2004-02-12 Andrew Cagney <cagney@redhat.com>
[deliverable/binutils-gdb.git] / gdb / arch-utils.c
CommitLineData
c0e8c252 1/* Dynamic architecture support for GDB, the GNU debugger.
f4f9705a 2
4be87837 3 Copyright 1998, 1999, 2000, 2001, 2002, 2003 Free Software Foundation,
f4f9705a 4 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
10 the Free Software Foundation; either version 2 of the License, or
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
19 along with this program; if not, write to the Free Software
20 Foundation, Inc., 59 Temple Place - Suite 330,
21 Boston, MA 02111-1307, USA. */
22
23#include "defs.h"
24
fb6ecb0f 25#include "arch-utils.h"
192cb3d4 26#include "buildsym.h"
c0e8c252
AC
27#include "gdbcmd.h"
28#include "inferior.h" /* enum CALL_DUMMY_LOCATION et.al. */
5f8a3188 29#include "gdb_string.h"
fbec36e2 30#include "regcache.h"
39d4ef09 31#include "gdb_assert.h"
4182591f 32#include "sim-regno.h"
c0e8c252 33
bf922ad9
AC
34#include "osabi.h"
35
1ba607ad
AC
36#include "version.h"
37
f0d4cc9e
AC
38#include "floatformat.h"
39
049ee0e4
AC
40/* Implementation of extract return value that grubs around in the
41 register cache. */
42void
43legacy_extract_return_value (struct type *type, struct regcache *regcache,
ebba8386 44 void *valbuf)
049ee0e4
AC
45{
46 char *registers = deprecated_grub_regcache_for_registers (regcache);
ebba8386 47 bfd_byte *buf = valbuf;
524d7c18 48 DEPRECATED_EXTRACT_RETURN_VALUE (type, registers, buf); /* OK */
049ee0e4
AC
49}
50
ebba8386
AC
51/* Implementation of store return value that grubs the register cache.
52 Takes a local copy of the buffer to avoid const problems. */
53void
54legacy_store_return_value (struct type *type, struct regcache *regcache,
55 const void *buf)
56{
57 bfd_byte *b = alloca (TYPE_LENGTH (type));
58 gdb_assert (regcache == current_regcache);
59 memcpy (b, buf, TYPE_LENGTH (type));
60 DEPRECATED_STORE_RETURN_VALUE (type, b);
61}
62
63
1fd35568
JB
64int
65always_use_struct_convention (int gcc_p, struct type *value_type)
66{
67 return 1;
68}
69
70
4182591f
AC
71int
72legacy_register_sim_regno (int regnum)
73{
74 /* Only makes sense to supply raw registers. */
75 gdb_assert (regnum >= 0 && regnum < NUM_REGS);
76 /* NOTE: cagney/2002-05-13: The old code did it this way and it is
77 suspected that some GDB/SIM combinations may rely on this
78 behavour. The default should be one2one_register_sim_regno
79 (below). */
80 if (REGISTER_NAME (regnum) != NULL
81 && REGISTER_NAME (regnum)[0] != '\0')
82 return regnum;
83 else
84 return LEGACY_SIM_REGNO_IGNORE;
85}
86
c0e8c252
AC
87int
88generic_frameless_function_invocation_not (struct frame_info *fi)
89{
90 return 0;
91}
92
71a9f22e
JB
93int
94generic_return_value_on_stack_not (struct type *type)
95{
96 return 0;
97}
98
bdcd319a
CV
99CORE_ADDR
100generic_skip_trampoline_code (CORE_ADDR pc)
101{
102 return 0;
103}
104
dea0c52f 105CORE_ADDR
4c8c40e6 106generic_skip_solib_resolver (struct gdbarch *gdbarch, CORE_ADDR pc)
dea0c52f
MK
107{
108 return 0;
109}
110
68e9cc94
CV
111int
112generic_in_solib_call_trampoline (CORE_ADDR pc, char *name)
113{
114 return 0;
115}
116
d50355b6
MS
117int
118generic_in_solib_return_trampoline (CORE_ADDR pc, char *name)
119{
120 return 0;
121}
122
c12260ac
CV
123int
124generic_in_function_epilogue_p (struct gdbarch *gdbarch, CORE_ADDR pc)
125{
126 return 0;
127}
128
c0e8c252
AC
129#if defined (CALL_DUMMY)
130LONGEST legacy_call_dummy_words[] = CALL_DUMMY;
131#else
132LONGEST legacy_call_dummy_words[1];
133#endif
134int legacy_sizeof_call_dummy_words = sizeof (legacy_call_dummy_words);
