
99static unsigned int max_symbolic_offset = UINT_MAX;
920d2a44
AC
100static void
101show_max_symbolic_offset (struct ui_file *file, int from_tty,
102 struct cmd_list_element *c, const char *value)
103{
3e43a32a
MS
104 fprintf_filtered (file,
105 _("The largest offset that will be "
106 "printed in <symbol+1234> form is %s.\n"),
920d2a44
AC
107 value);
108}
c906108c
SS
109
110/* Append the source filename and linenumber of the symbol when
111 printing a symbolic value as `<symbol at filename:linenum>' if set. */
112static int print_symbol_filename = 0;
920d2a44
AC
113static void
114show_print_symbol_filename (struct ui_file *file, int from_tty,
115 struct cmd_list_element *c, const char *value)
116{
3e43a32a
MS
117 fprintf_filtered (file, _("Printing of source filename and "
118 "line number with <symbol> is %s.\n"),
920d2a44
AC
119 value);
120}
c906108c
SS
121
122/* Number of auto-display expression currently being displayed.
9d8fa392 123 So that we can disable it if we get a signal within it.
c906108c
SS
124 -1 when not doing one. */
125
5a18e302 126static int current_display_number;
c906108c 127
c906108c 128struct display
c5aa993b
JM
129 {
130 /* Chain link to next auto-display item. */
131 struct display *next;
6c95b8df 132
fa8a61dc
TT
133 /* The expression as the user typed it. */
134 char *exp_string;
6c95b8df 135
c5aa993b
JM
136 /* Expression to be evaluated and displayed. */
137 struct expression *exp;
6c95b8df 138
c5aa993b
JM
139 /* Item number of this auto-display item. */
140 int number;
6c95b8df 141
c5aa993b
JM
142 /* Display format specified. */
143 struct format_data format;
6c95b8df
PA
144
145 /* Program space associated with `block'. */
146 struct program_space *pspace;
147
0df8b418 148 /* Innermost block required by this expression when evaluated. */
270140bd 149 const struct block *block;
6c95b8df 150
0df8b418 151 /* Status of this display (enabled or disabled). */
b5de0fa7 152 int enabled_p;
c5aa993b 153 };
c906108c
SS
154
155/* Chain of expressions whose values should be displayed
156 automatically each time the program stops. */
157
158static struct display *display_chain;
159
160static int display_number;
161
c9174737
PA
162/* Walk the following statement or block through all displays.
163 ALL_DISPLAYS_SAFE does so even if the statement deletes the current
164 display. */
3c3fe74c
PA
165
166#define ALL_DISPLAYS(B) \
167 for (B = display_chain; B; B = B->next)
168
c9174737
PA
169#define ALL_DISPLAYS_SAFE(B,TMP) \
170 for (B = display_chain; \
171 B ? (TMP = B->next, 1): 0; \
172 B = TMP)
173
0df8b418 174/* Prototypes for exported functions. */
c906108c 175
a14ed312 176void _initialize_printcmd (void);
c906108c 177
0df8b418 178/* Prototypes for local functions. */
c906108c 179
a14ed312 180static void do_one_display (struct display *);
c906108c 181\f
c5aa993b 182
c906108c
SS
183/* Decode a format specification. *STRING_PTR should point to it.
184 OFORMAT and OSIZE are used as defaults for the format and size
185 if none are given in the format specification.
186 If OSIZE is zero, then the size field of the returned value
187 should be set only if a size is explicitly specified by the
188 user.
189 The structure returned describes all the data
190 found in the specification. In addition, *STRING_PTR is advanced
191 past the specification and past all whitespace following it. */
192
193static struct format_data
fba45db2 194decode_format (char **string_ptr, int oformat, int osize)
c906108c
SS
195{
196 struct format_data val;
52f0bd74 197 char *p = *string_ptr;
c906108c
SS
198
199 val.format = '?';
200 val.size = '?';
201 val.count = 1;
a6bac58e 202 val.raw = 0;
c906108c
SS
203
204 if (*p >= '0' && *p <= '9')
205 val.count = atoi (p);
c5aa993b
JM
206 while (*p >= '0' && *p <= '9')
207 p++;
c906108c
SS
208
209 /* Now process size or format letters that follow. */
210
211 while (1)
212 {
213 if (*p == 'b' || *p == 'h' || *p == 'w' || *p == 'g')
214 val.size = *p++;
a6bac58e
TT
215 else if (*p == 'r')
216 {
217 val.raw = 1;
218 p++;
219 }
c906108c
SS
220 else if (*p >= 'a' && *p <= 'z')
221 val.format = *p++;
222 else
223 break;
224 }
225
c5aa993b
JM
226 while (*p == ' ' || *p == '\t')
227 p++;
c906108c
SS
228 *string_ptr = p;
229
230 /* Set defaults for format and size if not specified. */
231 if (val.format == '?')
232 {
233 if (val.size == '?')
234 {
235 /* Neither has been specified. */
236 val.format = oformat;
237 val.size = osize;
238 }
239 else
240 /* If a size is specified, any format makes a reasonable
241 default except 'i'. */
242 val.format = oformat == 'i' ? 'x' : oformat;
243 }
244 else if (val.size == '?')
245 switch (val.format)
246 {
247 case 'a':
5d3729b5
UW
248 /* Pick the appropriate size for an address. This is deferred
249 until do_examine when we know the actual architecture to use.
250 A special size value of 'a' is used to indicate this case. */
251 val.size = osize ? 'a' : osize;
c906108c
SS
252 break;
253 case 'f':
254 /* Floating point has to be word or giantword. */
255 if (osize == 'w' || osize == 'g')
256 val.size = osize;
257 else
258 /* Default it to giantword if the last used size is not
259 appropriate. */
260 val.size = osize ? 'g' : osize;
261 break;
262 case 'c':
263 /* Characters default to one byte. */
264 val.size = osize ? 'b' : osize;
265 break;
9a22f0d0 266 case 's':
3e43a32a
MS
267 /* Display strings with byte size chars unless explicitly
268 specified. */
9a22f0d0
PM
269 val.size = '\0';
270 break;
271
c906108c
SS
272 default:
273 /* The default is the size most recently specified. */
274 val.size = osize;
275 }
276
277 return val;
278}
279\f
79a45b7d 280/* Print value VAL on stream according to OPTIONS.
c906108c 281 Do not end with a newline.
c906108c 282 SIZE is the letter for the size of datum being printed.
ea37ba09
DJ
283 This is used to pad hex numbers so they line up. SIZE is 0
284 for print / output and set for examine. */
c906108c
SS
285
286static void
79a45b7d
TT
287print_formatted (struct value *val, int size,
288 const struct value_print_options *options,
fba45db2 289 struct ui_file *stream)
c906108c 290{
df407dfe 291 struct type *type = check_typedef (value_type (val));
c906108c
SS
292 int len = TYPE_LENGTH (type);
293
294 if (VALUE_LVAL (val) == lval_memory)
42ae5230 295 next_address = value_address (val) + len;
c906108c 296
ea37ba09 297 if (size)
c906108c 298 {
79a45b7d 299 switch (options->format)
ea37ba09
DJ
300 {
301 case 's':
6c7a06a3
TT
302 {
303 struct type *elttype = value_type (val);
ad3bbd48 304
42ae5230 305 next_address = (value_address (val)
09ca9e2e 306 + val_print_string (elttype, NULL,
42ae5230 307 value_address (val), -1,
9a22f0d0 308 stream, options) * len);
6c7a06a3 309 }
ea37ba09 310 return;
c906108c 311
ea37ba09
DJ
312 case 'i':
313 /* We often wrap here if there are long symbolic names. */
314 wrap_here (" ");
42ae5230 315 next_address = (value_address (val)
13274fc3
UW
316 + gdb_print_insn (get_type_arch (type),
317 value_address (val), stream,
ea37ba09
DJ
318 &branch_delay_insns));
319 return;
320 }
c906108c 321 }
ea37ba09 322
79a45b7d 323 if (options->format == 0 || options->format == 's'
4e885b20 324 || TYPE_CODE (type) == TYPE_CODE_REF
ea37ba09
DJ
325 || TYPE_CODE (type) == TYPE_CODE_ARRAY
326 || TYPE_CODE (type) == TYPE_CODE_STRING
327 || TYPE_CODE (type) == TYPE_CODE_STRUCT
328 || TYPE_CODE (type) == TYPE_CODE_UNION
329 || TYPE_CODE (type) == TYPE_CODE_NAMESPACE)
79a45b7d 330 value_print (val, stream, options);
ea37ba09 331 else
b021a221
MS
332 /* User specified format, so don't look to the type to tell us
333 what to do. */
ab2188aa
PA
334 val_print_scalar_formatted (type,
335 value_contents_for_printing (val),
336 value_embedded_offset (val),
337 val,
338 options, size, stream);
c906108c
SS
339}
340
b806fb9a
UW
341/* Return builtin floating point type of same length as TYPE.
342 If no such type is found, return TYPE itself. */
343static struct type *
50810684 344float_type_from_length (struct type *type)
b806fb9a 345{
50810684 346 struct gdbarch *gdbarch = get_type_arch (type);
b806fb9a 347 const struct builtin_type *builtin = builtin_type (gdbarch);
b806fb9a 348
744a8059 349 if (TYPE_LENGTH (type) == TYPE_LENGTH (builtin->builtin_float))
b806fb9a 350 type = builtin->builtin_float;
744a8059 351 else if (TYPE_LENGTH (type) == TYPE_LENGTH (builtin->builtin_double))
b806fb9a 352 type = builtin->builtin_double;
744a8059 353 else if (TYPE_LENGTH (type) == TYPE_LENGTH (builtin->builtin_long_double))
b806fb9a
UW
354 type = builtin->builtin_long_double;
355
356 return type;
357}
358
c906108c 359/* Print a scalar of data of type TYPE, pointed to in GDB by VALADDR,
ab2188aa
PA
360 according to OPTIONS and SIZE on STREAM. Formats s and i are not
361 supported at this level. */
c906108c
SS
362
363void
366b1cbf 364print_scalar_formatted (const void *valaddr, struct type *type,
79a45b7d
TT
365 const struct value_print_options *options,
366 int size, struct ui_file *stream)
c906108c 367{
50810684 368 struct gdbarch *gdbarch = get_type_arch (type);
81cb7cc9 369 LONGEST val_long = 0;
c906108c 370 unsigned int len = TYPE_LENGTH (type);
69feb676 371 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
c906108c 372
ab2188aa
PA
373 /* String printing should go through val_print_scalar_formatted. */
374 gdb_assert (options->format != 's');
ea37ba09 375
6b9acc27
JJ
376 if (len > sizeof(LONGEST) &&
377 (TYPE_CODE (type) == TYPE_CODE_INT
378 || TYPE_CODE (type) == TYPE_CODE_ENUM))
379 {
79a45b7d 380 switch (options->format)
6b9acc27
JJ
381 {
382 case 'o':
d44e8473 383 print_octal_chars (stream, valaddr, len, byte_order);
6b9acc27
JJ
384 return;
385 case 'u':
386 case 'd':
d44e8473 387 print_decimal_chars (stream, valaddr, len, byte_order);
6b9acc27
JJ
388 return;
389 case 't':
d44e8473 390 print_binary_chars (stream, valaddr, len, byte_order);
6b9acc27
JJ
391 return;
392 case 'x':
d44e8473 393 print_hex_chars (stream, valaddr, len, byte_order);
6b9acc27
JJ
394 return;
395 case 'c':
6c7a06a3 396 print_char_chars (stream, type, valaddr, len, byte_order);
6b9acc27
JJ
397 return;
398 default:
399 break;
400 };
401 }
402
79a45b7d 403 if (options->format != 'f')
c906108c
SS
404 val_long = unpack_long (type, valaddr);
405
ef166cf4 406 /* If the value is a pointer, and pointers and addresses are not the
d0aee0c4 407 same, then at this point, the value's length (in target bytes) is
17a912b6 408 gdbarch_addr_bit/TARGET_CHAR_BIT, not TYPE_LENGTH (type). */
ef166cf4 409 if (TYPE_CODE (type) == TYPE_CODE_PTR)
69feb676 410 len = gdbarch_addr_bit (gdbarch) / TARGET_CHAR_BIT;
ef166cf4 411
c906108c
SS
412 /* If we are printing it as unsigned, truncate it in case it is actually
413 a negative signed value (e.g. "print/u (short)-1" should print 65535
414 (if shorts are 16 bits) instead of 4294967295). */
1fac167a 415 if (options->format != 'd' || TYPE_UNSIGNED (type))
c906108c
SS
416 {
417 if (len < sizeof (LONGEST))
418 val_long &= ((LONGEST) 1 << HOST_CHAR_BIT * len) - 1;
419 }
420
79a45b7d 421 switch (options->format)
c906108c
SS
422 {
423 case 'x':
424 if (!size)
425 {
675dcf4f 426 /* No size specified, like in print. Print varying # of digits. */
c906108c
SS
427 print_longest (stream, 'x', 1, val_long);
428 }
429 else
430 switch (size)
431 {
432 case 'b':
433 case 'h':
434 case 'w':
435 case 'g':
436 print_longest (stream, size, 1, val_long);
437 break;
438 default:
8a3fe4f8 439 error (_("Undefined output size \"%c\"."), size);
c906108c
SS
440 }
441 break;
442
443 case 'd':
444 print_longest (stream, 'd', 1, val_long);
445 break;
446
447 case 'u':
448 print_longest (stream, 'u', 0, val_long);
449 break;
450
451 case 'o':
452 if (val_long)
453 print_longest (stream, 'o', 1, val_long);
454 else
455 fprintf_filtered (stream, "0");
456 break;
457
458 case 'a':
593de6a6 459 {
593de6a6 460 CORE_ADDR addr = unpack_pointer (type, valaddr);
ad3bbd48 461
5af949e3 462 print_address (gdbarch, addr, stream);
593de6a6 463 }
c906108c
SS
464 break;
465
466 case 'c':
79a45b7d
TT
467 {
468 struct value_print_options opts = *options;
69feb676 469
ad3bbd48 470 opts.format = 0;
79a45b7d 471 if (TYPE_UNSIGNED (type))
69feb676
UW
472 type = builtin_type (gdbarch)->builtin_true_unsigned_char;
473 else
474 type = builtin_type (gdbarch)->builtin_true_char;
475
476 value_print (value_from_longest (type, val_long), stream, &opts);
79a45b7d 477 }
c906108c
SS
478 break;
479
480 case 'f':
50810684 481 type = float_type_from_length (type);
c906108c
SS
482 print_floating (valaddr, type, stream);
483 break;
484
485 case 0:
675dcf4f
MK
486 internal_error (__FILE__, __LINE__,
487 _("failed internal consistency check"));
c906108c
SS
488
489 case 't':
490 /* Binary; 't' stands for "two". */
491 {
c5aa993b
JM
492 char bits[8 * (sizeof val_long) + 1];
493 char buf[8 * (sizeof val_long) + 32];
c906108c
SS
494 char *cp = bits;
495 int width;
496
c5aa993b
JM
497 if (!size)
498 width = 8 * (sizeof val_long);
499 else
500 switch (size)
c906108c
SS
501 {
502 case 'b':
503 width = 8;
504 break;
505 case 'h':
506 width = 16;
507 break;
508 case 'w':
509 width = 32;
510 break;
511 case 'g':
512 width = 64;
513 break;
514 default:
8a3fe4f8 515 error (_("Undefined output size \"%c\"."), size);
c906108c
SS
516 }
517
c5aa993b
JM
518 bits[width] = '\0';
519 while (width-- > 0)
520 {
521 bits[width] = (val_long & 1) ? '1' : '0';
522 val_long >>= 1;
523 }
c906108c
SS
524 if (!size)
525 {
526 while (*cp && *cp == '0')
527 cp++;
528 if (*cp == '\0')
529 cp--;
530 }
daac021a 531 strncpy (buf, cp, sizeof (bits));
306d9ac5 532 fputs_filtered (buf, stream);
c906108c
SS
533 }
534 break;
535
536 default:
79a45b7d 537 error (_("Undefined output format \"%c\"."), options->format);
c906108c
SS
538 }
539}
540
541/* Specify default address for `x' command.
