gdb: move displaced stepping logic to gdbarch, allow starting concurrent displaced...
[deliverable/binutils-gdb.git] / gdb / gdbarch.h
CommitLineData
c4bfde41
JK
1/* *INDENT-OFF* */ /* THIS FILE IS GENERATED -*- buffer-read-only: t -*- */
2/* vi:set ro: */
59233f88 3
adf40b2e 4/* Dynamic architecture support for GDB, the GNU debugger.
79d45cd4 5
b811d2c2 6 Copyright (C) 1998-2020 Free Software Foundation, Inc.
c906108c 7
c5aa993b 8 This file is part of GDB.
c906108c 9
c5aa993b
JM
10 This program is free software; you can redistribute it and/or modify
11 it under the terms of the GNU General Public License as published by
a9762ec7 12 the Free Software Foundation; either version 3 of the License, or
c5aa993b 13 (at your option) any later version.
618f726f 14
c5aa993b
JM
15 This program is distributed in the hope that it will be useful,
16 but WITHOUT ANY WARRANTY; without even the implied warranty of
17 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 GNU General Public License for more details.
618f726f 19
c5aa993b 20 You should have received a copy of the GNU General Public License
a9762ec7 21 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c 22
41a77cba 23/* This file was created with the aid of ``gdbarch.sh''. */
adf40b2e 24
c906108c
SS
25#ifndef GDBARCH_H
26#define GDBARCH_H
27
a0ff9e1a 28#include <vector>
eb7a547a 29#include "frame.h"
65b48a81 30#include "dis-asm.h"
284a0e3c 31#include "gdb_obstack.h"
fdb61c6c 32#include "infrun.h"
fe4b2ee6 33#include "osabi.h"
e088209c 34#include "displaced-stepping.h"
eb7a547a 35
da3331ec
AC
36struct floatformat;
37struct ui_file;
cce74817 38struct value;
b6af0555 39struct objfile;
1c772458 40struct obj_section;
a2cf933a 41struct minimal_symbol;
049ee0e4 42struct regcache;
b59ff9d5 43struct reggroup;
6ce6d90f 44struct regset;
a89aa300 45struct disassemble_info;
e2d0e7eb 46struct target_ops;
030f20e1 47struct obstack;
8181d85f 48struct bp_target_info;
424163ea 49struct target_desc;
3e29f34a 50struct symbol;
a96d9b2e 51struct syscall;
175ff332 52struct agent_expr;
6710bf39 53struct axs_value;
55aa24fb 54struct stap_parse_info;
37eedb39 55struct expr_builder;
7e35103a 56struct ravenscar_arch_ops;
3437254d 57struct mem_range;
458c8db8 58struct syscalls_info;
4dfc5dbc 59struct thread_info;
012b3a21 60struct ui_out;
0f71a2f6 61
8a526fa6
PA
62#include "regcache.h"
63
6ecd4729
PA
64/* The architecture associated with the inferior through the
65 connection to the target.
66
67 The architecture vector provides some information that is really a
68 property of the inferior, accessed through a particular target:
69 ptrace operations; the layout of certain RSP packets; the solib_ops
70 vector; etc. To differentiate architecture accesses to
71 per-inferior/target properties from
72 per-thread/per-frame/per-objfile properties, accesses to
73 per-inferior/target properties should be made through this
74 gdbarch. */
75
76/* This is a convenience wrapper for 'current_inferior ()->gdbarch'. */
f5656ead 77extern struct gdbarch *target_gdbarch (void);
6ecd4729 78
19630284
JB
79/* Callback type for the 'iterate_over_objfiles_in_search_order'
80 gdbarch method. */
81
82typedef int (iterate_over_objfiles_in_search_order_cb_ftype)
83 (struct objfile *objfile, void *cb_data);
84
1528345d
AA
85/* Callback type for regset section iterators. The callback usually
86 invokes the REGSET's supply or collect method, to which it must
a616bb94
AH
87 pass a buffer - for collects this buffer will need to be created using
88 COLLECT_SIZE, for supply the existing buffer being read from should
89 be at least SUPPLY_SIZE. SECT_NAME is a BFD section name, and HUMAN_NAME
90 is used for diagnostic messages. CB_DATA should have been passed
91 unchanged through the iterator. */
1528345d 92
5aa82d05 93typedef void (iterate_over_regset_sections_cb)
a616bb94
AH
94 (const char *sect_name, int supply_size, int collect_size,
95 const struct regset *regset, const char *human_name, void *cb_data);
5aa82d05 96
c5ac5cbb
AH
97/* For a function call, does the function return a value using a
98 normal value return or a structure return - passing a hidden
99 argument pointing to storage. For the latter, there are two
100 cases: language-mandated structure return and target ABI
101 structure return. */
102
103enum function_call_return_method
104{
105 /* Standard value return. */
106 return_method_normal = 0,
107
108 /* Language ABI structure return. This is handled
109 by passing the return location as the first parameter to
110 the function, even preceding "this". */
111 return_method_hidden_param,
112
113 /* Target ABI struct return. This is target-specific; for instance,
114 on ia64 the first argument is passed in out0 but the hidden
115 structure return pointer would normally be passed in r8. */
116 return_method_struct,
117};
118
119
0f71a2f6 120
0963b4bd 121/* The following are pre-initialized by GDBARCH. */
0f71a2f6 122
104c1213 123extern const struct bfd_arch_info * gdbarch_bfd_arch_info (struct gdbarch *gdbarch);
0963b4bd 124/* set_gdbarch_bfd_arch_info() - not applicable - pre-initialized. */
0f71a2f6 125
94123b4f 126extern enum bfd_endian gdbarch_byte_order (struct gdbarch *gdbarch);
0963b4bd 127/* set_gdbarch_byte_order() - not applicable - pre-initialized. */
0f71a2f6 128
94123b4f 129extern enum bfd_endian gdbarch_byte_order_for_code (struct gdbarch *gdbarch);
0963b4bd 130/* set_gdbarch_byte_order_for_code() - not applicable - pre-initialized. */
9d4fde75 131
4be87837 132extern enum gdb_osabi gdbarch_osabi (struct gdbarch *gdbarch);
0963b4bd 133/* set_gdbarch_osabi() - not applicable - pre-initialized. */
4be87837 134
424163ea 135extern const struct target_desc * gdbarch_target_desc (struct gdbarch *gdbarch);
0963b4bd 136/* set_gdbarch_target_desc() - not applicable - pre-initialized. */
424163ea 137
0f71a2f6 138
0963b4bd 139/* The following are initialized by the target dependent code. */
0f71a2f6 140
35837774 141/* Number of bits in a short or unsigned short for the target machine. */
c4093a6a 142
104c1213
JM
143extern int gdbarch_short_bit (struct gdbarch *gdbarch);
144extern void set_gdbarch_short_bit (struct gdbarch *gdbarch, int short_bit);
0f71a2f6 145
66b43ecb
AC
146/* Number of bits in an int or unsigned int for the target machine. */
147
104c1213
JM
148extern int gdbarch_int_bit (struct gdbarch *gdbarch);
149extern void set_gdbarch_int_bit (struct gdbarch *gdbarch, int int_bit);
0f71a2f6 150
66b43ecb
AC
151/* Number of bits in a long or unsigned long for the target machine. */
152
104c1213
JM
153extern int gdbarch_long_bit (struct gdbarch *gdbarch);
154extern void set_gdbarch_long_bit (struct gdbarch *gdbarch, int long_bit);
0f71a2f6 155
66b43ecb
AC
156/* Number of bits in a long long or unsigned long long for the target
157 machine. */
158
104c1213
JM
159extern int gdbarch_long_long_bit (struct gdbarch *gdbarch);
160extern void set_gdbarch_long_long_bit (struct gdbarch *gdbarch, int long_long_bit);
0f71a2f6 161
f9e9243a
UW
162/* The ABI default bit-size and format for "half", "float", "double", and
163 "long double". These bit/format pairs should eventually be combined
164 into a single object. For the moment, just initialize them as a pair.
8da61cc4
DJ
165 Each format describes both the big and little endian layouts (if
166 useful). */
66b43ecb 167
f9e9243a
UW
168extern int gdbarch_half_bit (struct gdbarch *gdbarch);
169extern void set_gdbarch_half_bit (struct gdbarch *gdbarch, int half_bit);
170
171extern const struct floatformat ** gdbarch_half_format (struct gdbarch *gdbarch);
172extern void set_gdbarch_half_format (struct gdbarch *gdbarch, const struct floatformat ** half_format);
173
104c1213
JM
174extern int gdbarch_float_bit (struct gdbarch *gdbarch);
175extern void set_gdbarch_float_bit (struct gdbarch *gdbarch, int float_bit);
0f71a2f6 176
8da61cc4
DJ
177extern const struct floatformat ** gdbarch_float_format (struct gdbarch *gdbarch);
178extern void set_gdbarch_float_format (struct gdbarch *gdbarch, const struct floatformat ** float_format);
66b43ecb 179
104c1213
JM
180extern int gdbarch_double_bit (struct gdbarch *gdbarch);
181extern void set_gdbarch_double_bit (struct gdbarch *gdbarch, int double_bit);
0f71a2f6 182
8da61cc4
DJ
183extern const struct floatformat ** gdbarch_double_format (struct gdbarch *gdbarch);
184extern void set_gdbarch_double_format (struct gdbarch *gdbarch, const struct floatformat ** double_format);
66b43ecb 185
104c1213
JM
186extern int gdbarch_long_double_bit (struct gdbarch *gdbarch);
187extern void set_gdbarch_long_double_bit (struct gdbarch *gdbarch, int long_double_bit);
0f71a2f6 188
8da61cc4
DJ
189extern const struct floatformat ** gdbarch_long_double_format (struct gdbarch *gdbarch);
190extern void set_gdbarch_long_double_format (struct gdbarch *gdbarch, const struct floatformat ** long_double_format);
456fcf94 191
53375380
PA
192/* The ABI default bit-size for "wchar_t". wchar_t is a built-in type
193 starting with C++11. */
194
195extern int gdbarch_wchar_bit (struct gdbarch *gdbarch);
196extern void set_gdbarch_wchar_bit (struct gdbarch *gdbarch, int wchar_bit);
197
198/* One if `wchar_t' is signed, zero if unsigned. */
199
200extern int gdbarch_wchar_signed (struct gdbarch *gdbarch);
201extern void set_gdbarch_wchar_signed (struct gdbarch *gdbarch, int wchar_signed);
202
9b790ce7
UW
203/* Returns the floating-point format to be used for values of length LENGTH.
204 NAME, if non-NULL, is the type name, which may be used to distinguish
205 different target formats of the same length. */
206
207typedef const struct floatformat ** (gdbarch_floatformat_for_type_ftype) (struct gdbarch *gdbarch, const char *name, int length);
208extern const struct floatformat ** gdbarch_floatformat_for_type (struct gdbarch *gdbarch, const char *name, int length);
209extern void set_gdbarch_floatformat_for_type (struct gdbarch *gdbarch, gdbarch_floatformat_for_type_ftype *floatformat_for_type);
210
52204a0b
DT
211/* For most targets, a pointer on the target and its representation as an
212 address in GDB have the same size and "look the same". For such a
17a912b6 213 target, you need only set gdbarch_ptr_bit and gdbarch_addr_bit
52204a0b
DT
214 / addr_bit will be set from it.
215
17a912b6 216 If gdbarch_ptr_bit and gdbarch_addr_bit are different, you'll probably
8da614df
CV
217 also need to set gdbarch_dwarf2_addr_size, gdbarch_pointer_to_address and
218 gdbarch_address_to_pointer as well.
52204a0b
DT
219
220 ptr_bit is the size of a pointer on the target */
66b43ecb 221
66b43ecb
AC
222extern int gdbarch_ptr_bit (struct gdbarch *gdbarch);
223extern void set_gdbarch_ptr_bit (struct gdbarch *gdbarch, int ptr_bit);
66b43ecb 224
52204a0b
DT
225/* addr_bit is the size of a target address as represented in gdb */
226
52204a0b
DT
227extern int gdbarch_addr_bit (struct gdbarch *gdbarch);
228extern void set_gdbarch_addr_bit (struct gdbarch *gdbarch, int addr_bit);
66b43ecb 229
8da614df
CV
230/* dwarf2_addr_size is the target address size as used in the Dwarf debug
231 info. For .debug_frame FDEs, this is supposed to be the target address
232 size from the associated CU header, and which is equivalent to the
233 DWARF2_ADDR_SIZE as defined by the target specific GCC back-end.
234 Unfortunately there is no good way to determine this value. Therefore
235 dwarf2_addr_size simply defaults to the target pointer size.
236
237 dwarf2_addr_size is not used for .eh_frame FDEs, which are generally
238 defined using the target's pointer size so far.
239
240 Note that dwarf2_addr_size only needs to be redefined by a target if the
241 GCC back-end defines a DWARF2_ADDR_SIZE other than the target pointer size,
242 and if Dwarf versions < 4 need to be supported. */
243
244extern int gdbarch_dwarf2_addr_size (struct gdbarch *gdbarch);
245extern void set_gdbarch_dwarf2_addr_size (struct gdbarch *gdbarch, int dwarf2_addr_size);
246
4e409299
JB
247/* One if `char' acts like `signed char', zero if `unsigned char'. */
248
4e409299
JB
249extern int gdbarch_char_signed (struct gdbarch *gdbarch);
250extern void set_gdbarch_char_signed (struct gdbarch *gdbarch, int char_signed);
4e409299 251
cde9ea48 252extern int gdbarch_read_pc_p (struct gdbarch *gdbarch);
61a1198a 253
c113ed0c
YQ
254typedef CORE_ADDR (gdbarch_read_pc_ftype) (readable_regcache *regcache);
255extern CORE_ADDR gdbarch_read_pc (struct gdbarch *gdbarch, readable_regcache *regcache);
104c1213 256extern void set_gdbarch_read_pc (struct gdbarch *gdbarch, gdbarch_read_pc_ftype *read_pc);
61a1198a
UW
257
258extern int gdbarch_write_pc_p (struct gdbarch *gdbarch);
259
260typedef void (gdbarch_write_pc_ftype) (struct regcache *regcache, CORE_ADDR val);
261extern void gdbarch_write_pc (struct gdbarch *gdbarch, struct regcache *regcache, CORE_ADDR val);
104c1213 262extern void set_gdbarch_write_pc (struct gdbarch *gdbarch, gdbarch_write_pc_ftype *write_pc);
0f71a2f6 263
39d4ef09
AC
264/* Function for getting target's idea of a frame pointer. FIXME: GDB's
265 whole scheme for dealing with "frames" and "frame pointers" needs a
266 serious shakedown. */
267
a54fba4c 268typedef void (gdbarch_virtual_frame_pointer_ftype) (struct gdbarch *gdbarch, CORE_ADDR pc, int *frame_regnum, LONGEST *frame_offset);
39d4ef09
AC
269extern void gdbarch_virtual_frame_pointer (struct gdbarch *gdbarch, CORE_ADDR pc, int *frame_regnum, LONGEST *frame_offset);
270extern void set_gdbarch_virtual_frame_pointer (struct gdbarch *gdbarch, gdbarch_virtual_frame_pointer_ftype *virtual_frame_pointer);
39d4ef09 271
d8124050 272extern int gdbarch_pseudo_register_read_p (struct gdbarch *gdbarch);
61a0eb5b 273
849d0ba8
YQ
274typedef enum register_status (gdbarch_pseudo_register_read_ftype) (struct gdbarch *gdbarch, readable_regcache *regcache, int cookednum, gdb_byte *buf);
275extern enum register_status gdbarch_pseudo_register_read (struct gdbarch *gdbarch, readable_regcache *regcache, int cookednum, gdb_byte *buf);
d8124050 276extern void set_gdbarch_pseudo_register_read (struct gdbarch *gdbarch, gdbarch_pseudo_register_read_ftype *pseudo_register_read);
61a0eb5b 277
3543a589
TT
278/* Read a register into a new struct value. If the register is wholly
279 or partly unavailable, this should call mark_value_bytes_unavailable
280 as appropriate. If this is defined, then pseudo_register_read will
281 never be called. */
282
283extern int gdbarch_pseudo_register_read_value_p (struct gdbarch *gdbarch);
284
849d0ba8
YQ
285typedef struct value * (gdbarch_pseudo_register_read_value_ftype) (struct gdbarch *gdbarch, readable_regcache *regcache, int cookednum);
286extern struct value * gdbarch_pseudo_register_read_value (struct gdbarch *gdbarch, readable_regcache *regcache, int cookednum);
3543a589
TT
287extern void set_gdbarch_pseudo_register_read_value (struct gdbarch *gdbarch, gdbarch_pseudo_register_read_value_ftype *pseudo_register_read_value);
288
d8124050 289extern int gdbarch_pseudo_register_write_p (struct gdbarch *gdbarch);
61a0eb5b 290
b60c417a
AC
291typedef void (gdbarch_pseudo_register_write_ftype) (struct gdbarch *gdbarch, struct regcache *regcache, int cookednum, const gdb_byte *buf);
292extern void gdbarch_pseudo_register_write (struct gdbarch *gdbarch, struct regcache *regcache, int cookednum, const gdb_byte *buf);
d8124050 293extern void set_gdbarch_pseudo_register_write (struct gdbarch *gdbarch, gdbarch_pseudo_register_write_ftype *pseudo_register_write);
61a0eb5b 294
104c1213
JM
295extern int gdbarch_num_regs (struct gdbarch *gdbarch);
296extern void set_gdbarch_num_regs (struct gdbarch *gdbarch, int num_regs);
0f71a2f6 297
34620563
AC
298/* This macro gives the number of pseudo-registers that live in the
299 register namespace but do not get fetched or stored on the target.
