Fix two -Wnarrowing warnings in xtensa-tdep.h
[deliverable/binutils-gdb.git] / gdb / target.h
CommitLineData
c906108c 1/* Interface between GDB and target environments, including files and processes
0088c768 2
e2882c85 3 Copyright (C) 1990-2018 Free Software Foundation, Inc.
0088c768 4
c906108c
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5 Contributed by Cygnus Support. Written by John Gilmore.
6
c5aa993b 7 This file is part of GDB.
c906108c 8
c5aa993b
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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
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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
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21
22#if !defined (TARGET_H)
23#define TARGET_H
24
da3331ec
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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;
07c138c8 41struct inferior;
0cf6dd15 42
68c14faa 43#include "infrun.h" /* For enum exec_direction_kind. */
f486487f 44#include "breakpoint.h" /* For enum bptype. */
cb85b21b 45#include "common/scoped_restore.h"
68c14faa 46
c906108c
SS
47/* This include file defines the interface between the main part
48 of the debugger, and the part which is target-specific, or
49 specific to the communications interface between us and the
50 target.
51
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52 A TARGET is an interface between the debugger and a particular
53 kind of file or process. Targets can be STACKED in STRATA,
c906108c
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54 so that more than one target can potentially respond to a request.
55 In particular, memory accesses will walk down the stack of targets
56 until they find a target that is interested in handling that particular
57 address. STRATA are artificial boundaries on the stack, within
58 which particular kinds of targets live. Strata exist so that
59 people don't get confused by pushing e.g. a process target and then
60 a file target, and wondering why they can't see the current values
61 of variables any more (the file target is handling them and they
62 never get to the process target). So when you push a file target,
63 it goes into the file stratum, which is always below the process
a1740ee1
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64 stratum.
65
66 Note that rather than allow an empty stack, we always have the
67 dummy target at the bottom stratum, so we can call the target
68 methods without checking them. */
c906108c 69
721ec300 70#include "target/target.h"
33b60d58
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71#include "target/resume.h"
72#include "target/wait.h"
73#include "target/waitstatus.h"
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74#include "bfd.h"
75#include "symtab.h"
29e57380 76#include "memattr.h"
fd79ecee 77#include "vec.h"
2aecd87f 78#include "gdb_signals.h"
02d27625 79#include "btrace.h"
b158a20f 80#include "record.h"
9852c492 81#include "command.h"
9a24775b 82#include "disasm.h"
2098b393 83#include "tracepoint.h"
c906108c 84
f486487f
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85#include "break-common.h" /* For enum target_hw_bp_type. */
86
c5aa993b
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87enum strata
88 {
89 dummy_stratum, /* The lowest of the low */
90 file_stratum, /* Executable files, etc */
c0edd9ed 91 process_stratum, /* Executing processes or core dump files */
81e64f55 92 thread_stratum, /* Executing threads */
85e747d2 93 record_stratum, /* Support record debugging */
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94 arch_stratum, /* Architecture overrides */
95 debug_stratum /* Target debug. Must be last. */
c5aa993b 96 };
c906108c 97
c5aa993b
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98enum thread_control_capabilities
99 {
0d06e24b
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100 tc_none = 0, /* Default: can't control thread execution. */
101 tc_schedlock = 1, /* Can lock the thread scheduler. */
c5aa993b 102 };
c906108c 103
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SDJ
104/* The structure below stores information about a system call.
105 It is basically used in the "catch syscall" command, and in
106 every function that gives information about a system call.
107
108 It's also good to mention that its fields represent everything
109 that we currently know about a syscall in GDB. */
110struct syscall
111 {
112 /* The syscall number. */
113 int number;
114
115 /* The syscall name. */
116 const char *name;
117 };
118
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SM
119/* Return a pretty printed form of TARGET_OPTIONS. */
120extern std::string target_options_to_string (int target_options);
09826ec5 121
2acceee2 122/* Possible types of events that the inferior handler will have to
0d06e24b 123 deal with. */
2acceee2
JM
124enum inferior_event_type
125 {
2acceee2 126 /* Process a normal inferior event which will result in target_wait
0d06e24b 127 being called. */
2146d243 128 INF_REG_EVENT,
0d06e24b 129 /* We are called to do stuff after the inferior stops. */
c2d11a7d 130 INF_EXEC_COMPLETE,
2acceee2 131 };
c906108c 132\f
13547ab6
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133/* Target objects which can be transfered using target_read,
134 target_write, et cetera. */
1e3ff5ad
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135
136enum target_object
137{
1e3ff5ad
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138 /* AVR target specific transfer. See "avr-tdep.c" and "remote.c". */
139 TARGET_OBJECT_AVR,
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140 /* SPU target specific transfer. See "spu-tdep.c". */
141 TARGET_OBJECT_SPU,
1e3ff5ad 142 /* Transfer up-to LEN bytes of memory starting at OFFSET. */
287a334e 143 TARGET_OBJECT_MEMORY,
cf7a04e8
DJ
144 /* Memory, avoiding GDB's data cache and trusting the executable.
145 Target implementations of to_xfer_partial never need to handle
146 this object, and most callers should not use it. */
147 TARGET_OBJECT_RAW_MEMORY,
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148 /* Memory known to be part of the target's stack. This is cached even
149 if it is not in a region marked as such, since it is known to be
150 "normal" RAM. */
151 TARGET_OBJECT_STACK_MEMORY,
29453a14
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152 /* Memory known to be part of the target code. This is cached even
153 if it is not in a region marked as such. */
154 TARGET_OBJECT_CODE_MEMORY,
287a334e
JJ
155 /* Kernel Unwind Table. See "ia64-tdep.c". */
156 TARGET_OBJECT_UNWIND_TABLE,
2146d243
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157 /* Transfer auxilliary vector. */
158 TARGET_OBJECT_AUXV,
baf92889 159 /* StackGhost cookie. See "sparc-tdep.c". */
fd79ecee
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160 TARGET_OBJECT_WCOOKIE,
161 /* Target memory map in XML format. */
162 TARGET_OBJECT_MEMORY_MAP,
a76d924d
DJ
163 /* Flash memory. This object can be used to write contents to
164 a previously erased flash memory. Using it without erasing
165 flash can have unexpected results. Addresses are physical
166 address on target, and not relative to flash start. */
23181151
DJ
167 TARGET_OBJECT_FLASH,
168 /* Available target-specific features, e.g. registers and coprocessors.
169 See "target-descriptions.c". ANNEX should never be empty. */
cfa9d6d9
DJ
170 TARGET_OBJECT_AVAILABLE_FEATURES,
171 /* Currently loaded libraries, in XML format. */
07e059b5 172 TARGET_OBJECT_LIBRARIES,
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173 /* Currently loaded libraries specific for SVR4 systems, in XML format. */
174 TARGET_OBJECT_LIBRARIES_SVR4,
4d1eb6b4 175 /* Currently loaded libraries specific to AIX systems, in XML format. */
ff99b71b 176 TARGET_OBJECT_LIBRARIES_AIX,
07e059b5 177 /* Get OS specific data. The ANNEX specifies the type (running
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178 processes, etc.). The data being transfered is expected to follow
179 the DTD specified in features/osdata.dtd. */
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180 TARGET_OBJECT_OSDATA,
181 /* Extra signal info. Usually the contents of `siginfo_t' on unix
182 platforms. */
183 TARGET_OBJECT_SIGNAL_INFO,
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184 /* The list of threads that are being debugged. */
185 TARGET_OBJECT_THREADS,
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186 /* Collected static trace data. */
187 TARGET_OBJECT_STATIC_TRACE_DATA,
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188 /* Traceframe info, in XML format. */
189 TARGET_OBJECT_TRACEFRAME_INFO,
78d85199
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190 /* Load maps for FDPIC systems. */
191 TARGET_OBJECT_FDPIC,
f00c55f8 192 /* Darwin dynamic linker info data. */
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193 TARGET_OBJECT_DARWIN_DYLD_INFO,
194 /* OpenVMS Unwind Information Block. */
02d27625 195 TARGET_OBJECT_OPENVMS_UIB,
9accd112 196 /* Branch trace data, in XML format. */
f4abbc16
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197 TARGET_OBJECT_BTRACE,
198 /* Branch trace configuration, in XML format. */
c78fa86a
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199 TARGET_OBJECT_BTRACE_CONF,
200 /* The pathname of the executable file that was run to create
201 a specified process. ANNEX should be a string representation
202 of the process ID of the process in question, in hexadecimal
203 format. */
204 TARGET_OBJECT_EXEC_FILE,
c378eb4e 205 /* Possible future objects: TARGET_OBJECT_FILE, ... */
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206};
207
9b409511 208/* Possible values returned by target_xfer_partial, etc. */
6be7b56e 209
9b409511 210enum target_xfer_status
6be7b56e 211{
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212 /* Some bytes are transferred. */
213 TARGET_XFER_OK = 1,
214
215 /* No further transfer is possible. */
216 TARGET_XFER_EOF = 0,
217
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218 /* The piece of the object requested is unavailable. */
219 TARGET_XFER_UNAVAILABLE = 2,
220
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221 /* Generic I/O error. Note that it's important that this is '-1',
222 as we still have target_xfer-related code returning hardcoded
223 '-1' on error. */
224 TARGET_XFER_E_IO = -1,
225
01cb8804 226 /* Keep list in sync with target_xfer_status_to_string. */
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227};
228
01cb8804 229/* Return the string form of STATUS. */
6be7b56e 230
01cb8804
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231extern const char *
232 target_xfer_status_to_string (enum target_xfer_status status);
6be7b56e 233
9b409511 234typedef enum target_xfer_status
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235 target_xfer_partial_ftype (struct target_ops *ops,
236 enum target_object object,
237 const char *annex,
238 gdb_byte *readbuf,
239 const gdb_byte *writebuf,
240 ULONGEST offset,
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241 ULONGEST len,
242 ULONGEST *xfered_len);
4ac248ca 243
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244enum target_xfer_status
245 raw_memory_xfer_partial (struct target_ops *ops, gdb_byte *readbuf,
246 const gdb_byte *writebuf, ULONGEST memaddr,
247 LONGEST len, ULONGEST *xfered_len);
248
d309493c
SM
249/* Request that OPS transfer up to LEN addressable units of the target's
250 OBJECT. When reading from a memory object, the size of an addressable unit
251 is architecture dependent and can be found using
252 gdbarch_addressable_memory_unit_size. Otherwise, an addressable unit is 1
253 byte long. BUF should point to a buffer large enough to hold the read data,
254 taking into account the addressable unit size. The OFFSET, for a seekable
255 object, specifies the starting point. The ANNEX can be used to provide
256 additional data-specific information to the target.
257
258 Return the number of addressable units actually transferred, or a negative
259 error code (an 'enum target_xfer_error' value) if the transfer is not
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260 supported or otherwise fails. Return of a positive value less than
261 LEN indicates that no further transfer is possible. Unlike the raw
262 to_xfer_partial interface, callers of these functions do not need
263 to retry partial transfers. */
1e3ff5ad 264
1e3ff5ad
AC
265extern LONGEST target_read (struct target_ops *ops,
266 enum target_object object,
1b0ba102 267 const char *annex, gdb_byte *buf,
1e3ff5ad
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268 ULONGEST offset, LONGEST len);
269
8dedea02 270struct memory_read_result
386c8614
TT
271{
272 memory_read_result (ULONGEST begin_, ULONGEST end_,
273 gdb::unique_xmalloc_ptr<gdb_byte> &&data_)
274 : begin (begin_),
275 end (end_),
276 data (std::move (data_))
8dedea02 277 {
386c8614
TT
278 }
279
280 ~memory_read_result () = default;
8dedea02 281
386c8614
TT
282 memory_read_result (memory_read_result &&other) = default;
283
284 DISABLE_COPY_AND_ASSIGN (memory_read_result);
285
286 /* First address that was read. */
287 ULONGEST begin;
288 /* Past-the-end address. */
289 ULONGEST end;
290 /* The data. */
291 gdb::unique_xmalloc_ptr<gdb_byte> data;
292};
8dedea02 293
386c8614
TT
294extern std::vector<memory_read_result> read_memory_robust
295 (struct target_ops *ops, const ULONGEST offset, const LONGEST len);
279a6fed 296
d309493c
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297/* Request that OPS transfer up to LEN addressable units from BUF to the
298 target's OBJECT. When writing to a memory object, the addressable unit
299 size is architecture dependent and can be found using
300 gdbarch_addressable_memory_unit_size. Otherwise, an addressable unit is 1
301 byte long. The OFFSET, for a seekable object, specifies the starting point.
302 The ANNEX can be used to provide additional data-specific information to
303 the target.
304
305 Return the number of addressable units actually transferred, or a negative
306 error code (an 'enum target_xfer_status' value) if the transfer is not
307 supported or otherwise fails. Return of a positive value less than
308 LEN indicates that no further transfer is possible. Unlike the raw
309 to_xfer_partial interface, callers of these functions do not need to
310 retry partial transfers. */
311
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AC
312extern LONGEST target_write (struct target_ops *ops,
313 enum target_object object,
1b0ba102 314 const char *annex, const gdb_byte *buf,
1e3ff5ad 315 ULONGEST offset, LONGEST len);
b6591e8b 316
a76d924d
DJ
317/* Similar to target_write, except that it also calls PROGRESS with
318 the number of bytes written and the opaque BATON after every
319 successful partial write (and before the first write). This is
320 useful for progress reporting and user interaction while writing
321 data. To abort the transfer, the progress callback can throw an
322 exception. */
323
cf7a04e8
DJ
324LONGEST target_write_with_progress (struct target_ops *ops,
325 enum target_object object,
326 const char *annex, const gdb_byte *buf,
327 ULONGEST offset, LONGEST len,
328 void (*progress) (ULONGEST, void *),
329 void *baton);
330
9018be22
SM
331/* Wrapper to perform a full read of unknown size. OBJECT/ANNEX will be read
332 using OPS. The return value will be uninstantiated if the transfer fails or
333 is not supported.
13547ab6
DJ
334
335 This method should be used for objects sufficiently small to store
336 in a single xmalloc'd buffer, when no fixed bound on the object's
337 size is known in advance. Don't try to read TARGET_OBJECT_MEMORY
338 through this function. */
339
9018be22
SM
340extern gdb::optional<gdb::byte_vector> target_read_alloc
341 (struct target_ops *ops, enum target_object object, const char *annex);
13547ab6 342
9018be22
SM
343/* Read OBJECT/ANNEX using OPS. The result is a NUL-terminated character vector
344 (therefore usable as a NUL-terminated string). If an error occurs or the
345 transfer is unsupported, the return value will be uninstantiated. Empty
346 objects are returned as allocated but empty strings. Therefore, on success,
347 the returned vector is guaranteed to have at least one element. A warning is
348 issued if the result contains any embedded NUL bytes. */
159f81f3 349
9018be22 350extern gdb::optional<gdb::char_vector> target_read_stralloc
b7b030ad 351 (struct target_ops *ops, enum target_object object, const char *annex);
159f81f3 352
6be7b56e 353/* See target_ops->to_xfer_partial. */
4ac248ca 354extern target_xfer_partial_ftype target_xfer_partial;
6be7b56e 355
b6591e8b
AC
356/* Wrappers to target read/write that perform memory transfers. They
357 throw an error if the memory transfer fails.
358
359 NOTE: cagney/2003-10-23: The naming schema is lifted from
360 "frame.h". The parameter order is lifted from get_frame_memory,
361 which in turn lifted it from read_memory. */
362
363extern void get_target_memory (struct target_ops *ops, CORE_ADDR addr,
1b0ba102 364 gdb_byte *buf, LONGEST len);
b6591e8b 365extern ULONGEST get_target_memory_unsigned (struct target_ops *ops,
e17a4113
UW
366 CORE_ADDR addr, int len,
367 enum bfd_endian byte_order);
1e3ff5ad 368\f
0d06e24b
JM
369struct thread_info; /* fwd decl for parameter list below: */
370
b0a16e66
TT
371/* The type of the callback to the to_async method. */
372
373typedef void async_callback_ftype (enum inferior_event_type event_type,
374 void *context);
375
a7068b60
TT
376/* Normally target debug printing is purely type-based. However,
377 sometimes it is necessary to override the debug printing on a
378 per-argument basis. This macro can be used, attribute-style, to
379 name the target debug printing function for a particular method
380 argument. FUNC is the name of the function. The macro's
381 definition is empty because it is only used by the
382 make-target-delegates script. */
383
384#define TARGET_DEBUG_PRINTER(FUNC)
385
1101cb7b
TT
386/* These defines are used to mark target_ops methods. The script
387 make-target-delegates scans these and auto-generates the base
388 method implementations. There are four macros that can be used:
389
390 1. TARGET_DEFAULT_IGNORE. There is no argument. The base method
391 does nothing. This is only valid if the method return type is
392 'void'.
