* gdbtypes.c (make_pointer_type, make_reference_type,
[deliverable/binutils-gdb.git] / gdb / arch-utils.c
CommitLineData
c0e8c252 1/* Dynamic architecture support for GDB, the GNU debugger.
f4f9705a 2
9b254dd1 3 Copyright (C) 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007,
0fb0cc75 4 2008, 2009 Free Software Foundation, Inc.
c0e8c252
AC
5
6 This file is part of GDB.
7
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
a9762ec7 10 the Free Software Foundation; either version 3 of the License, or
c0e8c252
AC
11 (at your option) any later version.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
a9762ec7 19 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c0e8c252
AC
20
21#include "defs.h"
22
fb6ecb0f 23#include "arch-utils.h"
192cb3d4 24#include "buildsym.h"
c0e8c252
AC
25#include "gdbcmd.h"
26#include "inferior.h" /* enum CALL_DUMMY_LOCATION et.al. */
5f8a3188 27#include "gdb_string.h"
fbec36e2 28#include "regcache.h"
39d4ef09 29#include "gdb_assert.h"
4182591f 30#include "sim-regno.h"
750eb019 31#include "gdbcore.h"
bf922ad9 32#include "osabi.h"
424163ea 33#include "target-descriptions.h"
237fc4c9 34#include "objfiles.h"
bf922ad9 35
1ba607ad
AC
36#include "version.h"
37
f0d4cc9e
AC
38#include "floatformat.h"
39
1fd35568 40
237fc4c9
PA
41struct displaced_step_closure *
42simple_displaced_step_copy_insn (struct gdbarch *gdbarch,
43 CORE_ADDR from, CORE_ADDR to,
44 struct regcache *regs)
45{
46 size_t len = gdbarch_max_insn_length (gdbarch);
47 gdb_byte *buf = xmalloc (len);
48
49 read_memory (from, buf, len);
50 write_memory (to, buf, len);
51
52 if (debug_displaced)
53 {
54 fprintf_unfiltered (gdb_stdlog, "displaced: copy 0x%s->0x%s: ",
55 paddr_nz (from), paddr_nz (to));
56 displaced_step_dump_bytes (gdb_stdlog, buf, len);
57 }
58
59 return (struct displaced_step_closure *) buf;
60}
61
62
63void
64simple_displaced_step_free_closure (struct gdbarch *gdbarch,
65 struct displaced_step_closure *closure)
66{
67 xfree (closure);
68}
69
70
71CORE_ADDR
72displaced_step_at_entry_point (struct gdbarch *gdbarch)
73{
74 CORE_ADDR addr;
75 int bp_len;
76
77 addr = entry_point_address ();
78
79 /* Make certain that the address points at real code, and not a
80 function descriptor. */
81 addr = gdbarch_convert_from_func_ptr_addr (gdbarch, addr, &current_target);
82
83 /* Inferior calls also use the entry point as a breakpoint location.
84 We don't want displaced stepping to interfere with those
85 breakpoints, so leave space. */
86 gdbarch_breakpoint_from_pc (gdbarch, &addr, &bp_len);
87 addr += bp_len * 2;
88
89 return addr;
90}
91
4182591f 92int
e7faf938 93legacy_register_sim_regno (struct gdbarch *gdbarch, int regnum)
4182591f
AC
94{
95 /* Only makes sense to supply raw registers. */
e7faf938 96 gdb_assert (regnum >= 0 && regnum < gdbarch_num_regs (gdbarch));
4182591f
AC
97 /* NOTE: cagney/2002-05-13: The old code did it this way and it is
98 suspected that some GDB/SIM combinations may rely on this
99 behavour. The default should be one2one_register_sim_regno
100 (below). */
e7faf938
MD
101 if (gdbarch_register_name (gdbarch, regnum) != NULL
102 && gdbarch_register_name (gdbarch, regnum)[0] != '\0')
4182591f
AC
103 return regnum;
104 else
105 return LEGACY_SIM_REGNO_IGNORE;
106}
107
bdcd319a 108CORE_ADDR
52f729a7 109generic_skip_trampoline_code (struct frame_info *frame, CORE_ADDR pc)
bdcd319a
CV
110{
111 return 0;
112}
113
dea0c52f 114CORE_ADDR
4c8c40e6 115generic_skip_solib_resolver (struct gdbarch *gdbarch, CORE_ADDR pc)
dea0c52f
MK
116{
117 return 0;
118}
119
d50355b6
MS
120int
121generic_in_solib_return_trampoline (CORE_ADDR pc, char *name)
122{
123 return 0;
124}
125
c12260ac
CV
