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Add target_ops argument to to_static_tracepoint_marker_at
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c906108c 1/* Interface between GDB and target environments, including files and processes
0088c768 2
ecd75fc8 3 Copyright (C) 1990-2014 Free Software Foundation, Inc.
0088c768 4
c906108c
SS
5 Contributed by Cygnus Support. Written by John Gilmore.
6
c5aa993b 7 This file is part of GDB.
c906108c 8
c5aa993b
JM
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
a9762ec7 11 the Free Software Foundation; either version 3 of the License, or
c5aa993b 12 (at your option) any later version.
c906108c 13
c5aa993b
JM
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
c906108c 18
c5aa993b 19 You should have received a copy of the GNU General Public License
a9762ec7 20 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
21
22#if !defined (TARGET_H)
23#define TARGET_H
24
da3331ec
AC
25struct objfile;
26struct ui_file;
27struct mem_attrib;
1e3ff5ad 28struct target_ops;
d248b706 29struct bp_location;
8181d85f 30struct bp_target_info;
56be3814 31struct regcache;
07b82ea5 32struct target_section_table;
35b1e5cc 33struct trace_state_variable;
00bf0b85
SS
34struct trace_status;
35struct uploaded_tsv;
36struct uploaded_tp;
0fb4aa4b 37struct static_tracepoint_marker;
b3b9301e 38struct traceframe_info;
0cf6dd15 39struct expression;
2a2f9fe4 40struct dcache_struct;
0cf6dd15 41
c906108c
SS
42/* This include file defines the interface between the main part
43 of the debugger, and the part which is target-specific, or
44 specific to the communications interface between us and the
45 target.
46
2146d243
RM
47 A TARGET is an interface between the debugger and a particular
48 kind of file or process. Targets can be STACKED in STRATA,
c906108c
SS
49 so that more than one target can potentially respond to a request.
50 In particular, memory accesses will walk down the stack of targets
51 until they find a target that is interested in handling that particular
52 address. STRATA are artificial boundaries on the stack, within
53 which particular kinds of targets live. Strata exist so that
54 people don't get confused by pushing e.g. a process target and then
55 a file target, and wondering why they can't see the current values
56 of variables any more (the file target is handling them and they
57 never get to the process target). So when you push a file target,
58 it goes into the file stratum, which is always below the process
59 stratum. */
60
33b60d58
LM
61#include "target/resume.h"
62#include "target/wait.h"
63#include "target/waitstatus.h"
c906108c
SS
64#include "bfd.h"
65#include "symtab.h"
29e57380 66#include "memattr.h"
fd79ecee 67#include "vec.h"
2aecd87f 68#include "gdb_signals.h"
02d27625 69#include "btrace.h"
9852c492 70#include "command.h"
c906108c 71
c5aa993b
JM
72enum strata
73 {
74 dummy_stratum, /* The lowest of the low */
75 file_stratum, /* Executable files, etc */
c0edd9ed 76 process_stratum, /* Executing processes or core dump files */
81e64f55 77 thread_stratum, /* Executing threads */
85e747d2
UW
78 record_stratum, /* Support record debugging */
79 arch_stratum /* Architecture overrides */
c5aa993b 80 };
c906108c 81
c5aa993b
JM
82enum thread_control_capabilities
83 {
0d06e24b
JM
84 tc_none = 0, /* Default: can't control thread execution. */
85 tc_schedlock = 1, /* Can lock the thread scheduler. */
c5aa993b 86 };
c906108c 87
a96d9b2e
SDJ
88/* The structure below stores information about a system call.
89 It is basically used in the "catch syscall" command, and in
90 every function that gives information about a system call.
91
92 It's also good to mention that its fields represent everything
93 that we currently know about a syscall in GDB. */
94struct syscall
95 {
96 /* The syscall number. */
97 int number;
98
99 /* The syscall name. */
100 const char *name;
101 };
102
f00150c9
DE
103/* Return a pretty printed form of target_waitstatus.
104 Space for the result is malloc'd, caller must free. */
105extern char *target_waitstatus_to_string (const struct target_waitstatus *);
106
09826ec5
PA
107/* Return a pretty printed form of TARGET_OPTIONS.
108 Space for the result is malloc'd, caller must free. */
109extern char *target_options_to_string (int target_options);
110
2acceee2 111/* Possible types of events that the inferior handler will have to
0d06e24b 112 deal with. */
2acceee2
JM
113enum inferior_event_type
114 {
2acceee2 115 /* Process a normal inferior event which will result in target_wait
0d06e24b 116 being called. */
2146d243 117 INF_REG_EVENT,
0d06e24b 118 /* We are called because a timer went off. */
2acceee2 119 INF_TIMER,
0d06e24b 120 /* We are called to do stuff after the inferior stops. */
c2d11a7d
JM
121 INF_EXEC_COMPLETE,
122 /* We are called to do some stuff after the inferior stops, but we
123 are expected to reenter the proceed() and
c378eb4e 124 handle_inferior_event() functions. This is used only in case of
0d06e24b 125 'step n' like commands. */
c2d11a7d 126 INF_EXEC_CONTINUE
2acceee2 127 };
c906108c 128\f
13547ab6
DJ
129/* Target objects which can be transfered using target_read,
130 target_write, et cetera. */
1e3ff5ad
AC
131
132enum target_object
133{
1e3ff5ad
AC
134 /* AVR target specific transfer. See "avr-tdep.c" and "remote.c". */
135 TARGET_OBJECT_AVR,
23d964e7
UW
136 /* SPU target specific transfer. See "spu-tdep.c". */
137 TARGET_OBJECT_SPU,
1e3ff5ad 138 /* Transfer up-to LEN bytes of memory starting at OFFSET. */
287a334e 139 TARGET_OBJECT_MEMORY,
cf7a04e8
DJ
140 /* Memory, avoiding GDB's data cache and trusting the executable.
141 Target implementations of to_xfer_partial never need to handle
142 this object, and most callers should not use it. */
143 TARGET_OBJECT_RAW_MEMORY,
4e5d721f
DE
144 /* Memory known to be part of the target's stack. This is cached even
145 if it is not in a region marked as such, since it is known to be
146 "normal" RAM. */
147 TARGET_OBJECT_STACK_MEMORY,
29453a14
YQ
148 /* Memory known to be part of the target code. This is cached even
149 if it is not in a region marked as such. */
150 TARGET_OBJECT_CODE_MEMORY,
287a334e
JJ
151 /* Kernel Unwind Table. See "ia64-tdep.c". */
152 TARGET_OBJECT_UNWIND_TABLE,
2146d243
RM
153 /* Transfer auxilliary vector. */
154 TARGET_OBJECT_AUXV,
baf92889 155 /* StackGhost cookie. See "sparc-tdep.c". */
fd79ecee
DJ
156 TARGET_OBJECT_WCOOKIE,
157 /* Target memory map in XML format. */
158 TARGET_OBJECT_MEMORY_MAP,
a76d924d
DJ
159 /* Flash memory. This object can be used to write contents to
160 a previously erased flash memory. Using it without erasing
161 flash can have unexpected results. Addresses are physical
162 address on target, and not relative to flash start. */
23181151
DJ
163 TARGET_OBJECT_FLASH,
164 /* Available target-specific features, e.g. registers and coprocessors.
165 See "target-descriptions.c". ANNEX should never be empty. */
cfa9d6d9
DJ
166 TARGET_OBJECT_AVAILABLE_FEATURES,
167 /* Currently loaded libraries, in XML format. */
07e059b5 168 TARGET_OBJECT_LIBRARIES,
2268b414
JK
169 /* Currently loaded libraries specific for SVR4 systems, in XML format. */
170 TARGET_OBJECT_LIBRARIES_SVR4,
4d1eb6b4 171 /* Currently loaded libraries specific to AIX systems, in XML format. */
ff99b71b 172 TARGET_OBJECT_LIBRARIES_AIX,
07e059b5 173 /* Get OS specific data. The ANNEX specifies the type (running
113a6f1e
JB
174 processes, etc.). The data being transfered is expected to follow
175 the DTD specified in features/osdata.dtd. */
4aa995e1
PA
176 TARGET_OBJECT_OSDATA,
177 /* Extra signal info. Usually the contents of `siginfo_t' on unix
178 platforms. */
179 TARGET_OBJECT_SIGNAL_INFO,
dc146f7c
VP
180 /* The list of threads that are being debugged. */
181 TARGET_OBJECT_THREADS,
0fb4aa4b
PA
182 /* Collected static trace data. */
183 TARGET_OBJECT_STATIC_TRACE_DATA,
77ca787b
JB
184 /* The HP-UX registers (those that can be obtained or modified by using
185 the TT_LWP_RUREGS/TT_LWP_WUREGS ttrace requests). */
186 TARGET_OBJECT_HPUX_UREGS,
c4de7027
JB
187 /* The HP-UX shared library linkage pointer. ANNEX should be a string
188 image of the code address whose linkage pointer we are looking for.
189
190 The size of the data transfered is always 8 bytes (the size of an
191 address on ia64). */
192 TARGET_OBJECT_HPUX_SOLIB_GOT,
b3b9301e
PA
193 /* Traceframe info, in XML format. */
194 TARGET_OBJECT_TRACEFRAME_INFO,
78d85199
YQ
195 /* Load maps for FDPIC systems. */
196 TARGET_OBJECT_FDPIC,
f00c55f8 197 /* Darwin dynamic linker info data. */
169081d0
TG
198 TARGET_OBJECT_DARWIN_DYLD_INFO,
199 /* OpenVMS Unwind Information Block. */
02d27625 200 TARGET_OBJECT_OPENVMS_UIB,
9accd112
MM
201 /* Branch trace data, in XML format. */
202 TARGET_OBJECT_BTRACE
c378eb4e 203 /* Possible future objects: TARGET_OBJECT_FILE, ... */
1e3ff5ad
AC
204};
205
9b409511 206/* Possible values returned by target_xfer_partial, etc. */
6be7b56e 207
9b409511 208enum target_xfer_status
6be7b56e 209{
9b409511
YQ
210 /* Some bytes are transferred. */
211 TARGET_XFER_OK = 1,
212
213 /* No further transfer is possible. */
214 TARGET_XFER_EOF = 0,
215
6be7b56e
PA
216 /* Generic I/O error. Note that it's important that this is '-1',
217 as we still have target_xfer-related code returning hardcoded
218 '-1' on error. */
219 TARGET_XFER_E_IO = -1,
220
221 /* Transfer failed because the piece of the object requested is
222 unavailable. */
223 TARGET_XFER_E_UNAVAILABLE = -2,
224
225 /* Keep list in sync with target_xfer_error_to_string. */
226};
227
9b409511
YQ
228#define TARGET_XFER_STATUS_ERROR_P(STATUS) ((STATUS) < TARGET_XFER_EOF)
229
6be7b56e
PA
230/* Return the string form of ERR. */
231
9b409511 232extern const char *target_xfer_status_to_string (enum target_xfer_status err);
6be7b56e 233
35b1e5cc
SS
234/* Enumeration of the kinds of traceframe searches that a target may
235 be able to perform. */
236
237enum trace_find_type
238 {
239 tfind_number,
240 tfind_pc,
241 tfind_tp,
242 tfind_range,
243 tfind_outside,
244 };
245
0fb4aa4b
PA
246typedef struct static_tracepoint_marker *static_tracepoint_marker_p;
247DEF_VEC_P(static_tracepoint_marker_p);
248
9b409511 249typedef enum target_xfer_status
4ac248ca
YQ
250 target_xfer_partial_ftype (struct target_ops *ops,
251 enum target_object object,
252 const char *annex,
253 gdb_byte *readbuf,
254 const gdb_byte *writebuf,
255 ULONGEST offset,
9b409511
YQ
256 ULONGEST len,
257 ULONGEST *xfered_len);
4ac248ca 258
13547ab6
DJ
259/* Request that OPS transfer up to LEN 8-bit bytes of the target's
260 OBJECT. The OFFSET, for a seekable object, specifies the
261 starting point. The ANNEX can be used to provide additional
262 data-specific information to the target.
1e3ff5ad 263
578d3588
PA
264 Return the number of bytes actually transfered, or a negative error
265 code (an 'enum target_xfer_error' value) if the transfer is not
266 supported or otherwise fails. Return of a positive value less than
267 LEN indicates that no further transfer is possible. Unlike the raw
268 to_xfer_partial interface, callers of these functions do not need
269 to retry partial transfers. */
1e3ff5ad 270
1e3ff5ad
AC
271extern LONGEST target_read (struct target_ops *ops,
272 enum target_object object,
1b0ba102 273 const char *annex, gdb_byte *buf,
1e3ff5ad
AC
274 ULONGEST offset, LONGEST len);
275
8dedea02
VP
276struct memory_read_result
277 {
c378eb4e 278 /* First address that was read. */
8dedea02
VP
279 ULONGEST begin;
280 /* Past-the-end address. */
281 ULONGEST end;
282 /* The data. */
283 gdb_byte *data;
284};
285typedef struct memory_read_result memory_read_result_s;
286DEF_VEC_O(memory_read_result_s);
287
288extern void free_memory_read_result_vector (void *);
289
290extern VEC(memory_read_result_s)* read_memory_robust (struct target_ops *ops,
291 ULONGEST offset,
292 LONGEST len);
d5086790 293
1e3ff5ad
AC
294extern LONGEST target_write (struct target_ops *ops,
295 enum target_object object,
1b0ba102 296 const char *annex, const gdb_byte *buf,
1e3ff5ad 297 ULONGEST offset, LONGEST len);
b6591e8b 298
a76d924d
DJ
299/* Similar to target_write, except that it also calls PROGRESS with
300 the number of bytes written and the opaque BATON after every
301 successful partial write (and before the first write). This is
302 useful for progress reporting and user interaction while writing
303 data. To abort the transfer, the progress callback can throw an
304 exception. */
305
cf7a04e8
DJ
306LONGEST target_write_with_progress (struct target_ops *ops,
307 enum target_object object,
308 const char *annex, const gdb_byte *buf,
309 ULONGEST offset, LONGEST len,
310 void (*progress) (ULONGEST, void *),
311 void *baton);
312
13547ab6
DJ
313/* Wrapper to perform a full read of unknown size. OBJECT/ANNEX will
314 be read using OPS. The return value will be -1 if the transfer
315 fails or is not supported; 0 if the object is empty; or the length
316 of the object otherwise. If a positive value is returned, a
317 sufficiently large buffer will be allocated using xmalloc and
318 returned in *BUF_P containing the contents of the object.