300 These pseudo-registers may be aliases for other registers,
301 combinations of other registers, or they may be computed by GDB. */
302
0aba1244
EZ
303extern int gdbarch_num_pseudo_regs (struct gdbarch *gdbarch);
304extern void set_gdbarch_num_pseudo_regs (struct gdbarch *gdbarch, int num_pseudo_regs);
0aba1244 305
175ff332
HZ
306/* Assemble agent expression bytecode to collect pseudo-register REG.
307 Return -1 if something goes wrong, 0 otherwise. */
308
309extern int gdbarch_ax_pseudo_register_collect_p (struct gdbarch *gdbarch);
310
311typedef int (gdbarch_ax_pseudo_register_collect_ftype) (struct gdbarch *gdbarch, struct agent_expr *ax, int reg);
312extern int gdbarch_ax_pseudo_register_collect (struct gdbarch *gdbarch, struct agent_expr *ax, int reg);
313extern void set_gdbarch_ax_pseudo_register_collect (struct gdbarch *gdbarch, gdbarch_ax_pseudo_register_collect_ftype *ax_pseudo_register_collect);
314
315/* Assemble agent expression bytecode to push the value of pseudo-register
316 REG on the interpreter stack.
317 Return -1 if something goes wrong, 0 otherwise. */
318
319extern int gdbarch_ax_pseudo_register_push_stack_p (struct gdbarch *gdbarch);
320
321typedef int (gdbarch_ax_pseudo_register_push_stack_ftype) (struct gdbarch *gdbarch, struct agent_expr *ax, int reg);
322extern int gdbarch_ax_pseudo_register_push_stack (struct gdbarch *gdbarch, struct agent_expr *ax, int reg);
323extern void set_gdbarch_ax_pseudo_register_push_stack (struct gdbarch *gdbarch, gdbarch_ax_pseudo_register_push_stack_ftype *ax_pseudo_register_push_stack);
324
012b3a21
WT
325/* Some targets/architectures can do extra processing/display of
326 segmentation faults. E.g., Intel MPX boundary faults.
327 Call the architecture dependent function to handle the fault.
328 UIOUT is the output stream where the handler will place information. */
329
330extern int gdbarch_handle_segmentation_fault_p (struct gdbarch *gdbarch);
331
332typedef void (gdbarch_handle_segmentation_fault_ftype) (struct gdbarch *gdbarch, struct ui_out *uiout);
333extern void gdbarch_handle_segmentation_fault (struct gdbarch *gdbarch, struct ui_out *uiout);
334extern void set_gdbarch_handle_segmentation_fault (struct gdbarch *gdbarch, gdbarch_handle_segmentation_fault_ftype *handle_segmentation_fault);
335
c2169756
AC
336/* GDB's standard (or well known) register numbers. These can map onto
337 a real register or a pseudo (computed) register or not be defined at
a9e5fdc2 338 all (-1).
3e8c568d 339 gdbarch_sp_regnum will hopefully be replaced by UNWIND_SP. */
1200cd6e 340
104c1213
JM
341extern int gdbarch_sp_regnum (struct gdbarch *gdbarch);
342extern void set_gdbarch_sp_regnum (struct gdbarch *gdbarch, int sp_regnum);
0f71a2f6 343
104c1213
JM
344extern int gdbarch_pc_regnum (struct gdbarch *gdbarch);
345extern void set_gdbarch_pc_regnum (struct gdbarch *gdbarch, int pc_regnum);
0f71a2f6 346
c2169756
AC
347extern int gdbarch_ps_regnum (struct gdbarch *gdbarch);
348extern void set_gdbarch_ps_regnum (struct gdbarch *gdbarch, int ps_regnum);
c2169756 349
60054393
MS
350extern int gdbarch_fp0_regnum (struct gdbarch *gdbarch);
351extern void set_gdbarch_fp0_regnum (struct gdbarch *gdbarch, int fp0_regnum);
60054393 352
88c72b7d
AC
353/* Convert stab register number (from `r' declaration) to a gdb REGNUM. */
354
d3f73121 355typedef int (gdbarch_stab_reg_to_regnum_ftype) (struct gdbarch *gdbarch, int stab_regnr);
88c72b7d
AC
356extern int gdbarch_stab_reg_to_regnum (struct gdbarch *gdbarch, int stab_regnr);
357extern void set_gdbarch_stab_reg_to_regnum (struct gdbarch *gdbarch, gdbarch_stab_reg_to_regnum_ftype *stab_reg_to_regnum);
88c72b7d
AC
358
359/* Provide a default mapping from a ecoff register number to a gdb REGNUM. */
360
d3f73121 361typedef int (gdbarch_ecoff_reg_to_regnum_ftype) (struct gdbarch *gdbarch, int ecoff_regnr);
88c72b7d
AC
362extern int gdbarch_ecoff_reg_to_regnum (struct gdbarch *gdbarch, int ecoff_regnr);
363extern void set_gdbarch_ecoff_reg_to_regnum (struct gdbarch *gdbarch, gdbarch_ecoff_reg_to_regnum_ftype *ecoff_reg_to_regnum);
88c72b7d 364
77949794 365/* Convert from an sdb register number to an internal gdb register number. */
88c72b7d 366
d3f73121 367typedef int (gdbarch_sdb_reg_to_regnum_ftype) (struct gdbarch *gdbarch, int sdb_regnr);
88c72b7d
AC
368extern int gdbarch_sdb_reg_to_regnum (struct gdbarch *gdbarch, int sdb_regnr);
369extern void set_gdbarch_sdb_reg_to_regnum (struct gdbarch *gdbarch, gdbarch_sdb_reg_to_regnum_ftype *sdb_reg_to_regnum);
88c72b7d 370
0fde2c53
DE
371/* Provide a default mapping from a DWARF2 register number to a gdb REGNUM.
372 Return -1 for bad REGNUM. Note: Several targets get this wrong. */
ba2b1c56 373
d3f73121 374typedef int (gdbarch_dwarf2_reg_to_regnum_ftype) (struct gdbarch *gdbarch, int dwarf2_regnr);
88c72b7d
AC
375extern int gdbarch_dwarf2_reg_to_regnum (struct gdbarch *gdbarch, int dwarf2_regnr);
376extern void set_gdbarch_dwarf2_reg_to_regnum (struct gdbarch *gdbarch, gdbarch_dwarf2_reg_to_regnum_ftype *dwarf2_reg_to_regnum);
88c72b7d 377
d93859e2 378typedef const char * (gdbarch_register_name_ftype) (struct gdbarch *gdbarch, int regnr);
fa88f677 379extern const char * gdbarch_register_name (struct gdbarch *gdbarch, int regnr);
104c1213 380extern void set_gdbarch_register_name (struct gdbarch *gdbarch, gdbarch_register_name_ftype *register_name);
0f71a2f6 381
7b9ee6a8
DJ
382/* Return the type of a register specified by the architecture. Only
383 the register cache should call this function directly; others should
384 use "register_type". */
9c04cab7
AC
385
386extern int gdbarch_register_type_p (struct gdbarch *gdbarch);
387
388typedef struct type * (gdbarch_register_type_ftype) (struct gdbarch *gdbarch, int reg_nr);
389extern struct type * gdbarch_register_type (struct gdbarch *gdbarch, int reg_nr);
390extern void set_gdbarch_register_type (struct gdbarch *gdbarch, gdbarch_register_type_ftype *register_type);
391
8bcb5208
AB
392/* Generate a dummy frame_id for THIS_FRAME assuming that the frame is
393 a dummy frame. A dummy frame is created before an inferior call,
394 the frame_id returned here must match the frame_id that was built
395 for the inferior call. Usually this means the returned frame_id's
396 stack address should match the address returned by
397 gdbarch_push_dummy_call, and the returned frame_id's code address
398 should match the address at which the breakpoint was set in the dummy
399 frame. */
f3be58bc 400
669fac23
DJ
401typedef struct frame_id (gdbarch_dummy_id_ftype) (struct gdbarch *gdbarch, struct frame_info *this_frame);
402extern struct frame_id gdbarch_dummy_id (struct gdbarch *gdbarch, struct frame_info *this_frame);
403extern void set_gdbarch_dummy_id (struct gdbarch *gdbarch, gdbarch_dummy_id_ftype *dummy_id);
f3be58bc 404
669fac23 405/* Implement DUMMY_ID and PUSH_DUMMY_CALL, then delete
064f5156 406 deprecated_fp_regnum. */
f3be58bc 407
f3be58bc
AC
408extern int gdbarch_deprecated_fp_regnum (struct gdbarch *gdbarch);
409extern void set_gdbarch_deprecated_fp_regnum (struct gdbarch *gdbarch, int deprecated_fp_regnum);
f3be58bc 410
b8de8283
AC
411extern int gdbarch_push_dummy_call_p (struct gdbarch *gdbarch);
412
cf84fa6b
AH
413typedef CORE_ADDR (gdbarch_push_dummy_call_ftype) (struct gdbarch *gdbarch, struct value *function, struct regcache *regcache, CORE_ADDR bp_addr, int nargs, struct value **args, CORE_ADDR sp, function_call_return_method return_method, CORE_ADDR struct_addr);
414extern CORE_ADDR gdbarch_push_dummy_call (struct gdbarch *gdbarch, struct value *function, struct regcache *regcache, CORE_ADDR bp_addr, int nargs, struct value **args, CORE_ADDR sp, function_call_return_method return_method, CORE_ADDR struct_addr);
b8de8283
AC
415extern void set_gdbarch_push_dummy_call (struct gdbarch *gdbarch, gdbarch_push_dummy_call_ftype *push_dummy_call);
416
b8de8283
AC
417extern int gdbarch_call_dummy_location (struct gdbarch *gdbarch);
418extern void set_gdbarch_call_dummy_location (struct gdbarch *gdbarch, int call_dummy_location);
b8de8283 419
b8de8283
AC
420extern int gdbarch_push_dummy_code_p (struct gdbarch *gdbarch);
421
82585c72
UW
422typedef CORE_ADDR (gdbarch_push_dummy_code_ftype) (struct gdbarch *gdbarch, CORE_ADDR sp, CORE_ADDR funaddr, struct value **args, int nargs, struct type *value_type, CORE_ADDR *real_pc, CORE_ADDR *bp_addr, struct regcache *regcache);
423extern CORE_ADDR gdbarch_push_dummy_code (struct gdbarch *gdbarch, CORE_ADDR sp, CORE_ADDR funaddr, struct value **args, int nargs, struct type *value_type, CORE_ADDR *real_pc, CORE_ADDR *bp_addr, struct regcache *regcache);
b8de8283
AC
424extern void set_gdbarch_push_dummy_code (struct gdbarch *gdbarch, gdbarch_push_dummy_code_ftype *push_dummy_code);
425
7eb89530
YQ
426/* Return true if the code of FRAME is writable. */
427
428typedef int (gdbarch_code_of_frame_writable_ftype) (struct gdbarch *gdbarch, struct frame_info *frame);
429extern int gdbarch_code_of_frame_writable (struct gdbarch *gdbarch, struct frame_info *frame);
430extern void set_gdbarch_code_of_frame_writable (struct gdbarch *gdbarch, gdbarch_code_of_frame_writable_ftype *code_of_frame_writable);
431
0ab7a791
AC
432typedef void (gdbarch_print_registers_info_ftype) (struct gdbarch *gdbarch, struct ui_file *file, struct frame_info *frame, int regnum, int all);
433extern void gdbarch_print_registers_info (struct gdbarch *gdbarch, struct ui_file *file, struct frame_info *frame, int regnum, int all);
434extern void set_gdbarch_print_registers_info (struct gdbarch *gdbarch, gdbarch_print_registers_info_ftype *print_registers_info);
435
23e3a7ac
AC
436typedef void (gdbarch_print_float_info_ftype) (struct gdbarch *gdbarch, struct ui_file *file, struct frame_info *frame, const char *args);
437extern void gdbarch_print_float_info (struct gdbarch *gdbarch, struct ui_file *file, struct frame_info *frame, const char *args);
5e74b15c 438extern void set_gdbarch_print_float_info (struct gdbarch *gdbarch, gdbarch_print_float_info_ftype *print_float_info);
5e74b15c 439
e76f1f2e
AC
440extern int gdbarch_print_vector_info_p (struct gdbarch *gdbarch);
441
442typedef void (gdbarch_print_vector_info_ftype) (struct gdbarch *gdbarch, struct ui_file *file, struct frame_info *frame, const char *args);
443extern void gdbarch_print_vector_info (struct gdbarch *gdbarch, struct ui_file *file, struct frame_info *frame, const char *args);
444extern void set_gdbarch_print_vector_info (struct gdbarch *gdbarch, gdbarch_print_vector_info_ftype *print_vector_info);
445
7c7651b2
AC
446/* MAP a GDB RAW register number onto a simulator register number. See
447 also include/...-sim.h. */
448
e7faf938 449typedef int (gdbarch_register_sim_regno_ftype) (struct gdbarch *gdbarch, int reg_nr);
7c7651b2
AC
450extern int gdbarch_register_sim_regno (struct gdbarch *gdbarch, int reg_nr);
451extern void set_gdbarch_register_sim_regno (struct gdbarch *gdbarch, gdbarch_register_sim_regno_ftype *register_sim_regno);
7c7651b2 452
64a3914f 453typedef int (gdbarch_cannot_fetch_register_ftype) (struct gdbarch *gdbarch, int regnum);
01fb7433
AC
454extern int gdbarch_cannot_fetch_register (struct gdbarch *gdbarch, int regnum);
455extern void set_gdbarch_cannot_fetch_register (struct gdbarch *gdbarch, gdbarch_cannot_fetch_register_ftype *cannot_fetch_register);
01fb7433 456
64a3914f 457typedef int (gdbarch_cannot_store_register_ftype) (struct gdbarch *gdbarch, int regnum);
01fb7433
AC
458extern int gdbarch_cannot_store_register (struct gdbarch *gdbarch, int regnum);
459extern void set_gdbarch_cannot_store_register (struct gdbarch *gdbarch, gdbarch_cannot_store_register_ftype *cannot_store_register);
01fb7433 460
eade6471
JB
461/* Determine the address where a longjmp will land and save this address
462 in PC. Return nonzero on success.