393
394 2. TARGET_DEFAULT_NORETURN. The argument is a function call, like
395 'tcomplain ()'. The base method simply makes this call, which is
396 assumed not to return.
397
398 3. TARGET_DEFAULT_RETURN. The argument is a C expression. The
399 base method returns this expression's value.
400
401 4. TARGET_DEFAULT_FUNC. The argument is the name of a function.
402 make-target-delegates does not generate a base method in this case,
403 but instead uses the argument function as the base method. */
404
405#define TARGET_DEFAULT_IGNORE()
406#define TARGET_DEFAULT_NORETURN(ARG)
407#define TARGET_DEFAULT_RETURN(ARG)
408#define TARGET_DEFAULT_FUNC(ARG)
409
d9f719f1
PA
410/* Each target that can be activated with "target TARGET_NAME" passes
411 the address of one of these objects to add_target, which uses the
412 object's address as unique identifier, and registers the "target
413 TARGET_NAME" command using SHORTNAME as target name. */
414
415struct target_info
416{
417 /* Name of this target. */
418 const char *shortname;
419
420 /* Name for printing. */
421 const char *longname;
422
423 /* Documentation. Does not include trailing newline, and starts
424 with a one-line description (probably similar to longname). */
425 const char *doc;
426};
427
c906108c 428struct target_ops
c5aa993b 429 {
b6a8c27b 430 /* To the target under this one. */
b6a8c27b 431 target_ops *beneath () const;
f6ac5f3d 432
d9f719f1
PA
433 /* Free resources associated with the target. Note that singleton
434 targets, like e.g., native targets, are global objects, not
435 heap allocated, and are thus only deleted on GDB exit. The
436 main teardown entry point is the "close" method, below. */
f6ac5f3d
PA
437 virtual ~target_ops () {}
438
d9f719f1
PA
439 /* Return a reference to this target's unique target_info
440 object. */
441 virtual const target_info &info () const = 0;
f6ac5f3d 442
d9f719f1
PA
443 /* Name this target type. */
444 const char *shortname ()
445 { return info ().shortname; }
f6ac5f3d 446
d9f719f1
PA
447 const char *longname ()
448 { return info ().longname; }
3fffc070
PA
449
450 /* Close the target. This is where the target can handle
451 teardown. Heap-allocated targets should delete themselves
452 before returning. */
f6ac5f3d 453 virtual void close ();
3fffc070 454
b3ccfe11
TT
455 /* Attaches to a process on the target side. Arguments are as
456 passed to the `attach' command by the user. This routine can
457 be called when the target is not on the target-stack, if the
f6ac5f3d 458 target_ops::can_run method returns 1; in that case, it must push
b3ccfe11
TT
459 itself onto the stack. Upon exit, the target should be ready
460 for normal operations, and should be ready to deliver the
461 status of the process immediately (without waiting) to an
462 upcoming target_wait call. */
f6ac5f3d
PA
463 virtual bool can_attach ();
464 virtual void attach (const char *, int);
465 virtual void post_attach (int)
bebd3233 466 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 467 virtual void detach (inferior *, int)
09da0d0a 468 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 469 virtual void disconnect (const char *, int)
86a0854a 470 TARGET_DEFAULT_NORETURN (tcomplain ());
f6ac5f3d
PA
471 virtual void resume (ptid_t,
472 int TARGET_DEBUG_PRINTER (target_debug_print_step),
473 enum gdb_signal)
6b84065d 474 TARGET_DEFAULT_NORETURN (noprocess ());
f6ac5f3d 475 virtual void commit_resume ()
85ad3aaf 476 TARGET_DEFAULT_IGNORE ();
f6ac5f3d
PA
477 virtual ptid_t wait (ptid_t, struct target_waitstatus *,
478 int TARGET_DEBUG_PRINTER (target_debug_print_options))
0b333c5e 479 TARGET_DEFAULT_FUNC (default_target_wait);
f6ac5f3d 480 virtual void fetch_registers (struct regcache *, int)
ad5989bd 481 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 482 virtual void store_registers (struct regcache *, int)
6b84065d 483 TARGET_DEFAULT_NORETURN (noprocess ());
f6ac5f3d 484 virtual void prepare_to_store (struct regcache *)
6c628163 485 TARGET_DEFAULT_NORETURN (noprocess ());
c5aa993b 486
f6ac5f3d 487 virtual void files_info ()
f86e59b2 488 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 489 virtual int insert_breakpoint (struct gdbarch *,
6b84065d 490 struct bp_target_info *)
f6ac5f3d
PA
491 TARGET_DEFAULT_NORETURN (noprocess ());
492 virtual int remove_breakpoint (struct gdbarch *,
73971819
PA
493 struct bp_target_info *,
494 enum remove_bp_reason)
f6ac5f3d 495 TARGET_DEFAULT_NORETURN (noprocess ());
1cf4d951
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496
497 /* Returns true if the target stopped because it executed a
498 software breakpoint. This is necessary for correct background
499 execution / non-stop mode operation, and for correct PC
500 adjustment on targets where the PC needs to be adjusted when a
501 software breakpoint triggers. In these modes, by the time GDB
502 processes a breakpoint event, the breakpoint may already be
503 done from the target, so GDB needs to be able to tell whether
504 it should ignore the event and whether it should adjust the PC.
505 See adjust_pc_after_break. */
57810aa7
PA
506 virtual bool stopped_by_sw_breakpoint ()
507 TARGET_DEFAULT_RETURN (false);
1cf4d951 508 /* Returns true if the above method is supported. */
57810aa7
PA
509 virtual bool supports_stopped_by_sw_breakpoint ()
510 TARGET_DEFAULT_RETURN (false);
1cf4d951
PA
511
512 /* Returns true if the target stopped for a hardware breakpoint.
513 Likewise, if the target supports hardware breakpoints, this
514 method is necessary for correct background execution / non-stop
515 mode operation. Even though hardware breakpoints do not
516 require PC adjustment, GDB needs to be able to tell whether the
517 hardware breakpoint event is a delayed event for a breakpoint
518 that is already gone and should thus be ignored. */
57810aa7
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519 virtual bool stopped_by_hw_breakpoint ()
520 TARGET_DEFAULT_RETURN (false);
1cf4d951 521 /* Returns true if the above method is supported. */
57810aa7
PA
522 virtual bool supports_stopped_by_hw_breakpoint ()
523 TARGET_DEFAULT_RETURN (false);
1cf4d951 524
f6ac5f3d 525 virtual int can_use_hw_breakpoint (enum bptype, int, int)
52b51d06 526 TARGET_DEFAULT_RETURN (0);
f6ac5f3d 527 virtual int ranged_break_num_registers ()
a134316b 528 TARGET_DEFAULT_RETURN (-1);
f6ac5f3d
PA
529 virtual int insert_hw_breakpoint (struct gdbarch *,
530 struct bp_target_info *)
61b371f9 531 TARGET_DEFAULT_RETURN (-1);
f6ac5f3d
PA
532 virtual int remove_hw_breakpoint (struct gdbarch *,
533 struct bp_target_info *)
418dabac 534 TARGET_DEFAULT_RETURN (-1);
0cf6dd15
TJB
535
536 /* Documentation of what the two routines below are expected to do is
537 provided with the corresponding target_* macros. */
f6ac5f3d 538 virtual int remove_watchpoint (CORE_ADDR, int,
f486487f 539 enum target_hw_bp_type, struct expression *)
61dd109f 540 TARGET_DEFAULT_RETURN (-1);
f6ac5f3d 541 virtual int insert_watchpoint (CORE_ADDR, int,
f486487f 542 enum target_hw_bp_type, struct expression *)
016facd4 543 TARGET_DEFAULT_RETURN (-1);
0cf6dd15 544
f6ac5f3d
PA
545 virtual int insert_mask_watchpoint (CORE_ADDR, CORE_ADDR,
546 enum target_hw_bp_type)
cd4ae029 547 TARGET_DEFAULT_RETURN (1);
f6ac5f3d
PA
548 virtual int remove_mask_watchpoint (CORE_ADDR, CORE_ADDR,
549 enum target_hw_bp_type)
8b1c364c 550 TARGET_DEFAULT_RETURN (1);
57810aa7
PA
551 virtual bool stopped_by_watchpoint ()
552 TARGET_DEFAULT_RETURN (false);
f6ac5f3d 553 virtual int have_steppable_watchpoint ()
57810aa7 554 TARGET_DEFAULT_RETURN (false);
f6ac5f3d 555 virtual bool have_continuable_watchpoint ()
57810aa7
PA
556 TARGET_DEFAULT_RETURN (false);
557 virtual bool stopped_data_address (CORE_ADDR *)
558 TARGET_DEFAULT_RETURN (false);
559 virtual bool watchpoint_addr_within_range (CORE_ADDR, CORE_ADDR, int)
65f160a9 560 TARGET_DEFAULT_FUNC (default_watchpoint_addr_within_range);
e09342b5
TJB
561
562 /* Documentation of this routine is provided with the corresponding
563 target_* macro. */
f6ac5f3d 564 virtual int region_ok_for_hw_watchpoint (CORE_ADDR, int)
d03655e4 565 TARGET_DEFAULT_FUNC (default_region_ok_for_hw_watchpoint);
e09342b5 566
57810aa7
PA
567 virtual bool can_accel_watchpoint_condition (CORE_ADDR, int, int,
568 struct expression *)
569 TARGET_DEFAULT_RETURN (false);
f6ac5f3d 570 virtual int masked_watch_num_registers (CORE_ADDR, CORE_ADDR)
6c7e5e5c 571 TARGET_DEFAULT_RETURN (-1);
750ce8d1
YQ
572
573 /* Return 1 for sure target can do single step. Return -1 for
574 unknown. Return 0 for target can't do. */
f6ac5f3d 575 virtual int can_do_single_step ()
750ce8d1
YQ
576 TARGET_DEFAULT_RETURN (-1);
577
f6ac5f3d 578 virtual bool supports_terminal_ours ()
57810aa7 579 TARGET_DEFAULT_RETURN (false);
f6ac5f3d 580 virtual void terminal_init ()
0343661d 581 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 582 virtual void terminal_inferior ()
ddeaacc9 583 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 584 virtual void terminal_save_inferior ()
e671cd59 585 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 586 virtual void terminal_ours_for_output ()
74fcbef9 587 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 588 virtual void terminal_ours ()
e4a733f1 589 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 590 virtual void terminal_info (const char *, int)
e19e919f 591 TARGET_DEFAULT_FUNC (default_terminal_info);
f6ac5f3d 592 virtual void kill ()
423a4807 593 TARGET_DEFAULT_NORETURN (noprocess ());
f6ac5f3d 594 virtual void load (const char *, int)
7634da87 595 TARGET_DEFAULT_NORETURN (tcomplain ());
b3ccfe11
TT
596 /* Start an inferior process and set inferior_ptid to its pid.
597 EXEC_FILE is the file to run.
598 ALLARGS is a string containing the arguments to the program.
599 ENV is the environment vector to pass. Errors reported with error().
600 On VxWorks and various standalone systems, we ignore exec_file. */
f6ac5f3d
PA
601 virtual bool can_create_inferior ();
602 virtual void create_inferior (const char *, const std::string &,
603 char **, int);
604 virtual void post_startup_inferior (ptid_t)
340ba4bf 605 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 606 virtual int insert_fork_catchpoint (int)
5958ebeb 607 TARGET_DEFAULT_RETURN (1);
f6ac5f3d 608 virtual int remove_fork_catchpoint (int)
e1a21fb7 609 TARGET_DEFAULT_RETURN (1);
f6ac5f3d 610 virtual int insert_vfork_catchpoint (int)
7e18a8dc 611 TARGET_DEFAULT_RETURN (1);
f6ac5f3d 612 virtual int remove_vfork_catchpoint (int)
95c3375e 613 TARGET_DEFAULT_RETURN (1);
f6ac5f3d 614 virtual int follow_fork (int, int)
098dba18 615 TARGET_DEFAULT_FUNC (default_follow_fork);
f6ac5f3d 616 virtual int insert_exec_catchpoint (int)
62f64d7a 617 TARGET_DEFAULT_RETURN (1);
f6ac5f3d 618 virtual int remove_exec_catchpoint (int)
cda0f38c 619 TARGET_DEFAULT_RETURN (1);
f6ac5f3d 620 virtual void follow_exec (struct inferior *, char *)
94585166 621 TARGET_DEFAULT_IGNORE ();
f6ac5f3d
PA
622 virtual int set_syscall_catchpoint (int, bool, int,
623 gdb::array_view<const int>)
6a9fa051 624 TARGET_DEFAULT_RETURN (1);
f6ac5f3d 625 virtual void mourn_inferior ()
8d657035 626 TARGET_DEFAULT_FUNC (default_mourn_inferior);
f6ac5f3d
PA
627
628 /* Note that can_run is special and can be invoked on an unpushed
629 target. Targets defining this method must also define
b3ccfe11 630 to_can_async_p and to_supports_non_stop. */
57810aa7 631 virtual bool can_run ();
2455069d
UW
632
633 /* Documentation of this routine is provided with the corresponding
634 target_* macro. */
f6ac5f3d
PA
635 virtual void pass_signals (int,
636 unsigned char * TARGET_DEBUG_PRINTER (target_debug_print_signals))
035cad7f 637 TARGET_DEFAULT_IGNORE ();
2455069d 638
9b224c5e
PA
639 /* Documentation of this routine is provided with the
640 corresponding target_* function. */
f6ac5f3d
PA
641 virtual void program_signals (int,
642 unsigned char * TARGET_DEBUG_PRINTER (target_debug_print_signals))
7d4f8efa 643 TARGET_DEFAULT_IGNORE ();
9b224c5e 644
57810aa7
PA
645 virtual bool thread_alive (ptid_t ptid)
646 TARGET_DEFAULT_RETURN (false);
f6ac5f3d 647 virtual void update_thread_list ()
09b0dc2b 648 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 649 virtual const char *pid_to_str (ptid_t)
770234d3 650 TARGET_DEFAULT_FUNC (default_pid_to_str);
f6ac5f3d 651 virtual const char *extra_thread_info (thread_info *)
9b144037 652 TARGET_DEFAULT_RETURN (NULL);
f6ac5f3d 653 virtual const char *thread_name (thread_info *)
9b144037 654 TARGET_DEFAULT_RETURN (NULL);
f6ac5f3d
PA
655 virtual thread_info *thread_handle_to_thread_info (const gdb_byte *,
656 int,
657 inferior *inf)
e04ee09e 658 TARGET_DEFAULT_RETURN (NULL);
f6ac5f3d 659 virtual void stop (ptid_t)
46ee7e8d 660 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 661 virtual void interrupt ()
bfedc46a 662 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 663 virtual void pass_ctrlc ()
93692b58 664 TARGET_DEFAULT_FUNC (default_target_pass_ctrlc);
f6ac5f3d 665 virtual void rcmd (const char *command, struct ui_file *output)
a53f3625 666 TARGET_DEFAULT_FUNC (default_rcmd);
f6ac5f3d 667 virtual char *pid_to_exec_file (int pid)
9b144037 668 TARGET_DEFAULT_RETURN (NULL);
f6ac5f3d 669 virtual void log_command (const char *)
d9cb0195 670 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 671 virtual struct target_section_table *get_section_table ()
9b144037 672 TARGET_DEFAULT_RETURN (NULL);
c5aa993b 673 enum strata to_stratum;
f6ac5f3d
PA
674
675 /* Provide default values for all "must have" methods. */
57810aa7
PA
676 virtual bool has_all_memory () { return false; }
677 virtual bool has_memory () { return false; }
678 virtual bool has_stack () { return false; }
679 virtual bool has_registers () { return false; }
680 virtual bool has_execution (ptid_t) { return false; }
f6ac5f3d
PA
681
682 /* Control thread execution. */
683 virtual thread_control_capabilities get_thread_control_capabilities ()
684 TARGET_DEFAULT_RETURN (tc_none);
685 virtual bool attach_no_wait ()
686 TARGET_DEFAULT_RETURN (0);
b3ccfe11 687 /* This method must be implemented in some situations. See the
f6ac5f3d 688 comment on 'can_run'. */
57810aa7
PA
689 virtual bool can_async_p ()
690 TARGET_DEFAULT_RETURN (false);
691 virtual bool is_async_p ()
692 TARGET_DEFAULT_RETURN (false);
f6ac5f3d 693 virtual void async (int)
6b84065d 694 TARGET_DEFAULT_NORETURN (tcomplain ());
f6ac5f3d 695 virtual void thread_events (int)
65706a29 696 TARGET_DEFAULT_IGNORE ();
b3ccfe11 697 /* This method must be implemented in some situations. See the
f6ac5f3d 698 comment on 'can_run'. */
57810aa7
PA
699 virtual bool supports_non_stop ()
700 TARGET_DEFAULT_RETURN (false);
fbea99ea
PA
701 /* Return true if the target operates in non-stop mode even with
702 "set non-stop off". */
57810aa7
PA
703 virtual bool always_non_stop_p ()
704 TARGET_DEFAULT_RETURN (false);
6b04bdb7 705 /* find_memory_regions support method for gcore */
f6ac5f3d 706 virtual int find_memory_regions (find_memory_region_ftype func, void *data)
0b5a2719 707 TARGET_DEFAULT_FUNC (dummy_find_memory_regions);
6b04bdb7 708 /* make_corefile_notes support method for gcore */
f6ac5f3d 709 virtual char *make_corefile_notes (bfd *, int *)
16f796b1 710 TARGET_DEFAULT_FUNC (dummy_make_corefile_notes);
6b04bdb7 711 /* get_bookmark support method for bookmarks */
f6ac5f3d 712 virtual gdb_byte *get_bookmark (const char *, int)
3dbafbbb 713 TARGET_DEFAULT_NORETURN (tcomplain ());
6b04bdb7 714 /* goto_bookmark support method for bookmarks */
f6ac5f3d 715 virtual void goto_bookmark (const gdb_byte *, int)
9bb9d61d 716 TARGET_DEFAULT_NORETURN (tcomplain ());
3f47be5c
EZ
717 /* Return the thread-local address at OFFSET in the
718 thread-local storage for the thread PTID and the shared library
719 or executable file given by OBJFILE. If that block of
720 thread-local storage hasn't been allocated yet, this function
5876f503
JK
721 may return an error. LOAD_MODULE_ADDR may be zero for statically
722 linked multithreaded inferiors. */
f6ac5f3d
PA
723 virtual CORE_ADDR get_thread_local_address (ptid_t ptid,
724 CORE_ADDR load_module_addr,
725 CORE_ADDR offset)
f0f9ff95 726 TARGET_DEFAULT_NORETURN (generic_tls_error ());
3f47be5c 727
e4da2c61
SM
728 /* Request that OPS transfer up to LEN addressable units of the target's
729 OBJECT. When reading from a memory object, the size of an addressable
730 unit is architecture dependent and can be found using
731 gdbarch_addressable_memory_unit_size. Otherwise, an addressable unit is
732 1 byte long. The OFFSET, for a seekable object, specifies the
13547ab6
DJ
733 starting point. The ANNEX can be used to provide additional
734 data-specific information to the target.