319
320 This method should be used for objects sufficiently small to store
321 in a single xmalloc'd buffer, when no fixed bound on the object's
322 size is known in advance. Don't try to read TARGET_OBJECT_MEMORY
323 through this function. */
324
325extern LONGEST target_read_alloc (struct target_ops *ops,
326 enum target_object object,
327 const char *annex, gdb_byte **buf_p);
328
159f81f3
DJ
329/* Read OBJECT/ANNEX using OPS. The result is NUL-terminated and
330 returned as a string, allocated using xmalloc. If an error occurs
331 or the transfer is unsupported, NULL is returned. Empty objects
332 are returned as allocated but empty strings. A warning is issued
333 if the result contains any embedded NUL bytes. */
334
335extern char *target_read_stralloc (struct target_ops *ops,
336 enum target_object object,
337 const char *annex);
338
6be7b56e 339/* See target_ops->to_xfer_partial. */
4ac248ca 340extern target_xfer_partial_ftype target_xfer_partial;
6be7b56e 341
b6591e8b
AC
342/* Wrappers to target read/write that perform memory transfers. They
343 throw an error if the memory transfer fails.
344
345 NOTE: cagney/2003-10-23: The naming schema is lifted from
346 "frame.h". The parameter order is lifted from get_frame_memory,
347 which in turn lifted it from read_memory. */
348
349extern void get_target_memory (struct target_ops *ops, CORE_ADDR addr,
1b0ba102 350 gdb_byte *buf, LONGEST len);
b6591e8b 351extern ULONGEST get_target_memory_unsigned (struct target_ops *ops,
e17a4113
UW
352 CORE_ADDR addr, int len,
353 enum bfd_endian byte_order);
1e3ff5ad 354\f
0d06e24b
JM
355struct thread_info; /* fwd decl for parameter list below: */
356
b0a16e66
TT
357/* The type of the callback to the to_async method. */
358
359typedef void async_callback_ftype (enum inferior_event_type event_type,
360 void *context);
361
1101cb7b
TT
362/* These defines are used to mark target_ops methods. The script
363 make-target-delegates scans these and auto-generates the base
364 method implementations. There are four macros that can be used:
365
366 1. TARGET_DEFAULT_IGNORE. There is no argument. The base method
367 does nothing. This is only valid if the method return type is
368 'void'.
369
370 2. TARGET_DEFAULT_NORETURN. The argument is a function call, like
371 'tcomplain ()'. The base method simply makes this call, which is
372 assumed not to return.
373
374 3. TARGET_DEFAULT_RETURN. The argument is a C expression. The
375 base method returns this expression's value.
376
377 4. TARGET_DEFAULT_FUNC. The argument is the name of a function.
378 make-target-delegates does not generate a base method in this case,
379 but instead uses the argument function as the base method. */
380
381#define TARGET_DEFAULT_IGNORE()
382#define TARGET_DEFAULT_NORETURN(ARG)
383#define TARGET_DEFAULT_RETURN(ARG)
384#define TARGET_DEFAULT_FUNC(ARG)
385
c906108c 386struct target_ops
c5aa993b 387 {
258b763a 388 struct target_ops *beneath; /* To the target under this one. */
c5aa993b
JM
389 char *to_shortname; /* Name this target type */
390 char *to_longname; /* Name for printing */
391 char *to_doc; /* Documentation. Does not include trailing
c906108c 392 newline, and starts with a one-line descrip-
0d06e24b 393 tion (probably similar to to_longname). */
bba2d28d
AC
394 /* Per-target scratch pad. */
395 void *to_data;
f1c07ab0
AC
396 /* The open routine takes the rest of the parameters from the
397 command, and (if successful) pushes a new target onto the
398 stack. Targets should supply this routine, if only to provide
399 an error message. */
507f3c78 400 void (*to_open) (char *, int);
f1c07ab0
AC
401 /* Old targets with a static target vector provide "to_close".
402 New re-entrant targets provide "to_xclose" and that is expected
403 to xfree everything (including the "struct target_ops"). */
460014f5 404 void (*to_xclose) (struct target_ops *targ);
de90e03d 405 void (*to_close) (struct target_ops *);
136d6dae 406 void (*to_attach) (struct target_ops *ops, char *, int);
f045800c 407 void (*to_post_attach) (struct target_ops *, int);
52554a0e 408 void (*to_detach) (struct target_ops *ops, const char *, int);
597320e7 409 void (*to_disconnect) (struct target_ops *, char *, int);
6b84065d
TT
410 void (*to_resume) (struct target_ops *, ptid_t, int, enum gdb_signal)
411 TARGET_DEFAULT_NORETURN (noprocess ());
117de6a9 412 ptid_t (*to_wait) (struct target_ops *,
6b84065d
TT
413 ptid_t, struct target_waitstatus *, int)
414 TARGET_DEFAULT_NORETURN (noprocess ());
28439f5e 415 void (*to_fetch_registers) (struct target_ops *, struct regcache *, int);
6b84065d
TT
416 void (*to_store_registers) (struct target_ops *, struct regcache *, int)
417 TARGET_DEFAULT_NORETURN (noprocess ());
f32dbf8c 418 void (*to_prepare_to_store) (struct target_ops *, struct regcache *);
c5aa993b
JM
419
420 /* Transfer LEN bytes of memory between GDB address MYADDR and
421 target address MEMADDR. If WRITE, transfer them to the target, else
422 transfer them from the target. TARGET is the target from which we
423 get this function.
424
425 Return value, N, is one of the following:
426
427 0 means that we can't handle this. If errno has been set, it is the
428 error which prevented us from doing it (FIXME: What about bfd_error?).
429
430 positive (call it N) means that we have transferred N bytes
431 starting at MEMADDR. We might be able to handle more bytes
432 beyond this length, but no promises.
433
434 negative (call its absolute value N) means that we cannot
435 transfer right at MEMADDR, but we could transfer at least
c8e73a31 436 something at MEMADDR + N.
c5aa993b 437
c8e73a31
AC
438 NOTE: cagney/2004-10-01: This has been entirely superseeded by
439 to_xfer_partial and inferior inheritance. */
440
1b0ba102 441 int (*deprecated_xfer_memory) (CORE_ADDR memaddr, gdb_byte *myaddr,
c8e73a31
AC
442 int len, int write,
443 struct mem_attrib *attrib,
444 struct target_ops *target);
c906108c 445
507f3c78 446 void (*to_files_info) (struct target_ops *);
3db08215 447 int (*to_insert_breakpoint) (struct target_ops *, struct gdbarch *,
6b84065d
TT
448 struct bp_target_info *)
449 TARGET_DEFAULT_FUNC (memory_insert_breakpoint);
3db08215 450 int (*to_remove_breakpoint) (struct target_ops *, struct gdbarch *,
6b84065d
TT
451 struct bp_target_info *)
452 TARGET_DEFAULT_FUNC (memory_remove_breakpoint);
5461485a 453 int (*to_can_use_hw_breakpoint) (struct target_ops *, int, int, int);
f1310107 454 int (*to_ranged_break_num_registers) (struct target_ops *);
23a26771
TT
455 int (*to_insert_hw_breakpoint) (struct target_ops *,
456 struct gdbarch *, struct bp_target_info *);
a64dc96c
TT
457 int (*to_remove_hw_breakpoint) (struct target_ops *,
458 struct gdbarch *, struct bp_target_info *);
0cf6dd15
TJB
459
460 /* Documentation of what the two routines below are expected to do is
461 provided with the corresponding target_* macros. */
11b5219a
TT
462 int (*to_remove_watchpoint) (struct target_ops *,
463 CORE_ADDR, int, int, struct expression *);
7bb99c53
TT
464 int (*to_insert_watchpoint) (struct target_ops *,
465 CORE_ADDR, int, int, struct expression *);
0cf6dd15 466
9c06b0b4
TJB
467 int (*to_insert_mask_watchpoint) (struct target_ops *,
468 CORE_ADDR, CORE_ADDR, int);
469 int (*to_remove_mask_watchpoint) (struct target_ops *,
470 CORE_ADDR, CORE_ADDR, int);
6b84065d
TT
471 int (*to_stopped_by_watchpoint) (struct target_ops *)
472 TARGET_DEFAULT_RETURN (0);
74174d2e 473 int to_have_steppable_watchpoint;
7df1a324 474 int to_have_continuable_watchpoint;
6b84065d
TT
475 int (*to_stopped_data_address) (struct target_ops *, CORE_ADDR *)
476 TARGET_DEFAULT_RETURN (0);
5009afc5
AS
477 int (*to_watchpoint_addr_within_range) (struct target_ops *,
478 CORE_ADDR, CORE_ADDR, int);
e09342b5
TJB
479
480 /* Documentation of this routine is provided with the corresponding
481 target_* macro. */
31568a15
TT
482 int (*to_region_ok_for_hw_watchpoint) (struct target_ops *,
483 CORE_ADDR, int);
e09342b5 484
c3a5ff89
TT
485 int (*to_can_accel_watchpoint_condition) (struct target_ops *,
486 CORE_ADDR, int, int,
0cf6dd15 487 struct expression *);
9c06b0b4
TJB
488 int (*to_masked_watch_num_registers) (struct target_ops *,
489 CORE_ADDR, CORE_ADDR);
c42bf286 490 void (*to_terminal_init) (struct target_ops *);
d2f640d4 491 void (*to_terminal_inferior) (struct target_ops *);
2e1e1a19 492 void (*to_terminal_ours_for_output) (struct target_ops *);
e3594fd1 493 void (*to_terminal_ours) (struct target_ops *);
ae3bd431 494 void (*to_terminal_save_ours) (struct target_ops *);
0a4f40a2 495 void (*to_terminal_info) (struct target_ops *, const char *, int);
7d85a9c0 496 void (*to_kill) (struct target_ops *);
71a9f134 497 void (*to_load) (struct target_ops *, char *, int);
136d6dae
VP
498 void (*to_create_inferior) (struct target_ops *,
499 char *, char *, char **, int);
2e97a79e 500 void (*to_post_startup_inferior) (struct target_ops *, ptid_t);
a863b201 501 int (*to_insert_fork_catchpoint) (struct target_ops *, int);
973fc227 502 int (*to_remove_fork_catchpoint) (struct target_ops *, int);
3ecc7da0 503 int (*to_insert_vfork_catchpoint) (struct target_ops *, int);
e98cf0cd 504 int (*to_remove_vfork_catchpoint) (struct target_ops *, int);
07107ca6 505 int (*to_follow_fork) (struct target_ops *, int, int);
ba025e51 506 int (*to_insert_exec_catchpoint) (struct target_ops *, int);
758e29d2 507 int (*to_remove_exec_catchpoint) (struct target_ops *, int);
ff214e67
TT
508 int (*to_set_syscall_catchpoint) (struct target_ops *,
509 int, int, int, int, int *);
d796e1d6 510 int (*to_has_exited) (struct target_ops *, int, int, int *);
136d6dae 511 void (*to_mourn_inferior) (struct target_ops *);
da82bd6b 512 int (*to_can_run) (struct target_ops *);
2455069d
UW
513
514 /* Documentation of this routine is provided with the corresponding
515 target_* macro. */
94bedb42 516 void (*to_pass_signals) (struct target_ops *, int, unsigned char *);
2455069d 517
9b224c5e
PA
518 /* Documentation of this routine is provided with the
519 corresponding target_* function. */
daf5e9b6 520 void (*to_program_signals) (struct target_ops *, int, unsigned char *);
9b224c5e 521
28439f5e
PA
522 int (*to_thread_alive) (struct target_ops *, ptid_t ptid);
523 void (*to_find_new_threads) (struct target_ops *);
117de6a9 524 char *(*to_pid_to_str) (struct target_ops *, ptid_t);
c15906d8 525 char *(*to_extra_thread_info) (struct target_ops *, struct thread_info *);
503a628d 526 char *(*to_thread_name) (struct target_ops *, struct thread_info *);
1eab8a48 527 void (*to_stop) (struct target_ops *, ptid_t);
1aac633b
TT
528 void (*to_rcmd) (struct target_ops *,
529 char *command, struct ui_file *output);
8dd27370 530 char *(*to_pid_to_exec_file) (struct target_ops *, int pid);
4ab76ea3 531 void (*to_log_command) (struct target_ops *, const char *);
07b82ea5 532 struct target_section_table *(*to_get_section_table) (struct target_ops *);
c5aa993b 533 enum strata to_stratum;
c35b1492
PA
534 int (*to_has_all_memory) (struct target_ops *);
535 int (*to_has_memory) (struct target_ops *);
536 int (*to_has_stack) (struct target_ops *);
537 int (*to_has_registers) (struct target_ops *);
aeaec162 538 int (*to_has_execution) (struct target_ops *, ptid_t);
c5aa993b 539 int to_has_thread_control; /* control thread execution */
dc177b7a 540 int to_attach_no_wait;
6426a772 541 /* ASYNC target controls */
6b84065d
TT
542 int (*to_can_async_p) (struct target_ops *)
543 TARGET_DEFAULT_FUNC (find_default_can_async_p);
544 int (*to_is_async_p) (struct target_ops *)
545 TARGET_DEFAULT_FUNC (find_default_is_async_p);
546 void (*to_async) (struct target_ops *, async_callback_ftype *, void *)
547 TARGET_DEFAULT_NORETURN (tcomplain ());
2a9a2795 548 int (*to_supports_non_stop) (struct target_ops *);
6b04bdb7 549 /* find_memory_regions support method for gcore */
2e73927c
TT
550 int (*to_find_memory_regions) (struct target_ops *,
551 find_memory_region_ftype func, void *data);
6b04bdb7 552 /* make_corefile_notes support method for gcore */
fc6691b2 553 char * (*to_make_corefile_notes) (struct target_ops *, bfd *, int *);
6b04bdb7 554 /* get_bookmark support method for bookmarks */
dd0e2830 555 gdb_byte * (*to_get_bookmark) (struct target_ops *, char *, int);
6b04bdb7 556 /* goto_bookmark support method for bookmarks */
3c80fb48 557 void (*to_goto_bookmark) (struct target_ops *, gdb_byte *, int);
3f47be5c
EZ
558 /* Return the thread-local address at OFFSET in the
559 thread-local storage for the thread PTID and the shared library
560 or executable file given by OBJFILE. If that block of
561 thread-local storage hasn't been allocated yet, this function
562 may return an error. */
117de6a9
PA
563 CORE_ADDR (*to_get_thread_local_address) (struct target_ops *ops,
564 ptid_t ptid,
b2756930 565 CORE_ADDR load_module_addr,
3f47be5c
EZ
566 CORE_ADDR offset);
567
13547ab6
DJ
568 /* Request that OPS transfer up to LEN 8-bit bytes of the target's
569 OBJECT. The OFFSET, for a seekable object, specifies the
570 starting point. The ANNEX can be used to provide additional
571 data-specific information to the target.