135
136void
f6684c31
AC
137generic_remote_translate_xfer_address (struct gdbarch *gdbarch,
138 struct regcache *regcache,
139 CORE_ADDR gdb_addr, int gdb_len,
c0e8c252
AC
140 CORE_ADDR * rem_addr, int *rem_len)
141{
142 *rem_addr = gdb_addr;
143 *rem_len = gdb_len;
144}
145
3339cf8b
AC
146/* Helper functions for INNER_THAN */
147
148int
fba45db2 149core_addr_lessthan (CORE_ADDR lhs, CORE_ADDR rhs)
3339cf8b
AC
150{
151 return (lhs < rhs);
152}
153
154int
fba45db2 155core_addr_greaterthan (CORE_ADDR lhs, CORE_ADDR rhs)
3339cf8b
AC
156{
157 return (lhs > rhs);
158}
159
160
f0d4cc9e
AC
161/* Helper functions for TARGET_{FLOAT,DOUBLE}_FORMAT */
162
163const struct floatformat *
164default_float_format (struct gdbarch *gdbarch)
165{
f0d4cc9e 166 int byte_order = gdbarch_byte_order (gdbarch);
f0d4cc9e
AC
167 switch (byte_order)
168 {
d7449b42 169 case BFD_ENDIAN_BIG:
f0d4cc9e 170 return &floatformat_ieee_single_big;
778eb05e 171 case BFD_ENDIAN_LITTLE:
f0d4cc9e
AC
172 return &floatformat_ieee_single_little;
173 default:
8e65ff28
AC
174 internal_error (__FILE__, __LINE__,
175 "default_float_format: bad byte order");
f0d4cc9e
AC
176 }
177}
178
179
180const struct floatformat *
181default_double_format (struct gdbarch *gdbarch)
182{
f0d4cc9e 183 int byte_order = gdbarch_byte_order (gdbarch);
f0d4cc9e
AC
184 switch (byte_order)
185 {
d7449b42 186 case BFD_ENDIAN_BIG:
f0d4cc9e 187 return &floatformat_ieee_double_big;
778eb05e 188 case BFD_ENDIAN_LITTLE:
f0d4cc9e
AC
189 return &floatformat_ieee_double_little;
190 default:
8e65ff28
AC
191 internal_error (__FILE__, __LINE__,
192 "default_double_format: bad byte order");
f0d4cc9e
AC
193 }
194}
195
193e3b1a
AC
196/* Misc helper functions for targets. */
197
193e3b1a 198int
781a750d 199deprecated_register_convertible_not (int num)
193e3b1a
AC
200{
201 return 0;
202}
203
b4a20239 204
f517ea4e 205CORE_ADDR
875e1767 206core_addr_identity (CORE_ADDR addr)
f517ea4e
PS
207{
208 return addr;
209}
210
e2d0e7eb
AC
211CORE_ADDR
212convert_from_func_ptr_addr_identity (struct gdbarch *gdbarch, CORE_ADDR addr,
213 struct target_ops *targ)
214{
215 return addr;
216}
217
88c72b7d
AC
218int
219no_op_reg_to_regnum (int reg)
220{
221 return reg;
222}
223
97f46953 224CORE_ADDR
0968aa8c 225deprecated_init_frame_pc_default (int fromleaf, struct frame_info *prev)
7824d2f2 226{
6913c89a
AC
227 if (fromleaf && DEPRECATED_SAVED_PC_AFTER_CALL_P ())
228 return DEPRECATED_SAVED_PC_AFTER_CALL (get_next_frame (prev));
75e3c1f9 229 else if (get_next_frame (prev) != NULL)
8bedc050 230 return DEPRECATED_FRAME_SAVED_PC (get_next_frame (prev));
7824d2f2 231 else
97f46953 232 return read_pc ();
7824d2f2
AC
233}
234
a2cf933a
EZ
235void
236default_elf_make_msymbol_special (asymbol *sym, struct minimal_symbol *msym)
237{
238 return;
239}
240
241void
242default_coff_make_msymbol_special (int val, struct minimal_symbol *msym)
243{
244 return;
245}
246
01fb7433
AC
247int
248cannot_register_not (int regnum)
249{
250 return 0;
251}
39d4ef09
AC
252
253/* Legacy version of target_virtual_frame_pointer(). Assumes that
0ba6dca9
AC
254 there is an DEPRECATED_FP_REGNUM and that it is the same, cooked or
255 raw. */
39d4ef09
AC
256
257void
258legacy_virtual_frame_pointer (CORE_ADDR pc,
259 int *frame_regnum,
260 LONGEST *frame_offset)
261{
20bcf01c
AC
262 /* FIXME: cagney/2002-09-13: This code is used when identifying the
263 frame pointer of the current PC. It is assuming that a single
264 register and an offset can determine this. I think it should