735
9b409511 736 Return the transferred status, error or OK (an
e4da2c61 737 'enum target_xfer_status' value). Save the number of addressable units
9b409511 738 actually transferred in *XFERED_LEN if transfer is successful
e4da2c61 739 (TARGET_XFER_OK) or the number unavailable units if the requested
bc113b4e 740 data is unavailable (TARGET_XFER_UNAVAILABLE). *XFERED_LEN
9b409511
YQ
741 smaller than LEN does not indicate the end of the object, only
742 the end of the transfer; higher level code should continue
743 transferring if desired. This is handled in target.c.
13547ab6
DJ
744
745 The interface does not support a "retry" mechanism. Instead it
e4da2c61 746 assumes that at least one addressable unit will be transfered on each
13547ab6
DJ
747 successful call.
748
749 NOTE: cagney/2003-10-17: The current interface can lead to
750 fragmented transfers. Lower target levels should not implement
751 hacks, such as enlarging the transfer, in an attempt to
752 compensate for this. Instead, the target stack should be
753 extended so that it implements supply/collect methods and a
754 look-aside object cache. With that available, the lowest
755 target can safely and freely "push" data up the stack.
756
757 See target_read and target_write for more information. One,
758 and only one, of readbuf or writebuf must be non-NULL. */
759
f6ac5f3d
PA
760 virtual enum target_xfer_status xfer_partial (enum target_object object,
761 const char *annex,
762 gdb_byte *readbuf,
763 const gdb_byte *writebuf,
764 ULONGEST offset, ULONGEST len,
765 ULONGEST *xfered_len)
6b84065d 766 TARGET_DEFAULT_RETURN (TARGET_XFER_E_IO);
1e3ff5ad 767
09c98b44
DB
768 /* Return the limit on the size of any single memory transfer
769 for the target. */
770
f6ac5f3d 771 virtual ULONGEST get_memory_xfer_limit ()
09c98b44
DB
772 TARGET_DEFAULT_RETURN (ULONGEST_MAX);
773
fd79ecee
DJ
774 /* Returns the memory map for the target. A return value of NULL
775 means that no memory map is available. If a memory address
776 does not fall within any returned regions, it's assumed to be
777 RAM. The returned memory regions should not overlap.
778
779 The order of regions does not matter; target_memory_map will
c378eb4e 780 sort regions by starting address. For that reason, this
fd79ecee
DJ
781 function should not be called directly except via
782 target_memory_map.
783
784 This method should not cache data; if the memory map could
785 change unexpectedly, it should be invalidated, and higher
786 layers will re-fetch it. */
f6ac5f3d 787 virtual std::vector<mem_region> memory_map ()
a664f67e 788 TARGET_DEFAULT_RETURN (std::vector<mem_region> ());
fd79ecee 789
a76d924d
DJ
790 /* Erases the region of flash memory starting at ADDRESS, of
791 length LENGTH.
792
793 Precondition: both ADDRESS and ADDRESS+LENGTH should be aligned
794 on flash block boundaries, as reported by 'to_memory_map'. */
f6ac5f3d 795 virtual void flash_erase (ULONGEST address, LONGEST length)
e8a6c6ac 796 TARGET_DEFAULT_NORETURN (tcomplain ());
a76d924d
DJ
797
798 /* Finishes a flash memory write sequence. After this operation
799 all flash memory should be available for writing and the result
800 of reading from areas written by 'to_flash_write' should be
801 equal to what was written. */
f6ac5f3d 802 virtual void flash_done ()
f6fb2925 803 TARGET_DEFAULT_NORETURN (tcomplain ());
a76d924d 804
2117c711
TT
805 /* Describe the architecture-specific features of this target. If
806 OPS doesn't have a description, this should delegate to the
807 "beneath" target. Returns the description found, or NULL if no
808 description was available. */
f6ac5f3d 809 virtual const struct target_desc *read_description ()
9b144037 810 TARGET_DEFAULT_RETURN (NULL);
424163ea 811
0ef643c8
JB
812 /* Build the PTID of the thread on which a given task is running,
813 based on LWP and THREAD. These values are extracted from the
814 task Private_Data section of the Ada Task Control Block, and
815 their interpretation depends on the target. */
f6ac5f3d 816 virtual ptid_t get_ada_task_ptid (long lwp, long thread)
4229b31d 817 TARGET_DEFAULT_FUNC (default_get_ada_task_ptid);
0ef643c8 818
c47ffbe3
VP
819 /* Read one auxv entry from *READPTR, not reading locations >= ENDPTR.
820 Return 0 if *READPTR is already at the end of the buffer.
821 Return -1 if there is insufficient buffer for a whole entry.
822 Return 1 if an entry was read into *TYPEP and *VALP. */
f6ac5f3d
PA
823 virtual int auxv_parse (gdb_byte **readptr,
824 gdb_byte *endptr, CORE_ADDR *typep, CORE_ADDR *valp)
8de71aab 825 TARGET_DEFAULT_FUNC (default_auxv_parse);
c47ffbe3 826
08388c79
DE
827 /* Search SEARCH_SPACE_LEN bytes beginning at START_ADDR for the
828 sequence of bytes in PATTERN with length PATTERN_LEN.
829
830 The result is 1 if found, 0 if not found, and -1 if there was an error
831 requiring halting of the search (e.g. memory read error).
832 If the pattern is found the address is recorded in FOUND_ADDRP. */
f6ac5f3d
PA
833 virtual int search_memory (CORE_ADDR start_addr, ULONGEST search_space_len,
834 const gdb_byte *pattern, ULONGEST pattern_len,
835 CORE_ADDR *found_addrp)
58a5184e 836 TARGET_DEFAULT_FUNC (default_search_memory);
08388c79 837
b2175913 838 /* Can target execute in reverse? */
57810aa7
PA
839 virtual bool can_execute_reverse ()
840 TARGET_DEFAULT_RETURN (false);
b2175913 841
32231432
PA
842 /* The direction the target is currently executing. Must be
843 implemented on targets that support reverse execution and async
844 mode. The default simply returns forward execution. */
f6ac5f3d 845 virtual enum exec_direction_kind execution_direction ()
fe31bf5b 846 TARGET_DEFAULT_FUNC (default_execution_direction);
32231432 847
8a305172
PA
848 /* Does this target support debugging multiple processes
849 simultaneously? */
57810aa7
PA
850 virtual bool supports_multi_process ()
851 TARGET_DEFAULT_RETURN (false);
8a305172 852
d248b706
KY
853 /* Does this target support enabling and disabling tracepoints while a trace
854 experiment is running? */
57810aa7
PA
855 virtual bool supports_enable_disable_tracepoint ()
856 TARGET_DEFAULT_RETURN (false);
d248b706 857
03583c20 858 /* Does this target support disabling address space randomization? */
57810aa7 859 virtual bool supports_disable_randomization ()
f6ac5f3d 860 TARGET_DEFAULT_FUNC (find_default_supports_disable_randomization);
03583c20 861
3065dfb6 862 /* Does this target support the tracenz bytecode for string collection? */
57810aa7
PA
863 virtual bool supports_string_tracing ()
864 TARGET_DEFAULT_RETURN (false);
3065dfb6 865
b775012e
LM
866 /* Does this target support evaluation of breakpoint conditions on its
867 end? */
57810aa7
PA
868 virtual bool supports_evaluation_of_breakpoint_conditions ()
869 TARGET_DEFAULT_RETURN (false);
b775012e 870
d3ce09f5
SS
871 /* Does this target support evaluation of breakpoint commands on its
872 end? */
57810aa7
PA
873 virtual bool can_run_breakpoint_commands ()
874 TARGET_DEFAULT_RETURN (false);
d3ce09f5 875
3a8f7b07
JK
876 /* Determine current architecture of thread PTID.
877
878 The target is supposed to determine the architecture of the code where
879 the target is currently stopped at (on Cell, if a target is in spu_run,
880 to_thread_architecture would return SPU, otherwise PPC32 or PPC64).
881 This is architecture used to perform decr_pc_after_break adjustment,
882 and also determines the frame architecture of the innermost frame.
f5656ead 883 ptrace operations need to operate according to target_gdbarch ().
3a8f7b07 884
f5656ead 885 The default implementation always returns target_gdbarch (). */
f6ac5f3d 886 virtual struct gdbarch *thread_architecture (ptid_t)
43eba180 887 TARGET_DEFAULT_FUNC (default_thread_architecture);
c2250ad1 888
c0694254
PA
889 /* Determine current address space of thread PTID.
890
891 The default implementation always returns the inferior's
892 address space. */
f6ac5f3d 893 virtual struct address_space *thread_address_space (ptid_t)
8eaff7cd 894 TARGET_DEFAULT_FUNC (default_thread_address_space);
c0694254 895
7313baad
UW
896 /* Target file operations. */
897
07c138c8
GB
898 /* Return nonzero if the filesystem seen by the current inferior
899 is the local filesystem, zero otherwise. */
57810aa7
PA
900 virtual bool filesystem_is_local ()
901 TARGET_DEFAULT_RETURN (true);
4bd7dc42 902
07c138c8
GB
903 /* Open FILENAME on the target, in the filesystem as seen by INF,
904 using FLAGS and MODE. If INF is NULL, use the filesystem seen
905 by the debugger (GDB or, for remote targets, the remote stub).
4313b8c0
GB
906 If WARN_IF_SLOW is nonzero, print a warning message if the file
907 is being accessed over a link that may be slow. Return a
908 target file descriptor, or -1 if an error occurs (and set
909 *TARGET_ERRNO). */
f6ac5f3d
PA
910 virtual int fileio_open (struct inferior *inf, const char *filename,
911 int flags, int mode, int warn_if_slow,
912 int *target_errno);
7313baad
UW
913
914 /* Write up to LEN bytes from WRITE_BUF to FD on the target.
915 Return the number of bytes written, or -1 if an error occurs
916 (and set *TARGET_ERRNO). */
f6ac5f3d
PA
917 virtual int fileio_pwrite (int fd, const gdb_byte *write_buf, int len,
918 ULONGEST offset, int *target_errno);
7313baad
UW
919
920 /* Read up to LEN bytes FD on the target into READ_BUF.