572
9b409511
YQ
573 Return the transferred status, error or OK (an
574 'enum target_xfer_status' value). Save the number of bytes
575 actually transferred in *XFERED_LEN if transfer is successful
576 (TARGET_XFER_OK) or the number unavailable bytes if the requested
577 data is unavailable (TARGET_XFER_E_UNAVAILABLE). *XFERED_LEN
578 smaller than LEN does not indicate the end of the object, only
579 the end of the transfer; higher level code should continue
580 transferring if desired. This is handled in target.c.
13547ab6
DJ
581
582 The interface does not support a "retry" mechanism. Instead it
583 assumes that at least one byte will be transfered on each
584 successful call.
585
586 NOTE: cagney/2003-10-17: The current interface can lead to
587 fragmented transfers. Lower target levels should not implement
588 hacks, such as enlarging the transfer, in an attempt to
589 compensate for this. Instead, the target stack should be
590 extended so that it implements supply/collect methods and a
591 look-aside object cache. With that available, the lowest
592 target can safely and freely "push" data up the stack.
593
594 See target_read and target_write for more information. One,
595 and only one, of readbuf or writebuf must be non-NULL. */
596
9b409511
YQ
597 enum target_xfer_status (*to_xfer_partial) (struct target_ops *ops,
598 enum target_object object,
599 const char *annex,
600 gdb_byte *readbuf,
601 const gdb_byte *writebuf,
602 ULONGEST offset, ULONGEST len,
6b84065d
TT
603 ULONGEST *xfered_len)
604 TARGET_DEFAULT_RETURN (TARGET_XFER_E_IO);
1e3ff5ad 605
fd79ecee
DJ
606 /* Returns the memory map for the target. A return value of NULL
607 means that no memory map is available. If a memory address
608 does not fall within any returned regions, it's assumed to be
609 RAM. The returned memory regions should not overlap.
610
611 The order of regions does not matter; target_memory_map will
c378eb4e 612 sort regions by starting address. For that reason, this
fd79ecee
DJ
613 function should not be called directly except via
614 target_memory_map.
615
616 This method should not cache data; if the memory map could
617 change unexpectedly, it should be invalidated, and higher
618 layers will re-fetch it. */
619 VEC(mem_region_s) *(*to_memory_map) (struct target_ops *);
620
a76d924d
DJ
621 /* Erases the region of flash memory starting at ADDRESS, of
622 length LENGTH.
623
624 Precondition: both ADDRESS and ADDRESS+LENGTH should be aligned
625 on flash block boundaries, as reported by 'to_memory_map'. */
626 void (*to_flash_erase) (struct target_ops *,
627 ULONGEST address, LONGEST length);
628
629 /* Finishes a flash memory write sequence. After this operation
630 all flash memory should be available for writing and the result
631 of reading from areas written by 'to_flash_write' should be
632 equal to what was written. */
633 void (*to_flash_done) (struct target_ops *);
634
424163ea
DJ
635 /* Describe the architecture-specific features of this target.
636 Returns the description found, or NULL if no description
637 was available. */
638 const struct target_desc *(*to_read_description) (struct target_ops *ops);
639
0ef643c8
JB
640 /* Build the PTID of the thread on which a given task is running,
641 based on LWP and THREAD. These values are extracted from the
642 task Private_Data section of the Ada Task Control Block, and
643 their interpretation depends on the target. */
1e6b91a4
TT
644 ptid_t (*to_get_ada_task_ptid) (struct target_ops *,
645 long lwp, long thread);
0ef643c8 646
c47ffbe3
VP
647 /* Read one auxv entry from *READPTR, not reading locations >= ENDPTR.
648 Return 0 if *READPTR is already at the end of the buffer.
649 Return -1 if there is insufficient buffer for a whole entry.
650 Return 1 if an entry was read into *TYPEP and *VALP. */
651 int (*to_auxv_parse) (struct target_ops *ops, gdb_byte **readptr,
652 gdb_byte *endptr, CORE_ADDR *typep, CORE_ADDR *valp);
653
08388c79
DE
654 /* Search SEARCH_SPACE_LEN bytes beginning at START_ADDR for the
655 sequence of bytes in PATTERN with length PATTERN_LEN.
656
657 The result is 1 if found, 0 if not found, and -1 if there was an error
658 requiring halting of the search (e.g. memory read error).
659 If the pattern is found the address is recorded in FOUND_ADDRP. */
660 int (*to_search_memory) (struct target_ops *ops,
661 CORE_ADDR start_addr, ULONGEST search_space_len,
662 const gdb_byte *pattern, ULONGEST pattern_len,
663 CORE_ADDR *found_addrp);
664
b2175913 665 /* Can target execute in reverse? */
19db3e69 666 int (*to_can_execute_reverse) (struct target_ops *);
b2175913 667
32231432
PA
668 /* The direction the target is currently executing. Must be
669 implemented on targets that support reverse execution and async
670 mode. The default simply returns forward execution. */
4c612759 671 enum exec_direction_kind (*to_execution_direction) (struct target_ops *);
32231432 672
8a305172
PA
673 /* Does this target support debugging multiple processes
674 simultaneously? */
86ce2668 675 int (*to_supports_multi_process) (struct target_ops *);
8a305172 676
d248b706
KY
677 /* Does this target support enabling and disabling tracepoints while a trace
678 experiment is running? */
7d178d6a 679 int (*to_supports_enable_disable_tracepoint) (struct target_ops *);
d248b706 680
03583c20 681 /* Does this target support disabling address space randomization? */
2bfc0540 682 int (*to_supports_disable_randomization) (struct target_ops *);
03583c20 683
3065dfb6 684 /* Does this target support the tracenz bytecode for string collection? */
6de37a3a 685 int (*to_supports_string_tracing) (struct target_ops *);
3065dfb6 686
b775012e
LM
687 /* Does this target support evaluation of breakpoint conditions on its
688 end? */
efcc2da7 689 int (*to_supports_evaluation_of_breakpoint_conditions) (struct target_ops *);
b775012e 690
d3ce09f5
SS
691 /* Does this target support evaluation of breakpoint commands on its
692 end? */
78eff0ec 693 int (*to_can_run_breakpoint_commands) (struct target_ops *);
d3ce09f5 694
3a8f7b07
JK
695 /* Determine current architecture of thread PTID.
696
697 The target is supposed to determine the architecture of the code where
698 the target is currently stopped at (on Cell, if a target is in spu_run,
699 to_thread_architecture would return SPU, otherwise PPC32 or PPC64).
700 This is architecture used to perform decr_pc_after_break adjustment,
701 and also determines the frame architecture of the innermost frame.
f5656ead 702 ptrace operations need to operate according to target_gdbarch ().
3a8f7b07 703
f5656ead 704 The default implementation always returns target_gdbarch (). */
c2250ad1
UW
705 struct gdbarch *(*to_thread_architecture) (struct target_ops *, ptid_t);
706
c0694254
PA
707 /* Determine current address space of thread PTID.
708
709 The default implementation always returns the inferior's
710 address space. */
711 struct address_space *(*to_thread_address_space) (struct target_ops *,
712 ptid_t);
713
7313baad
UW
714 /* Target file operations. */
715
716 /* Open FILENAME on the target, using FLAGS and MODE. Return a
717 target file descriptor, or -1 if an error occurs (and set
718 *TARGET_ERRNO). */
cd897586
TT
719 int (*to_fileio_open) (struct target_ops *,
720 const char *filename, int flags, int mode,
7313baad
UW
721 int *target_errno);
722
723 /* Write up to LEN bytes from WRITE_BUF to FD on the target.
724 Return the number of bytes written, or -1 if an error occurs
725 (and set *TARGET_ERRNO). */
0d866f62
TT
726 int (*to_fileio_pwrite) (struct target_ops *,
727 int fd, const gdb_byte *write_buf, int len,
7313baad
UW
728 ULONGEST offset, int *target_errno);
729
730 /* Read up to LEN bytes FD on the target into READ_BUF.