675dcf4f 542 The `info lines' command uses this. */
c906108c
SS
543
544void
8b9b9e1a 545set_next_address (struct gdbarch *gdbarch, CORE_ADDR addr)
c906108c 546{
8b9b9e1a
UW
547 struct type *ptr_type = builtin_type (gdbarch)->builtin_data_ptr;
548
5d3729b5 549 next_gdbarch = gdbarch;
c906108c
SS
550 next_address = addr;
551
552 /* Make address available to the user as $_. */
553 set_internalvar (lookup_internalvar ("_"),
8b9b9e1a 554 value_from_pointer (ptr_type, addr));
c906108c
SS
555}
556
557/* Optionally print address ADDR symbolically as <SYMBOL+OFFSET> on STREAM,
558 after LEADIN. Print nothing if no symbolic name is found nearby.
559 Optionally also print source file and line number, if available.
560 DO_DEMANGLE controls whether to print a symbol in its native "raw" form,
561 or to interpret it as a possible C++ name and convert it back to source
562 form. However note that DO_DEMANGLE can be overridden by the specific
9cb709b6
TT
563 settings of the demangle and asm_demangle variables. Returns
564 non-zero if anything was printed; zero otherwise. */
c906108c 565
9cb709b6 566int
22e722e1
DJ
567print_address_symbolic (struct gdbarch *gdbarch, CORE_ADDR addr,
568 struct ui_file *stream,
675dcf4f 569 int do_demangle, char *leadin)
dfcd3bfb
JM
570{
571 char *name = NULL;
572 char *filename = NULL;
573 int unmapped = 0;
574 int offset = 0;
575 int line = 0;
576
675dcf4f 577 /* Throw away both name and filename. */
2f9429ae
AC
578 struct cleanup *cleanup_chain = make_cleanup (free_current_contents, &name);
579 make_cleanup (free_current_contents, &filename);
dfcd3bfb 580
22e722e1 581 if (build_address_symbolic (gdbarch, addr, do_demangle, &name, &offset,
675dcf4f 582 &filename, &line, &unmapped))
2f9429ae
AC
583 {
584 do_cleanups (cleanup_chain);
9cb709b6 585 return 0;
2f9429ae 586 }
dfcd3bfb
JM
587
588 fputs_filtered (leadin, stream);
589 if (unmapped)
590 fputs_filtered ("<*", stream);
591 else
592 fputs_filtered ("<", stream);
593 fputs_filtered (name, stream);
594 if (offset != 0)
595 fprintf_filtered (stream, "+%u", (unsigned int) offset);
596
597 /* Append source filename and line number if desired. Give specific
598 line # of this addr, if we have it; else line # of the nearest symbol. */
599 if (print_symbol_filename && filename != NULL)
600 {
601 if (line != -1)
602 fprintf_filtered (stream, " at %s:%d", filename, line);
603 else
604 fprintf_filtered (stream, " in %s", filename);
605 }
606 if (unmapped)
607 fputs_filtered ("*>", stream);
608 else
609 fputs_filtered (">", stream);
610
611 do_cleanups (cleanup_chain);
9cb709b6 612 return 1;
dfcd3bfb
JM
613}
614
615/* Given an address ADDR return all the elements needed to print the
0df8b418 616 address in a symbolic form. NAME can be mangled or not depending
dfcd3bfb 617 on DO_DEMANGLE (and also on the asm_demangle global variable,
0df8b418
MS
618 manipulated via ''set print asm-demangle''). Return 0 in case of
619 success, when all the info in the OUT paramters is valid. Return 1
620 otherwise. */
dfcd3bfb 621int
22e722e1
DJ
622build_address_symbolic (struct gdbarch *gdbarch,
623 CORE_ADDR addr, /* IN */
dfcd3bfb
JM
624 int do_demangle, /* IN */
625 char **name, /* OUT */
626 int *offset, /* OUT */
627 char **filename, /* OUT */
628 int *line, /* OUT */
629 int *unmapped) /* OUT */
c906108c
SS
630{
631 struct minimal_symbol *msymbol;
632 struct symbol *symbol;
c906108c 633 CORE_ADDR name_location = 0;
714835d5 634 struct obj_section *section = NULL;
0d5cff50 635 const char *name_temp = "";
dfcd3bfb 636
89c83b10 637 /* Let's say it is mapped (not unmapped). */
dfcd3bfb 638 *unmapped = 0;
c906108c 639
dfcd3bfb 640 /* Determine if the address is in an overlay, and whether it is
675dcf4f 641 mapped. */
c906108c
SS
642 if (overlay_debugging)
643 {
644 section = find_pc_overlay (addr);
645 if (pc_in_unmapped_range (addr, section))
646 {
dfcd3bfb 647 *unmapped = 1;
c906108c
SS
648 addr = overlay_mapped_address (addr, section);
649 }
650 }
651
c906108c
SS
652 /* First try to find the address in the symbol table, then
653 in the minsyms. Take the closest one. */
654
655 /* This is defective in the sense that it only finds text symbols. So
656 really this is kind of pointless--we should make sure that the
657 minimal symbols have everything we need (by changing that we could
658 save some memory, but for many debug format--ELF/DWARF or
659 anything/stabs--it would be inconvenient to eliminate those minimal
660 symbols anyway). */
661 msymbol = lookup_minimal_symbol_by_pc_section (addr, section);
662 symbol = find_pc_sect_function (addr, section);
663
664 if (symbol)
665 {
22e722e1
DJ
666 /* If this is a function (i.e. a code address), strip out any
667 non-address bits. For instance, display a pointer to the
668 first instruction of a Thumb function as <function>; the
669 second instruction will be <function+2>, even though the
670 pointer is <function+3>. This matches the ISA behavior. */
671 addr = gdbarch_addr_bits_remove (gdbarch, addr);
672
c906108c 673 name_location = BLOCK_START (SYMBOL_BLOCK_VALUE (symbol));
406fc7fb 674 if (do_demangle || asm_demangle)
de5ad195 675 name_temp = SYMBOL_PRINT_NAME (symbol);
c906108c 676 else
3567439c 677 name_temp = SYMBOL_LINKAGE_NAME (symbol);
c906108c
SS
678 }
679
9cb709b6 680 if (msymbol != NULL
d9eaeb59 681 && MSYMBOL_HAS_SIZE (msymbol)
9cb709b6
TT
682 && MSYMBOL_SIZE (msymbol) == 0
683 && MSYMBOL_TYPE (msymbol) != mst_text
684 && MSYMBOL_TYPE (msymbol) != mst_text_gnu_ifunc
685 && MSYMBOL_TYPE (msymbol) != mst_file_text)
686 msymbol = NULL;
687
c906108c
SS
688 if (msymbol != NULL)
689 {
690 if (SYMBOL_VALUE_ADDRESS (msymbol) > name_location || symbol == NULL)
691 {
692 /* The msymbol is closer to the address than the symbol;
693 use the msymbol instead. */
694 symbol = 0;
c906108c 695 name_location = SYMBOL_VALUE_ADDRESS (msymbol);
406fc7fb 696 if (do_demangle || asm_demangle)
de5ad195 697 name_temp = SYMBOL_PRINT_NAME (msymbol);
c906108c 698 else
3567439c 699 name_temp = SYMBOL_LINKAGE_NAME (msymbol);
c906108c
SS
700 }
701 }
702 if (symbol == NULL && msymbol == NULL)
dfcd3bfb 703 return 1;
c906108c 704
c906108c
SS
705 /* If the nearest symbol is too far away, don't print anything symbolic. */
706
707 /* For when CORE_ADDR is larger than unsigned int, we do math in
708 CORE_ADDR. But when we detect unsigned wraparound in the
709 CORE_ADDR math, we ignore this test and print the offset,
710 because addr+max_symbolic_offset has wrapped through the end
711 of the address space back to the beginning, giving bogus comparison. */
712 if (addr > name_location + max_symbolic_offset
713 && name_location + max_symbolic_offset > name_location)
dfcd3bfb 714 return 1;
c906108c 715
dfcd3bfb
JM
716 *offset = addr - name_location;
717
718 *name = xstrdup (name_temp);
c906108c 719
c906108c
SS
720 if (print_symbol_filename)
721 {
722 struct symtab_and_line sal;
723
724 sal = find_pc_sect_line (addr, section, 0);
725
726 if (sal.symtab)
dfcd3bfb 727 {
05cba821 728 *filename = xstrdup (symtab_to_filename_for_display (sal.symtab));
dfcd3bfb
JM
729 *line = sal.line;
730 }
c906108c 731 }
dfcd3bfb 732 return 0;
c906108c
SS
733}
734
c906108c
SS
735
736/* Print address ADDR symbolically on STREAM.
737 First print it as a number. Then perhaps print
738 <SYMBOL + OFFSET> after the number. */
739
740void
5af949e3
UW
741print_address (struct gdbarch *gdbarch,
742 CORE_ADDR addr, struct ui_file *stream)
c906108c 743{
5af949e3 744 fputs_filtered (paddress (gdbarch, addr), stream);
22e722e1 745 print_address_symbolic (gdbarch, addr, stream, asm_demangle, " ");
c906108c
SS
746}
747
2b28d209
PP
748/* Return a prefix for instruction address:
749 "=> " for current instruction, else " ". */
750
751const char *
752pc_prefix (CORE_ADDR addr)
753{
754 if (has_stack_frames ())
755 {
756 struct frame_info *frame;
757 CORE_ADDR pc;
758
759 frame = get_selected_frame (NULL);
ce406537 760 if (get_frame_pc_if_available (frame, &pc) && pc == addr)
2b28d209
PP
761 return "=> ";
762 }
763 return " ";
764}
765
c906108c
SS
766/* Print address ADDR symbolically on STREAM. Parameter DEMANGLE
767 controls whether to print the symbolic name "raw" or demangled.