921 Return the number of bytes read, or -1 if an error occurs
922 (and set *TARGET_ERRNO). */
f6ac5f3d
PA
923 virtual int fileio_pread (int fd, gdb_byte *read_buf, int len,
924 ULONGEST offset, int *target_errno);
7313baad 925
9b15c1f0
GB
926 /* Get information about the file opened as FD and put it in
927 SB. Return 0 on success, or -1 if an error occurs (and set
928 *TARGET_ERRNO). */
f6ac5f3d 929 virtual int fileio_fstat (int fd, struct stat *sb, int *target_errno);
9b15c1f0 930
7313baad
UW
931 /* Close FD on the target. Return 0, or -1 if an error occurs
932 (and set *TARGET_ERRNO). */
f6ac5f3d 933 virtual int fileio_close (int fd, int *target_errno);
7313baad 934
07c138c8
GB
935 /* Unlink FILENAME on the target, in the filesystem as seen by
936 INF. If INF is NULL, use the filesystem seen by the debugger
937 (GDB or, for remote targets, the remote stub). Return 0, or
938 -1 if an error occurs (and set *TARGET_ERRNO). */
f6ac5f3d
PA
939 virtual int fileio_unlink (struct inferior *inf,
940 const char *filename,
941 int *target_errno);
07c138c8
GB
942
943 /* Read value of symbolic link FILENAME on the target, in the
944 filesystem as seen by INF. If INF is NULL, use the filesystem
945 seen by the debugger (GDB or, for remote targets, the remote
e0d3522b
TT
946 stub). Return a string, or an empty optional if an error
947 occurs (and set *TARGET_ERRNO). */
f6ac5f3d
PA
948 virtual gdb::optional<std::string> fileio_readlink (struct inferior *inf,
949 const char *filename,
950 int *target_errno);
b9e7b9c3 951
f6ac5f3d
PA
952 /* Implement the "info proc" command. Returns true if the target
953 actually implemented the command, false otherwise. */
954 virtual bool info_proc (const char *, enum info_proc_what);
145b16a9 955
35b1e5cc
SS
956 /* Tracepoint-related operations. */
957
958 /* Prepare the target for a tracing run. */
f6ac5f3d 959 virtual void trace_init ()
5536135b 960 TARGET_DEFAULT_NORETURN (tcomplain ());
35b1e5cc 961
e8ba3115 962 /* Send full details of a tracepoint location to the target. */
f6ac5f3d 963 virtual void download_tracepoint (struct bp_location *location)
9a980a22 964 TARGET_DEFAULT_NORETURN (tcomplain ());
35b1e5cc 965
1e4d1764
YQ
966 /* Is the target able to download tracepoint locations in current
967 state? */
57810aa7
PA
968 virtual bool can_download_tracepoint ()
969 TARGET_DEFAULT_RETURN (false);
1e4d1764 970
35b1e5cc 971 /* Send full details of a trace state variable to the target. */
f6ac5f3d 972 virtual void download_trace_state_variable (const trace_state_variable &tsv)
94eb98b9 973 TARGET_DEFAULT_NORETURN (tcomplain ());
35b1e5cc 974
d248b706 975 /* Enable a tracepoint on the target. */
f6ac5f3d 976 virtual void enable_tracepoint (struct bp_location *location)
151f70f1 977 TARGET_DEFAULT_NORETURN (tcomplain ());
d248b706
KY
978
979 /* Disable a tracepoint on the target. */
f6ac5f3d 980 virtual void disable_tracepoint (struct bp_location *location)
05c41993 981 TARGET_DEFAULT_NORETURN (tcomplain ());
d248b706 982
35b1e5cc
SS
983 /* Inform the target info of memory regions that are readonly
984 (such as text sections), and so it should return data from
985 those rather than look in the trace buffer. */
f6ac5f3d 986 virtual void trace_set_readonly_regions ()
86dd181d 987 TARGET_DEFAULT_NORETURN (tcomplain ());
35b1e5cc
SS
988
989 /* Start a trace run. */
f6ac5f3d 990 virtual void trace_start ()
25da2e80 991 TARGET_DEFAULT_NORETURN (tcomplain ());
35b1e5cc
SS
992
993 /* Get the current status of a tracing run. */
f6ac5f3d 994 virtual int get_trace_status (struct trace_status *ts)
4072d4ff 995 TARGET_DEFAULT_RETURN (-1);
35b1e5cc 996
f6ac5f3d
PA
997 virtual void get_tracepoint_status (struct breakpoint *tp,
998 struct uploaded_tp *utp)
6fea14cd 999 TARGET_DEFAULT_NORETURN (tcomplain ());
f196051f 1000
35b1e5cc 1001 /* Stop a trace run. */
f6ac5f3d 1002 virtual void trace_stop ()
e51c07ea 1003 TARGET_DEFAULT_NORETURN (tcomplain ());
35b1e5cc
SS
1004
1005 /* Ask the target to find a trace frame of the given type TYPE,
1006 using NUM, ADDR1, and ADDR2 as search parameters. Returns the
1007 number of the trace frame, and also the tracepoint number at
c378eb4e 1008 TPP. If no trace frame matches, return -1. May throw if the
f197e0f1 1009 operation fails. */
f6ac5f3d
PA
1010 virtual int trace_find (enum trace_find_type type, int num,
1011 CORE_ADDR addr1, CORE_ADDR addr2, int *tpp)
afc94e66 1012 TARGET_DEFAULT_RETURN (-1);
35b1e5cc
SS
1013
1014 /* Get the value of the trace state variable number TSV, returning
1015 1 if the value is known and writing the value itself into the
1016 location pointed to by VAL, else returning 0. */
57810aa7
PA
1017 virtual bool get_trace_state_variable_value (int tsv, LONGEST *val)
1018 TARGET_DEFAULT_RETURN (false);
35b1e5cc 1019
f6ac5f3d 1020 virtual int save_trace_data (const char *filename)
a2e6c147 1021 TARGET_DEFAULT_NORETURN (tcomplain ());
00bf0b85 1022
f6ac5f3d 1023 virtual int upload_tracepoints (struct uploaded_tp **utpp)
1e949b00 1024 TARGET_DEFAULT_RETURN (0);
00bf0b85 1025
f6ac5f3d 1026 virtual int upload_trace_state_variables (struct uploaded_tsv **utsvp)
08120467 1027 TARGET_DEFAULT_RETURN (0);
00bf0b85 1028
f6ac5f3d
PA
1029 virtual LONGEST get_raw_trace_data (gdb_byte *buf,
1030 ULONGEST offset, LONGEST len)
ace92e7d 1031 TARGET_DEFAULT_NORETURN (tcomplain ());
00bf0b85 1032
405f8e94
SS
1033 /* Get the minimum length of instruction on which a fast tracepoint
1034 may be set on the target. If this operation is unsupported,
1035 return -1. If for some reason the minimum length cannot be
1036 determined, return 0. */
f6ac5f3d 1037 virtual int get_min_fast_tracepoint_insn_len ()
9249843f 1038 TARGET_DEFAULT_RETURN (-1);
405f8e94 1039
35b1e5cc
SS
1040 /* Set the target's tracing behavior in response to unexpected
1041 disconnection - set VAL to 1 to keep tracing, 0 to stop. */
f6ac5f3d 1042 virtual void set_disconnected_tracing (int val)
0bcfeddf 1043 TARGET_DEFAULT_IGNORE ();
f6ac5f3d 1044 virtual void set_circular_trace_buffer (int val)
8d526939 1045 TARGET_DEFAULT_IGNORE ();
f6f899bf 1046 /* Set the size of trace buffer in the target. */
f6ac5f3d 1047 virtual void set_trace_buffer_size (LONGEST val)
91df8d1d 1048 TARGET_DEFAULT_IGNORE ();
35b1e5cc 1049
f196051f
SS
1050 /* Add/change textual notes about the trace run, returning 1 if
1051 successful, 0 otherwise. */
57810aa7
PA
1052 virtual bool set_trace_notes (const char *user, const char *notes,
1053 const char *stopnotes)
1054 TARGET_DEFAULT_RETURN (false);
f196051f 1055
dc146f7c
VP
1056 /* Return the processor core that thread PTID was last seen on.
1057 This information is updated only when:
1058 - update_thread_list is called
1059 - thread stops
3e43a32a
MS
1060 If the core cannot be determined -- either for the specified
1061 thread, or right now, or in this debug session, or for this
1062 target -- return -1. */
f6ac5f3d 1063 virtual int core_of_thread (ptid_t ptid)
9e538d0d 1064 TARGET_DEFAULT_RETURN (-1);
dc146f7c 1065
4a5e7a5b
PA
1066 /* Verify that the memory in the [MEMADDR, MEMADDR+SIZE) range
1067 matches the contents of [DATA,DATA+SIZE). Returns 1 if there's
1068 a match, 0 if there's a mismatch, and -1 if an error is
1069 encountered while reading memory. */
f6ac5f3d
PA
1070 virtual int verify_memory (const gdb_byte *data,
1071 CORE_ADDR memaddr, ULONGEST size)
936d2992 1072 TARGET_DEFAULT_FUNC (default_verify_memory);
4a5e7a5b 1073
711e434b
PM
1074 /* Return the address of the start of the Thread Information Block
1075 a Windows OS specific feature. */
57810aa7 1076 virtual bool get_tib_address (ptid_t ptid, CORE_ADDR *addr)
22bcceee 1077 TARGET_DEFAULT_NORETURN (tcomplain ());
711e434b 1078
d914c394 1079 /* Send the new settings of write permission variables. */
f6ac5f3d 1080 virtual void set_permissions ()
dcd6917f 1081 TARGET_DEFAULT_IGNORE ();
d914c394 1082
0fb4aa4b 1083 /* Look for a static tracepoint marker at ADDR, and fill in MARKER
5d9310c4 1084 with its details. Return true on success, false on failure. */
f6ac5f3d
PA
1085 virtual bool static_tracepoint_marker_at (CORE_ADDR,
1086 static_tracepoint_marker *marker)
5d9310c4 1087 TARGET_DEFAULT_RETURN (false);
0fb4aa4b
PA
1088
1089 /* Return a vector of all tracepoints markers string id ID, or all
1090 markers if ID is NULL. */
ad6a4e2d
PA
1091 virtual std::vector<static_tracepoint_marker>
1092 static_tracepoint_markers_by_strid (const char *id)
d6522a22 1093 TARGET_DEFAULT_NORETURN (tcomplain ());
0fb4aa4b 1094
b3b9301e 1095 /* Return a traceframe info object describing the current
f73023dd
YQ
1096 traceframe's contents. This method should not cache data;
1097 higher layers take care of caching, invalidating, and
1098 re-fetching when necessary. */
f6ac5f3d 1099 virtual traceframe_info_up traceframe_info ()
2098b393 1100 TARGET_DEFAULT_NORETURN (tcomplain ());
b3b9301e 1101
57810aa7
PA
1102 /* Ask the target to use or not to use agent according to USE.
1103 Return true if successful, false otherwise. */
1104 virtual bool use_agent (bool use)
d9db5b21 1105 TARGET_DEFAULT_NORETURN (tcomplain ());
d1feda86
YQ
1106
1107 /* Is the target able to use agent in current state? */
57810aa7
PA
1108 virtual bool can_use_agent ()
1109 TARGET_DEFAULT_RETURN (false);
d1feda86 1110
f4abbc16
MM
1111 /* Enable branch tracing for PTID using CONF configuration.
1112 Return a branch trace target information struct for reading and for
1113 disabling branch trace. */
f6ac5f3d
PA
1114 virtual struct btrace_target_info *enable_btrace (ptid_t ptid,
1115 const struct btrace_config *conf)
6dc7fcf4 1116 TARGET_DEFAULT_NORETURN (tcomplain ());
02d27625
MM
1117
1118 /* Disable branch tracing and deallocate TINFO. */
f6ac5f3d 1119 virtual void disable_btrace (struct btrace_target_info *tinfo)
8dc292d3 1120 TARGET_DEFAULT_NORETURN (tcomplain ());
02d27625
MM
1121
1122 /* Disable branch tracing and deallocate TINFO. This function is similar
1123 to to_disable_btrace, except that it is called during teardown and is
1124 only allowed to perform actions that are safe. A counter-example would
1125 be attempting to talk to a remote target. */
f6ac5f3d 1126 virtual void teardown_btrace (struct btrace_target_info *tinfo)
9ace480d 1127 TARGET_DEFAULT_NORETURN (tcomplain ());
02d27625 1128
969c39fb 1129 /* Read branch trace data for the thread indicated by BTINFO into DATA.
734b0e4b 1130 DATA is cleared before new trace is added. */
f6ac5f3d
PA
1131 virtual enum btrace_error read_btrace (struct btrace_data *data,
1132 struct btrace_target_info *btinfo,
1133 enum btrace_read_type type)
eb5b20d4 1134 TARGET_DEFAULT_NORETURN (tcomplain ());
02d27625 1135
f4abbc16 1136 /* Get the branch trace configuration. */
f6ac5f3d 1137 virtual const struct btrace_config *btrace_conf (const struct btrace_target_info *)
f4abbc16
MM
1138 TARGET_DEFAULT_RETURN (NULL);
1139
b158a20f 1140 /* Current recording method. */
f6ac5f3d 1141 virtual enum record_method record_method (ptid_t ptid)
b158a20f
TW
1142 TARGET_DEFAULT_RETURN (RECORD_METHOD_NONE);
1143
7c1687a9 1144 /* Stop trace recording. */
f6ac5f3d 1145 virtual void stop_recording ()
ee97f592 1146 TARGET_DEFAULT_IGNORE ();
7c1687a9 1147
d02ed0bb 1148 /* Print information about the recording. */
f6ac5f3d 1149 virtual void info_record ()
38e229b2 1150 TARGET_DEFAULT_IGNORE ();
d02ed0bb
MM
1151
1152 /* Save the recorded execution trace into a file. */
f6ac5f3d 1153 virtual void save_record (const char *filename)
f09e2107 1154 TARGET_DEFAULT_NORETURN (tcomplain ());
d02ed0bb 1155
252db1b5
TT
1156 /* Delete the recorded execution trace from the current position
1157 onwards. */
f6ac5f3d
PA
1158 virtual bool supports_delete_record ()
1159 TARGET_DEFAULT_RETURN (false);
1160 virtual void delete_record ()
07366925 1161 TARGET_DEFAULT_NORETURN (tcomplain ());
d02ed0bb 1162
a52eab48 1163 /* Query if the record target is currently replaying PTID. */
57810aa7
PA
1164 virtual bool record_is_replaying (ptid_t ptid)
1165 TARGET_DEFAULT_RETURN (false);
d02ed0bb 1166
7ff27e9b
MM
1167 /* Query if the record target will replay PTID if it were resumed in
1168 execution direction DIR. */
57810aa7
PA
1169 virtual bool record_will_replay (ptid_t ptid, int dir)
1170 TARGET_DEFAULT_RETURN (false);
7ff27e9b 1171
797094dd 1172 /* Stop replaying. */
f6ac5f3d 1173 virtual void record_stop_replaying ()
797094dd
MM
1174 TARGET_DEFAULT_IGNORE ();
1175
d02ed0bb 1176 /* Go to the begin of the execution trace. */
f6ac5f3d 1177 virtual void goto_record_begin ()
671e76cc 1178 TARGET_DEFAULT_NORETURN (tcomplain ());
d02ed0bb
MM
1179
1180 /* Go to the end of the execution trace. */
f6ac5f3d 1181 virtual void goto_record_end ()
e9179bb3 1182 TARGET_DEFAULT_NORETURN (tcomplain ());
d02ed0bb
MM
1183
1184 /* Go to a specific location in the recorded execution trace. */
f6ac5f3d 1185 virtual void goto_record (ULONGEST insn)
05969c84 1186 TARGET_DEFAULT_NORETURN (tcomplain ());
d02ed0bb 1187
67c86d06
MM
1188 /* Disassemble SIZE instructions in the recorded execution trace from
1189 the current position.
1190 If SIZE < 0, disassemble abs (SIZE) preceding instructions; otherwise,
1191 disassemble SIZE succeeding instructions. */
f6ac5f3d 1192 virtual void insn_history (int size, gdb_disassembly_flags flags)
3679abfa 1193 TARGET_DEFAULT_NORETURN (tcomplain ());
67c86d06
MM
1194
1195 /* Disassemble SIZE instructions in the recorded execution trace around
1196 FROM.
1197 If SIZE < 0, disassemble abs (SIZE) instructions before FROM; otherwise,
1198 disassemble SIZE instructions after FROM. */
f6ac5f3d
PA
1199 virtual void insn_history_from (ULONGEST from, int size,
1200 gdb_disassembly_flags flags)
8444ab58 1201 TARGET_DEFAULT_NORETURN (tcomplain ());
67c86d06
MM
1202
1203 /* Disassemble a section of the recorded execution trace from instruction
0688d04e 1204 BEGIN (inclusive) to instruction END (inclusive). */
f6ac5f3d
PA
1205 virtual void insn_history_range (ULONGEST begin, ULONGEST end,
1206 gdb_disassembly_flags flags)
c29302cc 1207 TARGET_DEFAULT_NORETURN (tcomplain ());
67c86d06 1208
15984c13
MM
1209 /* Print a function trace of the recorded execution trace.
1210 If SIZE < 0, print abs (SIZE) preceding functions; otherwise, print SIZE
1211 succeeding functions. */
f6ac5f3d 1212 virtual void call_history (int size, record_print_flags flags)
170049d4 1213 TARGET_DEFAULT_NORETURN (tcomplain ());
15984c13
MM
1214
1215 /* Print a function trace of the recorded execution trace starting
1216 at function FROM.