731 Return the number of bytes read, or -1 if an error occurs
732 (and set *TARGET_ERRNO). */
a3be983c
TT
733 int (*to_fileio_pread) (struct target_ops *,
734 int fd, gdb_byte *read_buf, int len,
7313baad
UW
735 ULONGEST offset, int *target_errno);
736
737 /* Close FD on the target. Return 0, or -1 if an error occurs
738 (and set *TARGET_ERRNO). */
df39ea25 739 int (*to_fileio_close) (struct target_ops *, int fd, int *target_errno);
7313baad
UW
740
741 /* Unlink FILENAME on the target. Return 0, or -1 if an error
742 occurs (and set *TARGET_ERRNO). */
dbbca37d
TT
743 int (*to_fileio_unlink) (struct target_ops *,
744 const char *filename, int *target_errno);
7313baad 745
b9e7b9c3
UW
746 /* Read value of symbolic link FILENAME on the target. Return a
747 null-terminated string allocated via xmalloc, or NULL if an error
748 occurs (and set *TARGET_ERRNO). */
fab5aa7c
TT
749 char *(*to_fileio_readlink) (struct target_ops *,
750 const char *filename, int *target_errno);
b9e7b9c3 751
7313baad 752
145b16a9
UW
753 /* Implement the "info proc" command. */
754 void (*to_info_proc) (struct target_ops *, char *, enum info_proc_what);
755
35b1e5cc
SS
756 /* Tracepoint-related operations. */
757
758 /* Prepare the target for a tracing run. */
ecae04e1 759 void (*to_trace_init) (struct target_ops *);
35b1e5cc 760
e8ba3115 761 /* Send full details of a tracepoint location to the target. */
548f7808
TT
762 void (*to_download_tracepoint) (struct target_ops *,
763 struct bp_location *location);
35b1e5cc 764
1e4d1764
YQ
765 /* Is the target able to download tracepoint locations in current
766 state? */
a52a8357 767 int (*to_can_download_tracepoint) (struct target_ops *);
1e4d1764 768
35b1e5cc 769 /* Send full details of a trace state variable to the target. */
559d2b81
TT
770 void (*to_download_trace_state_variable) (struct target_ops *,
771 struct trace_state_variable *tsv);
35b1e5cc 772
d248b706 773 /* Enable a tracepoint on the target. */
46670d57
TT
774 void (*to_enable_tracepoint) (struct target_ops *,
775 struct bp_location *location);
d248b706
KY
776
777 /* Disable a tracepoint on the target. */
780b049c
TT
778 void (*to_disable_tracepoint) (struct target_ops *,
779 struct bp_location *location);
d248b706 780
35b1e5cc
SS
781 /* Inform the target info of memory regions that are readonly
782 (such as text sections), and so it should return data from
783 those rather than look in the trace buffer. */
583f9a86 784 void (*to_trace_set_readonly_regions) (struct target_ops *);
35b1e5cc
SS
785
786 /* Start a trace run. */
e2d1aae3 787 void (*to_trace_start) (struct target_ops *);
35b1e5cc
SS
788
789 /* Get the current status of a tracing run. */
8bd200f1 790 int (*to_get_trace_status) (struct target_ops *, struct trace_status *ts);
35b1e5cc 791
db90e85c
TT
792 void (*to_get_tracepoint_status) (struct target_ops *,
793 struct breakpoint *tp,
f196051f
SS
794 struct uploaded_tp *utp);
795
35b1e5cc 796 /* Stop a trace run. */
74499f1b 797 void (*to_trace_stop) (struct target_ops *);
35b1e5cc
SS
798
799 /* Ask the target to find a trace frame of the given type TYPE,
800 using NUM, ADDR1, and ADDR2 as search parameters. Returns the
801 number of the trace frame, and also the tracepoint number at
c378eb4e 802 TPP. If no trace frame matches, return -1. May throw if the
f197e0f1 803 operation fails. */
bd4c6793
TT
804 int (*to_trace_find) (struct target_ops *,
805 enum trace_find_type type, int num,
cc5925ad 806 CORE_ADDR addr1, CORE_ADDR addr2, int *tpp);
35b1e5cc
SS
807
808 /* Get the value of the trace state variable number TSV, returning
809 1 if the value is known and writing the value itself into the
810 location pointed to by VAL, else returning 0. */
4011015b
TT
811 int (*to_get_trace_state_variable_value) (struct target_ops *,
812 int tsv, LONGEST *val);
35b1e5cc 813
dc3decaf 814 int (*to_save_trace_data) (struct target_ops *, const char *filename);
00bf0b85 815
ab6617cc
TT
816 int (*to_upload_tracepoints) (struct target_ops *,
817 struct uploaded_tp **utpp);
00bf0b85 818
181e3713
TT
819 int (*to_upload_trace_state_variables) (struct target_ops *,
820 struct uploaded_tsv **utsvp);
00bf0b85 821
88ee6f45 822 LONGEST (*to_get_raw_trace_data) (struct target_ops *, gdb_byte *buf,
00bf0b85
SS
823 ULONGEST offset, LONGEST len);
824
405f8e94
SS
825 /* Get the minimum length of instruction on which a fast tracepoint
826 may be set on the target. If this operation is unsupported,
827 return -1. If for some reason the minimum length cannot be
828 determined, return 0. */
0e67620a 829 int (*to_get_min_fast_tracepoint_insn_len) (struct target_ops *);
405f8e94 830
35b1e5cc
SS
831 /* Set the target's tracing behavior in response to unexpected
832 disconnection - set VAL to 1 to keep tracing, 0 to stop. */
37b25738 833 void (*to_set_disconnected_tracing) (struct target_ops *, int val);
736d5b1f 834 void (*to_set_circular_trace_buffer) (struct target_ops *, int val);
f6f899bf 835 /* Set the size of trace buffer in the target. */
4da384be 836 void (*to_set_trace_buffer_size) (struct target_ops *, LONGEST val);
35b1e5cc 837
f196051f
SS
838 /* Add/change textual notes about the trace run, returning 1 if
839 successful, 0 otherwise. */
d9e68a2c
TT
840 int (*to_set_trace_notes) (struct target_ops *,
841 const char *user, const char *notes,
ca623f82 842 const char *stopnotes);
f196051f 843
dc146f7c
VP
844 /* Return the processor core that thread PTID was last seen on.
845 This information is updated only when:
846 - update_thread_list is called
847 - thread stops
3e43a32a
MS
848 If the core cannot be determined -- either for the specified
849 thread, or right now, or in this debug session, or for this
850 target -- return -1. */
dc146f7c
VP
851 int (*to_core_of_thread) (struct target_ops *, ptid_t ptid);
852
4a5e7a5b
PA
853 /* Verify that the memory in the [MEMADDR, MEMADDR+SIZE) range
854 matches the contents of [DATA,DATA+SIZE). Returns 1 if there's
855 a match, 0 if there's a mismatch, and -1 if an error is
856 encountered while reading memory. */
857 int (*to_verify_memory) (struct target_ops *, const gdb_byte *data,
858 CORE_ADDR memaddr, ULONGEST size);
859
711e434b
PM
860 /* Return the address of the start of the Thread Information Block
861 a Windows OS specific feature. */
bd7ae0f5
TT
862 int (*to_get_tib_address) (struct target_ops *,
863 ptid_t ptid, CORE_ADDR *addr);
711e434b 864
d914c394 865 /* Send the new settings of write permission variables. */
c378d69d 866 void (*to_set_permissions) (struct target_ops *);
d914c394 867
0fb4aa4b
PA
868 /* Look for a static tracepoint marker at ADDR, and fill in MARKER
869 with its details. Return 1 on success, 0 on failure. */
61fc905d 870 int (*to_static_tracepoint_marker_at) (struct target_ops *, CORE_ADDR,
0fb4aa4b
PA
871 struct static_tracepoint_marker *marker);
872
873 /* Return a vector of all tracepoints markers string id ID, or all
874 markers if ID is NULL. */
875 VEC(static_tracepoint_marker_p) *(*to_static_tracepoint_markers_by_strid)
876 (const char *id);
877
b3b9301e 878 /* Return a traceframe info object describing the current
1527aea8
YQ
879 traceframe's contents. If the target doesn't support
880 traceframe info, return NULL. If the current traceframe is not
881 selected (the current traceframe number is -1), the target can
882 choose to return either NULL or an empty traceframe info. If
883 NULL is returned, for example in remote target, GDB will read
884 from the live inferior. If an empty traceframe info is
885 returned, for example in tfile target, which means the
886 traceframe info is available, but the requested memory is not
887 available in it. GDB will try to see if the requested memory
888 is available in the read-only sections. This method should not
889 cache data; higher layers take care of caching, invalidating,
890 and re-fetching when necessary. */
b3b9301e
PA
891 struct traceframe_info *(*to_traceframe_info) (void);
892
d1feda86
YQ
893 /* Ask the target to use or not to use agent according to USE. Return 1
894 successful, 0 otherwise. */
895 int (*to_use_agent) (int use);
896
897 /* Is the target able to use agent in current state? */
898 int (*to_can_use_agent) (void);
899
02d27625 900 /* Check whether the target supports branch tracing. */
46917d26
TT
901 int (*to_supports_btrace) (struct target_ops *)
902 TARGET_DEFAULT_RETURN (0);
02d27625
MM
903
904 /* Enable branch tracing for PTID and allocate a branch trace target
905 information struct for reading and for disabling branch trace. */
906 struct btrace_target_info *(*to_enable_btrace) (ptid_t ptid);
907
908 /* Disable branch tracing and deallocate TINFO. */
909 void (*to_disable_btrace) (struct btrace_target_info *tinfo);
910
911 /* Disable branch tracing and deallocate TINFO. This function is similar
912 to to_disable_btrace, except that it is called during teardown and is
913 only allowed to perform actions that are safe. A counter-example would
914 be attempting to talk to a remote target. */
915 void (*to_teardown_btrace) (struct btrace_target_info *tinfo);
916
969c39fb
MM
917 /* Read branch trace data for the thread indicated by BTINFO into DATA.
918 DATA is cleared before new trace is added.
919 The branch trace will start with the most recent block and continue
920 towards older blocks. */
921 enum btrace_error (*to_read_btrace) (VEC (btrace_block_s) **data,
922 struct btrace_target_info *btinfo,
923 enum btrace_read_type type);
02d27625 924
7c1687a9
MM
925 /* Stop trace recording. */
926 void (*to_stop_recording) (void);
927
d02ed0bb
MM
928 /* Print information about the recording. */
929 void (*to_info_record) (void);
930
931 /* Save the recorded execution trace into a file. */
85e1311a 932 void (*to_save_record) (const char *filename);
d02ed0bb
MM
933
934 /* Delete the recorded execution trace from the current position onwards. */
935 void (*to_delete_record) (void);
936
937 /* Query if the record target is currently replaying. */
938 int (*to_record_is_replaying) (void);
939
940 /* Go to the begin of the execution trace. */
941 void (*to_goto_record_begin) (void);
942
943 /* Go to the end of the execution trace. */
944 void (*to_goto_record_end) (void);
945
946 /* Go to a specific location in the recorded execution trace. */
947 void (*to_goto_record) (ULONGEST insn);
948
67c86d06
MM
949 /* Disassemble SIZE instructions in the recorded execution trace from
950 the current position.
951 If SIZE < 0, disassemble abs (SIZE) preceding instructions; otherwise,
952 disassemble SIZE succeeding instructions. */
953 void (*to_insn_history) (int size, int flags);
954
955 /* Disassemble SIZE instructions in the recorded execution trace around
956 FROM.
957 If SIZE < 0, disassemble abs (SIZE) instructions before FROM; otherwise,
958 disassemble SIZE instructions after FROM. */
959 void (*to_insn_history_from) (ULONGEST from, int size, int flags);
960
961 /* Disassemble a section of the recorded execution trace from instruction
0688d04e 962 BEGIN (inclusive) to instruction END (inclusive). */
67c86d06
MM
963 void (*to_insn_history_range) (ULONGEST begin, ULONGEST end, int flags);
964
15984c13
MM
965 /* Print a function trace of the recorded execution trace.
966 If SIZE < 0, print abs (SIZE) preceding functions; otherwise, print SIZE
967 succeeding functions. */
968 void (*to_call_history) (int size, int flags);
969
970 /* Print a function trace of the recorded execution trace starting
971 at function FROM.
972 If SIZE < 0, print abs (SIZE) functions before FROM; otherwise, print
973 SIZE functions after FROM. */
974 void (*to_call_history_from) (ULONGEST begin, int size, int flags);
975
976 /* Print a function trace of an execution trace section from function BEGIN
0688d04e 977 (inclusive) to function END (inclusive). */
15984c13
MM
978 void (*to_call_history_range) (ULONGEST begin, ULONGEST end, int flags);
979
ced63ec0
GB
980 /* Nonzero if TARGET_OBJECT_LIBRARIES_SVR4 may be read with a
981 non-empty annex. */
982 int (*to_augmented_libraries_svr4_read) (void);
983
ea001bdc
MM
984 /* Those unwinders are tried before any other arch unwinders. Use NULL if
985 it is not used. */
986 const struct frame_unwind *to_get_unwinder;
987 const struct frame_unwind *to_get_tailcall_unwinder;
988
118e6252
MM
989 /* Return the number of bytes by which the PC needs to be decremented
990 after executing a breakpoint instruction.
991 Defaults to gdbarch_decr_pc_after_break (GDBARCH). */
992 CORE_ADDR (*to_decr_pc_after_break) (struct target_ops *ops,
993 struct gdbarch *gdbarch);
994
c5aa993b 995 int to_magic;
0d06e24b
JM
996 /* Need sub-structure for target machine related rather than comm related?
997 */
c5aa993b 998 };
c906108c
SS
999
1000/* Magic number for checking ops size. If a struct doesn't end with this
1001 number, somebody changed the declaration but didn't change all the
1002 places that initialize one. */
1003
1004#define OPS_MAGIC 3840
1005
1006/* The ops structure for our "current" target process. This should
1007 never be NULL. If there is no target, it points to the dummy_target. */
1008
c5aa993b 1009extern struct target_ops current_target;
c906108c 1010
c906108c
SS
1011/* Define easy words for doing these operations on our current target. */
1012
1013#define target_shortname (current_target.to_shortname)
1014#define target_longname (current_target.to_longname)
1015
f1c07ab0 1016/* Does whatever cleanup is required for a target that we are no
460014f5
JK
1017 longer going to be calling. This routine is automatically always
1018 called after popping the target off the target stack - the target's
1019 own methods are no longer available through the target vector.
1020 Closing file descriptors and freeing all memory allocated memory are
1021 typical things it should do. */
f1c07ab0 1022
460014f5 1023void target_close (struct target_ops *targ);
c906108c
SS
1024
1025/* Attaches to a process on the target side. Arguments are as passed
1026 to the `attach' command by the user. This routine can be called
1027 when the target is not on the target-stack, if the target_can_run
2146d243 1028 routine returns 1; in that case, it must push itself onto the stack.
c906108c 1029 Upon exit, the target should be ready for normal operations, and
2146d243 1030 should be ready to deliver the status of the process immediately
c906108c
SS
1031 (without waiting) to an upcoming target_wait call. */
1032
136d6dae 1033void target_attach (char *, int);
c906108c 1034
dc177b7a
PA
1035/* Some targets don't generate traps when attaching to the inferior,
1036 or their target_attach implementation takes care of the waiting.
1037 These targets must set to_attach_no_wait. */
1038
1039#define target_attach_no_wait \
1040 (current_target.to_attach_no_wait)
1041
c906108c
SS
1042/* The target_attach operation places a process under debugger control,
1043 and stops the process.
1044
1045 This operation provides a target-specific hook that allows the
0d06e24b 1046 necessary bookkeeping to be performed after an attach completes. */
c906108c 1047#define target_post_attach(pid) \
f045800c 1048 (*current_target.to_post_attach) (&current_target, pid)
c906108c 1049
c906108c
SS
1050/* Takes a program previously attached to and detaches it.