126int
127generic_in_function_epilogue_p (struct gdbarch *gdbarch, CORE_ADDR pc)
128{
129 return 0;
130}
131
4d1e7dd1 132/* Helper functions for gdbarch_inner_than */
3339cf8b
AC
133
134int
fba45db2 135core_addr_lessthan (CORE_ADDR lhs, CORE_ADDR rhs)
3339cf8b
AC
136{
137 return (lhs < rhs);
138}
139
140int
fba45db2 141core_addr_greaterthan (CORE_ADDR lhs, CORE_ADDR rhs)
3339cf8b
AC
142{
143 return (lhs > rhs);
144}
145
193e3b1a
AC
146/* Misc helper functions for targets. */
147
f517ea4e 148CORE_ADDR
24568a2c 149core_addr_identity (struct gdbarch *gdbarch, CORE_ADDR addr)
f517ea4e
PS
150{
151 return addr;
152}
153
e2d0e7eb
AC
154CORE_ADDR
155convert_from_func_ptr_addr_identity (struct gdbarch *gdbarch, CORE_ADDR addr,
156 struct target_ops *targ)
157{
158 return addr;
159}
160
88c72b7d 161int
d3f73121 162no_op_reg_to_regnum (struct gdbarch *gdbarch, int reg)
88c72b7d
AC
163{
164 return reg;
165}
166
a2cf933a
EZ
167void
168default_elf_make_msymbol_special (asymbol *sym, struct minimal_symbol *msym)
169{
170 return;
171}
172
173void
174default_coff_make_msymbol_special (int val, struct minimal_symbol *msym)
175{
176 return;
177}
178
01fb7433 179int
64a3914f 180cannot_register_not (struct gdbarch *gdbarch, int regnum)
01fb7433
AC
181{
182 return 0;
183}
39d4ef09
AC
184
185/* Legacy version of target_virtual_frame_pointer(). Assumes that
064f5156 186 there is an gdbarch_deprecated_fp_regnum and that it is the same, cooked or
0ba6dca9 187 raw. */
39d4ef09
AC
188
189void
a54fba4c
MD
190legacy_virtual_frame_pointer (struct gdbarch *gdbarch,
191 CORE_ADDR pc,
39d4ef09
AC
192 int *frame_regnum,
193 LONGEST *frame_offset)
194{
20bcf01c
AC
195 /* FIXME: cagney/2002-09-13: This code is used when identifying the
196 frame pointer of the current PC. It is assuming that a single
197 register and an offset can determine this. I think it should
198 instead generate a byte code expression as that would work better
199 with things like Dwarf2's CFI. */
a54fba4c
MD
200 if (gdbarch_deprecated_fp_regnum (gdbarch) >= 0
201 && gdbarch_deprecated_fp_regnum (gdbarch)
202 < gdbarch_num_regs (gdbarch))
203 *frame_regnum = gdbarch_deprecated_fp_regnum (gdbarch);
204 else if (gdbarch_sp_regnum (gdbarch) >= 0
205 && gdbarch_sp_regnum (gdbarch)
206 < gdbarch_num_regs (gdbarch))
207 *frame_regnum = gdbarch_sp_regnum (gdbarch);
20bcf01c
AC
208 else
209 /* Should this be an internal error? I guess so, it is reflecting
210 an architectural limitation in the current design. */
edefbb7c 211 internal_error (__FILE__, __LINE__, _("No virtual frame pointer available"));
39d4ef09
AC
212 *frame_offset = 0;
213}
46cd78fb 214
d7bd68ca 215\f
13d01224 216int
76a8ddb9
UW
217generic_convert_register_p (struct gdbarch *gdbarch, int regnum,
218 struct type *type)
13d01224 219{
9730f241 220 return 0;
13d01224
AC
221}
222
192cb3d4
MK
223int
224default_stabs_argument_has_addr (struct gdbarch *gdbarch, struct type *type)
225{
192cb3d4
MK
226 return 0;
227}
228
3ca64954
RC
229int
230generic_instruction_nullified (struct gdbarch *gdbarch,
231 struct regcache *regcache)
232{
233 return 0;
234}
235
123dc839
DJ
236int
237default_remote_register_number (struct gdbarch *gdbarch,
238 int regno)
239{
240 return regno;
241}
242
01fb7433 243\f
b4a20239
AC
244/* Functions to manipulate the endianness of the target. */
245
7a107747 246static int target_byte_order_user = BFD_ENDIAN_UNKNOWN;
b4a20239 247
53904c9e
AC
248static const char endian_big[] = "big";
249static const char endian_little[] = "little";
250static const char endian_auto[] = "auto";
251static const char *endian_enum[] =
b4a20239
AC
252{
253 endian_big,
254 endian_little,
255 endian_auto,
256 NULL,