463
464 FRAME corresponds to the longjmp frame. */
9df628e0 465
9df628e0 466extern int gdbarch_get_longjmp_target_p (struct gdbarch *gdbarch);
0f71a2f6 467
60ade65d
UW
468typedef int (gdbarch_get_longjmp_target_ftype) (struct frame_info *frame, CORE_ADDR *pc);
469extern int gdbarch_get_longjmp_target (struct gdbarch *gdbarch, struct frame_info *frame, CORE_ADDR *pc);
b8de8283 470extern void set_gdbarch_get_longjmp_target (struct gdbarch *gdbarch, gdbarch_get_longjmp_target_ftype *get_longjmp_target);
0f71a2f6 471
104c1213
JM
472extern int gdbarch_believe_pcc_promotion (struct gdbarch *gdbarch);
473extern void set_gdbarch_believe_pcc_promotion (struct gdbarch *gdbarch, int believe_pcc_promotion);
0f71a2f6 474
0abe36f5 475typedef int (gdbarch_convert_register_p_ftype) (struct gdbarch *gdbarch, int regnum, struct type *type);
ff2e87ac 476extern int gdbarch_convert_register_p (struct gdbarch *gdbarch, int regnum, struct type *type);
13d01224 477extern void set_gdbarch_convert_register_p (struct gdbarch *gdbarch, gdbarch_convert_register_p_ftype *convert_register_p);
13d01224 478
8dccd430
PA
479typedef int (gdbarch_register_to_value_ftype) (struct frame_info *frame, int regnum, struct type *type, gdb_byte *buf, int *optimizedp, int *unavailablep);
480extern int gdbarch_register_to_value (struct gdbarch *gdbarch, struct frame_info *frame, int regnum, struct type *type, gdb_byte *buf, int *optimizedp, int *unavailablep);
13d01224 481extern void set_gdbarch_register_to_value (struct gdbarch *gdbarch, gdbarch_register_to_value_ftype *register_to_value);
13d01224 482
b60c417a
AC
483typedef void (gdbarch_value_to_register_ftype) (struct frame_info *frame, int regnum, struct type *type, const gdb_byte *buf);
484extern void gdbarch_value_to_register (struct gdbarch *gdbarch, struct frame_info *frame, int regnum, struct type *type, const gdb_byte *buf);
13d01224 485extern void set_gdbarch_value_to_register (struct gdbarch *gdbarch, gdbarch_value_to_register_ftype *value_to_register);
13d01224 486
9acbedc0 487/* Construct a value representing the contents of register REGNUM in
2ed3c037 488 frame FRAME_ID, interpreted as type TYPE. The routine needs to
9acbedc0
UW
489 allocate and return a struct value with all value attributes
490 (but not the value contents) filled in. */
491
2ed3c037
UW
492typedef struct value * (gdbarch_value_from_register_ftype) (struct gdbarch *gdbarch, struct type *type, int regnum, struct frame_id frame_id);
493extern struct value * gdbarch_value_from_register (struct gdbarch *gdbarch, struct type *type, int regnum, struct frame_id frame_id);
9acbedc0
UW
494extern void set_gdbarch_value_from_register (struct gdbarch *gdbarch, gdbarch_value_from_register_ftype *value_from_register);
495
9898f801 496typedef CORE_ADDR (gdbarch_pointer_to_address_ftype) (struct gdbarch *gdbarch, struct type *type, const gdb_byte *buf);
b60c417a 497extern CORE_ADDR gdbarch_pointer_to_address (struct gdbarch *gdbarch, struct type *type, const gdb_byte *buf);
4478b372 498extern void set_gdbarch_pointer_to_address (struct gdbarch *gdbarch, gdbarch_pointer_to_address_ftype *pointer_to_address);
33489c5b 499
9898f801 500typedef void (gdbarch_address_to_pointer_ftype) (struct gdbarch *gdbarch, struct type *type, gdb_byte *buf, CORE_ADDR addr);
b60c417a 501extern void gdbarch_address_to_pointer (struct gdbarch *gdbarch, struct type *type, gdb_byte *buf, CORE_ADDR addr);
4478b372 502extern void set_gdbarch_address_to_pointer (struct gdbarch *gdbarch, gdbarch_address_to_pointer_ftype *address_to_pointer);
33489c5b 503
fc0c74b1 504extern int gdbarch_integer_to_address_p (struct gdbarch *gdbarch);
fc0c74b1 505
fc1a4b47
AC
506typedef CORE_ADDR (gdbarch_integer_to_address_ftype) (struct gdbarch *gdbarch, struct type *type, const gdb_byte *buf);
507extern CORE_ADDR gdbarch_integer_to_address (struct gdbarch *gdbarch, struct type *type, const gdb_byte *buf);
fc0c74b1 508extern void set_gdbarch_integer_to_address (struct gdbarch *gdbarch, gdbarch_integer_to_address_ftype *integer_to_address);
fc0c74b1 509
6a3a010b
MR
510/* Return the return-value convention that will be used by FUNCTION
511 to return a value of type VALTYPE. FUNCTION may be NULL in which
ea42b34a
JB
512 case the return convention is computed based only on VALTYPE.
513
514 If READBUF is not NULL, extract the return value and save it in this buffer.
515
516 If WRITEBUF is not NULL, it contains a return value which will be
517 stored into the appropriate register. This can be used when we want
518 to force the value returned by a function (see the "return" command
519 for instance). */
92ad9cd9
AC
520
521extern int gdbarch_return_value_p (struct gdbarch *gdbarch);
522
6a3a010b
MR
523typedef enum return_value_convention (gdbarch_return_value_ftype) (struct gdbarch *gdbarch, struct value *function, struct type *valtype, struct regcache *regcache, gdb_byte *readbuf, const gdb_byte *writebuf);
524extern enum return_value_convention gdbarch_return_value (struct gdbarch *gdbarch, struct value *function, struct type *valtype, struct regcache *regcache, gdb_byte *readbuf, const gdb_byte *writebuf);
92ad9cd9
AC
525extern void set_gdbarch_return_value (struct gdbarch *gdbarch, gdbarch_return_value_ftype *return_value);
526
18648a37
YQ
527/* Return true if the return value of function is stored in the first hidden
528 parameter. In theory, this feature should be language-dependent, specified
529 by language and its ABI, such as C++. Unfortunately, compiler may
530 implement it to a target-dependent feature. So that we need such hook here
531 to be aware of this in GDB. */
532
533typedef int (gdbarch_return_in_first_hidden_param_p_ftype) (struct gdbarch *gdbarch, struct type *type);
534extern int gdbarch_return_in_first_hidden_param_p (struct gdbarch *gdbarch, struct type *type);
535extern void set_gdbarch_return_in_first_hidden_param_p (struct gdbarch *gdbarch, gdbarch_return_in_first_hidden_param_p_ftype *return_in_first_hidden_param_p);
536
6093d2eb 537typedef CORE_ADDR (gdbarch_skip_prologue_ftype) (struct gdbarch *gdbarch, CORE_ADDR ip);
104c1213
JM
538extern CORE_ADDR gdbarch_skip_prologue (struct gdbarch *gdbarch, CORE_ADDR ip);
539extern void set_gdbarch_skip_prologue (struct gdbarch *gdbarch, gdbarch_skip_prologue_ftype *skip_prologue);
0f71a2f6 540
4309257c
PM
541extern int gdbarch_skip_main_prologue_p (struct gdbarch *gdbarch);
542
543typedef CORE_ADDR (gdbarch_skip_main_prologue_ftype) (struct gdbarch *gdbarch, CORE_ADDR ip);
544extern CORE_ADDR gdbarch_skip_main_prologue (struct gdbarch *gdbarch, CORE_ADDR ip);
545extern void set_gdbarch_skip_main_prologue (struct gdbarch *gdbarch, gdbarch_skip_main_prologue_ftype *skip_main_prologue);
546
591a12a1
UW
547/* On some platforms, a single function may provide multiple entry points,
548 e.g. one that is used for function-pointer calls and a different one
549 that is used for direct function calls.
550 In order to ensure that breakpoints set on the function will trigger
551 no matter via which entry point the function is entered, a platform
552 may provide the skip_entrypoint callback. It is called with IP set
553 to the main entry point of a function (as determined by the symbol table),
554 and should return the address of the innermost entry point, where the
555 actual breakpoint needs to be set. Note that skip_entrypoint is used
556 by GDB common code even when debugging optimized code, where skip_prologue
557 is not used. */
558
559extern int gdbarch_skip_entrypoint_p (struct gdbarch *gdbarch);
560
561typedef CORE_ADDR (gdbarch_skip_entrypoint_ftype) (struct gdbarch *gdbarch, CORE_ADDR ip);
562extern CORE_ADDR gdbarch_skip_entrypoint (struct gdbarch *gdbarch, CORE_ADDR ip);
563extern void set_gdbarch_skip_entrypoint (struct gdbarch *gdbarch, gdbarch_skip_entrypoint_ftype *skip_entrypoint);
564
104c1213
JM
565typedef int (gdbarch_inner_than_ftype) (CORE_ADDR lhs, CORE_ADDR rhs);
566extern int gdbarch_inner_than (struct gdbarch *gdbarch, CORE_ADDR lhs, CORE_ADDR rhs);
567extern void set_gdbarch_inner_than (struct gdbarch *gdbarch, gdbarch_inner_than_ftype *inner_than);
0f71a2f6 568
67d57894 569typedef const gdb_byte * (gdbarch_breakpoint_from_pc_ftype) (struct gdbarch *gdbarch, CORE_ADDR *pcptr, int *lenptr);
fc1a4b47 570extern const gdb_byte * gdbarch_breakpoint_from_pc (struct gdbarch *gdbarch, CORE_ADDR *pcptr, int *lenptr);
104c1213 571extern void set_gdbarch_breakpoint_from_pc (struct gdbarch *gdbarch, gdbarch_breakpoint_from_pc_ftype *breakpoint_from_pc);
33489c5b 572
cd6c3b4f
YQ
573/* Return the breakpoint kind for this target based on *PCPTR. */
574
575typedef int (gdbarch_breakpoint_kind_from_pc_ftype) (struct gdbarch *gdbarch, CORE_ADDR *pcptr);
576extern int gdbarch_breakpoint_kind_from_pc (struct gdbarch *gdbarch, CORE_ADDR *pcptr);
577extern void set_gdbarch_breakpoint_kind_from_pc (struct gdbarch *gdbarch, gdbarch_breakpoint_kind_from_pc_ftype *breakpoint_kind_from_pc);
578
579/* Return the software breakpoint from KIND. KIND can have target
580 specific meaning like the Z0 kind parameter.
581 SIZE is set to the software breakpoint's length in memory. */
582
583typedef const gdb_byte * (gdbarch_sw_breakpoint_from_kind_ftype) (struct gdbarch *gdbarch, int kind, int *size);
584extern const gdb_byte * gdbarch_sw_breakpoint_from_kind (struct gdbarch *gdbarch, int kind, int *size);
585extern void set_gdbarch_sw_breakpoint_from_kind (struct gdbarch *gdbarch, gdbarch_sw_breakpoint_from_kind_ftype *sw_breakpoint_from_kind);
586
833b7ab5
YQ
587/* Return the breakpoint kind for this target based on the current
588 processor state (e.g. the current instruction mode on ARM) and the
589 *PCPTR. In default, it is gdbarch->breakpoint_kind_from_pc. */
590
591typedef int (gdbarch_breakpoint_kind_from_current_state_ftype) (struct gdbarch *gdbarch, struct regcache *regcache, CORE_ADDR *pcptr);
592extern int gdbarch_breakpoint_kind_from_current_state (struct gdbarch *gdbarch, struct regcache *regcache, CORE_ADDR *pcptr);
593extern void set_gdbarch_breakpoint_kind_from_current_state (struct gdbarch *gdbarch, gdbarch_breakpoint_kind_from_current_state_ftype *breakpoint_kind_from_current_state);
594
a1131521
KB
595extern int gdbarch_adjust_breakpoint_address_p (struct gdbarch *gdbarch);
596
597typedef CORE_ADDR (gdbarch_adjust_breakpoint_address_ftype) (struct gdbarch *gdbarch, CORE_ADDR bpaddr);
598extern CORE_ADDR gdbarch_adjust_breakpoint_address (struct gdbarch *gdbarch, CORE_ADDR bpaddr);
599extern void set_gdbarch_adjust_breakpoint_address (struct gdbarch *gdbarch, gdbarch_adjust_breakpoint_address_ftype *adjust_breakpoint_address);
600
ae4b2284 601typedef int (gdbarch_memory_insert_breakpoint_ftype) (struct gdbarch *gdbarch, struct bp_target_info *bp_tgt);
8181d85f 602extern int gdbarch_memory_insert_breakpoint (struct gdbarch *gdbarch, struct bp_target_info *bp_tgt);
917317f4 603extern void set_gdbarch_memory_insert_breakpoint (struct gdbarch *gdbarch, gdbarch_memory_insert_breakpoint_ftype *memory_insert_breakpoint);
33489c5b 604
ae4b2284 605typedef int (gdbarch_memory_remove_breakpoint_ftype) (struct gdbarch *gdbarch, struct bp_target_info *bp_tgt);
8181d85f 606extern int gdbarch_memory_remove_breakpoint (struct gdbarch *gdbarch, struct bp_target_info *bp_tgt);
917317f4 607extern void set_gdbarch_memory_remove_breakpoint (struct gdbarch *gdbarch, gdbarch_memory_remove_breakpoint_ftype *memory_remove_breakpoint);
917317f4 608
104c1213
JM
609extern CORE_ADDR gdbarch_decr_pc_after_break (struct gdbarch *gdbarch);
610extern void set_gdbarch_decr_pc_after_break (struct gdbarch *gdbarch, CORE_ADDR decr_pc_after_break);
0f71a2f6 611
782263ab
AC
612/* A function can be addressed by either it's "pointer" (possibly a
613 descriptor address) or "entry point" (first executable instruction).
614 The method "convert_from_func_ptr_addr" converting the former to the
cbf3b44a 615 latter. gdbarch_deprecated_function_start_offset is being used to implement
782263ab
AC
616 a simplified subset of that functionality - the function's address
617 corresponds to the "function pointer" and the function's start
618 corresponds to the "function entry point" - and hence is redundant. */
619
620extern CORE_ADDR gdbarch_deprecated_function_start_offset (struct gdbarch *gdbarch);
621extern void set_gdbarch_deprecated_function_start_offset (struct gdbarch *gdbarch, CORE_ADDR deprecated_function_start_offset);
0f71a2f6 622
123dc839
DJ
623/* Return the remote protocol register number associated with this
624 register. Normally the identity mapping. */
625
626typedef int (gdbarch_remote_register_number_ftype) (struct gdbarch *gdbarch, int regno);
627extern int gdbarch_remote_register_number (struct gdbarch *gdbarch, int regno);
628extern void set_gdbarch_remote_register_number (struct gdbarch *gdbarch, gdbarch_remote_register_number_ftype *remote_register_number);
629
b2756930
KB
630/* Fetch the target specific address used to represent a load module. */
631
b2756930 632extern int gdbarch_fetch_tls_load_module_address_p (struct gdbarch *gdbarch);
b2756930
KB
633
634typedef CORE_ADDR (gdbarch_fetch_tls_load_module_address_ftype) (struct objfile *objfile);
635extern CORE_ADDR gdbarch_fetch_tls_load_module_address (struct gdbarch *gdbarch, struct objfile *objfile);
636extern void set_gdbarch_fetch_tls_load_module_address (struct gdbarch *gdbarch, gdbarch_fetch_tls_load_module_address_ftype *fetch_tls_load_module_address);
b2756930 637
6e056c81
JB
638/* Return the thread-local address at OFFSET in the thread-local
639 storage for the thread PTID and the shared library or executable
640 file given by LM_ADDR. If that block of thread-local storage hasn't
641 been allocated yet, this function may throw an error. LM_ADDR may
642 be zero for statically linked multithreaded inferiors. */
643
644extern int gdbarch_get_thread_local_address_p (struct gdbarch *gdbarch);
645
646typedef CORE_ADDR (gdbarch_get_thread_local_address_ftype) (struct gdbarch *gdbarch, ptid_t ptid, CORE_ADDR lm_addr, CORE_ADDR offset);
647extern CORE_ADDR gdbarch_get_thread_local_address (struct gdbarch *gdbarch, ptid_t ptid, CORE_ADDR lm_addr, CORE_ADDR offset);
648extern void set_gdbarch_get_thread_local_address (struct gdbarch *gdbarch, gdbarch_get_thread_local_address_ftype *get_thread_local_address);
649
104c1213
JM
650extern CORE_ADDR gdbarch_frame_args_skip (struct gdbarch *gdbarch);
651extern void set_gdbarch_frame_args_skip (struct gdbarch *gdbarch, CORE_ADDR frame_args_skip);
0f71a2f6 652
12cc2063
AC
653typedef CORE_ADDR (gdbarch_unwind_pc_ftype) (struct gdbarch *gdbarch, struct frame_info *next_frame);
654extern CORE_ADDR gdbarch_unwind_pc (struct gdbarch *gdbarch, struct frame_info *next_frame);
655extern void set_gdbarch_unwind_pc (struct gdbarch *gdbarch, gdbarch_unwind_pc_ftype *unwind_pc);
656
a9e5fdc2
AC
657typedef CORE_ADDR (gdbarch_unwind_sp_ftype) (struct gdbarch *gdbarch, struct frame_info *next_frame);
658extern CORE_ADDR gdbarch_unwind_sp (struct gdbarch *gdbarch, struct frame_info *next_frame);
659extern void set_gdbarch_unwind_sp (struct gdbarch *gdbarch, gdbarch_unwind_sp_ftype *unwind_sp);
660
42efa47a
AC
661/* DEPRECATED_FRAME_LOCALS_ADDRESS as been replaced by the per-frame
662 frame-base. Enable frame-base before frame-unwind. */
663
983a287a 664extern int gdbarch_frame_num_args_p (struct gdbarch *gdbarch);
983a287a 665
104c1213
JM
666typedef int (gdbarch_frame_num_args_ftype) (struct frame_info *frame);
667extern int gdbarch_frame_num_args (struct gdbarch *gdbarch, struct frame_info *frame);
668extern void set_gdbarch_frame_num_args (struct gdbarch *gdbarch, gdbarch_frame_num_args_ftype *frame_num_args);
0f71a2f6 669
dc604539
AC
670extern int gdbarch_frame_align_p (struct gdbarch *gdbarch);
671
672typedef CORE_ADDR (gdbarch_frame_align_ftype) (struct gdbarch *gdbarch, CORE_ADDR address);
673extern CORE_ADDR gdbarch_frame_align (struct gdbarch *gdbarch, CORE_ADDR address);
674extern void set_gdbarch_frame_align (struct gdbarch *gdbarch, gdbarch_frame_align_ftype *frame_align);
675
192cb3d4
MK
676typedef int (gdbarch_stabs_argument_has_addr_ftype) (struct gdbarch *gdbarch, struct type *type);
677extern int gdbarch_stabs_argument_has_addr (struct gdbarch *gdbarch, struct type *type);
678extern void set_gdbarch_stabs_argument_has_addr (struct gdbarch *gdbarch, gdbarch_stabs_argument_has_addr_ftype *stabs_argument_has_addr);
679
8b148df9
AC
680extern int gdbarch_frame_red_zone_size (struct gdbarch *gdbarch);
681extern void set_gdbarch_frame_red_zone_size (struct gdbarch *gdbarch, int frame_red_zone_size);
8b148df9 682
e2d0e7eb
AC
683typedef CORE_ADDR (gdbarch_convert_from_func_ptr_addr_ftype) (struct gdbarch *gdbarch, CORE_ADDR addr, struct target_ops *targ);
684extern CORE_ADDR gdbarch_convert_from_func_ptr_addr (struct gdbarch *gdbarch, CORE_ADDR addr, struct target_ops *targ);
f517ea4e 685extern void set_gdbarch_convert_from_func_ptr_addr (struct gdbarch *gdbarch, gdbarch_convert_from_func_ptr_addr_ftype *convert_from_func_ptr_addr);
f517ea4e 686
875e1767
AC
687/* On some machines there are bits in addresses which are not really
688 part of the address, but are used by the kernel, the hardware, etc.