9cb709b6 768 Return non-zero if anything was printed; zero otherwise. */
c906108c 769
9cb709b6 770int
edf0c1b7
TT
771print_address_demangle (const struct value_print_options *opts,
772 struct gdbarch *gdbarch, CORE_ADDR addr,
5af949e3 773 struct ui_file *stream, int do_demangle)
c906108c 774{
1d51a733 775 if (opts->addressprint)
c906108c 776 {
5af949e3 777 fputs_filtered (paddress (gdbarch, addr), stream);
22e722e1 778 print_address_symbolic (gdbarch, addr, stream, do_demangle, " ");
c906108c
SS
779 }
780 else
781 {
9cb709b6 782 return print_address_symbolic (gdbarch, addr, stream, do_demangle, "");
c906108c 783 }
9cb709b6 784 return 1;
c906108c
SS
785}
786\f
787
c906108c
SS
788/* Examine data at address ADDR in format FMT.
789 Fetch it from memory and print on gdb_stdout. */
790
791static void
5d3729b5 792do_examine (struct format_data fmt, struct gdbarch *gdbarch, CORE_ADDR addr)
c906108c 793{
52f0bd74
AC
794 char format = 0;
795 char size;
796 int count = 1;
c906108c 797 struct type *val_type = NULL;
52f0bd74
AC
798 int i;
799 int maxelts;
79a45b7d 800 struct value_print_options opts;
c906108c
SS
801
802 format = fmt.format;
803 size = fmt.size;
804 count = fmt.count;
5d3729b5 805 next_gdbarch = gdbarch;
c906108c 806 next_address = addr;
c906108c 807
9a22f0d0
PM
808 /* Instruction format implies fetch single bytes
809 regardless of the specified size.
810 The case of strings is handled in decode_format, only explicit
811 size operator are not changed to 'b'. */
812 if (format == 'i')
c906108c
SS
813 size = 'b';
814
5d3729b5
UW
815 if (size == 'a')
816 {
817 /* Pick the appropriate size for an address. */
818 if (gdbarch_ptr_bit (next_gdbarch) == 64)
819 size = 'g';
820 else if (gdbarch_ptr_bit (next_gdbarch) == 32)
821 size = 'w';
822 else if (gdbarch_ptr_bit (next_gdbarch) == 16)
823 size = 'h';
824 else
825 /* Bad value for gdbarch_ptr_bit. */
826 internal_error (__FILE__, __LINE__,
827 _("failed internal consistency check"));
828 }
829
830 if (size == 'b')
df4df182 831 val_type = builtin_type (next_gdbarch)->builtin_int8;
c906108c 832 else if (size == 'h')
df4df182 833 val_type = builtin_type (next_gdbarch)->builtin_int16;
c906108c 834 else if (size == 'w')
df4df182 835 val_type = builtin_type (next_gdbarch)->builtin_int32;
c906108c 836 else if (size == 'g')
df4df182 837 val_type = builtin_type (next_gdbarch)->builtin_int64;
c906108c 838
9a22f0d0
PM
839 if (format == 's')
840 {
841 struct type *char_type = NULL;
ad3bbd48 842
9a22f0d0
PM
843 /* Search for "char16_t" or "char32_t" types or fall back to 8-bit char
844 if type is not found. */
845 if (size == 'h')
846 char_type = builtin_type (next_gdbarch)->builtin_char16;
847 else if (size == 'w')
848 char_type = builtin_type (next_gdbarch)->builtin_char32;
849 if (char_type)
850 val_type = char_type;
851 else
852 {
853 if (size != '\0' && size != 'b')
0df8b418
MS
854 warning (_("Unable to display strings with "
855 "size '%c', using 'b' instead."), size);
9a22f0d0
PM
856 size = 'b';
857 val_type = builtin_type (next_gdbarch)->builtin_int8;
858 }
859 }
860
c906108c
SS
861 maxelts = 8;
862 if (size == 'w')
863 maxelts = 4;
864 if (size == 'g')
865 maxelts = 2;
866 if (format == 's' || format == 'i')
867 maxelts = 1;
868
79a45b7d
TT
869 get_formatted_print_options (&opts, format);
870
c906108c
SS
871 /* Print as many objects as specified in COUNT, at most maxelts per line,
872 with the address of the next one at the start of each line. */
873
874 while (count > 0)
875 {
876 QUIT;
2b28d209
PP
877 if (format == 'i')
878 fputs_filtered (pc_prefix (next_address), gdb_stdout);
5af949e3 879 print_address (next_gdbarch, next_address, gdb_stdout);
c906108c
SS
880 printf_filtered (":");
881 for (i = maxelts;
882 i > 0 && count > 0;
883 i--, count--)
884 {
885 printf_filtered ("\t");
886 /* Note that print_formatted sets next_address for the next
887 object. */
888 last_examine_address = next_address;
889
890 if (last_examine_value)
891 value_free (last_examine_value);
892
893 /* The value to be displayed is not fetched greedily.
5d51a2db
MR
894 Instead, to avoid the possibility of a fetched value not
895 being used, its retrieval is delayed until the print code
c5aa993b
JM
896 uses it. When examining an instruction stream, the
897 disassembler will perform its own memory fetch using just
898 the address stored in LAST_EXAMINE_VALUE. FIXME: Should
899 the disassembler be modified so that LAST_EXAMINE_VALUE
900 is left with the byte sequence from the last complete
0df8b418 901 instruction fetched from memory? */
00a4c844 902 last_examine_value = value_at_lazy (val_type, next_address);
c906108c
SS
903
904 if (last_examine_value)
905 release_value (last_examine_value);
906
79a45b7d 907 print_formatted (last_examine_value, size, &opts, gdb_stdout);
a4642986
MR
908
909 /* Display any branch delay slots following the final insn. */
910 if (format == 'i' && count == 1)
911 count += branch_delay_insns;
c906108c
SS
912 }
913 printf_filtered ("\n");
914 gdb_flush (gdb_stdout);
915 }
916}
917\f
918static void
fba45db2 919validate_format (struct format_data fmt, char *cmdname)
c906108c
SS
920{
921 if (fmt.size != 0)
8a3fe4f8 922 error (_("Size letters are meaningless in \"%s\" command."), cmdname);
c906108c 923 if (fmt.count != 1)
8a3fe4f8 924 error (_("Item count other than 1 is meaningless in \"%s\" command."),
c906108c 925 cmdname);
ea37ba09 926 if (fmt.format == 'i')
8a3fe4f8 927 error (_("Format letter \"%c\" is meaningless in \"%s\" command."),
c906108c
SS
928 fmt.format, cmdname);
929}
930
675dcf4f 931/* Evaluate string EXP as an expression in the current language and
c5aa993b 932 print the resulting value. EXP may contain a format specifier as the
675dcf4f 933 first argument ("/x myvar" for example, to print myvar in hex). */
c906108c
SS
934
935static void
e93a8774 936print_command_1 (char *exp, int voidprint)
c906108c
SS
937{
938 struct expression *expr;
52f0bd74
AC
939 struct cleanup *old_chain = 0;
940 char format = 0;
3d6d86c6 941 struct value *val;
c906108c
SS
942 struct format_data fmt;
943 int cleanup = 0;
944
c906108c
SS
945 if (exp && *exp == '/')
946 {
947 exp++;
948 fmt = decode_format (&exp, last_format, 0);
949 validate_format (fmt, "print");
950 last_format = format = fmt.format;
951 }
952 else
953 {
954 fmt.count = 1;
955 fmt.format = 0;
956 fmt.size = 0;
a6bac58e 957 fmt.raw = 0;
c906108c
SS
958 }
959
960 if (exp && *exp)
961 {
c906108c 962 expr = parse_expression (exp);
c13c43fd 963 old_chain = make_cleanup (free_current_contents, &expr);
c906108c
SS
964 cleanup = 1;
965 val = evaluate_expression (expr);
c906108c
SS
966 }
967 else
968 val = access_value_history (0);
969
df407dfe
AC
970 if (voidprint || (val && value_type (val) &&
971 TYPE_CODE (value_type (val)) != TYPE_CODE_VOID))
c906108c 972 {
79a45b7d 973 struct value_print_options opts;
c906108c
SS
974 int histindex = record_latest_value (val);
975
976 if (histindex >= 0)
df407dfe 977 annotate_value_history_begin (histindex, value_type (val));
c906108c 978 else
df407dfe 979 annotate_value_begin (value_type (val));
c906108c 980
e93a8774 981 if (histindex >= 0)
c5aa993b 982 printf_filtered ("$%d = ", histindex);
c906108c
SS
983
984 if (histindex >= 0)
985 annotate_value_history_value ();
986
79a45b7d 987 get_formatted_print_options (&opts, format);
a6bac58e 988 opts.raw = fmt.raw;
79a45b7d
TT
989
990 print_formatted (val, fmt.size, &opts, gdb_stdout);
c906108c
SS
991 printf_filtered ("\n");
992
993 if (histindex >= 0)
994 annotate_value_history_end ();
995 else
996 annotate_value_end ();
c906108c
SS
997 }
998
999 if (cleanup)
1000 do_cleanups (old_chain);
c906108c
SS
1001}
1002
c906108c 1003static void
fba45db2 1004print_command (char *exp, int from_tty)
c906108c 1005{
e93a8774 1006 print_command_1 (exp, 1);
c906108c
SS
1007}
1008
675dcf4f 1009/* Same as print, except it doesn't print void results. */
c906108c 1010static void
fba45db2 1011call_command (char *exp, int from_tty)
c906108c 1012{
e93a8774 1013 print_command_1 (exp, 0);
c906108c
SS
1014}
1015
c906108c 1016void
fba45db2 1017output_command (char *exp, int from_tty)
c906108c
SS
1018{
1019 struct expression *expr;
52f0bd74
AC
1020 struct cleanup *old_chain;
1021 char format = 0;
3d6d86c6 1022 struct value *val;
c906108c 1023 struct format_data fmt;
79a45b7d 1024 struct value_print_options opts;
c906108c 1025
777ea8f1 1026 fmt.size = 0;
a6bac58e 1027 fmt.raw = 0;
777ea8f1 1028
c906108c
SS
1029 if (exp && *exp == '/')
1030 {
1031 exp++;
1032 fmt = decode_format (&exp, 0, 0);
1033 validate_format (fmt, "output");
1034 format = fmt.format;
1035 }
1036
1037 expr = parse_expression (exp);
c13c43fd 1038 old_chain = make_cleanup (free_current_contents, &expr);
c906108c
SS
1039
1040 val = evaluate_expression (expr);
1041
df407dfe 1042 annotate_value_begin (value_type (val));
c906108c 1043
79a45b7d 1044 get_formatted_print_options (&opts, format);
a6bac58e 1045 opts.raw = fmt.raw;
79a45b7d 1046 print_formatted (val, fmt.size, &opts, gdb_stdout);
c906108c
SS
1047
1048 annotate_value_end ();
1049
2acceee2
JM
1050 wrap_here ("");
1051 gdb_flush (gdb_stdout);
1052
c906108c
SS
1053 do_cleanups (old_chain);
1054}
1055
c906108c 1056static void
fba45db2 1057set_command (char *exp, int from_tty)
c906108c
SS
1058{
1059 struct expression *expr = parse_expression (exp);
52f0bd74 1060 struct cleanup *old_chain =
c13c43fd 1061 make_cleanup (free_current_contents, &expr);
ad3bbd48 1062
0ece64fd
TG
1063 if (expr->nelts >= 1)
1064 switch (expr->elts[0].opcode)
1065 {
1066 case UNOP_PREINCREMENT:
1067 case UNOP_POSTINCREMENT:
1068 case UNOP_PREDECREMENT:
1069 case UNOP_POSTDECREMENT:
1070 case BINOP_ASSIGN:
1071 case BINOP_ASSIGN_MODIFY:
1072 case BINOP_COMMA:
1073 break;
1074 default:
1075 warning
1076 (_("Expression is not an assignment (and might have no effect)"));
1077 }
52b3699b 1078
c906108c
SS
1079 evaluate_expression (expr);
1080 do_cleanups (old_chain);
1081}
1082
c906108c 1083static void
fba45db2 1084sym_info (char *arg, int from_tty)
c906108c
SS
1085{
1086 struct minimal_symbol *msymbol;
c5aa993b
JM
1087 struct objfile *objfile;
1088 struct obj_section *osect;
c5aa993b
JM
1089 CORE_ADDR addr, sect_addr;
1090 int matches = 0;
1091 unsigned int offset;
c906108c
SS
1092
1093 if (!arg)
e2e0b3e5 1094 error_no_arg (_("address"));
c906108c
SS
1095
1096 addr = parse_and_eval_address (arg);
1097 ALL_OBJSECTIONS (objfile, osect)
c5aa993b 1098 {
94277a38
DJ
1099 /* Only process each object file once, even if there's a separate
1100 debug file. */
1101 if (objfile->separate_debug_objfile_backlink)
1102 continue;
1103
714835d5 1104 sect_addr = overlay_mapped_address (addr, osect);
c906108c 1105
f1f6aadf
PA
1106 if (obj_section_addr (osect) <= sect_addr
1107 && sect_addr < obj_section_endaddr (osect)
714835d5 1108 && (msymbol = lookup_minimal_symbol_by_pc_section (sect_addr, osect)))
c5aa993b 1109 {
c14c28ba 1110 const char *obj_name, *mapped, *sec_name, *msym_name;
e2fd701e
DE
1111 char *loc_string;
1112 struct cleanup *old_chain;
c14c28ba 1113
c5aa993b
JM
1114 matches = 1;
1115 offset = sect_addr - SYMBOL_VALUE_ADDRESS (msymbol);
c14c28ba
PP
1116 mapped = section_is_mapped (osect) ? _("mapped") : _("unmapped");
1117 sec_name = osect->the_bfd_section->name;
1118 msym_name = SYMBOL_PRINT_NAME (msymbol);
1119
e2fd701e
DE
1120 /* Don't print the offset if it is zero.