257};
53904c9e 258static const char *set_endian_string;
b4a20239 259
b6d373df
DJ
260enum bfd_endian
261selected_byte_order (void)
262{
263 if (target_byte_order_user != BFD_ENDIAN_UNKNOWN)
0d20ae72 264 return gdbarch_byte_order (current_gdbarch);
b6d373df
DJ
265 else
266 return BFD_ENDIAN_UNKNOWN;
267}
268
b4a20239
AC
269/* Called by ``show endian''. */
270
271static void
7ab04401
AC
272show_endian (struct ui_file *file, int from_tty, struct cmd_list_element *c,
273 const char *value)
b4a20239 274{
7b6b9e83 275 if (target_byte_order_user == BFD_ENDIAN_UNKNOWN)
0d20ae72 276 if (gdbarch_byte_order (current_gdbarch) == BFD_ENDIAN_BIG)
7ab04401
AC
277 fprintf_unfiltered (file, _("The target endianness is set automatically "
278 "(currently big endian)\n"));
edefbb7c 279 else
7ab04401 280 fprintf_unfiltered (file, _("The target endianness is set automatically "
edefbb7c 281 "(currently little endian)\n"));
b4a20239 282 else
0d20ae72 283 if (gdbarch_byte_order (current_gdbarch) == BFD_ENDIAN_BIG)
7ab04401
AC
284 fprintf_unfiltered (file,
285 _("The target is assumed to be big endian\n"));
286 else
287 fprintf_unfiltered (file,
288 _("The target is assumed to be little endian\n"));
b4a20239
AC
289}
290
291static void
292set_endian (char *ignore_args, int from_tty, struct cmd_list_element *c)
293{
7a107747
DJ
294 struct gdbarch_info info;
295
296 gdbarch_info_init (&info);
297
3fd3d7d2 298 if (set_endian_string == endian_auto)
b4a20239 299 {
7a107747
DJ
300 target_byte_order_user = BFD_ENDIAN_UNKNOWN;
301 if (! gdbarch_update_p (info))
302 internal_error (__FILE__, __LINE__,
303 _("set_endian: architecture update failed"));
b4a20239
AC
304 }
305 else if (set_endian_string == endian_little)
306 {
d90cf509
AC
307 info.byte_order = BFD_ENDIAN_LITTLE;
308 if (! gdbarch_update_p (info))
edefbb7c 309 printf_unfiltered (_("Little endian target not supported by GDB\n"));
7a107747
DJ
310 else
311 target_byte_order_user = BFD_ENDIAN_LITTLE;
b4a20239
AC
312 }
313 else if (set_endian_string == endian_big)
314 {
d90cf509
AC
315 info.byte_order = BFD_ENDIAN_BIG;
316 if (! gdbarch_update_p (info))
edefbb7c 317 printf_unfiltered (_("Big endian target not supported by GDB\n"));
7a107747
DJ
318 else
319 target_byte_order_user = BFD_ENDIAN_BIG;
b4a20239
AC
320 }
321 else
8e65ff28 322 internal_error (__FILE__, __LINE__,
edefbb7c 323 _("set_endian: bad value"));
7a107747 324
7ab04401 325 show_endian (gdb_stdout, from_tty, NULL, NULL);
b4a20239
AC
326}
327
23181151
DJ
328/* Given SELECTED, a currently selected BFD architecture, and
329 FROM_TARGET, a BFD architecture reported by the target description,
330 return what architecture to use. Either may be NULL; if both are
331 specified, we use the more specific. If the two are obviously
332 incompatible, warn the user. */
333
334static const struct bfd_arch_info *
335choose_architecture_for_target (const struct bfd_arch_info *selected,
336 const struct bfd_arch_info *from_target)
337{
338 const struct bfd_arch_info *compat1, *compat2;
339
340 if (selected == NULL)
341 return from_target;
342
343 if (from_target == NULL)
344 return selected;
345
346 /* struct bfd_arch_info objects are singletons: that is, there's
347 supposed to be exactly one instance for a given machine. So you
348 can tell whether two are equivalent by comparing pointers. */
349 if (from_target == selected)
350 return selected;
351
352 /* BFD's 'A->compatible (A, B)' functions return zero if A and B are
353 incompatible. But if they are compatible, it returns the 'more
354 featureful' of the two arches. That is, if A can run code
355 written for B, but B can't run code written for A, then it'll
356 return A.