bf6ae464 689 for special purposes. gdbarch_addr_bits_remove takes out any such bits so
875e1767
AC
690 we get a "real" address such as one would find in a symbol table.
691 This is used only for addresses of instructions, and even then I'm
692 not sure it's used in all contexts. It exists to deal with there
693 being a few stray bits in the PC which would mislead us, not as some
694 sort of generic thing to handle alignment or segmentation (it's
695 possible it should be in TARGET_READ_PC instead). */
696
24568a2c 697typedef CORE_ADDR (gdbarch_addr_bits_remove_ftype) (struct gdbarch *gdbarch, CORE_ADDR addr);
875e1767
AC
698extern CORE_ADDR gdbarch_addr_bits_remove (struct gdbarch *gdbarch, CORE_ADDR addr);
699extern void set_gdbarch_addr_bits_remove (struct gdbarch *gdbarch, gdbarch_addr_bits_remove_ftype *addr_bits_remove);
875e1767 700
a738ea1d
YQ
701/* On some machines, not all bits of an address word are significant.
702 For example, on AArch64, the top bits of an address known as the "tag"
703 are ignored by the kernel, the hardware, etc. and can be regarded as
704 additional data associated with the address. */
705
706extern int gdbarch_significant_addr_bit (struct gdbarch *gdbarch);
707extern void set_gdbarch_significant_addr_bit (struct gdbarch *gdbarch, int significant_addr_bit);
708
e6590a1b
UW
709/* FIXME/cagney/2001-01-18: This should be split in two. A target method that
710 indicates if the target needs software single step. An ISA method to
711 implement it.
64c4637f 712
e6590a1b
UW
713 FIXME/cagney/2001-01-18: The logic is backwards. It should be asking if the
714 target can single step. If not, then implement single step using breakpoints.
715
93f9a11f
YQ
716 Return a vector of addresses on which the software single step
717 breakpoints should be inserted. NULL means software single step is
718 not used.
719 Multiple breakpoints may be inserted for some instructions such as
720 conditional branch. However, each implementation must always evaluate
721 the condition and only put the breakpoint at the branch destination if
722 the condition is true, so that we ensure forward progress when stepping
723 past a conditional branch to self. */
64c4637f 724
64c4637f 725extern int gdbarch_software_single_step_p (struct gdbarch *gdbarch);
64c4637f 726
a0ff9e1a
SM
727typedef std::vector<CORE_ADDR> (gdbarch_software_single_step_ftype) (struct regcache *regcache);
728extern std::vector<CORE_ADDR> gdbarch_software_single_step (struct gdbarch *gdbarch, struct regcache *regcache);
64c4637f 729extern void set_gdbarch_software_single_step (struct gdbarch *gdbarch, gdbarch_software_single_step_ftype *software_single_step);
64c4637f 730
3352ef37
AC
731/* Return non-zero if the processor is executing a delay slot and a
732 further single-step is needed before the instruction finishes. */
733
734extern int gdbarch_single_step_through_delay_p (struct gdbarch *gdbarch);
735
736typedef int (gdbarch_single_step_through_delay_ftype) (struct gdbarch *gdbarch, struct frame_info *frame);
737extern int gdbarch_single_step_through_delay (struct gdbarch *gdbarch, struct frame_info *frame);
738extern void set_gdbarch_single_step_through_delay (struct gdbarch *gdbarch, gdbarch_single_step_through_delay_ftype *single_step_through_delay);
739
f6c40618 740/* FIXME: cagney/2003-08-28: Need to find a better way of selecting the
b2fa5097 741 disassembler. Perhaps objdump can handle it? */
f6c40618 742
a89aa300
AC
743typedef int (gdbarch_print_insn_ftype) (bfd_vma vma, struct disassemble_info *info);
744extern int gdbarch_print_insn (struct gdbarch *gdbarch, bfd_vma vma, struct disassemble_info *info);
2bf0cb65 745extern void set_gdbarch_print_insn (struct gdbarch *gdbarch, gdbarch_print_insn_ftype *print_insn);
2bf0cb65 746
52f729a7
UW
747typedef CORE_ADDR (gdbarch_skip_trampoline_code_ftype) (struct frame_info *frame, CORE_ADDR pc);
748extern CORE_ADDR gdbarch_skip_trampoline_code (struct gdbarch *gdbarch, struct frame_info *frame, CORE_ADDR pc);
bdcd319a 749extern void set_gdbarch_skip_trampoline_code (struct gdbarch *gdbarch, gdbarch_skip_trampoline_code_ftype *skip_trampoline_code);
bdcd319a 750
cfd8ab24 751/* If in_solib_dynsym_resolve_code() returns true, and SKIP_SOLIB_RESOLVER
dea0c52f
MK
752 evaluates non-zero, this is the address where the debugger will place
753 a step-resume breakpoint to get us past the dynamic linker. */
754
4c8c40e6 755typedef CORE_ADDR (gdbarch_skip_solib_resolver_ftype) (struct gdbarch *gdbarch, CORE_ADDR pc);
dea0c52f
MK
756extern CORE_ADDR gdbarch_skip_solib_resolver (struct gdbarch *gdbarch, CORE_ADDR pc);
757extern void set_gdbarch_skip_solib_resolver (struct gdbarch *gdbarch, gdbarch_skip_solib_resolver_ftype *skip_solib_resolver);
dea0c52f 758
d50355b6
MS
759/* Some systems also have trampoline code for returning from shared libs. */
760
2c02bd72
DE
761typedef int (gdbarch_in_solib_return_trampoline_ftype) (struct gdbarch *gdbarch, CORE_ADDR pc, const char *name);
762extern int gdbarch_in_solib_return_trampoline (struct gdbarch *gdbarch, CORE_ADDR pc, const char *name);
d50355b6 763extern void set_gdbarch_in_solib_return_trampoline (struct gdbarch *gdbarch, gdbarch_in_solib_return_trampoline_ftype *in_solib_return_trampoline);
d50355b6 764
1d509aa6
MM
765/* Return true if PC lies inside an indirect branch thunk. */
766
767typedef bool (gdbarch_in_indirect_branch_thunk_ftype) (struct gdbarch *gdbarch, CORE_ADDR pc);
768extern bool gdbarch_in_indirect_branch_thunk (struct gdbarch *gdbarch, CORE_ADDR pc);
769extern void set_gdbarch_in_indirect_branch_thunk (struct gdbarch *gdbarch, gdbarch_in_indirect_branch_thunk_ftype *in_indirect_branch_thunk);
770
c12260ac
CV
771/* A target might have problems with watchpoints as soon as the stack
772 frame of the current function has been destroyed. This mostly happens
c9cf6e20 773 as the first action in a function's epilogue. stack_frame_destroyed_p()
c12260ac
CV
774 is defined to return a non-zero value if either the given addr is one
775 instruction after the stack destroying instruction up to the trailing
776 return instruction or if we can figure out that the stack frame has
777 already been invalidated regardless of the value of addr. Targets
778 which don't suffer from that problem could just let this functionality
779 untouched. */
780
c9cf6e20
MG
781typedef int (gdbarch_stack_frame_destroyed_p_ftype) (struct gdbarch *gdbarch, CORE_ADDR addr);
782extern int gdbarch_stack_frame_destroyed_p (struct gdbarch *gdbarch, CORE_ADDR addr);
783extern void set_gdbarch_stack_frame_destroyed_p (struct gdbarch *gdbarch, gdbarch_stack_frame_destroyed_p_ftype *stack_frame_destroyed_p);
c12260ac 784
3e29f34a
MR
785/* Process an ELF symbol in the minimal symbol table in a backend-specific
786 way. Normally this hook is supposed to do nothing, however if required,
787 then this hook can be used to apply tranformations to symbols that are
788 considered special in some way. For example the MIPS backend uses it
789 to interpret `st_other' information to mark compressed code symbols so
790 that they can be treated in the appropriate manner in the processing of
791 the main symbol table and DWARF-2 records. */
792
793extern int gdbarch_elf_make_msymbol_special_p (struct gdbarch *gdbarch);
794
a2cf933a
EZ
795typedef void (gdbarch_elf_make_msymbol_special_ftype) (asymbol *sym, struct minimal_symbol *msym);
796extern void gdbarch_elf_make_msymbol_special (struct gdbarch *gdbarch, asymbol *sym, struct minimal_symbol *msym);
797extern void set_gdbarch_elf_make_msymbol_special (struct gdbarch *gdbarch, gdbarch_elf_make_msymbol_special_ftype *elf_make_msymbol_special);
a2cf933a 798
a2cf933a
EZ
799typedef void (gdbarch_coff_make_msymbol_special_ftype) (int val, struct minimal_symbol *msym);
800extern void gdbarch_coff_make_msymbol_special (struct gdbarch *gdbarch, int val, struct minimal_symbol *msym);
801extern void set_gdbarch_coff_make_msymbol_special (struct gdbarch *gdbarch, gdbarch_coff_make_msymbol_special_ftype *coff_make_msymbol_special);
a2cf933a 802
3e29f34a
MR
803/* Process a symbol in the main symbol table in a backend-specific way.
804 Normally this hook is supposed to do nothing, however if required,
805 then this hook can be used to apply tranformations to symbols that
806 are considered special in some way. This is currently used by the
807 MIPS backend to make sure compressed code symbols have the ISA bit
808 set. This in turn is needed for symbol values seen in GDB to match
809 the values used at the runtime by the program itself, for function
810 and label references. */
811
812typedef void (gdbarch_make_symbol_special_ftype) (struct symbol *sym, struct objfile *objfile);
813extern void gdbarch_make_symbol_special (struct gdbarch *gdbarch, struct symbol *sym, struct objfile *objfile);
814extern void set_gdbarch_make_symbol_special (struct gdbarch *gdbarch, gdbarch_make_symbol_special_ftype *make_symbol_special);
815
816/* Adjust the address retrieved from a DWARF-2 record other than a line
817 entry in a backend-specific way. Normally this hook is supposed to
818 return the address passed unchanged, however if that is incorrect for
819 any reason, then this hook can be used to fix the address up in the
820 required manner. This is currently used by the MIPS backend to make
821 sure addresses in FDE, range records, etc. referring to compressed
822 code have the ISA bit set, matching line information and the symbol
823 table. */
824
825typedef CORE_ADDR (gdbarch_adjust_dwarf2_addr_ftype) (CORE_ADDR pc);
826extern CORE_ADDR gdbarch_adjust_dwarf2_addr (struct gdbarch *gdbarch, CORE_ADDR pc);
827extern void set_gdbarch_adjust_dwarf2_addr (struct gdbarch *gdbarch, gdbarch_adjust_dwarf2_addr_ftype *adjust_dwarf2_addr);
828
829/* Adjust the address updated by a line entry in a backend-specific way.
830 Normally this hook is supposed to return the address passed unchanged,
831 however in the case of inconsistencies in these records, this hook can
832 be used to fix them up in the required manner. This is currently used
833 by the MIPS backend to make sure all line addresses in compressed code
834 are presented with the ISA bit set, which is not always the case. This
835 in turn ensures breakpoint addresses are correctly matched against the
836 stop PC. */
837
838typedef CORE_ADDR (gdbarch_adjust_dwarf2_line_ftype) (CORE_ADDR addr, int rel);
839extern CORE_ADDR gdbarch_adjust_dwarf2_line (struct gdbarch *gdbarch, CORE_ADDR addr, int rel);
840extern void set_gdbarch_adjust_dwarf2_line (struct gdbarch *gdbarch, gdbarch_adjust_dwarf2_line_ftype *adjust_dwarf2_line);
841
c4ed33b9
AC
842extern int gdbarch_cannot_step_breakpoint (struct gdbarch *gdbarch);
843extern void set_gdbarch_cannot_step_breakpoint (struct gdbarch *gdbarch, int cannot_step_breakpoint);
c4ed33b9 844
0c888588
PA
845/* See comment in target.h about continuable, steppable and
846 non-steppable watchpoints. */
7ea65f08 847
f74fa174
MM
848extern int gdbarch_have_nonsteppable_watchpoint (struct gdbarch *gdbarch);
849extern void set_gdbarch_have_nonsteppable_watchpoint (struct gdbarch *gdbarch, int have_nonsteppable_watchpoint);
f74fa174 850
8b2dbe47 851extern int gdbarch_address_class_type_flags_p (struct gdbarch *gdbarch);
8b2dbe47 852
8b2dbe47
KB
853typedef int (gdbarch_address_class_type_flags_ftype) (int byte_size, int dwarf2_addr_class);
854extern int gdbarch_address_class_type_flags (struct gdbarch *gdbarch, int byte_size, int dwarf2_addr_class);
855extern void set_gdbarch_address_class_type_flags (struct gdbarch *gdbarch, gdbarch_address_class_type_flags_ftype *address_class_type_flags);
8b2dbe47 856
8b2dbe47 857extern int gdbarch_address_class_type_flags_to_name_p (struct gdbarch *gdbarch);
8b2dbe47 858
321432c0
KB
859typedef const char * (gdbarch_address_class_type_flags_to_name_ftype) (struct gdbarch *gdbarch, int type_flags);
860extern const char * gdbarch_address_class_type_flags_to_name (struct gdbarch *gdbarch, int type_flags);
8b2dbe47 861extern void set_gdbarch_address_class_type_flags_to_name (struct gdbarch *gdbarch, gdbarch_address_class_type_flags_to_name_ftype *address_class_type_flags_to_name);
8b2dbe47 862
b41c5a85
JW
863/* Execute vendor-specific DWARF Call Frame Instruction. OP is the instruction.
864 FS are passed from the generic execute_cfa_program function. */
865
866typedef bool (gdbarch_execute_dwarf_cfa_vendor_op_ftype) (struct gdbarch *gdbarch, gdb_byte op, struct dwarf2_frame_state *fs);
867extern bool gdbarch_execute_dwarf_cfa_vendor_op (struct gdbarch *gdbarch, gdb_byte op, struct dwarf2_frame_state *fs);
868extern void set_gdbarch_execute_dwarf_cfa_vendor_op (struct gdbarch *gdbarch, gdbarch_execute_dwarf_cfa_vendor_op_ftype *execute_dwarf_cfa_vendor_op);
869
69f97648
SM
870/* Return the appropriate type_flags for the supplied address class.