265 instead generate a byte code expression as that would work better
266 with things like Dwarf2's CFI. */
0ba6dca9
AC
267 if (DEPRECATED_FP_REGNUM >= 0 && DEPRECATED_FP_REGNUM < NUM_REGS)
268 *frame_regnum = DEPRECATED_FP_REGNUM;
20bcf01c
AC
269 else if (SP_REGNUM >= 0 && SP_REGNUM < NUM_REGS)
270 *frame_regnum = SP_REGNUM;
271 else
272 /* Should this be an internal error? I guess so, it is reflecting
273 an architectural limitation in the current design. */
274 internal_error (__FILE__, __LINE__, "No virtual frame pointer available");
39d4ef09
AC
275 *frame_offset = 0;
276}
46cd78fb 277
b2e75d78
AC
278/* Assume the world is sane, every register's virtual and real size
279 is identical. */
46cd78fb
AC
280
281int
b2e75d78 282generic_register_size (int regnum)
46cd78fb
AC
283{
284 gdb_assert (regnum >= 0 && regnum < NUM_REGS + NUM_PSEUDO_REGS);
35cac7cf
AC
285 if (gdbarch_register_type_p (current_gdbarch))
286 return TYPE_LENGTH (gdbarch_register_type (current_gdbarch, regnum));
287 else
288 /* FIXME: cagney/2003-03-01: Once all architectures implement
289 gdbarch_register_type(), this entire function can go away. It
290 is made obsolete by register_size(). */
2e092625 291 return TYPE_LENGTH (DEPRECATED_REGISTER_VIRTUAL_TYPE (regnum)); /* OK */
ce29138a
MS
292}
293
a7e3c2ad
AC
294/* Assume all registers are adjacent. */
295
296int
297generic_register_byte (int regnum)
298{
299 int byte;
300 int i;
301 gdb_assert (regnum >= 0 && regnum < NUM_REGS + NUM_PSEUDO_REGS);
302 byte = 0;
303 for (i = 0; i < regnum; i++)
304 {
0aa7e1aa 305 byte += generic_register_size (i);
a7e3c2ad
AC
306 }
307 return byte;
308}
309
d7bd68ca
AC
310\f
311int
312legacy_pc_in_sigtramp (CORE_ADDR pc, char *name)
313{
db54fef4
CV
314#if !defined (IN_SIGTRAMP)
315 if (SIGTRAMP_START_P ())
316 return (pc) >= SIGTRAMP_START (pc) && (pc) < SIGTRAMP_END (pc);
317 else
318 return name && strcmp ("_sigtramp", name) == 0;
319#else
320 return IN_SIGTRAMP (pc, name);
321#endif
d7bd68ca
AC
322}
323
13d01224 324int
ff2e87ac 325legacy_convert_register_p (int regnum, struct type *type)
13d01224 326{
781a750d 327 return DEPRECATED_REGISTER_CONVERTIBLE (regnum);
13d01224
AC
328}
329
330void
ff2e87ac
AC
331legacy_register_to_value (struct frame_info *frame, int regnum,
332 struct type *type, void *to)
13d01224 333{
ff2e87ac 334 char from[MAX_REGISTER_SIZE];
7f5f525d 335 get_frame_register (frame, regnum, from);
781a750d 336 DEPRECATED_REGISTER_CONVERT_TO_VIRTUAL (regnum, type, from, to);
13d01224
AC
337}
338
339void
ff2e87ac
AC
340legacy_value_to_register (struct frame_info *frame, int regnum,
341 struct type *type, const void *tmp)
13d01224 342{
ff2e87ac
AC
343 char to[MAX_REGISTER_SIZE];
344 char *from = alloca (TYPE_LENGTH (type));
345 memcpy (from, from, TYPE_LENGTH (type));
781a750d 346 DEPRECATED_REGISTER_CONVERT_TO_RAW (type, regnum, from, to);
ff2e87ac 347 put_frame_register (frame, regnum, to);
13d01224
AC
348}
349
192cb3d4
MK
350int
351default_stabs_argument_has_addr (struct gdbarch *gdbarch, struct type *type)
352{
353 if (DEPRECATED_REG_STRUCT_HAS_ADDR_P ()
354 && DEPRECATED_REG_STRUCT_HAS_ADDR (processing_gcc_compilation, type))
355 {
356 CHECK_TYPEDEF (type);
357
358 return (TYPE_CODE (type) == TYPE_CODE_STRUCT
359 || TYPE_CODE (type) == TYPE_CODE_UNION
360 || TYPE_CODE (type) == TYPE_CODE_SET
361 || TYPE_CODE (type) == TYPE_CODE_BITSTRING);
362 }
363
364 return 0;
365}
366
01fb7433 367\f
b4a20239
AC
368/* Functions to manipulate the endianness of the target. */
369
1ba607ad 370/* ``target_byte_order'' is only used when non- multi-arch.