1051 The program may resume execution (some targets do, some don't) and will
1052 no longer stop on signals, etc. We better not have left any breakpoints
1053 in the program or it'll die when it hits one. ARGS is arguments
1054 typed by the user (e.g. a signal to send the process). FROM_TTY
1055 says whether to be verbose or not. */
1056
52554a0e 1057extern void target_detach (const char *, int);
c906108c 1058
6ad8ae5c
DJ
1059/* Disconnect from the current target without resuming it (leaving it
1060 waiting for a debugger). */
1061
1062extern void target_disconnect (char *, int);
1063
e5ef252a
PA
1064/* Resume execution of the target process PTID (or a group of
1065 threads). STEP says whether to single-step or to run free; SIGGNAL
1066 is the signal to be given to the target, or GDB_SIGNAL_0 for no
1067 signal. The caller may not pass GDB_SIGNAL_DEFAULT. A specific
1068 PTID means `step/resume only this process id'. A wildcard PTID
1069 (all threads, or all threads of process) means `step/resume
1070 INFERIOR_PTID, and let other threads (for which the wildcard PTID
1071 matches) resume with their 'thread->suspend.stop_signal' signal
1072 (usually GDB_SIGNAL_0) if it is in "pass" state, or with no signal
1073 if in "no pass" state. */
c906108c 1074
2ea28649 1075extern void target_resume (ptid_t ptid, int step, enum gdb_signal signal);
c906108c 1076
b5a2688f
AC
1077/* Wait for process pid to do something. PTID = -1 to wait for any
1078 pid to do something. Return pid of child, or -1 in case of error;
c906108c 1079 store status through argument pointer STATUS. Note that it is
b5a2688f 1080 _NOT_ OK to throw_exception() out of target_wait() without popping
c906108c
SS
1081 the debugging target from the stack; GDB isn't prepared to get back
1082 to the prompt with a debugging target but without the frame cache,
47608cb1
PA
1083 stop_pc, etc., set up. OPTIONS is a bitwise OR of TARGET_W*
1084 options. */
c906108c 1085
47608cb1
PA
1086extern ptid_t target_wait (ptid_t ptid, struct target_waitstatus *status,
1087 int options);
c906108c 1088
17dee195 1089/* Fetch at least register REGNO, or all regs if regno == -1. No result. */
c906108c 1090
28439f5e 1091extern void target_fetch_registers (struct regcache *regcache, int regno);
c906108c
SS
1092
1093/* Store at least register REGNO, or all regs if REGNO == -1.
1094 It can store as many registers as it wants to, so target_prepare_to_store
1095 must have been previously called. Calls error() if there are problems. */
1096
28439f5e 1097extern void target_store_registers (struct regcache *regcache, int regs);
c906108c
SS
1098
1099/* Get ready to modify the registers array. On machines which store
1100 individual registers, this doesn't need to do anything. On machines
1101 which store all the registers in one fell swoop, this makes sure
1102 that REGISTERS contains all the registers from the program being
1103 debugged. */
1104
316f2060 1105#define target_prepare_to_store(regcache) \
f32dbf8c 1106 (*current_target.to_prepare_to_store) (&current_target, regcache)
c906108c 1107
6c95b8df
PA
1108/* Determine current address space of thread PTID. */
1109
1110struct address_space *target_thread_address_space (ptid_t);
1111
451b7c33
TT
1112/* Implement the "info proc" command. This returns one if the request
1113 was handled, and zero otherwise. It can also throw an exception if
1114 an error was encountered while attempting to handle the
1115 request. */
145b16a9 1116
451b7c33 1117int target_info_proc (char *, enum info_proc_what);
145b16a9 1118
8a305172
PA
1119/* Returns true if this target can debug multiple processes
1120 simultaneously. */
1121
1122#define target_supports_multi_process() \
86ce2668 1123 (*current_target.to_supports_multi_process) (&current_target)
8a305172 1124
03583c20
UW
1125/* Returns true if this target can disable address space randomization. */
1126
1127int target_supports_disable_randomization (void);
1128
d248b706
KY
1129/* Returns true if this target can enable and disable tracepoints
1130 while a trace experiment is running. */
1131
1132#define target_supports_enable_disable_tracepoint() \
7d178d6a 1133 (*current_target.to_supports_enable_disable_tracepoint) (&current_target)
d248b706 1134
3065dfb6 1135#define target_supports_string_tracing() \
6de37a3a 1136 (*current_target.to_supports_string_tracing) (&current_target)
3065dfb6 1137
b775012e
LM
1138/* Returns true if this target can handle breakpoint conditions
1139 on its end. */
1140
1141#define target_supports_evaluation_of_breakpoint_conditions() \
efcc2da7 1142 (*current_target.to_supports_evaluation_of_breakpoint_conditions) (&current_target)
b775012e 1143
d3ce09f5
SS
1144/* Returns true if this target can handle breakpoint commands
1145 on its end. */
1146
1147#define target_can_run_breakpoint_commands() \
78eff0ec 1148 (*current_target.to_can_run_breakpoint_commands) (&current_target)
d3ce09f5 1149
a14ed312 1150extern int target_read_string (CORE_ADDR, char **, int, int *);
c906108c 1151
5299c1c4 1152extern int target_read_memory (CORE_ADDR memaddr, gdb_byte *myaddr,
1b162304 1153 ssize_t len);
c906108c 1154
aee4bf85
PA
1155extern int target_read_raw_memory (CORE_ADDR memaddr, gdb_byte *myaddr,
1156 ssize_t len);
1157
45aa4659 1158extern int target_read_stack (CORE_ADDR memaddr, gdb_byte *myaddr, ssize_t len);
4e5d721f 1159
29453a14
YQ
1160extern int target_read_code (CORE_ADDR memaddr, gdb_byte *myaddr, ssize_t len);
1161
fc1a4b47 1162extern int target_write_memory (CORE_ADDR memaddr, const gdb_byte *myaddr,
45aa4659 1163 ssize_t len);
c906108c 1164
f0ba3972 1165extern int target_write_raw_memory (CORE_ADDR memaddr, const gdb_byte *myaddr,
45aa4659 1166 ssize_t len);
f0ba3972 1167
fd79ecee
DJ
1168/* Fetches the target's memory map. If one is found it is sorted
1169 and returned, after some consistency checking. Otherwise, NULL
1170 is returned. */
1171VEC(mem_region_s) *target_memory_map (void);
1172
a76d924d
DJ
1173/* Erase the specified flash region. */
1174void target_flash_erase (ULONGEST address, LONGEST length);
1175
1176/* Finish a sequence of flash operations. */
1177void target_flash_done (void);
1178
1179/* Describes a request for a memory write operation. */
1180struct memory_write_request
1181 {
c378eb4e 1182 /* Begining address that must be written. */
a76d924d 1183 ULONGEST begin;
c378eb4e 1184 /* Past-the-end address. */
a76d924d 1185 ULONGEST end;
c378eb4e 1186 /* The data to write. */
a76d924d
DJ
1187 gdb_byte *data;
1188 /* A callback baton for progress reporting for this request. */
1189 void *baton;
1190 };
1191typedef struct memory_write_request memory_write_request_s;
1192DEF_VEC_O(memory_write_request_s);
1193
1194/* Enumeration specifying different flash preservation behaviour. */
1195enum flash_preserve_mode
1196 {
1197 flash_preserve,
1198 flash_discard
1199 };
1200
1201/* Write several memory blocks at once. This version can be more
1202 efficient than making several calls to target_write_memory, in
1203 particular because it can optimize accesses to flash memory.
1204
1205 Moreover, this is currently the only memory access function in gdb
1206 that supports writing to flash memory, and it should be used for
1207 all cases where access to flash memory is desirable.
1208
1209 REQUESTS is the vector (see vec.h) of memory_write_request.
1210 PRESERVE_FLASH_P indicates what to do with blocks which must be
1211 erased, but not completely rewritten.
1212 PROGRESS_CB is a function that will be periodically called to provide
1213 feedback to user. It will be called with the baton corresponding
1214 to the request currently being written. It may also be called
1215 with a NULL baton, when preserved flash sectors are being rewritten.
1216
1217 The function returns 0 on success, and error otherwise. */
1218int target_write_memory_blocks (VEC(memory_write_request_s) *requests,
1219 enum flash_preserve_mode preserve_flash_p,
1220 void (*progress_cb) (ULONGEST, void *));
1221
c906108c
SS
1222/* Print a line about the current target. */
1223
1224#define target_files_info() \
0d06e24b 1225 (*current_target.to_files_info) (&current_target)
c906108c 1226
0000e5cc
PA
1227/* Insert a hardware breakpoint at address BP_TGT->placed_address in
1228 the target machine. Returns 0 for success, and returns non-zero or
1229 throws an error (with a detailed failure reason error code and
1230 message) otherwise. */
c906108c 1231
d914c394
SS
1232extern int target_insert_breakpoint (struct gdbarch *gdbarch,
1233 struct bp_target_info *bp_tgt);
c906108c 1234
8181d85f 1235/* Remove a breakpoint at address BP_TGT->placed_address in the target
578d3588 1236 machine. Result is 0 for success, non-zero for error. */
c906108c 1237
d914c394
SS
1238extern int target_remove_breakpoint (struct gdbarch *gdbarch,
1239 struct bp_target_info *bp_tgt);
c906108c
SS
1240
1241/* Initialize the terminal settings we record for the inferior,
1242 before we actually run the inferior. */
1243
1244#define target_terminal_init() \
c42bf286 1245 (*current_target.to_terminal_init) (&current_target)
c906108c
SS
1246
1247/* Put the inferior's terminal settings into effect.
1248 This is preparation for starting or resuming the inferior. */
1249
d9d2d8b6 1250extern void target_terminal_inferior (void);
c906108c
SS
1251
1252/* Put some of our terminal settings into effect,
1253 enough to get proper results from our output,
1254 but do not change into or out of RAW mode
1255 so that no input is discarded.
1256
1257 After doing this, either terminal_ours or terminal_inferior
1258 should be called to get back to a normal state of affairs. */
1259
1260#define target_terminal_ours_for_output() \
2e1e1a19 1261 (*current_target.to_terminal_ours_for_output) (&current_target)
c906108c
SS
1262
1263/* Put our terminal settings into effect.
1264 First record the inferior's terminal settings
1265 so they can be restored properly later. */
1266
1267#define target_terminal_ours() \
e3594fd1 1268 (*current_target.to_terminal_ours) (&current_target)
c906108c 1269
a790ad35
SC
1270/* Save our terminal settings.
1271 This is called from TUI after entering or leaving the curses
1272 mode. Since curses modifies our terminal this call is here
1273 to take this change into account. */
1274
1275#define target_terminal_save_ours() \
ae3bd431 1276 (*current_target.to_terminal_save_ours) (&current_target)
a790ad35 1277
c906108c
SS
1278/* Print useful information about our terminal status, if such a thing
1279 exists. */
1280
1281#define target_terminal_info(arg, from_tty) \
0a4f40a2 1282 (*current_target.to_terminal_info) (&current_target, arg, from_tty)
c906108c
SS
1283
1284/* Kill the inferior process. Make it go away. */
1285
7d85a9c0 1286extern void target_kill (void);
c906108c 1287
0d06e24b
JM
1288/* Load an executable file into the target process. This is expected
1289 to not only bring new code into the target process, but also to
1986bccd
AS
1290 update GDB's symbol tables to match.
1291
1292 ARG contains command-line arguments, to be broken down with
1293 buildargv (). The first non-switch argument is the filename to
1294 load, FILE; the second is a number (as parsed by strtoul (..., ...,
1295 0)), which is an offset to apply to the load addresses of FILE's
1296 sections. The target may define switches, or other non-switch
1297 arguments, as it pleases. */
c906108c 1298
11cf8741 1299extern void target_load (char *arg, int from_tty);
c906108c 1300
39f77062 1301/* Start an inferior process and set inferior_ptid to its pid.
c906108c
SS
1302 EXEC_FILE is the file to run.
1303 ALLARGS is a string containing the arguments to the program.
1304 ENV is the environment vector to pass. Errors reported with error().
1305 On VxWorks and various standalone systems, we ignore exec_file. */
c5aa993b 1306
136d6dae
VP
1307void target_create_inferior (char *exec_file, char *args,
1308 char **env, int from_tty);
c906108c
SS
1309
1310/* Some targets (such as ttrace-based HPUX) don't allow us to request
1311 notification of inferior events such as fork and vork immediately
1312 after the inferior is created. (This because of how gdb gets an
1313 inferior created via invoking a shell to do it. In such a scenario,
1314 if the shell init file has commands in it, the shell will fork and
1315 exec for each of those commands, and we will see each such fork
1316 event. Very bad.)
c5aa993b 1317
0d06e24b
JM
1318 Such targets will supply an appropriate definition for this function. */
1319
39f77062 1320#define target_post_startup_inferior(ptid) \
2e97a79e 1321 (*current_target.to_post_startup_inferior) (&current_target, ptid)
c906108c 1322
0d06e24b
JM
1323/* On some targets, we can catch an inferior fork or vfork event when
1324 it occurs. These functions insert/remove an already-created
77b06cd7
TJB
1325 catchpoint for such events. They return 0 for success, 1 if the
1326 catchpoint type is not supported and -1 for failure. */
c906108c 1327
c906108c 1328#define target_insert_fork_catchpoint(pid) \
a863b201 1329 (*current_target.to_insert_fork_catchpoint) (&current_target, pid)
c906108c
SS
1330
1331#define target_remove_fork_catchpoint(pid) \
973fc227 1332 (*current_target.to_remove_fork_catchpoint) (&current_target, pid)
c906108c
SS
1333
1334#define target_insert_vfork_catchpoint(pid) \
3ecc7da0 1335 (*current_target.to_insert_vfork_catchpoint) (&current_target, pid)
c906108c
SS
1336
1337#define target_remove_vfork_catchpoint(pid) \
e98cf0cd 1338 (*current_target.to_remove_vfork_catchpoint) (&current_target, pid)
c906108c 1339
6604731b
DJ
1340/* If the inferior forks or vforks, this function will be called at
1341 the next resume in order to perform any bookkeeping and fiddling
1342 necessary to continue debugging either the parent or child, as
1343 requested, and releasing the other. Information about the fork
1344 or vfork event is available via get_last_target_status ().