1217 If SIZE < 0, print abs (SIZE) functions before FROM; otherwise, print
1218 SIZE functions after FROM. */
f6ac5f3d 1219 virtual void call_history_from (ULONGEST begin, int size, record_print_flags flags)
16fc27d6 1220 TARGET_DEFAULT_NORETURN (tcomplain ());
15984c13
MM
1221
1222 /* Print a function trace of an execution trace section from function BEGIN
0688d04e 1223 (inclusive) to function END (inclusive). */
f6ac5f3d 1224 virtual void call_history_range (ULONGEST begin, ULONGEST end, record_print_flags flags)
115d9817 1225 TARGET_DEFAULT_NORETURN (tcomplain ());
15984c13 1226
57810aa7 1227 /* True if TARGET_OBJECT_LIBRARIES_SVR4 may be read with a
ced63ec0 1228 non-empty annex. */
57810aa7
PA
1229 virtual bool augmented_libraries_svr4_read ()
1230 TARGET_DEFAULT_RETURN (false);
ced63ec0 1231
ac01945b
TT
1232 /* Those unwinders are tried before any other arch unwinders. If
1233 SELF doesn't have unwinders, it should delegate to the
1234 "beneath" target. */
f6ac5f3d 1235 virtual const struct frame_unwind *get_unwinder ()
ac01945b
TT
1236 TARGET_DEFAULT_RETURN (NULL);
1237
f6ac5f3d 1238 virtual const struct frame_unwind *get_tailcall_unwinder ()
ac01945b 1239 TARGET_DEFAULT_RETURN (NULL);
ea001bdc 1240
5fff78c4 1241 /* Prepare to generate a core file. */
f6ac5f3d 1242 virtual void prepare_to_generate_core ()
5fff78c4
MM
1243 TARGET_DEFAULT_IGNORE ();
1244
1245 /* Cleanup after generating a core file. */
f6ac5f3d 1246 virtual void done_generating_core ()
5fff78c4 1247 TARGET_DEFAULT_IGNORE ();
c5aa993b 1248 };
c906108c 1249
15244507
PA
1250/* Deleter for std::unique_ptr. See comments in
1251 target_ops::~target_ops and target_ops::close about heap-allocated
1252 targets. */
1253struct target_ops_deleter
1254{
1255 void operator() (target_ops *target)
1256 {
1257 target->close ();
1258 }
1259};
1260
1261/* A unique pointer for target_ops. */
1262typedef std::unique_ptr<target_ops, target_ops_deleter> target_ops_up;
1263
d9f719f1
PA
1264/* Native target backends call this once at initialization time to
1265 inform the core about which is the target that can respond to "run"
1266 or "attach". Note: native targets are always singletons. */
1267extern void set_native_target (target_ops *target);
1268
1269/* Get the registered native target, if there's one. Otherwise return
1270 NULL. */
1271extern target_ops *get_native_target ();
1272
a1740ee1
PA
1273/* Type that manages a target stack. See description of target stacks
1274 and strata at the top of the file. */
1275
1276class target_stack
1277{
1278public:
1279 target_stack () = default;
1280 DISABLE_COPY_AND_ASSIGN (target_stack);
1281
1282 /* Push a new target into the stack of the existing target
1283 accessors, possibly superseding some existing accessor. */
1284 void push (target_ops *t);
1285
1286 /* Remove a target from the stack, wherever it may be. Return true
1287 if it was removed, false otherwise. */
1288 bool unpush (target_ops *t);
1289
1290 /* Returns true if T is pushed on the target stack. */
1291 bool is_pushed (target_ops *t) const
1292 { return at (t->to_stratum) == t; }
1293
1294 /* Return the target at STRATUM. */
1295 target_ops *at (strata stratum) const { return m_stack[stratum]; }
1296
1297 /* Return the target at the top of the stack. */
1298 target_ops *top () const { return at (m_top); }
1299
1300 /* Find the next target down the stack from the specified target. */
1301 target_ops *find_beneath (const target_ops *t) const;
1302
1303private:
1304 /* The stratum of the top target. */
1305 enum strata m_top {};
1306
1307 /* The stack, represented as an array, with one slot per stratum.
1308 If no target is pushed at some stratum, the corresponding slot is
1309 null. */
1310 target_ops *m_stack[(int) debug_stratum + 1] {};
1311};
1312
c906108c
SS
1313/* The ops structure for our "current" target process. This should
1314 never be NULL. If there is no target, it points to the dummy_target. */
1315
8b88a78e 1316extern target_ops *current_top_target ();
c906108c 1317
c906108c
SS
1318/* Define easy words for doing these operations on our current target. */
1319
8b88a78e
PA
1320#define target_shortname (current_top_target ()->shortname ())
1321#define target_longname (current_top_target ()->longname ())
c906108c 1322
f1c07ab0 1323/* Does whatever cleanup is required for a target that we are no
460014f5
JK
1324 longer going to be calling. This routine is automatically always
1325 called after popping the target off the target stack - the target's
1326 own methods are no longer available through the target vector.
1327 Closing file descriptors and freeing all memory allocated memory are
1328 typical things it should do. */
f1c07ab0 1329
460014f5 1330void target_close (struct target_ops *targ);
c906108c 1331
b3ccfe11
TT
1332/* Find the correct target to use for "attach". If a target on the
1333 current stack supports attaching, then it is returned. Otherwise,
1334 the default run target is returned. */
1335
1336extern struct target_ops *find_attach_target (void);
c906108c 1337
b3ccfe11
TT
1338/* Find the correct target to use for "run". If a target on the
1339 current stack supports creating a new inferior, then it is
1340 returned. Otherwise, the default run target is returned. */
1341
1342extern struct target_ops *find_run_target (void);
c906108c 1343
dc177b7a
PA
1344/* Some targets don't generate traps when attaching to the inferior,
1345 or their target_attach implementation takes care of the waiting.
1346 These targets must set to_attach_no_wait. */
1347
f6ac5f3d 1348#define target_attach_no_wait() \
8b88a78e 1349 (current_top_target ()->attach_no_wait ())
dc177b7a 1350
c906108c
SS
1351/* The target_attach operation places a process under debugger control,
1352 and stops the process.
1353
1354 This operation provides a target-specific hook that allows the
0d06e24b 1355 necessary bookkeeping to be performed after an attach completes. */
c906108c 1356#define target_post_attach(pid) \
8b88a78e 1357 (current_top_target ()->post_attach) (pid)
c906108c 1358
0f48b757
PA
1359/* Display a message indicating we're about to detach from the current
1360 inferior process. */
1361
1362extern void target_announce_detach (int from_tty);
1363
c906108c
SS
1364/* Takes a program previously attached to and detaches it.
1365 The program may resume execution (some targets do, some don't) and will
1366 no longer stop on signals, etc. We better not have left any breakpoints
6bd6f3b6
SM
1367 in the program or it'll die when it hits one. FROM_TTY says whether to be
1368 verbose or not. */
c906108c 1369
6e1e1966 1370extern void target_detach (inferior *inf, int from_tty);
c906108c 1371
6ad8ae5c
DJ
1372/* Disconnect from the current target without resuming it (leaving it
1373 waiting for a debugger). */
1374
fee354ee 1375extern void target_disconnect (const char *, int);
6ad8ae5c 1376
85ad3aaf
PA
1377/* Resume execution (or prepare for execution) of a target thread,
1378 process or all processes. STEP says whether to hardware
1379 single-step or to run free; SIGGNAL is the signal to be given to
1380 the target, or GDB_SIGNAL_0 for no signal. The caller may not pass
1381 GDB_SIGNAL_DEFAULT. A specific PTID means `step/resume only this
1382 process id'. A wildcard PTID (all threads, or all threads of
1383 process) means `step/resume INFERIOR_PTID, and let other threads
1384 (for which the wildcard PTID matches) resume with their
1385 'thread->suspend.stop_signal' signal (usually GDB_SIGNAL_0) if it
1386 is in "pass" state, or with no signal if in "no pass" state.
1387
1388 In order to efficiently handle batches of resumption requests,
1389 targets may implement this method such that it records the
1390 resumption request, but defers the actual resumption to the
1391 target_commit_resume method implementation. See
1392 target_commit_resume below. */
2ea28649 1393extern void target_resume (ptid_t ptid, int step, enum gdb_signal signal);
c906108c 1394
85ad3aaf
PA
1395/* Commit a series of resumption requests previously prepared with
1396 target_resume calls.
1397
1398 GDB always calls target_commit_resume after calling target_resume
1399 one or more times. A target may thus use this method in
1400 coordination with the target_resume method to batch target-side
1401 resumption requests. In that case, the target doesn't actually
1402 resume in its target_resume implementation. Instead, it prepares
1403 the resumption in target_resume, and defers the actual resumption
1404 to target_commit_resume. E.g., the remote target uses this to
1405 coalesce multiple resumption requests in a single vCont packet. */
1406extern void target_commit_resume ();
1407
a9bc57b9
TT
1408/* Setup to defer target_commit_resume calls, and reactivate
1409 target_commit_resume on destruction, if it was previously
85ad3aaf 1410 active. */
a9bc57b9 1411extern scoped_restore_tmpl<int> make_scoped_defer_target_commit_resume ();
85ad3aaf 1412
f2b9e3df 1413/* For target_read_memory see target/target.h. */
c906108c 1414
0b333c5e
PA
1415/* The default target_ops::to_wait implementation. */
1416
1417extern ptid_t default_target_wait (struct target_ops *ops,
1418 ptid_t ptid,
1419 struct target_waitstatus *status,
1420 int options);
1421
17dee195 1422/* Fetch at least register REGNO, or all regs if regno == -1. No result. */
c906108c 1423
28439f5e 1424extern void target_fetch_registers (struct regcache *regcache, int regno);
c906108c
SS
1425
1426/* Store at least register REGNO, or all regs if REGNO == -1.
1427 It can store as many registers as it wants to, so target_prepare_to_store
1428 must have been previously called. Calls error() if there are problems. */
1429
28439f5e 1430extern void target_store_registers (struct regcache *regcache, int regs);
c906108c
SS
1431
1432/* Get ready to modify the registers array. On machines which store
1433 individual registers, this doesn't need to do anything. On machines
1434 which store all the registers in one fell swoop, this makes sure
1435 that REGISTERS contains all the registers from the program being
1436 debugged. */
1437
316f2060 1438#define target_prepare_to_store(regcache) \
8b88a78e 1439 (current_top_target ()->prepare_to_store) (regcache)
c906108c 1440
6c95b8df
PA
1441/* Determine current address space of thread PTID. */
1442
1443struct address_space *target_thread_address_space (ptid_t);
1444
451b7c33
TT
1445/* Implement the "info proc" command. This returns one if the request
1446 was handled, and zero otherwise. It can also throw an exception if
1447 an error was encountered while attempting to handle the
1448 request. */
145b16a9 1449
7bc112c1 1450int target_info_proc (const char *, enum info_proc_what);
145b16a9 1451
03583c20
UW
1452/* Returns true if this target can disable address space randomization. */
1453
1454int target_supports_disable_randomization (void);
1455
d248b706
KY
1456/* Returns true if this target can enable and disable tracepoints
1457 while a trace experiment is running. */
1458
1459#define target_supports_enable_disable_tracepoint() \
8b88a78e 1460 (current_top_target ()->supports_enable_disable_tracepoint) ()
d248b706 1461
3065dfb6 1462#define target_supports_string_tracing() \
8b88a78e 1463 (current_top_target ()->supports_string_tracing) ()
3065dfb6 1464
b775012e
LM
1465/* Returns true if this target can handle breakpoint conditions
1466 on its end. */
1467
1468#define target_supports_evaluation_of_breakpoint_conditions() \
8b88a78e 1469 (current_top_target ()->supports_evaluation_of_breakpoint_conditions) ()
b775012e 1470
d3ce09f5
SS
1471/* Returns true if this target can handle breakpoint commands
1472 on its end. */
1473
1474#define target_can_run_breakpoint_commands() \
8b88a78e 1475 (current_top_target ()->can_run_breakpoint_commands) ()
d3ce09f5 1476
e83e4e24
TT
1477extern int target_read_string (CORE_ADDR, gdb::unique_xmalloc_ptr<char> *,
1478 int, int *);
c906108c 1479
721ec300 1480/* For target_read_memory see target/target.h. */
c906108c 1481
aee4bf85
PA
1482extern int target_read_raw_memory (CORE_ADDR memaddr, gdb_byte *myaddr,
1483 ssize_t len);
1484
45aa4659 1485extern int target_read_stack (CORE_ADDR memaddr, gdb_byte *myaddr, ssize_t len);
4e5d721f 1486
29453a14
YQ
1487extern int target_read_code (CORE_ADDR memaddr, gdb_byte *myaddr, ssize_t len);
1488
721ec300 1489/* For target_write_memory see target/target.h. */
c906108c 1490
f0ba3972 1491extern int target_write_raw_memory (CORE_ADDR memaddr, const gdb_byte *myaddr,
45aa4659 1492 ssize_t len);
f0ba3972 1493
fd79ecee
DJ
1494/* Fetches the target's memory map. If one is found it is sorted
1495 and returned, after some consistency checking. Otherwise, NULL
1496 is returned. */
a664f67e 1497std::vector<mem_region> target_memory_map (void);
fd79ecee 1498
78cbbba8 1499/* Erases all flash memory regions on the target. */
0b39b52e 1500void flash_erase_command (const char *cmd, int from_tty);
78cbbba8 1501
a76d924d
DJ
1502/* Erase the specified flash region. */
1503void target_flash_erase (ULONGEST address, LONGEST length);
1504
1505/* Finish a sequence of flash operations. */
1506void target_flash_done (void);
1507
1508/* Describes a request for a memory write operation. */
1509struct memory_write_request
55089490
TT
1510{
1511 memory_write_request (ULONGEST begin_, ULONGEST end_,
1512 gdb_byte *data_ = nullptr, void *baton_ = nullptr)
1513 : begin (begin_), end (end_), data (data_), baton (baton_)
1514 {}
1515
1516 /* Begining address that must be written. */
1517 ULONGEST begin;
1518 /* Past-the-end address. */
1519 ULONGEST end;
1520 /* The data to write. */
1521 gdb_byte *data;
1522 /* A callback baton for progress reporting for this request. */
1523 void *baton;
1524};
a76d924d
DJ
1525
1526/* Enumeration specifying different flash preservation behaviour. */
1527enum flash_preserve_mode
1528 {
1529 flash_preserve,
1530 flash_discard
1531 };
1532
1533/* Write several memory blocks at once. This version can be more
1534 efficient than making several calls to target_write_memory, in
1535 particular because it can optimize accesses to flash memory.
1536
1537 Moreover, this is currently the only memory access function in gdb
1538 that supports writing to flash memory, and it should be used for
1539 all cases where access to flash memory is desirable.
1540
1541 REQUESTS is the vector (see vec.h) of memory_write_request.
1542 PRESERVE_FLASH_P indicates what to do with blocks which must be
1543 erased, but not completely rewritten.
1544 PROGRESS_CB is a function that will be periodically called to provide
1545 feedback to user. It will be called with the baton corresponding
1546 to the request currently being written. It may also be called
1547 with a NULL baton, when preserved flash sectors are being rewritten.
1548
1549 The function returns 0 on success, and error otherwise. */
55089490
TT
1550int target_write_memory_blocks
1551 (const std::vector<memory_write_request> &requests,
1552 enum flash_preserve_mode preserve_flash_p,
1553 void (*progress_cb) (ULONGEST, void *));
a76d924d 1554
c906108c
SS
1555/* Print a line about the current target. */
1556
1557#define target_files_info() \
8b88a78e 1558 (current_top_target ()->files_info) ()
c906108c 1559
7d03f2eb 1560/* Insert a breakpoint at address BP_TGT->placed_address in
0000e5cc
PA
1561 the target machine. Returns 0 for success, and returns non-zero or
1562 throws an error (with a detailed failure reason error code and
1563 message) otherwise. */
c906108c 1564
d914c394
SS
1565extern int target_insert_breakpoint (struct gdbarch *gdbarch,
1566 struct bp_target_info *bp_tgt);
c906108c 1567
8181d85f 1568/* Remove a breakpoint at address BP_TGT->placed_address in the target
578d3588 1569 machine. Result is 0 for success, non-zero for error. */
c906108c 1570
d914c394 1571extern int target_remove_breakpoint (struct gdbarch *gdbarch,
73971819
PA
1572 struct bp_target_info *bp_tgt,
1573 enum remove_bp_reason reason);
c906108c 1574
b0ed115f 1575/* Return true if the target stack has a non-default
f6ac5f3d 1576 "terminal_ours" method. */
b0ed115f
TT
1577
1578extern int target_supports_terminal_ours (void);
1579
c906108c
SS
1580/* Kill the inferior process. Make it go away. */
1581
7d85a9c0 1582extern void target_kill (void);
c906108c 1583
0d06e24b
JM
1584/* Load an executable file into the target process. This is expected
1585 to not only bring new code into the target process, but also to
1986bccd
AS
1586 update GDB's symbol tables to match.