afe64c1a
AC
371 Multi-arch targets obtain the current byte order using the
372 TARGET_BYTE_ORDER gdbarch method.
373
374 The choice of initial value is entirely arbitrary. During startup,
375 the function initialize_current_architecture() updates this value
376 based on default byte-order information extracted from BFD. */
a8cf2722
AC
377static int target_byte_order = BFD_ENDIAN_BIG;
378static int target_byte_order_auto = 1;
379
380enum bfd_endian
381selected_byte_order (void)
382{
383 if (target_byte_order_auto)
384 return BFD_ENDIAN_UNKNOWN;
385 else
386 return target_byte_order;
387}
b4a20239 388
53904c9e
AC
389static const char endian_big[] = "big";
390static const char endian_little[] = "little";
391static const char endian_auto[] = "auto";
392static const char *endian_enum[] =
b4a20239
AC
393{
394 endian_big,
395 endian_little,
396 endian_auto,
397 NULL,
398};
53904c9e 399static const char *set_endian_string;
b4a20239
AC
400
401/* Called by ``show endian''. */
402
403static void
404show_endian (char *args, int from_tty)
405{
a8cf2722 406 if (target_byte_order_auto)
b4a20239 407 printf_unfiltered ("The target endianness is set automatically (currently %s endian)\n",
d7449b42 408 (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG ? "big" : "little"));
b4a20239
AC
409 else
410 printf_unfiltered ("The target is assumed to be %s endian\n",
d7449b42 411 (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG ? "big" : "little"));
b4a20239
AC
412}
413
414static void
415set_endian (char *ignore_args, int from_tty, struct cmd_list_element *c)
416{
3fd3d7d2 417 if (set_endian_string == endian_auto)
b4a20239
AC
418 {
419 target_byte_order_auto = 1;
420 }
421 else if (set_endian_string == endian_little)
422 {
d90cf509 423 struct gdbarch_info info;
b4a20239 424 target_byte_order_auto = 0;
d90cf509
AC
425 gdbarch_info_init (&info);
426 info.byte_order = BFD_ENDIAN_LITTLE;
427 if (! gdbarch_update_p (info))
428 printf_unfiltered ("Little endian target not supported by GDB\n");
b4a20239
AC
429 }
430 else if (set_endian_string == endian_big)
431 {
d90cf509 432 struct gdbarch_info info;
b4a20239 433 target_byte_order_auto = 0;
d90cf509
AC
434 gdbarch_info_init (&info);
435 info.byte_order = BFD_ENDIAN_BIG;
436 if (! gdbarch_update_p (info))
437 printf_unfiltered ("Big endian target not supported by GDB\n");
b4a20239
AC
438 }
439 else
8e65ff28
AC
440 internal_error (__FILE__, __LINE__,
441 "set_endian: bad value");
b4a20239
AC
442 show_endian (NULL, from_tty);
443}
444
b4a20239
AC
445/* Functions to manipulate the architecture of the target */
446
447enum set_arch { set_arch_auto, set_arch_manual };
448
a8cf2722 449static int target_architecture_auto = 1;
b4a20239 450
a8cf2722
AC
451static const char *set_architecture_string;
452
453const char *
454selected_architecture_name (void)
455{
456 if (target_architecture_auto)
457 return NULL;
458 else
459 return set_architecture_string;
460}
b4a20239 461
b4a20239
AC
462/* Called if the user enters ``show architecture'' without an
463 argument. */
464
465static void
466show_architecture (char *args, int from_tty)
467{
468 const char *arch;
469 arch = TARGET_ARCHITECTURE->printable_name;
470 if (target_architecture_auto)
471 printf_filtered ("The target architecture is set automatically (currently %s)\n", arch);
472 else
473 printf_filtered ("The target architecture is assumed to be %s\n", arch);
474}
475
476
477/* Called if the user enters ``set architecture'' with or without an
478 argument. */
479
480static void
481set_architecture (char *ignore_args, int from_tty, struct cmd_list_element *c)