1345 This function returns 1 if the inferior should not be resumed
1346 (i.e. there is another event pending). */
0d06e24b 1347
07107ca6 1348int target_follow_fork (int follow_child, int detach_fork);
c906108c
SS
1349
1350/* On some targets, we can catch an inferior exec event when it
0d06e24b 1351 occurs. These functions insert/remove an already-created
77b06cd7
TJB
1352 catchpoint for such events. They return 0 for success, 1 if the
1353 catchpoint type is not supported and -1 for failure. */
0d06e24b 1354
c906108c 1355#define target_insert_exec_catchpoint(pid) \
ba025e51 1356 (*current_target.to_insert_exec_catchpoint) (&current_target, pid)
c5aa993b 1357
c906108c 1358#define target_remove_exec_catchpoint(pid) \
758e29d2 1359 (*current_target.to_remove_exec_catchpoint) (&current_target, pid)
c906108c 1360
a96d9b2e
SDJ
1361/* Syscall catch.
1362
1363 NEEDED is nonzero if any syscall catch (of any kind) is requested.
1364 If NEEDED is zero, it means the target can disable the mechanism to
1365 catch system calls because there are no more catchpoints of this type.
1366
1367 ANY_COUNT is nonzero if a generic (filter-less) syscall catch is
1368 being requested. In this case, both TABLE_SIZE and TABLE should
1369 be ignored.
1370
1371 TABLE_SIZE is the number of elements in TABLE. It only matters if
1372 ANY_COUNT is zero.
1373
1374 TABLE is an array of ints, indexed by syscall number. An element in
1375 this array is nonzero if that syscall should be caught. This argument
77b06cd7
TJB
1376 only matters if ANY_COUNT is zero.
1377
1378 Return 0 for success, 1 if syscall catchpoints are not supported or -1
1379 for failure. */
a96d9b2e
SDJ
1380
1381#define target_set_syscall_catchpoint(pid, needed, any_count, table_size, table) \
ff214e67
TT
1382 (*current_target.to_set_syscall_catchpoint) (&current_target, \
1383 pid, needed, any_count, \
a96d9b2e
SDJ
1384 table_size, table)
1385
c906108c 1386/* Returns TRUE if PID has exited. And, also sets EXIT_STATUS to the
0d06e24b
JM
1387 exit code of PID, if any. */
1388
c906108c 1389#define target_has_exited(pid,wait_status,exit_status) \
d796e1d6
TT
1390 (*current_target.to_has_exited) (&current_target, \
1391 pid,wait_status,exit_status)
c906108c
SS
1392
1393/* The debugger has completed a blocking wait() call. There is now
2146d243 1394 some process event that must be processed. This function should
c906108c 1395 be defined by those targets that require the debugger to perform
0d06e24b 1396 cleanup or internal state changes in response to the process event. */
c906108c
SS
1397
1398/* The inferior process has died. Do what is right. */
1399
136d6dae 1400void target_mourn_inferior (void);
c906108c
SS
1401
1402/* Does target have enough data to do a run or attach command? */
1403
1404#define target_can_run(t) \
da82bd6b 1405 ((t)->to_can_run) (t)
c906108c 1406
2455069d
UW
1407/* Set list of signals to be handled in the target.
1408
1409 PASS_SIGNALS is an array of size NSIG, indexed by target signal number
2ea28649 1410 (enum gdb_signal). For every signal whose entry in this array is
2455069d
UW
1411 non-zero, the target is allowed -but not required- to skip reporting
1412 arrival of the signal to the GDB core by returning from target_wait,
1413 and to pass the signal directly to the inferior instead.
1414
1415 However, if the target is hardware single-stepping a thread that is
1416 about to receive a signal, it needs to be reported in any case, even
1417 if mentioned in a previous target_pass_signals call. */
c906108c 1418
2455069d 1419extern void target_pass_signals (int nsig, unsigned char *pass_signals);
c906108c 1420
9b224c5e
PA
1421/* Set list of signals the target may pass to the inferior. This
1422 directly maps to the "handle SIGNAL pass/nopass" setting.
1423
1424 PROGRAM_SIGNALS is an array of size NSIG, indexed by target signal
2ea28649 1425 number (enum gdb_signal). For every signal whose entry in this
9b224c5e
PA
1426 array is non-zero, the target is allowed to pass the signal to the
1427 inferior. Signals not present in the array shall be silently
1428 discarded. This does not influence whether to pass signals to the
1429 inferior as a result of a target_resume call. This is useful in
1430 scenarios where the target needs to decide whether to pass or not a
1431 signal to the inferior without GDB core involvement, such as for
1432 example, when detaching (as threads may have been suspended with
1433 pending signals not reported to GDB). */
1434
1435extern void target_program_signals (int nsig, unsigned char *program_signals);
1436
c906108c
SS
1437/* Check to see if a thread is still alive. */
1438
28439f5e 1439extern int target_thread_alive (ptid_t ptid);
c906108c 1440
b83266a0
SS
1441/* Query for new threads and add them to the thread list. */
1442
28439f5e 1443extern void target_find_new_threads (void);
b83266a0 1444
0d06e24b
JM
1445/* Make target stop in a continuable fashion. (For instance, under
1446 Unix, this should act like SIGSTOP). This function is normally
1447 used by GUIs to implement a stop button. */
c906108c 1448
d914c394 1449extern void target_stop (ptid_t ptid);
c906108c 1450
96baa820
JM
1451/* Send the specified COMMAND to the target's monitor
1452 (shell,interpreter) for execution. The result of the query is
0d06e24b 1453 placed in OUTBUF. */
96baa820
JM
1454
1455#define target_rcmd(command, outbuf) \
1aac633b 1456 (*current_target.to_rcmd) (&current_target, command, outbuf)
96baa820
JM
1457
1458
c906108c
SS
1459/* Does the target include all of memory, or only part of it? This
1460 determines whether we look up the target chain for other parts of
1461 memory if this target can't satisfy a request. */
1462
c35b1492
PA
1463extern int target_has_all_memory_1 (void);
1464#define target_has_all_memory target_has_all_memory_1 ()
c906108c
SS
1465
1466/* Does the target include memory? (Dummy targets don't.) */
1467
c35b1492
PA
1468extern int target_has_memory_1 (void);
1469#define target_has_memory target_has_memory_1 ()
c906108c
SS
1470
1471/* Does the target have a stack? (Exec files don't, VxWorks doesn't, until
1472 we start a process.) */
c5aa993b 1473
c35b1492
PA
1474extern int target_has_stack_1 (void);
1475#define target_has_stack target_has_stack_1 ()
c906108c
SS
1476
1477/* Does the target have registers? (Exec files don't.) */
1478
c35b1492
PA
1479extern int target_has_registers_1 (void);
1480#define target_has_registers target_has_registers_1 ()
c906108c
SS
1481
1482/* Does the target have execution? Can we make it jump (through
52bb452f
DJ
1483 hoops), or pop its stack a few times? This means that the current
1484 target is currently executing; for some targets, that's the same as
1485 whether or not the target is capable of execution, but there are
1486 also targets which can be current while not executing. In that
1487 case this will become true after target_create_inferior or
1488 target_attach. */
c906108c 1489
aeaec162
TT
1490extern int target_has_execution_1 (ptid_t);
1491
1492/* Like target_has_execution_1, but always passes inferior_ptid. */
1493
1494extern int target_has_execution_current (void);
1495
1496#define target_has_execution target_has_execution_current ()
c35b1492
PA
1497
1498/* Default implementations for process_stratum targets. Return true
1499 if there's a selected inferior, false otherwise. */
1500
1501extern int default_child_has_all_memory (struct target_ops *ops);
1502extern int default_child_has_memory (struct target_ops *ops);
1503extern int default_child_has_stack (struct target_ops *ops);
1504extern int default_child_has_registers (struct target_ops *ops);
aeaec162
TT
1505extern int default_child_has_execution (struct target_ops *ops,
1506 ptid_t the_ptid);
c906108c
SS
1507
1508/* Can the target support the debugger control of thread execution?
d6350901 1509 Can it lock the thread scheduler? */
c906108c
SS
1510
1511#define target_can_lock_scheduler \
0d06e24b 1512 (current_target.to_has_thread_control & tc_schedlock)
c906108c 1513
c6ebd6cf
VP
1514/* Should the target enable async mode if it is supported? Temporary
1515 cludge until async mode is a strict superset of sync mode. */
1516extern int target_async_permitted;
1517
c378eb4e 1518/* Can the target support asynchronous execution? */
6a109b6b 1519#define target_can_async_p() (current_target.to_can_async_p (&current_target))
6426a772 1520
c378eb4e 1521/* Is the target in asynchronous execution mode? */
6a109b6b 1522#define target_is_async_p() (current_target.to_is_async_p (&current_target))
6426a772 1523
9908b566
VP
1524int target_supports_non_stop (void);
1525
c378eb4e 1526/* Put the target in async mode with the specified callback function. */
0d06e24b 1527#define target_async(CALLBACK,CONTEXT) \
6a109b6b 1528 (current_target.to_async (&current_target, (CALLBACK), (CONTEXT)))
43ff13b4 1529
32231432 1530#define target_execution_direction() \
4c612759 1531 (current_target.to_execution_direction (&current_target))
32231432 1532
c906108c
SS
1533/* Converts a process id to a string. Usually, the string just contains
1534 `process xyz', but on some systems it may contain
1535 `process xyz thread abc'. */
1536
117de6a9 1537extern char *target_pid_to_str (ptid_t ptid);
c906108c 1538
39f77062 1539extern char *normal_pid_to_str (ptid_t ptid);
c5aa993b 1540
0d06e24b
JM
1541/* Return a short string describing extra information about PID,
1542 e.g. "sleeping", "runnable", "running on LWP 3". Null return value
1543 is okay. */
1544
1545#define target_extra_thread_info(TP) \
c15906d8 1546 (current_target.to_extra_thread_info (&current_target, TP))
ed9a39eb 1547
4694da01
TT
1548/* Return the thread's name. A NULL result means that the target
1549 could not determine this thread's name. */
1550
1551extern char *target_thread_name (struct thread_info *);
1552
c906108c
SS
1553/* Attempts to find the pathname of the executable file
1554 that was run to create a specified process.
1555
1556 The process PID must be stopped when this operation is used.
c5aa993b 1557
c906108c
SS
1558 If the executable file cannot be determined, NULL is returned.
1559
1560 Else, a pointer to a character string containing the pathname
1561 is returned. This string should be copied into a buffer by
1562 the client if the string will not be immediately used, or if
0d06e24b 1563 it must persist. */
c906108c
SS
1564
1565#define target_pid_to_exec_file(pid) \
8dd27370 1566 (current_target.to_pid_to_exec_file) (&current_target, pid)
c906108c 1567
3a8f7b07 1568/* See the to_thread_architecture description in struct target_ops. */
c2250ad1
UW
1569
1570#define target_thread_architecture(ptid) \
1571 (current_target.to_thread_architecture (&current_target, ptid))
1572
be4d1333
MS
1573/*
1574 * Iterator function for target memory regions.
1575 * Calls a callback function once for each memory region 'mapped'
1576 * in the child process. Defined as a simple macro rather than
2146d243 1577 * as a function macro so that it can be tested for nullity.
be4d1333
MS
1578 */
1579
1580#define target_find_memory_regions(FUNC, DATA) \
2e73927c 1581 (current_target.to_find_memory_regions) (&current_target, FUNC, DATA)
be4d1333
MS
1582
1583/*
1584 * Compose corefile .note section.