357
358 Some targets (e.g. MIPS as of 2006-12-04) don't fully
359 implement this, instead always returning NULL or the first
360 argument. We detect that case by checking both directions. */
361
362 compat1 = selected->compatible (selected, from_target);
363 compat2 = from_target->compatible (from_target, selected);
364
365 if (compat1 == NULL && compat2 == NULL)
366 {
367 warning (_("Selected architecture %s is not compatible "
368 "with reported target architecture %s"),
369 selected->printable_name, from_target->printable_name);
370 return selected;
371 }
372
373 if (compat1 == NULL)
374 return compat2;
375 if (compat2 == NULL)
376 return compat1;
377 if (compat1 == compat2)
378 return compat1;
379
380 /* If the two didn't match, but one of them was a default architecture,
381 assume the more specific one is correct. This handles the case
382 where an executable or target description just says "mips", but
383 the other knows which MIPS variant. */
384 if (compat1->the_default)
385 return compat2;
386 if (compat2->the_default)
387 return compat1;
388
389 /* We have no idea which one is better. This is a bug, but not
390 a critical problem; warn the user. */
391 warning (_("Selected architecture %s is ambiguous with "
392 "reported target architecture %s"),
393 selected->printable_name, from_target->printable_name);
394 return selected;
395}
396
b4a20239
AC
397/* Functions to manipulate the architecture of the target */
398
399enum set_arch { set_arch_auto, set_arch_manual };
400
7a107747 401static const struct bfd_arch_info *target_architecture_user;
b4a20239 402
a8cf2722
AC
403static const char *set_architecture_string;
404
405const char *
406selected_architecture_name (void)
407{
7a107747 408 if (target_architecture_user == NULL)
a8cf2722
AC
409 return NULL;
410 else
411 return set_architecture_string;
412}
b4a20239 413
b4a20239
AC
414/* Called if the user enters ``show architecture'' without an
415 argument. */
416
417static void
7ab04401
AC
418show_architecture (struct ui_file *file, int from_tty,
419 struct cmd_list_element *c, const char *value)
b4a20239
AC
420{
421 const char *arch;
1143fffb 422 arch = gdbarch_bfd_arch_info (current_gdbarch)->printable_name;
7a107747 423 if (target_architecture_user == NULL)
7ab04401
AC
424 fprintf_filtered (file, _("\
425The target architecture is set automatically (currently %s)\n"), arch);
b4a20239 426 else
7ab04401
AC
427 fprintf_filtered (file, _("\
428The target architecture is assumed to be %s\n"), arch);
b4a20239
AC
429}
430
431
432/* Called if the user enters ``set architecture'' with or without an
433 argument. */
434
435static void
436set_architecture (char *ignore_args, int from_tty, struct cmd_list_element *c)
437{
7a107747
DJ
438 struct gdbarch_info info;
439
440 gdbarch_info_init (&info);
441
b4a20239
AC
442 if (strcmp (set_architecture_string, "auto") == 0)
443 {
7a107747
DJ
444 target_architecture_user = NULL;
445 if (!gdbarch_update_p (info))
446 internal_error (__FILE__, __LINE__,
447 _("could not select an architecture automatically"));
b4a20239 448 }
d90cf509 449 else
b4a20239 450 {
b4a20239
AC
451 info.bfd_arch_info = bfd_scan_arch (set_architecture_string);
452 if (info.bfd_arch_info == NULL)
8e65ff28 453 internal_error (__FILE__, __LINE__,
edefbb7c 454 _("set_architecture: bfd_scan_arch failed"));
16f33e29 455 if (gdbarch_update_p (info))
7a107747 456 target_architecture_user = info.bfd_arch_info;
b4a20239 457 else
edefbb7c 458 printf_unfiltered (_("Architecture `%s' not recognized.\n"),
b4a20239
AC
459 set_architecture_string);
460 }
7ab04401 461 show_architecture (gdb_stdout, from_tty, NULL, NULL);