1587
1588 ARG contains command-line arguments, to be broken down with
1589 buildargv (). The first non-switch argument is the filename to
1590 load, FILE; the second is a number (as parsed by strtoul (..., ...,
1591 0)), which is an offset to apply to the load addresses of FILE's
1592 sections. The target may define switches, or other non-switch
1593 arguments, as it pleases. */
c906108c 1594
9cbe5fff 1595extern void target_load (const char *arg, int from_tty);
c906108c 1596
c906108c
SS
1597/* Some targets (such as ttrace-based HPUX) don't allow us to request
1598 notification of inferior events such as fork and vork immediately
1599 after the inferior is created. (This because of how gdb gets an
1600 inferior created via invoking a shell to do it. In such a scenario,
1601 if the shell init file has commands in it, the shell will fork and
1602 exec for each of those commands, and we will see each such fork
1603 event. Very bad.)
c5aa993b 1604
0d06e24b
JM
1605 Such targets will supply an appropriate definition for this function. */
1606
39f77062 1607#define target_post_startup_inferior(ptid) \
8b88a78e 1608 (current_top_target ()->post_startup_inferior) (ptid)
c906108c 1609
0d06e24b
JM
1610/* On some targets, we can catch an inferior fork or vfork event when
1611 it occurs. These functions insert/remove an already-created
77b06cd7
TJB
1612 catchpoint for such events. They return 0 for success, 1 if the
1613 catchpoint type is not supported and -1 for failure. */
c906108c 1614
c906108c 1615#define target_insert_fork_catchpoint(pid) \
8b88a78e 1616 (current_top_target ()->insert_fork_catchpoint) (pid)
c906108c
SS
1617
1618#define target_remove_fork_catchpoint(pid) \
8b88a78e 1619 (current_top_target ()->remove_fork_catchpoint) (pid)
c906108c
SS
1620
1621#define target_insert_vfork_catchpoint(pid) \
8b88a78e 1622 (current_top_target ()->insert_vfork_catchpoint) (pid)
c906108c
SS
1623
1624#define target_remove_vfork_catchpoint(pid) \
8b88a78e 1625 (current_top_target ()->remove_vfork_catchpoint) (pid)
c906108c 1626
6604731b
DJ
1627/* If the inferior forks or vforks, this function will be called at
1628 the next resume in order to perform any bookkeeping and fiddling
1629 necessary to continue debugging either the parent or child, as
1630 requested, and releasing the other. Information about the fork
1631 or vfork event is available via get_last_target_status ().
1632 This function returns 1 if the inferior should not be resumed
1633 (i.e. there is another event pending). */
0d06e24b 1634
07107ca6 1635int target_follow_fork (int follow_child, int detach_fork);
c906108c 1636
94585166
DB
1637/* Handle the target-specific bookkeeping required when the inferior
1638 makes an exec call. INF is the exec'd inferior. */
1639
1640void target_follow_exec (struct inferior *inf, char *execd_pathname);
1641
c906108c 1642/* On some targets, we can catch an inferior exec event when it
0d06e24b 1643 occurs. These functions insert/remove an already-created
77b06cd7
TJB
1644 catchpoint for such events. They return 0 for success, 1 if the
1645 catchpoint type is not supported and -1 for failure. */
0d06e24b 1646
c906108c 1647#define target_insert_exec_catchpoint(pid) \
8b88a78e 1648 (current_top_target ()->insert_exec_catchpoint) (pid)
c5aa993b 1649
c906108c 1650#define target_remove_exec_catchpoint(pid) \
8b88a78e 1651 (current_top_target ()->remove_exec_catchpoint) (pid)
c906108c 1652
a96d9b2e
SDJ
1653/* Syscall catch.
1654
649a140c
PA
1655 NEEDED is true if any syscall catch (of any kind) is requested.
1656 If NEEDED is false, it means the target can disable the mechanism to
a96d9b2e
SDJ
1657 catch system calls because there are no more catchpoints of this type.
1658
1659 ANY_COUNT is nonzero if a generic (filter-less) syscall catch is
649a140c 1660 being requested. In this case, SYSCALL_COUNTS should be ignored.
a96d9b2e 1661
649a140c
PA
1662 SYSCALL_COUNTS is an array of ints, indexed by syscall number. An
1663 element in this array is nonzero if that syscall should be caught.
1664 This argument only matters if ANY_COUNT is zero.
77b06cd7
TJB
1665
1666 Return 0 for success, 1 if syscall catchpoints are not supported or -1
1667 for failure. */
a96d9b2e 1668
649a140c 1669#define target_set_syscall_catchpoint(pid, needed, any_count, syscall_counts) \
8b88a78e 1670 (current_top_target ()->set_syscall_catchpoint) (pid, needed, any_count, \
f6ac5f3d 1671 syscall_counts)
a96d9b2e 1672
c906108c 1673/* The debugger has completed a blocking wait() call. There is now
2146d243 1674 some process event that must be processed. This function should
c906108c 1675 be defined by those targets that require the debugger to perform
0d06e24b 1676 cleanup or internal state changes in response to the process event. */
c906108c 1677
bc1e6c81 1678/* For target_mourn_inferior see target/target.h. */
c906108c 1679
f6ac5f3d 1680/* Does target have enough data to do a run or attach command? */
c906108c 1681
f6ac5f3d 1682extern int target_can_run ();
c906108c 1683
2455069d
UW
1684/* Set list of signals to be handled in the target.
1685
1686 PASS_SIGNALS is an array of size NSIG, indexed by target signal number
2ea28649 1687 (enum gdb_signal). For every signal whose entry in this array is
2455069d
UW
1688 non-zero, the target is allowed -but not required- to skip reporting
1689 arrival of the signal to the GDB core by returning from target_wait,
1690 and to pass the signal directly to the inferior instead.
1691
1692 However, if the target is hardware single-stepping a thread that is
1693 about to receive a signal, it needs to be reported in any case, even
1694 if mentioned in a previous target_pass_signals call. */
c906108c 1695
2455069d 1696extern void target_pass_signals (int nsig, unsigned char *pass_signals);
c906108c 1697
9b224c5e
PA
1698/* Set list of signals the target may pass to the inferior. This
1699 directly maps to the "handle SIGNAL pass/nopass" setting.
1700
1701 PROGRAM_SIGNALS is an array of size NSIG, indexed by target signal
2ea28649 1702 number (enum gdb_signal). For every signal whose entry in this
9b224c5e
PA
1703 array is non-zero, the target is allowed to pass the signal to the
1704 inferior. Signals not present in the array shall be silently
1705 discarded. This does not influence whether to pass signals to the
1706 inferior as a result of a target_resume call. This is useful in
1707 scenarios where the target needs to decide whether to pass or not a
1708 signal to the inferior without GDB core involvement, such as for
1709 example, when detaching (as threads may have been suspended with
1710 pending signals not reported to GDB). */
1711
1712extern void target_program_signals (int nsig, unsigned char *program_signals);
1713
c906108c
SS
1714/* Check to see if a thread is still alive. */
1715
28439f5e 1716extern int target_thread_alive (ptid_t ptid);
c906108c 1717
e8032dde 1718/* Sync the target's threads with GDB's thread list. */
b83266a0 1719
e8032dde 1720extern void target_update_thread_list (void);
b83266a0 1721
0d06e24b 1722/* Make target stop in a continuable fashion. (For instance, under
9a6cf368
GB
1723 Unix, this should act like SIGSTOP). Note that this function is
1724 asynchronous: it does not wait for the target to become stopped
1725 before returning. If this is the behavior you want please use
1726 target_stop_and_wait. */
c906108c 1727
d914c394 1728extern void target_stop (ptid_t ptid);
c906108c 1729
e671cd59
PA
1730/* Interrupt the target. Unlike target_stop, this does not specify
1731 which thread/process reports the stop. For most target this acts
1732 like raising a SIGINT, though that's not absolutely required. This
1733 function is asynchronous. */
bfedc46a 1734
e671cd59 1735extern void target_interrupt ();
bfedc46a 1736
93692b58 1737/* Pass a ^C, as determined to have been pressed by checking the quit
e671cd59
PA
1738 flag, to the target, as if the user had typed the ^C on the
1739 inferior's controlling terminal while the inferior was in the
1740 foreground. Remote targets may take the opportunity to detect the
1741 remote side is not responding and offer to disconnect. */
93692b58
PA
1742
1743extern void target_pass_ctrlc (void);
1744
1745/* The default target_ops::to_pass_ctrlc implementation. Simply calls
1746 target_interrupt. */
1747extern void default_target_pass_ctrlc (struct target_ops *ops);
1748
96baa820
JM
1749/* Send the specified COMMAND to the target's monitor
1750 (shell,interpreter) for execution. The result of the query is
0d06e24b 1751 placed in OUTBUF. */
96baa820
JM
1752
1753#define target_rcmd(command, outbuf) \
8b88a78e 1754 (current_top_target ()->rcmd) (command, outbuf)
96baa820
JM
1755
1756
c906108c
SS
1757/* Does the target include all of memory, or only part of it? This
1758 determines whether we look up the target chain for other parts of
1759 memory if this target can't satisfy a request. */
1760
c35b1492
PA
1761extern int target_has_all_memory_1 (void);
1762#define target_has_all_memory target_has_all_memory_1 ()
c906108c
SS
1763
1764/* Does the target include memory? (Dummy targets don't.) */
1765
c35b1492
PA
1766extern int target_has_memory_1 (void);
1767#define target_has_memory target_has_memory_1 ()
c906108c
SS
1768
1769/* Does the target have a stack? (Exec files don't, VxWorks doesn't, until
1770 we start a process.) */
c5aa993b 1771
c35b1492
PA
1772extern int target_has_stack_1 (void);
1773#define target_has_stack target_has_stack_1 ()
c906108c
SS
1774
1775/* Does the target have registers? (Exec files don't.) */
1776
c35b1492
PA
1777extern int target_has_registers_1 (void);
1778#define target_has_registers target_has_registers_1 ()
c906108c
SS
1779
1780/* Does the target have execution? Can we make it jump (through
52bb452f
DJ
1781 hoops), or pop its stack a few times? This means that the current
1782 target is currently executing; for some targets, that's the same as
1783 whether or not the target is capable of execution, but there are
1784 also targets which can be current while not executing. In that
b3ccfe11
TT
1785 case this will become true after to_create_inferior or
1786 to_attach. */
c906108c 1787
aeaec162
TT
1788extern int target_has_execution_1 (ptid_t);
1789
1790/* Like target_has_execution_1, but always passes inferior_ptid. */
1791
1792extern int target_has_execution_current (void);
1793
1794#define target_has_execution target_has_execution_current ()
c35b1492
PA
1795
1796/* Default implementations for process_stratum targets. Return true
1797 if there's a selected inferior, false otherwise. */
1798
f6ac5f3d
PA
1799extern int default_child_has_all_memory ();
1800extern int default_child_has_memory ();
1801extern int default_child_has_stack ();
1802extern int default_child_has_registers ();
1803extern int default_child_has_execution (ptid_t the_ptid);
c906108c
SS
1804
1805/* Can the target support the debugger control of thread execution?
d6350901 1806 Can it lock the thread scheduler? */
c906108c
SS
1807
1808#define target_can_lock_scheduler \
8b88a78e 1809 (current_top_target ()->get_thread_control_capabilities () & tc_schedlock)
c906108c 1810
329ea579 1811/* Controls whether async mode is permitted. */
c6ebd6cf
VP
1812extern int target_async_permitted;
1813
c378eb4e 1814/* Can the target support asynchronous execution? */
8b88a78e 1815#define target_can_async_p() (current_top_target ()->can_async_p ())
6426a772 1816
c378eb4e 1817/* Is the target in asynchronous execution mode? */
8b88a78e 1818#define target_is_async_p() (current_top_target ()->is_async_p ())
6426a772 1819
6a3753b3 1820/* Enables/disabled async target events. */
372316f1 1821extern void target_async (int enable);
43ff13b4 1822
65706a29
PA
1823/* Enables/disables thread create and exit events. */
1824extern void target_thread_events (int enable);
1825
fbea99ea
PA
1826/* Whether support for controlling the target backends always in
1827 non-stop mode is enabled. */
1828extern enum auto_boolean target_non_stop_enabled;
1829
1830/* Is the target in non-stop mode? Some targets control the inferior
1831 in non-stop mode even with "set non-stop off". Always true if "set
1832 non-stop" is on. */
1833extern int target_is_non_stop_p (void);
1834
32231432 1835#define target_execution_direction() \
8b88a78e 1836 (current_top_target ()->execution_direction ())
32231432 1837
c906108c
SS
1838/* Converts a process id to a string. Usually, the string just contains
1839 `process xyz', but on some systems it may contain
1840 `process xyz thread abc'. */
1841
7a114964 1842extern const char *target_pid_to_str (ptid_t ptid);
c906108c 1843
7a114964 1844extern const char *normal_pid_to_str (ptid_t ptid);
c5aa993b 1845
0d06e24b
JM
1846/* Return a short string describing extra information about PID,
1847 e.g. "sleeping", "runnable", "running on LWP 3". Null return value
1848 is okay. */
1849
1850#define target_extra_thread_info(TP) \
8b88a78e 1851 (current_top_target ()->extra_thread_info (TP))
ed9a39eb 1852
79efa585
SM
1853/* Return the thread's name, or NULL if the target is unable to determine it.
1854 The returned value must not be freed by the caller. */
4694da01 1855
73ede765 1856extern const char *target_thread_name (struct thread_info *);
4694da01 1857
e04ee09e
KB
1858/* Given a pointer to a thread library specific thread handle and
1859 its length, return a pointer to the corresponding thread_info struct. */
1860
1861extern struct thread_info *target_thread_handle_to_thread_info
1862 (const gdb_byte *thread_handle, int handle_len, struct inferior *inf);
1863
c906108c
SS
1864/* Attempts to find the pathname of the executable file
1865 that was run to create a specified process.
1866
1867 The process PID must be stopped when this operation is used.
c5aa993b 1868
c906108c
SS
1869 If the executable file cannot be determined, NULL is returned.
1870
1871 Else, a pointer to a character string containing the pathname
1872 is returned. This string should be copied into a buffer by
1873 the client if the string will not be immediately used, or if
0d06e24b 1874 it must persist. */
c906108c
SS
1875
1876#define target_pid_to_exec_file(pid) \
8b88a78e 1877 (current_top_target ()->pid_to_exec_file) (pid)
c906108c 1878
3a8f7b07 1879/* See the to_thread_architecture description in struct target_ops. */
c2250ad1
UW
1880
1881#define target_thread_architecture(ptid) \
8b88a78e 1882 (current_top_target ()->thread_architecture (ptid))
c2250ad1 1883
be4d1333
MS
1884/*
1885 * Iterator function for target memory regions.
1886 * Calls a callback function once for each memory region 'mapped'
1887 * in the child process. Defined as a simple macro rather than
2146d243 1888 * as a function macro so that it can be tested for nullity.
be4d1333
MS
1889 */
1890
1891#define target_find_memory_regions(FUNC, DATA) \
8b88a78e 1892 (current_top_target ()->find_memory_regions) (FUNC, DATA)
be4d1333
MS
1893
1894/*
1895 * Compose corefile .note section.
1896 */
1897
1898#define target_make_corefile_notes(BFD, SIZE_P) \
8b88a78e 1899 (current_top_target ()->make_corefile_notes) (BFD, SIZE_P)
be4d1333 1900
6b04bdb7
MS
1901/* Bookmark interfaces. */
1902#define target_get_bookmark(ARGS, FROM_TTY) \
8b88a78e 1903 (current_top_target ()->get_bookmark) (ARGS, FROM_TTY)
6b04bdb7
MS
1904
1905#define target_goto_bookmark(ARG, FROM_TTY) \
8b88a78e 1906 (current_top_target ()->goto_bookmark) (ARG, FROM_TTY)
6b04bdb7 1907
c906108c
SS
1908/* Hardware watchpoint interfaces. */
1909
1910/* Returns non-zero if we were stopped by a hardware watchpoint (memory read or
7f82dfc7 1911 write). Only the INFERIOR_PTID task is being queried. */
c906108c 1912
6a109b6b 1913#define target_stopped_by_watchpoint() \
8b88a78e 1914 ((current_top_target ()->stopped_by_watchpoint) ())
7df1a324 1915
1cf4d951
PA
1916/* Returns non-zero if the target stopped because it executed a
1917 software breakpoint instruction. */
1918
1919#define target_stopped_by_sw_breakpoint() \
8b88a78e 1920 ((current_top_target ()->stopped_by_sw_breakpoint) ())
1cf4d951
PA
1921
1922#define target_supports_stopped_by_sw_breakpoint() \
8b88a78e 1923 ((current_top_target ()->supports_stopped_by_sw_breakpoint) ())
1cf4d951
PA
1924
1925#define target_stopped_by_hw_breakpoint() \
8b88a78e 1926 ((current_top_target ()->stopped_by_hw_breakpoint) ())
1cf4d951
PA
1927
1928#define target_supports_stopped_by_hw_breakpoint() \
8b88a78e 1929 ((current_top_target ()->supports_stopped_by_hw_breakpoint) ())
1cf4d951 1930
74174d2e
UW
1931/* Non-zero if we have steppable watchpoints */
1932
d92524f1 1933#define target_have_steppable_watchpoint \
8b88a78e 1934 (current_top_target ()->have_steppable_watchpoint ())
74174d2e 1935
7df1a324
KW
1936/* Non-zero if we have continuable watchpoints */
1937
d92524f1 1938#define target_have_continuable_watchpoint \
8b88a78e 1939 (current_top_target ()->have_continuable_watchpoint ())
c906108c 1940
ccaa32c7 1941/* Provide defaults for hardware watchpoint functions. */
c906108c 1942
2146d243 1943/* If the *_hw_beakpoint functions have not been defined
ccaa32c7 1944 elsewhere use the definitions in the target vector. */
c906108c 1945
059790a0
YQ
1946/* Returns positive if we can set a hardware watchpoint of type TYPE.