1121 We assume there's no need to handle i18n of "sym + offset". */
1122 if (offset)
549ba0f8 1123 loc_string = xstrprintf ("%s + %u", msym_name, offset);
e2fd701e 1124 else
549ba0f8 1125 loc_string = xstrprintf ("%s", msym_name);
e2fd701e
DE
1126
1127 /* Use a cleanup to free loc_string in case the user quits
1128 a pagination request inside printf_filtered. */
1129 old_chain = make_cleanup (xfree, loc_string);
1130
c14c28ba
PP
1131 gdb_assert (osect->objfile && osect->objfile->name);
1132 obj_name = osect->objfile->name;
1133
1134 if (MULTI_OBJFILE_P ())
1135 if (pc_in_unmapped_range (addr, osect))
1136 if (section_is_overlay (osect))
e2fd701e 1137 printf_filtered (_("%s in load address range of "
c14c28ba 1138 "%s overlay section %s of %s\n"),
e2fd701e 1139 loc_string, mapped, sec_name, obj_name);
c14c28ba 1140 else
e2fd701e 1141 printf_filtered (_("%s in load address range of "
c14c28ba 1142 "section %s of %s\n"),
e2fd701e 1143 loc_string, sec_name, obj_name);
c14c28ba
PP
1144 else
1145 if (section_is_overlay (osect))
e2fd701e
DE
1146 printf_filtered (_("%s in %s overlay section %s of %s\n"),
1147 loc_string, mapped, sec_name, obj_name);
c14c28ba 1148 else
e2fd701e
DE
1149 printf_filtered (_("%s in section %s of %s\n"),
1150 loc_string, sec_name, obj_name);
c5aa993b 1151 else
c14c28ba
PP
1152 if (pc_in_unmapped_range (addr, osect))
1153 if (section_is_overlay (osect))
e2fd701e 1154 printf_filtered (_("%s in load address range of %s overlay "
c14c28ba 1155 "section %s\n"),
e2fd701e 1156 loc_string, mapped, sec_name);
c14c28ba 1157 else
e2fd701e
DE
1158 printf_filtered (_("%s in load address range of section %s\n"),
1159 loc_string, sec_name);
c14c28ba
PP
1160 else
1161 if (section_is_overlay (osect))
e2fd701e
DE
1162 printf_filtered (_("%s in %s overlay section %s\n"),
1163 loc_string, mapped, sec_name);
c14c28ba 1164 else
e2fd701e
DE
1165 printf_filtered (_("%s in section %s\n"),
1166 loc_string, sec_name);
1167
1168 do_cleanups (old_chain);
c5aa993b
JM
1169 }
1170 }
c906108c 1171 if (matches == 0)
a3f17187 1172 printf_filtered (_("No symbol matches %s.\n"), arg);
c906108c
SS
1173}
1174
c906108c 1175static void
fba45db2 1176address_info (char *exp, int from_tty)
c906108c 1177{
768a979c
UW
1178 struct gdbarch *gdbarch;
1179 int regno;
52f0bd74
AC
1180 struct symbol *sym;
1181 struct minimal_symbol *msymbol;
1182 long val;
714835d5 1183 struct obj_section *section;
08922a10 1184 CORE_ADDR load_addr, context_pc = 0;
1993b719 1185 struct field_of_this_result is_a_field_of_this;
c906108c
SS
1186
1187 if (exp == 0)
8a3fe4f8 1188 error (_("Argument required."));
c906108c 1189
08922a10 1190 sym = lookup_symbol (exp, get_selected_block (&context_pc), VAR_DOMAIN,
2570f2b7 1191 &is_a_field_of_this);
c906108c
SS
1192 if (sym == NULL)
1193 {
1993b719 1194 if (is_a_field_of_this.type != NULL)
c906108c
SS
1195 {
1196 printf_filtered ("Symbol \"");
1197 fprintf_symbol_filtered (gdb_stdout, exp,
1198 current_language->la_language, DMGL_ANSI);
e2b23ee9
AF
1199 printf_filtered ("\" is a field of the local class variable ");
1200 if (current_language->la_language == language_objc)
2625d86c 1201 printf_filtered ("`self'\n"); /* ObjC equivalent of "this" */
e2b23ee9 1202 else
2625d86c 1203 printf_filtered ("`this'\n");
c906108c
SS
1204 return;
1205 }
1206
1207 msymbol = lookup_minimal_symbol (exp, NULL, NULL);
1208
1209 if (msymbol != NULL)
1210 {
5af949e3 1211 gdbarch = get_objfile_arch (msymbol_objfile (msymbol));
c906108c
SS
1212 load_addr = SYMBOL_VALUE_ADDRESS (msymbol);
1213
1214 printf_filtered ("Symbol \"");
1215 fprintf_symbol_filtered (gdb_stdout, exp,
1216 current_language->la_language, DMGL_ANSI);
1217 printf_filtered ("\" is at ");
5af949e3 1218 fputs_filtered (paddress (gdbarch, load_addr), gdb_stdout);
c906108c 1219 printf_filtered (" in a file compiled without debugging");
714835d5 1220 section = SYMBOL_OBJ_SECTION (msymbol);
c906108c
SS
1221 if (section_is_overlay (section))
1222 {
1223 load_addr = overlay_unmapped_address (load_addr, section);
1224 printf_filtered (",\n -- loaded at ");
5af949e3 1225 fputs_filtered (paddress (gdbarch, load_addr), gdb_stdout);
714835d5
UW
1226 printf_filtered (" in overlay section %s",
1227 section->the_bfd_section->name);
c906108c
SS
1228 }
1229 printf_filtered (".\n");
1230 }
1231 else
8a3fe4f8 1232 error (_("No symbol \"%s\" in current context."), exp);
c906108c
SS
1233 return;
1234 }
1235
1236 printf_filtered ("Symbol \"");
3567439c 1237 fprintf_symbol_filtered (gdb_stdout, SYMBOL_PRINT_NAME (sym),
c906108c
SS
1238 current_language->la_language, DMGL_ANSI);
1239 printf_filtered ("\" is ");
c5aa993b 1240 val = SYMBOL_VALUE (sym);
714835d5 1241 section = SYMBOL_OBJ_SECTION (sym);
768a979c 1242 gdbarch = get_objfile_arch (SYMBOL_SYMTAB (sym)->objfile);
c906108c
SS
1243
1244 switch (SYMBOL_CLASS (sym))
1245 {
1246 case LOC_CONST:
1247 case LOC_CONST_BYTES:
1248 printf_filtered ("constant");
1249 break;
1250
1251 case LOC_LABEL:
1252 printf_filtered ("a label at address ");
5af949e3
UW
1253 load_addr = SYMBOL_VALUE_ADDRESS (sym);
1254 fputs_filtered (paddress (gdbarch, load_addr), gdb_stdout);
c906108c
SS
1255 if (section_is_overlay (section))
1256 {
1257 load_addr = overlay_unmapped_address (load_addr, section);
1258 printf_filtered (",\n -- loaded at ");
5af949e3 1259 fputs_filtered (paddress (gdbarch, load_addr), gdb_stdout);
714835d5
UW
1260 printf_filtered (" in overlay section %s",
1261 section->the_bfd_section->name);
c906108c
SS
1262 }
1263 break;
1264
4c2df51b 1265 case LOC_COMPUTED:
a67af2b9 1266 /* FIXME: cagney/2004-01-26: It should be possible to
768a979c 1267 unconditionally call the SYMBOL_COMPUTED_OPS method when available.
d3efc286 1268 Unfortunately DWARF 2 stores the frame-base (instead of the
a67af2b9
AC
1269 function) location in a function's symbol. Oops! For the
1270 moment enable this when/where applicable. */
3e43a32a
MS
1271 SYMBOL_COMPUTED_OPS (sym)->describe_location (sym, context_pc,
1272 gdb_stdout);
4c2df51b
DJ
1273 break;
1274
c906108c 1275 case LOC_REGISTER:
768a979c
UW
1276 /* GDBARCH is the architecture associated with the objfile the symbol
1277 is defined in; the target architecture may be different, and may
1278 provide additional registers. However, we do not know the target
1279 architecture at this point. We assume the objfile architecture
1280 will contain all the standard registers that occur in debug info
1281 in that objfile. */
1282 regno = SYMBOL_REGISTER_OPS (sym)->register_number (sym, gdbarch);
1283
2a2d4dc3
AS
1284 if (SYMBOL_IS_ARGUMENT (sym))
1285 printf_filtered (_("an argument in register %s"),
768a979c 1286 gdbarch_register_name (gdbarch, regno));
2a2d4dc3
AS
1287 else
1288 printf_filtered (_("a variable in register %s"),
768a979c 1289 gdbarch_register_name (gdbarch, regno));
c906108c
SS
1290 break;
1291
1292 case LOC_STATIC:
a3f17187 1293 printf_filtered (_("static storage at address "));
5af949e3
UW
1294 load_addr = SYMBOL_VALUE_ADDRESS (sym);
1295 fputs_filtered (paddress (gdbarch, load_addr), gdb_stdout);
c906108c
SS
1296 if (section_is_overlay (section))
1297 {
1298 load_addr = overlay_unmapped_address (load_addr, section);
a3f17187 1299 printf_filtered (_(",\n -- loaded at "));
5af949e3 1300 fputs_filtered (paddress (gdbarch, load_addr), gdb_stdout);
714835d5
UW
1301 printf_filtered (_(" in overlay section %s"),
1302 section->the_bfd_section->name);
c906108c
SS
1303 }
1304 break;
1305
c906108c 1306 case LOC_REGPARM_ADDR:
768a979c
UW
1307 /* Note comment at LOC_REGISTER. */
1308 regno = SYMBOL_REGISTER_OPS (sym)->register_number (sym, gdbarch);
675dcf4f 1309 printf_filtered (_("address of an argument in register %s"),
768a979c 1310 gdbarch_register_name (gdbarch, regno));
c906108c
SS
1311 break;
1312
1313 case LOC_ARG:
a3f17187 1314 printf_filtered (_("an argument at offset %ld"), val);
c906108c
SS
1315 break;
1316
c906108c 1317 case LOC_LOCAL:
a3f17187 1318 printf_filtered (_("a local variable at frame offset %ld"), val);
c906108c
SS
1319 break;
1320
1321 case LOC_REF_ARG:
a3f17187 1322 printf_filtered (_("a reference argument at offset %ld"), val);
c906108c
SS
1323 break;
1324
c906108c 1325 case LOC_TYPEDEF:
a3f17187 1326 printf_filtered (_("a typedef"));
c906108c
SS
1327 break;
1328
1329 case LOC_BLOCK:
a3f17187 1330 printf_filtered (_("a function at address "));
675dcf4f 1331 load_addr = BLOCK_START (SYMBOL_BLOCK_VALUE (sym));
5af949e3 1332 fputs_filtered (paddress (gdbarch, load_addr), gdb_stdout);
c906108c
SS
1333 if (section_is_overlay (section))
1334 {
1335 load_addr = overlay_unmapped_address (load_addr, section);
a3f17187 1336 printf_filtered (_(",\n -- loaded at "));
5af949e3 1337 fputs_filtered (paddress (gdbarch, load_addr), gdb_stdout);
714835d5
UW
1338 printf_filtered (_(" in overlay section %s"),
1339 section->the_bfd_section->name);
c906108c
SS
1340 }
1341 break;
1342
1343 case LOC_UNRESOLVED:
1344 {
1345 struct minimal_symbol *msym;
1346
3567439c 1347 msym = lookup_minimal_symbol (SYMBOL_LINKAGE_NAME (sym), NULL, NULL);
c906108c
SS
1348 if (msym == NULL)
1349 printf_filtered ("unresolved");
1350 else
1351 {
714835d5 1352 section = SYMBOL_OBJ_SECTION (msym);
675dcf4f 1353 load_addr = SYMBOL_VALUE_ADDRESS (msym);
e0740f77
JK
1354
1355 if (section
1356 && (section->the_bfd_section->flags & SEC_THREAD_LOCAL) != 0)