1585 */
1586
1587#define target_make_corefile_notes(BFD, SIZE_P) \
fc6691b2 1588 (current_target.to_make_corefile_notes) (&current_target, BFD, SIZE_P)
be4d1333 1589
6b04bdb7
MS
1590/* Bookmark interfaces. */
1591#define target_get_bookmark(ARGS, FROM_TTY) \
dd0e2830 1592 (current_target.to_get_bookmark) (&current_target, ARGS, FROM_TTY)
6b04bdb7
MS
1593
1594#define target_goto_bookmark(ARG, FROM_TTY) \
3c80fb48 1595 (current_target.to_goto_bookmark) (&current_target, ARG, FROM_TTY)
6b04bdb7 1596
c906108c
SS
1597/* Hardware watchpoint interfaces. */
1598
1599/* Returns non-zero if we were stopped by a hardware watchpoint (memory read or
7f82dfc7 1600 write). Only the INFERIOR_PTID task is being queried. */
c906108c 1601
6a109b6b
TT
1602#define target_stopped_by_watchpoint() \
1603 ((*current_target.to_stopped_by_watchpoint) (&current_target))
7df1a324 1604
74174d2e
UW
1605/* Non-zero if we have steppable watchpoints */
1606
d92524f1 1607#define target_have_steppable_watchpoint \
74174d2e 1608 (current_target.to_have_steppable_watchpoint)
74174d2e 1609
7df1a324
KW
1610/* Non-zero if we have continuable watchpoints */
1611
d92524f1 1612#define target_have_continuable_watchpoint \
7df1a324 1613 (current_target.to_have_continuable_watchpoint)
c906108c 1614
ccaa32c7 1615/* Provide defaults for hardware watchpoint functions. */
c906108c 1616
2146d243 1617/* If the *_hw_beakpoint functions have not been defined
ccaa32c7 1618 elsewhere use the definitions in the target vector. */
c906108c
SS
1619
1620/* Returns non-zero if we can set a hardware watchpoint of type TYPE. TYPE is
1621 one of bp_hardware_watchpoint, bp_read_watchpoint, bp_write_watchpoint, or
1622 bp_hardware_breakpoint. CNT is the number of such watchpoints used so far
1623 (including this one?). OTHERTYPE is who knows what... */
1624
d92524f1 1625#define target_can_use_hardware_watchpoint(TYPE,CNT,OTHERTYPE) \
5461485a
TT
1626 (*current_target.to_can_use_hw_breakpoint) (&current_target, \
1627 TYPE, CNT, OTHERTYPE);
c906108c 1628
e09342b5
TJB
1629/* Returns the number of debug registers needed to watch the given
1630 memory region, or zero if not supported. */
1631
d92524f1 1632#define target_region_ok_for_hw_watchpoint(addr, len) \
31568a15
TT
1633 (*current_target.to_region_ok_for_hw_watchpoint) (&current_target, \
1634 addr, len)
e0d24f8d 1635
c906108c 1636
85d721b8
PA
1637/* Set/clear a hardware watchpoint starting at ADDR, for LEN bytes.
1638 TYPE is 0 for write, 1 for read, and 2 for read/write accesses.
0cf6dd15 1639 COND is the expression for its condition, or NULL if there's none.
85d721b8
PA
1640 Returns 0 for success, 1 if the watchpoint type is not supported,
1641 -1 for failure. */
c906108c 1642
0cf6dd15 1643#define target_insert_watchpoint(addr, len, type, cond) \
7bb99c53
TT
1644 (*current_target.to_insert_watchpoint) (&current_target, \
1645 addr, len, type, cond)
c906108c 1646
0cf6dd15 1647#define target_remove_watchpoint(addr, len, type, cond) \
11b5219a
TT
1648 (*current_target.to_remove_watchpoint) (&current_target, \
1649 addr, len, type, cond)
c906108c 1650
9c06b0b4
TJB
1651/* Insert a new masked watchpoint at ADDR using the mask MASK.
1652 RW may be hw_read for a read watchpoint, hw_write for a write watchpoint
1653 or hw_access for an access watchpoint. Returns 0 for success, 1 if
1654 masked watchpoints are not supported, -1 for failure. */
1655
1656extern int target_insert_mask_watchpoint (CORE_ADDR, CORE_ADDR, int);
1657
1658/* Remove a masked watchpoint at ADDR with the mask MASK.
1659 RW may be hw_read for a read watchpoint, hw_write for a write watchpoint
1660 or hw_access for an access watchpoint. Returns 0 for success, non-zero
1661 for failure. */
1662
1663extern int target_remove_mask_watchpoint (CORE_ADDR, CORE_ADDR, int);
1664
0000e5cc
PA
1665/* Insert a hardware breakpoint at address BP_TGT->placed_address in
1666 the target machine. Returns 0 for success, and returns non-zero or
1667 throws an error (with a detailed failure reason error code and
1668 message) otherwise. */
1669
a6d9a66e 1670#define target_insert_hw_breakpoint(gdbarch, bp_tgt) \
23a26771
TT
1671 (*current_target.to_insert_hw_breakpoint) (&current_target, \
1672 gdbarch, bp_tgt)
ccaa32c7 1673
a6d9a66e 1674#define target_remove_hw_breakpoint(gdbarch, bp_tgt) \
a64dc96c
TT
1675 (*current_target.to_remove_hw_breakpoint) (&current_target, \
1676 gdbarch, bp_tgt)
c906108c 1677
f1310107
TJB
1678/* Return number of debug registers needed for a ranged breakpoint,
1679 or -1 if ranged breakpoints are not supported. */
1680
1681extern int target_ranged_break_num_registers (void);
1682
7f82dfc7
JK
1683/* Return non-zero if target knows the data address which triggered this
1684 target_stopped_by_watchpoint, in such case place it to *ADDR_P. Only the
1685 INFERIOR_PTID task is being queried. */
1686#define target_stopped_data_address(target, addr_p) \
1687 (*target.to_stopped_data_address) (target, addr_p)
c906108c 1688
9b3e86b1
MR
1689/* Return non-zero if ADDR is within the range of a watchpoint spanning
1690 LENGTH bytes beginning at START. */
5009afc5
AS
1691#define target_watchpoint_addr_within_range(target, addr, start, length) \
1692 (*target.to_watchpoint_addr_within_range) (target, addr, start, length)
1693
0cf6dd15
TJB
1694/* Return non-zero if the target is capable of using hardware to evaluate
1695 the condition expression. In this case, if the condition is false when
1696 the watched memory location changes, execution may continue without the
1697 debugger being notified.
1698
1699 Due to limitations in the hardware implementation, it may be capable of
1700 avoiding triggering the watchpoint in some cases where the condition
1701 expression is false, but may report some false positives as well.
1702 For this reason, GDB will still evaluate the condition expression when
1703 the watchpoint triggers. */
1704#define target_can_accel_watchpoint_condition(addr, len, type, cond) \
c3a5ff89
TT
1705 (*current_target.to_can_accel_watchpoint_condition) (&current_target, \
1706 addr, len, type, cond)
0cf6dd15 1707
9c06b0b4
TJB
1708/* Return number of debug registers needed for a masked watchpoint,
1709 -1 if masked watchpoints are not supported or -2 if the given address
1710 and mask combination cannot be used. */
1711
1712extern int target_masked_watch_num_registers (CORE_ADDR addr, CORE_ADDR mask);
1713
b2175913
MS
1714/* Target can execute in reverse? */
1715#define target_can_execute_reverse \
1716 (current_target.to_can_execute_reverse ? \
19db3e69 1717 current_target.to_can_execute_reverse (&current_target) : 0)
b2175913 1718
424163ea
DJ
1719extern const struct target_desc *target_read_description (struct target_ops *);
1720
0ef643c8 1721#define target_get_ada_task_ptid(lwp, tid) \
1e6b91a4 1722 (*current_target.to_get_ada_task_ptid) (&current_target, lwp,tid)
0ef643c8 1723
08388c79
DE
1724/* Utility implementation of searching memory. */
1725extern int simple_search_memory (struct target_ops* ops,
1726 CORE_ADDR start_addr,
1727 ULONGEST search_space_len,
1728 const gdb_byte *pattern,
1729 ULONGEST pattern_len,
1730 CORE_ADDR *found_addrp);
1731
1732/* Main entry point for searching memory. */
1733extern int target_search_memory (CORE_ADDR start_addr,
1734 ULONGEST search_space_len,
1735 const gdb_byte *pattern,
1736 ULONGEST pattern_len,
1737 CORE_ADDR *found_addrp);
1738
7313baad
UW
1739/* Target file operations. */
1740
1741/* Open FILENAME on the target, using FLAGS and MODE. Return a
1742 target file descriptor, or -1 if an error occurs (and set
1743 *TARGET_ERRNO). */
1744extern int target_fileio_open (const char *filename, int flags, int mode,
1745 int *target_errno);
1746
1747/* Write up to LEN bytes from WRITE_BUF to FD on the target.
1748 Return the number of bytes written, or -1 if an error occurs
1749 (and set *TARGET_ERRNO). */
1750extern int target_fileio_pwrite (int fd, const gdb_byte *write_buf, int len,
1751 ULONGEST offset, int *target_errno);
1752
1753/* Read up to LEN bytes FD on the target into READ_BUF.
1754 Return the number of bytes read, or -1 if an error occurs
1755 (and set *TARGET_ERRNO). */
1756extern int target_fileio_pread (int fd, gdb_byte *read_buf, int len,
1757 ULONGEST offset, int *target_errno);
1758
1759/* Close FD on the target. Return 0, or -1 if an error occurs
1760 (and set *TARGET_ERRNO). */
1761extern int target_fileio_close (int fd, int *target_errno);
1762
1763/* Unlink FILENAME on the target. Return 0, or -1 if an error
1764 occurs (and set *TARGET_ERRNO). */
1765extern int target_fileio_unlink (const char *filename, int *target_errno);
1766
b9e7b9c3
UW
1767/* Read value of symbolic link FILENAME on the target. Return a
1768 null-terminated string allocated via xmalloc, or NULL if an error
1769 occurs (and set *TARGET_ERRNO). */
1770extern char *target_fileio_readlink (const char *filename, int *target_errno);
1771
7313baad
UW
1772/* Read target file FILENAME. The return value will be -1 if the transfer
1773 fails or is not supported; 0 if the object is empty; or the length
1774 of the object otherwise. If a positive value is returned, a
1775 sufficiently large buffer will be allocated using xmalloc and
1776 returned in *BUF_P containing the contents of the object.
1777
1778 This method should be used for objects sufficiently small to store
1779 in a single xmalloc'd buffer, when no fixed bound on the object's
1780 size is known in advance. */
1781extern LONGEST target_fileio_read_alloc (const char *filename,
1782 gdb_byte **buf_p);
1783
1784/* Read target file FILENAME. The result is NUL-terminated and
1785 returned as a string, allocated using xmalloc. If an error occurs
1786 or the transfer is unsupported, NULL is returned. Empty objects
1787 are returned as allocated but empty strings. A warning is issued
1788 if the result contains any embedded NUL bytes. */
1789extern char *target_fileio_read_stralloc (const char *filename);
1790
1791
35b1e5cc
SS
1792/* Tracepoint-related operations. */
1793
1794#define target_trace_init() \
ecae04e1 1795 (*current_target.to_trace_init) (&current_target)
35b1e5cc
SS
1796
1797#define target_download_tracepoint(t) \
548f7808 1798 (*current_target.to_download_tracepoint) (&current_target, t)
35b1e5cc 1799
1e4d1764 1800#define target_can_download_tracepoint() \
a52a8357 1801 (*current_target.to_can_download_tracepoint) (&current_target)
1e4d1764 1802
35b1e5cc 1803#define target_download_trace_state_variable(tsv) \
559d2b81 1804 (*current_target.to_download_trace_state_variable) (&current_target, tsv)
35b1e5cc 1805
d248b706 1806#define target_enable_tracepoint(loc) \
46670d57 1807 (*current_target.to_enable_tracepoint) (&current_target, loc)
d248b706
KY
1808
1809#define target_disable_tracepoint(loc) \
780b049c 1810 (*current_target.to_disable_tracepoint) (&current_target, loc)
d248b706 1811
35b1e5cc 1812#define target_trace_start() \
e2d1aae3 1813 (*current_target.to_trace_start) (&current_target)
35b1e5cc
SS
1814
1815#define target_trace_set_readonly_regions() \
583f9a86 1816 (*current_target.to_trace_set_readonly_regions) (&current_target)
35b1e5cc 1817
00bf0b85 1818#define target_get_trace_status(ts) \
8bd200f1 1819 (*current_target.to_get_trace_status) (&current_target, ts)
35b1e5cc 1820
f196051f 1821#define target_get_tracepoint_status(tp,utp) \
db90e85c 1822 (*current_target.to_get_tracepoint_status) (&current_target, tp, utp)
f196051f 1823
35b1e5cc 1824#define target_trace_stop() \
74499f1b 1825 (*current_target.to_trace_stop) (&current_target)
35b1e5cc
SS
1826
1827#define target_trace_find(type,num,addr1,addr2,tpp) \
bd4c6793
TT
1828 (*current_target.to_trace_find) (&current_target, \
1829 (type), (num), (addr1), (addr2), (tpp))
35b1e5cc
SS
1830
1831#define target_get_trace_state_variable_value(tsv,val) \
4011015b
TT
1832 (*current_target.to_get_trace_state_variable_value) (&current_target, \
1833 (tsv), (val))
35b1e5cc 1834
00bf0b85 1835#define target_save_trace_data(filename) \
dc3decaf 1836 (*current_target.to_save_trace_data) (&current_target, filename)
00bf0b85
SS
1837
1838#define target_upload_tracepoints(utpp) \
ab6617cc 1839 (*current_target.to_upload_tracepoints) (&current_target, utpp)
00bf0b85
SS
1840
1841#define target_upload_trace_state_variables(utsvp) \
181e3713 1842 (*current_target.to_upload_trace_state_variables) (&current_target, utsvp)
00bf0b85
SS
1843
1844#define target_get_raw_trace_data(buf,offset,len) \
88ee6f45
TT
1845 (*current_target.to_get_raw_trace_data) (&current_target, \
1846 (buf), (offset), (len))
00bf0b85 1847
405f8e94 1848#define target_get_min_fast_tracepoint_insn_len() \
0e67620a 1849 (*current_target.to_get_min_fast_tracepoint_insn_len) (&current_target)
405f8e94 1850
35b1e5cc 1851#define target_set_disconnected_tracing(val) \
37b25738 1852 (*current_target.to_set_disconnected_tracing) (&current_target, val)
35b1e5cc 1853
4daf5ac0 1854#define target_set_circular_trace_buffer(val) \
736d5b1f 1855 (*current_target.to_set_circular_trace_buffer) (&current_target, val)
4daf5ac0 1856
f6f899bf 1857#define target_set_trace_buffer_size(val) \
4da384be 1858 (*current_target.to_set_trace_buffer_size) (&current_target, val)
f6f899bf 1859
f196051f 1860#define target_set_trace_notes(user,notes,stopnotes) \
d9e68a2c
TT
1861 (*current_target.to_set_trace_notes) (&current_target, \
1862 (user), (notes), (stopnotes))
f196051f 1863
711e434b 1864#define target_get_tib_address(ptid, addr) \
bd7ae0f5 1865 (*current_target.to_get_tib_address) (&current_target, (ptid), (addr))
711e434b 1866
d914c394 1867#define target_set_permissions() \
c378d69d 1868 (*current_target.to_set_permissions) (&current_target)
d914c394 1869
0fb4aa4b 1870#define target_static_tracepoint_marker_at(addr, marker) \
61fc905d
TT
1871 (*current_target.to_static_tracepoint_marker_at) (&current_target, \
1872 addr, marker)
0fb4aa4b
PA
1873
1874#define target_static_tracepoint_markers_by_strid(marker_id) \
1875 (*current_target.to_static_tracepoint_markers_by_strid) (marker_id)
1876
b3b9301e
PA
1877#define target_traceframe_info() \
1878 (*current_target.to_traceframe_info) ()
1879
d1feda86
YQ
1880#define target_use_agent(use) \
1881 (*current_target.to_use_agent) (use)
1882
1883#define target_can_use_agent() \
1884 (*current_target.to_can_use_agent) ()
1885
ced63ec0
GB
1886#define target_augmented_libraries_svr4_read() \
1887 (*current_target.to_augmented_libraries_svr4_read) ()
1888
49d03eab
MR
1889/* Command logging facility. */
1890
1891#define target_log_command(p) \
1892 do \
1893 if (current_target.to_log_command) \
4ab76ea3
TT
1894 (*current_target.to_log_command) (&current_target, \
1895 p); \
49d03eab
MR
1896 while (0)
1897
dc146f7c
VP
1898
1899extern int target_core_of_thread (ptid_t ptid);
1900
ea001bdc
MM
1901/* See to_get_unwinder in struct target_ops. */
1902extern const struct frame_unwind *target_get_unwinder (void);
1903
1904/* See to_get_tailcall_unwinder in struct target_ops. */
1905extern const struct frame_unwind *target_get_tailcall_unwinder (void);
1906
4a5e7a5b
PA
1907/* Verify that the memory in the [MEMADDR, MEMADDR+SIZE) range matches
1908 the contents of [DATA,DATA+SIZE). Returns 1 if there's a match, 0
1909 if there's a mismatch, and -1 if an error is encountered while
1910 reading memory. Throws an error if the functionality is found not
1911 to be supported by the current target. */
1912int target_verify_memory (const gdb_byte *data,
1913 CORE_ADDR memaddr, ULONGEST size);
1914
c906108c
SS
1915/* Routines for maintenance of the target structures...