b4a20239
AC
462}
463
ebdba546
AC
464/* Try to select a global architecture that matches "info". Return
465 non-zero if the attempt succeds. */
466int
467gdbarch_update_p (struct gdbarch_info info)
468{
a7f1256d
UW
469 struct gdbarch *new_gdbarch;
470
471 /* Check for the current file. */
472 if (info.abfd == NULL)
473 info.abfd = exec_bfd;
474 if (info.abfd == NULL)
475 info.abfd = core_bfd;
476
477 /* Check for the current target description. */
478 if (info.target_desc == NULL)
479 info.target_desc = target_current_description ();
480
481 new_gdbarch = gdbarch_find_by_info (info);
ebdba546
AC
482
483 /* If there no architecture by that name, reject the request. */
484 if (new_gdbarch == NULL)
485 {
486 if (gdbarch_debug)
487 fprintf_unfiltered (gdb_stdlog, "gdbarch_update_p: "
488 "Architecture not found\n");
489 return 0;
490 }
491
492 /* If it is the same old architecture, accept the request (but don't
493 swap anything). */
1cf3db46 494 if (new_gdbarch == target_gdbarch)
ebdba546
AC
495 {
496 if (gdbarch_debug)
497 fprintf_unfiltered (gdb_stdlog, "gdbarch_update_p: "
e3cb3832
JB
498 "Architecture %s (%s) unchanged\n",
499 host_address_to_string (new_gdbarch),
ebdba546
AC
500 gdbarch_bfd_arch_info (new_gdbarch)->printable_name);
501 return 1;
502 }
503
504 /* It's a new architecture, swap it in. */
505 if (gdbarch_debug)
506 fprintf_unfiltered (gdb_stdlog, "gdbarch_update_p: "
e3cb3832
JB
507 "New architecture %s (%s) selected\n",
508 host_address_to_string (new_gdbarch),
ebdba546
AC
509 gdbarch_bfd_arch_info (new_gdbarch)->printable_name);
510 deprecated_current_gdbarch_select_hack (new_gdbarch);
511
512 return 1;
513}
514
2b026650
MK
515/* Return the architecture for ABFD. If no suitable architecture
516 could be find, return NULL. */
517
518struct gdbarch *
519gdbarch_from_bfd (bfd *abfd)
b4a20239 520{
d90cf509
AC
521 struct gdbarch_info info;
522 gdbarch_info_init (&info);
523 info.abfd = abfd;
b60eb90d 524 return gdbarch_find_by_info (info);
2b026650
MK
525}
526
527/* Set the dynamic target-system-dependent parameters (architecture,
528 byte-order) using information found in the BFD */
529
530void
531set_gdbarch_from_file (bfd *abfd)
532{
a7f1256d 533 struct gdbarch_info info;
2b026650
MK
534 struct gdbarch *gdbarch;
535
a7f1256d
UW
536 gdbarch_info_init (&info);
537 info.abfd = abfd;
538 info.target_desc = target_current_description ();
539 gdbarch = gdbarch_find_by_info (info);
540
2b026650 541 if (gdbarch == NULL)
8a3fe4f8 542 error (_("Architecture of file not recognized."));
b60eb90d 543 deprecated_current_gdbarch_select_hack (gdbarch);
b4a20239
AC
544}
545
546/* Initialize the current architecture. Update the ``set
547 architecture'' command so that it specifies a list of valid
548 architectures. */
549
1ba607ad
AC
550#ifdef DEFAULT_BFD_ARCH
551extern const bfd_arch_info_type DEFAULT_BFD_ARCH;
552static const bfd_arch_info_type *default_bfd_arch = &DEFAULT_BFD_ARCH;
553#else
4b9b3959 554static const bfd_arch_info_type *default_bfd_arch;
1ba607ad
AC
555#endif
556
557#ifdef DEFAULT_BFD_VEC
558extern const bfd_target DEFAULT_BFD_VEC;
559static const bfd_target *default_bfd_vec = &DEFAULT_BFD_VEC;
560#else
561static const bfd_target *default_bfd_vec;
562#endif
563
7a107747
DJ
564static int default_byte_order = BFD_ENDIAN_UNKNOWN;
565
b4a20239
AC
566void
567initialize_current_architecture (void)
568{
569 const char **arches = gdbarch_printable_names ();
b4a20239 570
1ba607ad
AC
571 /* determine a default architecture and byte order. */
572 struct gdbarch_info info;
fb6ecb0f 573 gdbarch_info_init (&info);
1ba607ad
AC
574
575 /* Find a default architecture. */