871 This function should return 1 if the address class was recognized and
872 type_flags was set, zero otherwise. */
873
8b2dbe47 874extern int gdbarch_address_class_name_to_type_flags_p (struct gdbarch *gdbarch);
8b2dbe47 875
321432c0
KB
876typedef int (gdbarch_address_class_name_to_type_flags_ftype) (struct gdbarch *gdbarch, const char *name, int *type_flags_ptr);
877extern int gdbarch_address_class_name_to_type_flags (struct gdbarch *gdbarch, const char *name, int *type_flags_ptr);
8b2dbe47 878extern void set_gdbarch_address_class_name_to_type_flags (struct gdbarch *gdbarch, gdbarch_address_class_name_to_type_flags_ftype *address_class_name_to_type_flags);
8b2dbe47 879
b59ff9d5
AC
880/* Is a register in a group */
881
882typedef int (gdbarch_register_reggroup_p_ftype) (struct gdbarch *gdbarch, int regnum, struct reggroup *reggroup);
883extern int gdbarch_register_reggroup_p (struct gdbarch *gdbarch, int regnum, struct reggroup *reggroup);
884extern void set_gdbarch_register_reggroup_p (struct gdbarch *gdbarch, gdbarch_register_reggroup_p_ftype *register_reggroup_p);
885
2e092625 886/* Fetch the pointer to the ith function argument. */
143985b7 887
143985b7 888extern int gdbarch_fetch_pointer_argument_p (struct gdbarch *gdbarch);
143985b7 889
143985b7
AF
890typedef CORE_ADDR (gdbarch_fetch_pointer_argument_ftype) (struct frame_info *frame, int argi, struct type *type);
891extern CORE_ADDR gdbarch_fetch_pointer_argument (struct gdbarch *gdbarch, struct frame_info *frame, int argi, struct type *type);
892extern void set_gdbarch_fetch_pointer_argument (struct gdbarch *gdbarch, gdbarch_fetch_pointer_argument_ftype *fetch_pointer_argument);
143985b7 893
5aa82d05
AA
894/* Iterate over all supported register notes in a core file. For each
895 supported register note section, the iterator must call CB and pass
896 CB_DATA unchanged. If REGCACHE is not NULL, the iterator can limit
897 the supported register note sections based on the current register
898 values. Otherwise it should enumerate all supported register note
899 sections. */
900
901extern int gdbarch_iterate_over_regset_sections_p (struct gdbarch *gdbarch);
17ea7499 902
5aa82d05
AA
903typedef void (gdbarch_iterate_over_regset_sections_ftype) (struct gdbarch *gdbarch, iterate_over_regset_sections_cb *cb, void *cb_data, const struct regcache *regcache);
904extern void gdbarch_iterate_over_regset_sections (struct gdbarch *gdbarch, iterate_over_regset_sections_cb *cb, void *cb_data, const struct regcache *regcache);
905extern void set_gdbarch_iterate_over_regset_sections (struct gdbarch *gdbarch, gdbarch_iterate_over_regset_sections_ftype *iterate_over_regset_sections);
17ea7499 906
6432734d
UW
907/* Create core file notes */
908
909extern int gdbarch_make_corefile_notes_p (struct gdbarch *gdbarch);
910
911typedef char * (gdbarch_make_corefile_notes_ftype) (struct gdbarch *gdbarch, bfd *obfd, int *note_size);
912extern char * gdbarch_make_corefile_notes (struct gdbarch *gdbarch, bfd *obfd, int *note_size);
913extern void set_gdbarch_make_corefile_notes (struct gdbarch *gdbarch, gdbarch_make_corefile_notes_ftype *make_corefile_notes);
914
35c2fab7
UW
915/* Find core file memory regions */
916
917extern int gdbarch_find_memory_regions_p (struct gdbarch *gdbarch);
918
919typedef int (gdbarch_find_memory_regions_ftype) (struct gdbarch *gdbarch, find_memory_region_ftype func, void *data);
920extern int gdbarch_find_memory_regions (struct gdbarch *gdbarch, find_memory_region_ftype func, void *data);
921extern void set_gdbarch_find_memory_regions (struct gdbarch *gdbarch, gdbarch_find_memory_regions_ftype *find_memory_regions);
922
de584861 923/* Read offset OFFSET of TARGET_OBJECT_LIBRARIES formatted shared libraries list from
c09f20e4
YQ
924 core file into buffer READBUF with length LEN. Return the number of bytes read
925 (zero indicates failure).
926 failed, otherwise, return the red length of READBUF. */
de584861
PA
927
928extern int gdbarch_core_xfer_shared_libraries_p (struct gdbarch *gdbarch);
929
c09f20e4
YQ
930typedef ULONGEST (gdbarch_core_xfer_shared_libraries_ftype) (struct gdbarch *gdbarch, gdb_byte *readbuf, ULONGEST offset, ULONGEST len);
931extern ULONGEST gdbarch_core_xfer_shared_libraries (struct gdbarch *gdbarch, gdb_byte *readbuf, ULONGEST offset, ULONGEST len);
de584861
PA
932extern void set_gdbarch_core_xfer_shared_libraries (struct gdbarch *gdbarch, gdbarch_core_xfer_shared_libraries_ftype *core_xfer_shared_libraries);
933
356a5233 934/* Read offset OFFSET of TARGET_OBJECT_LIBRARIES_AIX formatted shared
c09f20e4
YQ
935 libraries list from core file into buffer READBUF with length LEN.
936 Return the number of bytes read (zero indicates failure). */
356a5233
JB
937
938extern int gdbarch_core_xfer_shared_libraries_aix_p (struct gdbarch *gdbarch);
939
c09f20e4
YQ
940typedef ULONGEST (gdbarch_core_xfer_shared_libraries_aix_ftype) (struct gdbarch *gdbarch, gdb_byte *readbuf, ULONGEST offset, ULONGEST len);
941extern ULONGEST gdbarch_core_xfer_shared_libraries_aix (struct gdbarch *gdbarch, gdb_byte *readbuf, ULONGEST offset, ULONGEST len);
356a5233
JB
942extern void set_gdbarch_core_xfer_shared_libraries_aix (struct gdbarch *gdbarch, gdbarch_core_xfer_shared_libraries_aix_ftype *core_xfer_shared_libraries_aix);
943
c0edd9ed 944/* How the core target converts a PTID from a core file to a string. */
28439f5e
PA
945
946extern int gdbarch_core_pid_to_str_p (struct gdbarch *gdbarch);
947
a068643d
TT
948typedef std::string (gdbarch_core_pid_to_str_ftype) (struct gdbarch *gdbarch, ptid_t ptid);
949extern std::string gdbarch_core_pid_to_str (struct gdbarch *gdbarch, ptid_t ptid);
28439f5e
PA
950extern void set_gdbarch_core_pid_to_str (struct gdbarch *gdbarch, gdbarch_core_pid_to_str_ftype *core_pid_to_str);
951
4dfc5dbc
JB
952/* How the core target extracts the name of a thread from a core file. */
953
954extern int gdbarch_core_thread_name_p (struct gdbarch *gdbarch);
955
956typedef const char * (gdbarch_core_thread_name_ftype) (struct gdbarch *gdbarch, struct thread_info *thr);
957extern const char * gdbarch_core_thread_name (struct gdbarch *gdbarch, struct thread_info *thr);
958extern void set_gdbarch_core_thread_name (struct gdbarch *gdbarch, gdbarch_core_thread_name_ftype *core_thread_name);
959
382b69bb
JB
960/* Read offset OFFSET of TARGET_OBJECT_SIGNAL_INFO signal information
961 from core file into buffer READBUF with length LEN. Return the number
962 of bytes read (zero indicates EOF, a negative value indicates failure). */
963
964extern int gdbarch_core_xfer_siginfo_p (struct gdbarch *gdbarch);
965
966typedef LONGEST (gdbarch_core_xfer_siginfo_ftype) (struct gdbarch *gdbarch, gdb_byte *readbuf, ULONGEST offset, ULONGEST len);
967extern LONGEST gdbarch_core_xfer_siginfo (struct gdbarch *gdbarch, gdb_byte *readbuf, ULONGEST offset, ULONGEST len);
968extern void set_gdbarch_core_xfer_siginfo (struct gdbarch *gdbarch, gdbarch_core_xfer_siginfo_ftype *core_xfer_siginfo);
969
a78c2d62
UW
970/* BFD target to use when generating a core file. */
971
972extern int gdbarch_gcore_bfd_target_p (struct gdbarch *gdbarch);
973
974extern const char * gdbarch_gcore_bfd_target (struct gdbarch *gdbarch);
975extern void set_gdbarch_gcore_bfd_target (struct gdbarch *gdbarch, const char * gcore_bfd_target);
976
0d5de010
DJ
977/* If the elements of C++ vtables are in-place function descriptors rather
978 than normal function pointers (which may point to code or a descriptor),
979 set this to one. */
980
981extern int gdbarch_vtable_function_descriptors (struct gdbarch *gdbarch);
982extern void set_gdbarch_vtable_function_descriptors (struct gdbarch *gdbarch, int vtable_function_descriptors);
983
984/* Set if the least significant bit of the delta is used instead of the least
985 significant bit of the pfn for pointers to virtual member functions. */
986
987extern int gdbarch_vbit_in_delta (struct gdbarch *gdbarch);
988extern void set_gdbarch_vbit_in_delta (struct gdbarch *gdbarch, int vbit_in_delta);
989
6d350bb5
UW
990/* Advance PC to next instruction in order to skip a permanent breakpoint. */
991
6d350bb5
UW
992typedef void (gdbarch_skip_permanent_breakpoint_ftype) (struct regcache *regcache);
993extern void gdbarch_skip_permanent_breakpoint (struct gdbarch *gdbarch, struct regcache *regcache);
994extern void set_gdbarch_skip_permanent_breakpoint (struct gdbarch *gdbarch, gdbarch_skip_permanent_breakpoint_ftype *skip_permanent_breakpoint);
995
1668ae25 996/* The maximum length of an instruction on this architecture in bytes. */
237fc4c9
PA
997
998extern int gdbarch_max_insn_length_p (struct gdbarch *gdbarch);
999
1000extern ULONGEST gdbarch_max_insn_length (struct gdbarch *gdbarch);
1001extern void set_gdbarch_max_insn_length (struct gdbarch *gdbarch, ULONGEST max_insn_length);
1002
1003/* Copy the instruction at FROM to TO, and make any adjustments
1004 necessary to single-step it at that address.
1005
1006 REGS holds the state the thread's registers will have before
1007 executing the copied instruction; the PC in REGS will refer to FROM,
1008 not the copy at TO. The caller should update it to point at TO later.
1009
1010 Return a pointer to data of the architecture's choice to be passed
1011 to gdbarch_displaced_step_fixup. Or, return NULL to indicate that
1012 the instruction's effects have been completely simulated, with the
1013 resulting state written back to REGS.
1014
1015 For a general explanation of displaced stepping and how GDB uses it,
1016 see the comments in infrun.c.
1017
1018 The TO area is only guaranteed to have space for
1019 gdbarch_max_insn_length (arch) bytes, so this function must not
1020 write more bytes than that to that area.
1021
1022 If you do not provide this function, GDB assumes that the
1023 architecture does not support displaced stepping.
1024
7f03bd92
PA
1025 If the instruction cannot execute out of line, return NULL. The
1026 core falls back to stepping past the instruction in-line instead in
1027 that case. */
237fc4c9
PA
1028
1029extern int gdbarch_displaced_step_copy_insn_p (struct gdbarch *gdbarch);
1030
588de28a
SM
1031typedef displaced_step_copy_insn_closure_up (gdbarch_displaced_step_copy_insn_ftype) (struct gdbarch *gdbarch, CORE_ADDR from, CORE_ADDR to, struct regcache *regs);
1032extern displaced_step_copy_insn_closure_up gdbarch_displaced_step_copy_insn (struct gdbarch *gdbarch, CORE_ADDR from, CORE_ADDR to, struct regcache *regs);
237fc4c9
PA
1033extern void set_gdbarch_displaced_step_copy_insn (struct gdbarch *gdbarch, gdbarch_displaced_step_copy_insn_ftype *displaced_step_copy_insn);
1034
99e40580
UW
1035/* Return true if GDB should use hardware single-stepping to execute
1036 the displaced instruction identified by CLOSURE. If false,
1037 GDB will simply restart execution at the displaced instruction
1038 location, and it is up to the target to ensure GDB will receive
1039 control again (e.g. by placing a software breakpoint instruction
1040 into the displaced instruction buffer).
1041
1042 The default implementation returns false on all targets that
1043 provide a gdbarch_software_single_step routine, and true otherwise. */
1044
588de28a
SM
1045typedef int (gdbarch_displaced_step_hw_singlestep_ftype) (struct gdbarch *gdbarch, struct displaced_step_copy_insn_closure *closure);
1046extern int gdbarch_displaced_step_hw_singlestep (struct gdbarch *gdbarch, struct displaced_step_copy_insn_closure *closure);
99e40580
UW
1047extern void set_gdbarch_displaced_step_hw_singlestep (struct gdbarch *gdbarch, gdbarch_displaced_step_hw_singlestep_ftype *displaced_step_hw_singlestep);
1048
237fc4c9
PA
1049/* Fix up the state resulting from successfully single-stepping a
1050 displaced instruction, to give the result we would have gotten from
1051 stepping the instruction in its original location.
1052
1053 REGS is the register state resulting from single-stepping the
1054 displaced instruction.
1055
1056 CLOSURE is the result from the matching call to
1057 gdbarch_displaced_step_copy_insn.
1058
1059 If you provide gdbarch_displaced_step_copy_insn.but not this
1060 function, then GDB assumes that no fixup is needed after
1061 single-stepping the instruction.
1062
1063 For a general explanation of displaced stepping and how GDB uses it,
1064 see the comments in infrun.c. */
1065
1066extern int gdbarch_displaced_step_fixup_p (struct gdbarch *gdbarch);
1067
588de28a
SM
1068typedef void (gdbarch_displaced_step_fixup_ftype) (struct gdbarch *gdbarch, struct displaced_step_copy_insn_closure *closure, CORE_ADDR from, CORE_ADDR to, struct regcache *regs);
1069extern void gdbarch_displaced_step_fixup (struct gdbarch *gdbarch, struct displaced_step_copy_insn_closure *closure, CORE_ADDR from, CORE_ADDR to, struct regcache *regs);
237fc4c9
PA
1070extern void set_gdbarch_displaced_step_fixup (struct gdbarch *gdbarch, gdbarch_displaced_step_fixup_ftype *displaced_step_fixup);
1071
237fc4c9
PA
1072/* Return the address of an appropriate place to put displaced
1073 instructions while we step over them. There need only be one such
1074 place, since we're only stepping one thread over a breakpoint at a
1075 time.
1076
1077 For a general explanation of displaced stepping and how GDB uses it,
e088209c
SM
1078 see the comments in infrun.c.