1357 printf_filtered (_("a thread-local variable at offset %s "
1358 "in the thread-local storage for `%s'"),
5af949e3
UW
1359 paddress (gdbarch, load_addr),
1360 section->objfile->name);
e0740f77 1361 else
c906108c 1362 {
e0740f77 1363 printf_filtered (_("static storage at address "));
5af949e3 1364 fputs_filtered (paddress (gdbarch, load_addr), gdb_stdout);
e0740f77
JK
1365 if (section_is_overlay (section))
1366 {
1367 load_addr = overlay_unmapped_address (load_addr, section);
1368 printf_filtered (_(",\n -- loaded at "));
5af949e3 1369 fputs_filtered (paddress (gdbarch, load_addr), gdb_stdout);
e0740f77
JK
1370 printf_filtered (_(" in overlay section %s"),
1371 section->the_bfd_section->name);
1372 }
c906108c
SS
1373 }
1374 }
1375 }
1376 break;
1377
c906108c 1378 case LOC_OPTIMIZED_OUT:
a3f17187 1379 printf_filtered (_("optimized out"));
c906108c 1380 break;
c5aa993b 1381
c906108c 1382 default:
a3f17187 1383 printf_filtered (_("of unknown (botched) type"));
c906108c
SS
1384 break;
1385 }
1386 printf_filtered (".\n");
1387}
1388\f
675dcf4f
MK
1389
1390static void
fba45db2 1391x_command (char *exp, int from_tty)
c906108c
SS
1392{
1393 struct expression *expr;
1394 struct format_data fmt;
1395 struct cleanup *old_chain;
1396 struct value *val;
1397
a6bac58e 1398 fmt.format = last_format ? last_format : 'x';
c906108c
SS
1399 fmt.size = last_size;
1400 fmt.count = 1;
a6bac58e 1401 fmt.raw = 0;
c906108c
SS
1402
1403 if (exp && *exp == '/')
1404 {
1405 exp++;
1406 fmt = decode_format (&exp, last_format, last_size);
1407 }
1408
1409 /* If we have an expression, evaluate it and use it as the address. */
1410
1411 if (exp != 0 && *exp != 0)
1412 {
1413 expr = parse_expression (exp);
675dcf4f
MK
1414 /* Cause expression not to be there any more if this command is
1415 repeated with Newline. But don't clobber a user-defined
1416 command's definition. */
c906108c
SS
1417 if (from_tty)
1418 *exp = 0;
c13c43fd 1419 old_chain = make_cleanup (free_current_contents, &expr);
c906108c 1420 val = evaluate_expression (expr);
df407dfe 1421 if (TYPE_CODE (value_type (val)) == TYPE_CODE_REF)
e1c34c5d 1422 val = coerce_ref (val);
c906108c 1423 /* In rvalue contexts, such as this, functions are coerced into
c5aa993b 1424 pointers to functions. This makes "x/i main" work. */
c0d8fd9a 1425 if (/* last_format == 'i' && */
df407dfe 1426 TYPE_CODE (value_type (val)) == TYPE_CODE_FUNC
c5aa993b 1427 && VALUE_LVAL (val) == lval_memory)
42ae5230 1428 next_address = value_address (val);
c906108c 1429 else
1aa20aa8 1430 next_address = value_as_address (val);
5d3729b5
UW
1431
1432 next_gdbarch = expr->gdbarch;
c906108c
SS
1433 do_cleanups (old_chain);
1434 }
1435
5d3729b5
UW
1436 if (!next_gdbarch)
1437 error_no_arg (_("starting display address"));
1438
1439 do_examine (fmt, next_gdbarch, next_address);
c906108c 1440
675dcf4f 1441 /* If the examine succeeds, we remember its size and format for next
9a22f0d0
PM
1442 time. Set last_size to 'b' for strings. */
1443 if (fmt.format == 's')
1444 last_size = 'b';
1445 else
1446 last_size = fmt.size;
c906108c
SS
1447 last_format = fmt.format;
1448
0df8b418 1449 /* Set a couple of internal variables if appropriate. */
c906108c
SS
1450 if (last_examine_value)
1451 {
1452 /* Make last address examined available to the user as $_. Use
c5aa993b 1453 the correct pointer type. */
4478b372 1454 struct type *pointer_type
df407dfe 1455 = lookup_pointer_type (value_type (last_examine_value));
c906108c 1456 set_internalvar (lookup_internalvar ("_"),
4478b372
JB
1457 value_from_pointer (pointer_type,
1458 last_examine_address));
c5aa993b 1459
675dcf4f
MK
1460 /* Make contents of last address examined available to the user
1461 as $__. If the last value has not been fetched from memory
1462 then don't fetch it now; instead mark it by voiding the $__
1463 variable. */
d69fe07e 1464 if (value_lazy (last_examine_value))
4fa62494 1465 clear_internalvar (lookup_internalvar ("__"));
c906108c
SS
1466 else
1467 set_internalvar (lookup_internalvar ("__"), last_examine_value);
1468 }
1469}
c906108c 1470\f
c5aa993b 1471
c906108c
SS
1472/* Add an expression to the auto-display chain.
1473 Specify the expression. */
1474
1475static void
fba45db2 1476display_command (char *exp, int from_tty)
c906108c
SS
1477{
1478 struct format_data fmt;
52f0bd74
AC
1479 struct expression *expr;
1480 struct display *new;
c906108c
SS
1481 int display_it = 1;
1482
1483#if defined(TUI)
021e7609
AC
1484 /* NOTE: cagney/2003-02-13 The `tui_active' was previously
1485 `tui_version'. */
fd33e6cb 1486 if (tui_active && exp != NULL && *exp == '$')
080ce8c0 1487 display_it = (tui_set_layout_for_display_command (exp) == TUI_FAILURE);
c906108c
SS
1488#endif
1489
1490 if (display_it)
1491 {
1492 if (exp == 0)
1493 {
1494 do_displays ();
1495 return;
1496 }
1497
1498 if (*exp == '/')
1499 {
1500 exp++;
1501 fmt = decode_format (&exp, 0, 0);
1502 if (fmt.size && fmt.format == 0)
1503 fmt.format = 'x';
1504 if (fmt.format == 'i' || fmt.format == 's')
1505 fmt.size = 'b';
1506 }
1507 else
1508 {
1509 fmt.format = 0;
1510 fmt.size = 0;
1511 fmt.count = 0;
a6bac58e 1512 fmt.raw = 0;
c906108c
SS
1513 }
1514
a3247a22 1515 innermost_block = NULL;
c906108c
SS
1516 expr = parse_expression (exp);
1517
1518 new = (struct display *) xmalloc (sizeof (struct display));
1519
fa8a61dc 1520 new->exp_string = xstrdup (exp);
c906108c
SS
1521 new->exp = expr;
1522 new->block = innermost_block;
6c95b8df 1523 new->pspace = current_program_space;
c906108c
SS
1524 new->next = display_chain;
1525 new->number = ++display_number;
1526 new->format = fmt;
b5de0fa7 1527 new->enabled_p = 1;
c906108c
SS
1528 display_chain = new;
1529
1530 if (from_tty && target_has_execution)
1531 do_one_display (new);
1532
1533 dont_repeat ();
1534 }
1535}
1536
1537static void
fba45db2 1538free_display (struct display *d)
c906108c 1539{
fa8a61dc 1540 xfree (d->exp_string);
b8c9b27d
KB
1541 xfree (d->exp);
1542 xfree (d);
c906108c
SS
1543}
1544
675dcf4f
MK
1545/* Clear out the display_chain. Done when new symtabs are loaded,
1546 since this invalidates the types stored in many expressions. */
c906108c
SS
1547
1548void
fba45db2 1549clear_displays (void)
c906108c 1550{
52f0bd74 1551 struct display *d;
c906108c
SS
1552
1553 while ((d = display_chain) != NULL)
1554 {
c906108c 1555 display_chain = d->next;
fa8a61dc 1556 free_display (d);
c906108c
SS
1557 }
1558}
1559
3c3fe74c 1560/* Delete the auto-display DISPLAY. */
c906108c
SS
1561
1562static void
3c3fe74c 1563delete_display (struct display *display)
c906108c 1564{
3c3fe74c 1565 struct display *d;
c906108c 1566
3c3fe74c 1567 gdb_assert (display != NULL);
c906108c 1568
3c3fe74c
PA
1569 if (display_chain == display)
1570 display_chain = display->next;
1571
1572 ALL_DISPLAYS (d)
1573 if (d->next == display)
c906108c 1574 {
3c3fe74c
PA
1575 d->next = display->next;
1576 break;
c906108c 1577 }
3c3fe74c
PA
1578
1579 free_display (display);
c906108c
SS
1580}
1581
c9174737
PA
1582/* Call FUNCTION on each of the displays whose numbers are given in
1583 ARGS. DATA is passed unmodified to FUNCTION. */
c906108c
SS
1584
1585static void
c9174737
PA
1586map_display_numbers (char *args,
1587 void (*function) (struct display *,
1588 void *),
1589 void *data)
c906108c 1590{
197f0a60 1591 struct get_number_or_range_state state;
c9174737 1592 int num;
c906108c 1593
c9174737
PA
1594 if (args == NULL)
1595 error_no_arg (_("one or more display numbers"));
c906108c 1596
197f0a60 1597 init_number_or_range (&state, args);
c9174737 1598
197f0a60 1599 while (!state.finished)
c906108c 1600 {
197f0a60 1601 char *p = state.string;
c906108c 1602
197f0a60 1603 num = get_number_or_range (&state);
3c3fe74c
PA
1604 if (num == 0)
1605 warning (_("bad display number at or near '%s'"), p);
1606 else
1607 {
c9174737 1608 struct display *d, *tmp;
c906108c 1609
c9174737 1610 ALL_DISPLAYS_SAFE (d, tmp)
3c3fe74c
PA
1611 if (d->number == num)
1612 break;
1613 if (d == NULL)
1614 printf_unfiltered (_("No display number %d.\n"), num);
1615 else
c9174737 1616 function (d, data);
3c3fe74c 1617 }
c906108c 1618 }
c9174737
PA
1619}
1620
1621/* Callback for map_display_numbers, that deletes a display. */
1622
1623static void
1624do_delete_display (struct display *d, void *data)
1625{
1626 delete_display (d);
1627}
1628
1629/* "undisplay" command. */
1630
1631static void
1632undisplay_command (char *args, int from_tty)
1633{
c9174737
PA
1634 if (args == NULL)
1635 {
1636 if (query (_("Delete all auto-display expressions? ")))
1637 clear_displays ();
1638 dont_repeat ();
1639 return;
1640 }
1641
1642 map_display_numbers (args, do_delete_display, NULL);
c906108c
SS
1643 dont_repeat ();
1644}
1645
1646/* Display a single auto-display.
1647 Do nothing if the display cannot be printed in the current context,
0df8b418 1648 or if the display is disabled. */
c906108c
SS
1649
1650static void
fba45db2 1651do_one_display (struct display *d)
c906108c 1652{
af6e93b2 1653 struct cleanup *old_chain;
c906108c
SS
1654 int within_current_scope;
1655
b5de0fa7 1656 if (d->enabled_p == 0)
c906108c
SS
1657 return;
1658
704e9165
UW
1659 /* The expression carries the architecture that was used at parse time.
1660 This is a problem if the expression depends on architecture features
1661 (e.g. register numbers), and the current architecture is now different.