7a107747 576 if (default_bfd_arch == NULL)
b4a20239 577 {
1ba607ad
AC
578 /* Choose the architecture by taking the first one
579 alphabetically. */
580 const char *chosen = arches[0];
b4a20239 581 const char **arch;
b4a20239
AC
582 for (arch = arches; *arch != NULL; arch++)
583 {
b4a20239
AC
584 if (strcmp (*arch, chosen) < 0)
585 chosen = *arch;
586 }
587 if (chosen == NULL)
8e65ff28 588 internal_error (__FILE__, __LINE__,
edefbb7c 589 _("initialize_current_architecture: No arch"));
7a107747
DJ
590 default_bfd_arch = bfd_scan_arch (chosen);
591 if (default_bfd_arch == NULL)
8e65ff28 592 internal_error (__FILE__, __LINE__,
edefbb7c 593 _("initialize_current_architecture: Arch not found"));
1ba607ad
AC
594 }
595
7a107747
DJ
596 info.bfd_arch_info = default_bfd_arch;
597
afe64c1a 598 /* Take several guesses at a byte order. */
7a107747 599 if (default_byte_order == BFD_ENDIAN_UNKNOWN
1ba607ad
AC
600 && default_bfd_vec != NULL)
601 {
602 /* Extract BFD's default vector's byte order. */
603 switch (default_bfd_vec->byteorder)
604 {
605 case BFD_ENDIAN_BIG:
7a107747 606 default_byte_order = BFD_ENDIAN_BIG;
1ba607ad
AC
607 break;
608 case BFD_ENDIAN_LITTLE:
7a107747 609 default_byte_order = BFD_ENDIAN_LITTLE;
1ba607ad
AC
610 break;
611 default:
612 break;
613 }
614 }
7a107747 615 if (default_byte_order == BFD_ENDIAN_UNKNOWN)
1ba607ad
AC
616 {
617 /* look for ``*el-*'' in the target name. */
618 const char *chp;
619 chp = strchr (target_name, '-');
620 if (chp != NULL
621 && chp - 2 >= target_name
622 && strncmp (chp - 2, "el", 2) == 0)
7a107747 623 default_byte_order = BFD_ENDIAN_LITTLE;
1ba607ad 624 }
7a107747 625 if (default_byte_order == BFD_ENDIAN_UNKNOWN)
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626 {
627 /* Wire it to big-endian!!! */
7a107747 628 default_byte_order = BFD_ENDIAN_BIG;
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629 }
630
7a107747 631 info.byte_order = default_byte_order;
9d4fde75 632 info.byte_order_for_code = info.byte_order;
7a107747 633
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634 if (! gdbarch_update_p (info))
635 internal_error (__FILE__, __LINE__,
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636 _("initialize_current_architecture: Selection of "
637 "initial architecture failed"));
b4a20239 638
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639 /* Create the ``set architecture'' command appending ``auto'' to the
640 list of architectures. */
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641 {
642 struct cmd_list_element *c;
643 /* Append ``auto''. */
644 int nr;
645 for (nr = 0; arches[nr] != NULL; nr++);
646 arches = xrealloc (arches, sizeof (char*) * (nr + 2));
647 arches[nr + 0] = "auto";
648 arches[nr + 1] = NULL;
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649 add_setshow_enum_cmd ("architecture", class_support,
650 arches, &set_architecture_string, _("\
651Set architecture of target."), _("\
652Show architecture of target."), NULL,
653 set_architecture, show_architecture,
654 &setlist, &showlist);
b4a20239 655 add_alias_cmd ("processor", "architecture", class_support, 1, &setlist);
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656 }
657}
658
659
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660/* Initialize a gdbarch info to values that will be automatically
661 overridden. Note: Originally, this ``struct info'' was initialized
ce2826aa 662 using memset(0). Unfortunately, that ran into problems, namely
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663 BFD_ENDIAN_BIG is zero. An explicit initialization function that