1916
c22a2b88
TT
1917 complete_target_initialization: Finalize a target_ops by filling in
1918 any fields needed by the target implementation.
1919
c906108c
SS
1920 add_target: Add a target to the list of all possible targets.
1921
1922 push_target: Make this target the top of the stack of currently used
c5aa993b
JM
1923 targets, within its particular stratum of the stack. Result
1924 is 0 if now atop the stack, nonzero if not on top (maybe
1925 should warn user).
c906108c
SS
1926
1927 unpush_target: Remove this from the stack of currently used targets,
c5aa993b 1928 no matter where it is on the list. Returns 0 if no
7fdc1521 1929 change, 1 if removed from stack. */
c906108c 1930
a14ed312 1931extern void add_target (struct target_ops *);
c906108c 1932
9852c492
YQ
1933extern void add_target_with_completer (struct target_ops *t,
1934 completer_ftype *completer);
1935
c22a2b88
TT
1936extern void complete_target_initialization (struct target_ops *t);
1937
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MM
1938/* Adds a command ALIAS for target T and marks it deprecated. This is useful
1939 for maintaining backwards compatibility when renaming targets. */
1940
1941extern void add_deprecated_target_alias (struct target_ops *t, char *alias);
1942
b26a4dcb 1943extern void push_target (struct target_ops *);
c906108c 1944
a14ed312 1945extern int unpush_target (struct target_ops *);
c906108c 1946
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DJ
1947extern void target_pre_inferior (int);
1948
a14ed312 1949extern void target_preopen (int);
c906108c 1950
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JK
1951/* Does whatever cleanup is required to get rid of all pushed targets. */
1952extern void pop_all_targets (void);
aa76d38d 1953
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PA
1954/* Like pop_all_targets, but pops only targets whose stratum is
1955 strictly above ABOVE_STRATUM. */
460014f5 1956extern void pop_all_targets_above (enum strata above_stratum);
87ab71f0 1957
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JK
1958extern int target_is_pushed (struct target_ops *t);
1959
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DJ
1960extern CORE_ADDR target_translate_tls_address (struct objfile *objfile,
1961 CORE_ADDR offset);
1962
0542c86d 1963/* Struct target_section maps address ranges to file sections. It is
c906108c
SS
1964 mostly used with BFD files, but can be used without (e.g. for handling
1965 raw disks, or files not in formats handled by BFD). */
1966
0542c86d 1967struct target_section
c5aa993b
JM
1968 {
1969 CORE_ADDR addr; /* Lowest address in section */
1970 CORE_ADDR endaddr; /* 1+highest address in section */
c906108c 1971
7be0c536 1972 struct bfd_section *the_bfd_section;
c906108c 1973
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JK
1974 /* The "owner" of the section.
1975 It can be any unique value. It is set by add_target_sections
1976 and used by remove_target_sections.
1977 For example, for executables it is a pointer to exec_bfd and
1978 for shlibs it is the so_list pointer. */
1979 void *owner;
c5aa993b 1980 };
c906108c 1981
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PA
1982/* Holds an array of target sections. Defined by [SECTIONS..SECTIONS_END[. */
1983
1984struct target_section_table
1985{
1986 struct target_section *sections;
1987 struct target_section *sections_end;
1988};
1989
8db32d44 1990/* Return the "section" containing the specified address. */
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PA
1991struct target_section *target_section_by_addr (struct target_ops *target,
1992 CORE_ADDR addr);
8db32d44 1993
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PA
1994/* Return the target section table this target (or the targets
1995 beneath) currently manipulate. */
1996
1997extern struct target_section_table *target_get_section_table
1998 (struct target_ops *target);
1999
c906108c
SS
2000/* From mem-break.c */
2001
3db08215 2002extern int memory_remove_breakpoint (struct target_ops *, struct gdbarch *,
3e43a32a 2003 struct bp_target_info *);
c906108c 2004
3db08215 2005extern int memory_insert_breakpoint (struct target_ops *, struct gdbarch *,
3e43a32a 2006 struct bp_target_info *);
c906108c 2007
3e43a32a
MS
2008extern int default_memory_remove_breakpoint (struct gdbarch *,
2009 struct bp_target_info *);
917317f4 2010
3e43a32a
MS
2011extern int default_memory_insert_breakpoint (struct gdbarch *,
2012 struct bp_target_info *);
917317f4 2013
c906108c
SS
2014
2015/* From target.c */
2016
a14ed312 2017extern void initialize_targets (void);
c906108c 2018
c25c4a8b 2019extern void noprocess (void) ATTRIBUTE_NORETURN;
c906108c 2020
8edfe269
DJ
2021extern void target_require_runnable (void);
2022
136d6dae 2023extern void find_default_attach (struct target_ops *, char *, int);
c906108c 2024
136d6dae
VP
2025extern void find_default_create_inferior (struct target_ops *,
2026 char *, char *, char **, int);
c906108c 2027
a14ed312 2028extern struct target_ops *find_target_beneath (struct target_ops *);
ed9a39eb 2029
8b06beed
TT
2030/* Find the target at STRATUM. If no target is at that stratum,
2031 return NULL. */
2032
2033struct target_ops *find_target_at (enum strata stratum);
2034
e0665bc8
PA
2035/* Read OS data object of type TYPE from the target, and return it in
2036 XML format. The result is NUL-terminated and returned as a string,
2037 allocated using xmalloc. If an error occurs or the transfer is
2038 unsupported, NULL is returned. Empty objects are returned as
2039 allocated but empty strings. */
2040
07e059b5
VP
2041extern char *target_get_osdata (const char *type);
2042
c906108c
SS
2043\f
2044/* Stuff that should be shared among the various remote targets. */
2045
2046/* Debugging level. 0 is off, and non-zero values mean to print some debug
2047 information (higher values, more information). */
2048extern int remote_debug;
2049
2050/* Speed in bits per second, or -1 which means don't mess with the speed. */
2051extern int baud_rate;
c378eb4e 2052/* Timeout limit for response from target. */
c906108c
SS
2053extern int remote_timeout;
2054
c906108c 2055\f
c906108c 2056
8defab1a
DJ
2057/* Set the show memory breakpoints mode to show, and installs a cleanup
2058 to restore it back to the current value. */
2059extern struct cleanup *make_show_memory_breakpoints_cleanup (int show);
2060
d914c394
SS
2061extern int may_write_registers;
2062extern int may_write_memory;
2063extern int may_insert_breakpoints;
2064extern int may_insert_tracepoints;
2065extern int may_insert_fast_tracepoints;
2066extern int may_stop;
2067
2068extern void update_target_permissions (void);
2069
c906108c 2070\f
c378eb4e 2071/* Imported from machine dependent code. */
c906108c 2072
c378eb4e 2073/* Blank target vector entries are initialized to target_ignore. */
a14ed312 2074void target_ignore (void);
c906108c 2075
02d27625 2076/* See to_supports_btrace in struct target_ops. */
46917d26
TT
2077#define target_supports_btrace() \
2078 (current_target.to_supports_btrace (&current_target))
02d27625
MM
2079
2080/* See to_enable_btrace in struct target_ops. */
2081extern struct btrace_target_info *target_enable_btrace (ptid_t ptid);
2082
2083/* See to_disable_btrace in struct target_ops. */
2084extern void target_disable_btrace (struct btrace_target_info *btinfo);
2085
2086/* See to_teardown_btrace in struct target_ops. */
2087extern void target_teardown_btrace (struct btrace_target_info *btinfo);
2088
2089/* See to_read_btrace in struct target_ops. */
969c39fb
MM
2090extern enum btrace_error target_read_btrace (VEC (btrace_block_s) **,
2091 struct btrace_target_info *,
2092 enum btrace_read_type);
02d27625 2093
7c1687a9
MM
2094/* See to_stop_recording in struct target_ops. */
2095extern void target_stop_recording (void);
2096
d02ed0bb
MM
2097/* See to_info_record in struct target_ops. */
2098extern void target_info_record (void);
2099
2100/* See to_save_record in struct target_ops. */
85e1311a 2101extern void target_save_record (const char *filename);
d02ed0bb
MM
2102
2103/* Query if the target supports deleting the execution log. */
2104extern int target_supports_delete_record (void);
2105
2106/* See to_delete_record in struct target_ops. */
2107extern void target_delete_record (void);
2108
2109/* See to_record_is_replaying in struct target_ops. */
2110extern int target_record_is_replaying (void);
2111
2112/* See to_goto_record_begin in struct target_ops. */
2113extern void target_goto_record_begin (void);
2114
2115/* See to_goto_record_end in struct target_ops. */
2116extern void target_goto_record_end (void);
2117
2118/* See to_goto_record in struct target_ops. */
2119extern void target_goto_record (ULONGEST insn);
02d27625 2120
67c86d06
MM
2121/* See to_insn_history. */
2122extern void target_insn_history (int size, int flags);
2123
2124/* See to_insn_history_from. */
2125extern void target_insn_history_from (ULONGEST from, int size, int flags);
2126
2127/* See to_insn_history_range. */
2128extern void target_insn_history_range (ULONGEST begin, ULONGEST end, int flags);
2129
15984c13
MM
2130/* See to_call_history. */
2131extern void target_call_history (int size, int flags);
2132
2133/* See to_call_history_from. */
2134extern void target_call_history_from (ULONGEST begin, int size, int flags);
2135
2136/* See to_call_history_range. */
2137extern void target_call_history_range (ULONGEST begin, ULONGEST end, int flags);
2138
118e6252
MM
2139/* See to_decr_pc_after_break. Start searching for the target at OPS. */
2140extern CORE_ADDR forward_target_decr_pc_after_break (struct target_ops *ops,
2141 struct gdbarch *gdbarch);
2142
2143/* See to_decr_pc_after_break. */
2144extern CORE_ADDR target_decr_pc_after_break (struct gdbarch *gdbarch);
2145
c5aa993b 2146#endif /* !defined (TARGET_H) */