1662 For example, a display statement like "display/i $pc" is expected to
1663 display the PC register of the current architecture, not the arch at
1664 the time the display command was given. Therefore, we re-parse the
1665 expression if the current architecture has changed. */
1666 if (d->exp != NULL && d->exp->gdbarch != get_current_arch ())
1667 {
1668 xfree (d->exp);
1669 d->exp = NULL;
1670 d->block = NULL;
1671 }
1672
a3247a22
PP
1673 if (d->exp == NULL)
1674 {
1675 volatile struct gdb_exception ex;
ad3bbd48 1676
a3247a22
PP
1677 TRY_CATCH (ex, RETURN_MASK_ALL)
1678 {
1679 innermost_block = NULL;
1680 d->exp = parse_expression (d->exp_string);
1681 d->block = innermost_block;
1682 }
1683 if (ex.reason < 0)
1684 {
1685 /* Can't re-parse the expression. Disable this display item. */
1686 d->enabled_p = 0;
1687 warning (_("Unable to display \"%s\": %s"),
1688 d->exp_string, ex.message);
1689 return;
1690 }
1691 }
1692
c906108c 1693 if (d->block)
6c95b8df
PA
1694 {
1695 if (d->pspace == current_program_space)
1696 within_current_scope = contained_in (get_selected_block (0), d->block);
1697 else
1698 within_current_scope = 0;
1699 }
c906108c
SS
1700 else
1701 within_current_scope = 1;
1702 if (!within_current_scope)
1703 return;
1704
9d8fa392 1705 old_chain = make_cleanup_restore_integer (&current_display_number);
c906108c
SS
1706 current_display_number = d->number;
1707
1708 annotate_display_begin ();
1709 printf_filtered ("%d", d->number);
1710 annotate_display_number_end ();
1711 printf_filtered (": ");
1712 if (d->format.size)
1713 {
9d8fa392 1714 volatile struct gdb_exception ex;
c906108c
SS
1715
1716 annotate_display_format ();
1717
1718 printf_filtered ("x/");
1719 if (d->format.count != 1)
1720 printf_filtered ("%d", d->format.count);
1721 printf_filtered ("%c", d->format.format);
1722 if (d->format.format != 'i' && d->format.format != 's')
1723 printf_filtered ("%c", d->format.size);
1724 printf_filtered (" ");
1725
1726 annotate_display_expression ();
1727
fa8a61dc 1728 puts_filtered (d->exp_string);
c906108c
SS
1729 annotate_display_expression_end ();
1730
6a2eb474 1731 if (d->format.count != 1 || d->format.format == 'i')
c906108c
SS
1732 printf_filtered ("\n");
1733 else
1734 printf_filtered (" ");
c5aa993b 1735
c906108c
SS
1736 annotate_display_value ();
1737
9d8fa392
PA
1738 TRY_CATCH (ex, RETURN_MASK_ERROR)
1739 {
1740 struct value *val;
1741 CORE_ADDR addr;
1742
1743 val = evaluate_expression (d->exp);
1744 addr = value_as_address (val);
1745 if (d->format.format == 'i')
1746 addr = gdbarch_addr_bits_remove (d->exp->gdbarch, addr);
1747 do_examine (d->format, d->exp->gdbarch, addr);
1748 }
1749 if (ex.reason < 0)
1750 fprintf_filtered (gdb_stdout, _("<error: %s>\n"), ex.message);
c906108c
SS
1751 }
1752 else
1753 {
79a45b7d 1754 struct value_print_options opts;
9d8fa392 1755 volatile struct gdb_exception ex;
79a45b7d 1756
c906108c
SS
1757 annotate_display_format ();
1758
1759 if (d->format.format)
1760 printf_filtered ("/%c ", d->format.format);
1761
1762 annotate_display_expression ();
1763
fa8a61dc 1764 puts_filtered (d->exp_string);
c906108c
SS
1765 annotate_display_expression_end ();
1766
1767 printf_filtered (" = ");
1768
1769 annotate_display_expression ();
1770
79a45b7d 1771 get_formatted_print_options (&opts, d->format.format);
a6bac58e 1772 opts.raw = d->format.raw;
9d8fa392
PA
1773
1774 TRY_CATCH (ex, RETURN_MASK_ERROR)
1775 {
1776 struct value *val;
1777
1778 val = evaluate_expression (d->exp);
1779 print_formatted (val, d->format.size, &opts, gdb_stdout);
1780 }
1781 if (ex.reason < 0)
1782 fprintf_filtered (gdb_stdout, _("<error: %s>"), ex.message);
c906108c
SS
1783 printf_filtered ("\n");
1784 }
1785
1786 annotate_display_end ();
1787
1788 gdb_flush (gdb_stdout);
9d8fa392 1789 do_cleanups (old_chain);
c906108c
SS
1790}
1791
1792/* Display all of the values on the auto-display chain which can be
1793 evaluated in the current scope. */
1794
1795void
fba45db2 1796do_displays (void)
c906108c 1797{
52f0bd74 1798 struct display *d;
c906108c
SS
1799
1800 for (d = display_chain; d; d = d->next)
1801 do_one_display (d);
1802}
1803
1804/* Delete the auto-display which we were in the process of displaying.
1805 This is done when there is an error or a signal. */
1806
1807void
fba45db2 1808disable_display (int num)
c906108c 1809{
52f0bd74 1810 struct display *d;
c906108c
SS
1811
1812 for (d = display_chain; d; d = d->next)
1813 if (d->number == num)
1814 {
b5de0fa7 1815 d->enabled_p = 0;
c906108c
SS
1816 return;
1817 }
a3f17187 1818 printf_unfiltered (_("No display number %d.\n"), num);
c906108c 1819}
c5aa993b 1820
c906108c 1821void
fba45db2 1822disable_current_display (void)
c906108c
SS
1823{
1824 if (current_display_number >= 0)
1825 {
1826 disable_display (current_display_number);
3e43a32a
MS
1827 fprintf_unfiltered (gdb_stderr,
1828 _("Disabling display %d to "
1829 "avoid infinite recursion.\n"),
c5aa993b 1830 current_display_number);
c906108c
SS
1831 }
1832 current_display_number = -1;
1833}
1834
1835static void
fba45db2 1836display_info (char *ignore, int from_tty)
c906108c 1837{
52f0bd74 1838 struct display *d;
c906108c
SS
1839
1840 if (!display_chain)
a3f17187 1841 printf_unfiltered (_("There are no auto-display expressions now.\n"));
c906108c 1842 else
a3f17187
AC
1843 printf_filtered (_("Auto-display expressions now in effect:\n\
1844Num Enb Expression\n"));
c906108c
SS
1845
1846 for (d = display_chain; d; d = d->next)
1847 {
b5de0fa7 1848 printf_filtered ("%d: %c ", d->number, "ny"[(int) d->enabled_p]);
c906108c
SS
1849 if (d->format.size)
1850 printf_filtered ("/%d%c%c ", d->format.count, d->format.size,
c5aa993b 1851 d->format.format);
c906108c
SS
1852 else if (d->format.format)
1853 printf_filtered ("/%c ", d->format.format);
fa8a61dc 1854 puts_filtered (d->exp_string);
ae767bfb 1855 if (d->block && !contained_in (get_selected_block (0), d->block))
a3f17187 1856 printf_filtered (_(" (cannot be evaluated in the current context)"));
c906108c
SS
1857 printf_filtered ("\n");
1858 gdb_flush (gdb_stdout);
1859 }
1860}
1861
c9174737
PA
1862/* Callback fo map_display_numbers, that enables or disables the
1863 passed in display D. */
1864
c906108c 1865static void
c9174737 1866do_enable_disable_display (struct display *d, void *data)
c906108c 1867{
c9174737
PA
1868 d->enabled_p = *(int *) data;
1869}
c906108c 1870
c9174737
PA
1871/* Implamentation of both the "disable display" and "enable display"
1872 commands. ENABLE decides what to do. */
1873
1874static void
1875enable_disable_display_command (char *args, int from_tty, int enable)
1876{
1877 if (args == NULL)
c906108c 1878 {
c9174737 1879 struct display *d;
c5aa993b 1880
c9174737
PA
1881 ALL_DISPLAYS (d)
1882 d->enabled_p = enable;
1883 return;
1884 }
c5aa993b 1885
c9174737 1886 map_display_numbers (args, do_enable_disable_display, &enable);
c906108c
SS
1887}
1888
c9174737
PA
1889/* The "enable display" command. */
1890
c906108c 1891static void
c9174737 1892enable_display_command (char *args, int from_tty)
c906108c 1893{
c9174737
PA
1894 enable_disable_display_command (args, from_tty, 1);
1895}
c5aa993b 1896
c9174737 1897/* The "disable display" command. */
c906108c 1898
c9174737
PA
1899static void
1900disable_display_command (char *args, int from_tty)
1901{
1902 enable_disable_display_command (args, from_tty, 0);
c906108c 1903}
a3247a22 1904
a3247a22
PP
1905/* display_chain items point to blocks and expressions. Some expressions in
1906 turn may point to symbols.
1907 Both symbols and blocks are obstack_alloc'd on objfile_stack, and are
1908 obstack_free'd when a shared library is unloaded.
1909 Clear pointers that are about to become dangling.
1910 Both .exp and .block fields will be restored next time we need to display
1911 an item by re-parsing .exp_string field in the new execution context. */
1912
1913static void
1914clear_dangling_display_expressions (struct so_list *solib)
1915{
c0201579 1916 struct objfile *objfile = solib->objfile;
a3247a22 1917 struct display *d;
a3247a22 1918
c0201579
JK
1919 /* With no symbol file we cannot have a block or expression from it. */
1920 if (objfile == NULL)
1921 return;
1922 if (objfile->separate_debug_objfile_backlink)
1923 objfile = objfile->separate_debug_objfile_backlink;
1924 gdb_assert (objfile->pspace == solib->pspace);
1925
1926 for (d = display_chain; d != NULL; d = d->next)
a3247a22 1927 {
c0201579
JK
1928 if (d->pspace != solib->pspace)
1929 continue;
1930
1931 if (lookup_objfile_from_block (d->block) == objfile
1932 || (d->exp && exp_uses_objfile (d->exp, objfile)))
1933 {
1934 xfree (d->exp);
1935 d->exp = NULL;
1936 d->block = NULL;
1937 }
a3247a22
PP
1938 }
1939}
c906108c 1940\f
c5aa993b 1941
675dcf4f 1942/* Print the value in stack frame FRAME of a variable specified by a
aad95b57
TT
1943 struct symbol. NAME is the name to print; if NULL then VAR's print
1944 name will be used. STREAM is the ui_file on which to print the
1945 value. INDENT specifies the number of indent levels to print
8f043999
JK
1946 before printing the variable name.
1947
1948 This function invalidates FRAME. */
c906108c
SS
1949
1950void
aad95b57
TT
1951print_variable_and_value (const char *name, struct symbol *var,
1952 struct frame_info *frame,
1953 struct ui_file *stream, int indent)
c906108c 1954{
0f6a939d 1955 volatile struct gdb_exception except;
c906108c 1956
aad95b57
TT
1957 if (!name)
1958 name = SYMBOL_PRINT_NAME (var);
1959
1960 fprintf_filtered (stream, "%s%s = ", n_spaces (2 * indent), name);
0f6a939d
PM
1961 TRY_CATCH (except, RETURN_MASK_ERROR)
1962 {
1963 struct value *val;
1964 struct value_print_options opts;
aad95b57 1965
0f6a939d
PM
1966 val = read_var_value (var, frame);
1967 get_user_print_options (&opts);
3343315b 1968 opts.deref_ref = 1;
0f6a939d 1969 common_val_print (val, stream, indent, &opts, current_language);
8f043999
JK
1970
1971 /* common_val_print invalidates FRAME when a pretty printer calls inferior
1972 function. */
1973 frame = NULL;
0f6a939d
PM
1974 }
1975 if (except.reason < 0)
1976 fprintf_filtered(stream, "<error reading variable %s (%s)>", name,
1977 except.message);
aad95b57 1978 fprintf_filtered (stream, "\n");
c906108c
SS
1979}
1980
c2792f5a
DE
1981/* Subroutine of ui_printf to simplify it.
1982 Print VALUE to STREAM using FORMAT.
e12f57ab 1983 VALUE is a C-style string on the target. */
c2792f5a
DE
1984
1985static void
1986printf_c_string (struct ui_file *stream, const char *format,
1987 struct value *value)
1988{
1989 gdb_byte *str;
1990 CORE_ADDR tem;
1991 int j;
1992
1993 tem = value_as_address (value);
1994
1995 /* This is a %s argument. Find the length of the string. */
1996 for (j = 0;; j++)
1997 {
1998 gdb_byte c;
1999
2000 QUIT;
2001 read_memory (tem + j, &c, 1);
2002 if (c == 0)
2003 break;
2004 }
2005
2006 /* Copy the string contents into a string inside GDB. */
2007 str = (gdb_byte *) alloca (j + 1);
2008 if (j != 0)
2009 read_memory (tem, str, j);
2010 str[j] = 0;
2011
2012 fprintf_filtered (stream, format, (char *) str);
2013}
2014
2015/* Subroutine of ui_printf to simplify it.