482{
483 if (strcmp (set_architecture_string, "auto") == 0)
484 {
485 target_architecture_auto = 1;
486 }
d90cf509 487 else
b4a20239
AC
488 {
489 struct gdbarch_info info;
fb6ecb0f 490 gdbarch_info_init (&info);
b4a20239
AC
491 info.bfd_arch_info = bfd_scan_arch (set_architecture_string);
492 if (info.bfd_arch_info == NULL)
8e65ff28
AC
493 internal_error (__FILE__, __LINE__,
494 "set_architecture: bfd_scan_arch failed");
16f33e29 495 if (gdbarch_update_p (info))
b4a20239
AC
496 target_architecture_auto = 0;
497 else
ec3d358c 498 printf_unfiltered ("Architecture `%s' not recognized.\n",
b4a20239
AC
499 set_architecture_string);
500 }
b4a20239
AC
501 show_architecture (NULL, from_tty);
502}
503
ebdba546
AC
504/* Try to select a global architecture that matches "info". Return
505 non-zero if the attempt succeds. */
506int
507gdbarch_update_p (struct gdbarch_info info)
508{
509 struct gdbarch *new_gdbarch = gdbarch_find_by_info (info);
510
511 /* If there no architecture by that name, reject the request. */
512 if (new_gdbarch == NULL)
513 {
514 if (gdbarch_debug)
515 fprintf_unfiltered (gdb_stdlog, "gdbarch_update_p: "
516 "Architecture not found\n");
517 return 0;
518 }
519
520 /* If it is the same old architecture, accept the request (but don't
521 swap anything). */
522 if (new_gdbarch == current_gdbarch)
523 {
524 if (gdbarch_debug)
525 fprintf_unfiltered (gdb_stdlog, "gdbarch_update_p: "
526 "Architecture 0x%08lx (%s) unchanged\n",
527 (long) new_gdbarch,
528 gdbarch_bfd_arch_info (new_gdbarch)->printable_name);
529 return 1;
530 }
531
532 /* It's a new architecture, swap it in. */
533 if (gdbarch_debug)
534 fprintf_unfiltered (gdb_stdlog, "gdbarch_update_p: "
535 "New architecture 0x%08lx (%s) selected\n",
536 (long) new_gdbarch,
537 gdbarch_bfd_arch_info (new_gdbarch)->printable_name);
538 deprecated_current_gdbarch_select_hack (new_gdbarch);
539
540 return 1;
541}
542
2b026650
MK
543/* Return the architecture for ABFD. If no suitable architecture
544 could be find, return NULL. */
545
546struct gdbarch *
547gdbarch_from_bfd (bfd *abfd)
b4a20239 548{
2b026650
MK
549 struct gdbarch *old_gdbarch = current_gdbarch;
550 struct gdbarch *new_gdbarch;
d90cf509 551 struct gdbarch_info info;
2b026650 552
d90cf509
AC
553 gdbarch_info_init (&info);
554 info.abfd = abfd;
b60eb90d 555 return gdbarch_find_by_info (info);
2b026650
MK
556}
557
558/* Set the dynamic target-system-dependent parameters (architecture,
559 byte-order) using information found in the BFD */
560
561void
562set_gdbarch_from_file (bfd *abfd)
563{
564 struct gdbarch *gdbarch;
565
566 gdbarch = gdbarch_from_bfd (abfd);
567 if (gdbarch == NULL)
d90cf509 568 error ("Architecture of file not recognized.\n");
b60eb90d 569 deprecated_current_gdbarch_select_hack (gdbarch);
b4a20239
AC
570}
571
572/* Initialize the current architecture. Update the ``set
573 architecture'' command so that it specifies a list of valid
574 architectures. */
575
1ba607ad
AC
576#ifdef DEFAULT_BFD_ARCH
577extern const bfd_arch_info_type DEFAULT_BFD_ARCH;
578static const bfd_arch_info_type *default_bfd_arch = &DEFAULT_BFD_ARCH;
579#else
4b9b3959 580static const bfd_arch_info_type *default_bfd_arch;
1ba607ad
AC
581#endif
582
583#ifdef DEFAULT_BFD_VEC
584extern const bfd_target DEFAULT_BFD_VEC;
585static const bfd_target *default_bfd_vec = &DEFAULT_BFD_VEC;
586#else
587static const bfd_target *default_bfd_vec;
588#endif
589
b4a20239
AC
590void
591initialize_current_architecture (void)
592{
593 const char **arches = gdbarch_printable_names ();
b4a20239 594
1ba607ad
AC