1079 m;CORE_ADDR;displaced_step_location;thread_info *;thread;;NULL;;(! gdbarch->displaced_step_location) != (! gdbarch->displaced_step_copy_insn)
1080 m;CORE_ADDR;displaced_step_release_location;CORE_ADDR;addr;;NULL;;(! gdbarch->displaced_step_location) != (! gdbarch->displaced_step_copy_insn) */
1081
1082typedef displaced_step_prepare_status (gdbarch_displaced_step_prepare_ftype) (struct gdbarch *gdbarch, thread_info *thread);
1083extern displaced_step_prepare_status gdbarch_displaced_step_prepare (struct gdbarch *gdbarch, thread_info *thread);
1084extern void set_gdbarch_displaced_step_prepare (struct gdbarch *gdbarch, gdbarch_displaced_step_prepare_ftype *displaced_step_prepare);
237fc4c9 1085
e088209c
SM
1086typedef displaced_step_finish_status (gdbarch_displaced_step_finish_ftype) (struct gdbarch *gdbarch, thread_info *thread, gdb_signal sig);
1087extern displaced_step_finish_status gdbarch_displaced_step_finish (struct gdbarch *gdbarch, thread_info *thread, gdb_signal sig);
1088extern void set_gdbarch_displaced_step_finish (struct gdbarch *gdbarch, gdbarch_displaced_step_finish_ftype *displaced_step_finish);
237fc4c9 1089
dde08ee1
PA
1090/* Relocate an instruction to execute at a different address. OLDLOC
1091 is the address in the inferior memory where the instruction to
1092 relocate is currently at. On input, TO points to the destination
1093 where we want the instruction to be copied (and possibly adjusted)
1094 to. On output, it points to one past the end of the resulting
1095 instruction(s). The effect of executing the instruction at TO shall
1096 be the same as if executing it at FROM. For example, call
1097 instructions that implicitly push the return address on the stack
1098 should be adjusted to return to the instruction after OLDLOC;
1099 relative branches, and other PC-relative instructions need the
1100 offset adjusted; etc. */
1101
1102extern int gdbarch_relocate_instruction_p (struct gdbarch *gdbarch);
1103
1104typedef void (gdbarch_relocate_instruction_ftype) (struct gdbarch *gdbarch, CORE_ADDR *to, CORE_ADDR from);
1105extern void gdbarch_relocate_instruction (struct gdbarch *gdbarch, CORE_ADDR *to, CORE_ADDR from);
1106extern void set_gdbarch_relocate_instruction (struct gdbarch *gdbarch, gdbarch_relocate_instruction_ftype *relocate_instruction);
1107
1c772458
UW
1108/* Refresh overlay mapped state for section OSECT. */
1109
1110extern int gdbarch_overlay_update_p (struct gdbarch *gdbarch);
1111
1112typedef void (gdbarch_overlay_update_ftype) (struct obj_section *osect);
1113extern void gdbarch_overlay_update (struct gdbarch *gdbarch, struct obj_section *osect);
1114extern void set_gdbarch_overlay_update (struct gdbarch *gdbarch, gdbarch_overlay_update_ftype *overlay_update);
1115
4eb0ad19
DJ
1116extern int gdbarch_core_read_description_p (struct gdbarch *gdbarch);
1117
1118typedef const struct target_desc * (gdbarch_core_read_description_ftype) (struct gdbarch *gdbarch, struct target_ops *target, bfd *abfd);
1119extern const struct target_desc * gdbarch_core_read_description (struct gdbarch *gdbarch, struct target_ops *target, bfd *abfd);
1120extern void set_gdbarch_core_read_description (struct gdbarch *gdbarch, gdbarch_core_read_description_ftype *core_read_description);
1121
149ad273
UW
1122/* Handle special encoding of static variables in stabs debug info. */
1123
1124extern int gdbarch_static_transform_name_p (struct gdbarch *gdbarch);
1125
0d5cff50
DE
1126typedef const char * (gdbarch_static_transform_name_ftype) (const char *name);
1127extern const char * gdbarch_static_transform_name (struct gdbarch *gdbarch, const char *name);
149ad273
UW
1128extern void set_gdbarch_static_transform_name (struct gdbarch *gdbarch, gdbarch_static_transform_name_ftype *static_transform_name);
1129
203c3895
UW
1130/* Set if the address in N_SO or N_FUN stabs may be zero. */
1131
1132extern int gdbarch_sofun_address_maybe_missing (struct gdbarch *gdbarch);
1133extern void set_gdbarch_sofun_address_maybe_missing (struct gdbarch *gdbarch, int sofun_address_maybe_missing);
1134
0508c3ec
HZ
1135/* Parse the instruction at ADDR storing in the record execution log
1136 the registers REGCACHE and memory ranges that will be affected when
1137 the instruction executes, along with their current values.
1138 Return -1 if something goes wrong, 0 otherwise. */
1139
1140extern int gdbarch_process_record_p (struct gdbarch *gdbarch);
1141
1142typedef int (gdbarch_process_record_ftype) (struct gdbarch *gdbarch, struct regcache *regcache, CORE_ADDR addr);
1143extern int gdbarch_process_record (struct gdbarch *gdbarch, struct regcache *regcache, CORE_ADDR addr);
1144extern void set_gdbarch_process_record (struct gdbarch *gdbarch, gdbarch_process_record_ftype *process_record);
3846b520
HZ
1145
1146/* Save process state after a signal.
1147 Return -1 if something goes wrong, 0 otherwise. */
1148
1149extern int gdbarch_process_record_signal_p (struct gdbarch *gdbarch);
1150
2ea28649
PA
1151typedef int (gdbarch_process_record_signal_ftype) (struct gdbarch *gdbarch, struct regcache *regcache, enum gdb_signal signal);
1152extern int gdbarch_process_record_signal (struct gdbarch *gdbarch, struct regcache *regcache, enum gdb_signal signal);
3846b520 1153extern void set_gdbarch_process_record_signal (struct gdbarch *gdbarch, gdbarch_process_record_signal_ftype *process_record_signal);
0508c3ec 1154
22203bbf 1155/* Signal translation: translate inferior's signal (target's) number
86b49880
PA
1156 into GDB's representation. The implementation of this method must
1157 be host independent. IOW, don't rely on symbols of the NAT_FILE
1158 header (the nm-*.h files), the host <signal.h> header, or similar
1159 headers. This is mainly used when cross-debugging core files ---
1160 "Live" targets hide the translation behind the target interface
1f8cf220
PA
1161 (target_wait, target_resume, etc.). */
1162
1163extern int gdbarch_gdb_signal_from_target_p (struct gdbarch *gdbarch);
22203bbf
PA
1164
1165typedef enum gdb_signal (gdbarch_gdb_signal_from_target_ftype) (struct gdbarch *gdbarch, int signo);
1166extern enum gdb_signal gdbarch_gdb_signal_from_target (struct gdbarch *gdbarch, int signo);
1167extern void set_gdbarch_gdb_signal_from_target (struct gdbarch *gdbarch, gdbarch_gdb_signal_from_target_ftype *gdb_signal_from_target);
1cded358 1168
eb14d406
SDJ
1169/* Signal translation: translate the GDB's internal signal number into
1170 the inferior's signal (target's) representation. The implementation
1171 of this method must be host independent. IOW, don't rely on symbols
1172 of the NAT_FILE header (the nm-*.h files), the host <signal.h>
1173 header, or similar headers.
1174 Return the target signal number if found, or -1 if the GDB internal
1175 signal number is invalid. */
1176
1177extern int gdbarch_gdb_signal_to_target_p (struct gdbarch *gdbarch);
1178
1179typedef int (gdbarch_gdb_signal_to_target_ftype) (struct gdbarch *gdbarch, enum gdb_signal signal);
1180extern int gdbarch_gdb_signal_to_target (struct gdbarch *gdbarch, enum gdb_signal signal);
1181extern void set_gdbarch_gdb_signal_to_target (struct gdbarch *gdbarch, gdbarch_gdb_signal_to_target_ftype *gdb_signal_to_target);
1182
4aa995e1 1183/* Extra signal info inspection.
959b8724 1184
4aa995e1
PA
1185 Return a type suitable to inspect extra signal information. */
1186
1187extern int gdbarch_get_siginfo_type_p (struct gdbarch *gdbarch);
1188
1189typedef struct type * (gdbarch_get_siginfo_type_ftype) (struct gdbarch *gdbarch);
1190extern struct type * gdbarch_get_siginfo_type (struct gdbarch *gdbarch);
1191extern void set_gdbarch_get_siginfo_type (struct gdbarch *gdbarch, gdbarch_get_siginfo_type_ftype *get_siginfo_type);
1192
60c5725c
DJ
1193/* Record architecture-specific information from the symbol table. */
1194
1195extern int gdbarch_record_special_symbol_p (struct gdbarch *gdbarch);
1196
1197typedef void (gdbarch_record_special_symbol_ftype) (struct gdbarch *gdbarch, struct objfile *objfile, asymbol *sym);
1198extern void gdbarch_record_special_symbol (struct gdbarch *gdbarch, struct objfile *objfile, asymbol *sym);
1199extern void set_gdbarch_record_special_symbol (struct gdbarch *gdbarch, gdbarch_record_special_symbol_ftype *record_special_symbol);
1200
a96d9b2e
SDJ
1201/* Function for the 'catch syscall' feature.
1202 Get architecture-specific system calls information from registers. */
1203
1204extern int gdbarch_get_syscall_number_p (struct gdbarch *gdbarch);
1205
00431a78
PA
1206typedef LONGEST (gdbarch_get_syscall_number_ftype) (struct gdbarch *gdbarch, thread_info *thread);
1207extern LONGEST gdbarch_get_syscall_number (struct gdbarch *gdbarch, thread_info *thread);
a96d9b2e
SDJ
1208extern void set_gdbarch_get_syscall_number (struct gdbarch *gdbarch, gdbarch_get_syscall_number_ftype *get_syscall_number);
1209
458c8db8
SDJ
1210/* The filename of the XML syscall for this architecture. */
1211
1212extern const char * gdbarch_xml_syscall_file (struct gdbarch *gdbarch);
1213extern void set_gdbarch_xml_syscall_file (struct gdbarch *gdbarch, const char * xml_syscall_file);
1214
1215/* Information about system calls from this architecture */
1216
1217extern struct syscalls_info * gdbarch_syscalls_info (struct gdbarch *gdbarch);
1218extern void set_gdbarch_syscalls_info (struct gdbarch *gdbarch, struct syscalls_info * syscalls_info);
1219
55aa24fb 1220/* SystemTap related fields and functions.
05c0465e
SDJ
1221 A NULL-terminated array of prefixes used to mark an integer constant
1222 on the architecture's assembly.
55aa24fb
SDJ
1223 For example, on x86 integer constants are written as:
1224
1225 $10 ;; integer constant 10
1226
1227 in this case, this prefix would be the character `$'. */
1228
05c0465e
SDJ
1229extern const char *const * gdbarch_stap_integer_prefixes (struct gdbarch *gdbarch);
1230extern void set_gdbarch_stap_integer_prefixes (struct gdbarch *gdbarch, const char *const * stap_integer_prefixes);
55aa24fb 1231
05c0465e
SDJ
1232/* A NULL-terminated array of suffixes used to mark an integer constant
1233 on the architecture's assembly. */
55aa24fb 1234
05c0465e
SDJ
1235extern const char *const * gdbarch_stap_integer_suffixes (struct gdbarch *gdbarch);
1236extern void set_gdbarch_stap_integer_suffixes (struct gdbarch *gdbarch, const char *const * stap_integer_suffixes);
55aa24fb 1237
05c0465e
SDJ
1238/* A NULL-terminated array of prefixes used to mark a register name on
1239 the architecture's assembly.
55aa24fb
SDJ
1240 For example, on x86 the register name is written as:
1241
1242 %eax ;; register eax
1243
1244 in this case, this prefix would be the character `%'. */
1245
05c0465e
SDJ
1246extern const char *const * gdbarch_stap_register_prefixes (struct gdbarch *gdbarch);
1247extern void set_gdbarch_stap_register_prefixes (struct gdbarch *gdbarch, const char *const * stap_register_prefixes);
55aa24fb 1248
05c0465e
SDJ
1249/* A NULL-terminated array of suffixes used to mark a register name on
1250 the architecture's assembly. */
55aa24fb 1251
05c0465e
SDJ
1252extern const char *const * gdbarch_stap_register_suffixes (struct gdbarch *gdbarch);
1253extern void set_gdbarch_stap_register_suffixes (struct gdbarch *gdbarch, const char *const * stap_register_suffixes);
55aa24fb 1254
05c0465e
SDJ
1255/* A NULL-terminated array of prefixes used to mark a register
1256 indirection on the architecture's assembly.
55aa24fb
SDJ
1257 For example, on x86 the register indirection is written as:
1258
1259 (%eax) ;; indirecting eax
1260
1261 in this case, this prefix would be the charater `('.
1262
1263 Please note that we use the indirection prefix also for register
1264 displacement, e.g., `4(%eax)' on x86. */
1265
05c0465e
SDJ
1266extern const char *const * gdbarch_stap_register_indirection_prefixes (struct gdbarch *gdbarch);
1267extern void set_gdbarch_stap_register_indirection_prefixes (struct gdbarch *gdbarch, const char *const * stap_register_indirection_prefixes);
55aa24fb 1268
05c0465e
SDJ
1269/* A NULL-terminated array of suffixes used to mark a register
1270 indirection on the architecture's assembly.
55aa24fb
SDJ
1271 For example, on x86 the register indirection is written as:
1272
1273 (%eax) ;; indirecting eax
1274
1275 in this case, this prefix would be the charater `)'.
1276
1277 Please note that we use the indirection suffix also for register
1278 displacement, e.g., `4(%eax)' on x86. */
1279
05c0465e
SDJ
1280extern const char *const * gdbarch_stap_register_indirection_suffixes (struct gdbarch *gdbarch);
1281extern void set_gdbarch_stap_register_indirection_suffixes (struct gdbarch *gdbarch, const char *const * stap_register_indirection_suffixes);
55aa24fb 1282
05c0465e 1283/* Prefix(es) used to name a register using GDB's nomenclature.
55aa24fb
SDJ
1284
1285 For example, on PPC a register is represented by a number in the assembly
1286 language (e.g., `10' is the 10th general-purpose register). However,
1287 inside GDB this same register has an `r' appended to its name, so the 10th
1288 register would be represented as `r10' internally. */
1289
1290extern const char * gdbarch_stap_gdb_register_prefix (struct gdbarch *gdbarch);
1291extern void set_gdbarch_stap_gdb_register_prefix (struct gdbarch *gdbarch, const char * stap_gdb_register_prefix);
1292
1293/* Suffix used to name a register using GDB's nomenclature. */
1294
1295extern const char * gdbarch_stap_gdb_register_suffix (struct gdbarch *gdbarch);
1296extern void set_gdbarch_stap_gdb_register_suffix (struct gdbarch *gdbarch, const char * stap_gdb_register_suffix);
1297
1298/* Check if S is a single operand.
1299
1300 Single operands can be:
1301 - Literal integers, e.g. `$10' on x86
1302 - Register access, e.g. `%eax' on x86
1303 - Register indirection, e.g. `(%eax)' on x86
1304 - Register displacement, e.g. `4(%eax)' on x86
1305
1306 This function should check for these patterns on the string
1307 and return 1 if some were found, or zero otherwise. Please try to match
1308 as much info as you can from the string, i.e., if you have to match
1309 something like `(%', do not match just the `('. */
1310
1311extern int gdbarch_stap_is_single_operand_p (struct gdbarch *gdbarch);
1312
1313typedef int (gdbarch_stap_is_single_operand_ftype) (struct gdbarch *gdbarch, const char *s);
1314extern int gdbarch_stap_is_single_operand (struct gdbarch *gdbarch, const char *s);
1315extern void set_gdbarch_stap_is_single_operand (struct gdbarch *gdbarch, gdbarch_stap_is_single_operand_ftype *stap_is_single_operand);
1316
1317/* Function used to handle a "special case" in the parser.
1318
1319 A "special case" is considered to be an unknown token, i.e., a token
1320 that the parser does not know how to parse. A good example of special
1321 case would be ARM's register displacement syntax:
1322
1323 [R0, #4] ;; displacing R0 by 4
1324
1325 Since the parser assumes that a register displacement is of the form:
1326
1327 <number> <indirection_prefix> <register_name> <indirection_suffix>
1328
1329 it means that it will not be able to recognize and parse this odd syntax.
1330 Therefore, we should add a special case function that will handle this token.
1331
1332 This function should generate the proper expression form of the expression
1333 using GDB's internal expression mechanism (e.g., `write_exp_elt_opcode'
1334 and so on). It should also return 1 if the parsing was successful, or zero
1335 if the token was not recognized as a special token (in this case, returning
1336 zero means that the special parser is deferring the parsing to the generic
1337 parser), and should advance the buffer pointer (p->arg). */
1338
1339extern int gdbarch_stap_parse_special_token_p (struct gdbarch *gdbarch);
1340
1341typedef int (gdbarch_stap_parse_special_token_ftype) (struct gdbarch *gdbarch, struct stap_parse_info *p);
1342extern int gdbarch_stap_parse_special_token (struct gdbarch *gdbarch, struct stap_parse_info *p);
1343extern void set_gdbarch_stap_parse_special_token (struct gdbarch *gdbarch, gdbarch_stap_parse_special_token_ftype *stap_parse_special_token);
1344
7d7571f0
SDJ
1345/* Perform arch-dependent adjustments to a register name.
1346
1347 In very specific situations, it may be necessary for the register
1348 name present in a SystemTap probe's argument to be handled in a
1349 special way. For example, on i386, GCC may over-optimize the
1350 register allocation and use smaller registers than necessary. In
1351 such cases, the client that is reading and evaluating the SystemTap
1352 probe (ourselves) will need to actually fetch values from the wider
1353 version of the register in question.