2016 Print VALUE to STREAM using FORMAT.
e12f57ab 2017 VALUE is a wide C-style string on the target. */
c2792f5a
DE
2018
2019static void
2020printf_wide_c_string (struct ui_file *stream, const char *format,
2021 struct value *value)
2022{
2023 gdb_byte *str;
2024 CORE_ADDR tem;
2025 int j;
2026 struct gdbarch *gdbarch = get_type_arch (value_type (value));
2027 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
2028 struct type *wctype = lookup_typename (current_language, gdbarch,
2029 "wchar_t", NULL, 0);
2030 int wcwidth = TYPE_LENGTH (wctype);
2031 gdb_byte *buf = alloca (wcwidth);
2032 struct obstack output;
2033 struct cleanup *inner_cleanup;
2034
2035 tem = value_as_address (value);
2036
2037 /* This is a %s argument. Find the length of the string. */
2038 for (j = 0;; j += wcwidth)
2039 {
2040 QUIT;
2041 read_memory (tem + j, buf, wcwidth);
2042 if (extract_unsigned_integer (buf, wcwidth, byte_order) == 0)
2043 break;
2044 }
2045
2046 /* Copy the string contents into a string inside GDB. */
2047 str = (gdb_byte *) alloca (j + wcwidth);
2048 if (j != 0)
2049 read_memory (tem, str, j);
2050 memset (&str[j], 0, wcwidth);
2051
2052 obstack_init (&output);
2053 inner_cleanup = make_cleanup_obstack_free (&output);
2054
2055 convert_between_encodings (target_wide_charset (gdbarch),
2056 host_charset (),
2057 str, j, wcwidth,
2058 &output, translit_char);
2059 obstack_grow_str0 (&output, "");
2060
2061 fprintf_filtered (stream, format, obstack_base (&output));
2062 do_cleanups (inner_cleanup);
2063}
2064
2065/* Subroutine of ui_printf to simplify it.
2066 Print VALUE, a decimal floating point value, to STREAM using FORMAT. */
2067
2068static void
2069printf_decfloat (struct ui_file *stream, const char *format,
2070 struct value *value)
2071{
2072 const gdb_byte *param_ptr = value_contents (value);
2073
2074#if defined (PRINTF_HAS_DECFLOAT)
2075 /* If we have native support for Decimal floating
2076 printing, handle it here. */
2077 fprintf_filtered (stream, format, param_ptr);
2078#else
2079 /* As a workaround until vasprintf has native support for DFP
2080 we convert the DFP values to string and print them using
2081 the %s format specifier. */
2082 const char *p;
2083
2084 /* Parameter data. */
2085 struct type *param_type = value_type (value);
2086 struct gdbarch *gdbarch = get_type_arch (param_type);
2087 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
2088
2089 /* DFP output data. */
2090 struct value *dfp_value = NULL;
2091 gdb_byte *dfp_ptr;
2092 int dfp_len = 16;
2093 gdb_byte dec[16];
2094 struct type *dfp_type = NULL;
2095 char decstr[MAX_DECIMAL_STRING];
2096
2097 /* Points to the end of the string so that we can go back
2098 and check for DFP length modifiers. */
2099 p = format + strlen (format);
2100
2101 /* Look for the float/double format specifier. */
2102 while (*p != 'f' && *p != 'e' && *p != 'E'
2103 && *p != 'g' && *p != 'G')
2104 p--;
2105
2106 /* Search for the '%' char and extract the size and type of
2107 the output decimal value based on its modifiers
2108 (%Hf, %Df, %DDf). */
2109 while (*--p != '%')
2110 {
2111 if (*p == 'H')
2112 {
2113 dfp_len = 4;
2114 dfp_type = builtin_type (gdbarch)->builtin_decfloat;
2115 }
2116 else if (*p == 'D' && *(p - 1) == 'D')
2117 {
2118 dfp_len = 16;
2119 dfp_type = builtin_type (gdbarch)->builtin_declong;
2120 p--;
2121 }
2122 else
2123 {
2124 dfp_len = 8;
2125 dfp_type = builtin_type (gdbarch)->builtin_decdouble;
2126 }
2127 }
2128
2129 /* Conversion between different DFP types. */
2130 if (TYPE_CODE (param_type) == TYPE_CODE_DECFLOAT)
2131 decimal_convert (param_ptr, TYPE_LENGTH (param_type),
2132 byte_order, dec, dfp_len, byte_order);
2133 else
2134 /* If this is a non-trivial conversion, just output 0.
2135 A correct converted value can be displayed by explicitly
2136 casting to a DFP type. */
2137 decimal_from_string (dec, dfp_len, byte_order, "0");
2138
2139 dfp_value = value_from_decfloat (dfp_type, dec);
2140
2141 dfp_ptr = (gdb_byte *) value_contents (dfp_value);
2142
2143 decimal_to_string (dfp_ptr, dfp_len, byte_order, decstr);
2144
2145 /* Print the DFP value. */
2146 fprintf_filtered (stream, "%s", decstr);
2147#endif
2148}
2149
2150/* Subroutine of ui_printf to simplify it.
2151 Print VALUE, a target pointer, to STREAM using FORMAT. */
2152
2153static void
2154printf_pointer (struct ui_file *stream, const char *format,
2155 struct value *value)
2156{
2157 /* We avoid the host's %p because pointers are too
2158 likely to be the wrong size. The only interesting
2159 modifier for %p is a width; extract that, and then
2160 handle %p as glibc would: %#x or a literal "(nil)". */
2161
2162 const char *p;
2163 char *fmt, *fmt_p;
2164#ifdef PRINTF_HAS_LONG_LONG
2165 long long val = value_as_long (value);
2166#else
2167 long val = value_as_long (value);
2168#endif
2169
2170 fmt = alloca (strlen (format) + 5);
2171
2172 /* Copy up to the leading %. */
2173 p = format;
2174 fmt_p = fmt;
2175 while (*p)
2176 {
2177 int is_percent = (*p == '%');
2178
2179 *fmt_p++ = *p++;
2180 if (is_percent)
2181 {
2182 if (*p == '%')
2183 *fmt_p++ = *p++;
2184 else
2185 break;
2186 }
2187 }
2188
2189 if (val != 0)
2190 *fmt_p++ = '#';
2191
2192 /* Copy any width. */
2193 while (*p >= '0' && *p < '9')
2194 *fmt_p++ = *p++;
2195
2196 gdb_assert (*p == 'p' && *(p + 1) == '\0');
2197 if (val != 0)
2198 {
2199#ifdef PRINTF_HAS_LONG_LONG
2200 *fmt_p++ = 'l';
2201#endif
2202 *fmt_p++ = 'l';
2203 *fmt_p++ = 'x';
2204 *fmt_p++ = '\0';
2205 fprintf_filtered (stream, fmt, val);
2206 }
2207 else
2208 {
2209 *fmt_p++ = 's';
2210 *fmt_p++ = '\0';
2211 fprintf_filtered (stream, fmt, "(nil)");
2212 }
2213}
2214
a04b0428
JB
2215/* printf "printf format string" ARG to STREAM. */
2216
2217static void
bbc13ae3 2218ui_printf (const char *arg, struct ui_file *stream)
c906108c 2219{
d3ce09f5 2220 struct format_piece *fpieces;
bbc13ae3 2221 const char *s = arg;
3d6d86c6 2222 struct value **val_args;
c906108c
SS
2223 int allocated_args = 20;
2224 struct cleanup *old_cleanups;
2225
675dcf4f 2226 val_args = xmalloc (allocated_args * sizeof (struct value *));
c13c43fd 2227 old_cleanups = make_cleanup (free_current_contents, &val_args);
c906108c
SS
2228
2229 if (s == 0)
e2e0b3e5 2230 error_no_arg (_("format-control string and values to print"));
c906108c 2231
bbc13ae3 2232 s = skip_spaces_const (s);
c906108c 2233
675dcf4f 2234 /* A format string should follow, enveloped in double quotes. */
c906108c 2235 if (*s++ != '"')
8a3fe4f8 2236 error (_("Bad format string, missing '\"'."));
c906108c 2237
d3ce09f5 2238 fpieces = parse_format_string (&s);
c906108c 2239
d3ce09f5 2240 make_cleanup (free_format_pieces_cleanup, &fpieces);
c906108c 2241
d3ce09f5
SS
2242 if (*s++ != '"')
2243 error (_("Bad format string, non-terminated '\"'."));
2244
bbc13ae3 2245 s = skip_spaces_const (s);
c906108c
SS
2246
2247 if (*s != ',' && *s != 0)
8a3fe4f8 2248 error (_("Invalid argument syntax"));
c906108c 2249
c5aa993b
JM
2250 if (*s == ',')
2251 s++;
bbc13ae3 2252 s = skip_spaces_const (s);
c906108c 2253
c906108c 2254 {
d3ce09f5 2255 int nargs = 0;
c906108c 2256 int nargs_wanted;
d3ce09f5
SS
2257 int i, fr;
2258 char *current_substring;
c906108c 2259
c906108c 2260 nargs_wanted = 0;
d3ce09f5
SS
2261 for (fr = 0; fpieces[fr].string != NULL; fr++)
2262 if (fpieces[fr].argclass != literal_piece)
2263 ++nargs_wanted;
c906108c
SS
2264
2265 /* Now, parse all arguments and evaluate them.
2266 Store the VALUEs in VAL_ARGS. */
2267
2268 while (*s != '\0')
2269 {
bbc13ae3 2270 const char *s1;
ad3bbd48 2271
c906108c 2272 if (nargs == allocated_args)
f976f6d4
AC
2273 val_args = (struct value **) xrealloc ((char *) val_args,
2274 (allocated_args *= 2)
2275 * sizeof (struct value *));
a04b0428
JB
2276 s1 = s;
2277 val_args[nargs] = parse_to_comma_and_eval (&s1);
c5aa993b 2278
c906108c
SS
2279 nargs++;
2280 s = s1;
2281 if (*s == ',')
2282 s++;
2283 }
c5aa993b 2284
c906108c 2285 if (nargs != nargs_wanted)
8a3fe4f8 2286 error (_("Wrong number of arguments for specified format-string"));
c906108c
SS
2287
2288 /* Now actually print them. */
d3ce09f5
SS
2289 i = 0;
2290 for (fr = 0; fpieces[fr].string != NULL; fr++)
c906108c 2291 {
d3ce09f5
SS
2292 current_substring = fpieces[fr].string;
2293 switch (fpieces[fr].argclass)
c906108c
SS
2294 {
2295 case string_arg:
c2792f5a 2296 printf_c_string (stream, current_substring, val_args[i]);
c906108c 2297 break;
6c7a06a3 2298 case wide_string_arg:
c2792f5a 2299 printf_wide_c_string (stream, current_substring, val_args[i]);
6c7a06a3
TT
2300 break;
2301 case wide_char_arg:
2302 {
50810684
UW
2303 struct gdbarch *gdbarch
2304 = get_type_arch (value_type (val_args[i]));
2305 struct type *wctype = lookup_typename (current_language, gdbarch,
e6c014f2 2306 "wchar_t", NULL, 0);
6c7a06a3
TT
2307 struct type *valtype;
2308 struct obstack output;
2309 struct cleanup *inner_cleanup;
2310 const gdb_byte *bytes;
2311
2312 valtype = value_type (val_args[i]);
2313 if (TYPE_LENGTH (valtype) != TYPE_LENGTH (wctype)
2314 || TYPE_CODE (valtype) != TYPE_CODE_INT)
2315 error (_("expected wchar_t argument for %%lc"));
2316
2317 bytes = value_contents (val_args[i]);
2318
2319 obstack_init (&output);
2320 inner_cleanup = make_cleanup_obstack_free (&output);
2321
f870a310 2322 convert_between_encodings (target_wide_charset (gdbarch),
6c7a06a3
TT
2323 host_charset (),
2324 bytes, TYPE_LENGTH (valtype),
2325 TYPE_LENGTH (valtype),
2326 &output, translit_char);
2327 obstack_grow_str0 (&output, "");
2328
f1421989
HZ
2329 fprintf_filtered (stream, current_substring,
2330 obstack_base (&output));
6c7a06a3
TT
2331 do_cleanups (inner_cleanup);
2332 }
2333 break;
c906108c
SS
2334 case double_arg:
2335 {
b806fb9a
UW
2336 struct type *type = value_type (val_args[i]);
2337 DOUBLEST val;
2338 int inv;
2339
2340 /* If format string wants a float, unchecked-convert the value
2341 to floating point of the same size. */
50810684 2342 type = float_type_from_length (type);
b806fb9a
UW
2343 val = unpack_double (type, value_contents (val_args[i]), &inv);
2344 if (inv)
2345 error (_("Invalid floating value found in program."));
2346
f1421989 2347 fprintf_filtered (stream, current_substring, (double) val);
c906108c
SS
2348 break;
2349 }
46e9880c
DJ
2350 case long_double_arg:
2351#ifdef HAVE_LONG_DOUBLE
2352 {
b806fb9a
UW
2353 struct type *type = value_type (val_args[i]);
2354 DOUBLEST val;
2355 int inv;
2356
2357 /* If format string wants a float, unchecked-convert the value
2358 to floating point of the same size. */
50810684 2359 type = float_type_from_length (type);
b806fb9a
UW
2360 val = unpack_double (type, value_contents (val_args[i]), &inv);
2361 if (inv)
2362 error (_("Invalid floating value found in program."));
2363
f1421989
HZ
2364 fprintf_filtered (stream, current_substring,
2365 (long double) val);
46e9880c
DJ
2366 break;
2367 }
2368#else
2369 error (_("long double not supported in printf"));
2370#endif
c906108c 2371 case long_long_arg:
74a0d9f6 2372#ifdef PRINTF_HAS_LONG_LONG
c906108c
SS
2373 {
2374 long long val = value_as_long (val_args[i]);
ad3bbd48 2375
f1421989 2376 fprintf_filtered (stream, current_substring, val);
c906108c
SS
2377 break;
2378 }
2379#else
8a3fe4f8 2380 error (_("long long not supported in printf"));
c906108c
SS
2381#endif
2382 case int_arg:
2383 {
46e9880c 2384 int val = value_as_long (val_args[i]);
ad3bbd48 2385
f1421989 2386 fprintf_filtered (stream, current_substring, val);
46e9880c
DJ
2387 break;
2388 }
2389 case long_arg:
2390 {
c906108c 2391 long val = value_as_long (val_args[i]);
ad3bbd48 2392
f1421989 2393 fprintf_filtered (stream, current_substring, val);
c906108c
SS
2394 break;
2395 }
0aea4bf3 2396 /* Handles decimal floating values. */
c2792f5a
DE
2397 case decfloat_arg:
2398 printf_decfloat (stream, current_substring, val_args[i]);
2399 break;
2025a643 2400 case ptr_arg:
c2792f5a
DE
2401 printf_pointer (stream, current_substring, val_args[i]);
2402 break;
d3ce09f5
SS
2403 case literal_piece:
2404 /* Print a portion of the format string that has no
2405 directives. Note that this will not include any
2406 ordinary %-specs, but it might include "%%". That is
2407 why we use printf_filtered and not puts_filtered here.