595 /* determine a default architecture and byte order. */
596 struct gdbarch_info info;
fb6ecb0f 597 gdbarch_info_init (&info);
1ba607ad
AC
598
599 /* Find a default architecture. */
600 if (info.bfd_arch_info == NULL
601 && default_bfd_arch != NULL)
602 info.bfd_arch_info = default_bfd_arch;
603 if (info.bfd_arch_info == NULL)
b4a20239 604 {
1ba607ad
AC
605 /* Choose the architecture by taking the first one
606 alphabetically. */
607 const char *chosen = arches[0];
b4a20239 608 const char **arch;
b4a20239
AC
609 for (arch = arches; *arch != NULL; arch++)
610 {
b4a20239
AC
611 if (strcmp (*arch, chosen) < 0)
612 chosen = *arch;
613 }
614 if (chosen == NULL)
8e65ff28
AC
615 internal_error (__FILE__, __LINE__,
616 "initialize_current_architecture: No arch");
b4a20239
AC
617 info.bfd_arch_info = bfd_scan_arch (chosen);
618 if (info.bfd_arch_info == NULL)
8e65ff28
AC
619 internal_error (__FILE__, __LINE__,
620 "initialize_current_architecture: Arch not found");
1ba607ad
AC
621 }
622
afe64c1a 623 /* Take several guesses at a byte order. */
428721aa 624 if (info.byte_order == BFD_ENDIAN_UNKNOWN
1ba607ad
AC
625 && default_bfd_vec != NULL)
626 {
627 /* Extract BFD's default vector's byte order. */
628 switch (default_bfd_vec->byteorder)
629 {
630 case BFD_ENDIAN_BIG:
d7449b42 631 info.byte_order = BFD_ENDIAN_BIG;
1ba607ad
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632 break;
633 case BFD_ENDIAN_LITTLE:
778eb05e 634 info.byte_order = BFD_ENDIAN_LITTLE;
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635 break;
636 default:
637 break;
638 }
639 }
428721aa 640 if (info.byte_order == BFD_ENDIAN_UNKNOWN)
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641 {
642 /* look for ``*el-*'' in the target name. */
643 const char *chp;
644 chp = strchr (target_name, '-');
645 if (chp != NULL
646 && chp - 2 >= target_name
647 && strncmp (chp - 2, "el", 2) == 0)
778eb05e 648 info.byte_order = BFD_ENDIAN_LITTLE;
1ba607ad 649 }
428721aa 650 if (info.byte_order == BFD_ENDIAN_UNKNOWN)
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651 {
652 /* Wire it to big-endian!!! */
d7449b42 653 info.byte_order = BFD_ENDIAN_BIG;
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654 }
655
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656 if (! gdbarch_update_p (info))
657 internal_error (__FILE__, __LINE__,
658 "initialize_current_architecture: Selection of initial architecture failed");
b4a20239 659
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660 /* Create the ``set architecture'' command appending ``auto'' to the
661 list of architectures. */
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662 {
663 struct cmd_list_element *c;
664 /* Append ``auto''. */
665 int nr;
666 for (nr = 0; arches[nr] != NULL; nr++);
667 arches = xrealloc (arches, sizeof (char*) * (nr + 2));
668 arches[nr + 0] = "auto";
669 arches[nr + 1] = NULL;
670 /* FIXME: add_set_enum_cmd() uses an array of ``char *'' instead
671 of ``const char *''. We just happen to know that the casts are
672 safe. */
673 c = add_set_enum_cmd ("architecture", class_support,
53904c9e 674 arches, &set_architecture_string,
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675 "Set architecture of target.",
676 &setlist);
9f60d481 677 set_cmd_sfunc (c, set_architecture);
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678 add_alias_cmd ("processor", "architecture", class_support, 1, &setlist);
679 /* Don't use set_from_show - need to print both auto/manual and
680 current setting. */
681 add_cmd ("architecture", class_support, show_architecture,
682 "Show the current target architecture", &showlist);