1947 Returns negative if the target doesn't have enough hardware debug
1948 registers available. Return zero if hardware watchpoint of type
1949 TYPE isn't supported. TYPE is one of bp_hardware_watchpoint,
1950 bp_read_watchpoint, bp_write_watchpoint, or bp_hardware_breakpoint.
1951 CNT is the number of such watchpoints used so far, including this
2343b78a
JM
1952 one. OTHERTYPE is the number of watchpoints of other types than
1953 this one used so far. */
c906108c 1954
d92524f1 1955#define target_can_use_hardware_watchpoint(TYPE,CNT,OTHERTYPE) \
8b88a78e 1956 (current_top_target ()->can_use_hw_breakpoint) ( \
059790a0 1957 TYPE, CNT, OTHERTYPE)
c906108c 1958
e09342b5
TJB
1959/* Returns the number of debug registers needed to watch the given
1960 memory region, or zero if not supported. */
1961
d92524f1 1962#define target_region_ok_for_hw_watchpoint(addr, len) \
8b88a78e 1963 (current_top_target ()->region_ok_for_hw_watchpoint) (addr, len)
e0d24f8d 1964
c906108c 1965
750ce8d1 1966#define target_can_do_single_step() \
8b88a78e 1967 (current_top_target ()->can_do_single_step) ()
750ce8d1 1968
85d721b8
PA
1969/* Set/clear a hardware watchpoint starting at ADDR, for LEN bytes.
1970 TYPE is 0 for write, 1 for read, and 2 for read/write accesses.
0cf6dd15 1971 COND is the expression for its condition, or NULL if there's none.
85d721b8
PA
1972 Returns 0 for success, 1 if the watchpoint type is not supported,
1973 -1 for failure. */
c906108c 1974
0cf6dd15 1975#define target_insert_watchpoint(addr, len, type, cond) \
8b88a78e 1976 (current_top_target ()->insert_watchpoint) (addr, len, type, cond)
c906108c 1977
0cf6dd15 1978#define target_remove_watchpoint(addr, len, type, cond) \
8b88a78e 1979 (current_top_target ()->remove_watchpoint) (addr, len, type, cond)
c906108c 1980
9c06b0b4
TJB
1981/* Insert a new masked watchpoint at ADDR using the mask MASK.
1982 RW may be hw_read for a read watchpoint, hw_write for a write watchpoint
1983 or hw_access for an access watchpoint. Returns 0 for success, 1 if
1984 masked watchpoints are not supported, -1 for failure. */
1985
f4b0a671
SM
1986extern int target_insert_mask_watchpoint (CORE_ADDR, CORE_ADDR,
1987 enum target_hw_bp_type);
9c06b0b4
TJB
1988
1989/* Remove a masked watchpoint at ADDR with the mask MASK.
1990 RW may be hw_read for a read watchpoint, hw_write for a write watchpoint
1991 or hw_access for an access watchpoint. Returns 0 for success, non-zero
1992 for failure. */
1993
f4b0a671
SM
1994extern int target_remove_mask_watchpoint (CORE_ADDR, CORE_ADDR,
1995 enum target_hw_bp_type);
9c06b0b4 1996
0000e5cc
PA
1997/* Insert a hardware breakpoint at address BP_TGT->placed_address in
1998 the target machine. Returns 0 for success, and returns non-zero or
1999 throws an error (with a detailed failure reason error code and
2000 message) otherwise. */
2001
a6d9a66e 2002#define target_insert_hw_breakpoint(gdbarch, bp_tgt) \
8b88a78e 2003 (current_top_target ()->insert_hw_breakpoint) (gdbarch, bp_tgt)
ccaa32c7 2004
a6d9a66e 2005#define target_remove_hw_breakpoint(gdbarch, bp_tgt) \
8b88a78e 2006 (current_top_target ()->remove_hw_breakpoint) (gdbarch, bp_tgt)
c906108c 2007
f1310107
TJB
2008/* Return number of debug registers needed for a ranged breakpoint,
2009 or -1 if ranged breakpoints are not supported. */
2010
2011extern int target_ranged_break_num_registers (void);
2012
7f82dfc7
JK
2013/* Return non-zero if target knows the data address which triggered this
2014 target_stopped_by_watchpoint, in such case place it to *ADDR_P. Only the
2015 INFERIOR_PTID task is being queried. */
2016#define target_stopped_data_address(target, addr_p) \
f6ac5f3d 2017 (target)->stopped_data_address (addr_p)
c906108c 2018
9b3e86b1
MR
2019/* Return non-zero if ADDR is within the range of a watchpoint spanning
2020 LENGTH bytes beginning at START. */
5009afc5 2021#define target_watchpoint_addr_within_range(target, addr, start, length) \
f6ac5f3d 2022 (target)->watchpoint_addr_within_range (addr, start, length)
5009afc5 2023
0cf6dd15
TJB
2024/* Return non-zero if the target is capable of using hardware to evaluate
2025 the condition expression. In this case, if the condition is false when
2026 the watched memory location changes, execution may continue without the
2027 debugger being notified.
2028
2029 Due to limitations in the hardware implementation, it may be capable of
2030 avoiding triggering the watchpoint in some cases where the condition
2031 expression is false, but may report some false positives as well.
2032 For this reason, GDB will still evaluate the condition expression when
2033 the watchpoint triggers. */
2034#define target_can_accel_watchpoint_condition(addr, len, type, cond) \
8b88a78e 2035 (current_top_target ()->can_accel_watchpoint_condition) (addr, len, type, cond)
0cf6dd15 2036
9c06b0b4
TJB
2037/* Return number of debug registers needed for a masked watchpoint,
2038 -1 if masked watchpoints are not supported or -2 if the given address
2039 and mask combination cannot be used. */
2040
2041extern int target_masked_watch_num_registers (CORE_ADDR addr, CORE_ADDR mask);
2042
b2175913
MS
2043/* Target can execute in reverse? */
2044#define target_can_execute_reverse \
8b88a78e 2045 current_top_target ()->can_execute_reverse ()
b2175913 2046
424163ea
DJ
2047extern const struct target_desc *target_read_description (struct target_ops *);
2048
0ef643c8 2049#define target_get_ada_task_ptid(lwp, tid) \
8b88a78e 2050 (current_top_target ()->get_ada_task_ptid) (lwp,tid)
0ef643c8 2051
08388c79
DE
2052/* Utility implementation of searching memory. */
2053extern int simple_search_memory (struct target_ops* ops,
2054 CORE_ADDR start_addr,
2055 ULONGEST search_space_len,
2056 const gdb_byte *pattern,
2057 ULONGEST pattern_len,
2058 CORE_ADDR *found_addrp);
2059
2060/* Main entry point for searching memory. */
2061extern int target_search_memory (CORE_ADDR start_addr,
2062 ULONGEST search_space_len,
2063 const gdb_byte *pattern,
2064 ULONGEST pattern_len,
2065 CORE_ADDR *found_addrp);
2066
7313baad
UW
2067/* Target file operations. */
2068
07c138c8
GB
2069/* Return nonzero if the filesystem seen by the current inferior
2070 is the local filesystem, zero otherwise. */
4bd7dc42 2071#define target_filesystem_is_local() \
8b88a78e 2072 current_top_target ()->filesystem_is_local ()
4bd7dc42 2073
07c138c8
GB
2074/* Open FILENAME on the target, in the filesystem as seen by INF,
2075 using FLAGS and MODE. If INF is NULL, use the filesystem seen
2076 by the debugger (GDB or, for remote targets, the remote stub).
2077 Return a target file descriptor, or -1 if an error occurs (and
2078 set *TARGET_ERRNO). */
2079extern int target_fileio_open (struct inferior *inf,
2080 const char *filename, int flags,
2081 int mode, int *target_errno);
7313baad 2082
4313b8c0
GB
2083/* Like target_fileio_open, but print a warning message if the
2084 file is being accessed over a link that may be slow. */
2085extern int target_fileio_open_warn_if_slow (struct inferior *inf,
2086 const char *filename,
2087 int flags,
2088 int mode,
2089 int *target_errno);
2090
7313baad
UW
2091/* Write up to LEN bytes from WRITE_BUF to FD on the target.
2092 Return the number of bytes written, or -1 if an error occurs
2093 (and set *TARGET_ERRNO). */
2094extern int target_fileio_pwrite (int fd, const gdb_byte *write_buf, int len,
2095 ULONGEST offset, int *target_errno);
2096
2097/* Read up to LEN bytes FD on the target into READ_BUF.
2098 Return the number of bytes read, or -1 if an error occurs
2099 (and set *TARGET_ERRNO). */
2100extern int target_fileio_pread (int fd, gdb_byte *read_buf, int len,
2101 ULONGEST offset, int *target_errno);
2102
9b15c1f0
GB
2103/* Get information about the file opened as FD on the target
2104 and put it in SB. Return 0 on success, or -1 if an error
2105 occurs (and set *TARGET_ERRNO). */
2106extern int target_fileio_fstat (int fd, struct stat *sb,
2107 int *target_errno);
2108
7313baad
UW
2109/* Close FD on the target. Return 0, or -1 if an error occurs
2110 (and set *TARGET_ERRNO). */
2111extern int target_fileio_close (int fd, int *target_errno);
2112
07c138c8
GB
2113/* Unlink FILENAME on the target, in the filesystem as seen by INF.
2114 If INF is NULL, use the filesystem seen by the debugger (GDB or,
2115 for remote targets, the remote stub). Return 0, or -1 if an error
7313baad 2116 occurs (and set *TARGET_ERRNO). */
07c138c8
GB
2117extern int target_fileio_unlink (struct inferior *inf,
2118 const char *filename,
2119 int *target_errno);
2120
2121/* Read value of symbolic link FILENAME on the target, in the
2122 filesystem as seen by INF. If INF is NULL, use the filesystem seen
2123 by the debugger (GDB or, for remote targets, the remote stub).
2124 Return a null-terminated string allocated via xmalloc, or NULL if
2125 an error occurs (and set *TARGET_ERRNO). */
e0d3522b
TT
2126extern gdb::optional<std::string> target_fileio_readlink
2127 (struct inferior *inf, const char *filename, int *target_errno);
07c138c8
GB
2128
2129/* Read target file FILENAME, in the filesystem as seen by INF. If
2130 INF is NULL, use the filesystem seen by the debugger (GDB or, for
2131 remote targets, the remote stub). The return value will be -1 if
2132 the transfer fails or is not supported; 0 if the object is empty;
2133 or the length of the object otherwise. If a positive value is
2134 returned, a sufficiently large buffer will be allocated using
2135 xmalloc and returned in *BUF_P containing the contents of the
2136 object.
7313baad
UW
2137
2138 This method should be used for objects sufficiently small to store
2139 in a single xmalloc'd buffer, when no fixed bound on the object's
2140 size is known in advance. */
07c138c8
GB
2141extern LONGEST target_fileio_read_alloc (struct inferior *inf,
2142 const char *filename,
7313baad
UW
2143 gdb_byte **buf_p);
2144
db1ff28b
JK
2145/* Read target file FILENAME, in the filesystem as seen by INF. If
2146 INF is NULL, use the filesystem seen by the debugger (GDB or, for
2147 remote targets, the remote stub). The result is NUL-terminated and
2148 returned as a string, allocated using xmalloc. If an error occurs
2149 or the transfer is unsupported, NULL is returned. Empty objects
2150 are returned as allocated but empty strings. A warning is issued
2151 if the result contains any embedded NUL bytes. */
87028b87
TT
2152extern gdb::unique_xmalloc_ptr<char> target_fileio_read_stralloc
2153 (struct inferior *inf, const char *filename);
db1ff28b 2154
7313baad 2155
35b1e5cc
SS
2156/* Tracepoint-related operations. */
2157
2158#define target_trace_init() \
8b88a78e 2159 (current_top_target ()->trace_init) ()
35b1e5cc
SS
2160
2161#define target_download_tracepoint(t) \
8b88a78e 2162 (current_top_target ()->download_tracepoint) (t)
35b1e5cc 2163
1e4d1764 2164#define target_can_download_tracepoint() \
8b88a78e 2165 (current_top_target ()->can_download_tracepoint) ()
1e4d1764 2166
35b1e5cc 2167#define target_download_trace_state_variable(tsv) \
8b88a78e 2168 (current_top_target ()->download_trace_state_variable) (tsv)
35b1e5cc 2169
d248b706 2170#define target_enable_tracepoint(loc) \
8b88a78e 2171 (current_top_target ()->enable_tracepoint) (loc)
d248b706
KY
2172
2173#define target_disable_tracepoint(loc) \
8b88a78e 2174 (current_top_target ()->disable_tracepoint) (loc)
d248b706 2175
35b1e5cc 2176#define target_trace_start() \
8b88a78e 2177 (current_top_target ()->trace_start) ()
35b1e5cc
SS
2178
2179#define target_trace_set_readonly_regions() \
8b88a78e 2180 (current_top_target ()->trace_set_readonly_regions) ()
35b1e5cc 2181
00bf0b85 2182#define target_get_trace_status(ts) \
8b88a78e 2183 (current_top_target ()->get_trace_status) (ts)
35b1e5cc 2184
f196051f 2185#define target_get_tracepoint_status(tp,utp) \
8b88a78e 2186 (current_top_target ()->get_tracepoint_status) (tp, utp)
f196051f 2187
35b1e5cc 2188#define target_trace_stop() \
8b88a78e 2189 (current_top_target ()->trace_stop) ()
35b1e5cc
SS
2190
2191#define target_trace_find(type,num,addr1,addr2,tpp) \
8b88a78e 2192 (current_top_target ()->trace_find) (\
bd4c6793 2193 (type), (num), (addr1), (addr2), (tpp))
35b1e5cc
SS
2194
2195#define target_get_trace_state_variable_value(tsv,val) \
8b88a78e 2196 (current_top_target ()->get_trace_state_variable_value) ((tsv), (val))
35b1e5cc 2197
00bf0b85 2198#define target_save_trace_data(filename) \
8b88a78e 2199 (current_top_target ()->save_trace_data) (filename)
00bf0b85
SS
2200
2201#define target_upload_tracepoints(utpp) \
8b88a78e 2202 (current_top_target ()->upload_tracepoints) (utpp)
00bf0b85
SS
2203
2204#define target_upload_trace_state_variables(utsvp) \
8b88a78e 2205 (current_top_target ()->upload_trace_state_variables) (utsvp)
00bf0b85
SS
2206
2207#define target_get_raw_trace_data(buf,offset,len) \
8b88a78e 2208 (current_top_target ()->get_raw_trace_data) ((buf), (offset), (len))
00bf0b85 2209
405f8e94 2210#define target_get_min_fast_tracepoint_insn_len() \
8b88a78e 2211 (current_top_target ()->get_min_fast_tracepoint_insn_len) ()
405f8e94 2212
35b1e5cc 2213#define target_set_disconnected_tracing(val) \
8b88a78e 2214 (current_top_target ()->set_disconnected_tracing) (val)
35b1e5cc 2215
4daf5ac0 2216#define target_set_circular_trace_buffer(val) \
8b88a78e 2217 (current_top_target ()->set_circular_trace_buffer) (val)
4daf5ac0 2218
f6f899bf 2219#define target_set_trace_buffer_size(val) \
8b88a78e 2220 (current_top_target ()->set_trace_buffer_size) (val)
f6f899bf 2221
f196051f 2222#define target_set_trace_notes(user,notes,stopnotes) \
8b88a78e 2223 (current_top_target ()->set_trace_notes) ((user), (notes), (stopnotes))
f196051f 2224
711e434b 2225#define target_get_tib_address(ptid, addr) \
8b88a78e 2226 (current_top_target ()->get_tib_address) ((ptid), (addr))
711e434b 2227
d914c394 2228#define target_set_permissions() \
8b88a78e 2229 (current_top_target ()->set_permissions) ()
d914c394 2230
0fb4aa4b 2231#define target_static_tracepoint_marker_at(addr, marker) \
8b88a78e 2232 (current_top_target ()->static_tracepoint_marker_at) (addr, marker)
0fb4aa4b
PA
2233
2234#define target_static_tracepoint_markers_by_strid(marker_id) \
8b88a78e 2235 (current_top_target ()->static_tracepoint_markers_by_strid) (marker_id)
0fb4aa4b 2236
b3b9301e 2237#define target_traceframe_info() \
8b88a78e 2238 (current_top_target ()->traceframe_info) ()
b3b9301e 2239
d1feda86 2240#define target_use_agent(use) \
8b88a78e 2241 (current_top_target ()->use_agent) (use)
d1feda86
YQ
2242
2243#define target_can_use_agent() \
8b88a78e 2244 (current_top_target ()->can_use_agent) ()
d1feda86 2245
ced63ec0 2246#define target_augmented_libraries_svr4_read() \
8b88a78e 2247 (current_top_target ()->augmented_libraries_svr4_read) ()
ced63ec0 2248
49d03eab
MR
2249/* Command logging facility. */
2250
d9cb0195 2251#define target_log_command(p) \
8b88a78e 2252 (current_top_target ()->log_command) (p)
49d03eab 2253
dc146f7c
VP
2254
2255extern int target_core_of_thread (ptid_t ptid);
2256
ea001bdc
MM
2257/* See to_get_unwinder in struct target_ops. */
2258extern const struct frame_unwind *target_get_unwinder (void);
2259
2260/* See to_get_tailcall_unwinder in struct target_ops. */
2261extern const struct frame_unwind *target_get_tailcall_unwinder (void);
2262
936d2992
PA
2263/* This implements basic memory verification, reading target memory
2264 and performing the comparison here (as opposed to accelerated
2265 verification making use of the qCRC packet, for example). */
2266
2267extern int simple_verify_memory (struct target_ops* ops,
2268 const gdb_byte *data,
2269 CORE_ADDR memaddr, ULONGEST size);
2270
4a5e7a5b
PA
2271/* Verify that the memory in the [MEMADDR, MEMADDR+SIZE) range matches
2272 the contents of [DATA,DATA+SIZE). Returns 1 if there's a match, 0
2273 if there's a mismatch, and -1 if an error is encountered while
2274 reading memory. Throws an error if the functionality is found not
2275 to be supported by the current target. */
2276int target_verify_memory (const gdb_byte *data,
2277 CORE_ADDR memaddr, ULONGEST size);
2278
c906108c
SS
2279/* Routines for maintenance of the target structures...