2408 Also, we pass a dummy argument because some platforms
2409 have modified GCC to include -Wformat-security by
2410 default, which will warn here if there is no
2411 argument. */
2412 fprintf_filtered (stream, current_substring, 0);
2413 break;
675dcf4f
MK
2414 default:
2415 internal_error (__FILE__, __LINE__,
2025a643 2416 _("failed internal consistency check"));
c906108c 2417 }
d3ce09f5
SS
2418 /* Maybe advance to the next argument. */
2419 if (fpieces[fr].argclass != literal_piece)
2420 ++i;
c906108c 2421 }
c906108c
SS
2422 }
2423 do_cleanups (old_cleanups);
2424}
c906108c 2425
f1421989
HZ
2426/* Implement the "printf" command. */
2427
a04b0428 2428static void
f1421989
HZ
2429printf_command (char *arg, int from_tty)
2430{
a04b0428 2431 ui_printf (arg, gdb_stdout);
f1421989
HZ
2432}
2433
2434/* Implement the "eval" command. */
2435
2436static void
2437eval_command (char *arg, int from_tty)
2438{
2439 struct ui_file *ui_out = mem_fileopen ();
2440 struct cleanup *cleanups = make_cleanup_ui_file_delete (ui_out);
2441 char *expanded;
2442
a04b0428 2443 ui_printf (arg, ui_out);
f1421989
HZ
2444
2445 expanded = ui_file_xstrdup (ui_out, NULL);
2446 make_cleanup (xfree, expanded);
2447
2448 execute_command (expanded, from_tty);
2449
2450 do_cleanups (cleanups);
2451}
2452
c906108c 2453void
fba45db2 2454_initialize_printcmd (void)
c906108c 2455{
c94fdfd0
EZ
2456 struct cmd_list_element *c;
2457
c906108c
SS
2458 current_display_number = -1;
2459
a3247a22
PP
2460 observer_attach_solib_unloaded (clear_dangling_display_expressions);
2461
c906108c 2462 add_info ("address", address_info,
1bedd215 2463 _("Describe where symbol SYM is stored."));
c906108c 2464
1bedd215
AC
2465 add_info ("symbol", sym_info, _("\
2466Describe what symbol is at location ADDR.\n\
2467Only for symbols with fixed locations (global or static scope)."));
c906108c 2468
1bedd215
AC
2469 add_com ("x", class_vars, x_command, _("\
2470Examine memory: x/FMT ADDRESS.\n\
c906108c
SS
2471ADDRESS is an expression for the memory address to examine.\n\
2472FMT is a repeat count followed by a format letter and a size letter.\n\
2473Format letters are o(octal), x(hex), d(decimal), u(unsigned decimal),\n\
1bedd215
AC
2474 t(binary), f(float), a(address), i(instruction), c(char) and s(string).\n\
2475Size letters are b(byte), h(halfword), w(word), g(giant, 8 bytes).\n\
c906108c
SS
2476The specified number of objects of the specified size are printed\n\
2477according to the format.\n\n\
2478Defaults for format and size letters are those previously used.\n\
2479Default count is 1. Default address is following last thing printed\n\
1bedd215 2480with this command or \"print\"."));
c906108c 2481
c906108c
SS
2482#if 0
2483 add_com ("whereis", class_vars, whereis_command,
1bedd215 2484 _("Print line number and file of definition of variable."));
c906108c 2485#endif
c5aa993b 2486
1bedd215
AC
2487 add_info ("display", display_info, _("\
2488Expressions to display when program stops, with code numbers."));
c906108c 2489
1a966eab
AC
2490 add_cmd ("undisplay", class_vars, undisplay_command, _("\
2491Cancel some expressions to be displayed when program stops.\n\
c906108c
SS
2492Arguments are the code numbers of the expressions to stop displaying.\n\
2493No argument means cancel all automatic-display expressions.\n\
2494\"delete display\" has the same effect as this command.\n\
1a966eab 2495Do \"info display\" to see current list of code numbers."),
c5aa993b 2496 &cmdlist);
c906108c 2497
1bedd215
AC
2498 add_com ("display", class_vars, display_command, _("\
2499Print value of expression EXP each time the program stops.\n\
c906108c
SS
2500/FMT may be used before EXP as in the \"print\" command.\n\
2501/FMT \"i\" or \"s\" or including a size-letter is allowed,\n\
2502as in the \"x\" command, and then EXP is used to get the address to examine\n\
2503and examining is done as in the \"x\" command.\n\n\
2504With no argument, display all currently requested auto-display expressions.\n\
1bedd215 2505Use \"undisplay\" to cancel display requests previously made."));
c906108c 2506
c9174737 2507 add_cmd ("display", class_vars, enable_display_command, _("\
1a966eab 2508Enable some expressions to be displayed when program stops.\n\
c906108c
SS
2509Arguments are the code numbers of the expressions to resume displaying.\n\
2510No argument means enable all automatic-display expressions.\n\
1a966eab 2511Do \"info display\" to see current list of code numbers."), &enablelist);
c906108c 2512
1a966eab
AC
2513 add_cmd ("display", class_vars, disable_display_command, _("\
2514Disable some expressions to be displayed when program stops.\n\
c906108c
SS
2515Arguments are the code numbers of the expressions to stop displaying.\n\
2516No argument means disable all automatic-display expressions.\n\
1a966eab 2517Do \"info display\" to see current list of code numbers."), &disablelist);
c906108c 2518
1a966eab
AC
2519 add_cmd ("display", class_vars, undisplay_command, _("\
2520Cancel some expressions to be displayed when program stops.\n\
c906108c
SS
2521Arguments are the code numbers of the expressions to stop displaying.\n\
2522No argument means cancel all automatic-display expressions.\n\
1a966eab 2523Do \"info display\" to see current list of code numbers."), &deletelist);
c906108c 2524
1bedd215
AC
2525 add_com ("printf", class_vars, printf_command, _("\
2526printf \"printf format string\", arg1, arg2, arg3, ..., argn\n\
2527This is useful for formatted output in user-defined commands."));
c906108c 2528
1bedd215
AC
2529 add_com ("output", class_vars, output_command, _("\
2530Like \"print\" but don't put in value history and don't print newline.\n\
2531This is useful in user-defined commands."));
c906108c 2532
1bedd215
AC
2533 add_prefix_cmd ("set", class_vars, set_command, _("\
2534Evaluate expression EXP and assign result to variable VAR, using assignment\n\
c906108c
SS
2535syntax appropriate for the current language (VAR = EXP or VAR := EXP for\n\
2536example). VAR may be a debugger \"convenience\" variable (names starting\n\
2537with $), a register (a few standard names starting with $), or an actual\n\
1bedd215
AC
2538variable in the program being debugged. EXP is any valid expression.\n\
2539Use \"set variable\" for variables with names identical to set subcommands.\n\
2540\n\
2541With a subcommand, this command modifies parts of the gdb environment.\n\
2542You can see these environment settings with the \"show\" command."),
c5aa993b 2543 &setlist, "set ", 1, &cmdlist);
c906108c 2544 if (dbx_commands)
1bedd215
AC
2545 add_com ("assign", class_vars, set_command, _("\
2546Evaluate expression EXP and assign result to variable VAR, using assignment\n\
c906108c
SS
2547syntax appropriate for the current language (VAR = EXP or VAR := EXP for\n\
2548example). VAR may be a debugger \"convenience\" variable (names starting\n\
2549with $), a register (a few standard names starting with $), or an actual\n\
1bedd215
AC
2550variable in the program being debugged. EXP is any valid expression.\n\
2551Use \"set variable\" for variables with names identical to set subcommands.\n\
c906108c 2552\nWith a subcommand, this command modifies parts of the gdb environment.\n\
1bedd215 2553You can see these environment settings with the \"show\" command."));
c906108c 2554
0df8b418 2555 /* "call" is the same as "set", but handy for dbx users to call fns. */
1bedd215
AC
2556 c = add_com ("call", class_vars, call_command, _("\
2557Call a function in the program.\n\
c906108c
SS
2558The argument is the function name and arguments, in the notation of the\n\
2559current working language. The result is printed and saved in the value\n\
1bedd215 2560history, if it is not void."));
65d12d83 2561 set_cmd_completer (c, expression_completer);
c906108c 2562
1a966eab
AC
2563 add_cmd ("variable", class_vars, set_command, _("\
2564Evaluate expression EXP and assign result to variable VAR, using assignment\n\
c906108c
SS
2565syntax appropriate for the current language (VAR = EXP or VAR := EXP for\n\
2566example). VAR may be a debugger \"convenience\" variable (names starting\n\
2567with $), a register (a few standard names starting with $), or an actual\n\
2568variable in the program being debugged. EXP is any valid expression.\n\
1a966eab 2569This may usually be abbreviated to simply \"set\"."),
c5aa993b 2570 &setlist);
c906108c 2571
1bedd215
AC
2572 c = add_com ("print", class_vars, print_command, _("\
2573Print value of expression EXP.\n\
c906108c
SS
2574Variables accessible are those of the lexical environment of the selected\n\
2575stack frame, plus all those whose scope is global or an entire file.\n\
2576\n\
2577$NUM gets previous value number NUM. $ and $$ are the last two values.\n\
2578$$NUM refers to NUM'th value back from the last one.\n\
1bedd215
AC
2579Names starting with $ refer to registers (with the values they would have\n\
2580if the program were to return to the stack frame now selected, restoring\n\
c906108c
SS
2581all registers saved by frames farther in) or else to debugger\n\
2582\"convenience\" variables (any such name not a known register).\n\
1bedd215
AC
2583Use assignment expressions to give values to convenience variables.\n\
2584\n\
c906108c
SS
2585{TYPE}ADREXP refers to a datum of data type TYPE, located at address ADREXP.\n\
2586@ is a binary operator for treating consecutive data objects\n\
2587anywhere in memory as an array. FOO@NUM gives an array whose first\n\
2588element is FOO, whose second element is stored in the space following\n\
2589where FOO is stored, etc. FOO must be an expression whose value\n\
1bedd215
AC
2590resides in memory.\n\
2591\n\
c906108c 2592EXP may be preceded with /FMT, where FMT is a format letter\n\
1bedd215 2593but no count or size letter (see \"x\" command)."));
65d12d83 2594 set_cmd_completer (c, expression_completer);
c906108c 2595 add_com_alias ("p", "print", class_vars, 1);
e93a8774 2596 add_com_alias ("inspect", "print", class_vars, 1);
c906108c 2597
35096d9d
AC
2598 add_setshow_uinteger_cmd ("max-symbolic-offset", no_class,
2599 &max_symbolic_offset, _("\
2600Set the largest offset that will be printed in <symbol+1234> form."), _("\
2601Show the largest offset that will be printed in <symbol+1234> form."), NULL,
2602 NULL,
920d2a44 2603 show_max_symbolic_offset,
35096d9d 2604 &setprintlist, &showprintlist);
5bf193a2
AC
2605 add_setshow_boolean_cmd ("symbol-filename", no_class,
2606 &print_symbol_filename, _("\
2607Set printing of source filename and line number with <symbol>."), _("\
2608Show printing of source filename and line number with <symbol>."), NULL,
2609 NULL,
920d2a44 2610 show_print_symbol_filename,
5bf193a2 2611 &setprintlist, &showprintlist);
f1421989
HZ
2612
2613 add_com ("eval", no_class, eval_command, _("\
2614Convert \"printf format string\", arg1, arg2, arg3, ..., argn to\n\
2615a command line, and call it."));
c906108c 2616}