1354
1355 To illustrate the example, consider the following probe argument
1356 (i386):
1357
1358 4@%ax
1359
1360 This argument says that its value can be found at the %ax register,
1361 which is a 16-bit register. However, the argument's prefix says
1362 that its type is "uint32_t", which is 32-bit in size. Therefore, in
1363 this case, GDB should actually fetch the probe's value from register
1364 %eax, not %ax. In this scenario, this function would actually
1365 replace the register name from %ax to %eax.
1366
1367 The rationale for this can be found at PR breakpoints/24541. */
1368
1369extern int gdbarch_stap_adjust_register_p (struct gdbarch *gdbarch);
1370
6b78c3f8
AB
1371typedef std::string (gdbarch_stap_adjust_register_ftype) (struct gdbarch *gdbarch, struct stap_parse_info *p, const std::string &regname, int regnum);
1372extern std::string gdbarch_stap_adjust_register (struct gdbarch *gdbarch, struct stap_parse_info *p, const std::string &regname, int regnum);
7d7571f0
SDJ
1373extern void set_gdbarch_stap_adjust_register (struct gdbarch *gdbarch, gdbarch_stap_adjust_register_ftype *stap_adjust_register);
1374
8b367e17
JM
1375/* DTrace related functions.
1376 The expression to compute the NARTGth+1 argument to a DTrace USDT probe.
1377 NARG must be >= 0. */
1378
1379extern int gdbarch_dtrace_parse_probe_argument_p (struct gdbarch *gdbarch);
1380
37eedb39
TT
1381typedef void (gdbarch_dtrace_parse_probe_argument_ftype) (struct gdbarch *gdbarch, struct expr_builder *builder, int narg);
1382extern void gdbarch_dtrace_parse_probe_argument (struct gdbarch *gdbarch, struct expr_builder *builder, int narg);
8b367e17
JM
1383extern void set_gdbarch_dtrace_parse_probe_argument (struct gdbarch *gdbarch, gdbarch_dtrace_parse_probe_argument_ftype *dtrace_parse_probe_argument);
1384
1385/* True if the given ADDR does not contain the instruction sequence
1386 corresponding to a disabled DTrace is-enabled probe. */
1387
1388extern int gdbarch_dtrace_probe_is_enabled_p (struct gdbarch *gdbarch);
1389
1390typedef int (gdbarch_dtrace_probe_is_enabled_ftype) (struct gdbarch *gdbarch, CORE_ADDR addr);
1391extern int gdbarch_dtrace_probe_is_enabled (struct gdbarch *gdbarch, CORE_ADDR addr);
1392extern void set_gdbarch_dtrace_probe_is_enabled (struct gdbarch *gdbarch, gdbarch_dtrace_probe_is_enabled_ftype *dtrace_probe_is_enabled);
1393
1394/* Enable a DTrace is-enabled probe at ADDR. */
1395
1396extern int gdbarch_dtrace_enable_probe_p (struct gdbarch *gdbarch);
1397
1398typedef void (gdbarch_dtrace_enable_probe_ftype) (struct gdbarch *gdbarch, CORE_ADDR addr);
1399extern void gdbarch_dtrace_enable_probe (struct gdbarch *gdbarch, CORE_ADDR addr);
1400extern void set_gdbarch_dtrace_enable_probe (struct gdbarch *gdbarch, gdbarch_dtrace_enable_probe_ftype *dtrace_enable_probe);
1401
1402/* Disable a DTrace is-enabled probe at ADDR. */
1403
1404extern int gdbarch_dtrace_disable_probe_p (struct gdbarch *gdbarch);
1405
1406typedef void (gdbarch_dtrace_disable_probe_ftype) (struct gdbarch *gdbarch, CORE_ADDR addr);
1407extern void gdbarch_dtrace_disable_probe (struct gdbarch *gdbarch, CORE_ADDR addr);
1408extern void set_gdbarch_dtrace_disable_probe (struct gdbarch *gdbarch, gdbarch_dtrace_disable_probe_ftype *dtrace_disable_probe);
1409
50c71eaf 1410/* True if the list of shared libraries is one and only for all
9bc9e927 1411 processes, as opposed to a list of shared libraries per inferior.
2567c7d9
PA
1412 This usually means that all processes, although may or may not share
1413 an address space, will see the same set of symbols at the same
1414 addresses. */
50c71eaf
PA
1415
1416extern int gdbarch_has_global_solist (struct gdbarch *gdbarch);
1417extern void set_gdbarch_has_global_solist (struct gdbarch *gdbarch, int has_global_solist);
1418
2567c7d9
PA
1419/* On some targets, even though each inferior has its own private
1420 address space, the debug interface takes care of making breakpoints
1421 visible to all address spaces automatically. For such cases,
1422 this property should be set to true. */
1423
1424extern int gdbarch_has_global_breakpoints (struct gdbarch *gdbarch);
1425extern void set_gdbarch_has_global_breakpoints (struct gdbarch *gdbarch, int has_global_breakpoints);
1426
6c95b8df
PA
1427/* True if inferiors share an address space (e.g., uClinux). */
1428
1429typedef int (gdbarch_has_shared_address_space_ftype) (struct gdbarch *gdbarch);
1430extern int gdbarch_has_shared_address_space (struct gdbarch *gdbarch);
1431extern void set_gdbarch_has_shared_address_space (struct gdbarch *gdbarch, gdbarch_has_shared_address_space_ftype *has_shared_address_space);
1432
7a697b8d
SS
1433/* True if a fast tracepoint can be set at an address. */
1434
281d762b
TT
1435typedef int (gdbarch_fast_tracepoint_valid_at_ftype) (struct gdbarch *gdbarch, CORE_ADDR addr, std::string *msg);
1436extern int gdbarch_fast_tracepoint_valid_at (struct gdbarch *gdbarch, CORE_ADDR addr, std::string *msg);
7a697b8d
SS
1437extern void set_gdbarch_fast_tracepoint_valid_at (struct gdbarch *gdbarch, gdbarch_fast_tracepoint_valid_at_ftype *fast_tracepoint_valid_at);
1438
5f034a78
MK
1439/* Guess register state based on tracepoint location. Used for tracepoints
1440 where no registers have been collected, but there's only one location,
1441 allowing us to guess the PC value, and perhaps some other registers.
1442 On entry, regcache has all registers marked as unavailable. */
1443
1444typedef void (gdbarch_guess_tracepoint_registers_ftype) (struct gdbarch *gdbarch, struct regcache *regcache, CORE_ADDR addr);
1445extern void gdbarch_guess_tracepoint_registers (struct gdbarch *gdbarch, struct regcache *regcache, CORE_ADDR addr);
1446extern void set_gdbarch_guess_tracepoint_registers (struct gdbarch *gdbarch, gdbarch_guess_tracepoint_registers_ftype *guess_tracepoint_registers);
1447
f870a310
TT
1448/* Return the "auto" target charset. */
1449
1450typedef const char * (gdbarch_auto_charset_ftype) (void);
1451extern const char * gdbarch_auto_charset (struct gdbarch *gdbarch);
1452extern void set_gdbarch_auto_charset (struct gdbarch *gdbarch, gdbarch_auto_charset_ftype *auto_charset);
1453
1454/* Return the "auto" target wide charset. */
1455
1456typedef const char * (gdbarch_auto_wide_charset_ftype) (void);
1457extern const char * gdbarch_auto_wide_charset (struct gdbarch *gdbarch);
1458extern void set_gdbarch_auto_wide_charset (struct gdbarch *gdbarch, gdbarch_auto_wide_charset_ftype *auto_wide_charset);
1459
08105857
PA
1460/* If non-empty, this is a file extension that will be opened in place
1461 of the file extension reported by the shared library list.
1462
1463 This is most useful for toolchains that use a post-linker tool,
1464 where the names of the files run on the target differ in extension
1465 compared to the names of the files GDB should load for debug info. */
1466
1467extern const char * gdbarch_solib_symbols_extension (struct gdbarch *gdbarch);
1468extern void set_gdbarch_solib_symbols_extension (struct gdbarch *gdbarch, const char * solib_symbols_extension);
1469
1412f70b
HZ
1470/* If true, the target OS has DOS-based file system semantics. That
1471 is, absolute paths include a drive name, and the backslash is
1472 considered a directory separator. */
ab38a727
PA
1473
1474extern int gdbarch_has_dos_based_file_system (struct gdbarch *gdbarch);
1475extern void set_gdbarch_has_dos_based_file_system (struct gdbarch *gdbarch, int has_dos_based_file_system);
1476
6710bf39
SS
1477/* Generate bytecodes to collect the return address in a frame.
1478 Since the bytecodes run on the target, possibly with GDB not even
1479 connected, the full unwinding machinery is not available, and
1480 typically this function will issue bytecodes for one or more likely
1481 places that the return address may be found. */
1482
1483typedef void (gdbarch_gen_return_address_ftype) (struct gdbarch *gdbarch, struct agent_expr *ax, struct axs_value *value, CORE_ADDR scope);
1484extern void gdbarch_gen_return_address (struct gdbarch *gdbarch, struct agent_expr *ax, struct axs_value *value, CORE_ADDR scope);
1485extern void set_gdbarch_gen_return_address (struct gdbarch *gdbarch, gdbarch_gen_return_address_ftype *gen_return_address);
1486
3030c96e
UW
1487/* Implement the "info proc" command. */
1488
1489extern int gdbarch_info_proc_p (struct gdbarch *gdbarch);
1490
7bc112c1
TT
1491typedef void (gdbarch_info_proc_ftype) (struct gdbarch *gdbarch, const char *args, enum info_proc_what what);
1492extern void gdbarch_info_proc (struct gdbarch *gdbarch, const char *args, enum info_proc_what what);
3030c96e
UW
1493extern void set_gdbarch_info_proc (struct gdbarch *gdbarch, gdbarch_info_proc_ftype *info_proc);
1494
451b7c33
TT
1495/* Implement the "info proc" command for core files. Noe that there
1496 are two "info_proc"-like methods on gdbarch -- one for core files,
1497 one for live targets. */
1498
1499extern int gdbarch_core_info_proc_p (struct gdbarch *gdbarch);
1500
7bc112c1
TT
1501typedef void (gdbarch_core_info_proc_ftype) (struct gdbarch *gdbarch, const char *args, enum info_proc_what what);
1502extern void gdbarch_core_info_proc (struct gdbarch *gdbarch, const char *args, enum info_proc_what what);
451b7c33
TT
1503extern void set_gdbarch_core_info_proc (struct gdbarch *gdbarch, gdbarch_core_info_proc_ftype *core_info_proc);
1504
19630284
JB
1505/* Iterate over all objfiles in the order that makes the most sense
1506 for the architecture to make global symbol searches.
1507
1508 CB is a callback function where OBJFILE is the objfile to be searched,
1509 and CB_DATA a pointer to user-defined data (the same data that is passed
1510 when calling this gdbarch method). The iteration stops if this function
1511 returns nonzero.
1512
1513 CB_DATA is a pointer to some user-defined data to be passed to
1514 the callback.
1515
1516 If not NULL, CURRENT_OBJFILE corresponds to the objfile being
1517 inspected when the symbol search was requested. */
1518
1519typedef void (gdbarch_iterate_over_objfiles_in_search_order_ftype) (struct gdbarch *gdbarch, iterate_over_objfiles_in_search_order_cb_ftype *cb, void *cb_data, struct objfile *current_objfile);
1520extern void gdbarch_iterate_over_objfiles_in_search_order (struct gdbarch *gdbarch, iterate_over_objfiles_in_search_order_cb_ftype *cb, void *cb_data, struct objfile *current_objfile);
1521extern void set_gdbarch_iterate_over_objfiles_in_search_order (struct gdbarch *gdbarch, gdbarch_iterate_over_objfiles_in_search_order_ftype *iterate_over_objfiles_in_search_order);
1522
7e35103a
JB
1523/* Ravenscar arch-dependent ops. */
1524
1525extern struct ravenscar_arch_ops * gdbarch_ravenscar_ops (struct gdbarch *gdbarch);
1526extern void set_gdbarch_ravenscar_ops (struct gdbarch *gdbarch, struct ravenscar_arch_ops * ravenscar_ops);
1527
c2170eef
MM
1528/* Return non-zero if the instruction at ADDR is a call; zero otherwise. */
1529
1530typedef int (gdbarch_insn_is_call_ftype) (struct gdbarch *gdbarch, CORE_ADDR addr);
1531extern int gdbarch_insn_is_call (struct gdbarch *gdbarch, CORE_ADDR addr);
1532extern void set_gdbarch_insn_is_call (struct gdbarch *gdbarch, gdbarch_insn_is_call_ftype *insn_is_call);
1533
1534/* Return non-zero if the instruction at ADDR is a return; zero otherwise. */
1535
1536typedef int (gdbarch_insn_is_ret_ftype) (struct gdbarch *gdbarch, CORE_ADDR addr);
1537extern int gdbarch_insn_is_ret (struct gdbarch *gdbarch, CORE_ADDR addr);
1538extern void set_gdbarch_insn_is_ret (struct gdbarch *gdbarch, gdbarch_insn_is_ret_ftype *insn_is_ret);
1539
1540/* Return non-zero if the instruction at ADDR is a jump; zero otherwise. */
1541
1542typedef int (gdbarch_insn_is_jump_ftype) (struct gdbarch *gdbarch, CORE_ADDR addr);
1543extern int gdbarch_insn_is_jump (struct gdbarch *gdbarch, CORE_ADDR addr);
1544extern void set_gdbarch_insn_is_jump (struct gdbarch *gdbarch, gdbarch_insn_is_jump_ftype *insn_is_jump);
1545
5133a315
LM
1546/* Return true if there's a program/permanent breakpoint planted in
1547 memory at ADDRESS, return false otherwise. */
1548
1549typedef bool (gdbarch_program_breakpoint_here_p_ftype) (struct gdbarch *gdbarch, CORE_ADDR address);
1550extern bool gdbarch_program_breakpoint_here_p (struct gdbarch *gdbarch, CORE_ADDR address);
1551extern void set_gdbarch_program_breakpoint_here_p (struct gdbarch *gdbarch, gdbarch_program_breakpoint_here_p_ftype *program_breakpoint_here_p);
1552
27a48a92
MK
1553/* Read one auxv entry from *READPTR, not reading locations >= ENDPTR.
1554 Return 0 if *READPTR is already at the end of the buffer.
1555 Return -1 if there is insufficient buffer for a whole entry.
1556 Return 1 if an entry was read into *TYPEP and *VALP. */
1557
1558extern int gdbarch_auxv_parse_p (struct gdbarch *gdbarch);
1559
1560typedef int (gdbarch_auxv_parse_ftype) (struct gdbarch *gdbarch, gdb_byte **readptr, gdb_byte *endptr, CORE_ADDR *typep, CORE_ADDR *valp);
1561extern int gdbarch_auxv_parse (struct gdbarch *gdbarch, gdb_byte **readptr, gdb_byte *endptr, CORE_ADDR *typep, CORE_ADDR *valp);
1562extern void set_gdbarch_auxv_parse (struct gdbarch *gdbarch, gdbarch_auxv_parse_ftype *auxv_parse);
1563
2faa3447
JB
1564/* Print the description of a single auxv entry described by TYPE and VAL
1565 to FILE. */
1566
1567typedef void (gdbarch_print_auxv_entry_ftype) (struct gdbarch *gdbarch, struct ui_file *file, CORE_ADDR type, CORE_ADDR val);
1568extern void gdbarch_print_auxv_entry (struct gdbarch *gdbarch, struct ui_file *file, CORE_ADDR type, CORE_ADDR val);
1569extern void set_gdbarch_print_auxv_entry (struct gdbarch *gdbarch, gdbarch_print_auxv_entry_ftype *print_auxv_entry);
1570
3437254d
PA
1571/* Find the address range of the current inferior's vsyscall/vDSO, and
1572 write it to *RANGE. If the vsyscall's length can't be determined, a
1573 range with zero length is returned. Returns true if the vsyscall is
1574 found, false otherwise. */
1575
1576typedef int (gdbarch_vsyscall_range_ftype) (struct gdbarch *gdbarch, struct mem_range *range);
1577extern int gdbarch_vsyscall_range (struct gdbarch *gdbarch, struct mem_range *range);
1578extern void set_gdbarch_vsyscall_range (struct gdbarch *gdbarch, gdbarch_vsyscall_range_ftype *vsyscall_range);
1579
f208eee0
JK
1580/* Allocate SIZE bytes of PROT protected page aligned memory in inferior.