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683 }
684}
685
686
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687/* Initialize a gdbarch info to values that will be automatically
688 overridden. Note: Originally, this ``struct info'' was initialized
ce2826aa 689 using memset(0). Unfortunately, that ran into problems, namely
fb6ecb0f
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690 BFD_ENDIAN_BIG is zero. An explicit initialization function that
691 can explicitly set each field to a well defined value is used. */
692
693void
694gdbarch_info_init (struct gdbarch_info *info)
695{
696 memset (info, 0, sizeof (struct gdbarch_info));
428721aa 697 info->byte_order = BFD_ENDIAN_UNKNOWN;
4be87837 698 info->osabi = GDB_OSABI_UNINITIALIZED;
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699}
700
100bcc3f 701/* Similar to init, but this time fill in the blanks. Information is
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702 obtained from the specified architecture, global "set ..." options,
703 and explicitly initialized INFO fields. */
704
705void
706gdbarch_info_fill (struct gdbarch *gdbarch, struct gdbarch_info *info)
707{
708 /* "(gdb) set architecture ...". */
709 if (info->bfd_arch_info == NULL
710 && !target_architecture_auto
711 && gdbarch != NULL)
712 info->bfd_arch_info = gdbarch_bfd_arch_info (gdbarch);
713 if (info->bfd_arch_info == NULL
714 && info->abfd != NULL
715 && bfd_get_arch (info->abfd) != bfd_arch_unknown
716 && bfd_get_arch (info->abfd) != bfd_arch_obscure)
717 info->bfd_arch_info = bfd_get_arch_info (info->abfd);
718 if (info->bfd_arch_info == NULL
719 && gdbarch != NULL)
720 info->bfd_arch_info = gdbarch_bfd_arch_info (gdbarch);
721
722 /* "(gdb) set byte-order ...". */
723 if (info->byte_order == BFD_ENDIAN_UNKNOWN
724 && !target_byte_order_auto
725 && gdbarch != NULL)
726 info->byte_order = gdbarch_byte_order (gdbarch);
727 /* From the INFO struct. */
728 if (info->byte_order == BFD_ENDIAN_UNKNOWN
729 && info->abfd != NULL)
730 info->byte_order = (bfd_big_endian (info->abfd) ? BFD_ENDIAN_BIG
731 : bfd_little_endian (info->abfd) ? BFD_ENDIAN_LITTLE
732 : BFD_ENDIAN_UNKNOWN);
733 /* From the current target. */
734 if (info->byte_order == BFD_ENDIAN_UNKNOWN
735 && gdbarch != NULL)
736 info->byte_order = gdbarch_byte_order (gdbarch);
737
738 /* "(gdb) set osabi ...". Handled by gdbarch_lookup_osabi. */
739 if (info->osabi == GDB_OSABI_UNINITIALIZED)
740 info->osabi = gdbarch_lookup_osabi (info->abfd);
741 if (info->osabi == GDB_OSABI_UNINITIALIZED
742 && gdbarch != NULL)
743 info->osabi = gdbarch_osabi (gdbarch);
744
745 /* Must have at least filled in the architecture. */
746 gdb_assert (info->bfd_arch_info != NULL);
747}
748
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749/* */
750
a78f21af 751extern initialize_file_ftype _initialize_gdbarch_utils; /* -Wmissing-prototypes */
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752
753void
b4a20239 754_initialize_gdbarch_utils (void)
c0e8c252 755{
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756 struct cmd_list_element *c;
757 c = add_set_enum_cmd ("endian", class_support,
758 endian_enum, &set_endian_string,
759 "Set endianness of target.",
760 &setlist);
9f60d481 761 set_cmd_sfunc (c, set_endian);
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762 /* Don't use set_from_show - need to print both auto/manual and
763 current setting. */
764 add_cmd ("endian", class_support, show_endian,
765 "Show the current byte-order", &showlist);
c0e8c252 766}
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