2280
2281 add_target: Add a target to the list of all possible targets.
3156469c
JB
2282 This only makes sense for targets that should be activated using
2283 the "target TARGET_NAME ..." command.
c906108c
SS
2284
2285 push_target: Make this target the top of the stack of currently used
c5aa993b
JM
2286 targets, within its particular stratum of the stack. Result
2287 is 0 if now atop the stack, nonzero if not on top (maybe
2288 should warn user).
c906108c
SS
2289
2290 unpush_target: Remove this from the stack of currently used targets,
c5aa993b 2291 no matter where it is on the list. Returns 0 if no
7fdc1521 2292 change, 1 if removed from stack. */
c906108c 2293
d9f719f1
PA
2294/* Type of callback called when the user activates a target with
2295 "target TARGET_NAME". The callback routine takes the rest of the
2296 parameters from the command, and (if successful) pushes a new
2297 target onto the stack. */
2298typedef void target_open_ftype (const char *args, int from_tty);
2299
2300/* Add the target described by INFO to the list of possible targets
2301 and add a new command 'target $(INFO->shortname)'. Set COMPLETER
2302 as the command's completer if not NULL. */
c906108c 2303
d9f719f1
PA
2304extern void add_target (const target_info &info,
2305 target_open_ftype *func,
2306 completer_ftype *completer = NULL);
9852c492 2307
d9f719f1
PA
2308/* Adds a command ALIAS for the target described by INFO and marks it
2309 deprecated. This is useful for maintaining backwards compatibility
2310 when renaming targets. */
b48d48eb 2311
d9f719f1 2312extern void add_deprecated_target_alias (const target_info &info,
a121b7c1 2313 const char *alias);
b48d48eb 2314
b26a4dcb 2315extern void push_target (struct target_ops *);
c906108c 2316
a14ed312 2317extern int unpush_target (struct target_ops *);
c906108c 2318
fd79ecee
DJ
2319extern void target_pre_inferior (int);
2320
a14ed312 2321extern void target_preopen (int);
c906108c 2322
460014f5
JK
2323/* Does whatever cleanup is required to get rid of all pushed targets. */
2324extern void pop_all_targets (void);
aa76d38d 2325
915ef8b1
PA
2326/* Like pop_all_targets, but pops only targets whose stratum is at or
2327 above STRATUM. */
2328extern void pop_all_targets_at_and_above (enum strata stratum);
2329
87ab71f0
PA
2330/* Like pop_all_targets, but pops only targets whose stratum is
2331 strictly above ABOVE_STRATUM. */
460014f5 2332extern void pop_all_targets_above (enum strata above_stratum);
87ab71f0 2333
c0edd9ed
JK
2334extern int target_is_pushed (struct target_ops *t);
2335
9e35dae4
DJ
2336extern CORE_ADDR target_translate_tls_address (struct objfile *objfile,
2337 CORE_ADDR offset);
2338
0542c86d 2339/* Struct target_section maps address ranges to file sections. It is
c906108c
SS
2340 mostly used with BFD files, but can be used without (e.g. for handling
2341 raw disks, or files not in formats handled by BFD). */
2342
0542c86d 2343struct target_section
c5aa993b
JM
2344 {
2345 CORE_ADDR addr; /* Lowest address in section */
2346 CORE_ADDR endaddr; /* 1+highest address in section */
c906108c 2347
7be0c536 2348 struct bfd_section *the_bfd_section;
c906108c 2349
046ac79f
JK
2350 /* The "owner" of the section.
2351 It can be any unique value. It is set by add_target_sections
2352 and used by remove_target_sections.
2353 For example, for executables it is a pointer to exec_bfd and
2354 for shlibs it is the so_list pointer. */
2355 void *owner;
c5aa993b 2356 };
c906108c 2357
07b82ea5
PA
2358/* Holds an array of target sections. Defined by [SECTIONS..SECTIONS_END[. */
2359
2360struct target_section_table
2361{
2362 struct target_section *sections;
2363 struct target_section *sections_end;
2364};
2365
8db32d44 2366/* Return the "section" containing the specified address. */
0542c86d
PA
2367struct target_section *target_section_by_addr (struct target_ops *target,
2368 CORE_ADDR addr);
8db32d44 2369
07b82ea5
PA
2370/* Return the target section table this target (or the targets
2371 beneath) currently manipulate. */
2372
2373extern struct target_section_table *target_get_section_table
2374 (struct target_ops *target);
2375
c906108c
SS
2376/* From mem-break.c */
2377
f6ac5f3d
PA
2378extern int memory_remove_breakpoint (struct target_ops *,
2379 struct gdbarch *, struct bp_target_info *,
73971819 2380 enum remove_bp_reason);
c906108c 2381
f6ac5f3d
PA
2382extern int memory_insert_breakpoint (struct target_ops *,
2383 struct gdbarch *, struct bp_target_info *);
2384
2385/* Convenience template use to add memory breakpoints support to a
2386 target. */
2387
2388template <typename BaseTarget>
2389struct memory_breakpoint_target : public BaseTarget
2390{
2391 int insert_breakpoint (struct gdbarch *gdbarch,
2392 struct bp_target_info *bp_tgt) override
2393 { return memory_insert_breakpoint (this, gdbarch, bp_tgt); }
2394
2395 int remove_breakpoint (struct gdbarch *gdbarch,
2396 struct bp_target_info *bp_tgt,
2397 enum remove_bp_reason reason) override
2398 { return memory_remove_breakpoint (this, gdbarch, bp_tgt, reason); }
2399};
c906108c 2400
08351840
PA
2401/* Check whether the memory at the breakpoint's placed address still
2402 contains the expected breakpoint instruction. */
2403
2404extern int memory_validate_breakpoint (struct gdbarch *gdbarch,
2405 struct bp_target_info *bp_tgt);
2406
3e43a32a
MS
2407extern int default_memory_remove_breakpoint (struct gdbarch *,
2408 struct bp_target_info *);
917317f4 2409
3e43a32a
MS
2410extern int default_memory_insert_breakpoint (struct gdbarch *,
2411 struct bp_target_info *);
917317f4 2412
c906108c
SS
2413
2414/* From target.c */
2415
a14ed312 2416extern void initialize_targets (void);
c906108c 2417
c25c4a8b 2418extern void noprocess (void) ATTRIBUTE_NORETURN;
c906108c 2419
8edfe269
DJ
2420extern void target_require_runnable (void);
2421
8b06beed
TT
2422/* Find the target at STRATUM. If no target is at that stratum,
2423 return NULL. */
2424
2425struct target_ops *find_target_at (enum strata stratum);
2426
9018be22
SM
2427/* Read OS data object of type TYPE from the target, and return it in XML
2428 format. The return value follows the same rules as target_read_stralloc. */
e0665bc8 2429
9018be22 2430extern gdb::optional<gdb::char_vector> target_get_osdata (const char *type);
07e059b5 2431
c906108c
SS
2432/* Stuff that should be shared among the various remote targets. */
2433
2434/* Debugging level. 0 is off, and non-zero values mean to print some debug
2435 information (higher values, more information). */
2436extern int remote_debug;
2437
2438/* Speed in bits per second, or -1 which means don't mess with the speed. */
2439extern int baud_rate;
236af5e3
YG
2440
2441/* Parity for serial port */
2442extern int serial_parity;
2443
c378eb4e 2444/* Timeout limit for response from target. */
c906108c
SS
2445extern int remote_timeout;
2446
c906108c 2447\f
c906108c 2448
cb85b21b
TT
2449/* Set the show memory breakpoints mode to show, and return a
2450 scoped_restore to restore it back to the current value. */
2451extern scoped_restore_tmpl<int>
2452 make_scoped_restore_show_memory_breakpoints (int show);
8defab1a 2453
d914c394
SS
2454extern int may_write_registers;
2455extern int may_write_memory;
2456extern int may_insert_breakpoints;
2457extern int may_insert_tracepoints;
2458extern int may_insert_fast_tracepoints;
2459extern int may_stop;
2460
2461extern void update_target_permissions (void);
2462
c906108c 2463\f
c378eb4e 2464/* Imported from machine dependent code. */
c906108c 2465
02d27625 2466/* See to_enable_btrace in struct target_ops. */
f4abbc16
MM
2467extern struct btrace_target_info *
2468 target_enable_btrace (ptid_t ptid, const struct btrace_config *);
02d27625
MM
2469
2470/* See to_disable_btrace in struct target_ops. */
2471extern void target_disable_btrace (struct btrace_target_info *btinfo);
2472
2473/* See to_teardown_btrace in struct target_ops. */
2474extern void target_teardown_btrace (struct btrace_target_info *btinfo);
2475
2476/* See to_read_btrace in struct target_ops. */
734b0e4b 2477extern enum btrace_error target_read_btrace (struct btrace_data *,
969c39fb
MM
2478 struct btrace_target_info *,
2479 enum btrace_read_type);
02d27625 2480
f4abbc16
MM
2481/* See to_btrace_conf in struct target_ops. */
2482extern const struct btrace_config *
2483 target_btrace_conf (const struct btrace_target_info *);
2484
7c1687a9
MM
2485/* See to_stop_recording in struct target_ops. */
2486extern void target_stop_recording (void);
2487
d02ed0bb 2488/* See to_save_record in struct target_ops. */
85e1311a 2489extern void target_save_record (const char *filename);
d02ed0bb
MM
2490
2491/* Query if the target supports deleting the execution log. */
2492extern int target_supports_delete_record (void);
2493
2494/* See to_delete_record in struct target_ops. */
2495extern void target_delete_record (void);
2496
b158a20f
TW
2497/* See to_record_method. */
2498extern enum record_method target_record_method (ptid_t ptid);
2499
d02ed0bb 2500/* See to_record_is_replaying in struct target_ops. */
a52eab48 2501extern int target_record_is_replaying (ptid_t ptid);
d02ed0bb 2502
7ff27e9b
MM
2503/* See to_record_will_replay in struct target_ops. */
2504extern int target_record_will_replay (ptid_t ptid, int dir);
2505
797094dd
MM
2506/* See to_record_stop_replaying in struct target_ops. */
2507extern void target_record_stop_replaying (void);
2508
d02ed0bb
MM
2509/* See to_goto_record_begin in struct target_ops. */
2510extern void target_goto_record_begin (void);
2511
2512/* See to_goto_record_end in struct target_ops. */
2513extern void target_goto_record_end (void);
2514
2515/* See to_goto_record in struct target_ops. */
2516extern void target_goto_record (ULONGEST insn);
02d27625 2517
67c86d06 2518/* See to_insn_history. */
9a24775b 2519extern void target_insn_history (int size, gdb_disassembly_flags flags);
67c86d06
MM
2520
2521/* See to_insn_history_from. */
9a24775b
PA
2522extern void target_insn_history_from (ULONGEST from, int size,
2523 gdb_disassembly_flags flags);
67c86d06
MM
2524
2525/* See to_insn_history_range. */
9a24775b
PA
2526extern void target_insn_history_range (ULONGEST begin, ULONGEST end,
2527 gdb_disassembly_flags flags);
67c86d06 2528
15984c13 2529/* See to_call_history. */
0cb7c7b0 2530extern void target_call_history (int size, record_print_flags flags);
15984c13
MM
2531
2532/* See to_call_history_from. */
0cb7c7b0
SM
2533extern void target_call_history_from (ULONGEST begin, int size,
2534 record_print_flags flags);
15984c13
MM
2535
2536/* See to_call_history_range. */
0cb7c7b0
SM
2537extern void target_call_history_range (ULONGEST begin, ULONGEST end,
2538 record_print_flags flags);
15984c13 2539
5fff78c4
MM
2540/* See to_prepare_to_generate_core. */
2541extern void target_prepare_to_generate_core (void);
2542
2543/* See to_done_generating_core. */
2544extern void target_done_generating_core (void);
2545
1b30aaa5
YQ
2546#if GDB_SELF_TEST
2547namespace selftests {
2548
2549/* A mock process_stratum target_ops that doesn't read/write registers
2550 anywhere. */
2551
2552class test_target_ops : public target_ops
2553{
2554public:
f6ac5f3d
PA
2555 test_target_ops ()
2556 : target_ops {}
2557 {
2558 to_stratum = process_stratum;
2559 }
2560
d9f719f1 2561 const target_info &info () const override;
f6ac5f3d 2562
57810aa7 2563 bool has_registers () override
f6ac5f3d 2564 {
57810aa7 2565 return true;
f6ac5f3d
PA
2566 }
2567
57810aa7 2568 bool has_stack () override
f6ac5f3d 2569 {
57810aa7 2570 return true;
f6ac5f3d
PA
2571 }
2572
57810aa7 2573 bool has_memory () override
f6ac5f3d 2574 {
57810aa7 2575 return true;
f6ac5f3d
PA
2576 }
2577
2578 void prepare_to_store (regcache *regs) override
2579 {
2580 }
2581
2582 void store_registers (regcache *regs, int regno) override
2583 {
2584 }
1b30aaa5 2585};
f6ac5f3d
PA
2586
2587
1b30aaa5
YQ
2588} // namespace selftests
2589#endif /* GDB_SELF_TEST */
2590
c5aa993b 2591#endif /* !defined (TARGET_H) */
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