1581 PROT has GDB_MMAP_PROT_* bitmask format.
1582 Throw an error if it is not possible. Returned address is always valid. */
1583
1584typedef CORE_ADDR (gdbarch_infcall_mmap_ftype) (CORE_ADDR size, unsigned prot);
1585extern CORE_ADDR gdbarch_infcall_mmap (struct gdbarch *gdbarch, CORE_ADDR size, unsigned prot);
1586extern void set_gdbarch_infcall_mmap (struct gdbarch *gdbarch, gdbarch_infcall_mmap_ftype *infcall_mmap);
1587
7f361056
JK
1588/* Deallocate SIZE bytes of memory at ADDR in inferior from gdbarch_infcall_mmap.
1589 Print a warning if it is not possible. */
1590
1591typedef void (gdbarch_infcall_munmap_ftype) (CORE_ADDR addr, CORE_ADDR size);
1592extern void gdbarch_infcall_munmap (struct gdbarch *gdbarch, CORE_ADDR addr, CORE_ADDR size);
1593extern void set_gdbarch_infcall_munmap (struct gdbarch *gdbarch, gdbarch_infcall_munmap_ftype *infcall_munmap);
1594
f208eee0
JK
1595/* Return string (caller has to use xfree for it) with options for GCC
1596 to produce code for this target, typically "-m64", "-m32" or "-m31".
1597 These options are put before CU's DW_AT_producer compilation options so that
953cff56 1598 they can override it. */
f208eee0 1599
953cff56
TT
1600typedef std::string (gdbarch_gcc_target_options_ftype) (struct gdbarch *gdbarch);
1601extern std::string gdbarch_gcc_target_options (struct gdbarch *gdbarch);
f208eee0
JK
1602extern void set_gdbarch_gcc_target_options (struct gdbarch *gdbarch, gdbarch_gcc_target_options_ftype *gcc_target_options);
1603
ac04f72b
TT
1604/* Return a regular expression that matches names used by this
1605 architecture in GNU configury triplets. The result is statically
1606 allocated and must not be freed. The default implementation simply
1607 returns the BFD architecture name, which is correct in nearly every
1608 case. */
1609
1610typedef const char * (gdbarch_gnu_triplet_regexp_ftype) (struct gdbarch *gdbarch);
1611extern const char * gdbarch_gnu_triplet_regexp (struct gdbarch *gdbarch);
1612extern void set_gdbarch_gnu_triplet_regexp (struct gdbarch *gdbarch, gdbarch_gnu_triplet_regexp_ftype *gnu_triplet_regexp);
1613
3374165f
SM
1614/* Return the size in 8-bit bytes of an addressable memory unit on this
1615 architecture. This corresponds to the number of 8-bit bytes associated to
1616 each address in memory. */
1617
1618typedef int (gdbarch_addressable_memory_unit_size_ftype) (struct gdbarch *gdbarch);
1619extern int gdbarch_addressable_memory_unit_size (struct gdbarch *gdbarch);
1620extern void set_gdbarch_addressable_memory_unit_size (struct gdbarch *gdbarch, gdbarch_addressable_memory_unit_size_ftype *addressable_memory_unit_size);
1621
65b48a81
PB
1622/* Functions for allowing a target to modify its disassembler options. */
1623
471b9d15
MR
1624extern const char * gdbarch_disassembler_options_implicit (struct gdbarch *gdbarch);
1625extern void set_gdbarch_disassembler_options_implicit (struct gdbarch *gdbarch, const char * disassembler_options_implicit);
1626
65b48a81
PB
1627extern char ** gdbarch_disassembler_options (struct gdbarch *gdbarch);
1628extern void set_gdbarch_disassembler_options (struct gdbarch *gdbarch, char ** disassembler_options);
1629
471b9d15
MR
1630extern const disasm_options_and_args_t * gdbarch_valid_disassembler_options (struct gdbarch *gdbarch);
1631extern void set_gdbarch_valid_disassembler_options (struct gdbarch *gdbarch, const disasm_options_and_args_t * valid_disassembler_options);
65b48a81 1632
5561fc30
AB
1633/* Type alignment override method. Return the architecture specific
1634 alignment required for TYPE. If there is no special handling
1635 required for TYPE then return the value 0, GDB will then apply the
1636 default rules as laid out in gdbtypes.c:type_align. */
2b4424c3
TT
1637
1638typedef ULONGEST (gdbarch_type_align_ftype) (struct gdbarch *gdbarch, struct type *type);
1639extern ULONGEST gdbarch_type_align (struct gdbarch *gdbarch, struct type *type);
1640extern void set_gdbarch_type_align (struct gdbarch *gdbarch, gdbarch_type_align_ftype *type_align);
1641
aa7ca1bb
AH
1642/* Return a string containing any flags for the given PC in the given FRAME. */
1643
1644typedef std::string (gdbarch_get_pc_address_flags_ftype) (frame_info *frame, CORE_ADDR pc);
1645extern std::string gdbarch_get_pc_address_flags (struct gdbarch *gdbarch, frame_info *frame, CORE_ADDR pc);
1646extern void set_gdbarch_get_pc_address_flags (struct gdbarch *gdbarch, gdbarch_get_pc_address_flags_ftype *get_pc_address_flags);
1647
104c1213 1648extern struct gdbarch_tdep *gdbarch_tdep (struct gdbarch *gdbarch);
0f71a2f6
JM
1649
1650
1651/* Mechanism for co-ordinating the selection of a specific
1652 architecture.
1653
1654 GDB targets (*-tdep.c) can register an interest in a specific
1655 architecture. Other GDB components can register a need to maintain
1656 per-architecture data.
1657
1658 The mechanisms below ensures that there is only a loose connection
1659 between the set-architecture command and the various GDB
99e7bb18 1660 components. Each component can independently register their need
0f71a2f6
JM
1661 to maintain architecture specific data with gdbarch.
1662
1663 Pragmatics:
1664
1665 Previously, a single TARGET_ARCHITECTURE_HOOK was provided. It
1666 didn't scale.
1667
1668 The more traditional mega-struct containing architecture specific
1669 data for all the various GDB components was also considered. Since
99e7bb18 1670 GDB is built from a variable number of (fairly independent)
0f71a2f6 1671 components it was determined that the global aproach was not
0963b4bd 1672 applicable. */
0f71a2f6
JM
1673
1674
1675/* Register a new architectural family with GDB.
1676
1677 Register support for the specified ARCHITECTURE with GDB. When
1678 gdbarch determines that the specified architecture has been
1679 selected, the corresponding INIT function is called.
1680
1681 --
1682
1683 The INIT function takes two parameters: INFO which contains the
1684 information available to gdbarch about the (possibly new)
1685 architecture; ARCHES which is a list of the previously created
1686 ``struct gdbarch'' for this architecture.
1687
0f79675b 1688 The INFO parameter is, as far as possible, be pre-initialized with
7a107747 1689 information obtained from INFO.ABFD or the global defaults.
0f79675b
AC
1690
1691 The ARCHES parameter is a linked list (sorted most recently used)
1692 of all the previously created architures for this architecture
1693 family. The (possibly NULL) ARCHES->gdbarch can used to access
1694 values from the previously selected architecture for this
59837fe0 1695 architecture family.
0f71a2f6
JM
1696
1697 The INIT function shall return any of: NULL - indicating that it
ec3d358c 1698 doesn't recognize the selected architecture; an existing ``struct
0f71a2f6
JM
1699 gdbarch'' from the ARCHES list - indicating that the new
1700 architecture is just a synonym for an earlier architecture (see
1701 gdbarch_list_lookup_by_info()); a newly created ``struct gdbarch''
4b9b3959
AC
1702 - that describes the selected architecture (see gdbarch_alloc()).
1703
1704 The DUMP_TDEP function shall print out all target specific values.
1705 Care should be taken to ensure that the function works in both the
0963b4bd 1706 multi-arch and non- multi-arch cases. */
0f71a2f6 1707
adf40b2e
JM
1708struct gdbarch_list
1709{
1710 struct gdbarch *gdbarch;
1711 struct gdbarch_list *next;
1712};
0f71a2f6 1713
adf40b2e
JM
1714struct gdbarch_info
1715{
0963b4bd 1716 /* Use default: NULL (ZERO). */
adf40b2e 1717 const struct bfd_arch_info *bfd_arch_info;
0f71a2f6 1718
428721aa 1719 /* Use default: BFD_ENDIAN_UNKNOWN (NB: is not ZERO). */
94123b4f 1720 enum bfd_endian byte_order;
0f71a2f6 1721
94123b4f 1722 enum bfd_endian byte_order_for_code;
9d4fde75 1723
0963b4bd 1724 /* Use default: NULL (ZERO). */
adf40b2e 1725 bfd *abfd;
0f71a2f6 1726
0963b4bd 1727 /* Use default: NULL (ZERO). */
0dba2a6c
MR
1728 union
1729 {
1730 /* Architecture-specific information. The generic form for targets
1731 that have extra requirements. */
1732 struct gdbarch_tdep_info *tdep_info;
1733
1734 /* Architecture-specific target description data. Numerous targets
1735 need only this, so give them an easy way to hold it. */
1736 struct tdesc_arch_data *tdesc_data;
1737
1738 /* SPU file system ID. This is a single integer, so using the
1739 generic form would only complicate code. Other targets may
1740 reuse this member if suitable. */
1741 int *id;
1742 };
4be87837
DJ
1743
1744 /* Use default: GDB_OSABI_UNINITIALIZED (-1). */
1745 enum gdb_osabi osabi;
424163ea
DJ
1746
1747 /* Use default: NULL (ZERO). */
1748 const struct target_desc *target_desc;
adf40b2e 1749};
0f71a2f6 1750
104c1213 1751typedef struct gdbarch *(gdbarch_init_ftype) (struct gdbarch_info info, struct gdbarch_list *arches);
4b9b3959 1752typedef void (gdbarch_dump_tdep_ftype) (struct gdbarch *gdbarch, struct ui_file *file);
0f71a2f6 1753
4b9b3959 1754/* DEPRECATED - use gdbarch_register() */
104c1213 1755extern void register_gdbarch_init (enum bfd_architecture architecture, gdbarch_init_ftype *);
0f71a2f6 1756
4b9b3959
AC
1757extern void gdbarch_register (enum bfd_architecture architecture,
1758 gdbarch_init_ftype *,
1759 gdbarch_dump_tdep_ftype *);
1760
0f71a2f6 1761
b4a20239
AC
1762/* Return a freshly allocated, NULL terminated, array of the valid
1763 architecture names. Since architectures are registered during the
1764 _initialize phase this function only returns useful information
0963b4bd 1765 once initialization has been completed. */
b4a20239
AC
1766
1767extern const char **gdbarch_printable_names (void);
1768
1769
0f71a2f6 1770/* Helper function. Search the list of ARCHES for a GDBARCH that
0963b4bd 1771 matches the information provided by INFO. */
0f71a2f6 1772
424163ea 1773extern struct gdbarch_list *gdbarch_list_lookup_by_info (struct gdbarch_list *arches, const struct gdbarch_info *info);
0f71a2f6
JM
1774
1775
1776/* Helper function. Create a preliminary ``struct gdbarch''. Perform
424163ea 1777 basic initialization using values obtained from the INFO and TDEP
0f71a2f6 1778 parameters. set_gdbarch_*() functions are called to complete the
0963b4bd 1779 initialization of the object. */
0f71a2f6 1780
104c1213 1781extern struct gdbarch *gdbarch_alloc (const struct gdbarch_info *info, struct gdbarch_tdep *tdep);
0f71a2f6
JM
1782
1783
4b9b3959
AC
1784/* Helper function. Free a partially-constructed ``struct gdbarch''.
1785 It is assumed that the caller freeds the ``struct
0963b4bd 1786 gdbarch_tdep''. */
4b9b3959 1787
058f20d5
JB
1788extern void gdbarch_free (struct gdbarch *);
1789
284a0e3c
SM
1790/* Get the obstack owned by ARCH. */
1791
1792extern obstack *gdbarch_obstack (gdbarch *arch);
058f20d5 1793
aebd7893
AC
1794/* Helper function. Allocate memory from the ``struct gdbarch''
1795 obstack. The memory is freed when the corresponding architecture
1796 is also freed. */
1797
284a0e3c
SM
1798#define GDBARCH_OBSTACK_CALLOC(GDBARCH, NR, TYPE) obstack_calloc<TYPE> (gdbarch_obstack ((GDBARCH)), (NR))
1799
1800#define GDBARCH_OBSTACK_ZALLOC(GDBARCH, TYPE) obstack_zalloc<TYPE> (gdbarch_obstack ((GDBARCH)))
aebd7893 1801
6c214e7c
PP
1802/* Duplicate STRING, returning an equivalent string that's allocated on the
1803 obstack associated with GDBARCH. The string is freed when the corresponding
1804 architecture is also freed. */
1805
1806extern char *gdbarch_obstack_strdup (struct gdbarch *arch, const char *string);
aebd7893 1807
0963b4bd 1808/* Helper function. Force an update of the current architecture.
0f71a2f6 1809
b732d07d
AC
1810 The actual architecture selected is determined by INFO, ``(gdb) set
1811 architecture'' et.al., the existing architecture and BFD's default
1812 architecture. INFO should be initialized to zero and then selected
1813 fields should be updated.
0f71a2f6 1814
0963b4bd 1815 Returns non-zero if the update succeeds. */
16f33e29
AC
1816
1817extern int gdbarch_update_p (struct gdbarch_info info);
0f71a2f6
JM
1818
1819
ebdba546
AC
1820/* Helper function. Find an architecture matching info.
1821
1822 INFO should be initialized using gdbarch_info_init, relevant fields
1823 set, and then finished using gdbarch_info_fill.
1824
1825 Returns the corresponding architecture, or NULL if no matching
59837fe0 1826 architecture was found. */
ebdba546
AC
1827
1828extern struct gdbarch *gdbarch_find_by_info (struct gdbarch_info info);
1829
1830
aff68abb 1831/* Helper function. Set the target gdbarch to "gdbarch". */
ebdba546 1832
aff68abb 1833extern void set_target_gdbarch (struct gdbarch *gdbarch);
ebdba546 1834
0f71a2f6
JM
1835
1836/* Register per-architecture data-pointer.
1837
1838 Reserve space for a per-architecture data-pointer. An identifier
1839 for the reserved data-pointer is returned. That identifer should
95160752 1840 be saved in a local static variable.
0f71a2f6 1841
fcc1c85c
AC
1842 Memory for the per-architecture data shall be allocated using
1843 gdbarch_obstack_zalloc. That memory will be deleted when the
1844 corresponding architecture object is deleted.
0f71a2f6 1845
95160752
AC
1846 When a previously created architecture is re-selected, the
1847 per-architecture data-pointer for that previous architecture is
76860b5f 1848 restored. INIT() is not re-called.
0f71a2f6
JM
1849
1850 Multiple registrarants for any architecture are allowed (and
1851 strongly encouraged). */
1852
95160752 1853struct gdbarch_data;
0f71a2f6 1854
030f20e1
AC
1855typedef void *(gdbarch_data_pre_init_ftype) (struct obstack *obstack);
1856extern struct gdbarch_data *gdbarch_data_register_pre_init (gdbarch_data_pre_init_ftype *init);
1857typedef void *(gdbarch_data_post_init_ftype) (struct gdbarch *gdbarch);
1858extern struct gdbarch_data *gdbarch_data_register_post_init (gdbarch_data_post_init_ftype *init);
1859extern void deprecated_set_gdbarch_data (struct gdbarch *gdbarch,
1860 struct gdbarch_data *data,
1861 void *pointer);
0f71a2f6 1862
451fbdda 1863extern void *gdbarch_data (struct gdbarch *gdbarch, struct gdbarch_data *);
0f71a2f6
JM
1864
1865
99e7bb18 1866/* Set the dynamic target-system-dependent parameters (architecture,
0963b4bd 1867 byte-order, ...) using information found in the BFD. */
c906108c 1868
104c1213 1869extern void set_gdbarch_from_file (bfd *);
c906108c
SS
1870
1871
e514a9d6
JM
1872/* Initialize the current architecture to the "first" one we find on
1873 our list. */
1874
1875extern void initialize_current_architecture (void);
1876
c906108c 1877/* gdbarch trace variable */
ccce17b0 1878extern unsigned int gdbarch_debug;
c906108c 1879
4b9b3959 1880extern void gdbarch_dump (struct gdbarch *gdbarch, struct ui_file *file);
0f71a2f6 1881
f6efe3f8
SM
1882/* Return the number of cooked registers (raw + pseudo) for ARCH. */
1883
1884static inline int
1885gdbarch_num_cooked_regs (gdbarch *arch)
1886{
1887 return gdbarch_num_regs (arch) + gdbarch_num_pseudo_regs (arch);
1888}
1889
c906108c 1890#endif
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