664 can explicitly set each field to a well defined value is used. */
665
666void
667gdbarch_info_init (struct gdbarch_info *info)
668{
669 memset (info, 0, sizeof (struct gdbarch_info));
428721aa 670 info->byte_order = BFD_ENDIAN_UNKNOWN;
9d4fde75 671 info->byte_order_for_code = info->byte_order;
4be87837 672 info->osabi = GDB_OSABI_UNINITIALIZED;
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673}
674
100bcc3f 675/* Similar to init, but this time fill in the blanks. Information is
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676 obtained from the global "set ..." options and explicitly
677 initialized INFO fields. */
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678
679void
7a107747 680gdbarch_info_fill (struct gdbarch_info *info)
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681{
682 /* "(gdb) set architecture ...". */
683 if (info->bfd_arch_info == NULL
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684 && target_architecture_user)
685 info->bfd_arch_info = target_architecture_user;
424163ea 686 /* From the file. */
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687 if (info->bfd_arch_info == NULL
688 && info->abfd != NULL
689 && bfd_get_arch (info->abfd) != bfd_arch_unknown
690 && bfd_get_arch (info->abfd) != bfd_arch_obscure)
691 info->bfd_arch_info = bfd_get_arch_info (info->abfd);
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692 /* From the target. */
693 if (info->target_desc != NULL)
694 info->bfd_arch_info = choose_architecture_for_target
695 (info->bfd_arch_info, tdesc_architecture (info->target_desc));
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696 /* From the default. */
697 if (info->bfd_arch_info == NULL)
698 info->bfd_arch_info = default_bfd_arch;
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699
700 /* "(gdb) set byte-order ...". */
701 if (info->byte_order == BFD_ENDIAN_UNKNOWN
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702 && target_byte_order_user != BFD_ENDIAN_UNKNOWN)
703 info->byte_order = target_byte_order_user;
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704 /* From the INFO struct. */
705 if (info->byte_order == BFD_ENDIAN_UNKNOWN
706 && info->abfd != NULL)
707 info->byte_order = (bfd_big_endian (info->abfd) ? BFD_ENDIAN_BIG
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708 : bfd_little_endian (info->abfd) ? BFD_ENDIAN_LITTLE
709 : BFD_ENDIAN_UNKNOWN);
710 /* From the default. */
711 if (info->byte_order == BFD_ENDIAN_UNKNOWN)
712 info->byte_order = default_byte_order;
9d4fde75 713 info->byte_order_for_code = info->byte_order;
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714
715 /* "(gdb) set osabi ...". Handled by gdbarch_lookup_osabi. */
716 if (info->osabi == GDB_OSABI_UNINITIALIZED)
717 info->osabi = gdbarch_lookup_osabi (info->abfd);
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718
719 /* Must have at least filled in the architecture. */
720 gdb_assert (info->bfd_arch_info != NULL);
721}
722
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723/* */
724
a78f21af 725extern initialize_file_ftype _initialize_gdbarch_utils; /* -Wmissing-prototypes */
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726
727void
b4a20239 728_initialize_gdbarch_utils (void)
c0e8c252 729{
b4a20239 730 struct cmd_list_element *c;
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731 add_setshow_enum_cmd ("endian", class_support,
732 endian_enum, &set_endian_string, _("\
733Set endianness of target."), _("\
734Show endianness of target."), NULL,
735 set_endian, show_endian,
736 &setlist, &showlist);
c0e8c252 737}
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